From ce717ce9dd4b103a2a1c9e824beb9dc9b3cf01fa Mon Sep 17 00:00:00 2001 From: Ezra Maccabee Date: Fri, 6 Mar 2026 15:27:39 +0300 Subject: [PATCH] # 3 MIME-Version: 1.0 Content-Type: text/plain; charset=UTF-8 Content-Transfer-Encoding: 8bit СБорка базового проекта --- .clang-tidy | 93 + .clangd | 55 + .devcontainer/Dockerfile | 82 + .devcontainer/devcontainer.json | 71 + .gitignore | 15 + CMakeLists.txt | 47 + CMakePresets.json | 115 + bsp/CMakeLists.txt | 23 + bsp/board/README.md | 1 + bsp/board/board.c | 9 + bsp/board/board.h | 10 + bsp/board/startup/startup_MIMXRT1052.S | 1083 +++ bsp/board/syscalls.c | 50 + cmake/linker/MIMXRT1052xxxxx_flexspi_nor.ld | 267 + .../MIMXRT1052xxxxx_flexspi_nor_sdram.ld | 280 + cmake/linker/MIMXRT1052xxxxx_ram.ld | 223 + cmake/linker/MIMXRT1052xxxxx_sdram.ld | 236 + cmake/linker/MIMXRT1052xxxxx_sdram_txt.ld | 247 + cmake/toolchain_arm.cmake | 148 + cmake/toolchain_host.cmake | 66 + docs/SDK_DRIVERS.md | 30 + firmware/test/CMakeLists.txt | 46 + 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lib/fff/test/src/fff_test_custom_function_template.cpp create mode 100644 lib/fff/test/src/fff_test_global_c.c create mode 100644 lib/fff/test/src/fff_test_global_cpp.cpp create mode 100644 lib/fff/test/src/global_fakes.c create mode 100644 lib/fff/test/src/test_cases.include create mode 100644 sdk/CMakeLists.txt create mode 100644 sdk/README.md create mode 100644 tests/CMakeLists.txt create mode 100644 tests/HostTestingGuide.md create mode 100644 tests/README.md create mode 100644 tests/host/CMakeLists.txt create mode 100644 tests/host/test_host_second.c create mode 100644 tests/host/test_host_simple.c create mode 100644 tests/target/CMakeLists.txt create mode 100644 tests/target/test_target_simple.c create mode 100644 tools/dcd.bin create mode 100644 tools/tft_flexspi.bd create mode 100644 tools/tft_sdram.bd diff --git a/.clang-tidy b/.clang-tidy new file mode 100644 index 0000000..d7317f5 --- /dev/null +++ b/.clang-tidy @@ -0,0 +1,93 @@ +--- +Checks: > + -*, + bugprone-*, + clang-analyzer-*, + cppcoreguidelines-avoid-magic-numbers, + cppcoreguidelines-macro-usage, + cppcoreguidelines-owning-references, + cppcoreguidelines-pro-bounds-constant-array-index, + cppcoreguidelines-pro-bounds-pointer-arithmetic, + cppcoreguidelines-pro-type-const-cast, + cppcoreguidelines-pro-type-reinterpret-cast, + cppcoreguidelines-pro-type-static-cast-downcast, + hicpp-no-array-decay, + hicpp-signed-bitwise, + modernize-avoid-c-arrays, + performance-*, + portability-*, + readability-avoid-const-params-in-declarations, + readability-braces-around-statements, + readability-container-size-empty, + readability-function-size, + readability-identifier-naming, + readability-implicit-bool-conversion, + readability-magic-numbers, + readability-named-parameter, + readability-unified-declaration +WarningsAsErrors: 'bugprone-*,clang-analyzer-*' +HeaderFilterRegex: "^((?!Drivers|CMSIS|Core|Middlewares).)*$" +CheckOptions: + # ===== ТИПЫ ===== + - key: readability-identifier-naming.TypedefCase + value: lower_case # my_typedef_t + - key: readability-identifier-naming.TypedefSuffix + value: "_t" + + - key: readability-identifier-naming.StructCase + value: lower_case # struct my_struct + - key: readability-identifier-naming.StructSuffix + value: "_s" + + - key: readability-identifier-naming.EnumCase + value: lower_case # enum my_enum + - key: readability-identifier-naming.EnumSuffix + value: "_e" + + - key: readability-identifier-naming.EnumConstantCase + value: UPPER_CASE # MY_ENUM_VALUE + + # ===== ПЕРЕМЕННЫЕ ===== + - key: readability-identifier-naming.VariableCase + value: lower_case # my_variable + + - key: readability-identifier-naming.GlobalVariableCase + value: lower_case + - key: readability-identifier-naming.GlobalVariablePrefix + value: "g_" # g_my_global + + - key: readability-identifier-naming.LocalVariableCase + value: lower_case # local_var + + - key: readability-identifier-naming.StaticVariableCase + value: lower_case + - key: readability-identifier-naming.StaticVariablePrefix + value: "s_" # s_my_static + + # ===== ПАРАМЕТРЫ ФУНКЦИЙ ===== + - key: readability-identifier-naming.ParameterCase + value: lower_case # func(uint8_t my_param) + + # ===== ФУНКЦИИ ===== + - key: readability-identifier-naming.FunctionCase + value: lower_case # my_module_init() + + # ===== МАКРОСЫ ===== + - key: readability-identifier-naming.MacroDefinitionCase + value: UPPER_CASE # #define MY_MACRO 1 + + # ===== КОНСТАНТЫ ===== + - key: readability-identifier-naming.ConstantCase + value: UPPER_CASE # const uint8_t MY_CONST = 5 + + # ===== УКАЗАТЕЛИ ===== + - key: readability-identifier-naming.PointerParameterCase + value: lower_case + - key: readability-identifier-naming.PointerParameterPrefix + value: "p_" # uint8_t *p_buffer + - key: readability-function-size.LineThreshold + value: '50' + - key: readability-function-size.StatementThreshold + value: '30' + - key: readability-magic-numbers.IgnoredIntegerValues + value: '0;1;2;8;16;32;64;128;255' \ No newline at end of file diff --git a/.clangd b/.clangd new file mode 100644 index 0000000..fc6c9ca --- /dev/null +++ b/.clangd @@ -0,0 +1,55 @@ +# Для тестов, подхватываем compile_commands для host +If: + PathMatch: "tests/host/.*\\.c" +CompileFlags: + CompilationDatabase: build-host-debug + +--- +# Для всего кроме тестов, подхватываем compile_commands для target +If: + PathExclude: "tests/host/.*\\.c" +CompileFlags: + CompilationDatabase: build/Debug + +--- +# Не ругаемся на нарушения правил нейминга в тестах +If: + PathMatch: "tests/.*\\.c" +Diagnostics: + ClangTidy: + Remove: + - readability-identifier-naming + UnusedIncludes: None + +--- + +# Полностью отключаем clang-tidy для Core (генерированный STM32CubeMX код) +If: + PathMatch: "Core/.*\\.(c|h)" +Diagnostics: + ClangTidy: + Remove: + - "*" + UnusedIncludes: None + +--- + +Index: + Background: Build +Diagnostics: + ClangTidy: + Add: + - bugprone-* + - clang-analyzer-* + - performance-* + - readability-* + - portability-* + Remove: + - readability-magic-numbers + - readability-isolate-declaration + - bugprone-easily-swappable-parameters + UnusedIncludes: Enabled +InlayHints: + Enabled: true + ParameterNames: true + DeducedTypes: true diff --git a/.devcontainer/Dockerfile b/.devcontainer/Dockerfile new file mode 100644 index 0000000..118fb5c --- /dev/null +++ b/.devcontainer/Dockerfile @@ -0,0 +1,82 @@ +# syntax=docker/dockerfile:1 + +# ============================================================================= +# Stage 1 — toolchain +# Скачиваем ARM GCC тулчейн. Этот слой кэшируется надолго: +# инвалидируется только при изменении TOOLCHAIN_VERSION. +# ============================================================================= +FROM ubuntu:22.04@sha256:3ba65aa20f86a0fad9df2b2c259c613df006b2e6d0bfcc8a146afb8c525a9751 AS toolchain + +ARG TOOLCHAIN_VERSION=13.3.rel1 + +RUN apt-get update && apt-get install -y --no-install-recommends \ + wget xz-utils ca-certificates \ + && rm -rf /var/lib/apt/lists/* + +RUN set -eux && \ + UNAME_ARCH="$(uname -m)" && \ + case "${UNAME_ARCH}" in \ + "x86_64") HOST_ARCH="x86_64" ;; \ + "aarch64") HOST_ARCH="aarch64" ;; \ + *) echo "Unsupported arch: ${UNAME_ARCH}" && exit 1 ;; \ + esac && \ + wget -qO- \ + "https://developer.arm.com/-/media/Files/downloads/gnu/${TOOLCHAIN_VERSION}/binrel/arm-gnu-toolchain-${TOOLCHAIN_VERSION}-${HOST_ARCH}-arm-none-eabi.tar.xz" \ + | tar -xJ -C /opt && \ + ln -s /opt/arm-gnu-toolchain-${TOOLCHAIN_VERSION}-${HOST_ARCH}-arm-none-eabi /opt/arm-toolchain + + +# ============================================================================= +# Stage 2 — dev +# Устанавливаем инструменты разработки поверх готового тулчейна. +# Этот слой меняется чаще (обновление clang, cmake и т.д.), +# но слой Stage 1 при этом не инвалидируется и берётся из кэша. +# ============================================================================= +FROM toolchain AS dev + +LABEL maintainer="von.akimov@gmail.com" \ + version="0.1.1" + +ENV DEBIAN_FRONTEND=noninteractive + +# Копируем тулчейн из Stage 1 +COPY --from=toolchain /opt /opt + +ENV PATH="/opt/arm-toolchain/bin:${PATH}" + +# Устанавливаем LLVM GPG ключ и репозиторий (llvm >= 16 для поддержки If в .clangd), затем все dev-инструменты +RUN apt-get update && apt-get install -y --no-install-recommends \ + gnupg ca-certificates wget && \ + wget -qO- https://apt.llvm.org/llvm-snapshot.gpg.key \ + | gpg --dearmor -o /usr/share/keyrings/llvm.gpg && \ + echo "deb [signed-by=/usr/share/keyrings/llvm.gpg] http://apt.llvm.org/jammy/ llvm-toolchain-jammy-17 main" \ + > /etc/apt/sources.list.d/llvm.list && \ + apt-get update && apt-get install -y --no-install-recommends \ + curl git cmake ninja-build bear \ + python3 python3-pip \ + clang-17 clangd-17 clang-tidy-17 clang-format-17 \ + gdb-multiarch \ + build-essential \ + && update-alternatives --install /usr/bin/clangd clangd /usr/bin/clangd-17 100 \ + && update-alternatives --install /usr/bin/clang clang /usr/bin/clang-17 100 \ + && update-alternatives --install /usr/bin/clang-tidy clang-tidy /usr/bin/clang-tidy-17 100 \ + && update-alternatives --install /usr/bin/clang-format clang-format /usr/bin/clang-format-17 100 \ + && pip3 install --no-cache-dir cmake-format==0.6.13 \ + && ln -s /usr/bin/clangd /usr/local/bin/clangd \ + && ln -s /usr/bin/clang /usr/local/bin/clang \ + && rm -rf /var/lib/apt/lists/* + + +ARG USER_ID=1000 +ARG GROUP_ID=1000 +ARG WORKSPACE_PATH="/workspace" + +# Создаем группу/пользователя с UID хоста +RUN groupadd --gid $GROUP_ID devgroup && \ + useradd --uid $USER_ID --gid devgroup \ + --create-home --shell /bin/bash devuser && \ + mkdir -p $WORKSPACE_PATH && \ + chown -R devuser:devgroup $WORKSPACE_PATH + +USER devuser +WORKDIR $WORKSPACE_PATH \ No newline at end of file diff --git a/.devcontainer/devcontainer.json b/.devcontainer/devcontainer.json new file mode 100644 index 0000000..e3db4d1 --- /dev/null +++ b/.devcontainer/devcontainer.json @@ -0,0 +1,71 @@ +{ + "name": "STM32 Dev", + "build": { + "dockerfile": "Dockerfile" + }, + "workspaceMount": "source=${localWorkspaceFolder},target=/workspace,type=bind", + "workspaceFolder": "/workspace", + // "postCreateCommand": "cmake --preset host-debug && cmake --preset Debug && cp build/Debug/compile_commands.json /workspace/compile_commands.json", + "customizations": { + "vscode": { + "extensions": [ + "actboy168.tasks", + "bierner.markdown-preview-github-styles", + "brobeson.ctest-lab", + "cheshirekow.cmake-format", + "codeium.codeium", + "cschlosser.doxdocgen", + "dan-c-underwood.arm", + "davidanson.vscode-markdownlint", + "gruntfuggly.todo-tree", + "kylinideteam.cmake-intellisence", + "llvm-vs-code-extensions.vscode-clangd", + "mcu-debug.debug-tracker-vscode", + "mcu-debug.memory-view", + "mcu-debug.peripheral-viewer", + "mcu-debug.rtos-views", + "ms-vscode.hexeditor", + "ms-vscode.makefile-tools", + "probe-rs.probe-rs-debugger", + "rioj7.command-variable", + "trond-snekvik.gnu-mapfiles", + "twxs.cmake", + "usernamehw.errorlens", + "wayou.vscode-todo-highlight", + "xaver.clang-format", + "yzhang.markdown-all-in-one", + "zixuanwang.linkerscript" + ], + "settings": { + "editor.formatOnSave": true, + "files.associations": { + "*.h": "c", + "*.c": "c" + }, + "stm32.chip": "STM32F407VE", + // clangd + "clangd.path": "clangd", + "clangd.arguments": [ + "--query-driver=/opt/arm-toolchain/bin/arm-none-eabi-*", + "--background-index", + "--clang-tidy", + "--header-insertion=iwyu", + "--log=error" + ], + // Отключаем встроенный IntelliSense от ms-vscode.cpptools, чтобы не конфликтовал с clangd + "C_Cpp.intelliSenseEngine": "disabled", + "C_Cpp.formatting": "disabled", + // clang-format + "clang-format.executable": "clang-format", + "[c]": { + "editor.defaultFormatter": "xaver.clang-format" + }, + // cmake-format + "cmakeFormat.exePath": "cmake-format", + "[cmake]": { + "editor.defaultFormatter": "cheshirekow.cmake-format" + } + } + } + } +} \ No newline at end of file diff --git a/.gitignore b/.gitignore index c6127b3..2f4a6d2 100644 --- a/.gitignore +++ b/.gitignore @@ -50,3 +50,18 @@ modules.order Module.symvers Mkfile.old dkms.conf + +# Сборка и бинарники +config_default/ +Debug/ +Release/ +build* +Testing/ + +# Файлы настройки среды разработки +.project +.vscode/ +compile_commands.json +.cache/ +.DS_Store + diff --git a/CMakeLists.txt b/CMakeLists.txt new file mode 100644 index 0000000..4e9f76b --- /dev/null +++ b/CMakeLists.txt @@ -0,0 +1,47 @@ +cmake_minimum_required(VERSION 3.20) +project(tft_firmware C ASM) + +# ----------------------------------------------------------------------------- +# Глобальные опции — управляются через пресеты +# ----------------------------------------------------------------------------- +option(BUILD_TESTS_HOST "Build host unit tests" OFF) +option(BUILD_TESTS_TARGET "Build on-target tests" OFF) +option(SEGGER_RTT_ENABLED "Enable SEGGER RTT" OFF) +option(UNITY_TESTING_ENABLED "Enable Unity framework" OFF) + +# ----------------------------------------------------------------------------- +# Общие настройки для ARM сборки +# ----------------------------------------------------------------------------- +if(NOT BUILD_TESTS_HOST) + set(CMAKE_C_STANDARD 11) + set(CMAKE_C_STANDARD_REQUIRED ON) + set(CMAKE_C_EXTENSIONS OFF) +endif() + +# ----------------------------------------------------------------------------- +# SDK и BSP — всегда подключаются, но содержат защиту от host сборки внутри +# ----------------------------------------------------------------------------- +add_subdirectory(sdk) +add_subdirectory(bsp) + +# ----------------------------------------------------------------------------- +# Сторонние и внутренние библиотеки +# ----------------------------------------------------------------------------- +add_subdirectory(lib) + +# ----------------------------------------------------------------------------- +# Firmware проекты — только для ARM сборки +# ----------------------------------------------------------------------------- +if(NOT BUILD_TESTS_HOST) + add_subdirectory(firmware/test) + # add_subdirectory(firmware/bootloader) - add_subdirectory(firmware/app) # + # Загрузчик + Основное приложение +endif() + +# ----------------------------------------------------------------------------- +# Тесты +# ----------------------------------------------------------------------------- +if(BUILD_TESTS_HOST OR BUILD_TESTS_TARGET) + enable_testing() + add_subdirectory(tests) +endif() diff --git a/CMakePresets.json b/CMakePresets.json new file mode 100644 index 0000000..45b3ea5 --- /dev/null +++ b/CMakePresets.json @@ -0,0 +1,115 @@ +{ + "version": 3, + "configurePresets": [ + { + "name": "default", + "hidden": true, + "generator": "Ninja", + "binaryDir": "${sourceDir}/build/${presetName}", + "toolchainFile": "${sourceDir}/cmake/toolchain_arm.cmake", + "cacheVariables": { + "CMAKE_EXPORT_COMPILE_COMMANDS": "ON" + } + }, + { + "name": "default-host", + "hidden": true, + "generator": "Ninja", + "binaryDir": "${sourceDir}/build/${presetName}", + "toolchainFile": "${sourceDir}/cmake/toolchain_host.cmake", + "cacheVariables": { + "CMAKE_EXPORT_COMPILE_COMMANDS": "ON" + } + }, + { + "name": "Debug", + "inherits": "default", + "cacheVariables": { + "SEGGER_RTT_ENABLED": "ON", + "UNITY_TESTING_ENABLED": "OFF", + "CMAKE_BUILD_TYPE": "Debug" + } + }, + { + "name": "Release", + "inherits": "default", + "cacheVariables": { + "SEGGER_RTT_ENABLED": "OFF", + "UNITY_TESTING_ENABLED": "OFF", + "CMAKE_BUILD_TYPE": "Release" + } + }, + { + "name": "host-debug", + "displayName": "🖥️ Host Debug Tests", + "inherits": "default-host", + "cacheVariables": { + "CMAKE_BUILD_TYPE": "Debug", + "SEGGER_RTT_ENABLED": "OFF", + "UNITY_TESTING_ENABLED": "ON", + "BUILD_TESTS_HOST": "ON", + "BUILD_TESTS_TARGET": "OFF" + } + }, + { + "name": "host-release", + "displayName": "🖥️ Host Release Tests", + "inherits": "default-host", + "cacheVariables": { + "CMAKE_BUILD_TYPE": "Release", + "SEGGER_RTT_ENABLED": "OFF", + "UNITY_TESTING_ENABLED": "ON", + "BUILD_TESTS_HOST": "ON", + "BUILD_TESTS_TARGET": "OFF" + } + } + ], + "buildPresets": [ + { + "name": "Debug", + "configurePreset": "Debug" + }, + { + "name": "Release", + "configurePreset": "Release" + }, + { + "name": "host-debug-build", + "configurePreset": "host-debug", + "displayName": "Build Host Debug Tests", + "targets": [ + "test_host_simple", + "test_host_second" + ] + }, + { + "name": "host-release-build", + "configurePreset": "host-release", + "displayName": "Build Host Release Tests", + "targets": [ + "test_host_simple", + "test_host_second" + ] + } + ], + "testPresets": [ + { + "name": "host-debug-test", + "configurePreset": "host-debug", + "displayName": "🧪 Run Host Tests on Debug", + "output": { + "outputOnFailure": true, + "verbosity": "verbose" + } + }, + { + "name": "host-release-test", + "configurePreset": "host-release", + "displayName": "🧪 Run Host Tests on Release", + "output": { + "outputOnFailure": true, + "verbosity": "verbose" + } + } + ] +} \ No newline at end of file diff --git a/bsp/CMakeLists.txt b/bsp/CMakeLists.txt new file mode 100644 index 0000000..43cb841 --- /dev/null +++ b/bsp/CMakeLists.txt @@ -0,0 +1,23 @@ +if(BUILD_TESTS_HOST) + return() +endif() + +# ----------------------------------------------------------------------------- +# bsp_board — стартап, сгенерированные файлы Config Tools, инициализация платы +# ----------------------------------------------------------------------------- +add_library( + bsp_board STATIC board/board.c board/pin_mux.c board/clock_config.c + board/syscalls.c board/startup/startup_MIMXRT1052.S) + +target_include_directories(bsp_board PUBLIC board) + +# Подавляем предупреждения о macro redefined +set_source_files_properties(board/board.c board/pin_mux.c + PROPERTIES COMPILE_OPTIONS "-w") +# Дефайны PUBLIC — транзитивно подтянутся во все firmware таргеты +target_compile_definitions( + bsp_board PUBLIC CPU_MIMXRT1052CVJ5B XIP_EXTERNAL_FLASH=1 + XIP_BOOT_HEADER_DCD_ENABLE=1 SKIP_SYSCLK_INIT) + +# sdk_device PUBLIC — транзитивно подтянется во все firmware таргеты +target_link_libraries(bsp_board PUBLIC sdk_device sdk_clock sdk_common) diff --git a/bsp/board/README.md b/bsp/board/README.md index cdc2031..d1664f9 100644 --- a/bsp/board/README.md +++ b/bsp/board/README.md @@ -2,6 +2,7 @@ Справочный документ для разработчиков проекта на базе **MIMXRT1052CVJ5B**. +> Применяемая версия генератора- **25.12** --- ## Что такое Config Tools diff --git a/bsp/board/board.c b/bsp/board/board.c new file mode 100644 index 0000000..a7b0e5b --- /dev/null +++ b/bsp/board/board.c @@ -0,0 +1,9 @@ +#include "board.h" +#include "clock_config.h" +#include "pin_mux.h" + +void BOARD_Init(void) { + BOARD_InitPins(); + BOARD_BootClockRUN(); + BOARD_InitRS_GPIO(); +} diff --git a/bsp/board/board.h b/bsp/board/board.h new file mode 100644 index 0000000..9014149 --- /dev/null +++ b/bsp/board/board.h @@ -0,0 +1,10 @@ +#ifndef _BOARD_H_ +#define _BOARD_H_ + +/*! @brief The board name */ +#define BOARD_NAME "TFT4.3_UB_BOARD" + +void BOARD_Init(void); + + +#endif /* _BOARD_H_ */ \ No newline at end of file diff --git a/bsp/board/startup/startup_MIMXRT1052.S b/bsp/board/startup/startup_MIMXRT1052.S new file mode 100644 index 0000000..db9ecfe --- /dev/null +++ b/bsp/board/startup/startup_MIMXRT1052.S @@ -0,0 +1,1083 @@ +/* ------------------------------------------------------------------------- */ +/* @file: startup_MIMXRT1052.s */ +/* @purpose: CMSIS Cortex-M7 Core Device Startup File */ +/* MIMXRT1052 */ +/* @version: 2.0 */ +/* @date: 2024-10-29 */ +/* @build: b250520 */ +/* ------------------------------------------------------------------------- */ +/* */ +/* Copyright 1997-2016 Freescale Semiconductor, Inc. */ +/* Copyright 2016-2025 NXP */ +/* SPDX-License-Identifier: BSD-3-Clause */ +/*****************************************************************************/ +/* Version: GCC for ARM Embedded Processors */ +/*****************************************************************************/ + .syntax unified + .arch armv7-m + + .section .isr_vector, "a" + .align 2 + .globl __isr_vector +__isr_vector: + .long __StackTop /* Top of Stack */ + .long Reset_Handler /* Reset Handler */ + .long NMI_Handler /* NMI Handler*/ + .long HardFault_Handler /* Hard Fault Handler*/ + .long MemManage_Handler /* MPU Fault Handler*/ + .long BusFault_Handler /* Bus Fault Handler*/ + .long UsageFault_Handler /* Usage Fault Handler*/ + .long 0 /* Reserved*/ + .long 0 /* Reserved*/ + .long 0 /* Reserved*/ + .long 0 /* Reserved*/ + .long SVC_Handler /* SVCall Handler*/ + .long DebugMon_Handler /* Debug Monitor Handler*/ + .long 0 /* Reserved*/ + .long PendSV_Handler /* PendSV Handler*/ + .long SysTick_Handler /* SysTick Handler*/ + + /* External Interrupts*/ + .long DMA0_DMA16_IRQHandler /* DMA channel 0/16 transfer complete*/ + .long DMA1_DMA17_IRQHandler /* DMA channel 1/17 transfer complete*/ + .long DMA2_DMA18_IRQHandler /* DMA channel 2/18 transfer complete*/ + .long DMA3_DMA19_IRQHandler /* DMA channel 3/19 transfer complete*/ + .long DMA4_DMA20_IRQHandler /* DMA channel 4/20 transfer complete*/ + .long DMA5_DMA21_IRQHandler /* DMA channel 5/21 transfer complete*/ + .long DMA6_DMA22_IRQHandler /* DMA channel 6/22 transfer complete*/ + .long DMA7_DMA23_IRQHandler /* DMA channel 7/23 transfer complete*/ + .long DMA8_DMA24_IRQHandler /* DMA channel 8/24 transfer complete*/ + .long DMA9_DMA25_IRQHandler /* DMA channel 9/25 transfer complete*/ + .long DMA10_DMA26_IRQHandler /* DMA channel 10/26 transfer complete*/ + .long DMA11_DMA27_IRQHandler /* DMA channel 11/27 transfer complete*/ + .long DMA12_DMA28_IRQHandler /* DMA channel 12/28 transfer complete*/ + .long DMA13_DMA29_IRQHandler /* DMA channel 13/29 transfer complete*/ + .long DMA14_DMA30_IRQHandler /* DMA channel 14/30 transfer complete*/ + .long DMA15_DMA31_IRQHandler /* DMA channel 15/31 transfer complete*/ + .long DMA_ERROR_IRQHandler /* DMA error interrupt channels 0-15 / 16-31*/ + .long CTI0_ERROR_IRQHandler /* CTI0_Error*/ + .long CTI1_ERROR_IRQHandler /* CTI1_Error*/ + .long CORE_IRQHandler /* CorePlatform exception IRQ*/ + .long LPUART1_IRQHandler /* LPUART1 TX interrupt and RX interrupt*/ + .long LPUART2_IRQHandler /* LPUART2 TX interrupt and RX interrupt*/ + .long LPUART3_IRQHandler /* LPUART3 TX interrupt and RX interrupt*/ + .long LPUART4_IRQHandler /* LPUART4 TX interrupt and RX interrupt*/ + .long LPUART5_IRQHandler /* LPUART5 TX interrupt and RX interrupt*/ + .long LPUART6_IRQHandler /* LPUART6 TX interrupt and RX interrupt*/ + .long LPUART7_IRQHandler /* LPUART7 TX interrupt and RX interrupt*/ + .long LPUART8_IRQHandler /* LPUART8 TX interrupt and RX interrupt*/ + .long LPI2C1_IRQHandler /* LPI2C1 interrupt*/ + .long LPI2C2_IRQHandler /* LPI2C2 interrupt*/ + .long LPI2C3_IRQHandler /* LPI2C3 interrupt*/ + .long LPI2C4_IRQHandler /* LPI2C4 interrupt*/ + .long LPSPI1_IRQHandler /* LPSPI1 single interrupt vector for all sources*/ + .long LPSPI2_IRQHandler /* LPSPI2 single interrupt vector for all sources*/ + .long LPSPI3_IRQHandler /* LPSPI3 single interrupt vector for all sources*/ + .long LPSPI4_IRQHandler /* LPSPI4 single interrupt vector for all sources*/ + .long CAN1_IRQHandler /* CAN1 interrupt*/ + .long CAN2_IRQHandler /* CAN2 interrupt*/ + .long FLEXRAM_IRQHandler /* FlexRAM address out of range Or access hit IRQ*/ + .long KPP_IRQHandler /* Keypad nterrupt*/ + .long TSC_DIG_IRQHandler /* TSC interrupt*/ + .long GPR_IRQ_IRQHandler /* GPR interrupt*/ + .long LCDIF_IRQHandler /* LCDIF interrupt*/ + .long CSI_IRQHandler /* CSI interrupt*/ + .long PXP_IRQHandler /* PXP interrupt*/ + .long WDOG2_IRQHandler /* WDOG2 interrupt*/ + .long SNVS_HP_WRAPPER_IRQHandler /* SRTC Consolidated Interrupt. Non TZ*/ + .long SNVS_HP_WRAPPER_TZ_IRQHandler /* SRTC Security Interrupt. TZ*/ + .long SNVS_LP_WRAPPER_IRQHandler /* ON-OFF button press shorter than 5 secs (pulse event)*/ + .long CSU_IRQHandler /* CSU interrupt*/ + .long DCP_IRQHandler /* DCP_IRQ interrupt*/ + .long DCP_VMI_IRQHandler /* DCP_VMI_IRQ interrupt*/ + .long Reserved68_IRQHandler /* Reserved interrupt*/ + .long TRNG_IRQHandler /* TRNG interrupt*/ + .long SJC_IRQHandler /* SJC interrupt*/ + .long BEE_IRQHandler /* BEE interrupt*/ + .long SAI1_IRQHandler /* SAI1 interrupt*/ + .long SAI2_IRQHandler /* SAI1 interrupt*/ + .long SAI3_RX_IRQHandler /* SAI3 interrupt*/ + .long SAI3_TX_IRQHandler /* SAI3 interrupt*/ + .long SPDIF_IRQHandler /* SPDIF interrupt*/ + .long PMU_EVENT_IRQHandler /* Brown-out event interrupt*/ + .long Reserved78_IRQHandler /* Reserved interrupt*/ + .long TEMP_LOW_HIGH_IRQHandler /* TempSensor low/high interrupt*/ + .long TEMP_PANIC_IRQHandler /* TempSensor panic interrupt*/ + .long USB_PHY1_IRQHandler /* USBPHY (UTMI0), Interrupt*/ + .long USB_PHY2_IRQHandler /* USBPHY (UTMI0), Interrupt*/ + .long ADC1_IRQHandler /* ADC1 interrupt*/ + .long ADC2_IRQHandler /* ADC2 interrupt*/ + .long DCDC_IRQHandler /* DCDC interrupt*/ + .long Reserved86_IRQHandler /* Reserved interrupt*/ + .long Reserved87_IRQHandler /* Reserved interrupt*/ + .long GPIO1_INT0_IRQHandler /* Active HIGH Interrupt from INT0 from GPIO*/ + .long GPIO1_INT1_IRQHandler /* Active HIGH Interrupt from INT1 from GPIO*/ + .long GPIO1_INT2_IRQHandler /* Active HIGH Interrupt from INT2 from GPIO*/ + .long GPIO1_INT3_IRQHandler /* Active HIGH Interrupt from INT3 from GPIO*/ + .long GPIO1_INT4_IRQHandler /* Active HIGH Interrupt from INT4 from GPIO*/ + .long GPIO1_INT5_IRQHandler /* Active HIGH Interrupt from INT5 from GPIO*/ + .long GPIO1_INT6_IRQHandler /* Active HIGH Interrupt from INT6 from GPIO*/ + .long GPIO1_INT7_IRQHandler /* Active HIGH Interrupt from INT7 from GPIO*/ + .long GPIO1_Combined_0_15_IRQHandler /* Combined interrupt indication for GPIO1 signal 0 throughout 15*/ + .long GPIO1_Combined_16_31_IRQHandler /* Combined interrupt indication for GPIO1 signal 16 throughout 31*/ + .long GPIO2_Combined_0_15_IRQHandler /* Combined interrupt indication for GPIO2 signal 0 throughout 15*/ + .long GPIO2_Combined_16_31_IRQHandler /* Combined interrupt indication for GPIO2 signal 16 throughout 31*/ + .long GPIO3_Combined_0_15_IRQHandler /* Combined interrupt indication for GPIO3 signal 0 throughout 15*/ + .long GPIO3_Combined_16_31_IRQHandler /* Combined interrupt indication for GPIO3 signal 16 throughout 31*/ + .long GPIO4_Combined_0_15_IRQHandler /* Combined interrupt indication for GPIO4 signal 0 throughout 15*/ + .long GPIO4_Combined_16_31_IRQHandler /* Combined interrupt indication for GPIO4 signal 16 throughout 31*/ + .long GPIO5_Combined_0_15_IRQHandler /* Combined interrupt indication for GPIO5 signal 0 throughout 15*/ + .long GPIO5_Combined_16_31_IRQHandler /* Combined interrupt indication for GPIO5 signal 16 throughout 31*/ + .long FLEXIO1_IRQHandler /* FLEXIO1 interrupt*/ + .long FLEXIO2_IRQHandler /* FLEXIO2 interrupt*/ + .long WDOG1_IRQHandler /* WDOG1 interrupt*/ + .long RTWDOG_IRQHandler /* RTWDOG interrupt*/ + .long EWM_IRQHandler /* EWM interrupt*/ + .long CCM_1_IRQHandler /* CCM IRQ1 interrupt*/ + .long CCM_2_IRQHandler /* CCM IRQ2 interrupt*/ + .long GPC_IRQHandler /* GPC interrupt*/ + .long SRC_IRQHandler /* SRC interrupt*/ + .long Reserved115_IRQHandler /* Reserved interrupt*/ + .long GPT1_IRQHandler /* GPT1 interrupt*/ + .long GPT2_IRQHandler /* GPT2 interrupt*/ + .long PWM1_0_IRQHandler /* PWM1 capture 0, compare 0, or reload 0 interrupt*/ + .long PWM1_1_IRQHandler /* PWM1 capture 1, compare 1, or reload 0 interrupt*/ + .long PWM1_2_IRQHandler /* PWM1 capture 2, compare 2, or reload 0 interrupt*/ + .long PWM1_3_IRQHandler /* PWM1 capture 3, compare 3, or reload 0 interrupt*/ + .long PWM1_FAULT_IRQHandler /* PWM1 fault or reload error interrupt*/ + .long Reserved123_IRQHandler /* Reserved interrupt*/ + .long FLEXSPI_IRQHandler /* FlexSPI0 interrupt*/ + .long SEMC_IRQHandler /* SEMC interrupt*/ + .long USDHC1_IRQHandler /* USDHC1 interrupt*/ + .long USDHC2_IRQHandler /* USDHC2 interrupt*/ + .long USB_OTG2_IRQHandler /* USBO2 USB OTG2*/ + .long USB_OTG1_IRQHandler /* USBO2 USB OTG1*/ + .long ENET_IRQHandler /* ENET interrupt*/ + .long ENET_1588_Timer_IRQHandler /* ENET_1588_Timer interrupt*/ + .long XBAR1_IRQ_0_1_IRQHandler /* XBARA1 output signal 0, 1 interrupt*/ + .long XBAR1_IRQ_2_3_IRQHandler /* XBARA1 output signal 2, 3 interrupt*/ + .long ADC_ETC_IRQ0_IRQHandler /* ADCETC IRQ0 interrupt*/ + .long ADC_ETC_IRQ1_IRQHandler /* ADCETC IRQ1 interrupt*/ + .long ADC_ETC_IRQ2_IRQHandler /* ADCETC IRQ2 interrupt*/ + .long ADC_ETC_ERROR_IRQ_IRQHandler /* ADCETC Error IRQ interrupt*/ + .long PIT_IRQHandler /* PIT interrupt*/ + .long ACMP1_IRQHandler /* ACMP interrupt*/ + .long ACMP2_IRQHandler /* ACMP interrupt*/ + .long ACMP3_IRQHandler /* ACMP interrupt*/ + .long ACMP4_IRQHandler /* ACMP interrupt*/ + .long Reserved143_IRQHandler /* Reserved interrupt*/ + .long Reserved144_IRQHandler /* Reserved interrupt*/ + .long ENC1_IRQHandler /* ENC1 interrupt*/ + .long ENC2_IRQHandler /* ENC2 interrupt*/ + .long ENC3_IRQHandler /* ENC3 interrupt*/ + .long ENC4_IRQHandler /* ENC4 interrupt*/ + .long TMR1_IRQHandler /* TMR1 interrupt*/ + .long TMR2_IRQHandler /* TMR2 interrupt*/ + .long TMR3_IRQHandler /* TMR3 interrupt*/ + .long TMR4_IRQHandler /* TMR4 interrupt*/ + .long PWM2_0_IRQHandler /* PWM2 capture 0, compare 0, or reload 0 interrupt*/ + .long PWM2_1_IRQHandler /* PWM2 capture 1, compare 1, or reload 0 interrupt*/ + .long PWM2_2_IRQHandler /* PWM2 capture 2, compare 2, or reload 0 interrupt*/ + .long PWM2_3_IRQHandler /* PWM2 capture 3, compare 3, or reload 0 interrupt*/ + .long PWM2_FAULT_IRQHandler /* PWM2 fault or reload error interrupt*/ + .long PWM3_0_IRQHandler /* PWM3 capture 0, compare 0, or reload 0 interrupt*/ + .long PWM3_1_IRQHandler /* PWM3 capture 1, compare 1, or reload 0 interrupt*/ + .long PWM3_2_IRQHandler /* PWM3 capture 2, compare 2, or reload 0 interrupt*/ + .long PWM3_3_IRQHandler /* PWM3 capture 3, compare 3, or reload 0 interrupt*/ + .long PWM3_FAULT_IRQHandler /* PWM3 fault or reload error interrupt*/ + .long PWM4_0_IRQHandler /* PWM4 capture 0, compare 0, or reload 0 interrupt*/ + .long PWM4_1_IRQHandler /* PWM4 capture 1, compare 1, or reload 0 interrupt*/ + .long PWM4_2_IRQHandler /* PWM4 capture 2, compare 2, or reload 0 interrupt*/ + .long PWM4_3_IRQHandler /* PWM4 capture 3, compare 3, or reload 0 interrupt*/ + .long PWM4_FAULT_IRQHandler /* PWM4 fault or reload error interrupt*/ + .long DefaultISR /* 168*/ + .long DefaultISR /* 169*/ + .long DefaultISR /* 170*/ + .long DefaultISR /* 171*/ + .long DefaultISR /* 172*/ + .long DefaultISR /* 173*/ + .long DefaultISR /* 174*/ + .long DefaultISR /* 175*/ + .long DefaultISR /* 176*/ + .long DefaultISR /* 177*/ + .long DefaultISR /* 178*/ + .long DefaultISR /* 179*/ + .long DefaultISR /* 180*/ + .long DefaultISR /* 181*/ + .long DefaultISR /* 182*/ + .long DefaultISR /* 183*/ + .long DefaultISR /* 184*/ + .long DefaultISR /* 185*/ + .long DefaultISR /* 186*/ + .long DefaultISR /* 187*/ + .long DefaultISR /* 188*/ + .long DefaultISR /* 189*/ + .long DefaultISR /* 190*/ + .long DefaultISR /* 191*/ + .long DefaultISR /* 192*/ + .long DefaultISR /* 193*/ + .long DefaultISR /* 194*/ + .long DefaultISR /* 195*/ + .long DefaultISR /* 196*/ + .long DefaultISR /* 197*/ + .long DefaultISR /* 198*/ + .long DefaultISR /* 199*/ + .long DefaultISR /* 200*/ + .long DefaultISR /* 201*/ + .long DefaultISR /* 202*/ + .long DefaultISR /* 203*/ + .long DefaultISR /* 204*/ + .long DefaultISR /* 205*/ + .long DefaultISR /* 206*/ + .long DefaultISR /* 207*/ + .long DefaultISR /* 208*/ + .long DefaultISR /* 209*/ + .long DefaultISR /* 210*/ + .long DefaultISR /* 211*/ + .long DefaultISR /* 212*/ + .long DefaultISR /* 213*/ + .long DefaultISR /* 214*/ + .long DefaultISR /* 215*/ + .long DefaultISR /* 216*/ + .long DefaultISR /* 217*/ + .long DefaultISR /* 218*/ + .long DefaultISR /* 219*/ + .long DefaultISR /* 220*/ + .long DefaultISR /* 221*/ + .long DefaultISR /* 222*/ + .long DefaultISR /* 223*/ + .long DefaultISR /* 224*/ + .long DefaultISR /* 225*/ + .long DefaultISR /* 226*/ + .long DefaultISR /* 227*/ + .long DefaultISR /* 228*/ + .long DefaultISR /* 229*/ + .long DefaultISR /* 230*/ + .long DefaultISR /* 231*/ + .long DefaultISR /* 232*/ + .long DefaultISR /* 233*/ + .long DefaultISR /* 234*/ + .long DefaultISR /* 235*/ + .long DefaultISR /* 236*/ + .long DefaultISR /* 237*/ + .long DefaultISR /* 238*/ + .long DefaultISR /* 239*/ + .long DefaultISR /* 240*/ + .long DefaultISR /* 241*/ + .long DefaultISR /* 242*/ + .long DefaultISR /* 243*/ + .long DefaultISR /* 244*/ + .long DefaultISR /* 245*/ + .long DefaultISR /* 246*/ + .long DefaultISR /* 247*/ + .long DefaultISR /* 248*/ + .long DefaultISR /* 249*/ + .long DefaultISR /* 250*/ + .long DefaultISR /* 251*/ + .long DefaultISR /* 252*/ + .long DefaultISR /* 253*/ + .long DefaultISR /* 254*/ + .long 0xFFFFFFFF /* Reserved for user TRIM value*/ + + .size __isr_vector, . - __isr_vector + + .text + .thumb + +#if defined (__cplusplus) +#ifdef __REDLIB__ +#error Redlib does not support C++ +#endif +#endif +/* Reset Handler */ + + .thumb_func + .align 2 + .globl Reset_Handler + .weak Reset_Handler + .type Reset_Handler, %function +Reset_Handler: + cpsid i /* Mask interrupts */ + .equ VTOR, 0xE000ED08 + ldr r0, =VTOR + ldr r1, =__isr_vector + str r1, [r0] + ldr r2, [r1] + msr msp, r2 +#ifndef __NO_SYSTEM_INIT + ldr r0,=SystemInit + blx r0 +#endif +/* Loop to copy data from read only memory to RAM. The ranges + * of copy from/to are specified by following symbols evaluated in + * linker script. + * __etext: End of code section, i.e., begin of data sections to copy from. + * __data_start__/__data_end__: RAM address range that data should be + * __noncachedata_start__/__noncachedata_end__ : none cachable region + * __ram_function_start__/__ram_function_end__ : ramfunction region + * copied to. Both must be aligned to 4 bytes boundary. */ + + ldr r1, =__etext + ldr r2, =__data_start__ + ldr r3, =__data_end__ + +#ifdef __PERFORMANCE_IMPLEMENTATION +/* Here are two copies of loop implementations. First one favors performance + * and the second one favors code size. Default uses the second one. + * Define macro "__PERFORMANCE_IMPLEMENTATION" in project to use the first one */ + subs r3, r2 + ble .LC1 +.LC0: + subs r3, #4 + ldr r0, [r1, r3] + str r0, [r2, r3] + bgt .LC0 +.LC1: +#else /* code size implemenation */ +.LC0: + cmp r2, r3 + ittt lt + ldrlt r0, [r1], #4 + strlt r0, [r2], #4 + blt .LC0 +#endif +#ifdef __STARTUP_INITIALIZE_RAMFUNCTION + ldr r2, =__ram_function_start__ + ldr r3, =__ram_function_end__ +#ifdef __PERFORMANCE_IMPLEMENTATION +/* Here are two copies of loop implementations. First one favors performance + * and the second one favors code size. Default uses the second one. + * Define macro "__PERFORMANCE_IMPLEMENTATION" in project to use the first one */ + subs r3, r2 + ble .LC_ramfunc_copy_end +.LC_ramfunc_copy_start: + subs r3, #4 + ldr r0, [r1, r3] + str r0, [r2, r3] + bgt .LC_ramfunc_copy_start +.LC_ramfunc_copy_end: +#else /* code size implemenation */ +.LC_ramfunc_copy_start: + cmp r2, r3 + ittt lt + ldrlt r0, [r1], #4 + strlt r0, [r2], #4 + blt .LC_ramfunc_copy_start +#endif +#endif /* __STARTUP_INITIALIZE_RAMFUNCTION */ +#ifdef __STARTUP_INITIALIZE_NONCACHEDATA + ldr r2, =__noncachedata_start__ + ldr r3, =__noncachedata_init_end__ +#ifdef __PERFORMANCE_IMPLEMENTATION +/* Here are two copies of loop implementations. First one favors performance + * and the second one favors code size. Default uses the second one. + * Define macro "__PERFORMANCE_IMPLEMENTATION" in project to use the first one */ + subs r3, r2 + ble .LC3 +.LC2: + subs r3, #4 + ldr r0, [r1, r3] + str r0, [r2, r3] + bgt .LC2 +.LC3: +#else /* code size implemenation */ +.LC2: + cmp r2, r3 + ittt lt + ldrlt r0, [r1], #4 + strlt r0, [r2], #4 + blt .LC2 +#endif +/* zero inited ncache section initialization */ + ldr r3, =__noncachedata_end__ + movs r0,0 +.LC4: + cmp r2,r3 + itt lt + strlt r0,[r2],#4 + blt .LC4 +#endif /* __STARTUP_INITIALIZE_NONCACHEDATA */ + +#ifdef __STARTUP_CLEAR_BSS +/* This part of work usually is done in C library startup code. Otherwise, + * define this macro to enable it in this startup. + * + * Loop to zero out BSS section, which uses following symbols + * in linker script: + * __bss_start__: start of BSS section. Must align to 4 + * __bss_end__: end of BSS section. Must align to 4 + */ + ldr r1, =__bss_start__ + ldr r2, =__bss_end__ + + movs r0, 0 +.LC5: + cmp r1, r2 + itt lt + strlt r0, [r1], #4 + blt .LC5 +#endif /* __STARTUP_CLEAR_BSS */ + + cpsie i /* Unmask interrupts */ +#ifndef __START +#ifdef __REDLIB__ +#define __START __main +#else +#define __START _start +#endif +#endif +#ifndef __ATOLLIC__ + ldr r0,=__START + blx r0 +#else + ldr r0,=__libc_init_array + blx r0 + ldr r0,=main + bx r0 +#endif + .pool + .size Reset_Handler, . - Reset_Handler + + .align 1 + .thumb_func + .weak DefaultISR + .type DefaultISR, %function +DefaultISR: + b DefaultISR + .size DefaultISR, . - DefaultISR + + .align 1 + .thumb_func + .weak NMI_Handler + .type NMI_Handler, %function +NMI_Handler: + ldr r0,=NMI_Handler + bx r0 + .size NMI_Handler, . - NMI_Handler + + .align 1 + .thumb_func + .weak HardFault_Handler + .type HardFault_Handler, %function +HardFault_Handler: + ldr r0,=HardFault_Handler + bx r0 + .size HardFault_Handler, . - HardFault_Handler + + .align 1 + .thumb_func + .weak SVC_Handler + .type SVC_Handler, %function +SVC_Handler: + ldr r0,=SVC_Handler + bx r0 + .size SVC_Handler, . - SVC_Handler + + .align 1 + .thumb_func + .weak PendSV_Handler + .type PendSV_Handler, %function +PendSV_Handler: + ldr r0,=PendSV_Handler + bx r0 + .size PendSV_Handler, . - PendSV_Handler + + .align 1 + .thumb_func + .weak SysTick_Handler + .type SysTick_Handler, %function +SysTick_Handler: + ldr r0,=SysTick_Handler + bx r0 + .size SysTick_Handler, . - SysTick_Handler + + .align 1 + .thumb_func + .weak DMA0_DMA16_IRQHandler + .type DMA0_DMA16_IRQHandler, %function +DMA0_DMA16_IRQHandler: + ldr r0,=DMA0_DMA16_DriverIRQHandler + bx r0 + .size DMA0_DMA16_IRQHandler, . - DMA0_DMA16_IRQHandler + + .align 1 + .thumb_func + .weak DMA1_DMA17_IRQHandler + .type DMA1_DMA17_IRQHandler, %function +DMA1_DMA17_IRQHandler: + ldr r0,=DMA1_DMA17_DriverIRQHandler + bx r0 + .size DMA1_DMA17_IRQHandler, . - DMA1_DMA17_IRQHandler + + .align 1 + .thumb_func + .weak DMA2_DMA18_IRQHandler + .type DMA2_DMA18_IRQHandler, %function +DMA2_DMA18_IRQHandler: + ldr r0,=DMA2_DMA18_DriverIRQHandler + bx r0 + .size DMA2_DMA18_IRQHandler, . - DMA2_DMA18_IRQHandler + + .align 1 + .thumb_func + .weak DMA3_DMA19_IRQHandler + .type DMA3_DMA19_IRQHandler, %function +DMA3_DMA19_IRQHandler: + ldr r0,=DMA3_DMA19_DriverIRQHandler + bx r0 + .size DMA3_DMA19_IRQHandler, . - DMA3_DMA19_IRQHandler + + .align 1 + .thumb_func + .weak DMA4_DMA20_IRQHandler + .type DMA4_DMA20_IRQHandler, %function +DMA4_DMA20_IRQHandler: + ldr r0,=DMA4_DMA20_DriverIRQHandler + bx r0 + .size DMA4_DMA20_IRQHandler, . - DMA4_DMA20_IRQHandler + + .align 1 + .thumb_func + .weak DMA5_DMA21_IRQHandler + .type DMA5_DMA21_IRQHandler, %function +DMA5_DMA21_IRQHandler: + ldr r0,=DMA5_DMA21_DriverIRQHandler + bx r0 + .size DMA5_DMA21_IRQHandler, . - DMA5_DMA21_IRQHandler + + .align 1 + .thumb_func + .weak DMA6_DMA22_IRQHandler + .type DMA6_DMA22_IRQHandler, %function +DMA6_DMA22_IRQHandler: + ldr r0,=DMA6_DMA22_DriverIRQHandler + bx r0 + .size DMA6_DMA22_IRQHandler, . - DMA6_DMA22_IRQHandler + + .align 1 + .thumb_func + .weak DMA7_DMA23_IRQHandler + .type DMA7_DMA23_IRQHandler, %function +DMA7_DMA23_IRQHandler: + ldr r0,=DMA7_DMA23_DriverIRQHandler + bx r0 + .size DMA7_DMA23_IRQHandler, . - DMA7_DMA23_IRQHandler + + .align 1 + .thumb_func + .weak DMA8_DMA24_IRQHandler + .type DMA8_DMA24_IRQHandler, %function +DMA8_DMA24_IRQHandler: + ldr r0,=DMA8_DMA24_DriverIRQHandler + bx r0 + .size DMA8_DMA24_IRQHandler, . - DMA8_DMA24_IRQHandler + + .align 1 + .thumb_func + .weak DMA9_DMA25_IRQHandler + .type DMA9_DMA25_IRQHandler, %function +DMA9_DMA25_IRQHandler: + ldr r0,=DMA9_DMA25_DriverIRQHandler + bx r0 + .size DMA9_DMA25_IRQHandler, . - DMA9_DMA25_IRQHandler + + .align 1 + .thumb_func + .weak DMA10_DMA26_IRQHandler + .type DMA10_DMA26_IRQHandler, %function +DMA10_DMA26_IRQHandler: + ldr r0,=DMA10_DMA26_DriverIRQHandler + bx r0 + .size DMA10_DMA26_IRQHandler, . - DMA10_DMA26_IRQHandler + + .align 1 + .thumb_func + .weak DMA11_DMA27_IRQHandler + .type DMA11_DMA27_IRQHandler, %function +DMA11_DMA27_IRQHandler: + ldr r0,=DMA11_DMA27_DriverIRQHandler + bx r0 + .size DMA11_DMA27_IRQHandler, . - DMA11_DMA27_IRQHandler + + .align 1 + .thumb_func + .weak DMA12_DMA28_IRQHandler + .type DMA12_DMA28_IRQHandler, %function +DMA12_DMA28_IRQHandler: + ldr r0,=DMA12_DMA28_DriverIRQHandler + bx r0 + .size DMA12_DMA28_IRQHandler, . - DMA12_DMA28_IRQHandler + + .align 1 + .thumb_func + .weak DMA13_DMA29_IRQHandler + .type DMA13_DMA29_IRQHandler, %function +DMA13_DMA29_IRQHandler: + ldr r0,=DMA13_DMA29_DriverIRQHandler + bx r0 + .size DMA13_DMA29_IRQHandler, . - DMA13_DMA29_IRQHandler + + .align 1 + .thumb_func + .weak DMA14_DMA30_IRQHandler + .type DMA14_DMA30_IRQHandler, %function +DMA14_DMA30_IRQHandler: + ldr r0,=DMA14_DMA30_DriverIRQHandler + bx r0 + .size DMA14_DMA30_IRQHandler, . - DMA14_DMA30_IRQHandler + + .align 1 + .thumb_func + .weak DMA15_DMA31_IRQHandler + .type DMA15_DMA31_IRQHandler, %function +DMA15_DMA31_IRQHandler: + ldr r0,=DMA15_DMA31_DriverIRQHandler + bx r0 + .size DMA15_DMA31_IRQHandler, . - DMA15_DMA31_IRQHandler + + .align 1 + .thumb_func + .weak DMA_ERROR_IRQHandler + .type DMA_ERROR_IRQHandler, %function +DMA_ERROR_IRQHandler: + ldr r0,=DMA_ERROR_DriverIRQHandler + bx r0 + .size DMA_ERROR_IRQHandler, . - DMA_ERROR_IRQHandler + + .align 1 + .thumb_func + .weak LPUART1_IRQHandler + .type LPUART1_IRQHandler, %function +LPUART1_IRQHandler: + ldr r0,=LPUART1_DriverIRQHandler + bx r0 + .size LPUART1_IRQHandler, . - LPUART1_IRQHandler + + .align 1 + .thumb_func + .weak LPUART2_IRQHandler + .type LPUART2_IRQHandler, %function +LPUART2_IRQHandler: + ldr r0,=LPUART2_DriverIRQHandler + bx r0 + .size LPUART2_IRQHandler, . - LPUART2_IRQHandler + + .align 1 + .thumb_func + .weak LPUART3_IRQHandler + .type LPUART3_IRQHandler, %function +LPUART3_IRQHandler: + ldr r0,=LPUART3_DriverIRQHandler + bx r0 + .size LPUART3_IRQHandler, . - LPUART3_IRQHandler + + .align 1 + .thumb_func + .weak LPUART4_IRQHandler + .type LPUART4_IRQHandler, %function +LPUART4_IRQHandler: + ldr r0,=LPUART4_DriverIRQHandler + bx r0 + .size LPUART4_IRQHandler, . - LPUART4_IRQHandler + + .align 1 + .thumb_func + .weak LPUART5_IRQHandler + .type LPUART5_IRQHandler, %function +LPUART5_IRQHandler: + ldr r0,=LPUART5_DriverIRQHandler + bx r0 + .size LPUART5_IRQHandler, . - LPUART5_IRQHandler + + .align 1 + .thumb_func + .weak LPUART6_IRQHandler + .type LPUART6_IRQHandler, %function +LPUART6_IRQHandler: + ldr r0,=LPUART6_DriverIRQHandler + bx r0 + .size LPUART6_IRQHandler, . - LPUART6_IRQHandler + + .align 1 + .thumb_func + .weak LPUART7_IRQHandler + .type LPUART7_IRQHandler, %function +LPUART7_IRQHandler: + ldr r0,=LPUART7_DriverIRQHandler + bx r0 + .size LPUART7_IRQHandler, . - LPUART7_IRQHandler + + .align 1 + .thumb_func + .weak LPUART8_IRQHandler + .type LPUART8_IRQHandler, %function +LPUART8_IRQHandler: + ldr r0,=LPUART8_DriverIRQHandler + bx r0 + .size LPUART8_IRQHandler, . - LPUART8_IRQHandler + + .align 1 + .thumb_func + .weak LPI2C1_IRQHandler + .type LPI2C1_IRQHandler, %function +LPI2C1_IRQHandler: + ldr r0,=LPI2C1_DriverIRQHandler + bx r0 + .size LPI2C1_IRQHandler, . - LPI2C1_IRQHandler + + .align 1 + .thumb_func + .weak LPI2C2_IRQHandler + .type LPI2C2_IRQHandler, %function +LPI2C2_IRQHandler: + ldr r0,=LPI2C2_DriverIRQHandler + bx r0 + .size LPI2C2_IRQHandler, . - LPI2C2_IRQHandler + + .align 1 + .thumb_func + .weak LPI2C3_IRQHandler + .type LPI2C3_IRQHandler, %function +LPI2C3_IRQHandler: + ldr r0,=LPI2C3_DriverIRQHandler + bx r0 + .size LPI2C3_IRQHandler, . - LPI2C3_IRQHandler + + .align 1 + .thumb_func + .weak LPI2C4_IRQHandler + .type LPI2C4_IRQHandler, %function +LPI2C4_IRQHandler: + ldr r0,=LPI2C4_DriverIRQHandler + bx r0 + .size LPI2C4_IRQHandler, . - LPI2C4_IRQHandler + + .align 1 + .thumb_func + .weak LPSPI1_IRQHandler + .type LPSPI1_IRQHandler, %function +LPSPI1_IRQHandler: + ldr r0,=LPSPI1_DriverIRQHandler + bx r0 + .size LPSPI1_IRQHandler, . - LPSPI1_IRQHandler + + .align 1 + .thumb_func + .weak LPSPI2_IRQHandler + .type LPSPI2_IRQHandler, %function +LPSPI2_IRQHandler: + ldr r0,=LPSPI2_DriverIRQHandler + bx r0 + .size LPSPI2_IRQHandler, . - LPSPI2_IRQHandler + + .align 1 + .thumb_func + .weak LPSPI3_IRQHandler + .type LPSPI3_IRQHandler, %function +LPSPI3_IRQHandler: + ldr r0,=LPSPI3_DriverIRQHandler + bx r0 + .size LPSPI3_IRQHandler, . - LPSPI3_IRQHandler + + .align 1 + .thumb_func + .weak LPSPI4_IRQHandler + .type LPSPI4_IRQHandler, %function +LPSPI4_IRQHandler: + ldr r0,=LPSPI4_DriverIRQHandler + bx r0 + .size LPSPI4_IRQHandler, . - LPSPI4_IRQHandler + + .align 1 + .thumb_func + .weak CAN1_IRQHandler + .type CAN1_IRQHandler, %function +CAN1_IRQHandler: + ldr r0,=CAN1_DriverIRQHandler + bx r0 + .size CAN1_IRQHandler, . - CAN1_IRQHandler + + .align 1 + .thumb_func + .weak CAN2_IRQHandler + .type CAN2_IRQHandler, %function +CAN2_IRQHandler: + ldr r0,=CAN2_DriverIRQHandler + bx r0 + .size CAN2_IRQHandler, . - CAN2_IRQHandler + + .align 1 + .thumb_func + .weak SAI1_IRQHandler + .type SAI1_IRQHandler, %function +SAI1_IRQHandler: + ldr r0,=SAI1_DriverIRQHandler + bx r0 + .size SAI1_IRQHandler, . - SAI1_IRQHandler + + .align 1 + .thumb_func + .weak SAI2_IRQHandler + .type SAI2_IRQHandler, %function +SAI2_IRQHandler: + ldr r0,=SAI2_DriverIRQHandler + bx r0 + .size SAI2_IRQHandler, . - SAI2_IRQHandler + + .align 1 + .thumb_func + .weak SAI3_RX_IRQHandler + .type SAI3_RX_IRQHandler, %function +SAI3_RX_IRQHandler: + ldr r0,=SAI3_RX_DriverIRQHandler + bx r0 + .size SAI3_RX_IRQHandler, . - SAI3_RX_IRQHandler + + .align 1 + .thumb_func + .weak SAI3_TX_IRQHandler + .type SAI3_TX_IRQHandler, %function +SAI3_TX_IRQHandler: + ldr r0,=SAI3_TX_DriverIRQHandler + bx r0 + .size SAI3_TX_IRQHandler, . - SAI3_TX_IRQHandler + + .align 1 + .thumb_func + .weak SPDIF_IRQHandler + .type SPDIF_IRQHandler, %function +SPDIF_IRQHandler: + ldr r0,=SPDIF_DriverIRQHandler + bx r0 + .size SPDIF_IRQHandler, . - SPDIF_IRQHandler + + .align 1 + .thumb_func + .weak FLEXIO1_IRQHandler + .type FLEXIO1_IRQHandler, %function +FLEXIO1_IRQHandler: + ldr r0,=FLEXIO1_DriverIRQHandler + bx r0 + .size FLEXIO1_IRQHandler, . - FLEXIO1_IRQHandler + + .align 1 + .thumb_func + .weak FLEXIO2_IRQHandler + .type FLEXIO2_IRQHandler, %function +FLEXIO2_IRQHandler: + ldr r0,=FLEXIO2_DriverIRQHandler + bx r0 + .size FLEXIO2_IRQHandler, . - FLEXIO2_IRQHandler + + .align 1 + .thumb_func + .weak FLEXSPI_IRQHandler + .type FLEXSPI_IRQHandler, %function +FLEXSPI_IRQHandler: + ldr r0,=FLEXSPI_DriverIRQHandler + bx r0 + .size FLEXSPI_IRQHandler, . - FLEXSPI_IRQHandler + + .align 1 + .thumb_func + .weak USDHC1_IRQHandler + .type USDHC1_IRQHandler, %function +USDHC1_IRQHandler: + ldr r0,=USDHC1_DriverIRQHandler + bx r0 + .size USDHC1_IRQHandler, . - USDHC1_IRQHandler + + .align 1 + .thumb_func + .weak USDHC2_IRQHandler + .type USDHC2_IRQHandler, %function +USDHC2_IRQHandler: + ldr r0,=USDHC2_DriverIRQHandler + bx r0 + .size USDHC2_IRQHandler, . - USDHC2_IRQHandler + + .align 1 + .thumb_func + .weak ENET_IRQHandler + .type ENET_IRQHandler, %function +ENET_IRQHandler: + ldr r0,=ENET_DriverIRQHandler + bx r0 + .size ENET_IRQHandler, . - ENET_IRQHandler + + .align 1 + .thumb_func + .weak ENET_1588_Timer_IRQHandler + .type ENET_1588_Timer_IRQHandler, %function +ENET_1588_Timer_IRQHandler: + ldr r0,=ENET_1588_Timer_DriverIRQHandler + bx r0 + .size ENET_1588_Timer_IRQHandler, . - ENET_1588_Timer_IRQHandler + + +/* Macro to define default handlers. Default handler + * will be weak symbol and just dead loops. They can be + * overwritten by other handlers */ + .macro def_irq_handler handler_name + .weak \handler_name + .set \handler_name, DefaultISR + .endm +/* Exception Handlers */ + def_irq_handler MemManage_Handler + def_irq_handler BusFault_Handler + def_irq_handler UsageFault_Handler + def_irq_handler DebugMon_Handler + def_irq_handler DMA0_DMA16_DriverIRQHandler + def_irq_handler DMA1_DMA17_DriverIRQHandler + def_irq_handler DMA2_DMA18_DriverIRQHandler + def_irq_handler DMA3_DMA19_DriverIRQHandler + def_irq_handler DMA4_DMA20_DriverIRQHandler + def_irq_handler DMA5_DMA21_DriverIRQHandler + def_irq_handler DMA6_DMA22_DriverIRQHandler + def_irq_handler DMA7_DMA23_DriverIRQHandler + def_irq_handler DMA8_DMA24_DriverIRQHandler + def_irq_handler DMA9_DMA25_DriverIRQHandler + def_irq_handler DMA10_DMA26_DriverIRQHandler + def_irq_handler DMA11_DMA27_DriverIRQHandler + def_irq_handler DMA12_DMA28_DriverIRQHandler + def_irq_handler DMA13_DMA29_DriverIRQHandler + def_irq_handler DMA14_DMA30_DriverIRQHandler + def_irq_handler DMA15_DMA31_DriverIRQHandler + def_irq_handler DMA_ERROR_DriverIRQHandler + def_irq_handler CTI0_ERROR_IRQHandler + def_irq_handler CTI1_ERROR_IRQHandler + def_irq_handler CORE_IRQHandler + def_irq_handler LPUART1_DriverIRQHandler + def_irq_handler LPUART2_DriverIRQHandler + def_irq_handler LPUART3_DriverIRQHandler + def_irq_handler LPUART4_DriverIRQHandler + def_irq_handler LPUART5_DriverIRQHandler + def_irq_handler LPUART6_DriverIRQHandler + def_irq_handler LPUART7_DriverIRQHandler + def_irq_handler LPUART8_DriverIRQHandler + def_irq_handler LPI2C1_DriverIRQHandler + def_irq_handler LPI2C2_DriverIRQHandler + def_irq_handler LPI2C3_DriverIRQHandler + def_irq_handler LPI2C4_DriverIRQHandler + def_irq_handler LPSPI1_DriverIRQHandler + def_irq_handler LPSPI2_DriverIRQHandler + def_irq_handler LPSPI3_DriverIRQHandler + def_irq_handler LPSPI4_DriverIRQHandler + def_irq_handler CAN1_DriverIRQHandler + def_irq_handler CAN2_DriverIRQHandler + def_irq_handler FLEXRAM_IRQHandler + def_irq_handler KPP_IRQHandler + def_irq_handler TSC_DIG_IRQHandler + def_irq_handler GPR_IRQ_IRQHandler + def_irq_handler LCDIF_IRQHandler + def_irq_handler CSI_IRQHandler + def_irq_handler PXP_IRQHandler + def_irq_handler WDOG2_IRQHandler + def_irq_handler SNVS_HP_WRAPPER_IRQHandler + def_irq_handler SNVS_HP_WRAPPER_TZ_IRQHandler + def_irq_handler SNVS_LP_WRAPPER_IRQHandler + def_irq_handler CSU_IRQHandler + def_irq_handler DCP_IRQHandler + def_irq_handler DCP_VMI_IRQHandler + def_irq_handler Reserved68_IRQHandler + def_irq_handler TRNG_IRQHandler + def_irq_handler SJC_IRQHandler + def_irq_handler BEE_IRQHandler + def_irq_handler SAI1_DriverIRQHandler + def_irq_handler SAI2_DriverIRQHandler + def_irq_handler SAI3_RX_DriverIRQHandler + def_irq_handler SAI3_TX_DriverIRQHandler + def_irq_handler SPDIF_DriverIRQHandler + def_irq_handler PMU_EVENT_IRQHandler + def_irq_handler Reserved78_IRQHandler + def_irq_handler TEMP_LOW_HIGH_IRQHandler + def_irq_handler TEMP_PANIC_IRQHandler + def_irq_handler USB_PHY1_IRQHandler + def_irq_handler USB_PHY2_IRQHandler + def_irq_handler ADC1_IRQHandler + def_irq_handler ADC2_IRQHandler + def_irq_handler DCDC_IRQHandler + def_irq_handler Reserved86_IRQHandler + def_irq_handler Reserved87_IRQHandler + def_irq_handler GPIO1_INT0_IRQHandler + def_irq_handler GPIO1_INT1_IRQHandler + def_irq_handler GPIO1_INT2_IRQHandler + def_irq_handler GPIO1_INT3_IRQHandler + def_irq_handler GPIO1_INT4_IRQHandler + def_irq_handler GPIO1_INT5_IRQHandler + def_irq_handler GPIO1_INT6_IRQHandler + def_irq_handler GPIO1_INT7_IRQHandler + def_irq_handler GPIO1_Combined_0_15_IRQHandler + def_irq_handler GPIO1_Combined_16_31_IRQHandler + def_irq_handler GPIO2_Combined_0_15_IRQHandler + def_irq_handler GPIO2_Combined_16_31_IRQHandler + def_irq_handler GPIO3_Combined_0_15_IRQHandler + def_irq_handler GPIO3_Combined_16_31_IRQHandler + def_irq_handler GPIO4_Combined_0_15_IRQHandler + def_irq_handler GPIO4_Combined_16_31_IRQHandler + def_irq_handler GPIO5_Combined_0_15_IRQHandler + def_irq_handler GPIO5_Combined_16_31_IRQHandler + def_irq_handler FLEXIO1_DriverIRQHandler + def_irq_handler FLEXIO2_DriverIRQHandler + def_irq_handler WDOG1_IRQHandler + def_irq_handler RTWDOG_IRQHandler + def_irq_handler EWM_IRQHandler + def_irq_handler CCM_1_IRQHandler + def_irq_handler CCM_2_IRQHandler + def_irq_handler GPC_IRQHandler + def_irq_handler SRC_IRQHandler + def_irq_handler Reserved115_IRQHandler + def_irq_handler GPT1_IRQHandler + def_irq_handler GPT2_IRQHandler + def_irq_handler PWM1_0_IRQHandler + def_irq_handler PWM1_1_IRQHandler + def_irq_handler PWM1_2_IRQHandler + def_irq_handler PWM1_3_IRQHandler + def_irq_handler PWM1_FAULT_IRQHandler + def_irq_handler Reserved123_IRQHandler + def_irq_handler FLEXSPI_DriverIRQHandler + def_irq_handler SEMC_IRQHandler + def_irq_handler USDHC1_DriverIRQHandler + def_irq_handler USDHC2_DriverIRQHandler + def_irq_handler USB_OTG2_IRQHandler + def_irq_handler USB_OTG1_IRQHandler + def_irq_handler ENET_DriverIRQHandler + def_irq_handler ENET_1588_Timer_DriverIRQHandler + def_irq_handler XBAR1_IRQ_0_1_IRQHandler + def_irq_handler XBAR1_IRQ_2_3_IRQHandler + def_irq_handler ADC_ETC_IRQ0_IRQHandler + def_irq_handler ADC_ETC_IRQ1_IRQHandler + def_irq_handler ADC_ETC_IRQ2_IRQHandler + def_irq_handler ADC_ETC_ERROR_IRQ_IRQHandler + def_irq_handler PIT_IRQHandler + def_irq_handler ACMP1_IRQHandler + def_irq_handler ACMP2_IRQHandler + def_irq_handler ACMP3_IRQHandler + def_irq_handler ACMP4_IRQHandler + def_irq_handler Reserved143_IRQHandler + def_irq_handler Reserved144_IRQHandler + def_irq_handler ENC1_IRQHandler + def_irq_handler ENC2_IRQHandler + def_irq_handler ENC3_IRQHandler + def_irq_handler ENC4_IRQHandler + def_irq_handler TMR1_IRQHandler + def_irq_handler TMR2_IRQHandler + def_irq_handler TMR3_IRQHandler + def_irq_handler TMR4_IRQHandler + def_irq_handler PWM2_0_IRQHandler + def_irq_handler PWM2_1_IRQHandler + def_irq_handler PWM2_2_IRQHandler + def_irq_handler PWM2_3_IRQHandler + def_irq_handler PWM2_FAULT_IRQHandler + def_irq_handler PWM3_0_IRQHandler + def_irq_handler PWM3_1_IRQHandler + def_irq_handler PWM3_2_IRQHandler + def_irq_handler PWM3_3_IRQHandler + def_irq_handler PWM3_FAULT_IRQHandler + def_irq_handler PWM4_0_IRQHandler + def_irq_handler PWM4_1_IRQHandler + def_irq_handler PWM4_2_IRQHandler + def_irq_handler PWM4_3_IRQHandler + def_irq_handler PWM4_FAULT_IRQHandler + + .end diff --git a/bsp/board/syscalls.c b/bsp/board/syscalls.c new file mode 100644 index 0000000..17ab1bf --- /dev/null +++ b/bsp/board/syscalls.c @@ -0,0 +1,50 @@ +#include +#include + +void _exit(int status) { + (void)status; + while (1) { + } +} +int _close(int fd) { + (void)fd; + return -1; +} +int _fstat(int fd, struct stat *st) { + (void)fd; + st->st_mode = S_IFCHR; + return 0; +} +int _isatty(int fd) { + (void)fd; + return 1; +} +int _lseek(int fd, int ptr, int dir) { + (void)fd; + (void)ptr; + (void)dir; + return 0; +} +int _read(int fd, char *ptr, int len) { + (void)fd; + (void)ptr; + (void)len; + return 0; +} +int _write(int fd, char *ptr, int len) { + (void)fd; + (void)ptr; + return len; +} +int _kill(int pid, int sig) { + (void)pid; + (void)sig; + errno = EINVAL; + return -1; +} +int _getpid(void) { return 1; } +void *_sbrk(int incr) { + (void)incr; + errno = ENOMEM; + return (void *)-1; +} \ No newline at end of file diff --git a/cmake/linker/MIMXRT1052xxxxx_flexspi_nor.ld b/cmake/linker/MIMXRT1052xxxxx_flexspi_nor.ld new file mode 100644 index 0000000..b21a3ba --- /dev/null +++ b/cmake/linker/MIMXRT1052xxxxx_flexspi_nor.ld @@ -0,0 +1,267 @@ +/* +** ################################################################### +** Processors: MIMXRT1052CVJ5B +** MIMXRT1052CVL5B +** MIMXRT1052DVJ6B +** MIMXRT1052DVL6B +** +** Compiler: GNU C Compiler +** Reference manual: IMXRT1050RM Rev.5, 07/2021 | IMXRT1050SRM Rev.2 +** Version: rev. 1.0, 2018-09-21 +** Build: b241024 +** +** Abstract: +** Linker file for the GNU C Compiler +** +** Copyright 2016 Freescale Semiconductor, Inc. +** Copyright 2016-2024 NXP +** SPDX-License-Identifier: BSD-3-Clause +** +** http: www.nxp.com +** mail: support@nxp.com +** +** ################################################################### +*/ + +/* Entry Point */ +ENTRY(Reset_Handler) + +HEAP_SIZE = DEFINED(__heap_size__) ? __heap_size__ : 0x0400; +STACK_SIZE = DEFINED(__stack_size__) ? __stack_size__ : 0x0400; +VECTOR_RAM_SIZE = DEFINED(__ram_vector_table__) ? 0x00000400 : 0; + +/* Specify the memory areas */ +MEMORY +{ + m_flash_config (RX) : ORIGIN = 0x60000000, LENGTH = 0x00001000 + m_ivt (RX) : ORIGIN = 0x60001000, LENGTH = 0x00001000 + m_interrupts (RX) : ORIGIN = 0x60002000, LENGTH = 0x00000400 + m_text (RX) : ORIGIN = 0x60002400, LENGTH = 0x03FFDC00 + m_qacode (RX) : ORIGIN = 0x00000000, LENGTH = 0x00020000 + m_data (RW) : ORIGIN = 0x20000000, LENGTH = 0x00020000 + m_data2 (RW) : ORIGIN = 0x20200000, LENGTH = 0x00040000 +} + +/* Define output sections */ +SECTIONS +{ + __NCACHE_REGION_START = ORIGIN(m_data2); + __NCACHE_REGION_SIZE = 0; + + .flash_config : + { + . = ALIGN(4); + __FLASH_BASE = .; + KEEP(* (.boot_hdr.conf)) /* flash config section */ + . = ALIGN(4); + } > m_flash_config + + ivt_begin = ORIGIN(m_flash_config) + LENGTH(m_flash_config); + + .ivt : AT(ivt_begin) + { + . = ALIGN(4); + KEEP(* (.boot_hdr.ivt)) /* ivt section */ + KEEP(* (.boot_hdr.boot_data)) /* boot section */ + KEEP(* (.boot_hdr.dcd_data)) /* dcd section */ + . = ALIGN(4); + } > m_ivt + + /* The startup code goes first into internal RAM */ + .interrupts : + { + __VECTOR_TABLE = .; + __Vectors = .; + . = ALIGN(4); + KEEP(*(.isr_vector)) /* Startup code */ + . = ALIGN(4); + } > m_interrupts + + /* The program code and other data goes into internal RAM */ + .text : + { + . = ALIGN(4); + *(.text) /* .text sections (code) */ + *(.text*) /* .text* sections (code) */ + *(.rodata) /* .rodata sections (constants, strings, etc.) */ + *(.rodata*) /* .rodata* sections (constants, strings, etc.) */ + *(.glue_7) /* glue arm to thumb code */ + *(.glue_7t) /* glue thumb to arm code */ + *(.eh_frame) + KEEP (*(.init)) + KEEP (*(.fini)) + . = ALIGN(4); + } > m_text + + .ARM.extab : + { + *(.ARM.extab* .gnu.linkonce.armextab.*) + } > m_text + + .ARM : + { + __exidx_start = .; + *(.ARM.exidx*) + __exidx_end = .; + } > m_text + + .ctors : + { + __CTOR_LIST__ = .; + /* gcc uses crtbegin.o to find the start of + the constructors, so we make sure it is + first. Because this is a wildcard, it + doesn't matter if the user does not + actually link against crtbegin.o; the + linker won't look for a file to match a + wildcard. The wildcard also means that it + doesn't matter which directory crtbegin.o + is in. */ + KEEP (*crtbegin.o(.ctors)) + KEEP (*crtbegin?.o(.ctors)) + /* We don't want to include the .ctor section from + from the crtend.o file until after the sorted ctors. + The .ctor section from the crtend file contains the + end of ctors marker and it must be last */ + KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)) + KEEP (*(SORT(.ctors.*))) + KEEP (*(.ctors)) + __CTOR_END__ = .; + } > m_text + + .dtors : + { + __DTOR_LIST__ = .; + KEEP (*crtbegin.o(.dtors)) + KEEP (*crtbegin?.o(.dtors)) + KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)) + KEEP (*(SORT(.dtors.*))) + KEEP (*(.dtors)) + __DTOR_END__ = .; + } > m_text + + .preinit_array : + { + PROVIDE_HIDDEN (__preinit_array_start = .); + KEEP (*(.preinit_array*)) + PROVIDE_HIDDEN (__preinit_array_end = .); + } > m_text + + .init_array : + { + PROVIDE_HIDDEN (__init_array_start = .); + KEEP (*(SORT(.init_array.*))) + KEEP (*(.init_array*)) + PROVIDE_HIDDEN (__init_array_end = .); + } > m_text + + .fini_array : + { + PROVIDE_HIDDEN (__fini_array_start = .); + KEEP (*(SORT(.fini_array.*))) + KEEP (*(.fini_array*)) + PROVIDE_HIDDEN (__fini_array_end = .); + } > m_text + + __etext = .; /* define a global symbol at end of code */ + __DATA_ROM = .; /* Symbol is used by startup for data initialization */ + + .interrupts_ram : + { + . = ALIGN(4); + __VECTOR_RAM__ = .; + __interrupts_ram_start__ = .; /* Create a global symbol at data start */ + *(.m_interrupts_ram) /* This is a user defined section */ + . += VECTOR_RAM_SIZE; + . = ALIGN(4); + __interrupts_ram_end__ = .; /* Define a global symbol at data end */ + } > m_data + + __VECTOR_RAM = DEFINED(__ram_vector_table__) ? __VECTOR_RAM__ : ORIGIN(m_interrupts); + __RAM_VECTOR_TABLE_SIZE_BYTES = DEFINED(__ram_vector_table__) ? (__interrupts_ram_end__ - __interrupts_ram_start__) : 0x0; + + .data : AT(__DATA_ROM) + { + . = ALIGN(4); + __DATA_RAM = .; + __data_start__ = .; /* create a global symbol at data start */ + *(.data) /* .data sections */ + *(.data*) /* .data* sections */ + *(DataQuickAccess) /* quick access data section */ + KEEP(*(.jcr*)) + . = ALIGN(4); + __data_end__ = .; /* define a global symbol at data end */ + } > m_data + + __ram_function_flash_start = __DATA_ROM + (__data_end__ - __data_start__); /* Symbol is used by startup for TCM data initialization */ + + .ram_function : AT(__ram_function_flash_start) + { + . = ALIGN(32); + __ram_function_start__ = .; + *(CodeQuickAccess) + . = ALIGN(128); + __ram_function_end__ = .; + } > m_qacode + + __NDATA_ROM = __ram_function_flash_start + (__ram_function_end__ - __ram_function_start__); + .ncache.init : AT(__NDATA_ROM) + { + __noncachedata_start__ = .; /* create a global symbol at ncache data start */ + *(NonCacheable.init) + . = ALIGN(4); + __noncachedata_init_end__ = .; /* create a global symbol at initialized ncache data end */ + } > m_data + . = __noncachedata_init_end__; + .ncache : + { + *(NonCacheable) + . = ALIGN(4); + __noncachedata_end__ = .; /* define a global symbol at ncache data end */ + } > m_data + + __DATA_END = __NDATA_ROM + (__noncachedata_init_end__ - __noncachedata_start__); + text_end = ORIGIN(m_text) + LENGTH(m_text); + ASSERT(__DATA_END <= text_end, "region m_text overflowed with text and data") + + /* Uninitialized data section */ + .bss : + { + /* This is used by the startup in order to initialize the .bss section */ + . = ALIGN(4); + __START_BSS = .; + __bss_start__ = .; + *(.bss) + *(.bss*) + *(COMMON) + . = ALIGN(4); + __bss_end__ = .; + __END_BSS = .; + } > m_data + + .heap : + { + . = ALIGN(8); + __end__ = .; + PROVIDE(end = .); + __HeapBase = .; + . += HEAP_SIZE; + __HeapLimit = .; + __heap_limit = .; /* Add for _sbrk */ + } > m_data + + .stack : + { + . = ALIGN(8); + . += STACK_SIZE; + } > m_data + + /* Initializes stack on the end of block */ + __StackTop = ORIGIN(m_data) + LENGTH(m_data); + __StackLimit = __StackTop - STACK_SIZE; + PROVIDE(__stack = __StackTop); + + .ARM.attributes 0 : { *(.ARM.attributes) } + + ASSERT(__StackLimit >= __HeapLimit, "region m_data overflowed with stack and heap") +} diff --git a/cmake/linker/MIMXRT1052xxxxx_flexspi_nor_sdram.ld b/cmake/linker/MIMXRT1052xxxxx_flexspi_nor_sdram.ld new file mode 100644 index 0000000..e798502 --- /dev/null +++ b/cmake/linker/MIMXRT1052xxxxx_flexspi_nor_sdram.ld @@ -0,0 +1,280 @@ +/* +** ################################################################### +** Processors: MIMXRT1052CVJ5B +** MIMXRT1052CVL5B +** MIMXRT1052DVJ6B +** MIMXRT1052DVL6B +** +** Compiler: GNU C Compiler +** Reference manual: IMXRT1050RM Rev.5, 07/2021 | IMXRT1050SRM Rev.2 +** Version: rev. 1.0, 2018-09-21 +** Build: b241024 +** +** Abstract: +** Linker file for the GNU C Compiler +** +** Copyright 2016 Freescale Semiconductor, Inc. +** Copyright 2016-2024 NXP +** SPDX-License-Identifier: BSD-3-Clause +** +** http: www.nxp.com +** mail: support@nxp.com +** +** ################################################################### +*/ + +/* Entry Point */ +ENTRY(Reset_Handler) + +HEAP_SIZE = DEFINED(__heap_size__) ? __heap_size__ : 0x0400; +STACK_SIZE = DEFINED(__stack_size__) ? __stack_size__ : 0x0400; +VECTOR_RAM_SIZE = DEFINED(__ram_vector_table__) ? 0x00000400 : 0; +NCACHE_HEAP_START = DEFINED(__heap_noncacheable__) ? 0x82000000 - HEAP_SIZE : 0x81E00000 - HEAP_SIZE; +NCACHE_HEAP_SIZE = DEFINED(__heap_noncacheable__) ? HEAP_SIZE : 0x0000; + +/* Specify the memory areas */ +MEMORY +{ + m_flash_config (RX) : ORIGIN = 0x60000000, LENGTH = 0x00001000 + m_ivt (RX) : ORIGIN = 0x60001000, LENGTH = 0x00001000 + m_interrupts (RX) : ORIGIN = 0x60002000, LENGTH = 0x00000400 + m_text (RX) : ORIGIN = 0x60002400, LENGTH = 0x03FFDC00 + m_qacode (RX) : ORIGIN = 0x00000000, LENGTH = 0x00020000 + m_data (RW) : ORIGIN = 0x80000000, LENGTH = DEFINED(__heap_noncacheable__) ? 0x01E00000 : 0x01E00000 - HEAP_SIZE + m_ncache (RW) : ORIGIN = 0x81E00000, LENGTH = DEFINED(__heap_noncacheable__) ? 0x00200000 - HEAP_SIZE : 0x00200000 + m_data2 (RW) : ORIGIN = 0x20000000, LENGTH = 0x00020000 + m_data3 (RW) : ORIGIN = 0x20200000, LENGTH = 0x00040000 + m_heap (RW) : ORIGIN = NCACHE_HEAP_START, LENGTH = HEAP_SIZE +} + +/* Define output sections */ +SECTIONS +{ + __NCACHE_REGION_START = ORIGIN(m_ncache); + __NCACHE_REGION_SIZE = LENGTH(m_ncache) + NCACHE_HEAP_SIZE; + + .flash_config : + { + . = ALIGN(4); + __FLASH_BASE = .; + KEEP(* (.boot_hdr.conf)) /* flash config section */ + . = ALIGN(4); + } > m_flash_config + + ivt_begin = ORIGIN(m_flash_config) + LENGTH(m_flash_config); + + .ivt : AT(ivt_begin) + { + . = ALIGN(4); + KEEP(* (.boot_hdr.ivt)) /* ivt section */ + KEEP(* (.boot_hdr.boot_data)) /* boot section */ + KEEP(* (.boot_hdr.dcd_data)) /* dcd section */ + . = ALIGN(4); + } > m_ivt + + /* The startup code goes first into internal RAM */ + .interrupts : + { + __VECTOR_TABLE = .; + __Vectors = .; + . = ALIGN(4); + KEEP(*(.isr_vector)) /* Startup code */ + . = ALIGN(4); + } > m_interrupts + + /* The program code and other data goes into internal RAM */ + .text : + { + . = ALIGN(4); + *(.text) /* .text sections (code) */ + *(.text*) /* .text* sections (code) */ + *(.rodata) /* .rodata sections (constants, strings, etc.) */ + *(.rodata*) /* .rodata* sections (constants, strings, etc.) */ + *(.glue_7) /* glue arm to thumb code */ + *(.glue_7t) /* glue thumb to arm code */ + *(.eh_frame) + KEEP (*(.init)) + KEEP (*(.fini)) + . = ALIGN(4); + } > m_text + + .ARM.extab : + { + *(.ARM.extab* .gnu.linkonce.armextab.*) + } > m_text + + .ARM : + { + __exidx_start = .; + *(.ARM.exidx*) + __exidx_end = .; + } > m_text + + .ctors : + { + __CTOR_LIST__ = .; + /* gcc uses crtbegin.o to find the start of + the constructors, so we make sure it is + first. Because this is a wildcard, it + doesn't matter if the user does not + actually link against crtbegin.o; the + linker won't look for a file to match a + wildcard. The wildcard also means that it + doesn't matter which directory crtbegin.o + is in. */ + KEEP (*crtbegin.o(.ctors)) + KEEP (*crtbegin?.o(.ctors)) + /* We don't want to include the .ctor section from + from the crtend.o file until after the sorted ctors. + The .ctor section from the crtend file contains the + end of ctors marker and it must be last */ + KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)) + KEEP (*(SORT(.ctors.*))) + KEEP (*(.ctors)) + __CTOR_END__ = .; + } > m_text + + .dtors : + { + __DTOR_LIST__ = .; + KEEP (*crtbegin.o(.dtors)) + KEEP (*crtbegin?.o(.dtors)) + KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)) + KEEP (*(SORT(.dtors.*))) + KEEP (*(.dtors)) + __DTOR_END__ = .; + } > m_text + + .preinit_array : + { + PROVIDE_HIDDEN (__preinit_array_start = .); + KEEP (*(.preinit_array*)) + PROVIDE_HIDDEN (__preinit_array_end = .); + } > m_text + + .init_array : + { + PROVIDE_HIDDEN (__init_array_start = .); + KEEP (*(SORT(.init_array.*))) + KEEP (*(.init_array*)) + PROVIDE_HIDDEN (__init_array_end = .); + } > m_text + + .fini_array : + { + PROVIDE_HIDDEN (__fini_array_start = .); + KEEP (*(SORT(.fini_array.*))) + KEEP (*(.fini_array*)) + PROVIDE_HIDDEN (__fini_array_end = .); + } > m_text + + __etext = .; /* define a global symbol at end of code */ + __DATA_ROM = .; /* Symbol is used by startup for data initialization */ + + .interrupts_ram : + { + . = ALIGN(4); + __VECTOR_RAM__ = .; + __interrupts_ram_start__ = .; /* Create a global symbol at data start */ + *(.m_interrupts_ram) /* This is a user defined section */ + . += VECTOR_RAM_SIZE; + . = ALIGN(4); + __interrupts_ram_end__ = .; /* Define a global symbol at data end */ + } > m_data + + __VECTOR_RAM = DEFINED(__ram_vector_table__) ? __VECTOR_RAM__ : ORIGIN(m_interrupts); + __RAM_VECTOR_TABLE_SIZE_BYTES = DEFINED(__ram_vector_table__) ? (__interrupts_ram_end__ - __interrupts_ram_start__) : 0x0; + + .data : AT(__DATA_ROM) + { + . = ALIGN(4); + __DATA_RAM = .; + __data_start__ = .; /* create a global symbol at data start */ + *(CacheLineData.init) + . = ALIGN(32); /* cache line size = 32 bytes */ + *(.data) /* .data sections */ + *(.data*) /* .data* sections */ + KEEP(*(.jcr*)) + . = ALIGN(4); + __data_end__ = .; /* define a global symbol at data end */ + } > m_data + + __ram_function_flash_start = __DATA_ROM + (__data_end__ - __data_start__); /* Symbol is used by startup for TCM data initialization */ + + .ram_function : AT(__ram_function_flash_start) + { + . = ALIGN(32); + __ram_function_start__ = .; + *(CodeQuickAccess) + . = ALIGN(128); + __ram_function_end__ = .; + } > m_qacode + + __NDATA_ROM = __ram_function_flash_start + (__ram_function_end__ - __ram_function_start__); + .ncache.init : AT(__NDATA_ROM) + { + __noncachedata_start__ = .; /* create a global symbol at ncache data start */ + *(NonCacheable.init) + . = ALIGN(4); + __noncachedata_init_end__ = .; /* create a global symbol at initialized ncache data end */ + } > m_ncache + . = __noncachedata_init_end__; + .ncache : + { + *(NonCacheable) + . = ALIGN(4); + __noncachedata_end__ = .; /* define a global symbol at ncache data end */ + } > m_ncache + + __DATA_END = __NDATA_ROM + (__noncachedata_init_end__ - __noncachedata_start__); + text_end = ORIGIN(m_text) + LENGTH(m_text); + ASSERT(__DATA_END <= text_end, "region m_text overflowed with text and data") + + .qadata : + { + . = ALIGN(4); + *(DataQuickAccess) /* quick access data section */ + . = ALIGN(4); + } > m_data2 + + /* Uninitialized data section */ + .bss : + { + /* This is used by the startup in order to initialize the .bss section */ + . = ALIGN(4); + __START_BSS = .; + __bss_start__ = .; + *(CacheLineData) + . = ALIGN(32); /* cache line size = 32 bytes */ + *(.bss) + *(.bss*) + *(COMMON) + . = ALIGN(4); + __bss_end__ = .; + __END_BSS = .; + } > m_data + + .heap : + { + . = ALIGN(8); + __end__ = .; + PROVIDE(end = .); + __HeapBase = .; + . += HEAP_SIZE; + __HeapLimit = .; + __heap_limit = .; /* Add for _sbrk */ + } > m_heap + + .stack : + { + . = ALIGN(8); + . += STACK_SIZE; + } > m_data + + /* Initializes stack on the end of block */ + __StackTop = ORIGIN(m_data) + LENGTH(m_data); + __StackLimit = __StackTop - STACK_SIZE; + PROVIDE(__stack = __StackTop); + + .ARM.attributes 0 : { *(.ARM.attributes) } +} diff --git a/cmake/linker/MIMXRT1052xxxxx_ram.ld b/cmake/linker/MIMXRT1052xxxxx_ram.ld new file mode 100644 index 0000000..6dad340 --- /dev/null +++ b/cmake/linker/MIMXRT1052xxxxx_ram.ld @@ -0,0 +1,223 @@ +/* +** ################################################################### +** Processors: MIMXRT1052CVJ5B +** MIMXRT1052CVL5B +** MIMXRT1052DVJ6B +** MIMXRT1052DVL6B +** +** Compiler: GNU C Compiler +** Reference manual: IMXRT1050RM Rev.5, 07/2021 | IMXRT1050SRM Rev.2 +** Version: rev. 1.0, 2018-09-21 +** Build: b241024 +** +** Abstract: +** Linker file for the GNU C Compiler +** +** Copyright 2016 Freescale Semiconductor, Inc. +** Copyright 2016-2024 NXP +** SPDX-License-Identifier: BSD-3-Clause +** +** http: www.nxp.com +** mail: support@nxp.com +** +** ################################################################### +*/ + +/* Entry Point */ +ENTRY(Reset_Handler) + +HEAP_SIZE = DEFINED(__heap_size__) ? __heap_size__ : 0x0400; +STACK_SIZE = DEFINED(__stack_size__) ? __stack_size__ : 0x0400; + +/* Specify the memory areas */ +MEMORY +{ + m_interrupts (RX) : ORIGIN = 0x00000000, LENGTH = 0x00000400 + m_text (RX) : ORIGIN = 0x00000400, LENGTH = 0x0001FC00 + m_data (RW) : ORIGIN = 0x20000000, LENGTH = 0x00020000 + m_data2 (RW) : ORIGIN = 0x20200000, LENGTH = 0x00040000 +} + +/* Define output sections */ +SECTIONS +{ + __NCACHE_REGION_START = ORIGIN(m_data2); + __NCACHE_REGION_SIZE = 0; + + /* The startup code goes first into internal RAM */ + .interrupts : + { + __VECTOR_TABLE = .; + __Vectors = .; + . = ALIGN(4); + KEEP(*(.isr_vector)) /* Startup code */ + . = ALIGN(4); + } > m_interrupts + + /* The program code and other data goes into internal RAM */ + .text : + { + . = ALIGN(4); + *(.text) /* .text sections (code) */ + *(.text*) /* .text* sections (code) */ + *(.rodata) /* .rodata sections (constants, strings, etc.) */ + *(.rodata*) /* .rodata* sections (constants, strings, etc.) */ + *(CodeQuickAccess) /* quick access code section */ + *(.glue_7) /* glue arm to thumb code */ + *(.glue_7t) /* glue thumb to arm code */ + *(.eh_frame) + KEEP (*(.init)) + KEEP (*(.fini)) + . = ALIGN(4); + } > m_text + + .ARM.extab : + { + *(.ARM.extab* .gnu.linkonce.armextab.*) + } > m_text + + .ARM : + { + __exidx_start = .; + *(.ARM.exidx*) + __exidx_end = .; + } > m_text + + .ctors : + { + __CTOR_LIST__ = .; + /* gcc uses crtbegin.o to find the start of + the constructors, so we make sure it is + first. Because this is a wildcard, it + doesn't matter if the user does not + actually link against crtbegin.o; the + linker won't look for a file to match a + wildcard. The wildcard also means that it + doesn't matter which directory crtbegin.o + is in. */ + KEEP (*crtbegin.o(.ctors)) + KEEP (*crtbegin?.o(.ctors)) + /* We don't want to include the .ctor section from + from the crtend.o file until after the sorted ctors. + The .ctor section from the crtend file contains the + end of ctors marker and it must be last */ + KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)) + KEEP (*(SORT(.ctors.*))) + KEEP (*(.ctors)) + __CTOR_END__ = .; + } > m_text + + .dtors : + { + __DTOR_LIST__ = .; + KEEP (*crtbegin.o(.dtors)) + KEEP (*crtbegin?.o(.dtors)) + KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)) + KEEP (*(SORT(.dtors.*))) + KEEP (*(.dtors)) + __DTOR_END__ = .; + } > m_text + + .preinit_array : + { + PROVIDE_HIDDEN (__preinit_array_start = .); + KEEP (*(.preinit_array*)) + PROVIDE_HIDDEN (__preinit_array_end = .); + } > m_text + + .init_array : + { + PROVIDE_HIDDEN (__init_array_start = .); + KEEP (*(SORT(.init_array.*))) + KEEP (*(.init_array*)) + PROVIDE_HIDDEN (__init_array_end = .); + } > m_text + + .fini_array : + { + PROVIDE_HIDDEN (__fini_array_start = .); + KEEP (*(SORT(.fini_array.*))) + KEEP (*(.fini_array*)) + PROVIDE_HIDDEN (__fini_array_end = .); + } > m_text + + __etext = .; /* define a global symbol at end of code */ + __DATA_ROM = .; /* Symbol is used by startup for data initialization */ + + __VECTOR_RAM = ORIGIN(m_interrupts); + __RAM_VECTOR_TABLE_SIZE_BYTES = 0x0; + + .data : AT(__DATA_ROM) + { + . = ALIGN(4); + __DATA_RAM = .; + __data_start__ = .; /* create a global symbol at data start */ + *(.data) /* .data sections */ + *(.data*) /* .data* sections */ + *(DataQuickAccess) /* quick access data section */ + KEEP(*(.jcr*)) + . = ALIGN(4); + __data_end__ = .; /* define a global symbol at data end */ + } > m_data + + __NDATA_ROM = __DATA_ROM + (__data_end__ - __data_start__); + .ncache.init : AT(__NDATA_ROM) + { + __noncachedata_start__ = .; /* create a global symbol at ncache data start */ + *(NonCacheable.init) + . = ALIGN(4); + __noncachedata_init_end__ = .; /* create a global symbol at initialized ncache data end */ + } > m_data + . = __noncachedata_init_end__; + .ncache : + { + *(NonCacheable) + . = ALIGN(4); + __noncachedata_end__ = .; /* define a global symbol at ncache data end */ + } > m_data + + __DATA_END = __NDATA_ROM + (__noncachedata_init_end__ - __noncachedata_start__); + text_end = ORIGIN(m_text) + LENGTH(m_text); + ASSERT(__DATA_END <= text_end, "region m_text overflowed with text and data") + + /* Uninitialized data section */ + .bss : + { + /* This is used by the startup in order to initialize the .bss section */ + . = ALIGN(4); + __START_BSS = .; + __bss_start__ = .; + *(.bss) + *(.bss*) + *(COMMON) + . = ALIGN(4); + __bss_end__ = .; + __END_BSS = .; + } > m_data + + .heap : + { + . = ALIGN(8); + __end__ = .; + PROVIDE(end = .); + __HeapBase = .; + . += HEAP_SIZE; + __HeapLimit = .; + __heap_limit = .; /* Add for _sbrk */ + } > m_data + + .stack : + { + . = ALIGN(8); + . += STACK_SIZE; + } > m_data + + /* Initializes stack on the end of block */ + __StackTop = ORIGIN(m_data) + LENGTH(m_data); + __StackLimit = __StackTop - STACK_SIZE; + PROVIDE(__stack = __StackTop); + + .ARM.attributes 0 : { *(.ARM.attributes) } + + ASSERT(__StackLimit >= __HeapLimit, "region m_data overflowed with stack and heap") +} diff --git a/cmake/linker/MIMXRT1052xxxxx_sdram.ld b/cmake/linker/MIMXRT1052xxxxx_sdram.ld new file mode 100644 index 0000000..bf669a8 --- /dev/null +++ b/cmake/linker/MIMXRT1052xxxxx_sdram.ld @@ -0,0 +1,236 @@ +/* +** ################################################################### +** Processors: MIMXRT1052CVJ5B +** MIMXRT1052CVL5B +** MIMXRT1052DVJ6B +** MIMXRT1052DVL6B +** +** Compiler: GNU C Compiler +** Reference manual: IMXRT1050RM Rev.5, 07/2021 | IMXRT1050SRM Rev.2 +** Version: rev. 1.0, 2018-09-21 +** Build: b241024 +** +** Abstract: +** Linker file for the GNU C Compiler +** +** Copyright 2016 Freescale Semiconductor, Inc. +** Copyright 2016-2024 NXP +** SPDX-License-Identifier: BSD-3-Clause +** +** http: www.nxp.com +** mail: support@nxp.com +** +** ################################################################### +*/ + +/* Entry Point */ +ENTRY(Reset_Handler) + +HEAP_SIZE = DEFINED(__heap_size__) ? __heap_size__ : 0x0400; +STACK_SIZE = DEFINED(__stack_size__) ? __stack_size__ : 0x0400; +NCACHE_HEAP_START = DEFINED(__heap_noncacheable__) ? 0x82000000 - HEAP_SIZE : 0x81E00000 - HEAP_SIZE; +NCACHE_HEAP_SIZE = DEFINED(__heap_noncacheable__) ? HEAP_SIZE : 0x0000; + +/* Specify the memory areas */ +MEMORY +{ + m_interrupts (RX) : ORIGIN = 0x00000000, LENGTH = 0x00000400 + m_text (RX) : ORIGIN = 0x00000400, LENGTH = 0x0001FC00 + m_data (RW) : ORIGIN = 0x80000000, LENGTH = DEFINED(__heap_noncacheable__) ? 0x01E00000 : 0x01E00000 - HEAP_SIZE + m_ncache (RW) : ORIGIN = 0x81E00000, LENGTH = DEFINED(__heap_noncacheable__) ? 0x00200000 - HEAP_SIZE : 0x00200000 + m_data2 (RW) : ORIGIN = 0x20000000, LENGTH = 0x00020000 + m_data3 (RW) : ORIGIN = 0x20200000, LENGTH = 0x00040000 + m_heap (RW) : ORIGIN = NCACHE_HEAP_START, LENGTH = HEAP_SIZE +} + +/* Define output sections */ +SECTIONS +{ + __NCACHE_REGION_START = ORIGIN(m_ncache); + __NCACHE_REGION_SIZE = LENGTH(m_ncache) + NCACHE_HEAP_SIZE; + + /* The startup code goes first into internal RAM */ + .interrupts : + { + __VECTOR_TABLE = .; + __Vectors = .; + . = ALIGN(4); + KEEP(*(.isr_vector)) /* Startup code */ + . = ALIGN(4); + } > m_interrupts + + /* The program code and other data goes into internal RAM */ + .text : + { + . = ALIGN(4); + *(.text) /* .text sections (code) */ + *(.text*) /* .text* sections (code) */ + *(.rodata) /* .rodata sections (constants, strings, etc.) */ + *(.rodata*) /* .rodata* sections (constants, strings, etc.) */ + *(CodeQuickAccess) /* quick access code section */ + *(.glue_7) /* glue arm to thumb code */ + *(.glue_7t) /* glue thumb to arm code */ + *(.eh_frame) + KEEP (*(.init)) + KEEP (*(.fini)) + . = ALIGN(4); + } > m_text + + .ARM.extab : + { + *(.ARM.extab* .gnu.linkonce.armextab.*) + } > m_text + + .ARM : + { + __exidx_start = .; + *(.ARM.exidx*) + __exidx_end = .; + } > m_text + + .ctors : + { + __CTOR_LIST__ = .; + /* gcc uses crtbegin.o to find the start of + the constructors, so we make sure it is + first. Because this is a wildcard, it + doesn't matter if the user does not + actually link against crtbegin.o; the + linker won't look for a file to match a + wildcard. The wildcard also means that it + doesn't matter which directory crtbegin.o + is in. */ + KEEP (*crtbegin.o(.ctors)) + KEEP (*crtbegin?.o(.ctors)) + /* We don't want to include the .ctor section from + from the crtend.o file until after the sorted ctors. + The .ctor section from the crtend file contains the + end of ctors marker and it must be last */ + KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)) + KEEP (*(SORT(.ctors.*))) + KEEP (*(.ctors)) + __CTOR_END__ = .; + } > m_text + + .dtors : + { + __DTOR_LIST__ = .; + KEEP (*crtbegin.o(.dtors)) + KEEP (*crtbegin?.o(.dtors)) + KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)) + KEEP (*(SORT(.dtors.*))) + KEEP (*(.dtors)) + __DTOR_END__ = .; + } > m_text + + .preinit_array : + { + PROVIDE_HIDDEN (__preinit_array_start = .); + KEEP (*(.preinit_array*)) + PROVIDE_HIDDEN (__preinit_array_end = .); + } > m_text + + .init_array : + { + PROVIDE_HIDDEN (__init_array_start = .); + KEEP (*(SORT(.init_array.*))) + KEEP (*(.init_array*)) + PROVIDE_HIDDEN (__init_array_end = .); + } > m_text + + .fini_array : + { + PROVIDE_HIDDEN (__fini_array_start = .); + KEEP (*(SORT(.fini_array.*))) + KEEP (*(.fini_array*)) + PROVIDE_HIDDEN (__fini_array_end = .); + } > m_text + + __etext = .; /* define a global symbol at end of code */ + __DATA_ROM = .; /* Symbol is used by startup for data initialization */ + + __VECTOR_RAM = ORIGIN(m_interrupts); + __RAM_VECTOR_TABLE_SIZE_BYTES = 0x0; + + .data : AT(__DATA_ROM) + { + . = ALIGN(4); + __DATA_RAM = .; + __data_start__ = .; /* create a global symbol at data start */ + *(CacheLineData.init) + . = ALIGN(32); /* cache line size = 32 bytes */ + *(.data) /* .data sections */ + *(.data*) /* .data* sections */ + KEEP(*(.jcr*)) + . = ALIGN(4); + __data_end__ = .; /* define a global symbol at data end */ + } > m_data + + __NDATA_ROM = __DATA_ROM + (__data_end__ - __data_start__); + .ncache.init : AT(__NDATA_ROM) + { + __noncachedata_start__ = .; /* create a global symbol at ncache data start */ + *(NonCacheable.init) + . = ALIGN(4); + __noncachedata_init_end__ = .; /* create a global symbol at initialized ncache data end */ + } > m_ncache + . = __noncachedata_init_end__; + .ncache : + { + *(NonCacheable) + . = ALIGN(4); + __noncachedata_end__ = .; /* define a global symbol at ncache data end */ + } > m_ncache + + __DATA_END = __NDATA_ROM + (__noncachedata_init_end__ - __noncachedata_start__); + text_end = ORIGIN(m_text) + LENGTH(m_text); + ASSERT(__DATA_END <= text_end, "region m_text overflowed with text and data") + + .qadata : + { + . = ALIGN(4); + *(DataQuickAccess) /* quick access data section */ + . = ALIGN(4); + } > m_data2 + + /* Uninitialized data section */ + .bss : + { + /* This is used by the startup in order to initialize the .bss section */ + . = ALIGN(4); + __START_BSS = .; + __bss_start__ = .; + *(CacheLineData) + . = ALIGN(32); /* cache line size = 32 bytes */ + *(.bss) + *(.bss*) + *(COMMON) + . = ALIGN(4); + __bss_end__ = .; + __END_BSS = .; + } > m_data + + .heap : + { + . = ALIGN(8); + __end__ = .; + PROVIDE(end = .); + __HeapBase = .; + . += HEAP_SIZE; + __HeapLimit = .; + __heap_limit = .; /* Add for _sbrk */ + } > m_heap + + .stack : + { + . = ALIGN(8); + . += STACK_SIZE; + } > m_data + + /* Initializes stack on the end of block */ + __StackTop = ORIGIN(m_data) + LENGTH(m_data); + __StackLimit = __StackTop - STACK_SIZE; + PROVIDE(__stack = __StackTop); + + .ARM.attributes 0 : { *(.ARM.attributes) } +} diff --git a/cmake/linker/MIMXRT1052xxxxx_sdram_txt.ld b/cmake/linker/MIMXRT1052xxxxx_sdram_txt.ld new file mode 100644 index 0000000..f78ac0f --- /dev/null +++ b/cmake/linker/MIMXRT1052xxxxx_sdram_txt.ld @@ -0,0 +1,247 @@ +/* +** ################################################################### +** Processors: MIMXRT1052CVJ5B +** MIMXRT1052CVL5B +** MIMXRT1052DVJ6B +** MIMXRT1052DVL6B +** +** Compiler: GNU C Compiler +** Reference manual: IMXRT1050RM Rev.5, 07/2021 | IMXRT1050SRM Rev.2 +** Version: rev. 1.0, 2018-09-21 +** Build: b241024 +** +** Abstract: +** Linker file for the GNU C Compiler +** +** Copyright 2016 Freescale Semiconductor, Inc. +** Copyright 2016-2024 NXP +** SPDX-License-Identifier: BSD-3-Clause +** +** http: www.nxp.com +** mail: support@nxp.com +** +** ################################################################### +*/ + +/* Entry Point */ +ENTRY(Reset_Handler) + +HEAP_SIZE = DEFINED(__heap_size__) ? __heap_size__ : 0x0400; +STACK_SIZE = DEFINED(__stack_size__) ? __stack_size__ : 0x0400; +NCACHE_HEAP_START = DEFINED(__heap_noncacheable__) ? 0x82000000 - HEAP_SIZE : 0x20240000 - HEAP_SIZE; +NCACHE_HEAP_SIZE = DEFINED(__heap_noncacheable__) ? HEAP_SIZE : 0x0000; + +/* Specify the memory areas */ +MEMORY +{ + m_interrupts (RX) : ORIGIN = 0x80000000, LENGTH = 0x00000400 + m_text (RX) : ORIGIN = 0x80000400, LENGTH = 0x001FFC00 + m_qacode (RX) : ORIGIN = 0x00000000, LENGTH = 0x00020000 + m_data (RW) : ORIGIN = 0x20200000, LENGTH = DEFINED(__heap_noncacheable__) ? 0x00040000 : 0x00040000 - HEAP_SIZE + m_data2 (RW) : ORIGIN = 0x20000000, LENGTH = 0x00020000 + m_data3 (RW) : ORIGIN = 0x80200000, LENGTH = 0x01C00000 + m_ncache (RW) : ORIGIN = 0x81E00000, LENGTH = DEFINED(__heap_noncacheable__) ? 0x00200000 - HEAP_SIZE : 0x00200000 + m_heap (RW) : ORIGIN = NCACHE_HEAP_START, LENGTH = HEAP_SIZE +} + +/* Define output sections */ +SECTIONS +{ + __NCACHE_REGION_START = ORIGIN(m_ncache); + __NCACHE_REGION_SIZE = LENGTH(m_ncache) + NCACHE_HEAP_SIZE; + + /* The startup code goes first into internal RAM */ + .interrupts : + { + __VECTOR_TABLE = .; + __Vectors = .; + . = ALIGN(4); + KEEP(*(.isr_vector)) /* Startup code */ + . = ALIGN(4); + } > m_interrupts + + /* The program code and other data goes into internal RAM */ + .text : + { + . = ALIGN(4); + *(.text) /* .text sections (code) */ + *(.text*) /* .text* sections (code) */ + *(.rodata) /* .rodata sections (constants, strings, etc.) */ + *(.rodata*) /* .rodata* sections (constants, strings, etc.) */ + *(.glue_7) /* glue arm to thumb code */ + *(.glue_7t) /* glue thumb to arm code */ + *(.eh_frame) + KEEP (*(.init)) + KEEP (*(.fini)) + . = ALIGN(4); + } > m_text + + .ARM.extab : + { + *(.ARM.extab* .gnu.linkonce.armextab.*) + } > m_text + + .ARM : + { + __exidx_start = .; + *(.ARM.exidx*) + __exidx_end = .; + } > m_text + + .ctors : + { + __CTOR_LIST__ = .; + /* gcc uses crtbegin.o to find the start of + the constructors, so we make sure it is + first. Because this is a wildcard, it + doesn't matter if the user does not + actually link against crtbegin.o; the + linker won't look for a file to match a + wildcard. The wildcard also means that it + doesn't matter which directory crtbegin.o + is in. */ + KEEP (*crtbegin.o(.ctors)) + KEEP (*crtbegin?.o(.ctors)) + /* We don't want to include the .ctor section from + from the crtend.o file until after the sorted ctors. + The .ctor section from the crtend file contains the + end of ctors marker and it must be last */ + KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)) + KEEP (*(SORT(.ctors.*))) + KEEP (*(.ctors)) + __CTOR_END__ = .; + } > m_text + + .dtors : + { + __DTOR_LIST__ = .; + KEEP (*crtbegin.o(.dtors)) + KEEP (*crtbegin?.o(.dtors)) + KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)) + KEEP (*(SORT(.dtors.*))) + KEEP (*(.dtors)) + __DTOR_END__ = .; + } > m_text + + .preinit_array : + { + PROVIDE_HIDDEN (__preinit_array_start = .); + KEEP (*(.preinit_array*)) + PROVIDE_HIDDEN (__preinit_array_end = .); + } > m_text + + .init_array : + { + PROVIDE_HIDDEN (__init_array_start = .); + KEEP (*(SORT(.init_array.*))) + KEEP (*(.init_array*)) + PROVIDE_HIDDEN (__init_array_end = .); + } > m_text + + .fini_array : + { + PROVIDE_HIDDEN (__fini_array_start = .); + KEEP (*(SORT(.fini_array.*))) + KEEP (*(.fini_array*)) + PROVIDE_HIDDEN (__fini_array_end = .); + } > m_text + + __etext = .; /* define a global symbol at end of code */ + __DATA_ROM = .; /* Symbol is used by startup for data initialization */ + + __VECTOR_RAM = ORIGIN(m_interrupts); + __RAM_VECTOR_TABLE_SIZE_BYTES = 0x0; + + .data : AT(__DATA_ROM) + { + . = ALIGN(4); + __DATA_RAM = .; + __data_start__ = .; /* create a global symbol at data start */ + *(CacheLineData.init) + . = ALIGN(32); /* cache line size = 32 bytes */ + *(.data) /* .data sections */ + *(.data*) /* .data* sections */ + KEEP(*(.jcr*)) + . = ALIGN(4); + __data_end__ = .; /* define a global symbol at data end */ + } > m_data + + __ram_function_flash_start = __DATA_ROM + (__data_end__ - __data_start__); /* Symbol is used by startup for TCM data initialization */ + + .ram_function : AT(__ram_function_flash_start) + { + . = ALIGN(32); + __ram_function_start__ = .; + *(CodeQuickAccess) + . = ALIGN(128); + __ram_function_end__ = .; + } > m_qacode + + __NDATA_ROM = __ram_function_flash_start + (__ram_function_end__ - __ram_function_start__); + .ncache.init : AT(__NDATA_ROM) + { + __noncachedata_start__ = .; /* create a global symbol at ncache data start */ + *(NonCacheable.init) + . = ALIGN(4); + __noncachedata_init_end__ = .; /* create a global symbol at initialized ncache data end */ + } > m_ncache + . = __noncachedata_init_end__; + .ncache : + { + *(NonCacheable) + . = ALIGN(4); + __noncachedata_end__ = .; /* define a global symbol at ncache data end */ + } > m_ncache + + __DATA_END = __NDATA_ROM + (__noncachedata_init_end__ - __noncachedata_start__); + text_end = ORIGIN(m_text) + LENGTH(m_text); + ASSERT(__DATA_END <= text_end, "region m_text overflowed with text and data") + + .qadata : + { + . = ALIGN(4); + *(DataQuickAccess) /* quick access data section */ + . = ALIGN(4); + } > m_data2 + + /* Uninitialized data section */ + .bss : + { + /* This is used by the startup in order to initialize the .bss section */ + . = ALIGN(4); + __START_BSS = .; + __bss_start__ = .; + *(CacheLineData) + . = ALIGN(32); /* cache line size = 32 bytes */ + *(.bss) + *(.bss*) + *(COMMON) + . = ALIGN(4); + __bss_end__ = .; + __END_BSS = .; + } > m_data + + .heap : + { + . = ALIGN(8); + __end__ = .; + PROVIDE(end = .); + __HeapBase = .; + . += HEAP_SIZE; + __HeapLimit = .; + __heap_limit = .; /* Add for _sbrk */ + } > m_heap + + .stack : + { + . = ALIGN(8); + . += STACK_SIZE; + } > m_data + + /* Initializes stack on the end of block */ + __StackTop = ORIGIN(m_data) + LENGTH(m_data); + __StackLimit = __StackTop - STACK_SIZE; + PROVIDE(__stack = __StackTop); + + .ARM.attributes 0 : { *(.ARM.attributes) } +} diff --git a/cmake/toolchain_arm.cmake b/cmake/toolchain_arm.cmake new file mode 100644 index 0000000..5b4c9d2 --- /dev/null +++ b/cmake/toolchain_arm.cmake @@ -0,0 +1,148 @@ +# Copyright 2025 NXP +# +# SPDX-License-Identifier: BSD-3-Clause + +# TOOLCHAIN EXTENSION +if(WIN32) + set(TOOLCHAIN_EXT ".exe") +else() + set(TOOLCHAIN_EXT "") +endif() + +# EXECUTABLE EXTENSION +set(CMAKE_EXECUTABLE_SUFFIX ".elf") + +# ----------------------------------------------------------------------------- +# Путь к тулчейну В devcontainer: /opt/arm-toolchain (symlink на конкретную +# версию) Переопределяется через переменную окружения ARMGCC_DIR если нужно +# ----------------------------------------------------------------------------- +if(DEFINED ENV{ARMGCC_DIR}) + set(TOOLCHAIN_DIR $ENV{ARMGCC_DIR}) + string(REGEX REPLACE "\\\\" "/" TOOLCHAIN_DIR "${TOOLCHAIN_DIR}") +else() + set(TOOLCHAIN_DIR "/opt/arm-toolchain") +endif() + +if(NOT EXISTS "${TOOLCHAIN_DIR}") + message( + FATAL_ERROR + "ARM toolchain not found at: ${TOOLCHAIN_DIR}\n" + "Set ARMGCC_DIR environment variable or install toolchain to /opt/arm-toolchain" + ) +endif() + +message(STATUS "ARM Toolchain: ${TOOLCHAIN_DIR}") + +# ----------------------------------------------------------------------------- +# Target triplet и пути +# ----------------------------------------------------------------------------- +set(TARGET_TRIPLET "arm-none-eabi") + +set(TOOLCHAIN_BIN_DIR ${TOOLCHAIN_DIR}/bin) +set(TOOLCHAIN_INC_DIR ${TOOLCHAIN_DIR}/${TARGET_TRIPLET}/include) +set(TOOLCHAIN_LIB_DIR ${TOOLCHAIN_DIR}/${TARGET_TRIPLET}/lib) + +# ----------------------------------------------------------------------------- +# CMake система и процессор +# ----------------------------------------------------------------------------- +set(CMAKE_SYSTEM_NAME Generic) +set(CMAKE_SYSTEM_PROCESSOR arm) + +# ----------------------------------------------------------------------------- +# Компиляторы +# ----------------------------------------------------------------------------- +set(CMAKE_C_COMPILER ${TOOLCHAIN_BIN_DIR}/${TARGET_TRIPLET}-gcc${TOOLCHAIN_EXT}) +set(CMAKE_CXX_COMPILER + ${TOOLCHAIN_BIN_DIR}/${TARGET_TRIPLET}-g++${TOOLCHAIN_EXT}) +set(CMAKE_ASM_COMPILER + ${TOOLCHAIN_BIN_DIR}/${TARGET_TRIPLET}-gcc${TOOLCHAIN_EXT}) + +set(CMAKE_C_COMPILER_FORCED TRUE) +set(CMAKE_CXX_COMPILER_FORCED TRUE) + +# ----------------------------------------------------------------------------- +# Утилиты +# ----------------------------------------------------------------------------- +set(CMAKE_OBJCOPY + "${TOOLCHAIN_BIN_DIR}/${TARGET_TRIPLET}-objcopy" + CACHE INTERNAL "objcopy") +set(CMAKE_OBJDUMP + "${TOOLCHAIN_BIN_DIR}/${TARGET_TRIPLET}-objdump" + CACHE INTERNAL "objdump") +set(CMAKE_SIZE + "${TOOLCHAIN_BIN_DIR}/${TARGET_TRIPLET}-size" + CACHE INTERNAL "size") + +# ----------------------------------------------------------------------------- +# Флаги процессора — MIMXRT1052 (Cortex-M7, FPv5-D16, hard-float ABI) +# ----------------------------------------------------------------------------- +set(CPU_FLAGS + "-mcpu=cortex-m7 -mthumb -mfpu=fpv5-d16 -mfloat-abi=hard -ffunction-sections -fdata-sections" +) +set(CMAKE_C_FLAGS + "${CMAKE_C_FLAGS} ${CPU_FLAGS}" + CACHE INTERNAL "") +set(CMAKE_CXX_FLAGS + "${CMAKE_CXX_FLAGS} ${CPU_FLAGS}" + CACHE INTERNAL "") +set(CMAKE_ASM_FLAGS + "${CMAKE_ASM_FLAGS} ${CPU_FLAGS}" + CACHE INTERNAL "") + +# ----------------------------------------------------------------------------- +# Флаги по типу сборки +# ----------------------------------------------------------------------------- +set(CMAKE_C_FLAGS_DEBUG + "-O0 -g3 -gdwarf-4" + CACHE INTERNAL "") +set(CMAKE_CXX_FLAGS_DEBUG + "-O0 -g3 -gdwarf-4" + CACHE INTERNAL "") +set(CMAKE_ASM_FLAGS_DEBUG + "-g" + CACHE INTERNAL "") + +set(CMAKE_C_FLAGS_RELEASE + "-O3 -DNDEBUG" + CACHE INTERNAL "") +set(CMAKE_CXX_FLAGS_RELEASE + "-O3 -DNDEBUG" + CACHE INTERNAL "") +set(CMAKE_ASM_FLAGS_RELEASE + "" + CACHE INTERNAL "") + +# ----------------------------------------------------------------------------- +# C runtime библиотека — newlib-nano (меньше размер, подходит для embedded) +# ----------------------------------------------------------------------------- +# nano.specs — выбирает компактную версию newlib-nano (меньший размер printf, +# malloc и т.д.). Но не предоставляет реализацию системных вызовов. + +# nosys.specs — предоставляет именно заглушки syscalls. Без него newlib ожидает +# что ты сам реализуешь _sbrk, _write, _exit и т.д. — либо через semihosting, +# либо вручную. + +# --gc-sections — убирает неиспользуемые секции кода и данных. Работает в паре с +# -ffunction-sections -fdata-sections у компилятора (каждая функция в отдельной +# секции — линкер выбрасывает ненужные). +set(CMAKE_EXE_LINKER_FLAGS_INIT "--specs=nano.specs -Wl,--no-warn-rwx-segments") + +# ----------------------------------------------------------------------------- +# Общие флаги линкера +# ----------------------------------------------------------------------------- +set(CMAKE_EXE_LINKER_FLAGS_DEBUG + "" + CACHE INTERNAL "") +set(CMAKE_EXE_LINKER_FLAGS_RELEASE + "" + CACHE INTERNAL "") + +# ----------------------------------------------------------------------------- +# Поиск библиотек только в тулчейне, не на хосте +# ----------------------------------------------------------------------------- +set(CMAKE_FIND_ROOT_PATH ${TOOLCHAIN_DIR}/${TARGET_TRIPLET} ${EXTRA_FIND_PATH}) +set(CMAKE_FIND_ROOT_PATH_MODE_PROGRAM NEVER) +set(CMAKE_FIND_ROOT_PATH_MODE_LIBRARY ONLY) +set(CMAKE_FIND_ROOT_PATH_MODE_INCLUDE ONLY) + +message(STATUS "Build type: " ${CMAKE_BUILD_TYPE}) diff --git a/cmake/toolchain_host.cmake b/cmake/toolchain_host.cmake new file mode 100644 index 0000000..a204a1b --- /dev/null +++ b/cmake/toolchain_host.cmake @@ -0,0 +1,66 @@ +# Host GCC Toolchain — для сборки и запуска host-тестов (Unity + fff) +# Используется с пресетами: host-debug, host-release + +# ----------------------------------------------------------------------------- +# Нативная сборка — система и процессор хоста +# ----------------------------------------------------------------------------- +set(CMAKE_SYSTEM_NAME ${CMAKE_HOST_SYSTEM_NAME}) + +# ----------------------------------------------------------------------------- +# Компиляторы +# Clang доступен в devcontainer (clang-17), используем его для +# совместимости с clangd/clang-tidy. GCC как fallback. +# ----------------------------------------------------------------------------- +find_program(HOST_C_COMPILER NAMES clang-17 clang gcc) +find_program(HOST_CXX_COMPILER NAMES clang++-17 clang++ g++) + +if(NOT HOST_C_COMPILER) + message(FATAL_ERROR "Host C compiler not found. Install clang or gcc.") +endif() + +set(CMAKE_C_COMPILER "${HOST_C_COMPILER}") +set(CMAKE_CXX_COMPILER "${HOST_CXX_COMPILER}") + +message(STATUS "Host C compiler: ${CMAKE_C_COMPILER}") +message(STATUS "Host CXX compiler: ${CMAKE_CXX_COMPILER}") + +# ----------------------------------------------------------------------------- +# Флаги по типу сборки +# ----------------------------------------------------------------------------- +set(CMAKE_C_FLAGS_DEBUG "-O0 -g3 -gdwarf-4" CACHE INTERNAL "") +set(CMAKE_CXX_FLAGS_DEBUG "-O0 -g3 -gdwarf-4" CACHE INTERNAL "") + +set(CMAKE_C_FLAGS_RELEASE "-O2 -DNDEBUG" CACHE INTERNAL "") +set(CMAKE_CXX_FLAGS_RELEASE "-O2 -DNDEBUG" CACHE INTERNAL "") + +# ----------------------------------------------------------------------------- +# Покрытие кода — включается при Debug сборке для host-тестов +# Используется с lcov/gcovr для генерации отчётов +# ----------------------------------------------------------------------------- +if(CMAKE_BUILD_TYPE STREQUAL "Debug") + set(CMAKE_C_FLAGS_DEBUG + "${CMAKE_C_FLAGS_DEBUG} --coverage -fprofile-arcs -ftest-coverage" + CACHE INTERNAL "") + set(CMAKE_CXX_FLAGS_DEBUG + "${CMAKE_CXX_FLAGS_DEBUG} --coverage -fprofile-arcs -ftest-coverage" + CACHE INTERNAL "") +endif() + +# ----------------------------------------------------------------------------- +# Санитайзеры для Debug сборки — помогают ловить UB и утечки памяти +# Отключи если тормозит или конфликтует с тестовым фреймворком +# ----------------------------------------------------------------------------- +option(ENABLE_SANITIZERS "Enable AddressSanitizer + UBSanitizer" ON) + +if(ENABLE_SANITIZERS AND CMAKE_BUILD_TYPE STREQUAL "Debug") + set(SANITIZER_FLAGS "-fsanitize=address,undefined -fno-omit-frame-pointer") + set(CMAKE_C_FLAGS_DEBUG + "${CMAKE_C_FLAGS_DEBUG} ${SANITIZER_FLAGS}" CACHE INTERNAL "") + set(CMAKE_CXX_FLAGS_DEBUG + "${CMAKE_CXX_FLAGS_DEBUG} ${SANITIZER_FLAGS}" CACHE INTERNAL "") + set(CMAKE_EXE_LINKER_FLAGS_DEBUG + "${CMAKE_EXE_LINKER_FLAGS_DEBUG} ${SANITIZER_FLAGS}" CACHE INTERNAL "") + message(STATUS "Sanitizers: ON (Address + UB)") +endif() + +message(STATUS "Build type: ${CMAKE_BUILD_TYPE}") \ No newline at end of file diff --git a/docs/SDK_DRIVERS.md b/docs/SDK_DRIVERS.md new file mode 100644 index 0000000..629d4b3 --- /dev/null +++ b/docs/SDK_DRIVERS.md @@ -0,0 +1,30 @@ +# Программные компоненты ThirdParty + +## Библиотеки сторонних разработчиков, загруженные в виде субмодулей + +* [SEGGER_RTT](https://www.segger.com/products/debug-probes/j-link/technology/about-real-time-transfer/) +* [Unity](https://www.throwtheswitch.org/unity) +* [FFF](https://github.com/meekrosoft/fff) + +## Работа с Git-Submodules + +```bash +# 1. Добавление субмодулей (например SEGGER_RTT) +git submodule add https://github.com/SEGGERMicro/RTT ThirdParty/RTT +# 2. Синхронизация состояния субмодулей, загруженных локально с remote +git submodule update --init --recursive + +# Полная переинициализация субмодулей (На примере SEGGER_RTT) +# 1. Удалить submodule полностью +git submodule deinit -f ThirdParty/RTT +rm -rf .git/modules/ThirdParty/RTT +git rm -rf ThirdParty/RTT + +# 2. Удалить .gitmodules запись +vim .gitmodules # удалить секцию [submodule "ThirdParty/RTT"] + +# 3. Добавить заново +git submodule add https://github.com/SEGGERMicro/RTT ThirdParty/RTT +git submodule update --init --recursive + +``` diff --git a/firmware/test/CMakeLists.txt b/firmware/test/CMakeLists.txt new file mode 100644 index 0000000..f7a40b1 --- /dev/null +++ b/firmware/test/CMakeLists.txt @@ -0,0 +1,46 @@ +# firmware/test/CMakeLists.txt Тестовая прошивка — входной контроль платы на +# производстве + +add_executable(firmware_test main.c) + +# ----------------------------------------------------------------------------- +# Зависимости — только то что нужно для входного контроля bsp_board транзитивно +# даёт: sdk_device, sdk_clock, sdk_common, CPU_MIMXRT1052CVJ5B, XIP_* дефайны +# ----------------------------------------------------------------------------- +target_link_libraries( + firmware_test + PRIVATE bsp_board + # SDK драйверы периферии — добавляй по мере написания тестов + sdk_lpuart # UART тест + sdk_flexcan # CAN тест + sdk_gpio # GPIO тест (кнопки, светодиоды, входы) + sdk_usdhc # uSD тест + sdk_semc # SDRAM тест + # Опциональные библиотеки + lib_external # SEGGER RTT если включён через SEGGER_RTT_ENABLED +) + +# ----------------------------------------------------------------------------- +# Linker script +# ----------------------------------------------------------------------------- +# --gc-sections — убирает неиспользуемые секции кода и данных. Работает в паре с +# -ffunction-sections -fdata-sections у компилятора (каждая функция в отдельной +# секции — линкер выбрасывает ненужные). +target_link_options( + firmware_test + PRIVATE + -T${PROJECT_SOURCE_DIR}/cmake/linker/MIMXRT1052xxxxx_flexspi_nor.ld + -Wl,--gc-sections + -Wl,-Map=${CMAKE_BINARY_DIR}/firmware_test.map + -Wl,--print-memory-usage) + +# ----------------------------------------------------------------------------- +# Post-build: генерация .bin для прошивки через blhost +# ----------------------------------------------------------------------------- +add_custom_command( + TARGET firmware_test + POST_BUILD + COMMAND ${CMAKE_OBJCOPY} -O binary $ + ${CMAKE_BINARY_DIR}/firmware_test.bin + COMMAND ${CMAKE_SIZE} $ + COMMENT "Generating firmware_test.bin") diff --git a/firmware/test/main.c b/firmware/test/main.c new file mode 100644 index 0000000..0732849 --- /dev/null +++ b/firmware/test/main.c @@ -0,0 +1,35 @@ +/* + * Copyright (c) 2013 - 2015, Freescale Semiconductor, Inc. + * Copyright 2016-2017, 2024 NXP + * All rights reserved. + * + * SPDX-License-Identifier: BSD-3-Clause + */ + +#include "board.h" + +/******************************************************************************* + * Definitions + ******************************************************************************/ + +/******************************************************************************* + * Prototypes + ******************************************************************************/ + +/******************************************************************************* + * Variables + ******************************************************************************/ + +/******************************************************************************* + * Code + ******************************************************************************/ +/*! + * @brief Main function + */ +int main(void) { + + BOARD_Init(); + + while (1) { + } +} diff --git a/lib/CMakeLists.txt b/lib/CMakeLists.txt new file mode 100644 index 0000000..e9d90b1 --- /dev/null +++ b/lib/CMakeLists.txt @@ -0,0 +1,41 @@ +option(SEGGER_RTT_ENABLED "Enable SEGGER RTT library" OFF) +option(UNITY_TESTING_ENABLED "Enable Unity testing framework" OFF) + +# Создаём INTERFACE библиотеку для lib_external (агрегатор библиотек-субмодулей) +add_library(lib_external INTERFACE) + +message(STATUS "==== Included external libraries ====") + +# === SEGGER RTT === +if(SEGGER_RTT_ENABLED) + if(BUILD_TESTS_HOST) + message(STATUS "SEGGER RTT ❎") + else() + add_subdirectory(SEGGER/wrapper) + target_link_libraries(lib_external INTERFACE SeggerRTT) + message(STATUS "SEGGER RTT ✅") + endif() +else() + message(STATUS "SEGGER RTT ❎") +endif() + +# === UNITY Testing Framework === +if(UNITY_TESTING_ENABLED) + add_subdirectory(Unity) + target_link_libraries(lib_external INTERFACE unity) + message(STATUS "Unity ✅") +else() + message(STATUS "Unity ❎") +endif() + +# === FFF Mocking Framework === +if(UNITY_TESTING_ENABLED) + add_library(fff INTERFACE) + target_include_directories(fff INTERFACE ${CMAKE_CURRENT_SOURCE_DIR}/fff) + target_link_libraries(lib_external INTERFACE fff) + message(STATUS "FFF ✅") +else() + message(STATUS "FFF ❎") +endif() + +message(STATUS "==== ---------------- ====") diff --git a/lib/SEGGER/RTT/Config/SEGGER_RTT_Conf.h b/lib/SEGGER/RTT/Config/SEGGER_RTT_Conf.h new file mode 100644 index 0000000..fc78b6a --- /dev/null +++ b/lib/SEGGER/RTT/Config/SEGGER_RTT_Conf.h @@ -0,0 +1,440 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : SEGGER_RTT_Conf.h +Purpose : Implementation of SEGGER real-time transfer (RTT) which + allows real-time communication on targets which support + debugger memory accesses while the CPU is running. +Revision: $Rev: 24316 $ + +*/ + +#ifndef SEGGER_RTT_CONF_H +#define SEGGER_RTT_CONF_H + +#ifdef __IAR_SYSTEMS_ICC__ + #include +#endif + +/********************************************************************* +* +* Defines, configurable +* +********************************************************************** +*/ + +// +// Take in and set to correct values for Cortex-A systems with CPU cache +// +//#define SEGGER_RTT_CPU_CACHE_LINE_SIZE (32) // Largest cache line size (in bytes) in the current system +//#define SEGGER_RTT_UNCACHED_OFF (0xFB000000) // Address alias where RTT CB and buffers can be accessed uncached +// +// Most common case: +// Up-channel 0: RTT +// Up-channel 1: SystemView +// +#ifndef SEGGER_RTT_MAX_NUM_UP_BUFFERS + #define SEGGER_RTT_MAX_NUM_UP_BUFFERS (3) // Max. number of up-buffers (T->H) available on this target (Default: 3) +#endif +// +// Most common case: +// Down-channel 0: RTT +// Down-channel 1: SystemView +// +#ifndef SEGGER_RTT_MAX_NUM_DOWN_BUFFERS + #define SEGGER_RTT_MAX_NUM_DOWN_BUFFERS (3) // Max. number of down-buffers (H->T) available on this target (Default: 3) +#endif + +#ifndef BUFFER_SIZE_UP + #define BUFFER_SIZE_UP (1024) // Size of the buffer for terminal output of target, up to host (Default: 1k) +#endif + +#ifndef BUFFER_SIZE_DOWN + #define BUFFER_SIZE_DOWN (16) // Size of the buffer for terminal input to target from host (Usually keyboard input) (Default: 16) +#endif + +#ifndef SEGGER_RTT_PRINTF_BUFFER_SIZE + #define SEGGER_RTT_PRINTF_BUFFER_SIZE (64u) // Size of buffer for RTT printf to bulk-send chars via RTT (Default: 64) +#endif + +#ifndef SEGGER_RTT_MODE_DEFAULT + #define SEGGER_RTT_MODE_DEFAULT SEGGER_RTT_MODE_NO_BLOCK_SKIP // Mode for pre-initialized terminal channel (buffer 0) +#endif + +/********************************************************************* +* +* RTT memcpy configuration +* +* memcpy() is good for large amounts of data, +* but the overhead is big for small amounts, which are usually stored via RTT. +* With SEGGER_RTT_MEMCPY_USE_BYTELOOP a simple byte loop can be used instead. +* +* SEGGER_RTT_MEMCPY() can be used to replace standard memcpy() in RTT functions. +* This is may be required with memory access restrictions, +* such as on Cortex-A devices with MMU. +*/ +#ifndef SEGGER_RTT_MEMCPY_USE_BYTELOOP + #define SEGGER_RTT_MEMCPY_USE_BYTELOOP 0 // 0: Use memcpy/SEGGER_RTT_MEMCPY, 1: Use a simple byte-loop +#endif +// +// Example definition of SEGGER_RTT_MEMCPY to external memcpy with GCC toolchains and Cortex-A targets +// +//#if ((defined __SES_ARM) || (defined __CROSSWORKS_ARM) || (defined __GNUC__)) && (defined (__ARM_ARCH_7A__)) +// #define SEGGER_RTT_MEMCPY(pDest, pSrc, NumBytes) SEGGER_memcpy((pDest), (pSrc), (NumBytes)) +//#endif + +// +// Target is not allowed to perform other RTT operations while string still has not been stored completely. +// Otherwise we would probably end up with a mixed string in the buffer. +// If using RTT from within interrupts, multiple tasks or multi processors, define the SEGGER_RTT_LOCK() and SEGGER_RTT_UNLOCK() function here. +// +// SEGGER_RTT_MAX_INTERRUPT_PRIORITY can be used in the sample lock routines on Cortex-M3/4. +// Make sure to mask all interrupts which can send RTT data, i.e. generate SystemView events, or cause task switches. +// When high-priority interrupts must not be masked while sending RTT data, SEGGER_RTT_MAX_INTERRUPT_PRIORITY needs to be adjusted accordingly. +// (Higher priority = lower priority number) +// Default value for embOS: 128u +// Default configuration in FreeRTOS: configMAX_SYSCALL_INTERRUPT_PRIORITY: ( configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY << (8 - configPRIO_BITS) ) +// In case of doubt mask all interrupts: 1 << (8 - BASEPRI_PRIO_BITS) i.e. 1 << 5 when 3 bits are implemented in NVIC +// or define SEGGER_RTT_LOCK() to completely disable interrupts. +// +#ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY + #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) // Interrupt priority to lock on SEGGER_RTT_LOCK on Cortex-M3/4 (Default: 0x20) +#endif + +/********************************************************************* +* +* RTT lock configuration for SEGGER Embedded Studio, +* Rowley CrossStudio and GCC +*/ +#if ((defined(__SES_ARM) || defined(__SES_RISCV) || defined(__CROSSWORKS_ARM) || defined(__GNUC__) || defined(__clang__)) && !defined (__CC_ARM) && !defined(WIN32)) + #if (defined(__ARM_ARCH_6M__) || defined(__ARM_ARCH_8M_BASE__)) + #define SEGGER_RTT_LOCK() { \ + unsigned int _SEGGER_RTT__LockState; \ + __asm volatile ("mrs %0, primask \n\t" \ + "movs r1, #1 \n\t" \ + "msr primask, r1 \n\t" \ + : "=r" (_SEGGER_RTT__LockState) \ + : \ + : "r1", "cc" \ + ); + + #define SEGGER_RTT_UNLOCK() __asm volatile ("msr primask, %0 \n\t" \ + : \ + : "r" (_SEGGER_RTT__LockState) \ + : \ + ); \ + } + #elif (defined(__ARM_ARCH_7M__) || defined(__ARM_ARCH_7EM__) || defined(__ARM_ARCH_8M_MAIN__) || defined(__ARM_ARCH_8_1M_MAIN__)) + #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY + #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) + #endif + #define SEGGER_RTT_LOCK() { \ + unsigned int _SEGGER_RTT__LockState; \ + __asm volatile ("mrs %0, basepri \n\t" \ + "mov r1, %1 \n\t" \ + "msr basepri, r1 \n\t" \ + : "=r" (_SEGGER_RTT__LockState) \ + : "i"(SEGGER_RTT_MAX_INTERRUPT_PRIORITY) \ + : "r1", "cc" \ + ); + + #define SEGGER_RTT_UNLOCK() __asm volatile ("msr basepri, %0 \n\t" \ + : \ + : "r" (_SEGGER_RTT__LockState) \ + : \ + ); \ + } + + #elif (defined(__ARM_ARCH_7A__) || defined(__ARM_ARCH_7R__)) + #define SEGGER_RTT_LOCK() { \ + unsigned int _SEGGER_RTT__LockState; \ + __asm volatile ("mrs r1, CPSR \n\t" \ + "mov %0, r1 \n\t" \ + "orr r1, r1, #0xC0 \n\t" \ + "msr CPSR_c, r1 \n\t" \ + : "=r" (_SEGGER_RTT__LockState) \ + : \ + : "r1", "cc" \ + ); + + #define SEGGER_RTT_UNLOCK() __asm volatile ("mov r0, %0 \n\t" \ + "mrs r1, CPSR \n\t" \ + "bic r1, r1, #0xC0 \n\t" \ + "and r0, r0, #0xC0 \n\t" \ + "orr r1, r1, r0 \n\t" \ + "msr CPSR_c, r1 \n\t" \ + : \ + : "r" (_SEGGER_RTT__LockState) \ + : "r0", "r1", "cc" \ + ); \ + } + #elif defined(__riscv) || defined(__riscv_xlen) + #define SEGGER_RTT_LOCK() { \ + unsigned int _SEGGER_RTT__LockState; \ + __asm volatile ("csrr %0, mstatus \n\t" \ + "csrci mstatus, 8 \n\t" \ + "andi %0, %0, 8 \n\t" \ + : "=r" (_SEGGER_RTT__LockState) \ + : \ + : \ + ); + + #define SEGGER_RTT_UNLOCK() __asm volatile ("csrr a1, mstatus \n\t" \ + "or %0, %0, a1 \n\t" \ + "csrs mstatus, %0 \n\t" \ + : \ + : "r" (_SEGGER_RTT__LockState) \ + : "a1" \ + ); \ + } + #else + #define SEGGER_RTT_LOCK() + #define SEGGER_RTT_UNLOCK() + #endif +#endif + +/********************************************************************* +* +* RTT lock configuration for IAR EWARM +*/ +#ifdef __ICCARM__ + #if (defined (__ARM6M__) && (__CORE__ == __ARM6M__)) || \ + (defined (__ARM8M_BASELINE__) && (__CORE__ == __ARM8M_BASELINE__)) + #define SEGGER_RTT_LOCK() { \ + unsigned int _SEGGER_RTT__LockState; \ + _SEGGER_RTT__LockState = __get_PRIMASK(); \ + __set_PRIMASK(1); + + #define SEGGER_RTT_UNLOCK() __set_PRIMASK(_SEGGER_RTT__LockState); \ + } + #elif (defined (__ARM7EM__) && (__CORE__ == __ARM7EM__)) || \ + (defined (__ARM7M__) && (__CORE__ == __ARM7M__)) || \ + (defined (__ARM8M_MAINLINE__) && (__CORE__ == __ARM8M_MAINLINE__)) || \ + (defined (__ARM8M_MAINLINE__) && (__CORE__ == __ARM8M_MAINLINE__)) + #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY + #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) + #endif + #define SEGGER_RTT_LOCK() { \ + unsigned int _SEGGER_RTT__LockState; \ + _SEGGER_RTT__LockState = __get_BASEPRI(); \ + __set_BASEPRI(SEGGER_RTT_MAX_INTERRUPT_PRIORITY); + + #define SEGGER_RTT_UNLOCK() __set_BASEPRI(_SEGGER_RTT__LockState); \ + } + #elif (defined (__ARM7A__) && (__CORE__ == __ARM7A__)) || \ + (defined (__ARM7R__) && (__CORE__ == __ARM7R__)) + #define SEGGER_RTT_LOCK() { \ + unsigned int _SEGGER_RTT__LockState; \ + __asm volatile ("mrs r1, CPSR \n\t" \ + "mov %0, r1 \n\t" \ + "orr r1, r1, #0xC0 \n\t" \ + "msr CPSR_c, r1 \n\t" \ + : "=r" (_SEGGER_RTT__LockState) \ + : \ + : "r1", "cc" \ + ); + + #define SEGGER_RTT_UNLOCK() __asm volatile ("mov r0, %0 \n\t" \ + "mrs r1, CPSR \n\t" \ + "bic r1, r1, #0xC0 \n\t" \ + "and r0, r0, #0xC0 \n\t" \ + "orr r1, r1, r0 \n\t" \ + "msr CPSR_c, r1 \n\t" \ + : \ + : "r" (_SEGGER_RTT__LockState) \ + : "r0", "r1", "cc" \ + ); \ + } + #endif +#endif + +/********************************************************************* +* +* RTT lock configuration for IAR RX +*/ +#ifdef __ICCRX__ + #define SEGGER_RTT_LOCK() { \ + unsigned long _SEGGER_RTT__LockState; \ + _SEGGER_RTT__LockState = __get_interrupt_state(); \ + __disable_interrupt(); + + #define SEGGER_RTT_UNLOCK() __set_interrupt_state(_SEGGER_RTT__LockState); \ + } +#endif + +/********************************************************************* +* +* RTT lock configuration for IAR RL78 +*/ +#ifdef __ICCRL78__ + #define SEGGER_RTT_LOCK() { \ + __istate_t _SEGGER_RTT__LockState; \ + _SEGGER_RTT__LockState = __get_interrupt_state(); \ + __disable_interrupt(); + + #define SEGGER_RTT_UNLOCK() __set_interrupt_state(_SEGGER_RTT__LockState); \ + } +#endif + +/********************************************************************* +* +* RTT lock configuration for KEIL ARM +*/ +#ifdef __CC_ARM + #if (defined __TARGET_ARCH_6S_M) + #define SEGGER_RTT_LOCK() { \ + unsigned int _SEGGER_RTT__LockState; \ + register unsigned char _SEGGER_RTT__PRIMASK __asm( "primask"); \ + _SEGGER_RTT__LockState = _SEGGER_RTT__PRIMASK; \ + _SEGGER_RTT__PRIMASK = 1u; \ + __schedule_barrier(); + + #define SEGGER_RTT_UNLOCK() _SEGGER_RTT__PRIMASK = _SEGGER_RTT__LockState; \ + __schedule_barrier(); \ + } + #elif (defined(__TARGET_ARCH_7_M) || defined(__TARGET_ARCH_7E_M)) + #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY + #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) + #endif + #define SEGGER_RTT_LOCK() { \ + unsigned int _SEGGER_RTT__LockState; \ + register unsigned char BASEPRI __asm( "basepri"); \ + _SEGGER_RTT__LockState = BASEPRI; \ + BASEPRI = SEGGER_RTT_MAX_INTERRUPT_PRIORITY; \ + __schedule_barrier(); + + #define SEGGER_RTT_UNLOCK() BASEPRI = _SEGGER_RTT__LockState; \ + __schedule_barrier(); \ + } + #endif +#endif + +/********************************************************************* +* +* RTT lock configuration for TI ARM +*/ +#ifdef __TI_ARM__ + #if defined (__TI_ARM_V6M0__) + #define SEGGER_RTT_LOCK() { \ + unsigned int _SEGGER_RTT__LockState; \ + _SEGGER_RTT__LockState = __get_PRIMASK(); \ + __set_PRIMASK(1); + + #define SEGGER_RTT_UNLOCK() __set_PRIMASK(_SEGGER_RTT__LockState); \ + } + #elif (defined (__TI_ARM_V7M3__) || defined (__TI_ARM_V7M4__)) + #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY + #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) + #endif + #define SEGGER_RTT_LOCK() { \ + unsigned int _SEGGER_RTT__LockState; \ + _SEGGER_RTT__LockState = _set_interrupt_priority(SEGGER_RTT_MAX_INTERRUPT_PRIORITY); + + #define SEGGER_RTT_UNLOCK() _set_interrupt_priority(_SEGGER_RTT__LockState); \ + } + #endif +#endif + +/********************************************************************* +* +* RTT lock configuration for CCRX +*/ +#ifdef __RX + #include + #define SEGGER_RTT_LOCK() { \ + unsigned long _SEGGER_RTT__LockState; \ + _SEGGER_RTT__LockState = get_psw() & 0x010000; \ + clrpsw_i(); + + #define SEGGER_RTT_UNLOCK() set_psw(get_psw() | _SEGGER_RTT__LockState); \ + } +#endif + +/********************************************************************* +* +* RTT lock configuration for embOS Simulation on Windows +* (Can also be used for generic RTT locking with embOS) +*/ +#if defined(WIN32) || defined(SEGGER_RTT_LOCK_EMBOS) + +void OS_SIM_EnterCriticalSection(void); +void OS_SIM_LeaveCriticalSection(void); + +#define SEGGER_RTT_LOCK() { \ + OS_SIM_EnterCriticalSection(); + +#define SEGGER_RTT_UNLOCK() OS_SIM_LeaveCriticalSection(); \ + } +#endif + +/********************************************************************* +* +* RTT lock configuration fallback +*/ +#ifndef SEGGER_RTT_LOCK + #define SEGGER_RTT_LOCK() // Lock RTT (nestable) (i.e. disable interrupts) +#endif + +#ifndef SEGGER_RTT_UNLOCK + #define SEGGER_RTT_UNLOCK() // Unlock RTT (nestable) (i.e. enable previous interrupt lock state) +#endif + +/********************************************************************* +* +* If SEGGER_RTT_SECTION is defined but SEGGER_RTT_BUFFER_SECTION +* is not, use the same section for SEGGER_RTT_BUFFER_SECTION. +*/ +#ifndef SEGGER_RTT_BUFFER_SECTION + #if defined(SEGGER_RTT_SECTION) + #define SEGGER_RTT_BUFFER_SECTION SEGGER_RTT_SECTION + #endif +#endif + +#endif +/*************************** End of file ****************************/ diff --git a/lib/SEGGER/RTT/Examples/Main_RTT_InputEchoApp.c b/lib/SEGGER/RTT/Examples/Main_RTT_InputEchoApp.c new file mode 100644 index 0000000..76cf2ef --- /dev/null +++ b/lib/SEGGER/RTT/Examples/Main_RTT_InputEchoApp.c @@ -0,0 +1,80 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +--------- END-OF-HEADER -------------------------------------------- +File : Main_RTT_MenuApp.c +Purpose : Sample application to demonstrate RTT bi-directional functionality +*/ + +#define MAIN_C + +#include + +#include "SEGGER_RTT.h" + +volatile int _Cnt; +volatile int _Delay; + +static char r; + +/********************************************************************* +* +* main +*/ +void main(void) { + + SEGGER_RTT_WriteString(0, "SEGGER Real-Time-Terminal Sample\r\n"); + SEGGER_RTT_ConfigUpBuffer(0, NULL, NULL, 0, SEGGER_RTT_MODE_NO_BLOCK_SKIP); + do { + r = SEGGER_RTT_WaitKey(); + SEGGER_RTT_Write(0, &r, 1); + r++; + } while (1); +} + +/*************************** End of file ****************************/ diff --git a/lib/SEGGER/RTT/Examples/Main_RTT_MenuApp.c b/lib/SEGGER/RTT/Examples/Main_RTT_MenuApp.c new file mode 100644 index 0000000..e67ad07 --- /dev/null +++ b/lib/SEGGER/RTT/Examples/Main_RTT_MenuApp.c @@ -0,0 +1,108 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +--------- END-OF-HEADER -------------------------------------------- +File : Main_RTT_MenuApp.c +Purpose : Sample application to demonstrate RTT bi-directional functionality +*/ + +#define MAIN_C + +#include + +#include "SEGGER_RTT.h" + +volatile int _Cnt; +volatile int _Delay; + +/********************************************************************* +* +* main +*/ +void main(void) { + int r; + int CancelOp; + + do { + _Cnt = 0; + + SEGGER_RTT_WriteString(0, "SEGGER Real-Time-Terminal Sample\r\n"); + SEGGER_RTT_WriteString(0, "Press <1> to continue in blocking mode (Application waits if necessary, no data lost)\r\n"); + SEGGER_RTT_WriteString(0, "Press <2> to continue in non-blocking mode (Application does not wait, data lost if fifo full)\r\n"); + do { + r = SEGGER_RTT_WaitKey(); + } while ((r != '1') && (r != '2')); + if (r == '1') { + SEGGER_RTT_WriteString(0, "\r\nSelected <1>. Configuring RTT and starting...\r\n"); + SEGGER_RTT_ConfigUpBuffer(0, NULL, NULL, 0, SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL); + } else { + SEGGER_RTT_WriteString(0, "\r\nSelected <2>. Configuring RTT and starting...\r\n"); + SEGGER_RTT_ConfigUpBuffer(0, NULL, NULL, 0, SEGGER_RTT_MODE_NO_BLOCK_SKIP); + } + CancelOp = 0; + do { + //for (_Delay = 0; _Delay < 10000; _Delay++); + SEGGER_RTT_printf(0, "Count: %d. Press to get back to menu.\r\n", _Cnt++); + r = SEGGER_RTT_HasKey(); + if (r) { + CancelOp = (SEGGER_RTT_GetKey() == ' ') ? 1 : 0; + } + // + // Check if user selected to cancel the current operation + // + if (CancelOp) { + SEGGER_RTT_WriteString(0, "Operation cancelled, going back to menu...\r\n"); + break; + } + } while (1); + SEGGER_RTT_GetKey(); + SEGGER_RTT_WriteString(0, "\r\n"); + } while (1); +} + +/*************************** End of file ****************************/ diff --git a/lib/SEGGER/RTT/Examples/Main_RTT_PrintfTest.c b/lib/SEGGER/RTT/Examples/Main_RTT_PrintfTest.c new file mode 100644 index 0000000..737b01f --- /dev/null +++ b/lib/SEGGER/RTT/Examples/Main_RTT_PrintfTest.c @@ -0,0 +1,155 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +--------- END-OF-HEADER -------------------------------------------- +File : Main_RTT_MenuApp.c +Purpose : Sample application to demonstrate RTT bi-directional functionality +*/ + +#define MAIN_C + +#include + +#include "SEGGER_RTT.h" + +volatile int _Cnt; + +/********************************************************************* +* +* main +*/ +void main(void) { + + SEGGER_RTT_ConfigUpBuffer(0, NULL, NULL, 0, SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL); + + SEGGER_RTT_WriteString(0, "SEGGER Real-Time-Terminal Sample\r\n\r\n"); + SEGGER_RTT_WriteString(0, "###### Testing SEGGER_printf() ######\r\n"); + + SEGGER_RTT_printf(0, "printf Test: %%c, 'S' : %c.\r\n", 'S'); + SEGGER_RTT_printf(0, "printf Test: %%5c, 'E' : %5c.\r\n", 'E'); + SEGGER_RTT_printf(0, "printf Test: %%-5c, 'G' : %-5c.\r\n", 'G'); + SEGGER_RTT_printf(0, "printf Test: %%5.3c, 'G' : %-5c.\r\n", 'G'); + SEGGER_RTT_printf(0, "printf Test: %%.3c, 'E' : %-5c.\r\n", 'E'); + SEGGER_RTT_printf(0, "printf Test: %%c, 'R' : %c.\r\n", 'R'); + + SEGGER_RTT_printf(0, "printf Test: %%s, \"RTT\" : %s.\r\n", "RTT"); + SEGGER_RTT_printf(0, "printf Test: %%s, \"RTT\\r\\nRocks.\" : %s.\r\n", "RTT\r\nRocks."); + + SEGGER_RTT_printf(0, "printf Test: %%u, 12345 : %u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%+u, 12345 : %+u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%.3u, 12345 : %.3u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%.6u, 12345 : %.6u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%6.3u, 12345 : %6.3u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%8.6u, 12345 : %8.6u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%08u, 12345 : %08u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%08.6u, 12345 : %08.6u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%0u, 12345 : %0u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%-.6u, 12345 : %-.6u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%-6.3u, 12345 : %-6.3u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%-8.6u, 12345 : %-8.6u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%-08u, 12345 : %-08u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%-08.6u, 12345 : %-08.6u.\r\n", 12345); + SEGGER_RTT_printf(0, "printf Test: %%-0u, 12345 : %-0u.\r\n", 12345); + + SEGGER_RTT_printf(0, "printf Test: %%u, -12345 : %u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%+u, -12345 : %+u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%.3u, -12345 : %.3u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%.6u, -12345 : %.6u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%6.3u, -12345 : %6.3u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%8.6u, -12345 : %8.6u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%08u, -12345 : %08u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%08.6u, -12345 : %08.6u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%0u, -12345 : %0u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-.6u, -12345 : %-.6u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-6.3u, -12345 : %-6.3u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-8.6u, -12345 : %-8.6u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-08u, -12345 : %-08u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-08.6u, -12345 : %-08.6u.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-0u, -12345 : %-0u.\r\n", -12345); + + SEGGER_RTT_printf(0, "printf Test: %%d, -12345 : %d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%+d, -12345 : %+d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%.3d, -12345 : %.3d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%.6d, -12345 : %.6d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%6.3d, -12345 : %6.3d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%8.6d, -12345 : %8.6d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%08d, -12345 : %08d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%08.6d, -12345 : %08.6d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%0d, -12345 : %0d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-.6d, -12345 : %-.6d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-6.3d, -12345 : %-6.3d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-8.6d, -12345 : %-8.6d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-08d, -12345 : %-08d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-08.6d, -12345 : %-08.6d.\r\n", -12345); + SEGGER_RTT_printf(0, "printf Test: %%-0d, -12345 : %-0d.\r\n", -12345); + + SEGGER_RTT_printf(0, "printf Test: %%x, 0x1234ABC : %x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%+x, 0x1234ABC : %+x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%.3x, 0x1234ABC : %.3x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%.6x, 0x1234ABC : %.6x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%6.3x, 0x1234ABC : %6.3x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%8.6x, 0x1234ABC : %8.6x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%08x, 0x1234ABC : %08x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%08.6x, 0x1234ABC : %08.6x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%0x, 0x1234ABC : %0x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%-.6x, 0x1234ABC : %-.6x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%-6.3x, 0x1234ABC : %-6.3x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%-8.6x, 0x1234ABC : %-8.6x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%-08x, 0x1234ABC : %-08x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%-08.6x, 0x1234ABC : %-08.6x.\r\n", 0x1234ABC); + SEGGER_RTT_printf(0, "printf Test: %%-0x, 0x1234ABC : %-0x.\r\n", 0x1234ABC); + + SEGGER_RTT_printf(0, "printf Test: %%p, &_Cnt : %p.\r\n", &_Cnt); + + SEGGER_RTT_WriteString(0, "###### SEGGER_printf() Tests done. ######\r\n"); + do { + _Cnt++; + } while (1); +} + +/*************************** End of file ****************************/ diff --git a/lib/SEGGER/RTT/Examples/Main_RTT_SpeedTestApp.c b/lib/SEGGER/RTT/Examples/Main_RTT_SpeedTestApp.c new file mode 100644 index 0000000..61a96c4 --- /dev/null +++ b/lib/SEGGER/RTT/Examples/Main_RTT_SpeedTestApp.c @@ -0,0 +1,106 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +--------- END-OF-HEADER -------------------------------------------- +File : Main_RTT_SpeedTestApp.c +Purpose : Sample program for measuring RTT performance. +*/ + +#include "RTOS.h" +#include "BSP.h" + +#include "SEGGER_RTT.h" +#include + +OS_STACKPTR int StackHP[128], StackLP[128]; /* Task stacks */ +OS_TASK TCBHP, TCBLP; /* Task-control-blocks */ + +static void HPTask(void) { + while (1) { + // + // Measure time needed for RTT output + // Perform dummy write with 0 characters, so we know the overhead of toggling LEDs and RTT in general + // +// Set BP here. Then start sampling on scope + BSP_ClrLED(0); + SEGGER_RTT_Write(0, 0, 0); + BSP_SetLED(0); + BSP_ClrLED(0); + SEGGER_RTT_Write(0, "01234567890123456789012345678901234567890123456789012345678901234567890123456789\r\n", 82); + BSP_SetLED(0); +// Set BP here. Then stop sampling on scope + OS_Delay(200); + } +} + +static void LPTask(void) { + while (1) { + BSP_ToggleLED(1); + OS_Delay (500); + } +} + +/********************************************************************* +* +* main +* +*********************************************************************/ + +int main(void) { + OS_IncDI(); /* Initially disable interrupts */ + OS_InitKern(); /* Initialize OS */ + OS_InitHW(); /* Initialize Hardware for OS */ + BSP_Init(); /* Initialize LED ports */ + BSP_SetLED(0); + /* You need to create at least one task before calling OS_Start() */ + OS_CREATETASK(&TCBHP, "HP Task", HPTask, 100, StackHP); + OS_CREATETASK(&TCBLP, "LP Task", LPTask, 50, StackLP); + OS_Start(); /* Start multitasking */ + return 0; +} + diff --git a/lib/SEGGER/RTT/LICENSE.md b/lib/SEGGER/RTT/LICENSE.md new file mode 100644 index 0000000..14881c2 --- /dev/null +++ b/lib/SEGGER/RTT/LICENSE.md @@ -0,0 +1,36 @@ + + SEGGER Microcontroller GmbH + The Embedded Experts + + (c) 1995 - 2021 SEGGER Microcontroller GmbH + www.segger.com Support: support@segger.com + + SEGGER RTT Real Time Transfer for embedded targets + + + All rights reserved. + + SEGGER strongly recommends to not make any changes + to or modify the source code of this software in order to stay + compatible with the RTT protocol and J-Link. + + Redistribution and use in source and binary forms, with or + without modification, are permitted provided that the following + condition is met: + + - Redistributions of source code must retain the above copyright + notice, this condition and the following disclaimer. + + THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND + CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, + INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF + MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE + DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR + ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR + CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT + OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; + OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF + LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT + (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE + USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + DAMAGE. diff --git a/lib/SEGGER/RTT/README.md b/lib/SEGGER/RTT/README.md new file mode 100644 index 0000000..0b40797 --- /dev/null +++ b/lib/SEGGER/RTT/README.md @@ -0,0 +1,24 @@ +RTT +=== + +SEGGER RTT Sources + +https://www.segger.com/products/debug-probes/j-link/technology/about-real-time-transfer +https://wiki.segger.com/RTT + +## Included files + + * `RTT/` + * `SEGGER_RTT.c` - Main module for RTT. + * `SEGGER_RTT.h` - Main header for RTT. + * `SEGGER_RTT_ASM_ARMv7M.S` - Assembly-optimized implementation of RTT functions for ARMv7M processors. + * `SEGGER_RTT_Printf.c` - Simple implementation of printf (`SEGGER_RTT_Printf()`) to write formatted strings via RTT. + * `Syscalls/` + * `SEGGER_RTT_Syscalls_*.c` - Low-level syscalls to retarget `printf()` to RTT with different toolchains. + * `Config/` + * `SEGGER_RTT_Conf.h` - RTT configuration file. + * `Examples/` + * `Main_RTT_InputEchoApp.c` - Example application which echoes input on Channel 0. + * `Main_RTT_MenuApp.c` - Example application to demonstrate RTT bi-directional functionality. + * `Main_RTT_PrintfTest.c` - Example application to test RTT's simple printf implementation. + * `Main_RTT_SpeedTestApp.c` - Example application to measure RTT performance. (Requires embOS) diff --git a/lib/SEGGER/RTT/RTT/SEGGER_RTT.c b/lib/SEGGER/RTT/RTT/SEGGER_RTT.c new file mode 100644 index 0000000..63d4fbb --- /dev/null +++ b/lib/SEGGER/RTT/RTT/SEGGER_RTT.c @@ -0,0 +1,2093 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : SEGGER_RTT.c +Purpose : Implementation of SEGGER real-time transfer (RTT) which + allows real-time communication on targets which support + debugger memory accesses while the CPU is running. +Revision: $Rev: 29668 $ + +Additional information: + Type "int" is assumed to be 32-bits in size + H->T Host to target communication + T->H Target to host communication + + RTT channel 0 is always present and reserved for Terminal usage. + Name is fixed to "Terminal" + + Effective buffer size: SizeOfBuffer - 1 + + WrOff == RdOff: Buffer is empty + WrOff == (RdOff - 1): Buffer is full + WrOff > RdOff: Free space includes wrap-around + WrOff < RdOff: Used space includes wrap-around + (WrOff == (SizeOfBuffer - 1)) && (RdOff == 0): + Buffer full and wrap-around after next byte + + +---------------------------------------------------------------------- +*/ + +#include "SEGGER_RTT.h" + +#include // for memcpy + +/********************************************************************* +* +* Configuration, default values +* +********************************************************************** +*/ + +#if SEGGER_RTT_CPU_CACHE_LINE_SIZE + #ifdef SEGGER_RTT_CB_ALIGN + #error "Custom SEGGER_RTT_CB_ALIGN() is not supported for SEGGER_RTT_CPU_CACHE_LINE_SIZE != 0" + #endif + #ifdef SEGGER_RTT_BUFFER_ALIGN + #error "Custom SEGGER_RTT_BUFFER_ALIGN() is not supported for SEGGER_RTT_CPU_CACHE_LINE_SIZE != 0" + #endif + #ifdef SEGGER_RTT_PUT_CB_SECTION + #error "Custom SEGGER_RTT_PUT_CB_SECTION() is not supported for SEGGER_RTT_CPU_CACHE_LINE_SIZE != 0" + #endif + #ifdef SEGGER_RTT_PUT_BUFFER_SECTION + #error "Custom SEGGER_RTT_PUT_BUFFER_SECTION() is not supported for SEGGER_RTT_CPU_CACHE_LINE_SIZE != 0" + #endif + #ifdef SEGGER_RTT_BUFFER_ALIGNMENT + #error "Custom SEGGER_RTT_BUFFER_ALIGNMENT is not supported for SEGGER_RTT_CPU_CACHE_LINE_SIZE != 0" + #endif + #ifdef SEGGER_RTT_ALIGNMENT + #error "Custom SEGGER_RTT_ALIGNMENT is not supported for SEGGER_RTT_CPU_CACHE_LINE_SIZE != 0" + #endif +#endif + +#ifndef BUFFER_SIZE_UP + #define BUFFER_SIZE_UP 1024 // Size of the buffer for terminal output of target, up to host +#endif + +#ifndef BUFFER_SIZE_DOWN + #define BUFFER_SIZE_DOWN 16 // Size of the buffer for terminal input to target from host (Usually keyboard input) +#endif + +#ifndef SEGGER_RTT_MAX_NUM_UP_BUFFERS + #define SEGGER_RTT_MAX_NUM_UP_BUFFERS 2 // Number of up-buffers (T->H) available on this target +#endif + +#ifndef SEGGER_RTT_MAX_NUM_DOWN_BUFFERS + #define SEGGER_RTT_MAX_NUM_DOWN_BUFFERS 2 // Number of down-buffers (H->T) available on this target +#endif + +#ifndef SEGGER_RTT_ALIGNMENT + #define SEGGER_RTT_ALIGNMENT SEGGER_RTT_CPU_CACHE_LINE_SIZE +#endif + +#ifndef SEGGER_RTT_BUFFER_ALIGNMENT + #define SEGGER_RTT_BUFFER_ALIGNMENT SEGGER_RTT_CPU_CACHE_LINE_SIZE +#endif + +#ifndef SEGGER_RTT_MODE_DEFAULT + #define SEGGER_RTT_MODE_DEFAULT SEGGER_RTT_MODE_NO_BLOCK_SKIP +#endif + +#ifndef SEGGER_RTT_LOCK + #define SEGGER_RTT_LOCK() +#endif + +#ifndef SEGGER_RTT_UNLOCK + #define SEGGER_RTT_UNLOCK() +#endif + +#ifndef STRLEN + #define STRLEN(a) strlen((a)) +#endif + +#ifndef STRCPY + #define STRCPY(pDest, pSrc) strcpy((pDest), (pSrc)) +#endif + +#ifndef SEGGER_RTT_MEMCPY_USE_BYTELOOP + #define SEGGER_RTT_MEMCPY_USE_BYTELOOP 0 +#endif + +#ifndef SEGGER_RTT_MEMCPY + #ifdef MEMCPY + #define SEGGER_RTT_MEMCPY(pDest, pSrc, NumBytes) MEMCPY((pDest), (pSrc), (NumBytes)) + #else + #define SEGGER_RTT_MEMCPY(pDest, pSrc, NumBytes) memcpy((pDest), (pSrc), (NumBytes)) + #endif +#endif + +#ifndef MIN + #define MIN(a, b) (((a) < (b)) ? (a) : (b)) +#endif + +#ifndef MAX + #define MAX(a, b) (((a) > (b)) ? (a) : (b)) +#endif + +/********************************************************************* +* +* Defines, fixed +* +********************************************************************** +*/ +#if (defined __ICCARM__) || (defined __ICCRX__) + #define RTT_PRAGMA(P) _Pragma(#P) +#endif + +#if SEGGER_RTT_ALIGNMENT || SEGGER_RTT_BUFFER_ALIGNMENT + #if ((defined __GNUC__) || (defined __clang__)) + #define SEGGER_RTT_ALIGN(Var, Alignment) Var __attribute__ ((aligned (Alignment))) + #elif (defined __ICCARM__) || (defined __ICCRX__) + #define PRAGMA(A) _Pragma(#A) +#define SEGGER_RTT_ALIGN(Var, Alignment) RTT_PRAGMA(data_alignment=Alignment) \ + Var + #elif (defined __CC_ARM) + #define SEGGER_RTT_ALIGN(Var, Alignment) Var __attribute__ ((aligned (Alignment))) + #else + #error "Alignment not supported for this compiler." + #endif +#else + #define SEGGER_RTT_ALIGN(Var, Alignment) Var +#endif + +#if defined(SEGGER_RTT_SECTION) || defined (SEGGER_RTT_BUFFER_SECTION) + #if ((defined __GNUC__) || (defined __clang__)) + #define SEGGER_RTT_PUT_SECTION(Var, Section) __attribute__ ((section (Section))) Var + #elif (defined __ICCARM__) || (defined __ICCRX__) +#define SEGGER_RTT_PUT_SECTION(Var, Section) RTT_PRAGMA(location=Section) \ + Var + #elif (defined __CC_ARM) + #define SEGGER_RTT_PUT_SECTION(Var, Section) __attribute__ ((section (Section))) Var + #else + #error "Section placement not supported for this compiler." + #endif +#else + #define SEGGER_RTT_PUT_SECTION(Var, Section) Var +#endif + +#if SEGGER_RTT_ALIGNMENT + #define SEGGER_RTT_CB_ALIGN(Var) SEGGER_RTT_ALIGN(Var, SEGGER_RTT_ALIGNMENT) +#else + #define SEGGER_RTT_CB_ALIGN(Var) Var +#endif + +#if SEGGER_RTT_BUFFER_ALIGNMENT + #define SEGGER_RTT_BUFFER_ALIGN(Var) SEGGER_RTT_ALIGN(Var, SEGGER_RTT_BUFFER_ALIGNMENT) +#else + #define SEGGER_RTT_BUFFER_ALIGN(Var) Var +#endif + + +#if defined(SEGGER_RTT_SECTION) + #define SEGGER_RTT_PUT_CB_SECTION(Var) SEGGER_RTT_PUT_SECTION(Var, SEGGER_RTT_SECTION) +#else + #define SEGGER_RTT_PUT_CB_SECTION(Var) Var +#endif + +#if defined(SEGGER_RTT_BUFFER_SECTION) + #define SEGGER_RTT_PUT_BUFFER_SECTION(Var) SEGGER_RTT_PUT_SECTION(Var, SEGGER_RTT_BUFFER_SECTION) +#else + #define SEGGER_RTT_PUT_BUFFER_SECTION(Var) Var +#endif + +/********************************************************************* +* +* Static const data +* +********************************************************************** +*/ + +static const unsigned char _aTerminalId[16] = { '0', '1', '2', '3', '4', '5', '6', '7', '8', '9', 'A', 'B', 'C', 'D', 'E', 'F' }; + +/********************************************************************* +* +* Static data +* +********************************************************************** +*/ + +// +// RTT Control Block and allocate buffers for channel 0 +// +#if SEGGER_RTT_CPU_CACHE_LINE_SIZE + #if ((defined __GNUC__) || (defined __clang__)) + SEGGER_RTT_CB _SEGGER_RTT __attribute__ ((aligned (SEGGER_RTT_CPU_CACHE_LINE_SIZE))); + static char _acUpBuffer [SEGGER_RTT__ROUND_UP_2_CACHE_LINE_SIZE(BUFFER_SIZE_UP)] __attribute__ ((aligned (SEGGER_RTT_CPU_CACHE_LINE_SIZE))); + static char _acDownBuffer[SEGGER_RTT__ROUND_UP_2_CACHE_LINE_SIZE(BUFFER_SIZE_DOWN)] __attribute__ ((aligned (SEGGER_RTT_CPU_CACHE_LINE_SIZE))); + #elif (defined __ICCARM__) + #pragma data_alignment=SEGGER_RTT_CPU_CACHE_LINE_SIZE + SEGGER_RTT_CB _SEGGER_RTT; + #pragma data_alignment=SEGGER_RTT_CPU_CACHE_LINE_SIZE + static char _acUpBuffer [SEGGER_RTT__ROUND_UP_2_CACHE_LINE_SIZE(BUFFER_SIZE_UP)]; + #pragma data_alignment=SEGGER_RTT_CPU_CACHE_LINE_SIZE + static char _acDownBuffer[SEGGER_RTT__ROUND_UP_2_CACHE_LINE_SIZE(BUFFER_SIZE_DOWN)]; + #else + #error "Don't know how to place _SEGGER_RTT, _acUpBuffer, _acDownBuffer cache-line aligned" + #endif +#else + SEGGER_RTT_PUT_CB_SECTION(SEGGER_RTT_CB_ALIGN(SEGGER_RTT_CB _SEGGER_RTT)); + SEGGER_RTT_PUT_BUFFER_SECTION(SEGGER_RTT_BUFFER_ALIGN(static char _acUpBuffer [BUFFER_SIZE_UP])); + SEGGER_RTT_PUT_BUFFER_SECTION(SEGGER_RTT_BUFFER_ALIGN(static char _acDownBuffer[BUFFER_SIZE_DOWN])); +#endif + +static unsigned char _ActiveTerminal; + +/********************************************************************* +* +* Static functions +* +********************************************************************** +*/ + +/********************************************************************* +* +* _DoInit() +* +* Function description +* Initializes the control block an buffers. +* +* Notes +* (1) May only be called via INIT() to avoid overriding settings. +* The only exception is SEGGER_RTT_Init(), to make an intentional override possible. +*/ + #define INIT() \ + do { \ + volatile SEGGER_RTT_CB* pRTTCBInit; \ + pRTTCBInit = (volatile SEGGER_RTT_CB*)((uintptr_t)&_SEGGER_RTT + SEGGER_RTT_UNCACHED_OFF); \ + if (pRTTCBInit->acID[0] != 'S') { \ + _DoInit(); \ + } \ + } while (0) + +static void _DoInit(void) { + volatile SEGGER_RTT_CB* p; // Volatile to make sure that compiler cannot change the order of accesses to the control block + static const char _aInitStr[] = "\0\0\0\0\0\0TTR REGGES"; // Init complete ID string to make sure that things also work if RTT is linked to a no-init memory area + unsigned i; + // + // Initialize control block + // + p = (volatile SEGGER_RTT_CB*)((uintptr_t)&_SEGGER_RTT + SEGGER_RTT_UNCACHED_OFF); // Access control block uncached so that nothing in the cache ever becomes dirty and all changes are visible in HW directly + memset((SEGGER_RTT_CB*)p, 0, sizeof(_SEGGER_RTT)); // Make sure that the RTT CB is always zero initialized. + p->MaxNumUpBuffers = SEGGER_RTT_MAX_NUM_UP_BUFFERS; + p->MaxNumDownBuffers = SEGGER_RTT_MAX_NUM_DOWN_BUFFERS; + // + // Initialize up buffer 0 + // + p->aUp[0].sName = "Terminal"; + p->aUp[0].pBuffer = _acUpBuffer; + p->aUp[0].SizeOfBuffer = BUFFER_SIZE_UP; + p->aUp[0].RdOff = 0u; + p->aUp[0].WrOff = 0u; + p->aUp[0].Flags = SEGGER_RTT_MODE_DEFAULT; + // + // Initialize down buffer 0 + // + p->aDown[0].sName = "Terminal"; + p->aDown[0].pBuffer = _acDownBuffer; + p->aDown[0].SizeOfBuffer = BUFFER_SIZE_DOWN; + p->aDown[0].RdOff = 0u; + p->aDown[0].WrOff = 0u; + p->aDown[0].Flags = SEGGER_RTT_MODE_DEFAULT; + // + // Finish initialization of the control block. + // Copy Id string backwards to make sure that "SEGGER RTT" is not found in initializer memory (usually flash), + // as this would cause J-Link to "find" the control block at a wrong address. + // + RTT__DMB(); // Force order of memory accesses for cores that may perform out-of-order memory accesses + for (i = 0; i < sizeof(_aInitStr) - 1; ++i) { + p->acID[i] = _aInitStr[sizeof(_aInitStr) - 2 - i]; // Skip terminating \0 at the end of the array + } + RTT__DMB(); // Force order of memory accesses for cores that may perform out-of-order memory accesses +} + +/********************************************************************* +* +* _WriteBlocking() +* +* Function description +* Stores a specified number of characters in SEGGER RTT ring buffer +* and updates the associated write pointer which is periodically +* read by the host. +* The caller is responsible for managing the write chunk sizes as +* _WriteBlocking() will block until all data has been posted successfully. +* +* Parameters +* pRing Ring buffer to post to. +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Return value +* >= 0 - Number of bytes written into buffer. +*/ +static unsigned _WriteBlocking(SEGGER_RTT_BUFFER_UP* pRing, const char* pBuffer, unsigned NumBytes) { + unsigned NumBytesToWrite; + unsigned NumBytesWritten; + unsigned RdOff; + unsigned WrOff; + volatile char* pDst; + // + // Write data to buffer and handle wrap-around if necessary + // + NumBytesWritten = 0u; + WrOff = pRing->WrOff; + do { + RdOff = pRing->RdOff; // May be changed by host (debug probe) in the meantime + if (RdOff > WrOff) { + NumBytesToWrite = RdOff - WrOff - 1u; + } else { + NumBytesToWrite = pRing->SizeOfBuffer - (WrOff - RdOff + 1u); + } + NumBytesToWrite = MIN(NumBytesToWrite, (pRing->SizeOfBuffer - WrOff)); // Number of bytes that can be written until buffer wrap-around + NumBytesToWrite = MIN(NumBytesToWrite, NumBytes); + pDst = (pRing->pBuffer + WrOff) + SEGGER_RTT_UNCACHED_OFF; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + NumBytesWritten += NumBytesToWrite; + NumBytes -= NumBytesToWrite; + WrOff += NumBytesToWrite; + while (NumBytesToWrite--) { + *pDst++ = *pBuffer++; + }; +#else + SEGGER_RTT_MEMCPY((void*)pDst, pBuffer, NumBytesToWrite); + NumBytesWritten += NumBytesToWrite; + pBuffer += NumBytesToWrite; + NumBytes -= NumBytesToWrite; + WrOff += NumBytesToWrite; +#endif + if (WrOff == pRing->SizeOfBuffer) { + WrOff = 0u; + } + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = WrOff; + } while (NumBytes); + return NumBytesWritten; +} + +/********************************************************************* +* +* _WriteNoCheck() +* +* Function description +* Stores a specified number of characters in SEGGER RTT ring buffer +* and updates the associated write pointer which is periodically +* read by the host. +* It is callers responsibility to make sure data actually fits in buffer. +* +* Parameters +* pRing Ring buffer to post to. +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Notes +* (1) If there might not be enough space in the "Up"-buffer, call _WriteBlocking +*/ +static void _WriteNoCheck(SEGGER_RTT_BUFFER_UP* pRing, const char* pData, unsigned NumBytes) { + unsigned NumBytesAtOnce; + unsigned WrOff; + unsigned Rem; + volatile char* pDst; + + WrOff = pRing->WrOff; + Rem = pRing->SizeOfBuffer - WrOff; + if (Rem > NumBytes) { + // + // All data fits before wrap around + // + pDst = (pRing->pBuffer + WrOff) + SEGGER_RTT_UNCACHED_OFF; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + WrOff += NumBytes; + while (NumBytes--) { + *pDst++ = *pData++; + }; + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = WrOff; +#else + SEGGER_RTT_MEMCPY((void*)pDst, pData, NumBytes); + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = WrOff + NumBytes; +#endif + } else { + // + // We reach the end of the buffer, so need to wrap around + // +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + pDst = (pRing->pBuffer + WrOff) + SEGGER_RTT_UNCACHED_OFF; + NumBytesAtOnce = Rem; + while (NumBytesAtOnce--) { + *pDst++ = *pData++; + }; + pDst = pRing->pBuffer + SEGGER_RTT_UNCACHED_OFF; + NumBytesAtOnce = NumBytes - Rem; + while (NumBytesAtOnce--) { + *pDst++ = *pData++; + }; + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = NumBytes - Rem; +#else + NumBytesAtOnce = Rem; + pDst = (pRing->pBuffer + WrOff) + SEGGER_RTT_UNCACHED_OFF; + SEGGER_RTT_MEMCPY((void*)pDst, pData, NumBytesAtOnce); + NumBytesAtOnce = NumBytes - Rem; + pDst = pRing->pBuffer + SEGGER_RTT_UNCACHED_OFF; + SEGGER_RTT_MEMCPY((void*)pDst, pData + Rem, NumBytesAtOnce); + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = NumBytesAtOnce; +#endif + } +} + +/********************************************************************* +* +* _PostTerminalSwitch() +* +* Function description +* Switch terminal to the given terminal ID. It is the caller's +* responsibility to ensure the terminal ID is correct and there is +* enough space in the buffer for this to complete successfully. +* +* Parameters +* pRing Ring buffer to post to. +* TerminalId Terminal ID to switch to. +*/ +static void _PostTerminalSwitch(SEGGER_RTT_BUFFER_UP* pRing, unsigned char TerminalId) { + unsigned char ac[2]; + + ac[0] = 0xFFu; + ac[1] = _aTerminalId[TerminalId]; // Caller made already sure that TerminalId does not exceed our terminal limit + _WriteBlocking(pRing, (const char*)ac, 2u); +} + +/********************************************************************* +* +* _GetAvailWriteSpace() +* +* Function description +* Returns the number of bytes that can be written to the ring +* buffer without blocking. +* +* Parameters +* pRing Ring buffer to check. +* +* Return value +* Number of bytes that are free in the buffer. +*/ +static unsigned _GetAvailWriteSpace(SEGGER_RTT_BUFFER_UP* pRing) { + unsigned RdOff; + unsigned WrOff; + unsigned r; + // + // Avoid warnings regarding volatile access order. It's not a problem + // in this case, but dampen compiler enthusiasm. + // + RdOff = pRing->RdOff; + WrOff = pRing->WrOff; + if (RdOff <= WrOff) { + r = pRing->SizeOfBuffer - 1u - WrOff + RdOff; + } else { + r = RdOff - WrOff - 1u; + } + return r; +} + +/********************************************************************* +* +* Public code +* +********************************************************************** +*/ + +/********************************************************************* +* +* SEGGER_RTT_ReadUpBufferNoLock() +* +* Function description +* Reads characters from SEGGER real-time-terminal control block +* which have been previously stored by the application. +* Do not lock against interrupts and multiple access. +* Used to do the same operation that J-Link does, to transfer +* RTT data via other channels, such as TCP/IP or UART. +* +* Parameters +* BufferIndex Index of Up-buffer to be used. +* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-up-buffer to. +* BufferSize Size of the target application buffer. +* +* Return value +* Number of bytes that have been read. +* +* Additional information +* This function must not be called when J-Link might also do RTT. +*/ +unsigned SEGGER_RTT_ReadUpBufferNoLock(unsigned BufferIndex, void* pData, unsigned BufferSize) { + unsigned NumBytesRem; + unsigned NumBytesRead; + unsigned RdOff; + unsigned WrOff; + unsigned char* pBuffer; + SEGGER_RTT_BUFFER_UP* pRing; + volatile char* pSrc; + + INIT(); + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + pBuffer = (unsigned char*)pData; + RdOff = pRing->RdOff; + WrOff = pRing->WrOff; + NumBytesRead = 0u; + // + // Read from current read position to wrap-around of buffer, first + // + if (RdOff > WrOff) { + NumBytesRem = pRing->SizeOfBuffer - RdOff; + NumBytesRem = MIN(NumBytesRem, BufferSize); + pSrc = (pRing->pBuffer + RdOff) + SEGGER_RTT_UNCACHED_OFF; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + NumBytesRead += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; + while (NumBytesRem--) { + *pBuffer++ = *pSrc++; + }; +#else + SEGGER_RTT_MEMCPY(pBuffer, (void*)pSrc, NumBytesRem); + NumBytesRead += NumBytesRem; + pBuffer += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; +#endif + // + // Handle wrap-around of buffer + // + if (RdOff == pRing->SizeOfBuffer) { + RdOff = 0u; + } + } + // + // Read remaining items of buffer + // + NumBytesRem = WrOff - RdOff; + NumBytesRem = MIN(NumBytesRem, BufferSize); + if (NumBytesRem > 0u) { + pSrc = (pRing->pBuffer + RdOff) + SEGGER_RTT_UNCACHED_OFF; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + NumBytesRead += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; + while (NumBytesRem--) { + *pBuffer++ = *pSrc++; + }; +#else + SEGGER_RTT_MEMCPY(pBuffer, (void*)pSrc, NumBytesRem); + NumBytesRead += NumBytesRem; + pBuffer += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; +#endif + } + // + // Update read offset of buffer + // + if (NumBytesRead) { + pRing->RdOff = RdOff; + } + // + return NumBytesRead; +} + +/********************************************************************* +* +* SEGGER_RTT_ReadNoLock() +* +* Function description +* Reads characters from SEGGER real-time-terminal control block +* which have been previously stored by the host. +* Do not lock against interrupts and multiple access. +* +* Parameters +* BufferIndex Index of Down-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-down-buffer to. +* BufferSize Size of the target application buffer. +* +* Return value +* Number of bytes that have been read. +*/ +unsigned SEGGER_RTT_ReadNoLock(unsigned BufferIndex, void* pData, unsigned BufferSize) { + unsigned NumBytesRem; + unsigned NumBytesRead; + unsigned RdOff; + unsigned WrOff; + unsigned char* pBuffer; + SEGGER_RTT_BUFFER_DOWN* pRing; + volatile char* pSrc; + // + INIT(); + pRing = (SEGGER_RTT_BUFFER_DOWN*)((uintptr_t)&_SEGGER_RTT.aDown[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + pBuffer = (unsigned char*)pData; + RdOff = pRing->RdOff; + WrOff = pRing->WrOff; + NumBytesRead = 0u; + // + // Read from current read position to wrap-around of buffer, first + // + if (RdOff > WrOff) { + NumBytesRem = pRing->SizeOfBuffer - RdOff; + NumBytesRem = MIN(NumBytesRem, BufferSize); + pSrc = (pRing->pBuffer + RdOff) + SEGGER_RTT_UNCACHED_OFF; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + NumBytesRead += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; + while (NumBytesRem--) { + *pBuffer++ = *pSrc++; + }; +#else + SEGGER_RTT_MEMCPY(pBuffer, (void*)pSrc, NumBytesRem); + NumBytesRead += NumBytesRem; + pBuffer += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; +#endif + // + // Handle wrap-around of buffer + // + if (RdOff == pRing->SizeOfBuffer) { + RdOff = 0u; + } + } + // + // Read remaining items of buffer + // + NumBytesRem = WrOff - RdOff; + NumBytesRem = MIN(NumBytesRem, BufferSize); + if (NumBytesRem > 0u) { + pSrc = (pRing->pBuffer + RdOff) + SEGGER_RTT_UNCACHED_OFF; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + NumBytesRead += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; + while (NumBytesRem--) { + *pBuffer++ = *pSrc++; + }; +#else + SEGGER_RTT_MEMCPY(pBuffer, (void*)pSrc, NumBytesRem); + NumBytesRead += NumBytesRem; + pBuffer += NumBytesRem; + BufferSize -= NumBytesRem; + RdOff += NumBytesRem; +#endif + } + if (NumBytesRead) { + pRing->RdOff = RdOff; + } + // + return NumBytesRead; +} + +/********************************************************************* +* +* SEGGER_RTT_ReadUpBuffer +* +* Function description +* Reads characters from SEGGER real-time-terminal control block +* which have been previously stored by the application. +* Used to do the same operation that J-Link does, to transfer +* RTT data via other channels, such as TCP/IP or UART. +* +* Parameters +* BufferIndex Index of Up-buffer to be used. +* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-up-buffer to. +* BufferSize Size of the target application buffer. +* +* Return value +* Number of bytes that have been read. +* +* Additional information +* This function must not be called when J-Link might also do RTT. +* This function locks against all other RTT operations. I.e. during +* the read operation, writing is also locked. +* If only one consumer reads from the up buffer, +* call sEGGER_RTT_ReadUpBufferNoLock() instead. +*/ +unsigned SEGGER_RTT_ReadUpBuffer(unsigned BufferIndex, void* pBuffer, unsigned BufferSize) { + unsigned NumBytesRead; + + SEGGER_RTT_LOCK(); + // + // Call the non-locking read function + // + NumBytesRead = SEGGER_RTT_ReadUpBufferNoLock(BufferIndex, pBuffer, BufferSize); + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + // + return NumBytesRead; +} + +/********************************************************************* +* +* SEGGER_RTT_Read +* +* Function description +* Reads characters from SEGGER real-time-terminal control block +* which have been previously stored by the host. +* +* Parameters +* BufferIndex Index of Down-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to buffer provided by target application, to copy characters from RTT-down-buffer to. +* BufferSize Size of the target application buffer. +* +* Return value +* Number of bytes that have been read. +*/ +unsigned SEGGER_RTT_Read(unsigned BufferIndex, void* pBuffer, unsigned BufferSize) { + unsigned NumBytesRead; + + SEGGER_RTT_LOCK(); + // + // Call the non-locking read function + // + NumBytesRead = SEGGER_RTT_ReadNoLock(BufferIndex, pBuffer, BufferSize); + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + // + return NumBytesRead; +} + +/********************************************************************* +* +* SEGGER_RTT_WriteWithOverwriteNoLock +* +* Function description +* Stores a specified number of characters in SEGGER RTT +* control block. +* SEGGER_RTT_WriteWithOverwriteNoLock does not lock the application +* and overwrites data if the data does not fit into the buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Notes +* (1) If there is not enough space in the "Up"-buffer, data is overwritten. +* (2) For performance reasons this function does not call Init() +* and may only be called after RTT has been initialized. +* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. +* (3) Do not use SEGGER_RTT_WriteWithOverwriteNoLock if a J-Link +* connection reads RTT data. +*/ +void SEGGER_RTT_WriteWithOverwriteNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + const char* pData; + SEGGER_RTT_BUFFER_UP* pRing; + unsigned Avail; + volatile char* pDst; + // + // Get "to-host" ring buffer and copy some elements into local variables. + // + pData = (const char *)pBuffer; + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + // + // Check if we will overwrite data and need to adjust the RdOff. + // + if (pRing->WrOff == pRing->RdOff) { + Avail = pRing->SizeOfBuffer - 1u; + } else if ( pRing->WrOff < pRing->RdOff) { + Avail = pRing->RdOff - pRing->WrOff - 1u; + } else { + Avail = pRing->RdOff - pRing->WrOff - 1u + pRing->SizeOfBuffer; + } + if (NumBytes > Avail) { + pRing->RdOff += (NumBytes - Avail); + while (pRing->RdOff >= pRing->SizeOfBuffer) { + pRing->RdOff -= pRing->SizeOfBuffer; + } + } + // + // Write all data, no need to check the RdOff, but possibly handle multiple wrap-arounds + // + Avail = pRing->SizeOfBuffer - pRing->WrOff; + do { + if (Avail > NumBytes) { + // + // Last round + // + pDst = (pRing->pBuffer + pRing->WrOff) + SEGGER_RTT_UNCACHED_OFF; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + Avail = NumBytes; + while (NumBytes--) { + *pDst++ = *pData++; + }; + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff += Avail; +#else + SEGGER_RTT_MEMCPY((void*)pDst, pData, NumBytes); + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff += NumBytes; +#endif + break; + } else { + // + // Wrap-around necessary, write until wrap-around and reset WrOff + // + pDst = (pRing->pBuffer + pRing->WrOff) + SEGGER_RTT_UNCACHED_OFF; +#if SEGGER_RTT_MEMCPY_USE_BYTELOOP + NumBytes -= Avail; + while (Avail--) { + *pDst++ = *pData++; + }; + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = 0; +#else + SEGGER_RTT_MEMCPY((void*)pDst, pData, Avail); + pData += Avail; + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = 0; + NumBytes -= Avail; +#endif + Avail = (pRing->SizeOfBuffer - 1); + } + } while (NumBytes); +} + +/********************************************************************* +* +* SEGGER_RTT_WriteSkipNoLock +* +* Function description +* Stores a specified number of characters in SEGGER RTT +* control block which is then read by the host. +* SEGGER_RTT_WriteSkipNoLock does not lock the application and +* skips all data, if the data does not fit into the buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* MUST be > 0!!! +* This is done for performance reasons, so no initial check has do be done. +* +* Return value +* 1: Data has been copied +* 0: No space, data has not been copied +* +* Notes +* (1) If there is not enough space in the "Up"-buffer, all data is dropped. +* (2) For performance reasons this function does not call Init() +* and may only be called after RTT has been initialized. +* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. +*/ +#if (RTT_USE_ASM == 0) +unsigned SEGGER_RTT_WriteSkipNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + const char* pData; + SEGGER_RTT_BUFFER_UP* pRing; + unsigned Avail; + unsigned RdOff; + unsigned WrOff; + unsigned Rem; + volatile char* pDst; + // + // Cases: + // 1) RdOff <= WrOff => Space until wrap-around is sufficient + // 2) RdOff <= WrOff => Space after wrap-around needed (copy in 2 chunks) + // 3) RdOff < WrOff => No space in buf + // 4) RdOff > WrOff => Space is sufficient + // 5) RdOff > WrOff => No space in buf + // + // 1) is the most common case for large buffers and assuming that J-Link reads the data fast enough + // + pData = (const char *)pBuffer; + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + RdOff = pRing->RdOff; + WrOff = pRing->WrOff; + pDst = (pRing->pBuffer + WrOff) + SEGGER_RTT_UNCACHED_OFF; + if (RdOff <= WrOff) { // Case 1), 2) or 3) + Avail = pRing->SizeOfBuffer - WrOff - 1u; // Space until wrap-around (assume 1 byte not usable for case that RdOff == 0) + if (Avail >= NumBytes) { // Case 1)? + memcpy((void*)pDst, pData, NumBytes); + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = WrOff + NumBytes; + return 1; + } + Avail += RdOff; // Space incl. wrap-around + if (Avail >= NumBytes) { // Case 2? => If not, we have case 3) (does not fit) + Rem = pRing->SizeOfBuffer - WrOff; // Space until end of buffer + memcpy((void*)pDst, pData, Rem); // Copy 1st chunk + NumBytes -= Rem; + // + // Special case: First check that assumed RdOff == 0 calculated that last element before wrap-around could not be used + // But 2nd check (considering space until wrap-around and until RdOff) revealed that RdOff is not 0, so we can use the last element + // In this case, we may use a copy straight until buffer end anyway without needing to copy 2 chunks + // Therefore, check if 2nd memcpy is necessary at all + // + if (NumBytes) { + pDst = pRing->pBuffer + SEGGER_RTT_UNCACHED_OFF; + memcpy((void*)pDst, pData + Rem, NumBytes); + } + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = NumBytes; + return 1; + } + } else { // Potential case 4) + Avail = RdOff - WrOff - 1u; + if (Avail >= NumBytes) { // Case 4)? => If not, we have case 5) (does not fit) + memcpy((void*)pDst, pData, NumBytes); + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = WrOff + NumBytes; + return 1; + } + } + return 0; // No space in buffer +} +#endif + +/********************************************************************* +* +* SEGGER_RTT_WriteDownBufferNoLock +* +* Function description +* Stores a specified number of characters in SEGGER RTT +* control block inside a buffer. +* SEGGER_RTT_WriteDownBufferNoLock does not lock the application. +* Used to do the same operation that J-Link does, to transfer +* RTT data from other channels, such as TCP/IP or UART. +* +* Parameters +* BufferIndex Index of "Down"-buffer to be used. +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Return value +* Number of bytes which have been stored in the "Down"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +* (2) For performance reasons this function does not call Init() +* and may only be called after RTT has been initialized. +* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. +* +* Additional information +* This function must not be called when J-Link might also do RTT. +*/ +unsigned SEGGER_RTT_WriteDownBufferNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + unsigned Status; + unsigned Avail; + const char* pData; + SEGGER_RTT_BUFFER_UP* pRing; + // + // Get "to-target" ring buffer. + // It is save to cast that to a "to-host" buffer. Up and Down buffer differ in volatility of offsets that might be modified by J-Link. + // + pData = (const char *)pBuffer; + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aDown[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + // + // How we output depends upon the mode... + // + switch (pRing->Flags) { + case SEGGER_RTT_MODE_NO_BLOCK_SKIP: + // + // If we are in skip mode and there is no space for the whole + // of this output, don't bother. + // + Avail = _GetAvailWriteSpace(pRing); + if (Avail < NumBytes) { + Status = 0u; + } else { + Status = NumBytes; + _WriteNoCheck(pRing, pData, NumBytes); + } + break; + case SEGGER_RTT_MODE_NO_BLOCK_TRIM: + // + // If we are in trim mode, trim to what we can output without blocking. + // + Avail = _GetAvailWriteSpace(pRing); + Status = Avail < NumBytes ? Avail : NumBytes; + _WriteNoCheck(pRing, pData, Status); + break; + case SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL: + // + // If we are in blocking mode, output everything. + // + Status = _WriteBlocking(pRing, pData, NumBytes); + break; + default: + Status = 0u; + break; + } + // + // Finish up. + // + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_WriteNoLock +* +* Function description +* Stores a specified number of characters in SEGGER RTT +* control block which is then read by the host. +* SEGGER_RTT_WriteNoLock does not lock the application. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +* (2) For performance reasons this function does not call Init() +* and may only be called after RTT has been initialized. +* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. +*/ +unsigned SEGGER_RTT_WriteNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + unsigned Status; + unsigned Avail; + const char* pData; + SEGGER_RTT_BUFFER_UP* pRing; + // + // Get "to-host" ring buffer. + // + pData = (const char *)pBuffer; + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + // + // How we output depends upon the mode... + // + switch (pRing->Flags) { + case SEGGER_RTT_MODE_NO_BLOCK_SKIP: + // + // If we are in skip mode and there is no space for the whole + // of this output, don't bother. + // + Avail = _GetAvailWriteSpace(pRing); + if (Avail < NumBytes) { + Status = 0u; + } else { + Status = NumBytes; + _WriteNoCheck(pRing, pData, NumBytes); + } + break; + case SEGGER_RTT_MODE_NO_BLOCK_TRIM: + // + // If we are in trim mode, trim to what we can output without blocking. + // + Avail = _GetAvailWriteSpace(pRing); + Status = Avail < NumBytes ? Avail : NumBytes; + _WriteNoCheck(pRing, pData, Status); + break; + case SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL: + // + // If we are in blocking mode, output everything. + // + Status = _WriteBlocking(pRing, pData, NumBytes); + break; + default: + Status = 0u; + break; + } + // + // Finish up. + // + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_WriteDownBuffer +* +* Function description +* Stores a specified number of characters in SEGGER RTT control block in a buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Return value +* Number of bytes which have been stored in the "Down"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +* +* Additional information +* This function must not be called when J-Link might also do RTT. +* This function locks against all other RTT operations. I.e. during +* the write operation, writing from the application is also locked. +* If only one consumer writes to the down buffer, +* call SEGGER_RTT_WriteDownBufferNoLock() instead. +*/ +unsigned SEGGER_RTT_WriteDownBuffer(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + unsigned Status; + + INIT(); + SEGGER_RTT_LOCK(); + Status = SEGGER_RTT_WriteDownBufferNoLock(BufferIndex, pBuffer, NumBytes); // Call the non-locking write function + SEGGER_RTT_UNLOCK(); + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_Write +* +* Function description +* Stores a specified number of characters in SEGGER RTT +* control block which is then read by the host. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +*/ +unsigned SEGGER_RTT_Write(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes) { + unsigned Status; + + INIT(); + SEGGER_RTT_LOCK(); + Status = SEGGER_RTT_WriteNoLock(BufferIndex, pBuffer, NumBytes); // Call the non-locking write function + SEGGER_RTT_UNLOCK(); + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_WriteString +* +* Function description +* Stores string in SEGGER RTT control block. +* This data is read by the host. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* s Pointer to string. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +* (2) String passed to this function has to be \0 terminated +* (3) \0 termination character is *not* stored in RTT buffer +*/ +unsigned SEGGER_RTT_WriteString(unsigned BufferIndex, const char* s) { + unsigned Len; + + Len = STRLEN(s); + return SEGGER_RTT_Write(BufferIndex, s, Len); +} + +/********************************************************************* +* +* SEGGER_RTT_PutCharSkipNoLock +* +* Function description +* Stores a single character/byte in SEGGER RTT buffer. +* SEGGER_RTT_PutCharSkipNoLock does not lock the application and +* skips the byte, if it does not fit into the buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* c Byte to be stored. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) If there is not enough space in the "Up"-buffer, the character is dropped. +* (2) For performance reasons this function does not call Init() +* and may only be called after RTT has been initialized. +* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. +*/ + +unsigned SEGGER_RTT_PutCharSkipNoLock(unsigned BufferIndex, char c) { + SEGGER_RTT_BUFFER_UP* pRing; + unsigned WrOff; + unsigned Status; + volatile char* pDst; + // + // Get "to-host" ring buffer. + // + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + // + // Get write position and handle wrap-around if necessary + // + WrOff = pRing->WrOff + 1; + if (WrOff == pRing->SizeOfBuffer) { + WrOff = 0; + } + // + // Output byte if free space is available + // + if (WrOff != pRing->RdOff) { + pDst = (pRing->pBuffer + pRing->WrOff) + SEGGER_RTT_UNCACHED_OFF; + *pDst = c; + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = WrOff; + Status = 1; + } else { + Status = 0; + } + // + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_PutCharSkip +* +* Function description +* Stores a single character/byte in SEGGER RTT buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* c Byte to be stored. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) If there is not enough space in the "Up"-buffer, the character is dropped. +*/ + +unsigned SEGGER_RTT_PutCharSkip(unsigned BufferIndex, char c) { + SEGGER_RTT_BUFFER_UP* pRing; + unsigned WrOff; + unsigned Status; + volatile char* pDst; + // + // Prepare + // + INIT(); + SEGGER_RTT_LOCK(); + // + // Get "to-host" ring buffer. + // + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + // + // Get write position and handle wrap-around if necessary + // + WrOff = pRing->WrOff + 1; + if (WrOff == pRing->SizeOfBuffer) { + WrOff = 0; + } + // + // Output byte if free space is available + // + if (WrOff != pRing->RdOff) { + pDst = (pRing->pBuffer + pRing->WrOff) + SEGGER_RTT_UNCACHED_OFF; + *pDst = c; + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = WrOff; + Status = 1; + } else { + Status = 0; + } + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + // + return Status; +} + + /********************************************************************* +* +* SEGGER_RTT_PutChar +* +* Function description +* Stores a single character/byte in SEGGER RTT buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* c Byte to be stored. +* +* Return value +* Number of bytes which have been stored in the "Up"-buffer. +* +* Notes +* (1) Data is stored according to buffer flags. +*/ + +unsigned SEGGER_RTT_PutChar(unsigned BufferIndex, char c) { + SEGGER_RTT_BUFFER_UP* pRing; + unsigned WrOff; + unsigned Status; + volatile char* pDst; + // + // Prepare + // + INIT(); + SEGGER_RTT_LOCK(); + // + // Get "to-host" ring buffer. + // + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + // + // Get write position and handle wrap-around if necessary + // + WrOff = pRing->WrOff + 1; + if (WrOff == pRing->SizeOfBuffer) { + WrOff = 0; + } + // + // Wait for free space if mode is set to blocking + // + if (pRing->Flags == SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL) { + while (WrOff == pRing->RdOff) { + ; + } + } + // + // Output byte if free space is available + // + if (WrOff != pRing->RdOff) { + pDst = (pRing->pBuffer + pRing->WrOff) + SEGGER_RTT_UNCACHED_OFF; + *pDst = c; + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + pRing->WrOff = WrOff; + Status = 1; + } else { + Status = 0; + } + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_GetKey +* +* Function description +* Reads one character from the SEGGER RTT buffer. +* Host has previously stored data there. +* +* Return value +* < 0 - No character available (buffer empty). +* >= 0 - Character which has been read. (Possible values: 0 - 255) +* +* Notes +* (1) This function is only specified for accesses to RTT buffer 0. +*/ +int SEGGER_RTT_GetKey(void) { + char c; + int r; + + r = (int)SEGGER_RTT_Read(0u, &c, 1u); + if (r == 1) { + r = (int)(unsigned char)c; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_WaitKey +* +* Function description +* Waits until at least one character is avaible in the SEGGER RTT buffer. +* Once a character is available, it is read and this function returns. +* +* Return value +* >=0 - Character which has been read. +* +* Notes +* (1) This function is only specified for accesses to RTT buffer 0 +* (2) This function is blocking if no character is present in RTT buffer +*/ +int SEGGER_RTT_WaitKey(void) { + int r; + + do { + r = SEGGER_RTT_GetKey(); + } while (r < 0); + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_HasKey +* +* Function description +* Checks if at least one character for reading is available in the SEGGER RTT buffer. +* +* Return value +* == 0 - No characters are available to read. +* == 1 - At least one character is available. +* +* Notes +* (1) This function is only specified for accesses to RTT buffer 0 +*/ +int SEGGER_RTT_HasKey(void) { + SEGGER_RTT_BUFFER_DOWN* pRing; + unsigned RdOff; + int r; + + INIT(); + pRing = (SEGGER_RTT_BUFFER_DOWN*)((uintptr_t)&_SEGGER_RTT.aDown[0] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + RdOff = pRing->RdOff; + if (RdOff != pRing->WrOff) { + r = 1; + } else { + r = 0; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_HasData +* +* Function description +* Check if there is data from the host in the given buffer. +* +* Return value: +* ==0: No data +* !=0: Data in buffer +* +*/ +unsigned SEGGER_RTT_HasData(unsigned BufferIndex) { + SEGGER_RTT_BUFFER_DOWN* pRing; + unsigned v; + + pRing = (SEGGER_RTT_BUFFER_DOWN*)((uintptr_t)&_SEGGER_RTT.aDown[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + v = pRing->WrOff; + return v - pRing->RdOff; +} + +/********************************************************************* +* +* SEGGER_RTT_HasDataUp +* +* Function description +* Check if there is data remaining to be sent in the given buffer. +* +* Return value: +* ==0: No data +* !=0: Data in buffer +* +*/ +unsigned SEGGER_RTT_HasDataUp(unsigned BufferIndex) { + SEGGER_RTT_BUFFER_UP* pRing; + unsigned v; + + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + v = pRing->RdOff; + return pRing->WrOff - v; +} + +/********************************************************************* +* +* SEGGER_RTT_AllocDownBuffer +* +* Function description +* Run-time configuration of the next down-buffer (H->T). +* The next buffer, which is not used yet is configured. +* This includes: Buffer address, size, name, flags, ... +* +* Parameters +* sName Pointer to a constant name string. +* pBuffer Pointer to a buffer to be used. +* BufferSize Size of the buffer. +* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). +* Flags[31:24] are used for validity check and must be zero. Flags[23:2] are reserved for future use. Flags[1:0] = RTT operating mode. +* +* Return value +* >= 0 - O.K. Buffer Index +* < 0 - Error +*/ +int SEGGER_RTT_AllocDownBuffer(const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { + int BufferIndex; + volatile SEGGER_RTT_CB* pRTTCB; + + INIT(); + SEGGER_RTT_LOCK(); + pRTTCB = (volatile SEGGER_RTT_CB*)((uintptr_t)&_SEGGER_RTT + SEGGER_RTT_UNCACHED_OFF); // Access RTTCB uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + BufferIndex = 0; + do { + if (pRTTCB->aDown[BufferIndex].pBuffer == NULL) { + break; + } + BufferIndex++; + } while (BufferIndex < pRTTCB->MaxNumDownBuffers); + if (BufferIndex < pRTTCB->MaxNumDownBuffers) { + pRTTCB->aDown[BufferIndex].sName = sName; + pRTTCB->aDown[BufferIndex].pBuffer = (char*)pBuffer; + pRTTCB->aDown[BufferIndex].SizeOfBuffer = BufferSize; + pRTTCB->aDown[BufferIndex].RdOff = 0u; + pRTTCB->aDown[BufferIndex].WrOff = 0u; + pRTTCB->aDown[BufferIndex].Flags = Flags; + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + } else { + BufferIndex = -1; + } + SEGGER_RTT_UNLOCK(); + return BufferIndex; +} + +/********************************************************************* +* +* SEGGER_RTT_AllocUpBuffer +* +* Function description +* Run-time configuration of the next up-buffer (T->H). +* The next buffer, which is not used yet is configured. +* This includes: Buffer address, size, name, flags, ... +* +* Parameters +* sName Pointer to a constant name string. +* pBuffer Pointer to a buffer to be used. +* BufferSize Size of the buffer. +* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). +* Flags[31:24] are used for validity check and must be zero. Flags[23:2] are reserved for future use. Flags[1:0] = RTT operating mode. +* +* Return value +* >= 0 - O.K. Buffer Index +* < 0 - Error +*/ +int SEGGER_RTT_AllocUpBuffer(const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { + int BufferIndex; + volatile SEGGER_RTT_CB* pRTTCB; + + INIT(); + SEGGER_RTT_LOCK(); + pRTTCB = (volatile SEGGER_RTT_CB*)((uintptr_t)&_SEGGER_RTT + SEGGER_RTT_UNCACHED_OFF); // Access RTTCB uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + BufferIndex = 0; + do { + if (pRTTCB->aUp[BufferIndex].pBuffer == NULL) { + break; + } + BufferIndex++; + } while (BufferIndex < pRTTCB->MaxNumUpBuffers); + if (BufferIndex < pRTTCB->MaxNumUpBuffers) { + pRTTCB->aUp[BufferIndex].sName = sName; + pRTTCB->aUp[BufferIndex].pBuffer = (char*)pBuffer; + pRTTCB->aUp[BufferIndex].SizeOfBuffer = BufferSize; + pRTTCB->aUp[BufferIndex].RdOff = 0u; + pRTTCB->aUp[BufferIndex].WrOff = 0u; + pRTTCB->aUp[BufferIndex].Flags = Flags; + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + } else { + BufferIndex = -1; + } + SEGGER_RTT_UNLOCK(); + return BufferIndex; +} + +/********************************************************************* +* +* SEGGER_RTT_ConfigUpBuffer +* +* Function description +* Run-time configuration of a specific up-buffer (T->H). +* Buffer to be configured is specified by index. +* This includes: Buffer address, size, name, flags, ... +* +* Parameters +* BufferIndex Index of the buffer to configure. +* sName Pointer to a constant name string. +* pBuffer Pointer to a buffer to be used. +* BufferSize Size of the buffer. +* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). +* Flags[31:24] are used for validity check and must be zero. Flags[23:2] are reserved for future use. Flags[1:0] = RTT operating mode. +* +* Return value +* >= 0 - O.K. +* < 0 - Error +* +* Additional information +* Buffer 0 is configured on compile-time. +* May only be called once per buffer. +* Buffer name and flags can be reconfigured using the appropriate functions. +*/ +int SEGGER_RTT_ConfigUpBuffer(unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { + int r; + volatile SEGGER_RTT_CB* pRTTCB; + volatile SEGGER_RTT_BUFFER_UP* pUp; + + INIT(); + pRTTCB = (volatile SEGGER_RTT_CB*)((uintptr_t)&_SEGGER_RTT + SEGGER_RTT_UNCACHED_OFF); // Access RTTCB uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + if (BufferIndex < SEGGER_RTT_MAX_NUM_UP_BUFFERS) { + SEGGER_RTT_LOCK(); + pUp = &pRTTCB->aUp[BufferIndex]; + if (BufferIndex) { + pUp->sName = sName; + pUp->pBuffer = (char*)pBuffer; + pUp->SizeOfBuffer = BufferSize; + pUp->RdOff = 0u; + pUp->WrOff = 0u; + } + pUp->Flags = Flags; + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_ConfigDownBuffer +* +* Function description +* Run-time configuration of a specific down-buffer (H->T). +* Buffer to be configured is specified by index. +* This includes: Buffer address, size, name, flags, ... +* +* Parameters +* BufferIndex Index of the buffer to configure. +* sName Pointer to a constant name string. +* pBuffer Pointer to a buffer to be used. +* BufferSize Size of the buffer. +* Flags Operating modes. Define behavior if buffer is full (not enough space for entire message). +* Flags[31:24] are used for validity check and must be zero. Flags[23:2] are reserved for future use. Flags[1:0] = RTT operating mode. +* +* Return value +* >= 0 O.K. +* < 0 Error +* +* Additional information +* Buffer 0 is configured on compile-time. +* May only be called once per buffer. +* Buffer name and flags can be reconfigured using the appropriate functions. +*/ +int SEGGER_RTT_ConfigDownBuffer(unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags) { + int r; + volatile SEGGER_RTT_CB* pRTTCB; + volatile SEGGER_RTT_BUFFER_DOWN* pDown; + + INIT(); + pRTTCB = (volatile SEGGER_RTT_CB*)((uintptr_t)&_SEGGER_RTT + SEGGER_RTT_UNCACHED_OFF); // Access RTTCB uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + if (BufferIndex < SEGGER_RTT_MAX_NUM_DOWN_BUFFERS) { + SEGGER_RTT_LOCK(); + pDown = &pRTTCB->aDown[BufferIndex]; + if (BufferIndex) { + pDown->sName = sName; + pDown->pBuffer = (char*)pBuffer; + pDown->SizeOfBuffer = BufferSize; + pDown->RdOff = 0u; + pDown->WrOff = 0u; + } + pDown->Flags = Flags; + RTT__DMB(); // Force data write to be complete before writing the , in case CPU is allowed to change the order of memory accesses + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_SetNameUpBuffer +* +* Function description +* Run-time configuration of a specific up-buffer name (T->H). +* Buffer to be configured is specified by index. +* +* Parameters +* BufferIndex Index of the buffer to renamed. +* sName Pointer to a constant name string. +* +* Return value +* >= 0 O.K. +* < 0 Error +*/ +int SEGGER_RTT_SetNameUpBuffer(unsigned BufferIndex, const char* sName) { + int r; + volatile SEGGER_RTT_CB* pRTTCB; + volatile SEGGER_RTT_BUFFER_UP* pUp; + + INIT(); + pRTTCB = (volatile SEGGER_RTT_CB*)((uintptr_t)&_SEGGER_RTT + SEGGER_RTT_UNCACHED_OFF); // Access RTTCB uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + if (BufferIndex < SEGGER_RTT_MAX_NUM_UP_BUFFERS) { + SEGGER_RTT_LOCK(); + pUp = &pRTTCB->aUp[BufferIndex]; + pUp->sName = sName; + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_SetNameDownBuffer +* +* Function description +* Run-time configuration of a specific Down-buffer name (T->H). +* Buffer to be configured is specified by index. +* +* Parameters +* BufferIndex Index of the buffer to renamed. +* sName Pointer to a constant name string. +* +* Return value +* >= 0 O.K. +* < 0 Error +*/ +int SEGGER_RTT_SetNameDownBuffer(unsigned BufferIndex, const char* sName) { + int r; + volatile SEGGER_RTT_CB* pRTTCB; + volatile SEGGER_RTT_BUFFER_DOWN* pDown; + + INIT(); + pRTTCB = (volatile SEGGER_RTT_CB*)((uintptr_t)&_SEGGER_RTT + SEGGER_RTT_UNCACHED_OFF); // Access RTTCB uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + if (BufferIndex < SEGGER_RTT_MAX_NUM_DOWN_BUFFERS) { + SEGGER_RTT_LOCK(); + pDown = &pRTTCB->aDown[BufferIndex]; + pDown->sName = sName; + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_SetFlagsUpBuffer +* +* Function description +* Run-time configuration of specific up-buffer flags (T->H). +* Buffer to be configured is specified by index. +* +* Parameters +* BufferIndex Index of the buffer. +* Flags Flags to set for the buffer. +* Flags[31:24] are used for validity check and must be zero. Flags[23:2] are reserved for future use. Flags[1:0] = RTT operating mode. +* +* Return value +* >= 0 O.K. +* < 0 Error +*/ +int SEGGER_RTT_SetFlagsUpBuffer(unsigned BufferIndex, unsigned Flags) { + int r; + volatile SEGGER_RTT_CB* pRTTCB; + volatile SEGGER_RTT_BUFFER_UP* pUp; + + INIT(); + pRTTCB = (volatile SEGGER_RTT_CB*)((uintptr_t)&_SEGGER_RTT + SEGGER_RTT_UNCACHED_OFF); // Access RTTCB uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + if (BufferIndex < SEGGER_RTT_MAX_NUM_UP_BUFFERS) { + SEGGER_RTT_LOCK(); + pUp = &pRTTCB->aUp[BufferIndex]; + pUp->Flags = Flags; + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_SetFlagsDownBuffer +* +* Function description +* Run-time configuration of specific Down-buffer flags (T->H). +* Buffer to be configured is specified by index. +* +* Parameters +* BufferIndex Index of the buffer to renamed. +* Flags Flags to set for the buffer. +* Flags[31:24] are used for validity check and must be zero. Flags[23:2] are reserved for future use. Flags[1:0] = RTT operating mode. +* +* Return value +* >= 0 O.K. +* < 0 Error +*/ +int SEGGER_RTT_SetFlagsDownBuffer(unsigned BufferIndex, unsigned Flags) { + int r; + volatile SEGGER_RTT_CB* pRTTCB; + volatile SEGGER_RTT_BUFFER_DOWN* pDown; + + INIT(); + pRTTCB = (volatile SEGGER_RTT_CB*)((uintptr_t)&_SEGGER_RTT + SEGGER_RTT_UNCACHED_OFF); // Access RTTCB uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + if (BufferIndex < SEGGER_RTT_MAX_NUM_DOWN_BUFFERS) { + SEGGER_RTT_LOCK(); + pDown = &pRTTCB->aDown[BufferIndex]; + pDown->Flags = Flags; + SEGGER_RTT_UNLOCK(); + r = 0; + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_Init +* +* Function description +* Initializes the RTT Control Block. +* Should be used in RAM targets, at start of the application. +* +*/ +void SEGGER_RTT_Init (void) { + _DoInit(); +} + +/********************************************************************* +* +* SEGGER_RTT_SetTerminal +* +* Function description +* Sets the terminal to be used for output on channel 0. +* +* Parameters +* TerminalId Index of the terminal. +* +* Return value +* >= 0 O.K. +* < 0 Error (e.g. if RTT is configured for non-blocking mode and there was no space in the buffer to set the new terminal Id) +* +* Notes +* (1) Buffer 0 is always reserved for terminal I/O, so we can use index 0 here, fixed +*/ +int SEGGER_RTT_SetTerminal (unsigned char TerminalId) { + unsigned char ac[2]; + SEGGER_RTT_BUFFER_UP* pRing; + unsigned Avail; + int r; + + INIT(); + r = 0; + ac[0] = 0xFFu; + if (TerminalId < sizeof(_aTerminalId)) { // We only support a certain number of channels + ac[1] = _aTerminalId[TerminalId]; + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[0] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + SEGGER_RTT_LOCK(); // Lock to make sure that no other task is writing into buffer, while we are and number of free bytes in buffer does not change downwards after checking and before writing + if ((pRing->Flags & SEGGER_RTT_MODE_MASK) == SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL) { + _ActiveTerminal = TerminalId; + _WriteBlocking(pRing, (const char*)ac, 2u); + } else { // Skipping mode or trim mode? => We cannot trim this command so handling is the same for both modes + Avail = _GetAvailWriteSpace(pRing); + if (Avail >= 2) { + _ActiveTerminal = TerminalId; // Only change active terminal in case of success + _WriteNoCheck(pRing, (const char*)ac, 2u); + } else { + r = -1; + } + } + SEGGER_RTT_UNLOCK(); + } else { + r = -1; + } + return r; +} + +/********************************************************************* +* +* SEGGER_RTT_TerminalOut +* +* Function description +* Writes a string to the given terminal +* without changing the terminal for channel 0. +* +* Parameters +* TerminalId Index of the terminal. +* s String to be printed on the terminal. +* +* Return value +* >= 0 - Number of bytes written. +* < 0 - Error. +* +*/ +int SEGGER_RTT_TerminalOut (unsigned char TerminalId, const char* s) { + int Status; + unsigned FragLen; + unsigned Avail; + SEGGER_RTT_BUFFER_UP* pRing; + // + INIT(); + // + // Validate terminal ID. + // + if (TerminalId < (char)sizeof(_aTerminalId)) { // We only support a certain number of channels + // + // Get "to-host" ring buffer. + // + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[0] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + // + // Need to be able to change terminal, write data, change back. + // Compute the fixed and variable sizes. + // + FragLen = STRLEN(s); + // + // How we output depends upon the mode... + // + SEGGER_RTT_LOCK(); + Avail = _GetAvailWriteSpace(pRing); + switch (pRing->Flags & SEGGER_RTT_MODE_MASK) { + case SEGGER_RTT_MODE_NO_BLOCK_SKIP: + // + // If we are in skip mode and there is no space for the whole + // of this output, don't bother switching terminals at all. + // + if (Avail < (FragLen + 4u)) { + Status = 0; + } else { + _PostTerminalSwitch(pRing, TerminalId); + Status = (int)_WriteBlocking(pRing, s, FragLen); + _PostTerminalSwitch(pRing, _ActiveTerminal); + } + break; + case SEGGER_RTT_MODE_NO_BLOCK_TRIM: + // + // If we are in trim mode and there is not enough space for everything, + // trim the output but always include the terminal switch. If no room + // for terminal switch, skip that totally. + // + if (Avail < 4u) { + Status = -1; + } else { + _PostTerminalSwitch(pRing, TerminalId); + Status = (int)_WriteBlocking(pRing, s, (FragLen < (Avail - 4u)) ? FragLen : (Avail - 4u)); + _PostTerminalSwitch(pRing, _ActiveTerminal); + } + break; + case SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL: + // + // If we are in blocking mode, output everything. + // + _PostTerminalSwitch(pRing, TerminalId); + Status = (int)_WriteBlocking(pRing, s, FragLen); + _PostTerminalSwitch(pRing, _ActiveTerminal); + break; + default: + Status = -1; + break; + } + // + // Finish up. + // + SEGGER_RTT_UNLOCK(); + } else { + Status = -1; + } + return Status; +} + +/********************************************************************* +* +* SEGGER_RTT_GetAvailWriteSpace +* +* Function description +* Returns the number of bytes available in the ring buffer. +* +* Parameters +* BufferIndex Index of the up buffer. +* +* Return value +* Number of bytes that are free in the selected up buffer. +*/ +unsigned SEGGER_RTT_GetAvailWriteSpace (unsigned BufferIndex) { + SEGGER_RTT_BUFFER_UP* pRing; + + pRing = (SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[BufferIndex] + SEGGER_RTT_UNCACHED_OFF); // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + return _GetAvailWriteSpace(pRing); +} + + +/********************************************************************* +* +* SEGGER_RTT_GetBytesInBuffer() +* +* Function description +* Returns the number of bytes currently used in the up buffer. +* +* Parameters +* BufferIndex Index of the up buffer. +* +* Return value +* Number of bytes that are used in the buffer. +*/ +unsigned SEGGER_RTT_GetBytesInBuffer(unsigned BufferIndex) { + unsigned RdOff; + unsigned WrOff; + unsigned r; + volatile SEGGER_RTT_CB* pRTTCB; + // + // Avoid warnings regarding volatile access order. It's not a problem + // in this case, but dampen compiler enthusiasm. + // + pRTTCB = (volatile SEGGER_RTT_CB*)((uintptr_t)&_SEGGER_RTT + SEGGER_RTT_UNCACHED_OFF); // Access RTTCB uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + RdOff = pRTTCB->aUp[BufferIndex].RdOff; + WrOff = pRTTCB->aUp[BufferIndex].WrOff; + if (RdOff <= WrOff) { + r = WrOff - RdOff; + } else { + r = pRTTCB->aUp[BufferIndex].SizeOfBuffer - (WrOff - RdOff); + } + return r; +} + +/*************************** End of file ****************************/ diff --git a/lib/SEGGER/RTT/RTT/SEGGER_RTT.h b/lib/SEGGER/RTT/RTT/SEGGER_RTT.h new file mode 100644 index 0000000..e8679b4 --- /dev/null +++ b/lib/SEGGER/RTT/RTT/SEGGER_RTT.h @@ -0,0 +1,520 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : SEGGER_RTT.h +Purpose : Implementation of SEGGER real-time transfer which allows + real-time communication on targets which support debugger + memory accesses while the CPU is running. +Revision: $Rev: 25842 $ +---------------------------------------------------------------------- +*/ + +#ifndef SEGGER_RTT_H +#define SEGGER_RTT_H + +#include "SEGGER_RTT_Conf.h" + +/********************************************************************* +* +* Defines, defaults +* +********************************************************************** +*/ + +#ifndef RTT_USE_ASM + // + // Some cores support out-of-order memory accesses (reordering of memory accesses in the core) + // For such cores, we need to define a memory barrier to guarantee the order of certain accesses to the RTT ring buffers. + // Needed for: + // Cortex-M7 (ARMv7-M) + // Cortex-M23 (ARM-v8M) + // Cortex-M33 (ARM-v8M) + // Cortex-A/R (ARM-v7A/R) + // + // We do not explicitly check for "Embedded Studio" as the compiler in use determines what we support. + // You can use an external toolchain like IAR inside ES. So there is no point in checking for "Embedded Studio" + // + #if (defined __CROSSWORKS_ARM) // Rowley Crossworks + #define _CC_HAS_RTT_ASM_SUPPORT 1 + #if (defined __ARM_ARCH_7M__) // Cortex-M3 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #elif (defined __ARM_ARCH_7EM__) // Cortex-M4/M7 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #elif (defined __ARM_ARCH_8M_BASE__) // Cortex-M23 + #define _CORE_HAS_RTT_ASM_SUPPORT 0 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #elif (defined __ARM_ARCH_8M_MAIN__) // Cortex-M33 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #elif (defined(__ARM_ARCH_8_1M_MAIN__)) // Cortex-M85 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #else + #define _CORE_HAS_RTT_ASM_SUPPORT 0 + #endif + #elif (defined __ARMCC_VERSION) + // + // ARM compiler + // ARM compiler V6.0 and later is clang based. + // Our ASM part is compatible to clang. + // + #if (__ARMCC_VERSION >= 6000000) + #define _CC_HAS_RTT_ASM_SUPPORT 1 + #else + #define _CC_HAS_RTT_ASM_SUPPORT 0 + #endif + #if (defined __ARM_ARCH_6M__) // Cortex-M0 / M1 + #define _CORE_HAS_RTT_ASM_SUPPORT 0 // No ASM support for this architecture + #elif (defined __ARM_ARCH_7M__) // Cortex-M3 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #elif (defined __ARM_ARCH_7EM__) // Cortex-M4/M7 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #elif (defined __ARM_ARCH_8M_BASE__) // Cortex-M23 + #define _CORE_HAS_RTT_ASM_SUPPORT 0 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #elif (defined __ARM_ARCH_8M_MAIN__) // Cortex-M33 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #elif (defined __ARM_ARCH_8_1M_MAIN__) // Cortex-M85 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #elif \ + ((defined __ARM_ARCH_7A__) || (defined __ARM_ARCH_7R__)) || \ + ((defined __ARM_ARCH_8A__) || (defined __ARM_ARCH_8R__)) + // + // Cortex-A/R ARMv7-A/R & ARMv8-A/R + // + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #else + #define _CORE_HAS_RTT_ASM_SUPPORT 0 + #endif + #elif ((defined __GNUC__) || (defined __clang__)) + // + // GCC / Clang + // + #define _CC_HAS_RTT_ASM_SUPPORT 1 + // ARM 7/9: __ARM_ARCH_5__ / __ARM_ARCH_5E__ / __ARM_ARCH_5T__ / __ARM_ARCH_5T__ / __ARM_ARCH_5TE__ + #if (defined __ARM_ARCH_7M__) // Cortex-M3 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #elif (defined __ARM_ARCH_7EM__) // Cortex-M4/M7 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 // Only Cortex-M7 needs a DMB but we cannot distinguish M4 and M7 here... + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #elif (defined __ARM_ARCH_8M_BASE__) // Cortex-M23 + #define _CORE_HAS_RTT_ASM_SUPPORT 0 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #elif (defined __ARM_ARCH_8M_MAIN__) // Cortex-M33 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #elif (defined __ARM_ARCH_8_1M_MAIN__) // Cortex-M85 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #elif \ + (defined __ARM_ARCH_7A__) || (defined __ARM_ARCH_7R__) || \ + (defined __ARM_ARCH_8A__) || (defined __ARM_ARCH_8R__) + // + // Cortex-A/R ARMv7-A/R & ARMv8-A/R + // + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() __asm volatile ("dmb\n" : : :); + #else + #define _CORE_HAS_RTT_ASM_SUPPORT 0 + #endif + #elif ((defined __IASMARM__) || (defined __ICCARM__)) + // + // IAR assembler/compiler + // + #define _CC_HAS_RTT_ASM_SUPPORT 1 + #if (__VER__ < 6300000) + #define VOLATILE + #else + #define VOLATILE volatile + #endif + #if (defined __ARM7M__) // Needed for old versions that do not know the define yet + #if (__CORE__ == __ARM7M__) // Cortex-M3 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #endif + #endif + #if (defined __ARM7EM__) + #if (__CORE__ == __ARM7EM__) // Cortex-M4/M7 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() asm VOLATILE ("DMB"); + #endif + #endif + #if (defined __ARM8M_BASELINE__) + #if (__CORE__ == __ARM8M_BASELINE__) // Cortex-M23 + #define _CORE_HAS_RTT_ASM_SUPPORT 0 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() asm VOLATILE ("DMB"); + #endif + #endif + #if (defined __ARM8M_MAINLINE__) + #if (__CORE__ == __ARM8M_MAINLINE__) // Cortex-M33 + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() asm VOLATILE ("DMB"); + #endif + #endif + #if (defined __ARM8EM_MAINLINE__) + #if (__CORE__ == __ARM8EM_MAINLINE__) // Cortex-??? + #define _CORE_HAS_RTT_ASM_SUPPORT 1 + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() asm VOLATILE ("DMB"); + #endif + #endif + #if\ + ((defined __ARM7A__) && (__CORE__ == __ARM7A__)) || \ + ((defined __ARM7R__) && (__CORE__ == __ARM7R__)) || \ + ((defined __ARM8A__) && (__CORE__ == __ARM8A__)) || \ + ((defined __ARM8R__) && (__CORE__ == __ARM8R__)) + // + // Cortex-A/R ARMv7-A/R & ARMv8-A/R + // + #define _CORE_NEEDS_DMB 1 + #define RTT__DMB() asm VOLATILE ("DMB"); + #endif + #else + // + // Other compilers + // + #define _CC_HAS_RTT_ASM_SUPPORT 0 + #define _CORE_HAS_RTT_ASM_SUPPORT 0 + #endif + // + // If IDE and core support the ASM version, enable ASM version by default + // + #ifndef _CORE_HAS_RTT_ASM_SUPPORT + #define _CORE_HAS_RTT_ASM_SUPPORT 0 // Default for unknown cores + #endif + #if (_CC_HAS_RTT_ASM_SUPPORT && _CORE_HAS_RTT_ASM_SUPPORT) + #define RTT_USE_ASM (1) + #else + #define RTT_USE_ASM (0) + #endif +#endif + +#ifndef _CORE_NEEDS_DMB + #define _CORE_NEEDS_DMB 0 +#endif + +#ifndef RTT__DMB + #if _CORE_NEEDS_DMB + #error "Don't know how to place inline assembly for DMB" + #else + #define RTT__DMB() + #endif +#endif + +#ifndef SEGGER_RTT_CPU_CACHE_LINE_SIZE + #define SEGGER_RTT_CPU_CACHE_LINE_SIZE (0) // On most target systems where RTT is used, we do not have a CPU cache, therefore 0 is a good default here +#endif + +#ifndef SEGGER_RTT_UNCACHED_OFF + #if SEGGER_RTT_CPU_CACHE_LINE_SIZE + #error "SEGGER_RTT_UNCACHED_OFF must be defined when setting SEGGER_RTT_CPU_CACHE_LINE_SIZE != 0" + #else + #define SEGGER_RTT_UNCACHED_OFF (0) + #endif +#endif +#if RTT_USE_ASM + #if SEGGER_RTT_CPU_CACHE_LINE_SIZE + #error "RTT_USE_ASM is not available if SEGGER_RTT_CPU_CACHE_LINE_SIZE != 0" + #endif +#endif + +#ifndef SEGGER_RTT_ASM // defined when SEGGER_RTT.h is included from assembly file +#include +#include +#include + +/********************************************************************* +* +* Defines, fixed +* +********************************************************************** +*/ + +// +// Determine how much we must pad the control block to make it a multiple of a cache line in size +// Assuming: U8 = 1B +// U16 = 2B +// U32 = 4B +// U8/U16/U32* = 4B +// +#if SEGGER_RTT_CPU_CACHE_LINE_SIZE // Avoid division by zero in case we do not have any cache + #define SEGGER_RTT__ROUND_UP_2_CACHE_LINE_SIZE(NumBytes) (((NumBytes + SEGGER_RTT_CPU_CACHE_LINE_SIZE - 1) / SEGGER_RTT_CPU_CACHE_LINE_SIZE) * SEGGER_RTT_CPU_CACHE_LINE_SIZE) +#else + #define SEGGER_RTT__ROUND_UP_2_CACHE_LINE_SIZE(NumBytes) (NumBytes) +#endif +#define SEGGER_RTT__CB_SIZE (16 + 4 + 4 + (SEGGER_RTT_MAX_NUM_UP_BUFFERS * 24) + (SEGGER_RTT_MAX_NUM_DOWN_BUFFERS * 24)) +#define SEGGER_RTT__CB_PADDING (SEGGER_RTT__ROUND_UP_2_CACHE_LINE_SIZE(SEGGER_RTT__CB_SIZE) - SEGGER_RTT__CB_SIZE) + +/********************************************************************* +* +* Types +* +********************************************************************** +*/ + +// +// Description for a circular buffer (also called "ring buffer") +// which is used as up-buffer (T->H) +// +typedef struct { + const char* sName; // Optional name. Standard names so far are: "Terminal", "SysView", "J-Scope_t4i4" + char* pBuffer; // Pointer to start of buffer + unsigned SizeOfBuffer; // Buffer size in bytes. Note that one byte is lost, as this implementation does not fill up the buffer in order to avoid the problem of being unable to distinguish between full and empty. + unsigned WrOff; // Position of next item to be written by either target. + volatile unsigned RdOff; // Position of next item to be read by host. Must be volatile since it may be modified by host. + unsigned Flags; // Contains configuration flags. Flags[31:24] are used for validity check and must be zero. Flags[23:2] are reserved for future use. Flags[1:0] = RTT operating mode. +} SEGGER_RTT_BUFFER_UP; + +// +// Description for a circular buffer (also called "ring buffer") +// which is used as down-buffer (H->T) +// +typedef struct { + const char* sName; // Optional name. Standard names so far are: "Terminal", "SysView", "J-Scope_t4i4" + char* pBuffer; // Pointer to start of buffer + unsigned SizeOfBuffer; // Buffer size in bytes. Note that one byte is lost, as this implementation does not fill up the buffer in order to avoid the problem of being unable to distinguish between full and empty. + volatile unsigned WrOff; // Position of next item to be written by host. Must be volatile since it may be modified by host. + unsigned RdOff; // Position of next item to be read by target (down-buffer). + unsigned Flags; // Contains configuration flags. Flags[31:24] are used for validity check and must be zero. Flags[23:2] are reserved for future use. Flags[1:0] = RTT operating mode. +} SEGGER_RTT_BUFFER_DOWN; + +// +// RTT control block which describes the number of buffers available +// as well as the configuration for each buffer +// +// +typedef struct { + char acID[16]; // Initialized to "SEGGER RTT" + int MaxNumUpBuffers; // Initialized to SEGGER_RTT_MAX_NUM_UP_BUFFERS (type. 2) + int MaxNumDownBuffers; // Initialized to SEGGER_RTT_MAX_NUM_DOWN_BUFFERS (type. 2) + SEGGER_RTT_BUFFER_UP aUp[SEGGER_RTT_MAX_NUM_UP_BUFFERS]; // Up buffers, transferring information up from target via debug probe to host + SEGGER_RTT_BUFFER_DOWN aDown[SEGGER_RTT_MAX_NUM_DOWN_BUFFERS]; // Down buffers, transferring information down from host via debug probe to target +#if SEGGER_RTT__CB_PADDING + unsigned char aDummy[SEGGER_RTT__CB_PADDING]; +#endif +} SEGGER_RTT_CB; + +/********************************************************************* +* +* Global data +* +********************************************************************** +*/ +extern SEGGER_RTT_CB _SEGGER_RTT; + +/********************************************************************* +* +* RTT API functions +* +********************************************************************** +*/ +#ifdef __cplusplus + extern "C" { +#endif +int SEGGER_RTT_AllocDownBuffer (const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); +int SEGGER_RTT_AllocUpBuffer (const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); +int SEGGER_RTT_ConfigUpBuffer (unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); +int SEGGER_RTT_ConfigDownBuffer (unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags); +int SEGGER_RTT_GetKey (void); +unsigned SEGGER_RTT_HasData (unsigned BufferIndex); +int SEGGER_RTT_HasKey (void); +unsigned SEGGER_RTT_HasDataUp (unsigned BufferIndex); +void SEGGER_RTT_Init (void); +unsigned SEGGER_RTT_Read (unsigned BufferIndex, void* pBuffer, unsigned BufferSize); +unsigned SEGGER_RTT_ReadNoLock (unsigned BufferIndex, void* pData, unsigned BufferSize); +int SEGGER_RTT_SetNameDownBuffer (unsigned BufferIndex, const char* sName); +int SEGGER_RTT_SetNameUpBuffer (unsigned BufferIndex, const char* sName); +int SEGGER_RTT_SetFlagsDownBuffer (unsigned BufferIndex, unsigned Flags); +int SEGGER_RTT_SetFlagsUpBuffer (unsigned BufferIndex, unsigned Flags); +int SEGGER_RTT_WaitKey (void); +unsigned SEGGER_RTT_Write (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_WriteNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_WriteSkipNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_ASM_WriteSkipNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_WriteString (unsigned BufferIndex, const char* s); +void SEGGER_RTT_WriteWithOverwriteNoLock(unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_PutChar (unsigned BufferIndex, char c); +unsigned SEGGER_RTT_PutCharSkip (unsigned BufferIndex, char c); +unsigned SEGGER_RTT_PutCharSkipNoLock (unsigned BufferIndex, char c); +unsigned SEGGER_RTT_GetAvailWriteSpace (unsigned BufferIndex); +unsigned SEGGER_RTT_GetBytesInBuffer (unsigned BufferIndex); +// +// Function macro for performance optimization +// +#define SEGGER_RTT_HASDATA(n) (((SEGGER_RTT_BUFFER_DOWN*)((uintptr_t)&_SEGGER_RTT.aDown[n] + SEGGER_RTT_UNCACHED_OFF))->WrOff - ((SEGGER_RTT_BUFFER_DOWN*)((uintptr_t)&_SEGGER_RTT.aDown[n] + SEGGER_RTT_UNCACHED_OFF))->RdOff) + +#if RTT_USE_ASM + #define SEGGER_RTT_WriteSkipNoLock SEGGER_RTT_ASM_WriteSkipNoLock +#endif + +/********************************************************************* +* +* RTT transfer functions to send RTT data via other channels. +* +********************************************************************** +*/ +unsigned SEGGER_RTT_ReadUpBuffer (unsigned BufferIndex, void* pBuffer, unsigned BufferSize); +unsigned SEGGER_RTT_ReadUpBufferNoLock (unsigned BufferIndex, void* pData, unsigned BufferSize); +unsigned SEGGER_RTT_WriteDownBuffer (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); +unsigned SEGGER_RTT_WriteDownBufferNoLock (unsigned BufferIndex, const void* pBuffer, unsigned NumBytes); + +#define SEGGER_RTT_HASDATA_UP(n) (((SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[n] + SEGGER_RTT_UNCACHED_OFF))->WrOff - ((SEGGER_RTT_BUFFER_UP*)((uintptr_t)&_SEGGER_RTT.aUp[n] + SEGGER_RTT_UNCACHED_OFF))->RdOff) // Access uncached to make sure we see changes made by the J-Link side and all of our changes go into HW directly + +/********************************************************************* +* +* RTT "Terminal" API functions +* +********************************************************************** +*/ +int SEGGER_RTT_SetTerminal (unsigned char TerminalId); +int SEGGER_RTT_TerminalOut (unsigned char TerminalId, const char* s); + +/********************************************************************* +* +* RTT printf functions (require SEGGER_RTT_printf.c) +* +********************************************************************** +*/ +int SEGGER_RTT_printf(unsigned BufferIndex, const char * sFormat, ...); +int SEGGER_RTT_vprintf(unsigned BufferIndex, const char * sFormat, va_list * pParamList); + +#ifdef __cplusplus + } +#endif + +#endif // ifndef(SEGGER_RTT_ASM) + +// +// For some environments, NULL may not be defined until certain headers are included +// +#ifndef NULL + #define NULL ((void*)0) +#endif + +/********************************************************************* +* +* Defines +* +********************************************************************** +*/ + +// +// Operating modes. Define behavior if buffer is full (not enough space for entire message) +// +#define SEGGER_RTT_MODE_NO_BLOCK_SKIP (0) // Skip. Do not block, output nothing. (Default) +#define SEGGER_RTT_MODE_NO_BLOCK_TRIM (1) // Trim: Do not block, output as much as fits. +#define SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL (2) // Block: Wait until there is space in the buffer. +#define SEGGER_RTT_MODE_MASK (3) + +// +// Control sequences, based on ANSI. +// Can be used to control color, and clear the screen +// +#define RTT_CTRL_RESET "\x1B[0m" // Reset to default colors +#define RTT_CTRL_CLEAR "\x1B[2J" // Clear screen, reposition cursor to top left + +#define RTT_CTRL_TEXT_BLACK "\x1B[2;30m" +#define RTT_CTRL_TEXT_RED "\x1B[2;31m" +#define RTT_CTRL_TEXT_GREEN "\x1B[2;32m" +#define RTT_CTRL_TEXT_YELLOW "\x1B[2;33m" +#define RTT_CTRL_TEXT_BLUE "\x1B[2;34m" +#define RTT_CTRL_TEXT_MAGENTA "\x1B[2;35m" +#define RTT_CTRL_TEXT_CYAN "\x1B[2;36m" +#define RTT_CTRL_TEXT_WHITE "\x1B[2;37m" + +#define RTT_CTRL_TEXT_BRIGHT_BLACK "\x1B[1;30m" +#define RTT_CTRL_TEXT_BRIGHT_RED "\x1B[1;31m" +#define RTT_CTRL_TEXT_BRIGHT_GREEN "\x1B[1;32m" +#define RTT_CTRL_TEXT_BRIGHT_YELLOW "\x1B[1;33m" +#define RTT_CTRL_TEXT_BRIGHT_BLUE "\x1B[1;34m" +#define RTT_CTRL_TEXT_BRIGHT_MAGENTA "\x1B[1;35m" +#define RTT_CTRL_TEXT_BRIGHT_CYAN "\x1B[1;36m" +#define RTT_CTRL_TEXT_BRIGHT_WHITE "\x1B[1;37m" + +#define RTT_CTRL_BG_BLACK "\x1B[24;40m" +#define RTT_CTRL_BG_RED "\x1B[24;41m" +#define RTT_CTRL_BG_GREEN "\x1B[24;42m" +#define RTT_CTRL_BG_YELLOW "\x1B[24;43m" +#define RTT_CTRL_BG_BLUE "\x1B[24;44m" +#define RTT_CTRL_BG_MAGENTA "\x1B[24;45m" +#define RTT_CTRL_BG_CYAN "\x1B[24;46m" +#define RTT_CTRL_BG_WHITE "\x1B[24;47m" + +#define RTT_CTRL_BG_BRIGHT_BLACK "\x1B[4;40m" +#define RTT_CTRL_BG_BRIGHT_RED "\x1B[4;41m" +#define RTT_CTRL_BG_BRIGHT_GREEN "\x1B[4;42m" +#define RTT_CTRL_BG_BRIGHT_YELLOW "\x1B[4;43m" +#define RTT_CTRL_BG_BRIGHT_BLUE "\x1B[4;44m" +#define RTT_CTRL_BG_BRIGHT_MAGENTA "\x1B[4;45m" +#define RTT_CTRL_BG_BRIGHT_CYAN "\x1B[4;46m" +#define RTT_CTRL_BG_BRIGHT_WHITE "\x1B[4;47m" + + +#endif + +/*************************** End of file ****************************/ diff --git a/lib/SEGGER/RTT/RTT/SEGGER_RTT_ASM_ARMv7M.S b/lib/SEGGER/RTT/RTT/SEGGER_RTT_ASM_ARMv7M.S new file mode 100644 index 0000000..cbbc52f --- /dev/null +++ b/lib/SEGGER/RTT/RTT/SEGGER_RTT_ASM_ARMv7M.S @@ -0,0 +1,242 @@ +/********************************************************************* +* (c) SEGGER Microcontroller GmbH * +* The Embedded Experts * +* www.segger.com * +********************************************************************** + +-------------------------- END-OF-HEADER ----------------------------- + +File : SEGGER_RTT_ASM_ARMv7M.S +Purpose : Assembler implementation of RTT functions for ARMv7M + +Additional information: + This module is written to be assembler-independent and works with + GCC and clang (Embedded Studio) and IAR. +*/ + +#define SEGGER_RTT_ASM // Used to control processed input from header file +#include "SEGGER_RTT.h" + +/********************************************************************* +* +* Defines, fixed +* +********************************************************************** +*/ + +#define _CCIAR 0 +#define _CCCLANG 1 + +#if (defined __SES_ARM) || (defined __GNUC__) || (defined __clang__) + #define _CC_TYPE _CCCLANG + #define _PUB_SYM .global + #define _EXT_SYM .extern + #define _END .end + #define _WEAK .weak + #define _THUMB_FUNC .thumb_func + #define _THUMB_CODE .code 16 + #define _WORD .word + #define _SECTION(Sect, Type, AlignExp) .section Sect ##, "ax" + #define _ALIGN(Exp) .align Exp + #define _PLACE_LITS .ltorg + #define _DATA_SECT_START + #define _C_STARTUP _start + #define _STACK_END __stack_end__ + #define _RAMFUNC + // + // .text => Link to flash + // .fast => Link to RAM + // OtherSect => Usually link to RAM + // Alignment is 2^x + // +#elif defined (__IASMARM__) + #define _CC_TYPE _CCIAR + #define _PUB_SYM PUBLIC + #define _EXT_SYM EXTERN + #define _END END + #define _WEAK _WEAK + #define _THUMB_FUNC + #define _THUMB_CODE THUMB + #define _WORD DCD + #define _SECTION(Sect, Type, AlignExp) SECTION Sect ## : ## Type ## :REORDER:NOROOT ## (AlignExp) + #define _ALIGN(Exp) alignrom Exp + #define _PLACE_LITS + #define _DATA_SECT_START DATA + #define _C_STARTUP __iar_program_start + #define _STACK_END sfe(CSTACK) + #define _RAMFUNC SECTION_TYPE SHT_PROGBITS, SHF_WRITE | SHF_EXECINSTR + // + // .text => Link to flash + // .textrw => Link to RAM + // OtherSect => Usually link to RAM + // NOROOT => Allows linker to throw away the function, if not referenced + // Alignment is 2^x + // +#endif + +#if (_CC_TYPE == _CCIAR) + NAME SEGGER_RTT_ASM_ARMv7M +#else + .syntax unified +#endif + +#if defined (RTT_USE_ASM) && (RTT_USE_ASM == 1) + #define SHT_PROGBITS 0x1 + +/********************************************************************* +* +* Public / external symbols +* +********************************************************************** +*/ + + _EXT_SYM __aeabi_memcpy + _EXT_SYM __aeabi_memcpy4 + _EXT_SYM _SEGGER_RTT + + _PUB_SYM SEGGER_RTT_ASM_WriteSkipNoLock + +/********************************************************************* +* +* SEGGER_RTT_WriteSkipNoLock +* +* Function description +* Stores a specified number of characters in SEGGER RTT +* control block which is then read by the host. +* SEGGER_RTT_WriteSkipNoLock does not lock the application and +* skips all data, if the data does not fit into the buffer. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used (e.g. 0 for "Terminal"). +* pBuffer Pointer to character array. Does not need to point to a \0 terminated string. +* NumBytes Number of bytes to be stored in the SEGGER RTT control block. +* MUST be > 0!!! +* This is done for performance reasons, so no initial check has do be done. +* +* Return value +* 1: Data has been copied +* 0: No space, data has not been copied +* +* Notes +* (1) If there is not enough space in the "Up"-buffer, all data is dropped. +* (2) For performance reasons this function does not call Init() +* and may only be called after RTT has been initialized. +* Either by calling SEGGER_RTT_Init() or calling another RTT API function first. +*/ + _SECTION(.text, CODE, 2) + _ALIGN(2) + _THUMB_FUNC +SEGGER_RTT_ASM_WriteSkipNoLock: // unsigned SEGGER_RTT_WriteSkipNoLock(unsigned BufferIndex, const void* pData, unsigned NumBytes) { + // + // Cases: + // 1) RdOff <= WrOff => Space until wrap-around is sufficient + // 2) RdOff <= WrOff => Space after wrap-around needed (copy in 2 chunks) + // 3) RdOff < WrOff => No space in buf + // 4) RdOff > WrOff => Space is sufficient + // 5) RdOff > WrOff => No space in buf + // + // 1) is the most common case for large buffers and assuming that J-Link reads the data fast enough + // + // Register usage: + // R0 Temporary needed as RdOff, register later on + // R1 pData + // R2 + // R3 register. Hold free for subroutine calls + // R4 + // R5 pRing->pBuffer + // R6 pRing (Points to active struct SEGGER_RTT_BUFFER_DOWN) + // R7 WrOff + // + PUSH {R4-R7} + ADD R3,R0,R0, LSL #+1 + LDR.W R0,=_SEGGER_RTT // pRing = &_SEGGER_RTT.aUp[BufferIndex]; + ADD R0,R0,R3, LSL #+3 + ADD R6,R0,#+24 + LDR R0,[R6, #+16] // RdOff = pRing->RdOff; + LDR R7,[R6, #+12] // WrOff = pRing->WrOff; + LDR R5,[R6, #+4] // pRing->pBuffer + CMP R7,R0 + BCC.N _CheckCase4 // if (RdOff <= WrOff) { => Case 1), 2) or 3) + // + // Handling for case 1, later on identical to case 4 + // + LDR R3,[R6, #+8] // Avail = pRing->SizeOfBuffer - WrOff - 1u; => Space until wrap-around (assume 1 byte not usable for case that RdOff == 0) + SUBS R4,R3,R7 // (Used in case we jump into case 2 afterwards) + SUBS R3,R4,#+1 // + CMP R3,R2 + BCC.N _CheckCase2 // if (Avail >= NumBytes) { => Case 1)? +_Case4: + ADDS R5,R7,R5 // pBuffer += WrOff + ADDS R0,R2,R7 // v = WrOff + NumBytes + // + // 2x unrolling for the copy loop that is used most of the time + // This is a special optimization for small SystemView packets and makes them even faster + // + _ALIGN(2) +_LoopCopyStraight: // memcpy(pRing->pBuffer + WrOff, pData, NumBytes); + LDRB R3,[R1], #+1 + STRB R3,[R5], #+1 // *pDest++ = *pSrc++ + SUBS R2,R2,#+1 + BEQ _CSDone + LDRB R3,[R1], #+1 + STRB R3,[R5], #+1 // *pDest++ = *pSrc++ + SUBS R2,R2,#+1 + BNE _LoopCopyStraight +_CSDone: +#if _CORE_NEEDS_DMB // Do not slow down cores that do not need a DMB instruction here + DMB // Cortex-M7 may delay memory writes and also change the order in which the writes happen. Therefore, make sure that all buffer writes are finished, before updating the in the struct +#endif + STR R0,[R6, #+12] // pRing->WrOff = WrOff + NumBytes; + MOVS R0,#+1 + POP {R4-R7} + BX LR // Return 1 +_CheckCase2: + ADDS R0,R0,R3 // Avail += RdOff; => Space incl. wrap-around + CMP R0,R2 + BCC.N _Case3 // if (Avail >= NumBytes) { => Case 2? => If not, we have case 3) (does not fit) + // + // Handling for case 2 + // + ADDS R0,R7,R5 // v = pRing->pBuffer + WrOff => Do not change pRing->pBuffer here because 2nd chunk needs org. value + SUBS R2,R2,R4 // NumBytes -= Rem; (Rem = pRing->SizeOfBuffer - WrOff; => Space until end of buffer) +_LoopCopyBeforeWrapAround: // memcpy(pRing->pBuffer + WrOff, pData, Rem); => Copy 1st chunk + LDRB R3,[R1], #+1 + STRB R3,[R0], #+1 // *pDest++ = *pSrc++ + SUBS R4,R4,#+1 + BNE _LoopCopyBeforeWrapAround + // + // Special case: First check that assumed RdOff == 0 calculated that last element before wrap-around could not be used + // But 2nd check (considering space until wrap-around and until RdOff) revealed that RdOff is not 0, so we can use the last element + // In this case, we may use a copy straight until buffer end anyway without needing to copy 2 chunks + // Therefore, check if 2nd memcpy is necessary at all + // + ADDS R4,R2,#+0 // Save (needed as counter in loop but must be written to after the loop). Also use this inst to update the flags to skip 2nd loop if possible + BEQ.N _No2ChunkNeeded // if (NumBytes) { +_LoopCopyAfterWrapAround: // memcpy(pRing->pBuffer, pData + Rem, NumBytes); + LDRB R3,[R1], #+1 // pData already points to the next src byte due to copy loop increment before this loop + STRB R3,[R5], #+1 // *pDest++ = *pSrc++ + SUBS R2,R2,#+1 + BNE _LoopCopyAfterWrapAround +_No2ChunkNeeded: +#if _CORE_NEEDS_DMB // Do not slow down cores that do not need a DMB instruction here + DMB // Cortex-M7 may delay memory writes and also change the order in which the writes happen. Therefore, make sure that all buffer writes are finished, before updating the in the struct +#endif + STR R4,[R6, #+12] // pRing->WrOff = NumBytes; => Must be written after copying data because J-Link may read control block asynchronously while writing into buffer + MOVS R0,#+1 + POP {R4-R7} + BX LR // Return 1 +_CheckCase4: + SUBS R0,R0,R7 + SUBS R0,R0,#+1 // Avail = RdOff - WrOff - 1u; + CMP R0,R2 + BCS.N _Case4 // if (Avail >= NumBytes) { => Case 4) == 1) ? => If not, we have case 5) == 3) (does not fit) +_Case3: + MOVS R0,#+0 + POP {R4-R7} + BX LR // Return 0 + _PLACE_LITS + +#endif // defined (RTT_USE_ASM) && (RTT_USE_ASM == 1) + _END + +/*************************** End of file ****************************/ diff --git a/lib/SEGGER/RTT/RTT/SEGGER_RTT_printf.c b/lib/SEGGER/RTT/RTT/SEGGER_RTT_printf.c new file mode 100644 index 0000000..7ececaf --- /dev/null +++ b/lib/SEGGER/RTT/RTT/SEGGER_RTT_printf.c @@ -0,0 +1,522 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : SEGGER_RTT_printf.c +Purpose : Replacement for printf to write formatted data via RTT +Revision: $Rev: 17697 $ +---------------------------------------------------------------------- +*/ +#include "SEGGER_RTT.h" +#include "SEGGER_RTT_Conf.h" + +/********************************************************************* +* +* Defines, configurable +* +********************************************************************** +*/ + +#ifndef SEGGER_RTT_PRINTF_BUFFER_SIZE + #define SEGGER_RTT_PRINTF_BUFFER_SIZE (64) +#endif + +#include +#include + + +#define FORMAT_FLAG_LEFT_JUSTIFY (1u << 0) +#define FORMAT_FLAG_PAD_ZERO (1u << 1) +#define FORMAT_FLAG_PRINT_SIGN (1u << 2) +#define FORMAT_FLAG_ALTERNATE (1u << 3) + +/********************************************************************* +* +* Types +* +********************************************************************** +*/ + +typedef struct { + char* pBuffer; + unsigned BufferSize; + unsigned Cnt; + + int ReturnValue; + + unsigned RTTBufferIndex; +} SEGGER_RTT_PRINTF_DESC; + +/********************************************************************* +* +* Function prototypes +* +********************************************************************** +*/ + +/********************************************************************* +* +* Static code +* +********************************************************************** +*/ +/********************************************************************* +* +* _StoreChar +*/ +static void _StoreChar(SEGGER_RTT_PRINTF_DESC * p, char c) { + unsigned Cnt; + + Cnt = p->Cnt; + if ((Cnt + 1u) <= p->BufferSize) { + *(p->pBuffer + Cnt) = c; + p->Cnt = Cnt + 1u; + p->ReturnValue++; + } + // + // Write part of string, when the buffer is full + // + if (p->Cnt == p->BufferSize) { + if (SEGGER_RTT_Write(p->RTTBufferIndex, p->pBuffer, p->Cnt) != p->Cnt) { + p->ReturnValue = -1; + } else { + p->Cnt = 0u; + } + } +} + +/********************************************************************* +* +* _PrintUnsigned +*/ +static void _PrintUnsigned(SEGGER_RTT_PRINTF_DESC * pBufferDesc, unsigned v, unsigned Base, unsigned NumDigits, unsigned FieldWidth, unsigned FormatFlags) { + static const char _aV2C[16] = {'0', '1', '2', '3', '4', '5', '6', '7', '8', '9', 'A', 'B', 'C', 'D', 'E', 'F' }; + unsigned Div; + unsigned Digit; + unsigned Number; + unsigned Width; + char c; + + Number = v; + Digit = 1u; + // + // Get actual field width + // + Width = 1u; + while (Number >= Base) { + Number = (Number / Base); + Width++; + } + if (NumDigits > Width) { + Width = NumDigits; + } + // + // Print leading chars if necessary + // + if ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == 0u) { + if (FieldWidth != 0u) { + if (((FormatFlags & FORMAT_FLAG_PAD_ZERO) == FORMAT_FLAG_PAD_ZERO) && (NumDigits == 0u)) { + c = '0'; + } else { + c = ' '; + } + while ((FieldWidth != 0u) && (Width < FieldWidth)) { + FieldWidth--; + _StoreChar(pBufferDesc, c); + if (pBufferDesc->ReturnValue < 0) { + break; + } + } + } + } + if (pBufferDesc->ReturnValue >= 0) { + // + // Compute Digit. + // Loop until Digit has the value of the highest digit required. + // Example: If the output is 345 (Base 10), loop 2 times until Digit is 100. + // + while (1) { + if (NumDigits > 1u) { // User specified a min number of digits to print? => Make sure we loop at least that often, before checking anything else (> 1 check avoids problems with NumDigits being signed / unsigned) + NumDigits--; + } else { + Div = v / Digit; + if (Div < Base) { // Is our divider big enough to extract the highest digit from value? => Done + break; + } + } + Digit *= Base; + } + // + // Output digits + // + do { + Div = v / Digit; + v -= Div * Digit; + _StoreChar(pBufferDesc, _aV2C[Div]); + if (pBufferDesc->ReturnValue < 0) { + break; + } + Digit /= Base; + } while (Digit); + // + // Print trailing spaces if necessary + // + if ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == FORMAT_FLAG_LEFT_JUSTIFY) { + if (FieldWidth != 0u) { + while ((FieldWidth != 0u) && (Width < FieldWidth)) { + FieldWidth--; + _StoreChar(pBufferDesc, ' '); + if (pBufferDesc->ReturnValue < 0) { + break; + } + } + } + } + } +} + +/********************************************************************* +* +* _PrintInt +*/ +static void _PrintInt(SEGGER_RTT_PRINTF_DESC * pBufferDesc, int v, unsigned Base, unsigned NumDigits, unsigned FieldWidth, unsigned FormatFlags) { + unsigned Width; + int Number; + + Number = (v < 0) ? -v : v; + + // + // Get actual field width + // + Width = 1u; + while (Number >= (int)Base) { + Number = (Number / (int)Base); + Width++; + } + if (NumDigits > Width) { + Width = NumDigits; + } + if ((FieldWidth > 0u) && ((v < 0) || ((FormatFlags & FORMAT_FLAG_PRINT_SIGN) == FORMAT_FLAG_PRINT_SIGN))) { + FieldWidth--; + } + + // + // Print leading spaces if necessary + // + if ((((FormatFlags & FORMAT_FLAG_PAD_ZERO) == 0u) || (NumDigits != 0u)) && ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == 0u)) { + if (FieldWidth != 0u) { + while ((FieldWidth != 0u) && (Width < FieldWidth)) { + FieldWidth--; + _StoreChar(pBufferDesc, ' '); + if (pBufferDesc->ReturnValue < 0) { + break; + } + } + } + } + // + // Print sign if necessary + // + if (pBufferDesc->ReturnValue >= 0) { + if (v < 0) { + v = -v; + _StoreChar(pBufferDesc, '-'); + } else if ((FormatFlags & FORMAT_FLAG_PRINT_SIGN) == FORMAT_FLAG_PRINT_SIGN) { + _StoreChar(pBufferDesc, '+'); + } else { + + } + if (pBufferDesc->ReturnValue >= 0) { + // + // Print leading zeros if necessary + // + if (((FormatFlags & FORMAT_FLAG_PAD_ZERO) == FORMAT_FLAG_PAD_ZERO) && ((FormatFlags & FORMAT_FLAG_LEFT_JUSTIFY) == 0u) && (NumDigits == 0u)) { + if (FieldWidth != 0u) { + while ((FieldWidth != 0u) && (Width < FieldWidth)) { + FieldWidth--; + _StoreChar(pBufferDesc, '0'); + if (pBufferDesc->ReturnValue < 0) { + break; + } + } + } + } + if (pBufferDesc->ReturnValue >= 0) { + // + // Print number without sign + // + _PrintUnsigned(pBufferDesc, (unsigned)v, Base, NumDigits, FieldWidth, FormatFlags); + } + } + } +} + +/********************************************************************* +* +* Public code +* +********************************************************************** +*/ +/********************************************************************* +* +* SEGGER_RTT_vprintf +* +* Function description +* Stores a formatted string in SEGGER RTT control block. +* This data is read by the host. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used. (e.g. 0 for "Terminal") +* sFormat Pointer to format string +* pParamList Pointer to the list of arguments for the format string +* +* Return values +* >= 0: Number of bytes which have been stored in the "Up"-buffer. +* < 0: Error +*/ +int SEGGER_RTT_vprintf(unsigned BufferIndex, const char * sFormat, va_list * pParamList) { + char c; + SEGGER_RTT_PRINTF_DESC BufferDesc; + int v; + unsigned char PrecisionSet; + unsigned Precision; + unsigned FormatFlags; + unsigned FieldWidth; + char acBuffer[SEGGER_RTT_PRINTF_BUFFER_SIZE]; + + BufferDesc.pBuffer = acBuffer; + BufferDesc.BufferSize = SEGGER_RTT_PRINTF_BUFFER_SIZE; + BufferDesc.Cnt = 0u; + BufferDesc.RTTBufferIndex = BufferIndex; + BufferDesc.ReturnValue = 0; + + do { + c = *sFormat; + sFormat++; + if (c == 0u) { + break; + } + if (c == '%') { + // + // Filter out flags + // + FormatFlags = 0u; + v = 1; + do { + c = *sFormat; + switch (c) { + case '-': FormatFlags |= FORMAT_FLAG_LEFT_JUSTIFY; sFormat++; break; + case '0': FormatFlags |= FORMAT_FLAG_PAD_ZERO; sFormat++; break; + case '+': FormatFlags |= FORMAT_FLAG_PRINT_SIGN; sFormat++; break; + case '#': FormatFlags |= FORMAT_FLAG_ALTERNATE; sFormat++; break; + default: v = 0; break; + } + } while (v); + // + // filter out field with + // + FieldWidth = 0u; + do { + c = *sFormat; + if ((c < '0') || (c > '9')) { + break; + } + sFormat++; + FieldWidth = (FieldWidth * 10u) + ((unsigned)c - '0'); + } while (1); + + // + // Filter out precision (number of digits to display) + // + PrecisionSet = 0; + Precision = 0u; + c = *sFormat; + if (c == '.') { + sFormat++; + if (*sFormat == '*') { + sFormat++; + PrecisionSet = 1; + Precision = va_arg(*pParamList, int); + } else { + do { + c = *sFormat; + if ((c < '0') || (c > '9')) { + break; + } + PrecisionSet = 1; + sFormat++; + Precision = Precision * 10u + ((unsigned)c - '0'); + } while (1); + } + } + // + // Filter out length modifier + // + c = *sFormat; + do { + if ((c == 'l') || (c == 'h')) { + sFormat++; + c = *sFormat; + } else { + break; + } + } while (1); + // + // Handle specifiers + // + switch (c) { + case 'c': { + char c0; + v = va_arg(*pParamList, int); + c0 = (char)v; + _StoreChar(&BufferDesc, c0); + break; + } + case 'd': + v = va_arg(*pParamList, int); + _PrintInt(&BufferDesc, v, 10u, Precision, FieldWidth, FormatFlags); + break; + case 'u': + v = va_arg(*pParamList, int); + _PrintUnsigned(&BufferDesc, (unsigned)v, 10u, Precision, FieldWidth, FormatFlags); + break; + case 'x': + case 'X': + v = va_arg(*pParamList, int); + _PrintUnsigned(&BufferDesc, (unsigned)v, 16u, Precision, FieldWidth, FormatFlags); + break; + case 's': + { + const char * s = va_arg(*pParamList, const char *); + if (s == NULL) { + s = "(NULL)"; // Print (NULL) instead of crashing or breaking, as it is more informative to the user. + PrecisionSet = 0; // Make sure (NULL) is printed, even when precision was set. + } + do { + c = *s; + s++; + if (c == '\0') { + break; + } + if ((PrecisionSet != 0) && (Precision == 0)) { + break; + } + _StoreChar(&BufferDesc, c); + Precision--; + } while (BufferDesc.ReturnValue >= 0); + } + break; + case 'p': + v = va_arg(*pParamList, int); + _PrintUnsigned(&BufferDesc, (unsigned)v, 16u, 8u, 8u, 0u); + break; + case '%': + _StoreChar(&BufferDesc, '%'); + break; + default: + break; + } + sFormat++; + } else { + _StoreChar(&BufferDesc, c); + } + } while (BufferDesc.ReturnValue >= 0); + + if (BufferDesc.ReturnValue > 0) { + // + // Write remaining data, if any + // + if (BufferDesc.Cnt != 0u) { + SEGGER_RTT_Write(BufferIndex, acBuffer, BufferDesc.Cnt); + } + BufferDesc.ReturnValue += (int)BufferDesc.Cnt; + } + return BufferDesc.ReturnValue; +} + +/********************************************************************* +* +* SEGGER_RTT_printf +* +* Function description +* Stores a formatted string in SEGGER RTT control block. +* This data is read by the host. +* +* Parameters +* BufferIndex Index of "Up"-buffer to be used. (e.g. 0 for "Terminal") +* sFormat Pointer to format string, followed by the arguments for conversion +* +* Return values +* >= 0: Number of bytes which have been stored in the "Up"-buffer. +* < 0: Error +* +* Notes +* (1) Conversion specifications have following syntax: +* %[flags][FieldWidth][.Precision]ConversionSpecifier +* (2) Supported flags: +* -: Left justify within the field width +* +: Always print sign extension for signed conversions +* 0: Pad with 0 instead of spaces. Ignored when using '-'-flag or precision +* Supported conversion specifiers: +* c: Print the argument as one char +* d: Print the argument as a signed integer +* u: Print the argument as an unsigned integer +* x: Print the argument as an hexadecimal integer +* s: Print the string pointed to by the argument +* p: Print the argument as an 8-digit hexadecimal integer. (Argument shall be a pointer to void.) +*/ +int SEGGER_RTT_printf(unsigned BufferIndex, const char * sFormat, ...) { + int r; + va_list ParamList; + + va_start(ParamList, sFormat); + r = SEGGER_RTT_vprintf(BufferIndex, sFormat, &ParamList); + va_end(ParamList); + return r; +} +/*************************** End of file ****************************/ diff --git a/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_GCC.c b/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_GCC.c new file mode 100644 index 0000000..35df03e --- /dev/null +++ b/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_GCC.c @@ -0,0 +1,125 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : SEGGER_RTT_Syscalls_GCC.c +Purpose : Low-level functions for using printf() via RTT in GCC. + To use RTT for printf output, include this file in your + application. +Revision: $Rev: 24316 $ +---------------------------------------------------------------------- +*/ +#if (defined __GNUC__) && !(defined __SES_ARM) && !(defined __CROSSWORKS_ARM) && !(defined __ARMCC_VERSION) && !(defined __CC_ARM) + +#include // required for _write_r +#include "SEGGER_RTT.h" + + +/********************************************************************* +* +* Types +* +********************************************************************** +*/ +// +// If necessary define the _reent struct +// to match the one passed by the used standard library. +// +struct _reent; + +/********************************************************************* +* +* Function prototypes +* +********************************************************************** +*/ +_ssize_t _write (int file, const void *ptr, size_t len); +_ssize_t _write_r(struct _reent *r, int file, const void *ptr, size_t len); + +/********************************************************************* +* +* Global functions +* +********************************************************************** +*/ + +/********************************************************************* +* +* _write() +* +* Function description +* Low-level write function. +* libc subroutines will use this system routine for output to all files, +* including stdout. +* Write data via RTT. +*/ +_ssize_t _write(int file, const void *ptr, size_t len) { + (void) file; /* Not used, avoid warning */ + SEGGER_RTT_Write(0, ptr, len); + return len; +} + +/********************************************************************* +* +* _write_r() +* +* Function description +* Low-level reentrant write function. +* libc subroutines will use this system routine for output to all files, +* including stdout. +* Write data via RTT. +*/ +_ssize_t _write_r(struct _reent *r, int file, const void *ptr, size_t len) { + (void) file; /* Not used, avoid warning */ + (void) r; /* Not used, avoid warning */ + SEGGER_RTT_Write(0, ptr, len); + return len; +} + +#endif +/****** End Of File *************************************************/ diff --git a/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_IAR.c b/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_IAR.c new file mode 100644 index 0000000..8ce6be9 --- /dev/null +++ b/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_IAR.c @@ -0,0 +1,120 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : SEGGER_RTT_Syscalls_IAR.c +Purpose : Low-level functions for using printf() via RTT in IAR. + To use RTT for printf output, include this file in your + application and set the Library Configuration to Normal. +Revision: $Rev: 24316 $ +---------------------------------------------------------------------- +*/ +#ifdef __IAR_SYSTEMS_ICC__ + +// +// Since IAR EWARM V8 and EWRX V4, yfuns.h is considered as deprecated and LowLevelIOInterface.h +// shall be used instead. To not break any compatibility with older compiler versions, we have a +// version check in here. +// +#if ((defined __ICCARM__) && (__VER__ >= 8000000)) || ((defined __ICCRX__) && (__VER__ >= 400)) + #include +#else + #include +#endif + +#include "SEGGER_RTT.h" +#pragma module_name = "?__write" + +/********************************************************************* +* +* Function prototypes +* +********************************************************************** +*/ +size_t __write(int handle, const unsigned char * buffer, size_t size); + +/********************************************************************* +* +* Global functions +* +********************************************************************** +*/ +/********************************************************************* +* +* __write() +* +* Function description +* Low-level write function. +* Standard library subroutines will use this system routine +* for output to all files, including stdout. +* Write data via RTT. +*/ +size_t __write(int handle, const unsigned char * buffer, size_t size) { + (void) handle; /* Not used, avoid warning */ + SEGGER_RTT_Write(0, (const char*)buffer, size); + return size; +} + +/********************************************************************* +* +* __write_buffered() +* +* Function description +* Low-level write function. +* Standard library subroutines will use this system routine +* for output to all files, including stdout. +* Write data via RTT. +*/ +size_t __write_buffered(int handle, const unsigned char * buffer, size_t size) { + (void) handle; /* Not used, avoid warning */ + SEGGER_RTT_Write(0, (const char*)buffer, size); + return size; +} + +#endif +/****** End Of File *************************************************/ diff --git a/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_KEIL.c b/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_KEIL.c new file mode 100644 index 0000000..a15c8bc --- /dev/null +++ b/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_KEIL.c @@ -0,0 +1,405 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : RTT_Syscalls_KEIL.c +Purpose : Retargeting module for KEIL MDK-CM3. + Low-level functions for using printf() via RTT +Revision: $Rev: 29653 $ +Notes : (1) https://wiki.segger.com/Keil_MDK-ARM#RTT_in_uVision +---------------------------------------------------------------------- +*/ +#if (defined __CC_ARM) || (defined __ARMCC_VERSION) + +#include +#include +#include +#include +#include + +#include "SEGGER_RTT.h" +/********************************************************************* +* +* #pragmas +* +********************************************************************** +*/ +#if __ARMCC_VERSION < 6000000 +#pragma import(__use_no_semihosting) +#endif + +#ifdef _MICROLIB + #pragma import(__use_full_stdio) +#endif + +/********************************************************************* +* +* Defines non-configurable +* +********************************************************************** +*/ + +/* Standard IO device handles - arbitrary, but any real file system handles must be + less than 0x8000. */ +#define STDIN 0x8001 // Standard Input Stream +#define STDOUT 0x8002 // Standard Output Stream +#define STDERR 0x8003 // Standard Error Stream + +/********************************************************************* +* +* Public const +* +********************************************************************** +*/ +#if __ARMCC_VERSION < 5000000 +//const char __stdin_name[] = "STDIN"; +const char __stdout_name[] = "STDOUT"; +const char __stderr_name[] = "STDERR"; +#endif + +/********************************************************************* +* +* Public code +* +********************************************************************** +*/ + +/********************************************************************* +* +* _ttywrch +* +* Function description: +* Outputs a character to the console +* +* Parameters: +* c - character to output +* +*/ +void _ttywrch(int c) { + fputc(c, stdout); // stdout + fflush(stdout); +} + +/********************************************************************* +* +* _sys_open +* +* Function description: +* Opens the device/file in order to do read/write operations +* +* Parameters: +* sName - sName of the device/file to open +* OpenMode - This parameter is currently ignored +* +* Return value: +* != 0 - Handle to the object to open, otherwise +* == 0 -"device" is not handled by this module +* +*/ +FILEHANDLE _sys_open(const char * sName, int OpenMode) { + (void)OpenMode; + // Register standard Input Output devices. + if (strcmp(sName, __stdout_name) == 0) { + return (STDOUT); + } else if (strcmp(sName, __stderr_name) == 0) { + return (STDERR); + } else + return (0); // Not implemented +} + +/********************************************************************* +* +* _sys_close +* +* Function description: +* Closes the handle to the open device/file +* +* Parameters: +* hFile - Handle to a file opened via _sys_open +* +* Return value: +* 0 - device/file closed +* +*/ +int _sys_close(FILEHANDLE hFile) { + (void)hFile; + return 0; // Not implemented +} + +/********************************************************************* +* +* _sys_write +* +* Function description: +* Writes the data to an open handle. +* Currently this function only outputs data to the console +* +* Parameters: +* hFile - Handle to a file opened via _sys_open +* pBuffer - Pointer to the data that shall be written +* NumBytes - Number of bytes to write +* Mode - The Mode that shall be used +* +* Return value: +* Number of bytes *not* written to the file/device +* +*/ +int _sys_write(FILEHANDLE hFile, const unsigned char * pBuffer, unsigned NumBytes, int Mode) { + int r = 0; + + (void)Mode; + if (hFile == STDOUT) { + SEGGER_RTT_Write(0, (const char*)pBuffer, NumBytes); + return 0; + } + return r; +} + +/********************************************************************* +* +* _sys_istty +* +* Function description: +* This function shall return whether the opened file +* is a console device or not. +* +* Parameters: +* hFile - Handle to a file opened via _sys_open +* +* Return value: +* 1 - Device is a console +* 0 - Device is not a console +* +*/ +int _sys_istty(FILEHANDLE hFile) { + if (hFile > 0x8000) { + return (1); + } + return (0); // Not implemented +} + +/********************************************************************* +* +* _sys_seek +* +* Function description: +* Seeks via the file to a specific position +* +* Parameters: +* hFile - Handle to a file opened via _sys_open +* Pos - +* +* Return value: +* int - +* +*/ +int _sys_seek(FILEHANDLE hFile, long Pos) { + (void)hFile; + (void)Pos; + return (0); // Not implemented +} + +/********************************************************************* +* +* _sys_flen +* +* Function description: +* Returns the length of the opened file handle +* +* Parameters: +* hFile - Handle to a file opened via _sys_open +* +* Return value: +* Length of the file +* +*/ +long _sys_flen(FILEHANDLE hFile) { + (void)hFile; + return (0); // Not implemented +} + +#if (__ARMCC_VERSION <= 6000000) // The following functions are not required to be implemented for CC version > 6. +/********************************************************************* +* +* _sys_read +* +* Function description: +* Reads data from an open handle. +* Currently this modules does nothing. +* +* Parameters: +* hFile - Handle to a file opened via _sys_open +* pBuffer - Pointer to buffer to store the read data +* NumBytes - Number of bytes to read +* Mode - The Mode that shall be used +* +* Return value: +* Number of bytes read from the file/device +* +*/ +int _sys_read(FILEHANDLE hFile, unsigned char * pBuffer, unsigned NumBytes, int Mode) { + (void)hFile; + (void)pBuffer; + (void)NumBytes; + (void)Mode; + return (0); // Not implemented +} + +/********************************************************************* +* +* _sys_ensure +* +* Function description: +* +* +* Parameters: +* hFile - Handle to a file opened via _sys_open +* +* Return value: +* int - +* +*/ +int _sys_ensure(FILEHANDLE hFile) { + (void)hFile; + return (-1); // Not implemented +} + +/********************************************************************* +* +* _sys_tmpnam +* +* Function description: +* This function converts the file number fileno for a temporary +* file to a unique filename, for example, tmp0001. +* +* Parameters: +* pBuffer - Pointer to a buffer to store the name +* FileNum - file number to convert +* MaxLen - Size of the buffer +* +* Return value: +* 1 - Error +* 0 - Success +* +*/ +#if __ARMCC_VERSION >= 6190000 +void _sys_tmpnam(char * pBuffer, int FileNum, unsigned MaxLen) { + (void)pBuffer; + (void)FileNum; + (void)MaxLen; + return; // Not implemented +} +#else +int _sys_tmpnam(char * pBuffer, int FileNum, unsigned MaxLen) { + (void)pBuffer; + (void)FileNum; + (void)MaxLen; + return (1); // Not implemented +} +#endif + +/********************************************************************* +* +* _sys_command_string +* +* Function description: +* This function shall execute a system command. +* +* Parameters: +* cmd - Pointer to the command string +* len - Length of the string +* +* Return value: +* == NULL - Command was not successfully executed +* == sCmd - Command was passed successfully +* +*/ +char * _sys_command_string(char * cmd, int len) { + (void)len; + return cmd; // Not implemented +} + +/********************************************************************* +* +* _sys_exit +* +* Function description: +* This function is called when the application returns from main +* +* Parameters: +* ReturnCode - Return code from the main function +* +* +*/ +void _sys_exit(int ReturnCode) { + (void)ReturnCode; + while (1); // Not implemented +} + +#if __ARMCC_VERSION >= 5000000 +/********************************************************************* +* +* stdout_putchar +* +* Function description: +* Put a character to the stdout +* +* Parameters: +* ch - Character to output +* +* +*/ +int stdout_putchar(int ch) { + (void)ch; + return ch; // Not implemented +} +#endif + +#endif // #if __ARMCC_VERSION <= 6000000 +#endif // #if (defined __CC_ARM) || (defined __ARMCC_VERSION) +/*************************** End of file ****************************/ diff --git a/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_SES.c b/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_SES.c new file mode 100644 index 0000000..6ba5cf1 --- /dev/null +++ b/lib/SEGGER/RTT/Syscalls/SEGGER_RTT_Syscalls_SES.c @@ -0,0 +1,252 @@ +/********************************************************************* +* SEGGER Microcontroller GmbH * +* The Embedded Experts * +********************************************************************** +* * +* (c) 1995 - 2021 SEGGER Microcontroller GmbH * +* * +* www.segger.com Support: support@segger.com * +* * +********************************************************************** +* * +* SEGGER RTT * Real Time Transfer for embedded targets * +* * +********************************************************************** +* * +* All rights reserved. * +* * +* SEGGER strongly recommends to not make any changes * +* to or modify the source code of this software in order to stay * +* compatible with the RTT protocol and J-Link. * +* * +* Redistribution and use in source and binary forms, with or * +* without modification, are permitted provided that the following * +* condition is met: * +* * +* o Redistributions of source code must retain the above copyright * +* notice, this condition and the following disclaimer. * +* * +* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * +* CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * +* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * +* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * +* DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * +* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * +* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * +* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * +* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * +* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * +* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * +* USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * +* DAMAGE. * +* * +********************************************************************** +* * +* RTT version: 8.56a * +* * +********************************************************************** + +---------------------------END-OF-HEADER------------------------------ +File : SEGGER_RTT_Syscalls_SES.c +Purpose : Reimplementation of printf, puts and __getchar using RTT + in SEGGER Embedded Studio. + To use RTT for printf output, include this file in your + application. +Revision: $Rev: 24316 $ +---------------------------------------------------------------------- +*/ +#if (defined __SES_ARM) || (defined __SES_RISCV) || (defined __CROSSWORKS_ARM) + +#include "SEGGER_RTT.h" +#include +#include +#include "limits.h" +#include "__libc.h" +#include "__vfprintf.h" + +/********************************************************************* +* +* Defines, configurable +* +********************************************************************** +*/ +// +// Select string formatting implementation. +// +// RTT printf formatting +// - Configurable stack usage. (SEGGER_RTT_PRINTF_BUFFER_SIZE in SEGGER_RTT_Conf.h) +// - No maximum string length. +// - Limited conversion specifiers and flags. (See SEGGER_RTT_printf.c) +// Standard library printf formatting +// - Configurable formatting capabilities. +// - Full conversion specifier and flag support. +// - Maximum string length has to be known or (slightly) slower character-wise output. +// +// #define PRINTF_USE_SEGGER_RTT_FORMATTING 0 // Use standard library formatting +// #define PRINTF_USE_SEGGER_RTT_FORMATTING 1 // Use RTT formatting +// +#ifndef PRINTF_USE_SEGGER_RTT_FORMATTING + #define PRINTF_USE_SEGGER_RTT_FORMATTING 0 +#endif +// +// If using standard library formatting, +// select maximum output string buffer size or character-wise output. +// +// #define PRINTF_BUFFER_SIZE 0 // Use character-wise output +// #define PRINTF_BUFFER_SIZE 128 // Default maximum string length +// +#ifndef PRINTF_BUFFER_SIZE + #define PRINTF_BUFFER_SIZE 128 +#endif + +#if PRINTF_USE_SEGGER_RTT_FORMATTING // Use SEGGER RTT formatting implementation +/********************************************************************* +* +* Function prototypes +* +********************************************************************** +*/ +int SEGGER_RTT_vprintf(unsigned BufferIndex, const char * sFormat, va_list * pParamList); + +/********************************************************************* +* +* Global functions, printf +* +********************************************************************** +*/ +/********************************************************************* +* +* printf() +* +* Function description +* print a formatted string using RTT and SEGGER RTT formatting. +*/ +int printf(const char *fmt,...) { + int n; + va_list args; + + va_start (args, fmt); + n = SEGGER_RTT_vprintf(0, fmt, &args); + va_end(args); + return n; +} + +#elif PRINTF_BUFFER_SIZE == 0 // Use standard library formatting with character-wise output + +/********************************************************************* +* +* Static functions +* +********************************************************************** +*/ +static int _putchar(int x, __printf_tag_ptr ctx) { + (void)ctx; + SEGGER_RTT_Write(0, (char *)&x, 1); + return x; +} + +/********************************************************************* +* +* Global functions, printf +* +********************************************************************** +*/ +/********************************************************************* +* +* printf() +* +* Function description +* print a formatted string character-wise, using RTT and standard +* library formatting. +*/ +int printf(const char *fmt, ...) { + int n; + va_list args; + __printf_t iod; + + va_start(args, fmt); + iod.string = 0; + iod.maxchars = INT_MAX; + iod.output_fn = _putchar; + SEGGER_RTT_LOCK(); + n = __vfprintf(&iod, fmt, args); + SEGGER_RTT_UNLOCK(); + va_end(args); + return n; +} + +#else // Use standard library formatting with static buffer + +/********************************************************************* +* +* Global functions, printf +* +********************************************************************** +*/ +/********************************************************************* +* +* printf() +* +* Function description +* print a formatted string using RTT and standard library formatting. +*/ +int printf(const char *fmt,...) { + int n; + char aBuffer[PRINTF_BUFFER_SIZE]; + va_list args; + + va_start (args, fmt); + n = vsnprintf(aBuffer, sizeof(aBuffer), fmt, args); + if (n > (int)sizeof(aBuffer)) { + SEGGER_RTT_Write(0, aBuffer, sizeof(aBuffer)); + } else if (n > 0) { + SEGGER_RTT_Write(0, aBuffer, n); + } + va_end(args); + return n; +} +#endif + +/********************************************************************* +* +* Global functions +* +********************************************************************** +*/ +/********************************************************************* +* +* puts() +* +* Function description +* print a string using RTT. +*/ +int puts(const char *s) { + return SEGGER_RTT_WriteString(0, s); +} + +/********************************************************************* +* +* __putchar() +* +* Function description +* Write one character via RTT. +*/ +int __putchar(int x, __printf_tag_ptr ctx) { + (void)ctx; + SEGGER_RTT_Write(0, (char *)&x, 1); + return x; +} + +/********************************************************************* +* +* __getchar() +* +* Function description +* Wait for and get a character via RTT. +*/ +int __getchar() { + return SEGGER_RTT_WaitKey(); +} + +#endif +/****** End Of File *************************************************/ diff --git a/lib/SEGGER/wrapper/CMakeLists.txt b/lib/SEGGER/wrapper/CMakeLists.txt new file mode 100644 index 0000000..ef09ef7 --- /dev/null +++ b/lib/SEGGER/wrapper/CMakeLists.txt @@ -0,0 +1,39 @@ +cmake_minimum_required(VERSION 3.22) + +option(SEGGER_RTT_ENABLED "Enable SEGGER RTT library" ON) + +# Пути до исходников +set(RTT_SRC_DIR ${CMAKE_CURRENT_SOURCE_DIR}/../RTT/RTT) +set(RTT_SYSCALLS_DIR ${CMAKE_CURRENT_SOURCE_DIR}/../RTT/Syscalls) +set(RTT_CONFIG_DIR ${CMAKE_CURRENT_SOURCE_DIR}/../RTT/Config) + +# Проверяем наличие субмодуля +if(NOT EXISTS "${RTT_SRC_DIR}/SEGGER_RTT.c") + message( + FATAL_ERROR + " +❌ SEGGER_RTT submodule не инициализирован! + +Запустите в корне проекта: + git submodule update --init ThirdParty/SEGGER/RTT + ") +endif() + +# Создаём статическую библиотеку +add_library(SeggerRTT STATIC) + +target_sources( + SeggerRTT + PRIVATE ${RTT_SRC_DIR}/SEGGER_RTT.c ${RTT_SRC_DIR}/SEGGER_RTT_printf.c + ${RTT_SRC_DIR}/SEGGER_RTT_ASM_ARMv7M.S + ${RTT_SYSCALLS_DIR}/SEGGER_RTT_Syscalls_GCC.c) + +target_include_directories( + SeggerRTT + PUBLIC ${RTT_SRC_DIR} ${RTT_CONFIG_DIR} + PRIVATE ${RTT_SYSCALLS_DIR}) + +target_compile_definitions( + SeggerRTT + PUBLIC SEGGER_RTT_MODE_DEFAULT=SEGGER_RTT_MODE_NO_BLOCK_SKIP + SEGGER_RTT_MAX_NUM_UP_BUFFERS=3 SEGGER_RTT_BUFFER_SIZE_UP=1024) diff --git a/lib/Unity/.editorconfig b/lib/Unity/.editorconfig new file mode 100644 index 0000000..7b7a47a --- /dev/null +++ b/lib/Unity/.editorconfig @@ -0,0 +1,27 @@ +############################################################################### +# Unity Project - A Test Framework for C +# .editorconfig - F. Zahn 2019 +############################################################################### + +# This is the topmost .editorconfig file +root = true + +# Settings that apply to all languages / files +[*] +charset = utf-8 +indent_size = 4 +indent_style = space +insert_final_newline = true +trim_trailing_whitespace = true + +[*.md] +trim_trailing_whitespace = false + +[*.txt] +trim_trailing_whitespace = false + +[*.rb] +indent_size = 2 + +[*.yml] +indent_size = 2 diff --git a/lib/Unity/.gitattributes b/lib/Unity/.gitattributes new file mode 100644 index 0000000..f84c162 --- /dev/null +++ b/lib/Unity/.gitattributes @@ -0,0 +1,31 @@ +* text=auto + +# These files are text and should be normalized (convert crlf to lf) +*.rb text +*.test text +*.c text +*.cpp text +*.h text +*.txt text +*.yml text +*.s79 text +*.bat text +*.xcl text +*.inc text +*.info text +*.md text +makefile text +rakefile text +meson.build text + + +#These files are binary and should not be normalized +*.doc binary +*.odt binary +*.pdf binary +*.ewd binary +*.eww binary +*.dni binary +*.wsdt binary +*.dbgdt binary +*.mac binary diff --git a/lib/Unity/.github/FUNDING.yml b/lib/Unity/.github/FUNDING.yml new file mode 100644 index 0000000..5aa5126 --- /dev/null +++ b/lib/Unity/.github/FUNDING.yml @@ -0,0 +1,13 @@ +github: ThrowTheSwitch +#patreon: # Replace with a single Patreon username +#open_collective: # Replace with a single Open Collective username +#ko_fi: # Replace with a single Ko-fi username +#tidelift: # Replace with a single Tidelift platform-name/package-name e.g., npm/babel +#community_bridge: # Replace with a single Community Bridge project-name e.g., cloud-foundry +#liberapay: # Replace with a single Liberapay username +#issuehunt: # Replace with a single IssueHunt username +#lfx_crowdfunding: # Replace with a single LFX Crowdfunding project-name e.g., cloud-foundry +#polar: # Replace with a single Polar username +#buy_me_a_coffee: # Replace with a single Buy Me a Coffee username +#thanks_dev: # Replace with a single thanks.dev username +#custom: # Replace with up to 4 custom sponsorship URLs e.g., ['link1', 'link2'] diff --git a/lib/Unity/.github/workflows/main.yml b/lib/Unity/.github/workflows/main.yml new file mode 100644 index 0000000..f0b6d93 --- /dev/null +++ b/lib/Unity/.github/workflows/main.yml @@ -0,0 +1,35 @@ +--- +# Continuous Integration Workflow: Test case suite run + validation build check +name: CI + +# Controls when the action will run. +# Triggers the workflow on push or pull request events but only for the master branch +on: + push: + branches: [ master ] + pull_request: + branches: [ master ] + +jobs: + # Job: Unit test suite + unit-tests: + name: "Unit Tests" + runs-on: ubuntu-latest + strategy: + matrix: + ruby: ['2.7', '3.0', '3.1', '3.2'] + steps: + # Install Ruby Testing Tools + - name: Setup Ruby Testing Tools + run: | + sudo gem install rspec + sudo gem install rubocop -v 1.57.2 + + # Checks out repository under $GITHUB_WORKSPACE + - name: Checkout Latest Repo + uses: actions/checkout@v4 + + # Run Tests + - name: Run All Unit Tests + run: | + cd test && rake ci diff --git a/lib/Unity/.gitignore b/lib/Unity/.gitignore new file mode 100644 index 0000000..211683a --- /dev/null +++ b/lib/Unity/.gitignore @@ -0,0 +1,19 @@ +build/ +builddir/ +test/sandbox +.DS_Store +examples/example_1/subprojects/unity +examples/example_1/test1.exe +examples/example_1/test2.exe +examples/example_2/all_tests.exe +examples/example_1/test1.out +examples/example_1/test2.out +examples/example_2/all_tests.out +examples/example_4/builddir +*.sublime-project +*.sublime-workspace +*.cmake +Makefile +CMakeFiles +CMakeCache.txt +!unityConfig.cmake diff --git a/lib/Unity/CMakeLists.txt b/lib/Unity/CMakeLists.txt new file mode 100644 index 0000000..f706219 --- /dev/null +++ b/lib/Unity/CMakeLists.txt @@ -0,0 +1,172 @@ +################################################################################### +# # +# NAME: CMakeLists.txt # +# # +# AUTHOR: Mike Karlesky, Mark VanderVoord, Greg Williams. # +# WRITTEN BY: Michael Brockus. # +# # +# License: MIT # +# # +################################################################################### + +cmake_minimum_required(VERSION 3.12) + +# Read src/unity.h file and get project version from it +set(UNITY_HEADER "src/unity.h") + +file(STRINGS "${UNITY_HEADER}" UNITY_HEADER_CONTENT + REGEX "^#define UNITY_VERSION_(MAJOR|MINOR|BUILD) +[0-9]+$" +) + +set(UNITY_HEADER_VERSION_MAJOR 0) +set(UNITY_HEADER_VERSION_MINOR 0) +set(UNITY_HEADER_VERSION_BUILD 0) + +foreach(VERSION_LINE IN LISTS UNITY_HEADER_CONTENT) + foreach(VERSION_PART MAJOR MINOR BUILD) + string(CONCAT REGEX_STRING "#define UNITY_VERSION_" + "${VERSION_PART}" + " +([0-9]+)" + ) + + if(VERSION_LINE MATCHES "${REGEX_STRING}") + set(UNITY_HEADER_VERSION_${VERSION_PART} "${CMAKE_MATCH_1}") + endif() + endforeach() +endforeach() + +project(unity + VERSION ${UNITY_HEADER_VERSION_MAJOR}.${UNITY_HEADER_VERSION_MINOR}.${UNITY_HEADER_VERSION_BUILD} + LANGUAGES C + DESCRIPTION "C Unit testing framework." +) + +# Options to Build With Extras ------------------------------------------------- +option(UNITY_EXTENSION_FIXTURE "Compiles Unity with the \"fixture\" extension." OFF) +option(UNITY_EXTENSION_MEMORY "Compiles Unity with the \"memory\" extension." OFF) + +set(UNITY_EXTENSION_FIXTURE_ENABLED $) +set(UNITY_EXTENSION_MEMORY_ENABLED $>) + +if(${UNITY_EXTENSION_FIXTURE}) + message(STATUS "Unity: Building with the fixture extension.") +endif() + +if(${UNITY_EXTENSION_MEMORY}) + message(STATUS "Unity: Building with the memory extension.") +endif() + +# Main target ------------------------------------------------------------------ +add_library(${PROJECT_NAME} STATIC) +add_library(${PROJECT_NAME}::framework ALIAS ${PROJECT_NAME}) + +# Includes --------------------------------------------------------------------- +include(GNUInstallDirs) +include(CMakePackageConfigHelpers) + +target_sources(${PROJECT_NAME} + PRIVATE + src/unity.c + $<$:extras/fixture/src/unity_fixture.c> + $<$:extras/memory/src/unity_memory.c> +) + +target_include_directories(${PROJECT_NAME} + PUBLIC + $ + $ + $ + $ + $:${CMAKE_CURRENT_SOURCE_DIR}/extras/memory/src>> + $:${CMAKE_CURRENT_SOURCE_DIR}/extras/fixture/src>> +) + +set(${PROJECT_NAME}_PUBLIC_HEADERS + src/unity.h + src/unity_internals.h + $<$:${CMAKE_CURRENT_SOURCE_DIR}/extras/fixture/src/unity_fixture.h> + $<$:${CMAKE_CURRENT_SOURCE_DIR}/extras/fixture/src/unity_fixture_internals.h> + $<$:${CMAKE_CURRENT_SOURCE_DIR}/extras/memory/src/unity_memory.h> +) + +set_target_properties(${PROJECT_NAME} + PROPERTIES + C_STANDARD 11 + C_STANDARD_REQUIRED ON + C_EXTENSIONS OFF + PUBLIC_HEADER "${${PROJECT_NAME}_PUBLIC_HEADERS}" + EXPORT_NAME framework +) + +target_compile_options(${PROJECT_NAME} + PRIVATE + # Clang + $<$: + -Wcast-align + -Wcast-qual + -Wconversion + -Wexit-time-destructors + -Wglobal-constructors + -Wmissing-noreturn + -Wmissing-prototypes + -Wno-missing-braces + -Wold-style-cast + -Wshadow + -Wweak-vtables + -Werror + -Wall + $<$,8.0.0>:-Wextra-semi-stmt> + > + + # GCC + $<$: + -Waddress + -Waggregate-return + -Wformat-nonliteral + -Wformat-security + -Wformat + -Winit-self + -Wmissing-declarations + -Wmissing-include-dirs + -Wno-multichar + -Wno-parentheses + -Wno-type-limits + -Wno-unused-parameter + -Wunreachable-code + -Wwrite-strings + -Wpointer-arith + -Werror + -Wall + > + + # MSVC + $<$: + /Wall + > +) + +write_basic_package_version_file(${PROJECT_NAME}ConfigVersion.cmake + VERSION ${PROJECT_VERSION} + COMPATIBILITY SameMajorVersion +) + +## Target installation +install(TARGETS ${PROJECT_NAME} + EXPORT ${PROJECT_NAME}Targets + ARCHIVE DESTINATION ${CMAKE_INSTALL_LIBDIR} + LIBRARY DESTINATION ${CMAKE_INSTALL_LIBDIR} + PUBLIC_HEADER DESTINATION ${CMAKE_INSTALL_INCLUDEDIR}/${PROJECT_NAME} + COMPONENT library +) + +## Target's cmake files: targets export +install(EXPORT ${PROJECT_NAME}Targets + NAMESPACE ${PROJECT_NAME}:: + DESTINATION ${CMAKE_INSTALL_LIBDIR}/cmake/${PROJECT_NAME} +) + +## Target's cmake files: config and version config for find_package() +install(FILES ${PROJECT_NAME}Config.cmake + ${CMAKE_CURRENT_BINARY_DIR}/${PROJECT_NAME}ConfigVersion.cmake + DESTINATION ${CMAKE_INSTALL_LIBDIR}/cmake/${PROJECT_NAME} +) diff --git a/lib/Unity/LICENSE.txt b/lib/Unity/LICENSE.txt new file mode 100644 index 0000000..bd46b90 --- /dev/null +++ b/lib/Unity/LICENSE.txt @@ -0,0 +1,21 @@ +The MIT License (MIT) + +Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in +all copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN +THE SOFTWARE. diff --git a/lib/Unity/README.md b/lib/Unity/README.md new file mode 100644 index 0000000..6be02aa --- /dev/null +++ b/lib/Unity/README.md @@ -0,0 +1,234 @@ +# Unity Test ![CI][] + +__Copyright (c) 2007 - 2024 Unity Project by Mike Karlesky, Mark VanderVoord, and Greg Williams__ + +Welcome to the Unity Test Project, one of the main projects of ThrowTheSwitch.org. +Unity Test is a unit testing framework built for C, with a focus on working with embedded toolchains. + +This project is made to test code targetting microcontrollers big and small. +The core project is a single C file and a pair of headers, allowing it to be added to your existing build setup without too much headache. +You may use any compiler you wish, and may use most existing build systems including Make, CMake, etc. +If you'd like to leave the hard work to us, you might be interested in Ceedling, a build tool also by ThrowTheSwitch.org. + +If you're new to Unity, we encourage you to tour the [getting started guide][]. + +You can also find the [change log][] and [known issues][] in our documentation. + +## Getting Started + +The [docs][] folder contains a [getting started guide][] and much more tips about using Unity. + +## Unity Assertion Summary + +For the full list, see [UnityAssertionsReference.md][]. + +### Basic Validity Tests + + TEST_ASSERT_TRUE(condition) + +Evaluates whatever code is in condition and fails if it evaluates to false + + TEST_ASSERT_FALSE(condition) + +Evaluates whatever code is in condition and fails if it evaluates to true + + TEST_ASSERT(condition) + +Another way of calling `TEST_ASSERT_TRUE` + + TEST_ASSERT_UNLESS(condition) + +Another way of calling `TEST_ASSERT_FALSE` + + TEST_FAIL() + TEST_FAIL_MESSAGE(message) + +This test is automatically marked as a failure. +The message is output stating why. + +### Numerical Assertions: Integers + + TEST_ASSERT_EQUAL_INT(expected, actual) + TEST_ASSERT_EQUAL_INT8(expected, actual) + TEST_ASSERT_EQUAL_INT16(expected, actual) + TEST_ASSERT_EQUAL_INT32(expected, actual) + TEST_ASSERT_EQUAL_INT64(expected, actual) + +Compare two integers for equality and display errors as signed integers. +A cast will be performed to your natural integer size so often this can just be used. +When you need to specify the exact size, you can use a specific version. + + TEST_ASSERT_EQUAL_UINT(expected, actual) + TEST_ASSERT_EQUAL_UINT8(expected, actual) + TEST_ASSERT_EQUAL_UINT16(expected, actual) + TEST_ASSERT_EQUAL_UINT32(expected, actual) + TEST_ASSERT_EQUAL_UINT64(expected, actual) + +Compare two integers for equality and display errors as unsigned integers. +Like INT, there are variants for different sizes also. + + TEST_ASSERT_EQUAL_HEX(expected, actual) + TEST_ASSERT_EQUAL_HEX8(expected, actual) + TEST_ASSERT_EQUAL_HEX16(expected, actual) + TEST_ASSERT_EQUAL_HEX32(expected, actual) + TEST_ASSERT_EQUAL_HEX64(expected, actual) + +Compares two integers for equality and display errors as hexadecimal. +Like the other integer comparisons, you can specify the size... +here the size will also affect how many nibbles are shown (for example, `HEX16` will show 4 nibbles). + + TEST_ASSERT_EQUAL(expected, actual) + +Another way of calling TEST_ASSERT_EQUAL_INT + + TEST_ASSERT_INT_WITHIN(delta, expected, actual) + +Asserts that the actual value is within plus or minus delta of the expected value. +This also comes in size specific variants. + + TEST_ASSERT_GREATER_THAN(threshold, actual) + +Asserts that the actual value is greater than the threshold. +This also comes in size specific variants. + + TEST_ASSERT_LESS_THAN(threshold, actual) + +Asserts that the actual value is less than the threshold. +This also comes in size specific variants. + +### Arrays + + _ARRAY + +You can append `_ARRAY` to any of these macros to make an array comparison of that type. +Here you will need to care a bit more about the actual size of the value being checked. +You will also specify an additional argument which is the number of elements to compare. +For example: + + TEST_ASSERT_EQUAL_HEX8_ARRAY(expected, actual, elements) + + _EACH_EQUAL + +Another array comparison option is to check that EVERY element of an array is equal to a single expected value. +You do this by specifying the EACH_EQUAL macro. +For example: + + TEST_ASSERT_EACH_EQUAL_INT32(expected, actual, elements) + +### Numerical Assertions: Bitwise + + TEST_ASSERT_BITS(mask, expected, actual) + +Use an integer mask to specify which bits should be compared between two other integers. +High bits in the mask are compared, low bits ignored. + + TEST_ASSERT_BITS_HIGH(mask, actual) + +Use an integer mask to specify which bits should be inspected to determine if they are all set high. +High bits in the mask are compared, low bits ignored. + + TEST_ASSERT_BITS_LOW(mask, actual) + +Use an integer mask to specify which bits should be inspected to determine if they are all set low. +High bits in the mask are compared, low bits ignored. + + TEST_ASSERT_BIT_HIGH(bit, actual) + +Test a single bit and verify that it is high. +The bit is specified 0-31 for a 32-bit integer. + + TEST_ASSERT_BIT_LOW(bit, actual) + +Test a single bit and verify that it is low. +The bit is specified 0-31 for a 32-bit integer. + +### Numerical Assertions: Floats + + TEST_ASSERT_FLOAT_WITHIN(delta, expected, actual) + TEST_ASSERT_DOUBLE_WITHIN(delta, expected, actual) + +Asserts that the actual value is within plus or minus delta of the expected value. + + TEST_ASSERT_FLOAT_NOT_WITHIN(delta, expected, actual) + TEST_ASSERT_DOUBLE_NOT_WITHIN(delta, expected, actual) + +Asserts that the actual value is NOT within plus or minus delta of the expected value. + + TEST_ASSERT_EQUAL_FLOAT(expected, actual) + TEST_ASSERT_EQUAL_DOUBLE(expected, actual) + +Asserts that two floating point values are "equal" within a small % delta of the expected value. + + TEST_ASSERT_NOT_EQUAL_FLOAT(expected, actual) + TEST_ASSERT_NOT_EQUAL_DOUBLE(expected, actual) + +Asserts that two floating point values are NOT "equal" within a small % delta of the expected value. + + TEST_ASSERT_LESS_THAN_FLOAT(threshold, actual) + TEST_ASSERT_LESS_THAN_DOUBLE(threshold, actual) + TEST_ASSERT_GREATER_THAN_FLOAT(threshold, actual) + TEST_ASSERT_GREATER_THAN_DOUBLE(threshold, actual) + +Asserts that the actual value is less than or greater than the threshold. + +There are also `LESS_OR_EQUAL` and `GREATER_OR_EQUAL` variations. +These obey the same rules for equality as do `TEST_ASSERT_EQUAL_FLOAT` and `TEST_ASSERT_EQUAL_DOUBLE`: +If the two values are within a small % delta of the expected value, the assertion will pass. + +### String Assertions + + TEST_ASSERT_EQUAL_STRING(expected, actual) + +Compare two null-terminate strings. +Fail if any character is different or if the lengths are different. + + TEST_ASSERT_EQUAL_STRING_LEN(expected, actual, len) + +Compare two strings. +Fail if any character is different, stop comparing after len characters. + + TEST_ASSERT_EQUAL_STRING_MESSAGE(expected, actual, message) + +Compare two null-terminate strings. +Fail if any character is different or if the lengths are different. +Output a custom message on failure. + + TEST_ASSERT_EQUAL_STRING_LEN_MESSAGE(expected, actual, len, message) + +Compare two strings. +Fail if any character is different, stop comparing after len characters. +Output a custom message on failure. + +### Pointer Assertions + +Most pointer operations can be performed by simply using the integer comparisons above. +However, a couple of special cases are added for clarity. + + TEST_ASSERT_NULL(pointer) + +Fails if the pointer is not equal to NULL + + TEST_ASSERT_NOT_NULL(pointer) + +Fails if the pointer is equal to NULL + +### Memory Assertions + + TEST_ASSERT_EQUAL_MEMORY(expected, actual, len) + +Compare two blocks of memory. +This is a good generic assertion for types that can't be coerced into acting like standard types... +but since it's a memory compare, you have to be careful that your data types are packed. + +### \_MESSAGE + +You can append `\_MESSAGE` to any of the macros to make them take an additional argument. +This argument is a string that will be printed at the end of the failure strings. +This is useful for specifying more information about the problem. + +[CI]: https://github.com/ThrowTheSwitch/Unity/workflows/CI/badge.svg +[getting started guide]: docs/UnityGettingStartedGuide.md +[change log]: docs/UnityChangeLog.md +[known issues]: docs/UnityKnownIssues.md +[docs]: docs/ +[UnityAssertionsReference.md]: docs/UnityAssertionsReference.md diff --git a/lib/Unity/auto/__init__.py b/lib/Unity/auto/__init__.py new file mode 100644 index 0000000..6323a25 --- /dev/null +++ b/lib/Unity/auto/__init__.py @@ -0,0 +1,7 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + diff --git a/lib/Unity/auto/colour_prompt.rb b/lib/Unity/auto/colour_prompt.rb new file mode 100644 index 0000000..2de38a4 --- /dev/null +++ b/lib/Unity/auto/colour_prompt.rb @@ -0,0 +1,120 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +if RUBY_PLATFORM =~ /(win|w)32$/ + begin + require 'Win32API' + rescue LoadError + puts 'ERROR! "Win32API" library not found' + puts '"Win32API" is required for colour on a windows machine' + puts ' try => "gem install Win32API" on the command line' + puts + end + # puts + # puts 'Windows Environment Detected...' + # puts 'Win32API Library Found.' + # puts +end + +class ColourCommandLine + def initialize + return unless RUBY_PLATFORM =~ /(win|w)32$/ + + get_std_handle = Win32API.new('kernel32', 'GetStdHandle', ['L'], 'L') + @set_console_txt_attrb = + Win32API.new('kernel32', 'SetConsoleTextAttribute', %w[L N], 'I') + @hout = get_std_handle.call(-11) + end + + def change_to(new_colour) + if RUBY_PLATFORM =~ /(win|w)32$/ + @set_console_txt_attrb.call(@hout, win32_colour(new_colour)) + else + "\033[30;#{posix_colour(new_colour)};22m" + end + end + + def win32_colour(colour) + case colour + when :black then 0 + when :dark_blue then 1 + when :dark_green then 2 + when :dark_cyan then 3 + when :dark_red then 4 + when :dark_purple then 5 + when :dark_yellow, :narrative then 6 + when :default_white, :default, :dark_white then 7 + when :silver then 8 + when :blue then 9 + when :green, :success then 10 + when :cyan, :output then 11 + when :red, :failure then 12 + when :purple then 13 + when :yellow then 14 + when :white then 15 + else + 0 + end + end + + def posix_colour(colour) + # ANSI Escape Codes - Foreground colors + # | Code | Color | + # | 39 | Default foreground color | + # | 30 | Black | + # | 31 | Red | + # | 32 | Green | + # | 33 | Yellow | + # | 34 | Blue | + # | 35 | Magenta | + # | 36 | Cyan | + # | 37 | Light gray | + # | 90 | Dark gray | + # | 91 | Light red | + # | 92 | Light green | + # | 93 | Light yellow | + # | 94 | Light blue | + # | 95 | Light magenta | + # | 96 | Light cyan | + # | 97 | White | + + case colour + when :black then 30 + when :red, :failure then 31 + when :green, :success then 32 + when :yellow then 33 + when :blue, :narrative then 34 + when :purple, :magenta then 35 + when :cyan, :output then 36 + when :white, :default_white then 37 + when :default then 39 + else + 39 + end + end + + def out_c(mode, colour, str) + case RUBY_PLATFORM + when /(win|w)32$/ + change_to(colour) + $stdout.puts str if mode == :puts + $stdout.print str if mode == :print + change_to(:default_white) + else + $stdout.puts("#{change_to(colour)}#{str}\033[0m") if mode == :puts + $stdout.print("#{change_to(colour)}#{str}\033[0m") if mode == :print + end + end +end + +def colour_puts(role, str) + ColourCommandLine.new.out_c(:puts, role, str) +end + +def colour_print(role, str) + ColourCommandLine.new.out_c(:print, role, str) +end diff --git a/lib/Unity/auto/colour_reporter.rb b/lib/Unity/auto/colour_reporter.rb new file mode 100644 index 0000000..10a17d3 --- /dev/null +++ b/lib/Unity/auto/colour_reporter.rb @@ -0,0 +1,40 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +require_relative 'colour_prompt' + +$colour_output = true + +def report(message) + if !$colour_output + $stdout.puts(message) + else + message = message.join('\n') if message.instance_of?(Array) + message.each_line do |line| + line.chomp! + colour = case line + when /(?:total\s+)?tests:?\s+(\d+)\s+(?:total\s+)?failures:?\s+\d+\s+Ignored:?/i + Regexp.last_match(1).to_i.zero? ? :green : :red + when /PASS/ + :green + when /^OK$/ + :green + when /(?:FAIL|ERROR)/ + :red + when /IGNORE/ + :yellow + when /^(?:Creating|Compiling|Linking)/ + :white + else + :silver + end + colour_puts(colour, line) + end + end + $stdout.flush + $stderr.flush +end diff --git a/lib/Unity/auto/extract_version.py b/lib/Unity/auto/extract_version.py new file mode 100755 index 0000000..1494bd5 --- /dev/null +++ b/lib/Unity/auto/extract_version.py @@ -0,0 +1,22 @@ +#!/usr/bin/env python3 +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +import re +import sys + +ver_re = re.compile(r"^#define\s+UNITY_VERSION_(?:MAJOR|MINOR|BUILD)\s+(\d+)$") +version = [] + +with open(sys.argv[1], "r") as f: + for line in f: + m = ver_re.match(line) + if m: + version.append(m.group(1)) + +print(".".join(version)) + diff --git a/lib/Unity/auto/generate_config.yml b/lib/Unity/auto/generate_config.yml new file mode 100644 index 0000000..72b0654 --- /dev/null +++ b/lib/Unity/auto/generate_config.yml @@ -0,0 +1,43 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +#this is a sample configuration file for generate_module +#you would use it by calling generate_module with the -ygenerate_config.yml option +#files like this are useful for customizing generate_module to your environment +:generate_module: + :defaults: + #these defaults are used in place of any missing options at the command line + :path_src: ../src/ + :path_inc: ../src/ + :path_tst: ../test/ + :update_svn: true + :includes: + #use [] for no additional includes, otherwise list the includes on separate lines + :src: + - Defs.h + - Board.h + :inc: [] + :tst: + - Defs.h + - Board.h + - Exception.h + :boilerplates: + #these are inserted at the top of generated files. + #just comment out or remove if not desired. + #use %1$s where you would like the file name to appear (path/extension not included) + :src: | + //------------------------------------------- + // %1$s.c + //------------------------------------------- + :inc: | + //------------------------------------------- + // %1$s.h + //------------------------------------------- + :tst: | + //------------------------------------------- + // Test%1$s.c : Units tests for %1$s.c + //------------------------------------------- diff --git a/lib/Unity/auto/generate_module.rb b/lib/Unity/auto/generate_module.rb new file mode 100644 index 0000000..0b5024b --- /dev/null +++ b/lib/Unity/auto/generate_module.rb @@ -0,0 +1,318 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +# This script creates all the files with start code necessary for a new module. +# A simple module only requires a source file, header file, and test file. +# Triad modules require a source, header, and test file for each triad type (like model, conductor, and hardware). + +require 'rubygems' +require 'fileutils' +require 'pathname' + +# TEMPLATE_TST +TEMPLATE_TST ||= '#ifdef %5$s + +#include "unity.h" + +%2$s#include "%1$s.h" + +void setUp(void) +{ +} + +void tearDown(void) +{ +} + +void test_%4$s_NeedToImplement(void) +{ + TEST_IGNORE_MESSAGE("Need to Implement %1$s"); +} + +#endif // %5$s +'.freeze + +# TEMPLATE_SRC +TEMPLATE_SRC ||= '%2$s#include "%1$s.h" +'.freeze + +# TEMPLATE_INC +TEMPLATE_INC ||= '#ifndef %3$s_H +#define %3$s_H +%2$s + +#endif // %3$s_H +'.freeze + +class UnityModuleGenerator + ############################ + def initialize(options = nil) + @options = UnityModuleGenerator.default_options + case options + when NilClass then @options + when String then @options.merge!(UnityModuleGenerator.grab_config(options)) + when Hash then @options.merge!(options) + else raise 'If you specify arguments, it should be a filename or a hash of options' + end + + # Create default file paths if none were provided + @options[:path_src] = "#{__dir__}/../src/" if @options[:path_src].nil? + @options[:path_inc] = @options[:path_src] if @options[:path_inc].nil? + @options[:path_tst] = "#{__dir__}/../test/" if @options[:path_tst].nil? + @options[:path_src] += '/' unless @options[:path_src][-1] == 47 + @options[:path_inc] += '/' unless @options[:path_inc][-1] == 47 + @options[:path_tst] += '/' unless @options[:path_tst][-1] == 47 + + # Built in patterns + @patterns = { + 'src' => { + '' => { inc: [] } + }, + 'test' => { + '' => { inc: [] } + }, + 'dh' => { + 'Driver' => { inc: [create_filename('%1$s', 'Hardware.h')] }, + 'Hardware' => { inc: [] } + }, + 'dih' => { + 'Driver' => { inc: [create_filename('%1$s', 'Hardware.h'), create_filename('%1$s', 'Interrupt.h')] }, + 'Interrupt' => { inc: [create_filename('%1$s', 'Hardware.h')] }, + 'Hardware' => { inc: [] } + }, + 'mch' => { + 'Model' => { inc: [] }, + 'Conductor' => { inc: [create_filename('%1$s', 'Model.h'), create_filename('%1$s', 'Hardware.h')] }, + 'Hardware' => { inc: [] } + }, + 'mvp' => { + 'Model' => { inc: [] }, + 'Presenter' => { inc: [create_filename('%1$s', 'Model.h'), create_filename('%1$s', 'View.h')] }, + 'View' => { inc: [] } + } + } + end + + ############################ + def self.default_options + { + pattern: 'src', + includes: { + src: [], + inc: [], + tst: [] + }, + update_svn: false, + boilerplates: {}, + test_prefix: 'Test', + mock_prefix: 'Mock', + test_define: 'TEST' + } + end + + ############################ + def self.grab_config(config_file) + options = default_options + unless config_file.nil? || config_file.empty? + require_relative 'yaml_helper' + yaml_guts = YamlHelper.load_file(config_file) + options.merge!(yaml_guts[:unity] || yaml_guts[:cmock]) + raise "No :unity or :cmock section found in #{config_file}" unless options + end + options + end + + ############################ + def files_to_operate_on(module_name, pattern = nil) + # strip any leading path information from the module name and save for later + subfolder = File.dirname(module_name) + module_name = File.basename(module_name) + + # create triad definition + prefix = @options[:test_prefix] || 'Test' + triad = [{ ext: '.c', path: @options[:path_src], prefix: '', template: TEMPLATE_SRC, inc: :src, boilerplate: @options[:boilerplates][:src] }, + { ext: '.h', path: @options[:path_inc], prefix: '', template: TEMPLATE_INC, inc: :inc, boilerplate: @options[:boilerplates][:inc] }, + { ext: '.c', path: @options[:path_tst], prefix: prefix, template: TEMPLATE_TST, inc: :tst, boilerplate: @options[:boilerplates][:tst], test_define: @options[:test_define] }] + + # prepare the pattern for use + pattern = (pattern || @options[:pattern] || 'src').downcase + patterns = @patterns[pattern] + raise "ERROR: The design pattern '#{pattern}' specified isn't one that I recognize!" if patterns.nil? + + # single file patterns (currently just 'test') can reject the other parts of the triad + triad.select! { |v| v[:inc] == :tst } if pattern == 'test' + + # Assemble the path/names of the files we need to work with. + files = [] + triad.each do |cfg| + patterns.each_pair do |pattern_file, pattern_traits| + submodule_name = create_filename(module_name, pattern_file) + filename = cfg[:prefix] + submodule_name + cfg[:ext] + files << { + path: (Pathname.new("#{cfg[:path]}#{subfolder}") + filename).cleanpath, + name: submodule_name, + template: cfg[:template], + test_define: cfg[:test_define], + boilerplate: cfg[:boilerplate], + includes: case (cfg[:inc]) + when :src then (@options[:includes][:src] || []) | (pattern_traits[:inc].map { |f| format(f, module_name) }) + when :inc then @options[:includes][:inc] || [] + when :tst then (@options[:includes][:tst] || []) | (pattern_traits[:inc].map { |f| format("#{@options[:mock_prefix]}#{f}", module_name) }) + end + } + end + end + + files + end + + ############################ + def neutralize_filename(name, start_cap: true) + return name if name.empty? + + name = name.split(/(?:\s+|_|(?=[A-Z][a-z]))|(?<=[a-z])(?=[A-Z])/).map(&:capitalize).join('_') + name = name[0].downcase + name[1..] unless start_cap + name + end + + ############################ + def create_filename(part1, part2 = '') + name = part2.empty? ? part1 : "#{part1}_#{part2}" + case (@options[:naming]) + when 'bumpy' then neutralize_filename(name, start_cap: false).delete('_') + when 'camel' then neutralize_filename(name).delete('_') + when 'snake' then neutralize_filename(name).downcase + when 'caps' then neutralize_filename(name).upcase + else name + end + end + + ############################ + def generate(module_name, pattern = nil) + files = files_to_operate_on(module_name, pattern) + + # Abort if all of the module files already exist + all_files_exist = true + files.each do |file| + all_files_exist = false unless File.exist?(file[:path]) + end + raise "ERROR: File #{files[0][:name]} already exists. Exiting." if all_files_exist + + # Create Source Modules + files.each_with_index do |file, _i| + # If this file already exists, don't overwrite it. + if File.exist?(file[:path]) + puts "File #{file[:path]} already exists!" + next + end + # Create the path first if necessary. + FileUtils.mkdir_p(File.dirname(file[:path]), verbose: false) + File.open(file[:path], 'w') do |f| + f.write("#{file[:boilerplate]}\n" % [file[:name]]) unless file[:boilerplate].nil? + f.write(file[:template] % [file[:name], + file[:includes].map { |ff| "#include \"#{ff}\"\n" }.join, + file[:name].upcase.tr('-', '_'), + file[:name].tr('-', '_'), + file[:test_define]]) + end + if @options[:update_svn] + `svn add \"#{file[:path]}\"` + if $!.exitstatus.zero? + puts "File #{file[:path]} created and added to source control" + else + puts "File #{file[:path]} created but FAILED adding to source control!" + end + else + puts "File #{file[:path]} created" + end + end + puts 'Generate Complete' + end + + ############################ + def destroy(module_name, pattern = nil) + files_to_operate_on(module_name, pattern).each do |filespec| + file = filespec[:path] + if File.exist?(file) + if @options[:update_svn] + `svn delete \"#{file}\" --force` + puts "File #{file} deleted and removed from source control" + else + FileUtils.remove(file) + puts "File #{file} deleted" + end + else + puts "File #{file} does not exist so cannot be removed." + end + end + puts 'Destroy Complete' + end +end + +############################ +# Handle As Command Line If Called That Way +if $0 == __FILE__ + destroy = false + options = {} + module_name = nil + + # Parse the command line parameters. + ARGV.each do |arg| + case arg + when /^-d/ then destroy = true + when /^-u/ then options[:update_svn] = true + when /^-p"?(\w+)"?/ then options[:pattern] = Regexp.last_match(1) + when /^-s"?(.+)"?/ then options[:path_src] = Regexp.last_match(1) + when /^-i"?(.+)"?/ then options[:path_inc] = Regexp.last_match(1) + when /^-t"?(.+)"?/ then options[:path_tst] = Regexp.last_match(1) + when /^-n"?(.+)"?/ then options[:naming] = Regexp.last_match(1) + when /^-y"?(.+)"?/ then options = UnityModuleGenerator.grab_config(Regexp.last_match(1)) + when /^(\w+)/ + raise "ERROR: You can't have more than one Module name specified!" unless module_name.nil? + + module_name = arg + when /^-(h|-help)/ + ARGV = [].freeze + else + raise "ERROR: Unknown option specified '#{arg}'" + end + end + + unless ARGV[0] + puts ["\nGENERATE MODULE\n-------- ------", + "\nUsage: ruby generate_module [options] module_name", + " -i\"include\" sets the path to output headers to 'include' (DEFAULT ../src)", + " -s\"../src\" sets the path to output source to '../src' (DEFAULT ../src)", + " -t\"C:/test\" sets the path to output source to 'C:/test' (DEFAULT ../test)", + ' -p"MCH" sets the output pattern to MCH.', + ' dh - driver hardware.', + ' dih - driver interrupt hardware.', + ' mch - model conductor hardware.', + ' mvp - model view presenter.', + ' src - just a source module, header and test. (DEFAULT)', + ' test - just a test file.', + ' -d destroy module instead of creating it.', + ' -n"camel" sets the file naming convention.', + ' bumpy - BumpyCaseFilenames.', + ' camel - camelCaseFilenames.', + ' snake - snake_case_filenames.', + ' caps - CAPS_CASE_FILENAMES.', + ' -u update subversion too (requires subversion command line)', + ' -y"my.yml" selects a different yaml config file for module generation', + ''].join("\n") + exit + end + + raise 'ERROR: You must have a Module name specified! (use option -h for help)' if module_name.nil? + + if destroy + UnityModuleGenerator.new(options).destroy(module_name) + else + UnityModuleGenerator.new(options).generate(module_name) + end + +end diff --git a/lib/Unity/auto/generate_test_runner.rb b/lib/Unity/auto/generate_test_runner.rb new file mode 100755 index 0000000..2b2cf61 --- /dev/null +++ b/lib/Unity/auto/generate_test_runner.rb @@ -0,0 +1,631 @@ +#!/usr/bin/env ruby +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +class UnityTestRunnerGenerator + def initialize(options = nil) + @options = UnityTestRunnerGenerator.default_options + case options + when NilClass + @options + when String + @options.merge!(UnityTestRunnerGenerator.grab_config(options)) + when Hash + # Check if some of these have been specified + @options[:has_setup] = !options[:setup_name].nil? + @options[:has_teardown] = !options[:teardown_name].nil? + @options[:has_suite_setup] = !options[:suite_setup].nil? + @options[:has_suite_teardown] = !options[:suite_teardown].nil? + @options.merge!(options) + else + raise 'If you specify arguments, it should be a filename or a hash of options' + end + require_relative 'type_sanitizer' + end + + def self.default_options + { + includes: [], + defines: [], + plugins: [], + framework: :unity, + test_prefix: 'test|spec|should', + mock_prefix: 'Mock', + mock_suffix: '', + setup_name: 'setUp', + teardown_name: 'tearDown', + test_reset_name: 'resetTest', + test_verify_name: 'verifyTest', + main_name: 'main', # set to :auto to automatically generate each time + main_export_decl: '', + cmdline_args: false, + omit_begin_end: false, + use_param_tests: false, + use_system_files: true, + include_extensions: '(?:hpp|hh|H|h)', + source_extensions: '(?:cpp|cc|ino|C|c)', + shuffle_tests: false, + rng_seed: 0 + } + end + + def self.grab_config(config_file) + options = default_options + unless config_file.nil? || config_file.empty? + require_relative 'yaml_helper' + yaml_guts = YamlHelper.load_file(config_file) + options.merge!(yaml_guts[:unity] || yaml_guts[:cmock]) + raise "No :unity or :cmock section found in #{config_file}" unless options + end + options + end + + def run(input_file, output_file, options = nil) + @options.merge!(options) unless options.nil? + + # pull required data from source file + source = File.read(input_file) + source = source.force_encoding('ISO-8859-1').encode('utf-8', replace: nil) + tests = find_tests(source) + headers = find_includes(source) + testfile_includes = @options[:use_system_files] ? (headers[:local] + headers[:system]) : (headers[:local]) + used_mocks = find_mocks(testfile_includes) + testfile_includes = (testfile_includes - used_mocks) + testfile_includes.delete_if { |inc| inc =~ /(unity|cmock)/ } + find_setup_and_teardown(source) + + # build runner file + generate(input_file, output_file, tests, used_mocks, testfile_includes) + + # determine which files were used to return them + all_files_used = [input_file, output_file] + all_files_used += testfile_includes.map { |filename| "#{filename}.c" } unless testfile_includes.empty? + all_files_used += @options[:includes] unless @options[:includes].empty? + all_files_used += headers[:linkonly] unless headers[:linkonly].empty? + all_files_used.uniq + end + + def generate(input_file, output_file, tests, used_mocks, testfile_includes) + File.open(output_file, 'w') do |output| + create_header(output, used_mocks, testfile_includes) + create_run_test_params_struct(output) + create_externs(output, tests, used_mocks) + create_mock_management(output, used_mocks) + create_setup(output) + create_teardown(output) + create_suite_setup(output) + create_suite_teardown(output) + create_reset(output) + create_run_test(output) unless tests.empty? + create_args_wrappers(output, tests) + create_shuffle_tests(output) if @options[:shuffle_tests] + create_main(output, input_file, tests, used_mocks) + end + + return unless @options[:header_file] && !@options[:header_file].empty? + + File.open(@options[:header_file], 'w') do |output| + create_h_file(output, @options[:header_file], tests, testfile_includes, used_mocks) + end + end + + def find_tests(source) + tests_and_line_numbers = [] + + # contains characters which will be substituted from within strings, doing + # this prevents these characters from interfering with scrubbers + # @ is not a valid C character, so there should be no clashes with files genuinely containing these markers + substring_subs = { '{' => '@co@', '}' => '@cc@', ';' => '@ss@', '/' => '@fs@' } + substring_re = Regexp.union(substring_subs.keys) + substring_unsubs = substring_subs.invert # the inverse map will be used to fix the strings afterwords + substring_unsubs['@quote@'] = '\\"' + substring_unsubs['@apos@'] = '\\\'' + substring_unre = Regexp.union(substring_unsubs.keys) + source_scrubbed = source.clone + source_scrubbed = source_scrubbed.gsub(/\\"/, '@quote@') # hide escaped quotes to allow capture of the full string/char + source_scrubbed = source_scrubbed.gsub(/\\'/, '@apos@') # hide escaped apostrophes to allow capture of the full string/char + source_scrubbed = source_scrubbed.gsub(/("[^"\n]*")|('[^'\n]*')/) { |s| s.gsub(substring_re, substring_subs) } # temporarily hide problematic characters within strings + source_scrubbed = source_scrubbed.gsub(/\/\/(?:.+\/\*|\*(?:$|[^\/])).*$/, '') # remove line comments that comment out the start of blocks + source_scrubbed = source_scrubbed.gsub(/\/\*.*?\*\//m, '') # remove block comments + source_scrubbed = source_scrubbed.gsub(/\/\/.*$/, '') # remove line comments (all that remain) + lines = source_scrubbed.split(/(^\s*\#.*$) | (;|\{|\}) /x) # Treat preprocessor directives as a logical line. Match ;, {, and } as end of lines + .map { |line| line.gsub(substring_unre, substring_unsubs) } # unhide the problematic characters previously removed + + lines.each_with_index do |line, _index| + # find tests + next unless line =~ /^((?:\s*(?:TEST_(?:CASE|RANGE|MATRIX))\s*\(.*?\)\s*)*)\s*void\s+((?:#{@options[:test_prefix]}).*)\s*\(\s*(.*)\s*\)/m + next unless line =~ /^((?:\s*(?:TEST_(?:CASE|RANGE|MATRIX))\s*\(.*?\)\s*)*)\s*void\s+((?:#{@options[:test_prefix]})\w*)\s*\(\s*(.*)\s*\)/m + + arguments = Regexp.last_match(1) + name = Regexp.last_match(2) + call = Regexp.last_match(3) + params = Regexp.last_match(4) + args = nil + + if @options[:use_param_tests] && !arguments.empty? + args = [] + type_and_args = arguments.split(/TEST_(CASE|RANGE|MATRIX)/) + (1...type_and_args.length).step(2).each do |i| + case type_and_args[i] + when 'CASE' + args << type_and_args[i + 1].sub(/^\s*\(\s*(.*?)\s*\)\s*$/m, '\1') + + when 'RANGE' + args += type_and_args[i + 1].scan(/(\[|<)\s*(-?\d+.?\d*)\s*,\s*(-?\d+.?\d*)\s*,\s*(-?\d+.?\d*)\s*(\]|>)/m).map do |arg_values_str| + exclude_end = arg_values_str[0] == '<' && arg_values_str[-1] == '>' + arg_values_str[1...-1].map do |arg_value_str| + arg_value_str.include?('.') ? arg_value_str.to_f : arg_value_str.to_i + end.push(exclude_end) + end.map do |arg_values| + Range.new(arg_values[0], arg_values[1], arg_values[3]).step(arg_values[2]).to_a + end.reduce(nil) do |result, arg_range_expanded| + result.nil? ? arg_range_expanded.map { |a| [a] } : result.product(arg_range_expanded) + end.map do |arg_combinations| + arg_combinations.flatten.join(', ') + end + + when 'MATRIX' + single_arg_regex_string = /(?:(?:"(?:\\"|[^\\])*?")+|(?:'\\?.')+|(?:[^\s\]\["',]|\[[\d\S_-]+\])+)/.source + args_regex = /\[((?:\s*#{single_arg_regex_string}\s*,?)*(?:\s*#{single_arg_regex_string})?\s*)\]/m + arg_elements_regex = /\s*(#{single_arg_regex_string})\s*,\s*/m + + args += type_and_args[i + 1].scan(args_regex).flatten.map do |arg_values_str| + "#{arg_values_str},".scan(arg_elements_regex) + end.reduce do |result, arg_range_expanded| + result.product(arg_range_expanded) + end.map do |arg_combinations| + arg_combinations.flatten.join(', ') + end + end + end + end + + tests_and_line_numbers << { test: name, args: args, call: call, params: params, line_number: 0 } + end + + tests_and_line_numbers.uniq! { |v| v[:test] } + + # determine line numbers and create tests to run + source_lines = source.split("\n") + source_index = 0 + tests_and_line_numbers.size.times do |i| + source_lines[source_index..].each_with_index do |line, index| + next unless line =~ /\s+#{tests_and_line_numbers[i][:test]}(?:\s|\()/ + + source_index += index + tests_and_line_numbers[i][:line_number] = source_index + 1 + break + end + end + + tests_and_line_numbers + end + + def find_includes(source) + # remove comments (block and line, in three steps to ensure correct precedence) + source.gsub!(/\/\/(?:.+\/\*|\*(?:$|[^\/])).*$/, '') # remove line comments that comment out the start of blocks + source.gsub!(/\/\*.*?\*\//m, '') # remove block comments + source.gsub!(/\/\/.*$/, '') # remove line comments (all that remain) + + # parse out includes + { + local: source.scan(/^\s*#include\s+"\s*(.+\.#{@options[:include_extensions]})\s*"/).flatten, + system: source.scan(/^\s*#include\s+<\s*(.+)\s*>/).flatten.map { |inc| "<#{inc}>" }, + linkonly: source.scan(/^TEST_SOURCE_FILE\(\s*"\s*(.+\.#{@options[:source_extensions]})\s*"/).flatten + } + end + + def find_mocks(includes) + mock_headers = [] + includes.each do |include_path| + include_file = File.basename(include_path) + mock_headers << include_path if include_file =~ /^#{@options[:mock_prefix]}.*#{@options[:mock_suffix]}\.h$/i + end + mock_headers + end + + def find_setup_and_teardown(source) + @options[:has_setup] = source =~ /void\s+#{@options[:setup_name]}\s*\(/ + @options[:has_teardown] = source =~ /void\s+#{@options[:teardown_name]}\s*\(/ + @options[:has_suite_setup] ||= (source =~ /void\s+suiteSetUp\s*\(/) + @options[:has_suite_teardown] ||= (source =~ /int\s+suiteTearDown\s*\(int\s+([a-zA-Z0-9_])+\s*\)/) + end + + def count_tests(tests) + if @options[:use_param_tests] + idx = 0 + tests.each do |test| + if (test[:args].nil? || test[:args].empty?) + idx += 1 + else + test[:args].each do |args| + idx += 1 + end + end + end + return idx + else + return tests.size + end + end + + def create_header(output, mocks, testfile_includes = []) + output.puts('/* AUTOGENERATED FILE. DO NOT EDIT. */') + output.puts("\n/*=======Automagically Detected Files To Include=====*/") + output.puts('extern "C" {') if @options[:externcincludes] + if @options[:shuffle_tests] + output.puts('#include ') + if @options[:rng_seed] == 0 + output.puts('#include ') + end + end + output.puts("#include \"#{@options[:framework]}.h\"") + output.puts('#include "cmock.h"') unless mocks.empty? + output.puts('}') if @options[:externcincludes] + if @options[:defines] && !@options[:defines].empty? + output.puts('/* injected defines for unity settings, etc */') + @options[:defines].each do |d| + def_only = d.match(/(\w+).*/)[1] + output.puts("#ifndef #{def_only}\n#define #{d}\n#endif /* #{def_only} */") + end + end + if @options[:header_file] && !@options[:header_file].empty? + output.puts("#include \"#{File.basename(@options[:header_file])}\"") + else + @options[:includes].flatten.uniq.compact.each do |inc| + output.puts("#include #{inc.include?('<') ? inc : "\"#{inc}\""}") + end + testfile_includes.each do |inc| + output.puts("#include #{inc.include?('<') ? inc : "\"#{inc}\""}") + end + end + output.puts('extern "C" {') if @options[:externcincludes] + mocks.each do |mock| + output.puts("#include \"#{mock}\"") + end + output.puts('}') if @options[:externcincludes] + output.puts('#include "CException.h"') if @options[:plugins].include?(:cexception) + + return unless @options[:enforce_strict_ordering] + + output.puts('') + output.puts('int GlobalExpectCount;') + output.puts('int GlobalVerifyOrder;') + output.puts('char* GlobalOrderError;') + end + + def create_run_test_params_struct(output) + output.puts("\n/*=======Structure Used By Test Runner=====*/") + output.puts('struct UnityRunTestParameters') + output.puts('{') + output.puts(' UnityTestFunction func;') + output.puts(' const char* name;') + output.puts(' UNITY_LINE_TYPE line_num;') + output.puts('};') + end + + def create_externs(output, tests, _mocks) + output.puts("\n/*=======External Functions This Runner Calls=====*/") + output.puts("extern void #{@options[:setup_name]}(void);") + output.puts("extern void #{@options[:teardown_name]}(void);") + output.puts("\n#ifdef __cplusplus\nextern \"C\"\n{\n#endif") if @options[:externc] + tests.each do |test| + output.puts("extern void #{test[:test]}(#{test[:call] || 'void'});") + end + output.puts("#ifdef __cplusplus\n}\n#endif") if @options[:externc] + output.puts('') + end + + def create_mock_management(output, mock_headers) + output.puts("\n/*=======Mock Management=====*/") + output.puts('static void CMock_Init(void)') + output.puts('{') + + if @options[:enforce_strict_ordering] + output.puts(' GlobalExpectCount = 0;') + output.puts(' GlobalVerifyOrder = 0;') + output.puts(' GlobalOrderError = NULL;') + end + + mocks = mock_headers.map { |mock| File.basename(mock, '.*') } + mocks.each do |mock| + mock_clean = TypeSanitizer.sanitize_c_identifier(mock) + output.puts(" #{mock_clean}_Init();") + end + output.puts("}\n") + + output.puts('static void CMock_Verify(void)') + output.puts('{') + mocks.each do |mock| + mock_clean = TypeSanitizer.sanitize_c_identifier(mock) + output.puts(" #{mock_clean}_Verify();") + end + output.puts("}\n") + + output.puts('static void CMock_Destroy(void)') + output.puts('{') + mocks.each do |mock| + mock_clean = TypeSanitizer.sanitize_c_identifier(mock) + output.puts(" #{mock_clean}_Destroy();") + end + output.puts("}\n") + end + + def create_setup(output) + return if @options[:has_setup] + + output.puts("\n/*=======Setup (stub)=====*/") + output.puts("void #{@options[:setup_name]}(void) {}") + end + + def create_teardown(output) + return if @options[:has_teardown] + + output.puts("\n/*=======Teardown (stub)=====*/") + output.puts("void #{@options[:teardown_name]}(void) {}") + end + + def create_suite_setup(output) + return if @options[:suite_setup].nil? + + output.puts("\n/*=======Suite Setup=====*/") + output.puts('void suiteSetUp(void)') + output.puts('{') + output.puts(@options[:suite_setup]) + output.puts('}') + end + + def create_suite_teardown(output) + return if @options[:suite_teardown].nil? + + output.puts("\n/*=======Suite Teardown=====*/") + output.puts('int suiteTearDown(int num_failures)') + output.puts('{') + output.puts(@options[:suite_teardown]) + output.puts('}') + end + + def create_reset(output) + output.puts("\n/*=======Test Reset Options=====*/") + output.puts("void #{@options[:test_reset_name]}(void);") + output.puts("void #{@options[:test_reset_name]}(void)") + output.puts('{') + output.puts(" #{@options[:teardown_name]}();") + output.puts(' CMock_Verify();') + output.puts(' CMock_Destroy();') + output.puts(' CMock_Init();') + output.puts(" #{@options[:setup_name]}();") + output.puts('}') + output.puts("void #{@options[:test_verify_name]}(void);") + output.puts("void #{@options[:test_verify_name]}(void)") + output.puts('{') + output.puts(' CMock_Verify();') + output.puts('}') + end + + def create_run_test(output) + require 'erb' + file = File.read(File.join(__dir__, 'run_test.erb')) + template = ERB.new(file, trim_mode: '<>') + output.puts("\n#{template.result(binding)}") + end + + def create_args_wrappers(output, tests) + return unless @options[:use_param_tests] + + output.puts("\n/*=======Parameterized Test Wrappers=====*/") + tests.each do |test| + next if test[:args].nil? || test[:args].empty? + + test[:args].each.with_index(1) do |args, idx| + output.puts("static void runner_args#{idx}_#{test[:test]}(void)") + output.puts('{') + output.puts(" #{test[:test]}(#{args});") + output.puts("}\n") + end + end + end + + def create_shuffle_tests(output) + output.puts("\n/*=======Shuffle Test Order=====*/") + output.puts('static void shuffleTests(struct UnityRunTestParameters run_test_params_arr[], int num_of_tests)') + output.puts('{') + + # Use Fisher-Yates shuffle algorithm + output.puts(' for (int i = num_of_tests - 1; i > 0; i--)') + output.puts(' {') + output.puts(' int j = rand() % (i + 1);') + output.puts(' struct UnityRunTestParameters temp = run_test_params_arr[i];') + output.puts(' run_test_params_arr[i] = run_test_params_arr[j];') + output.puts(' run_test_params_arr[j] = temp;') + output.puts(' }') + output.puts('}') + end + + def create_main(output, filename, tests, used_mocks) + output.puts("\n/*=======MAIN=====*/") + main_name = @options[:main_name].to_sym == :auto ? "main_#{filename.gsub('.c', '')}" : (@options[:main_name]).to_s + if @options[:cmdline_args] + if main_name != 'main' + output.puts("#{@options[:main_export_decl]} int #{main_name}(int argc, char** argv);") + end + output.puts("#{@options[:main_export_decl]} int #{main_name}(int argc, char** argv)") + output.puts('{') + output.puts('#ifdef UNITY_USE_COMMAND_LINE_ARGS') + output.puts(' int parse_status = UnityParseOptions(argc, argv);') + output.puts(' if (parse_status != 0)') + output.puts(' {') + output.puts(' if (parse_status < 0)') + output.puts(' {') + output.puts(" UnityPrint(\"#{filename.gsub('.c', '').gsub(/\\/, '\\\\\\')}.\");") + output.puts(' UNITY_PRINT_EOL();') + tests.each do |test| + if (!@options[:use_param_tests]) || test[:args].nil? || test[:args].empty? + output.puts(" UnityPrint(\" #{test[:test]}\");") + output.puts(' UNITY_PRINT_EOL();') + else + test[:args].each do |args| + output.puts(" UnityPrint(\" #{test[:test]}(#{args})\");") + output.puts(' UNITY_PRINT_EOL();') + end + end + end + output.puts(' return 0;') + output.puts(' }') + output.puts(' return parse_status;') + output.puts(' }') + output.puts('#endif') + else + main_return = @options[:omit_begin_end] ? 'void' : 'int' + if main_name != 'main' + output.puts("#{@options[:main_export_decl]} #{main_return} #{main_name}(void);") + end + output.puts("#{main_return} #{main_name}(void)") + output.puts('{') + end + output.puts(' suiteSetUp();') if @options[:has_suite_setup] + if @options[:omit_begin_end] + output.puts(" UnitySetTestFile(\"#{filename.gsub(/\\/, '\\\\\\')}\");") + else + output.puts(" UnityBegin(\"#{filename.gsub(/\\/, '\\\\\\')}\");") + end + if @options[:shuffle_tests] + output.puts + if @options[:rng_seed] == 0 + output.puts(' srand(time(NULL));') + else + output.puts(" srand(#{@options[:rng_seed]});") + end + end + output.puts + output.puts(" int number_of_tests = #{count_tests(tests)};") + output.puts(' struct UnityRunTestParameters run_test_params_arr[number_of_tests];') + output.puts + idx = 0 + tests.each do |test| + if (!@options[:use_param_tests]) || test[:args].nil? || test[:args].empty? + output.puts(" run_test_params_arr[#{idx}].func = #{test[:test]};") + output.puts(" run_test_params_arr[#{idx}].name = \"#{test[:test]}\";") + output.puts(" run_test_params_arr[#{idx}].line_num = #{test[:line_number]};") + idx += 1 + else + test[:args].each.with_index(1) do |args, arg_idx| + wrapper = "runner_args#{arg_idx}_#{test[:test]}" + testname = "#{test[:test]}(#{args})".dump + output.puts(" run_test_params_arr[#{idx}].func = #{wrapper};") + output.puts(" run_test_params_arr[#{idx}].name = #{testname};") + output.puts(" run_test_params_arr[#{idx}].line_num = #{test[:line_number]};") + idx += 1 + end + end + end + output.puts + if @options[:shuffle_tests] + output.puts(' shuffleTests(run_test_params_arr, number_of_tests);') + output.puts + end + output.puts(' for (int i = 0; i < number_of_tests; i++)') + output.puts(' {') + output.puts(' run_test(run_test_params_arr[i].func, run_test_params_arr[i].name, run_test_params_arr[i].line_num);') + output.puts(' }') + output.puts + output.puts(' CMock_Guts_MemFreeFinal();') unless used_mocks.empty? + if @options[:has_suite_teardown] + if @options[:omit_begin_end] + output.puts(' (void) suite_teardown(0);') + else + output.puts(' return suiteTearDown(UNITY_END());') + end + else + output.puts(' return UNITY_END();') unless @options[:omit_begin_end] + end + output.puts('}') + end + + def create_h_file(output, filename, tests, testfile_includes, used_mocks) + filename = File.basename(filename).gsub(/[-\/\\.,\s]/, '_').upcase + output.puts('/* AUTOGENERATED FILE. DO NOT EDIT. */') + output.puts("#ifndef _#{filename}") + output.puts("#define _#{filename}\n\n") + output.puts("#include \"#{@options[:framework]}.h\"") + output.puts('#include "cmock.h"') unless used_mocks.empty? + @options[:includes].flatten.uniq.compact.each do |inc| + output.puts("#include #{inc.include?('<') ? inc : "\"#{inc}\""}") + end + testfile_includes.each do |inc| + output.puts("#include #{inc.include?('<') ? inc : "\"#{inc}\""}") + end + output.puts "\n" + tests.each do |test| + if test[:params].nil? || test[:params].empty? + output.puts("void #{test[:test]}(void);") + else + output.puts("void #{test[:test]}(#{test[:params]});") + end + end + output.puts("#endif\n\n") + end +end + +if $0 == __FILE__ + options = { includes: [] } + + # parse out all the options first (these will all be removed as we go) + ARGV.reject! do |arg| + case arg + when '-cexception' + options[:plugins] = [:cexception] + true + when '-externcincludes' + options[:externcincludes] = true + true + when /\.*\.ya?ml$/ + options = UnityTestRunnerGenerator.grab_config(arg) + true + when /--(\w+)="?(.*)"?/ + options[Regexp.last_match(1).to_sym] = Regexp.last_match(2) + true + when /\.*\.(?:hpp|hh|H|h)$/ + options[:includes] << arg + true + else false + end + end + + # make sure there is at least one parameter left (the input file) + unless ARGV[0] + puts ["\nusage: ruby #{__FILE__} (files) (options) input_test_file (output)", + "\n input_test_file - this is the C file you want to create a runner for", + ' output - this is the name of the runner file to generate', + ' defaults to (input_test_file)_Runner', + ' files:', + ' *.yml / *.yaml - loads configuration from here in :unity or :cmock', + ' *.h - header files are added as #includes in runner', + ' options:', + ' -cexception - include cexception support', + ' -externc - add extern "C" for cpp support', + ' --setup_name="" - redefine setUp func name to something else', + ' --teardown_name="" - redefine tearDown func name to something else', + ' --main_name="" - redefine main func name to something else', + ' --test_prefix="" - redefine test prefix from default test|spec|should', + ' --test_reset_name="" - redefine resetTest func name to something else', + ' --test_verify_name="" - redefine verifyTest func name to something else', + ' --suite_setup="" - code to execute for setup of entire suite', + ' --suite_teardown="" - code to execute for teardown of entire suite', + ' --use_param_tests=1 - enable parameterized tests (disabled by default)', + ' --omit_begin_end=1 - omit calls to UnityBegin and UNITY_END (disabled by default)', + ' --header_file="" - path/name of test header file to generate too', + ' --shuffle_tests=1 - enable shuffling of the test execution order (disabled by default)', + ' --rng_seed=1 - seed value for randomization of test execution order'].join("\n") + exit 1 + end + + # create the default test runner name if not specified + ARGV[1] = ARGV[0].gsub('.c', '_Runner.c') unless ARGV[1] + + UnityTestRunnerGenerator.new(options).run(ARGV[0], ARGV[1]) +end diff --git a/lib/Unity/auto/parse_output.rb b/lib/Unity/auto/parse_output.rb new file mode 100644 index 0000000..3ecc04c --- /dev/null +++ b/lib/Unity/auto/parse_output.rb @@ -0,0 +1,390 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +#============================================================ +# Author: John Theofanopoulos +# A simple parser. Takes the output files generated during the +# build process and extracts information relating to the tests. +# +# Notes: +# To capture an output file under VS builds use the following: +# devenv [build instructions] > Output.txt & type Output.txt +# +# To capture an output file under Linux builds use the following: +# make | tee Output.txt +# +# This script can handle the following output formats: +# - normal output (raw unity) +# - fixture output (unity_fixture.h/.c) +# - fixture output with verbose flag set ("-v") +# - time output flag set (UNITY_INCLUDE_EXEC_TIME define enabled with milliseconds output) +# +# To use this parser use the following command +# ruby parseOutput.rb [options] [file] +# options: -xml : produce a JUnit compatible XML file +# -suiteRequiredSuiteName +# : replace default test suite name to +# "RequiredSuiteName" (can be any name) +# file: file to scan for results +#============================================================ + +# Parser class for handling the input file +class ParseOutput + def initialize + # internal data + @class_name_idx = 0 + @result_usual_idx = 3 + @path_delim = nil + + # xml output related + @xml_out = false + @array_list = false + + # current suite name and statistics + ## testsuite name + @real_test_suite_name = 'Unity' + ## classname for testcase + @test_suite = nil + @total_tests = 0 + @test_passed = 0 + @test_failed = 0 + @test_ignored = 0 + end + + # Set the flag to indicate if there will be an XML output file or not + def set_xml_output + @xml_out = true + end + + # Set the flag to indicate if there will be an XML output file or not + def test_suite_name=(cli_arg) + @real_test_suite_name = cli_arg + puts "Real test suite name will be '#{@real_test_suite_name}'" + end + + def xml_encode_s(str) + str.encode(:xml => :attr) + end + + # If write our output to XML + def write_xml_output + output = File.open('report.xml', 'w') + output << "\n" + @array_list.each do |item| + output << item << "\n" + end + end + + # Pushes the suite info as xml to the array list, which will be written later + def push_xml_output_suite_info + # Insert opening tag at front + heading = "" + @array_list.insert(0, heading) + # Push back the closing tag + @array_list.push '' + end + + # Pushes xml output data to the array list, which will be written later + def push_xml_output_passed(test_name, execution_time = 0) + @array_list.push " " + end + + # Pushes xml output data to the array list, which will be written later + def push_xml_output_failed(test_name, reason, execution_time = 0) + @array_list.push " " + @array_list.push " #{reason}" + @array_list.push ' ' + end + + # Pushes xml output data to the array list, which will be written later + def push_xml_output_ignored(test_name, reason, execution_time = 0) + @array_list.push " " + @array_list.push " #{reason}" + @array_list.push ' ' + end + + # This function will try and determine when the suite is changed. This is + # is the name that gets added to the classname parameter. + def test_suite_verify(test_suite_name) + # Split the path name + test_name = test_suite_name.split(@path_delim) + + # Remove the extension and extract the base_name + base_name = test_name[test_name.size - 1].split('.')[0] + + # Return if the test suite hasn't changed + return unless base_name.to_s != @test_suite.to_s + + @test_suite = base_name + printf "New Test: %s\n", @test_suite + end + + # Prepares the line for verbose fixture output ("-v") + def prepare_fixture_line(line) + line = line.sub('IGNORE_TEST(', '') + line = line.sub('TEST(', '') + line = line.sub(')', ',') + line = line.chomp + array = line.split(',') + array.map { |x| x.to_s.lstrip.chomp } + end + + # Test was flagged as having passed so format the output. + # This is using the Unity fixture output and not the original Unity output. + def test_passed_unity_fixture(array) + class_name = array[0] + test_name = array[1] + test_suite_verify(class_name) + printf "%-40s PASS\n", test_name + + push_xml_output_passed(test_name) if @xml_out + end + + # Test was flagged as having failed so format the output. + # This is using the Unity fixture output and not the original Unity output. + def test_failed_unity_fixture(array) + class_name = array[0] + test_name = array[1] + test_suite_verify(class_name) + reason_array = array[2].split(':') + reason = "#{reason_array[-1].lstrip.chomp} at line: #{reason_array[-4]}" + + printf "%-40s FAILED\n", test_name + + push_xml_output_failed(test_name, reason) if @xml_out + end + + # Test was flagged as being ignored so format the output. + # This is using the Unity fixture output and not the original Unity output. + def test_ignored_unity_fixture(array) + class_name = array[0] + test_name = array[1] + reason = 'No reason given' + if array.size > 2 + reason_array = array[2].split(':') + tmp_reason = reason_array[-1].lstrip.chomp + reason = tmp_reason == 'IGNORE' ? 'No reason given' : tmp_reason + end + test_suite_verify(class_name) + printf "%-40s IGNORED\n", test_name + + push_xml_output_ignored(test_name, reason) if @xml_out + end + + # Test was flagged as having passed so format the output + def test_passed(array) + # ':' symbol will be valid in function args now + real_method_name = array[@result_usual_idx - 1..-2].join(':') + array = array[0..@result_usual_idx - 2] + [real_method_name] + [array[-1]] + + last_item = array.length - 1 + test_time = get_test_time(array[last_item]) + test_name = array[last_item - 1] + test_suite_verify(array[@class_name_idx]) + printf "%-40s PASS %10d ms\n", test_name, test_time + + return unless @xml_out + + push_xml_output_passed(test_name, test_time) if @xml_out + end + + # Test was flagged as having failed so format the line + def test_failed(array) + # ':' symbol will be valid in function args now + real_method_name = array[@result_usual_idx - 1..-3].join(':') + array = array[0..@result_usual_idx - 3] + [real_method_name] + array[-2..] + + last_item = array.length - 1 + test_time = get_test_time(array[last_item]) + test_name = array[last_item - 2] + reason = "#{array[last_item].chomp.lstrip} at line: #{array[last_item - 3]}" + class_name = array[@class_name_idx] + + if test_name.start_with? 'TEST(' + array2 = test_name.split(' ') + + test_suite = array2[0].sub('TEST(', '') + test_suite = test_suite.sub(',', '') + class_name = test_suite + + test_name = array2[1].sub(')', '') + end + + test_suite_verify(class_name) + printf "%-40s FAILED %10d ms\n", test_name, test_time + + push_xml_output_failed(test_name, reason, test_time) if @xml_out + end + + # Test was flagged as being ignored so format the output + def test_ignored(array) + # ':' symbol will be valid in function args now + real_method_name = array[@result_usual_idx - 1..-3].join(':') + array = array[0..@result_usual_idx - 3] + [real_method_name] + array[-2..] + + last_item = array.length - 1 + test_time = get_test_time(array[last_item]) + test_name = array[last_item - 2] + reason = array[last_item].chomp.lstrip + class_name = array[@class_name_idx] + + if test_name.start_with? 'TEST(' + array2 = test_name.split(' ') + + test_suite = array2[0].sub('TEST(', '') + test_suite = test_suite.sub(',', '') + class_name = test_suite + + test_name = array2[1].sub(')', '') + end + + test_suite_verify(class_name) + printf "%-40s IGNORED %10d ms\n", test_name, test_time + + push_xml_output_ignored(test_name, reason, test_time) if @xml_out + end + + # Test time will be in ms + def get_test_time(value_with_time) + test_time_array = value_with_time.scan(/\((-?\d+.?\d*) ms\)\s*$/).flatten.map do |arg_value_str| + arg_value_str.include?('.') ? arg_value_str.to_f : arg_value_str.to_i + end + + test_time_array.any? ? test_time_array[0] : 0 + end + + # Adjusts the os specific members according to the current path style + # (Windows or Unix based) + def detect_os_specifics(line) + if line.include? '\\' + # Windows X:\Y\Z + @class_name_idx = 1 + @path_delim = '\\' + else + # Unix Based /X/Y/Z + @class_name_idx = 0 + @path_delim = '/' + end + end + + # Main function used to parse the file that was captured. + def process(file_name) + @array_list = [] + + puts "Parsing file: #{file_name}" + + @test_passed = 0 + @test_failed = 0 + @test_ignored = 0 + puts '' + puts '=================== RESULTS =====================' + puts '' + # Apply binary encoding. Bad symbols will be unchanged + File.open(file_name, 'rb').each do |line| + # Typical test lines look like these: + # ---------------------------------------------------- + # 1. normal output: + # /.c:36:test_tc1000_opsys:FAIL: Expected 1 Was 0 + # /.c:112:test_tc5004_initCanChannel:IGNORE: Not Yet Implemented + # /.c:115:test_tc5100_initCanVoidPtrs:PASS + # + # 2. fixture output + # /.c:63:TEST(, ):FAIL: Expected 0x00001234 Was 0x00005A5A + # /.c:36:TEST(, ):IGNORE + # Note: "PASS" information won't be generated in this mode + # + # 3. fixture output with verbose information ("-v") + # TEST()/:168::FAIL: Expected 0x8D Was 0x8C + # TEST(, )/:22::IGNORE: This Test Was Ignored On Purpose + # IGNORE_TEST() + # TEST() PASS + # + # Note: Where path is different on Unix vs Windows devices (Windows leads with a drive letter)! + detect_os_specifics(line) + line_array = line.split(':') + + # If we were able to split the line then we can look to see if any of our target words + # were found. Case is important. + next unless (line_array.size >= 4) || (line.start_with? 'TEST(') || (line.start_with? 'IGNORE_TEST(') + + # check if the output is fixture output (with verbose flag "-v") + if (line.start_with? 'TEST(') || (line.start_with? 'IGNORE_TEST(') + line_array = prepare_fixture_line(line) + if line.include? ' PASS' + test_passed_unity_fixture(line_array) + @test_passed += 1 + elsif line.include? 'FAIL' + test_failed_unity_fixture(line_array) + @test_failed += 1 + elsif line.include? 'IGNORE' + test_ignored_unity_fixture(line_array) + @test_ignored += 1 + end + # normal output / fixture output (without verbose "-v") + elsif line.include? ':PASS' + test_passed(line_array) + @test_passed += 1 + elsif line.include? ':FAIL' + test_failed(line_array) + @test_failed += 1 + elsif line.include? ':IGNORE:' + test_ignored(line_array) + @test_ignored += 1 + elsif line.include? ':IGNORE' + line_array.push('No reason given') + test_ignored(line_array) + @test_ignored += 1 + elsif line_array.size >= 4 + # We will check output from color compilation + if line_array[@result_usual_idx..].any? { |l| l.include? 'PASS' } + test_passed(line_array) + @test_passed += 1 + elsif line_array[@result_usual_idx..].any? { |l| l.include? 'FAIL' } + test_failed(line_array) + @test_failed += 1 + elsif line_array[@result_usual_idx..-2].any? { |l| l.include? 'IGNORE' } + test_ignored(line_array) + @test_ignored += 1 + elsif line_array[@result_usual_idx..].any? { |l| l.include? 'IGNORE' } + line_array.push("No reason given (#{get_test_time(line_array[@result_usual_idx..])} ms)") + test_ignored(line_array) + @test_ignored += 1 + end + end + @total_tests = @test_passed + @test_failed + @test_ignored + end + puts '' + puts '=================== SUMMARY =====================' + puts '' + puts "Tests Passed : #{@test_passed}" + puts "Tests Failed : #{@test_failed}" + puts "Tests Ignored : #{@test_ignored}" + + return unless @xml_out + + # push information about the suite + push_xml_output_suite_info + # write xml output file + write_xml_output + end +end + +# If the command line has no values in, used a default value of Output.txt +parse_my_file = ParseOutput.new + +if ARGV.size >= 1 + ARGV.each do |arg| + if arg == '-xml' + parse_my_file.set_xml_output + elsif arg.start_with?('-suite') + parse_my_file.test_suite_name = arg.delete_prefix('-suite') + else + parse_my_file.process(arg) + break + end + end +end diff --git a/lib/Unity/auto/run_test.erb b/lib/Unity/auto/run_test.erb new file mode 100644 index 0000000..e334d65 --- /dev/null +++ b/lib/Unity/auto/run_test.erb @@ -0,0 +1,37 @@ +/*=======Test Runner Used To Run Each Test=====*/ +static void run_test(UnityTestFunction func, const char* name, UNITY_LINE_TYPE line_num) +{ + Unity.CurrentTestName = name; + Unity.CurrentTestLineNumber = (UNITY_UINT) line_num; +#ifdef UNITY_USE_COMMAND_LINE_ARGS + if (!UnityTestMatches()) + return; +#endif + Unity.NumberOfTests++; + UNITY_CLR_DETAILS(); + UNITY_EXEC_TIME_START(); + CMock_Init(); + if (TEST_PROTECT()) + { +<% if @options[:plugins].include?(:cexception) %> + volatile CEXCEPTION_T e; + Try { + <%= @options[:setup_name] %>(); + func(); + } Catch(e) { + TEST_ASSERT_EQUAL_HEX32_MESSAGE(CEXCEPTION_NONE, e, "Unhandled Exception!"); + } +<% else %> + <%= @options[:setup_name] %>(); + func(); +<% end %> + } + if (TEST_PROTECT()) + { + <%= @options[:teardown_name] %>(); + CMock_Verify(); + } + CMock_Destroy(); + UNITY_EXEC_TIME_STOP(); + UnityConcludeTest(); +} diff --git a/lib/Unity/auto/stylize_as_junit.py b/lib/Unity/auto/stylize_as_junit.py new file mode 100644 index 0000000..24e6832 --- /dev/null +++ b/lib/Unity/auto/stylize_as_junit.py @@ -0,0 +1,161 @@ +#!/usr/bin/env python3 +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +import sys +import os +from glob import glob +import argparse + +from pyparsing import * +from junit_xml import TestSuite, TestCase + + +class UnityTestSummary: + def __init__(self): + self.report = '' + self.total_tests = 0 + self.failures = 0 + self.ignored = 0 + self.targets = 0 + self.root = None + self.output = None + self.test_suites = dict() + + def run(self): + # Clean up result file names + results = [] + for target in self.targets: + results.append(target.replace('\\', '/')) + + # Dig through each result file, looking for details on pass/fail: + for result_file in results: + lines = list(map(lambda line: line.rstrip(), open(result_file, "r").read().split('\n'))) + if len(lines) == 0: + raise Exception("Empty test result file: %s" % result_file) + + # define an expression for your file reference + entry_one = Combine( + oneOf(list(alphas)) + ':/' + + Word(alphanums + '_-./')) + + entry_two = Word(printables + ' ', excludeChars=':') + entry = entry_one | entry_two + + delimiter = Literal(':').suppress() + # Format of a result line is `[file_name]:line:test_name:RESULT[:msg]` + tc_result_line = Group(ZeroOrMore(entry.setResultsName('tc_file_name')) + + delimiter + entry.setResultsName('tc_line_nr') + + delimiter + entry.setResultsName('tc_name') + + delimiter + entry.setResultsName('tc_status') + + Optional(delimiter + entry.setResultsName('tc_msg'))).setResultsName("tc_line") + + eol = LineEnd().suppress() + sol = LineStart().suppress() + blank_line = sol + eol + + # Format of the summary line is `# Tests # Failures # Ignored` + tc_summary_line = Group(Word(nums).setResultsName("num_of_tests") + "Tests" + Word(nums).setResultsName( + "num_of_fail") + "Failures" + Word(nums).setResultsName("num_of_ignore") + "Ignored").setResultsName( + "tc_summary") + tc_end_line = Or(Literal("FAIL"), Literal('Ok')).setResultsName("tc_result") + + # run it and see... + pp1 = tc_result_line | Optional(tc_summary_line | tc_end_line) + pp1.ignore(blank_line | OneOrMore("-")) + + result = list() + for l in lines: + result.append((pp1.parseString(l)).asDict()) + # delete empty results + result = filter(None, result) + + tc_list = list() + for r in result: + if 'tc_line' in r: + tmp_tc_line = r['tc_line'] + + # get only the file name which will be used as the classname + if 'tc_file_name' in tmp_tc_line: + file_name = tmp_tc_line['tc_file_name'].split('\\').pop().split('/').pop().rsplit('.', 1)[0] + else: + file_name = result_file.strip("./") + tmp_tc = TestCase(name=tmp_tc_line['tc_name'], classname=file_name) + if 'tc_status' in tmp_tc_line: + if str(tmp_tc_line['tc_status']) == 'IGNORE': + if 'tc_msg' in tmp_tc_line: + tmp_tc.add_skipped_info(message=tmp_tc_line['tc_msg'], + output=r'[File]={0}, [Line]={1}'.format( + tmp_tc_line['tc_file_name'], tmp_tc_line['tc_line_nr'])) + else: + tmp_tc.add_skipped_info(message=" ") + elif str(tmp_tc_line['tc_status']) == 'FAIL': + if 'tc_msg' in tmp_tc_line: + tmp_tc.add_failure_info(message=tmp_tc_line['tc_msg'], + output=r'[File]={0}, [Line]={1}'.format( + tmp_tc_line['tc_file_name'], tmp_tc_line['tc_line_nr'])) + else: + tmp_tc.add_failure_info(message=" ") + + tc_list.append((str(result_file), tmp_tc)) + + for k, v in tc_list: + try: + self.test_suites[k].append(v) + except KeyError: + self.test_suites[k] = [v] + ts = [] + for suite_name in self.test_suites: + ts.append(TestSuite(suite_name, self.test_suites[suite_name])) + + with open(self.output, 'w') as f: + TestSuite.to_file(f, ts, prettyprint='True', encoding='utf-8') + + return self.report + + def set_targets(self, target_array): + self.targets = target_array + + def set_root_path(self, path): + self.root = path + + def set_output(self, output): + self.output = output + + +if __name__ == '__main__': + uts = UnityTestSummary() + parser = argparse.ArgumentParser(description= + """Takes as input the collection of *.testpass and *.testfail result + files, and converts them to a JUnit formatted XML.""") + parser.add_argument('targets_dir', metavar='result_file_directory', + type=str, nargs='?', default='./', + help="""The location of your results files. + Defaults to current directory if not specified.""") + parser.add_argument('root_path', nargs='?', + default='os.path.split(__file__)[0]', + help="""Helpful for producing more verbose output if + using relative paths.""") + parser.add_argument('--output', '-o', type=str, default="result.xml", + help="""The name of the JUnit-formatted file (XML).""") + args = parser.parse_args() + + if args.targets_dir[-1] != '/': + args.targets_dir+='/' + targets = list(map(lambda x: x.replace('\\', '/'), glob(args.targets_dir + '*.test*'))) + if len(targets) == 0: + raise Exception("No *.testpass or *.testfail files found in '%s'" % args.targets_dir) + uts.set_targets(targets) + + # set the root path + uts.set_root_path(args.root_path) + + # set output + uts.set_output(args.output) + + # run the summarizer + print(uts.run()) diff --git a/lib/Unity/auto/stylize_as_junit.rb b/lib/Unity/auto/stylize_as_junit.rb new file mode 100755 index 0000000..9a1edca --- /dev/null +++ b/lib/Unity/auto/stylize_as_junit.rb @@ -0,0 +1,253 @@ +#!/usr/bin/env ruby +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +require 'fileutils' +require 'optparse' +require 'ostruct' +require 'set' + +VERSION = 1.0 + +class ArgvParser + # + # Return a structure describing the options. + # + def self.parse(args) + # The options specified on the command line will be collected in *options*. + # We set default values here. + options = OpenStruct.new + options.results_dir = '.' + options.root_path = '.' + options.out_file = 'results.xml' + + opts = OptionParser.new do |o| + o.banner = 'Usage: unity_to_junit.rb [options]' + + o.separator '' + o.separator 'Specific options:' + + o.on('-r', '--results ', 'Look for Unity Results files here.') do |results| + # puts "results #{results}" + options.results_dir = results + end + + o.on('-p', '--root_path ', 'Prepend this path to files in results.') do |root_path| + options.root_path = root_path + end + + o.on('-o', '--output ', 'XML file to generate.') do |out_file| + # puts "out_file: #{out_file}" + options.out_file = out_file + end + + o.separator '' + o.separator 'Common options:' + + # No argument, shows at tail. This will print an options summary. + o.on_tail('-h', '--help', 'Show this message') do + puts o + exit + end + + # Another typical switch to print the version. + o.on_tail('--version', 'Show version') do + puts "unity_to_junit.rb version #{VERSION}" + exit + end + end + + opts.parse!(args) + options + end +end + +class UnityToJUnit + include FileUtils::Verbose + attr_reader :report, :total_tests, :failures, :ignored + attr_writer :targets, :root, :out_file + + def initialize + @report = '' + @unit_name = '' + end + + def run + # Clean up result file names + results = @targets.map { |target| target.tr('\\', '/') } + # puts "Output File: #{@out_file}" + f = File.new(@out_file, 'w') + write_xml_header(f) + write_suites_header(f) + results.each do |result_file| + lines = File.readlines(result_file).map(&:chomp) + + raise "Empty test result file: #{result_file}" if lines.empty? + + result_output = get_details(result_file, lines) + tests, failures, ignored = parse_test_summary(lines) + result_output[:counts][:total] = tests + result_output[:counts][:failed] = failures + result_output[:counts][:ignored] = ignored + result_output[:counts][:passed] = (result_output[:counts][:total] - result_output[:counts][:failed] - result_output[:counts][:ignored]) + + # use line[0] from the test output to get the test_file path and name + test_file_str = lines[0].tr('\\', '/') + test_file_str = test_file_str.split(':') + test_file = if test_file_str.length < 2 + result_file + else + "#{test_file_str[0]}:#{test_file_str[1]}" + end + result_output[:source][:path] = File.dirname(test_file) + result_output[:source][:file] = File.basename(test_file) + + # save result_output + @unit_name = File.basename(test_file, '.*') + + write_suite_header(result_output[:counts], f) + write_failures(result_output, f) + write_tests(result_output, f) + write_ignored(result_output, f) + write_suite_footer(f) + end + write_suites_footer(f) + f.close + end + + def usage(err_msg = nil) + puts "\nERROR: " + puts err_msg if err_msg + puts 'Usage: unity_to_junit.rb [options]' + puts '' + puts 'Specific options:' + puts ' -r, --results Look for Unity Results files here.' + puts ' -p, --root_path Prepend this path to files in results.' + puts ' -o, --output XML file to generate.' + puts '' + puts 'Common options:' + puts ' -h, --help Show this message' + puts ' --version Show version' + + exit 1 + end + + protected + + def get_details(_result_file, lines) + results = results_structure + lines.each do |line| + line = line.tr('\\', '/') + _src_file, src_line, test_name, status, msg = line.split(/:/) + case status + when 'IGNORE' then results[:ignores] << { test: test_name, line: src_line, message: msg } + when 'FAIL' then results[:failures] << { test: test_name, line: src_line, message: msg } + when 'PASS' then results[:successes] << { test: test_name, line: src_line, message: msg } + end + end + results + end + + def parse_test_summary(summary) + raise "Couldn't parse test results: #{summary}" unless summary.find { |v| v =~ /(\d+) Tests (\d+) Failures (\d+) Ignored/ } + + [Regexp.last_match(1).to_i, Regexp.last_match(2).to_i, Regexp.last_match(3).to_i] + end + + private + + def results_structure + { + source: { path: '', file: '' }, + successes: [], + failures: [], + ignores: [], + counts: { total: 0, passed: 0, failed: 0, ignored: 0 }, + stdout: [] + } + end + + def write_xml_header(stream) + stream.puts "" + end + + def write_suites_header(stream) + stream.puts '' + end + + def write_suite_header(counts, stream) + stream.puts "\t" + end + + def write_failures(results, stream) + result = results[:failures] + result.each do |item| + filename = File.join(results[:source][:path], File.basename(results[:source][:file], '.*')) + stream.puts "\t\t" + stream.puts "\t\t\t" + stream.puts "\t\t\t [File] #{filename} [Line] #{item[:line]} " + stream.puts "\t\t" + end + end + + def write_tests(results, stream) + result = results[:successes] + result.each do |item| + stream.puts "\t\t" + end + end + + def write_ignored(results, stream) + result = results[:ignores] + result.each do |item| + filename = File.join(results[:source][:path], File.basename(results[:source][:file], '.*')) + puts "Writing ignored tests for test harness: #{filename}" + stream.puts "\t\t" + stream.puts "\t\t\t" + stream.puts "\t\t\t [File] #{filename} [Line] #{item[:line]} " + stream.puts "\t\t" + end + end + + def write_suite_footer(stream) + stream.puts "\t" + end + + def write_suites_footer(stream) + stream.puts '' + end +end + +if $0 == __FILE__ + # parse out the command options + options = ArgvParser.parse(ARGV) + + # create an instance to work with + utj = UnityToJUnit.new + begin + # look in the specified or current directory for result files + targets = "#{options.results_dir.tr('\\', '/')}**/*.test*" + + results = Dir[targets] + + raise "No *.testpass, *.testfail, or *.testresults files found in '#{targets}'" if results.empty? + + utj.targets = results + + # set the root path + utj.root = options.root_path + + # set the output XML file name + # puts "Output File from options: #{options.out_file}" + utj.out_file = options.out_file + + # run the summarizer + puts utj.run + rescue StandardError => e + utj.usage e.message + end +end diff --git a/lib/Unity/auto/test_file_filter.rb b/lib/Unity/auto/test_file_filter.rb new file mode 100644 index 0000000..7439192 --- /dev/null +++ b/lib/Unity/auto/test_file_filter.rb @@ -0,0 +1,28 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +require_relative 'yaml_helper' + +module RakefileHelpers + class TestFileFilter + def initialize(all_files = false) + @all_files = all_files + + return unless @all_files + + file = 'test_file_filter.yml' + return unless File.exist?(file) + + filters = YamlHelper.load_file(file) + @all_files = filters[:all_files] + @only_files = filters[:only_files] + @exclude_files = filters[:exclude_files] + end + + attr_accessor :all_files, :only_files, :exclude_files + end +end diff --git a/lib/Unity/auto/type_sanitizer.rb b/lib/Unity/auto/type_sanitizer.rb new file mode 100644 index 0000000..dca96be --- /dev/null +++ b/lib/Unity/auto/type_sanitizer.rb @@ -0,0 +1,13 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +module TypeSanitizer + def self.sanitize_c_identifier(unsanitized) + # convert filename to valid C identifier by replacing invalid chars with '_' + unsanitized.gsub(/[-\/\\.,\s]/, '_') + end +end diff --git a/lib/Unity/auto/unity_test_summary.py b/lib/Unity/auto/unity_test_summary.py new file mode 100644 index 0000000..d3c47c6 --- /dev/null +++ b/lib/Unity/auto/unity_test_summary.py @@ -0,0 +1,140 @@ +#!/usr/bin/env python3 +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +import sys +import os +import re +from glob import glob + +class UnityTestSummary: + def __init__(self): + self.report = '' + self.total_tests = 0 + self.failures = 0 + self.ignored = 0 + + def run(self): + # Clean up result file names + results = [] + for target in self.targets: + results.append(target.replace('\\', '/')) + + # Dig through each result file, looking for details on pass/fail: + failure_output = [] + ignore_output = [] + + for result_file in results: + lines = list(map(lambda line: line.rstrip(), open(result_file, "r").read().split('\n'))) + if len(lines) == 0: + raise Exception("Empty test result file: %s" % result_file) + + details = self.get_details(result_file, lines) + failures = details['failures'] + ignores = details['ignores'] + if len(failures) > 0: failure_output.append('\n'.join(failures)) + if len(ignores) > 0: ignore_output.append('n'.join(ignores)) + tests,failures,ignored = self.parse_test_summary('\n'.join(lines)) + self.total_tests += tests + self.failures += failures + self.ignored += ignored + + if self.ignored > 0: + self.report += "\n" + self.report += "--------------------------\n" + self.report += "UNITY IGNORED TEST SUMMARY\n" + self.report += "--------------------------\n" + self.report += "\n".join(ignore_output) + + if self.failures > 0: + self.report += "\n" + self.report += "--------------------------\n" + self.report += "UNITY FAILED TEST SUMMARY\n" + self.report += "--------------------------\n" + self.report += '\n'.join(failure_output) + + self.report += "\n" + self.report += "--------------------------\n" + self.report += "OVERALL UNITY TEST SUMMARY\n" + self.report += "--------------------------\n" + self.report += "{total_tests} TOTAL TESTS {failures} TOTAL FAILURES {ignored} IGNORED\n".format(total_tests = self.total_tests, failures=self.failures, ignored=self.ignored) + self.report += "\n" + + return self.report + + def set_targets(self, target_array): + self.targets = target_array + + def set_root_path(self, path): + self.root = path + + def usage(self, err_msg=None): + print("\nERROR: ") + if err_msg: + print(err_msg) + print("\nUsage: unity_test_summary.py result_file_directory/ root_path/") + print(" result_file_directory - The location of your results files.") + print(" Defaults to current directory if not specified.") + print(" Should end in / if specified.") + print(" root_path - Helpful for producing more verbose output if using relative paths.") + sys.exit(1) + + def get_details(self, result_file, lines): + results = { 'failures': [], 'ignores': [], 'successes': [] } + for line in lines: + parts = line.split(':') + if len(parts) == 5: + src_file,src_line,test_name,status,msg = parts + elif len(parts) == 4: + src_file,src_line,test_name,status = parts + msg = '' + else: + continue + if len(self.root) > 0: + line_out = "%s%s" % (self.root, line) + else: + line_out = line + if status == 'IGNORE': + results['ignores'].append(line_out) + elif status == 'FAIL': + results['failures'].append(line_out) + elif status == 'PASS': + results['successes'].append(line_out) + return results + + def parse_test_summary(self, summary): + m = re.search(r"([0-9]+) Tests ([0-9]+) Failures ([0-9]+) Ignored", summary) + if not m: + raise Exception("Couldn't parse test results: %s" % summary) + + return int(m.group(1)), int(m.group(2)), int(m.group(3)) + + +if __name__ == '__main__': + uts = UnityTestSummary() + try: + #look in the specified or current directory for result files + if len(sys.argv) > 1: + targets_dir = sys.argv[1] + else: + targets_dir = './' + targets = list(map(lambda x: x.replace('\\', '/'), glob(targets_dir + '**/*.test*', recursive=True))) + if len(targets) == 0: + raise Exception("No *.testpass or *.testfail files found in '%s'" % targets_dir) + uts.set_targets(targets) + + #set the root path + if len(sys.argv) > 2: + root_path = sys.argv[2] + else: + root_path = os.path.split(__file__)[0] + uts.set_root_path(root_path) + + #run the summarizer + print(uts.run()) + except Exception as e: + uts.usage(e) diff --git a/lib/Unity/auto/unity_test_summary.rb b/lib/Unity/auto/unity_test_summary.rb new file mode 100644 index 0000000..cfa267b --- /dev/null +++ b/lib/Unity/auto/unity_test_summary.rb @@ -0,0 +1,140 @@ +#!/usr/bin/env ruby +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +# +# unity_test_summary.rb +# +require 'fileutils' +require 'set' + +class UnityTestSummary + include FileUtils::Verbose + + attr_reader :report, :total_tests, :failures, :ignored + attr_writer :targets, :root + + def initialize(_opts = {}) + @report = '' + @total_tests = 0 + @failures = 0 + @ignored = 0 + end + + def run + # Clean up result file names + results = @targets.map { |target| target.tr('\\', '/') } + + # Dig through each result file, looking for details on pass/fail: + failure_output = [] + ignore_output = [] + + results.each do |result_file| + lines = File.readlines(result_file).map(&:chomp) + + raise "Empty test result file: #{result_file}" if lines.empty? + + output = get_details(result_file, lines) + failure_output << output[:failures] unless output[:failures].empty? + ignore_output << output[:ignores] unless output[:ignores].empty? + tests, failures, ignored = parse_test_summary(lines) + @total_tests += tests + @failures += failures + @ignored += ignored + end + + if @ignored > 0 + @report += "\n" + @report += "--------------------------\n" + @report += "UNITY IGNORED TEST SUMMARY\n" + @report += "--------------------------\n" + @report += ignore_output.flatten.join("\n") + end + + if @failures > 0 + @report += "\n" + @report += "--------------------------\n" + @report += "UNITY FAILED TEST SUMMARY\n" + @report += "--------------------------\n" + @report += failure_output.flatten.join("\n") + end + + @report += "\n" + @report += "--------------------------\n" + @report += "OVERALL UNITY TEST SUMMARY\n" + @report += "--------------------------\n" + @report += "#{@total_tests} TOTAL TESTS #{@failures} TOTAL FAILURES #{@ignored} IGNORED\n" + @report += "\n" + end + + def usage(err_msg = nil) + puts "\nERROR: " + puts err_msg if err_msg + puts "\nUsage: unity_test_summary.rb result_file_directory/ root_path/" + puts ' result_file_directory - The location of your results files.' + puts ' Defaults to current directory if not specified.' + puts ' Should end in / if specified.' + puts ' root_path - Helpful for producing more verbose output if using relative paths.' + exit 1 + end + + protected + + def get_details(_result_file, lines) + results = { failures: [], ignores: [], successes: [] } + lines.each do |line| + status_match = line.match(/^[^:]+:[^:]+:\w+(?:\([^)]*\))?:([^:]+):?/) + next unless status_match + + status = status_match.captures[0] + + line_out = (@root && (@root != 0) ? "#{@root}#{line}" : line).gsub(/\//, '\\') + case status + when 'IGNORE' then results[:ignores] << line_out + when 'FAIL' then results[:failures] << line_out + when 'PASS' then results[:successes] << line_out + end + end + results + end + + def parse_test_summary(summary) + raise "Couldn't parse test results: #{summary}" unless summary.find { |v| v =~ /(\d+) Tests (\d+) Failures (\d+) Ignored/ } + + [Regexp.last_match(1).to_i, Regexp.last_match(2).to_i, Regexp.last_match(3).to_i] + end +end + +if $0 == __FILE__ + + # parse out the command options + opts, args = ARGV.partition { |v| v =~ /^--\w+/ } + opts.map! { |v| v[2..].to_sym } + + # create an instance to work with + uts = UnityTestSummary.new(opts) + + begin + # look in the specified or current directory for result files + args[0] ||= './' + targets = "#{ARGV[0].tr('\\', '/')}**/*.test*" + results = Dir[targets] + + raise "No *.testpass, *.testfail, or *.testresults files found in '#{targets}'" if results.empty? + + uts.targets = results + + # set the root path + args[1] ||= "#{Dir.pwd}/" + uts.root = ARGV[1] + + # run the summarizer + puts uts.run + rescue StandardError => e + uts.usage e.message + end +end diff --git a/lib/Unity/auto/yaml_helper.rb b/lib/Unity/auto/yaml_helper.rb new file mode 100644 index 0000000..e11792a --- /dev/null +++ b/lib/Unity/auto/yaml_helper.rb @@ -0,0 +1,23 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +require 'yaml' + +module YamlHelper + def self.load(body) + if YAML.respond_to?(:unsafe_load) + YAML.unsafe_load(body) + else + YAML.load(body) + end + end + + def self.load_file(file) + body = File.read(file) + self.load(body) + end +end diff --git a/lib/Unity/docs/CODE_OF_CONDUCT.md b/lib/Unity/docs/CODE_OF_CONDUCT.md new file mode 100644 index 0000000..84e3480 --- /dev/null +++ b/lib/Unity/docs/CODE_OF_CONDUCT.md @@ -0,0 +1,138 @@ + +# ThrowTheSwitch.org Code of Conduct + +Thank you for participating in a ThrowTheSwitch.org community project! We want +this to continue to be a warm and inviting place for everyone to share ideas +and get help. To accomplish this goal, we've developed this Code of Conduct. + +## Our Pledge + +We as members, contributors, and leaders pledge to make participation in our +community a harassment-free experience for everyone, regardless of age, body +size, visible or invisible disability, ethnicity, sex characteristics, gender +identity and expression, level of experience, education, socio-economic status, +nationality, personal appearance, race, caste, color, religion, or sexual +identity and orientation. + +We pledge to act and interact in ways that contribute to an open, welcoming, +diverse, inclusive, and healthy community. + +## Our Standards + +Examples of behavior that contributes to a positive environment for our +community include: + +* Demonstrating empathy and kindness toward other people +* Being respectful of differing opinions, viewpoints, and experiences +* Giving and gracefully accepting constructive feedback +* Accepting responsibility and apologizing to those affected by our mistakes, + and learning from the experience +* Focusing on what is best not just for us as individuals, but for the overall + community + +Examples of unacceptable behavior include: + +* The use of sexualized language or imagery, and sexual attention or advances of + any kind +* Trolling, insulting or derogatory comments, and personal or political attacks +* Public or private harassment +* Publishing others' private information, such as a physical or email address, + without their explicit permission +* Other conduct which could reasonably be considered inappropriate in a + professional setting + +## Enforcement Responsibilities + +Community leaders are responsible for clarifying and enforcing our standards of +acceptable behavior and will take appropriate and fair corrective action in +response to any behavior that they deem inappropriate, threatening, offensive, +or harmful. + +Community leaders have the right and responsibility to remove, edit, or reject +comments, commits, code, wiki edits, issues, and other contributions that are +not aligned to this Code of Conduct, and will communicate reasons for moderation +decisions when appropriate. + +## Scope + +This Code of Conduct applies within all community spaces, and also applies when +an individual is officially representing the community in public spaces. +Examples of representing our community include using an official email address, +posting via an official social media account, or acting as an appointed +representative at an online or offline event. + +## Enforcement + +Instances of abusive, harassing, or otherwise unacceptable behavior may be +reported to the community leaders responsible for enforcement at +hello@thingamabyte.com. + +All complaints will be reviewed and investigated promptly and fairly. + +All community leaders are obligated to respect the privacy and security of the +reporter of any incident. + +## Enforcement Guidelines + +Community leaders will follow these Community Impact Guidelines in determining +the consequences for any action they deem in violation of this Code of Conduct: + +### 1. Correction + +**Community Impact**: Use of inappropriate language or other behavior deemed +unprofessional or unwelcome in the community. + +**Consequence**: A private, written warning from community leaders, providing +clarity around the nature of the violation and an explanation of why the +behavior was inappropriate. A public apology may be requested. + +### 2. Warning + +**Community Impact**: A violation through a single incident or series of +actions. + +**Consequence**: A warning with consequences for continued behavior. No +interaction with the people involved, including unsolicited interaction with +those enforcing the Code of Conduct, for a specified period of time. This +includes avoiding interactions in community spaces as well as external channels +like social media. Violating these terms may lead to a temporary or permanent +ban. + +### 3. Temporary Ban + +**Community Impact**: A serious violation of community standards, including +sustained inappropriate behavior. + +**Consequence**: A temporary ban from any sort of interaction or public +communication with the community for a specified period of time. No public or +private interaction with the people involved, including unsolicited interaction +with those enforcing the Code of Conduct, is allowed during this period. +Violating these terms may lead to a permanent ban. + +### 4. Permanent Ban + +**Community Impact**: Demonstrating a pattern of violation of community +standards, including sustained inappropriate behavior, harassment of an +individual, or aggression toward or disparagement of classes of individuals. + +**Consequence**: A permanent ban from any sort of public interaction within the +community. + +## Attribution + +This Code of Conduct is adapted from the [Contributor Covenant][homepage], +version 2.1, available at +[https://www.contributor-covenant.org/version/2/1/code_of_conduct.html][v2.1]. + +Community Impact Guidelines were inspired by +[Mozilla's code of conduct enforcement ladder][Mozilla CoC]. + +For answers to common questions about this code of conduct, see the FAQ at +[https://www.contributor-covenant.org/faq][FAQ]. Translations are available at +[https://www.contributor-covenant.org/translations][translations]. + +[homepage]: https://www.contributor-covenant.org +[v2.1]: https://www.contributor-covenant.org/version/2/1/code_of_conduct.html +[Mozilla CoC]: https://github.com/mozilla/diversity +[FAQ]: https://www.contributor-covenant.org/faq +[translations]: https://www.contributor-covenant.org/translations diff --git a/lib/Unity/docs/CONTRIBUTING.md b/lib/Unity/docs/CONTRIBUTING.md new file mode 100644 index 0000000..e64a285 --- /dev/null +++ b/lib/Unity/docs/CONTRIBUTING.md @@ -0,0 +1,238 @@ +# Contributing to a ThrowTheSwitch.org Project + +👍🎉 _First off, thanks for taking the time to contribute!_ 🎉👍 + +The following is a set of guidelines for contributing to any of ThrowTheSwitch.org's projects or the website itself, hosted at throwtheswitch.org or ThrowTheSwitch's organization on GitHub. These are mostly guidelines, not rules. Use your best judgment, and feel free to propose changes to this document in a pull request. + +### Table Of Contents + +- [Code of Conduct](#book-code-of-conduct) +- [Asking Questions](#bulb-asking-questions) +- [Opening an Issue](#inbox_tray-opening-an-issue) +- [Feature Requests](#love_letter-feature-requests) +- [Triaging Issues](#mag-triaging-issues) +- [Submitting Pull Requests](#repeat-submitting-pull-requests) +- [Writing Commit Messages](#memo-writing-commit-messages) +- [Code Review](#white_check_mark-code-review) +- [Coding Style](#nail_care-coding-style) +- [Certificate of Origin](#medal_sports-certificate-of-origin) +- [Credits](#pray-credits) + +## :book: Code of Conduct + +Please review our [Code of Conduct](CODE_OF_CONDUCT.md). It is in effect at all times. We expect it to be honored by everyone who contributes to this project. Be a Good Human! + +## :bulb: Asking Questions + +> **Note:** Please don't file an issue to ask a question. We have an official forum where the community chimes in with helpful advice if you have questions. + +* [ThrowTheSwitch Forums](https://throwtheswitch.org/forums) + +### What should I know before I get started? + +ThrowTheSwitch hosts a number of open source projects — Ceedling is the entrypoint for many users. Ceedling is actually built upon the foundation of Unity Test (a flexible C testing framework) and CMock (a mocking tool for C) and it coordinates many other open source and proprietary tools. Please do your best to focus your ideas and questions at the correct tool. We'll do our best to help you find your way, but there will be times where we'll have to direct your attention to another subtool. + +Here are some of the main projects hosted by ThrowTheSwitch.org: + + - [Ceedling](https://www.github.com/throwtheswitch/ceedling) -- Build coordinator for testing C applications, especially embedded C (and optionally your release build too!) + - [CMock](https://www.github.com/throwtheswitch/cmock) -- Mocking tool for automatically creating stubs, mocks, and skeletons in C + - [Unity](https://www.github.com/throwtheswitch/unity) -- Unit Testing framework for C, specially embedded C. + - [MadScienceLabDocker](https://www.github.com/throwtheswitch/madsciencelabdocker) -- Docker image giving you a shortcut to getting running with Ceedling + - [CException](https://www.github.com/throwtheswitch/cexception) -- An exception framework for using simple exceptions in C. + +There are many more, but this list should be a good starting point. + +## :inbox_tray: Opening an Issue + +Before [creating an issue](https://help.github.com/en/github/managing-your-work-on-github/creating-an-issue), check if you are using the latest version of the project. If you are not up-to-date, see if updating fixes your issue first. + +### :beetle: Bug Reports and Other Issues + +A great way to contribute to the project is to send a detailed issue when you encounter a problem. We always appreciate a well-written, thorough bug report. :v: + +In short, since you are most likely a developer, **provide a ticket that you would like to receive**. + +- **Review the documentation** before opening a new issue. + +- **Do not open a duplicate issue!** Search through existing issues to see if your issue has previously been reported. If your issue exists, comment with any additional information you have. You may simply note "I have this problem too", which helps prioritize the most common problems and requests. + +- **Prefer using [reactions](https://github.blog/2016-03-10-add-reactions-to-pull-requests-issues-and-comments/)**, not comments, if you simply want to "+1" an existing issue. + +- **Fully complete the provided issue template.** The bug report template requests all the information we need to quickly and efficiently address your issue. Be clear, concise, and descriptive. Provide as much information as you can, including steps to reproduce, stack traces, compiler errors, library versions, OS versions, and screenshots (if applicable). + +- **Use [GitHub-flavored Markdown](https://help.github.com/en/github/writing-on-github/basic-writing-and-formatting-syntax).** Especially put code blocks and console outputs in backticks (```). This improves readability. + +## :seedling: Feature Requests + +Feature requests are welcome! We don't have all the answers and we truly love the collaborative experience of building software together! That being said, we cannot guarantee your request will be accepted. We want to avoid [feature creep](https://en.wikipedia.org/wiki/Feature_creep). Your idea may be great, but also out-of-scope for the project. If accepted, we'll do our best to tackle it in a timely manner, but cannot make any commitments regarding the timeline for implementation and release. However, you are welcome to submit a pull request to help! + +- **Please don't open a duplicate feature request.** Search for existing feature requests first. If you find your feature (or one very similar) previously requested, comment on that issue. + +- **Fully complete the provided issue template.** The feature request template asks for all necessary information for us to begin a productive conversation. + +- Be precise about the proposed outcome of the feature and how it relates to existing features. Include implementation details if possible. + +## :mag: Triaging Issues + +You can triage issues which may include reproducing bug reports or asking for additional information, such as version numbers or reproduction instructions. Any help you can provide to quickly resolve an issue is very much appreciated! + +## :repeat: Submitting Pull Requests + +We **love** pull requests! Before [forking the repo](https://help.github.com/en/github/getting-started-with-github/fork-a-repo) and [creating a pull request](https://help.github.com/en/github/collaborating-with-issues-and-pull-requests/proposing-changes-to-your-work-with-pull-requests) for non-trivial changes, it is usually best to first open an issue to discuss the changes, or discuss your intended approach for solving the problem in the comments for an existing issue. + +For most contributions, after your first pull request is accepted and merged, you will be [invited to the project](https://help.github.com/en/github/setting-up-and-managing-your-github-user-account/inviting-collaborators-to-a-personal-repository) and given **push access**. :tada: + +*Note: All contributions will be licensed under the project's license.* + +- **Smaller is better.** Submit **one** pull request per bug fix or feature. A pull request should contain isolated changes pertaining to a single bug fix or feature implementation. **Do not** refactor or reformat code that is unrelated to your change. It is better to **submit many small pull requests** rather than a single large one. Enormous pull requests will take enormous amounts of time to review, or may be rejected altogether. + +- **Coordinate bigger changes.** For large and non-trivial changes, open an issue to discuss a strategy with the maintainers. Otherwise, you risk doing a lot of work for nothing! + +- **Prioritize understanding over cleverness.** Write code clearly and concisely. Remember that source code usually gets written once and read often. Ensure the code is clear to the reader. The purpose and logic should be obvious to a reasonably skilled developer, otherwise you should add a comment that explains it. + +- **Follow existing coding style and conventions.** Keep your code consistent with the style, formatting, and conventions in the rest of the code base. When possible, these will be enforced with a linter. Consistency makes it easier to review and modify in the future. + +- **Include test coverage.** Add unit tests when possible. Follow existing patterns for implementing tests. + +- **Update the example project** if one exists to exercise any new functionality you have added. + +- **Add documentation.** Document your changes with code doc comments or in existing guides. + +- **Update the CHANGELOG** for all enhancements and bug fixes. Include the corresponding issue number if one exists, and your GitHub username. (example: "- Fixed crash in profile view. #123 @jessesquires") + +- **Use the repo's default branch.** Branch from and [submit your pull request](https://help.github.com/en/github/collaborating-with-issues-and-pull-requests/creating-a-pull-request-from-a-fork) to the repo's default branch. Usually this is `main`, but it could be `dev`, `develop`, or `master`. + +- **[Resolve any merge conflicts](https://help.github.com/en/github/collaborating-with-issues-and-pull-requests/resolving-a-merge-conflict-on-github)** that occur. + +- **Promptly address any CI failures**. If your pull request fails to build or pass tests, please push another commit to fix it. + +- When writing comments, use properly constructed sentences, including punctuation. + +- Use spaces, not tabs. + +## :memo: Writing Commit Messages + +Please [write a great commit message](https://chris.beams.io/posts/git-commit/). + +1. Separate subject from body with a blank line +1. Limit the subject line to 50 characters +1. Capitalize the subject line +1. Do not end the subject line with a period +1. Wrap the body at _about_ 72 characters +1. Use the body to explain **why**, *not what and how* (the code shows that!) +1. If applicable, prefix the title with the relevant component name or emoji (see below. examples: "[Docs] Fix typo", "[Profile] Fix missing avatar") + +``` +:palm_tree: Summary of Amazing Feature Here + +Add a more detailed explanation here, if necessary. Possibly give +some background about the issue being fixed, etc. The body of the +commit message can be several paragraphs. Further paragraphs come +after blank lines and please do proper word-wrap. + +Wrap it to about 72 characters or so. In some contexts, +the first line is treated as the subject of the commit and the +rest of the text as the body. The blank line separating the summary +from the body is critical (unless you omit the body entirely); +various tools like `log`, `shortlog` and `rebase` can get confused +if you run the two together. + +Explain the problem that this commit is solving. Focus on why you +are making this change as opposed to how or what. The code explains +how or what. Reviewers and your future self can read the patch, +but might not understand why a particular solution was implemented. +Are there side effects or other unintuitive consequences of this +change? Here's the place to explain them. + + - Bullet points are awesome, too + + - A hyphen should be used for the bullet, preceded + by a single space, with blank lines in between + +Note the fixed or relevant GitHub issues at the end: + +Resolves: #123 +See also: #456, #789 +``` + +## :heart: Who Loves Emoji? + +Commit comments, Issues, Feature Requests... they can all use a little sprucing up, right? Consider using the following emoji for a mix of function and :sparkles: dazzle! + + - actions + - :seedling: `:seedling:` (or other plants) when growing new features. Choose your fav! :cactus: :herb: :evergreen_tree: :palm_tree: :deciduous_tree: :blossom: + - :art: `:art:` when improving the format/structure of the code + - :racehorse: `:racehorse:` when improving performance + - :non-potable_water: `:non-potable_water:` when plugging memory leaks + - :memo: `:memo:` when writing docs + - :bug: `:bug:` (or other insects) when fixing a bug. Maybe :beetle: :ant: or :honeybee: ? + - :fire: `:fire:` when removing code or files + - :green_heart: `:green_heart:` when fixing the CI build + - :white_check_mark: `:white_check_mark:` when adding tests + - :lock: `:lock:` when dealing with security + - :arrow_up: `:arrow_up:` when upgrading dependencies + - :arrow_down: `:arrow_down:` when downgrading dependencies + - :shirt: `:shirt:` when removing linter warnings + + - platforms + - :penguin: `:penguin:` when fixing something on Linux + - :apple: `:apple:` when fixing something on macOS + - :checkered_flag: `:checkered_flag:` when fixing something on Windows + +## :white_check_mark: Code Review + +- **Review the code, not the author.** Look for and suggest improvements without disparaging or insulting the author. Provide actionable feedback and explain your reasoning. + +- **You are not your code.** When your code is critiqued, questioned, or constructively criticized, remember that you are not your code. Do not take code review personally. + +- **Always do your best.** No one writes bugs on purpose. Do your best, and learn from your mistakes. + +- Kindly note any violations to the guidelines specified in this document. + +## :violin: Coding Style + +Consistency is the most important. Following the existing style, formatting, and naming conventions of the file you are modifying and of the overall project. Failure to do so will result in a prolonged review process that has to focus on updating the superficial aspects of your code, rather than improving its functionality and performance. + +For example, if all private properties are prefixed with an underscore `_`, then new ones you add should be prefixed in the same way. Or, if methods are named using camelcase, like `thisIsMyNewMethod`, then do not diverge from that by writing `this_is_my_new_method`. You get the idea. If in doubt, please ask or search the codebase for something similar. + +When possible, style and format will be enforced with a linter. + +### C Styleguide + +C code is linted with [AStyle](https://astyle.sourceforge.net/). + +### Ruby Styleguide + +Ruby code is linted with [Rubocop](https://github.com/rubocop/rubocop) + +## :medal_sports: Certificate of Origin + +*Developer's Certificate of Origin 1.1* + +By making a contribution to this project, I certify that: + +> 1. The contribution was created in whole or in part by me and I have the right to submit it under the open source license indicated in the file; or +> 1. The contribution is based upon previous work that, to the best of my knowledge, is covered under an appropriate open source license and I have the right under that license to submit that work with modifications, whether created in whole or in part by me, under the same open source license (unless I am permitted to submit under a different license), as indicated in the file; or +> 1. The contribution was provided directly to me by some other person who certified (1), (2) or (3) and I have not modified it. +> 1. I understand and agree that this project and the contribution are public and that a record of the contribution (including all personal information I submit with it, including my sign-off) is maintained indefinitely and may be redistributed consistent with this project or the open source license(s) involved. + +## [No Brown M&M's](https://en.wikipedia.org/wiki/Van_Halen#Contract_riders) + +If you are reading this, bravo dear user and (hopefully) contributor for making it this far! You are awesome. :100: + +To confirm that you have read this guide and are following it as best as possible, **include this emoji at the top** of your issue or pull request: :pineapple: `:pineapple:` + +## :pray: Credits + +Written by [@jessesquires](https://github.com/jessesquires). Lovingly adapted to ThrowTheSwitch.org by [@mvandervoord](https://github.com/mvandervoord). + +**Please feel free to adopt this guide in your own projects. Fork it wholesale or remix it for your needs.** + +*Many of the ideas and prose for the statements in this document were based on or inspired by work from the following communities:* + +- [Alamofire](https://github.com/Alamofire/Alamofire/blob/master/CONTRIBUTING.md) +- [CocoaPods](https://github.com/CocoaPods/CocoaPods/blob/master/CONTRIBUTING.md) +- [Docker](https://github.com/moby/moby/blob/master/CONTRIBUTING.md) +- [Linux](https://elinux.org/Developer_Certificate_Of_Origin) + +*We commend them for their efforts to facilitate collaboration in their projects.* diff --git a/lib/Unity/docs/MesonGeneratorRunner.md b/lib/Unity/docs/MesonGeneratorRunner.md new file mode 100644 index 0000000..3b81e37 --- /dev/null +++ b/lib/Unity/docs/MesonGeneratorRunner.md @@ -0,0 +1,18 @@ +# Meson Generator - Test Runner + +One of the really nice things about using Unity with Ceedling is that Ceedling takes care of generating all of the test runners automatically. If you're not using Ceedling though, you'll need to do this yourself. + +The way this is done in Unity is via a Ruby script called `generate_test_runner.rb`. When given a test file such as `test_example.c`, the script will generate `test_example_Runner.c`, which provides the `main` method and some other useful plumbing. + +So that you don't have to run this by hand, a Meson generator is provided to generate the runner automatically for you. Generally with Meson, you would use Unity as a subproject and you'd want to access the generator from the parent. + +For example, to get the generator you can use: + + unity_proj = subproject('unity') + runner_gen = unity_proj.get_variable('gen_test_runner') + +Once you have the generator you need to pass it the absolute path of your test file. This seems to be a bug in how the paths work with subprojects in Meson. You can get the full path with `meson.source_root()`, so you could do: + + test_runner = meson.source_root() / 'test/test_example.c' + +You can then include `test_runner` as a normal dependency to your builds. Meson will create the test runner in a private directory for each build target. It's only meant to be used as part of the build, so if you need to refer to the runner after the build, you won't be able to use the generator. \ No newline at end of file diff --git a/lib/Unity/docs/ThrowTheSwitchCodingStandard.md b/lib/Unity/docs/ThrowTheSwitchCodingStandard.md new file mode 100644 index 0000000..607c456 --- /dev/null +++ b/lib/Unity/docs/ThrowTheSwitchCodingStandard.md @@ -0,0 +1,187 @@ +# ThrowTheSwitch.org Coding Standard + +Hi. +Welcome to the coding standard for ThrowTheSwitch.org. +For the most part, we try to follow these standards to unify our contributors' code into a cohesive unit (puns intended). +You might find places where these standards aren't followed. +We're not perfect. Please be polite where you notice these discrepancies and we'll try to be polite when we notice yours. + +;) + +## Why Have A Coding Standard? + +Being consistent makes code easier to understand. +We've tried to keep our standard simple because we also believe that we can only expect someone to follow something that is understandable. +Please do your best. + +## Our Philosophy + +Before we get into details on syntax, let's take a moment to talk about our vision for these tools. +We're C developers and embedded software developers. +These tools are great to test any C code, but catering to embedded software made us more tolerant of compiler quirks. +There are a LOT of quirky compilers out there. +By quirky I mean "doesn't follow standards because they feel like they have a license to do as they wish." + +Our philosophy is "support every compiler we can". +Most often, this means that we aim for writing C code that is standards compliant (often C89... that seems to be a sweet spot that is almost always compatible). +But it also means these tools are tolerant of things that aren't common. +Some that aren't even compliant. +There are configuration options to override the size of standard types. +There are configuration options to force Unity to not use certain standard library functions. +A lot of Unity is configurable and we have worked hard to make it not TOO ugly in the process. + +Similarly, our tools that parse C do their best. +They aren't full C parsers (yet) and, even if they were, they would still have to accept non-standard additions like gcc extensions or specifying `@0x1000` to force a variable to compile to a particular location. +It's just what we do, because we like everything to Just Work™. + +Speaking of having things Just Work™, that's our second philosophy. +By that, we mean that we do our best to have EVERY configuration option have a logical default. +We believe that if you're working with a simple compiler and target, you shouldn't need to configure very much... we try to make the tools guess as much as they can, but give the user the power to override it when it's wrong. + +## Naming Things + +Let's talk about naming things. +Programming is all about naming things. +We name files, functions, variables, and so much more. +While we're not always going to find the best name for something, we actually put a bit of effort into finding *What Something WANTS to be Called*™. + +When naming things, we follow this hierarchy, the first being the most important to us (but we do all four when possible): + +1. Readable +2. Descriptive +3. Consistent +4. Memorable + +### Readable + +We want to read our code. +This means we like names and flow that are more naturally read. +We try to avoid double negatives. +We try to avoid cryptic abbreviations (sticking to ones we feel are common). + +### Descriptive + +We like descriptive names for things, especially functions and variables. +Finding the right name for something is an important endeavour. +You might notice from poking around our code that this often results in names that are a little longer than the average. +Guilty. +We're okay with a bit more typing if it means our code is easier to understand. + +There are two exceptions to this rule that we also stick to as religiously as possible: + +First, while we realize hungarian notation (and similar systems for encoding type information into variable names) is providing a more descriptive name, we feel that (for the average developer) it takes away from readability and is to be avoided. + +Second, loop counters and other local throw-away variables often have a purpose which is obvious. +There's no need, therefore, to get carried away with complex naming. +We find i, j, and k are better loop counters than loopCounterVar or whatnot. +We only break this rule when we see that more description could improve understanding of an algorithm. + +### Consistent + +We like consistency, but we're not really obsessed with it. +We try to name our configuration macros in a consistent fashion... you'll notice a repeated use of UNITY_EXCLUDE_BLAH or UNITY_USES_BLAH macros. +This helps users avoid having to remember each macro's details. + +### Memorable + +Where ever it doesn't violate the above principles, we try to apply memorable names. +Sometimes this means using something that is simply descriptive, but often we strive for descriptive AND unique... we like quirky names that stand out in our memory and are easier to search for. +Take a look through the file names in Ceedling and you'll get a good idea of what we are talking about here. +Why use preprocess when you can use preprocessinator? +Or what better describes a module in charge of invoking tasks during releases than release_invoker? +Don't get carried away. +The names are still descriptive and fulfill the above requirements, but they don't feel stale. + +## C and C++ Details + +We don't really want to add to the style battles out there. +Tabs or spaces? +How many spaces? +Where do the braces go? +These are age-old questions that will never be answered... or at least not answered in a way that will make everyone happy. + +We've decided on our own style preferences. +If you'd like to contribute to these projects (and we hope that you do), then we ask if you do your best to follow the same. +It will only hurt a little. We promise. + +### Whitespace in C/C++ + +Our C-style is to use spaces and to use 4 of them per indent level. +It's a nice power-of-2 number that looks decent on a wide-screen. +We have no more reason than that. +We break that rule when we have lines that wrap (macros or function arguments or whatnot). +When that happens, we like to indent further to line things up in nice tidy columns. + +```C + if (stuff_happened) + { + do_something(); + } +``` + +### Case in C/C++ + +- Files - all lower case with underscores. +- Variables - all lower case with underscores +- Macros - all caps with underscores. +- Typedefs - all caps with underscores. (also ends with _T). +- Functions - camel cased. Usually named ModuleName_FuncName +- Constants and Globals - camel cased. + +### Braces in C/C++ + +The left brace is on the next line after the declaration. +The right brace is directly below that. +Everything in between in indented one level. +If you're catching an error and you have a one-line, go ahead and to it on the same line. + +```C + while (blah) + { + //Like so. Even if only one line, we use braces. + } +``` + +### Comments in C/C++ + +Do you know what we hate? +Old-school C block comments. +BUT, we're using them anyway. +As we mentioned, our goal is to support every compiler we can, especially embedded compilers. +There are STILL C compilers out there that only support old-school block comments. +So that is what we're using. +We apologize. +We think they are ugly too. + +## Ruby Details + +Is there really such thing as a Ruby coding standard? +Ruby is such a free form language, it seems almost sacrilegious to suggest that people should comply to one method! +We'll keep it really brief! + +### Whitespace in Ruby + +Our Ruby style is to use spaces and to use 2 of them per indent level. +It's a nice power-of-2 number that really grooves with Ruby's compact style. +We have no more reason than that. +We break that rule when we have lines that wrap. +When that happens, we like to indent further to line things up in nice tidy columns. + +### Case in Ruby + +- Files - all lower case with underscores. +- Variables - all lower case with underscores +- Classes, Modules, etc - Camel cased. +- Functions - all lower case with underscores +- Constants - all upper case with underscores + +## Documentation + +Egad. +Really? +We use markdown and we like PDF files because they can be made to look nice while still being portable. +Good enough? + +*Find The Latest of This And More at [ThrowTheSwitch.org][]* + +[ThrowTheSwitch.org]: https://throwtheswitch.org diff --git a/lib/Unity/docs/UnityAssertionsCheatSheetSuitableforPrintingandPossiblyFraming.pdf b/lib/Unity/docs/UnityAssertionsCheatSheetSuitableforPrintingandPossiblyFraming.pdf new file mode 100644 index 0000000000000000000000000000000000000000..28f0c32144c4f2b55ff07007555e5777480320ac GIT binary patch literal 144467 zcmc$^1#nwUvn?7kGsP@BW|EninVFfHnJH#wW@cuLF=oeh%*-(}UFZA%bKbd7b?>Ws z^{%9?QMaaMdRDL1TbjK|<%LCQ8R%GGNqZj(-eK7R^Z+|UOIU7h08rY(*2KWk!qdbU 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[Background and Overview](#background-and-overview) + 1. [Super Condensed Version](#super-condensed-version) + 2. [Unity Is Several Things But Mainly It’s Assertions](#unity-is-several-things-but-mainly-its-assertions) + 3. [What’s an Assertion?](#whats-an-assertion) + 4. [Unity’s Assertions: Helpful Messages _and_ Free Source Code Documentation](#unitys-assertions-helpful-messages-and-free-source-code-documentation) +2. [Assertion Conventions and Configurations](#assertion-conventions-and-configurations) + 1. [Naming and Parameter Conventions](#naming-and-parameter-conventions) + 2. [TEST_ASSERT_EACH_EQUAL_X Variants](#test_assert_each_equal_x-variants) + 3. [Configuration](#configuration) +3. [The Assertions in All Their Blessed Glory](#the-assertions-in-all-their-blessed-glory) + 1. [Basic Fail, Pass and Ignore](#basic-fail-pass-and-ignore) + 2. [Boolean](#boolean) + 3. [Signed and Unsigned Integers (of all sizes)](#signed-and-unsigned-integers-of-all-sizes) + 4. [Unsigned Integers (of all sizes) in Hexadecimal](#unsigned-integers-of-all-sizes-in-hexadecimal) + 5. [Characters](#characters) + 6. [Masked and Bit-level Assertions](#masked-and-bit-level-assertions) + 7. [Integer Less Than / Greater Than](#integer-less-than--greater-than) + 8. [Integer Ranges (of all sizes)](#integer-ranges-of-all-sizes) + 9. [Structs and Strings](#structs-and-strings) + 10. [Arrays](#arrays) + 11. [Integer Array Ranges (of all sizes)](#integer-array-ranges-of-all-sizes) + 12. [Each Equal (Arrays to Single Value)](#each-equal-arrays-to-single-value) + 13. [Floating Point (If enabled)](#floating-point-if-enabled) + 14. [Double (If enabled)](#double-if-enabled) +4. [Advanced Asserting: Details On Tricky Assertions](#advanced-asserting-details-on-tricky-assertions) + 1. [How do the EQUAL assertions work for FLOAT and DOUBLE?](#how-do-the-equal-assertions-work-for-float-and-double) + 2. [How do we deal with targets with non-standard int sizes?](#how-do-we-deal-with-targets-with-non-standard-int-sizes) + +## Background and Overview + +### Super Condensed Version + +- An assertion establishes truth (i.e. boolean True) for a single condition. +Upon boolean False, an assertion stops execution and reports the failure. +- Unity is mainly a rich collection of assertions and the support to gather up +and easily execute those assertions. +- The structure of Unity allows you to easily separate test assertions from +source code in, well, test code. +- Unity’s assertions: + - Come in many, many flavors to handle different C types and assertion cases. + - Use context to provide detailed and helpful failure messages. + - Document types, expected values, and basic behavior in your source code for +free. + +### Unity Is Several Things But Mainly It’s Assertions + +One way to think of Unity is simply as a rich collection of assertions you can +use to establish whether your source code behaves the way you think it does. +Unity provides a framework to easily organize and execute those assertions in +test code separate from your source code. + +### What’s an Assertion? + +At their core, assertions are an establishment of truth - boolean truth. Was this +thing equal to that thing? Does that code doohickey have such-and-such property +or not? You get the idea. Assertions are executable code. Static analysis is a +valuable approach to improving code quality, but it is not executing your code +in the way an assertion can. A failing assertion stops execution and reports an +error through some appropriate I/O channel (e.g. stdout, GUI, output file, +blinky light). + +Fundamentally, for dynamic verification all you need is a single assertion +mechanism. In fact, that’s what the [assert() macro][] in C’s standard library +is for. So why not just use it? Well, we can do far better in the reporting +department. C’s `assert()` is pretty dumb as-is and is particularly poor for +handling common data types like arrays, structs, etc. And, without some other +support, it’s far too tempting to litter source code with C’s `assert()`’s. It’s +generally much cleaner, manageable, and more useful to separate test and source +code in the way Unity facilitates. + +### Unity’s Assertions: Helpful Messages _and_ Free Source Code Documentation + +Asserting a simple truth condition is valuable, but using the context of the +assertion is even more valuable. For instance, if you know you’re comparing bit +flags and not just integers, then why not use that context to give explicit, +readable, bit-level feedback when an assertion fails? + +That’s what Unity’s collection of assertions do - capture context to give you +helpful, meaningful assertion failure messages. In fact, the assertions +themselves also serve as executable documentation about types and values in your +source code. So long as your tests remain current with your source and all those +tests pass, you have a detailed, up-to-date view of the intent and mechanisms in +your source code. And due to a wondrous mystery, well-tested code usually tends +to be well designed code. + +## Assertion Conventions and Configurations + +### Naming and Parameter Conventions + +The convention of assertion parameters generally follows this order: + +```c +TEST_ASSERT_X( {modifiers}, {expected}, actual, {size/count} ) +``` + +The very simplest assertion possible uses only a single `actual` parameter (e.g. +a simple null check). + +- `Actual` is the value being tested and unlike the other parameters in an + assertion construction is the only parameter present in all assertion variants. +- `Modifiers` are masks, ranges, bit flag specifiers, floating point deltas. +- `Expected` is your expected value (duh) to compare to an `actual` value; it’s + marked as an optional parameter because some assertions only need a single + `actual` parameter (e.g. null check). +- `Size/count` refers to string lengths, number of array elements, etc. + +Many of Unity’s assertions are clear duplications in that the same data type +is handled by several assertions. The differences among these are in how failure +messages are presented. For instance, a `_HEX` variant of an assertion prints +the expected and actual values of that assertion formatted as hexadecimal. + +#### TEST_ASSERT_X_MESSAGE Variants + +_All_ assertions are complemented with a variant that includes a simple string +message as a final parameter. The string you specify is appended to an assertion +failure message in Unity output. + +For brevity, the assertion variants with a message parameter are not listed +below. Just tack on `_MESSAGE` as the final component to any assertion name in +the reference list below and add a string as the final parameter. + +_Example:_ + +```c +TEST_ASSERT_X( {modifiers}, {expected}, actual, {size/count} ) +``` + +becomes messageified like thus… + +```c +TEST_ASSERT_X_MESSAGE( {modifiers}, {expected}, actual, {size/count}, message ) +``` + +Notes: + +- The `_MESSAGE` variants intentionally do not support `printf` style formatting + since many embedded projects don’t support or avoid `printf` for various reasons. + It is possible to use `sprintf` before the assertion to assemble a complex fail + message, if necessary. +- If you want to output a counter value within an assertion fail message (e.g. from + a loop) , building up an array of results and then using one of the `_ARRAY` + assertions (see below) might be a handy alternative to `sprintf`. + +#### TEST_ASSERT_X_ARRAY Variants + +Unity provides a collection of assertions for arrays containing a variety of +types. These are documented in the Array section below. These are almost on par +with the `_MESSAGE`variants of Unity’s Asserts in that for pretty much any Unity +type assertion you can tack on `_ARRAY` and run assertions on an entire block of +memory. + +```c + TEST_ASSERT_EQUAL_TYPEX_ARRAY( expected, actual, {size/count} ) +``` + +- `Expected` is an array itself. +- `Size/count` is one or two parameters necessary to establish the number of array + elements and perhaps the length of elements within the array. + +Notes: + +- The `_MESSAGE` variant convention still applies here to array assertions. The + `_MESSAGE` variants of the `_ARRAY` assertions have names ending with + `_ARRAY_MESSAGE`. +- Assertions for handling arrays of floating point values are grouped with float + and double assertions (see immediately following section). + +### TEST_ASSERT_EACH_EQUAL_X Variants + +Unity provides a collection of assertions for arrays containing a variety of +types which can be compared to a single value as well. These are documented in +the Each Equal section below. these are almost on par with the `_MESSAGE` +variants of Unity’s Asserts in that for pretty much any Unity type assertion you +can inject `_EACH_EQUAL` and run assertions on an entire block of memory. + +```c +TEST_ASSERT_EACH_EQUAL_TYPEX( expected, actual, {size/count} ) +``` + +- `Expected` is a single value to compare to. +- `Actual` is an array where each element will be compared to the expected value. +- `Size/count` is one of two parameters necessary to establish the number of array + elements and perhaps the length of elements within the array. + +Notes: + +- The `_MESSAGE` variant convention still applies here to Each Equal assertions. +- Assertions for handling Each Equal of floating point values are grouped with + float and double assertions (see immediately following section). + +### Configuration + +#### Floating Point Support Is Optional + +Support for floating point types is configurable. That is, by defining the +appropriate preprocessor symbols, floats and doubles can be individually enabled +or disabled in Unity code. This is useful for embedded targets with no floating +point math support (i.e. Unity compiles free of errors for fixed point only +platforms). See Unity documentation for specifics. + +#### Maximum Data Type Width Is Configurable + +Not all targets support 64 bit wide types or even 32 bit wide types. Define the +appropriate preprocessor symbols and Unity will omit all operations from +compilation that exceed the maximum width of your target. See Unity +documentation for specifics. + +## The Assertions in All Their Blessed Glory + +### Basic Fail, Pass and Ignore + +#### `TEST_FAIL()` + +#### `TEST_FAIL_MESSAGE("message")` + +This fella is most often used in special conditions where your test code is +performing logic beyond a simple assertion. That is, in practice, `TEST_FAIL()` +will always be found inside a conditional code block. + +_Examples:_ + +- Executing a state machine multiple times that increments a counter your test +code then verifies as a final step. +- Triggering an exception and verifying it (as in Try / Catch / Throw - see the +[CException](https://github.com/ThrowTheSwitch/CException) project). + +#### `TEST_PASS()` + +#### `TEST_PASS_MESSAGE("message")` + +This will abort the remainder of the test, but count the test as a pass. Under +normal circumstances, it is not necessary to include this macro in your tests… +a lack of failure will automatically be counted as a `PASS`. It is occasionally +useful for tests with `#ifdef`s and such. + +#### `TEST_IGNORE()` + +#### `TEST_IGNORE_MESSAGE("message")` + +Marks a test case (i.e. function meant to contain test assertions) as ignored. +Usually this is employed as a breadcrumb to come back and implement a test case. +An ignored test case has effects if other assertions are in the enclosing test +case (see Unity documentation for more). + +#### `TEST_MESSAGE(message)` + +This can be useful for outputting `INFO` messages into the Unity output stream +without actually ending the test. Like pass and fail messages, it will be output +with the filename and line number. + +### Boolean + +#### `TEST_ASSERT (condition)` + +#### `TEST_ASSERT_TRUE (condition)` + +#### `TEST_ASSERT_FALSE (condition)` + +#### `TEST_ASSERT_UNLESS (condition)` + +A simple wording variation on `TEST_ASSERT_FALSE`.The semantics of +`TEST_ASSERT_UNLESS` aid readability in certain test constructions or +conditional statements. + +#### `TEST_ASSERT_NULL (pointer)` + +#### `TEST_ASSERT_NOT_NULL (pointer)` + +Verify if a pointer is or is not NULL. + +#### `TEST_ASSERT_EMPTY (pointer)` + +#### `TEST_ASSERT_NOT_EMPTY (pointer)` + +Verify if the first element dereferenced from a pointer is or is not zero. This +is particularly useful for checking for empty (or non-empty) null-terminated +C strings, but can be just as easily used for other null-terminated arrays. + +### Signed and Unsigned Integers (of all sizes) + +Large integer sizes can be disabled for build targets that do not support them. +For example, if your target only supports up to 16 bit types, by defining the +appropriate symbols Unity can be configured to omit 32 and 64 bit operations +that would break compilation (see Unity documentation for more). Refer to +Advanced Asserting later in this document for advice on dealing with other word +sizes. + +#### `TEST_ASSERT_EQUAL_INT (expected, actual)` + +#### `TEST_ASSERT_EQUAL_INT8 (expected, actual)` + +#### `TEST_ASSERT_EQUAL_INT16 (expected, actual)` + +#### `TEST_ASSERT_EQUAL_INT32 (expected, actual)` + +#### `TEST_ASSERT_EQUAL_INT64 (expected, actual)` + +#### `TEST_ASSERT_EQUAL_UINT (expected, actual)` + +#### `TEST_ASSERT_EQUAL_UINT8 (expected, actual)` + +#### `TEST_ASSERT_EQUAL_UINT16 (expected, actual)` + +#### `TEST_ASSERT_EQUAL_UINT32 (expected, actual)` + +#### `TEST_ASSERT_EQUAL_UINT64 (expected, actual)` + +### Unsigned Integers (of all sizes) in Hexadecimal + +All `_HEX` assertions are identical in function to unsigned integer assertions +but produce failure messages with the `expected` and `actual` values formatted +in hexadecimal. Unity output is big endian. + +#### `TEST_ASSERT_EQUAL_HEX (expected, actual)` + +#### `TEST_ASSERT_EQUAL_HEX8 (expected, actual)` + +#### `TEST_ASSERT_EQUAL_HEX16 (expected, actual)` + +#### `TEST_ASSERT_EQUAL_HEX32 (expected, actual)` + +#### `TEST_ASSERT_EQUAL_HEX64 (expected, actual)` + +### Characters + +While you can use the 8-bit integer assertions to compare `char`, another option is +to use this specialized assertion which will show printable characters as printables, +otherwise showing the HEX escape code for the characters. + +#### `TEST_ASSERT_EQUAL_CHAR (expected, actual)` + +### Masked and Bit-level Assertions + +Masked and bit-level assertions produce output formatted in hexadecimal. Unity +output is big endian. + +#### `TEST_ASSERT_BITS (mask, expected, actual)` + +Only compares the masked (i.e. high) bits of `expected` and `actual` parameters. + +#### `TEST_ASSERT_BITS_HIGH (mask, actual)` + +Asserts the masked bits of the `actual` parameter are high. + +#### `TEST_ASSERT_BITS_LOW (mask, actual)` + +Asserts the masked bits of the `actual` parameter are low. + +#### `TEST_ASSERT_BIT_HIGH (bit, actual)` + +Asserts the specified bit of the `actual` parameter is high. + +#### `TEST_ASSERT_BIT_LOW (bit, actual)` + +Asserts the specified bit of the `actual` parameter is low. + +### Integer Less Than / Greater Than + +These assertions verify that the `actual` parameter is less than or greater +than `threshold` (exclusive). For example, if the threshold value is 0 for the +greater than assertion will fail if it is 0 or less. There are assertions for +all the various sizes of ints, as for the equality assertions. Some examples: + +#### `TEST_ASSERT_GREATER_THAN_INT8 (threshold, actual)` + +#### `TEST_ASSERT_GREATER_OR_EQUAL_INT16 (threshold, actual)` + +#### `TEST_ASSERT_LESS_THAN_INT32 (threshold, actual)` + +#### `TEST_ASSERT_LESS_OR_EQUAL_UINT (threshold, actual)` + +#### `TEST_ASSERT_NOT_EQUAL_UINT8 (threshold, actual)` + +### Integer Ranges (of all sizes) + +These assertions verify that the `expected` parameter is within +/- `delta` +(inclusive) of the `actual` parameter. For example, if the expected value is 10 +and the delta is 3 then the assertion will fail for any value outside the range +of 7 - 13. + +#### `TEST_ASSERT_INT_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_INT8_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_INT16_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_INT32_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_INT64_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_UINT_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_UINT8_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_UINT16_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_UINT32_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_UINT64_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_HEX_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_HEX8_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_HEX16_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_HEX32_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_HEX64_WITHIN (delta, expected, actual)` + +#### `TEST_ASSERT_CHAR_WITHIN (delta, expected, actual)` + +### Structs and Strings + +#### `TEST_ASSERT_EQUAL_PTR (expected, actual)` + +Asserts that the pointers point to the same memory location. + +#### `TEST_ASSERT_EQUAL_STRING (expected, actual)` + +Asserts that the null terminated (`’\0’`)strings are identical. If strings are +of different lengths or any portion of the strings before their terminators +differ, the assertion fails. Two NULL strings (i.e. zero length) are considered +equivalent. + +#### `TEST_ASSERT_EQUAL_MEMORY (expected, actual, len)` + +Asserts that the contents of the memory specified by the `expected` and `actual` +pointers is identical. The size of the memory blocks in bytes is specified by +the `len` parameter. + +### Arrays + +`expected` and `actual` parameters are both arrays. `num_elements` specifies the +number of elements in the arrays to compare. + +`_HEX` assertions produce failure messages with expected and actual array +contents formatted in hexadecimal. + +For array of strings comparison behavior, see comments for +`TEST_ASSERT_EQUAL_STRING` in the preceding section. + +Assertions fail upon the first element in the compared arrays found not to +match. Failure messages specify the array index of the failed comparison. + +#### `TEST_ASSERT_EQUAL_INT_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_INT8_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_INT16_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_INT32_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_INT64_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_UINT_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_UINT8_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_UINT16_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_UINT32_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_UINT64_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_HEX_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_HEX8_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_HEX16_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_HEX32_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_HEX64_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_CHAR_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_PTR_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_STRING_ARRAY (expected, actual, num_elements)` + +#### `TEST_ASSERT_EQUAL_MEMORY_ARRAY (expected, actual, len, num_elements)` + +`len` is the memory in bytes to be compared at each array element. + +### Integer Array Ranges (of all sizes) + +These assertions verify that the `expected` array parameter is within +/- `delta` +(inclusive) of the `actual` array parameter. For example, if the expected value is +\[10, 12\] and the delta is 3 then the assertion will fail for any value +outside the range of \[7 - 13, 9 - 15\]. + +#### `TEST_ASSERT_INT_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_INT8_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_INT16_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_INT32_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_INT64_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_UINT_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_UINT8_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_UINT16_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_UINT32_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_UINT64_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_HEX_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_HEX8_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_HEX16_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_HEX32_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_HEX64_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +#### `TEST_ASSERT_CHAR_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +### Each Equal (Arrays to Single Value) + +`expected` are single values and `actual` are arrays. `num_elements` specifies +the number of elements in the arrays to compare. + +`_HEX` assertions produce failure messages with expected and actual array +contents formatted in hexadecimal. + +Assertions fail upon the first element in the compared arrays found not to +match. Failure messages specify the array index of the failed comparison. + +#### `TEST_ASSERT_EACH_EQUAL_INT (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_INT8 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_INT16 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_INT32 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_INT64 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_UINT (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_UINT8 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_UINT16 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_UINT32 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_UINT64 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_HEX (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_HEX8 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_HEX16 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_HEX32 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_HEX64 (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_CHAR (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_PTR (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_STRING (expected, actual, num_elements)` + +#### `TEST_ASSERT_EACH_EQUAL_MEMORY (expected, actual, len, num_elements)` + +`len` is the memory in bytes to be compared at each array element. + +### Floating Point (If enabled) + +#### `TEST_ASSERT_FLOAT_WITHIN (delta, expected, actual)` + +Asserts that the `actual` value is within +/- `delta` of the `expected` value. +The nature of floating point representation is such that exact evaluations of +equality are not guaranteed. + +#### `TEST_ASSERT_FLOAT_NOT_WITHIN (delta, expected, actual)` + +Asserts that the `actual` value is NOT within +/- `delta` of the `expected` value. + +#### `TEST_ASSERT_EQUAL_FLOAT (expected, actual)` + +Asserts that the `actual` value is “close enough to be considered equal” to the +`expected` value. If you are curious about the details, refer to the Advanced +Asserting section for more details on this. Omitting a user-specified delta in a +floating point assertion is both a shorthand convenience and a requirement of +code generation conventions for CMock. + +#### `TEST_ASSERT_NOT_EQUAL_FLOAT (expected, actual)` + +Asserts that the `actual` value is NOT “close enough to be considered equal” to the +`expected` value. + +#### `TEST_ASSERT_FLOAT_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +See Array assertion section for details. Note that individual array element +uses user-provided delta plus default comparison delta for checking +and is based on `TEST_ASSERT_FLOAT_WITHIN` comparison. + +#### `TEST_ASSERT_EQUAL_FLOAT_ARRAY (expected, actual, num_elements)` + +See Array assertion section for details. Note that individual array element +float comparisons are executed using `TEST_ASSERT_EQUAL_FLOAT`. That is, user +specified delta comparison values requires a custom-implemented floating point +array assertion. + +#### `TEST_ASSERT_LESS_THAN_FLOAT (threshold, actual)` + +Asserts that the `actual` parameter is less than `threshold` (exclusive). +For example, if the threshold value is 1.0f, the assertion will fail if it is +greater than 1.0f. + +#### `TEST_ASSERT_GREATER_THAN_FLOAT (threshold, actual)` + +Asserts that the `actual` parameter is greater than `threshold` (exclusive). +For example, if the threshold value is 1.0f, the assertion will fail if it is +less than 1.0f. + +#### `TEST_ASSERT_LESS_OR_EQUAL_FLOAT (threshold, actual)` + +Asserts that the `actual` parameter is less than or equal to `threshold`. +The rules for equality are the same as for `TEST_ASSERT_EQUAL_FLOAT`. + +#### `TEST_ASSERT_GREATER_OR_EQUAL_FLOAT (threshold, actual)` + +Asserts that the `actual` parameter is greater than `threshold`. +The rules for equality are the same as for `TEST_ASSERT_EQUAL_FLOAT`. + +#### `TEST_ASSERT_FLOAT_IS_INF (actual)` + +Asserts that `actual` parameter is equivalent to positive infinity floating +point representation. + +#### `TEST_ASSERT_FLOAT_IS_NEG_INF (actual)` + +Asserts that `actual` parameter is equivalent to negative infinity floating +point representation. + +#### `TEST_ASSERT_FLOAT_IS_NAN (actual)` + +Asserts that `actual` parameter is a Not A Number floating point representation. + +#### `TEST_ASSERT_FLOAT_IS_DETERMINATE (actual)` + +Asserts that `actual` parameter is a floating point representation usable for +mathematical operations. That is, the `actual` parameter is neither positive +infinity nor negative infinity nor Not A Number floating point representations. + +#### `TEST_ASSERT_FLOAT_IS_NOT_INF (actual)` + +Asserts that `actual` parameter is a value other than positive infinity floating +point representation. + +#### `TEST_ASSERT_FLOAT_IS_NOT_NEG_INF (actual)` + +Asserts that `actual` parameter is a value other than negative infinity floating +point representation. + +#### `TEST_ASSERT_FLOAT_IS_NOT_NAN (actual)` + +Asserts that `actual` parameter is a value other than Not A Number floating +point representation. + +#### `TEST_ASSERT_FLOAT_IS_NOT_DETERMINATE (actual)` + +Asserts that `actual` parameter is not usable for mathematical operations. That +is, the `actual` parameter is either positive infinity or negative infinity or +Not A Number floating point representations. + +### Double (If enabled) + +#### `TEST_ASSERT_DOUBLE_WITHIN (delta, expected, actual)` + +Asserts that the `actual` value is within +/- `delta` of the `expected` value. +The nature of floating point representation is such that exact evaluations of +equality are not guaranteed. + +#### `TEST_ASSERT_DOUBLE_NOT_WITHIN (delta, expected, actual)` + +Asserts that the `actual` value is NOT within +/- `delta` of the `expected` value. + +#### `TEST_ASSERT_EQUAL_DOUBLE (expected, actual)` + +Asserts that the `actual` value is “close enough to be considered equal” to the +`expected` value. If you are curious about the details, refer to the Advanced +Asserting section for more details. Omitting a user-specified delta in a +floating point assertion is both a shorthand convenience and a requirement of +code generation conventions for CMock. + +#### `TEST_ASSERT_NOT_EQUAL_DOUBLE (expected, actual)` + +Asserts that the `actual` value is NOT “close enough to be considered equal” to the +`expected` value. + +#### `TEST_ASSERT_DOUBLE_ARRAY_WITHIN (delta, expected, actual, num_elements)` + +See Array assertion section for details. Note that individual array element +uses user-provided delta plus default comparison delta for checking +and is based on `TEST_ASSERT_DOUBLE_WITHIN` comparison. + +#### `TEST_ASSERT_EQUAL_DOUBLE_ARRAY (expected, actual, num_elements)` + +See Array assertion section for details. Note that individual array element +double comparisons are executed using `TEST_ASSERT_EQUAL_DOUBLE`. That is, user +specified delta comparison values requires a custom implemented double array +assertion. + +#### `TEST_ASSERT_LESS_THAN_DOUBLE (threshold, actual)` + +Asserts that the `actual` parameter is less than `threshold` (exclusive). +For example, if the threshold value is 1.0, the assertion will fail if it is +greater than 1.0. + +#### `TEST_ASSERT_LESS_OR_EQUAL_DOUBLE (threshold, actual)` + +Asserts that the `actual` parameter is less than or equal to `threshold`. +The rules for equality are the same as for `TEST_ASSERT_EQUAL_DOUBLE`. + +#### `TEST_ASSERT_GREATER_THAN_DOUBLE (threshold, actual)` + +Asserts that the `actual` parameter is greater than `threshold` (exclusive). +For example, if the threshold value is 1.0, the assertion will fail if it is +less than 1.0. + +#### `TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE (threshold, actual)` + +Asserts that the `actual` parameter is greater than or equal to `threshold`. +The rules for equality are the same as for `TEST_ASSERT_EQUAL_DOUBLE`. + +#### `TEST_ASSERT_DOUBLE_IS_INF (actual)` + +Asserts that `actual` parameter is equivalent to positive infinity floating +point representation. + +#### `TEST_ASSERT_DOUBLE_IS_NEG_INF (actual)` + +Asserts that `actual` parameter is equivalent to negative infinity floating point +representation. + +#### `TEST_ASSERT_DOUBLE_IS_NAN (actual)` + +Asserts that `actual` parameter is a Not A Number floating point representation. + +#### `TEST_ASSERT_DOUBLE_IS_DETERMINATE (actual)` + +Asserts that `actual` parameter is a floating point representation usable for +mathematical operations. That is, the `actual` parameter is neither positive +infinity nor negative infinity nor Not A Number floating point representations. + +#### `TEST_ASSERT_DOUBLE_IS_NOT_INF (actual)` + +Asserts that `actual` parameter is a value other than positive infinity floating +point representation. + +#### `TEST_ASSERT_DOUBLE_IS_NOT_NEG_INF (actual)` + +Asserts that `actual` parameter is a value other than negative infinity floating +point representation. + +#### `TEST_ASSERT_DOUBLE_IS_NOT_NAN (actual)` + +Asserts that `actual` parameter is a value other than Not A Number floating +point representation. + +#### `TEST_ASSERT_DOUBLE_IS_NOT_DETERMINATE (actual)` + +Asserts that `actual` parameter is not usable for mathematical operations. That +is, the `actual` parameter is either positive infinity or negative infinity or +Not A Number floating point representations. + +## Advanced Asserting: Details On Tricky Assertions + +This section helps you understand how to deal with some of the trickier +assertion situations you may run into. It will give you a glimpse into some of +the under-the-hood details of Unity’s assertion mechanisms. If you’re one of +those people who likes to know what is going on in the background, read on. If +not, feel free to ignore the rest of this document until you need it. + +### How do the EQUAL assertions work for FLOAT and DOUBLE? + +As you may know, directly checking for equality between a pair of floats or a +pair of doubles is sloppy at best and an outright no-no at worst. Floating point +values can often be represented in multiple ways, particularly after a series of +operations on a value. Initializing a variable to the value of 2.0 is likely to +result in a floating point representation of 2 x 20,but a series of +mathematical operations might result in a representation of 8 x 2-2 +that also evaluates to a value of 2. At some point repeated operations cause +equality checks to fail. + +So Unity doesn’t do direct floating point comparisons for equality. Instead, it +checks if two floating point values are “really close.” If you leave Unity +running with defaults, “really close” means “within a significant bit or two.” +Under the hood, `TEST_ASSERT_EQUAL_FLOAT` is really `TEST_ASSERT_FLOAT_WITHIN` +with the `delta` parameter calculated on the fly. For single precision, delta is +the expected value multiplied by 0.00001, producing a very small proportional +range around the expected value. + +If you are expecting a value of 20,000.0 the delta is calculated to be 0.2. So +any value between 19,999.8 and 20,000.2 will satisfy the equality check. This +works out to be roughly a single bit of range for a single-precision number, and +that’s just about as tight a tolerance as you can reasonably get from a floating +point value. + +So what happens when it’s zero? Zero - even more than other floating point +values - can be represented many different ways. It doesn’t matter if you have +0x20 or 0x263. It’s still zero, right? Luckily, if you subtract these +values from each other, they will always produce a difference of zero, which +will still fall between 0 plus or minus a delta of 0. So it still works! + +Double precision floating point numbers use a much smaller multiplier, again +approximating a single bit of error. + +If you don’t like these ranges and you want to make your floating point equality +assertions less strict, you can change these multipliers to whatever you like by +defining UNITY_FLOAT_PRECISION and UNITY_DOUBLE_PRECISION. See Unity +documentation for more. + +### How do we deal with targets with non-standard int sizes? + +It’s “fun” that C is a standard where something as fundamental as an integer +varies by target. According to the C standard, an `int` is to be the target’s +natural register size, and it should be at least 16-bits and a multiple of a +byte. It also guarantees an order of sizes: + +```C +char <= short <= int <= long <= long long +``` + +Most often, `int` is 32-bits. In many cases in the embedded world, `int` is +16-bits. There are rare microcontrollers out there that have 24-bit integers, +and this remains perfectly standard C. + +To make things even more interesting, there are compilers and targets out there +that have a hard choice to make. What if their natural register size is 10-bits +or 12-bits? Clearly they can’t fulfill _both_ the requirement to be at least +16-bits AND the requirement to match the natural register size. In these +situations, they often choose the natural register size, leaving us with +something like this: + +```C +char (8 bit) <= short (12 bit) <= int (12 bit) <= long (16 bit) +``` + +Um… yikes. It’s obviously breaking a rule or two… but they had to break SOME +rules, so they made a choice. + +When the C99 standard rolled around, it introduced alternate standard-size types. +It also introduced macros for pulling in MIN/MAX values for your integer types. +It’s glorious! Unfortunately, many embedded compilers can’t be relied upon to +use the C99 types (Sometimes because they have weird register sizes as described +above. Sometimes because they don’t feel like it?). + +A goal of Unity from the beginning was to support every combination of +microcontroller or microprocessor and C compiler. Over time, we’ve gotten really +close to this. There are a few tricks that you should be aware of, though, if +you’re going to do this effectively on some of these more idiosyncratic targets. + +First, when setting up Unity for a new target, you’re going to want to pay +special attention to the macros for automatically detecting types +(where available) or manually configuring them yourself. You can get information +on both of these in Unity’s documentation. + +What about the times where you suddenly need to deal with something odd, like a +24-bit `int`? The simplest solution is to use the next size up. If you have a +24-bit `int`, configure Unity to use 32-bit integers. If you have a 12-bit +`int`, configure Unity to use 16 bits. There are two ways this is going to +affect you: + +1. When Unity displays errors for you, it’s going to pad the upper unused bits + with zeros. +2. You’re going to have to be careful of assertions that perform signed + operations, particularly `TEST_ASSERT_INT_WITHIN`. Such assertions might wrap + your `int` in the wrong place, and you could experience false failures. You can + always back down to a simple `TEST_ASSERT` and do the operations yourself. + +*Find The Latest of This And More at [ThrowTheSwitch.org][]* + +[assert() macro]: http://en.wikipedia.org/wiki/Assert.h +[ThrowTheSwitch.org]: https://throwtheswitch.org diff --git a/lib/Unity/docs/UnityChangeLog.md b/lib/Unity/docs/UnityChangeLog.md new file mode 100644 index 0000000..a9fec00 --- /dev/null +++ b/lib/Unity/docs/UnityChangeLog.md @@ -0,0 +1,110 @@ +# Unity Test - Change Log + +## A Note + +This document captures significant features and fixes to the Unity project core source files +and scripts. More detail can be found in the history on Github. + +This project is now tracking changes in more detail. Previous releases get less detailed as +we move back in histroy. + +Prior to 2012, the project was hosted on SourceForge.net +Prior to 2008, the project was an internal project and not released to the public. + +## Log + +### Unity 2.6.1 (Jan 2025) + +New Features: + + - Add `-n` comand line option as strict matcher again + +Significant Bugfixes: + + - Protect against problems when mis-matched command line options selected + +Other: + + - Protect against Conversion warnings in gcc + - Remove Redundant line-casts + - Make more internal functions static + +### Unity 2.6.0 (Mar 2024) + +New Features: + + - Fill out missing variations of arrays, within, etc. + - Add `TEST_PRINTF()` + - Add `TEST_MATRIX()` and `TEST_RANGE()` options and documentation + - Add support for searching `TEST_SOURCE_FILE()` for determining test dependencies + - Add Unity BDD plugin + - Add `UNITY_INCLUDE_EXEC_TIME` option to report test times + - Allow user to override test abort underlying mechanism + - Add `NOT_EQUAL*` and `NOT_WITHIN*` checks for floats and doubles + +Significant Bugfixes: + + - More portable validation of NaN and Infinity. Added `UNITY_IS_NAN` and `UNITY_IS_INF` options + - Add `UNITY_PROGMEM` configuration option + - Fix overflow detection of hex values when using arrays + - Fix scripts broken by Ruby standard changes + +Other: + + - Avoid pointer comparison when one is null to avoid compiler warnings + - Significant improvements to documentation + - Updates to match latest Ruby style specification + - Meson, CMake, PlatformIO builds + +### Unity 2.5.2 (January 2021) + + - improvements to RUN_TEST macro and generated RUN_TEST + - Fix `UNITY_TEST_ASSERT_BIT(S)_HIGH` + - Cleaner handling of details tracking by CMock + +### Unity 2.5.1 (May 2020) + +Mostly a bugfix and stability release. +Bonus Features: + + - Optional TEST_PRINTF macro + - Improve self-testing procedures. + +### Unity 2.5.0 (October 2019) + +It's been a LONG time since the last release of Unity. Finally, here it is! +There are too many updates to list here, so some highlights: + + - more standards compliant (without giving up on supporting ALL compilers, no matter how quirky) + - many more specialized assertions for better test feedback + - more examples for integrating into your world + - many many bugfixes and tweaks + +### Unity 2.4.3 (November 2017) + + - Allow suiteSetUp() and suiteTearDown() to be povided as normal C functions + - Fix & Expand Greater Than / Less Than assertions for integers + - Built-in option to colorize test results + - Documentation updates + +### Unity 2.4.2 (September 2017) + + - Fixed bug in UNTY_TEST_ASSERT_EACH_EQUAL_* + - Added TEST_ASSERT_GREATER_THAN and TEST_ASSERT_LESS_THAN + - Updated Module Generator to stop changing names when no style given + - Cleanup to custom float printing for accuracy + - Cleanup incorrect line numbers are partial name matching + - Reduce warnings from using popular function names as variable names + +### Unity 2.4.1 (April 2017) + + - test runner generator can inject defines as well as headers + - added a built-in floating point print routine instead of relying on printf + - updated to new coding and naming standard + - updated documentation to be markdown instead of pdf + - fixed many many little bugs, most of which were supplied by the community (you people are awesome!) + - coding standard actually enforced in CI + +### Unity 2.4.0 (October, 2016) + + - port from SourceForge and numerous bugfixes diff --git a/lib/Unity/docs/UnityConfigurationGuide.md b/lib/Unity/docs/UnityConfigurationGuide.md new file mode 100644 index 0000000..c2027fc --- /dev/null +++ b/lib/Unity/docs/UnityConfigurationGuide.md @@ -0,0 +1,654 @@ +# Unity Configuration Guide + +## C Standards, Compilers and Microcontrollers + +The embedded software world contains its challenges. +Compilers support different revisions of the C Standard. +They ignore requirements in places, sometimes to make the language more usable in some special regard. +Sometimes it's to simplify their support. +Sometimes it's due to specific quirks of the microcontroller they are targeting. +Simulators add another dimension to this menagerie. + +Unity is designed to run on almost anything that is targeted by a C compiler. +It would be awesome if this could be done with zero configuration. +While there are some targets that come close to this dream, it is sadly not universal. +It is likely that you are going to need at least a couple of the configuration options described in this document. + +All of Unity's configuration options are `#defines`. +Most of these are simple definitions. +A couple are macros with arguments. +They live inside the unity_internals.h header file. +We don't necessarily recommend opening that file unless you really need to. +That file is proof that a cross-platform library is challenging to build. +From a more positive perspective, it is also proof that a great deal of complexity can be centralized primarily to one place to provide a more consistent and simple experience elsewhere. + +### Using These Options + +It doesn't matter if you're using a target-specific compiler and a simulator or a native compiler. +In either case, you've got a couple choices for configuring these options: + +1. Because these options are specified via C defines, you can pass most of these options to your compiler through command line compiler flags. Even if you're using an embedded target that forces you to use their overbearing IDE for all configuration, there will be a place somewhere in your project to configure defines for your compiler. +2. You can create a custom `unity_config.h` configuration file (present in your toolchain's search paths). + In this file, you will list definitions and macros specific to your target. All you must do is define `UNITY_INCLUDE_CONFIG_H` and Unity will rely on `unity_config.h` for any further definitions it may need. + +Unfortunately, it doesn't usually work well to just #define these things in the test itself. +These defines need to take effect where ever unity.h is included. +This would be the test, the test runner (if you're generating one), and from unity.c when it's compiled. + +## The Options + +### Integer Types + +If you've been a C developer for long, you probably already know that C's concept of an integer varies from target to target. +The C Standard has rules about the `int` matching the register size of the target microprocessor. +It has rules about the `int` and how its size relates to other integer types. +An `int` on one target might be 16 bits while on another target it might be 64. +There are more specific types in compilers compliant with C99 or later, but that's certainly not every compiler you are likely to encounter. +Therefore, Unity has a number of features for helping to adjust itself to match your required integer sizes. +It starts off by trying to do it automatically. + +#### `UNITY_EXCLUDE_STDINT_H` + +The first thing that Unity does to guess your types is check `stdint.h`. +This file includes defines like `UINT_MAX` that Unity can use to learn a lot about your system. +It's possible you don't want it to do this (um. why not?) or (more likely) it's possible that your system doesn't support `stdint.h`. +If that's the case, you're going to want to define this. +That way, Unity will know to skip the inclusion of this file and you won't be left with a compiler error. + +_Example:_ + +```C +#define UNITY_EXCLUDE_STDINT_H +``` + +#### `UNITY_EXCLUDE_LIMITS_H` + +The second attempt to guess your types is to check `limits.h`. +Some compilers that don't support `stdint.h` could include `limits.h` instead. +If you don't want Unity to check this file either, define this to make it skip the inclusion. + +_Example:_ + +```C +#define UNITY_EXCLUDE_LIMITS_H +``` + +If you've disabled both of the automatic options above, you're going to have to do the configuration yourself. +Don't worry. +Even this isn't too bad... there are just a handful of defines that you are going to specify if you don't like the defaults. + +#### `UNITY_INT_WIDTH` + +Define this to be the number of bits an `int` takes up on your system. +The default, if not autodetected, is 32 bits. + +_Example:_ + +```C +#define UNITY_INT_WIDTH 16 +``` + +#### `UNITY_LONG_WIDTH` + +Define this to be the number of bits a `long` takes up on your system. +The default, if not autodetected, is 32 bits. +This is used to figure out what kind of 64-bit support your system can handle. +Does it need to specify a `long` or a `long long` to get a 64-bit value. +On 16-bit systems, this option is going to be ignored. + +_Example:_ + +```C +#define UNITY_LONG_WIDTH 16 +``` + +#### `UNITY_POINTER_WIDTH` + +Define this to be the number of bits a pointer takes up on your system. +The default, if not autodetected, is 32-bits. +If you're getting ugly compiler warnings about casting from pointers, this is the one to look at. + +_Hint:_ In order to support exotic processors (for example TI C55x with a pointer width of 23-bit), choose the next power of two (in this case 32-bit). + +_Supported values:_ 16, 32 and 64 + +_Example:_ + +```C +// Choose on of these #defines to set your pointer width (if not autodetected) +//#define UNITY_POINTER_WIDTH 16 +//#define UNITY_POINTER_WIDTH 32 +#define UNITY_POINTER_WIDTH 64 // Set UNITY_POINTER_WIDTH to 64-bit +``` + +#### `UNITY_COMPARE_PTRS_ON_ZERO_ARRAY` + +Define this to make all array assertions compare pointers instead of contents when a length of zero is specified. When not enabled, +defining a length of zero will always result in a failure and a message warning the user that they have tried to compare empty +arrays. + +#### `UNITY_SUPPORT_64` + +Unity will automatically include 64-bit support if it auto-detects it, or if your `int`, `long`, or pointer widths are greater than 32-bits. +Define this to enable 64-bit support if none of the other options already did it for you. +There can be a significant size and speed impact to enabling 64-bit support on small targets, so don't define it if you don't need it. + +_Example:_ + +```C +#define UNITY_SUPPORT_64 +``` + +### Floating Point Types + +In the embedded world, it's not uncommon for targets to have no support for floating point operations at all or to have support that is limited to only single precision. +We are able to guess integer sizes on the fly because integers are always available in at least one size. +Floating point, on the other hand, is sometimes not available at all. +Trying to include `float.h` on these platforms would result in an error. This leaves manual configuration as the only option. + +#### `UNITY_INCLUDE_FLOAT` + +#### `UNITY_EXCLUDE_FLOAT` + +#### `UNITY_INCLUDE_DOUBLE` + +#### `UNITY_EXCLUDE_DOUBLE` + +By default, Unity guesses that you will want single precision floating point support, but not double precision. +It's easy to change either of these using the include and exclude options here. +You may include neither, either, or both, as suits your needs. +For features that are enabled, the following floating point options also become available. + +_Example:_ + +```C +//what manner of strange processor is this? +#define UNITY_EXCLUDE_FLOAT +#define UNITY_INCLUDE_DOUBLE +``` + +#### `UNITY_EXCLUDE_FLOAT_PRINT` + +Unity aims for as small of a footprint as possible and avoids most standard library calls (some embedded platforms don’t have a standard library!). +Because of this, its routines for printing integer values are minimalist and hand-coded. +Therefore, the display of floating point values during a failure are optional. +By default, Unity will print the actual results of floating point assertion failure (e.g. ”Expected 4.56 Was 4.68”). +To not include this extra support, you can use this define to instead respond to a failed assertion with a message like ”Values Not Within Delta”. +If you would like verbose failure messages for floating point assertions, use these options to give more explicit failure messages. + +_Example:_ + +```C +#define UNITY_EXCLUDE_FLOAT_PRINT +``` + +#### `UNITY_FLOAT_TYPE` + +If enabled, Unity assumes you want your `FLOAT` asserts to compare standard C floats. +If your compiler supports a specialty floating point type, you can always override this behavior by using this definition. + +_Example:_ + +```C +#define UNITY_FLOAT_TYPE float16_t +``` + +#### `UNITY_DOUBLE_TYPE` + +If enabled, Unity assumes you want your `DOUBLE` asserts to compare standard C doubles. +If you would like to change this, you can specify something else by using this option. +For example, defining `UNITY_DOUBLE_TYPE` to `long double` could enable gargantuan floating point types on your 64-bit processor instead of the standard `double`. + +_Example:_ + +```C +#define UNITY_DOUBLE_TYPE long double +``` + +#### `UNITY_FLOAT_PRECISION` + +#### `UNITY_DOUBLE_PRECISION` + +If you look up `UNITY_ASSERT_EQUAL_FLOAT` and `UNITY_ASSERT_EQUAL_DOUBLE` as documented in the big daddy Unity Assertion Guide, you will learn that they are not really asserting that two values are equal but rather that two values are "close enough" to equal. +"Close enough" is controlled by these precision configuration options. +If you are working with 32-bit floats and/or 64-bit doubles (the normal on most processors), you should have no need to change these options. +They are both set to give you approximately 1 significant bit in either direction. +The float precision is 0.00001 while the double is 10-12. +For further details on how this works, see the appendix of the Unity Assertion Guide. + +_Example:_ + +```C +#define UNITY_FLOAT_PRECISION 0.001f +``` + +#### `UNITY_IS_NAN` and `UNITY_IS_INF` + +If your toolchain defines `isnan` and `isinf` in `math.h` as macros, nothing needs to be done. If your toolchain doesn't define these, Unity +will create these macros itself. You may override either or both of these defines to specify how you want to evaluate if a number is NaN or Infinity. + +_Example:_ + +```C +#define UNITY_IS_NAN(n) ((n != n) ? 1 : 0) +``` + +### Miscellaneous + +#### `UNITY_EXCLUDE_STDDEF_H` + +Unity uses the `NULL` macro, which defines the value of a null pointer constant, defined in `stddef.h` by default. +If you want to provide your own macro for this, you should exclude the `stddef.h` header file by adding this define to your configuration. + +_Example:_ + +```C +#define UNITY_EXCLUDE_STDDEF_H +``` + +#### `UNITY_INCLUDE_PRINT_FORMATTED` + +Unity provides a simple (and very basic) printf-like string output implementation, which is able to print a string modified by the following format string modifiers: + +- __%d__ - signed value (decimal) +- __%i__ - same as __%d__ +- __%u__ - unsigned value (decimal) +- __%f__ - float/Double (if float support is activated) +- __%g__ - same as __%f__ +- __%b__ - binary prefixed with "0b" +- __%x__ - hexadecimal (upper case) prefixed with "0x" +- __%X__ - same as __%x__ +- __%p__ - pointer (same as __%x__ or __%X__) +- __%c__ - a single character +- __%s__ - a string (e.g. "string") +- __%%__ - The "%" symbol (escaped) + +Length specifiers are also supported. If you are using long long types, make sure UNITY_SUPPORT_64 is true to ensure they are printed correctly. + +- __%ld__ - signed long value (decimal) +- __%lld__ - signed long long value (decimal) +- __%lu__ - unsigned long value (decimal) +- __%llu__ - unsigned long long value (decimal) +- __%lx__ - unsigned long value (hexadecimal) +- __%llx__ - unsigned long long value (hexadecimal) + +_Example:_ + +```C +#define UNITY_INCLUDE_PRINT_FORMATTED + +int a = 0xfab1; +TEST_PRINTF("Decimal %d\n", -7); +TEST_PRINTF("Unsigned %u\n", 987); +TEST_PRINTF("Float %f\n", 3.1415926535897932384); +TEST_PRINTF("Binary %b\n", 0xA); +TEST_PRINTF("Hex %X\n", 0xFAB); +TEST_PRINTF("Pointer %p\n", &a); +TEST_PRINTF("Character %c\n", 'F'); +TEST_PRINTF("String %s\n", "My string"); +TEST_PRINTF("Percent %%\n"); +TEST_PRINTF("Unsigned long long %llu\n", 922337203685477580); +TEST_PRINTF("Color Red \033[41mFAIL\033[0m\n"); +TEST_PRINTF("\n"); +TEST_PRINTF("Multiple (%d) (%i) (%u) (%x)\n", -100, 0, 200, 0x12345); +``` + +### Toolset Customization + +In addition to the options listed above, there are a number of other options which will come in handy to customize Unity's behavior for your specific toolchain. +It is possible that you may not need to touch any of these... but certain platforms, particularly those running in simulators, may need to jump through extra hoops to run properly. +These macros will help in those situations. + +#### `UNITY_OUTPUT_CHAR(a)` + +#### `UNITY_OUTPUT_FLUSH()` + +#### `UNITY_OUTPUT_START()` + +#### `UNITY_OUTPUT_COMPLETE()` + +By default, Unity prints its results to `stdout` as it runs. +This works perfectly fine in most situations where you are using a native compiler for testing. +It works on some simulators as well so long as they have `stdout` routed back to the command line. +There are times, however, where the simulator will lack support for dumping results or you will want to route results elsewhere for other reasons. +In these cases, you should define the `UNITY_OUTPUT_CHAR` macro. +This macro accepts a single character at a time (as an `int`, since this is the parameter type of the standard C `putchar` function most commonly used). +You may replace this with whatever function call you like. + +_Example:_ +Say you are forced to run your test suite on an embedded processor with no `stdout` option. +You decide to route your test result output to a custom serial `RS232_putc()` function you wrote like thus: + +```C +#include "RS232_header.h" +... +#define UNITY_OUTPUT_CHAR(a) RS232_putc(a) +#define UNITY_OUTPUT_START() RS232_config(115200,1,8,0) +#define UNITY_OUTPUT_FLUSH() RS232_flush() +#define UNITY_OUTPUT_COMPLETE() RS232_close() +``` + +_Note:_ +`UNITY_OUTPUT_FLUSH()` can be set to the standard out flush function simply by specifying `UNITY_USE_FLUSH_STDOUT`. +No other defines are required. + +#### `UNITY_OUTPUT_FOR_ECLIPSE` + +#### `UNITY_OUTPUT_FOR_IAR_WORKBENCH` + +#### `UNITY_OUTPUT_FOR_QT_CREATOR` + +When managing your own builds, it is often handy to have messages output in a format which is recognized by your IDE. +These are some standard formats which can be supported. +If you're using Ceedling to manage your builds, it is better to stick with the standard format (leaving these all undefined) and allow Ceedling to use its own decorators. + +#### `UNITY_PTR_ATTRIBUTE` + +Some compilers require a custom attribute to be assigned to pointers, like `near` or `far`. +In these cases, you can give Unity a safe default for these by defining this option with the attribute you would like. + +_Example:_ + +```C +#define UNITY_PTR_ATTRIBUTE __attribute__((far)) +#define UNITY_PTR_ATTRIBUTE near +``` + +#### `UNITY_PRINT_EOL` + +By default, Unity outputs \n at the end of each line of output. +This is easy to parse by the scripts, by Ceedling, etc, but it might not be ideal for YOUR system. +Feel free to override this and to make it whatever you wish. + +_Example:_ + +```C +#define UNITY_PRINT_EOL { UNITY_OUTPUT_CHAR('\r'); UNITY_OUTPUT_CHAR('\n'); } +``` + +#### `UNITY_EXCLUDE_DETAILS` + +This is an option for if you absolutely must squeeze every byte of memory out of your system. +Unity stores a set of internal scratchpads which are used to pass extra detail information around. +It's used by systems like CMock in order to report which function or argument flagged an error. +If you're not using CMock and you're not using these details for other things, then you can exclude them. + +_Example:_ + +```C +#define UNITY_EXCLUDE_DETAILS +``` + +#### `UNITY_PRINT_TEST_CONTEXT` + +This option allows you to specify your own function to print additional context as part of the error message when a test has failed. +It can be useful if you want to output some specific information about the state of the test at the point of failure, and `UNITY_SET_DETAILS` isn't flexible enough for your needs. + +_Example:_ + +```C +#define UNITY_PRINT_TEST_CONTEXT PrintIterationCount + +extern int iteration_count; + +void PrintIterationCount(void) +{ + UnityPrintFormatted("At iteration #%d: ", iteration_count); +} +``` + +#### `UNITY_EXCLUDE_SETJMP` + +If your embedded system doesn't support the standard library setjmp, you can exclude Unity's reliance on this by using this define. +This dropped dependence comes at a price, though. +You will be unable to use custom helper functions for your tests, and you will be unable to use tools like CMock. +Very likely, if your compiler doesn't support setjmp, you wouldn't have had the memory space for those things anyway, though... so this option exists for those situations. + +_Example:_ + +```C +#define UNITY_EXCLUDE_SETJMP +``` + +#### `UNITY_TEST_PROTECT` + +#### `UNITY_TEST_ABORT` + +Unity handles test failures via `setjmp`/`longjmp` pair by default. As mentioned above, you can disable this with `UNITY_EXCLUDE_SETJMP`. You can also customise what happens on every `TEST_PROTECT` and `TEST_ABORT` call. This can be accomplished by providing user-defined `UNITY_TEST_PROTECT` and `UNITY_TEST_ABORT` macros (and these may be defined independently). + +`UNITY_TEST_PROTECT` is used as an `if` statement expression, and has to evaluate to `true` on the first call (when saving stack environment with `setjmp`), and to `false` when it returns as a result of a `TEST_ABORT` (when restoring the stack environment with `longjmp`). + +Whenever an assert macro fails, `TEST_ABORT` is used to restore the stack environment previously set by `TEST_PROTECT`. This part may be overriden with `UNITY_TEST_ABORT`, e.g. if custom failure handling is needed. + +_Example 1:_ + +Calling `longjmp` on your target is possible, but has a platform-specific (or implementation-specific) set of prerequisites, e.g. privileged access level. You can extend the default behaviour of `TEST_PROTECT` and `TEST_ABORT` as: + +`unity_config.h`: + +```C +#include "my_custom_test_handlers.h" + +#define UNITY_TEST_PROTECT() custom_test_protect() +#define UNITY_TEST_ABORT() custom_test_abort() +``` + +`my_custom_test_handlers.c`: + +```C +int custom_test_protect(void) { + platform_specific_code(); + return setjmp(Unity.AbortFrame) == 0; +} + +UNITY_NORETURN void custom_test_abort(void) { + more_platform_specific_code(); + longjmp(Unity.AbortFrame, 1); +} +``` + +_Example 2:_ + +Unity is used to provide the assertion macros only, and an external test harness/runner is used for test orchestration/reporting. In this case you can easily plug your code by overriding `TEST_ABORT` as: + +`unity_config.h`: + +```C +#include "my_custom_test_handlers.h" + +#define UNITY_TEST_PROTECT() 1 +#define UNITY_TEST_ABORT() custom_test_abort() +``` + +`my_custom_test_handlers.c`: + +```C +void custom_test_abort(void) { + if (Unity.CurrentTestFailed == 1) { + custom_failed_test_handler(); + } else if (Unity.CurrentTestIgnored == 1) { + custom_ignored_test_handler(); + } +} +``` + +#### `UNITY_OUTPUT_COLOR` + +If you want to add color using ANSI escape codes you can use this define. + +_Example:_ + +```C +#define UNITY_OUTPUT_COLOR +``` + +#### `UNITY_INCLUDE_EXEC_TIME` + +Define this to measure and report execution time for each test in the suite. When enabled, Unity will do +it's best to automatically find a way to determine the time in milliseconds. On most Windows, macos, or +Linux environments, this is automatic. If not, you can give Unity more information. + +#### `UNITY_CLOCK_MS` + +If you're working on a system (embedded or otherwise) which has an accessible millisecond timer. You can +define `UNITY_CLOCK_MS` to be the name of the function which returns the millisecond timer. It will then +attempt to use that function for timing purposes. + +#### `UNITY_EXEC_TIME_START` + +Define this hook to start a millisecond timer if necessary. + +#### `UNITY_EXEC_TIME_STOP` + +Define this hook to stop a millisecond timer if necessary. + +#### `UNITY_PRINT_EXEC_TIME` + +Define this hook to print the current execution time. Used to report the milliseconds elapsed. + +#### `UNITY_TIME_TYPE` + +Finally, this can be set to the type which holds the millisecond timer. + +#### `UNITY_SHORTHAND_AS_INT` + +#### `UNITY_SHORTHAND_AS_MEM` + +#### `UNITY_SHORTHAND_AS_RAW` + +#### `UNITY_SHORTHAND_AS_NONE` + +These options give you control of the `TEST_ASSERT_EQUAL` and the `TEST_ASSERT_NOT_EQUAL` shorthand assertions. +Historically, Unity treated the former as an alias for an integer comparison. +It treated the latter as a direct comparison using `!=`. +This asymmetry was confusing, but there was much disagreement as to how best to treat this pair of assertions. +These four options will allow you to specify how Unity will treat these assertions. + +- AS INT - the values will be cast to integers and directly compared. + Arguments that don't cast easily to integers will cause compiler errors. +- AS MEM - the address of both values will be taken and the entire object's memory footprint will be compared byte by byte. + Directly placing constant numbers like `456` as expected values will cause errors. +- AS_RAW - Unity assumes that you can compare the two values using `==` and `!=` and will do so. + No details are given about mismatches, because it doesn't really know what type it's dealing with. +- AS_NONE - Unity will disallow the use of these shorthand macros altogether, insisting that developers choose a more descriptive option. + +#### `UNITY_SUPPORT_VARIADIC_MACROS` + +This will force Unity to support variadic macros when using its own built-in RUN_TEST macro. +This will rarely be necessary. Most often, Unity will automatically detect if the compiler supports variadic macros by checking to see if it's C99+ compatible. +In the event that the compiler supports variadic macros, but is primarily C89 (ANSI), defining this option will allow you to use them. +This option is also not necessary when using Ceedling or the test runner generator script. + +#### `UNITY_SUPPORT_TEST_CASES` + +Unity can automatically define all supported parameterized tests macros. +That feature is disabled by default. +To enable it, use the following example: + +```C +#define UNITY_SUPPORT_TEST_CASES +``` + +You can manually provide required `TEST_CASE`, `TEST_RANGE` or `TEST_MATRIX` macro definitions +before including `unity.h`, and they won't be redefined. +If you provide one of the following macros, some of default definitions will not be +defined: +| User defines macro | Unity will _not_ define following macro | +|---|---| +| `UNITY_EXCLUDE_TEST_CASE` | `TEST_CASE` | +| `UNITY_EXCLUDE_TEST_RANGE` | `TEST_RANGE` | +| `UNITY_EXCLUDE_TEST_MATRIX` | `TEST_MATRIX` | +| `TEST_CASE` | `TEST_CASE` | +| `TEST_RANGE` | `TEST_RANGE` | +| `TEST_MATRIX` | `TEST_MATRIX` | + +`UNITY_EXCLUDE_TEST_*` defines is not processed by test runner generator script. +If you exclude one of them from definition, you should provide your own definition +for them or avoid using undefined `TEST_*` macro as a test generator. +Otherwise, compiler cannot build source code file with provided call. + +_Note:_ +That feature requires variadic macro support by compiler. If required feature +is not detected, it will not be enabled, even though preprocessor macro is defined. + +## Getting Into The Guts + +There will be cases where the options above aren't quite going to get everything perfect. +They are likely sufficient for any situation where you are compiling and executing your tests with a native toolchain (e.g. clang on Mac). +These options may even get you through the majority of cases encountered in working with a target simulator run from your local command line. +But especially if you must run your test suite on your target hardware, your Unity configuration will +require special help. +This special help will usually reside in one of two places: the `main()` function or the `RUN_TEST` macro. +Let's look at how these work. + +### `main()` + +Each test module is compiled and run on its own, separate from the other test files in your project. +Each test file, therefore, has a `main` function. +This `main` function will need to contain whatever code is necessary to initialize your system to a workable state. +This is particularly true for situations where you must set up a memory map or initialize a communication channel for the output of your test results. + +A simple main function looks something like this: + +```C +int main(void) { + UNITY_BEGIN(); + RUN_TEST(test_TheFirst); + RUN_TEST(test_TheSecond); + RUN_TEST(test_TheThird); + return UNITY_END(); +} +``` + +You can see that our main function doesn't bother taking any arguments. +For our most barebones case, we'll never have arguments because we just run all the tests each time. +Instead, we start by calling `UNITY_BEGIN`. +We run each test (in whatever order we wish). +Finally, we call `UNITY_END`, returning its return value (which is the total number of failures). + +It should be easy to see that you can add code before any test cases are run or after all the test cases have completed. +This allows you to do any needed system-wide setup or teardown that might be required for your special circumstances. + +#### `RUN_TEST` + +The `RUN_TEST` macro is called with each test case function. +Its job is to perform whatever setup and teardown is necessary for executing a single test case function. +This includes catching failures, calling the test module's `setUp()` and `tearDown()` functions, and calling `UnityConcludeTest()`. +If using CMock or test coverage, there will be additional stubs in use here. +A simple minimalist RUN_TEST macro looks something like this: + +```C +#define RUN_TEST(testfunc) \ + UNITY_NEW_TEST(#testfunc) \ + if (TEST_PROTECT()) { \ + setUp(); \ + testfunc(); \ + } \ + if (TEST_PROTECT() && (!TEST_IS_IGNORED)) \ + tearDown(); \ + UnityConcludeTest(); +``` + +So that's quite a macro, huh? +It gives you a glimpse of what kind of stuff Unity has to deal with for every single test case. +For each test case, we declare that it is a new test. +Then we run `setUp` and our test function. +These are run within a `TEST_PROTECT` block, the function of which is to handle failures that occur during the test. +Then, assuming our test is still running and hasn't been ignored, we run `tearDown`. +No matter what, our last step is to conclude this test before moving on to the next. + +Let's say you need to add a call to `fsync` to force all of your output data to flush to a file after each test. +You could easily insert this after your `UnityConcludeTest` call. +Maybe you want to write an xml tag before and after each result set. +Again, you could do this by adding lines to this macro. +Updates to this macro are for the occasions when you need an action before or after every single test case throughout your entire suite of tests. + +## Happy Porting + +The defines and macros in this guide should help you port Unity to just about any C target we can imagine. +If you run into a snag or two, don't be afraid of asking for help on the forums. +We love a good challenge! + +*Find The Latest of This And More at [ThrowTheSwitch.org][]* + +[ThrowTheSwitch.org]: https://throwtheswitch.org diff --git a/lib/Unity/docs/UnityGettingStartedGuide.md b/lib/Unity/docs/UnityGettingStartedGuide.md new file mode 100644 index 0000000..b951c60 --- /dev/null +++ b/lib/Unity/docs/UnityGettingStartedGuide.md @@ -0,0 +1,242 @@ +# Unity - Getting Started + +## Welcome + +Congratulations. +You're now the proud owner of your very own pile of bits! +What are you going to do with all these ones and zeros? +This document should be able to help you decide just that. + +Unity is a unit test framework. +The goal has been to keep it small and functional. +The core Unity test framework is three files: a single C file and a couple header files. +These team up to provide functions and macros to make testing easier. + +Unity was designed to be cross-platform. +It works hard to stick with C standards while still providing support for the many embedded C compilers that bend the rules. +Unity has been used with many compilers, including GCC, IAR, Clang, Green Hills, Microchip, and MS Visual Studio. +It's not much work to get it to work with a new target. + +### Overview of the Documents + +#### Unity Assertions reference + +This document will guide you through all the assertion options provided by Unity. +This is going to be your unit testing bread and butter. +You'll spend more time with assertions than any other part of Unity. + +#### Unity Assertions Cheat Sheet + +This document contains an abridged summary of the assertions described in the previous document. +It's perfect for printing and referencing while you familiarize yourself with Unity's options. + +#### Unity Configuration Guide + +This document is the one to reference when you are going to use Unity with a new target or compiler. +It'll guide you through the configuration options and will help you customize your testing experience to meet your needs. + +#### Unity Helper Scripts + +This document describes the helper scripts that are available for simplifying your testing workflow. +It describes the collection of optional Ruby scripts included in the auto directory of your Unity installation. +Neither Ruby nor these scripts are necessary for using Unity. +They are provided as a convenience for those who wish to use them. + +#### Unity License + +What's an open source project without a license file? +This brief document describes the terms you're agreeing to when you use this software. +Basically, we want it to be useful to you in whatever context you want to use it, but please don't blame us if you run into problems. + +### Overview of the Folders + +If you have obtained Unity through Github or something similar, you might be surprised by just how much stuff you suddenly have staring you in the face. +Don't worry, Unity itself is very small. +The rest of it is just there to make your life easier. +You can ignore it or use it at your convenience. +Here's an overview of everything in the project. + +- `src` - This is the code you care about! This folder contains a C file and two header files. + These three files _are_ Unity. +- `docs` - You're reading this document, so it's possible you have found your way into this folder already. + This is where all the handy documentation can be found. +- `examples` - This contains a few examples of using Unity. +- `extras` - These are optional add ons to Unity that are not part of the core project. + If you've reached us through James Grenning's book, you're going to want to look here. +- `test` - This is how Unity and its scripts are all tested. + If you're just using Unity, you'll likely never need to go in here. + If you are the lucky team member who gets to port Unity to a new toolchain, this is a good place to verify everything is configured properly. +- `auto` - Here you will find helpful Ruby scripts for simplifying your test workflow. + They are purely optional and are not required to make use of Unity. + +## How to Create A Test File + +Test files are C files. +Most often you will create a single test file for each C module that you want to test. +The test file should include unity.h and the header for your C module to be tested. + +Next, a test file will include a `setUp()` and `tearDown()` function. +The setUp function can contain anything you would like to run before each test. +The tearDown function can contain anything you would like to run after each test. +Both functions accept no arguments and return nothing. +You may leave either or both of these blank if you have no need for them. + +If you're using Ceedling or the test runner generator script, you may leave these off completely. +Not sure? +Give it a try. +If your compiler complains that it can't find setUp or tearDown when it links, you'll know you need to at least include an empty function for these. + +The majority of the file will be a series of test functions. +Test functions follow the convention of starting with the word "test_" or "spec_". +You don't HAVE to name them this way, but it makes it clear what functions are tests for other developers. +Also, the automated scripts that come with Unity or Ceedling will default to looking for test functions to be prefixed this way. +Test functions take no arguments and return nothing. All test accounting is handled internally in Unity. + +Finally, at the bottom of your test file, you will write a `main()` function. +This function will call `UNITY_BEGIN()`, then `RUN_TEST` for each test, and finally `UNITY_END()`. +This is what will actually trigger each of those test functions to run, so it is important that each function gets its own `RUN_TEST` call. + +Remembering to add each test to the main function can get to be tedious. +If you enjoy using helper scripts in your build process, you might consider making use of our handy [generate_test_runner.rb][] script. +This will create the main function and all the calls for you, assuming that you have followed the suggested naming conventions. +In this case, there is no need for you to include the main function in your test file at all. + +When you're done, your test file will look something like this: + +```C +#include "unity.h" +#include "file_to_test.h" + +void setUp(void) { + // set stuff up here +} + +void tearDown(void) { + // clean stuff up here +} + +void test_function_should_doBlahAndBlah(void) { + //test stuff +} + +void test_function_should_doAlsoDoBlah(void) { + //more test stuff +} + +// not needed when using generate_test_runner.rb +int main(void) { + UNITY_BEGIN(); + RUN_TEST(test_function_should_doBlahAndBlah); + RUN_TEST(test_function_should_doAlsoDoBlah); + return UNITY_END(); +} +``` + +It's possible that you will need more customization than this, eventually. +For that sort of thing, you're going to want to look at the configuration guide. +This should be enough to get you going, though. + +### Running Test Functions + +When writing your own `main()` functions, for a test-runner. +There are two ways to execute the test. + +The classic variant + +``` c +RUN_TEST(func, linenum) +``` + +Or its simpler replacement that starts at the beginning of the function. + +``` c +RUN_TEST(func) +``` + +These macros perform the necessary setup before the test is called and handles clean-up and result tabulation afterwards. + +### Ignoring Test Functions + +There are times when a test is incomplete or not valid for some reason. +At these times, TEST_IGNORE can be called. +Control will immediately be returned to the caller of the test, and no failures will be returned. +This is useful when your test runners are automatically generated. + +``` c +TEST_IGNORE() +``` + +Ignore this test and return immediately + +```c +TEST_IGNORE_MESSAGE (message) +``` + +Ignore this test and return immediately. +Output a message stating why the test was ignored. + +### Aborting Tests + +There are times when a test will contain an infinite loop on error conditions, or there may be reason to escape from the test early without executing the rest of the test. +A pair of macros support this functionality in Unity. +The first `TEST_PROTECT` sets up the feature, and handles emergency abort cases. +`TEST_ABORT` can then be used at any time within the tests to return to the last `TEST_PROTECT` call. + +```c + TEST_PROTECT() +``` + +Setup and Catch macro + +```c + TEST_ABORT() +``` + +Abort Test macro + +Example: + +```c + main() + { + if (TEST_PROTECT()) + { + MyTest(); + } + } +``` + +If MyTest calls `TEST_ABORT`, program control will immediately return to `TEST_PROTECT` with a return value of zero. + +## How to Build and Run A Test File + +This is the single biggest challenge to picking up a new unit testing framework, at least in a language like C or C++. +These languages are REALLY good at getting you "close to the metal" (why is the phrase metal? Wouldn't it be more accurate to say "close to the silicon"?). +While this feature is usually a good thing, it can make testing more challenging. + +You have two really good options for toolchains. +Depending on where you're coming from, it might surprise you that neither of these options is running the unit tests on your hardware. +There are many reasons for this, but here's a short version: + +- On hardware, you have too many constraints (processing power, memory, etc), +- On hardware, you don't have complete control over all registers, +- On hardware, unit testing is more challenging, +- Unit testing isn't System testing. Keep them separate. + +Instead of running your tests on your actual hardware, most developers choose to develop them as native applications (using gcc or MSVC for example) or as applications running on a simulator. +Either is a good option. +Native apps have the advantages of being faster and easier to set up. +Simulator apps have the advantage of working with the same compiler as your target application. +The options for configuring these are discussed in the configuration guide. + +To get either to work, you might need to make a few changes to the file containing your register set (discussed later). + +In either case, a test is built by linking unity, the test file, and the C file(s) being tested. +These files create an executable which can be run as the test set for that module. +Then, this process is repeated for the next test file. +This flexibility of separating tests into individual executables allows us to much more thoroughly unit test our system and it keeps all the test code out of our final release! + +*Find The Latest of This And More at [ThrowTheSwitch.org][]* + +[generate_test_runner.rb]: ../auto/generate_test_runner.rb +[ThrowTheSwitch.org]: https://throwtheswitch.org diff --git a/lib/Unity/docs/UnityHelperScriptsGuide.md b/lib/Unity/docs/UnityHelperScriptsGuide.md new file mode 100644 index 0000000..30841cf --- /dev/null +++ b/lib/Unity/docs/UnityHelperScriptsGuide.md @@ -0,0 +1,549 @@ +# Unity Helper Scripts + +## With a Little Help From Our Friends + +Sometimes what it takes to be a really efficient C programmer is a little non-C. +The Unity project includes a couple of Ruby scripts for making your life just a tad easier. +They are completely optional. +If you choose to use them, you'll need a copy of Ruby, of course. +Just install whatever the latest version is, and it is likely to work. You can find Ruby at [ruby-lang.org][]. + +### `generate_test_runner.rb` + +Are you tired of creating your own `main` function in your test file? +Do you keep forgetting to add a `RUN_TEST` call when you add a new test case to your suite? +Do you want to use CMock or other fancy add-ons but don't want to figure out how to create your own `RUN_TEST` macro? + +Well then we have the perfect script for you! + +The `generate_test_runner` script processes a given test file and automatically creates a separate test runner file that includes ?main?to execute the test cases within the scanned test file. +All you do then is add the generated runner to your list of files to be compiled and linked, and presto you're done! + +This script searches your test file for void function signatures having a function name beginning with "test" or "spec". +It treats each of these functions as a test case and builds up a test suite of them. +For example, the following includes three test cases: + +```C +void testVerifyThatUnityIsAwesomeAndWillMakeYourLifeEasier(void) +{ + ASSERT_TRUE(1); +} +void test_FunctionName_should_WorkProperlyAndReturn8(void) { + ASSERT_EQUAL_INT(8, FunctionName()); +} +void spec_Function_should_DoWhatItIsSupposedToDo(void) { + ASSERT_NOT_NULL(Function(5)); +} +``` + +You can run this script a couple of ways. +The first is from the command line: + +```Shell +ruby generate_test_runner.rb TestFile.c NameOfRunner.c +``` + +Alternatively, if you include only the test file parameter, the script will copy the name of the test file and automatically append `_Runner` to the name of the generated file. +The example immediately below will create TestFile_Runner.c. + +```Shell +ruby generate_test_runner.rb TestFile.c +``` + +You can also add a [YAML][] file to configure extra options. +Conveniently, this YAML file is of the same format as that used by Unity and CMock. +So if you are using YAML files already, you can simply pass the very same file into the generator script. + +```Shell +ruby generate_test_runner.rb TestFile.c my_config.yml +``` + +The contents of the YAML file `my_config.yml` could look something like the example below. +If you're wondering what some of these options do, you're going to love the next section of this document. + +```YAML +:unity: + :includes: + - stdio.h + - microdefs.h + :cexception: 1 + :suite_setup: "blah = malloc(1024);" + :suite_teardown: "free(blah);" +``` + +If you would like to force your generated test runner to include one or more header files, you can just include those at the command line too. +Just make sure these are _after_ the YAML file, if you are using one: + +```Shell +ruby generate_test_runner.rb TestFile.c my_config.yml extras.h +``` + +Another option, particularly if you are already using Ruby to orchestrate your builds - or more likely the Ruby-based build tool Rake - is requiring this script directly. +Anything that you would have specified in a YAML file can be passed to the script as part of a hash. +Let's push the exact same requirement set as we did above but this time through Ruby code directly: + +```Ruby +require "generate_test_runner.rb" +options = { + :includes => ["stdio.h", "microdefs.h"], + :cexception => 1, + :suite_setup => "blah = malloc(1024);", + :suite_teardown => "free(blah);" +} +UnityTestRunnerGenerator.new.run(testfile, runner_name, options) +``` + +If you have multiple files to generate in a build script (such as a Rakefile), you might want to instantiate a generator object with your options and call it to generate each runner afterwards. +Like this: + +```Ruby +gen = UnityTestRunnerGenerator.new(options) +test_files.each do |f| + gen.run(f, File.basename(f,'.c')+"Runner.c") +end +``` + +#### Options accepted by generate_test_runner.rb + +The following options are available when executing `generate_test_runner`. +You may pass these as a Ruby hash directly or specify them in a YAML file, both of which are described above. +In the `examples` directory, Example 3's Rakefile demonstrates using a Ruby hash. + +##### `:includes` + +This option specifies an array of file names to be `#include`'d at the top of your runner C file. +You might use it to reference custom types or anything else universally needed in your generated runners. + +##### `:defines` + +This option specifies an array of definitions to be `#define`'d at the top of your runner C file. +Each definition will be wrapped in an `#ifndef`. + +##### `:suite_setup` + +Define this option with C code to be executed _before any_ test cases are run. + +Alternatively, if your C compiler supports weak symbols, you can leave this option unset and instead provide a `void suiteSetUp(void)` function in your test suite. +The linker will look for this symbol and fall back to a Unity-provided stub if it is not found. + +This option can also be specified at the command prompt as `--suite_setup=""` + +##### `:suite_teardown` + +Define this option with C code to be executed _after all_ test cases have finished. +An integer variable `num_failures` is available for diagnostics. +The code should end with a `return` statement; the value returned will become the exit code of `main`. +You can normally just return `num_failures`. + +Alternatively, if your C compiler supports weak symbols, you can leave this option unset and instead provide a `int suiteTearDown(int num_failures)` function in your test suite. +The linker will look for this symbol and fall back to a Unity-provided stub if it is not found. + +This option can also be specified at the command prompt as `--suite_teardown=""` + +##### `:enforce_strict_ordering` + +This option should be defined if you have the strict order feature enabled in CMock (see CMock documentation). +This generates extra variables required for everything to run smoothly. +If you provide the same YAML to the generator as used in CMock's configuration, you've already configured the generator properly. + +##### `:externc` + +This option should be defined if you are mixing C and CPP and want your test runners to automatically include extern "C" support when they are generated. + +This option can also be specified at the command prompt as `--externc` + +##### `:mock_prefix` and `:mock_suffix` + +Unity automatically generates calls to Init, Verify and Destroy for every file included in the main test file that starts with the given mock prefix and ends with the given mock suffix, file extension not included. +By default, Unity assumes a `Mock` prefix and no suffix. + +##### `:plugins` + +This option specifies an array of plugins to be used (of course, the array can contain only a single plugin). +This is your opportunity to enable support for CException support, which will add a check for unhandled exceptions in each test, reporting a failure if one is detected. +To enable this feature using Ruby: + +```Ruby +:plugins => [ :cexception ] +``` + +Or as a yaml file: + +```YAML +:plugins: + -:cexception +``` + +If you are using CMock, it is very likely that you are already passing an array of plugins to CMock. +You can just use the same array here. + +This script will just ignore the plugins that don't require additional support. + +This option can also be specified at the command prompt as `--cexception` + +##### `:include_extensions` + +This option specifies the pattern for matching acceptable header file extensions. +By default it will accept hpp, hh, H, and h files. +If you need a different combination of files to search, update this from the default `'(?:hpp|hh|H|h)'`. + +##### `:source_extensions` + +This option specifies the pattern for matching acceptable source file extensions. +By default it will accept cpp, cc, C, c, and ino files. +If you need a different combination of files to search, update this from the default `'(?:cpp|cc|ino|C|c)'`. + +##### `:use_param_tests` + +This option enables parameterized test usage. +That tests accepts arguments from `TEST_CASE` and `TEST_RANGE` macros, +that are located above current test definition. +By default, Unity assumes, that parameterized tests are disabled. + +Few usage examples can be found in `/test/tests/test_unity_parameterized.c` file. + +You should define `UNITY_SUPPORT_TEST_CASES` macro for tests success compiling, +if you enable current option. + +You can see a list of supported macros in the +[Parameterized tests provided macros](#parameterized-tests-provided-macros) +section that follows. + +This option can also be specified at the command prompt as `--use_param_tests=1` + +##### `:cmdline_args` + +When set to `true`, the generated test runner can accept a number of +options to modify how the test(s) are run. + +Ensure Unity is compiled with `UNITY_USE_COMMAND_LINE_ARGS` defined or else +the required functions will not exist. + +These are the available options: + +| Option | Description | +| --------- | ------------------------------------------------- | +| `-l` | List all tests and exit | +| `-f NAME` | Filter to run only tests whose name includes NAME | +| `-n NAME` | Run only the test named NAME | +| `-h` | show the Help menu that lists these options | +| `-q` | Quiet/decrease verbosity | +| `-v` | increase Verbosity | +| `-x NAME` | eXclude tests whose name includes NAME | + +##### `:setup_name` + +Override the default test `setUp` function name. + +This option can also be specified at the command prompt as `--setup_name=""` + +##### `:teardown_name` + +Override the default test `tearDown` function name. + +This option can also be specified at the command prompt as `--teardown_name=""` + +##### `:test_reset_name` + +Override the default test `resetTest` function name. + +This option can also be specified at the command prompt as `--test_reset_name=""` + +##### `:test_verify_name` + +Override the default test `verifyTest` function name. + +This option can also be specified at the command prompt as `--test_verify_name=""` + +##### `:main_name` + +Override the test's `main()` function name (from `main` to whatever is specified). +The sentinel value `:auto` will use the test's filename with the `.c` extension removed prefixed +with `main_` as the "main" function. + +To clarify, if `:main_name == :auto` and the test filename is "test_my_project.c", then the +generated function name will be `main_test_my_project(int argc, char** argv)`. + +This option can also be specified at the command prompt as `--main_name=""` + +##### `main_export_decl` + +Provide any `cdecl` for the `main()` test function. Is empty by default. + +##### `:omit_begin_end` + +If `true`, the `UnityBegin` and `UnityEnd` function will not be called for +Unity test state setup and cleanup. + +This option can also be specified at the command prompt as `--omit_begin_end` + +##### `:shuffle_tests` + +If `true`, the test execution order will be shuffled. Is `false` by default. + +This option can also be specified at the command prompt as `--shuffle_tests` + +##### `:rng_seed` + +If set to some positive integer value, said value will be used as the seed value passed +to the `srand` function. Otherwise, if not set to any value, `time(NULL)` will be used +as the seed value. + +Only applicable if `:shuffle_tests` is set to `true`. + +This option can also be specified at the command prompt as `--rng_seed` + +#### Parameterized tests provided macros + +Unity provides support for few param tests generators, that can be combined +with each other. You must define test function as usual C function with usual +C arguments, and test generator will pass what you tell as a list of arguments. + +Let's show how all of them work on the following test function definitions: + +```C +/* Place your test generators here, usually one generator per one or few lines */ +void test_demoParamFunction(int a, int b, int c) +{ + TEST_ASSERT_GREATER_THAN_INT(a + b, c); +} +``` + +##### `TEST_CASE` + +Test case is a basic generator, that can be used for param testing. +One call of that macro will generate only one call for test function. +It can be used with different args, such as numbers, enums, strings, +global variables, another preprocessor defines. + +If we use replace comment before test function with the following code: + +```C +TEST_CASE(1, 2, 5) +TEST_CASE(10, 7, 20) +``` + +script will generate 2 test calls: + +```C +test_demoParamFunction(1, 2, 5); +test_demoParamFunction(10, 7, 20); +``` + +That calls will be wrapped with `setUp`, `tearDown` and other +usual Unity calls, as for independent unit tests. +The following output can be generated after test executable startup: + +```Log +tests/test_unity_parameterizedDemo.c:14:test_demoParamFunction(1, 2, 5):PASS +tests/test_unity_parameterizedDemo.c:14:test_demoParamFunction(10, 7, 20):PASS +``` + +##### `TEST_RANGE` + +Test range is an advanced generator. It single call can be converted to zero, +one or few `TEST_CASE` equivalent commands. + +That generator can be used for creating numeric ranges in decimal representation +only: integers & floating point numbers. It uses few formats for every parameter: + +1. `[start, stop, step]` is stop-inclusive format +2. `` is stop-exclusive formats + +Format providers 1 and 2 accept only three arguments: + +* `start` is start number +* `stop` is end number (can or cannot exists in result sequence for format 1, +will be always skipped for format 2) +* `step` is incrementing step: can be either positive or negative value. + +Let's use our `test_demoParamFunction` test for checking, what ranges +will be generated for our single `TEST_RANGE` row: + +```C +TEST_RANGE([3, 4, 1], [10, 5, -2], <30, 31, 1>) +``` + +Tests execution output will be similar to that text: + +```Log +tests/test_unity_parameterizedDemo.c:14:test_demoParamFunction(3, 10, 30):PASS +tests/test_unity_parameterizedDemo.c:14:test_demoParamFunction(3, 8, 30):PASS +tests/test_unity_parameterizedDemo.c:14:test_demoParamFunction(3, 6, 30):PASS +tests/test_unity_parameterizedDemo.c:14:test_demoParamFunction(4, 10, 30):PASS +tests/test_unity_parameterizedDemo.c:14:test_demoParamFunction(4, 8, 30):PASS +tests/test_unity_parameterizedDemo.c:14:test_demoParamFunction(4, 6, 30):PASS +``` + +As we can see: + +| Parameter | Format | Possible values | Total of values | Format number | +|---|---|---|---|---| +| `a` | `[3, 4, 1]` | `3`, `4` | 2 | Format 1 | +| `b` | `[10, 5, -2]` | `10`, `8`, `6` | 3 | Format 1, negative step, end number is not included | +| `c` | `<30, 31, 1>` | `30` | 1 | Format 2 | + +_Note_, that format 2 also supports negative step. + +We totally have 2 * 3 * 1 = 6 equal test cases, that can be written as following: + +```C +TEST_CASE(3, 10, 30) +TEST_CASE(3, 8, 30) +TEST_CASE(3, 6, 30) +TEST_CASE(4, 10, 30) +TEST_CASE(4, 8, 30) +TEST_CASE(4, 6, 30) +``` + +##### `TEST_MATRIX` + +Test matix is an advanced generator. It single call can be converted to zero, +one or few `TEST_CASE` equivalent commands. + +That generator will create tests for all combinations of the provided list. Each argument has to be given as a list of one or more elements in the format `[, , ..., , ]`. + +All parameters supported by the `TEST_CASE` are supported as arguments: +- Numbers incl type specifiers e.g. `<1>`, `<1u>`, `<1l>`, `<2.3>`, or `<2.3f>` +- Strings incl string concatenation e.g. `<"string">`, or `<"partial" "string">` +- Chars e.g. `<'c'>` +- Enums e.g. `` +- Elements of arrays e.g. `` + +Let's use our `test_demoParamFunction` test for checking what ranges +will be generated for our single `TEST_MATRIX` row: + +```C +TEST_MATRIX([3, 4, 7], [10, 8, 2, 1],[30u, 20.0f]) +``` + +Tests execution output will be similar to that text: + +```Log +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(3, 10, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(3, 10, 20.0f):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(3, 8, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(3, 8, 20.0f):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(3, 2, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(3, 2, 20.0f):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(3, 1, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(3, 1, 20.0f):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(4, 10, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(4, 10, 20.0f):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(4, 8, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(4, 8, 20.0f):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(4, 2, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(4, 2, 20.0f):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(4, 1, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(4, 1, 20.0f):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(7, 10, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(7, 10, 20.0f):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(7, 8, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(7, 8, 20.0f):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(7, 2, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(7, 2, 20.0f):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(7, 1, 30u):PASS +tests/test_unity_parameterizedDemo.c:18:test_demoParamFunction(7, 1, 20.0f):PASS +``` + +As we can see: + +| Parameter | Format | Count of values | +|---|---|---| +| `a` | `[3, 4, 7]` | 3 | +| `b` | `[10, 8, 2, 1]` | 4 | +| `c` | `[30u, 20.0f]` | 2 | + +We totally have 3 * 4 * 2 = 24 equal test cases, that can be written as following: + +```C +TEST_CASE(3, 10, 30u) +TEST_CASE(3, 10, 20.0f) +TEST_CASE(3, 8, 30u) +TEST_CASE(3, 8, 20.0f) +TEST_CASE(3, 2, 30u) +TEST_CASE(3, 2, 20.0f) +TEST_CASE(3, 1, 30u) +TEST_CASE(3, 1, 20.0f) +TEST_CASE(4, 10, 30u) +TEST_CASE(4, 10, 20.0f) +TEST_CASE(4, 8, 30u) +TEST_CASE(4, 8, 20.0f) +TEST_CASE(4, 2, 30u) +TEST_CASE(4, 2, 20.0f) +TEST_CASE(4, 1, 30u) +TEST_CASE(4, 1, 20.0f) +TEST_CASE(7, 10, 30u) +TEST_CASE(7, 10, 20.0f) +TEST_CASE(7, 8, 30u) +TEST_CASE(7, 8, 20.0f) +TEST_CASE(7, 2, 30u) +TEST_CASE(7, 2, 20.0f) +TEST_CASE(7, 1, 30u) +TEST_CASE(7, 1, 20.0f) +``` + +### `unity_test_summary.rb` + +A Unity test file contains one or more test case functions. +Each test case can pass, fail, or be ignored. +Each test file is run individually producing results for its collection of test cases. +A given project will almost certainly be composed of multiple test files. +Therefore, the suite of tests is comprised of one or more test cases spread across one or more test files. +This script aggregates individual test file results to generate a summary of all executed test cases. +The output includes how many tests were run, how many were ignored, and how many failed. In addition, the output includes a listing of which specific tests were ignored and failed. +A good example of the breadth and details of these results can be found in the `examples` directory. +Intentionally ignored and failing tests in this project generate corresponding entries in the summary report. + +If you're interested in other (prettier?) output formats, check into the [Ceedling][] build tool project that works with Unity and CMock and supports xunit-style xml as well as other goodies. + +This script assumes the existence of files ending with the extensions `.testpass` and `.testfail`. +The contents of these files includes the test results summary corresponding to each test file executed with the extension set according to the presence or absence of failures for that test file. +The script searches a specified path for these files, opens each one it finds, parses the results, and aggregates and prints a summary. +Calling it from the command line looks like this: + +```Shell +ruby unity_test_summary.rb build/test/ +``` + +You can optionally specify a root path as well. +This is really helpful when you are using relative paths in your tools' setup, but you want to pull the summary into an IDE like Eclipse for clickable shortcuts. + +```Shell +ruby unity_test_summary.rb build/test/ ~/projects/myproject/ +``` + +Or, if you're more of a Windows sort of person: + +```Shell +ruby unity_test_summary.rb build\test\ C:\projects\myproject\ +``` + +When configured correctly, you'll see a final summary, like so: + +```Shell +-------------------------- +UNITY IGNORED TEST SUMMARY +-------------------------- +blah.c:22:test_sandwiches_should_HaveBreadOnTwoSides:IGNORE + +------------------------- +UNITY FAILED TEST SUMMARY +------------------------- +blah.c:87:test_sandwiches_should_HaveCondiments:FAIL:Expected 1 was 0 +meh.c:38:test_soda_should_BeCalledPop:FAIL:Expected "pop" was "coke" + +-------------------------- +OVERALL UNITY TEST SUMMARY +-------------------------- +45 TOTAL TESTS 2 TOTAL FAILURES 1 IGNORED +``` + +How convenient is that? + +*Find The Latest of This And More at [ThrowTheSwitch.org][]* + +[ruby-lang.org]: https://ruby-lang.org/ +[YAML]: http://www.yaml.org/ +[Ceedling]: http://www.throwtheswitch.org/ceedling +[ThrowTheSwitch.org]: https://throwtheswitch.org diff --git a/lib/Unity/docs/UnityKnownIssues.md b/lib/Unity/docs/UnityKnownIssues.md new file mode 100644 index 0000000..3449319 --- /dev/null +++ b/lib/Unity/docs/UnityKnownIssues.md @@ -0,0 +1,13 @@ +# Unity Test - Known Issues + +## A Note + +This project will do its best to keep track of significant bugs that might effect your usage of this +project and its supporting scripts. A more detailed and up-to-date list for cutting edge Unity can +be found on our Github repository. + +## Issues + + - No built-in validation of no-return functions + - Incomplete support for Printf-style formatting + - Incomplete support for VarArgs diff --git a/lib/Unity/examples/example_1/meson.build b/lib/Unity/examples/example_1/meson.build new file mode 100644 index 0000000..645eeb9 --- /dev/null +++ b/lib/Unity/examples/example_1/meson.build @@ -0,0 +1,48 @@ +project('Unity example', 'c', + license: 'MIT', + default_options: [ + 'c_std=c99', + 'warning_level=3', + ], + meson_version: '>= 0.49.0' +) + +unity_subproject = subproject('unity') +unity_dependency = unity_subproject.get_variable('unity_dep') +unity_gen_runner = unity_subproject.get_variable('gen_test_runner') + +src1 = files([ + 'src' / 'ProductionCode.c', + 'test' / 'TestProductionCode.c', +]) + +src2 = files([ + 'src' / 'ProductionCode2.c', + 'test' / 'TestProductionCode2.c', +]) + +inc = include_directories('src') + +test1 = executable('test1', + sources: [ + src1, + unity_gen_runner.process('test' / 'TestProductionCode.c') + ], + include_directories: [ inc ], + dependencies: [ unity_dependency ], +) + +test('test1', test1, + should_fail: true) + +test2 = executable('test2', + sources: [ + src2, + unity_gen_runner.process('test' / 'TestProductionCode2.c') + ], + include_directories: [ inc ], + dependencies: [ unity_dependency ], +) + +test('test2', test2) + diff --git a/lib/Unity/examples/example_1/readme.txt b/lib/Unity/examples/example_1/readme.txt new file mode 100644 index 0000000..ddddd36 --- /dev/null +++ b/lib/Unity/examples/example_1/readme.txt @@ -0,0 +1,12 @@ +Example 1 +========= + +Close to the simplest possible example of Unity, using only basic features. + +Build and run with Make +--- +Just run `make`. + +Build and run with Meson +--- +Run `meson setup build` to create the build directory, and then `meson test -C build` to build and run the tests. diff --git a/lib/Unity/examples/example_1/src/ProductionCode.c b/lib/Unity/examples/example_1/src/ProductionCode.c new file mode 100644 index 0000000..9a10033 --- /dev/null +++ b/lib/Unity/examples/example_1/src/ProductionCode.c @@ -0,0 +1,30 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode.h" + +int Counter = 0; +int NumbersToFind[9] = { 0, 34, 55, 66, 32, 11, 1, 77, 888 }; /* some obnoxious array to search that is 1-based indexing instead of 0. */ + +/* This function is supposed to search through NumbersToFind and find a particular number. + * If it finds it, the index is returned. Otherwise 0 is returned which sorta makes sense since + * NumbersToFind is indexed from 1. Unfortunately it's broken + * (and should therefore be caught by our tests) */ +int FindFunction_WhichIsBroken(int NumberToFind) +{ + int i = 0; + while (i < 8) /* Notice I should have been in braces */ + i++; + if (NumbersToFind[i] == NumberToFind) /* Yikes! I'm getting run after the loop finishes instead of during it! */ + return i; + return 0; +} + +int FunctionWhichReturnsLocalVariable(void) +{ + return Counter; +} diff --git a/lib/Unity/examples/example_1/src/ProductionCode.h b/lib/Unity/examples/example_1/src/ProductionCode.h new file mode 100644 index 0000000..57ccf41 --- /dev/null +++ b/lib/Unity/examples/example_1/src/ProductionCode.h @@ -0,0 +1,9 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +int FindFunction_WhichIsBroken(int NumberToFind); +int FunctionWhichReturnsLocalVariable(void); diff --git a/lib/Unity/examples/example_1/src/ProductionCode2.c b/lib/Unity/examples/example_1/src/ProductionCode2.c new file mode 100644 index 0000000..ae72f91 --- /dev/null +++ b/lib/Unity/examples/example_1/src/ProductionCode2.c @@ -0,0 +1,17 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode2.h" + +char* ThisFunctionHasNotBeenTested(int Poor, char* LittleFunction) +{ + (void)Poor; + (void)LittleFunction; + /* Since There Are No Tests Yet, This Function Could Be Empty For All We Know. + * Which isn't terribly useful... but at least we put in a TEST_IGNORE so we won't forget */ + return (char*)0; +} diff --git a/lib/Unity/examples/example_1/src/ProductionCode2.h b/lib/Unity/examples/example_1/src/ProductionCode2.h new file mode 100644 index 0000000..0a0bd76 --- /dev/null +++ b/lib/Unity/examples/example_1/src/ProductionCode2.h @@ -0,0 +1,8 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +char* ThisFunctionHasNotBeenTested(int Poor, char* LittleFunction); diff --git a/lib/Unity/examples/example_1/subprojects/unity.wrap b/lib/Unity/examples/example_1/subprojects/unity.wrap new file mode 100644 index 0000000..6df241b --- /dev/null +++ b/lib/Unity/examples/example_1/subprojects/unity.wrap @@ -0,0 +1,3 @@ +[wrap-git] +url = https://github.com/ThrowTheSwitch/Unity.git +revision = head diff --git a/lib/Unity/examples/example_1/test/TestProductionCode.c b/lib/Unity/examples/example_1/test/TestProductionCode.c new file mode 100644 index 0000000..63e4977 --- /dev/null +++ b/lib/Unity/examples/example_1/test/TestProductionCode.c @@ -0,0 +1,68 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode.h" +#include "unity.h" + +/* sometimes you may want to get at local data in a module. + * for example: If you plan to pass by reference, this could be useful + * however, it should often be avoided */ +extern int Counter; + +void setUp(void) +{ + /* This is run before EACH TEST */ + Counter = 0x5a5a; +} + +void tearDown(void) +{ +} + +void test_FindFunction_WhichIsBroken_ShouldReturnZeroIfItemIsNotInList_WhichWorksEvenInOurBrokenCode(void) +{ + /* All of these should pass */ + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(78)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(2)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(33)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(999)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(-1)); +} + +void test_FindFunction_WhichIsBroken_ShouldReturnTheIndexForItemsInList_WhichWillFailBecauseOurFunctionUnderTestIsBroken(void) +{ + /* You should see this line fail in your test summary */ + TEST_ASSERT_EQUAL(1, FindFunction_WhichIsBroken(34)); + + /* Notice the rest of these didn't get a chance to run because the line above failed. + * Unit tests abort each test function on the first sign of trouble. + * Then NEXT test function runs as normal. */ + TEST_ASSERT_EQUAL(8, FindFunction_WhichIsBroken(8888)); +} + +void test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValue(void) +{ + /* This should be true because setUp set this up for us before this test */ + TEST_ASSERT_EQUAL_HEX(0x5a5a, FunctionWhichReturnsLocalVariable()); + + /* This should be true because we can still change our answer */ + Counter = 0x1234; + TEST_ASSERT_EQUAL_HEX(0x1234, FunctionWhichReturnsLocalVariable()); +} + +void test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValueAgain(void) +{ + /* This should be true again because setup was rerun before this test (and after we changed it to 0x1234) */ + TEST_ASSERT_EQUAL_HEX(0x5a5a, FunctionWhichReturnsLocalVariable()); +} + +void test_FunctionWhichReturnsLocalVariable_ShouldReturnCurrentCounter_ButFailsBecauseThisTestIsActuallyFlawed(void) +{ + /* Sometimes you get the test wrong. When that happens, you get a failure too... and a quick look should tell + * you what actually happened...which in this case was a failure to setup the initial condition. */ + TEST_ASSERT_EQUAL_HEX(0x1234, FunctionWhichReturnsLocalVariable()); +} diff --git a/lib/Unity/examples/example_1/test/TestProductionCode2.c b/lib/Unity/examples/example_1/test/TestProductionCode2.c new file mode 100644 index 0000000..62742c9 --- /dev/null +++ b/lib/Unity/examples/example_1/test/TestProductionCode2.c @@ -0,0 +1,37 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode2.h" +#include "unity.h" + +/* These should be ignored because they are commented out in various ways: +#include "whatever.h" +#include "somethingelse.h" +*/ + +void setUp(void) +{ +} + +void tearDown(void) +{ +} + +void test_IgnoredTest(void) +{ + TEST_IGNORE_MESSAGE("This Test Was Ignored On Purpose"); +} + +void test_AnotherIgnoredTest(void) +{ + TEST_IGNORE_MESSAGE("These Can Be Useful For Leaving Yourself Notes On What You Need To Do Yet"); +} + +void test_ThisFunctionHasNotBeenTested_NeedsToBeImplemented(void) +{ + TEST_IGNORE(); /* Like This */ +} diff --git a/lib/Unity/examples/example_1/test/test_runners/TestProductionCode2_Runner.c b/lib/Unity/examples/example_1/test/test_runners/TestProductionCode2_Runner.c new file mode 100644 index 0000000..cf72c21 --- /dev/null +++ b/lib/Unity/examples/example_1/test/test_runners/TestProductionCode2_Runner.c @@ -0,0 +1,53 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT()) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "ProductionCode2.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_IgnoredTest(void); +extern void test_AnotherIgnoredTest(void); +extern void test_ThisFunctionHasNotBeenTested_NeedsToBeImplemented(void); + + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("test/TestProductionCode2.c"); + RUN_TEST(test_IgnoredTest, 18); + RUN_TEST(test_AnotherIgnoredTest, 23); + RUN_TEST(test_ThisFunctionHasNotBeenTested_NeedsToBeImplemented, 28); + + return (UnityEnd()); +} diff --git a/lib/Unity/examples/example_1/test/test_runners/TestProductionCode_Runner.c b/lib/Unity/examples/example_1/test/test_runners/TestProductionCode_Runner.c new file mode 100644 index 0000000..3b49af7 --- /dev/null +++ b/lib/Unity/examples/example_1/test/test_runners/TestProductionCode_Runner.c @@ -0,0 +1,57 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT()) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "ProductionCode.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_FindFunction_WhichIsBroken_ShouldReturnZeroIfItemIsNotInList_WhichWorksEvenInOurBrokenCode(void); +extern void test_FindFunction_WhichIsBroken_ShouldReturnTheIndexForItemsInList_WhichWillFailBecauseOurFunctionUnderTestIsBroken(void); +extern void test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValue(void); +extern void test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValueAgain(void); +extern void test_FunctionWhichReturnsLocalVariable_ShouldReturnCurrentCounter_ButFailsBecauseThisTestIsActuallyFlawed(void); + + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("test/TestProductionCode.c"); + RUN_TEST(test_FindFunction_WhichIsBroken_ShouldReturnZeroIfItemIsNotInList_WhichWorksEvenInOurBrokenCode, 20); + RUN_TEST(test_FindFunction_WhichIsBroken_ShouldReturnTheIndexForItemsInList_WhichWillFailBecauseOurFunctionUnderTestIsBroken, 30); + RUN_TEST(test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValue, 41); + RUN_TEST(test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValueAgain, 51); + RUN_TEST(test_FunctionWhichReturnsLocalVariable_ShouldReturnCurrentCounter_ButFailsBecauseThisTestIsActuallyFlawed, 57); + + return (UnityEnd()); +} diff --git a/lib/Unity/examples/example_2/readme.txt b/lib/Unity/examples/example_2/readme.txt new file mode 100644 index 0000000..f0fce65 --- /dev/null +++ b/lib/Unity/examples/example_2/readme.txt @@ -0,0 +1,5 @@ +Example 2 +========= + +Same as the first example, but now using Unity's test fixture to group tests +together. Using the test fixture also makes writing test runners much easier. \ No newline at end of file diff --git a/lib/Unity/examples/example_2/src/ProductionCode.c b/lib/Unity/examples/example_2/src/ProductionCode.c new file mode 100644 index 0000000..841f91a --- /dev/null +++ b/lib/Unity/examples/example_2/src/ProductionCode.c @@ -0,0 +1,30 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode.h" + +int Counter = 0; +int NumbersToFind[9] = { 0, 34, 55, 66, 32, 11, 1, 77, 888 }; //some obnoxious array to search that is 1-based indexing instead of 0. + +// This function is supposed to search through NumbersToFind and find a particular number. +// If it finds it, the index is returned. Otherwise 0 is returned which sorta makes sense since +// NumbersToFind is indexed from 1. Unfortunately it's broken +// (and should therefore be caught by our tests) +int FindFunction_WhichIsBroken(int NumberToFind) +{ + int i = 0; + while (i < 8) //Notice I should have been in braces + i++; + if (NumbersToFind[i] == NumberToFind) //Yikes! I'm getting run after the loop finishes instead of during it! + return i; + return 0; +} + +int FunctionWhichReturnsLocalVariable(void) +{ + return Counter; +} diff --git a/lib/Unity/examples/example_2/src/ProductionCode.h b/lib/Unity/examples/example_2/src/ProductionCode.h new file mode 100644 index 0000000..57ccf41 --- /dev/null +++ b/lib/Unity/examples/example_2/src/ProductionCode.h @@ -0,0 +1,9 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +int FindFunction_WhichIsBroken(int NumberToFind); +int FunctionWhichReturnsLocalVariable(void); diff --git a/lib/Unity/examples/example_2/src/ProductionCode2.c b/lib/Unity/examples/example_2/src/ProductionCode2.c new file mode 100644 index 0000000..c5c5011 --- /dev/null +++ b/lib/Unity/examples/example_2/src/ProductionCode2.c @@ -0,0 +1,17 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode2.h" + +char* ThisFunctionHasNotBeenTested(int Poor, char* LittleFunction) +{ + (void)Poor; + (void)LittleFunction; + //Since There Are No Tests Yet, This Function Could Be Empty For All We Know. + // Which isn't terribly useful... but at least we put in a TEST_IGNORE so we won't forget + return (char*)0; +} diff --git a/lib/Unity/examples/example_2/src/ProductionCode2.h b/lib/Unity/examples/example_2/src/ProductionCode2.h new file mode 100644 index 0000000..0a0bd76 --- /dev/null +++ b/lib/Unity/examples/example_2/src/ProductionCode2.h @@ -0,0 +1,8 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +char* ThisFunctionHasNotBeenTested(int Poor, char* LittleFunction); diff --git a/lib/Unity/examples/example_2/test/TestProductionCode.c b/lib/Unity/examples/example_2/test/TestProductionCode.c new file mode 100644 index 0000000..b424e24 --- /dev/null +++ b/lib/Unity/examples/example_2/test/TestProductionCode.c @@ -0,0 +1,71 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode.h" +#include "unity.h" +#include "unity_fixture.h" + +TEST_GROUP(ProductionCode); + +//sometimes you may want to get at local data in a module. +//for example: If you plan to pass by reference, this could be useful +//however, it should often be avoided +extern int Counter; + +TEST_SETUP(ProductionCode) +{ + //This is run before EACH TEST + Counter = 0x5a5a; +} + +TEST_TEAR_DOWN(ProductionCode) +{ +} + +TEST(ProductionCode, FindFunction_WhichIsBroken_ShouldReturnZeroIfItemIsNotInList_WhichWorksEvenInOurBrokenCode) +{ + //All of these should pass + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(78)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(2)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(33)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(999)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(-1)); +} + +TEST(ProductionCode, FindFunction_WhichIsBroken_ShouldReturnTheIndexForItemsInList_WhichWillFailBecauseOurFunctionUnderTestIsBroken) +{ + // You should see this line fail in your test summary + TEST_ASSERT_EQUAL(1, FindFunction_WhichIsBroken(34)); + + // Notice the rest of these didn't get a chance to run because the line above failed. + // Unit tests abort each test function on the first sign of trouble. + // Then NEXT test function runs as normal. + TEST_ASSERT_EQUAL(8, FindFunction_WhichIsBroken(8888)); +} + +TEST(ProductionCode, FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValue) +{ + //This should be true because setUp set this up for us before this test + TEST_ASSERT_EQUAL_HEX(0x5a5a, FunctionWhichReturnsLocalVariable()); + + //This should be true because we can still change our answer + Counter = 0x1234; + TEST_ASSERT_EQUAL_HEX(0x1234, FunctionWhichReturnsLocalVariable()); +} + +TEST(ProductionCode, FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValueAgain) +{ + //This should be true again because setup was rerun before this test (and after we changed it to 0x1234) + TEST_ASSERT_EQUAL_HEX(0x5a5a, FunctionWhichReturnsLocalVariable()); +} + +TEST(ProductionCode, FunctionWhichReturnsLocalVariable_ShouldReturnCurrentCounter_ButFailsBecauseThisTestIsActuallyFlawed) +{ + //Sometimes you get the test wrong. When that happens, you get a failure too... and a quick look should tell + // you what actually happened...which in this case was a failure to setup the initial condition. + TEST_ASSERT_EQUAL_HEX(0x1234, FunctionWhichReturnsLocalVariable()); +} diff --git a/lib/Unity/examples/example_2/test/TestProductionCode2.c b/lib/Unity/examples/example_2/test/TestProductionCode2.c new file mode 100644 index 0000000..a43bec4 --- /dev/null +++ b/lib/Unity/examples/example_2/test/TestProductionCode2.c @@ -0,0 +1,40 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode2.h" +#include "unity.h" +#include "unity_fixture.h" + +TEST_GROUP(ProductionCode2); + +/* These should be ignored because they are commented out in various ways: +#include "whatever.h" +*/ +//#include "somethingelse.h" + +TEST_SETUP(ProductionCode2) +{ +} + +TEST_TEAR_DOWN(ProductionCode2) +{ +} + +TEST(ProductionCode2, IgnoredTest) +{ + TEST_IGNORE_MESSAGE("This Test Was Ignored On Purpose"); +} + +TEST(ProductionCode2, AnotherIgnoredTest) +{ + TEST_IGNORE_MESSAGE("These Can Be Useful For Leaving Yourself Notes On What You Need To Do Yet"); +} + +TEST(ProductionCode2, ThisFunctionHasNotBeenTested_NeedsToBeImplemented) +{ + TEST_IGNORE(); //Like This +} diff --git a/lib/Unity/examples/example_2/test/test_runners/TestProductionCode2_Runner.c b/lib/Unity/examples/example_2/test/test_runners/TestProductionCode2_Runner.c new file mode 100644 index 0000000..f40f835 --- /dev/null +++ b/lib/Unity/examples/example_2/test/test_runners/TestProductionCode2_Runner.c @@ -0,0 +1,16 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#include "unity_fixture.h" + +TEST_GROUP_RUNNER(ProductionCode2) +{ + RUN_TEST_CASE(ProductionCode2, IgnoredTest); + RUN_TEST_CASE(ProductionCode2, AnotherIgnoredTest); + RUN_TEST_CASE(ProductionCode2, ThisFunctionHasNotBeenTested_NeedsToBeImplemented); +} \ No newline at end of file diff --git a/lib/Unity/examples/example_2/test/test_runners/TestProductionCode_Runner.c b/lib/Unity/examples/example_2/test/test_runners/TestProductionCode_Runner.c new file mode 100644 index 0000000..c50664f --- /dev/null +++ b/lib/Unity/examples/example_2/test/test_runners/TestProductionCode_Runner.c @@ -0,0 +1,18 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#include "unity_fixture.h" + +TEST_GROUP_RUNNER(ProductionCode) +{ + RUN_TEST_CASE(ProductionCode, FindFunction_WhichIsBroken_ShouldReturnZeroIfItemIsNotInList_WhichWorksEvenInOurBrokenCode); + RUN_TEST_CASE(ProductionCode, FindFunction_WhichIsBroken_ShouldReturnTheIndexForItemsInList_WhichWillFailBecauseOurFunctionUnderTestIsBroken); + RUN_TEST_CASE(ProductionCode, FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValue); + RUN_TEST_CASE(ProductionCode, FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValueAgain); + RUN_TEST_CASE(ProductionCode, FunctionWhichReturnsLocalVariable_ShouldReturnCurrentCounter_ButFailsBecauseThisTestIsActuallyFlawed); +} \ No newline at end of file diff --git a/lib/Unity/examples/example_2/test/test_runners/all_tests.c b/lib/Unity/examples/example_2/test/test_runners/all_tests.c new file mode 100644 index 0000000..54c4d25 --- /dev/null +++ b/lib/Unity/examples/example_2/test/test_runners/all_tests.c @@ -0,0 +1,19 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity_fixture.h" + +static void RunAllTests(void) +{ + RUN_TEST_GROUP(ProductionCode); + RUN_TEST_GROUP(ProductionCode2); +} + +int main(int argc, const char * argv[]) +{ + return UnityMain(argc, argv, RunAllTests); +} diff --git a/lib/Unity/examples/example_3/helper/UnityHelper.c b/lib/Unity/examples/example_3/helper/UnityHelper.c new file mode 100644 index 0000000..728ddbc --- /dev/null +++ b/lib/Unity/examples/example_3/helper/UnityHelper.c @@ -0,0 +1,17 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#include "UnityHelper.h" +#include +#include + +void AssertEqualExampleStruct(const EXAMPLE_STRUCT_T expected, const EXAMPLE_STRUCT_T actual, const unsigned short line) +{ + UNITY_TEST_ASSERT_EQUAL_INT(expected.x, actual.x, line, "Example Struct Failed For Field x"); + UNITY_TEST_ASSERT_EQUAL_INT(expected.y, actual.y, line, "Example Struct Failed For Field y"); +} diff --git a/lib/Unity/examples/example_3/helper/UnityHelper.h b/lib/Unity/examples/example_3/helper/UnityHelper.h new file mode 100644 index 0000000..8d3e4b6 --- /dev/null +++ b/lib/Unity/examples/example_3/helper/UnityHelper.h @@ -0,0 +1,19 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef _TESTHELPER_H +#define _TESTHELPER_H + +#include "Types.h" + +void AssertEqualExampleStruct(const EXAMPLE_STRUCT_T expected, const EXAMPLE_STRUCT_T actual, const unsigned short line); + +#define UNITY_TEST_ASSERT_EQUAL_EXAMPLE_STRUCT_T(expected, actual, line, message) AssertEqualExampleStruct(expected, actual, line); + +#define TEST_ASSERT_EQUAL_EXAMPLE_STRUCT_T(expected, actual) UNITY_TEST_ASSERT_EQUAL_EXAMPLE_STRUCT_T(expected, actual, __LINE__, NULL); + +#endif // _TESTHELPER_H diff --git a/lib/Unity/examples/example_3/rakefile.rb b/lib/Unity/examples/example_3/rakefile.rb new file mode 100644 index 0000000..ace9eb8 --- /dev/null +++ b/lib/Unity/examples/example_3/rakefile.rb @@ -0,0 +1,45 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +require 'rake' +require 'rake/clean' +require_relative 'rakefile_helper' + +TEMP_DIRS = [ + File.join(__dir__, 'build') +].freeze + +TEMP_DIRS.each do |dir| + directory(dir) + CLOBBER.include(dir) +end + +task prepare_for_tests: TEMP_DIRS + +# Load default configuration, for now +DEFAULT_CONFIG_FILE = 'target_gcc_32.yml'.freeze +configure_toolchain(DEFAULT_CONFIG_FILE) + +task unit: [:prepare_for_tests] do + run_tests unit_test_files +end + +desc 'Generate test summary' +task :summary do + report_summary +end + +desc 'Build and test Unity' +task all: %i[clean unit summary] +task default: %i[clobber all] +task ci: [:default] +task cruise: [:default] + +desc 'Load configuration' +task :config, :config_file do |_t, args| + configure_toolchain(args[:config_file]) +end diff --git a/lib/Unity/examples/example_3/rakefile_helper.rb b/lib/Unity/examples/example_3/rakefile_helper.rb new file mode 100644 index 0000000..be73b18 --- /dev/null +++ b/lib/Unity/examples/example_3/rakefile_helper.rb @@ -0,0 +1,255 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +require 'fileutils' +require_relative '../../auto/unity_test_summary' +require_relative '../../auto/generate_test_runner' +require_relative '../../auto/colour_reporter' +require_relative '../../auto/yaml_helper' +C_EXTENSION = '.c'.freeze + +def load_configuration(config_file) + $cfg_file = config_file + $cfg = YamlHelper.load_file($cfg_file) +end + +def configure_clean + CLEAN.include("#{$cfg['compiler']['build_path']}*.*") unless $cfg['compiler']['build_path'].nil? +end + +def configure_toolchain(config_file = DEFAULT_CONFIG_FILE) + config_file += '.yml' unless config_file =~ /\.yml$/ + load_configuration(config_file) + configure_clean +end + +def unit_test_files + path = "#{$cfg['compiler']['unit_tests_path']}Test*#{C_EXTENSION}" + path.tr!('\\', '/') + FileList.new(path) +end + +def local_include_dirs + include_dirs = $cfg['compiler']['includes']['items'].dup + include_dirs.delete_if { |dir| dir.is_a?(Array) } + include_dirs +end + +def extract_headers(filename) + includes = [] + lines = File.readlines(filename) + lines.each do |line| + m = line.match(/^\s*#include\s+"\s*(.+\.[hH])\s*"/) + includes << m[1] unless m.nil? + end + includes +end + +def find_source_file(header, paths) + paths.each do |dir| + src_file = dir + header.ext(C_EXTENSION) + return src_file if File.exist?(src_file) + end + nil +end + +def tackit(strings) + if strings.is_a?(Array) + "\"#{strings.join}\"" + else + strings + end +end + +def squash(prefix, items) + result = '' + items.each { |item| result += " #{prefix}#{tackit(item)}" } + result +end + +def build_compiler_fields + command = tackit($cfg['compiler']['path']) + defines = if $cfg['compiler']['defines']['items'].nil? + '' + else + squash($cfg['compiler']['defines']['prefix'], $cfg['compiler']['defines']['items']) + end + options = squash('', $cfg['compiler']['options']) + includes = squash($cfg['compiler']['includes']['prefix'], $cfg['compiler']['includes']['items']) + includes = includes.gsub(/\\ /, ' ').gsub(/\\"/, '"').gsub(/\\$/, '') # Remove trailing slashes (for IAR) + + { command: command, defines: defines, options: options, includes: includes } +end + +def compile(file, _defines = []) + compiler = build_compiler_fields + cmd_str = "#{compiler[:command]}#{compiler[:defines]}#{compiler[:options]}#{compiler[:includes]} #{file} " \ + "#{$cfg['compiler']['object_files']['prefix']}#{$cfg['compiler']['object_files']['destination']}" + obj_file = "#{File.basename(file, C_EXTENSION)}#{$cfg['compiler']['object_files']['extension']}" + execute(cmd_str + obj_file) + obj_file +end + +def build_linker_fields + command = tackit($cfg['linker']['path']) + options = if $cfg['linker']['options'].nil? + '' + else + squash('', $cfg['linker']['options']) + end + includes = if $cfg['linker']['includes'].nil? || $cfg['linker']['includes']['items'].nil? + '' + else + squash($cfg['linker']['includes']['prefix'], $cfg['linker']['includes']['items']) + end.gsub(/\\ /, ' ').gsub(/\\"/, '"').gsub(/\\$/, '') # Remove trailing slashes (for IAR) + + { command: command, options: options, includes: includes } +end + +def link_it(exe_name, obj_list) + linker = build_linker_fields + cmd_str = "#{linker[:command]}#{linker[:options]}#{linker[:includes]}" + cmd_str += " #{(obj_list.map { |obj| "#{$cfg['linker']['object_files']['path']}#{obj}" }).join(' ')}" + cmd_str += " #{$cfg['linker']['bin_files']['prefix']} " + cmd_str += $cfg['linker']['bin_files']['destination'] + cmd_str += exe_name + $cfg['linker']['bin_files']['extension'] + execute(cmd_str) +end + +def build_simulator_fields + return nil if $cfg['simulator'].nil? + + command = if $cfg['simulator']['path'].nil? + '' + else + "#{tackit($cfg['simulator']['path'])} " + end + pre_support = if $cfg['simulator']['pre_support'].nil? + '' + else + squash('', $cfg['simulator']['pre_support']) + end + post_support = if $cfg['simulator']['post_support'].nil? + '' + else + squash('', $cfg['simulator']['post_support']) + end + + { command: command, pre_support: pre_support, post_support: post_support } +end + +def execute(command_string, verbose = true, raise_on_fail = true) + report command_string + output = `#{command_string}`.chomp + report(output) if verbose && !output.nil? && !output.empty? + + if !$?.nil? && !$?.exitstatus.zero? && raise_on_fail + raise "Command failed. (Returned #{$?.exitstatus})" + end + + output +end + +def report_summary + summary = UnityTestSummary.new + summary.root = __dir__ + results_glob = "#{$cfg['compiler']['build_path']}*.test*" + results_glob.tr!('\\', '/') + results = Dir[results_glob] + summary.targets = results + summary.run + fail_out 'FAIL: There were failures' if summary.failures > 0 +end + +def run_tests(test_files) + report 'Running system tests...' + + # Tack on TEST define for compiling unit tests + load_configuration($cfg_file) + test_defines = ['TEST'] + $cfg['compiler']['defines']['items'] = [] if $cfg['compiler']['defines']['items'].nil? + $cfg['compiler']['defines']['items'] << 'TEST' + + include_dirs = local_include_dirs + + # Build and execute each unit test + test_files.each do |test| + obj_list = [] + + # Detect dependencies and build required required modules + extract_headers(test).each do |header| + # Compile corresponding source file if it exists + src_file = find_source_file(header, include_dirs) + obj_list << compile(src_file, test_defines) unless src_file.nil? + end + + # Build the test runner (generate if configured to do so) + test_base = File.basename(test, C_EXTENSION) + runner_name = "#{test_base}_Runner.c" + if $cfg['compiler']['runner_path'].nil? + runner_path = $cfg['compiler']['build_path'] + runner_name + test_gen = UnityTestRunnerGenerator.new($cfg_file) + test_gen.run(test, runner_path) + else + runner_path = $cfg['compiler']['runner_path'] + runner_name + end + + obj_list << compile(runner_path, test_defines) + + # Build the test module + obj_list << compile(test, test_defines) + + # Link the test executable + link_it(test_base, obj_list) + + # Execute unit test and generate results file + simulator = build_simulator_fields + executable = $cfg['linker']['bin_files']['destination'] + test_base + $cfg['linker']['bin_files']['extension'] + cmd_str = if simulator.nil? + executable + else + "#{simulator[:command]} #{simulator[:pre_support]} #{executable} #{simulator[:post_support]}" + end + output = execute(cmd_str, true, false) + test_results = $cfg['compiler']['build_path'] + test_base + test_results += if output.match(/OK$/m).nil? + '.testfail' + else + '.testpass' + end + File.open(test_results, 'w') { |f| f.print output } + end +end + +def build_application(main) + report 'Building application...' + + obj_list = [] + load_configuration($cfg_file) + main_path = $cfg['compiler']['source_path'] + main + C_EXTENSION + + # Detect dependencies and build required required modules + include_dirs = get_local_include_dirs + extract_headers(main_path).each do |header| + src_file = find_source_file(header, include_dirs) + obj_list << compile(src_file) unless src_file.nil? + end + + # Build the main source file + main_base = File.basename(main_path, C_EXTENSION) + obj_list << compile(main_path) + + # Create the executable + link_it(main_base, obj_list) +end + +def fail_out(msg) + puts msg + puts 'Not returning exit code so continuous integration can pass' + # exit(-1) # Only removed to pass example_3, which has failing tests on purpose. + # Still fail if the build fails for any other reason. +end diff --git a/lib/Unity/examples/example_3/readme.txt b/lib/Unity/examples/example_3/readme.txt new file mode 100644 index 0000000..7371fea --- /dev/null +++ b/lib/Unity/examples/example_3/readme.txt @@ -0,0 +1,13 @@ +Example 3 +========= + +This example project gives an example of some passing, ignored, and failing tests. +It's simple and meant for you to look over and get an idea for what all of this stuff does. + +You can build and test using rake. The rake version will let you test with gcc or a couple +versions of IAR. You can tweak the yaml files to get those versions running. + +Ruby is required if you're using the rake version (obviously). This version shows off most of +Unity's advanced features (automatically creating test runners, fancy summaries, etc.) +Without ruby, you have to maintain your own test runners. Do that for a while and you'll learn +why you really want to start using the Ruby tools. diff --git a/lib/Unity/examples/example_3/src/ProductionCode.c b/lib/Unity/examples/example_3/src/ProductionCode.c new file mode 100644 index 0000000..841f91a --- /dev/null +++ b/lib/Unity/examples/example_3/src/ProductionCode.c @@ -0,0 +1,30 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode.h" + +int Counter = 0; +int NumbersToFind[9] = { 0, 34, 55, 66, 32, 11, 1, 77, 888 }; //some obnoxious array to search that is 1-based indexing instead of 0. + +// This function is supposed to search through NumbersToFind and find a particular number. +// If it finds it, the index is returned. Otherwise 0 is returned which sorta makes sense since +// NumbersToFind is indexed from 1. Unfortunately it's broken +// (and should therefore be caught by our tests) +int FindFunction_WhichIsBroken(int NumberToFind) +{ + int i = 0; + while (i < 8) //Notice I should have been in braces + i++; + if (NumbersToFind[i] == NumberToFind) //Yikes! I'm getting run after the loop finishes instead of during it! + return i; + return 0; +} + +int FunctionWhichReturnsLocalVariable(void) +{ + return Counter; +} diff --git a/lib/Unity/examples/example_3/src/ProductionCode.h b/lib/Unity/examples/example_3/src/ProductionCode.h new file mode 100644 index 0000000..57ccf41 --- /dev/null +++ b/lib/Unity/examples/example_3/src/ProductionCode.h @@ -0,0 +1,9 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +int FindFunction_WhichIsBroken(int NumberToFind); +int FunctionWhichReturnsLocalVariable(void); diff --git a/lib/Unity/examples/example_3/src/ProductionCode2.c b/lib/Unity/examples/example_3/src/ProductionCode2.c new file mode 100644 index 0000000..c5c5011 --- /dev/null +++ b/lib/Unity/examples/example_3/src/ProductionCode2.c @@ -0,0 +1,17 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode2.h" + +char* ThisFunctionHasNotBeenTested(int Poor, char* LittleFunction) +{ + (void)Poor; + (void)LittleFunction; + //Since There Are No Tests Yet, This Function Could Be Empty For All We Know. + // Which isn't terribly useful... but at least we put in a TEST_IGNORE so we won't forget + return (char*)0; +} diff --git a/lib/Unity/examples/example_3/src/ProductionCode2.h b/lib/Unity/examples/example_3/src/ProductionCode2.h new file mode 100644 index 0000000..0a0bd76 --- /dev/null +++ b/lib/Unity/examples/example_3/src/ProductionCode2.h @@ -0,0 +1,8 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +char* ThisFunctionHasNotBeenTested(int Poor, char* LittleFunction); diff --git a/lib/Unity/examples/example_3/target_gcc_32.yml b/lib/Unity/examples/example_3/target_gcc_32.yml new file mode 100644 index 0000000..b7324d8 --- /dev/null +++ b/lib/Unity/examples/example_3/target_gcc_32.yml @@ -0,0 +1,54 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +# Copied from ~Unity/targets/gcc_32.yml +unity_root: &unity_root '../..' +unity_source: &unity_source '../../src/' +compiler: + path: gcc + source_path: &source_path 'src/' + unit_tests_path: &unit_tests_path 'test/' + build_path: &build_path 'build/' + options: + - '-c' + - '-m32' + - '-Wall' + - '-Wno-address' + - '-std=c99' + - '-pedantic' + includes: + prefix: '-I' + items: + - *source_path + - *unity_source + - *unit_tests_path + defines: + prefix: '-D' + items: + - UNITY_INCLUDE_DOUBLE + - UNITY_SUPPORT_TEST_CASES + object_files: + prefix: '-o' + extension: '.o' + destination: *build_path +linker: + path: gcc + options: + - -lm + - '-m32' + includes: + prefix: '-I' + object_files: + path: *build_path + extension: '.o' + bin_files: + prefix: '-o' + extension: '.exe' + destination: *build_path +colour: true +:unity: + :plugins: [] diff --git a/lib/Unity/examples/example_3/test/TestProductionCode.c b/lib/Unity/examples/example_3/test/TestProductionCode.c new file mode 100644 index 0000000..654de52 --- /dev/null +++ b/lib/Unity/examples/example_3/test/TestProductionCode.c @@ -0,0 +1,68 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode.h" +#include "unity.h" + +//sometimes you may want to get at local data in a module. +//for example: If you plan to pass by reference, this could be useful +//however, it should often be avoided +extern int Counter; + +void setUp(void) +{ + //This is run before EACH TEST + Counter = 0x5a5a; +} + +void tearDown(void) +{ +} + +void test_FindFunction_WhichIsBroken_ShouldReturnZeroIfItemIsNotInList_WhichWorksEvenInOurBrokenCode(void) +{ + //All of these should pass + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(78)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(1)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(33)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(999)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(-1)); +} + +void test_FindFunction_WhichIsBroken_ShouldReturnTheIndexForItemsInList_WhichWillFailBecauseOurFunctionUnderTestIsBroken(void) +{ + // You should see this line fail in your test summary + TEST_ASSERT_EQUAL(1, FindFunction_WhichIsBroken(34)); + + // Notice the rest of these didn't get a chance to run because the line above failed. + // Unit tests abort each test function on the first sign of trouble. + // Then NEXT test function runs as normal. + TEST_ASSERT_EQUAL(8, FindFunction_WhichIsBroken(8888)); +} + +void test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValue(void) +{ + //This should be true because setUp set this up for us before this test + TEST_ASSERT_EQUAL_HEX(0x5a5a, FunctionWhichReturnsLocalVariable()); + + //This should be true because we can still change our answer + Counter = 0x1234; + TEST_ASSERT_EQUAL_HEX(0x1234, FunctionWhichReturnsLocalVariable()); +} + +void test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValueAgain(void) +{ + //This should be true again because setup was rerun before this test (and after we changed it to 0x1234) + TEST_ASSERT_EQUAL_HEX(0x5a5a, FunctionWhichReturnsLocalVariable()); +} + +void test_FunctionWhichReturnsLocalVariable_ShouldReturnCurrentCounter_ButFailsBecauseThisTestIsActuallyFlawed(void) +{ + //Sometimes you get the test wrong. When that happens, you get a failure too... and a quick look should tell + // you what actually happened...which in this case was a failure to setup the initial condition. + TEST_ASSERT_EQUAL_HEX(0x1234, FunctionWhichReturnsLocalVariable()); +} diff --git a/lib/Unity/examples/example_3/test/TestProductionCode2.c b/lib/Unity/examples/example_3/test/TestProductionCode2.c new file mode 100644 index 0000000..32ba6be --- /dev/null +++ b/lib/Unity/examples/example_3/test/TestProductionCode2.c @@ -0,0 +1,37 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode2.h" +#include "unity.h" + +/* These should be ignored because they are commented out in various ways: +#include "whatever.h" +*/ +//#include "somethingelse.h" + +void setUp(void) +{ +} + +void tearDown(void) +{ +} + +void test_IgnoredTest(void) +{ + TEST_IGNORE_MESSAGE("This Test Was Ignored On Purpose"); +} + +void test_AnotherIgnoredTest(void) +{ + TEST_IGNORE_MESSAGE("These Can Be Useful For Leaving Yourself Notes On What You Need To Do Yet"); +} + +void test_ThisFunctionHasNotBeenTested_NeedsToBeImplemented(void) +{ + TEST_IGNORE(); //Like This +} diff --git a/lib/Unity/examples/example_4/meson.build b/lib/Unity/examples/example_4/meson.build new file mode 100644 index 0000000..b1c4e85 --- /dev/null +++ b/lib/Unity/examples/example_4/meson.build @@ -0,0 +1,12 @@ +# +# build script written by : Michael Brockus. +# github repo author: Mike Karlesky, Mark VanderVoord, Greg Williams. +# +# license: MIT +# +project('example-4', 'c', meson_version: '>= 0.55.0') + +unity_dep = dependency('unity') + +subdir('src') +subdir('test') diff --git a/lib/Unity/examples/example_4/readme.txt b/lib/Unity/examples/example_4/readme.txt new file mode 100644 index 0000000..c8f45a8 --- /dev/null +++ b/lib/Unity/examples/example_4/readme.txt @@ -0,0 +1,15 @@ +Example 4 +========= + +Close to the simplest possible example of Unity, using only basic features. +to build this example run "meson setup ". + +Meson uses the Ninja build system to actually build the code. To start the +build, simply type the following command. + +"ninja -C " + +Meson provides native support for running tests. The command to do that is simple. + +"meson test -C ". + \ No newline at end of file diff --git a/lib/Unity/examples/example_4/src/ProductionCode.c b/lib/Unity/examples/example_4/src/ProductionCode.c new file mode 100644 index 0000000..9a10033 --- /dev/null +++ b/lib/Unity/examples/example_4/src/ProductionCode.c @@ -0,0 +1,30 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode.h" + +int Counter = 0; +int NumbersToFind[9] = { 0, 34, 55, 66, 32, 11, 1, 77, 888 }; /* some obnoxious array to search that is 1-based indexing instead of 0. */ + +/* This function is supposed to search through NumbersToFind and find a particular number. + * If it finds it, the index is returned. Otherwise 0 is returned which sorta makes sense since + * NumbersToFind is indexed from 1. Unfortunately it's broken + * (and should therefore be caught by our tests) */ +int FindFunction_WhichIsBroken(int NumberToFind) +{ + int i = 0; + while (i < 8) /* Notice I should have been in braces */ + i++; + if (NumbersToFind[i] == NumberToFind) /* Yikes! I'm getting run after the loop finishes instead of during it! */ + return i; + return 0; +} + +int FunctionWhichReturnsLocalVariable(void) +{ + return Counter; +} diff --git a/lib/Unity/examples/example_4/src/ProductionCode.h b/lib/Unity/examples/example_4/src/ProductionCode.h new file mode 100644 index 0000000..57ccf41 --- /dev/null +++ b/lib/Unity/examples/example_4/src/ProductionCode.h @@ -0,0 +1,9 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +int FindFunction_WhichIsBroken(int NumberToFind); +int FunctionWhichReturnsLocalVariable(void); diff --git a/lib/Unity/examples/example_4/src/ProductionCode2.c b/lib/Unity/examples/example_4/src/ProductionCode2.c new file mode 100644 index 0000000..ae72f91 --- /dev/null +++ b/lib/Unity/examples/example_4/src/ProductionCode2.c @@ -0,0 +1,17 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode2.h" + +char* ThisFunctionHasNotBeenTested(int Poor, char* LittleFunction) +{ + (void)Poor; + (void)LittleFunction; + /* Since There Are No Tests Yet, This Function Could Be Empty For All We Know. + * Which isn't terribly useful... but at least we put in a TEST_IGNORE so we won't forget */ + return (char*)0; +} diff --git a/lib/Unity/examples/example_4/src/ProductionCode2.h b/lib/Unity/examples/example_4/src/ProductionCode2.h new file mode 100644 index 0000000..0a0bd76 --- /dev/null +++ b/lib/Unity/examples/example_4/src/ProductionCode2.h @@ -0,0 +1,8 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +char* ThisFunctionHasNotBeenTested(int Poor, char* LittleFunction); diff --git a/lib/Unity/examples/example_4/src/meson.build b/lib/Unity/examples/example_4/src/meson.build new file mode 100644 index 0000000..10c5735 --- /dev/null +++ b/lib/Unity/examples/example_4/src/meson.build @@ -0,0 +1,16 @@ +# +# build script written by : Michael Brockus. +# github repo author: Mike Karlesky, Mark VanderVoord, Greg Williams. +# +# license: MIT +# +inc_dir = include_directories('.') +lib_list = {'a': ['ProductionCode.c' ], 'b': ['ProductionCode2.c']} + +foreach lib, src : lib_list + set_variable(lib + '_lib', + static_library(lib + '_lib', sources: src, include_directories: inc_dir)) +endforeach + +a_dep = declare_dependency(link_with: a_lib, include_directories: inc_dir) +b_dep = declare_dependency(link_with: b_lib, include_directories: inc_dir) diff --git a/lib/Unity/examples/example_4/subprojects/unity.wrap b/lib/Unity/examples/example_4/subprojects/unity.wrap new file mode 100755 index 0000000..8688475 --- /dev/null +++ b/lib/Unity/examples/example_4/subprojects/unity.wrap @@ -0,0 +1,6 @@ +[wrap-git] +url = https://github.com/ThrowTheSwitch/Unity.git +revision = head + +[provide] +unity = unity_dep diff --git a/lib/Unity/examples/example_4/test/TestProductionCode.c b/lib/Unity/examples/example_4/test/TestProductionCode.c new file mode 100644 index 0000000..63b6618 --- /dev/null +++ b/lib/Unity/examples/example_4/test/TestProductionCode.c @@ -0,0 +1,69 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode.h" +#include "unity.h" + +/* sometimes you may want to get at local data in a module. + * for example: If you plan to pass by reference, this could be useful + * however, it should often be avoided */ +extern int Counter; + +void setUp(void) +{ + /* This is run before EACH TEST */ + Counter = 0x5a5a; +} + +void tearDown(void) +{ +} + + +void test_FindFunction_WhichIsBroken_ShouldReturnZeroIfItemIsNotInList_WhichWorksEvenInOurBrokenCode(void) +{ + /* All of these should pass */ + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(78)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(2)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(33)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(999)); + TEST_ASSERT_EQUAL(0, FindFunction_WhichIsBroken(-1)); +} + +void test_FindFunction_WhichIsBroken_ShouldReturnTheIndexForItemsInList_WhichWillFailBecauseOurFunctionUnderTestIsBroken(void) +{ + /* You should see this line fail in your test summary */ + TEST_ASSERT_EQUAL(1, FindFunction_WhichIsBroken(34)); + + /* Notice the rest of these didn't get a chance to run because the line above failed. + * Unit tests abort each test function on the first sign of trouble. + * Then NEXT test function runs as normal. */ + TEST_ASSERT_EQUAL(8, FindFunction_WhichIsBroken(8888)); +} + +void test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValue(void) +{ + /* This should be true because setUp set this up for us before this test */ + TEST_ASSERT_EQUAL_HEX(0x5a5a, FunctionWhichReturnsLocalVariable()); + + /* This should be true because we can still change our answer */ + Counter = 0x1234; + TEST_ASSERT_EQUAL_HEX(0x1234, FunctionWhichReturnsLocalVariable()); +} + +void test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValueAgain(void) +{ + /* This should be true again because setup was rerun before this test (and after we changed it to 0x1234) */ + TEST_ASSERT_EQUAL_HEX(0x5a5a, FunctionWhichReturnsLocalVariable()); +} + +void test_FunctionWhichReturnsLocalVariable_ShouldReturnCurrentCounter_ButFailsBecauseThisTestIsActuallyFlawed(void) +{ + /* Sometimes you get the test wrong. When that happens, you get a failure too... and a quick look should tell + * you what actually happened...which in this case was a failure to setup the initial condition. */ + TEST_ASSERT_EQUAL_HEX(0x1234, FunctionWhichReturnsLocalVariable()); +} diff --git a/lib/Unity/examples/example_4/test/TestProductionCode2.c b/lib/Unity/examples/example_4/test/TestProductionCode2.c new file mode 100644 index 0000000..5292d96 --- /dev/null +++ b/lib/Unity/examples/example_4/test/TestProductionCode2.c @@ -0,0 +1,41 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode2.h" +#include "unity.h" + +/* These should be ignored because they are commented out in various ways: +#include "whatever.h" +#include "somethingelse.h" +*/ + +void setUp(void) +{ +} + +void tearDown(void) +{ +} + +void test_IgnoredTest(void); +void test_AnotherIgnoredTest(void); +void test_ThisFunctionHasNotBeenTested_NeedsToBeImplemented(void); + +void test_IgnoredTest(void) +{ + TEST_IGNORE_MESSAGE("This Test Was Ignored On Purpose"); +} + +void test_AnotherIgnoredTest(void) +{ + TEST_IGNORE_MESSAGE("These Can Be Useful For Leaving Yourself Notes On What You Need To Do Yet"); +} + +void test_ThisFunctionHasNotBeenTested_NeedsToBeImplemented(void) +{ + TEST_IGNORE(); /* Like This */ +} diff --git a/lib/Unity/examples/example_4/test/meson.build b/lib/Unity/examples/example_4/test/meson.build new file mode 100644 index 0000000..0e3c72f --- /dev/null +++ b/lib/Unity/examples/example_4/test/meson.build @@ -0,0 +1,7 @@ +# +# build script written by : Michael Brockus. +# github repo author: Mike Karlesky, Mark VanderVoord, Greg Williams. +# +# license: MIT +# +subdir('test_runners') diff --git a/lib/Unity/examples/example_4/test/test_runners/TestProductionCode2_Runner.c b/lib/Unity/examples/example_4/test/test_runners/TestProductionCode2_Runner.c new file mode 100644 index 0000000..cf72c21 --- /dev/null +++ b/lib/Unity/examples/example_4/test/test_runners/TestProductionCode2_Runner.c @@ -0,0 +1,53 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT()) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "ProductionCode2.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_IgnoredTest(void); +extern void test_AnotherIgnoredTest(void); +extern void test_ThisFunctionHasNotBeenTested_NeedsToBeImplemented(void); + + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("test/TestProductionCode2.c"); + RUN_TEST(test_IgnoredTest, 18); + RUN_TEST(test_AnotherIgnoredTest, 23); + RUN_TEST(test_ThisFunctionHasNotBeenTested_NeedsToBeImplemented, 28); + + return (UnityEnd()); +} diff --git a/lib/Unity/examples/example_4/test/test_runners/TestProductionCode_Runner.c b/lib/Unity/examples/example_4/test/test_runners/TestProductionCode_Runner.c new file mode 100644 index 0000000..3b49af7 --- /dev/null +++ b/lib/Unity/examples/example_4/test/test_runners/TestProductionCode_Runner.c @@ -0,0 +1,57 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT()) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "ProductionCode.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_FindFunction_WhichIsBroken_ShouldReturnZeroIfItemIsNotInList_WhichWorksEvenInOurBrokenCode(void); +extern void test_FindFunction_WhichIsBroken_ShouldReturnTheIndexForItemsInList_WhichWillFailBecauseOurFunctionUnderTestIsBroken(void); +extern void test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValue(void); +extern void test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValueAgain(void); +extern void test_FunctionWhichReturnsLocalVariable_ShouldReturnCurrentCounter_ButFailsBecauseThisTestIsActuallyFlawed(void); + + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("test/TestProductionCode.c"); + RUN_TEST(test_FindFunction_WhichIsBroken_ShouldReturnZeroIfItemIsNotInList_WhichWorksEvenInOurBrokenCode, 20); + RUN_TEST(test_FindFunction_WhichIsBroken_ShouldReturnTheIndexForItemsInList_WhichWillFailBecauseOurFunctionUnderTestIsBroken, 30); + RUN_TEST(test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValue, 41); + RUN_TEST(test_FunctionWhichReturnsLocalVariable_ShouldReturnTheCurrentCounterValueAgain, 51); + RUN_TEST(test_FunctionWhichReturnsLocalVariable_ShouldReturnCurrentCounter_ButFailsBecauseThisTestIsActuallyFlawed, 57); + + return (UnityEnd()); +} diff --git a/lib/Unity/examples/example_4/test/test_runners/meson.build b/lib/Unity/examples/example_4/test/test_runners/meson.build new file mode 100644 index 0000000..1503c5f --- /dev/null +++ b/lib/Unity/examples/example_4/test/test_runners/meson.build @@ -0,0 +1,13 @@ +# +# build script written by : Michael Brockus. +# github repo author: Mike Karlesky, Mark VanderVoord, Greg Williams. +# +# license: MIT +# +cases = [ + ['TestProductionCode_Runner.c', join_paths('..' ,'TestProductionCode.c' )], + ['TestProductionCode2_Runner.c', join_paths('..' ,'TestProductionCode2.c')] + ] + +test('01-test-case', executable('01-test-case', cases[0], dependencies: [ a_dep, unity_dep ])) +test('02-test-case', executable('02-test-case', cases[1], dependencies: [ b_dep, unity_dep ])) diff --git a/lib/Unity/examples/example_5/readme.txt b/lib/Unity/examples/example_5/readme.txt new file mode 100644 index 0000000..c84468e --- /dev/null +++ b/lib/Unity/examples/example_5/readme.txt @@ -0,0 +1,38 @@ +Example 5 +========= + +Demonstrate Details Stack usage to implement something similar to a stacktrace. +This allows locating the error source much faster in branching/iterating code. + +Build and run with Make +--- +Just run `make`. + +Output +--- +Below the output is annotated with source of the elements. + +``` +test/TestProductionCode.c:36:test_BitExtractor:FAIL: Expected 0 Was 1. During call BitExtractor. During call BitExtractor_down. Bit Position 6. Bit Mask 0x02. Unexpected bit value +``` + +| String | Source | +|-----------------------------|---------------------------------------------------------------------------| +| `test/TestProductionCode.c` | `Unity.TestFile` | +| `36` | `UNITY_TEST_ASSERT_EQUAL_INT` line | +| `test_BitExtractor` | `RUN_TEST` name | +| `FAIL` | `UnityStrFail` | +| `Expected 1 Was 0` | `UnityAssertEqualNumber` | +| `During call` | Detail 0, Label | +| `BitExtractor` | Detail 0, Value | +| `During call` | Detail 0, Label | +| `BitExtractor` | Detail 0, Value | +| `During call` | Detail 1, Label | +| `BitExtractor_down` | Detail 1, Value | +| `Bit Position` | Detail 2, Label (literal starts with #\x18, so value is printed as INT32) | +| `6` | Detail 2 Value | +| `Bit Mask` | Detail 2, Label (literal starts with #\x41, so value is printed as HEX8) | +| `0x02` | Detail 2 Value | +| `Unexpected bit value` | `UNITY_TEST_ASSERT_EQUAL_INT` message | + +While this example is a bit contrived, the source of the error can be clearly located to be within the `test_BitExtractor->BitExtractor->BitExtractor_down` diff --git a/lib/Unity/examples/example_5/src/ProductionCode.c b/lib/Unity/examples/example_5/src/ProductionCode.c new file mode 100644 index 0000000..7120adc --- /dev/null +++ b/lib/Unity/examples/example_5/src/ProductionCode.c @@ -0,0 +1,56 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode.h" + +#include + +#ifdef UNIT_TESTING +#include "unity.h" +#else +/* No-Op when not testing */ +#define UNITY_DETAIL_PUSH +#define UNITY_DETAIL_POP +#endif + +static void BitExtractor_up(uint8_t input, callback_t cb) +{ + int32_t pos; + UNITY_DETAIL_PUSH(UNITY_DETAIL_CALL, __FUNCTION__); + for(pos=0; pos<8; pos++) { + UNITY_DETAIL_PUSH(UNITY_DETAIL_BIT_POS, pos); + UNITY_DETAIL_PUSH(UNITY_DETAIL_BIT_MASK, 1<>pos); + cb(pos, !!(input & (0x80>>pos))); + UNITY_DETAIL_POP(UNITY_DETAIL_BIT_MASK, 0x80>>pos); + UNITY_DETAIL_POP(UNITY_DETAIL_BIT_POS, pos); + } + UNITY_DETAIL_POP(UNITY_DETAIL_CALL, __FUNCTION__); +} +void BitExtractor(bit_direction_t dir, uint8_t input, callback_t cb) +{ + UNITY_DETAIL_PUSH(UNITY_DETAIL_CALL, __FUNCTION__); + if(dir == BIT_DIRECTION_UP) { + BitExtractor_up(input, cb); + } else { + BitExtractor_down(input, cb); + } + UNITY_DETAIL_POP(UNITY_DETAIL_CALL, __FUNCTION__); +} diff --git a/lib/Unity/examples/example_5/src/ProductionCode.h b/lib/Unity/examples/example_5/src/ProductionCode.h new file mode 100644 index 0000000..7e14358 --- /dev/null +++ b/lib/Unity/examples/example_5/src/ProductionCode.h @@ -0,0 +1,16 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include + +typedef void callback_t(int position, int bit_value); +typedef enum { + BIT_DIRECTION_UP, + BIT_DIRECTION_DOWN, +} bit_direction_t; + +void BitExtractor(bit_direction_t dir, uint8_t input, callback_t cb); diff --git a/lib/Unity/examples/example_5/subprojects/unity.wrap b/lib/Unity/examples/example_5/subprojects/unity.wrap new file mode 100644 index 0000000..6df241b --- /dev/null +++ b/lib/Unity/examples/example_5/subprojects/unity.wrap @@ -0,0 +1,3 @@ +[wrap-git] +url = https://github.com/ThrowTheSwitch/Unity.git +revision = head diff --git a/lib/Unity/examples/example_5/test/TestProductionCode.c b/lib/Unity/examples/example_5/test/TestProductionCode.c new file mode 100644 index 0000000..ec4cbed --- /dev/null +++ b/lib/Unity/examples/example_5/test/TestProductionCode.c @@ -0,0 +1,45 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "ProductionCode.h" +#include "unity.h" + +const int* current_expected_bits = NULL; +UNITY_LINE_TYPE current_vector_line = 0; +typedef struct { + UNITY_LINE_TYPE line; + uint8_t value; + bit_direction_t dir; + int expected_bits[8]; +} test_vector_t; + +void setUp(void) +{ +} + +void tearDown(void) +{ +} + +static void be_bit_tester(int position, int value) { + UNITY_TEST_ASSERT_EQUAL_INT(current_expected_bits[position], value, current_vector_line, "Unexpected bit value"); +} + +void test_BitExtractor(void) +{ + const test_vector_t test_vectors[] = { + {__LINE__, 7, BIT_DIRECTION_UP, {1,1,1,0,0,0,0,0}}, + {__LINE__, 7, BIT_DIRECTION_DOWN, {0,0,0,0,0,1,0,1}}, /* intentionally wrong to demonstrate detail output */ + {0} + }; + const test_vector_t* tv; + for (tv = test_vectors; tv->line; tv++) { + current_vector_line = tv->line; + current_expected_bits = tv->expected_bits; + BitExtractor(tv->dir, tv->value, be_bit_tester); + } +} diff --git a/lib/Unity/examples/example_5/test/test_runners/TestProductionCode_Runner.c b/lib/Unity/examples/example_5/test/test_runners/TestProductionCode_Runner.c new file mode 100644 index 0000000..564eea3 --- /dev/null +++ b/lib/Unity/examples/example_5/test/test_runners/TestProductionCode_Runner.c @@ -0,0 +1,48 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT()) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "ProductionCode.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_BitExtractor(void); + + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("test/TestProductionCode.c"); + RUN_TEST(test_BitExtractor, 32); + return UNITY_END(); +} diff --git a/lib/Unity/examples/example_5/test/unity_detail_config.h b/lib/Unity/examples/example_5/test/unity_detail_config.h new file mode 100644 index 0000000..1680da5 --- /dev/null +++ b/lib/Unity/examples/example_5/test/unity_detail_config.h @@ -0,0 +1,25 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#define UNITY_DETAIL_STACK_SIZE 5 +#define LABEL_AS_INT32 "#\x18" /*UNITY_DISPLAY_STYLE_INT32 = 0x18 */ +#define LABEL_AS_HEX8 "#\x41" /* UNITY_DISPLAY_STYLE_HEX8 = 0x41 */ +#define UNITY_DETAIL_LABEL_NAMES { 0, \ + UNITY_DETAIL1_NAME, \ + UNITY_DETAIL2_NAME, \ + "During call", \ + LABEL_AS_INT32 "Bit Position", \ + LABEL_AS_HEX8 "Bit Mask", \ +} +typedef enum { + UNITY_DETAIL_NONE = 0, + UNITY_DETAIL_D1 = 1, + UNITY_DETAIL_D2 = 2, + UNITY_DETAIL_CALL, + UNITY_DETAIL_BIT_POS, + UNITY_DETAIL_BIT_MASK, +} UNITY_DETAIL_LABEL_T; diff --git a/lib/Unity/examples/unity_config.h b/lib/Unity/examples/unity_config.h new file mode 100644 index 0000000..c79dd5a --- /dev/null +++ b/lib/Unity/examples/unity_config.h @@ -0,0 +1,251 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +/* Unity Configuration + * As of May 11th, 2016 at ThrowTheSwitch/Unity commit 837c529 + * Update: December 29th, 2016 + * See Also: Unity/docs/UnityConfigurationGuide.pdf + * + * Unity is designed to run on almost anything that is targeted by a C compiler. + * It would be awesome if this could be done with zero configuration. While + * there are some targets that come close to this dream, it is sadly not + * universal. It is likely that you are going to need at least a couple of the + * configuration options described in this document. + * + * All of Unity's configuration options are `#defines`. Most of these are simple + * definitions. A couple are macros with arguments. They live inside the + * unity_internals.h header file. We don't necessarily recommend opening that + * file unless you really need to. That file is proof that a cross-platform + * library is challenging to build. From a more positive perspective, it is also + * proof that a great deal of complexity can be centralized primarily to one + * place in order to provide a more consistent and simple experience elsewhere. + * + * Using These Options + * It doesn't matter if you're using a target-specific compiler and a simulator + * or a native compiler. In either case, you've got a couple choices for + * configuring these options: + * + * 1. Because these options are specified via C defines, you can pass most of + * these options to your compiler through command line compiler flags. Even + * if you're using an embedded target that forces you to use their + * overbearing IDE for all configuration, there will be a place somewhere in + * your project to configure defines for your compiler. + * 2. You can create a custom `unity_config.h` configuration file (present in + * your toolchain's search paths). In this file, you will list definitions + * and macros specific to your target. All you must do is define + * `UNITY_INCLUDE_CONFIG_H` and Unity will rely on `unity_config.h` for any + * further definitions it may need. + */ + +#ifndef UNITY_CONFIG_H +#define UNITY_CONFIG_H + +/* ************************* AUTOMATIC INTEGER TYPES *************************** + * C's concept of an integer varies from target to target. The C Standard has + * rules about the `int` matching the register size of the target + * microprocessor. It has rules about the `int` and how its size relates to + * other integer types. An `int` on one target might be 16 bits while on another + * target it might be 64. There are more specific types in compilers compliant + * with C99 or later, but that's certainly not every compiler you are likely to + * encounter. Therefore, Unity has a number of features for helping to adjust + * itself to match your required integer sizes. It starts off by trying to do it + * automatically. + **************************************************************************** */ + +/* The first attempt to guess your types is to check `limits.h`. Some compilers + * that don't support `stdint.h` could include `limits.h`. If you don't + * want Unity to check this file, define this to make it skip the inclusion. + * Unity looks at UINT_MAX & ULONG_MAX, which were available since C89. + */ +/* #define UNITY_EXCLUDE_LIMITS_H */ + +/* The second thing that Unity does to guess your types is check `stdint.h`. + * This file defines `UINTPTR_MAX`, since C99, that Unity can make use of to + * learn about your system. It's possible you don't want it to do this or it's + * possible that your system doesn't support `stdint.h`. If that's the case, + * you're going to want to define this. That way, Unity will know to skip the + * inclusion of this file and you won't be left with a compiler error. + */ +/* #define UNITY_EXCLUDE_STDINT_H */ + +/* ********************** MANUAL INTEGER TYPE DEFINITION *********************** + * If you've disabled all of the automatic options above, you're going to have + * to do the configuration yourself. There are just a handful of defines that + * you are going to specify if you don't like the defaults. + **************************************************************************** */ + + /* Define this to be the number of bits an `int` takes up on your system. The + * default, if not auto-detected, is 32 bits. + * + * Example: + */ +/* #define UNITY_INT_WIDTH 16 */ + +/* Define this to be the number of bits a `long` takes up on your system. The + * default, if not autodetected, is 32 bits. This is used to figure out what + * kind of 64-bit support your system can handle. Does it need to specify a + * `long` or a `long long` to get a 64-bit value. On 16-bit systems, this option + * is going to be ignored. + * + * Example: + */ +/* #define UNITY_LONG_WIDTH 16 */ + +/* Define this to be the number of bits a pointer takes up on your system. The + * default, if not autodetected, is 32-bits. If you're getting ugly compiler + * warnings about casting from pointers, this is the one to look at. + * + * Example: + */ +/* #define UNITY_POINTER_WIDTH 64 */ + +/* Unity will automatically include 64-bit support if it auto-detects it, or if + * your `int`, `long`, or pointer widths are greater than 32-bits. Define this + * to enable 64-bit support if none of the other options already did it for you. + * There can be a significant size and speed impact to enabling 64-bit support + * on small targets, so don't define it if you don't need it. + */ +/* #define UNITY_SUPPORT_64 */ + + +/* *************************** FLOATING POINT TYPES **************************** + * In the embedded world, it's not uncommon for targets to have no support for + * floating point operations at all or to have support that is limited to only + * single precision. We are able to guess integer sizes on the fly because + * integers are always available in at least one size. Floating point, on the + * other hand, is sometimes not available at all. Trying to include `float.h` on + * these platforms would result in an error. This leaves manual configuration as + * the only option. + **************************************************************************** */ + + /* By default, Unity guesses that you will want single precision floating point + * support, but not double precision. It's easy to change either of these using + * the include and exclude options here. You may include neither, just float, + * or both, as suits your needs. + */ +/* #define UNITY_EXCLUDE_FLOAT */ +/* #define UNITY_INCLUDE_DOUBLE */ +/* #define UNITY_EXCLUDE_DOUBLE */ + +/* For features that are enabled, the following floating point options also + * become available. + */ + +/* Unity aims for as small of a footprint as possible and avoids most standard + * library calls (some embedded platforms don't have a standard library!). + * Because of this, its routines for printing integer values are minimalist and + * hand-coded. To keep Unity universal, though, we eventually chose to develop + * our own floating point print routines. Still, the display of floating point + * values during a failure are optional. By default, Unity will print the + * actual results of floating point assertion failures. So a failed assertion + * will produce a message like "Expected 4.0 Was 4.25". If you would like less + * verbose failure messages for floating point assertions, use this option to + * give a failure message `"Values Not Within Delta"` and trim the binary size. + */ +/* #define UNITY_EXCLUDE_FLOAT_PRINT */ + +/* If enabled, Unity assumes you want your `FLOAT` asserts to compare standard C + * floats. If your compiler supports a specialty floating point type, you can + * always override this behavior by using this definition. + * + * Example: + */ +/* #define UNITY_FLOAT_TYPE float16_t */ + +/* If enabled, Unity assumes you want your `DOUBLE` asserts to compare standard + * C doubles. If you would like to change this, you can specify something else + * by using this option. For example, defining `UNITY_DOUBLE_TYPE` to `long + * double` could enable gargantuan floating point types on your 64-bit processor + * instead of the standard `double`. + * + * Example: + */ +/* #define UNITY_DOUBLE_TYPE long double */ + +/* If you look up `UNITY_ASSERT_EQUAL_FLOAT` and `UNITY_ASSERT_EQUAL_DOUBLE` as + * documented in the Unity Assertion Guide, you will learn that they are not + * really asserting that two values are equal but rather that two values are + * "close enough" to equal. "Close enough" is controlled by these precision + * configuration options. If you are working with 32-bit floats and/or 64-bit + * doubles (the normal on most processors), you should have no need to change + * these options. They are both set to give you approximately 1 significant bit + * in either direction. The float precision is 0.00001 while the double is + * 10^-12. For further details on how this works, see the appendix of the Unity + * Assertion Guide. + * + * Example: + */ +/* #define UNITY_FLOAT_PRECISION 0.001f */ +/* #define UNITY_DOUBLE_PRECISION 0.001f */ + + +/* *************************** MISCELLANEOUS *********************************** + * Miscellaneous configuration options for Unity + **************************************************************************** */ + +/* Unity uses the stddef.h header included in the C standard library for the + * "NULL" macro. Define this in order to disable the include of stddef.h. If you + * do this, you have to make sure to provide your own "NULL" definition. + */ +/* #define UNITY_EXCLUDE_STDDEF_H */ + +/* Define this to enable the unity formatted print macro: + * "TEST_PRINTF" + */ +/* #define UNITY_INCLUDE_PRINT_FORMATTED */ + + +/* *************************** TOOLSET CUSTOMIZATION *************************** + * In addition to the options listed above, there are a number of other options + * which will come in handy to customize Unity's behavior for your specific + * toolchain. It is possible that you may not need to touch any of these but + * certain platforms, particularly those running in simulators, may need to jump + * through extra hoops to operate properly. These macros will help in those + * situations. + **************************************************************************** */ + +/* By default, Unity prints its results to `stdout` as it runs. This works + * perfectly fine in most situations where you are using a native compiler for + * testing. It works on some simulators as well so long as they have `stdout` + * routed back to the command line. There are times, however, where the + * simulator will lack support for dumping results or you will want to route + * results elsewhere for other reasons. In these cases, you should define the + * `UNITY_OUTPUT_CHAR` macro. This macro accepts a single character at a time + * (as an `int`, since this is the parameter type of the standard C `putchar` + * function most commonly used). You may replace this with whatever function + * call you like. + * + * Example: + * Say you are forced to run your test suite on an embedded processor with no + * `stdout` option. You decide to route your test result output to a custom + * serial `RS232_putc()` function you wrote like thus: + */ +/* #define UNITY_OUTPUT_CHAR(a) RS232_putc(a) */ +/* #define UNITY_OUTPUT_CHAR_HEADER_DECLARATION RS232_putc(int) */ +/* #define UNITY_OUTPUT_FLUSH() RS232_flush() */ +/* #define UNITY_OUTPUT_FLUSH_HEADER_DECLARATION RS232_flush(void) */ +/* #define UNITY_OUTPUT_START() RS232_config(115200,1,8,0) */ +/* #define UNITY_OUTPUT_COMPLETE() RS232_close() */ + +/* Some compilers require a custom attribute to be assigned to pointers, like + * `near` or `far`. In these cases, you can give Unity a safe default for these + * by defining this option with the attribute you would like. + * + * Example: + */ +/* #define UNITY_PTR_ATTRIBUTE __attribute__((far)) */ +/* #define UNITY_PTR_ATTRIBUTE near */ + +/* Print execution time of each test when executed in verbose mode + * + * Example: + * + * TEST - PASS (10 ms) + */ +/* #define UNITY_INCLUDE_EXEC_TIME */ + +#endif /* UNITY_CONFIG_H */ diff --git a/lib/Unity/extras/bdd/readme.md b/lib/Unity/extras/bdd/readme.md new file mode 100644 index 0000000..e703588 --- /dev/null +++ b/lib/Unity/extras/bdd/readme.md @@ -0,0 +1,40 @@ +# Unity Project - BDD Feature + +Unity's Behavior-Driven Development (BDD) test feature. It allows developers to structure and describe various phases (Given, When, Then) of a test scenario in a BDD-style format. + +## Introduction + +This project is based on the Unity framework originally created by Mike Karlesky, Mark VanderVoord, and Greg Williams in 2007. The project extends Unity by providing macros to define BDD structures with descriptive elements. Feature added by Michael Gene Brockus (Dreamer). + +## License + +This project is distributed under the MIT License. See the [license.txt](license.txt) file for more information. + +## Usage + +### BDD Macros + +The provided BDD macros allow you to structure your test scenarios in a descriptive manner. These macros are for descriptive purposes only and do not have functional behavior. + +- `GIVEN(description)`: Describes the "Given" phase of a test scenario. +- `WHEN(description)`: Describes the "When" phase of a test scenario. +- `THEN(description)`: Describes the "Then" phase of a test scenario. + +Example usage: + +```c +GIVEN("a valid input") { + // Test setup and context + // ... + + WHEN("the input is processed") { + // Perform the action + // ... + + THEN("the expected outcome occurs") { + // Assert the outcome + // ... + } + } +} +``` diff --git a/lib/Unity/extras/bdd/src/unity_bdd.h b/lib/Unity/extras/bdd/src/unity_bdd.h new file mode 100644 index 0000000..41ee2ad --- /dev/null +++ b/lib/Unity/extras/bdd/src/unity_bdd.h @@ -0,0 +1,44 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef UNITY_BDD_TEST_H_ +#define UNITY_BDD_TEST_H_ + +#ifdef __cplusplus +extern "C" +{ +#endif + +#include + +/** + * @brief Macros for defining a Behavior-Driven Development (BDD) structure with descriptions. + * + * These macros provide a way to structure and describe different phases (Given, When, Then) of a + * test scenario in a BDD-style format. However, they don't have functional behavior by themselves + * and are used for descriptive purposes. + */ +#define GIVEN(description) \ + if (0) { \ + printf("Given %s\n", description); \ + } else + +#define WHEN(description) \ + if (0) { \ + printf("When %s\n", description); \ + } else + +#define THEN(description) \ + if (0) { \ + printf("Then %s\n", description); \ + } else + +#ifdef __cplusplus +} +#endif + +#endif diff --git a/lib/Unity/extras/bdd/test/meson.build b/lib/Unity/extras/bdd/test/meson.build new file mode 100644 index 0000000..fcdafff --- /dev/null +++ b/lib/Unity/extras/bdd/test/meson.build @@ -0,0 +1,9 @@ +project('BDD Tester', 'c') + +# Add Unity as a dependency +unity_dep = dependency('unity') + +# Define your source files +sources = files('test_bdd.c') + +executable('tester', sources, dependencies : unity_dep) diff --git a/lib/Unity/extras/bdd/test/test_bdd.c b/lib/Unity/extras/bdd/test/test_bdd.c new file mode 100644 index 0000000..be51324 --- /dev/null +++ b/lib/Unity/extras/bdd/test/test_bdd.c @@ -0,0 +1,129 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#include "unity_bdd.h" + +void test_bdd_logic_test(void) { + GIVEN("a valid statement is passed") + { + // Set up the context + bool givenExecuted = true; + + WHEN("a statement is true") + { + // Perform the login action + bool whenExecuted = true; + + THEN("we validate everything was worked") + { + // Check the expected outcome + bool thenExecuted = true; + + TEST_ASSERT_TRUE(givenExecuted); + TEST_ASSERT_TRUE(whenExecuted); + TEST_ASSERT_TRUE(thenExecuted); + } + } + } +} // end of case + +void test_bdd_user_account(void) { + GIVEN("a user's account with sufficient balance") + { + // Set up the context + float accountBalance = 500.0; + float withdrawalAmount = 200.0; + + WHEN("the user requests a withdrawal of $200") + { + // Perform the withdrawal action + if (accountBalance >= withdrawalAmount) + { + accountBalance -= withdrawalAmount; + } // end if + THEN("the withdrawal amount should be deducted from the account balance") + { + // Check the expected outcome + + // Simulate the scenario + float compareBalance = 500.0; + TEST_ASSERT_LESS_THAN_FLOAT(accountBalance, compareBalance); + } + } + } +} // end of case + +void test_bdd_empty_cart(void) { + GIVEN("a user with an empty shopping cart") + { + // Set up the context + int cartItemCount = 0; + + WHEN("the user adds a product to the cart") + { + // Perform the action of adding a product + + THEN("the cart item count should increase by 1") + { + // Check the expected outcome + cartItemCount++; + + TEST_ASSERT_EQUAL_INT(cartItemCount, 1); + } + } + } +} // end of case + +void test_bdd_valid_login(void) { + GIVEN("a registered user with valid credentials") + { + // Set up the context + const char* validUsername = "user123"; + const char* validPassword = "pass456"; + + WHEN("the user provides correct username and password") + { + // Perform the action of user login + const char* inputUsername = "user123"; + const char* inputPassword = "pass456"; + + THEN("the login should be successful") + { + // Check the expected outcome + // Simulate login validation + TEST_ASSERT_EQUAL_STRING(inputUsername, validUsername); + TEST_ASSERT_EQUAL_STRING(inputPassword, validPassword); + } + } + + WHEN("the user provides incorrect password") + { + // Perform the action of user login + const char* inputUsername = "user123"; + const char* inputPassword = "wrongpass"; + + THEN("the login should fail with an error message") + { + // Check the expected outcome + // Simulate login validation + TEST_ASSERT_EQUAL_STRING(inputUsername, validUsername); + // TEST_ASSERT_NOT_EQUAL_STRING(inputPassword, validPassword); + } + } + } +} // end of case + +int main(void) +{ + UnityBegin("test_bdd.c"); + RUN_TEST(test_bdd_logic_test); + RUN_TEST(test_bdd_user_account); + RUN_TEST(test_bdd_empty_cart); + RUN_TEST(test_bdd_valid_login); + return UnityEnd(); +} diff --git a/lib/Unity/extras/eclipse/error_parsers.txt b/lib/Unity/extras/eclipse/error_parsers.txt new file mode 100644 index 0000000..94e34ff --- /dev/null +++ b/lib/Unity/extras/eclipse/error_parsers.txt @@ -0,0 +1,26 @@ +Eclipse error parsers +===================== + +These are a godsend for extracting & quickly navigating to +warnings & error messages from console output. Unforunately +I don't know how to write an Eclipse plugin so you'll have +to add them manually. + +To add a console parser to Eclipse, go to Window --> Preferences +--> C/C++ --> Build --> Settings. Click on the 'Error Parsers' +tab and then click the 'Add...' button. See the table below for +the parser fields to add. + +Eclipse will only parse the console output during a build, so +running your unit tests must be part of your build process. +Either add this to your make/rakefile, or add it as a post- +build step in your Eclipse project settings. + + +Unity unit test error parsers +----------------------------- +Severity Pattern File Line Description +------------------------------------------------------------------------------- +Error (\.+)(.*?):(\d+):(.*?):FAIL: (.*) $2 $3 $5 +Warning (\.+)(.*?):(\d+):(.*?):IGNORE: (.*) $2 $3 $5 +Warning (\.+)(.*?):(\d+):(.*?):IGNORE\s*$ $2 $3 Ignored test diff --git a/lib/Unity/extras/fixture/readme.md b/lib/Unity/extras/fixture/readme.md new file mode 100644 index 0000000..e0c9e1b --- /dev/null +++ b/lib/Unity/extras/fixture/readme.md @@ -0,0 +1,26 @@ +# Unity Fixtures + +This Framework is an optional add-on to Unity. +By including unity_fixture.h in place of unity.h, you may now work with Unity in a manner similar to CppUTest. +This framework adds the concepts of test groups and gives finer control of your tests over the command line. + +This framework is primarily supplied for those working through James Grenning's book on Embedded Test Driven Development, or those coming to Unity from CppUTest. +We should note that using this framework glosses over some of the features of Unity, and makes it more difficult to integrate with other testing tools like Ceedling and CMock. + +## Dependency Notification + +Fixtures, by default, uses the Memory addon as well. +This is to make it simple for those trying to follow along with James' book. +Using them together is completely optional. +You may choose to use Fixtures without Memory handling by defining `UNITY_FIXTURE_NO_EXTRAS`. +It will then stop automatically pulling in extras and leave you to do it as desired. + +## Usage information + +By default the test executables produced by Unity Fixtures run all tests once, but the behavior can be configured with command-line flags. +Run the test executable with the `--help` flag for more information. + +It's possible to add a custom line at the end of the help message, typically to point to project-specific or company-specific unit test documentation. +Define `UNITY_CUSTOM_HELP_MSG` to provide a custom message, e.g.: + + #define UNITY_CUSTOM_HELP_MSG "If any test fails see https://example.com/troubleshooting" diff --git a/lib/Unity/extras/fixture/src/meson.build b/lib/Unity/extras/fixture/src/meson.build new file mode 100644 index 0000000..224911d --- /dev/null +++ b/lib/Unity/extras/fixture/src/meson.build @@ -0,0 +1,10 @@ +unity_inc += include_directories('.') +unity_src += files('unity_fixture.c') + +if not meson.is_subproject() + install_headers( + 'unity_fixture.h', + 'unity_fixture_internals.h', + subdir: meson.project_name() + ) +endif diff --git a/lib/Unity/extras/fixture/src/unity_fixture.c b/lib/Unity/extras/fixture/src/unity_fixture.c new file mode 100644 index 0000000..a89677e --- /dev/null +++ b/lib/Unity/extras/fixture/src/unity_fixture.c @@ -0,0 +1,347 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity_fixture.h" +#include "unity_internals.h" +#include + +struct UNITY_FIXTURE_T UnityFixture; + +/* If you decide to use the function pointer approach. + * Build with -D UNITY_OUTPUT_CHAR=outputChar and include + * int (*outputChar)(int) = putchar; */ + +void setUp(void) { /*does nothing*/ } +void tearDown(void) { /*does nothing*/ } + +static void announceTestRun(unsigned int runNumber) +{ + UnityPrint("Unity test run "); + UnityPrintNumberUnsigned(runNumber+1); + UnityPrint(" of "); + UnityPrintNumberUnsigned(UnityFixture.RepeatCount); + UNITY_PRINT_EOL(); +} + +int UnityMain(int argc, const char* argv[], void (*runAllTests)(void)) +{ + int result = UnityGetCommandLineOptions(argc, argv); + unsigned int r; + if (result != 0) + return result; + + for (r = 0; r < UnityFixture.RepeatCount; r++) + { + UnityBegin(argv[0]); + announceTestRun(r); + runAllTests(); + if (!UnityFixture.Verbose) UNITY_PRINT_EOL(); + UnityEnd(); + } + + return (int)Unity.TestFailures; +} + +static int selected(const char* filter, const char* select, const char* name) +{ + if (filter == 0 && select == 0) + return 1; + if (filter && strstr(name, filter)) + return 1; + if (select && strcmp(name, select) == 0) + return 1; + return 0; +} + +static int testSelected(const char* test) +{ + return selected(UnityFixture.NameFilter, UnityFixture.Name, test); +} + +static int groupSelected(const char* group) +{ + return selected(UnityFixture.GroupFilter, UnityFixture.Group, group); +} + +void UnityTestRunner(unityfunction* setup, + unityfunction* testBody, + unityfunction* teardown, + const char* printableName, + const char* group, + const char* name, + const char* file, + unsigned int line) +{ + if (testSelected(name) && groupSelected(group)) + { + Unity.TestFile = file; + Unity.CurrentTestName = printableName; + Unity.CurrentTestLineNumber = line; + if (UnityFixture.Verbose) + { + UnityPrint(printableName); + #ifndef UNITY_REPEAT_TEST_NAME + Unity.CurrentTestName = NULL; + #endif + } + else if (UnityFixture.Silent) + { + /* Do Nothing */ + } + else + { + UNITY_OUTPUT_CHAR('.'); + } + + Unity.NumberOfTests++; + UnityPointer_Init(); + + if (!UnityFixture.DryRun) { + UNITY_EXEC_TIME_START(); + + if (TEST_PROTECT()) + { + setup(); + testBody(); + } + if (TEST_PROTECT()) + { + teardown(); + } + } + + if (TEST_PROTECT()) + { + UnityPointer_UndoAllSets(); + } + UnityConcludeFixtureTest(); + } +} + +void UnityIgnoreTest(const char* printableName, const char* group, const char* name) +{ + if (testSelected(name) && groupSelected(group)) + { + Unity.NumberOfTests++; + Unity.TestIgnores++; + if (UnityFixture.Verbose) + { + UnityPrint(printableName); + UNITY_PRINT_EOL(); + } + else if (UnityFixture.Silent) + { + /* Do Nothing */ + } + else + { + UNITY_OUTPUT_CHAR('!'); + } + } +} + +/*-------------------------------------------------------- */ +/*Automatic pointer restoration functions */ +struct PointerPair +{ + void** pointer; + void* old_value; +}; + +static struct PointerPair pointer_store[UNITY_MAX_POINTERS]; +static int pointer_index = 0; + +void UnityPointer_Init(void) +{ + pointer_index = 0; +} + +void UnityPointer_Set(void** pointer, void* newValue, UNITY_LINE_TYPE line) +{ + if (pointer_index >= UNITY_MAX_POINTERS) + { + UNITY_TEST_FAIL(line, "Too many pointers set"); + } + else + { + pointer_store[pointer_index].pointer = pointer; + pointer_store[pointer_index].old_value = *pointer; + *pointer = newValue; + pointer_index++; + } +} + +void UnityPointer_UndoAllSets(void) +{ + while (pointer_index > 0) + { + pointer_index--; + *(pointer_store[pointer_index].pointer) = + pointer_store[pointer_index].old_value; + } +} + +int UnityGetCommandLineOptions(int argc, const char* argv[]) +{ + int i; + UnityFixture.Verbose = 0; + UnityFixture.Silent = 0; + UnityFixture.DryRun = 0; + UnityFixture.GroupFilter = 0; + UnityFixture.Group = 0; + UnityFixture.NameFilter = 0; + UnityFixture.Name = 0; + UnityFixture.RepeatCount = 1; + + if (argc == 1) + return 0; + + for (i = 1; i < argc; ) + { + if (strcmp(argv[i], "-h") == 0 || strcmp(argv[i], "--help") == 0) + { + /* Usage */ + UnityPrint("Runs a series of unit tests."); + UNITY_PRINT_EOL(); + UNITY_PRINT_EOL(); + UnityPrint("When no flag is specified, all tests are run."); + UNITY_PRINT_EOL(); + UNITY_PRINT_EOL(); + UnityPrint("Optional flags:"); + UNITY_PRINT_EOL(); + UnityPrint(" -v Verbose output: show all tests executed even if they pass"); + UNITY_PRINT_EOL(); + UnityPrint(" -s Silent mode: minimal output showing only test failures"); + UNITY_PRINT_EOL(); + UnityPrint(" -d Dry run all tests"); + UNITY_PRINT_EOL(); + UnityPrint(" -g NAME Only run tests in groups that contain the string NAME"); + UNITY_PRINT_EOL(); + UnityPrint(" -G NAME Only run tests in groups named NAME"); + UNITY_PRINT_EOL(); + UnityPrint(" -n NAME Only run tests whose name contains the string NAME"); + UNITY_PRINT_EOL(); + UnityPrint(" -N NAME Only run tests named NAME"); + UNITY_PRINT_EOL(); + UnityPrint(" -r NUMBER Repeatedly run all tests NUMBER times"); + UNITY_PRINT_EOL(); + UnityPrint(" -h, --help Display this help message"); + UNITY_PRINT_EOL(); + UNITY_PRINT_EOL(); +#ifdef UNITY_CUSTOM_HELP_MSG + /* User-defined help message, e.g. to point to project-specific documentation */ + UnityPrint(UNITY_CUSTOM_HELP_MSG); + UNITY_PRINT_EOL(); +#else + /* Default help suffix if a custom one is not defined */ + UnityPrint("More information about Unity: https://www.throwtheswitch.org/unity"); + UNITY_PRINT_EOL(); +#endif + return 1; /* Exit without running the tests */ + } + else if (strcmp(argv[i], "-v") == 0) + { + UnityFixture.Verbose = 1; + i++; + } + else if (strcmp(argv[i], "-s") == 0) + { + UnityFixture.Silent = 1; + i++; + } + else if (strcmp(argv[i], "-d") == 0) + { + UnityFixture.DryRun = 1; + i++; + } + else if (strcmp(argv[i], "-g") == 0) + { + i++; + if (i >= argc) + return 1; + UnityFixture.GroupFilter = argv[i]; + i++; + } + else if (strcmp(argv[i], "-G") == 0) + { + i++; + if (i >= argc) + return 1; + UnityFixture.Group= argv[i]; + i++; + } + else if (strcmp(argv[i], "-n") == 0) + { + i++; + if (i >= argc) + return 1; + UnityFixture.NameFilter = argv[i]; + i++; + } + else if (strcmp(argv[i], "-N") == 0) + { + i++; + if (i >= argc) + return 1; + UnityFixture.Name = argv[i]; + i++; + } + else if (strcmp(argv[i], "-r") == 0) + { + UnityFixture.RepeatCount = 2; + i++; + if (i < argc) + { + if (*(argv[i]) >= '0' && *(argv[i]) <= '9') + { + unsigned int digit = 0; + UnityFixture.RepeatCount = 0; + while (argv[i][digit] >= '0' && argv[i][digit] <= '9') + { + UnityFixture.RepeatCount *= 10; + UnityFixture.RepeatCount += (unsigned int)argv[i][digit++] - '0'; + } + i++; + } + } + } + else + { + /* ignore unknown parameter */ + i++; + } + } + return 0; +} + +void UnityConcludeFixtureTest(void) +{ + if (Unity.CurrentTestIgnored) + { + Unity.TestIgnores++; + UNITY_PRINT_EOL(); + } + else if (!Unity.CurrentTestFailed) + { + if (UnityFixture.Verbose) + { + UnityPrint(" "); + UnityPrint(UnityStrPass); + UNITY_EXEC_TIME_STOP(); + UNITY_PRINT_EXEC_TIME(); + UNITY_PRINT_EOL(); + } + } + else /* Unity.CurrentTestFailed */ + { + Unity.TestFailures++; + UNITY_PRINT_EOL(); + } + + Unity.CurrentTestFailed = 0; + Unity.CurrentTestIgnored = 0; +} diff --git a/lib/Unity/extras/fixture/src/unity_fixture.h b/lib/Unity/extras/fixture/src/unity_fixture.h new file mode 100644 index 0000000..fa2fc5b --- /dev/null +++ b/lib/Unity/extras/fixture/src/unity_fixture.h @@ -0,0 +1,94 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef UNITY_FIXTURE_H_ +#define UNITY_FIXTURE_H_ + +#include "unity.h" +#include "unity_fixture_internals.h" + +#ifndef UNITY_FIXTURE_NO_EXTRAS +#include "unity_memory.h" +#endif + +#ifdef __cplusplus +extern "C" +{ +#endif + +#include "unity_internals.h" + + +int UnityMain(int argc, const char* argv[], void (*runAllTests)(void)); + + +#define TEST_GROUP(group)\ + static const char* TEST_GROUP_##group = #group + +#define TEST_SETUP(group) void TEST_##group##_SETUP(void);\ + void TEST_##group##_SETUP(void) + +#define TEST_TEAR_DOWN(group) void TEST_##group##_TEAR_DOWN(void);\ + void TEST_##group##_TEAR_DOWN(void) + + +#define TEST(group, name) \ + void TEST_##group##_##name##_(void);\ + void TEST_##group##_##name##_run(void);\ + void TEST_##group##_##name##_run(void)\ + {\ + UnityTestRunner(TEST_##group##_SETUP,\ + TEST_##group##_##name##_,\ + TEST_##group##_TEAR_DOWN,\ + "TEST(" #group ", " #name ")",\ + TEST_GROUP_##group, #name,\ + __FILE__, __LINE__);\ + }\ + void TEST_##group##_##name##_(void) + +#define IGNORE_TEST(group, name) \ + void TEST_##group##_##name##_(void);\ + void TEST_##group##_##name##_run(void);\ + void TEST_##group##_##name##_run(void)\ + {\ + UnityIgnoreTest("IGNORE_TEST(" #group ", " #name ")", TEST_GROUP_##group, #name);\ + }\ + void TEST_##group##_##name##_(void) + +/* Call this for each test, insider the group runner */ +#define RUN_TEST_CASE(group, name) \ + { void TEST_##group##_##name##_run(void);\ + TEST_##group##_##name##_run(); } + +/* This goes at the bottom of each test file or in a separate c file */ +#define TEST_GROUP_RUNNER(group)\ + void TEST_##group##_GROUP_RUNNER(void);\ + void TEST_##group##_GROUP_RUNNER(void) + +/* Call this from main */ +#define RUN_TEST_GROUP(group)\ + { void TEST_##group##_GROUP_RUNNER(void);\ + TEST_##group##_GROUP_RUNNER(); } + +/* CppUTest Compatibility Macros */ +#ifndef UNITY_EXCLUDE_CPPUTEST_ASSERTS +/* Sets a pointer and automatically restores it to its old value after teardown */ +#define UT_PTR_SET(ptr, newPointerValue) UnityPointer_Set((void**)&(ptr), (void*)(newPointerValue), __LINE__) +#define TEST_ASSERT_POINTERS_EQUAL(expected, actual) TEST_ASSERT_EQUAL_PTR((expected), (actual)) +#define TEST_ASSERT_BYTES_EQUAL(expected, actual) TEST_ASSERT_EQUAL_HEX8(0xff & (expected), 0xff & (actual)) +#define FAIL(message) TEST_FAIL_MESSAGE((message)) +#define CHECK(condition) TEST_ASSERT_TRUE((condition)) +#define LONGS_EQUAL(expected, actual) TEST_ASSERT_EQUAL_INT((expected), (actual)) +#define STRCMP_EQUAL(expected, actual) TEST_ASSERT_EQUAL_STRING((expected), (actual)) +#define DOUBLES_EQUAL(expected, actual, delta) TEST_ASSERT_DOUBLE_WITHIN((delta), (expected), (actual)) +#endif + +#ifdef __cplusplus +} +#endif + +#endif /* UNITY_FIXTURE_H_ */ diff --git a/lib/Unity/extras/fixture/src/unity_fixture_internals.h b/lib/Unity/extras/fixture/src/unity_fixture_internals.h new file mode 100644 index 0000000..b2aff1f --- /dev/null +++ b/lib/Unity/extras/fixture/src/unity_fixture_internals.h @@ -0,0 +1,53 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef UNITY_FIXTURE_INTERNALS_H_ +#define UNITY_FIXTURE_INTERNALS_H_ + +#ifdef __cplusplus +extern "C" +{ +#endif + +struct UNITY_FIXTURE_T +{ + int Verbose; + int Silent; + int DryRun; + unsigned int RepeatCount; + const char* NameFilter; + const char* Name; + const char* GroupFilter; + const char* Group; +}; +extern struct UNITY_FIXTURE_T UnityFixture; + +typedef void unityfunction(void); +void UnityTestRunner(unityfunction* setup, + unityfunction* testBody, + unityfunction* teardown, + const char* printableName, + const char* group, + const char* name, + const char* file, unsigned int line); + +void UnityIgnoreTest(const char* printableName, const char* group, const char* name); +int UnityGetCommandLineOptions(int argc, const char* argv[]); +void UnityConcludeFixtureTest(void); + +void UnityPointer_Set(void** pointer, void* newValue, UNITY_LINE_TYPE line); +void UnityPointer_UndoAllSets(void); +void UnityPointer_Init(void); +#ifndef UNITY_MAX_POINTERS +#define UNITY_MAX_POINTERS 5 +#endif + +#ifdef __cplusplus +} +#endif + +#endif /* UNITY_FIXTURE_INTERNALS_H_ */ diff --git a/lib/Unity/extras/fixture/test/main/AllTests.c b/lib/Unity/extras/fixture/test/main/AllTests.c new file mode 100644 index 0000000..caa3c7e --- /dev/null +++ b/lib/Unity/extras/fixture/test/main/AllTests.c @@ -0,0 +1,20 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity_fixture.h" + +static void runAllTests(void) +{ + RUN_TEST_GROUP(UnityFixture); + RUN_TEST_GROUP(UnityCommandOptions); +} + +int main(int argc, const char* argv[]) +{ + return UnityMain(argc, argv, runAllTests); +} + diff --git a/lib/Unity/extras/fixture/test/template_fixture_tests.c b/lib/Unity/extras/fixture/test/template_fixture_tests.c new file mode 100644 index 0000000..1b1c9ec --- /dev/null +++ b/lib/Unity/extras/fixture/test/template_fixture_tests.c @@ -0,0 +1,39 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity_fixture.h" + +static int data = -1; + +TEST_GROUP(mygroup); + +TEST_SETUP(mygroup) +{ + data = 0; +} + +TEST_TEAR_DOWN(mygroup) +{ + data = -1; +} + +TEST(mygroup, test1) +{ + TEST_ASSERT_EQUAL_INT(0, data); +} + +TEST(mygroup, test2) +{ + TEST_ASSERT_EQUAL_INT(0, data); + data = 5; +} + +TEST(mygroup, test3) +{ + data = 7; + TEST_ASSERT_EQUAL_INT(7, data); +} diff --git a/lib/Unity/extras/fixture/test/unity_fixture_Test.c b/lib/Unity/extras/fixture/test/unity_fixture_Test.c new file mode 100644 index 0000000..b894d4c --- /dev/null +++ b/lib/Unity/extras/fixture/test/unity_fixture_Test.c @@ -0,0 +1,290 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity_fixture.h" +#include +#include + +TEST_GROUP(UnityFixture); + +TEST_SETUP(UnityFixture) +{ +} + +TEST_TEAR_DOWN(UnityFixture) +{ +} + +static int* pointer1 = 0; +static int* pointer2 = (int*)2; +static int* pointer3 = (int*)3; +static int int1; +static int int2; +static int int3; +static int int4; + +TEST(UnityFixture, PointerSetting) +{ + TEST_ASSERT_POINTERS_EQUAL(pointer1, 0); + UT_PTR_SET(pointer1, &int1); + UT_PTR_SET(pointer2, &int2); + UT_PTR_SET(pointer3, &int3); + TEST_ASSERT_POINTERS_EQUAL(pointer1, &int1); + TEST_ASSERT_POINTERS_EQUAL(pointer2, &int2); + TEST_ASSERT_POINTERS_EQUAL(pointer3, &int3); + UT_PTR_SET(pointer1, &int4); + UnityPointer_UndoAllSets(); + TEST_ASSERT_POINTERS_EQUAL(pointer1, 0); + TEST_ASSERT_POINTERS_EQUAL(pointer2, (int*)2); + TEST_ASSERT_POINTERS_EQUAL(pointer3, (int*)3); +} + +static char *p1; +static char *p2; + +TEST(UnityFixture, PointerSet) +{ + char c1; + char c2; + char newC1; + char newC2; + p1 = &c1; + p2 = &c2; + + UnityPointer_Init(); + UT_PTR_SET(p1, &newC1); + UT_PTR_SET(p2, &newC2); + TEST_ASSERT_POINTERS_EQUAL(&newC1, p1); + TEST_ASSERT_POINTERS_EQUAL(&newC2, p2); + UnityPointer_UndoAllSets(); + TEST_ASSERT_POINTERS_EQUAL(&c1, p1); + TEST_ASSERT_POINTERS_EQUAL(&c2, p2); +} + +TEST(UnityFixture, FreeNULLSafety) +{ + free(NULL); +} + +TEST(UnityFixture, ConcludeTestIncrementsFailCount) +{ + UNITY_UINT savedFails = Unity.TestFailures; + UNITY_UINT savedIgnores = Unity.TestIgnores; + Unity.CurrentTestFailed = 1; + UnityConcludeFixtureTest(); /* Resets TestFailed for this test to pass */ + Unity.CurrentTestIgnored = 1; + UnityConcludeFixtureTest(); /* Resets TestIgnored */ + TEST_ASSERT_EQUAL(savedFails + 1, Unity.TestFailures); + TEST_ASSERT_EQUAL(savedIgnores + 1, Unity.TestIgnores); + Unity.TestFailures = savedFails; + Unity.TestIgnores = savedIgnores; +} + +/*------------------------------------------------------------ */ + +TEST_GROUP(UnityCommandOptions); + +static int savedVerbose; +static unsigned int savedRepeat; +static int savedDryRun; +static const char* savedName; +static const char* savedGroup; +static const char* savedNameExact; +static const char* savedGroupExact; + +TEST_SETUP(UnityCommandOptions) +{ + savedVerbose = UnityFixture.Verbose; + savedRepeat = UnityFixture.RepeatCount; + savedDryRun = UnityFixture.DryRun; + savedName = UnityFixture.NameFilter; + savedGroup = UnityFixture.GroupFilter; + savedNameExact = UnityFixture.Name; + savedGroupExact = UnityFixture.Group; +} + +TEST_TEAR_DOWN(UnityCommandOptions) +{ + UnityFixture.Verbose = savedVerbose; + UnityFixture.RepeatCount= savedRepeat; + UnityFixture.DryRun = savedDryRun; + UnityFixture.NameFilter = savedName; + UnityFixture.GroupFilter = savedGroup; + UnityFixture.Name= savedNameExact; + UnityFixture.Group= savedGroup; +} + + +static const char* noOptions[] = { + "testrunner.exe" +}; + +TEST(UnityCommandOptions, DefaultOptions) +{ + UnityGetCommandLineOptions(1, noOptions); + TEST_ASSERT_EQUAL(0, UnityFixture.Verbose); + TEST_ASSERT_EQUAL(0, UnityFixture.DryRun); + TEST_ASSERT_POINTERS_EQUAL(0, UnityFixture.GroupFilter); + TEST_ASSERT_POINTERS_EQUAL(0, UnityFixture.NameFilter); + TEST_ASSERT_POINTERS_EQUAL(0, UnityFixture.Group); + TEST_ASSERT_POINTERS_EQUAL(0, UnityFixture.Name); + TEST_ASSERT_EQUAL(1, UnityFixture.RepeatCount); +} + +static const char* verbose[] = { + "testrunner.exe", + "-v" +}; + +TEST(UnityCommandOptions, OptionVerbose) +{ + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(2, verbose)); + TEST_ASSERT_EQUAL(1, UnityFixture.Verbose); +} + +static const char* dryRun[] = { + "testrunner.exe", + "-d" +}; + +TEST(UnityCommandOptions, OptionDryRun) +{ + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(2, dryRun)); + TEST_ASSERT_EQUAL(1, UnityFixture.DryRun); +} + +static const char* group[] = { + "testrunner.exe", + "-g", "groupname" +}; + +TEST(UnityCommandOptions, OptionSelectTestByGroup) +{ + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(3, group)); + STRCMP_EQUAL("groupname", UnityFixture.GroupFilter); +} + +static const char* name[] = { + "testrunner.exe", + "-n", "testname" +}; + +TEST(UnityCommandOptions, OptionSelectTestByName) +{ + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(3, name)); + STRCMP_EQUAL("testname", UnityFixture.NameFilter); +} + +static const char* groupExact[] = { + "testrunner.exe", + "-G", "groupname" +}; + +TEST(UnityCommandOptions, OptionSelectTestByGroupExact) +{ + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(3, groupExact)); + STRCMP_EQUAL("groupname", UnityFixture.Group); +} + +static const char* nameExact[] = { + "testrunner.exe", + "-N", "testname" +}; + +TEST(UnityCommandOptions, OptionSelectTestByNameExact) +{ + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(3, nameExact)); + STRCMP_EQUAL("testname", UnityFixture.Name); +} + +static const char* repeat[] = { + "testrunner.exe", + "-r", "99" +}; + +TEST(UnityCommandOptions, OptionSelectRepeatTestsDefaultCount) +{ + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(2, repeat)); + TEST_ASSERT_EQUAL(2, UnityFixture.RepeatCount); +} + +TEST(UnityCommandOptions, OptionSelectRepeatTestsSpecificCount) +{ + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(3, repeat)); + TEST_ASSERT_EQUAL(99, UnityFixture.RepeatCount); +} + +static const char* multiple[] = { + "testrunner.exe", + "-v", + "-g", "groupname", + "-n", "testname", + "-r", "98" +}; + +TEST(UnityCommandOptions, MultipleOptions) +{ + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(8, multiple)); + TEST_ASSERT_EQUAL(1, UnityFixture.Verbose); + STRCMP_EQUAL("groupname", UnityFixture.GroupFilter); + STRCMP_EQUAL("testname", UnityFixture.NameFilter); + TEST_ASSERT_EQUAL(98, UnityFixture.RepeatCount); +} + +static const char* dashRNotLast[] = { + "testrunner.exe", + "-v", + "-g", "gggg", + "-r", + "-n", "tttt", +}; + +TEST(UnityCommandOptions, MultipleOptionsDashRNotLastAndNoValueSpecified) +{ + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(7, dashRNotLast)); + TEST_ASSERT_EQUAL(1, UnityFixture.Verbose); + STRCMP_EQUAL("gggg", UnityFixture.GroupFilter); + STRCMP_EQUAL("tttt", UnityFixture.NameFilter); + TEST_ASSERT_EQUAL(2, UnityFixture.RepeatCount); +} + +static const char* unknownCommand[] = { + "testrunner.exe", + "-v", + "-g", "groupname", + "-n", "testname", + "-r", "98", + "-z" +}; +TEST(UnityCommandOptions, UnknownCommandIsIgnored) +{ + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(9, unknownCommand)); + TEST_ASSERT_EQUAL(1, UnityFixture.Verbose); + STRCMP_EQUAL("groupname", UnityFixture.GroupFilter); + STRCMP_EQUAL("testname", UnityFixture.NameFilter); + TEST_ASSERT_EQUAL(98, UnityFixture.RepeatCount); +} + +TEST(UnityCommandOptions, GroupOrNameFilterWithoutStringFails) +{ + TEST_ASSERT_EQUAL(1, UnityGetCommandLineOptions(3, unknownCommand)); + TEST_ASSERT_EQUAL(1, UnityGetCommandLineOptions(5, unknownCommand)); + TEST_ASSERT_EQUAL(1, UnityMain(3, unknownCommand, NULL)); +} + +TEST(UnityCommandOptions, GroupFilterReallyFilters) +{ + UNITY_UINT saved = Unity.NumberOfTests; + TEST_ASSERT_EQUAL(0, UnityGetCommandLineOptions(4, unknownCommand)); + UnityIgnoreTest(NULL, "non-matching", NULL); + TEST_ASSERT_EQUAL(saved, Unity.NumberOfTests); +} + +IGNORE_TEST(UnityCommandOptions, TestShouldBeIgnored) +{ + TEST_FAIL_MESSAGE("This test should not run!"); +} diff --git a/lib/Unity/extras/fixture/test/unity_fixture_TestRunner.c b/lib/Unity/extras/fixture/test/unity_fixture_TestRunner.c new file mode 100644 index 0000000..cecdcc0 --- /dev/null +++ b/lib/Unity/extras/fixture/test/unity_fixture_TestRunner.c @@ -0,0 +1,35 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity_fixture.h" + +TEST_GROUP_RUNNER(UnityFixture) +{ + RUN_TEST_CASE(UnityFixture, PointerSetting); + RUN_TEST_CASE(UnityFixture, PointerSet); + RUN_TEST_CASE(UnityFixture, FreeNULLSafety); + RUN_TEST_CASE(UnityFixture, ConcludeTestIncrementsFailCount); +} + +TEST_GROUP_RUNNER(UnityCommandOptions) +{ + RUN_TEST_CASE(UnityCommandOptions, DefaultOptions); + RUN_TEST_CASE(UnityCommandOptions, OptionVerbose); + RUN_TEST_CASE(UnityCommandOptions, OptionDryRun); + RUN_TEST_CASE(UnityCommandOptions, OptionSelectTestByGroup); + RUN_TEST_CASE(UnityCommandOptions, OptionSelectTestByName); + RUN_TEST_CASE(UnityCommandOptions, OptionSelectTestByGroupExact); + RUN_TEST_CASE(UnityCommandOptions, OptionSelectTestByNameExact); + RUN_TEST_CASE(UnityCommandOptions, OptionSelectRepeatTestsDefaultCount); + RUN_TEST_CASE(UnityCommandOptions, OptionSelectRepeatTestsSpecificCount); + RUN_TEST_CASE(UnityCommandOptions, MultipleOptions); + RUN_TEST_CASE(UnityCommandOptions, MultipleOptionsDashRNotLastAndNoValueSpecified); + RUN_TEST_CASE(UnityCommandOptions, UnknownCommandIsIgnored); + RUN_TEST_CASE(UnityCommandOptions, GroupOrNameFilterWithoutStringFails); + RUN_TEST_CASE(UnityCommandOptions, GroupFilterReallyFilters); + RUN_TEST_CASE(UnityCommandOptions, TestShouldBeIgnored); +} diff --git a/lib/Unity/extras/memory/readme.md b/lib/Unity/extras/memory/readme.md new file mode 100644 index 0000000..ea8b9cf --- /dev/null +++ b/lib/Unity/extras/memory/readme.md @@ -0,0 +1,42 @@ +# Unity Memory + +This Framework is an optional add-on to Unity. +By including unity.h and then unity_memory.h, you have the added ability to track malloc and free calls. +This addon requires that the stdlib functions be overridden by its own defines. +These defines will still malloc / realloc / free etc, but will also track the calls in order to ensure that you don't have any memory leaks in your programs. + +Note that this is only useful in situations where a unit is in charge of both the allocation and deallocation of memory. +When it is not symmetric, unit testing can report a number of false failures. +A more advanced runtime tool is required to track complete system memory handling. + +## Module API + +### `UnityMalloc_StartTest` and `UnityMalloc_EndTest` + +These must be called at the beginning and end of each test. +For simplicity, they can be added to `setUp` and `tearDown` in order to do their job. +When using the test runner generator scripts, these will be automatically added to the runner whenever unity_memory.h is included. + +### `UnityMalloc_MakeMallocFailAfterCount` + +This can be called from the tests themselves. +Passing this function a number will force the reference counter to start keeping track of malloc calls. +During that test, if the number of malloc calls exceeds the number given, malloc will immediately start returning `NULL`. +This allows you to test error conditions. +Think of it as a simplified mock. + +## Configuration + +### `UNITY_MALLOC` and `UNITY_FREE` + +By default, this module tries to use the real stdlib `malloc` and `free` internally. +If you would prefer it to use something else, like FreeRTOS's `pvPortMalloc` and `pvPortFree`, then you can use these defines to make it so. + +### `UNITY_EXCLUDE_STDLIB_MALLOC` + +If you would like this library to ignore stdlib or other heap engines completely, and manage the memory on its own, then define this. All memory will be handled internally (and at likely lower overhead). +Note that this is not a very featureful memory manager, but is sufficient for most testing purposes. + +### `UNITY_INTERNAL_HEAP_SIZE_BYTES` + +When using the built-in memory manager (see `UNITY_EXCLUDE_STDLIB_MALLOC`) this define allows you to set the heap size this library will use to manage the memory. diff --git a/lib/Unity/extras/memory/src/meson.build b/lib/Unity/extras/memory/src/meson.build new file mode 100644 index 0000000..650ba32 --- /dev/null +++ b/lib/Unity/extras/memory/src/meson.build @@ -0,0 +1,9 @@ +unity_inc += include_directories('.') +unity_src += files('unity_memory.c') + +if not meson.is_subproject() + install_headers( + 'unity_memory.h', + subdir: meson.project_name() + ) +endif diff --git a/lib/Unity/extras/memory/src/unity_memory.c b/lib/Unity/extras/memory/src/unity_memory.c new file mode 100644 index 0000000..c71f77f --- /dev/null +++ b/lib/Unity/extras/memory/src/unity_memory.c @@ -0,0 +1,203 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#include "unity_memory.h" +#include + +#define MALLOC_DONT_FAIL -1 +static int malloc_count; +static int malloc_fail_countdown = MALLOC_DONT_FAIL; + +void UnityMalloc_StartTest(void) +{ + malloc_count = 0; + malloc_fail_countdown = MALLOC_DONT_FAIL; +} + +void UnityMalloc_EndTest(void) +{ + malloc_fail_countdown = MALLOC_DONT_FAIL; + if (malloc_count != 0) + { + UNITY_TEST_FAIL(Unity.CurrentTestLineNumber, "This test leaks!"); + } +} + +void UnityMalloc_MakeMallocFailAfterCount(int countdown) +{ + malloc_fail_countdown = countdown; +} + +/* These definitions are always included from unity_fixture_malloc_overrides.h */ +/* We undef to use them or avoid conflict with per the C standard */ +#undef malloc +#undef free +#undef calloc +#undef realloc + +#ifdef UNITY_EXCLUDE_STDLIB_MALLOC +static unsigned char unity_heap[UNITY_INTERNAL_HEAP_SIZE_BYTES]; +static size_t heap_index; +#else +#include +#endif + +typedef struct GuardBytes +{ + size_t size; + size_t guard_space; +} Guard; + +#define UNITY_MALLOC_ALIGNMENT (UNITY_POINTER_WIDTH / 8) +static const char end[] = "END"; + +static size_t unity_size_round_up(size_t size) +{ + size_t rounded_size; + + rounded_size = ((size + UNITY_MALLOC_ALIGNMENT - 1) / UNITY_MALLOC_ALIGNMENT) * UNITY_MALLOC_ALIGNMENT; + + return rounded_size; +} + +void* unity_malloc(size_t size) +{ + char* mem; + Guard* guard; + size_t total_size; + + total_size = sizeof(Guard) + unity_size_round_up(size + sizeof(end)); + + if (malloc_fail_countdown != MALLOC_DONT_FAIL) + { + if (malloc_fail_countdown == 0) + return NULL; + malloc_fail_countdown--; + } + + if (size == 0) return NULL; +#ifdef UNITY_EXCLUDE_STDLIB_MALLOC + if (heap_index + total_size > UNITY_INTERNAL_HEAP_SIZE_BYTES) + { + guard = NULL; + } + else + { + /* We know we can get away with this cast because we aligned memory already */ + guard = (Guard*)(void*)(&unity_heap[heap_index]); + heap_index += total_size; + } +#else + guard = (Guard*)UNITY_MALLOC(total_size); +#endif + if (guard == NULL) return NULL; + malloc_count++; + guard->size = size; + guard->guard_space = 0; + mem = (char*)&(guard[1]); + memcpy(&mem[size], end, sizeof(end)); + + return (void*)mem; +} + +static int isOverrun(void* mem) +{ + Guard* guard = (Guard*)mem; + char* memAsChar = (char*)mem; + guard--; + + return guard->guard_space != 0 || strcmp(&memAsChar[guard->size], end) != 0; +} + +static void release_memory(void* mem) +{ + Guard* guard = (Guard*)mem; + guard--; + + malloc_count--; +#ifdef UNITY_EXCLUDE_STDLIB_MALLOC + { + size_t block_size; + + block_size = unity_size_round_up(guard->size + sizeof(end)); + + if (mem == unity_heap + heap_index - block_size) + { + heap_index -= (sizeof(Guard) + block_size); + } + } +#else + UNITY_FREE(guard); +#endif +} + +void unity_free(void* mem) +{ + int overrun; + + if (mem == NULL) + { + return; + } + + overrun = isOverrun(mem); + release_memory(mem); + if (overrun) + { + UNITY_TEST_FAIL(Unity.CurrentTestLineNumber, "Buffer overrun detected during free()"); + } +} + +void* unity_calloc(size_t num, size_t size) +{ + void* mem = unity_malloc(num * size); + if (mem == NULL) return NULL; + memset(mem, 0, num * size); + return mem; +} + +void* unity_realloc(void* oldMem, size_t size) +{ + Guard* guard = (Guard*)oldMem; + void* newMem; + + if (oldMem == NULL) return unity_malloc(size); + + guard--; + if (isOverrun(oldMem)) + { + release_memory(oldMem); + UNITY_TEST_FAIL(Unity.CurrentTestLineNumber, "Buffer overrun detected during realloc()"); + } + + if (size == 0) + { + release_memory(oldMem); + return NULL; + } + + if (guard->size >= size) return oldMem; + +#ifdef UNITY_EXCLUDE_STDLIB_MALLOC /* Optimization if memory is expandable */ + { + size_t old_total_size = unity_size_round_up(guard->size + sizeof(end)); + + if ((oldMem == unity_heap + heap_index - old_total_size) && + ((heap_index - old_total_size + unity_size_round_up(size + sizeof(end))) <= UNITY_INTERNAL_HEAP_SIZE_BYTES)) + { + release_memory(oldMem); /* Not thread-safe, like unity_heap generally */ + return unity_malloc(size); /* No memcpy since data is in place */ + } + } +#endif + newMem = unity_malloc(size); + if (newMem == NULL) return NULL; /* Do not release old memory */ + memcpy(newMem, oldMem, guard->size); + release_memory(oldMem); + return newMem; +} diff --git a/lib/Unity/extras/memory/src/unity_memory.h b/lib/Unity/extras/memory/src/unity_memory.h new file mode 100644 index 0000000..7351be3 --- /dev/null +++ b/lib/Unity/extras/memory/src/unity_memory.h @@ -0,0 +1,61 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef UNITY_MEMORY_OVERRIDES_H_ +#define UNITY_MEMORY_OVERRIDES_H_ + +#ifdef __cplusplus +extern "C" +{ +#endif + +#include + +#ifdef UNITY_EXCLUDE_STDLIB_MALLOC +/* Define this macro to remove the use of stdlib.h, malloc, and free. + * Many embedded systems do not have a heap or malloc/free by default. + * This internal unity_malloc() provides allocated memory deterministically from + * the end of an array only, unity_free() only releases from end-of-array, + * blocks are not coalesced, and memory not freed in LIFO order is stranded. */ + #ifndef UNITY_INTERNAL_HEAP_SIZE_BYTES + #define UNITY_INTERNAL_HEAP_SIZE_BYTES 256 + #endif +#endif + +/* These functions are used by Unity to allocate and release memory + * on the heap and can be overridden with platform-specific implementations. + * For example, when using FreeRTOS UNITY_MALLOC becomes pvPortMalloc() + * and UNITY_FREE becomes vPortFree(). */ +#if !defined(UNITY_MALLOC) || !defined(UNITY_FREE) + #include + #define UNITY_MALLOC(size) malloc(size) + #define UNITY_FREE(ptr) free(ptr) +#else + extern void* UNITY_MALLOC(size_t size); + extern void UNITY_FREE(void* ptr); +#endif + +#define malloc unity_malloc +#define calloc unity_calloc +#define realloc unity_realloc +#define free unity_free + +void* unity_malloc(size_t size); +void* unity_calloc(size_t num, size_t size); +void* unity_realloc(void * oldMem, size_t size); +void unity_free(void * mem); + +/* You must compile with malloc replacement, as defined in unity_fixture_malloc_overrides.h */ +void UnityMalloc_StartTest(void); +void UnityMalloc_EndTest(void); +void UnityMalloc_MakeMallocFailAfterCount(int countdown); + +#ifdef __cplusplus +} +#endif + +#endif diff --git a/lib/Unity/extras/memory/test/unity_memory_Test.c b/lib/Unity/extras/memory/test/unity_memory_Test.c new file mode 100644 index 0000000..1e65410 --- /dev/null +++ b/lib/Unity/extras/memory/test/unity_memory_Test.c @@ -0,0 +1,326 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#include "unity_memory.h" +#include "unity_output_Spy.h" +#include +#include + +/* This test module includes the following tests: */ + +void test_ForceMallocFail(void); +void test_ReallocSmallerIsUnchanged(void); +void test_ReallocSameIsUnchanged(void); +void test_ReallocLargerNeeded(void); +void test_ReallocNullPointerIsLikeMalloc(void); +void test_ReallocSizeZeroFreesMemAndReturnsNullPointer(void); +void test_CallocFillsWithZero(void); +void test_FreeNULLSafety(void); +void test_DetectsLeak(void); +void test_BufferOverrunFoundDuringFree(void); +void test_BufferOverrunFoundDuringRealloc(void); +void test_BufferGuardWriteFoundDuringFree(void); +void test_BufferGuardWriteFoundDuringRealloc(void); +void test_MallocPastBufferFails(void); +void test_CallocPastBufferFails(void); +void test_MallocThenReallocGrowsMemoryInPlace(void); +void test_ReallocFailDoesNotFreeMem(void); + +/* It makes use of the following features */ +void setUp(void); +void tearDown(void); + +/* Let's Go! */ +void setUp(void) +{ +#ifdef UNITY_EXCLUDE_STDLIB_MALLOC + UnityOutputCharSpy_Create(200); +#else + UnityOutputCharSpy_Create(1000); +#endif + UnityMalloc_StartTest(); +} + +void tearDown(void) +{ + UnityMalloc_EndTest(); + UnityOutputCharSpy_Destroy(); +} + +void test_ForceMallocFail(void) +{ + void* m; + void* mfails; + UnityMalloc_MakeMallocFailAfterCount(1); + m = malloc(10); + TEST_ASSERT_NOT_NULL(m); + mfails = malloc(10); + TEST_ASSERT_EQUAL_PTR(0, mfails); + free(m); +} + +void test_ReallocSmallerIsUnchanged(void) +{ + void* m1 = malloc(10); + void* m2 = realloc(m1, 5); + TEST_ASSERT_NOT_NULL(m1); + TEST_ASSERT_EQUAL_PTR(m1, m2); + free(m2); +} + +void test_ReallocSameIsUnchanged(void) +{ + void* m1 = malloc(10); + void* m2 = realloc(m1, 10); + TEST_ASSERT_NOT_NULL(m1); + TEST_ASSERT_EQUAL_PTR(m1, m2); + free(m2); +} + +void test_ReallocLargerNeeded(void) +{ + void* m2; + void* m1 = malloc(10); + TEST_ASSERT_NOT_NULL(m1); + strcpy((char*)m1, "123456789"); + m2 = realloc(m1, 15); + TEST_ASSERT_EQUAL_STRING("123456789", m2); + free(m2); +} + +void test_ReallocNullPointerIsLikeMalloc(void) +{ + void* m = realloc(0, 15); + TEST_ASSERT_NOT_NULL(m); + free(m); +} + +void test_ReallocSizeZeroFreesMemAndReturnsNullPointer(void) +{ + void* m1 = malloc(10); + void* m2 = realloc(m1, 0); + TEST_ASSERT_EQUAL_PTR(0, m2); +} + +void test_CallocFillsWithZero(void) +{ + void* m = calloc(3, sizeof(char)); + char* s = (char*)m; + TEST_ASSERT_NOT_NULL(m); + TEST_ASSERT_EQUAL_HEX8(0, s[0]); + TEST_ASSERT_EQUAL_HEX8(0, s[1]); + TEST_ASSERT_EQUAL_HEX8(0, s[2]); + free(m); +} + +void test_FreeNULLSafety(void) +{ + free(NULL); +} + +/*------------------------------------------------------------ */ + +#define EXPECT_ABORT_BEGIN \ + { \ + jmp_buf TestAbortFrame; \ + memcpy(TestAbortFrame, Unity.AbortFrame, sizeof(jmp_buf)); \ + if (TEST_PROTECT()) \ + { + +#define EXPECT_ABORT_END \ + } \ + memcpy(Unity.AbortFrame, TestAbortFrame, sizeof(jmp_buf)); \ + } + +/* This tricky set of defines lets us see if we are using the Spy, returns 1 if true */ +#ifdef __STDC_VERSION__ + +#ifdef UNITY_SUPPORT_VARIADIC_MACROS +#define USING_SPY_AS(a) EXPAND_AND_USE_2ND(ASSIGN_VALUE(a), 0) +#define ASSIGN_VALUE(a) VAL_##a +#define VAL_UnityOutputCharSpy_OutputChar 0, 1 +#define EXPAND_AND_USE_2ND(a, b) SECOND_PARAM(a, b, throwaway) +#define SECOND_PARAM(a, b, ...) b +#if USING_SPY_AS(UNITY_OUTPUT_CHAR) + #define USING_OUTPUT_SPY /* UNITY_OUTPUT_CHAR = UnityOutputCharSpy_OutputChar */ +#endif +#endif /* UNITY_SUPPORT_VARIADIC_MACROS */ + +#else /* __STDC_VERSION__ else */ + +#define UnityOutputCharSpy_OutputChar 42 +#if UNITY_OUTPUT_CHAR == UnityOutputCharSpy_OutputChar /* Works if no -Wundef -Werror */ + #define USING_OUTPUT_SPY +#endif +#undef UnityOutputCharSpy_OutputChar + +#endif /* __STDC_VERSION__ */ + +void test_DetectsLeak(void) +{ +#ifdef USING_OUTPUT_SPY + void* m = malloc(10); + TEST_ASSERT_NOT_NULL(m); + UnityOutputCharSpy_Enable(1); + EXPECT_ABORT_BEGIN + UnityMalloc_EndTest(); + EXPECT_ABORT_END + UnityOutputCharSpy_Enable(0); + Unity.CurrentTestFailed = 0; + TEST_ASSERT_NOT_NULL(strstr(UnityOutputCharSpy_Get(), "This test leaks!")); + free(m); +#else + TEST_IGNORE_MESSAGE("Enable USING_OUTPUT_SPY To Run This Test"); +#endif +} + +void test_BufferOverrunFoundDuringFree(void) +{ +#ifdef USING_OUTPUT_SPY + void* m = malloc(10); + char* s = (char*)m; + TEST_ASSERT_NOT_NULL(m); + s[10] = (char)0xFF; + UnityOutputCharSpy_Enable(1); + EXPECT_ABORT_BEGIN + free(m); + EXPECT_ABORT_END + UnityOutputCharSpy_Enable(0); + Unity.CurrentTestFailed = 0; + TEST_ASSERT_NOT_NULL(strstr(UnityOutputCharSpy_Get(), "Buffer overrun detected during free()")); +#else + TEST_IGNORE_MESSAGE("Enable USING_OUTPUT_SPY To Run This Test"); +#endif +} + +void test_BufferOverrunFoundDuringRealloc(void) +{ +#ifdef USING_OUTPUT_SPY + void* m = malloc(10); + char* s = (char*)m; + TEST_ASSERT_NOT_NULL(m); + s[10] = (char)0xFF; + UnityOutputCharSpy_Enable(1); + EXPECT_ABORT_BEGIN + m = realloc(m, 100); + EXPECT_ABORT_END + UnityOutputCharSpy_Enable(0); + Unity.CurrentTestFailed = 0; + TEST_ASSERT_NOT_NULL(strstr(UnityOutputCharSpy_Get(), "Buffer overrun detected during realloc()")); +#else + TEST_IGNORE_MESSAGE("Enable USING_OUTPUT_SPY To Run This Test"); +#endif +} + +void test_BufferGuardWriteFoundDuringFree(void) +{ +#ifdef USING_OUTPUT_SPY + void* m = malloc(10); + char* s = (char*)m; + TEST_ASSERT_NOT_NULL(m); + s[-1] = (char)0x00; /* Will not detect 0 */ + s[-2] = (char)0x01; + UnityOutputCharSpy_Enable(1); + EXPECT_ABORT_BEGIN + free(m); + EXPECT_ABORT_END + UnityOutputCharSpy_Enable(0); + Unity.CurrentTestFailed = 0; + TEST_ASSERT_NOT_NULL(strstr(UnityOutputCharSpy_Get(), "Buffer overrun detected during free()")); +#else + TEST_IGNORE_MESSAGE("Enable USING_OUTPUT_SPY To Run This Test"); +#endif +} + +void test_BufferGuardWriteFoundDuringRealloc(void) +{ +#ifdef USING_OUTPUT_SPY + void* m = malloc(10); + char* s = (char*)m; + TEST_ASSERT_NOT_NULL(m); + s[-1] = (char)0x0A; + UnityOutputCharSpy_Enable(1); + EXPECT_ABORT_BEGIN + m = realloc(m, 100); + EXPECT_ABORT_END + UnityOutputCharSpy_Enable(0); + Unity.CurrentTestFailed = 0; + TEST_ASSERT_NOT_NULL(strstr(UnityOutputCharSpy_Get(), "Buffer overrun detected during realloc()")); +#else + TEST_IGNORE_MESSAGE("Enable USING_OUTPUT_SPY To Run This Test"); +#endif +} + +/*------------------------------------------------------------ */ + +#define TEST_ASSERT_MEMORY_ALL_FREE_LIFO_ORDER(first_mem_ptr, ptr) \ + ptr = malloc(10); free(ptr); \ + TEST_ASSERT_EQUAL_PTR_MESSAGE(first_mem_ptr, ptr, "Memory was stranded, free in LIFO order"); + +void test_MallocPastBufferFails(void) +{ +#ifdef UNITY_EXCLUDE_STDLIB_MALLOC + void* m = malloc(UNITY_INTERNAL_HEAP_SIZE_BYTES/2 + 1); + void* n = malloc(UNITY_INTERNAL_HEAP_SIZE_BYTES/2); + free(m); + TEST_ASSERT_NOT_NULL(m); + TEST_ASSERT_NULL(n); + TEST_ASSERT_MEMORY_ALL_FREE_LIFO_ORDER(m, n); +#else + TEST_IGNORE_MESSAGE("Enable UNITY_EXCLUDE_STDLIB_MALLOC to Run This Test"); +#endif +} + +void test_CallocPastBufferFails(void) +{ +#ifdef UNITY_EXCLUDE_STDLIB_MALLOC + void* m = calloc(1, UNITY_INTERNAL_HEAP_SIZE_BYTES/2 + 1); + void* n = calloc(1, UNITY_INTERNAL_HEAP_SIZE_BYTES/2); + free(m); + TEST_ASSERT_NOT_NULL(m); + TEST_ASSERT_NULL(n); + TEST_ASSERT_MEMORY_ALL_FREE_LIFO_ORDER(m, n); +#else + TEST_IGNORE_MESSAGE("Enable UNITY_EXCLUDE_STDLIB_MALLOC to Run This Test"); +#endif +} + +void test_MallocThenReallocGrowsMemoryInPlace(void) +{ +#ifdef UNITY_EXCLUDE_STDLIB_MALLOC + void* m = malloc(UNITY_INTERNAL_HEAP_SIZE_BYTES/2 + 1); + void* n = realloc(m, UNITY_INTERNAL_HEAP_SIZE_BYTES/2 + 9); + free(n); + TEST_ASSERT_NOT_NULL(m); + TEST_ASSERT_EQUAL(m, n); + TEST_ASSERT_MEMORY_ALL_FREE_LIFO_ORDER(m, n); +#else + TEST_IGNORE_MESSAGE("Enable UNITY_EXCLUDE_STDLIB_MALLOC to Run This Test"); +#endif +} + +void test_ReallocFailDoesNotFreeMem(void) +{ +#ifdef UNITY_EXCLUDE_STDLIB_MALLOC + void* m = malloc(UNITY_INTERNAL_HEAP_SIZE_BYTES/2); + void* n1 = malloc(10); + void* out_of_mem = realloc(n1, UNITY_INTERNAL_HEAP_SIZE_BYTES/2 + 1); + void* n2 = malloc(10); + + free(n2); + if (out_of_mem == NULL) free(n1); + free(m); + + TEST_ASSERT_NOT_NULL(m); /* Got a real memory location */ + TEST_ASSERT_NULL(out_of_mem); /* The realloc should have failed */ + TEST_ASSERT_NOT_EQUAL(n2, n1); /* If n1 != n2 then realloc did not free n1 */ + TEST_ASSERT_MEMORY_ALL_FREE_LIFO_ORDER(m, n2); +#else + TEST_IGNORE_MESSAGE("Enable UNITY_EXCLUDE_STDLIB_MALLOC to Run This Test"); +#endif +} diff --git a/lib/Unity/extras/memory/test/unity_memory_TestRunner.c b/lib/Unity/extras/memory/test/unity_memory_TestRunner.c new file mode 100644 index 0000000..9fe2ead --- /dev/null +++ b/lib/Unity/extras/memory/test/unity_memory_TestRunner.c @@ -0,0 +1,50 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#include "unity_memory.h" + +extern void test_ForceMallocFail(void); +extern void test_ReallocSmallerIsUnchanged(void); +extern void test_ReallocSameIsUnchanged(void); +extern void test_ReallocLargerNeeded(void); +extern void test_ReallocNullPointerIsLikeMalloc(void); +extern void test_ReallocSizeZeroFreesMemAndReturnsNullPointer(void); +extern void test_CallocFillsWithZero(void); +extern void test_FreeNULLSafety(void); +extern void test_DetectsLeak(void); +extern void test_BufferOverrunFoundDuringFree(void); +extern void test_BufferOverrunFoundDuringRealloc(void); +extern void test_BufferGuardWriteFoundDuringFree(void); +extern void test_BufferGuardWriteFoundDuringRealloc(void); +extern void test_MallocPastBufferFails(void); +extern void test_CallocPastBufferFails(void); +extern void test_MallocThenReallocGrowsMemoryInPlace(void); +extern void test_ReallocFailDoesNotFreeMem(void); + +int main(void) +{ + UnityBegin("unity_memory_Test.c"); + RUN_TEST(test_ForceMallocFail); + RUN_TEST(test_ReallocSmallerIsUnchanged); + RUN_TEST(test_ReallocSameIsUnchanged); + RUN_TEST(test_ReallocLargerNeeded); + RUN_TEST(test_ReallocNullPointerIsLikeMalloc); + RUN_TEST(test_ReallocSizeZeroFreesMemAndReturnsNullPointer); + RUN_TEST(test_CallocFillsWithZero); + RUN_TEST(test_FreeNULLSafety); + RUN_TEST(test_DetectsLeak); + RUN_TEST(test_BufferOverrunFoundDuringFree); + RUN_TEST(test_BufferOverrunFoundDuringRealloc); + RUN_TEST(test_BufferGuardWriteFoundDuringFree); + RUN_TEST(test_BufferGuardWriteFoundDuringRealloc); + RUN_TEST(test_MallocPastBufferFails); + RUN_TEST(test_CallocPastBufferFails); + RUN_TEST(test_MallocThenReallocGrowsMemoryInPlace); + RUN_TEST(test_ReallocFailDoesNotFreeMem); + return UnityEnd(); +} diff --git a/lib/Unity/extras/memory/test/unity_output_Spy.c b/lib/Unity/extras/memory/test/unity_output_Spy.c new file mode 100644 index 0000000..e5b6db0 --- /dev/null +++ b/lib/Unity/extras/memory/test/unity_output_Spy.c @@ -0,0 +1,57 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#include "unity_output_Spy.h" + +#include +#include +#include + +static int size; +static int count; +static char* buffer; +static int spy_enable; + +void UnityOutputCharSpy_Create(int s) +{ + size = (s > 0) ? s : 0; + count = 0; + spy_enable = 0; + buffer = malloc((size_t)size); + TEST_ASSERT_NOT_NULL_MESSAGE(buffer, "Internal malloc failed in Spy Create():" __FILE__); + memset(buffer, 0, (size_t)size); +} + +void UnityOutputCharSpy_Destroy(void) +{ + size = 0; + free(buffer); +} + +void UnityOutputCharSpy_OutputChar(int c) +{ + if (spy_enable) + { + if (count < (size-1)) + buffer[count++] = (char)c; + } + else + { + putchar(c); + } +} + +const char * UnityOutputCharSpy_Get(void) +{ + return buffer; +} + +void UnityOutputCharSpy_Enable(int enable) +{ + spy_enable = enable; +} diff --git a/lib/Unity/extras/memory/test/unity_output_Spy.h b/lib/Unity/extras/memory/test/unity_output_Spy.h new file mode 100644 index 0000000..8c2dd31 --- /dev/null +++ b/lib/Unity/extras/memory/test/unity_output_Spy.h @@ -0,0 +1,17 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef UNITY_OUTPUT_SPY_H +#define UNITY_OUTPUT_SPY_H + +void UnityOutputCharSpy_Create(int s); +void UnityOutputCharSpy_Destroy(void); +void UnityOutputCharSpy_OutputChar(int c); +const char * UnityOutputCharSpy_Get(void); +void UnityOutputCharSpy_Enable(int enable); + +#endif diff --git a/lib/Unity/library.json b/lib/Unity/library.json new file mode 100644 index 0000000..839b5ab --- /dev/null +++ b/lib/Unity/library.json @@ -0,0 +1,25 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-24 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +{ + "name": "Unity", + "version": "2.6.0", + "keywords": "unit-testing, testing, tdd, testing-framework", + "description": "Simple Unit Testing for C", + "homepage": "http://www.throwtheswitch.org/unity", + "license": "MIT", + "repository": { + "type": "git", + "url": "https://github.com/ThrowTheSwitch/Unity.git" + }, + "frameworks": "*", + "platforms": "*", + "headers": "unity.h", + "build": { + "extraScript": "platformio-build.py" + } +} diff --git a/lib/Unity/meson.build b/lib/Unity/meson.build new file mode 100644 index 0000000..f510d85 --- /dev/null +++ b/lib/Unity/meson.build @@ -0,0 +1,83 @@ +# +# build script written by : Michael Gene Brockus. +# github repo author: Mike Karlesky, Mark VanderVoord, Greg Williams. +# +# license: MIT +# +project('unity', 'c', + license: 'MIT', + + # Set project version to value extracted from unity.h header + version: run_command( + [ + 'auto/extract_version.py', + 'src/unity.h' + ], + check: true + ).stdout().strip(), + + meson_version: '>=0.47.0', + default_options: [ + 'werror=true', + 'c_std=c11' + ] +) + +build_fixture = get_option('extension_fixture') +build_memory = get_option('extension_memory') +support_double = get_option('support_double') +fixture_help_message = get_option('fixture_help_message') + +unity_args = [] +unity_src = [] +unity_inc = [] + +subdir('src') + +if build_fixture + subdir('extras/fixture/src') + if fixture_help_message != '' + unity_args += '-DUNITY_CUSTOM_HELP_MSG=' + fixture_help_message + endif +endif + +if build_memory.enabled() or (build_memory.auto() and build_fixture) + subdir('extras/memory/src') +else + unity_args += '-DUNITY_FIXTURE_NO_EXTRAS' +endif + +if support_double + unity_args += '-DUNITY_INCLUDE_DOUBLE' +endif + +unity_lib = static_library(meson.project_name(), + sources: unity_src, + c_args: unity_args, + include_directories: unity_inc, + install: not meson.is_subproject(), +) + +unity_dep = declare_dependency( + link_with: unity_lib, + include_directories: unity_inc +) + +# Generate pkg-config file. +if not meson.is_subproject() + pkg = import('pkgconfig') + pkg.generate( + unity_lib, + version: meson.project_version(), + subdirs: 'unity', + extra_cflags: unity_args, + ) +endif + +# Create a generator that can be used by consumers of our build system to generate +# test runners. +gen_test_runner = generator( + find_program('auto/generate_test_runner.rb'), + output: '@BASENAME@_Runner.c', + arguments: ['@INPUT@', '@OUTPUT@'] +) diff --git a/lib/Unity/meson_options.txt b/lib/Unity/meson_options.txt new file mode 100644 index 0000000..264480c --- /dev/null +++ b/lib/Unity/meson_options.txt @@ -0,0 +1,4 @@ +option('extension_fixture', type: 'boolean', value: false, description: 'Whether to enable the fixture extension.') +option('extension_memory', type: 'feature', value: 'auto', description: 'Whether to enable the memory extension. By default this is automatically enabled when extension_fixture is enabled.') +option('support_double', type: 'boolean', value: false, description: 'Whether to enable double precision floating point assertions.') +option('fixture_help_message', type: 'string', description: 'If the fixture extension is enabled, this allows a custom help message to be defined.') diff --git a/lib/Unity/platformio-build.py b/lib/Unity/platformio-build.py new file mode 100644 index 0000000..51251dd --- /dev/null +++ b/lib/Unity/platformio-build.py @@ -0,0 +1,24 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-24 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +import os + +Import("env") + +env.Append(CPPDEFINES=["UNITY_INCLUDE_CONFIG_H"]) + +# import "unity_config.h" folder to the library builder +try: + Import("projenv") + + projenv.Append(CPPDEFINES=["UNITY_INCLUDE_CONFIG_H"]) + for p in projenv["CPPPATH"]: + p = projenv.subst(p) + if os.path.isfile(os.path.join(p, "unity_config.h")): + env.Prepend(CPPPATH=[p]) +except: + pass diff --git a/lib/Unity/src/meson.build b/lib/Unity/src/meson.build new file mode 100644 index 0000000..5365227 --- /dev/null +++ b/lib/Unity/src/meson.build @@ -0,0 +1,17 @@ +# +# build script written by : Michael Gene Brockus. +# github repo author: Mike Karlesky, Mark VanderVoord, Greg Williams. +# +# license: MIT +# + +unity_inc += include_directories('.') +unity_src += files('unity.c') + +if not meson.is_subproject() + install_headers( + 'unity.h', + 'unity_internals.h', + subdir: meson.project_name() + ) +endif diff --git a/lib/Unity/src/unity.c b/lib/Unity/src/unity.c new file mode 100644 index 0000000..4b1aea6 --- /dev/null +++ b/lib/Unity/src/unity.c @@ -0,0 +1,2626 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" + +#ifndef UNITY_PROGMEM +#define UNITY_PROGMEM +#endif + +/* If omitted from header, declare overrideable prototypes here so they're ready for use */ +#ifdef UNITY_OMIT_OUTPUT_CHAR_HEADER_DECLARATION +void UNITY_OUTPUT_CHAR(int); +#endif + +/* Helpful macros for us to use here in Assert functions */ +#define UNITY_FAIL_AND_BAIL do { Unity.CurrentTestFailed = 1; UNITY_OUTPUT_FLUSH(); TEST_ABORT(); } while (0) +#define UNITY_IGNORE_AND_BAIL do { Unity.CurrentTestIgnored = 1; UNITY_OUTPUT_FLUSH(); TEST_ABORT(); } while (0) +#define RETURN_IF_FAIL_OR_IGNORE do { if (Unity.CurrentTestFailed || Unity.CurrentTestIgnored) { TEST_ABORT(); } } while (0) + +struct UNITY_STORAGE_T Unity; + +#ifdef UNITY_OUTPUT_COLOR +const char UNITY_PROGMEM UnityStrOk[] = "\033[42mOK\033[0m"; +const char UNITY_PROGMEM UnityStrPass[] = "\033[42mPASS\033[0m"; +const char UNITY_PROGMEM UnityStrFail[] = "\033[41mFAIL\033[0m"; +const char UNITY_PROGMEM UnityStrIgnore[] = "\033[43mIGNORE\033[0m"; +#else +const char UNITY_PROGMEM UnityStrOk[] = "OK"; +const char UNITY_PROGMEM UnityStrPass[] = "PASS"; +const char UNITY_PROGMEM UnityStrFail[] = "FAIL"; +const char UNITY_PROGMEM UnityStrIgnore[] = "IGNORE"; +#endif +static const char UNITY_PROGMEM UnityStrNull[] = "NULL"; +static const char UNITY_PROGMEM UnityStrSpacer[] = ". "; +static const char UNITY_PROGMEM UnityStrExpected[] = " Expected "; +static const char UNITY_PROGMEM UnityStrWas[] = " Was "; +static const char UNITY_PROGMEM UnityStrGt[] = " to be greater than "; +static const char UNITY_PROGMEM UnityStrLt[] = " to be less than "; +static const char UNITY_PROGMEM UnityStrOrEqual[] = "or equal to "; +static const char UNITY_PROGMEM UnityStrNotEqual[] = " to be not equal to "; +static const char UNITY_PROGMEM UnityStrElement[] = " Element "; +static const char UNITY_PROGMEM UnityStrByte[] = " Byte "; +static const char UNITY_PROGMEM UnityStrMemory[] = " Memory Mismatch."; +static const char UNITY_PROGMEM UnityStrDelta[] = " Values Not Within Delta "; +static const char UNITY_PROGMEM UnityStrPointless[] = " You Asked Me To Compare Nothing, Which Was Pointless."; +static const char UNITY_PROGMEM UnityStrNullPointerForExpected[] = " Expected pointer to be NULL"; +static const char UNITY_PROGMEM UnityStrNullPointerForActual[] = " Actual pointer was NULL"; +#ifndef UNITY_EXCLUDE_FLOAT +static const char UNITY_PROGMEM UnityStrNot[] = "Not "; +static const char UNITY_PROGMEM UnityStrInf[] = "Infinity"; +static const char UNITY_PROGMEM UnityStrNegInf[] = "Negative Infinity"; +static const char UNITY_PROGMEM UnityStrNaN[] = "NaN"; +static const char UNITY_PROGMEM UnityStrDet[] = "Determinate"; +static const char UNITY_PROGMEM UnityStrInvalidFloatTrait[] = "Invalid Float Trait"; +#endif +const char UNITY_PROGMEM UnityStrErrShorthand[] = "Unity Shorthand Support Disabled"; +const char UNITY_PROGMEM UnityStrErrFloat[] = "Unity Floating Point Disabled"; +const char UNITY_PROGMEM UnityStrErrDouble[] = "Unity Double Precision Disabled"; +const char UNITY_PROGMEM UnityStrErr64[] = "Unity 64-bit Support Disabled"; +const char UNITY_PROGMEM UnityStrErrDetailStack[] = "Unity Detail Stack Support Disabled"; +static const char UNITY_PROGMEM UnityStrBreaker[] = "-----------------------"; +static const char UNITY_PROGMEM UnityStrResultsTests[] = " Tests "; +static const char UNITY_PROGMEM UnityStrResultsFailures[] = " Failures "; +static const char UNITY_PROGMEM UnityStrResultsIgnored[] = " Ignored "; +#ifndef UNITY_EXCLUDE_DETAILS +#ifdef UNITY_DETAIL_STACK_SIZE +static const char* UNITY_PROGMEM UnityStrDetailLabels[] = UNITY_DETAIL_LABEL_NAMES; +static const UNITY_COUNTER_TYPE UNITY_PROGMEM UnityStrDetailLabelsCount = sizeof(UnityStrDetailLabels) / sizeof(const char*); +static const char UNITY_PROGMEM UnityStrErrDetailStackEmpty[] = " Detail Stack Empty"; +static const char UNITY_PROGMEM UnityStrErrDetailStackFull[] = " Detail Stack Full"; +static const char UNITY_PROGMEM UnityStrErrDetailStackLabel[] = " Detail Label Outside Of UNITY_DETAIL_LABEL_NAMES: "; +static const char UNITY_PROGMEM UnityStrErrDetailStackPop[] = " Detail Pop With Unexpected Arguments"; +#else +static const char UNITY_PROGMEM UnityStrDetail1Name[] = UNITY_DETAIL1_NAME " "; +static const char UNITY_PROGMEM UnityStrDetail2Name[] = " " UNITY_DETAIL2_NAME " "; +#endif +#endif +/*----------------------------------------------- + * Pretty Printers & Test Result Output Handlers + *-----------------------------------------------*/ + +/*-----------------------------------------------*/ +/* Local helper function to print characters. */ +static void UnityPrintChar(const char* pch) +{ + /* printable characters plus CR & LF are printed */ + if ((*pch <= 126) && (*pch >= 32)) + { + UNITY_OUTPUT_CHAR(*pch); + } + /* write escaped carriage returns */ + else if (*pch == 13) + { + UNITY_OUTPUT_CHAR('\\'); + UNITY_OUTPUT_CHAR('r'); + } + /* write escaped line feeds */ + else if (*pch == 10) + { + UNITY_OUTPUT_CHAR('\\'); + UNITY_OUTPUT_CHAR('n'); + } + /* unprintable characters are shown as codes */ + else + { + UNITY_OUTPUT_CHAR('\\'); + UNITY_OUTPUT_CHAR('x'); + UnityPrintNumberHex((UNITY_UINT)*pch, 2); + } +} + +/*-----------------------------------------------*/ +/* Local helper function to print ANSI escape strings e.g. "\033[42m". */ +#ifdef UNITY_OUTPUT_COLOR +static UNITY_UINT UnityPrintAnsiEscapeString(const char* string) +{ + const char* pch = string; + UNITY_UINT count = 0; + + while (*pch && (*pch != 'm')) + { + UNITY_OUTPUT_CHAR(*pch); + pch++; + count++; + } + UNITY_OUTPUT_CHAR('m'); + count++; + + return count; +} +#endif + +/*-----------------------------------------------*/ +void UnityPrint(const char* string) +{ + const char* pch = string; + + if (pch != NULL) + { + while (*pch) + { +#ifdef UNITY_OUTPUT_COLOR + /* print ANSI escape code */ + if ((*pch == 27) && (*(pch + 1) == '[')) + { + pch += UnityPrintAnsiEscapeString(pch); + continue; + } +#endif + UnityPrintChar(pch); + pch++; + } + } +} +/*-----------------------------------------------*/ +void UnityPrintLen(const char* string, const UNITY_UINT32 length) +{ + const char* pch = string; + + if (pch != NULL) + { + while (*pch && ((UNITY_UINT32)(pch - string) < length)) + { + /* printable characters plus CR & LF are printed */ + if ((*pch <= 126) && (*pch >= 32)) + { + UNITY_OUTPUT_CHAR(*pch); + } + /* write escaped carriage returns */ + else if (*pch == 13) + { + UNITY_OUTPUT_CHAR('\\'); + UNITY_OUTPUT_CHAR('r'); + } + /* write escaped line feeds */ + else if (*pch == 10) + { + UNITY_OUTPUT_CHAR('\\'); + UNITY_OUTPUT_CHAR('n'); + } + /* unprintable characters are shown as codes */ + else + { + UNITY_OUTPUT_CHAR('\\'); + UNITY_OUTPUT_CHAR('x'); + UnityPrintNumberHex((UNITY_UINT)*pch, 2); + } + pch++; + } + } +} + +/*-----------------------------------------------*/ +void UnityPrintIntNumberByStyle(const UNITY_INT number, const UNITY_DISPLAY_STYLE_T style) +{ + if ((style & UNITY_DISPLAY_RANGE_INT) == UNITY_DISPLAY_RANGE_INT) + { + if (style == UNITY_DISPLAY_STYLE_CHAR) + { + /* printable characters plus CR & LF are printed */ + UNITY_OUTPUT_CHAR('\''); + if ((number <= 126) && (number >= 32)) + { + UNITY_OUTPUT_CHAR((int)number); + } + /* write escaped carriage returns */ + else if (number == 13) + { + UNITY_OUTPUT_CHAR('\\'); + UNITY_OUTPUT_CHAR('r'); + } + /* write escaped line feeds */ + else if (number == 10) + { + UNITY_OUTPUT_CHAR('\\'); + UNITY_OUTPUT_CHAR('n'); + } + /* unprintable characters are shown as codes */ + else + { + UNITY_OUTPUT_CHAR('\\'); + UNITY_OUTPUT_CHAR('x'); + UnityPrintNumberHex((UNITY_UINT)number, 2); + } + UNITY_OUTPUT_CHAR('\''); + } + else + { + UnityPrintNumber(number); + } + } +} + +void UnityPrintUintNumberByStyle(const UNITY_UINT number, const UNITY_DISPLAY_STYLE_T style) +{ + if ((style & UNITY_DISPLAY_RANGE_UINT) == UNITY_DISPLAY_RANGE_UINT) + { + UnityPrintNumberUnsigned(number); + } + else + { + UNITY_OUTPUT_CHAR('0'); + UNITY_OUTPUT_CHAR('x'); + UnityPrintNumberHex((UNITY_UINT)number, (char)((style & 0xF) * 2)); + } +} + +/*-----------------------------------------------*/ +void UnityPrintNumber(const UNITY_INT number_to_print) +{ + UNITY_UINT number = (UNITY_UINT)number_to_print; + + if (number_to_print < 0) + { + /* A negative number, including MIN negative */ + UNITY_OUTPUT_CHAR('-'); + number = (~number) + 1; + } + UnityPrintNumberUnsigned(number); +} + +/*----------------------------------------------- + * basically do an itoa using as little ram as possible */ +void UnityPrintNumberUnsigned(const UNITY_UINT number) +{ + UNITY_UINT divisor = 1; + + /* figure out initial divisor */ + while (number / divisor > 9) + { + divisor *= 10; + } + + /* now mod and print, then divide divisor */ + do + { + UNITY_OUTPUT_CHAR((char)('0' + (number / divisor % 10))); + divisor /= 10; + } while (divisor > 0); +} + +/*-----------------------------------------------*/ +void UnityPrintNumberHex(const UNITY_UINT number, const char nibbles_to_print) +{ + int nibble; + char nibbles = nibbles_to_print; + + if ((unsigned)nibbles > UNITY_MAX_NIBBLES) + { + nibbles = UNITY_MAX_NIBBLES; + } + + while (nibbles > 0) + { + nibbles--; + nibble = (int)(number >> (nibbles * 4)) & 0x0F; + if (nibble <= 9) + { + UNITY_OUTPUT_CHAR((char)('0' + nibble)); + } + else + { + UNITY_OUTPUT_CHAR((char)('A' - 10 + nibble)); + } + } +} + +/*-----------------------------------------------*/ +void UnityPrintMask(const UNITY_UINT mask, const UNITY_UINT number) +{ + UNITY_UINT current_bit = (UNITY_UINT)1 << (UNITY_INT_WIDTH - 1); + UNITY_INT32 i; + + for (i = 0; i < UNITY_INT_WIDTH; i++) + { + if (current_bit & mask) + { + if (current_bit & number) + { + UNITY_OUTPUT_CHAR('1'); + } + else + { + UNITY_OUTPUT_CHAR('0'); + } + } + else + { + UNITY_OUTPUT_CHAR('X'); + } + current_bit = current_bit >> 1; + } +} + +/*-----------------------------------------------*/ +#ifndef UNITY_EXCLUDE_FLOAT_PRINT +/* + * This function prints a floating-point value in a format similar to + * printf("%.7g") on a single-precision machine or printf("%.9g") on a + * double-precision machine. The 7th digit won't always be totally correct + * in single-precision operation (for that level of accuracy, a more + * complicated algorithm would be needed). + */ +void UnityPrintFloat(const UNITY_DOUBLE input_number) +{ +#ifdef UNITY_INCLUDE_DOUBLE + static const int sig_digits = 9; + static const UNITY_INT32 min_scaled = 100000000; + static const UNITY_INT32 max_scaled = 1000000000; +#else + static const int sig_digits = 7; + static const UNITY_INT32 min_scaled = 1000000; + static const UNITY_INT32 max_scaled = 10000000; +#endif + + UNITY_DOUBLE number = input_number; + + /* print minus sign (does not handle negative zero) */ + if (number < 0.0f) + { + UNITY_OUTPUT_CHAR('-'); + number = -number; + } + + /* handle zero, NaN, and +/- infinity */ + if (number == 0.0f) + { + UnityPrint("0"); + } + else if (UNITY_IS_NAN(number)) + { + UnityPrint("nan"); + } + else if (UNITY_IS_INF(number)) + { + UnityPrint("inf"); + } + else + { + UNITY_INT32 n_int = 0; + UNITY_INT32 n; + int exponent = 0; + int decimals; + int digits; + char buf[16] = {0}; + + /* + * Scale up or down by powers of 10. To minimize rounding error, + * start with a factor/divisor of 10^10, which is the largest + * power of 10 that can be represented exactly. Finally, compute + * (exactly) the remaining power of 10 and perform one more + * multiplication or division. + */ + if (number < 1.0f) + { + UNITY_DOUBLE factor = 1.0f; + + while (number < (UNITY_DOUBLE)max_scaled / 1e10f) { number *= 1e10f; exponent -= 10; } + while (number * factor < (UNITY_DOUBLE)min_scaled) { factor *= 10.0f; exponent--; } + + number *= factor; + } + else if (number > (UNITY_DOUBLE)max_scaled) + { + UNITY_DOUBLE divisor = 1.0f; + + while (number > (UNITY_DOUBLE)min_scaled * 1e10f) { number /= 1e10f; exponent += 10; } + while (number / divisor > (UNITY_DOUBLE)max_scaled) { divisor *= 10.0f; exponent++; } + + number /= divisor; + } + else + { + /* + * In this range, we can split off the integer part before + * doing any multiplications. This reduces rounding error by + * freeing up significant bits in the fractional part. + */ + UNITY_DOUBLE factor = 1.0f; + n_int = (UNITY_INT32)number; + number -= (UNITY_DOUBLE)n_int; + + while (n_int < min_scaled) { n_int *= 10; factor *= 10.0f; exponent--; } + + number *= factor; + } + + /* round to nearest integer */ + n = ((UNITY_INT32)(number + number) + 1) / 2; + +#ifndef UNITY_ROUND_TIES_AWAY_FROM_ZERO + /* round to even if exactly between two integers */ + if ((n & 1) && (((UNITY_DOUBLE)n - number) == 0.5f)) + n--; +#endif + + n += n_int; + + if (n >= max_scaled) + { + n = min_scaled; + exponent++; + } + + /* determine where to place decimal point */ + decimals = ((exponent <= 0) && (exponent >= -(sig_digits + 3))) ? (-exponent) : (sig_digits - 1); + exponent += decimals; + + /* truncate trailing zeroes after decimal point */ + while ((decimals > 0) && ((n % 10) == 0)) + { + n /= 10; + decimals--; + } + + /* build up buffer in reverse order */ + digits = 0; + while ((n != 0) || (digits <= decimals)) + { + buf[digits++] = (char)('0' + n % 10); + n /= 10; + } + + /* print out buffer (backwards) */ + while (digits > 0) + { + if (digits == decimals) + { + UNITY_OUTPUT_CHAR('.'); + } + UNITY_OUTPUT_CHAR(buf[--digits]); + } + + /* print exponent if needed */ + if (exponent != 0) + { + UNITY_OUTPUT_CHAR('e'); + + if (exponent < 0) + { + UNITY_OUTPUT_CHAR('-'); + exponent = -exponent; + } + else + { + UNITY_OUTPUT_CHAR('+'); + } + + digits = 0; + while ((exponent != 0) || (digits < 2)) + { + buf[digits++] = (char)('0' + exponent % 10); + exponent /= 10; + } + while (digits > 0) + { + UNITY_OUTPUT_CHAR(buf[--digits]); + } + } + } +} +#endif /* ! UNITY_EXCLUDE_FLOAT_PRINT */ + +/*-----------------------------------------------*/ +static void UnityTestResultsBegin(const char* file, const UNITY_LINE_TYPE line) +{ +#ifdef UNITY_OUTPUT_FOR_ECLIPSE + UNITY_OUTPUT_CHAR('('); + UnityPrint(file); + UNITY_OUTPUT_CHAR(':'); + UnityPrintNumber((UNITY_INT)line); + UNITY_OUTPUT_CHAR(')'); + UNITY_OUTPUT_CHAR(' '); + UnityPrint(Unity.CurrentTestName); + UNITY_OUTPUT_CHAR(':'); +#else +#ifdef UNITY_OUTPUT_FOR_IAR_WORKBENCH + UnityPrint("'); + UnityPrint(Unity.CurrentTestName); + UnityPrint(" "); +#else +#ifdef UNITY_OUTPUT_FOR_QT_CREATOR + UnityPrint("file://"); + UnityPrint(file); + UNITY_OUTPUT_CHAR(':'); + UnityPrintNumber((UNITY_INT)line); + UNITY_OUTPUT_CHAR(' '); + UnityPrint(Unity.CurrentTestName); + UNITY_OUTPUT_CHAR(':'); +#else + UnityPrint(file); + UNITY_OUTPUT_CHAR(':'); + UnityPrintNumber((UNITY_INT)line); + UNITY_OUTPUT_CHAR(':'); + UnityPrint(Unity.CurrentTestName); + UNITY_OUTPUT_CHAR(':'); +#endif +#endif +#endif +} + +/*-----------------------------------------------*/ +static void UnityTestResultsFailBegin(const UNITY_LINE_TYPE line) +{ + UnityTestResultsBegin(Unity.TestFile, line); + UnityPrint(UnityStrFail); + UNITY_OUTPUT_CHAR(':'); +} + +/*-----------------------------------------------*/ +void UnityConcludeTest(void) +{ + if (Unity.CurrentTestIgnored) + { + Unity.TestIgnores++; + } + else if (!Unity.CurrentTestFailed) + { + UnityTestResultsBegin(Unity.TestFile, Unity.CurrentTestLineNumber); + UnityPrint(UnityStrPass); + } + else + { + Unity.TestFailures++; + } + + Unity.CurrentTestFailed = 0; + Unity.CurrentTestIgnored = 0; + UNITY_PRINT_EXEC_TIME(); + UNITY_PRINT_EOL(); + UNITY_FLUSH_CALL(); +} + +/*-----------------------------------------------*/ +static void UnityAddMsgIfSpecified(const char* msg) +{ +#ifdef UNITY_PRINT_TEST_CONTEXT + UnityPrint(UnityStrSpacer); + UNITY_PRINT_TEST_CONTEXT(); +#endif +#ifndef UNITY_EXCLUDE_DETAILS +#ifdef UNITY_DETAIL_STACK_SIZE + { + UNITY_COUNTER_TYPE c; + for (c = 0; (c < Unity.CurrentDetailStackSize) && (c < UNITY_DETAIL_STACK_SIZE); c++) { + const char* label; + if ((Unity.CurrentDetailStackLabels[c] == UNITY_DETAIL_NONE) || (Unity.CurrentDetailStackLabels[c] > UnityStrDetailLabelsCount)) { + break; + } + label = UnityStrDetailLabels[Unity.CurrentDetailStackLabels[c]]; + UnityPrint(UnityStrSpacer); + if ((label[0] == '#') && (label[1] != 0)) { + UnityPrint(label + 2); + UNITY_OUTPUT_CHAR(' '); + if ((label[1] & UNITY_DISPLAY_RANGE_INT) == UNITY_DISPLAY_RANGE_INT) { + UnityPrintIntNumberByStyle((UNITY_INT)Unity.CurrentDetailStackValues[c], label[1]); + } else { + UnityPrintUintNumberByStyle((UNITY_UINT)Unity.CurrentDetailStackValues[c], label[1]); + } + } else if (Unity.CurrentDetailStackValues[c] != 0){ + UnityPrint(label); + UNITY_OUTPUT_CHAR(' '); + UnityPrint((const char*)Unity.CurrentDetailStackValues[c]); + } + } + } +#else + if (Unity.CurrentDetail1) + { + UnityPrint(UnityStrSpacer); + UnityPrint(UnityStrDetail1Name); + UnityPrint(Unity.CurrentDetail1); + if (Unity.CurrentDetail2) + { + UnityPrint(UnityStrDetail2Name); + UnityPrint(Unity.CurrentDetail2); + } + } +#endif +#endif + if (msg) + { + UnityPrint(UnityStrSpacer); + UnityPrint(msg); + } +} + +/*-----------------------------------------------*/ +static void UnityPrintExpectedAndActualStrings(const char* expected, const char* actual) +{ + UnityPrint(UnityStrExpected); + if (expected != NULL) + { + UNITY_OUTPUT_CHAR('\''); + UnityPrint(expected); + UNITY_OUTPUT_CHAR('\''); + } + else + { + UnityPrint(UnityStrNull); + } + UnityPrint(UnityStrWas); + if (actual != NULL) + { + UNITY_OUTPUT_CHAR('\''); + UnityPrint(actual); + UNITY_OUTPUT_CHAR('\''); + } + else + { + UnityPrint(UnityStrNull); + } +} + +/*-----------------------------------------------*/ +static void UnityPrintExpectedAndActualStringsLen(const char* expected, + const char* actual, + const UNITY_UINT32 length) +{ + UnityPrint(UnityStrExpected); + if (expected != NULL) + { + UNITY_OUTPUT_CHAR('\''); + UnityPrintLen(expected, length); + UNITY_OUTPUT_CHAR('\''); + } + else + { + UnityPrint(UnityStrNull); + } + UnityPrint(UnityStrWas); + if (actual != NULL) + { + UNITY_OUTPUT_CHAR('\''); + UnityPrintLen(actual, length); + UNITY_OUTPUT_CHAR('\''); + } + else + { + UnityPrint(UnityStrNull); + } +} + +/*----------------------------------------------- + * Assertion & Control Helpers + *-----------------------------------------------*/ + +/*-----------------------------------------------*/ +static int UnityIsOneArrayNull(UNITY_INTERNAL_PTR expected, + UNITY_INTERNAL_PTR actual, + const UNITY_LINE_TYPE lineNumber, + const char* msg) +{ + /* Both are NULL or same pointer */ + if (expected == actual) { return 0; } + + /* print and return true if just expected is NULL */ + if (expected == NULL) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrNullPointerForExpected); + UnityAddMsgIfSpecified(msg); + return 1; + } + + /* print and return true if just actual is NULL */ + if (actual == NULL) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrNullPointerForActual); + UnityAddMsgIfSpecified(msg); + return 1; + } + + return 0; /* return false if neither is NULL */ +} + +/*----------------------------------------------- + * Assertion Functions + *-----------------------------------------------*/ + +/*-----------------------------------------------*/ +void UnityAssertBits(const UNITY_INT mask, + const UNITY_INT expected, + const UNITY_INT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber) +{ + RETURN_IF_FAIL_OR_IGNORE; + + if ((mask & expected) != (mask & actual)) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrExpected); + UnityPrintMask((UNITY_UINT)mask, (UNITY_UINT)expected); + UnityPrint(UnityStrWas); + UnityPrintMask((UNITY_UINT)mask, (UNITY_UINT)actual); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +/*-----------------------------------------------*/ +void UnityAssertEqualIntNumber(const UNITY_INT expected, + const UNITY_INT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style) +{ + RETURN_IF_FAIL_OR_IGNORE; + + if (expected != actual) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrExpected); + UnityPrintIntNumberByStyle(expected, style); + UnityPrint(UnityStrWas); + UnityPrintIntNumberByStyle(actual, style); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +void UnityAssertEqualUintNumber(const UNITY_UINT expected, + const UNITY_UINT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style) +{ + RETURN_IF_FAIL_OR_IGNORE; + + if (expected != actual) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrExpected); + UnityPrintUintNumberByStyle(expected, style); + UnityPrint(UnityStrWas); + UnityPrintUintNumberByStyle(actual, style); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} +/*-----------------------------------------------*/ +void UnityAssertIntGreaterOrLessOrEqualNumber(const UNITY_INT threshold, + const UNITY_INT actual, + const UNITY_COMPARISON_T compare, + const char *msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style) +{ + int failed = 0; + RETURN_IF_FAIL_OR_IGNORE; + + if ((threshold == actual) && !(compare & UNITY_EQUAL_TO)) { failed = 1; } + + if ((actual > threshold) && (compare & UNITY_SMALLER_THAN)) { failed = 1; } + if ((actual < threshold) && (compare & UNITY_GREATER_THAN)) { failed = 1; } + + if (failed) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrExpected); + UnityPrintIntNumberByStyle(actual, style); + if (compare & UNITY_GREATER_THAN) { UnityPrint(UnityStrGt); } + if (compare & UNITY_SMALLER_THAN) { UnityPrint(UnityStrLt); } + if (compare & UNITY_EQUAL_TO) { UnityPrint(UnityStrOrEqual); } + if (compare == UNITY_NOT_EQUAL) { UnityPrint(UnityStrNotEqual); } + UnityPrintIntNumberByStyle(threshold, style); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +void UnityAssertUintGreaterOrLessOrEqualNumber(const UNITY_UINT threshold, + const UNITY_UINT actual, + const UNITY_COMPARISON_T compare, + const char *msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style) +{ + int failed = 0; + RETURN_IF_FAIL_OR_IGNORE; + + if ((threshold == actual) && !(compare & UNITY_EQUAL_TO)) { failed = 1; } + + /* UINT or HEX */ + if ((actual > threshold) && (compare & UNITY_SMALLER_THAN)) { failed = 1; } + if ((actual < threshold) && (compare & UNITY_GREATER_THAN)) { failed = 1; } + + if (failed) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrExpected); + UnityPrintUintNumberByStyle(actual, style); + if (compare & UNITY_GREATER_THAN) { UnityPrint(UnityStrGt); } + if (compare & UNITY_SMALLER_THAN) { UnityPrint(UnityStrLt); } + if (compare & UNITY_EQUAL_TO) { UnityPrint(UnityStrOrEqual); } + if (compare == UNITY_NOT_EQUAL) { UnityPrint(UnityStrNotEqual); } + UnityPrintUintNumberByStyle(threshold, style); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +#define UnityPrintPointlessAndBail() \ +do { \ + UnityTestResultsFailBegin(lineNumber); \ + UnityPrint(UnityStrPointless); \ + UnityAddMsgIfSpecified(msg); \ + UNITY_FAIL_AND_BAIL; \ +} while (0) + +/*-----------------------------------------------*/ +void UnityAssertEqualIntArray(UNITY_INTERNAL_PTR expected, + UNITY_INTERNAL_PTR actual, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style, + const UNITY_FLAGS_T flags) +{ + UNITY_UINT32 elements = num_elements; + unsigned int length = style & 0xF; + unsigned int increment = 0; + + RETURN_IF_FAIL_OR_IGNORE; + + if (num_elements == 0) + { +#ifdef UNITY_COMPARE_PTRS_ON_ZERO_ARRAY + UNITY_TEST_ASSERT_EQUAL_PTR(expected, actual, lineNumber, msg); +#else + UnityPrintPointlessAndBail(); +#endif + } + + if (expected == actual) + { + return; /* Both are NULL or same pointer */ + } + + if (UnityIsOneArrayNull(expected, actual, lineNumber, msg)) + { + UNITY_FAIL_AND_BAIL; + } + + while ((elements > 0) && (elements--)) + { + UNITY_INT expect_val; + UNITY_INT actual_val; + + switch (length) + { + case 1: + expect_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT8*)expected; + actual_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT8*)actual; + if (style & (UNITY_DISPLAY_RANGE_UINT | UNITY_DISPLAY_RANGE_HEX)) + { + expect_val &= 0x000000FF; + actual_val &= 0x000000FF; + } + increment = sizeof(UNITY_INT8); + break; + + case 2: + expect_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT16*)expected; + actual_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT16*)actual; + if (style & (UNITY_DISPLAY_RANGE_UINT | UNITY_DISPLAY_RANGE_HEX)) + { + expect_val &= 0x0000FFFF; + actual_val &= 0x0000FFFF; + } + increment = sizeof(UNITY_INT16); + break; + +#ifdef UNITY_SUPPORT_64 + case 8: + expect_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT64*)expected; + actual_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT64*)actual; + increment = sizeof(UNITY_INT64); + break; +#endif + + default: /* default is length 4 bytes */ + case 4: + expect_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT32*)expected; + actual_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT32*)actual; +#ifdef UNITY_SUPPORT_64 + if (style & (UNITY_DISPLAY_RANGE_UINT | UNITY_DISPLAY_RANGE_HEX)) + { + expect_val &= 0x00000000FFFFFFFF; + actual_val &= 0x00000000FFFFFFFF; + } +#endif + increment = sizeof(UNITY_INT32); + length = 4; + break; + } + + if (expect_val != actual_val) + { + if ((style & UNITY_DISPLAY_RANGE_UINT) && (length < (UNITY_INT_WIDTH / 8))) + { /* For UINT, remove sign extension (padding 1's) from signed type casts above */ + UNITY_INT mask = 1; + mask = (mask << 8 * length) - 1; + expect_val &= mask; + actual_val &= mask; + } + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrElement); + UnityPrintNumberUnsigned(num_elements - elements - 1); + UnityPrint(UnityStrExpected); + UnityPrintIntNumberByStyle(expect_val, style); + UnityPrint(UnityStrWas); + UnityPrintIntNumberByStyle(actual_val, style); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } + /* Walk through array by incrementing the pointers */ + if (flags == UNITY_ARRAY_TO_ARRAY) + { + expected = (UNITY_INTERNAL_PTR)((const char*)expected + increment); + } + actual = (UNITY_INTERNAL_PTR)((const char*)actual + increment); + } +} + +/*-----------------------------------------------*/ +#ifndef UNITY_EXCLUDE_FLOAT +/* Wrap this define in a function with variable types as float or double */ +#define UNITY_FLOAT_OR_DOUBLE_WITHIN(delta, expected, actual, diff) \ + if (UNITY_IS_INF(expected) && UNITY_IS_INF(actual) && (((expected) < 0) == ((actual) < 0))) return 1; \ + if (UNITY_NAN_CHECK) return 1; \ + (diff) = (actual) - (expected); \ + if ((diff) < 0) (diff) = -(diff); \ + if ((delta) < 0) (delta) = -(delta); \ + return !(UNITY_IS_NAN(diff) || UNITY_IS_INF(diff) || ((diff) > (delta))) + /* This first part of this condition will catch any NaN or Infinite values */ +#ifndef UNITY_NAN_NOT_EQUAL_NAN + #define UNITY_NAN_CHECK UNITY_IS_NAN(expected) && UNITY_IS_NAN(actual) +#else + #define UNITY_NAN_CHECK 0 +#endif + +#ifndef UNITY_EXCLUDE_FLOAT_PRINT + #define UNITY_PRINT_EXPECTED_AND_ACTUAL_FLOAT(expected, actual) \ + do { \ + UnityPrint(UnityStrExpected); \ + UnityPrintFloat(expected); \ + UnityPrint(UnityStrWas); \ + UnityPrintFloat(actual); \ + } while (0) +#else + #define UNITY_PRINT_EXPECTED_AND_ACTUAL_FLOAT(expected, actual) \ + UnityPrint(UnityStrDelta) +#endif /* UNITY_EXCLUDE_FLOAT_PRINT */ + +/*-----------------------------------------------*/ +static int UnityFloatsWithin(UNITY_FLOAT delta, UNITY_FLOAT expected, UNITY_FLOAT actual) +{ + UNITY_FLOAT diff; + UNITY_FLOAT_OR_DOUBLE_WITHIN(delta, expected, actual, diff); +} + +/*-----------------------------------------------*/ +void UnityAssertWithinFloatArray(const UNITY_FLOAT delta, + UNITY_PTR_ATTRIBUTE const UNITY_FLOAT* expected, + UNITY_PTR_ATTRIBUTE const UNITY_FLOAT* actual, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLAGS_T flags) +{ + UNITY_UINT32 elements = num_elements; + UNITY_PTR_ATTRIBUTE const UNITY_FLOAT* ptr_expected = expected; + UNITY_PTR_ATTRIBUTE const UNITY_FLOAT* ptr_actual = actual; + UNITY_FLOAT in_delta = delta; + UNITY_FLOAT current_element_delta = delta; + + RETURN_IF_FAIL_OR_IGNORE; + + if (elements == 0) + { +#ifdef UNITY_COMPARE_PTRS_ON_ZERO_ARRAY + UNITY_TEST_ASSERT_EQUAL_PTR(expected, actual, lineNumber, msg); +#else + UnityPrintPointlessAndBail(); +#endif + } + + if (UNITY_IS_INF(in_delta)) + { + return; /* Arrays will be force equal with infinite delta */ + } + + if (UNITY_IS_NAN(in_delta)) + { + /* Delta must be correct number */ + UnityPrintPointlessAndBail(); + } + + if (expected == actual) + { + return; /* Both are NULL or same pointer */ + } + + if (UnityIsOneArrayNull((UNITY_INTERNAL_PTR)expected, (UNITY_INTERNAL_PTR)actual, lineNumber, msg)) + { + UNITY_FAIL_AND_BAIL; + } + + /* fix delta sign if need */ + if (in_delta < 0) + { + in_delta = -in_delta; + } + + while (elements--) + { + current_element_delta = *ptr_expected * UNITY_FLOAT_PRECISION; + + if (current_element_delta < 0) + { + /* fix delta sign for correct calculations */ + current_element_delta = -current_element_delta; + } + + if (!UnityFloatsWithin(in_delta + current_element_delta, *ptr_expected, *ptr_actual)) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrElement); + UnityPrintNumberUnsigned(num_elements - elements - 1); + UNITY_PRINT_EXPECTED_AND_ACTUAL_FLOAT((UNITY_DOUBLE)*ptr_expected, (UNITY_DOUBLE)*ptr_actual); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } + if (flags == UNITY_ARRAY_TO_ARRAY) + { + ptr_expected++; + } + ptr_actual++; + } +} + +/*-----------------------------------------------*/ +void UnityAssertFloatsWithin(const UNITY_FLOAT delta, + const UNITY_FLOAT expected, + const UNITY_FLOAT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber) +{ + RETURN_IF_FAIL_OR_IGNORE; + + + if (!UnityFloatsWithin(delta, expected, actual)) + { + UnityTestResultsFailBegin(lineNumber); + UNITY_PRINT_EXPECTED_AND_ACTUAL_FLOAT((UNITY_DOUBLE)expected, (UNITY_DOUBLE)actual); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +#ifndef UNITY_EXCLUDE_FLOAT_PRINT +/*-----------------------------------------------*/ +void UnityAssertFloatsNotWithin(const UNITY_FLOAT delta, + const UNITY_FLOAT expected, + const UNITY_FLOAT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber) +{ + RETURN_IF_FAIL_OR_IGNORE; + + if (UnityFloatsWithin(delta, expected, actual)) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrExpected); + UnityPrintFloat((UNITY_DOUBLE)expected); + UnityPrint(UnityStrNotEqual); + UnityPrintFloat((UNITY_DOUBLE)actual); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +/*-----------------------------------------------*/ +void UnityAssertGreaterOrLessFloat(const UNITY_FLOAT threshold, + const UNITY_FLOAT actual, + const UNITY_COMPARISON_T compare, + const char* msg, + const UNITY_LINE_TYPE lineNumber) +{ + int failed; + + RETURN_IF_FAIL_OR_IGNORE; + + failed = 0; + + /* Checking for "not success" rather than failure to get the right result for NaN */ + if (!(actual < threshold) && (compare & UNITY_SMALLER_THAN)) { failed = 1; } + if (!(actual > threshold) && (compare & UNITY_GREATER_THAN)) { failed = 1; } + + if ((compare & UNITY_EQUAL_TO) && UnityFloatsWithin(threshold * UNITY_FLOAT_PRECISION, threshold, actual)) { failed = 0; } + + if (failed) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrExpected); + UnityPrintFloat(actual); + if (compare & UNITY_GREATER_THAN) { UnityPrint(UnityStrGt); } + if (compare & UNITY_SMALLER_THAN) { UnityPrint(UnityStrLt); } + if (compare & UNITY_EQUAL_TO) { UnityPrint(UnityStrOrEqual); } + UnityPrintFloat(threshold); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} +#endif /* ! UNITY_EXCLUDE_FLOAT_PRINT */ + +/*-----------------------------------------------*/ +void UnityAssertFloatSpecial(const UNITY_FLOAT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLOAT_TRAIT_T style) +{ + const char* trait_names[] = {UnityStrInf, UnityStrNegInf, UnityStrNaN, UnityStrDet}; + UNITY_INT should_be_trait = ((UNITY_INT)style & 1); + UNITY_INT is_trait = !should_be_trait; + UNITY_INT trait_index = (UNITY_INT)(style >> 1); + + RETURN_IF_FAIL_OR_IGNORE; + + switch (style) + { + case UNITY_FLOAT_IS_INF: + case UNITY_FLOAT_IS_NOT_INF: + is_trait = UNITY_IS_INF(actual) && (actual > 0); + break; + case UNITY_FLOAT_IS_NEG_INF: + case UNITY_FLOAT_IS_NOT_NEG_INF: + is_trait = UNITY_IS_INF(actual) && (actual < 0); + break; + + case UNITY_FLOAT_IS_NAN: + case UNITY_FLOAT_IS_NOT_NAN: + is_trait = UNITY_IS_NAN(actual) ? 1 : 0; + break; + + case UNITY_FLOAT_IS_DET: /* A determinate number is non infinite and not NaN. */ + case UNITY_FLOAT_IS_NOT_DET: + is_trait = !UNITY_IS_INF(actual) && !UNITY_IS_NAN(actual); + break; + + case UNITY_FLOAT_INVALID_TRAIT: /* Supress warning */ + default: /* including UNITY_FLOAT_INVALID_TRAIT */ + trait_index = 0; + trait_names[0] = UnityStrInvalidFloatTrait; + break; + } + + if (is_trait != should_be_trait) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrExpected); + if (!should_be_trait) + { + UnityPrint(UnityStrNot); + } + UnityPrint(trait_names[trait_index]); + UnityPrint(UnityStrWas); +#ifndef UNITY_EXCLUDE_FLOAT_PRINT + UnityPrintFloat((UNITY_DOUBLE)actual); +#else + if (should_be_trait) + { + UnityPrint(UnityStrNot); + } + UnityPrint(trait_names[trait_index]); +#endif + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +#endif /* not UNITY_EXCLUDE_FLOAT */ + +/*-----------------------------------------------*/ +#ifndef UNITY_EXCLUDE_DOUBLE +static int UnityDoublesWithin(UNITY_DOUBLE delta, UNITY_DOUBLE expected, UNITY_DOUBLE actual) +{ + UNITY_DOUBLE diff; + UNITY_FLOAT_OR_DOUBLE_WITHIN(delta, expected, actual, diff); +} + +/*-----------------------------------------------*/ +void UnityAssertWithinDoubleArray(const UNITY_DOUBLE delta, + UNITY_PTR_ATTRIBUTE const UNITY_DOUBLE* expected, + UNITY_PTR_ATTRIBUTE const UNITY_DOUBLE* actual, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLAGS_T flags) +{ + UNITY_UINT32 elements = num_elements; + UNITY_PTR_ATTRIBUTE const UNITY_DOUBLE* ptr_expected = expected; + UNITY_PTR_ATTRIBUTE const UNITY_DOUBLE* ptr_actual = actual; + UNITY_DOUBLE in_delta = delta; + UNITY_DOUBLE current_element_delta = delta; + + RETURN_IF_FAIL_OR_IGNORE; + + if (elements == 0) + { +#ifdef UNITY_COMPARE_PTRS_ON_ZERO_ARRAY + UNITY_TEST_ASSERT_EQUAL_PTR(expected, actual, lineNumber, msg); +#else + UnityPrintPointlessAndBail(); +#endif + } + + if (UNITY_IS_INF(in_delta)) + { + return; /* Arrays will be force equal with infinite delta */ + } + + if (UNITY_IS_NAN(in_delta)) + { + /* Delta must be correct number */ + UnityPrintPointlessAndBail(); + } + + if (expected == actual) + { + return; /* Both are NULL or same pointer */ + } + + if (UnityIsOneArrayNull((UNITY_INTERNAL_PTR)expected, (UNITY_INTERNAL_PTR)actual, lineNumber, msg)) + { + UNITY_FAIL_AND_BAIL; + } + + /* fix delta sign if need */ + if (in_delta < 0) + { + in_delta = -in_delta; + } + + while (elements--) + { + current_element_delta = *ptr_expected * UNITY_DOUBLE_PRECISION; + + if (current_element_delta < 0) + { + /* fix delta sign for correct calculations */ + current_element_delta = -current_element_delta; + } + + if (!UnityDoublesWithin(in_delta + current_element_delta, *ptr_expected, *ptr_actual)) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrElement); + UnityPrintNumberUnsigned(num_elements - elements - 1); + UNITY_PRINT_EXPECTED_AND_ACTUAL_FLOAT(*ptr_expected, *ptr_actual); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } + if (flags == UNITY_ARRAY_TO_ARRAY) + { + ptr_expected++; + } + ptr_actual++; + } +} + +/*-----------------------------------------------*/ +void UnityAssertDoublesWithin(const UNITY_DOUBLE delta, + const UNITY_DOUBLE expected, + const UNITY_DOUBLE actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber) +{ + RETURN_IF_FAIL_OR_IGNORE; + + if (!UnityDoublesWithin(delta, expected, actual)) + { + UnityTestResultsFailBegin(lineNumber); + UNITY_PRINT_EXPECTED_AND_ACTUAL_FLOAT(expected, actual); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +#ifndef UNITY_EXCLUDE_FLOAT_PRINT +/*-----------------------------------------------*/ +void UnityAssertDoublesNotWithin(const UNITY_DOUBLE delta, + const UNITY_DOUBLE expected, + const UNITY_DOUBLE actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber) +{ + RETURN_IF_FAIL_OR_IGNORE; + + if (UnityDoublesWithin(delta, expected, actual)) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrExpected); + UnityPrintFloat((UNITY_DOUBLE)expected); + UnityPrint(UnityStrNotEqual); + UnityPrintFloat((UNITY_DOUBLE)actual); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +/*-----------------------------------------------*/ +void UnityAssertGreaterOrLessDouble(const UNITY_DOUBLE threshold, + const UNITY_DOUBLE actual, + const UNITY_COMPARISON_T compare, + const char* msg, + const UNITY_LINE_TYPE lineNumber) +{ + int failed; + + RETURN_IF_FAIL_OR_IGNORE; + + failed = 0; + + /* Checking for "not success" rather than failure to get the right result for NaN */ + if (!(actual < threshold) && (compare & UNITY_SMALLER_THAN)) { failed = 1; } + if (!(actual > threshold) && (compare & UNITY_GREATER_THAN)) { failed = 1; } + + if ((compare & UNITY_EQUAL_TO) && UnityDoublesWithin(threshold * UNITY_DOUBLE_PRECISION, threshold, actual)) { failed = 0; } + + if (failed) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrExpected); + UnityPrintFloat(actual); + if (compare & UNITY_GREATER_THAN) { UnityPrint(UnityStrGt); } + if (compare & UNITY_SMALLER_THAN) { UnityPrint(UnityStrLt); } + if (compare & UNITY_EQUAL_TO) { UnityPrint(UnityStrOrEqual); } + UnityPrintFloat(threshold); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} +#endif /* ! UNITY_EXCLUDE_FLOAT_PRINT */ + +/*-----------------------------------------------*/ +void UnityAssertDoubleSpecial(const UNITY_DOUBLE actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLOAT_TRAIT_T style) +{ + const char* trait_names[] = {UnityStrInf, UnityStrNegInf, UnityStrNaN, UnityStrDet}; + UNITY_INT should_be_trait = ((UNITY_INT)style & 1); + UNITY_INT is_trait = !should_be_trait; + UNITY_INT trait_index = (UNITY_INT)(style >> 1); + + RETURN_IF_FAIL_OR_IGNORE; + + switch (style) + { + case UNITY_FLOAT_IS_INF: + case UNITY_FLOAT_IS_NOT_INF: + is_trait = UNITY_IS_INF(actual) && (actual > 0); + break; + case UNITY_FLOAT_IS_NEG_INF: + case UNITY_FLOAT_IS_NOT_NEG_INF: + is_trait = UNITY_IS_INF(actual) && (actual < 0); + break; + + case UNITY_FLOAT_IS_NAN: + case UNITY_FLOAT_IS_NOT_NAN: + is_trait = UNITY_IS_NAN(actual) ? 1 : 0; + break; + + case UNITY_FLOAT_IS_DET: /* A determinate number is non infinite and not NaN. */ + case UNITY_FLOAT_IS_NOT_DET: + is_trait = !UNITY_IS_INF(actual) && !UNITY_IS_NAN(actual); + break; + + case UNITY_FLOAT_INVALID_TRAIT: /* Supress warning */ + default: /* including UNITY_FLOAT_INVALID_TRAIT */ + trait_index = 0; + trait_names[0] = UnityStrInvalidFloatTrait; + break; + } + + if (is_trait != should_be_trait) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrExpected); + if (!should_be_trait) + { + UnityPrint(UnityStrNot); + } + UnityPrint(trait_names[trait_index]); + UnityPrint(UnityStrWas); +#ifndef UNITY_EXCLUDE_FLOAT_PRINT + UnityPrintFloat(actual); +#else + if (should_be_trait) + { + UnityPrint(UnityStrNot); + } + UnityPrint(trait_names[trait_index]); +#endif + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +#endif /* not UNITY_EXCLUDE_DOUBLE */ + +/*-----------------------------------------------*/ +void UnityAssertIntNumbersWithin(const UNITY_UINT delta, + const UNITY_INT expected, + const UNITY_INT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style) +{ + RETURN_IF_FAIL_OR_IGNORE; + + if (actual > expected) + { + Unity.CurrentTestFailed = (((UNITY_UINT)actual - (UNITY_UINT)expected) > delta); + } + else + { + Unity.CurrentTestFailed = (((UNITY_UINT)expected - (UNITY_UINT)actual) > delta); + } + + if (Unity.CurrentTestFailed) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrDelta); + UnityPrintIntNumberByStyle((UNITY_INT)delta, style); + UnityPrint(UnityStrExpected); + UnityPrintIntNumberByStyle(expected, style); + UnityPrint(UnityStrWas); + UnityPrintIntNumberByStyle(actual, style); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +void UnityAssertUintNumbersWithin(const UNITY_UINT delta, + const UNITY_UINT expected, + const UNITY_UINT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style) +{ + RETURN_IF_FAIL_OR_IGNORE; + + if (actual > expected) + { + Unity.CurrentTestFailed = ((actual - expected) > delta); + } + else + { + Unity.CurrentTestFailed = ((expected - actual) > delta); + } + + if (Unity.CurrentTestFailed) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrDelta); + UnityPrintUintNumberByStyle(delta, style); + UnityPrint(UnityStrExpected); + UnityPrintUintNumberByStyle(expected, style); + UnityPrint(UnityStrWas); + UnityPrintUintNumberByStyle(actual, style); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +/*-----------------------------------------------*/ +void UnityAssertNumbersArrayWithin(const UNITY_UINT delta, + UNITY_INTERNAL_PTR expected, + UNITY_INTERNAL_PTR actual, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style, + const UNITY_FLAGS_T flags) +{ + UNITY_UINT32 elements = num_elements; + unsigned int length = style & 0xF; + unsigned int increment = 0; + + RETURN_IF_FAIL_OR_IGNORE; + + if (num_elements == 0) + { +#ifdef UNITY_COMPARE_PTRS_ON_ZERO_ARRAY + UNITY_TEST_ASSERT_EQUAL_PTR(expected, actual, lineNumber, msg); +#else + UnityPrintPointlessAndBail(); +#endif + } + + if (expected == actual) + { + return; /* Both are NULL or same pointer */ + } + + if (UnityIsOneArrayNull(expected, actual, lineNumber, msg)) + { + UNITY_FAIL_AND_BAIL; + } + + while ((elements > 0) && (elements--)) + { + UNITY_INT expect_val; + UNITY_INT actual_val; + + switch (length) + { + case 1: + /* fixing problems with signed overflow on unsigned numbers */ + if ((style & UNITY_DISPLAY_RANGE_INT) == UNITY_DISPLAY_RANGE_INT) + { + expect_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT8*)expected; + actual_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT8*)actual; + increment = sizeof(UNITY_INT8); + } + else + { + expect_val = (UNITY_INT)*(UNITY_PTR_ATTRIBUTE const UNITY_UINT8*)expected; + actual_val = (UNITY_INT)*(UNITY_PTR_ATTRIBUTE const UNITY_UINT8*)actual; + increment = sizeof(UNITY_UINT8); + } + break; + + case 2: + /* fixing problems with signed overflow on unsigned numbers */ + if ((style & UNITY_DISPLAY_RANGE_INT) == UNITY_DISPLAY_RANGE_INT) + { + expect_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT16*)expected; + actual_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT16*)actual; + increment = sizeof(UNITY_INT16); + } + else + { + expect_val = (UNITY_INT)*(UNITY_PTR_ATTRIBUTE const UNITY_UINT16*)expected; + actual_val = (UNITY_INT)*(UNITY_PTR_ATTRIBUTE const UNITY_UINT16*)actual; + increment = sizeof(UNITY_UINT16); + } + break; + +#ifdef UNITY_SUPPORT_64 + case 8: + /* fixing problems with signed overflow on unsigned numbers */ + if ((style & UNITY_DISPLAY_RANGE_INT) == UNITY_DISPLAY_RANGE_INT) + { + expect_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT64*)expected; + actual_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT64*)actual; + increment = sizeof(UNITY_INT64); + } + else + { + expect_val = (UNITY_INT)*(UNITY_PTR_ATTRIBUTE const UNITY_UINT64*)expected; + actual_val = (UNITY_INT)*(UNITY_PTR_ATTRIBUTE const UNITY_UINT64*)actual; + increment = sizeof(UNITY_UINT64); + } + break; +#endif + + default: /* default is length 4 bytes */ + case 4: + /* fixing problems with signed overflow on unsigned numbers */ + if ((style & UNITY_DISPLAY_RANGE_INT) == UNITY_DISPLAY_RANGE_INT) + { + expect_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT32*)expected; + actual_val = *(UNITY_PTR_ATTRIBUTE const UNITY_INT32*)actual; + increment = sizeof(UNITY_INT32); + } + else + { + expect_val = (UNITY_INT)*(UNITY_PTR_ATTRIBUTE const UNITY_UINT32*)expected; + actual_val = (UNITY_INT)*(UNITY_PTR_ATTRIBUTE const UNITY_UINT32*)actual; + increment = sizeof(UNITY_UINT32); + } + length = 4; + break; + } + + if ((style & UNITY_DISPLAY_RANGE_INT) == UNITY_DISPLAY_RANGE_INT) + { + if (actual_val > expect_val) + { + Unity.CurrentTestFailed = (((UNITY_UINT)actual_val - (UNITY_UINT)expect_val) > delta); + } + else + { + Unity.CurrentTestFailed = (((UNITY_UINT)expect_val - (UNITY_UINT)actual_val) > delta); + } + } + else + { + if ((UNITY_UINT)actual_val > (UNITY_UINT)expect_val) + { + Unity.CurrentTestFailed = (((UNITY_UINT)actual_val - (UNITY_UINT)expect_val) > delta); + } + else + { + Unity.CurrentTestFailed = (((UNITY_UINT)expect_val - (UNITY_UINT)actual_val) > delta); + } + } + + if (Unity.CurrentTestFailed) + { + if ((style & UNITY_DISPLAY_RANGE_UINT) && (length < (UNITY_INT_WIDTH / 8))) + { /* For UINT, remove sign extension (padding 1's) from signed type casts above */ + UNITY_INT mask = 1; + mask = (mask << 8 * length) - 1; + expect_val &= mask; + actual_val &= mask; + } + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrDelta); + UnityPrintIntNumberByStyle((UNITY_INT)delta, style); + UnityPrint(UnityStrElement); + UnityPrintNumberUnsigned(num_elements - elements - 1); + UnityPrint(UnityStrExpected); + UnityPrintIntNumberByStyle(expect_val, style); + UnityPrint(UnityStrWas); + UnityPrintIntNumberByStyle(actual_val, style); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } + /* Walk through array by incrementing the pointers */ + if (flags == UNITY_ARRAY_TO_ARRAY) + { + expected = (UNITY_INTERNAL_PTR)((const char*)expected + increment); + } + actual = (UNITY_INTERNAL_PTR)((const char*)actual + increment); + } +} + +/*-----------------------------------------------*/ +void UnityAssertEqualString(const char* expected, + const char* actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber) +{ + UNITY_UINT32 i; + + RETURN_IF_FAIL_OR_IGNORE; + + /* if both pointers not null compare the strings */ + if (expected && actual) + { + for (i = 0; expected[i] || actual[i]; i++) + { + if (expected[i] != actual[i]) + { + Unity.CurrentTestFailed = 1; + break; + } + } + } + else + { /* fail if either null but not if both */ + if (expected || actual) + { + Unity.CurrentTestFailed = 1; + } + } + + if (Unity.CurrentTestFailed) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrintExpectedAndActualStrings(expected, actual); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +/*-----------------------------------------------*/ +void UnityAssertEqualStringLen(const char* expected, + const char* actual, + const UNITY_UINT32 length, + const char* msg, + const UNITY_LINE_TYPE lineNumber) +{ + UNITY_UINT32 i; + + RETURN_IF_FAIL_OR_IGNORE; + + /* if both pointers not null compare the strings */ + if (expected && actual) + { + for (i = 0; (i < length) && (expected[i] || actual[i]); i++) + { + if (expected[i] != actual[i]) + { + Unity.CurrentTestFailed = 1; + break; + } + } + } + else + { /* fail if either null but not if both */ + if (expected || actual) + { + Unity.CurrentTestFailed = 1; + } + } + + if (Unity.CurrentTestFailed) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrintExpectedAndActualStringsLen(expected, actual, length); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } +} + +/*-----------------------------------------------*/ +void UnityAssertEqualStringArray(UNITY_INTERNAL_PTR expected, + const char** actual, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLAGS_T flags) +{ + UNITY_UINT32 i = 0; + UNITY_UINT32 j = 0; + const char* expd = NULL; + const char* act = NULL; + + RETURN_IF_FAIL_OR_IGNORE; + + /* if no elements, it's an error */ + if (num_elements == 0) + { +#ifdef UNITY_COMPARE_PTRS_ON_ZERO_ARRAY + UNITY_TEST_ASSERT_EQUAL_PTR(expected, actual, lineNumber, msg); +#else + UnityPrintPointlessAndBail(); +#endif + } + + if ((const void*)expected == (const void*)actual) + { + return; /* Both are NULL or same pointer */ + } + + if (UnityIsOneArrayNull((UNITY_INTERNAL_PTR)expected, (UNITY_INTERNAL_PTR)actual, lineNumber, msg)) + { + UNITY_FAIL_AND_BAIL; + } + + if (flags != UNITY_ARRAY_TO_ARRAY) + { + expd = (const char*)expected; + } + + do + { + act = actual[j]; + if (flags == UNITY_ARRAY_TO_ARRAY) + { + expd = ((const char* const*)expected)[j]; + } + + /* if both pointers not null compare the strings */ + if (expd && act) + { + for (i = 0; expd[i] || act[i]; i++) + { + if (expd[i] != act[i]) + { + Unity.CurrentTestFailed = 1; + break; + } + } + } + else + { /* handle case of one pointers being null (if both null, test should pass) */ + if (expd != act) + { + Unity.CurrentTestFailed = 1; + } + } + + if (Unity.CurrentTestFailed) + { + UnityTestResultsFailBegin(lineNumber); + if (num_elements > 1) + { + UnityPrint(UnityStrElement); + UnityPrintNumberUnsigned(j); + } + UnityPrintExpectedAndActualStrings(expd, act); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } + } while (++j < num_elements); +} + +/*-----------------------------------------------*/ +void UnityAssertEqualMemory(UNITY_INTERNAL_PTR expected, + UNITY_INTERNAL_PTR actual, + const UNITY_UINT32 length, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLAGS_T flags) +{ + UNITY_PTR_ATTRIBUTE const unsigned char* ptr_exp = (UNITY_PTR_ATTRIBUTE const unsigned char*)expected; + UNITY_PTR_ATTRIBUTE const unsigned char* ptr_act = (UNITY_PTR_ATTRIBUTE const unsigned char*)actual; + UNITY_UINT32 elements = num_elements; + UNITY_UINT32 bytes; + + RETURN_IF_FAIL_OR_IGNORE; + + if (elements == 0) + { +#ifdef UNITY_COMPARE_PTRS_ON_ZERO_ARRAY + UNITY_TEST_ASSERT_EQUAL_PTR(expected, actual, lineNumber, msg); +#else + UnityPrintPointlessAndBail(); +#endif + } + if (length == 0) + { + UnityPrintPointlessAndBail(); + } + + if (expected == actual) + { + return; /* Both are NULL or same pointer */ + } + + if (UnityIsOneArrayNull(expected, actual, lineNumber, msg)) + { + UNITY_FAIL_AND_BAIL; + } + + while (elements--) + { + bytes = length; + while (bytes--) + { + if (*ptr_exp != *ptr_act) + { + UnityTestResultsFailBegin(lineNumber); + UnityPrint(UnityStrMemory); + if (num_elements > 1) + { + UnityPrint(UnityStrElement); + UnityPrintNumberUnsigned(num_elements - elements - 1); + } + UnityPrint(UnityStrByte); + UnityPrintNumberUnsigned(length - bytes - 1); + UnityPrint(UnityStrExpected); + UnityPrintIntNumberByStyle(*ptr_exp, UNITY_DISPLAY_STYLE_HEX8); + UnityPrint(UnityStrWas); + UnityPrintIntNumberByStyle(*ptr_act, UNITY_DISPLAY_STYLE_HEX8); + UnityAddMsgIfSpecified(msg); + UNITY_FAIL_AND_BAIL; + } + ptr_exp++; + ptr_act++; + } + if (flags == UNITY_ARRAY_TO_VAL) + { + ptr_exp = (UNITY_PTR_ATTRIBUTE const unsigned char*)expected; + } + } +} + +/*-----------------------------------------------*/ + +static union +{ + UNITY_INT8 i8; + UNITY_INT16 i16; + UNITY_INT32 i32; +#ifdef UNITY_SUPPORT_64 + UNITY_INT64 i64; +#endif +#ifndef UNITY_EXCLUDE_FLOAT + float f; +#endif +#ifndef UNITY_EXCLUDE_DOUBLE + double d; +#endif +} UnityQuickCompare; + +UNITY_INTERNAL_PTR UnityNumToPtr(const UNITY_INT num, const UNITY_UINT8 size) +{ + switch(size) + { + case 1: + UnityQuickCompare.i8 = (UNITY_INT8)num; + return (UNITY_INTERNAL_PTR)(&UnityQuickCompare.i8); + + case 2: + UnityQuickCompare.i16 = (UNITY_INT16)num; + return (UNITY_INTERNAL_PTR)(&UnityQuickCompare.i16); + +#ifdef UNITY_SUPPORT_64 + case 8: + UnityQuickCompare.i64 = (UNITY_INT64)num; + return (UNITY_INTERNAL_PTR)(&UnityQuickCompare.i64); +#endif + + default: /* 4 bytes */ + UnityQuickCompare.i32 = (UNITY_INT32)num; + return (UNITY_INTERNAL_PTR)(&UnityQuickCompare.i32); + } +} + +#ifndef UNITY_EXCLUDE_FLOAT +/*-----------------------------------------------*/ +UNITY_INTERNAL_PTR UnityFloatToPtr(const float num) +{ + UnityQuickCompare.f = num; + return (UNITY_INTERNAL_PTR)(&UnityQuickCompare.f); +} +#endif + +#ifndef UNITY_EXCLUDE_DOUBLE +/*-----------------------------------------------*/ +UNITY_INTERNAL_PTR UnityDoubleToPtr(const double num) +{ + UnityQuickCompare.d = num; + return (UNITY_INTERNAL_PTR)(&UnityQuickCompare.d); +} +#endif + +#ifdef UNITY_INCLUDE_PRINT_FORMATTED + +/*----------------------------------------------- + * printf length modifier helpers + *-----------------------------------------------*/ + +enum UnityLengthModifier { + UNITY_LENGTH_MODIFIER_NONE, + UNITY_LENGTH_MODIFIER_LONG_LONG, + UNITY_LENGTH_MODIFIER_LONG, +}; + +#define UNITY_EXTRACT_ARG(NUMBER_T, NUMBER, LENGTH_MOD, VA, ARG_T) \ +do { \ + switch (LENGTH_MOD) \ + { \ + case UNITY_LENGTH_MODIFIER_LONG_LONG: \ + { \ + NUMBER = (NUMBER_T)va_arg(VA, long long ARG_T); \ + break; \ + } \ + case UNITY_LENGTH_MODIFIER_LONG: \ + { \ + NUMBER = (NUMBER_T)va_arg(VA, long ARG_T); \ + break; \ + } \ + case UNITY_LENGTH_MODIFIER_NONE: \ + default: \ + { \ + NUMBER = (NUMBER_T)va_arg(VA, ARG_T); \ + break; \ + } \ + } \ +} while (0) + +static enum UnityLengthModifier UnityLengthModifierGet(const char *pch, int *length) +{ + enum UnityLengthModifier length_mod; + switch (pch[0]) + { + case 'l': + { + if (pch[1] == 'l') + { + *length = 2; + length_mod = UNITY_LENGTH_MODIFIER_LONG_LONG; + } + else + { + *length = 1; + length_mod = UNITY_LENGTH_MODIFIER_LONG; + } + break; + } + case 'h': + { + /* short and char are converted to int */ + length_mod = UNITY_LENGTH_MODIFIER_NONE; + if (pch[1] == 'h') + { + *length = 2; + } + else + { + *length = 1; + } + break; + } + case 'j': + case 'z': + case 't': + case 'L': + { + /* Not supported, but should gobble up the length specifier anyway */ + length_mod = UNITY_LENGTH_MODIFIER_NONE; + *length = 1; + break; + } + default: + { + length_mod = UNITY_LENGTH_MODIFIER_NONE; + *length = 0; + } + } + return length_mod; +} + +/*----------------------------------------------- + * printf helper function + *-----------------------------------------------*/ +static void UnityPrintFVA(const char* format, va_list va) +{ + const char* pch = format; + if (pch != NULL) + { + while (*pch) + { + /* format identification character */ + if (*pch == '%') + { + pch++; + + if (pch != NULL) + { + int length_mod_size; + enum UnityLengthModifier length_mod = UnityLengthModifierGet(pch, &length_mod_size); + pch += length_mod_size; + + switch (*pch) + { + case 'd': + case 'i': + { + UNITY_INT number; + UNITY_EXTRACT_ARG(UNITY_INT, number, length_mod, va, int); + UnityPrintNumber((UNITY_INT)number); + break; + } +#ifndef UNITY_EXCLUDE_FLOAT_PRINT + case 'f': + case 'g': + { + const double number = va_arg(va, double); + UnityPrintFloat((UNITY_DOUBLE)number); + break; + } +#endif + case 'u': + { + UNITY_UINT number; + UNITY_EXTRACT_ARG(UNITY_UINT, number, length_mod, va, unsigned int); + UnityPrintNumberUnsigned(number); + break; + } + case 'b': + { + UNITY_UINT number; + UNITY_EXTRACT_ARG(UNITY_UINT, number, length_mod, va, unsigned int); + const UNITY_UINT mask = (UNITY_UINT)0 - (UNITY_UINT)1; + UNITY_OUTPUT_CHAR('0'); + UNITY_OUTPUT_CHAR('b'); + UnityPrintMask(mask, number); + break; + } + case 'x': + case 'X': + { + UNITY_UINT number; + UNITY_EXTRACT_ARG(UNITY_UINT, number, length_mod, va, unsigned int); + UNITY_OUTPUT_CHAR('0'); + UNITY_OUTPUT_CHAR('x'); + UnityPrintNumberHex(number, UNITY_MAX_NIBBLES); + break; + } + case 'p': + { + UNITY_UINT number; + char nibbles_to_print = 8; + if (UNITY_POINTER_WIDTH == 64) + { + length_mod = UNITY_LENGTH_MODIFIER_LONG_LONG; + nibbles_to_print = 16; + } + UNITY_EXTRACT_ARG(UNITY_UINT, number, length_mod, va, unsigned int); + UNITY_OUTPUT_CHAR('0'); + UNITY_OUTPUT_CHAR('x'); + UnityPrintNumberHex((UNITY_UINT)number, nibbles_to_print); + break; + } + case 'c': + { + const int ch = va_arg(va, int); + UnityPrintChar((const char *)&ch); + break; + } + case 's': + { + const char * string = va_arg(va, const char *); + UnityPrint(string); + break; + } + case '%': + { + UnityPrintChar(pch); + break; + } + default: + { + /* print the unknown format character */ + UNITY_OUTPUT_CHAR('%'); + UnityPrintChar(pch); + break; + } + } + } + } +#ifdef UNITY_OUTPUT_COLOR + /* print ANSI escape code */ + else if ((*pch == 27) && (*(pch + 1) == '[')) + { + pch += UnityPrintAnsiEscapeString(pch); + continue; + } +#endif + else if (*pch == '\n') + { + UNITY_PRINT_EOL(); + } + else + { + UnityPrintChar(pch); + } + + pch++; + } + } +} + +void UnityPrintF(const UNITY_LINE_TYPE line, const char* format, ...) +{ + UnityTestResultsBegin(Unity.TestFile, line); + UnityPrint("INFO"); + if(format != NULL) + { + UnityPrint(": "); + va_list va; + va_start(va, format); + UnityPrintFVA(format, va); + va_end(va); + } + UNITY_PRINT_EOL(); +} +#endif /* ! UNITY_INCLUDE_PRINT_FORMATTED */ + + +/*----------------------------------------------- + * Control Functions + *-----------------------------------------------*/ + +/*-----------------------------------------------*/ +void UnityFail(const char* msg, const UNITY_LINE_TYPE line) +{ + RETURN_IF_FAIL_OR_IGNORE; + + UnityTestResultsBegin(Unity.TestFile, line); + UnityPrint(UnityStrFail); + UnityAddMsgIfSpecified(msg); + + UNITY_FAIL_AND_BAIL; +} + +/*-----------------------------------------------*/ +void UnityIgnore(const char* msg, const UNITY_LINE_TYPE line) +{ + RETURN_IF_FAIL_OR_IGNORE; + + UnityTestResultsBegin(Unity.TestFile, line); + UnityPrint(UnityStrIgnore); + if (msg != NULL) + { + UNITY_OUTPUT_CHAR(':'); + UNITY_OUTPUT_CHAR(' '); + UnityPrint(msg); + } + UNITY_IGNORE_AND_BAIL; +} + +/*-----------------------------------------------*/ +void UnityMessage(const char* msg, const UNITY_LINE_TYPE line) +{ + UnityTestResultsBegin(Unity.TestFile, line); + UnityPrint("INFO"); + if (msg != NULL) + { + UNITY_OUTPUT_CHAR(':'); + UNITY_OUTPUT_CHAR(' '); + UnityPrint(msg); + } + UNITY_PRINT_EOL(); +} + +/*-----------------------------------------------*/ +/* If we have not defined our own test runner, then include our default test runner to make life easier */ +#ifndef UNITY_SKIP_DEFAULT_RUNNER +void UnityDefaultTestRun(UnityTestFunction Func, const char* FuncName, const int FuncLineNum) +{ + Unity.CurrentTestName = FuncName; + Unity.CurrentTestLineNumber = (UNITY_LINE_TYPE)FuncLineNum; + Unity.NumberOfTests++; + #ifndef UNITY_EXCLUDE_DETAILS + #ifdef UNITY_DETAIL_STACK_SIZE + Unity.CurrentDetailStackSize = 0; + #else + UNITY_CLR_DETAILS(); + #endif + #endif + UNITY_EXEC_TIME_START(); + if (TEST_PROTECT()) + { + setUp(); + Func(); + } + if (TEST_PROTECT()) + { + tearDown(); + } + UNITY_EXEC_TIME_STOP(); + UnityConcludeTest(); +} +#endif + +/*-----------------------------------------------*/ +void UnitySetTestFile(const char* filename) +{ + Unity.TestFile = filename; +} + +/*-----------------------------------------------*/ +void UnityBegin(const char* filename) +{ + Unity.TestFile = filename; + Unity.CurrentTestName = NULL; + Unity.CurrentTestLineNumber = 0; + Unity.NumberOfTests = 0; + Unity.TestFailures = 0; + Unity.TestIgnores = 0; + Unity.CurrentTestFailed = 0; + Unity.CurrentTestIgnored = 0; + + UNITY_CLR_DETAILS(); + UNITY_OUTPUT_START(); +} + +/*-----------------------------------------------*/ +int UnityEnd(void) +{ + UNITY_PRINT_EOL(); + UnityPrint(UnityStrBreaker); + UNITY_PRINT_EOL(); + UnityPrintNumber((UNITY_INT)(Unity.NumberOfTests)); + UnityPrint(UnityStrResultsTests); + UnityPrintNumber((UNITY_INT)(Unity.TestFailures)); + UnityPrint(UnityStrResultsFailures); + UnityPrintNumber((UNITY_INT)(Unity.TestIgnores)); + UnityPrint(UnityStrResultsIgnored); + UNITY_PRINT_EOL(); + if (Unity.TestFailures == 0U) + { + UnityPrint(UnityStrOk); + } + else + { + UnityPrint(UnityStrFail); +#ifdef UNITY_DIFFERENTIATE_FINAL_FAIL + UNITY_OUTPUT_CHAR('E'); UNITY_OUTPUT_CHAR('D'); +#endif + } + UNITY_PRINT_EOL(); + UNITY_FLUSH_CALL(); + UNITY_OUTPUT_COMPLETE(); + return (int)(Unity.TestFailures); +} + +/*----------------------------------------------- + * Details Stack + *-----------------------------------------------*/ +#ifndef UNITY_EXCLUDE_DETAILS +#ifdef UNITY_DETAIL_STACK_SIZE +void UnityPushDetail(UNITY_DETAIL_LABEL_TYPE label, UNITY_DETAIL_VALUE_TYPE value, const UNITY_LINE_TYPE line) { + if (Unity.CurrentDetailStackSize >= UNITY_DETAIL_STACK_SIZE) { + UnityTestResultsFailBegin(line); + UnityPrint(UnityStrErrDetailStackFull); + UnityAddMsgIfSpecified(NULL); + UNITY_FAIL_AND_BAIL; + } + if (label >= UnityStrDetailLabelsCount) { + UnityTestResultsFailBegin(line); + UnityPrint(UnityStrErrDetailStackLabel); + UnityPrintNumberUnsigned(label); + UnityAddMsgIfSpecified(NULL); + UNITY_FAIL_AND_BAIL; + } + Unity.CurrentDetailStackLabels[Unity.CurrentDetailStackSize] = label; + Unity.CurrentDetailStackValues[Unity.CurrentDetailStackSize++] = value; +} +void UnityPopDetail(UNITY_DETAIL_LABEL_TYPE label, UNITY_DETAIL_VALUE_TYPE value, const UNITY_LINE_TYPE line) { + if (Unity.CurrentDetailStackSize == 0) { + UnityTestResultsFailBegin(line); + UnityPrint(UnityStrErrDetailStackEmpty); + UnityAddMsgIfSpecified(NULL); + UNITY_FAIL_AND_BAIL; + } + if ((Unity.CurrentDetailStackLabels[Unity.CurrentDetailStackSize-1] != label) || (Unity.CurrentDetailStackValues[Unity.CurrentDetailStackSize-1] != value)) { + UnityTestResultsFailBegin(line); + UnityPrint(UnityStrErrDetailStackPop); + UnityAddMsgIfSpecified(NULL); + UNITY_FAIL_AND_BAIL; + } + Unity.CurrentDetailStackSize--; +} +#endif +#endif + +/*----------------------------------------------- + * Command Line Argument Support + *-----------------------------------------------*/ +#ifdef UNITY_USE_COMMAND_LINE_ARGS + +char* UnityOptionIncludeNamed = NULL; +char* UnityOptionExcludeNamed = NULL; +int UnityVerbosity = 1; +int UnityStrictMatch = 0; + +/*-----------------------------------------------*/ +int UnityParseOptions(int argc, char** argv) +{ + int i; + UnityOptionIncludeNamed = NULL; + UnityOptionExcludeNamed = NULL; + UnityStrictMatch = 0; + + for (i = 1; i < argc; i++) + { + if (argv[i][0] == '-') + { + switch (argv[i][1]) + { + case 'l': /* list tests */ + return -1; + case 'n': /* include tests with name including this string */ + case 'f': /* an alias for -n */ + UnityStrictMatch = (argv[i][1] == 'n'); /* strictly match this string if -n */ + if (argv[i][2] == '=') + { + UnityOptionIncludeNamed = &argv[i][3]; + } + else if (++i < argc) + { + UnityOptionIncludeNamed = argv[i]; + } + else + { + UnityPrint("ERROR: No Test String to Include Matches For"); + UNITY_PRINT_EOL(); + return 1; + } + break; + case 'q': /* quiet */ + UnityVerbosity = 0; + break; + case 'v': /* verbose */ + UnityVerbosity = 2; + break; + case 'x': /* exclude tests with name including this string */ + if (argv[i][2] == '=') + { + UnityOptionExcludeNamed = &argv[i][3]; + } + else if (++i < argc) + { + UnityOptionExcludeNamed = argv[i]; + } + else + { + UnityPrint("ERROR: No Test String to Exclude Matches For"); + UNITY_PRINT_EOL(); + return 1; + } + break; + default: + UnityPrint("ERROR: Unknown Option "); + UNITY_OUTPUT_CHAR(argv[i][1]); + UNITY_PRINT_EOL(); + /* Now display help */ + /* FALLTHRU */ + case 'h': + UnityPrint("Options: "); UNITY_PRINT_EOL(); + UnityPrint("-l List all tests and exit"); UNITY_PRINT_EOL(); + UnityPrint("-f NAME Filter to run only tests whose name includes NAME"); UNITY_PRINT_EOL(); + UnityPrint("-n NAME Run only the test named NAME"); UNITY_PRINT_EOL(); + UnityPrint("-h show this Help menu"); UNITY_PRINT_EOL(); + UnityPrint("-q Quiet/decrease verbosity"); UNITY_PRINT_EOL(); + UnityPrint("-v increase Verbosity"); UNITY_PRINT_EOL(); + UnityPrint("-x NAME eXclude tests whose name includes NAME"); UNITY_PRINT_EOL(); + UNITY_OUTPUT_FLUSH(); + return 1; + } + } + } + + return 0; +} + +/*-----------------------------------------------*/ +static int IsStringInBiggerString(const char* longstring, const char* shortstring) +{ + const char* lptr = longstring; + const char* sptr = shortstring; + const char* lnext = lptr; + + if (*sptr == '*') + { + return UnityStrictMatch ? 0 : 1; + } + + while (*lptr) + { + lnext = lptr + 1; + + /* If they current bytes match, go on to the next bytes */ + while (*lptr && *sptr && (*lptr == *sptr)) + { + lptr++; + sptr++; + + switch (*sptr) + { + case '*': /* we encountered a wild-card */ + return UnityStrictMatch ? 0 : 1; + + case ',': /* we encountered the end of match string */ + case '"': + case '\'': + case 0: + return (!UnityStrictMatch || (*lptr == 0)) ? 1 : 0; + + case ':': /* we encountered the end of a partial match */ + return 2; + + default: + break; + } + } + + /* If we didn't match and we're on strict matching, we already know we failed */ + if (UnityStrictMatch) + { + return 0; + } + + /* Otherwise we start in the long pointer 1 character further and try again */ + lptr = lnext; + sptr = shortstring; + } + + return 0; +} + +/*-----------------------------------------------*/ +static int UnityStringArgumentMatches(const char* str) +{ + int retval; + const char* ptr1; + const char* ptr2; + const char* ptrf; + + /* Go through the options and get the substrings for matching one at a time */ + ptr1 = str; + while (ptr1[0] != 0) + { + if ((ptr1[0] == '"') || (ptr1[0] == '\'')) + { + ptr1++; + } + + /* look for the start of the next partial */ + ptr2 = ptr1; + ptrf = 0; + do + { + ptr2++; + if ((ptr2[0] == ':') && (ptr2[1] != 0) && (ptr2[0] != '\'') && (ptr2[0] != '"') && (ptr2[0] != ',')) + { + ptrf = &ptr2[1]; + } + } while ((ptr2[0] != 0) && (ptr2[0] != '\'') && (ptr2[0] != '"') && (ptr2[0] != ',')); + + while ((ptr2[0] != 0) && ((ptr2[0] == ':') || (ptr2[0] == '\'') || (ptr2[0] == '"') || (ptr2[0] == ','))) + { + ptr2++; + } + + /* done if complete filename match */ + retval = IsStringInBiggerString(Unity.TestFile, ptr1); + if (retval == 1) + { + return retval; + } + + /* done if testname match after filename partial match */ + if ((retval == 2) && (ptrf != 0)) + { + if (IsStringInBiggerString(Unity.CurrentTestName, ptrf)) + { + return 1; + } + } + + /* done if complete testname match */ + if (IsStringInBiggerString(Unity.CurrentTestName, ptr1) == 1) + { + return 1; + } + + ptr1 = ptr2; + } + + /* we couldn't find a match for any substrings */ + return 0; +} + +/*-----------------------------------------------*/ +int UnityTestMatches(void) +{ + /* Check if this test name matches the included test pattern */ + int retval; + if (UnityOptionIncludeNamed) + { + retval = UnityStringArgumentMatches(UnityOptionIncludeNamed); + } + else + { + retval = 1; + } + + /* Check if this test name matches the excluded test pattern */ + if (UnityOptionExcludeNamed) + { + if (UnityStringArgumentMatches(UnityOptionExcludeNamed)) + { + retval = 0; + } + } + + return retval; +} + +#endif /* UNITY_USE_COMMAND_LINE_ARGS */ +/*-----------------------------------------------*/ diff --git a/lib/Unity/src/unity.h b/lib/Unity/src/unity.h new file mode 100644 index 0000000..6310913 --- /dev/null +++ b/lib/Unity/src/unity.h @@ -0,0 +1,698 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef UNITY_FRAMEWORK_H +#define UNITY_FRAMEWORK_H +#define UNITY + +#define UNITY_VERSION_MAJOR 2 +#define UNITY_VERSION_MINOR 6 +#define UNITY_VERSION_BUILD 2 +#define UNITY_VERSION ((UNITY_VERSION_MAJOR << 16) | (UNITY_VERSION_MINOR << 8) | UNITY_VERSION_BUILD) + +#ifdef __cplusplus +extern "C" +{ +#endif + +#include "unity_internals.h" + +/*------------------------------------------------------- + * Test Setup / Teardown + *-------------------------------------------------------*/ + +/* These functions are intended to be called before and after each test. + * If using unity directly, these will need to be provided for each test + * executable built. If you are using the test runner generator and/or + * Ceedling, these are optional. */ +void setUp(void); +void tearDown(void); + +/* These functions are intended to be called at the beginning and end of an + * entire test suite. suiteTearDown() is passed the number of tests that + * failed, and its return value becomes the exit code of main(). If using + * Unity directly, you're in charge of calling these if they are desired. + * If using Ceedling or the test runner generator, these will be called + * automatically if they exist. */ +void suiteSetUp(void); +int suiteTearDown(int num_failures); + +/*------------------------------------------------------- + * Test Reset and Verify + *-------------------------------------------------------*/ + +/* These functions are intended to be called before or during tests in order + * to support complex test loops, etc. Both are NOT built into Unity. Instead + * the test runner generator will create them. resetTest will run teardown and + * setup again, verifying any end-of-test needs between. verifyTest will only + * run the verification. */ +void resetTest(void); +void verifyTest(void); + +/*------------------------------------------------------- + * Configuration Options + *------------------------------------------------------- + * All options described below should be passed as a compiler flag to all files using Unity. If you must add #defines, place them BEFORE the #include above. + + * Integers/longs/pointers + * - Unity attempts to automatically discover your integer sizes + * - define UNITY_EXCLUDE_STDINT_H to stop attempting to look in + * - define UNITY_EXCLUDE_LIMITS_H to stop attempting to look in + * - If you cannot use the automatic methods above, you can force Unity by using these options: + * - define UNITY_SUPPORT_64 + * - set UNITY_INT_WIDTH + * - set UNITY_LONG_WIDTH + * - set UNITY_POINTER_WIDTH + + * Floats + * - define UNITY_EXCLUDE_FLOAT to disallow floating point comparisons + * - define UNITY_FLOAT_PRECISION to specify the precision to use when doing TEST_ASSERT_EQUAL_FLOAT + * - define UNITY_FLOAT_TYPE to specify doubles instead of single precision floats + * - define UNITY_INCLUDE_DOUBLE to allow double floating point comparisons + * - define UNITY_EXCLUDE_DOUBLE to disallow double floating point comparisons (default) + * - define UNITY_DOUBLE_PRECISION to specify the precision to use when doing TEST_ASSERT_EQUAL_DOUBLE + * - define UNITY_DOUBLE_TYPE to specify something other than double + * - define UNITY_EXCLUDE_FLOAT_PRINT to trim binary size, won't print floating point values in errors + + * Output + * - by default, Unity prints to standard out with putchar. define UNITY_OUTPUT_CHAR(a) with a different function if desired + * - define UNITY_DIFFERENTIATE_FINAL_FAIL to print FAILED (vs. FAIL) at test end summary - for automated search for failure + + * Optimization + * - by default, line numbers are stored in unsigned shorts. Define UNITY_LINE_TYPE with a different type if your files are huge + * - by default, test and failure counters are unsigned shorts. Define UNITY_COUNTER_TYPE with a different type if you want to save space or have more than 65535 Tests. + + * Test Cases + * - define UNITY_SUPPORT_TEST_CASES to include the TEST_CASE macro, though really it's mostly about the runner generator script + + * Parameterized Tests + * - you'll want to create a define of TEST_CASE(...), TEST_RANGE(...) and/or TEST_MATRIX(...) which basically evaluates to nothing + + * Tests with Arguments + * - you'll want to define UNITY_USE_COMMAND_LINE_ARGS if you have the test runner passing arguments to Unity + + *------------------------------------------------------- + * Basic Fail and Ignore + *-------------------------------------------------------*/ + +#define TEST_FAIL_MESSAGE(message) UNITY_TEST_FAIL(__LINE__, (message)) +#define TEST_FAIL() UNITY_TEST_FAIL(__LINE__, NULL) +#define TEST_IGNORE_MESSAGE(message) UNITY_TEST_IGNORE(__LINE__, (message)) +#define TEST_IGNORE() UNITY_TEST_IGNORE(__LINE__, NULL) +#define TEST_MESSAGE(message) UnityMessage((message), __LINE__) +#define TEST_ONLY() +#ifdef UNITY_INCLUDE_PRINT_FORMATTED +#define TEST_PRINTF(message, ...) UnityPrintF(__LINE__, (message), ##__VA_ARGS__) +#endif + +/* It is not necessary for you to call PASS. A PASS condition is assumed if nothing fails. + * This method allows you to abort a test immediately with a PASS state, ignoring the remainder of the test. */ +#define TEST_PASS() TEST_ABORT() +#define TEST_PASS_MESSAGE(message) do { UnityMessage((message), __LINE__); TEST_ABORT(); } while (0) + +/*------------------------------------------------------- + * Build Directives + *------------------------------------------------------- + + * These macros do nothing, but they are useful for additional build context. + * Tools (like Ceedling) can scan for these directives and make use of them for + * per-test-executable #include search paths and linking. */ + +/* Add source files to a test executable's compilation and linking. Ex: TEST_SOURCE_FILE("sandwiches.c") */ +#define TEST_SOURCE_FILE(a) + +/* Customize #include search paths for a test executable's compilation. Ex: TEST_INCLUDE_PATH("src/module_a/inc") */ +#define TEST_INCLUDE_PATH(a) + +/*------------------------------------------------------- + * Test Asserts (simple) + *-------------------------------------------------------*/ + +/* Boolean */ +#define TEST_ASSERT(condition) UNITY_TEST_ASSERT( (condition), __LINE__, " Expression Evaluated To FALSE") +#define TEST_ASSERT_TRUE(condition) UNITY_TEST_ASSERT( (condition), __LINE__, " Expected TRUE Was FALSE") +#define TEST_ASSERT_UNLESS(condition) UNITY_TEST_ASSERT( !(condition), __LINE__, " Expression Evaluated To TRUE") +#define TEST_ASSERT_FALSE(condition) UNITY_TEST_ASSERT( !(condition), __LINE__, " Expected FALSE Was TRUE") +#define TEST_ASSERT_NULL(pointer) UNITY_TEST_ASSERT_NULL( (pointer), __LINE__, " Expected NULL") +#define TEST_ASSERT_NOT_NULL(pointer) UNITY_TEST_ASSERT_NOT_NULL((pointer), __LINE__, " Expected Non-NULL") +#define TEST_ASSERT_EMPTY(pointer) UNITY_TEST_ASSERT_EMPTY( (pointer), __LINE__, " Expected Empty") +#define TEST_ASSERT_NOT_EMPTY(pointer) UNITY_TEST_ASSERT_NOT_EMPTY((pointer), __LINE__, " Expected Non-Empty") + +/* Integers (of all sizes) */ +#define TEST_ASSERT_EQUAL_INT(expected, actual) UNITY_TEST_ASSERT_EQUAL_INT((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_INT8(expected, actual) UNITY_TEST_ASSERT_EQUAL_INT8((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_INT16(expected, actual) UNITY_TEST_ASSERT_EQUAL_INT16((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_INT32(expected, actual) UNITY_TEST_ASSERT_EQUAL_INT32((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_INT64(expected, actual) UNITY_TEST_ASSERT_EQUAL_INT64((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_UINT(expected, actual) UNITY_TEST_ASSERT_EQUAL_UINT( (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_UINT8(expected, actual) UNITY_TEST_ASSERT_EQUAL_UINT8( (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_UINT16(expected, actual) UNITY_TEST_ASSERT_EQUAL_UINT16( (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_UINT32(expected, actual) UNITY_TEST_ASSERT_EQUAL_UINT32( (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_UINT64(expected, actual) UNITY_TEST_ASSERT_EQUAL_UINT64( (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_size_t(expected, actual) UNITY_TEST_ASSERT_EQUAL_UINT((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_HEX(expected, actual) UNITY_TEST_ASSERT_EQUAL_HEX32((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_HEX8(expected, actual) UNITY_TEST_ASSERT_EQUAL_HEX8( (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_HEX16(expected, actual) UNITY_TEST_ASSERT_EQUAL_HEX16((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_HEX32(expected, actual) UNITY_TEST_ASSERT_EQUAL_HEX32((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_HEX64(expected, actual) UNITY_TEST_ASSERT_EQUAL_HEX64((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_CHAR(expected, actual) UNITY_TEST_ASSERT_EQUAL_CHAR((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_BITS(mask, expected, actual) UNITY_TEST_ASSERT_BITS((mask), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_BITS_HIGH(mask, actual) UNITY_TEST_ASSERT_BITS((mask), (UNITY_UINT)(-1), (actual), __LINE__, NULL) +#define TEST_ASSERT_BITS_LOW(mask, actual) UNITY_TEST_ASSERT_BITS((mask), (UNITY_UINT)(0), (actual), __LINE__, NULL) +#define TEST_ASSERT_BIT_HIGH(bit, actual) UNITY_TEST_ASSERT_BITS(((UNITY_UINT)1 << (bit)), (UNITY_UINT)(-1), (actual), __LINE__, NULL) +#define TEST_ASSERT_BIT_LOW(bit, actual) UNITY_TEST_ASSERT_BITS(((UNITY_UINT)1 << (bit)), (UNITY_UINT)(0), (actual), __LINE__, NULL) + +/* Integer Not Equal To (of all sizes) */ +#define TEST_ASSERT_NOT_EQUAL_INT(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_INT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_INT8(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_INT8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_INT16(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_INT16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_INT32(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_INT32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_INT64(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_INT64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_UINT(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_UINT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_UINT8(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_UINT8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_UINT16(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_UINT16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_UINT32(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_UINT32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_UINT64(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_UINT64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_size_t(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_UINT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_HEX8(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_HEX8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_HEX16(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_HEX16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_HEX32(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_HEX32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_HEX64(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_HEX64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_CHAR(threshold, actual) UNITY_TEST_ASSERT_NOT_EQUAL_CHAR((threshold), (actual), __LINE__, NULL) + +/* Integer Greater Than/ Less Than (of all sizes) */ +#define TEST_ASSERT_GREATER_THAN(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_INT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_INT(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_INT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_INT8(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_INT8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_INT16(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_INT16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_INT32(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_INT32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_INT64(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_INT64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_UINT(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_UINT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_UINT8(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_UINT8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_UINT16(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_UINT16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_UINT32(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_UINT32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_UINT64(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_UINT64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_size_t(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_UINT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_HEX8(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_HEX8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_HEX16(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_HEX16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_HEX32(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_HEX32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_HEX64(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_HEX64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_CHAR(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_CHAR((threshold), (actual), __LINE__, NULL) + +#define TEST_ASSERT_LESS_THAN(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_INT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_INT(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_INT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_INT8(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_INT8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_INT16(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_INT16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_INT32(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_INT32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_INT64(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_INT64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_UINT(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_UINT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_UINT8(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_UINT8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_UINT16(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_UINT16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_UINT32(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_UINT32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_UINT64(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_UINT64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_size_t(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_UINT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_HEX8(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_HEX8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_HEX16(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_HEX16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_HEX32(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_HEX32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_HEX64(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_HEX64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_CHAR(threshold, actual) UNITY_TEST_ASSERT_SMALLER_THAN_CHAR((threshold), (actual), __LINE__, NULL) + +#define TEST_ASSERT_GREATER_OR_EQUAL(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_INT(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_INT8(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_INT16(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_INT32(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_INT64(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_UINT(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_UINT8(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_UINT16(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_UINT32(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_UINT64(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_size_t(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_HEX8(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_HEX16(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_HEX32(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_HEX64(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_CHAR(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_CHAR((threshold), (actual), __LINE__, NULL) + +#define TEST_ASSERT_LESS_OR_EQUAL(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_INT(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_INT8(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_INT16(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_INT32(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_INT64(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_UINT(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_UINT8(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_UINT16(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_UINT32(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_UINT64(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_size_t(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_HEX8(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX8((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_HEX16(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX16((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_HEX32(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX32((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_HEX64(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX64((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_CHAR(threshold, actual) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_CHAR((threshold), (actual), __LINE__, NULL) + +/* Integer Ranges (of all sizes) */ +#define TEST_ASSERT_INT_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_INT_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_INT8_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_INT8_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_INT16_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_INT16_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_INT32_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_INT32_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_INT64_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_INT64_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_UINT_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_UINT_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_UINT8_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_UINT8_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_UINT16_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_UINT16_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_UINT32_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_UINT32_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_UINT64_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_UINT64_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_size_t_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_UINT_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_HEX_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_HEX32_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_HEX8_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_HEX8_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_HEX16_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_HEX16_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_HEX32_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_HEX32_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_HEX64_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_HEX64_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_CHAR_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_CHAR_WITHIN((delta), (expected), (actual), __LINE__, NULL) + +/* Integer Array Ranges (of all sizes) */ +#define TEST_ASSERT_INT_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_INT_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_INT8_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_INT8_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_INT16_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_INT16_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_INT32_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_INT32_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_INT64_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_INT64_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_UINT_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_UINT_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_UINT8_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_UINT8_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_UINT16_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_UINT16_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_UINT32_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_UINT32_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_UINT64_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_UINT64_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_size_t_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_UINT_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_HEX_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_HEX32_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_HEX8_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_HEX8_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_HEX16_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_HEX16_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_HEX32_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_HEX32_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_HEX64_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_HEX64_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) +#define TEST_ASSERT_CHAR_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_CHAR_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, NULL) + + +/* Structs and Strings */ +#define TEST_ASSERT_EQUAL_PTR(expected, actual) UNITY_TEST_ASSERT_EQUAL_PTR((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_STRING(expected, actual) UNITY_TEST_ASSERT_EQUAL_STRING((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_STRING_LEN(expected, actual, len) UNITY_TEST_ASSERT_EQUAL_STRING_LEN((expected), (actual), (len), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_MEMORY(expected, actual, len) UNITY_TEST_ASSERT_EQUAL_MEMORY((expected), (actual), (len), __LINE__, NULL) + +/* Arrays */ +#define TEST_ASSERT_EQUAL_INT_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_INT_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_INT8_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_INT8_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_INT16_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_INT16_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_INT32_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_INT32_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_INT64_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_INT64_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_UINT_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_UINT_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_UINT8_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_UINT8_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_UINT16_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_UINT16_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_UINT32_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_UINT32_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_UINT64_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_UINT64_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_size_t_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_UINT_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_HEX_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_HEX32_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_HEX8_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_HEX8_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_HEX16_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_HEX16_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_HEX32_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_HEX32_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_HEX64_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_HEX64_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_PTR_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_PTR_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_STRING_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_STRING_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_MEMORY_ARRAY(expected, actual, len, num_elements) UNITY_TEST_ASSERT_EQUAL_MEMORY_ARRAY((expected), (actual), (len), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_CHAR_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_CHAR_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) + +/* Arrays Compared To Single Value */ +#define TEST_ASSERT_EACH_EQUAL_INT(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_INT((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_INT8(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_INT8((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_INT16(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_INT16((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_INT32(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_INT32((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_INT64(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_INT64((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_UINT(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_UINT((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_UINT8(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_UINT8((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_UINT16(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_UINT16((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_UINT32(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_UINT32((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_UINT64(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_UINT64((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_size_t(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_UINT((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_HEX(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_HEX32((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_HEX8(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_HEX8((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_HEX16(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_HEX16((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_HEX32(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_HEX32((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_HEX64(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_HEX64((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_PTR(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_PTR((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_STRING(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_STRING((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_MEMORY(expected, actual, len, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_MEMORY((expected), (actual), (len), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_CHAR(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_CHAR((expected), (actual), (num_elements), __LINE__, NULL) + +/* Floating Point (If Enabled) */ +#define TEST_ASSERT_FLOAT_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_FLOAT_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_FLOAT_NOT_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_FLOAT_NOT_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_FLOAT(expected, actual) UNITY_TEST_ASSERT_EQUAL_FLOAT((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_FLOAT(expected, actual) UNITY_TEST_ASSERT_NOT_EQUAL_FLOAT((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_FLOAT_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_FLOAT_ARRAY_WITHIN((delta), (expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_FLOAT_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_FLOAT_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_FLOAT(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_FLOAT((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_FLOAT(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_FLOAT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_FLOAT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_FLOAT(threshold, actual) UNITY_TEST_ASSERT_LESS_THAN_FLOAT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_FLOAT(threshold, actual) UNITY_TEST_ASSERT_LESS_OR_EQUAL_FLOAT((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_FLOAT_IS_INF(actual) UNITY_TEST_ASSERT_FLOAT_IS_INF((actual), __LINE__, NULL) +#define TEST_ASSERT_FLOAT_IS_NEG_INF(actual) UNITY_TEST_ASSERT_FLOAT_IS_NEG_INF((actual), __LINE__, NULL) +#define TEST_ASSERT_FLOAT_IS_NAN(actual) UNITY_TEST_ASSERT_FLOAT_IS_NAN((actual), __LINE__, NULL) +#define TEST_ASSERT_FLOAT_IS_DETERMINATE(actual) UNITY_TEST_ASSERT_FLOAT_IS_DETERMINATE((actual), __LINE__, NULL) +#define TEST_ASSERT_FLOAT_IS_NOT_INF(actual) UNITY_TEST_ASSERT_FLOAT_IS_NOT_INF((actual), __LINE__, NULL) +#define TEST_ASSERT_FLOAT_IS_NOT_NEG_INF(actual) UNITY_TEST_ASSERT_FLOAT_IS_NOT_NEG_INF((actual), __LINE__, NULL) +#define TEST_ASSERT_FLOAT_IS_NOT_NAN(actual) UNITY_TEST_ASSERT_FLOAT_IS_NOT_NAN((actual), __LINE__, NULL) +#define TEST_ASSERT_FLOAT_IS_NOT_DETERMINATE(actual) UNITY_TEST_ASSERT_FLOAT_IS_NOT_DETERMINATE((actual), __LINE__, NULL) + +/* Double (If Enabled) */ +#define TEST_ASSERT_DOUBLE_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_DOUBLE_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_DOUBLE_NOT_WITHIN(delta, expected, actual) UNITY_TEST_ASSERT_DOUBLE_NOT_WITHIN((delta), (expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_DOUBLE(expected, actual) UNITY_TEST_ASSERT_EQUAL_DOUBLE((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL_DOUBLE(expected, actual) UNITY_TEST_ASSERT_NOT_EQUAL_DOUBLE((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_DOUBLE_ARRAY_WITHIN(delta, expected, actual, num_elements) UNITY_TEST_ASSERT_DOUBLE_ARRAY_WITHIN((delta), (expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EQUAL_DOUBLE_ARRAY(expected, actual, num_elements) UNITY_TEST_ASSERT_EQUAL_DOUBLE_ARRAY((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_EACH_EQUAL_DOUBLE(expected, actual, num_elements) UNITY_TEST_ASSERT_EACH_EQUAL_DOUBLE((expected), (actual), (num_elements), __LINE__, NULL) +#define TEST_ASSERT_GREATER_THAN_DOUBLE(threshold, actual) UNITY_TEST_ASSERT_GREATER_THAN_DOUBLE((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(threshold, actual) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_THAN_DOUBLE(threshold, actual) UNITY_TEST_ASSERT_LESS_THAN_DOUBLE((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(threshold, actual) UNITY_TEST_ASSERT_LESS_OR_EQUAL_DOUBLE((threshold), (actual), __LINE__, NULL) +#define TEST_ASSERT_DOUBLE_IS_INF(actual) UNITY_TEST_ASSERT_DOUBLE_IS_INF((actual), __LINE__, NULL) +#define TEST_ASSERT_DOUBLE_IS_NEG_INF(actual) UNITY_TEST_ASSERT_DOUBLE_IS_NEG_INF((actual), __LINE__, NULL) +#define TEST_ASSERT_DOUBLE_IS_NAN(actual) UNITY_TEST_ASSERT_DOUBLE_IS_NAN((actual), __LINE__, NULL) +#define TEST_ASSERT_DOUBLE_IS_DETERMINATE(actual) UNITY_TEST_ASSERT_DOUBLE_IS_DETERMINATE((actual), __LINE__, NULL) +#define TEST_ASSERT_DOUBLE_IS_NOT_INF(actual) UNITY_TEST_ASSERT_DOUBLE_IS_NOT_INF((actual), __LINE__, NULL) +#define TEST_ASSERT_DOUBLE_IS_NOT_NEG_INF(actual) UNITY_TEST_ASSERT_DOUBLE_IS_NOT_NEG_INF((actual), __LINE__, NULL) +#define TEST_ASSERT_DOUBLE_IS_NOT_NAN(actual) UNITY_TEST_ASSERT_DOUBLE_IS_NOT_NAN((actual), __LINE__, NULL) +#define TEST_ASSERT_DOUBLE_IS_NOT_DETERMINATE(actual) UNITY_TEST_ASSERT_DOUBLE_IS_NOT_DETERMINATE((actual), __LINE__, NULL) + +/* Shorthand */ +#ifdef UNITY_SHORTHAND_AS_OLD +#define TEST_ASSERT_EQUAL(expected, actual) UNITY_TEST_ASSERT_EQUAL_INT((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL(expected, actual) UNITY_TEST_ASSERT(((expected) != (actual)), __LINE__, " Expected Not-Equal") +#endif +#ifdef UNITY_SHORTHAND_AS_INT +#define TEST_ASSERT_EQUAL(expected, actual) UNITY_TEST_ASSERT_EQUAL_INT((expected), (actual), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL(expected, actual) UNITY_TEST_FAIL(__LINE__, UnityStrErrShorthand) +#endif +#ifdef UNITY_SHORTHAND_AS_MEM +#define TEST_ASSERT_EQUAL(expected, actual) UNITY_TEST_ASSERT_EQUAL_MEMORY((&expected), (&actual), sizeof(expected), __LINE__, NULL) +#define TEST_ASSERT_NOT_EQUAL(expected, actual) UNITY_TEST_FAIL(__LINE__, UnityStrErrShorthand) +#endif +#ifdef UNITY_SHORTHAND_AS_RAW +#define TEST_ASSERT_EQUAL(expected, actual) UNITY_TEST_ASSERT(((expected) == (actual)), __LINE__, " Expected Equal") +#define TEST_ASSERT_NOT_EQUAL(expected, actual) UNITY_TEST_ASSERT(((expected) != (actual)), __LINE__, " Expected Not-Equal") +#endif +#ifdef UNITY_SHORTHAND_AS_NONE +#define TEST_ASSERT_EQUAL(expected, actual) UNITY_TEST_FAIL(__LINE__, UnityStrErrShorthand) +#define TEST_ASSERT_NOT_EQUAL(expected, actual) UNITY_TEST_FAIL(__LINE__, UnityStrErrShorthand) +#endif + +/*------------------------------------------------------- + * Test Asserts (with additional messages) + *-------------------------------------------------------*/ + +/* Boolean */ +#define TEST_ASSERT_MESSAGE(condition, message) UNITY_TEST_ASSERT( (condition), __LINE__, (message)) +#define TEST_ASSERT_TRUE_MESSAGE(condition, message) UNITY_TEST_ASSERT( (condition), __LINE__, (message)) +#define TEST_ASSERT_UNLESS_MESSAGE(condition, message) UNITY_TEST_ASSERT( !(condition), __LINE__, (message)) +#define TEST_ASSERT_FALSE_MESSAGE(condition, message) UNITY_TEST_ASSERT( !(condition), __LINE__, (message)) +#define TEST_ASSERT_NULL_MESSAGE(pointer, message) UNITY_TEST_ASSERT_NULL( (pointer), __LINE__, (message)) +#define TEST_ASSERT_NOT_NULL_MESSAGE(pointer, message) UNITY_TEST_ASSERT_NOT_NULL((pointer), __LINE__, (message)) +#define TEST_ASSERT_EMPTY_MESSAGE(pointer, message) UNITY_TEST_ASSERT_EMPTY( (pointer), __LINE__, (message)) +#define TEST_ASSERT_NOT_EMPTY_MESSAGE(pointer, message) UNITY_TEST_ASSERT_NOT_EMPTY((pointer), __LINE__, (message)) + +/* Integers (of all sizes) */ +#define TEST_ASSERT_EQUAL_INT_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_INT((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_INT8_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_INT8((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_INT16_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_INT16((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_INT32_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_INT32((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_INT64_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_INT64((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_UINT_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_UINT( (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_UINT8_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_UINT8( (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_UINT16_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_UINT16( (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_UINT32_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_UINT32( (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_UINT64_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_UINT64( (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_size_t_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_UINT( (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_HEX_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_HEX32((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_HEX8_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_HEX8( (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_HEX16_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_HEX16((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_HEX32_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_HEX32((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_HEX64_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_HEX64((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_BITS_MESSAGE(mask, expected, actual, message) UNITY_TEST_ASSERT_BITS((mask), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_BITS_HIGH_MESSAGE(mask, actual, message) UNITY_TEST_ASSERT_BITS((mask), (UNITY_UINT32)(-1), (actual), __LINE__, (message)) +#define TEST_ASSERT_BITS_LOW_MESSAGE(mask, actual, message) UNITY_TEST_ASSERT_BITS((mask), (UNITY_UINT32)(0), (actual), __LINE__, (message)) +#define TEST_ASSERT_BIT_HIGH_MESSAGE(bit, actual, message) UNITY_TEST_ASSERT_BITS(((UNITY_UINT32)1 << (bit)), (UNITY_UINT32)(-1), (actual), __LINE__, (message)) +#define TEST_ASSERT_BIT_LOW_MESSAGE(bit, actual, message) UNITY_TEST_ASSERT_BITS(((UNITY_UINT32)1 << (bit)), (UNITY_UINT32)(0), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_CHAR_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_CHAR((expected), (actual), __LINE__, (message)) + +/* Integer Not Equal To (of all sizes) */ +#define TEST_ASSERT_NOT_EQUAL_INT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_INT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_INT8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_INT8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_INT16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_INT16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_INT32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_INT32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_INT64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_INT64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_UINT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_UINT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_UINT8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_UINT8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_UINT16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_UINT16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_UINT32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_UINT32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_UINT64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_UINT64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_size_t_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_UINT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_HEX8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_HEX8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_HEX16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_HEX16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_HEX32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_HEX32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_HEX64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_HEX64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_CHAR_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_CHAR((threshold), (actual), __LINE__, (message)) + + +/* Integer Greater Than/ Less Than (of all sizes) */ +#define TEST_ASSERT_GREATER_THAN_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_INT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_INT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_INT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_INT8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_INT8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_INT16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_INT16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_INT32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_INT32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_INT64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_INT64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_UINT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_UINT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_UINT8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_UINT8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_UINT16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_UINT16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_UINT32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_UINT32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_UINT64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_UINT64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_size_t_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_UINT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_HEX8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_HEX8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_HEX16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_HEX16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_HEX32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_HEX32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_HEX64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_HEX64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_CHAR_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_CHAR((threshold), (actual), __LINE__, (message)) + +#define TEST_ASSERT_LESS_THAN_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_INT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_INT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_INT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_INT8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_INT8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_INT16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_INT16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_INT32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_INT32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_INT64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_INT64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_UINT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_UINT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_UINT8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_UINT8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_UINT16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_UINT16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_UINT32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_UINT32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_UINT64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_UINT64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_size_t_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_UINT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_HEX8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_HEX8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_HEX16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_HEX16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_HEX32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_HEX32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_HEX64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_HEX64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_CHAR_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_THAN_CHAR((threshold), (actual), __LINE__, (message)) + +#define TEST_ASSERT_GREATER_OR_EQUAL_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_INT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_INT8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_INT16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_INT32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_INT64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_UINT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_UINT8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_UINT16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_UINT32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_UINT64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_size_t_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_HEX8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_HEX16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_HEX32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_HEX64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_CHAR_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_CHAR((threshold), (actual), __LINE__, (message)) + +#define TEST_ASSERT_LESS_OR_EQUAL_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_INT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_INT8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_INT16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_INT32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_INT64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_UINT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_UINT8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_UINT16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_UINT32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_UINT64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_size_t_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_HEX8_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX8((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_HEX16_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX16((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_HEX32_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX32((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_HEX64_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX64((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_CHAR_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_CHAR((threshold), (actual), __LINE__, (message)) + +/* Integer Ranges (of all sizes) */ +#define TEST_ASSERT_INT_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_INT_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_INT8_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_INT8_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_INT16_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_INT16_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_INT32_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_INT32_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_INT64_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_INT64_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_UINT_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_UINT_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_UINT8_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_UINT8_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_UINT16_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_UINT16_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_UINT32_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_UINT32_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_UINT64_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_UINT64_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_size_t_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_UINT_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_HEX_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_HEX32_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_HEX8_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_HEX8_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_HEX16_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_HEX16_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_HEX32_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_HEX32_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_HEX64_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_HEX64_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_CHAR_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_CHAR_WITHIN((delta), (expected), (actual), __LINE__, (message)) + +/* Integer Array Ranges (of all sizes) */ +#define TEST_ASSERT_INT_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_INT_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_INT8_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_INT8_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_INT16_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_INT16_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_INT32_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_INT32_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_INT64_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_UINT_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_UINT_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_UINT8_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_UINT8_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_UINT16_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_UINT16_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_UINT32_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_UINT32_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_UINT64_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_size_t_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_UINT_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_HEX_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_HEX32_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_HEX8_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_HEX8_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_HEX16_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_HEX16_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_HEX32_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_HEX32_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_HEX64_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) +#define TEST_ASSERT_CHAR_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_CHAR_ARRAY_WITHIN((delta), (expected), (actual), num_elements, __LINE__, (message)) + + +/* Structs and Strings */ +#define TEST_ASSERT_EQUAL_PTR_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_PTR((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_STRING_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_STRING((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_STRING_LEN_MESSAGE(expected, actual, len, message) UNITY_TEST_ASSERT_EQUAL_STRING_LEN((expected), (actual), (len), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_MEMORY_MESSAGE(expected, actual, len, message) UNITY_TEST_ASSERT_EQUAL_MEMORY((expected), (actual), (len), __LINE__, (message)) + +/* Arrays */ +#define TEST_ASSERT_EQUAL_INT_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_INT_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_INT8_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_INT8_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_INT16_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_INT16_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_INT32_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_INT32_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_INT64_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_INT64_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_UINT_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_UINT_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_UINT8_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_UINT8_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_UINT16_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_UINT16_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_UINT32_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_UINT32_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_UINT64_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_UINT64_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_size_t_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_UINT_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_HEX_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_HEX32_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_HEX8_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_HEX8_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_HEX16_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_HEX16_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_HEX32_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_HEX32_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_HEX64_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_HEX64_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_PTR_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_PTR_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_STRING_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_STRING_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_MEMORY_ARRAY_MESSAGE(expected, actual, len, num_elements, message) UNITY_TEST_ASSERT_EQUAL_MEMORY_ARRAY((expected), (actual), (len), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_CHAR_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_CHAR_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) + +/* Arrays Compared To Single Value*/ +#define TEST_ASSERT_EACH_EQUAL_INT_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_INT((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_INT8_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_INT8((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_INT16_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_INT16((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_INT32_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_INT32((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_INT64_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_INT64((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_UINT_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_UINT((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_UINT8_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_UINT8((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_UINT16_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_UINT16((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_UINT32_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_UINT32((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_UINT64_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_UINT64((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_size_t_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_UINT((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_HEX_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_HEX32((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_HEX8_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_HEX8((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_HEX16_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_HEX16((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_HEX32_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_HEX32((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_HEX64_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_HEX64((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_PTR_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_PTR((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_STRING_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_STRING((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_MEMORY_MESSAGE(expected, actual, len, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_MEMORY((expected), (actual), (len), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_CHAR_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_CHAR((expected), (actual), (num_elements), __LINE__, (message)) + +/* Floating Point (If Enabled) */ +#define TEST_ASSERT_FLOAT_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_FLOAT_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_FLOAT_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_FLOAT((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_FLOAT_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_FLOAT((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_FLOAT_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_FLOAT_ARRAY_WITHIN((delta), (expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_FLOAT_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_FLOAT_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_FLOAT_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_FLOAT((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_FLOAT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_FLOAT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_FLOAT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_FLOAT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_FLOAT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_LESS_THAN_FLOAT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_FLOAT_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_LESS_OR_EQUAL_FLOAT((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_FLOAT_IS_INF_MESSAGE(actual, message) UNITY_TEST_ASSERT_FLOAT_IS_INF((actual), __LINE__, (message)) +#define TEST_ASSERT_FLOAT_IS_NEG_INF_MESSAGE(actual, message) UNITY_TEST_ASSERT_FLOAT_IS_NEG_INF((actual), __LINE__, (message)) +#define TEST_ASSERT_FLOAT_IS_NAN_MESSAGE(actual, message) UNITY_TEST_ASSERT_FLOAT_IS_NAN((actual), __LINE__, (message)) +#define TEST_ASSERT_FLOAT_IS_DETERMINATE_MESSAGE(actual, message) UNITY_TEST_ASSERT_FLOAT_IS_DETERMINATE((actual), __LINE__, (message)) +#define TEST_ASSERT_FLOAT_IS_NOT_INF_MESSAGE(actual, message) UNITY_TEST_ASSERT_FLOAT_IS_NOT_INF((actual), __LINE__, (message)) +#define TEST_ASSERT_FLOAT_IS_NOT_NEG_INF_MESSAGE(actual, message) UNITY_TEST_ASSERT_FLOAT_IS_NOT_NEG_INF((actual), __LINE__, (message)) +#define TEST_ASSERT_FLOAT_IS_NOT_NAN_MESSAGE(actual, message) UNITY_TEST_ASSERT_FLOAT_IS_NOT_NAN((actual), __LINE__, (message)) +#define TEST_ASSERT_FLOAT_IS_NOT_DETERMINATE_MESSAGE(actual, message) UNITY_TEST_ASSERT_FLOAT_IS_NOT_DETERMINATE((actual), __LINE__, (message)) + +/* Double (If Enabled) */ +#define TEST_ASSERT_DOUBLE_WITHIN_MESSAGE(delta, expected, actual, message) UNITY_TEST_ASSERT_DOUBLE_WITHIN((delta), (expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_DOUBLE_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_DOUBLE((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_DOUBLE_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_NOT_EQUAL_DOUBLE((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_DOUBLE_ARRAY_WITHIN_MESSAGE(delta, expected, actual, num_elements, message) UNITY_TEST_ASSERT_DOUBLE_ARRAY_WITHIN((delta), (expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EQUAL_DOUBLE_ARRAY_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EQUAL_DOUBLE_ARRAY((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_EACH_EQUAL_DOUBLE_MESSAGE(expected, actual, num_elements, message) UNITY_TEST_ASSERT_EACH_EQUAL_DOUBLE((expected), (actual), (num_elements), __LINE__, (message)) +#define TEST_ASSERT_GREATER_THAN_DOUBLE_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_THAN_DOUBLE((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_THAN_DOUBLE_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_LESS_THAN_DOUBLE((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_LESS_OR_EQUAL_DOUBLE_MESSAGE(threshold, actual, message) UNITY_TEST_ASSERT_LESS_OR_EQUAL_DOUBLE((threshold), (actual), __LINE__, (message)) +#define TEST_ASSERT_DOUBLE_IS_INF_MESSAGE(actual, message) UNITY_TEST_ASSERT_DOUBLE_IS_INF((actual), __LINE__, (message)) +#define TEST_ASSERT_DOUBLE_IS_NEG_INF_MESSAGE(actual, message) UNITY_TEST_ASSERT_DOUBLE_IS_NEG_INF((actual), __LINE__, (message)) +#define TEST_ASSERT_DOUBLE_IS_NAN_MESSAGE(actual, message) UNITY_TEST_ASSERT_DOUBLE_IS_NAN((actual), __LINE__, (message)) +#define TEST_ASSERT_DOUBLE_IS_DETERMINATE_MESSAGE(actual, message) UNITY_TEST_ASSERT_DOUBLE_IS_DETERMINATE((actual), __LINE__, (message)) +#define TEST_ASSERT_DOUBLE_IS_NOT_INF_MESSAGE(actual, message) UNITY_TEST_ASSERT_DOUBLE_IS_NOT_INF((actual), __LINE__, (message)) +#define TEST_ASSERT_DOUBLE_IS_NOT_NEG_INF_MESSAGE(actual, message) UNITY_TEST_ASSERT_DOUBLE_IS_NOT_NEG_INF((actual), __LINE__, (message)) +#define TEST_ASSERT_DOUBLE_IS_NOT_NAN_MESSAGE(actual, message) UNITY_TEST_ASSERT_DOUBLE_IS_NOT_NAN((actual), __LINE__, (message)) +#define TEST_ASSERT_DOUBLE_IS_NOT_DETERMINATE_MESSAGE(actual, message) UNITY_TEST_ASSERT_DOUBLE_IS_NOT_DETERMINATE((actual), __LINE__, (message)) + +/* Shorthand */ +#ifdef UNITY_SHORTHAND_AS_OLD +#define TEST_ASSERT_EQUAL_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_INT((expected), (actual), __LINE__, (message)) +#define TEST_ASSERT_NOT_EQUAL_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT(((expected) != (actual)), __LINE__, (message)) +#endif +#ifdef UNITY_SHORTHAND_AS_INT +#define TEST_ASSERT_EQUAL_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_INT((expected), (actual), __LINE__, message) +#define TEST_ASSERT_NOT_EQUAL_MESSAGE(expected, actual, message) UNITY_TEST_FAIL(__LINE__, UnityStrErrShorthand) +#endif +#ifdef UNITY_SHORTHAND_AS_MEM +#define TEST_ASSERT_EQUAL_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT_EQUAL_MEMORY((&expected), (&actual), sizeof(expected), __LINE__, message) +#define TEST_ASSERT_NOT_EQUAL_MESSAGE(expected, actual, message) UNITY_TEST_FAIL(__LINE__, UnityStrErrShorthand) +#endif +#ifdef UNITY_SHORTHAND_AS_RAW +#define TEST_ASSERT_EQUAL_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT(((expected) == (actual)), __LINE__, message) +#define TEST_ASSERT_NOT_EQUAL_MESSAGE(expected, actual, message) UNITY_TEST_ASSERT(((expected) != (actual)), __LINE__, message) +#endif +#ifdef UNITY_SHORTHAND_AS_NONE +#define TEST_ASSERT_EQUAL_MESSAGE(expected, actual, message) UNITY_TEST_FAIL(__LINE__, UnityStrErrShorthand) +#define TEST_ASSERT_NOT_EQUAL_MESSAGE(expected, actual, message) UNITY_TEST_FAIL(__LINE__, UnityStrErrShorthand) +#endif + +/* end of UNITY_FRAMEWORK_H */ +#ifdef __cplusplus +} +#endif +#endif diff --git a/lib/Unity/src/unity_internals.h b/lib/Unity/src/unity_internals.h new file mode 100644 index 0000000..da17059 --- /dev/null +++ b/lib/Unity/src/unity_internals.h @@ -0,0 +1,1271 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef UNITY_INTERNALS_H +#define UNITY_INTERNALS_H + +#ifdef UNITY_INCLUDE_CONFIG_H +#include "unity_config.h" +#endif + +#ifndef UNITY_EXCLUDE_SETJMP_H +#include +#endif + +#ifndef UNITY_EXCLUDE_MATH_H +#include +#endif + +#ifndef UNITY_EXCLUDE_STDDEF_H +#include +#endif + +#ifdef UNITY_INCLUDE_PRINT_FORMATTED +#include +#endif + +/* Unity Attempts to Auto-Detect Integer Types + * Attempt 1: UINT_MAX, ULONG_MAX in , or default to 32 bits + * Attempt 2: UINTPTR_MAX in , or default to same size as long + * The user may override any of these derived constants: + * UNITY_INT_WIDTH, UNITY_LONG_WIDTH, UNITY_POINTER_WIDTH */ +#ifndef UNITY_EXCLUDE_STDINT_H +#include +#endif + +#ifndef UNITY_EXCLUDE_LIMITS_H +#include +#endif + +#if defined(__GNUC__) || defined(__clang__) + #define UNITY_FUNCTION_ATTR(a) __attribute__((a)) +#else + #define UNITY_FUNCTION_ATTR(a) /* ignore */ +#endif + +/* UNITY_NORETURN is only required if we have setjmp.h. */ +#ifndef UNITY_EXCLUDE_SETJMP_H + #ifndef UNITY_NORETURN + #if defined(__cplusplus) + #if __cplusplus >= 201103L + #define UNITY_NORETURN [[ noreturn ]] + #endif + #elif defined(__STDC_VERSION__) && __STDC_VERSION__ >= 201112L && __STDC_VERSION__ < 202311L + /* _Noreturn keyword is used from C11 but deprecated in C23. */ + #if defined(_WIN32) && defined(_MSC_VER) + /* We are using MSVC compiler on Windows platform. */ + /* Not all Windows SDKs supports , but compiler can support C11: */ + /* https://devblogs.microsoft.com/cppblog/c11-and-c17-standard-support-arriving-in-msvc/ */ + /* Not sure, that Mingw compilers has Windows SDK headers at all. */ + #include + #endif + + /* Using Windows SDK predefined macro for detecting supported SDK with MSVC compiler. */ + /* Mingw GCC should work without that fixes. */ + /* Based on: */ + /* https://docs.microsoft.com/en-us/cpp/porting/modifying-winver-and-win32-winnt?view=msvc-170 */ + /* NTDDI_WIN10_FE is equal to Windows 10 SDK 2104 */ + #if defined(_MSC_VER) && ((!defined(NTDDI_WIN10_FE)) || WDK_NTDDI_VERSION < NTDDI_WIN10_FE) + /* Based on tests and: */ + /* https://docs.microsoft.com/en-us/cpp/c-language/noreturn?view=msvc-170 */ + /* https://en.cppreference.com/w/c/language/_Noreturn */ + #define UNITY_NORETURN _Noreturn + #else /* Using newer Windows SDK or not MSVC compiler */ + #if defined(__GNUC__) + /* The header collides with __attribute(noreturn)__ from GCC. */ + #define UNITY_NORETURN _Noreturn + #else + #include + #define UNITY_NORETURN noreturn + #endif + #endif + #elif defined(__STDC_VERSION__) && __STDC_VERSION__ >= 202311L + /* Since C23, the keyword _Noreturn has been replaced by the attribute noreturn, based on: */ + /* https://en.cppreference.com/w/c/language/attributes/noreturn */ + #define UNITY_NORETURN [[ noreturn ]] + #elif defined(__IAR_SYSTEMS_ICC__) && (__IAR_SYSTEMS_ICC__ >= 8) + /* For IAR compilers supporting at least C99 use the IAR specific '__noreturn' keyword */ + /* Based on tests and: */ + /* https://wwwfiles.iar.com/arm/webic/doc/EWARM_DevelopmentGuide.ENU.pdf */ + /* https://wwwfiles.iar.com/AVR/webic/doc/EWAVR_CompilerGuide.pdf */ + /* https://wwwfiles.iar.com/msp430/webic/doc/EW430_CompilerReference.pdf */ + #define UNITY_NORETURN __noreturn + #endif + #endif + #ifndef UNITY_NORETURN + #define UNITY_NORETURN UNITY_FUNCTION_ATTR(__noreturn__) + #endif +#endif + +/*------------------------------------------------------- + * Guess Widths If Not Specified + *-------------------------------------------------------*/ + +/* Determine the size of an int, if not already specified. + * We cannot use sizeof(int), because it is not yet defined + * at this stage in the translation of the C program. + * Also sizeof(int) does return the size in addressable units on all platforms, + * which may not necessarily be the size in bytes. + * Therefore, infer it from UINT_MAX if possible. */ +#ifndef UNITY_INT_WIDTH + #ifdef UINT_MAX + #if (UINT_MAX == 0xFFFF) + #define UNITY_INT_WIDTH (16) + #elif (UINT_MAX == 0xFFFFFFFF) + #define UNITY_INT_WIDTH (32) + #elif (UINT_MAX == 0xFFFFFFFFFFFFFFFF) + #define UNITY_INT_WIDTH (64) + #endif + #else /* Set to default */ + #define UNITY_INT_WIDTH (32) + #endif /* UINT_MAX */ +#endif + +/* Determine the size of a long, if not already specified. */ +#ifndef UNITY_LONG_WIDTH + #ifdef ULONG_MAX + #if (ULONG_MAX == 0xFFFF) + #define UNITY_LONG_WIDTH (16) + #elif (ULONG_MAX == 0xFFFFFFFF) + #define UNITY_LONG_WIDTH (32) + #elif (ULONG_MAX == 0xFFFFFFFFFFFFFFFF) + #define UNITY_LONG_WIDTH (64) + #endif + #else /* Set to default */ + #define UNITY_LONG_WIDTH (32) + #endif /* ULONG_MAX */ +#endif + +/* Determine the size of a pointer, if not already specified. */ +#ifndef UNITY_POINTER_WIDTH + #ifdef UINTPTR_MAX + #if (UINTPTR_MAX <= 0xFFFF) + #define UNITY_POINTER_WIDTH (16) + #elif (UINTPTR_MAX <= 0xFFFFFFFF) + #define UNITY_POINTER_WIDTH (32) + #elif (UINTPTR_MAX <= 0xFFFFFFFFFFFFFFFF) + #define UNITY_POINTER_WIDTH (64) + #endif + #else /* Set to default */ + #define UNITY_POINTER_WIDTH UNITY_LONG_WIDTH + #endif /* UINTPTR_MAX */ +#endif + +/*------------------------------------------------------- + * Int Support (Define types based on detected sizes) + *-------------------------------------------------------*/ + +#if (UNITY_INT_WIDTH == 32) + typedef unsigned char UNITY_UINT8; + typedef unsigned short UNITY_UINT16; + typedef unsigned int UNITY_UINT32; + typedef signed char UNITY_INT8; + typedef signed short UNITY_INT16; + typedef signed int UNITY_INT32; +#elif (UNITY_INT_WIDTH == 16) + typedef unsigned char UNITY_UINT8; + typedef unsigned int UNITY_UINT16; + typedef unsigned long UNITY_UINT32; + typedef signed char UNITY_INT8; + typedef signed int UNITY_INT16; + typedef signed long UNITY_INT32; +#else + #error Invalid UNITY_INT_WIDTH specified! (16 or 32 are supported) +#endif + +/*------------------------------------------------------- + * 64-bit Support + *-------------------------------------------------------*/ + +/* Auto-detect 64 Bit Support */ +#ifndef UNITY_SUPPORT_64 + #if UNITY_LONG_WIDTH == 64 || UNITY_POINTER_WIDTH == 64 + #define UNITY_SUPPORT_64 + #endif +#endif + +/* 64-Bit Support Dependent Configuration */ +#ifndef UNITY_SUPPORT_64 + /* No 64-bit Support */ + typedef UNITY_UINT32 UNITY_UINT; + typedef UNITY_INT32 UNITY_INT; + #define UNITY_MAX_NIBBLES (8) /* Maximum number of nibbles in a UNITY_(U)INT */ +#else + /* 64-bit Support */ + #if (UNITY_LONG_WIDTH == 32) + typedef unsigned long long UNITY_UINT64; + typedef signed long long UNITY_INT64; + #elif (UNITY_LONG_WIDTH == 64) + typedef unsigned long UNITY_UINT64; + typedef signed long UNITY_INT64; + #else + #error Invalid UNITY_LONG_WIDTH specified! (32 or 64 are supported) + #endif + typedef UNITY_UINT64 UNITY_UINT; + typedef UNITY_INT64 UNITY_INT; + #define UNITY_MAX_NIBBLES (16) /* Maximum number of nibbles in a UNITY_(U)INT */ +#endif + +/*------------------------------------------------------- + * Pointer Support + *-------------------------------------------------------*/ + +#if (UNITY_POINTER_WIDTH == 32) + #define UNITY_PTR_TO_INT UNITY_INT32 + #define UNITY_DISPLAY_STYLE_POINTER UNITY_DISPLAY_STYLE_HEX32 +#elif (UNITY_POINTER_WIDTH == 64) + #define UNITY_PTR_TO_INT UNITY_INT64 + #define UNITY_DISPLAY_STYLE_POINTER UNITY_DISPLAY_STYLE_HEX64 +#elif (UNITY_POINTER_WIDTH == 16) + #define UNITY_PTR_TO_INT UNITY_INT16 + #define UNITY_DISPLAY_STYLE_POINTER UNITY_DISPLAY_STYLE_HEX16 +#else + #error Invalid UNITY_POINTER_WIDTH specified! (16, 32 or 64 are supported) +#endif + +#ifndef UNITY_PTR_ATTRIBUTE + #define UNITY_PTR_ATTRIBUTE +#endif + +#ifndef UNITY_INTERNAL_PTR + #define UNITY_INTERNAL_PTR UNITY_PTR_ATTRIBUTE const void* +#endif + +/* optionally define UNITY_COMPARE_PTRS_ON_ZERO_ARRAY */ + +/*------------------------------------------------------- + * Float Support + *-------------------------------------------------------*/ + +#ifdef UNITY_EXCLUDE_FLOAT + +/* No Floating Point Support */ +#ifndef UNITY_EXCLUDE_DOUBLE +#define UNITY_EXCLUDE_DOUBLE /* Remove double when excluding float support */ +#endif +#ifndef UNITY_EXCLUDE_FLOAT_PRINT +#define UNITY_EXCLUDE_FLOAT_PRINT +#endif + +#else + +/* Floating Point Support */ +#ifndef UNITY_FLOAT_PRECISION +#define UNITY_FLOAT_PRECISION (0.00001f) +#endif +#ifndef UNITY_FLOAT_TYPE +#define UNITY_FLOAT_TYPE float +#endif +typedef UNITY_FLOAT_TYPE UNITY_FLOAT; + +/* isnan macro should be provided by math.h. Override if not macro */ +#ifndef UNITY_IS_NAN +#ifndef isnan +/* NaN is the only floating point value that does NOT equal itself. + * Therefore if n != n, then it is NaN. */ +#define UNITY_IS_NAN(n) ((n != n) ? 1 : 0) +#else +#define UNITY_IS_NAN(n) isnan(n) +#endif +#endif + +/* isinf macro should be provided by math.h. Override if not macro */ +#ifndef UNITY_IS_INF +#ifndef isinf +/* The value of Inf - Inf is NaN */ +#define UNITY_IS_INF(n) (UNITY_IS_NAN((n) - (n)) && !UNITY_IS_NAN(n)) +#else +#define UNITY_IS_INF(n) isinf(n) +#endif +#endif + +#endif + +/*------------------------------------------------------- + * Double Float Support + *-------------------------------------------------------*/ + +/* unlike float, we DON'T include by default */ +#if defined(UNITY_EXCLUDE_DOUBLE) || !defined(UNITY_INCLUDE_DOUBLE) + + /* No Floating Point Support */ + #ifndef UNITY_EXCLUDE_DOUBLE + #define UNITY_EXCLUDE_DOUBLE + #else + #undef UNITY_INCLUDE_DOUBLE + #endif + + #ifndef UNITY_EXCLUDE_FLOAT + #ifndef UNITY_DOUBLE_TYPE + #define UNITY_DOUBLE_TYPE double + #endif + typedef UNITY_FLOAT UNITY_DOUBLE; + /* For parameter in UnityPrintFloat(UNITY_DOUBLE), which aliases to double or float */ + #endif + +#else + + /* Double Floating Point Support */ + #ifndef UNITY_DOUBLE_PRECISION + #define UNITY_DOUBLE_PRECISION (1e-12) + #endif + + #ifndef UNITY_DOUBLE_TYPE + #define UNITY_DOUBLE_TYPE double + #endif + typedef UNITY_DOUBLE_TYPE UNITY_DOUBLE; + +#endif + +/*------------------------------------------------------- + * Output Method: stdout (DEFAULT) + *-------------------------------------------------------*/ +#ifndef UNITY_OUTPUT_CHAR + /* Default to using putchar, which is defined in stdio.h */ + #include + #define UNITY_OUTPUT_CHAR(a) (void)putchar(a) +#else + /* If defined as something else, make sure we declare it here so it's ready for use */ + #ifdef UNITY_OUTPUT_CHAR_HEADER_DECLARATION + extern void UNITY_OUTPUT_CHAR_HEADER_DECLARATION; + #endif +#endif + +#ifndef UNITY_OUTPUT_FLUSH + #ifdef UNITY_USE_FLUSH_STDOUT + /* We want to use the stdout flush utility */ + #include + #define UNITY_OUTPUT_FLUSH() (void)fflush(stdout) + #else + /* We've specified nothing, therefore flush should just be ignored */ + #define UNITY_OUTPUT_FLUSH() (void)0 + #endif +#else + /* If defined as something else, make sure we declare it here so it's ready for use */ + #ifdef UNITY_OUTPUT_FLUSH_HEADER_DECLARATION + extern void UNITY_OUTPUT_FLUSH_HEADER_DECLARATION; + #endif +#endif + +#ifndef UNITY_OUTPUT_FLUSH +#define UNITY_FLUSH_CALL() +#else +#define UNITY_FLUSH_CALL() UNITY_OUTPUT_FLUSH() +#endif + +#ifndef UNITY_PRINT_EOL +#define UNITY_PRINT_EOL() UNITY_OUTPUT_CHAR('\n') +#endif + +#ifndef UNITY_OUTPUT_START +#define UNITY_OUTPUT_START() +#endif + +#ifndef UNITY_OUTPUT_COMPLETE +#define UNITY_OUTPUT_COMPLETE() +#endif + +#ifdef UNITY_INCLUDE_EXEC_TIME + #if !defined(UNITY_EXEC_TIME_START) && \ + !defined(UNITY_EXEC_TIME_STOP) && \ + !defined(UNITY_PRINT_EXEC_TIME) && \ + !defined(UNITY_TIME_TYPE) + /* If none any of these macros are defined then try to provide a default implementation */ + + #if defined(UNITY_CLOCK_MS) + /* This is a simple way to get a default implementation on platforms that support getting a millisecond counter */ + #define UNITY_TIME_TYPE UNITY_UINT + #define UNITY_EXEC_TIME_START() Unity.CurrentTestStartTime = UNITY_CLOCK_MS() + #define UNITY_EXEC_TIME_STOP() Unity.CurrentTestStopTime = UNITY_CLOCK_MS() + #define UNITY_PRINT_EXEC_TIME() { \ + UNITY_UINT execTimeMs = (Unity.CurrentTestStopTime - Unity.CurrentTestStartTime); \ + UnityPrint(" ("); \ + UnityPrintNumberUnsigned(execTimeMs); \ + UnityPrint(" ms)"); \ + } + #elif defined(_WIN32) + #include + #define UNITY_TIME_TYPE clock_t + #define UNITY_GET_TIME(t) t = (clock_t)((clock() * 1000) / CLOCKS_PER_SEC) + #define UNITY_EXEC_TIME_START() UNITY_GET_TIME(Unity.CurrentTestStartTime) + #define UNITY_EXEC_TIME_STOP() UNITY_GET_TIME(Unity.CurrentTestStopTime) + #define UNITY_PRINT_EXEC_TIME() { \ + UNITY_UINT execTimeMs = (Unity.CurrentTestStopTime - Unity.CurrentTestStartTime); \ + UnityPrint(" ("); \ + UnityPrintNumberUnsigned(execTimeMs); \ + UnityPrint(" ms)"); \ + } + #elif defined(__unix__) || defined(__APPLE__) + #include + #define UNITY_TIME_TYPE struct timespec + #define UNITY_GET_TIME(t) clock_gettime(CLOCK_MONOTONIC, &t) + #define UNITY_EXEC_TIME_START() UNITY_GET_TIME(Unity.CurrentTestStartTime) + #define UNITY_EXEC_TIME_STOP() UNITY_GET_TIME(Unity.CurrentTestStopTime) + #define UNITY_PRINT_EXEC_TIME() { \ + UNITY_UINT execTimeMs = ((Unity.CurrentTestStopTime.tv_sec - Unity.CurrentTestStartTime.tv_sec) * 1000L); \ + execTimeMs += ((Unity.CurrentTestStopTime.tv_nsec - Unity.CurrentTestStartTime.tv_nsec) / 1000000L); \ + UnityPrint(" ("); \ + UnityPrintNumberUnsigned(execTimeMs); \ + UnityPrint(" ms)"); \ + } + #endif + #endif +#endif + +#ifndef UNITY_EXEC_TIME_START +#define UNITY_EXEC_TIME_START() do { /* nothing*/ } while (0) +#endif + +#ifndef UNITY_EXEC_TIME_STOP +#define UNITY_EXEC_TIME_STOP() do { /* nothing*/ } while (0) +#endif + +#ifndef UNITY_TIME_TYPE +#define UNITY_TIME_TYPE UNITY_UINT +#endif + +#ifndef UNITY_PRINT_EXEC_TIME +#define UNITY_PRINT_EXEC_TIME() do { /* nothing*/ } while (0) +#endif + +/*------------------------------------------------------- + * Footprint + *-------------------------------------------------------*/ + +#ifndef UNITY_LINE_TYPE +#define UNITY_LINE_TYPE UNITY_UINT +#endif + +#ifndef UNITY_COUNTER_TYPE +#define UNITY_COUNTER_TYPE UNITY_UINT +#endif + +/*------------------------------------------------------- + * Internal Structs Needed + *-------------------------------------------------------*/ + +typedef void (*UnityTestFunction)(void); + +#define UNITY_DISPLAY_RANGE_INT (0x10) +#define UNITY_DISPLAY_RANGE_UINT (0x20) +#define UNITY_DISPLAY_RANGE_HEX (0x40) +#define UNITY_DISPLAY_RANGE_CHAR (0x80) + +typedef enum +{ + UNITY_DISPLAY_STYLE_INT = (UNITY_INT_WIDTH / 8) + UNITY_DISPLAY_RANGE_INT, + UNITY_DISPLAY_STYLE_INT8 = 1 + UNITY_DISPLAY_RANGE_INT, + UNITY_DISPLAY_STYLE_INT16 = 2 + UNITY_DISPLAY_RANGE_INT, + UNITY_DISPLAY_STYLE_INT32 = 4 + UNITY_DISPLAY_RANGE_INT, +#ifdef UNITY_SUPPORT_64 + UNITY_DISPLAY_STYLE_INT64 = 8 + UNITY_DISPLAY_RANGE_INT, +#endif + + UNITY_DISPLAY_STYLE_UINT = (UNITY_INT_WIDTH / 8) + UNITY_DISPLAY_RANGE_UINT, + UNITY_DISPLAY_STYLE_UINT8 = 1 + UNITY_DISPLAY_RANGE_UINT, + UNITY_DISPLAY_STYLE_UINT16 = 2 + UNITY_DISPLAY_RANGE_UINT, + UNITY_DISPLAY_STYLE_UINT32 = 4 + UNITY_DISPLAY_RANGE_UINT, +#ifdef UNITY_SUPPORT_64 + UNITY_DISPLAY_STYLE_UINT64 = 8 + UNITY_DISPLAY_RANGE_UINT, +#endif + + UNITY_DISPLAY_STYLE_HEX8 = 1 + UNITY_DISPLAY_RANGE_HEX, + UNITY_DISPLAY_STYLE_HEX16 = 2 + UNITY_DISPLAY_RANGE_HEX, + UNITY_DISPLAY_STYLE_HEX32 = 4 + UNITY_DISPLAY_RANGE_HEX, +#ifdef UNITY_SUPPORT_64 + UNITY_DISPLAY_STYLE_HEX64 = 8 + UNITY_DISPLAY_RANGE_HEX, +#endif + + UNITY_DISPLAY_STYLE_CHAR = 1 + UNITY_DISPLAY_RANGE_CHAR + UNITY_DISPLAY_RANGE_INT, + + UNITY_DISPLAY_STYLE_UNKNOWN +} UNITY_DISPLAY_STYLE_T; + +typedef enum +{ + UNITY_EQUAL_TO = 0x1, + UNITY_GREATER_THAN = 0x2, + UNITY_GREATER_OR_EQUAL = 0x2 + UNITY_EQUAL_TO, + UNITY_SMALLER_THAN = 0x4, + UNITY_SMALLER_OR_EQUAL = 0x4 + UNITY_EQUAL_TO, + UNITY_NOT_EQUAL = 0x8 +} UNITY_COMPARISON_T; + +#ifndef UNITY_EXCLUDE_FLOAT +typedef enum UNITY_FLOAT_TRAIT +{ + UNITY_FLOAT_IS_NOT_INF = 0, + UNITY_FLOAT_IS_INF, + UNITY_FLOAT_IS_NOT_NEG_INF, + UNITY_FLOAT_IS_NEG_INF, + UNITY_FLOAT_IS_NOT_NAN, + UNITY_FLOAT_IS_NAN, + UNITY_FLOAT_IS_NOT_DET, + UNITY_FLOAT_IS_DET, + UNITY_FLOAT_INVALID_TRAIT +} UNITY_FLOAT_TRAIT_T; +#endif + +typedef enum +{ + UNITY_ARRAY_TO_VAL = 0, + UNITY_ARRAY_TO_ARRAY, + UNITY_ARRAY_UNKNOWN +} UNITY_FLAGS_T; + +#ifndef UNITY_EXCLUDE_DETAILS +#ifdef UNITY_DETAIL_STACK_SIZE +#ifndef UNITY_DETAIL_LABEL_TYPE +#define UNITY_DETAIL_LABEL_TYPE uint8_t +#endif +#ifndef UNITY_DETAIL_VALUE_TYPE +#define UNITY_DETAIL_VALUE_TYPE UNITY_PTR_TO_INT +#endif +#endif +#endif + +struct UNITY_STORAGE_T +{ + const char* TestFile; + const char* CurrentTestName; +#ifndef UNITY_EXCLUDE_DETAILS +#ifdef UNITY_DETAIL_STACK_SIZE + UNITY_DETAIL_LABEL_TYPE CurrentDetailStackLabels[UNITY_DETAIL_STACK_SIZE]; + UNITY_DETAIL_VALUE_TYPE CurrentDetailStackValues[UNITY_DETAIL_STACK_SIZE]; + UNITY_COUNTER_TYPE CurrentDetailStackSize; +#else + const char* CurrentDetail1; + const char* CurrentDetail2; +#endif +#endif + UNITY_LINE_TYPE CurrentTestLineNumber; + UNITY_COUNTER_TYPE NumberOfTests; + UNITY_COUNTER_TYPE TestFailures; + UNITY_COUNTER_TYPE TestIgnores; + UNITY_COUNTER_TYPE CurrentTestFailed; + UNITY_COUNTER_TYPE CurrentTestIgnored; +#ifdef UNITY_INCLUDE_EXEC_TIME + UNITY_TIME_TYPE CurrentTestStartTime; + UNITY_TIME_TYPE CurrentTestStopTime; +#endif +#ifndef UNITY_EXCLUDE_SETJMP_H + jmp_buf AbortFrame; +#endif +}; + +extern struct UNITY_STORAGE_T Unity; + +/*------------------------------------------------------- + * Test Suite Management + *-------------------------------------------------------*/ + +void UnityBegin(const char* filename); +int UnityEnd(void); +void UnitySetTestFile(const char* filename); +void UnityConcludeTest(void); + +#ifndef RUN_TEST +void UnityDefaultTestRun(UnityTestFunction Func, const char* FuncName, const int FuncLineNum); +#else +#define UNITY_SKIP_DEFAULT_RUNNER +#endif + +/*------------------------------------------------------- + * Details Support + *-------------------------------------------------------*/ + +#ifdef UNITY_EXCLUDE_DETAILS +#define UNITY_CLR_DETAILS() +#define UNITY_SET_DETAIL(d1) +#define UNITY_SET_DETAILS(d1,d2) +#else +#ifndef UNITY_DETAIL1_NAME +#define UNITY_DETAIL1_NAME "Function" +#endif + +#ifndef UNITY_DETAIL2_NAME +#define UNITY_DETAIL2_NAME "Argument" +#endif + +#ifdef UNITY_DETAIL_STACK_SIZE +/* stack based implementation */ +#ifndef UNITY_DETAIL_LABEL_NAMES +/* Note: If the label name string starts with '#', the second byte is interpreted as UNITY_DISPLAY_STYLE_T, + * and the detail value will be printed as number (e.g. "#\x24Line" to output "Line "). + * Otherwise, the detail value must be a pointer to a string that is valid until it is pop'ed. + */ +#define UNITY_DETAIL_LABEL_NAMES {0, UNITY_DETAIL1_NAME, UNITY_DETAIL2_NAME} +typedef enum +{ + UNITY_DETAIL_NONE = 0, + UNITY_DETAIL_D1 = 1, + UNITY_DETAIL_D2 = 2 +} UNITY_DETAIL_LABEL_T; +#endif +void UnityPushDetail(UNITY_DETAIL_LABEL_TYPE label, UNITY_DETAIL_VALUE_TYPE value, const UNITY_LINE_TYPE line); +void UnityPopDetail(UNITY_DETAIL_LABEL_TYPE label, UNITY_DETAIL_VALUE_TYPE value, const UNITY_LINE_TYPE line); + +#define UNITY_CLR_DETAILS() do { \ + if(Unity.CurrentDetailStackSize && \ + Unity.CurrentDetailStackLabels[Unity.CurrentDetailStackSize - 1] == UNITY_DETAIL_D2) { \ + Unity.CurrentDetailStackLabels[--Unity.CurrentDetailStackSize] = UNITY_DETAIL_NONE;} \ + if(Unity.CurrentDetailStackSize && \ + Unity.CurrentDetailStackLabels[Unity.CurrentDetailStackSize - 1] == UNITY_DETAIL_D1) { \ + Unity.CurrentDetailStackLabels[--Unity.CurrentDetailStackSize] = UNITY_DETAIL_NONE;} \ + } while (0) +#define UNITY_SET_DETAIL(d1) do { UNITY_CLR_DETAILS(); \ + UnityPushDetail(UNITY_DETAIL_D1, (UNITY_DETAIL_VALUE_TYPE)(d1), __LINE__); \ + } while (0) +#define UNITY_SET_DETAILS(d1,d2) do { UNITY_CLR_DETAILS(); \ + UnityPushDetail(UNITY_DETAIL_D1, (UNITY_DETAIL_VALUE_TYPE)(d1), __LINE__); \ + UnityPushDetail(UNITY_DETAIL_D2, (UNITY_DETAIL_VALUE_TYPE)(d2), __LINE__); \ + } while (0) + +#else +/* just two hardcoded slots */ +#define UNITY_CLR_DETAILS() do { Unity.CurrentDetail1 = 0; Unity.CurrentDetail2 = 0; } while (0) +#define UNITY_SET_DETAIL(d1) do { Unity.CurrentDetail1 = (d1); Unity.CurrentDetail2 = 0; } while (0) +#define UNITY_SET_DETAILS(d1,d2) do { Unity.CurrentDetail1 = (d1); Unity.CurrentDetail2 = (d2); } while (0) +#endif +#endif + +#ifdef UNITY_PRINT_TEST_CONTEXT +void UNITY_PRINT_TEST_CONTEXT(void); +#endif + +/*------------------------------------------------------- + * Test Output + *-------------------------------------------------------*/ + +void UnityPrint(const char* string); + +#ifdef UNITY_INCLUDE_PRINT_FORMATTED +void UnityPrintF(const UNITY_LINE_TYPE line, const char* format, ...); +#endif + +void UnityPrintLen(const char* string, const UNITY_UINT32 length); +void UnityPrintMask(const UNITY_UINT mask, const UNITY_UINT number); +void UnityPrintIntNumberByStyle(const UNITY_INT number, const UNITY_DISPLAY_STYLE_T style); +void UnityPrintUintNumberByStyle(const UNITY_UINT number, const UNITY_DISPLAY_STYLE_T style); +void UnityPrintNumber(const UNITY_INT number_to_print); +void UnityPrintNumberUnsigned(const UNITY_UINT number); +void UnityPrintNumberHex(const UNITY_UINT number, const char nibbles_to_print); + +#ifndef UNITY_EXCLUDE_FLOAT_PRINT +void UnityPrintFloat(const UNITY_DOUBLE input_number); +#endif + +/*------------------------------------------------------- + * Test Assertion Functions + *------------------------------------------------------- + * Use the macros below this section instead of calling + * these directly. The macros have a consistent naming + * convention and will pull in file and line information + * for you. */ + +void UnityAssertEqualIntNumber(const UNITY_INT expected, + const UNITY_INT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style); + +void UnityAssertEqualUintNumber(const UNITY_UINT expected, + const UNITY_UINT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style); + +void UnityAssertIntGreaterOrLessOrEqualNumber(const UNITY_INT threshold, + const UNITY_INT actual, + const UNITY_COMPARISON_T compare, + const char *msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style); + +void UnityAssertUintGreaterOrLessOrEqualNumber(const UNITY_UINT threshold, + const UNITY_UINT actual, + const UNITY_COMPARISON_T compare, + const char *msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style); + +void UnityAssertEqualIntArray(UNITY_INTERNAL_PTR expected, + UNITY_INTERNAL_PTR actual, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style, + const UNITY_FLAGS_T flags); + +void UnityAssertBits(const UNITY_INT mask, + const UNITY_INT expected, + const UNITY_INT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber); + +void UnityAssertEqualString(const char* expected, + const char* actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber); + +void UnityAssertEqualStringLen(const char* expected, + const char* actual, + const UNITY_UINT32 length, + const char* msg, + const UNITY_LINE_TYPE lineNumber); + +void UnityAssertEqualStringArray( UNITY_INTERNAL_PTR expected, + const char** actual, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLAGS_T flags); + +void UnityAssertEqualMemory( UNITY_INTERNAL_PTR expected, + UNITY_INTERNAL_PTR actual, + const UNITY_UINT32 length, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLAGS_T flags); + +void UnityAssertIntNumbersWithin(const UNITY_UINT delta, + const UNITY_INT expected, + const UNITY_INT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style); + +void UnityAssertUintNumbersWithin(const UNITY_UINT delta, + const UNITY_UINT expected, + const UNITY_UINT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style); + +void UnityAssertNumbersArrayWithin(const UNITY_UINT delta, + UNITY_INTERNAL_PTR expected, + UNITY_INTERNAL_PTR actual, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_DISPLAY_STYLE_T style, + const UNITY_FLAGS_T flags); + +#ifndef UNITY_EXCLUDE_SETJMP_H +UNITY_NORETURN void UnityFail(const char* message, const UNITY_LINE_TYPE line); +UNITY_NORETURN void UnityIgnore(const char* message, const UNITY_LINE_TYPE line); +#else +void UnityFail(const char* message, const UNITY_LINE_TYPE line); +void UnityIgnore(const char* message, const UNITY_LINE_TYPE line); +#endif + +void UnityMessage(const char* message, const UNITY_LINE_TYPE line); + +#ifndef UNITY_EXCLUDE_FLOAT +void UnityAssertFloatsWithin(const UNITY_FLOAT delta, + const UNITY_FLOAT expected, + const UNITY_FLOAT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber); + +void UnityAssertFloatsNotWithin(const UNITY_FLOAT delta, + const UNITY_FLOAT expected, + const UNITY_FLOAT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber); + +void UnityAssertGreaterOrLessFloat(const UNITY_FLOAT threshold, + const UNITY_FLOAT actual, + const UNITY_COMPARISON_T compare, + const char* msg, + const UNITY_LINE_TYPE linenumber); + +void UnityAssertWithinFloatArray(const UNITY_FLOAT delta, + UNITY_PTR_ATTRIBUTE const UNITY_FLOAT* expected, + UNITY_PTR_ATTRIBUTE const UNITY_FLOAT* actual, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLAGS_T flags); + +void UnityAssertFloatSpecial(const UNITY_FLOAT actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLOAT_TRAIT_T style); +#endif + +#ifndef UNITY_EXCLUDE_DOUBLE +void UnityAssertDoublesWithin(const UNITY_DOUBLE delta, + const UNITY_DOUBLE expected, + const UNITY_DOUBLE actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber); + +void UnityAssertDoublesNotWithin(const UNITY_DOUBLE delta, + const UNITY_DOUBLE expected, + const UNITY_DOUBLE actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber); + +void UnityAssertGreaterOrLessDouble(const UNITY_DOUBLE threshold, + const UNITY_DOUBLE actual, + const UNITY_COMPARISON_T compare, + const char* msg, + const UNITY_LINE_TYPE linenumber); + +void UnityAssertWithinDoubleArray(const UNITY_DOUBLE delta, + UNITY_PTR_ATTRIBUTE const UNITY_DOUBLE* expected, + UNITY_PTR_ATTRIBUTE const UNITY_DOUBLE* actual, + const UNITY_UINT32 num_elements, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLAGS_T flags); + +void UnityAssertDoubleSpecial(const UNITY_DOUBLE actual, + const char* msg, + const UNITY_LINE_TYPE lineNumber, + const UNITY_FLOAT_TRAIT_T style); +#endif + +/*------------------------------------------------------- + * Helpers + *-------------------------------------------------------*/ + +UNITY_INTERNAL_PTR UnityNumToPtr(const UNITY_INT num, const UNITY_UINT8 size); +#ifndef UNITY_EXCLUDE_FLOAT +UNITY_INTERNAL_PTR UnityFloatToPtr(const float num); +#endif +#ifndef UNITY_EXCLUDE_DOUBLE +UNITY_INTERNAL_PTR UnityDoubleToPtr(const double num); +#endif + +/*------------------------------------------------------- + * Error Strings We Might Need + *-------------------------------------------------------*/ + +extern const char UnityStrOk[]; +extern const char UnityStrPass[]; +extern const char UnityStrFail[]; +extern const char UnityStrIgnore[]; + +extern const char UnityStrErrFloat[]; +extern const char UnityStrErrDouble[]; +extern const char UnityStrErr64[]; +extern const char UnityStrErrShorthand[]; + +/*------------------------------------------------------- + * Test Running Macros + *-------------------------------------------------------*/ + +#ifdef UNITY_TEST_PROTECT +#define TEST_PROTECT() UNITY_TEST_PROTECT() +#else +#ifndef UNITY_EXCLUDE_SETJMP_H +#define TEST_PROTECT() (setjmp(Unity.AbortFrame) == 0) +#else +#define TEST_PROTECT() 1 +#endif +#endif + +#ifdef UNITY_TEST_ABORT +#define TEST_ABORT() UNITY_TEST_ABORT() +#else +#ifndef UNITY_EXCLUDE_SETJMP_H +#define TEST_ABORT() longjmp(Unity.AbortFrame, 1) +#else +#define TEST_ABORT() return +#endif +#endif + +/* Automatically enable variadic macros support, if it not enabled before */ +#ifndef UNITY_SUPPORT_VARIADIC_MACROS + #ifdef __STDC_VERSION__ + #if __STDC_VERSION__ >= 199901L + #define UNITY_SUPPORT_VARIADIC_MACROS + #endif + #endif +#endif + +/* This tricky series of macros gives us an optional line argument to treat it as RUN_TEST(func, num=__LINE__) */ +#ifndef RUN_TEST +#ifdef UNITY_SUPPORT_VARIADIC_MACROS +#define RUN_TEST(...) RUN_TEST_AT_LINE(__VA_ARGS__, __LINE__, throwaway) +#define RUN_TEST_AT_LINE(func, line, ...) UnityDefaultTestRun(func, #func, line) +#endif +#endif + +/* Enable default macros for masking param tests test cases */ +#ifdef UNITY_SUPPORT_TEST_CASES + #ifdef UNITY_SUPPORT_VARIADIC_MACROS + #if !defined(TEST_CASE) && !defined(UNITY_EXCLUDE_TEST_CASE) + #define TEST_CASE(...) + #endif + #if !defined(TEST_RANGE) && !defined(UNITY_EXCLUDE_TEST_RANGE) + #define TEST_RANGE(...) + #endif + #if !defined(TEST_MATRIX) && !defined(UNITY_EXCLUDE_TEST_MATRIX) + #define TEST_MATRIX(...) + #endif + #endif +#endif + +/* If we can't do the tricky version, we'll just have to require them to always include the line number */ +#ifndef RUN_TEST +#ifdef CMOCK +#define RUN_TEST(func, num) UnityDefaultTestRun(func, #func, num) +#else +#define RUN_TEST(func) UnityDefaultTestRun(func, #func, __LINE__) +#endif +#endif + +#define TEST_LINE_NUM (Unity.CurrentTestLineNumber) +#define TEST_IS_IGNORED (Unity.CurrentTestIgnored) +#define UNITY_NEW_TEST(a) \ + Unity.CurrentTestName = (a); \ + Unity.CurrentTestLineNumber = (UNITY_LINE_TYPE)(__LINE__); \ + Unity.NumberOfTests++; + +#ifndef UNITY_BEGIN +#define UNITY_BEGIN() UnityBegin(__FILE__) +#endif + +#ifndef UNITY_END +#define UNITY_END() UnityEnd() +#endif + +#ifndef UNITY_SHORTHAND_AS_INT +#ifndef UNITY_SHORTHAND_AS_MEM +#ifndef UNITY_SHORTHAND_AS_NONE +#ifndef UNITY_SHORTHAND_AS_RAW +#define UNITY_SHORTHAND_AS_OLD +#endif +#endif +#endif +#endif + +/*----------------------------------------------- + * Command Line Argument Support + *-----------------------------------------------*/ + +#ifdef UNITY_USE_COMMAND_LINE_ARGS +int UnityParseOptions(int argc, char** argv); +int UnityTestMatches(void); +#endif + +/*------------------------------------------------------- + * Basic Fail and Ignore + *-------------------------------------------------------*/ + +#define UNITY_TEST_FAIL(line, message) UnityFail( (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_IGNORE(line, message) UnityIgnore( (message), (UNITY_LINE_TYPE)(line)) + +/*------------------------------------------------------- + * Test Asserts + *-------------------------------------------------------*/ + +#define UNITY_TEST_ASSERT(condition, line, message) do { if (condition) { /* nothing*/ } else { UNITY_TEST_FAIL((line), (message)); } } while (0) +#define UNITY_TEST_ASSERT_NULL(pointer, line, message) UNITY_TEST_ASSERT(((pointer) == NULL), (line), (message)) +#define UNITY_TEST_ASSERT_NOT_NULL(pointer, line, message) UNITY_TEST_ASSERT(((pointer) != NULL), (line), (message)) +#define UNITY_TEST_ASSERT_EMPTY(pointer, line, message) UNITY_TEST_ASSERT(((pointer[0]) == 0), (line), (message)) +#define UNITY_TEST_ASSERT_NOT_EMPTY(pointer, line, message) UNITY_TEST_ASSERT(((pointer[0]) != 0), (line), (message)) + +#define UNITY_TEST_ASSERT_EQUAL_INT(expected, actual, line, message) UnityAssertEqualIntNumber((UNITY_INT)(expected), (UNITY_INT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT) +#define UNITY_TEST_ASSERT_EQUAL_INT8(expected, actual, line, message) UnityAssertEqualIntNumber((UNITY_INT)(UNITY_INT8 )(expected), (UNITY_INT)(UNITY_INT8 )(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT8) +#define UNITY_TEST_ASSERT_EQUAL_INT16(expected, actual, line, message) UnityAssertEqualIntNumber((UNITY_INT)(UNITY_INT16)(expected), (UNITY_INT)(UNITY_INT16)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT16) +#define UNITY_TEST_ASSERT_EQUAL_INT32(expected, actual, line, message) UnityAssertEqualIntNumber((UNITY_INT)(UNITY_INT32)(expected), (UNITY_INT)(UNITY_INT32)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT32) +#define UNITY_TEST_ASSERT_EQUAL_UINT(expected, actual, line, message) UnityAssertEqualUintNumber((UNITY_UINT)(expected), (UNITY_UINT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT) +#define UNITY_TEST_ASSERT_EQUAL_UINT8(expected, actual, line, message) UnityAssertEqualUintNumber((UNITY_UINT)(UNITY_UINT8)(expected), (UNITY_UINT)(UNITY_UINT8)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT8) +#define UNITY_TEST_ASSERT_EQUAL_UINT16(expected, actual, line, message) UnityAssertEqualUintNumber((UNITY_UINT)(UNITY_UINT16)(expected), (UNITY_UINT)(UNITY_UINT16)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT16) +#define UNITY_TEST_ASSERT_EQUAL_UINT32(expected, actual, line, message) UnityAssertEqualUintNumber((UNITY_UINT)(UNITY_UINT32)(expected), (UNITY_UINT)(UNITY_UINT32)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT32) +#define UNITY_TEST_ASSERT_EQUAL_HEX8(expected, actual, line, message) UnityAssertEqualUintNumber((UNITY_UINT)(UNITY_UINT8)(expected), (UNITY_UINT)(UNITY_UINT8)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX8) +#define UNITY_TEST_ASSERT_EQUAL_HEX16(expected, actual, line, message) UnityAssertEqualUintNumber((UNITY_UINT)(UNITY_UINT16)(expected), (UNITY_UINT)(UNITY_UINT16)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX16) +#define UNITY_TEST_ASSERT_EQUAL_HEX32(expected, actual, line, message) UnityAssertEqualUintNumber((UNITY_UINT)(UNITY_UINT32)(expected), (UNITY_UINT)(UNITY_UINT32)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX32) +#define UNITY_TEST_ASSERT_EQUAL_CHAR(expected, actual, line, message) UnityAssertEqualIntNumber((UNITY_INT)(UNITY_INT8 )(expected), (UNITY_INT)(UNITY_INT8 )(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_CHAR) +#define UNITY_TEST_ASSERT_BITS(mask, expected, actual, line, message) UnityAssertBits((UNITY_INT)(mask), (UNITY_INT)(expected), (UNITY_INT)(actual), (message), (UNITY_LINE_TYPE)(line)) + +#define UNITY_TEST_ASSERT_NOT_EQUAL_INT(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(threshold), (UNITY_INT)(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT) +#define UNITY_TEST_ASSERT_NOT_EQUAL_INT8(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT8 )(threshold), (UNITY_INT)(UNITY_INT8 )(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT8) +#define UNITY_TEST_ASSERT_NOT_EQUAL_INT16(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT16)(threshold), (UNITY_INT)(UNITY_INT16)(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT16) +#define UNITY_TEST_ASSERT_NOT_EQUAL_INT32(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT32)(threshold), (UNITY_INT)(UNITY_INT32)(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT32) +#define UNITY_TEST_ASSERT_NOT_EQUAL_UINT(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT) +#define UNITY_TEST_ASSERT_NOT_EQUAL_UINT8(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT8 )(threshold), (UNITY_UINT)(UNITY_UINT8 )(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT8) +#define UNITY_TEST_ASSERT_NOT_EQUAL_UINT16(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT16)(threshold), (UNITY_UINT)(UNITY_UINT16)(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT16) +#define UNITY_TEST_ASSERT_NOT_EQUAL_UINT32(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT32)(threshold), (UNITY_UINT)(UNITY_UINT32)(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT32) +#define UNITY_TEST_ASSERT_NOT_EQUAL_HEX8(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT8 )(threshold), (UNITY_UINT)(UNITY_UINT8 )(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX8) +#define UNITY_TEST_ASSERT_NOT_EQUAL_HEX16(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT16)(threshold), (UNITY_UINT)(UNITY_UINT16)(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX16) +#define UNITY_TEST_ASSERT_NOT_EQUAL_HEX32(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT32)(threshold), (UNITY_UINT)(UNITY_UINT32)(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX32) +#define UNITY_TEST_ASSERT_NOT_EQUAL_CHAR(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT8 )(threshold), (UNITY_INT)(UNITY_INT8 )(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_CHAR) + +#define UNITY_TEST_ASSERT_GREATER_THAN_INT(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(threshold), (UNITY_INT)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT) +#define UNITY_TEST_ASSERT_GREATER_THAN_INT8(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT8 )(threshold), (UNITY_INT)(UNITY_INT8 )(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT8) +#define UNITY_TEST_ASSERT_GREATER_THAN_INT16(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT16)(threshold), (UNITY_INT)(UNITY_INT16)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT16) +#define UNITY_TEST_ASSERT_GREATER_THAN_INT32(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT32)(threshold), (UNITY_INT)(UNITY_INT32)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT32) +#define UNITY_TEST_ASSERT_GREATER_THAN_UINT(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT) +#define UNITY_TEST_ASSERT_GREATER_THAN_UINT8(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT8 )(threshold), (UNITY_UINT)(UNITY_UINT8 )(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT8) +#define UNITY_TEST_ASSERT_GREATER_THAN_UINT16(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT16)(threshold), (UNITY_UINT)(UNITY_UINT16)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT16) +#define UNITY_TEST_ASSERT_GREATER_THAN_UINT32(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT32)(threshold), (UNITY_UINT)(UNITY_UINT32)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT32) +#define UNITY_TEST_ASSERT_GREATER_THAN_HEX8(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT8 )(threshold), (UNITY_UINT)(UNITY_UINT8 )(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX8) +#define UNITY_TEST_ASSERT_GREATER_THAN_HEX16(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT16)(threshold), (UNITY_UINT)(UNITY_UINT16)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX16) +#define UNITY_TEST_ASSERT_GREATER_THAN_HEX32(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT32)(threshold), (UNITY_UINT)(UNITY_UINT32)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX32) +#define UNITY_TEST_ASSERT_GREATER_THAN_CHAR(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT8 )(threshold), (UNITY_INT)(UNITY_INT8 )(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_CHAR) + +#define UNITY_TEST_ASSERT_SMALLER_THAN_INT(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(threshold), (UNITY_INT)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT) +#define UNITY_TEST_ASSERT_SMALLER_THAN_INT8(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT8 )(threshold), (UNITY_INT)(UNITY_INT8 )(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT8) +#define UNITY_TEST_ASSERT_SMALLER_THAN_INT16(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT16)(threshold), (UNITY_INT)(UNITY_INT16)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT16) +#define UNITY_TEST_ASSERT_SMALLER_THAN_INT32(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT32)(threshold), (UNITY_INT)(UNITY_INT32)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT32) +#define UNITY_TEST_ASSERT_SMALLER_THAN_UINT(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT) +#define UNITY_TEST_ASSERT_SMALLER_THAN_UINT8(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT8 )(threshold), (UNITY_UINT)(UNITY_UINT8 )(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT8) +#define UNITY_TEST_ASSERT_SMALLER_THAN_UINT16(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT16)(threshold), (UNITY_UINT)(UNITY_UINT16)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT16) +#define UNITY_TEST_ASSERT_SMALLER_THAN_UINT32(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT32)(threshold), (UNITY_UINT)(UNITY_UINT32)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT32) +#define UNITY_TEST_ASSERT_SMALLER_THAN_HEX8(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT8 )(threshold), (UNITY_UINT)(UNITY_UINT8 )(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX8) +#define UNITY_TEST_ASSERT_SMALLER_THAN_HEX16(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT16)(threshold), (UNITY_UINT)(UNITY_UINT16)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX16) +#define UNITY_TEST_ASSERT_SMALLER_THAN_HEX32(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT32)(threshold), (UNITY_UINT)(UNITY_UINT32)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX32) +#define UNITY_TEST_ASSERT_SMALLER_THAN_CHAR(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT8 )(threshold), (UNITY_INT)(UNITY_INT8 )(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_CHAR) + +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT) (threshold), (UNITY_INT) (actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT8(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT8 ) (threshold), (UNITY_INT)(UNITY_INT8 ) (actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT8) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT16(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT16) (threshold), (UNITY_INT)(UNITY_INT16) (actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT16) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT32(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT32) (threshold), (UNITY_INT)(UNITY_INT32) (actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT32) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT) (threshold), (UNITY_UINT) (actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT8(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT8 )(threshold), (UNITY_UINT)(UNITY_UINT8 )(actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT8) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT16(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT16)(threshold), (UNITY_UINT)(UNITY_UINT16)(actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT16) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT32(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT32)(threshold), (UNITY_UINT)(UNITY_UINT32)(actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT32) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX8(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT8 )(threshold), (UNITY_UINT)(UNITY_UINT8 )(actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX8) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX16(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT16)(threshold), (UNITY_UINT)(UNITY_UINT16)(actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX16) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX32(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT32)(threshold), (UNITY_UINT)(UNITY_UINT32)(actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX32) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_CHAR(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT8 ) (threshold), (UNITY_INT)(UNITY_INT8 ) (actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_CHAR) + +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT) (threshold), (UNITY_INT) (actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT8(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT8 )(threshold), (UNITY_INT)(UNITY_INT8 ) (actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT8) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT16(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT16)(threshold), (UNITY_INT)(UNITY_INT16) (actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT16) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT32(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT32)(threshold), (UNITY_INT)(UNITY_INT32) (actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT32) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT) (threshold), (UNITY_UINT) (actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT8(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT8 )(threshold), (UNITY_UINT)(UNITY_UINT8 )(actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT8) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT16(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT16)(threshold), (UNITY_UINT)(UNITY_UINT16)(actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT16) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT32(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT32)(threshold), (UNITY_UINT)(UNITY_UINT32)(actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT32) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX8(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT8 )(threshold), (UNITY_UINT)(UNITY_UINT8 )(actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX8) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX16(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT16)(threshold), (UNITY_UINT)(UNITY_UINT16)(actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX16) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX32(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(UNITY_UINT32)(threshold), (UNITY_UINT)(UNITY_UINT32)(actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX32) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_CHAR(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(UNITY_INT8 )(threshold), (UNITY_INT)(UNITY_INT8 ) (actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_CHAR) + +#define UNITY_TEST_ASSERT_INT_WITHIN(delta, expected, actual, line, message) UnityAssertIntNumbersWithin( (delta), (UNITY_INT) (expected), (UNITY_INT) (actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT) +#define UNITY_TEST_ASSERT_INT8_WITHIN(delta, expected, actual, line, message) UnityAssertIntNumbersWithin((UNITY_UINT8 )(delta), (UNITY_INT)(UNITY_INT8 ) (expected), (UNITY_INT)(UNITY_INT8 ) (actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT8) +#define UNITY_TEST_ASSERT_INT16_WITHIN(delta, expected, actual, line, message) UnityAssertIntNumbersWithin((UNITY_UINT16 )(delta), (UNITY_INT)(UNITY_INT16) (expected), (UNITY_INT)(UNITY_INT16) (actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT16) +#define UNITY_TEST_ASSERT_INT32_WITHIN(delta, expected, actual, line, message) UnityAssertIntNumbersWithin((UNITY_UINT32 )(delta), (UNITY_INT)(UNITY_INT32) (expected), (UNITY_INT)(UNITY_INT32) (actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT32) +#define UNITY_TEST_ASSERT_UINT_WITHIN(delta, expected, actual, line, message) UnityAssertUintNumbersWithin( (delta), (UNITY_UINT) (expected), (UNITY_UINT) (actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT) +#define UNITY_TEST_ASSERT_UINT8_WITHIN(delta, expected, actual, line, message) UnityAssertUintNumbersWithin((UNITY_UINT8 )(delta), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT8 )(expected), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT8 )(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT8) +#define UNITY_TEST_ASSERT_UINT16_WITHIN(delta, expected, actual, line, message) UnityAssertUintNumbersWithin((UNITY_UINT16)(delta), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT16)(expected), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT16)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT16) +#define UNITY_TEST_ASSERT_UINT32_WITHIN(delta, expected, actual, line, message) UnityAssertUintNumbersWithin((UNITY_UINT32)(delta), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT32)(expected), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT32)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT32) +#define UNITY_TEST_ASSERT_HEX8_WITHIN(delta, expected, actual, line, message) UnityAssertUintNumbersWithin((UNITY_UINT8 )(delta), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT8 )(expected), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT8 )(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX8) +#define UNITY_TEST_ASSERT_HEX16_WITHIN(delta, expected, actual, line, message) UnityAssertUintNumbersWithin((UNITY_UINT16)(delta), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT16)(expected), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT16)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX16) +#define UNITY_TEST_ASSERT_HEX32_WITHIN(delta, expected, actual, line, message) UnityAssertUintNumbersWithin((UNITY_UINT32)(delta), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT32)(expected), (UNITY_UINT)(UNITY_UINT)(UNITY_UINT32)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX32) +#define UNITY_TEST_ASSERT_CHAR_WITHIN(delta, expected, actual, line, message) UnityAssertIntNumbersWithin((UNITY_UINT8 )(delta), (UNITY_INT)(UNITY_INT8 ) (expected), (UNITY_INT)(UNITY_INT8 ) (actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_CHAR) + +#define UNITY_TEST_ASSERT_INT_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin( (delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_INT8_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT8 )(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT8, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_INT16_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT16)(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT16, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_INT32_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT32)(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT32, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_UINT_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin( (delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_UINT8_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT8 )(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT8, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_UINT16_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT16)(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT16, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_UINT32_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT32)(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT32, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_HEX8_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT8 )(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX8, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_HEX16_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT16)(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX16, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_HEX32_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT32)(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX32, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_CHAR_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT8)( delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), ((UNITY_UINT32)(num_elements)), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_CHAR, UNITY_ARRAY_TO_ARRAY) + + +#define UNITY_TEST_ASSERT_EQUAL_PTR(expected, actual, line, message) UnityAssertEqualIntNumber((UNITY_PTR_TO_INT)(expected), (UNITY_PTR_TO_INT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_POINTER) +#define UNITY_TEST_ASSERT_EQUAL_STRING(expected, actual, line, message) UnityAssertEqualString((const char*)(expected), (const char*)(actual), (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_EQUAL_STRING_LEN(expected, actual, len, line, message) UnityAssertEqualStringLen((const char*)(expected), (const char*)(actual), (UNITY_UINT32)(len), (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_EQUAL_MEMORY(expected, actual, len, line, message) UnityAssertEqualMemory((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(len), 1, (message), (UNITY_LINE_TYPE)(line), UNITY_ARRAY_TO_ARRAY) + +#define UNITY_TEST_ASSERT_EQUAL_INT_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_INT8_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT8, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_INT16_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT16, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_INT32_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT32, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_UINT_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_UINT8_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT8, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_UINT16_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT16, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_UINT32_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT32, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_HEX8_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX8, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_HEX16_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX16, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_HEX32_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX32, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_PTR_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_POINTER, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_STRING_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualStringArray((UNITY_INTERNAL_PTR)(expected), (const char**)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_MEMORY_ARRAY(expected, actual, len, num_elements, line, message) UnityAssertEqualMemory((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(len), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_CHAR_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_CHAR, UNITY_ARRAY_TO_ARRAY) + +#define UNITY_TEST_ASSERT_EACH_EQUAL_INT(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT) (expected), (UNITY_INT_WIDTH / 8)), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_INT8(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_INT8 )(expected), 1), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT8, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_INT16(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_INT16 )(expected), 2), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT16, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_INT32(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_INT32 )(expected), 4), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT32, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_UINT(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT) (expected), (UNITY_INT_WIDTH / 8)), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_UINT8(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_UINT8 )(expected), 1), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT8, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_UINT16(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_UINT16)(expected), 2), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT16, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_UINT32(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_UINT32)(expected), 4), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT32, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_HEX8(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_INT8 )(expected), 1), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX8, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_HEX16(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_INT16 )(expected), 2), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX16, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_HEX32(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_INT32 )(expected), 4), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX32, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_PTR(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_PTR_TO_INT) (expected), (UNITY_POINTER_WIDTH / 8)), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_POINTER, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_STRING(expected, actual, num_elements, line, message) UnityAssertEqualStringArray((UNITY_INTERNAL_PTR)(expected), (const char**)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_MEMORY(expected, actual, len, num_elements, line, message) UnityAssertEqualMemory((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(len), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_CHAR(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_INT8 )(expected), 1), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_CHAR, UNITY_ARRAY_TO_VAL) + +#ifdef UNITY_SUPPORT_64 +#define UNITY_TEST_ASSERT_EQUAL_INT64(expected, actual, line, message) UnityAssertEqualIntNumber((UNITY_INT)(expected), (UNITY_INT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT64) +#define UNITY_TEST_ASSERT_EQUAL_UINT64(expected, actual, line, message) UnityAssertEqualIntNumber((UNITY_INT)(expected), (UNITY_INT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT64) +#define UNITY_TEST_ASSERT_EQUAL_HEX64(expected, actual, line, message) UnityAssertEqualIntNumber((UNITY_INT)(expected), (UNITY_INT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX64) +#define UNITY_TEST_ASSERT_EQUAL_INT64_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT64, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_UINT64_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT64, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_HEX64_ARRAY(expected, actual, num_elements, line, message) UnityAssertEqualIntArray((UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX64, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EACH_EQUAL_INT64(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_INT64)(expected), 8), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT64, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_UINT64(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_UINT64)(expected), 8), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT64, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_EACH_EQUAL_HEX64(expected, actual, num_elements, line, message) UnityAssertEqualIntArray(UnityNumToPtr((UNITY_INT)(UNITY_INT64)(expected), 8), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX64, UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_INT64_WITHIN(delta, expected, actual, line, message) UnityAssertIntNumbersWithin((delta), (UNITY_INT)(expected), (UNITY_INT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT64) +#define UNITY_TEST_ASSERT_UINT64_WITHIN(delta, expected, actual, line, message) UnityAssertUintNumbersWithin((delta), (UNITY_UINT)(expected), (UNITY_UINT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT64) +#define UNITY_TEST_ASSERT_HEX64_WITHIN(delta, expected, actual, line, message) UnityAssertUintNumbersWithin((delta), (UNITY_UINT)(expected), (UNITY_UINT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX64) +#define UNITY_TEST_ASSERT_NOT_EQUAL_INT64(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(threshold), (UNITY_INT)(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT64) +#define UNITY_TEST_ASSERT_NOT_EQUAL_UINT64(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT64) +#define UNITY_TEST_ASSERT_NOT_EQUAL_HEX64(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_NOT_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX64) +#define UNITY_TEST_ASSERT_GREATER_THAN_INT64(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(threshold), (UNITY_INT)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT64) +#define UNITY_TEST_ASSERT_GREATER_THAN_UINT64(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT64) +#define UNITY_TEST_ASSERT_GREATER_THAN_HEX64(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX64) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT64(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(threshold), (UNITY_INT)(actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT64) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT64(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT64) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX64(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX64) +#define UNITY_TEST_ASSERT_SMALLER_THAN_INT64(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(threshold), (UNITY_INT)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT64) +#define UNITY_TEST_ASSERT_SMALLER_THAN_UINT64(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT64) +#define UNITY_TEST_ASSERT_SMALLER_THAN_HEX64(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX64) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT64(threshold, actual, line, message) UnityAssertIntGreaterOrLessOrEqualNumber((UNITY_INT)(threshold), (UNITY_INT)(actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT64) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT64(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT64) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX64(threshold, actual, line, message) UnityAssertUintGreaterOrLessOrEqualNumber((UNITY_UINT)(threshold), (UNITY_UINT)(actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX64) +#define UNITY_TEST_ASSERT_INT64_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT64)(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_INT64, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_UINT64_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT64)(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_UINT64, UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_HEX64_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertNumbersArrayWithin((UNITY_UINT64)(delta), (UNITY_INTERNAL_PTR)(expected), (UNITY_INTERNAL_PTR)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_DISPLAY_STYLE_HEX64, UNITY_ARRAY_TO_ARRAY) +#else +#define UNITY_TEST_ASSERT_EQUAL_INT64(expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_EQUAL_UINT64(expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_EQUAL_HEX64(expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_EQUAL_INT64_ARRAY(expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_EQUAL_UINT64_ARRAY(expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_EQUAL_HEX64_ARRAY(expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_INT64_WITHIN(delta, expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_UINT64_WITHIN(delta, expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_HEX64_WITHIN(delta, expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_GREATER_THAN_INT64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_GREATER_THAN_UINT64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_GREATER_THAN_HEX64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_INT64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_UINT64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_HEX64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_SMALLER_THAN_INT64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_SMALLER_THAN_UINT64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_SMALLER_THAN_HEX64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_INT64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_UINT64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_SMALLER_OR_EQUAL_HEX64(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_INT64_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_UINT64_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#define UNITY_TEST_ASSERT_HEX64_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErr64) +#endif + +#ifdef UNITY_EXCLUDE_FLOAT +#define UNITY_TEST_ASSERT_FLOAT_WITHIN(delta, expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_FLOAT_NOT_WITHIN(delta, expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_EQUAL_FLOAT(expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_NOT_EQUAL_FLOAT(expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_FLOAT_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_EQUAL_FLOAT_ARRAY(expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_EACH_EQUAL_FLOAT(expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_GREATER_THAN_FLOAT(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_LESS_THAN_FLOAT(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_LESS_OR_EQUAL_FLOAT(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_FLOAT_IS_INF(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_FLOAT_IS_NEG_INF(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_FLOAT_IS_NAN(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_FLOAT_IS_DETERMINATE(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_FLOAT_IS_NOT_INF(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_FLOAT_IS_NOT_NEG_INF(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_FLOAT_IS_NOT_NAN(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#define UNITY_TEST_ASSERT_FLOAT_IS_NOT_DETERMINATE(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrFloat) +#else +#define UNITY_TEST_ASSERT_FLOAT_WITHIN(delta, expected, actual, line, message) UnityAssertFloatsWithin((UNITY_FLOAT)(delta), (UNITY_FLOAT)(expected), (UNITY_FLOAT)(actual), (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_FLOAT_NOT_WITHIN(delta, expected, actual, line, message) UnityAssertFloatsNotWithin((UNITY_FLOAT)(delta), (UNITY_FLOAT)(expected), (UNITY_FLOAT)(actual), (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_EQUAL_FLOAT(expected, actual, line, message) UNITY_TEST_ASSERT_FLOAT_WITHIN((UNITY_FLOAT)(expected) * (UNITY_FLOAT)UNITY_FLOAT_PRECISION, (UNITY_FLOAT)(expected), (UNITY_FLOAT)(actual), (UNITY_LINE_TYPE)(line), (message)) +#define UNITY_TEST_ASSERT_NOT_EQUAL_FLOAT(expected, actual, line, message) UNITY_TEST_ASSERT_FLOAT_NOT_WITHIN((UNITY_FLOAT)(expected) * (UNITY_FLOAT)UNITY_FLOAT_PRECISION, (UNITY_FLOAT)(expected), (UNITY_FLOAT)(actual), (UNITY_LINE_TYPE)(line), (message)) +#define UNITY_TEST_ASSERT_FLOAT_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertWithinFloatArray((UNITY_FLOAT)(delta), (const UNITY_FLOAT*)(expected), (const UNITY_FLOAT*)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_FLOAT_ARRAY(expected, actual, num_elements, line, message) UnityAssertWithinFloatArray((UNITY_FLOAT)0, (const UNITY_FLOAT*)(expected), (const UNITY_FLOAT*)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EACH_EQUAL_FLOAT(expected, actual, num_elements, line, message) UnityAssertWithinFloatArray((UNITY_FLOAT)0, UnityFloatToPtr(expected), (const UNITY_FLOAT*)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_GREATER_THAN_FLOAT(threshold, actual, line, message) UnityAssertGreaterOrLessFloat((UNITY_FLOAT)(threshold), (UNITY_FLOAT)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(threshold, actual, line, message) UnityAssertGreaterOrLessFloat((UNITY_FLOAT)(threshold), (UNITY_FLOAT)(actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_LESS_THAN_FLOAT(threshold, actual, line, message) UnityAssertGreaterOrLessFloat((UNITY_FLOAT)(threshold), (UNITY_FLOAT)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_LESS_OR_EQUAL_FLOAT(threshold, actual, line, message) UnityAssertGreaterOrLessFloat((UNITY_FLOAT)(threshold), (UNITY_FLOAT)(actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_FLOAT_IS_INF(actual, line, message) UnityAssertFloatSpecial((UNITY_FLOAT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_INF) +#define UNITY_TEST_ASSERT_FLOAT_IS_NEG_INF(actual, line, message) UnityAssertFloatSpecial((UNITY_FLOAT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NEG_INF) +#define UNITY_TEST_ASSERT_FLOAT_IS_NAN(actual, line, message) UnityAssertFloatSpecial((UNITY_FLOAT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NAN) +#define UNITY_TEST_ASSERT_FLOAT_IS_DETERMINATE(actual, line, message) UnityAssertFloatSpecial((UNITY_FLOAT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_DET) +#define UNITY_TEST_ASSERT_FLOAT_IS_NOT_INF(actual, line, message) UnityAssertFloatSpecial((UNITY_FLOAT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NOT_INF) +#define UNITY_TEST_ASSERT_FLOAT_IS_NOT_NEG_INF(actual, line, message) UnityAssertFloatSpecial((UNITY_FLOAT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NOT_NEG_INF) +#define UNITY_TEST_ASSERT_FLOAT_IS_NOT_NAN(actual, line, message) UnityAssertFloatSpecial((UNITY_FLOAT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NOT_NAN) +#define UNITY_TEST_ASSERT_FLOAT_IS_NOT_DETERMINATE(actual, line, message) UnityAssertFloatSpecial((UNITY_FLOAT)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NOT_DET) +#endif + +#ifdef UNITY_EXCLUDE_DOUBLE +#define UNITY_TEST_ASSERT_DOUBLE_WITHIN(delta, expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_DOUBLE_NOT_WITHIN(delta, expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_EQUAL_DOUBLE(expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_NOT_EQUAL_DOUBLE(expected, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_DOUBLE_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_EQUAL_DOUBLE_ARRAY(expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_EACH_EQUAL_DOUBLE(expected, actual, num_elements, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_GREATER_THAN_DOUBLE(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_LESS_THAN_DOUBLE(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(threshold, actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_DOUBLE_IS_INF(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NEG_INF(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NAN(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_DOUBLE_IS_DETERMINATE(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NOT_INF(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NOT_NEG_INF(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NOT_NAN(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NOT_DETERMINATE(actual, line, message) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDouble) +#else +#define UNITY_TEST_ASSERT_DOUBLE_WITHIN(delta, expected, actual, line, message) UnityAssertDoublesWithin((UNITY_DOUBLE)(delta), (UNITY_DOUBLE)(expected), (UNITY_DOUBLE)(actual), (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_DOUBLE_NOT_WITHIN(delta, expected, actual, line, message) UnityAssertDoublesNotWithin((UNITY_DOUBLE)(delta), (UNITY_DOUBLE)(expected), (UNITY_DOUBLE)(actual), (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_EQUAL_DOUBLE(expected, actual, line, message) UNITY_TEST_ASSERT_DOUBLE_WITHIN((UNITY_DOUBLE)(expected) * (UNITY_DOUBLE)UNITY_DOUBLE_PRECISION, (UNITY_DOUBLE)(expected), (UNITY_DOUBLE)(actual), (UNITY_LINE_TYPE)(line), (message)) +#define UNITY_TEST_ASSERT_NOT_EQUAL_DOUBLE(expected, actual, line, message) UNITY_TEST_ASSERT_DOUBLE_NOT_WITHIN((UNITY_DOUBLE)(expected) * (UNITY_DOUBLE)UNITY_DOUBLE_PRECISION, (UNITY_DOUBLE)(expected), (UNITY_DOUBLE)(actual), (UNITY_LINE_TYPE)(line), (message)) +#define UNITY_TEST_ASSERT_DOUBLE_ARRAY_WITHIN(delta, expected, actual, num_elements, line, message) UnityAssertWithinDoubleArray((UNITY_DOUBLE)(delta), (const UNITY_DOUBLE*)(expected), (const UNITY_DOUBLE*)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EQUAL_DOUBLE_ARRAY(expected, actual, num_elements, line, message) UnityAssertWithinDoubleArray((UNITY_DOUBLE)0, (const UNITY_DOUBLE*)(expected), (const UNITY_DOUBLE*)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_ARRAY_TO_ARRAY) +#define UNITY_TEST_ASSERT_EACH_EQUAL_DOUBLE(expected, actual, num_elements, line, message) UnityAssertWithinDoubleArray((UNITY_DOUBLE)0, UnityDoubleToPtr(expected), (const UNITY_DOUBLE*)(actual), (UNITY_UINT32)(num_elements), (message), (UNITY_LINE_TYPE)(line), UNITY_ARRAY_TO_VAL) +#define UNITY_TEST_ASSERT_GREATER_THAN_DOUBLE(threshold, actual, line, message) UnityAssertGreaterOrLessDouble((UNITY_DOUBLE)(threshold), (UNITY_DOUBLE)(actual), UNITY_GREATER_THAN, (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(threshold, actual, line, message) UnityAssertGreaterOrLessDouble((UNITY_DOUBLE)(threshold), (UNITY_DOUBLE)(actual), UNITY_GREATER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_LESS_THAN_DOUBLE(threshold, actual, line, message) UnityAssertGreaterOrLessDouble((UNITY_DOUBLE)(threshold), (UNITY_DOUBLE)(actual), UNITY_SMALLER_THAN, (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(threshold, actual, line, message) UnityAssertGreaterOrLessDouble((UNITY_DOUBLE)(threshold), (UNITY_DOUBLE)(actual), UNITY_SMALLER_OR_EQUAL, (message), (UNITY_LINE_TYPE)(line)) +#define UNITY_TEST_ASSERT_DOUBLE_IS_INF(actual, line, message) UnityAssertDoubleSpecial((UNITY_DOUBLE)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_INF) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NEG_INF(actual, line, message) UnityAssertDoubleSpecial((UNITY_DOUBLE)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NEG_INF) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NAN(actual, line, message) UnityAssertDoubleSpecial((UNITY_DOUBLE)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NAN) +#define UNITY_TEST_ASSERT_DOUBLE_IS_DETERMINATE(actual, line, message) UnityAssertDoubleSpecial((UNITY_DOUBLE)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_DET) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NOT_INF(actual, line, message) UnityAssertDoubleSpecial((UNITY_DOUBLE)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NOT_INF) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NOT_NEG_INF(actual, line, message) UnityAssertDoubleSpecial((UNITY_DOUBLE)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NOT_NEG_INF) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NOT_NAN(actual, line, message) UnityAssertDoubleSpecial((UNITY_DOUBLE)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NOT_NAN) +#define UNITY_TEST_ASSERT_DOUBLE_IS_NOT_DETERMINATE(actual, line, message) UnityAssertDoubleSpecial((UNITY_DOUBLE)(actual), (message), (UNITY_LINE_TYPE)(line), UNITY_FLOAT_IS_NOT_DET) +#endif + +#if !defined(UNITY_EXCLUDE_DETAILS) && defined(UNITY_DETAIL_STACK_SIZE) +#define UNITY_DETAIL_PUSH(label, value) UnityPushDetail((UNITY_DETAIL_LABEL_TYPE)(label), (UNITY_DETAIL_VALUE_TYPE)(value), __LINE__) +#define UNITY_DETAIL_POP(label, value) UnityPopDetail((UNITY_DETAIL_LABEL_TYPE)(label), (UNITY_DETAIL_VALUE_TYPE)(value), __LINE__) +#else +#define UNITY_DETAIL_PUSH(label, value) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDetailStack) +#define UNITY_DETAIL_POP(label, value) UNITY_TEST_FAIL((UNITY_LINE_TYPE)(line), UnityStrErrDetailStack) +#endif + +/* End of UNITY_INTERNALS_H */ +#endif diff --git a/lib/Unity/test/.rubocop.yml b/lib/Unity/test/.rubocop.yml new file mode 100644 index 0000000..a11c246 --- /dev/null +++ b/lib/Unity/test/.rubocop.yml @@ -0,0 +1,83 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-24 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +#inherit_from: .rubocop_todo.yml + +AllCops: + TargetRubyVersion: 3.0 + +# These are areas where ThrowTheSwitch's coding style diverges from the Ruby standard +Style/SpecialGlobalVars: + EnforcedStyle: use_perl_names +Style/FormatString: + Enabled: false +Style/GlobalVars: + Enabled: false +Style/FrozenStringLiteralComment: + Enabled: false +Style/RegexpLiteral: + AllowInnerSlashes: true +Style/HashSyntax: + EnforcedStyle: no_mixed_keys +Style/NumericPredicate: + Enabled: false +Style/MultilineBlockChain: + Enabled: false +Style/Alias: + Enabled: false +Style/EvalWithLocation: + Enabled: false +Style/MixinUsage: + Enabled: false +Style/OptionalBooleanParameter: + Enabled: false + +# These are also places we diverge... but we will likely comply down the road +Style/IfUnlessModifier: + Enabled: false +Style/FormatStringToken: + Enabled: false + +# This is disabled because it seems to get confused over nested hashes +Layout/HashAlignment: + Enabled: false + EnforcedHashRocketStyle: table + EnforcedColonStyle: table +Layout/LineLength: + Enabled: false + +# We purposefully use these insecure features because they're what makes Ruby awesome +Security/Eval: + Enabled: false +Security/YAMLLoad: + Enabled: false + +# At this point, we're not ready to enforce inline documentation requirements +Style/Documentation: + Enabled: false +Style/DocumentationMethod: + Enabled: false + +# At this point, we're not ready to enforce any metrics +Metrics/AbcSize: + Enabled: false +Metrics/BlockLength: + Enabled: false +Metrics/BlockNesting: + Enabled: false +Metrics/ClassLength: + Enabled: false +Metrics/CyclomaticComplexity: + Enabled: false +Metrics/MethodLength: + Enabled: false +Metrics/ModuleLength: + Enabled: false +Metrics/ParameterLists: + Enabled: false +Metrics/PerceivedComplexity: + Enabled: false diff --git a/lib/Unity/test/expectdata/testsample_cmd.c b/lib/Unity/test/expectdata/testsample_cmd.c new file mode 100644 index 0000000..7bcf8e1 --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_cmd.c @@ -0,0 +1,61 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + CEXCEPTION_T e; \ + Try { \ + setUp(); \ + TestFunc(); \ + } Catch(e) { TEST_ASSERT_EQUAL_HEX32_MESSAGE(CEXCEPTION_NONE, e, "Unhandled Exception!"); } \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "CException.h" +#include "funky.h" +#include "stanky.h" +#include + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); +extern void test_TheThirdThingToTest(void); +extern void test_TheFourthThingToTest(void); + + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/testsample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + RUN_TEST(test_TheThirdThingToTest, 53); + RUN_TEST(test_TheFourthThingToTest, 58); + + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_def.c b/lib/Unity/test/expectdata/testsample_def.c new file mode 100644 index 0000000..b8ad559 --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_def.c @@ -0,0 +1,57 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "funky.h" +#include "stanky.h" +#include + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); +extern void test_TheThirdThingToTest(void); +extern void test_TheFourthThingToTest(void); + + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/testsample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + RUN_TEST(test_TheThirdThingToTest, 53); + RUN_TEST(test_TheFourthThingToTest, 58); + + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_head1.c b/lib/Unity/test/expectdata/testsample_head1.c new file mode 100644 index 0000000..1d01551 --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_head1.c @@ -0,0 +1,55 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "testsample_head1.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); +extern void test_TheThirdThingToTest(void); +extern void test_TheFourthThingToTest(void); + + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/testsample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + RUN_TEST(test_TheThirdThingToTest, 53); + RUN_TEST(test_TheFourthThingToTest, 58); + + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_head1.h b/lib/Unity/test/expectdata/testsample_head1.h new file mode 100644 index 0000000..da6b7ab --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_head1.h @@ -0,0 +1,15 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ +#ifndef _TESTSAMPLE_HEAD1_H +#define _TESTSAMPLE_HEAD1_H + +#include "unity.h" +#include "funky.h" +#include "stanky.h" +#include + +void test_TheFirstThingToTest(void); +void test_TheSecondThingToTest(void); +void test_TheThirdThingToTest(void); +void test_TheFourthThingToTest(void); +#endif + diff --git a/lib/Unity/test/expectdata/testsample_mock_cmd.c b/lib/Unity/test/expectdata/testsample_mock_cmd.c new file mode 100644 index 0000000..45a09af --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_mock_cmd.c @@ -0,0 +1,80 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + CMock_Init(); \ + UNITY_CLR_DETAILS(); \ + if (TEST_PROTECT()) \ + { \ + CEXCEPTION_T e; \ + Try { \ + setUp(); \ + TestFunc(); \ + } Catch(e) { TEST_ASSERT_EQUAL_HEX32_MESSAGE(CEXCEPTION_NONE, e, "Unhandled Exception!"); } \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + CMock_Verify(); \ + } \ + CMock_Destroy(); \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include "cmock.h" +#include +#include +#include "CException.h" +#include "funky.h" +#include +#include "Mockstanky.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); + + +/*=======Mock Management=====*/ +static void CMock_Init(void) +{ + Mockstanky_Init(); +} +static void CMock_Verify(void) +{ + Mockstanky_Verify(); +} +static void CMock_Destroy(void) +{ + Mockstanky_Destroy(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + CMock_Verify(); + CMock_Destroy(); + tearDown(); + CMock_Init(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/mocksample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + + CMock_Guts_MemFreeFinal(); + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_mock_def.c b/lib/Unity/test/expectdata/testsample_mock_def.c new file mode 100644 index 0000000..a7a2607 --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_mock_def.c @@ -0,0 +1,76 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + CMock_Init(); \ + UNITY_CLR_DETAILS(); \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + CMock_Verify(); \ + } \ + CMock_Destroy(); \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include "cmock.h" +#include +#include +#include "funky.h" +#include +#include "Mockstanky.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); + + +/*=======Mock Management=====*/ +static void CMock_Init(void) +{ + Mockstanky_Init(); +} +static void CMock_Verify(void) +{ + Mockstanky_Verify(); +} +static void CMock_Destroy(void) +{ + Mockstanky_Destroy(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + CMock_Verify(); + CMock_Destroy(); + tearDown(); + CMock_Init(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/mocksample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + + CMock_Guts_MemFreeFinal(); + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_mock_head1.c b/lib/Unity/test/expectdata/testsample_mock_head1.c new file mode 100644 index 0000000..45829fe --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_mock_head1.c @@ -0,0 +1,75 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + CMock_Init(); \ + UNITY_CLR_DETAILS(); \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + CMock_Verify(); \ + } \ + CMock_Destroy(); \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include "cmock.h" +#include +#include +#include "testsample_mock_head1.h" +#include "Mockstanky.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); + + +/*=======Mock Management=====*/ +static void CMock_Init(void) +{ + Mockstanky_Init(); +} +static void CMock_Verify(void) +{ + Mockstanky_Verify(); +} +static void CMock_Destroy(void) +{ + Mockstanky_Destroy(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + CMock_Verify(); + CMock_Destroy(); + tearDown(); + CMock_Init(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/mocksample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + + CMock_Guts_MemFreeFinal(); + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_mock_head1.h b/lib/Unity/test/expectdata/testsample_mock_head1.h new file mode 100644 index 0000000..30c509a --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_mock_head1.h @@ -0,0 +1,13 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ +#ifndef _TESTSAMPLE_MOCK_HEAD1_H +#define _TESTSAMPLE_MOCK_HEAD1_H + +#include "unity.h" +#include "cmock.h" +#include "funky.h" +#include + +void test_TheFirstThingToTest(void); +void test_TheSecondThingToTest(void); +#endif + diff --git a/lib/Unity/test/expectdata/testsample_mock_new1.c b/lib/Unity/test/expectdata/testsample_mock_new1.c new file mode 100644 index 0000000..0061822 --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_mock_new1.c @@ -0,0 +1,89 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + CMock_Init(); \ + UNITY_CLR_DETAILS(); \ + if (TEST_PROTECT()) \ + { \ + CEXCEPTION_T e; \ + Try { \ + setUp(); \ + TestFunc(); \ + } Catch(e) { TEST_ASSERT_EQUAL_HEX32_MESSAGE(CEXCEPTION_NONE, e, "Unhandled Exception!"); } \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + CMock_Verify(); \ + } \ + CMock_Destroy(); \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include "cmock.h" +#include +#include +#include "CException.h" +#include "one.h" +#include "two.h" +#include "funky.h" +#include +#include "Mockstanky.h" + +int GlobalExpectCount; +int GlobalVerifyOrder; +char* GlobalOrderError; + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); + + +/*=======Mock Management=====*/ +static void CMock_Init(void) +{ + GlobalExpectCount = 0; + GlobalVerifyOrder = 0; + GlobalOrderError = NULL; + Mockstanky_Init(); +} +static void CMock_Verify(void) +{ + Mockstanky_Verify(); +} +static void CMock_Destroy(void) +{ + Mockstanky_Destroy(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + CMock_Verify(); + CMock_Destroy(); + tearDown(); + CMock_Init(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/mocksample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + + CMock_Guts_MemFreeFinal(); + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_mock_new2.c b/lib/Unity/test/expectdata/testsample_mock_new2.c new file mode 100644 index 0000000..ee63cdc --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_mock_new2.c @@ -0,0 +1,89 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + CMock_Init(); \ + UNITY_CLR_DETAILS(); \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + CMock_Verify(); \ + } \ + CMock_Destroy(); \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include "cmock.h" +#include +#include +#include "funky.h" +#include +#include "Mockstanky.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); + + +/*=======Mock Management=====*/ +static void CMock_Init(void) +{ + Mockstanky_Init(); +} +static void CMock_Verify(void) +{ + Mockstanky_Verify(); +} +static void CMock_Destroy(void) +{ + Mockstanky_Destroy(); +} + +/*=======Suite Setup=====*/ +static int suite_setup(void) +{ +a_custom_setup(); +} + +/*=======Suite Teardown=====*/ +static int suite_teardown(int num_failures) +{ +a_custom_teardown(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + CMock_Verify(); + CMock_Destroy(); + tearDown(); + CMock_Init(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + suite_setup(); + UnityBegin("testdata/mocksample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + + CMock_Guts_MemFreeFinal(); + return suite_teardown(UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_mock_param.c b/lib/Unity/test/expectdata/testsample_mock_param.c new file mode 100644 index 0000000..a42b7de --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_mock_param.c @@ -0,0 +1,77 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST_NO_ARGS +#define RUN_TEST(TestFunc, TestLineNum, ...) \ +{ \ + Unity.CurrentTestName = #TestFunc "(" #__VA_ARGS__ ")"; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + CMock_Init(); \ + UNITY_CLR_DETAILS(); \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(__VA_ARGS__); \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + CMock_Verify(); \ + } \ + CMock_Destroy(); \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include "cmock.h" +#include +#include +#include "funky.h" +#include +#include "Mockstanky.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); + + +/*=======Mock Management=====*/ +static void CMock_Init(void) +{ + Mockstanky_Init(); +} +static void CMock_Verify(void) +{ + Mockstanky_Verify(); +} +static void CMock_Destroy(void) +{ + Mockstanky_Destroy(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + CMock_Verify(); + CMock_Destroy(); + tearDown(); + CMock_Init(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/mocksample.c"); + RUN_TEST(test_TheFirstThingToTest, 21, RUN_TEST_NO_ARGS); + RUN_TEST(test_TheSecondThingToTest, 43, RUN_TEST_NO_ARGS); + + CMock_Guts_MemFreeFinal(); + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_mock_run1.c b/lib/Unity/test/expectdata/testsample_mock_run1.c new file mode 100644 index 0000000..0061822 --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_mock_run1.c @@ -0,0 +1,89 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + CMock_Init(); \ + UNITY_CLR_DETAILS(); \ + if (TEST_PROTECT()) \ + { \ + CEXCEPTION_T e; \ + Try { \ + setUp(); \ + TestFunc(); \ + } Catch(e) { TEST_ASSERT_EQUAL_HEX32_MESSAGE(CEXCEPTION_NONE, e, "Unhandled Exception!"); } \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + CMock_Verify(); \ + } \ + CMock_Destroy(); \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include "cmock.h" +#include +#include +#include "CException.h" +#include "one.h" +#include "two.h" +#include "funky.h" +#include +#include "Mockstanky.h" + +int GlobalExpectCount; +int GlobalVerifyOrder; +char* GlobalOrderError; + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); + + +/*=======Mock Management=====*/ +static void CMock_Init(void) +{ + GlobalExpectCount = 0; + GlobalVerifyOrder = 0; + GlobalOrderError = NULL; + Mockstanky_Init(); +} +static void CMock_Verify(void) +{ + Mockstanky_Verify(); +} +static void CMock_Destroy(void) +{ + Mockstanky_Destroy(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + CMock_Verify(); + CMock_Destroy(); + tearDown(); + CMock_Init(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/mocksample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + + CMock_Guts_MemFreeFinal(); + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_mock_run2.c b/lib/Unity/test/expectdata/testsample_mock_run2.c new file mode 100644 index 0000000..ee63cdc --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_mock_run2.c @@ -0,0 +1,89 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + CMock_Init(); \ + UNITY_CLR_DETAILS(); \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + CMock_Verify(); \ + } \ + CMock_Destroy(); \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include "cmock.h" +#include +#include +#include "funky.h" +#include +#include "Mockstanky.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); + + +/*=======Mock Management=====*/ +static void CMock_Init(void) +{ + Mockstanky_Init(); +} +static void CMock_Verify(void) +{ + Mockstanky_Verify(); +} +static void CMock_Destroy(void) +{ + Mockstanky_Destroy(); +} + +/*=======Suite Setup=====*/ +static int suite_setup(void) +{ +a_custom_setup(); +} + +/*=======Suite Teardown=====*/ +static int suite_teardown(int num_failures) +{ +a_custom_teardown(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + CMock_Verify(); + CMock_Destroy(); + tearDown(); + CMock_Init(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + suite_setup(); + UnityBegin("testdata/mocksample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + + CMock_Guts_MemFreeFinal(); + return suite_teardown(UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_mock_yaml.c b/lib/Unity/test/expectdata/testsample_mock_yaml.c new file mode 100644 index 0000000..a24bb5a --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_mock_yaml.c @@ -0,0 +1,90 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + CMock_Init(); \ + UNITY_CLR_DETAILS(); \ + if (TEST_PROTECT()) \ + { \ + CEXCEPTION_T e; \ + Try { \ + setUp(); \ + TestFunc(); \ + } Catch(e) { TEST_ASSERT_EQUAL_HEX32_MESSAGE(CEXCEPTION_NONE, e, "Unhandled Exception!"); } \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + CMock_Verify(); \ + } \ + CMock_Destroy(); \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include "cmock.h" +#include +#include +#include "CException.h" +#include "two.h" +#include "three.h" +#include +#include "funky.h" +#include +#include "Mockstanky.h" + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); + + +/*=======Mock Management=====*/ +static void CMock_Init(void) +{ + Mockstanky_Init(); +} +static void CMock_Verify(void) +{ + Mockstanky_Verify(); +} +static void CMock_Destroy(void) +{ + Mockstanky_Destroy(); +} + +/*=======Suite Setup=====*/ +static int suite_setup(void) +{ +a_yaml_setup(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + CMock_Verify(); + CMock_Destroy(); + tearDown(); + CMock_Init(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + suite_setup(); + UnityBegin("testdata/mocksample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + + CMock_Guts_MemFreeFinal(); + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_new1.c b/lib/Unity/test/expectdata/testsample_new1.c new file mode 100644 index 0000000..7dcd3fd --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_new1.c @@ -0,0 +1,67 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + CEXCEPTION_T e; \ + Try { \ + setUp(); \ + TestFunc(); \ + } Catch(e) { TEST_ASSERT_EQUAL_HEX32_MESSAGE(CEXCEPTION_NONE, e, "Unhandled Exception!"); } \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "CException.h" +#include "one.h" +#include "two.h" +#include "funky.h" +#include "stanky.h" +#include + +int GlobalExpectCount; +int GlobalVerifyOrder; +char* GlobalOrderError; + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); +extern void test_TheThirdThingToTest(void); +extern void test_TheFourthThingToTest(void); + + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/testsample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + RUN_TEST(test_TheThirdThingToTest, 53); + RUN_TEST(test_TheFourthThingToTest, 58); + + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_new2.c b/lib/Unity/test/expectdata/testsample_new2.c new file mode 100644 index 0000000..c98c697 --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_new2.c @@ -0,0 +1,70 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "funky.h" +#include "stanky.h" +#include + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); +extern void test_TheThirdThingToTest(void); +extern void test_TheFourthThingToTest(void); + + +/*=======Suite Setup=====*/ +static int suite_setup(void) +{ +a_custom_setup(); +} + +/*=======Suite Teardown=====*/ +static int suite_teardown(int num_failures) +{ +a_custom_teardown(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + suite_setup(); + UnityBegin("testdata/testsample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + RUN_TEST(test_TheThirdThingToTest, 53); + RUN_TEST(test_TheFourthThingToTest, 58); + + return suite_teardown(UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_param.c b/lib/Unity/test/expectdata/testsample_param.c new file mode 100644 index 0000000..adf6c26 --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_param.c @@ -0,0 +1,58 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST_NO_ARGS +#define RUN_TEST(TestFunc, TestLineNum, ...) \ +{ \ + Unity.CurrentTestName = #TestFunc "(" #__VA_ARGS__ ")"; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(__VA_ARGS__); \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "funky.h" +#include "stanky.h" +#include + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); +extern void test_TheThirdThingToTest(void); +extern void test_TheFourthThingToTest(void); + + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/testsample.c"); + RUN_TEST(test_TheFirstThingToTest, 21, RUN_TEST_NO_ARGS); + RUN_TEST(test_TheSecondThingToTest, 43, RUN_TEST_NO_ARGS); + RUN_TEST(test_TheThirdThingToTest, 53, RUN_TEST_NO_ARGS); + RUN_TEST(test_TheFourthThingToTest, 58, RUN_TEST_NO_ARGS); + + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_run1.c b/lib/Unity/test/expectdata/testsample_run1.c new file mode 100644 index 0000000..7dcd3fd --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_run1.c @@ -0,0 +1,67 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + CEXCEPTION_T e; \ + Try { \ + setUp(); \ + TestFunc(); \ + } Catch(e) { TEST_ASSERT_EQUAL_HEX32_MESSAGE(CEXCEPTION_NONE, e, "Unhandled Exception!"); } \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "CException.h" +#include "one.h" +#include "two.h" +#include "funky.h" +#include "stanky.h" +#include + +int GlobalExpectCount; +int GlobalVerifyOrder; +char* GlobalOrderError; + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); +extern void test_TheThirdThingToTest(void); +extern void test_TheFourthThingToTest(void); + + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + UnityBegin("testdata/testsample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + RUN_TEST(test_TheThirdThingToTest, 53); + RUN_TEST(test_TheFourthThingToTest, 58); + + return (UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_run2.c b/lib/Unity/test/expectdata/testsample_run2.c new file mode 100644 index 0000000..c98c697 --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_run2.c @@ -0,0 +1,70 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + setUp(); \ + TestFunc(); \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "funky.h" +#include "stanky.h" +#include + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); +extern void test_TheThirdThingToTest(void); +extern void test_TheFourthThingToTest(void); + + +/*=======Suite Setup=====*/ +static int suite_setup(void) +{ +a_custom_setup(); +} + +/*=======Suite Teardown=====*/ +static int suite_teardown(int num_failures) +{ +a_custom_teardown(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + suite_setup(); + UnityBegin("testdata/testsample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + RUN_TEST(test_TheThirdThingToTest, 53); + RUN_TEST(test_TheFourthThingToTest, 58); + + return suite_teardown(UnityEnd()); +} diff --git a/lib/Unity/test/expectdata/testsample_yaml.c b/lib/Unity/test/expectdata/testsample_yaml.c new file mode 100644 index 0000000..3316024 --- /dev/null +++ b/lib/Unity/test/expectdata/testsample_yaml.c @@ -0,0 +1,71 @@ +/* AUTOGENERATED FILE. DO NOT EDIT. */ + +/*=======Test Runner Used To Run Each Test Below=====*/ +#define RUN_TEST(TestFunc, TestLineNum) \ +{ \ + Unity.CurrentTestName = #TestFunc; \ + Unity.CurrentTestLineNumber = TestLineNum; \ + Unity.NumberOfTests++; \ + if (TEST_PROTECT()) \ + { \ + CEXCEPTION_T e; \ + Try { \ + setUp(); \ + TestFunc(); \ + } Catch(e) { TEST_ASSERT_EQUAL_HEX32_MESSAGE(CEXCEPTION_NONE, e, "Unhandled Exception!"); } \ + } \ + if (TEST_PROTECT() && !TEST_IS_IGNORED) \ + { \ + tearDown(); \ + } \ + UnityConcludeTest(); \ +} + +/*=======Automagically Detected Files To Include=====*/ +#include "unity.h" +#include +#include +#include "CException.h" +#include "two.h" +#include "three.h" +#include +#include "funky.h" +#include "stanky.h" +#include + +/*=======External Functions This Runner Calls=====*/ +extern void setUp(void); +extern void tearDown(void); +extern void test_TheFirstThingToTest(void); +extern void test_TheSecondThingToTest(void); +extern void test_TheThirdThingToTest(void); +extern void test_TheFourthThingToTest(void); + + +/*=======Suite Setup=====*/ +static int suite_setup(void) +{ +a_yaml_setup(); +} + +/*=======Test Reset Option=====*/ +void resetTest(void); +void resetTest(void) +{ + tearDown(); + setUp(); +} + + +/*=======MAIN=====*/ +int main(void) +{ + suite_setup(); + UnityBegin("testdata/testsample.c"); + RUN_TEST(test_TheFirstThingToTest, 21); + RUN_TEST(test_TheSecondThingToTest, 43); + RUN_TEST(test_TheThirdThingToTest, 53); + RUN_TEST(test_TheFourthThingToTest, 58); + + return (UnityEnd()); +} diff --git a/lib/Unity/test/rakefile b/lib/Unity/test/rakefile new file mode 100644 index 0000000..f278d42 --- /dev/null +++ b/lib/Unity/test/rakefile @@ -0,0 +1,164 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +$verbose = false +$extra_paths = [] + +require 'rake' +require 'rake/clean' +require_relative 'rakefile_helper' +require 'rspec/core/rake_task' + +TEMP_DIRS = [ + File.join(__dir__, 'build'), + File.join(__dir__, 'sandbox') +] + +TEMP_DIRS.each do |dir| + directory(dir) + CLOBBER.include(dir) +end + +task :prepare_for_tests => TEMP_DIRS + +include RakefileHelpers + +# Load proper GCC as defult configuration +DEFAULT_CONFIG_FILE = 'gcc_auto_stdint.yml' +configure_toolchain(DEFAULT_CONFIG_FILE) + +############# ALL THE SELF-TESTS WE CAN PERFORM +namespace :test do + desc "Build and test Unity" + task :all => [:clean, :prepare_for_tests, 'test:scripts', 'test:unit', :style, 'test:fixture', 'test:memory', 'test:summary'] + task :ci => [:clean, :prepare_for_tests, 'test:scripts', 'test:unit', :style, 'test:make', 'test:fixture', 'test:memory', 'test:summary'] + + desc "Test unity with its own unit tests" + task :unit => [:prepare_for_tests] do + run_tests unit_test_files + end + + namespace :unit do + unit_test_files.each do |f| + desc "test this unit only" + task File.basename(f,'.c').sub('test_unity_','') => [:prepare_for_tests] do + run_tests [f] + end + end + end + + desc "Test unity's helper scripts" + task :scripts => [:prepare_for_tests] do + Dir['tests/test_*.rb'].each do |scriptfile| + require "./"+scriptfile + end + end + + desc "Test unity triggered from make" + task :make => [:prepare_for_tests] do + run_make_tests() + end + + desc "Test unity fixture addon" + task :fixture => [:prepare_for_tests] do + test_fixtures() + end + + desc "Test unity memory addon" + task :memory => [:prepare_for_tests] do + test_memory() + end + + desc "Test unity examples" + task :examples => [:prepare_for_tests] do + execute("cd ../examples/example_1 && make -s ci", false) + execute("cd ../examples/example_2 && make -s ci", false) + execute("cd ../examples/example_3 && rake", false) + end + + desc "Run all rspecs" + RSpec::Core::RakeTask.new(:spec) do |t| + t.pattern = 'spec/**/*_spec.rb' + end + + desc "Generate test summary" + task :summary do + report_summary + end +end + +###################### Shorthand for many common tasks +task :ci => ['test:ci'] +task :all => ['test:all'] +task :default => [:clobber, :all] + +desc "Load configuration" +task :config, :config_file do |t, args| + configure_toolchain(args[:config_file]) +end + +task :no_color do + $colour_output = false +end + +task :verbose do + $verbose = true +end + +################### CODING STYLE VALIDATION +namespace :style do + desc "Check style" + task :check do + report "\nVERIFYING RUBY STYLE" + report execute("rubocop ../auto ../examples ../extras --config .rubocop.yml", true) + report "Styling Ruby:PASS" + end + + namespace :check do + Dir['../**/*.rb'].each do |f| + filename = File.basename(f, '.rb') + #desc "Check Style of #{filename}" + task filename.to_sym => ['style:clean'] do + report execute("rubocop #{f} --color --config .rubocop.yml", true) + report "Style Checked for #{f}" + end + end + end + + desc "Fix Style of all C Code" + task :c do + run_astyle("../src/*.* ../extras/fixture/src/*.*") + end + + namespace :c do + Dir['../{src,extras/**}/*.{c,h}'].each do |f| + filename = File.basename(f)[0..-3] + #desc "Check Style of #{filename}" + task filename.to_sym do + run_astyle f + end + end + end + + desc "Attempt to Autocorrect style" + task :auto => ['style:clean'] do + execute("rubocop ../auto ../examples ../extras --auto-correct --config .rubocop.yml") + report "Autocorrected What We Could." + end + + desc "Update style todo list" + task :todo => ['style:clean'] do + execute("rubocop ../auto ../examples ../extras --auto-gen-config --config .rubocop.yml") + report "Updated Style TODO List." + end + + task :clean do + File.delete(".rubocop_todo.yml") if File.exists?(".rubocop_todo.yml") + end +end + +task :style => ['style:check'] diff --git a/lib/Unity/test/rakefile_helper.rb b/lib/Unity/test/rakefile_helper.rb new file mode 100644 index 0000000..cabcc99 --- /dev/null +++ b/lib/Unity/test/rakefile_helper.rb @@ -0,0 +1,316 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +require 'fileutils' +require_relative '../auto/unity_test_summary' +require_relative '../auto/generate_test_runner' +require_relative '../auto/colour_reporter' +require_relative '../auto/yaml_helper' + +module RakefileHelpers + C_EXTENSION = '.c'.freeze + def load_configuration(config_file) + return if $configured + + $cfg_file = "targets/#{config_file}" unless config_file =~ /[\\|\/]/ + $cfg = YamlHelper.load_file($cfg_file) + $colour_output = false unless $cfg['colour'] + $configured = true if config_file != DEFAULT_CONFIG_FILE + end + + def configure_clean + CLEAN.include('build/*.*') + end + + def configure_toolchain(config_file = DEFAULT_CONFIG_FILE) + config_file += '.yml' unless config_file =~ /\.yml$/ + config_file = config_file unless config_file =~ /[\\|\/]/ + load_configuration(config_file) + configure_clean + end + + def unit_test_files + path = 'tests/test*' + C_EXTENSION + path.tr!('\\', '/') + FileList.new(path) + end + + def local_include_dirs + include_dirs = $cfg[:paths][:includes] || [] + include_dirs += $cfg[:paths][:source] || [] + include_dirs += $cfg[:paths][:test] || [] + include_dirs += $cfg[:paths][:support] || [] + include_dirs.delete_if { |dir| dir.is_a?(Array) } + include_dirs + end + + def extract_headers(filename) + includes = [] + lines = File.readlines(filename) + lines.each do |line| + m = line.match(/^\s*#include\s+\"\s*(.+\.[hH])\s*\"/) + includes << m[1] unless m.nil? + end + includes + end + + def find_source_file(header, paths) + paths.each do |dir| + src_file = dir + header.ext(C_EXTENSION) + return src_file if File.exist?(src_file) + end + nil + end + + def tackit(strings) + result = if strings.is_a?(Array) + "\"#{strings.join}\"" + else + strings + end + result + end + + def squash(prefix, items) + result = '' + items.each { |item| result += " #{prefix}#{tackit(item)}" } + result + end + + def should(behave, &block) + if block + puts 'Should ' + behave + yield block + else + puts "UNIMPLEMENTED CASE: Should #{behave}" + end + end + + def build_command_string(hash, values, defines = nil) + + # Replace named and numbered slots + args = [] + hash[:arguments].each do |arg| + if arg.include? '$' + if arg.include? ': COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + pattern = arg.gsub(': COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE','') + [ File.join('..','src') ].each do |f| + args << pattern.gsub(/\$/,f) + end + + elsif arg.include? ': COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + pattern = arg.gsub(': COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR','') + [ $extra_paths, 'src', File.join('tests'), File.join('testdata'), $cfg[:paths][:support] ].flatten.uniq.compact.each do |f| + args << pattern.gsub(/\$/,f) + end + + elsif arg.include? ': COLLECTION_DEFINES_TEST_AND_VENDOR' + pattern = arg.gsub(': COLLECTION_DEFINES_TEST_AND_VENDOR','') + [ $cfg[:defines][:test], defines ].flatten.uniq.compact.each do |f| + args << pattern.gsub(/\$/,f) + end + + elsif arg =~ /\$\{(\d+)\}/ + i = $1.to_i - 1 + if (values[i].is_a?(Array)) + values[i].each {|v| args << arg.gsub(/\$\{\d+\}/, v)} + else + args << arg.gsub(/\$\{(\d)+\}/, values[i] || '') + end + + else + args << arg + + end + else + args << arg + end + end + + # Build Command + return tackit(hash[:executable]) + squash('', args) + end + + def compile(file, defines = []) + out_file = File.join('build', File.basename(file, C_EXTENSION)) + $cfg[:extension][:object] + cmd_str = build_command_string( $cfg[:tools][:test_compiler], [ file, out_file ], defines ) + execute(cmd_str) + out_file + end + + def link_it(exe_name, obj_list) + exe_name = File.join('build', File.basename(exe_name)) + cmd_str = build_command_string( $cfg[:tools][:test_linker], [ obj_list, exe_name ] ) + execute(cmd_str) + end + + def runtest(bin_name, ok_to_fail = false, extra_args = nil) + bin_name = File.join('build', File.basename(bin_name)) + extra_args = extra_args.nil? ? "" : " " + extra_args + if $cfg[:tools][:test_fixture] + cmd_str = build_command_string( $cfg[:tools][:test_fixture], [ bin_name, extra_args ] ) + else + cmd_str = bin_name + extra_args + end + execute(cmd_str, ok_to_fail) + end + + def run_astyle(style_what) + report "Styling C Code..." + command = "AStyle " \ + "--style=allman --indent=spaces=4 --indent-switches --indent-preproc-define --indent-preproc-block " \ + "--pad-oper --pad-comma --unpad-paren --pad-header " \ + "--align-pointer=type --align-reference=name " \ + "--add-brackets --mode=c --suffix=none " \ + "#{style_what}" + execute(command, false) + report "Styling C:PASS" + end + + def execute(command_string, ok_to_fail = false) + report command_string if $verbose + output = `#{command_string}`.chomp + report(output) if ($verbose && !output.nil? && !output.empty?) || (!$?.nil? && !$?.exitstatus.zero? && !ok_to_fail) + raise "Command failed. (Returned #{$?.exitstatus})" if !$?.nil? && !$?.exitstatus.zero? && !ok_to_fail + output + end + + def report_summary + summary = UnityTestSummary.new + summary.root = __dir__ + results_glob = File.join('build','*.test*') + results_glob.tr!('\\', '/') + results = Dir[results_glob] + summary.targets = results + report summary.run + end + + def save_test_results(test_base, output) + test_results = File.join('build',test_base) + if output.match(/OK$/m).nil? + test_results += '.testfail' + else + report output unless $verbose # Verbose already prints this line, as does a failure + test_results += '.testpass' + end + File.open(test_results, 'w') { |f| f.print output } + end + + def test_fixtures() + report "\nRunning Fixture Addon" + + # Get a list of all source files needed + src_files = Dir[File.join('..','extras','fixture','src','*.c')] + src_files += Dir[File.join('..','extras','fixture','test','*.c')] + src_files += Dir[File.join('..','extras','fixture','test','main','*.c')] + src_files += Dir[File.join('..','extras','memory','src','*.c')] + src_files << File.join('..','src','unity.c') + + # Build object files + $extra_paths = [File.join('..','extras','fixture','src'), File.join('..','extras','memory','src')] + obj_list = src_files.map { |f| compile(f, ['UNITY_SKIP_DEFAULT_RUNNER', 'UNITY_FIXTURE_NO_EXTRAS']) } + + # Link the test executable + test_base = File.basename('framework_test', C_EXTENSION) + link_it(test_base, obj_list) + + # Run and collect output + output = runtest(test_base + " -v -r") + save_test_results(test_base, output) + end + + def test_memory() + { 'w_malloc' => [], + 'wo_malloc' => ['UNITY_EXCLUDE_STDLIB_MALLOC'] + }.each_pair do |name, defs| + report "\nRunning Memory Addon #{name}" + + # Get a list of all source files needed + src_files = Dir[File.join('..','extras','memory','src','*.c')] + src_files += Dir[File.join('..','extras','memory','test','*.c')] + src_files += Dir[File.join('..','extras','memory','test','main','*.c')] + src_files << File.join('..','src','unity.c') + + # Build object files + $extra_paths = [File.join('..','extras','memory','src')] + obj_list = src_files.map { |f| compile(f, defs) } + + # Link the test executable + test_base = File.basename("memory_test_#{name}", C_EXTENSION) + link_it(test_base, obj_list) + + # Run and collect output + output = runtest(test_base) + save_test_results(test_base, output) + end + end + + def run_tests(test_files) + report "\nRunning Unity system tests" + + include_dirs = local_include_dirs + + # Build and execute each unit test + test_files.each do |test| + + # Drop Out if we're skipping this type of test + if $cfg[:skip_tests] + if $cfg[:skip_tests].include?(:parameterized) && test.match(/parameterized/) + report("Skipping Parameterized Tests for this Target:IGNORE") + next + end + end + + report "\nRunning Tests in #{test}" + obj_list = [] + test_defines = [] + + # Detect dependencies and build required modules + extract_headers(test).each do |header| + # Compile corresponding source file if it exists + src_file = find_source_file(header, include_dirs) + + obj_list << compile(src_file, test_defines) unless src_file.nil? + end + + # Build the test runner (generate if configured to do so) + test_base = File.basename(test, C_EXTENSION) + runner_name = test_base + '_Runner.c' + runner_path = File.join('build',runner_name) + + options = $cfg[:unity] + options[:use_param_tests] = test =~ /parameterized/ ? true : false + UnityTestRunnerGenerator.new(options).run(test, runner_path) + obj_list << compile(runner_path, test_defines) + + # Build the test module + obj_list << compile(test, test_defines) + + # Link the test executable + link_it(test_base, obj_list) + + # Execute unit test and generate results file + output = runtest(test_base) + save_test_results(test_base, output) + end + end + + def run_make_tests() + [ "make -s", # test with all defaults + #"make -s DEBUG=-m32", # test 32-bit architecture with 64-bit support + #"make -s DEBUG=-m32 UNITY_SUPPORT_64=", # test 32-bit build without 64-bit types + "make -s UNITY_INCLUDE_DOUBLE= ", # test without double + "cd #{File.join("..","extras","fixture",'test')} && make -s default noStdlibMalloc", + "cd #{File.join("..","extras","fixture",'test')} && make -s C89", + "cd #{File.join("..","extras","memory",'test')} && make -s default noStdlibMalloc", + "cd #{File.join("..","extras","memory",'test')} && make -s C89", + ].each do |cmd| + report "Testing '#{cmd}'" + execute(cmd, false) + end + end +end diff --git a/lib/Unity/test/spec/generate_module_existing_file_spec.rb b/lib/Unity/test/spec/generate_module_existing_file_spec.rb new file mode 100644 index 0000000..732e6d7 --- /dev/null +++ b/lib/Unity/test/spec/generate_module_existing_file_spec.rb @@ -0,0 +1,164 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +require '../auto/generate_module.rb' +require 'fileutils' + +def touch_src(file) + FileUtils.touch "sandbox/src/#{file}" +end + +def touch_test(file) + FileUtils.touch "sandbox/test/#{file}" +end + +def create_src_with_known_content(file) + File.open("sandbox/src/#{file}", "w") {|f| f.write("the original #{file}")} +end + +def create_test_with_known_content(file) + File.open("sandbox/test/#{file}", "w") {|f| f.write("the original #{file}")} +end + +def expect_src_content_didnt_change(file) + expect(File.read("sandbox/src/#{file}")).to eq("the original #{file}") +end + +def expect_test_content_didnt_change(file) + expect(File.read("sandbox/test/#{file}")).to eq("the original #{file}") +end + +def expect_src_file_to_exist(file) + expect(File.exist?("sandbox/src/#{file}")).to be true +end + +def expect_test_file_to_exist(file) + expect(File.exist?("sandbox/test/#{file}")).to be true +end + +describe "UnityModuleGenerator" do + + before do + # clean sandbox and setup our "project" folders + FileUtils.rm_rf "sandbox" + FileUtils.mkdir_p "sandbox" + FileUtils.mkdir_p "sandbox/src" + FileUtils.mkdir_p "sandbox/test" + + @options = { + :path_src => "sandbox/src", + :path_tst => "sandbox/test", + } + end + + context "with src pattern" do + before do + @options[:pattern] = "src" + end + + it "fails when all files already exist" do + # create an existing triad of files + touch_src "meh.c" + touch_src "meh.h" + touch_test "Testmeh.c" + expect { + UnityModuleGenerator.new(@options).generate("meh") + }.to raise_error("ERROR: File meh already exists. Exiting.") + end + + it "creates the test file if the source and header files exist" do + # Create the existing files. + touch_src "meh.c" + touch_src "meh.h" + + UnityModuleGenerator.new(@options).generate("meh") + + expect_test_file_to_exist "Testmeh.c" + end + + it "does not alter existing files" do + # Create some files with known content. + create_src_with_known_content "meh.c" + create_src_with_known_content "meh.h" + + UnityModuleGenerator.new(@options).generate("meh") + + expect_src_content_didnt_change "meh.c" + expect_src_content_didnt_change "meh.c" + end + + it "does not alter existing test files" do + # Create some files with known content. + create_test_with_known_content "Testmeh.c" + + UnityModuleGenerator.new(@options).generate("meh") + + expect_test_content_didnt_change "Testmeh.c" + end + + end + + context "with mch pattern" do + before do + @options[:pattern] = "mch" + end + + it "fails when all files exist" do + touch_src "meh_model.c" + touch_src "meh_conductor.c" + touch_src "meh_hardware.c" + touch_src "meh_model.h" + touch_src "meh_conductor.h" + touch_src "meh_hardware.h" + touch_test "Testmeh_model.c" + touch_test "Testmeh_conductor.c" + touch_test "Testmeh_hardware.c" + expect { + UnityModuleGenerator.new(@options).generate("meh") + }.to raise_error("ERROR: File meh_model already exists. Exiting.") + end + + it "creates files that don't exist" do + touch_src "meh_model.c" + touch_src "meh_conductor.c" + touch_src "meh_hardware.c" + touch_src "meh_model.h" + touch_src "meh_conductor.h" + + UnityModuleGenerator.new(@options).generate("meh") + + expect_src_file_to_exist "meh_hardware.h" + expect_test_file_to_exist "Testmeh_model.c" + expect_test_file_to_exist "Testmeh_conductor.c" + expect_test_file_to_exist "Testmeh_hardware.c" + end + + it "does not alter existing source files" do + create_src_with_known_content "meh_model.c" + create_src_with_known_content "meh_model.c" + create_src_with_known_content "meh_model.c" + create_src_with_known_content "meh_model.h" + create_src_with_known_content "meh_model.c" + + UnityModuleGenerator.new(@options).generate("meh") + + expect_src_content_didnt_change "meh_model.c" + expect_src_content_didnt_change "meh_model.c" + expect_src_content_didnt_change "meh_model.c" + expect_src_content_didnt_change "meh_model.c" + end + + it "does not alter existing test files" do + create_test_with_known_content "Testmeh_model.c" + + UnityModuleGenerator.new(@options).generate("meh") + + expect_test_content_didnt_change "Testmeh_model.c" + end + + end +end diff --git a/lib/Unity/test/targets/ansi.yml b/lib/Unity/test/targets/ansi.yml new file mode 100644 index 0000000..c09642f --- /dev/null +++ b/lib/Unity/test/targets/ansi.yml @@ -0,0 +1,51 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +colour: true +:unity: + :plugins: [] +:skip_tests: +- :parameterized +:tools: + :test_compiler: + :name: compiler + :executable: gcc + :arguments: + - "-c" + - "-m64" + - "-Wall" + - "-Wno-address" + - "-ansi" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: gcc + :arguments: + - "${1}" + - "-lm" + - "-m64" + - "-o ${2}" +:extension: + :object: ".o" + :executable: ".exe" +:paths: + :test: + - src/ + - "../src/" + - testdata/ + - tests/ +:defines: + :test: + - UNITY_INCLUDE_DOUBLE + - UNITY_SUPPORT_TEST_CASES + - UNITY_EXCLUDE_TESTING_NEW_COMMENTS + - UNITY_SUPPORT_64 diff --git a/lib/Unity/test/targets/clang_file.yml b/lib/Unity/test/targets/clang_file.yml new file mode 100644 index 0000000..1c4ed53 --- /dev/null +++ b/lib/Unity/test/targets/clang_file.yml @@ -0,0 +1,79 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: clang + :arguments: + - "-c" + - "-Wall" + - "-Wextra" + - "-Werror" + - "-Wcast-qual" + - "-Wconversion" + - "-Wdisabled-optimization" + - "-Wformat=2" + - "-Winit-self" + - "-Winline" + - "-Winvalid-pch" + - "-Wmissing-include-dirs" + - "-Wnonnull" + - "-Wpacked" + - "-Wpointer-arith" + - "-Wswitch-default" + - "-Wstrict-aliasing" + - "-Wstrict-overflow=5" + - "-Wuninitialized" + - "-Wunused" + - "-Wreturn-type" + - "-Wshadow" + - "-Wundef" + - "-Wwrite-strings" + - "-Wno-nested-externs" + - "-Wno-unused-parameter" + - "-Wno-variadic-macros" + - "-Wbad-function-cast" + - "-fms-extensions" + - "-fno-omit-frame-pointer" + - "-ffloat-store" + - "-fno-common" + - "-fstrict-aliasing" + - "-std=gnu99" + - "-pedantic" + - "-O0" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: clang + :arguments: + - "${1}" + - "-lm" + - "-m64" + - "-o ${2}" +:extension: + :object: ".o" + :executable: ".exe" +:paths: + :test: + - src/ + - "../src/" + - testdata/ + - tests/ +:defines: + :test: + - UNITY_INCLUDE_DOUBLE + - UNITY_SUPPORT_64 + - UNITY_OUTPUT_RESULTS_FILE diff --git a/lib/Unity/test/targets/clang_strict.yml b/lib/Unity/test/targets/clang_strict.yml new file mode 100644 index 0000000..1101735 --- /dev/null +++ b/lib/Unity/test/targets/clang_strict.yml @@ -0,0 +1,79 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: clang + :arguments: + - "-c" + - "-Wall" + - "-Wextra" + - "-Werror" + - "-Wcast-qual" + - "-Wconversion" + - "-Wdisabled-optimization" + - "-Wformat=2" + - "-Winit-self" + - "-Winline" + - "-Winvalid-pch" + - "-Wmissing-include-dirs" + - "-Wnonnull" + - "-Wpacked" + - "-Wpointer-arith" + - "-Wswitch-default" + - "-Wstrict-aliasing" + - "-Wstrict-overflow=5" + - "-Wuninitialized" + - "-Wunused" + - "-Wreturn-type" + - "-Wshadow" + - "-Wundef" + - "-Wwrite-strings" + - "-Wno-nested-externs" + - "-Wno-unused-parameter" + - "-Wno-variadic-macros" + - "-Wbad-function-cast" + - "-fms-extensions" + - "-fno-omit-frame-pointer" + - "-fno-common" + - "-fstrict-aliasing" + - "-std=gnu99" + - "-pedantic" + - "-O0" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: clang + :arguments: + - "${1}" + - "-lm" + - "-m64" + - "-o ${2}" +:extension: + :object: ".o" + :executable: ".exe" +:paths: + :test: + - src/ + - "../src/" + - testdata/ + - tests/ +:defines: + :test: + - UNITY_INCLUDE_DOUBLE + - UNITY_SUPPORT_TEST_CASES + - UNITY_SUPPORT_64 + - UNITY_COMPARE_PTRS_ON_ZERO_ARRAY diff --git a/lib/Unity/test/targets/gcc_32.yml b/lib/Unity/test/targets/gcc_32.yml new file mode 100644 index 0000000..5a17b30 --- /dev/null +++ b/lib/Unity/test/targets/gcc_32.yml @@ -0,0 +1,52 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: gcc + :arguments: + - "-c" + - "-m32" + - "-Wall" + - "-Wno-address" + - "-std=c99" + - "-pedantic" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: gcc + :arguments: + - "${1}" + - "-lm" + - "-m32" + - "-o ${2}" +:extension: + :object: ".o" + :executable: ".exe" +:paths: + :test: + - src/ + - "../src/" + - testdata/ + - tests/ +:defines: + :test: + - UNITY_EXCLUDE_STDINT_H + - UNITY_EXCLUDE_LIMITS_H + - UNITY_INCLUDE_DOUBLE + - UNITY_SUPPORT_TEST_CASES + - UNITY_INT_WIDTH=32 + - UNITY_LONG_WIDTH=32 diff --git a/lib/Unity/test/targets/gcc_64.yml b/lib/Unity/test/targets/gcc_64.yml new file mode 100644 index 0000000..104cf7d --- /dev/null +++ b/lib/Unity/test/targets/gcc_64.yml @@ -0,0 +1,53 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: gcc + :arguments: + - "-c" + - "-m64" + - "-Wall" + - "-Wno-address" + - "-std=c99" + - "-pedantic" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: gcc + :arguments: + - "${1}" + - "-lm" + - "-m64" + - "-o ${2}" +:extension: + :object: ".o" + :executable: ".exe" +:paths: + :test: + - src/ + - "../src/" + - testdata/ + - tests/ +:defines: + :test: + - UNITY_EXCLUDE_STDINT_H + - UNITY_EXCLUDE_LIMITS_H + - UNITY_INCLUDE_DOUBLE + - UNITY_SUPPORT_TEST_CASES + - UNITY_SUPPORT_64 + - UNITY_INT_WIDTH=32 + - UNITY_LONG_WIDTH=64 diff --git a/lib/Unity/test/targets/gcc_auto_limits.yml b/lib/Unity/test/targets/gcc_auto_limits.yml new file mode 100644 index 0000000..3da6922 --- /dev/null +++ b/lib/Unity/test/targets/gcc_auto_limits.yml @@ -0,0 +1,50 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: gcc + :arguments: + - "-c" + - "-m64" + - "-Wall" + - "-Wno-address" + - "-std=c99" + - "-pedantic" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: gcc + :arguments: + - "${1}" + - "-lm" + - "-m64" + - "-o ${2}" +:extension: + :object: ".o" + :executable: ".exe" +:paths: + :test: + - src/ + - "../src/" + - testdata/ + - tests/ +:defines: + :test: + - UNITY_EXCLUDE_STDINT_H + - UNITY_INCLUDE_DOUBLE + - UNITY_SUPPORT_TEST_CASES + - UNITY_SUPPORT_64 diff --git a/lib/Unity/test/targets/gcc_auto_stdint.yml b/lib/Unity/test/targets/gcc_auto_stdint.yml new file mode 100644 index 0000000..9697ff7 --- /dev/null +++ b/lib/Unity/test/targets/gcc_auto_stdint.yml @@ -0,0 +1,62 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: gcc + :arguments: + - "-c" + - "-m64" + - "-Wall" + - "-Wno-address" + - "-std=c99" + - "-pedantic" + - "-Wextra" + - "-Werror" + - "-Wpointer-arith" + - "-Wcast-align" + - "-Wwrite-strings" + - "-Wswitch-default" + - "-Wunreachable-code" + - "-Winit-self" + - "-Wmissing-field-initializers" + - "-Wno-unknown-pragmas" + - "-Wstrict-prototypes" + - "-Wundef" + - "-Wold-style-definition" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: gcc + :arguments: + - "${1}" + - "-lm" + - "-m64" + - "-o ${2}" +:extension: + :object: ".o" + :executable: ".exe" +:paths: + :test: + - src/ + - "../src/" + - testdata/ + - tests/ +:defines: + :test: + - UNITY_INCLUDE_DOUBLE + - UNITY_SUPPORT_TEST_CASES + - UNITY_SUPPORT_64 diff --git a/lib/Unity/test/targets/gcc_manual_math.yml b/lib/Unity/test/targets/gcc_manual_math.yml new file mode 100644 index 0000000..0524f72 --- /dev/null +++ b/lib/Unity/test/targets/gcc_manual_math.yml @@ -0,0 +1,50 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: gcc + :arguments: + - "-c" + - "-m64" + - "-Wall" + - "-Wno-address" + - "-std=c99" + - "-pedantic" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: gcc + :arguments: + - "${1}" + - "-lm" + - "-m64" + - "-o ${2}" +:extension: + :object: ".o" + :executable: ".exe" +:paths: + :test: + - src/ + - "../src/" + - testdata/ + - tests/ +:defines: + :test: + - UNITY_EXCLUDE_MATH_H + - UNITY_INCLUDE_DOUBLE + - UNITY_SUPPORT_TEST_CASES + - UNITY_SUPPORT_64 diff --git a/lib/Unity/test/targets/hitech_picc18.yml b/lib/Unity/test/targets/hitech_picc18.yml new file mode 100644 index 0000000..8dc9129 --- /dev/null +++ b/lib/Unity/test/targets/hitech_picc18.yml @@ -0,0 +1,98 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +:cmock: + :plugins: [] + :includes: + - Types.h + :suite_teardown: | + if (num_failures) + _FAILED_TEST(); + else + _PASSED_TESTS(); + return 0; +colour: true +:tools: + :test_compiler: + :name: compiler + :executable: cd build && picc18 + :arguments: + - "--chip=18F87J10" + - "--ide=hitide" + - "--q" + - "--asmlist" + - "--codeoffset=0" + - "--emi=wordwrite" + - "--warn=0" + - "--errors=10" + - "--char=unsigned" + - "-Bl" + - "-G" + - "--cp=16" + - "--double=24" + - "-N255" + - "--opt=none" + - "-c" + - "-M" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - " ${2}" + :test_linker: + :name: linker + :executable: cd build && picc18 + :arguments: + - "${1}" + - "--chip=18F87J10" + - "--ide=hitide" + - "--cp=24" + - "--double=24" + - "-Lw" + - "--summary=mem,file" + - "--summary=+psect" + - "--summary=+hex" + - "--output=+intel" + - "--output=+mcof" + - "--runtime=+init" + - "--runtime=+clear" + - "--runtime=+clib" + - "--runtime=+keep" + - "-G" + - "-MIWasTheLastToBuild.map" + - "--warn=0" + - "-Bl" + - "-O ${2}" + :test_fixture: + :name: simulator + :executable: 'java -client -jar ' + :arguments: + - - C:\Program Files\HI-TECH Software\HI-TIDE\3.15\lib\ + - simpic18.jar + - 18F87J10 + - "${1}" +:extension: + :object: ".obj" + :executable: ".hex" +:paths: + :test: + - c:/Projects/NexGen/Prototypes/CMockTest/src/ + - c:/Projects/NexGen/Prototypes/CMockTest/mocks/ + - c:/CMock/src/ + - c:/CMock/examples/src/ + - c:/CMock/vendor/unity/src/ + - c:/CMock/vendor/unity/examples/helper/ + - tests\ +:defines: + :test: + - UNITY_INT_WIDTH=16 + - UNITY_POINTER_WIDTH=16 + - CMOCK_MEM_STATIC + - CMOCK_MEM_SIZE=3000 + - UNITY_SUPPORT_TEST_CASES + - _PICC18 diff --git a/lib/Unity/test/targets/iar_arm_v4.yml b/lib/Unity/test/targets/iar_arm_v4.yml new file mode 100644 index 0000000..74d137d --- /dev/null +++ b/lib/Unity/test/targets/iar_arm_v4.yml @@ -0,0 +1,105 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +tools_root: C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ + - arm\bin\iccarm.exe + :arguments: + - "--dlib_config" + - - C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ + - arm\lib\dl4tptinl8n.h + - "-z3" + - "--no_cse" + - "--no_unroll" + - "--no_inline" + - "--no_code_motion" + - "--no_tbaa" + - "--no_clustering" + - "--no_scheduling" + - "--debug" + - "--cpu_mode thumb" + - "--endian little" + - "--cpu ARM7TDMI" + - "--stack_align 4" + - "--interwork" + - "-e" + - "--silent" + - "--warnings_are_errors" + - "--fpu None" + - "--diag_suppress Pa050" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ + - common\bin\xlink.exe + :arguments: + - "${1}" + - "-rt" + - - C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ + - arm\lib\dl4tptinl8n.r79 + - "-D_L_EXTMEM_START=0" + - "-D_L_EXTMEM_SIZE=0" + - "-D_L_HEAP_SIZE=120" + - "-D_L_STACK_SIZE=32" + - "-e_small_write=_formatted_write" + - "-s" + - __program_start + - "-f" + - - C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ + - "\\arm\\config\\lnkarm.xcl" + - "-o ${2}" + :test_fixture: + :name: simulator + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ + - common\bin\CSpyBat.exe + :arguments: + - "--silent" + - - C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ + - arm\bin\armproc.dll + - - C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ + - arm\bin\armsim.dll + - "${1}" + - "--plugin" + - - C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ + - arm\bin\armbat.dll + - "--backend" + - "-B" + - "-p" + - - C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ + - arm\config\ioat91sam7X256.ddf + - "-d" + - sim +:extension: + :object: ".r79" + :executable: ".d79" +:paths: + :test: + - - C:\Program Files\IAR Systems\Embedded Workbench 4.0 Kickstart\ + - arm\inc\ + - src\ + - "..\\src\\" + - testdata/ + - tests\ + - vendor\unity\src\ +:defines: + :test: + - UNITY_SUPPORT_64 + - UNITY_SUPPORT_TEST_CASES diff --git a/lib/Unity/test/targets/iar_arm_v5.yml b/lib/Unity/test/targets/iar_arm_v5.yml new file mode 100644 index 0000000..cd0930d --- /dev/null +++ b/lib/Unity/test/targets/iar_arm_v5.yml @@ -0,0 +1,99 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +tools_root: C:\Program Files\IAR Systems\Embedded Workbench 5.3\ +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\bin\iccarm.exe + :arguments: + - "--dlib_config" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\inc\DLib_Config_Normal.h + - "--no_cse" + - "--no_unroll" + - "--no_inline" + - "--no_code_motion" + - "--no_tbaa" + - "--no_clustering" + - "--no_scheduling" + - "--debug" + - "--cpu_mode thumb" + - "--endian=little" + - "--cpu=ARM7TDMI" + - "--interwork" + - "--warnings_are_errors" + - "--fpu=None" + - "--diag_suppress=Pa050" + - "--diag_suppress=Pe111" + - "-e" + - "-On" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\bin\ilinkarm.exe + :arguments: + - "${1}" + - "--redirect _Printf=_PrintfLarge" + - "--redirect _Scanf=_ScanfSmall" + - "--semihosting" + - "--entry __iar_program_start" + - "--config" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\config\generic.icf + - "-o ${2}" + :test_fixture: + :name: simulator + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - common\bin\CSpyBat.exe + :arguments: + - "--silent" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\bin\armproc.dll + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\bin\armsim.dll + - "${1}" + - "--plugin" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\bin\armbat.dll + - "--backend" + - "-B" + - "-p" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\config\debugger\atmel\ioat91sam7X256.ddf + - "-d" + - sim +:extension: + :object: ".r79" + :executable: ".out" +:paths: + :test: + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\inc\ + - src\ + - "..\\src\\" + - testdata/ + - tests\ + - vendor\unity\src\ + - iar\iar_v5\incIAR\ +:defines: + :test: + - UNITY_SUPPORT_64 + - UNITY_SUPPORT_TEST_CASES diff --git a/lib/Unity/test/targets/iar_arm_v5_3.yml b/lib/Unity/test/targets/iar_arm_v5_3.yml new file mode 100644 index 0000000..cd0930d --- /dev/null +++ b/lib/Unity/test/targets/iar_arm_v5_3.yml @@ -0,0 +1,99 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +tools_root: C:\Program Files\IAR Systems\Embedded Workbench 5.3\ +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\bin\iccarm.exe + :arguments: + - "--dlib_config" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\inc\DLib_Config_Normal.h + - "--no_cse" + - "--no_unroll" + - "--no_inline" + - "--no_code_motion" + - "--no_tbaa" + - "--no_clustering" + - "--no_scheduling" + - "--debug" + - "--cpu_mode thumb" + - "--endian=little" + - "--cpu=ARM7TDMI" + - "--interwork" + - "--warnings_are_errors" + - "--fpu=None" + - "--diag_suppress=Pa050" + - "--diag_suppress=Pe111" + - "-e" + - "-On" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\bin\ilinkarm.exe + :arguments: + - "${1}" + - "--redirect _Printf=_PrintfLarge" + - "--redirect _Scanf=_ScanfSmall" + - "--semihosting" + - "--entry __iar_program_start" + - "--config" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\config\generic.icf + - "-o ${2}" + :test_fixture: + :name: simulator + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - common\bin\CSpyBat.exe + :arguments: + - "--silent" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\bin\armproc.dll + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\bin\armsim.dll + - "${1}" + - "--plugin" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\bin\armbat.dll + - "--backend" + - "-B" + - "-p" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\config\debugger\atmel\ioat91sam7X256.ddf + - "-d" + - sim +:extension: + :object: ".r79" + :executable: ".out" +:paths: + :test: + - - C:\Program Files\IAR Systems\Embedded Workbench 5.3\ + - arm\inc\ + - src\ + - "..\\src\\" + - testdata/ + - tests\ + - vendor\unity\src\ + - iar\iar_v5\incIAR\ +:defines: + :test: + - UNITY_SUPPORT_64 + - UNITY_SUPPORT_TEST_CASES diff --git a/lib/Unity/test/targets/iar_armcortex_LM3S9B92_v5_4.yml b/lib/Unity/test/targets/iar_armcortex_LM3S9B92_v5_4.yml new file mode 100644 index 0000000..1fc07c6 --- /dev/null +++ b/lib/Unity/test/targets/iar_armcortex_LM3S9B92_v5_4.yml @@ -0,0 +1,97 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +tools_root: C:\Program Files (x86)\IAR Systems\Embedded Workbench 5.4 Kickstart\ +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: + - C:\Program Files (x86)\IAR Systems\Embedded Workbench 5.4 Kickstart\ + - arm\bin\iccarm.exe + :arguments: + - "--diag_suppress=Pa050" + - "--debug" + - "--endian=little" + - "--cpu=Cortex-M3" + - "--no_path_in_file_macros" + - "-e" + - "--fpu=None" + - "--dlib_config" + - - C:\Program Files (x86)\IAR Systems\Embedded Workbench 5.4 Kickstart\ + - arm\inc\DLib_Config_Normal.h + - "--interwork" + - "--warnings_are_errors" + - "-Oh" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: + - C:\Program Files (x86)\IAR Systems\Embedded Workbench 5.4 Kickstart\ + - arm\bin\ilinkarm.exe + :arguments: + - "${1}" + - "--redirect _Printf=_PrintfLarge" + - "--redirect _Scanf=_ScanfSmall" + - "--semihosting" + - "--entry __iar_program_start" + - "--config" + - - C:\Program Files (x86)\IAR Systems\Embedded Workbench 5.4 Kickstart\ + - arm\config\generic.icf + - "-o ${2}" + :test_fixture: + :name: simulator + :executable: + - C:\Program Files (x86)\IAR Systems\Embedded Workbench 5.4 Kickstart\ + - common\bin\CSpyBat.exe + :arguments: + - - C:\Program Files (x86)\IAR Systems\Embedded Workbench 5.4 Kickstart\ + - arm\bin\armproc.dll + - - C:\Program Files (x86)\IAR Systems\Embedded Workbench 5.4 Kickstart\ + - arm\bin\armsim2.dll + - "${1}" + - "--plugin" + - - C:\Program Files (x86)\IAR Systems\Embedded Workbench 5.4 Kickstart\ + - arm\bin\armbat.dll + - "--backend" + - "-B" + - "--endian=little" + - "--cpu=Cortex-M3" + - "--fpu=None" + - "-p" + - - C:\Program Files (x86)\IAR Systems\Embedded Workbench 5.4 Kickstart\ + - arm\config\debugger\TexasInstruments\iolm3sxxxx.ddf + - "--semihosting" + - "--device=LM3SxBxx" +:extension: + :object: ".r79" + :executable: ".out" +:paths: + :test: + - - C:\Program Files (x86)\IAR Systems\Embedded Workbench 5.4 Kickstart\ + - arm\inc\ + - src\ + - "..\\src\\" + - testdata/ + - tests\ + - vendor\unity\src\ + - iar\iar_v5\incIAR\ +:defines: + :test: + - ewarm + - PART_LM3S9B92 + - TARGET_IS_TEMPEST_RB1 + - USE_ROM_DRIVERS + - UART_BUFFERED + - UNITY_SUPPORT_64 diff --git a/lib/Unity/test/targets/iar_cortexm3_v5.yml b/lib/Unity/test/targets/iar_cortexm3_v5.yml new file mode 100644 index 0000000..c5d6ad2 --- /dev/null +++ b/lib/Unity/test/targets/iar_cortexm3_v5.yml @@ -0,0 +1,101 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +tools_root: C:\Program Files\IAR Systems\Embedded Workbench 5.4\ +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 5.4\ + - arm\bin\iccarm.exe + :arguments: + - "--dlib_config" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.4\ + - arm\inc\DLib_Config_Normal.h + - "--no_cse" + - "--no_unroll" + - "--no_inline" + - "--no_code_motion" + - "--no_tbaa" + - "--no_clustering" + - "--no_scheduling" + - "--debug" + - "--cpu_mode thumb" + - "--endian=little" + - "--cpu=Cortex-M3" + - "--interwork" + - "--warnings_are_errors" + - "--fpu=None" + - "--diag_suppress=Pa050" + - "--diag_suppress=Pe111" + - "-e" + - "-On" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 5.4\ + - arm\bin\ilinkarm.exe + :arguments: + - "${1}" + - "--redirect _Printf=_PrintfLarge" + - "--redirect _Scanf=_ScanfSmall" + - "--semihosting" + - "--entry __iar_program_start" + - "--config" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.4\ + - arm\config\generic_cortex.icf + - "-o ${2}" + :test_fixture: + :name: simulator + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 5.4\ + - common\bin\CSpyBat.exe + :arguments: + - "--silent" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.4\ + - arm\bin\armproc.dll + - - C:\Program Files\IAR Systems\Embedded Workbench 5.4\ + - arm\bin\armsim.dll + - "${1}" + - "--plugin" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.4\ + - arm\bin\armbat.dll + - "--backend" + - "-B" + - "-p" + - - C:\Program Files\IAR Systems\Embedded Workbench 5.4\ + - arm\config\debugger\ST\iostm32f107xx.ddf + - "--cpu=Cortex-M3" + - "-d" + - sim +:extension: + :object: ".r79" + :executable: ".out" +:paths: + :test: + - - C:\Program Files\IAR Systems\Embedded Workbench 5.4\ + - arm\inc\ + - src\ + - "..\\src\\" + - testdata/ + - tests\ + - vendor\unity\src\ + - iar\iar_v5\incIAR\ +:defines: + :test: + - IAR + - UNITY_SUPPORT_64 + - UNITY_SUPPORT_TEST_CASES diff --git a/lib/Unity/test/targets/iar_msp430.yml b/lib/Unity/test/targets/iar_msp430.yml new file mode 100644 index 0000000..de89245 --- /dev/null +++ b/lib/Unity/test/targets/iar_msp430.yml @@ -0,0 +1,119 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +tools_root: C:\Program Files\IAR Systems\Embedded Workbench 5.3 MSP430\ +core_root: &1 +- C:\Program Files\IAR Systems\Embedded Workbench 5.3 MSP430\ +- 430\ +core_bin: &2 +- *1 +- bin\ +core_config: &4 +- *1 +- config\ +core_lib: &3 +- *1 +- lib\ +core_inc: &5 +- *1 +- inc\ +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: + - *2 + - icc430.exe + :arguments: + - "--dlib_config" + - - *3 + - dlib\dl430fn.h + - "--no_cse" + - "--no_unroll" + - "--no_inline" + - "--no_code_motion" + - "--no_tbaa" + - "--debug" + - "-e" + - "-Ol" + - "--multiplier=16" + - "--double=32" + - "--diag_suppress Pa050" + - "--diag_suppress Pe111" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: + - *2 + - xlink.exe + :arguments: + - "${1}" + - "-rt" + - - *3 + - dlib\dl430fn.r43 + - "-e_PrintfTiny=_Printf" + - "-e_ScanfSmall=_Scanf" + - "-s __program_start" + - "-D_STACK_SIZE=50" + - "-D_DATA16_HEAP_SIZE=50" + - "-D_DATA20_HEAP_SIZE=50" + - "-f" + - - *4 + - lnk430f5438.xcl + - "-f" + - - *4 + - multiplier.xcl + - "-o ${2}" + :test_fixture: + :name: simulator + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 5.3 MSP430\ + - common\bin\CSpyBat.exe + :arguments: + - "--silent" + - - *2 + - 430proc.dll + - - *2 + - 430sim.dll + - "${1}" + - "--plugin" + - - *2 + - 430bat.dll + - "--backend -B" + - "--cpu MSP430F5438" + - "-p" + - - *4 + - MSP430F5438.ddf + - "-d sim" +:extension: + :object: ".r43" + :executable: ".d79" +:paths: + :test: + - *5 + - - *5 + - dlib + - - *3 + - dlib + - src\ + - "../src/" + - testdata/ + - tests\ + - vendor\unity\src +:defines: + :test: + - __MSP430F149__ + - INT_WIDTH=16 + - UNITY_EXCLUDE_FLOAT + - UNITY_SUPPORT_TEST_CASES diff --git a/lib/Unity/test/targets/iar_sh2a_v6.yml b/lib/Unity/test/targets/iar_sh2a_v6.yml new file mode 100644 index 0000000..8e5ded4 --- /dev/null +++ b/lib/Unity/test/targets/iar_sh2a_v6.yml @@ -0,0 +1,106 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +--- +tools_root: C:\Program Files\IAR Systems\Embedded Workbench 6.0\ +colour: true +:unity: + :plugins: [] +:tools: + :test_compiler: + :name: compiler + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 6.0\ + - sh\bin\iccsh.exe + :arguments: + - "-e" + - "--char_is_signed" + - "-Ol" + - "--no_cse" + - "--no_unroll" + - "--no_inline" + - "--no_code_motion" + - "--no_tbaa" + - "--no_scheduling" + - "--no_clustering" + - "--debug" + - "--dlib_config" + - - C:\Program Files\IAR Systems\Embedded Workbench 6.0\ + - sh\inc\DLib_Product.h + - "--double=32" + - "--code_model=huge" + - "--data_model=huge" + - "--core=sh2afpu" + - "--warnings_affect_exit_code" + - "--warnings_are_errors" + - "--mfc" + - "--use_unix_directory_separators" + - "--diag_suppress=Pe161" + - '-I"$": COLLECTION_PATHS_TEST_TOOLCHAIN_INCLUDE' + - '-I"$": COLLECTION_PATHS_TEST_SUPPORT_SOURCE_INCLUDE_VENDOR' + - "-D$: COLLECTION_DEFINES_TEST_AND_VENDOR" + - "${1}" + - "-o ${2}" + :test_linker: + :name: linker + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 6.0\ + - sh\bin\ilinksh.exe + :arguments: + - "${1}" + - "--redirect __Printf=__PrintfSmall" + - "--redirect __Scanf=__ScanfSmall" + - "--config" + - - C:\Program Files\IAR Systems\Embedded Workbench 6.0\ + - sh\config\generic.icf + - "--config_def _CSTACK_SIZE=0x800" + - "--config_def _HEAP_SIZE=0x800" + - "--config_def _INT_TABLE=0x10" + - "--entry __iar_program_start" + - "--debug_lib" + - "-o ${2}" + :test_fixture: + :name: simulator + :executable: + - C:\Program Files\IAR Systems\Embedded Workbench 6.0\ + - common\bin\CSpyBat.exe + :arguments: + - "--silent" + - - C:\Program Files\IAR Systems\Embedded Workbench 6.0\ + - sh\bin\shproc.dll + - - C:\Program Files\IAR Systems\Embedded Workbench 6.0\ + - sh\bin\shsim.dll + - "${1}" + - "--plugin" + - - C:\Program Files\IAR Systems\Embedded Workbench 6.0\ + - sh\bin\shbat.dll + - "--backend" + - "-B" + - "--core sh2afpu" + - "-p" + - - C:\Program Files\IAR Systems\Embedded Workbench 6.0\ + - sh\config\debugger\io7264.ddf + - "-d" + - sim +:extension: + :object: ".o" + :executable: ".out" +:paths: + :test: + - - C:\Program Files\IAR Systems\Embedded Workbench 6.0\ + - sh\inc\ + - - C:\Program Files\IAR Systems\Embedded Workbench 6.0\ + - sh\inc\c + - src\ + - "..\\src\\" + - testdata/ + - tests\ + - vendor\unity\src\ +:defines: + :test: + - UNITY_SUPPORT_64 + - UNITY_SUPPORT_TEST_CASES diff --git a/lib/Unity/test/testdata/CException.h b/lib/Unity/test/testdata/CException.h new file mode 100644 index 0000000..c4c58ed --- /dev/null +++ b/lib/Unity/test/testdata/CException.h @@ -0,0 +1,18 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef CEXCEPTION_H +#define CEXCEPTION_H + +#define CEXCEPTION_BEING_USED 1 + +#define CEXCEPTION_NONE 0 +#define CEXCEPTION_T int e = 1; (void) +#define Try if (e) +#define Catch(a) if (!a) + +#endif diff --git a/lib/Unity/test/testdata/Defs.h b/lib/Unity/test/testdata/Defs.h new file mode 100644 index 0000000..ec83d6f --- /dev/null +++ b/lib/Unity/test/testdata/Defs.h @@ -0,0 +1,16 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef DEF_H +#define DEF_H + +#define EXTERN_DECL + +extern int CounterSuiteSetup; +extern int isArgumentOne(int i); + +#endif diff --git a/lib/Unity/test/testdata/cmock.h b/lib/Unity/test/testdata/cmock.h new file mode 100644 index 0000000..37efb0b --- /dev/null +++ b/lib/Unity/test/testdata/cmock.h @@ -0,0 +1,21 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef CMOCK_H +#define CMOCK_H + +int CMockMemFreeFinalCounter = 0; +int mockMock_Init_Counter = 0; +int mockMock_Verify_Counter = 0; +int mockMock_Destroy_Counter = 0; + +void CMock_Guts_MemFreeFinal(void) { CMockMemFreeFinalCounter++; } +void mockMock_Init(void) { mockMock_Init_Counter++; } +void mockMock_Verify(void) { mockMock_Verify_Counter++; } +void mockMock_Destroy(void) { mockMock_Destroy_Counter++; } + +#endif diff --git a/lib/Unity/test/testdata/mockMock.h b/lib/Unity/test/testdata/mockMock.h new file mode 100644 index 0000000..0aa5a00 --- /dev/null +++ b/lib/Unity/test/testdata/mockMock.h @@ -0,0 +1,20 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifndef MOCK_MOCK_H +#define MOCK_MOCK_H + +extern int mockMock_Init_Counter; +extern int mockMock_Verify_Counter; +extern int mockMock_Destroy_Counter; +extern int CMockMemFreeFinalCounter; + +void mockMock_Init(void); +void mockMock_Verify(void); +void mockMock_Destroy(void); + +#endif diff --git a/lib/Unity/test/testdata/testRunnerGenerator.c b/lib/Unity/test/testdata/testRunnerGenerator.c new file mode 100644 index 0000000..ef8f468 --- /dev/null +++ b/lib/Unity/test/testdata/testRunnerGenerator.c @@ -0,0 +1,204 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +/* This Test File Is Used To Verify Many Combinations Of Using the Generate Test Runner Script */ + +#include +#include "unity.h" +#include "Defs.h" + +#ifdef USE_CEXCEPTION +#include "CException.h" +#endif + +/* Notes about prefixes: + test - normal default prefix. these are "always run" tests for this procedure + spec - normal default prefix. required to run default setup/teardown calls. + should - normal default prefix. + qwiktest - custom prefix for when tests skip all setup/teardown calls. + custtest - custom prefix for when tests use custom setup/teardown calls. + paratest - custom prefix for when we want to verify parameterized tests. + extest - custom prefix only used during cexception + suitetest- custom prefix for when we want to use custom suite setup/teardown +*/ + +/* Include Passthroughs for Linking Tests */ +void putcharSpy(int c) { (void)putchar(c);} +void flushSpy(void) {} + +/* Global Variables Used During These Tests */ +int CounterSetup = 0; +int CounterTeardown = 0; +int CounterSuiteSetup = 0; + +void setUp(void) +{ + CounterSetup = 1; +} + +void tearDown(void) +{ + CounterTeardown = 1; +} + +void custom_setup(void) +{ + CounterSetup = 2; +} + +void custom_teardown(void) +{ + CounterTeardown = 2; +} + +/* +void test_OldSchoolCommentsShouldBeIgnored(void) +{ + TEST_ASSERT_FAIL("Old-School Comments Should Be Ignored"); +} +*/ + +void test_ThisTestAlwaysPasses(void) +{ + TEST_PASS(); +} + +void test_ThisTestAlwaysFails(void) +{ + TEST_FAIL_MESSAGE("This Test Should Fail"); +} + +void test_ThisTestAlwaysIgnored(void) +{ + TEST_IGNORE_MESSAGE("This Test Should Be Ignored"); +} + +void qwiktest_ThisTestPassesWhenNoSetupRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(0, CounterSetup, "Setup Was Unexpectedly Run"); +} + +void qwiktest_ThisTestPassesWhenNoTeardownRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(0, CounterTeardown, "Teardown Was Unexpectedly Run"); +} + +void spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(0, CounterSuiteSetup, "Suite Setup Was Unexpectedly Run"); +} + +void spec_ThisTestPassesWhenNormalSetupRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(1, CounterSetup, "Normal Setup Wasn't Run"); +} + +void spec_ThisTestPassesWhenNormalTeardownRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(1, CounterTeardown, "Normal Teardown Wasn't Run"); +} + +void custtest_ThisTestPassesWhenCustomSetupRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(2, CounterSetup, "Custom Setup Wasn't Run"); +} + +void custtest_ThisTestPassesWhenCustomTeardownRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(2, CounterTeardown, "Custom Teardown Wasn't Run"); +} + +#ifndef UNITY_EXCLUDE_TESTING_NEW_COMMENTS +//void test_NewStyleCommentsShouldBeIgnored(void) +//{ +// TEST_ASSERT_FAIL("New Style Comments Should Be Ignored"); +//} +#endif + +void test_NotBeConfusedByLongComplicatedStrings(void) +{ + const char* crazyString = "GET / HTTP/1.1\r\nHost: 127.0.0.1:8081\r\nConnection: keep-alive\r\nCache-Control: no-cache\r\nUser-Agent: Mozilla/5.0 (Windows NT 6.3; WOW64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/46.0.2490.80 Safari/537.36\r\nPostman-Token: 768c7149-c3fb-f704-71a2-63918d9195b2\r\nAccept: */*\r\nAccept-Encoding: gzip, deflate, sdch\r\nAccept-Language: en-GB,en-US;q=0.8,en;q=0.6\r\n\r\n"; + + TEST_ASSERT_EQUAL_STRING_MESSAGE(crazyString, crazyString, "These Strings Are The Same"); +} + +/* The next test should still appear even though we have this confusing nested comment thing going on http://looks_like_comments.com */ +void test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings(void) +{ + TEST_ASSERT_TRUE_MESSAGE(1, "1 Should be True"); + /* still should not break anything */ +} +/* nor should this */ + +void test_StillNotBeConfusedByLongComplicatedStrings(void) +{ + const char* crazyString = "GET / HTTP/1.1\r\nHost: 127.0.0.1:8081\r\nConnection: keep-alive\r\nCache-Control: no-cache\r\nUser-Agent: Mozilla/5.0 (Windows NT 6.3; WOW64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/46.0.2490.80 Safari/537.36\r\nPostman-Token: 768c7149-c3fb-f704-71a2-63918d9195b2\r\nAccept: */*\r\nAccept-Encoding: gzip, deflate, sdch\r\nAccept-Language: en-GB,en-US;q=0.8,en;q=0.6\r\n\r\n"; + + TEST_ASSERT_EQUAL_STRING_MESSAGE(crazyString, crazyString, "These Strings Are Still The Same"); +} + +void should_RunTestsStartingWithShouldByDefault(void) +{ + TEST_ASSERT_TRUE_MESSAGE(1, "1 Should be True"); +} + +TEST_CASE(25) +TEST_CASE(125) +TEST_CASE(5) +void paratest_ShouldHandleParameterizedTests(int Num) +{ + TEST_ASSERT_EQUAL_MESSAGE(0, (Num % 5), "All The Values Are Divisible By 5"); +} + +TEST_CASE(7) +void paratest_ShouldHandleParameterizedTests2(int Num) +{ + TEST_ASSERT_EQUAL_MESSAGE(7, Num, "The Only Call To This Passes"); +} + +void paratest_ShouldHandleNonParameterizedTestsWhenParameterizationValid(void) +{ + TEST_PASS(); +} + +TEST_CASE(17) +void paratest_ShouldHandleParameterizedTestsThatFail(int Num) +{ + TEST_ASSERT_EQUAL_MESSAGE(3, Num, "This call should fail"); +} + +int isArgumentOne(int i) +{ + return i == 1; +} + +TEST_CASE(isArgumentOne) +void paratest_WorksWithFunctionPointers(int function(int)) +{ + TEST_ASSERT_TRUE_MESSAGE(function(1), "Function should return True"); +} + +#ifdef USE_CEXCEPTION +void extest_ShouldHandleCExceptionInTest(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(1, CEXCEPTION_BEING_USED, "Should be pulling in CException"); +} +#endif + +#ifdef USE_ANOTHER_MAIN +int custom_main(void); + +int main(void) +{ + return custom_main(); +} +#endif + +void suitetest_ThisTestPassesWhenCustomSuiteSetupAndTeardownRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(1, CounterSuiteSetup, "Suite Setup Should Have Run"); +} diff --git a/lib/Unity/test/testdata/testRunnerGeneratorSmall.c b/lib/Unity/test/testdata/testRunnerGeneratorSmall.c new file mode 100644 index 0000000..076efff --- /dev/null +++ b/lib/Unity/test/testdata/testRunnerGeneratorSmall.c @@ -0,0 +1,73 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +/* This Test File Is Used To Verify Many Combinations Of Using the Generate Test Runner Script */ + +#include +#include "unity.h" +#include "Defs.h" + +TEST_SOURCE_FILE("some_file.c") + +/* Notes about prefixes: + test - normal default prefix. these are "always run" tests for this procedure + spec - normal default prefix. required to run default setup/teardown calls. +*/ + +/* Include Passthroughs for Linking Tests */ +void putcharSpy(int c) { (void)putchar(c);} +void flushSpy(void) {} + +/* Global Variables Used During These Tests */ +int CounterSetup = 0; +int CounterTeardown = 0; +int CounterSuiteSetup = 0; + +void setUp(void) +{ + CounterSetup = 1; +} + +void tearDown(void) +{ + CounterTeardown = 1; +} + +void custom_setup(void) +{ + CounterSetup = 2; +} + +void custom_teardown(void) +{ + CounterTeardown = 2; +} + +void test_ThisTestAlwaysPasses(void) +{ + TEST_PASS(); +} + +void test_ThisTestAlwaysFails(void) +{ + TEST_FAIL_MESSAGE("This Test Should Fail"); +} + +void test_ThisTestAlwaysIgnored(void) +{ + TEST_IGNORE_MESSAGE("This Test Should Be Ignored"); +} + +void spec_ThisTestPassesWhenNormalSetupRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(1, CounterSetup, "Normal Setup Wasn't Run"); +} + +void spec_ThisTestPassesWhenNormalTeardownRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(1, CounterTeardown, "Normal Teardown Wasn't Run"); +} diff --git a/lib/Unity/test/testdata/testRunnerGeneratorWithMocks.c b/lib/Unity/test/testdata/testRunnerGeneratorWithMocks.c new file mode 100644 index 0000000..5bacd4b --- /dev/null +++ b/lib/Unity/test/testdata/testRunnerGeneratorWithMocks.c @@ -0,0 +1,200 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +/* This Test File Is Used To Verify Many Combinations Of Using the Generate Test Runner Script */ + +#include +#include "unity.h" +#include "Defs.h" +#include "mockMock.h" + +#ifdef USE_CEXCEPTION +#include "CException.h" +#endif + +/* Notes about prefixes: + test - normal default prefix. these are "always run" tests for this procedure + spec - normal default prefix. required to run default setup/teardown calls. + should - normal default prefix. + qwiktest - custom prefix for when tests skip all setup/teardown calls. + custtest - custom prefix for when tests use custom setup/teardown calls. + paratest - custom prefix for when we want to verify parameterized tests. + extest - custom prefix only used during cexception + suitetest- custom prefix for when we want to use custom suite setup/teardown +*/ + +/* Include Passthroughs for Linking Tests */ +void putcharSpy(int c) { (void)putchar(c);} +void flushSpy(void) {} + +/* Global Variables Used During These Tests */ +int CounterSetup = 0; +int CounterTeardown = 0; +int CounterSuiteSetup = 0; + +void setUp(void) +{ + CounterSetup = 1; +} + +void tearDown(void) +{ + CounterTeardown = 1; +} + +void custom_setup(void) +{ + CounterSetup = 2; +} + +void custom_teardown(void) +{ + CounterTeardown = 2; +} + +/* +void test_OldSchoolCommentsShouldBeIgnored(void) +{ + TEST_ASSERT_FAIL("Old-School Comments Should Be Ignored"); +} +*/ + +void test_ThisTestAlwaysPasses(void) +{ + TEST_PASS(); +} + +void test_ThisTestAlwaysFails(void) +{ + TEST_FAIL_MESSAGE("This Test Should Fail"); +} + +void test_ThisTestAlwaysIgnored(void) +{ + TEST_IGNORE_MESSAGE("This Test Should Be Ignored"); +} + +void qwiktest_ThisTestPassesWhenNoSetupRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(0, CounterSetup, "Setup Was Unexpectedly Run"); +} + +void qwiktest_ThisTestPassesWhenNoTeardownRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(0, CounterTeardown, "Teardown Was Unexpectedly Run"); +} + +void spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(0, CounterSuiteSetup, "Suite Setup Was Unexpectedly Run"); +} + +void spec_ThisTestPassesWhenNormalSetupRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(1, CounterSetup, "Normal Setup Wasn't Run"); +} + +void spec_ThisTestPassesWhenNormalTeardownRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(1, CounterTeardown, "Normal Teardown Wasn't Run"); +} + +void custtest_ThisTestPassesWhenCustomSetupRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(2, CounterSetup, "Custom Setup Wasn't Run"); +} + +void custtest_ThisTestPassesWhenCustomTeardownRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(2, CounterTeardown, "Custom Teardown Wasn't Run"); +} + +#ifndef UNITY_EXCLUDE_TESTING_NEW_COMMENTS +//void test_NewStyleCommentsShouldBeIgnored(void) +//{ +// TEST_ASSERT_FAIL("New Style Comments Should Be Ignored"); +//} +#endif + +void test_NotBeConfusedByLongComplicatedStrings(void) +{ + const char* crazyString = "GET / HTTP/1.1\r\nHost: 127.0.0.1:8081\r\nConnection: keep-alive\r\nCache-Control: no-cache\r\nUser-Agent: Mozilla/5.0 (Windows NT 6.3; WOW64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/46.0.2490.80 Safari/537.36\r\nPostman-Token: 768c7149-c3fb-f704-71a2-63918d9195b2\r\nAccept: */*\r\nAccept-Encoding: gzip, deflate, sdch\r\nAccept-Language: en-GB,en-US;q=0.8,en;q=0.6\r\n\r\n"; + + TEST_ASSERT_EQUAL_STRING_MESSAGE(crazyString, crazyString, "These Strings Are The Same"); +} + +void test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings(void) +{ + TEST_ASSERT_TRUE_MESSAGE(1, "1 Should be True"); +} + +void test_StillNotBeConfusedByLongComplicatedStrings(void) +{ + const char* crazyString = "GET / HTTP/1.1\r\nHost: 127.0.0.1:8081\r\nConnection: keep-alive\r\nCache-Control: no-cache\r\nUser-Agent: Mozilla/5.0 (Windows NT 6.3; WOW64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/46.0.2490.80 Safari/537.36\r\nPostman-Token: 768c7149-c3fb-f704-71a2-63918d9195b2\r\nAccept: */*\r\nAccept-Encoding: gzip, deflate, sdch\r\nAccept-Language: en-GB,en-US;q=0.8,en;q=0.6\r\n\r\n"; + + TEST_ASSERT_EQUAL_STRING_MESSAGE(crazyString, crazyString, "These Strings Are Still The Same"); +} + +void should_RunTestsStartingWithShouldByDefault(void) +{ + TEST_ASSERT_TRUE_MESSAGE(1, "1 Should be True"); +} + +TEST_CASE(25) +TEST_CASE(125) +TEST_CASE(5) +void paratest_ShouldHandleParameterizedTests(int Num) +{ + TEST_ASSERT_EQUAL_MESSAGE(0, (Num % 5), "All The Values Are Divisible By 5"); +} + +TEST_CASE(7) +void paratest_ShouldHandleParameterizedTests2(int Num) +{ + TEST_ASSERT_EQUAL_MESSAGE(7, Num, "The Only Call To This Passes"); +} + +void paratest_ShouldHandleNonParameterizedTestsWhenParameterizationValid(void) +{ + TEST_PASS(); +} + +TEST_CASE(17) +void paratest_ShouldHandleParameterizedTestsThatFail(int Num) +{ + TEST_ASSERT_EQUAL_MESSAGE(3, Num, "This call should fail"); +} + +#ifdef USE_CEXCEPTION +void extest_ShouldHandleCExceptionInTest(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(1, CEXCEPTION_BEING_USED, "Should be pulling in CException"); +} +#endif + +#ifdef USE_ANOTHER_MAIN +int custom_main(void); + +int main(void) +{ + return custom_main(); +} +#endif + +void suitetest_ThisTestPassesWhenCustomSuiteSetupAndTeardownRan(void) +{ + TEST_ASSERT_EQUAL_MESSAGE(1, CounterSuiteSetup, "Suite Setup Should Have Run"); +} + +void test_ShouldCallMockInitAndVerifyFunctionsForEachTest(void) +{ + int passesOrIgnores = (int)(Unity.NumberOfTests - Unity.TestFailures); + TEST_ASSERT_EQUAL_MESSAGE(Unity.NumberOfTests, mockMock_Init_Counter, "Mock Init Should Be Called Once Per Test Started"); + TEST_ASSERT_EQUAL_MESSAGE(passesOrIgnores, mockMock_Verify_Counter, "Mock Verify Should Be Called Once Per Test Passed"); + TEST_ASSERT_EQUAL_MESSAGE(Unity.NumberOfTests - 1, mockMock_Destroy_Counter, "Mock Destroy Should Be Called Once Per Test Completed"); + TEST_ASSERT_EQUAL_MESSAGE(0, CMockMemFreeFinalCounter, "Mock MemFreeFinal Should Not Be Called Until End"); +} diff --git a/lib/Unity/test/tests/self_assessment_utils.h b/lib/Unity/test/tests/self_assessment_utils.h new file mode 100644 index 0000000..95822bf --- /dev/null +++ b/lib/Unity/test/tests/self_assessment_utils.h @@ -0,0 +1,167 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#ifdef TEST_INSTANCES + +#include +#include + +/* Dividing by these constants produces +/- infinity. + * The rationale is given in UnityAssertFloatIsInf's body. + */ +#ifndef UNITY_EXCLUDE_FLOAT +static const UNITY_FLOAT f_zero = 0.0f; +#endif + +#ifndef UNITY_EXCLUDE_DOUBLE +static const UNITY_DOUBLE d_zero = 0.0; +#endif + +/* Macros for Catching An Expected Failure or Ignore */ +#define EXPECT_ABORT_BEGIN \ + startPutcharSpy(); \ + if (TEST_PROTECT()) \ + { + +#define VERIFY_FAILS_END \ + } \ + endPutcharSpy(); /* start/end Spy to suppress output of failure message */ \ + Unity.CurrentTestFailed = (Unity.CurrentTestFailed == 1) ? 0 : 1; \ + if (Unity.CurrentTestFailed == 1) { \ + SetToOneMeanWeAlreadyCheckedThisGuy = 1; \ + UnityPrintNumberUnsigned(Unity.CurrentTestLineNumber); \ + UNITY_OUTPUT_CHAR(':'); \ + UnityPrint(Unity.CurrentTestName); \ + UnityPrint(":FAIL: [[[[ Test Should Have Failed But Did Not ]]]]"); \ + UNITY_OUTPUT_CHAR('\n'); \ + } + +#define VERIFY_IGNORES_END \ + } \ + endPutcharSpy(); /* start/end Spy to suppress output of ignore message */ \ + Unity.CurrentTestFailed = (Unity.CurrentTestIgnored == 1) ? 0 : 1; \ + Unity.CurrentTestIgnored = 0; \ + if (Unity.CurrentTestFailed == 1) { \ + SetToOneMeanWeAlreadyCheckedThisGuy = 1; \ + UnityPrintNumberUnsigned(Unity.CurrentTestLineNumber); \ + UNITY_OUTPUT_CHAR(':'); \ + UnityPrint(Unity.CurrentTestName); \ + UnityPrint(":FAIL: [[[[ Test Should Have Ignored But Did Not ]]]]"); \ + UNITY_OUTPUT_CHAR('\n'); \ + } + +/* Tricky series of macros to set USING_OUTPUT_SPY */ +#define USING_SPY_AS(a) EXPAND_AND_USE_2ND(ASSIGN_VALUE(a), 0) +#define ASSIGN_VALUE(a) VAL_##a +#define VAL_putcharSpy 0, 1 +#define EXPAND_AND_USE_2ND(a, b) SECOND_PARAM(a, b, throwaway) +#define SECOND_PARAM(a, b, ...) b +#if USING_SPY_AS(UNITY_OUTPUT_CHAR) + #define USING_OUTPUT_SPY /* true only if UNITY_OUTPUT_CHAR = putcharSpy */ +#endif + +#ifdef USING_OUTPUT_SPY +#include +#define SPY_BUFFER_MAX 40 +static char putcharSpyBuffer[SPY_BUFFER_MAX]; +#endif +static UNITY_COUNTER_TYPE indexSpyBuffer; +static UNITY_COUNTER_TYPE putcharSpyEnabled; + +#ifdef __clang__ +#pragma clang diagnostic push +#pragma clang diagnostic ignored "-Wmissing-prototypes" +#endif + +void startPutcharSpy(void) +{ + indexSpyBuffer = 0; + putcharSpyEnabled = 1; +} + +void endPutcharSpy(void) +{ + putcharSpyEnabled = 0; +} + +char* getBufferPutcharSpy(void) +{ +#ifdef USING_OUTPUT_SPY + putcharSpyBuffer[indexSpyBuffer] = '\0'; + return putcharSpyBuffer; +#else + return NULL; +#endif +} + +void putcharSpy(int c) +{ +#ifdef USING_OUTPUT_SPY + if (putcharSpyEnabled) + { + if (indexSpyBuffer < SPY_BUFFER_MAX - 1) + putcharSpyBuffer[indexSpyBuffer++] = (char)c; + } else + putchar((char)c); +#else + (void)c; +#endif +} + +/* This is for counting the calls to the flushSpy */ +static UNITY_COUNTER_TYPE flushSpyEnabled; +static UNITY_COUNTER_TYPE flushSpyCalls = 0; + +void startFlushSpy(void) +{ + flushSpyCalls = 0; + flushSpyEnabled = 1; +} + +void endFlushSpy(void) +{ + flushSpyCalls = 0; + flushSpyEnabled = 0; +} + +UNITY_COUNTER_TYPE getFlushSpyCalls(void) +{ + return flushSpyCalls; +} + +void flushSpy(void) +{ + if (flushSpyEnabled){ flushSpyCalls++; } +} + +#ifdef __clang__ +#pragma clang diagnostic pop +#endif + +#define TEST_ASSERT_EQUAL_PRINT_NUMBERS(expected, actual) do { \ + startPutcharSpy(); UnityPrintNumber((actual)); endPutcharSpy(); \ + TEST_ASSERT_EQUAL_STRING((expected), getBufferPutcharSpy()); \ + } while (0) + +#define TEST_ASSERT_EQUAL_PRINT_UNSIGNED_NUMBERS(expected, actual) do { \ + startPutcharSpy(); UnityPrintNumberUnsigned((actual)); endPutcharSpy(); \ + TEST_ASSERT_EQUAL_STRING((expected), getBufferPutcharSpy()); \ + } while (0) + +#define TEST_ASSERT_EQUAL_PRINT_FLOATING(expected, actual) do { \ + startPutcharSpy(); UnityPrintFloat((actual)); endPutcharSpy(); \ + TEST_ASSERT_EQUAL_STRING((expected), getBufferPutcharSpy()); \ + } while (0) + +#endif + +// The reason this isn't folded into the above diagnostic is to semi-isolate +// the header contents from the user content it is included into. +#ifdef __clang__ +#pragma clang diagnostic push +#pragma clang diagnostic ignored "-Wmissing-prototypes" +#endif diff --git a/lib/Unity/test/tests/test_generate_test_runner.rb b/lib/Unity/test/tests/test_generate_test_runner.rb new file mode 100644 index 0000000..5e0133f --- /dev/null +++ b/lib/Unity/test/tests/test_generate_test_runner.rb @@ -0,0 +1,1341 @@ +# ========================================================================= +# Unity - A Test Framework for C +# ThrowTheSwitch.org +# Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams +# SPDX-License-Identifier: MIT +# ========================================================================= + +require '../auto/generate_test_runner.rb' + +$generate_test_runner_tests = 0 +$generate_test_runner_failures = 0 + +OUT_FILE = 'build/testsample_' + +RUNNER_TESTS = [ + { :name => 'DefaultsThroughOptions', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :options => nil, #defaults + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'DefaultsThroughCommandLine', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :cmdline => "", #defaults + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'DefaultsThroughYAMLFile', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :cmdline => "", #defaults + :yaml => {}, #defaults + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ShorterFilterOfJustTest', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :options => { + :test_prefix => "test", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ShorterFilterOfJustShould', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :options => { + :test_prefix => "should", + }, + :expected => { + :to_pass => [ 'should_RunTestsStartingWithShouldByDefault' ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ShorterFilterOfJustSpec', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :options => { + :test_prefix => "spec", + }, + :expected => { + :to_pass => [ 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'InjectIncludes', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :options => { + :includes => ['Defs.h'], + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ParameterizedThroughOptions', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :options => { + :test_prefix => "paratest", + :use_param_tests => true, + }, + :features => [ :parameterized ], + :expected => { + :to_pass => [ 'paratest_ShouldHandleParameterizedTests\(25\)', + 'paratest_ShouldHandleParameterizedTests\(125\)', + 'paratest_ShouldHandleParameterizedTests\(5\)', + 'paratest_ShouldHandleParameterizedTests2\(7\)', + 'paratest_ShouldHandleNonParameterizedTestsWhenParameterizationValid', + 'paratest_WorksWithFunctionPointers\(isArgumentOne\)', + ], + :to_fail => [ 'paratest_ShouldHandleParameterizedTestsThatFail\(17\)' ], + :to_ignore => [ ], + } + }, + + { :name => 'ParameterizedThroughCommandLine', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :cmdline => " --test_prefix=\"paratest\" --use_param_tests=1", + :features => [ :parameterized ], + :expected => { + :to_pass => [ 'paratest_ShouldHandleParameterizedTests\(25\)', + 'paratest_ShouldHandleParameterizedTests\(125\)', + 'paratest_ShouldHandleParameterizedTests\(5\)', + 'paratest_ShouldHandleParameterizedTests2\(7\)', + 'paratest_ShouldHandleNonParameterizedTestsWhenParameterizationValid', + 'paratest_WorksWithFunctionPointers\(isArgumentOne\)', + ], + :to_fail => [ 'paratest_ShouldHandleParameterizedTestsThatFail\(17\)' ], + :to_ignore => [ ], + } + }, + + { :name => 'ParameterizedThroughCommandLineAndYaml', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :cmdline => "--use_param_tests=1", + :yaml => { + :test_prefix => "paratest" + }, + :features => [ :parameterized ], + :expected => { + :to_pass => [ 'paratest_ShouldHandleParameterizedTests\(25\)', + 'paratest_ShouldHandleParameterizedTests\(125\)', + 'paratest_ShouldHandleParameterizedTests\(5\)', + 'paratest_ShouldHandleParameterizedTests2\(7\)', + 'paratest_ShouldHandleNonParameterizedTestsWhenParameterizationValid', + 'paratest_WorksWithFunctionPointers\(isArgumentOne\)', + ], + :to_fail => [ 'paratest_ShouldHandleParameterizedTestsThatFail\(17\)' ], + :to_ignore => [ ], + } + }, + + { :name => 'CException', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'USE_CEXCEPTION'], + :options => { + :test_prefix => "extest", + :plugins => [ :cexception ], + }, + :expected => { + :to_pass => [ 'extest_ShouldHandleCExceptionInTest' ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'CustomSetupAndTeardownThroughOptions', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :options => { + :test_prefix => "custtest|test", + :setup_name => "custom_setup", + :teardown_name => "custom_teardown", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'custtest_ThisTestPassesWhenCustomSetupRan', + 'custtest_ThisTestPassesWhenCustomTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'CustomSetupAndTeardownThroughCommandLine', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :cmdline => " --test_prefix=\"custtest|test\" --setup_name=\"custom_setup\" --teardown_name=\"custom_teardown\"", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'custtest_ThisTestPassesWhenCustomSetupRan', + 'custtest_ThisTestPassesWhenCustomTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'CustomSetupAndTeardownThroughYaml', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :cmdline => " --test_prefix=\"custtest|test\"", + :yaml => { + :setup_name => "custom_setup", + :teardown_name => "custom_teardown", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'custtest_ThisTestPassesWhenCustomSetupRan', + 'custtest_ThisTestPassesWhenCustomTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'CustomMain', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', "USE_ANOTHER_MAIN"], + :options => { + :main_name => "custom_main", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'CustomSuiteSetupAndTeardown', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :includes => ['Defs.h'], + :options => { + :test_prefix => "suitetest|test", + :suite_setup => " CounterSuiteSetup = 1;", + :suite_teardown => " return num_failures;", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'suitetest_ThisTestPassesWhenCustomSuiteSetupAndTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'MainExternDeclaration', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST'], + :includes => ['Defs.h'], + :options => { + :main_export_decl => "EXTERN_DECL", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + + #### WITH MOCKS ########################################## + + { :name => 'DefaultsThroughOptions', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :options => nil, #defaults + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + 'test_ShouldCallMockInitAndVerifyFunctionsForEachTest', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'DefaultsThroughCommandLine', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :cmdline => "", #defaults + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + 'test_ShouldCallMockInitAndVerifyFunctionsForEachTest', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'DefaultsThroughYAMLFile', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :cmdline => "", #defaults + :yaml => {}, #defaults + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + 'test_ShouldCallMockInitAndVerifyFunctionsForEachTest', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ShorterFilterOfJustTest', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :options => { + :test_prefix => "test", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'test_ShouldCallMockInitAndVerifyFunctionsForEachTest', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ShorterFilterOfJustShould', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :options => { + :test_prefix => "should", + }, + :expected => { + :to_pass => [ 'should_RunTestsStartingWithShouldByDefault' ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ShorterFilterOfJustSpec', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :options => { + :test_prefix => "spec", + }, + :expected => { + :to_pass => [ 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'InjectIncludes', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :options => { + :includes => ['Defs.h'], + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + 'test_ShouldCallMockInitAndVerifyFunctionsForEachTest', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ParameterizedThroughOptions', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :options => { + :test_prefix => "paratest", + :use_param_tests => true, + }, + :features => [ :parameterized ], + :expected => { + :to_pass => [ 'paratest_ShouldHandleParameterizedTests\(25\)', + 'paratest_ShouldHandleParameterizedTests\(125\)', + 'paratest_ShouldHandleParameterizedTests\(5\)', + 'paratest_ShouldHandleParameterizedTests2\(7\)', + 'paratest_ShouldHandleNonParameterizedTestsWhenParameterizationValid', + ], + :to_fail => [ 'paratest_ShouldHandleParameterizedTestsThatFail\(17\)' ], + :to_ignore => [ ], + } + }, + + { :name => 'ParameterizedThroughCommandLine', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :cmdline => " --test_prefix=\"paratest\" --use_param_tests=1", + :features => [ :parameterized ], + :expected => { + :to_pass => [ 'paratest_ShouldHandleParameterizedTests\(25\)', + 'paratest_ShouldHandleParameterizedTests\(125\)', + 'paratest_ShouldHandleParameterizedTests\(5\)', + 'paratest_ShouldHandleParameterizedTests2\(7\)', + 'paratest_ShouldHandleNonParameterizedTestsWhenParameterizationValid', + ], + :to_fail => [ 'paratest_ShouldHandleParameterizedTestsThatFail\(17\)' ], + :to_ignore => [ ], + } + }, + + { :name => 'ParameterizedThroughCommandLineAndYaml', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :cmdline => "--use_param_tests=1", + :yaml => { + :test_prefix => "paratest" + }, + :features => [ :parameterized ], + :expected => { + :to_pass => [ 'paratest_ShouldHandleParameterizedTests\(25\)', + 'paratest_ShouldHandleParameterizedTests\(125\)', + 'paratest_ShouldHandleParameterizedTests\(5\)', + 'paratest_ShouldHandleParameterizedTests2\(7\)', + 'paratest_ShouldHandleNonParameterizedTestsWhenParameterizationValid', + ], + :to_fail => [ 'paratest_ShouldHandleParameterizedTestsThatFail\(17\)' ], + :to_ignore => [ ], + } + }, + + { :name => 'CException', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST', 'USE_CEXCEPTION'], + :options => { + :test_prefix => "extest", + :plugins => [ :cexception ], + }, + :expected => { + :to_pass => [ 'extest_ShouldHandleCExceptionInTest' ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'CustomSetupAndTeardownThroughOptions', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :options => { + :test_prefix => "custtest|test", + :setup_name => "custom_setup", + :teardown_name => "custom_teardown", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'custtest_ThisTestPassesWhenCustomSetupRan', + 'custtest_ThisTestPassesWhenCustomTeardownRan', + 'test_ShouldCallMockInitAndVerifyFunctionsForEachTest', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'CustomSetupAndTeardownThroughCommandLine', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :cmdline => " --test_prefix=\"custtest|test\" --setup_name=\"custom_setup\" --teardown_name=\"custom_teardown\"", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'custtest_ThisTestPassesWhenCustomSetupRan', + 'custtest_ThisTestPassesWhenCustomTeardownRan', + 'test_ShouldCallMockInitAndVerifyFunctionsForEachTest', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'CustomSetupAndTeardownThroughYaml', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :cmdline => " --test_prefix=\"custtest|test\"", + :yaml => { + :setup_name => "custom_setup", + :teardown_name => "custom_teardown", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'custtest_ThisTestPassesWhenCustomSetupRan', + 'custtest_ThisTestPassesWhenCustomTeardownRan', + 'test_ShouldCallMockInitAndVerifyFunctionsForEachTest', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'CustomMain', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST', "USE_ANOTHER_MAIN"], + :options => { + :main_name => "custom_main", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + 'test_ShouldCallMockInitAndVerifyFunctionsForEachTest', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'CustomSuiteSetupAndTeardown', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :includes => ['Defs.h'], + :options => { + :test_prefix => "suitetest|test", + :suite_setup => " CounterSuiteSetup = 1;", + :suite_teardown => " return num_failures;", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'suitetest_ThisTestPassesWhenCustomSuiteSetupAndTeardownRan', + 'test_ShouldCallMockInitAndVerifyFunctionsForEachTest', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'MainExternDeclaration', + :testfile => 'testdata/testRunnerGeneratorWithMocks.c', + :testdefines => ['TEST'], + :includes => ['Defs.h'], + :options => { + :main_export_decl => "EXTERN_DECL", + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + 'test_ShouldCallMockInitAndVerifyFunctionsForEachTest', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + + + #### WITH ARGS ########################################## + + { :name => 'ArgsThroughOptions', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ArgsThroughCommandLine', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :cmdline => "--cmdline_args=1", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ArgsThroughYAMLFile', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :cmdline => "", + :yaml => { + :cmdline_args => true, + }, + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ArgsNameFilterJustTest', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f test_", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ArgsNameFilterJustShould', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f should_", + :expected => { + :to_pass => [ 'should_RunTestsStartingWithShouldByDefault' ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsNameFilterTestAndShould', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f should_,test_", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault' ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ArgsNameFilterWithWildcardOnFile', + :testfile => 'testdata/testRunnerGeneratorSmall.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f=testRunnerGeneratorSma*", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan' ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ArgsNameFilterWithWildcardAsName', + :testfile => 'testdata/testRunnerGeneratorSmall.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f testRunnerGeneratorSmall:*", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan' ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ArgsNameFilterWithWildcardOnName', + :testfile => 'testdata/testRunnerGeneratorSmall.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f testRunnerGeneratorSmall:test_*", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses' ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ArgsNameFilterWithWildcardAndShortName', + :testfile => 'testdata/testRunnerGeneratorSmall.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f testRunnerGeneratorSmall:te*", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses' ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ArgsNameFilterWithWildcardOnBoth', + :testfile => 'testdata/testRunnerGeneratorSmall.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f testRunnerGeneratorSm*:*", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan' ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ArgsExcludeFilterJustTest', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-x test_", + :expected => { + :to_pass => [ 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + 'should_RunTestsStartingWithShouldByDefault', + ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsIncludeAndExcludeFilter', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + :includes => ['Defs.h'], + }, + :cmdline_args => "-f test_ -x Ignored", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsIncludeSingleTest', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f ThisTestAlwaysPasses", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses' ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsIncludeSingleTestInSpecificFile', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f testRunnerGenerator:ThisTestAlwaysPasses", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses' ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsIncludeTestFileWithExtension', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f testRunnerGenerator.c:ThisTestAlwaysPasses", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses' ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsIncludeDoubleQuotes', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f \"testRunnerGenerator:ThisTestAlwaysPasses,test_ThisTestAlwaysFails\"", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses' ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsIncludeSingleQuotes', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f 'testRunnerGenerator:ThisTestAlwaysPasses,test_ThisTestAlwaysFails'", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses' ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsHandlePreciseMatch', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-n 'test_ThisTestAlwaysPasses'", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses' ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsHandlePreciseMatches', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-n 'test_ThisTestAlwaysPasses,test_ThisTestAlwaysFails'", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses' ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsRequiresPreciseMatchNotPartial', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-n ThisTestAlwaysPass", + :expected => { + :to_pass => [ ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsIncludeAValidTestForADifferentFile', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f AnotherFile:ThisTestDoesNotExist", + :expected => { + :to_pass => [ ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsIncludeNoTests', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f ThisTestDoesNotExist", + :expected => { + :to_pass => [ ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsExcludeAllTests', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-x _", + :expected => { + :to_pass => [ ], + :to_fail => [ ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsIncludeFullFile', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f testRunnerGenerator", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses', + 'spec_ThisTestPassesWhenNormalSetupRan', + 'spec_ThisTestPassesWhenNormalTeardownRan', + 'test_NotBeConfusedByLongComplicatedStrings', + 'test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings', + 'test_StillNotBeConfusedByLongComplicatedStrings', + 'should_RunTestsStartingWithShouldByDefault', + 'spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan', + ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ 'test_ThisTestAlwaysIgnored' ], + } + }, + + { :name => 'ArgsIncludeWithAlternateFlag', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f=\"testRunnerGenerator:ThisTestAlwaysPasses,test_ThisTestAlwaysFails\"", + :expected => { + :to_pass => [ 'test_ThisTestAlwaysPasses' ], + :to_fail => [ 'test_ThisTestAlwaysFails' ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsIncludeWithParameterized', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :cmdline => "--use_param_tests=1", + :yaml => { + :cmdline_args => true, + :test_prefix => "paratest" + }, + :cmdline_args => "-f ShouldHandleParameterizedTests", + :features => [ :parameterized ], + :expected => { + :to_pass => [ 'paratest_ShouldHandleParameterizedTests\(25\)', + 'paratest_ShouldHandleParameterizedTests\(125\)', + 'paratest_ShouldHandleParameterizedTests\(5\)', + 'paratest_ShouldHandleParameterizedTests2\(7\)', + ], + :to_fail => [ 'paratest_ShouldHandleParameterizedTestsThatFail\(17\)' ], + :to_ignore => [ ], + } + }, + + { :name => 'ArgsList', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-l", + :expected => { + :to_pass => [ ], + :to_fail => [ ], + :to_ignore => [ ], + :text => [ "testRunnerGenerator", + "test_ThisTestAlwaysPasses", + "test_ThisTestAlwaysFails", + "test_ThisTestAlwaysIgnored", + "spec_ThisTestPassesWhenNormalSuiteSetupAndTeardownRan", + "spec_ThisTestPassesWhenNormalSetupRan", + "spec_ThisTestPassesWhenNormalTeardownRan", + "test_NotBeConfusedByLongComplicatedStrings", + "test_NotDisappearJustBecauseTheTestBeforeAndAfterHaveCrazyStrings", + "test_StillNotBeConfusedByLongComplicatedStrings", + "should_RunTestsStartingWithShouldByDefault" + ] + } + }, + + { :name => 'ArgsListParameterized', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :test_prefix => "paratest", + :use_param_tests => true, + :cmdline_args => true, + }, + :cmdline_args => "-l", + :features => [ :parameterized ], + :expected => { + :to_pass => [ ], + :to_fail => [ ], + :to_ignore => [ ], + :text => [ "testRunnerGenerator", + 'paratest_ShouldHandleParameterizedTests\(25\)', + 'paratest_ShouldHandleParameterizedTests\(125\)', + 'paratest_ShouldHandleParameterizedTests\(5\)', + 'paratest_ShouldHandleParameterizedTests2\(7\)', + 'paratest_ShouldHandleNonParameterizedTestsWhenParameterizationValid', + 'paratest_ShouldHandleParameterizedTestsThatFail\(17\)', + 'paratest_WorksWithFunctionPointers\(isArgumentOne\)', + ], + } + }, + + { :name => 'ArgsIncompleteIncludeFlags', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-f", + :expected => { + :to_pass => [ ], + :to_fail => [ ], + :to_ignore => [ ], + :text => [ "ERROR: No Test String to Include Matches For" ], + } + }, + + { :name => 'ArgsIncompleteExcludeFlags', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-x", + :expected => { + :to_pass => [ ], + :to_fail => [ ], + :to_ignore => [ ], + :text => [ "ERROR: No Test String to Exclude Matches For" ], + } + }, + + { :name => 'ArgsIllegalFlags', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-z", + :expected => { + :to_pass => [ ], + :to_fail => [ ], + :to_ignore => [ ], + :text => [ + "ERROR: Unknown Option z", + "Options:", + "-l List all tests and exit", + "-f NAME Filter to run only tests whose name includes NAME", + "-n NAME Run only the test named NAME", + "-h show this Help menu", + "-q Quiet/decrease verbosity", + "-v increase Verbosity", + "-x NAME eXclude tests whose name includes NAME", + ], + } + }, + + { :name => 'ArgsHelp', + :testfile => 'testdata/testRunnerGenerator.c', + :testdefines => ['TEST', 'UNITY_USE_COMMAND_LINE_ARGS'], + :options => { + :cmdline_args => true, + }, + :cmdline_args => "-h", + :expected => { + :to_pass => [ ], + :to_fail => [ ], + :to_ignore => [ ], + :text => [ + "Options:", + "-l List all tests and exit", + "-f NAME Filter to run only tests whose name includes NAME", + "-n NAME Run only the test named NAME", + "-h show this Help menu", + "-q Quiet/decrease verbosity", + "-v increase Verbosity", + "-x NAME eXclude tests whose name includes NAME", + ], + } + }, +] + +def runner_test(test, runner, expected, test_defines, cmdline_args, features) + # Tack on TEST define for compiling unit tests + load_configuration($cfg_file) + + # Drop Out if we're skipping this type of test + if $cfg[:skip_tests] && features + if $cfg[:skip_tests].include?(:parameterized) && features.include?(:parameterized) + report("Skipping Parameterized Tests for this Target:IGNORE") + return true + end + end + + #compile objects + obj_list = [ + compile(runner, test_defines), + compile(test, test_defines), + compile('../src/unity.c', test_defines), + ] + + # Link the test executable + test_base = File.basename(test, C_EXTENSION) + link_it(test_base, obj_list) + + # Execute unit test and generate results file + output = runtest(test_base, true, cmdline_args) + + #compare to the expected pass/fail + allgood = expected[:to_pass].inject(true) {|s,v| s && verify_match(/#{v}:PASS/, output) } + allgood = expected[:to_fail].inject(allgood) {|s,v| s && verify_match(/#{v}:FAIL/, output) } + allgood = expected[:to_ignore].inject(allgood) {|s,v| s && verify_match(/#{v}:IGNORE/, output) } + + #verify there weren't more pass/fail/etc than expected + allgood &&= verify_number( expected[:to_pass], /(:PASS)/, output) + allgood &&= verify_number( expected[:to_fail], /(:FAIL)/, output) + allgood &&= verify_number( expected[:to_ignore], /(:IGNORE)/, output) + + #if we care about any other text, check that too + if (expected[:text]) + allgood = expected[:text].inject(allgood) {|s,v| s && verify_match(/#{v}/, output) } + allgood &&= verify_number( expected[:text], /.+/, output ) + end + + report output if (!allgood && !$verbose) #report failures if not already reporting everything + return allgood +end + +def verify_match(expression, output) + if (expression =~ output) + return true + else + report " FAIL: No Match For /#{expression.to_s}/" + return false + end +end + +def verify_number(expected, expression, output) + exp = expected.length + act = output.scan(expression).length + if (exp == act) + return true + else + report " FAIL: Expected #{exp} Matches For /#{expression.to_s}/. Was #{act}" + return false + end +end + +RUNNER_TESTS.each do |testset| + basename = File.basename(testset[:testfile], C_EXTENSION) + testset_name = "Runner_#{basename}_#{testset[:name]}" + should testset_name do + runner_name = OUT_FILE + testset[:name] + '_runner.c' + + #create a yaml file first if required + yaml_option = "" + if (testset[:yaml]) + File.open("build/runner_options.yml",'w') {|f| f << { :unity => testset[:yaml] }.to_yaml } + yaml_option = "build/runner_options.yml" + end + + #run script via command line or through hash function call, as requested + if (testset[:cmdline]) + cmdstr = "ruby ../auto/generate_test_runner.rb #{yaml_option} #{testset[:cmdline]} \"#{testset[:testfile]}\" \"#{runner_name}\"" + `#{cmdstr}` + else + UnityTestRunnerGenerator.new(testset[:options]).run(testset[:testfile], runner_name) + end + + #test the script against the specified test file and check results + if (runner_test(testset[:testfile], runner_name, testset[:expected], testset[:testdefines], testset[:cmdline_args], testset[:features])) + report "#{testset_name}:PASS" + else + report "#{testset_name}:FAIL" + $generate_test_runner_failures += 1 + end + $generate_test_runner_tests += 1 + end +end + +raise "There were #{$generate_test_runner_failures.to_s} failures while testing generate_test_runner.rb" if ($generate_test_runner_failures > 0) diff --git a/lib/Unity/test/tests/test_unity_arrays.c b/lib/Unity/test/tests/test_unity_arrays.c new file mode 100644 index 0000000..9e81125 --- /dev/null +++ b/lib/Unity/test/tests/test_unity_arrays.c @@ -0,0 +1,2941 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#define TEST_INSTANCES +#include "self_assessment_utils.h" + +static int SetToOneToFailInTearDown; +static int SetToOneMeanWeAlreadyCheckedThisGuy; + +void setUp(void) +{ + SetToOneToFailInTearDown = 0; + SetToOneMeanWeAlreadyCheckedThisGuy = 0; +} + +void tearDown(void) +{ + endPutcharSpy(); /* Stop suppressing test output */ + if (SetToOneToFailInTearDown == 1) + { + /* These will be skipped internally if already failed/ignored */ + TEST_FAIL_MESSAGE("<= Failed in tearDown"); + TEST_IGNORE_MESSAGE("<= Ignored in tearDown"); + } + if ((SetToOneMeanWeAlreadyCheckedThisGuy == 0) && (Unity.CurrentTestFailed > 0)) + { + UnityPrint(": [[[[ Test Should Have Passed But Did Not ]]]]"); + UNITY_OUTPUT_CHAR('\n'); + } +} + +void testInt64ArrayWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualSmallDelta[] = {12345001, -12344996, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + TEST_ASSERT_INT64_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_INT64_ARRAY_WITHIN(110, expected, actualBigDelta, 3); +#endif +} + +void testInt64ArrayWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualSmallDelta[] = {12345001, -12344996, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 3, "Custom Message."); +#endif +} + +void testInt64ArrayNotWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayNotWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaPointless(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN(110, expected, actualBigDelta, 0); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaPointlessAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaExpectedNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN(110, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaExpectedNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(110, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaActualNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN(110, expected, NULL, 3); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaActualNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(110, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaSamePointer(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, expected, expected, 3); +#endif +} + +void testInt64ArrayWithinDeltaSamePointerAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(110, expected, expected, 3, "Custom Message."); +#endif +} + +void testIntArrayWithinDelta(void) +{ + UNITY_INT expected[] = {5000, -4995, 5005}; + UNITY_INT actualSmallDelta[] = {5001, -4996, 5005}; + UNITY_INT actualBigDelta[] = {5101, -4896, 5055}; + + TEST_ASSERT_INT_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_INT_ARRAY_WITHIN(110, expected, actualBigDelta, 3); +} + +void testIntArrayWithinDeltaAndMessage(void) +{ + UNITY_INT expected[] = {5000, -4995, 5005}; + UNITY_INT actualSmallDelta[] = {5001, -4996, 5005}; + UNITY_INT actualBigDelta[] = {5101, -4896, 5055}; + + TEST_ASSERT_INT_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_INT_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 3, "Custom Message."); +} + +void testIntArrayNotWithinDelta(void) +{ + UNITY_INT expected[] = {5000, -4995, 5005}; + UNITY_INT actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testIntArrayNotWithinDeltaAndMessage(void) +{ + UNITY_INT expected[] = {5000, -4995, 5005}; + UNITY_INT actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testIntArrayWithinDeltaPointless(void) +{ + UNITY_INT expected[] = {5000, -4995, 5005}; + UNITY_INT actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT_ARRAY_WITHIN(110, expected, actualBigDelta, 0); + VERIFY_FAILS_END +} + +void testIntArrayWithinDeltaPointlessAndMessage(void) +{ + UNITY_INT expected[] = {5000, -4995, 5005}; + UNITY_INT actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testIntArrayWithinDeltaExpectedNull(void) +{ + UNITY_INT actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT_ARRAY_WITHIN(110, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testIntArrayWithinDeltaExpectedNullAndMessage(void) +{ + UNITY_INT actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT_ARRAY_WITHIN_MESSAGE(110, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testIntArrayWithinDeltaActualNull(void) +{ + UNITY_INT expected[] = {5000, -4995, 5005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT_ARRAY_WITHIN(110, expected, NULL, 3); + VERIFY_FAILS_END +} + +void testIntArrayWithinDeltaActualNullAndMessage(void) +{ + UNITY_INT expected[] = {5000, -4995, 5005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT_ARRAY_WITHIN_MESSAGE(110, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testIntArrayWithinDeltaSamePointer(void) +{ + UNITY_INT expected[] = {5000, -4995, 5005}; + + TEST_ASSERT_INT_ARRAY_WITHIN(110, expected, expected, 3); +} + +void testIntArrayWithinDeltaSamePointerAndMessage(void) +{ + UNITY_INT expected[] = {5000, -4995, 5005}; + + TEST_ASSERT_INT_ARRAY_WITHIN_MESSAGE(110, expected, expected, 3, "Custom Message."); +} + +void testInt16ArrayWithinDelta(void) +{ + UNITY_INT16 expected[] = {5000, -4995, 5005}; + UNITY_INT16 actualSmallDelta[] = {5001, -4996, 5005}; + UNITY_INT16 actualBigDelta[] = {5101, -4896, 5055}; + + TEST_ASSERT_INT16_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_INT16_ARRAY_WITHIN(110, expected, actualBigDelta, 3); +} + +void testInt16ArrayWithinDeltaAndMessage(void) +{ + UNITY_INT16 expected[] = {5000, -4995, 5005}; + UNITY_INT16 actualSmallDelta[] = {5001, -4996, 5005}; + UNITY_INT16 actualBigDelta[] = {5101, -4896, 5055}; + + TEST_ASSERT_INT16_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_INT16_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 3, "Custom Message."); +} + +void testInt16ArrayNotWithinDelta(void) +{ + UNITY_INT16 expected[] = {5000, -4995, 5005}; + UNITY_INT16 actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT16_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testInt16ArrayNotWithinDeltaAndMessage(void) +{ + UNITY_INT16 expected[] = {5000, -4995, 5005}; + UNITY_INT16 actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT16_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testInt16ArrayWithinDeltaPointless(void) +{ + UNITY_INT16 expected[] = {5000, -4995, 5005}; + UNITY_INT16 actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT16_ARRAY_WITHIN(110, expected, actualBigDelta, 0); + VERIFY_FAILS_END +} + +void testInt16ArrayWithinDeltaPointlessAndMessage(void) +{ + UNITY_INT16 expected[] = {5000, -4995, 5005}; + UNITY_INT16 actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT16_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testInt16ArrayWithinDeltaExpectedNull(void) +{ + UNITY_INT16 actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT16_ARRAY_WITHIN(110, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testInt16ArrayWithinDeltaExpectedNullAndMessage(void) +{ + UNITY_INT16 actualBigDelta[] = {5101, -4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT16_ARRAY_WITHIN_MESSAGE(110, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testInt16ArrayWithinDeltaActualNull(void) +{ + UNITY_INT16 expected[] = {5000, -4995, 5005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT16_ARRAY_WITHIN(110, expected, NULL, 3); + VERIFY_FAILS_END +} + +void testInt16ArrayWithinDeltaActualNullAndMessage(void) +{ + UNITY_INT16 expected[] = {5000, -4995, 5005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT16_ARRAY_WITHIN_MESSAGE(110, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testInt16ArrayWithinDeltaSamePointer(void) +{ + UNITY_INT16 expected[] = {5000, -4995, 5005}; + + TEST_ASSERT_INT16_ARRAY_WITHIN(110, expected, expected, 3); +} + +void testInt16ArrayWithinDeltaSamePointerAndMessage(void) +{ + UNITY_INT16 expected[] = {5000, -4995, 5005}; + + TEST_ASSERT_INT16_ARRAY_WITHIN_MESSAGE(110, expected, expected, 3, "Custom Message."); +} + +void testInt8ArrayWithinDelta(void) +{ + UNITY_INT8 expected[] = {20, -95, 55}; + UNITY_INT8 actualSmallDelta[] = {21, -94, 55}; + UNITY_INT8 actualBigDelta[] = {11, -86, 45}; + + TEST_ASSERT_INT8_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_INT8_ARRAY_WITHIN(11, expected, actualBigDelta, 3); +} + +void testInt8ArrayWithinDeltaAndMessage(void) +{ + UNITY_INT8 expected[] = {20, -95, 55}; + UNITY_INT8 actualSmallDelta[] = {21, -94, 55}; + UNITY_INT8 actualBigDelta[] = {11, -86, 45}; + + TEST_ASSERT_INT8_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_INT8_ARRAY_WITHIN_MESSAGE(11, expected, actualBigDelta, 3, "Custom Message."); +} + +void testInt8ArrayNotWithinDelta(void) +{ + UNITY_INT8 expected[] = {20, -95, 55}; + UNITY_INT8 actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT8_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testInt8ArrayNotWithinDeltaAndMessage(void) +{ + UNITY_INT8 expected[] = {20, -95, 55}; + UNITY_INT8 actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT8_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testInt8ArrayWithinDeltaPointless(void) +{ + UNITY_INT8 expected[] = {20, -95, 55}; + UNITY_INT8 actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT8_ARRAY_WITHIN(11, expected, actualBigDelta, 0); + VERIFY_FAILS_END +} + +void testInt8ArrayWithinDeltaPointlessAndMessage(void) +{ + UNITY_INT8 expected[] = {20, -95, 55}; + UNITY_INT8 actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT8_ARRAY_WITHIN_MESSAGE(11, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testInt8ArrayWithinDeltaExpectedNull(void) +{ + UNITY_INT8 actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT8_ARRAY_WITHIN(11, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testInt8ArrayWithinDeltaExpectedNullAndMessage(void) +{ + UNITY_INT8 actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT8_ARRAY_WITHIN_MESSAGE(11, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testInt8ArrayWithinDeltaActualNull(void) +{ + UNITY_INT8 expected[] = {20, -95, 55}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT8_ARRAY_WITHIN(11, expected, NULL, 3); + VERIFY_FAILS_END +} + +void testInt8ArrayWithinDeltaActualNullAndMessage(void) +{ + UNITY_INT8 expected[] = {20, -95, 55}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT8_ARRAY_WITHIN_MESSAGE(11, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testInt8ArrayWithinDeltaSamePointer(void) +{ + UNITY_INT8 expected[] = {20, -95, 55}; + + TEST_ASSERT_INT8_ARRAY_WITHIN(11, expected, expected, 3); +} + +void testInt8ArrayWithinDeltaSamePointerAndMessage(void) +{ + UNITY_INT8 expected[] = {20, -95, 55}; + + TEST_ASSERT_INT8_ARRAY_WITHIN_MESSAGE(11, expected, expected, 3, "Custom Message."); +} + +void testCHARArrayWithinDelta(void) +{ + char expected[] = {20, -95, 55}; + char actualSmallDelta[] = {21, -94, 55}; + char actualBigDelta[] = {11, -86, 45}; + + TEST_ASSERT_CHAR_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_CHAR_ARRAY_WITHIN(11, expected, actualBigDelta, 3); +} + +void testCHARArrayWithinDeltaAndMessage(void) +{ + char expected[] = {20, -95, 55}; + char actualSmallDelta[] = {21, -94, 55}; + char actualBigDelta[] = {11, -86, 45}; + + TEST_ASSERT_CHAR_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_CHAR_ARRAY_WITHIN_MESSAGE(11, expected, actualBigDelta, 3, "Custom Message."); +} + +void testCHARArrayNotWithinDelta(void) +{ + char expected[] = {20, -95, 55}; + char actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_CHAR_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testCHARArrayNotWithinDeltaAndMessage(void) +{ + char expected[] = {20, -95, 55}; + char actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_CHAR_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testCHARArrayWithinDeltaPointless(void) +{ + char expected[] = {20, -95, 55}; + char actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_CHAR_ARRAY_WITHIN(11, expected, actualBigDelta, 0); + VERIFY_FAILS_END +} + +void testCHARArrayWithinDeltaPointlessAndMessage(void) +{ + char expected[] = {20, -95, 55}; + char actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_CHAR_ARRAY_WITHIN_MESSAGE(11, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testCHARArrayWithinDeltaExpectedNull(void) +{ + char actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_CHAR_ARRAY_WITHIN(11, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testCHARArrayWithinDeltaExpectedNullAndMessage(void) +{ + char actualBigDelta[] = {11, -86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_CHAR_ARRAY_WITHIN_MESSAGE(11, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testCHARArrayWithinDeltaActualNull(void) +{ + char expected[] = {20, -95, 55}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_CHAR_ARRAY_WITHIN(11, expected, NULL, 3); + VERIFY_FAILS_END +} + +void testCHARArrayWithinDeltaActualNullAndMessage(void) +{ + char expected[] = {20, -95, 55}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_CHAR_ARRAY_WITHIN_MESSAGE(11, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testCHARArrayWithinDeltaSamePointer(void) +{ + char expected[] = {20, -95, 55}; + + TEST_ASSERT_CHAR_ARRAY_WITHIN(11, expected, expected, 3); +} + +void testCHARArrayWithinDeltaSamePointerAndMessage(void) +{ + char expected[] = {20, -95, 55}; + + TEST_ASSERT_CHAR_ARRAY_WITHIN_MESSAGE(11, expected, expected, 3, "Custom Message."); +} + +void testUInt64ArrayWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualSmallDelta[] = {12345001, 12344996, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + TEST_ASSERT_UINT64_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, expected, actualBigDelta, 3); +#endif +} + +void testUInt64ArrayWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualSmallDelta[] = {12345001, 12344996, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 3, "Custom Message."); +#endif +} + +void testUInt64ArrayNotWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayNotWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaPointless(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, expected, actualBigDelta, 0); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaPointlessAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaExpectedNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaExpectedNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(110, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaActualNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, expected, NULL, 3); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaActualNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(110, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaSamePointer(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, expected, expected, 3); +#endif +} + +void testUInt64ArrayWithinDeltaSamePointerAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(110, expected, expected, 3, "Custom Message."); +#endif +} + +void testUIntArrayWithinDelta(void) +{ + UNITY_UINT expected[] = {125000, 124995, 125005}; + UNITY_UINT actualSmallDelta[] = {125001, 124996, 125005}; + UNITY_UINT actualBigDelta[] = {125101, 124896, 125055}; + + TEST_ASSERT_UINT_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_UINT_ARRAY_WITHIN(110, expected, actualBigDelta, 3); +} + +void testUIntArrayWithinDeltaAndMessage(void) +{ + UNITY_UINT expected[] = {125000, 124995, 125005}; + UNITY_UINT actualSmallDelta[] = {125001, 124996, 125005}; + UNITY_UINT actualBigDelta[] = {125101, 124896, 125055}; + + TEST_ASSERT_UINT_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_UINT_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 3, "Custom Message."); +} + +void testUIntArrayNotWithinDelta(void) +{ + UNITY_UINT expected[] = {125000, 124995, 125005}; + UNITY_UINT actualBigDelta[] = {125101, 124896, 125055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testUIntArrayNotWithinDeltaAndMessage(void) +{ + UNITY_UINT expected[] = {125000, 124995, 125005}; + UNITY_UINT actualBigDelta[] = {125101, 124896, 125055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testUIntArrayWithinDeltaPointless(void) +{ + UNITY_UINT expected[] = {125000, 124995, 125005}; + UNITY_UINT actualBigDelta[] = {125101, 124896, 125055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_ARRAY_WITHIN(110, expected, actualBigDelta, 0); + VERIFY_FAILS_END +} + +void testUIntArrayWithinDeltaPointlessAndMessage(void) +{ + UNITY_UINT expected[] = {125000, 124995, 125005}; + UNITY_UINT actualBigDelta[] = {125101, 124896, 125055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testUIntArrayWithinDeltaExpectedNull(void) +{ + UNITY_UINT actualBigDelta[] = {125101, 124896, 125055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_ARRAY_WITHIN(110, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testUIntArrayWithinDeltaExpectedNullAndMessage(void) +{ + UNITY_UINT actualBigDelta[] = {125101, 124896, 125055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_ARRAY_WITHIN_MESSAGE(110, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testUIntArrayWithinDeltaActualNull(void) +{ + UNITY_UINT expected[] = {125000, 124995, 125005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_ARRAY_WITHIN(110, expected, NULL, 3); + VERIFY_FAILS_END +} + +void testUIntArrayWithinDeltaActualNullAndMessage(void) +{ + UNITY_UINT expected[] = {125000, 124995, 125005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_ARRAY_WITHIN_MESSAGE(110, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testUIntArrayWithinDeltaSamePointer(void) +{ + UNITY_UINT expected[] = {125000, 124995, 125005}; + + TEST_ASSERT_UINT_ARRAY_WITHIN(110, expected, expected, 3); +} + +void testUIntArrayWithinDeltaSamePointerAndMessage(void) +{ + UNITY_UINT expected[] = {125000, 124995, 125005}; + + TEST_ASSERT_UINT_ARRAY_WITHIN_MESSAGE(110, expected, expected, 3, "Custom Message."); +} + +void testUInt16ArrayWithinDelta(void) +{ + UNITY_UINT16 expected[] = {5000, 4995, 5005}; + UNITY_UINT16 actualSmallDelta[] = {5001, 4996, 5005}; + UNITY_UINT16 actualBigDelta[] = {5101, 4896, 5055}; + + TEST_ASSERT_UINT16_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_UINT16_ARRAY_WITHIN(110, expected, actualBigDelta, 3); +} + +void testUInt16ArrayWithinDeltaAndMessage(void) +{ + UNITY_UINT16 expected[] = {5000, 4995, 5005}; + UNITY_UINT16 actualSmallDelta[] = {5001, 4996, 5005}; + UNITY_UINT16 actualBigDelta[] = {5101, 4896, 5055}; + + TEST_ASSERT_UINT16_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_UINT16_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 3, "Custom Message."); +} + +void testUInt16ArrayNotWithinDelta(void) +{ + UNITY_UINT16 expected[] = {5000, 4995, 5005}; + UNITY_UINT16 actualBigDelta[] = {5101, 4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT16_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testUInt16ArrayNotWithinDeltaAndMessage(void) +{ + UNITY_UINT16 expected[] = {5000, 4995, 5005}; + UNITY_UINT16 actualBigDelta[] = {5101, 4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT16_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testUInt16ArrayWithinDeltaPointless(void) +{ + UNITY_UINT16 expected[] = {5000, 4995, 5005}; + UNITY_UINT16 actualBigDelta[] = {5101, 4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT16_ARRAY_WITHIN(110, expected, actualBigDelta, 0); + VERIFY_FAILS_END +} + +void testUInt16ArrayWithinDeltaPointlessAndMessage(void) +{ + UNITY_UINT16 expected[] = {5000, 4995, 5005}; + UNITY_UINT16 actualBigDelta[] = {5101, 4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT16_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testUInt16ArrayWithinDeltaExpectedNull(void) +{ + UNITY_UINT16 actualBigDelta[] = {5101, 4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT16_ARRAY_WITHIN(110, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testUInt16ArrayWithinDeltaExpectedNullAndMessage(void) +{ + UNITY_UINT16 actualBigDelta[] = {5101, 4896, 5055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT16_ARRAY_WITHIN_MESSAGE(110, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testUInt16ArrayWithinDeltaActualNull(void) +{ + UNITY_UINT16 expected[] = {5000, 4995, 5005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT16_ARRAY_WITHIN(110, expected, NULL, 3); + VERIFY_FAILS_END +} + +void testUInt16ArrayWithinDeltaActualNullAndMessage(void) +{ + UNITY_UINT16 expected[] = {5000, 4995, 5005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT16_ARRAY_WITHIN_MESSAGE(110, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testUInt16ArrayWithinDeltaSamePointer(void) +{ + UNITY_UINT16 expected[] = {5000, 4995, 5005}; + + TEST_ASSERT_UINT16_ARRAY_WITHIN(110, expected, expected, 3); +} + +void testUInt16ArrayWithinDeltaSamePointerAndMessage(void) +{ + UNITY_UINT16 expected[] = {5000, 4995, 5005}; + + TEST_ASSERT_UINT16_ARRAY_WITHIN_MESSAGE(110, expected, expected, 3, "Custom Message."); +} + +void testUInt8ArrayWithinDelta(void) +{ + UNITY_UINT8 expected[] = {20, 95, 55}; + UNITY_UINT8 actualSmallDelta[] = {21, 94, 55}; + UNITY_UINT8 actualBigDelta[] = {11, 86, 45}; + + TEST_ASSERT_UINT8_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_UINT8_ARRAY_WITHIN(11, expected, actualBigDelta, 3); +} + +void testUInt8ArrayWithinDeltaAndMessage(void) +{ + UNITY_UINT8 expected[] = {20, 95, 55}; + UNITY_UINT8 actualSmallDelta[] = {21, 94, 55}; + UNITY_UINT8 actualBigDelta[] = {11, 86, 45}; + + TEST_ASSERT_UINT8_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_UINT8_ARRAY_WITHIN_MESSAGE(11, expected, actualBigDelta, 3, "Custom Message."); +} + +void testUInt8ArrayNotWithinDelta(void) +{ + UNITY_UINT8 expected[] = {20, 95, 55}; + UNITY_UINT8 actualBigDelta[] = {11, 86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT8_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testUInt8ArrayNotWithinDeltaAndMessage(void) +{ + UNITY_UINT8 expected[] = {20, 95, 55}; + UNITY_UINT8 actualBigDelta[] = {11, 86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT8_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testUInt8ArrayWithinDeltaPointless(void) +{ + UNITY_UINT8 expected[] = {20, 95, 55}; + UNITY_UINT8 actualBigDelta[] = {11, 86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT8_ARRAY_WITHIN(11, expected, actualBigDelta, 0); + VERIFY_FAILS_END +} + +void testUInt8ArrayWithinDeltaPointlessAndMessage(void) +{ + UNITY_UINT8 expected[] = {20, 95, 55}; + UNITY_UINT8 actualBigDelta[] = {11, 86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT8_ARRAY_WITHIN_MESSAGE(11, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testUInt8ArrayWithinDeltaExpectedNull(void) +{ + UNITY_UINT8 actualBigDelta[] = {11, 86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT8_ARRAY_WITHIN(11, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testUInt8ArrayWithinDeltaExpectedNullAndMessage(void) +{ + UNITY_UINT8 actualBigDelta[] = {11, 86, 45}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT8_ARRAY_WITHIN_MESSAGE(11, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testUInt8ArrayWithinDeltaActualNull(void) +{ + UNITY_UINT8 expected[] = {20, 95, 55}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT8_ARRAY_WITHIN(11, expected, NULL, 3); + VERIFY_FAILS_END +} + +void testUInt8ArrayWithinDeltaActualNullAndMessage(void) +{ + UNITY_UINT8 expected[] = {20, 95, 55}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT8_ARRAY_WITHIN_MESSAGE(11, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testUInt8ArrayWithinDeltaSamePointer(void) +{ + UNITY_UINT8 expected[] = {20, 95, 55}; + + TEST_ASSERT_UINT8_ARRAY_WITHIN(11, expected, expected, 3); +} + +void testUInt8ArrayWithinDeltaSamePointerAndMessage(void) +{ + UNITY_UINT8 expected[] = {20, 95, 55}; + + TEST_ASSERT_UINT8_ARRAY_WITHIN_MESSAGE(11, expected, expected, 3, "Custom Message."); +} + +void testHEX64ArrayWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualSmallDelta[] = {0xABCD123500000000, 0xABCD112100000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x100000000, expected, actualSmallDelta, 3); + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x6E00000000, expected, actualBigDelta, 3); +#endif +} + +void testHEX64ArrayWithinDeltaShouldNotHaveSignIssues(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0x7FFFFFFFFFFFFFFF, 0x8000000000000000}; + UNITY_UINT64 actualBigDelta[] = {0x8000000000000000, 0x7FFFFFFFFFFFFFFF}; + + TEST_ASSERT_HEX64_ARRAY_WITHIN(1, expected, actualBigDelta, 2); +#endif +} + +void testHEX64ArrayWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualSmallDelta[] = {0xABCD123500000000, 0xABCD112100000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x100000000, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x6E00000000, expected, actualBigDelta, 3, "Custom Message."); +#endif +} + +void testHEX64ArrayNotWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x100000000, expected, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayNotWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x100000000, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaPointless(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x6E00000000, expected, actualBigDelta, 0); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaPointlessAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x6E00000000, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaExpectedNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x6E00000000, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaExpectedNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x6E00000000, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaActualNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x6E00000000, expected, NULL, 3); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaActualNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x6E00000000, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaSamePointer(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x6E00000000, expected, expected, 3); +#endif +} + +void testHEX64ArrayWithinDeltaSamePointerAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x6E00000000, expected, expected, 3, "Custom Message."); +#endif +} + +void testHEX32ArrayWithinDelta(void) +{ + UNITY_UINT expected[] = {0xABCD1234, 0xABCD1122, 0xABCD1277}; + UNITY_UINT actualSmallDelta[] = {0xABCD1235, 0xABCD1121, 0xABCD1277}; + UNITY_UINT actualBigDelta[] = {0xABCD1267, 0xABCD1188, 0xABCD12AC}; + + TEST_ASSERT_HEX32_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_HEX32_ARRAY_WITHIN(110, expected, actualBigDelta, 3); +} + +void testHEX32ArrayWithinDeltaShouldNotHaveSignIssues(void) +{ + UNITY_UINT32 expected[] = {0x7FFFFFFF, 0x80000000}; + UNITY_UINT32 actualBigDelta[] = {0x80000000, 0x7FFFFFFF}; + + TEST_ASSERT_HEX32_ARRAY_WITHIN(1, expected, actualBigDelta, 2); +} + +void testHEX32ArrayWithinDeltaAndMessage(void) +{ + UNITY_UINT expected[] = {0xABCD1234, 0xABCD1122, 0xABCD1277}; + UNITY_UINT actualSmallDelta[] = {0xABCD1235, 0xABCD1121, 0xABCD1277}; + UNITY_UINT actualBigDelta[] = {0xABCD1267, 0xABCD1188, 0xABCD12AC}; + + TEST_ASSERT_HEX32_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_HEX32_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 3, "Custom Message."); +} + +void testHEX32ArrayNotWithinDelta(void) +{ + UNITY_UINT expected[] = {0xABCD1234, 0xABCD1122, 0xABCD1277}; + UNITY_UINT actualBigDelta[] = {0xABCD1267, 0xABCD1188, 0xABCD12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testHEX32ArrayNotWithinDeltaAndMessage(void) +{ + UNITY_UINT expected[] = {0xABCD1234, 0xABCD1122, 0xABCD1277}; + UNITY_UINT actualBigDelta[] = {0xABCD1267, 0xABCD1188, 0xABCD12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX32ArrayWithinDeltaPointless(void) +{ + UNITY_UINT expected[] = {0xABCD1234, 0xABCD1122, 0xABCD1277}; + UNITY_UINT actualBigDelta[] = {0xABCD1267, 0xABCD1188, 0xABCD12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_ARRAY_WITHIN(110, expected, actualBigDelta, 0); + VERIFY_FAILS_END +} + +void testHEX32ArrayWithinDeltaPointlessAndMessage(void) +{ + UNITY_UINT expected[] = {0xABCD1234, 0xABCD1122, 0xABCD1277}; + UNITY_UINT actualBigDelta[] = {0xABCD1267, 0xABCD1188, 0xABCD12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX32ArrayWithinDeltaExpectedNull(void) +{ + UNITY_UINT actualBigDelta[] = {0xABCD1267, 0xABCD1188, 0xABCD12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_ARRAY_WITHIN(110, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testHEX32ArrayWithinDeltaExpectedNullAndMessage(void) +{ + UNITY_UINT actualBigDelta[] = {0xABCD1267, 0xABCD1188, 0xABCD12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_ARRAY_WITHIN_MESSAGE(110, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX32ArrayWithinDeltaActualNull(void) +{ + UNITY_UINT expected[] = {0xABCD1234, 0xABCD1122, 0xABCD1277}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_ARRAY_WITHIN(110, expected, NULL, 3); + VERIFY_FAILS_END +} + +void testHEX32ArrayWithinDeltaActualNullAndMessage(void) +{ + UNITY_UINT expected[] = {0xABCD1234, 0xABCD1122, 0xABCD1277}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_ARRAY_WITHIN_MESSAGE(110, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX32ArrayWithinDeltaSamePointer(void) +{ + UNITY_UINT expected[] = {0xABCD1234, 0xABCD1122, 0xABCD1277}; + + TEST_ASSERT_HEX32_ARRAY_WITHIN(110, expected, expected, 3); +} + +void testHEX32ArrayWithinDeltaSamePointerAndMessage(void) +{ + UNITY_UINT expected[] = {0xABCD1234, 0xABCD1122, 0xABCD1277}; + + TEST_ASSERT_HEX32_ARRAY_WITHIN_MESSAGE(110, expected, expected, 3, "Custom Message."); +} + + +void testHEX16ArrayWithinDelta(void) +{ + UNITY_UINT16 expected[] = {0x1234, 0x1122, 0x1277}; + UNITY_UINT16 actualSmallDelta[] = {0x1235, 0x1121, 0x1277}; + UNITY_UINT16 actualBigDelta[] = {0x1267, 0x1188, 0x12AC}; + + TEST_ASSERT_HEX16_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_HEX16_ARRAY_WITHIN(110, expected, actualBigDelta, 3); +} + +void testHEX16ArrayWithinDeltaShouldNotHaveSignIssues(void) +{ + UNITY_UINT16 expected[] = {0x7FFF, 0x8000}; + UNITY_UINT16 actualBigDelta[] = {0x8000, 0x7FFF}; + + TEST_ASSERT_HEX16_ARRAY_WITHIN(1, expected, actualBigDelta, 2); +} + +void testHEX16ArrayWithinDeltaAndMessage(void) +{ + UNITY_UINT16 expected[] = {0x1234, 0x1122, 0x1277}; + UNITY_UINT16 actualSmallDelta[] = {0x1235, 0x1121, 0x1277}; + UNITY_UINT16 actualBigDelta[] = {0x1267, 0x1188, 0x12AC}; + + TEST_ASSERT_HEX16_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_HEX16_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 3, "Custom Message."); +} + +void testHEX16ArrayNotWithinDelta(void) +{ + UNITY_UINT16 expected[] = {0x1234, 0x1122, 0x1277}; + UNITY_UINT16 actualBigDelta[] = {0x1267, 0x1188, 0x12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX16_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testHEX16ArrayNotWithinDeltaAndMessage(void) +{ + UNITY_UINT16 expected[] = {0x1234, 0x1122, 0x1277}; + UNITY_UINT16 actualBigDelta[] = {0x1267, 0x1188, 0x12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX16_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX16ArrayWithinDeltaPointless(void) +{ + UNITY_UINT16 expected[] = {0x1234, 0x1122, 0x1277}; + UNITY_UINT16 actualBigDelta[] = {0x1267, 0x1188, 0x12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX16_ARRAY_WITHIN(110, expected, actualBigDelta, 0); + VERIFY_FAILS_END +} + +void testHEX16ArrayWithinDeltaPointlessAndMessage(void) +{ + UNITY_UINT16 expected[] = {0x1234, 0x1122, 0x1277}; + UNITY_UINT16 actualBigDelta[] = {0x1267, 0x1188, 0x12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX16_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX16ArrayWithinDeltaExpectedNull(void) +{ + UNITY_UINT16 actualBigDelta[] = {0x1267, 0x1188, 0x12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX16_ARRAY_WITHIN(110, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testHEX16ArrayWithinDeltaExpectedNullAndMessage(void) +{ + UNITY_UINT16 actualBigDelta[] = {0x1267, 0x1188, 0x12AC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX16_ARRAY_WITHIN_MESSAGE(110, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX16ArrayWithinDeltaActualNull(void) +{ + UNITY_UINT16 expected[] = {0x1234, 0x1122, 0x1277}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX16_ARRAY_WITHIN(110, expected, NULL, 3); + VERIFY_FAILS_END +} + +void testHEX16ArrayWithinDeltaActualNullAndMessage(void) +{ + UNITY_UINT16 expected[] = {0x1234, 0x1122, 0x1277}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX16_ARRAY_WITHIN_MESSAGE(110, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX16ArrayWithinDeltaSamePointer(void) +{ + UNITY_UINT16 expected[] = {0x1234, 0x1122, 0x1277}; + + TEST_ASSERT_HEX16_ARRAY_WITHIN(110, expected, expected, 3); +} + +void testHEX16ArrayWithinDeltaSamePointerAndMessage(void) +{ + UNITY_UINT16 expected[] = {0x1234, 0x1122, 0x1277}; + + TEST_ASSERT_HEX16_ARRAY_WITHIN_MESSAGE(110, expected, expected, 3, "Custom Message."); +} + +void testHEX8ArrayWithinDelta(void) +{ + UNITY_UINT8 expected[] = {0x34, 0x22, 0x77}; + UNITY_UINT8 actualSmallDelta[] = {0x35, 0x21, 0x77}; + UNITY_UINT8 actualBigDelta[] = {0x47, 0x48, 0x4C}; + + TEST_ASSERT_HEX8_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_HEX8_ARRAY_WITHIN(60, expected, actualBigDelta, 3); +} + +void testHEX8ArrayWithinDeltaAndMessage(void) +{ + UNITY_UINT8 expected[] = {0x34, 0x22, 0x77}; + UNITY_UINT8 actualSmallDelta[] = {0x35, 0x21, 0x77}; + UNITY_UINT8 actualBigDelta[] = {0x47, 0x48, 0x4C}; + + TEST_ASSERT_HEX8_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_HEX8_ARRAY_WITHIN_MESSAGE(60, expected, actualBigDelta, 3, "Custom Message."); +} + +void testHEX8ArrayNotWithinDelta(void) +{ + UNITY_UINT8 expected[] = {0x34, 0x22, 0x77}; + UNITY_UINT8 actualBigDelta[] = {0x67, 0x88, 0xAC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX8_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testHEX8ArrayWithinDeltaShouldNotHaveSignIssues(void) +{ + UNITY_UINT8 expected[] = {0x7F, 0x80}; + UNITY_UINT8 actualBigDelta[] = {0x80, 0x7F}; + + TEST_ASSERT_HEX8_ARRAY_WITHIN(1, expected, actualBigDelta, 2); +} + +void testHEX8ArrayNotWithinDeltaAndMessage(void) +{ + UNITY_UINT8 expected[] = {0x34, 0x22, 0x77}; + UNITY_UINT8 actualBigDelta[] = {0x67, 0x88, 0xAC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX8_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX8ArrayWithinDeltaPointless(void) +{ + UNITY_UINT8 expected[] = {0x34, 0x22, 0x77}; + UNITY_UINT8 actualBigDelta[] = {0x67, 0x88, 0xAC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX8_ARRAY_WITHIN(60, expected, actualBigDelta, 0); + VERIFY_FAILS_END +} + +void testHEX8ArrayWithinDeltaPointlessAndMessage(void) +{ + UNITY_UINT8 expected[] = {0x34, 0x22, 0x77}; + UNITY_UINT8 actualBigDelta[] = {0x67, 0x88, 0xAC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX8_ARRAY_WITHIN_MESSAGE(60, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX8ArrayWithinDeltaExpectedNull(void) +{ + UNITY_UINT8 actualBigDelta[] = {0x67, 0x88, 0xAC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX8_ARRAY_WITHIN(60, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +} + +void testHEX8ArrayWithinDeltaExpectedNullAndMessage(void) +{ + UNITY_UINT8 actualBigDelta[] = {0x67, 0x88, 0xAC}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX8_ARRAY_WITHIN_MESSAGE(60, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX8ArrayWithinDeltaActualNull(void) +{ + UNITY_UINT8 expected[] = {0x34, 0x22, 0x77}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX8_ARRAY_WITHIN(60, expected, NULL, 3); + VERIFY_FAILS_END +} + +void testHEX8ArrayWithinDeltaActualNullAndMessage(void) +{ + UNITY_UINT8 expected[] = {0x34, 0x22, 0x77}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX8_ARRAY_WITHIN_MESSAGE(60, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX8ArrayWithinDeltaSamePointer(void) +{ + UNITY_UINT8 expected[] = {0x34, 0x22, 0x77}; + + TEST_ASSERT_HEX8_ARRAY_WITHIN(60, expected, expected, 3); +} + +void testHEX8ArrayWithinDeltaSamePointerAndMessage(void) +{ + UNITY_UINT8 expected[] = {0x34, 0x22, 0x77}; + + TEST_ASSERT_HEX8_ARRAY_WITHIN_MESSAGE(60, expected, expected, 3, "Custom Message."); +} + +void testEqualIntArrays(void) +{ + int p0[] = {1, 8, 987, -2}; + int p1[] = {1, 8, 987, -2}; + int p2[] = {1, 8, 987, 2}; + int p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EQUAL_INT_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_INT_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_INT_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_INT_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_INT_ARRAY(p0, p3, 1); + TEST_ASSERT_EQUAL_INT_ARRAY(NULL, NULL, 1); +} + +void testNotEqualIntArraysNullExpected(void) +{ + int* p0 = NULL; + int p1[] = {1, 8, 987, 2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualIntArraysNullActual(void) +{ + int* p1 = NULL; + int p0[] = {1, 8, 987, 2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualIntArrays1(void) +{ + int p0[] = {1, 8, 987, -2}; + int p1[] = {1, 8, 987, 2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualIntArrays2(void) +{ + int p0[] = {1, 8, 987, -2}; + int p1[] = {2, 8, 987, -2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualIntArrays3(void) +{ + int p0[] = {1, 8, 987, -2}; + int p1[] = {1, 8, 986, -2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualIntArraysLengthZero(void) +{ + UNITY_UINT32 p0[1] = {1}; + UNITY_UINT32 p1[1] = {1}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT_ARRAY(p0, p1, 0); + VERIFY_FAILS_END +} + +void testEqualIntEachEqual(void) +{ + int p0[] = {1, 1, 1, 1}; + int p1[] = {987, 987, 987, 987}; + int p2[] = {-2, -2, -2, -3}; + int p3[] = {1, 5, 600, 700}; + + TEST_ASSERT_EACH_EQUAL_INT(1, p0, 1); + TEST_ASSERT_EACH_EQUAL_INT(1, p0, 4); + TEST_ASSERT_EACH_EQUAL_INT(987, p1, 4); + TEST_ASSERT_EACH_EQUAL_INT(-2, p2, 3); + TEST_ASSERT_EACH_EQUAL_INT(1, p3, 1); +} + +void testNotEqualIntEachEqualNullActual(void) +{ + int* p1 = NULL; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_INT(1, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualIntEachEqual1(void) +{ + int p0[] = {1, 1, 1, -2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_INT(1, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualIntEachEqual2(void) +{ + int p0[] = {-5, -5, -1, -5}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_INT(-5, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualIntEachEqual3(void) +{ + int p0[] = {1, 88, 88, 88}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_INT(88, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualEachEqualLengthZero(void) +{ + UNITY_UINT32 p0[1] = {1}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_INT(0, p0, 0); + VERIFY_FAILS_END +} + +void testEqualPtrArrays(void) +{ + char A = 1; + char B = 2; + char C = 3; + char* p0[] = {&A, &B, &C}; + char* p1[] = {&A, &B, &C, &A}; + char* p2[] = {&A, &B}; + char* p3[] = {&A}; + + TEST_ASSERT_EQUAL_PTR_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_PTR_ARRAY(p0, p0, 3); + TEST_ASSERT_EQUAL_PTR_ARRAY(p0, p1, 3); + TEST_ASSERT_EQUAL_PTR_ARRAY(p1, p2, 2); + TEST_ASSERT_EQUAL_PTR_ARRAY(p3, p0, 1); +} + +void testNotEqualPtrArraysNullExpected(void) +{ + char A = 1; + char B = 2; + char** p0 = NULL; + char* p1[] = {&A, &B}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_PTR_ARRAY(p0, p1, 2); + VERIFY_FAILS_END +} + +void testNotEqualPtrArraysNullActual(void) +{ + char A = 1; + char B = 2; + char** p0 = NULL; + char* p1[] = {&A, &B}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_PTR_ARRAY(p1, p0, 2); + VERIFY_FAILS_END +} + +void testNotEqualPtrArrays1(void) +{ + char A = 1; + char B = 2; + char C = 3; + char* p0[] = {&A, &B, &C, &B}; + char* p1[] = {&A, &B, &C, &A}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_PTR_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualPtrArrays2(void) +{ + char A = 1; + char B = 2; + char C = 3; + char* p0[] = {&B, &B, &C, &A}; + char* p1[] = {&A, &B, &C, &A}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_PTR_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualPtrArrays3(void) +{ + char A = 1; + char B = 2; + char C = 3; + char* p0[] = {&A, &B, &B, &A}; + char* p1[] = {&A, &B, &C, &A}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_PTR_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualPtrEachEqual(void) +{ + char A = 1; + char B = 2; + char C = 3; + char* p0[] = {&A, &A, &A}; + char* p1[] = {&A, &B, &C, &A}; + char* p2[] = {&B, &B}; + char* p3[] = {&C}; + + TEST_ASSERT_EACH_EQUAL_PTR(&A, p0, 1); + TEST_ASSERT_EACH_EQUAL_PTR(&A, p0, 3); + TEST_ASSERT_EACH_EQUAL_PTR(&A, p1, 1); + TEST_ASSERT_EACH_EQUAL_PTR(&B, p2, 2); + TEST_ASSERT_EACH_EQUAL_PTR(&C, p3, 1); +} + +void testNotEqualPtrEachEqualNullExpected(void) +{ + char A = 1; + char B = 1; + char* p0[] = {&A, &B}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_PTR(&A, p0, 2); + VERIFY_FAILS_END +} + +void testNotEqualPtrEachEqualNullActual(void) +{ + char A = 1; + char** p0 = NULL; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_PTR(&A, p0, 2); + VERIFY_FAILS_END +} + +void testNotEqualPtrEachEqual1(void) +{ + char A = 1; + char B = 1; + char* p0[] = {&A, &A, &A, &B}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_PTR(&A, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualPtrEachEqual2(void) +{ + char A = 1; + char B = 1; + char* p0[] = {&B, &B, &A, &B}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_PTR(&B, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualPtrEachEqual3(void) +{ + char A = 1; + char B = 1; + char* p0[] = {&A, &B, &B, &B}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_PTR(&B, p0, 4); + VERIFY_FAILS_END +} + +void testEqualInt8Arrays(void) +{ + UNITY_INT8 p0[] = {1, 8, 117, -2}; + UNITY_INT8 p1[] = {1, 8, 117, -2}; + UNITY_INT8 p2[] = {1, 8, 117, 2}; + UNITY_INT8 p3[] = {1, 50, 60, 70}; + + TEST_ASSERT_EQUAL_INT8_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_INT8_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_INT8_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_INT8_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_INT8_ARRAY(p0, p3, 1); +} + +void testNotEqualInt8Arrays(void) +{ + UNITY_INT8 p0[] = {1, 8, 36, -2}; + UNITY_INT8 p1[] = {1, 8, 36, 2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT8_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualInt8EachEqual(void) +{ + UNITY_INT8 p0[] = {1, 1, 1, 1}; + UNITY_INT8 p1[] = {117, 117, 117, -2}; + UNITY_INT8 p2[] = {-1, -1, 117, 2}; + UNITY_INT8 p3[] = {1, 50, 60, 70}; + + TEST_ASSERT_EACH_EQUAL_INT8(1, p0, 1); + TEST_ASSERT_EACH_EQUAL_INT8(1, p0, 4); + TEST_ASSERT_EACH_EQUAL_INT8(117, p1, 3); + TEST_ASSERT_EACH_EQUAL_INT8(-1, p2, 2); + TEST_ASSERT_EACH_EQUAL_INT8(1, p3, 1); +} + +void testNotEqualInt8EachEqual(void) +{ + UNITY_INT8 p0[] = {1, 8, 36, -2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_INT8(1, p0, 2); + VERIFY_FAILS_END +} + +void testEqualCHARArrays(void) +{ + char p0[] = {1, 8, 117, -2}; + char p1[] = {1, 8, 117, -2}; + char p2[] = {1, 8, 117, 2}; + char p3[] = {1, 50, 60, 70}; + + TEST_ASSERT_EQUAL_CHAR_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_CHAR_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_CHAR_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_CHAR_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_CHAR_ARRAY(p0, p3, 1); +} + +void testNotEqualCHARArrays(void) +{ + char p0[] = {1, 8, 36, -2}; + char p1[] = {1, 8, 36, 2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_CHAR_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualCHAREachEqual(void) +{ + char p0[] = {1, 1, 1, 1}; + char p1[] = {117, 117, 117, -2}; + char p2[] = {-1, -1, 117, 2}; + char p3[] = {1, 50, 60, 70}; + + TEST_ASSERT_EACH_EQUAL_CHAR(1, p0, 1); + TEST_ASSERT_EACH_EQUAL_CHAR(1, p0, 4); + TEST_ASSERT_EACH_EQUAL_CHAR(117, p1, 3); + TEST_ASSERT_EACH_EQUAL_CHAR(-1, p2, 2); + TEST_ASSERT_EACH_EQUAL_CHAR(1, p3, 1); +} + +void testNotEqualCHAREachEqual(void) +{ + char p0[] = {1, 8, 36, -2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_CHAR(1, p0, 2); + VERIFY_FAILS_END +} + +void testEqualUIntArrays(void) +{ + unsigned int p0[] = {1, 8, 987, 65132u}; + unsigned int p1[] = {1, 8, 987, 65132u}; + unsigned int p2[] = {1, 8, 987, 2}; + unsigned int p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EQUAL_UINT_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_UINT_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_UINT_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_UINT_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_UINT_ARRAY(p0, p3, 1); +} + +void testNotEqualUIntArrays1(void) +{ + unsigned int p0[] = {1, 8, 987, 65132u}; + unsigned int p1[] = {1, 8, 987, 65131u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualUIntArrays2(void) +{ + unsigned int p0[] = {1, 8, 987, 65132u}; + unsigned int p1[] = {2, 8, 987, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualUIntArrays3(void) +{ + unsigned int p0[] = {1, 8, 987, 65132u}; + unsigned int p1[] = {1, 8, 986, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualUIntEachEqual(void) +{ + unsigned int p0[] = {1, 1, 1, 1}; + unsigned int p1[] = {65132u, 65132u, 65132u, 65132u}; + unsigned int p2[] = {8, 8, 987, 2}; + unsigned int p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EACH_EQUAL_UINT(1, p0, 1); + TEST_ASSERT_EACH_EQUAL_UINT(1, p0, 4); + TEST_ASSERT_EACH_EQUAL_UINT(65132u, p1, 4); + TEST_ASSERT_EACH_EQUAL_UINT(8, p2, 2); + TEST_ASSERT_EACH_EQUAL_UINT(1, p3, 1); +} + +void testNotEqualUIntEachEqual1(void) +{ + unsigned int p0[] = {1, 65132u, 65132u, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT(65132u, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualUIntEachEqual2(void) +{ + unsigned int p0[] = {987, 8, 987, 987}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT(987, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualUIntEachEqual3(void) +{ + unsigned int p0[] = {1, 1, 1, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT(1, p0, 4); + VERIFY_FAILS_END +} + +void testEqualInt16Arrays(void) +{ + UNITY_INT16 p0[] = {1, 8, 117, 3}; + UNITY_INT16 p1[] = {1, 8, 117, 3}; + UNITY_INT16 p2[] = {1, 8, 117, 2}; + UNITY_INT16 p3[] = {1, 50, 60, 70}; + + TEST_ASSERT_EQUAL_INT16_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_INT16_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_INT16_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_INT16_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_INT16_ARRAY(p0, p3, 1); +} + +void testNotEqualInt16Arrays(void) +{ + UNITY_INT16 p0[] = {1, 8, 127, 3}; + UNITY_INT16 p1[] = {1, 8, 127, 2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT16_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualInt16EachEqual(void) +{ + UNITY_INT16 p0[] = {1, 1, 1, 1}; + UNITY_INT16 p1[] = {32111, 32111, 32111, 3}; + UNITY_INT16 p2[] = {-1, -1, -1, 2}; + UNITY_INT16 p3[] = {1, 50, 60, 70}; + + TEST_ASSERT_EACH_EQUAL_INT16(1, p0, 1); + TEST_ASSERT_EACH_EQUAL_INT16(1, p0, 4); + TEST_ASSERT_EACH_EQUAL_INT16(32111, p1, 3); + TEST_ASSERT_EACH_EQUAL_INT16(-1, p2, 3); + TEST_ASSERT_EACH_EQUAL_INT16(1, p3, 1); +} + +void testNotEqualInt16EachEqual(void) +{ + UNITY_INT16 p0[] = {127, 127, 127, 3}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_INT16(127, p0, 4); + VERIFY_FAILS_END +} + +void testEqualInt32Arrays(void) +{ + UNITY_INT32 p0[] = {1, 8, 117, 3}; + UNITY_INT32 p1[] = {1, 8, 117, 3}; + UNITY_INT32 p2[] = {1, 8, 117, 2}; + UNITY_INT32 p3[] = {1, 50, 60, 70}; + + TEST_ASSERT_EQUAL_INT32_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_INT32_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_INT32_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_INT32_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_INT32_ARRAY(p0, p3, 1); +} + +void testNotEqualInt32Arrays(void) +{ + UNITY_INT32 p0[] = {1, 8, 127, 3}; + UNITY_INT32 p1[] = {1, 8, 127, 2}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT32_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualInt32EachEqual(void) +{ + UNITY_INT32 p0[] = {8, 8, 8, 8}; + UNITY_INT32 p1[] = {65537, 65537, 65537, 65537}; + UNITY_INT32 p2[] = {-3, -3, -3, 2}; + UNITY_INT32 p3[] = {1, 50, 60, 70}; + + TEST_ASSERT_EACH_EQUAL_INT32(8, p0, 1); + TEST_ASSERT_EACH_EQUAL_INT32(8, p0, 4); + TEST_ASSERT_EACH_EQUAL_INT32(65537, p1, 4); + TEST_ASSERT_EACH_EQUAL_INT32(-3, p2, 3); + TEST_ASSERT_EACH_EQUAL_INT32(1, p3, 1); +} + +void testNotEqualInt32EachEqual(void) +{ + UNITY_INT32 p0[] = {127, 8, 127, 127}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_INT32(127, p0, 4); + VERIFY_FAILS_END +} + +void testEqualUINT8Arrays(void) +{ + UNITY_UINT8 p0[] = {1, 8, 100, 127}; + UNITY_UINT8 p1[] = {1, 8, 100, 127}; + UNITY_UINT8 p2[] = {1, 8, 100, 2}; + UNITY_UINT8 p3[] = {1, 50, 60, 70}; + + TEST_ASSERT_EQUAL_UINT8_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_UINT8_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_UINT8_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_UINT8_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_UINT8_ARRAY(p0, p3, 1); +} + +void testNotEqualUINT8Arrays1(void) +{ + unsigned char p0[] = {1, 8, 100, 127u}; + unsigned char p1[] = {1, 8, 100, 255u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT8_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT8Arrays2(void) +{ + unsigned char p0[] = {1, 8, 100, 127u}; + unsigned char p1[] = {1, 8, 100, 255u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT8_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT8Arrays3(void) +{ + unsigned char p0[] = {1, 8, 100, 127u}; + unsigned char p1[] = {1, 8, 100, 255u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT8_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + + +void testEqualUINT16Arrays(void) +{ + unsigned short p0[] = {1, 8, 987, 65132u}; + unsigned short p1[] = {1, 8, 987, 65132u}; + unsigned short p2[] = {1, 8, 987, 2}; + unsigned short p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EQUAL_UINT16_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_UINT16_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_UINT16_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_UINT16_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_UINT16_ARRAY(p0, p3, 1); +} + +void testNotEqualUINT16Arrays1(void) +{ + unsigned short p0[] = {1, 8, 987, 65132u}; + unsigned short p1[] = {1, 8, 987, 65131u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT16_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT16Arrays2(void) +{ + unsigned short p0[] = {1, 8, 987, 65132u}; + unsigned short p1[] = {2, 8, 987, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT16_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT16Arrays3(void) +{ + unsigned short p0[] = {1, 8, 987, 65132u}; + unsigned short p1[] = {1, 8, 986, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT16_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualUINT32Arrays(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p2[] = {1, 8, 987, 2}; + UNITY_UINT32 p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EQUAL_UINT32_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_UINT32_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_UINT32_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_UINT32_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_UINT32_ARRAY(p0, p3, 1); +} + +void testNotEqualUINT32Arrays1(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {1, 8, 987, 65131u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT32_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT32Arrays2(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {2, 8, 987, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT32_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT32Arrays3(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {1, 8, 986, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT32_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualHEXArrays(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p2[] = {1, 8, 987, 2}; + UNITY_UINT32 p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EQUAL_HEX_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_HEX_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_HEX_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p3, 1); +} + +void testNotEqualHEXArrays1(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {1, 8, 987, 65131u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEXArrays2(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {2, 8, 987, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEXArrays3(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {1, 8, 986, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualHEX32Arrays(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p2[] = {1, 8, 987, 2}; + UNITY_UINT32 p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p3, 1); +} + +void testNotEqualHEX32Arrays1(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {1, 8, 987, 65131u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX32Arrays2(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {2, 8, 987, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX32Arrays3(void) +{ + UNITY_UINT32 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT32 p1[] = {1, 8, 986, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX32_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualHEX16Arrays(void) +{ + unsigned short p0[] = {1, 8, 987, 65132u}; + unsigned short p1[] = {1, 8, 987, 65132u}; + unsigned short p2[] = {1, 8, 987, 2}; + unsigned short p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EQUAL_HEX16_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_HEX16_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_HEX16_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_HEX16_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_HEX16_ARRAY(p0, p3, 1); +} + +void testNotEqualHEX16Arrays1(void) +{ + unsigned short p0[] = {1, 8, 987, 65132u}; + unsigned short p1[] = {1, 8, 987, 65131u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX16_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX16Arrays2(void) +{ + unsigned short p0[] = {1, 8, 987, 65132u}; + unsigned short p1[] = {2, 8, 987, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX16_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX16Arrays3(void) +{ + unsigned short p0[] = {1, 8, 987, 65132u}; + unsigned short p1[] = {1, 8, 986, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX16_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualHEX8Arrays(void) +{ + unsigned char p0[] = {1, 8, 254u, 123}; + unsigned char p1[] = {1, 8, 254u, 123}; + unsigned char p2[] = {1, 8, 254u, 2}; + unsigned char p3[] = {1, 23, 25, 26}; + + TEST_ASSERT_EQUAL_HEX8_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_HEX8_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_HEX8_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_HEX8_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_HEX8_ARRAY(p0, p3, 1); +} + +void testNotEqualHEX8Arrays1(void) +{ + unsigned char p0[] = {1, 8, 254u, 253u}; + unsigned char p1[] = {1, 8, 254u, 252u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX8_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX8Arrays2(void) +{ + unsigned char p0[] = {1, 8, 254u, 253u}; + unsigned char p1[] = {2, 8, 254u, 253u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX8_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX8Arrays3(void) +{ + unsigned char p0[] = {1, 8, 254u, 253u}; + unsigned char p1[] = {1, 8, 255u, 253u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX8_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +} + +void testEqualUINT8EachEqual(void) +{ + UNITY_UINT8 p0[] = {127u, 127u, 127u, 127u}; + UNITY_UINT8 p1[] = {1u, 1u, 1u, 1u}; + UNITY_UINT8 p2[] = {128u, 128u, 128u, 2u}; + UNITY_UINT8 p3[] = {1u, 50u, 60u, 70u}; + + TEST_ASSERT_EACH_EQUAL_UINT8(127u, p0, 1); + TEST_ASSERT_EACH_EQUAL_UINT8(127u, p0, 4); + TEST_ASSERT_EACH_EQUAL_UINT8(1u, p1, 4); + TEST_ASSERT_EACH_EQUAL_UINT8(128u, p2, 3); + TEST_ASSERT_EACH_EQUAL_UINT8(1u, p3, 1); +} + +void testNotEqualUINT8EachEqual1(void) +{ + unsigned char p0[] = {127u, 127u, 128u, 127u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT8(127u, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT8EachEqual2(void) +{ + unsigned char p0[] = {1, 1, 1, 127u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT8(1, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT8EachEqual3(void) +{ + unsigned char p0[] = {54u, 55u, 55u, 55u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT8(55u, p0, 4); + VERIFY_FAILS_END +} + +void testEqualUINT16EachEqual(void) +{ + unsigned short p0[] = {65132u, 65132u, 65132u, 65132u}; + unsigned short p1[] = {987, 987, 987, 987}; + unsigned short p2[] = {1, 1, 1, 2}; + unsigned short p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EACH_EQUAL_UINT16(65132u, p0, 1); + TEST_ASSERT_EACH_EQUAL_UINT16(65132u, p0, 4); + TEST_ASSERT_EACH_EQUAL_UINT16(987, p1, 4); + TEST_ASSERT_EACH_EQUAL_UINT16(1, p2, 3); + TEST_ASSERT_EACH_EQUAL_UINT16(1, p3, 1); +} + +void testNotEqualUINT16EachEqual1(void) +{ + unsigned short p0[] = {1, 65132u, 65132u, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT16(65132u, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT16EachEqual2(void) +{ + unsigned short p0[] = {65132u, 65132u, 987, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT16(65132u, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT16EachEqual3(void) +{ + unsigned short p0[] = {65132u, 65132u, 65132u, 65133u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT16(65132u, p0, 4); + VERIFY_FAILS_END +} + +void testEqualUINT32EachEqual(void) +{ + UNITY_UINT32 p0[] = {65132u, 65132u, 65132u, 65132u}; + UNITY_UINT32 p1[] = {987, 987, 987, 987}; + UNITY_UINT32 p2[] = {8, 8, 8, 2}; + UNITY_UINT32 p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EACH_EQUAL_UINT32(65132u, p0, 1); + TEST_ASSERT_EACH_EQUAL_UINT32(65132u, p0, 4); + TEST_ASSERT_EACH_EQUAL_UINT32(987, p1, 4); + TEST_ASSERT_EACH_EQUAL_UINT32(8, p2, 3); + TEST_ASSERT_EACH_EQUAL_UINT32(1, p3, 1); +} + +void testNotEqualUINT32EachEqual1(void) +{ + UNITY_UINT32 p0[] = {65132u, 65132u, 987, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT32(65132u, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT32EachEqual2(void) +{ + UNITY_UINT32 p0[] = {1, 987, 987, 987}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT32(987, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualUINT32EachEqual3(void) +{ + UNITY_UINT32 p0[] = {1, 1, 1, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_UINT32(1, p0, 4); + VERIFY_FAILS_END +} + +void testEqualHEXEachEqual(void) +{ + UNITY_UINT32 p0[] = {65132u, 65132u, 65132u, 65132u}; + UNITY_UINT32 p1[] = {987, 987, 987, 987}; + UNITY_UINT32 p2[] = {8, 8, 8, 2}; + UNITY_UINT32 p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EACH_EQUAL_HEX(65132u, p0, 1); + TEST_ASSERT_EACH_EQUAL_HEX(65132u, p0, 4); + TEST_ASSERT_EACH_EQUAL_HEX(987, p1, 4); + TEST_ASSERT_EACH_EQUAL_HEX(8, p2, 3); + TEST_ASSERT_EACH_EQUAL_HEX(1, p3, 1); +} + +void testNotEqualHEXEachEqual1(void) +{ + UNITY_UINT32 p0[] = {1, 65132u, 65132u, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX32(65132u, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEXEachEqual2(void) +{ + UNITY_UINT32 p0[] = {987, 987, 987, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX32(987, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEXEachEqual3(void) +{ + UNITY_UINT32 p0[] = {8, 8, 987, 8}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX(8, p0, 4); + VERIFY_FAILS_END +} + +void testEqualHEX32EachEqual(void) +{ + UNITY_UINT32 p0[] = {65132u, 65132u, 65132u, 65132u}; + UNITY_UINT32 p1[] = {987, 987, 987, 987}; + UNITY_UINT32 p2[] = {8, 8, 8, 2}; + UNITY_UINT32 p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EACH_EQUAL_HEX32(65132u, p0, 1); + TEST_ASSERT_EACH_EQUAL_HEX32(65132u, p0, 4); + TEST_ASSERT_EACH_EQUAL_HEX32(987, p1, 4); + TEST_ASSERT_EACH_EQUAL_HEX32(8, p2, 3); + TEST_ASSERT_EACH_EQUAL_HEX32(1, p3, 1); +} + +void testNotEqualHEX32EachEqual1(void) +{ + UNITY_UINT32 p0[] = {65132u, 8, 65132u, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX32(65132u, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX32EachEqual2(void) +{ + UNITY_UINT32 p0[] = {1, 987, 987, 987}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX32(987, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX32EachEqual3(void) +{ + UNITY_UINT32 p0[] = {8, 8, 8, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX32(8, p0, 4); + VERIFY_FAILS_END +} + +void testEqualHEX16EachEqual(void) +{ + UNITY_UINT16 p0[] = {65132u, 65132u, 65132u, 65132u}; + UNITY_UINT16 p1[] = {987, 987, 987, 987}; + UNITY_UINT16 p2[] = {8, 8, 8, 2}; + UNITY_UINT16 p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EACH_EQUAL_HEX16(65132u, p0, 1); + TEST_ASSERT_EACH_EQUAL_HEX16(65132u, p0, 4); + TEST_ASSERT_EACH_EQUAL_HEX16(987, p1, 4); + TEST_ASSERT_EACH_EQUAL_HEX16(8, p2, 3); + TEST_ASSERT_EACH_EQUAL_HEX16(1, p3, 1); +} + +void testNotEqualHEX16EachEqual1(void) +{ + unsigned short p0[] = {65132u, 65132u, 987, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX16(65132u, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX16EachEqual2(void) +{ + unsigned short p0[] = {1, 987, 987, 987}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX16(987, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX16EachEqual3(void) +{ + unsigned short p0[] = {8, 8, 8, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX16(8, p0, 4); + VERIFY_FAILS_END +} + +void testEqualHEX8EachEqual(void) +{ + unsigned char p0[] = {254u, 254u, 254u, 254u}; + unsigned char p1[] = {123, 123, 123, 123}; + unsigned char p2[] = {8, 8, 8, 2}; + unsigned char p3[] = {1, 23, 25, 26}; + + TEST_ASSERT_EACH_EQUAL_HEX8(254u, p0, 1); + TEST_ASSERT_EACH_EQUAL_HEX8(254u, p0, 4); + TEST_ASSERT_EACH_EQUAL_HEX8(123, p1, 4); + TEST_ASSERT_EACH_EQUAL_HEX8(8, p2, 3); + TEST_ASSERT_EACH_EQUAL_HEX8(1, p3, 1); +} + +void testNotEqualHEX8EachEqual1(void) +{ + unsigned char p0[] = {253u, 253u, 254u, 253u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX8(253u, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX8EachEqual2(void) +{ + unsigned char p0[] = {254u, 254u, 254u, 253u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX8(254u, p0, 4); + VERIFY_FAILS_END +} + +void testNotEqualHEX8EachEqual3(void) +{ + unsigned char p0[] = {1, 8, 8, 8}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_HEX8(8, p0, 4); + VERIFY_FAILS_END +} + +void testEqualHEX64Arrays(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT64 p1[] = {1, 8, 987, 65132u}; + UNITY_UINT64 p2[] = {1, 8, 987, 2}; + UNITY_UINT64 p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EQUAL_HEX64_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_HEX64_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_HEX64_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_HEX64_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_HEX64_ARRAY(p0, p3, 1); +#endif +} + +void testEqualUint64Arrays(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT64 p1[] = {1, 8, 987, 65132u}; + UNITY_UINT64 p2[] = {1, 8, 987, 2}; + UNITY_UINT64 p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EQUAL_UINT64_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_UINT64_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_UINT64_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_UINT64_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_UINT64_ARRAY(p0, p3, 1); +#endif +} + +void testEqualInt64Arrays(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 p0[] = {1, 8, 987, -65132}; + UNITY_INT64 p1[] = {1, 8, 987, -65132}; + UNITY_INT64 p2[] = {1, 8, 987, -2}; + UNITY_INT64 p3[] = {1, 500, 600, 700}; + + TEST_ASSERT_EQUAL_INT64_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_INT64_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_INT64_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_INT64_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_INT64_ARRAY(p0, p3, 1); +#endif +} + + +void testNotEqualHEX64Arrays1(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT64 p1[] = {1, 8, 987, 65131u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX64_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualHEX64Arrays2(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT64 p1[] = {2, 8, 987, 65132u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX64_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualUint64Arrays(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 p0[] = {1, 8, 987, 65132u}; + UNITY_UINT64 p1[] = {1, 8, 987, 65131u}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT64_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualInt64Arrays(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 p0[] = {1, 8, 987, -65132}; + UNITY_INT64 p1[] = {1, 8, 987, -65131}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT64_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testVerifyIntPassingPointerComparisonOnZeroLengthArray(void) +{ + int a[] = { 1 }; + +#ifndef UNITY_COMPARE_PTRS_ON_ZERO_ARRAY + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT_ARRAY(a, a, 0); + VERIFY_FAILS_END +#else + + TEST_ASSERT_EQUAL_INT_ARRAY(a, a, 0); +#endif +} + +void testVerifyIntFailingPointerComparisonOnZeroLengthArray(void) +{ + int a[] = { 1 }; + int b[] = { 1 }; + +#ifndef UNITY_COMPARE_PTRS_ON_ZERO_ARRAY + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT_ARRAY(a, b, 0); + VERIFY_FAILS_END +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT_ARRAY(a, b, 0); + VERIFY_FAILS_END +#endif +} diff --git a/lib/Unity/test/tests/test_unity_core.c b/lib/Unity/test/tests/test_unity_core.c new file mode 100644 index 0000000..dc3a1bf --- /dev/null +++ b/lib/Unity/test/tests/test_unity_core.c @@ -0,0 +1,375 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#define TEST_INSTANCES +#include "self_assessment_utils.h" + +static int SetToOneToFailInTearDown; +static int SetToOneMeanWeAlreadyCheckedThisGuy; + +void setUp(void) +{ + SetToOneToFailInTearDown = 0; + SetToOneMeanWeAlreadyCheckedThisGuy = 0; +} + +void tearDown(void) +{ + endPutcharSpy(); /* Stop suppressing test output */ + if (SetToOneToFailInTearDown == 1) + { + /* These will be skipped internally if already failed/ignored */ + TEST_FAIL_MESSAGE("<= Failed in tearDown"); + TEST_IGNORE_MESSAGE("<= Ignored in tearDown"); + } + if ((SetToOneMeanWeAlreadyCheckedThisGuy == 0) && (Unity.CurrentTestFailed > 0)) + { + UnityPrint(": [[[[ Test Should Have Passed But Did Not ]]]]"); + UNITY_OUTPUT_CHAR('\n'); + } +} + +void testUnitySizeInitializationReminder(void) +{ + /* This test ensures that sizeof(struct UNITY_STORAGE_T) doesn't change. If this + * test breaks, go look at the initialization of the Unity global variable + * in unity.c and make sure we're filling in the proper fields. */ + const char* message = "Unexpected size for UNITY_STORAGE_T struct. Please check that " + "the initialization of the Unity symbol in unity.c is " + "still correct."; + + /* Define a structure with all the same fields as `struct UNITY_STORAGE_T`. */ +#ifdef UNITY_EXCLUDE_DETAILS + struct { + const char* TestFile; + const char* CurrentTestName; + UNITY_LINE_TYPE CurrentTestLineNumber; + UNITY_COUNTER_TYPE NumberOfTests; + UNITY_COUNTER_TYPE TestFailures; + UNITY_COUNTER_TYPE TestIgnores; + UNITY_COUNTER_TYPE CurrentTestFailed; + UNITY_COUNTER_TYPE CurrentTestIgnored; +#ifdef UNITY_INCLUDE_EXEC_TIME + UNITY_TIME_TYPE CurrentTestStartTime; + UNITY_TIME_TYPE CurrentTestStopTime; +#endif +#ifndef UNITY_EXCLUDE_SETJMP_H + jmp_buf AbortFrame; +#endif + } Expected_Unity; +#else + struct { + const char* TestFile; + const char* CurrentTestName; + const char* CurrentDetails1; + const char* CurrentDetails2; + UNITY_LINE_TYPE CurrentTestLineNumber; + UNITY_COUNTER_TYPE NumberOfTests; + UNITY_COUNTER_TYPE TestFailures; + UNITY_COUNTER_TYPE TestIgnores; + UNITY_COUNTER_TYPE CurrentTestFailed; + UNITY_COUNTER_TYPE CurrentTestIgnored; +#ifdef UNITY_INCLUDE_EXEC_TIME + UNITY_COUNTER_TYPE CurrentTestStartTime; + UNITY_COUNTER_TYPE CurrentTestStopTime; +#endif +#ifndef UNITY_EXCLUDE_SETJMP_H + jmp_buf AbortFrame; +#endif + } Expected_Unity; +#endif + + /* Compare our fake structure's size to the actual structure's size. They + * should be the same. + * + * This accounts for alignment, padding, and packing issues that might come + * up between different architectures. */ + TEST_ASSERT_EQUAL_MESSAGE(sizeof(Expected_Unity), sizeof(Unity), message); +} + +UNITY_FUNCTION_ATTR(noreturn) void testPassShouldEndImmediatelyWithPass(void) +{ + TEST_PASS(); + TEST_FAIL_MESSAGE("We should have passed already and finished this test"); +} + +UNITY_FUNCTION_ATTR(noreturn) void testPassShouldEndImmediatelyWithPassAndMessage(void) +{ + TEST_PASS_MESSAGE("Woohoo! This Automatically Passes!"); + TEST_FAIL_MESSAGE("We should have passed already and finished this test"); +} + +UNITY_FUNCTION_ATTR(noreturn) void testMessageShouldDisplayMessageWithoutEndingAndGoOnToPass(void) +{ + TEST_MESSAGE("This is just a message"); + TEST_MESSAGE("This is another message"); + TEST_PASS(); +} + +void testMessageShouldDisplayMessageWithoutEndingAndGoOnToFail(void) +{ + TEST_MESSAGE("This is yet another message"); + + EXPECT_ABORT_BEGIN + TEST_FAIL(); + VERIFY_FAILS_END +} + +void testTrue(void) +{ + TEST_ASSERT(1); + + TEST_ASSERT_TRUE(1); +} + +void testFalse(void) +{ + TEST_ASSERT_FALSE(0); + + TEST_ASSERT_UNLESS(0); +} + +void testSingleStatement(void) +{ + for(int i = 0; i < 2; i++) + { + /* TEST_ASSERT_TRUE should expand to a single C statement, minus + * the semicolon. This if-else will fail to compile otherwise. */ + if(i > 0) + TEST_ASSERT_TRUE(i); + else + TEST_ASSERT_FALSE(i); + } +} + +void testPreviousPass(void) +{ + TEST_ASSERT_EQUAL_INT(0U, Unity.TestFailures); +} + +void testNotVanilla(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT(0); + VERIFY_FAILS_END +} + +void testNotTrue(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_TRUE(0); + VERIFY_FAILS_END +} + +void testNotFalse(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_FALSE(1); + VERIFY_FAILS_END +} + +void testNotUnless(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UNLESS(1); + VERIFY_FAILS_END +} + +void testNotNotEqual(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL(10, 10); + VERIFY_FAILS_END +} + +void testFail(void) +{ + EXPECT_ABORT_BEGIN + TEST_FAIL_MESSAGE("Expected for testing"); + VERIFY_FAILS_END +} + +void testIsNull(void) +{ + char* ptr1 = NULL; + const char* ptr2 = "hello"; + + TEST_ASSERT_NULL(ptr1); + TEST_ASSERT_NOT_NULL(ptr2); +} + +void testIsNullShouldFailIfNot(void) +{ + const char* ptr1 = "hello"; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_NULL(ptr1); + VERIFY_FAILS_END +} + +void testNotNullShouldFailIfNULL(void) +{ + char* ptr1 = NULL; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_NULL(ptr1); + VERIFY_FAILS_END +} + +void testIsEmpty(void) +{ + const char* ptr1 = "\0"; + const char* ptr2 = "hello"; + + TEST_ASSERT_EMPTY(ptr1); + TEST_ASSERT_NOT_EMPTY(ptr2); +} + +void testIsEmptyShouldFailIfNot(void) +{ + const char* ptr1 = "hello"; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EMPTY(ptr1); + VERIFY_FAILS_END +} + +void testNotEmptyShouldFailIfEmpty(void) +{ + const char* ptr1 = "\0"; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EMPTY(ptr1); + VERIFY_FAILS_END +} + +void testIgnore(void) +{ + EXPECT_ABORT_BEGIN + TEST_IGNORE(); + TEST_FAIL_MESSAGE("This should not be reached"); + VERIFY_IGNORES_END +} + +void testIgnoreMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_IGNORE_MESSAGE("This is an expected TEST_IGNORE_MESSAGE string!"); + TEST_FAIL_MESSAGE("This should not be reached"); + VERIFY_IGNORES_END +} + +void testProtection(void) +{ + volatile int mask = 0; + + if (TEST_PROTECT()) + { + mask |= 1; + TEST_ABORT(); + } + else + { + Unity.CurrentTestFailed = 0; + mask |= 2; + } + + TEST_ASSERT_EQUAL(3, mask); +} + +UNITY_FUNCTION_ATTR(noreturn) void testIgnoredAndThenFailInTearDown(void) +{ + SetToOneToFailInTearDown = 1; + TEST_IGNORE(); +} + +void testFailureCountIncrementsAndIsReturnedAtEnd(void) +{ +#ifndef USING_OUTPUT_SPY + TEST_IGNORE(); +#else + int failures = 0; + UNITY_COUNTER_TYPE savedGetFlushSpyCalls = 0; + UNITY_COUNTER_TYPE savedFailures = Unity.TestFailures; + Unity.CurrentTestFailed = 1; + startPutcharSpy(); /* Suppress output */ + startFlushSpy(); + savedGetFlushSpyCalls = getFlushSpyCalls(); + UnityConcludeTest(); + endPutcharSpy(); + TEST_ASSERT_EQUAL(0, savedGetFlushSpyCalls); + TEST_ASSERT_EQUAL(savedFailures + 1, Unity.TestFailures); +#if defined(UNITY_OUTPUT_FLUSH) && defined(UNITY_OUTPUT_FLUSH_HEADER_DECLARATION) + TEST_ASSERT_EQUAL(1, getFlushSpyCalls()); +#else + TEST_ASSERT_EQUAL(0, getFlushSpyCalls()); +#endif + endFlushSpy(); + + startPutcharSpy(); /* Suppress output */ + failures = UnityEnd(); + Unity.TestFailures--; + endPutcharSpy(); + TEST_ASSERT_EQUAL(savedFailures + 1, failures); +#endif +} + +/* ===================== THESE TEST WILL RUN IF YOUR CONFIG INCLUDES DETAIL SUPPORT ================== */ + +void testThatDetailsCanBeHandleOneDetail(void) +{ +#ifdef UNITY_EXCLUDE_DETAILS + TEST_IGNORE(); +#else + UNITY_SET_DETAIL("Detail1"); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT_MESSAGE(5, 6, "Should Fail And Say Detail1"); + VERIFY_FAILS_END +#endif +} + +void testThatDetailsCanHandleTestFail(void) +{ +#ifdef UNITY_EXCLUDE_DETAILS + TEST_IGNORE(); +#else + UNITY_SET_DETAILS("Detail1","Detail2"); + + EXPECT_ABORT_BEGIN + TEST_FAIL_MESSAGE("Should Fail And Say Detail1 and Detail2"); + VERIFY_FAILS_END +#endif +} + +void testThatDetailsCanBeHandleTwoDetails(void) +{ +#ifdef UNITY_EXCLUDE_DETAILS + TEST_IGNORE(); +#else + UNITY_SET_DETAILS("Detail1","Detail2"); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX8_MESSAGE(7, 8, "Should Fail And Say Detail1 and Detail2"); + VERIFY_FAILS_END +#endif +} + +void testThatDetailsCanBeHandleSingleDetailClearingTwoDetails(void) +{ +#ifdef UNITY_EXCLUDE_DETAILS + TEST_IGNORE(); +#else + UNITY_SET_DETAILS("Detail1","Detail2"); + UNITY_SET_DETAIL("DetailNew"); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_MESSAGE("MEH", "GUH", "Should Fail And Say DetailNew"); + VERIFY_FAILS_END +#endif +} diff --git a/lib/Unity/test/tests/test_unity_doubles.c b/lib/Unity/test/tests/test_unity_doubles.c new file mode 100644 index 0000000..7a41d03 --- /dev/null +++ b/lib/Unity/test/tests/test_unity_doubles.c @@ -0,0 +1,1285 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#define TEST_INSTANCES +#include "self_assessment_utils.h" + +static int SetToOneToFailInTearDown; +static int SetToOneMeanWeAlreadyCheckedThisGuy; + +void setUp(void) +{ + SetToOneToFailInTearDown = 0; + SetToOneMeanWeAlreadyCheckedThisGuy = 0; +} + +void tearDown(void) +{ + endPutcharSpy(); /* Stop suppressing test output */ + if (SetToOneToFailInTearDown == 1) + { + /* These will be skipped internally if already failed/ignored */ + TEST_FAIL_MESSAGE("<= Failed in tearDown"); + TEST_IGNORE_MESSAGE("<= Ignored in tearDown"); + } + if ((SetToOneMeanWeAlreadyCheckedThisGuy == 0) && (Unity.CurrentTestFailed > 0)) + { + UnityPrint(": [[[[ Test Should Have Passed But Did Not ]]]]"); + UNITY_OUTPUT_CHAR('\n'); + } +} + +void testDoublesWithinDelta(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_DOUBLE_WITHIN(0.00003, 187245.03485, 187245.03488); + TEST_ASSERT_DOUBLE_WITHIN(1.0, 187245.0, 187246.0); + TEST_ASSERT_DOUBLE_WITHIN(0.05, 9273.2549, 9273.2049); + TEST_ASSERT_DOUBLE_WITHIN(0.007, -726.93725, -726.94424); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_NOT_WITHIN(0.05, 9273.2549, 9273.2049); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotWithinDelta(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_DOUBLE_NOT_WITHIN(0.05, 9273.2649, 9273.2049); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_WITHIN(0.05, 9273.2649, 9273.2049); + VERIFY_FAILS_END +#endif +} + + +void testDoublesEqual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_EQUAL_DOUBLE(187245123456.0, 187245123456.0); + TEST_ASSERT_EQUAL_DOUBLE(187241234567.5, 187241234567.6); + TEST_ASSERT_EQUAL_DOUBLE(9273.2512345649, 9273.25123455699); + TEST_ASSERT_EQUAL_DOUBLE(-726.12345693724, -726.1234569374); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_DOUBLE(-726.12345693724, -726.1234569374); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotEqual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_DOUBLE(9273.9649, 9273.0049); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE(9273.9649, 9273.0049); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotEqualNegative1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_DOUBLE(-9273.9649, -9273.0049); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE(-9273.9649, -9273.0049); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotEqualNegative2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_DOUBLE(-9273.0049, -9273.9649); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE(-9273.0049, -9273.9649); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotEqualActualNaN(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_DOUBLE(85.963, 0.0 / d_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE(85.963, 0.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotEqualExpectedNaN(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_DOUBLE(0.0 / d_zero, 85.963); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE(0.0 / d_zero, 85.963); + VERIFY_FAILS_END +#endif +} + +void testDoublesEqualBothNaN(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_EQUAL_DOUBLE(0.0 / d_zero, 0.0 / d_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_DOUBLE(0.0 / d_zero, 0.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotEqualInfNaN(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_DOUBLE(1.0 / d_zero, 0.0 / d_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE(1.0 / d_zero, 0.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotEqualNaNInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_DOUBLE(0.0 / d_zero, 1.0 / d_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE(0.0 / d_zero, 1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotEqualActualInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_DOUBLE(321.642, 1.0 / d_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE(321.642, 1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotEqualExpectedInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_DOUBLE(1.0 / d_zero, 321.642); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE(1.0 / d_zero, 321.642); + VERIFY_FAILS_END +#endif +} + +void testDoublesEqualBothInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_EQUAL_DOUBLE(1.0 / d_zero, 1.0 / d_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_DOUBLE(1.0 / d_zero, 1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotEqualPlusMinusInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_DOUBLE(1.0 / d_zero, -1.0 / d_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE(1.0 / d_zero, -1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesGreaterThan(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_THAN_DOUBLE(1.0, 2.0); + TEST_ASSERT_GREATER_THAN_DOUBLE(-1.0, 1.0); + TEST_ASSERT_GREATER_THAN_DOUBLE(-2.0, -1.0); +#endif +} + +void testDoublesGreaterThanInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_THAN_DOUBLE(1.0, 1.0 / d_zero); + TEST_ASSERT_GREATER_THAN_DOUBLE(-1.0 / d_zero, 1.0 / d_zero); + TEST_ASSERT_GREATER_THAN_DOUBLE(-1.0 / d_zero, 1.0); +#endif +} + +void testDoublesNotGreaterThan(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_DOUBLE(2.0, 1.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotGreaterThanNanActual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_DOUBLE(1.0, 0.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotGreaterThanNanThreshold(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_DOUBLE(0.0 / d_zero, 1.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotGreaterThanNanBoth(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_DOUBLE(0.0 / d_zero, 0.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotGreaterThanInfActual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_DOUBLE(1.0 / d_zero, 1.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotGreaterThanNegInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_DOUBLE(1.0, -1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotGreaterThanBothInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_DOUBLE(1.0 / d_zero, 1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotGreaterThanBothNegInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_DOUBLE(-1.0 / d_zero, -1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesGreaterOrEqual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(1.0, 2.0); + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(2.0, 2.0); + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(-1.0, 1.0); + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(-2.0, -1.0); + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(-2.0, -2.0); +#endif +} + +void testDoublesGreaterOrEqualInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(1.0, 1.0 / d_zero); + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(-1.0 / d_zero, 1.0 / d_zero); + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(-1.0 / d_zero, 1.0); +#endif +} + +void testDoublesNotGreaterOrEqual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(2.0, 1.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotGreaterOrEqualNanActual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(1.0, 0.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotGreaterOrEqualNanThreshold(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(0.0 / d_zero, 1.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesGreaterOrEqualNanBoth(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(0.0 / d_zero, 0.0 / d_zero); +#endif +} + +void testDoublesNotGreaterOrEqualInfActual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(1.0 / d_zero, 1.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotGreaterOrEqualNegInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(1.0, -1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesGreaterOrEqualBothInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(1.0 / d_zero, 1.0 / d_zero); +#endif +} + +void testDoublesGreaterOrEqualBothNegInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_OR_EQUAL_DOUBLE(-1.0 / d_zero, -1.0 / d_zero); +#endif +} + +void testDoublesLessThan(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_THAN_DOUBLE(2.0, 1.0); + TEST_ASSERT_LESS_THAN_DOUBLE(1.0, -1.0); + TEST_ASSERT_LESS_THAN_DOUBLE(-1.0, -2.0); +#endif +} + +void testDoublesLessThanInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_THAN_DOUBLE(1.0 / d_zero, 1.0); + TEST_ASSERT_LESS_THAN_DOUBLE(1.0 / d_zero, -1.0 / d_zero); + TEST_ASSERT_LESS_THAN_DOUBLE(1.0, -1.0 / d_zero); +#endif +} + +void testDoublesNotLessThan(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_DOUBLE(1.0, 2.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotLessThanNanActual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_DOUBLE(1.0, 0.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotLessThanNanThreshold(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_DOUBLE(0.0 / d_zero, 1.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotLessThanNanBoth(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_DOUBLE(0.0 / d_zero, 0.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotLessThanInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_DOUBLE(1.0, 1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotLessThanNegInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_DOUBLE(-1.0 / d_zero, 1.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotLessThanBothInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_DOUBLE(1.0 / d_zero, 1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotLessThanBothNegInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_DOUBLE(-1.0 / d_zero, -1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesLessOrEqual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(2.0, 1.0); + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(2.0, 2.0); + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(1.0, -1.0); + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(-1.0, -2.0); + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(-2.0, -2.0); +#endif +} + +void testDoublesLessOrEqualInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(1.0 / d_zero, 1.0); + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(1.0 / d_zero, -1.0 / d_zero); + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(1.0, -1.0 / d_zero); +#endif +} + +void testDoublesNotLessOrEqual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(1.0, 2.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotLessOrEqualNanActual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(1.0, 0.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotLessOrEqualNanThreshold(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(0.0 / d_zero, 1.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesLessOrEqualNanBoth(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(0.0 / d_zero, 0.0 / d_zero); +#endif +} + +void testDoublesNotLessOrEqualInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(1.0, 1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoublesNotLessOrEqualNegInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(-1.0 / d_zero, 1.0); + VERIFY_FAILS_END +#endif +} + +void testDoublesLessOrEqualBothInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(1.0 / d_zero, 1.0 / d_zero); +#endif +} + +void testDoublesLessOrEqualBothNegInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_OR_EQUAL_DOUBLE(-1.0 / d_zero, -1.0 / d_zero); +#endif +} + +void testDoubleIsPosInf1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_DOUBLE_IS_INF(2.0 / d_zero); +#endif +} + +void testDoubleIsPosInf2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_IS_NOT_INF(2.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoubleIsNegInf1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_DOUBLE_IS_NEG_INF(-3.0 / d_zero); +#endif +} + +void testDoubleIsNegInf2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_IS_NOT_NEG_INF(-3.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoubleIsNotPosInf1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_IS_INF(2.0); + VERIFY_FAILS_END +#endif +} + +void testDoubleIsNotPosInf2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_DOUBLE_IS_NOT_INF(2.0); +#endif +} + +void testDoubleIsNotNegInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_IS_NEG_INF(-999.876); + VERIFY_FAILS_END +#endif +} + +void testDoubleIsNan1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_DOUBLE_IS_NAN(0.0 / d_zero); +#endif +} + +void testDoubleIsNan2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_IS_NOT_NAN(0.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoubleIsNotNan1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_IS_NAN(234.9); + VERIFY_FAILS_END +#endif +} + +void testDoubleIsNotNan2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_DOUBLE_IS_NOT_NAN(234.9); +#endif +} + +void testDoubleInfIsNotNan(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_IS_NAN(1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoubleNanIsNotInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_IS_INF(0.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoubleIsDeterminate1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_DOUBLE_IS_DETERMINATE(0.0); + TEST_ASSERT_DOUBLE_IS_DETERMINATE(123.3); + TEST_ASSERT_DOUBLE_IS_DETERMINATE(-88.3); +#endif +} + +void testDoubleIsDeterminate2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_IS_NOT_DETERMINATE(-88.3); + VERIFY_FAILS_END +#endif +} + +void testDoubleIsNotDeterminate1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + TEST_ASSERT_DOUBLE_IS_NOT_DETERMINATE(1.0 / d_zero); + TEST_ASSERT_DOUBLE_IS_NOT_DETERMINATE(-1.0 / d_zero); + TEST_ASSERT_DOUBLE_IS_NOT_DETERMINATE(0.0 / d_zero); +#endif +} + +void testDoubleIsNotDeterminate2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_IS_DETERMINATE(-1.0 / d_zero); + VERIFY_FAILS_END +#endif +} + +void testDoubleTraitFailsOnInvalidTrait(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + UnityAssertDoubleSpecial(1.0, NULL, __LINE__, UNITY_FLOAT_INVALID_TRAIT); + VERIFY_FAILS_END +#endif +} + +void testEqualDoubleArrays(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {1.0, -8.0, 25.4, -0.123}; + double p1[] = {1.0, -8.0, 25.4, -0.123}; + double p2[] = {1.0, -8.0, 25.4, -0.2}; + double p3[] = {1.0, -23.0, 25.0, -0.26}; + + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p3, 1); + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(NULL, NULL, 1); +#endif +} + +void testNotEqualDoubleArraysExpectedNull(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double* p0 = NULL; + double p1[] = {1.0, 8.0, 25.4, 0.252}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleArraysActualNull(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {1.0, 8.0, 25.4, 0.253}; + double* p1 = NULL; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleArrays1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {1.0, 8.0, 25.4, 0.25666666667}; + double p1[] = {1.0, 8.0, 25.4, 0.25666666666}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleArrays2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {1.0, 8.0, 25.4, 0.253}; + double p1[] = {2.0, 8.0, 25.4, 0.253}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleArrays3(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {1.0, 8.0, 25.4, 0.253}; + double p1[] = {1.0, 8.0, 25.5, 0.253}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleArraysNegative1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {-1.0, -8.0, -25.4, -0.2566666667}; + double p1[] = {-1.0, -8.0, -25.4, -0.2566666666}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleArraysNegative2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {-1.0, -8.0, -25.4, -0.253}; + double p1[] = {-2.0, -8.0, -25.4, -0.253}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleArraysNegative3(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {-1.0, -8.0, -25.4, -0.253}; + double p1[] = {-1.0, -8.0, -25.5, -0.253}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testEqualDoubleArraysNaN(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {1.0, 0.0 / d_zero, 25.4, 0.253}; + double p1[] = {1.0, 0.0 / d_zero, 25.4, 0.253}; + + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 4); +#endif +} + +void testEqualDoubleArraysInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {1.0, 1.0 / d_zero, 25.4, 0.253}; + double p1[] = {1.0, 1.0 / d_zero, 25.4, 0.253}; + + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 4); +#endif +} + +void testNotEqualDoubleArraysLengthZero(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[1] = {0.0}; + double p1[1] = {0.0}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_DOUBLE_ARRAY(p0, p1, 0); + VERIFY_FAILS_END +#endif +} + +void testDoubleArraysWithin(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {1.0, -8.0, 25.4, -0.123}; + double p1[] = {1.0, -8.0, 25.4, -0.123}; + double p2[] = {1.0, -8.0, 25.4, -0.2}; + double p3[] = {1.0, -23.0, 25.0, -0.26}; + double p4[] = {2.0, -9.0, 26.2, 0.26}; + double p5[] = {-1.0, -7.0, 29.0, 2.6}; + + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(1.0, p0, p0, 1); + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(1.0, p0, p0, 4); + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(1.0, p0, p1, 4); + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(1.0, p0, p2, 3); + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(1.0, p0, p3, 1); + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(1.0, p0, p4, 1); + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(1.0, p0, p4, 4); + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(2.0, p0, p5, 1); + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(2.0, p0, p5, 2); + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(1.0, NULL, NULL, 1); +#endif +} + +void testDoubleArraysWithinUnusualDelta(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {-INFINITY, -8.0, 25.4, -0.123}; + double p1[] = {INFINITY, 10.1}; + + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(INFINITY, p0, p1, 2); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_DOUBLE_ARRAY_WITHIN(NAN, p0, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testEqualDoubleEachEqual(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {1.0, 1.0, 1.0, 1.0}; + double p1[] = {-0.123, -0.123, -0.123, -0.123}; + double p2[] = {25.4, 25.4, 25.4, -0.2}; + double p3[] = {1.0, -23.0, 25.0, -0.26}; + + TEST_ASSERT_EACH_EQUAL_DOUBLE(1.0, p0, 1); + TEST_ASSERT_EACH_EQUAL_DOUBLE(1.0, p0, 4); + TEST_ASSERT_EACH_EQUAL_DOUBLE(-0.123, p1, 4); + TEST_ASSERT_EACH_EQUAL_DOUBLE(25.4, p2, 3); + TEST_ASSERT_EACH_EQUAL_DOUBLE(1.0, p3, 1); +#endif +} + +void testNotEqualDoubleEachEqualActualNull(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double* p0 = NULL; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_DOUBLE(5, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleEachEqual1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {0.253, 8.0, 0.253, 0.253}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_DOUBLE(0.253, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleEachEqual2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {8.0, 8.0, 8.0, 0.253}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_DOUBLE(8.0, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleEachEqual3(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {1.0, 1.0, 1.0, 0.253}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_DOUBLE(1.0, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleEachEqualNegative1(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {-1.0, -0.253, -0.253, -0.253}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_DOUBLE(-0.253, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleEachEqualNegative2(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {-25.4, -8.0, -25.4, -25.4}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_DOUBLE(-25.4, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualDoubleEachEqualNegative3(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {-8.0, -8.0, -8.0, -0.253}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_DOUBLE(-8.0, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testEqualDoubleEachEqualNaN(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {0.0 / d_zero, 0.0 / d_zero, 0.0 / d_zero, 0.0 / d_zero}; + + TEST_ASSERT_EACH_EQUAL_DOUBLE(0.0 / d_zero, p0, 4); +#endif +} + +void testEqualDoubleEachEqualInf(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[] = {1.0 / d_zero, 1.0 / d_zero, 25.4, 0.253}; + + TEST_ASSERT_EACH_EQUAL_DOUBLE(1.0 / d_zero, p0, 2); +#endif +} + +void testNotEqualDoubleEachEqualLengthZero(void) +{ +#ifdef UNITY_EXCLUDE_DOUBLE + TEST_IGNORE(); +#else + double p0[1] = {0.0}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_DOUBLE(0.0, p0, 0); + VERIFY_FAILS_END +#endif +} + +void testDoublePrinting(void) +{ +#if defined(UNITY_EXCLUDE_FLOAT_PRINT) || defined(UNITY_EXCLUDE_DOUBLE) || !defined(USING_OUTPUT_SPY) + TEST_IGNORE(); +#else + TEST_ASSERT_EQUAL_PRINT_FLOATING("0", 0.0); + TEST_ASSERT_EQUAL_PRINT_FLOATING("4.99e-07", 0.000000499); + TEST_ASSERT_EQUAL_PRINT_FLOATING("5.0000005e-07", 0.00000050000005); + TEST_ASSERT_EQUAL_PRINT_FLOATING("0.100469499", 0.100469499); + TEST_ASSERT_EQUAL_PRINT_FLOATING("1", 0.9999999995); /*Rounding to int place*/ + TEST_ASSERT_EQUAL_PRINT_FLOATING("1", 1.0); + TEST_ASSERT_EQUAL_PRINT_FLOATING("1.25", 1.25); + TEST_ASSERT_EQUAL_PRINT_FLOATING("7.99999999", 7.99999999); /*Not rounding*/ + TEST_ASSERT_EQUAL_PRINT_FLOATING("16.0000002", 16.0000002); + TEST_ASSERT_EQUAL_PRINT_FLOATING("16.0000004", 16.0000004); + TEST_ASSERT_EQUAL_PRINT_FLOATING("16.0000006", 16.0000006); + TEST_ASSERT_EQUAL_PRINT_FLOATING("999999999", 999999999.0); /*Last full print integer*/ + + TEST_ASSERT_EQUAL_PRINT_FLOATING("0", -0.0); /* -0 no supported on all targets */ + TEST_ASSERT_EQUAL_PRINT_FLOATING("-4.99e-07", -0.000000499); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-5.0000005e-07", -0.00000050000005); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-0.100469499", -0.100469499); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-1", -0.9999999995); /*Rounding to int place*/ + TEST_ASSERT_EQUAL_PRINT_FLOATING("-1", -1.0); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-1.25", -1.25); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-7.99999999", -7.99999999); /*Not rounding*/ + TEST_ASSERT_EQUAL_PRINT_FLOATING("-16.0000002", -16.0000002); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-16.0000004", -16.0000004); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-16.0000006", -16.0000006); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-999999999", -999999999.0); /*Last full print integer*/ + + TEST_ASSERT_EQUAL_PRINT_FLOATING("0.1004695", 0.10046949999999999); + TEST_ASSERT_EQUAL_PRINT_FLOATING("4.2949673e+09", 4294967295.9); + TEST_ASSERT_EQUAL_PRINT_FLOATING("4.2949673e+09", 4294967296.0); + TEST_ASSERT_EQUAL_PRINT_FLOATING("1e+10", 9999999995.0); + TEST_ASSERT_EQUAL_PRINT_FLOATING("9.00719925e+15", 9007199254740990.0); + TEST_ASSERT_EQUAL_PRINT_FLOATING("7e+100", 7.0e+100); + TEST_ASSERT_EQUAL_PRINT_FLOATING("3e+200", 3.0e+200); + TEST_ASSERT_EQUAL_PRINT_FLOATING("9.23456789e+300", 9.23456789e+300); + + TEST_ASSERT_EQUAL_PRINT_FLOATING("-0.1004695", -0.10046949999999999); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-4.2949673e+09", -4294967295.9); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-4.2949673e+09", -4294967296.0); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-7e+100", -7.0e+100); +#endif +} + +void testDoublePrintingRoundTiesToEven(void) +{ +#if defined(UNITY_EXCLUDE_FLOAT_PRINT) || defined(UNITY_EXCLUDE_DOUBLE) || !defined(USING_OUTPUT_SPY) + TEST_IGNORE(); +#else + #ifdef UNITY_ROUND_TIES_AWAY_FROM_ZERO + TEST_ASSERT_EQUAL_PRINT_FLOATING("1.00000001e+10", 10000000050.0); + TEST_ASSERT_EQUAL_PRINT_FLOATING("9.00719925e+15", 9007199245000000.0); + #else /* Default to Round ties to even */ + TEST_ASSERT_EQUAL_PRINT_FLOATING("1e+10", 10000000050.0); + TEST_ASSERT_EQUAL_PRINT_FLOATING("9.00719924e+15", 9007199245000000.0); + #endif +#endif +} + +void testDoublePrintingInfinityAndNaN(void) +{ +#if defined(UNITY_EXCLUDE_FLOAT_PRINT) || defined(UNITY_EXCLUDE_DOUBLE) || !defined(USING_OUTPUT_SPY) + TEST_IGNORE(); +#else + TEST_ASSERT_EQUAL_PRINT_FLOATING("inf", 1.0 / d_zero); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-inf", -1.0 / d_zero); + + TEST_ASSERT_EQUAL_PRINT_FLOATING("nan", 0.0 / d_zero); +#endif +} diff --git a/lib/Unity/test/tests/test_unity_floats.c b/lib/Unity/test/tests/test_unity_floats.c new file mode 100644 index 0000000..e02c656 --- /dev/null +++ b/lib/Unity/test/tests/test_unity_floats.c @@ -0,0 +1,1404 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#define TEST_INSTANCES +#include "self_assessment_utils.h" + +static int SetToOneToFailInTearDown; +static int SetToOneMeanWeAlreadyCheckedThisGuy; + +void setUp(void) +{ + SetToOneToFailInTearDown = 0; + SetToOneMeanWeAlreadyCheckedThisGuy = 0; +} + +void tearDown(void) +{ + endPutcharSpy(); /* Stop suppressing test output */ + if (SetToOneToFailInTearDown == 1) + { + /* These will be skipped internally if already failed/ignored */ + TEST_FAIL_MESSAGE("<= Failed in tearDown"); + TEST_IGNORE_MESSAGE("<= Ignored in tearDown"); + } + if ((SetToOneMeanWeAlreadyCheckedThisGuy == 0) && (Unity.CurrentTestFailed > 0)) + { + UnityPrint(": [[[[ Test Should Have Passed But Did Not ]]]]"); + UNITY_OUTPUT_CHAR('\n'); + } +} + +void testFloatsWithinDelta(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_FLOAT_WITHIN(0.00003f, 187245.03485f, 187245.03488f); + TEST_ASSERT_FLOAT_WITHIN(1.0f, 187245.0f, 187246.0f); + TEST_ASSERT_FLOAT_WITHIN(0.05f, 9273.2549f, 9273.2049f); + TEST_ASSERT_FLOAT_WITHIN(0.007f, -726.93724f, -726.94424f); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_NOT_WITHIN(0.05f, 9273.2549f, 9273.2049f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotWithinDelta(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_FLOAT_NOT_WITHIN(0.05f, 9273.2649f, 9273.2049f); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_WITHIN(0.05f, 9273.2649f, 9273.2049f); + VERIFY_FAILS_END +#endif +} + +void testFloatsEqual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_EQUAL_FLOAT(187245.0f, 187246.0f); + TEST_ASSERT_EQUAL_FLOAT(18724.5f, 18724.6f); + TEST_ASSERT_EQUAL_FLOAT(9273.2549f, 9273.2599f); + TEST_ASSERT_EQUAL_FLOAT(-726.93724f, -726.9374f); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_FLOAT(-726.93724f, -726.9374f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotEqual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_FLOAT(9273.9649f, 9273.0049f); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT(9273.9649f, 9273.0049f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotEqualNegative1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_FLOAT(-9273.9649f, -9273.0049f); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT(-9273.9649f, -9273.0049f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotEqualNegative2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_FLOAT(-9273.0049f, -9273.9649f); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT(-9273.0049f, -9273.9649f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotEqualActualNaN(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_FLOAT(85.963f, 0.0f / f_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT(85.963f, 0.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotEqualExpectedNaN(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_FLOAT(0.0f / f_zero, 85.963f); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT(0.0f / f_zero, 85.963f); + VERIFY_FAILS_END +#endif +} + +void testFloatsEqualBothNaN(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_EQUAL_FLOAT(0.0f / f_zero, 0.0f / f_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_FLOAT(0.0f / f_zero, 0.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotEqualInfNaN(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_FLOAT(1.0f / f_zero, 0.0f / f_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT(1.0f / f_zero, 0.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotEqualNaNInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_FLOAT(0.0f / f_zero, 1.0f / f_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT(0.0f / f_zero, 1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotEqualActualInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_FLOAT(321.642f, 1.0f / f_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT(321.642f, 1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotEqualExpectedInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_FLOAT(1.0f / f_zero, 321.642f); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT(1.0f / f_zero, 321.642f); + VERIFY_FAILS_END +#endif +} + +void testFloatsEqualBothInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_EQUAL_FLOAT(1.0f / f_zero, 1.0f / f_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_FLOAT(1.0f / f_zero, 1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotEqualPlusMinusInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_NOT_EQUAL_FLOAT(1.0f / f_zero, -1.0f / f_zero); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT(1.0f / f_zero, -1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsGreaterThan(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_THAN_FLOAT(1.0f, 2.0f); + TEST_ASSERT_GREATER_THAN_FLOAT(-1.0f, 1.0f); + TEST_ASSERT_GREATER_THAN_FLOAT(-2.0f, -1.0f); +#endif +} + +void testFloatsGreaterThanInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_THAN_FLOAT(1.0f, 1.0f / f_zero); + TEST_ASSERT_GREATER_THAN_FLOAT(-1.0f / f_zero, 1.0f / f_zero); + TEST_ASSERT_GREATER_THAN_FLOAT(-1.0f / f_zero, 1.0f); +#endif +} + +void testFloatsNotGreaterThan(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_FLOAT(2.0f, 1.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotGreaterThanNanActual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_FLOAT(1.0f, 0.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotGreaterThanNanThreshold(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_FLOAT(0.0f / f_zero, 1.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotGreaterThanNanBoth(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_FLOAT(0.0f / f_zero, 0.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotGreaterThanInfActual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_FLOAT(1.0f / f_zero, 1.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotGreaterThanNegInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_FLOAT(1.0f, -1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotGreaterThanBothInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_FLOAT(1.0f / f_zero, 1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotGreaterThanBothNegInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_FLOAT(-1.0f / f_zero, -1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsGreaterOrEqual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(1.0f, 2.0f); + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(2.0f, 2.0f); + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(-1.0f, 1.0f); + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(-2.0f, -1.0f); + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(-2.0f, -2.0f); +#endif +} + +void testFloatsGreaterOrEqualInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(1.0f, 1.0f / f_zero); + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(-1.0f / f_zero, 1.0f / f_zero); + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(-1.0f / f_zero, 1.0f); +#endif +} + +void testFloatsNotGreaterOrEqual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(2.0f, 1.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotGreaterOrEqualNanActual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(1.0f, 0.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotGreaterOrEqualNanThreshold(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(0.0f / f_zero, 1.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsGreaterOrEqualNanBoth(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(0.0f / f_zero, 0.0f / f_zero); +#endif +} + +void testFloatsNotGreaterOrEqualInfActual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(1.0f / f_zero, 1.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotGreaterOrEqualNegInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(1.0f, -1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsGreaterOrEqualBothInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(1.0f / f_zero, 1.0f / f_zero); +#endif +} + +void testFloatsGreaterOrEqualBothNegInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_GREATER_OR_EQUAL_FLOAT(-1.0f / f_zero, -1.0f / f_zero); +#endif +} + +void testFloatsLessThan(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_THAN_FLOAT(2.0f, 1.0f); + TEST_ASSERT_LESS_THAN_FLOAT(1.0f, -1.0f); + TEST_ASSERT_LESS_THAN_FLOAT(-1.0f, -2.0f); +#endif +} + +void testFloatsLessThanInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_THAN_FLOAT(1.0f / f_zero, 1.0f); + TEST_ASSERT_LESS_THAN_FLOAT(1.0f / f_zero, -1.0f / f_zero); + TEST_ASSERT_LESS_THAN_FLOAT(1.0f, -1.0f / f_zero); +#endif +} + +void testFloatsNotLessThan(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_FLOAT(1.0f, 2.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotLessThanNanActual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_FLOAT(1.0f, 0.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotLessThanNanThreshold(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_FLOAT(0.0f / f_zero, 1.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotLessThanNanBoth(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_FLOAT(0.0f / f_zero, 0.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotLessThanInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_FLOAT(1.0f, 1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotLessThanNegInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_FLOAT(-1.0f / f_zero, 1.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotLessThanBothInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_FLOAT(1.0f / f_zero, 1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotLessThanBothNegInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_FLOAT(-1.0f / f_zero, -1.0f / f_zero); + VERIFY_FAILS_END +#endif +} +void testFloatsLessOrEqual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(2.0f, 1.0f); + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(2.0f, 2.0f); + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(1.0f, -1.0f); + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(-1.0f, -2.0f); + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(-2.0f, -2.0f); +#endif +} + +void testFloatsLessOrEqualInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(1.0f / f_zero, 1.0f); + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(1.0f / f_zero, -1.0f / f_zero); + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(1.0f, -1.0f / f_zero); +#endif +} + +void testFloatsNotLessOrEqual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(1.0f, 2.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotLessOrEqualNanActual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(1.0f, 0.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotLessOrEqualNanThreshold(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(0.0f / f_zero, 1.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsLessOrEqualNanBoth(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(0.0f / f_zero, 0.0f / f_zero); +#endif +} + +void testFloatsNotLessOrEqualInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(1.0f, 1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatsNotLessOrEqualNegInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(-1.0f / f_zero, 1.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatsLessOrEqualBothInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(1.0f / f_zero, 1.0f / f_zero); +#endif +} + +void testFloatsLessOrEqualBothNegInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_LESS_OR_EQUAL_FLOAT(-1.0f / f_zero, -1.0f / f_zero); +#endif +} + +void testFloatIsPosInf1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_FLOAT_IS_INF(2.0f / f_zero); +#endif +} + +void testFloatIsPosInf2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_IS_NOT_INF(2.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatIsNegInf1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_FLOAT_IS_NEG_INF(-3.0f / f_zero); +#endif +} + +void testFloatIsNegInf2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_IS_NOT_NEG_INF(-3.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatIsNotPosInf1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_IS_INF(2.0f); + VERIFY_FAILS_END +#endif +} + +void testFloatIsNotPosInf2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_FLOAT_IS_NOT_INF(2.0f); +#endif +} + +void testFloatIsNotNegInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_IS_NEG_INF(-999.876f); + VERIFY_FAILS_END +#endif +} + +void testFloatIsNan1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_FLOAT_IS_NAN(0.0f / f_zero); +#endif +} + +void testFloatIsNan2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_IS_NOT_NAN(0.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatIsNotNan1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_IS_NAN(234.9f); + VERIFY_FAILS_END +#endif +} + +void testFloatIsNotNan2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_FLOAT_IS_NOT_NAN(234.9f); +#endif +} + +void testFloatInfIsNotNan(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_IS_NAN(1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatNanIsNotInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_IS_INF(0.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatIsDeterminate1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_FLOAT_IS_DETERMINATE(0.0f); + TEST_ASSERT_FLOAT_IS_DETERMINATE(123.3f); + TEST_ASSERT_FLOAT_IS_DETERMINATE(-88.3f); +#endif +} + +void testFloatIsDeterminate2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_IS_NOT_DETERMINATE(-88.3f); + VERIFY_FAILS_END +#endif +} + +void testFloatIsNotDeterminate1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + TEST_ASSERT_FLOAT_IS_NOT_DETERMINATE(1.0f / f_zero); + TEST_ASSERT_FLOAT_IS_NOT_DETERMINATE(-1.0f / f_zero); + TEST_ASSERT_FLOAT_IS_NOT_DETERMINATE(0.0f / f_zero); +#endif +} + +void testFloatIsNotDeterminate2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_IS_DETERMINATE(-1.0f / f_zero); + VERIFY_FAILS_END +#endif +} + +void testFloatTraitFailsOnInvalidTrait(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + UnityAssertFloatSpecial(1.0f, NULL, __LINE__, UNITY_FLOAT_INVALID_TRAIT); + VERIFY_FAILS_END +#endif +} + +void testEqualFloatArrays(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {1.0f, -8.0f, 25.4f, -0.123f}; + float p1[] = {1.0f, -8.0f, 25.4f, -0.123f}; + float p2[] = {1.0f, -8.0f, 25.4f, -0.2f}; + float p3[] = {1.0f, -23.0f, 25.0f, -0.26f}; + + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p0, 1); + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p0, 4); + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 4); + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p2, 3); + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p3, 1); + TEST_ASSERT_EQUAL_FLOAT_ARRAY(NULL, NULL, 1); +#endif +} + +void testNotEqualFloatArraysExpectedNull(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float* p0 = NULL; + float p1[] = {1.0f, 8.0f, 25.4f, 0.252f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatArraysActualNull(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {1.0f, 8.0f, 25.4f, 0.253f}; + float* p1 = NULL; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatArrays1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {1.0f, 8.0f, 25.4f, 0.253f}; + float p1[] = {1.0f, 8.0f, 25.4f, 0.252f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatArrays2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {1.0f, 8.0f, 25.4f, 0.253f}; + float p1[] = {2.0f, 8.0f, 25.4f, 0.253f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatArrays3(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {1.0f, 8.0f, 25.4f, 0.253f}; + float p1[] = {1.0f, 8.0f, 25.5f, 0.253f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatArraysNegative1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {-1.0f, -8.0f, -25.4f, -0.253f}; + float p1[] = {-1.0f, -8.0f, -25.4f, -0.252f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatArraysNegative2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {-1.0f, -8.0f, -25.4f, -0.253f}; + float p1[] = {-2.0f, -8.0f, -25.4f, -0.253f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatArraysNegative3(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {-1.0f, -8.0f, -25.4f, -0.253f}; + float p1[] = {-1.0f, -8.0f, -25.5f, -0.253f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 4); + VERIFY_FAILS_END +#endif +} + +void testEqualFloatArraysNaN(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {1.0f, 0.0f / f_zero, 25.4f, 0.253f}; + float p1[] = {1.0f, 0.0f / f_zero, 25.4f, 0.253f}; + + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 4); +#endif +} + +void testEqualFloatArraysInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {1.0f, 1.0f / f_zero, 25.4f, 0.253f}; + float p1[] = {1.0f, 1.0f / f_zero, 25.4f, 0.253f}; + + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 4); +#endif +} + +void testNotEqualFloatArraysLengthZero(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[1] = {0.0f}; + float p1[1] = {0.0f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_FLOAT_ARRAY(p0, p1, 0); + VERIFY_FAILS_END +#endif +} + +void testFloatArraysWithin(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {1.0f, -8.0f, 25.4f, -0.123f}; + float p1[] = {1.0f, -8.0f, 25.4f, -0.123f}; + float p2[] = {1.0f, -8.0f, 25.4f, -0.2f}; + float p3[] = {1.0f, -23.0f, 25.0f, -0.26f}; + float p4[] = {2.0f, -9.0f, 26.2f, 0.26f}; + float p5[] = {-1.0f, -7.0f, 29.0f, 2.6f}; + + TEST_ASSERT_FLOAT_ARRAY_WITHIN(1.0f, p0, p0, 1); + TEST_ASSERT_FLOAT_ARRAY_WITHIN(1.0f, p0, p0, 4); + TEST_ASSERT_FLOAT_ARRAY_WITHIN(1.0f, p0, p1, 4); + TEST_ASSERT_FLOAT_ARRAY_WITHIN(1.0f, p0, p2, 3); + TEST_ASSERT_FLOAT_ARRAY_WITHIN(1.0f, p0, p3, 1); + TEST_ASSERT_FLOAT_ARRAY_WITHIN(1.0f, p0, p4, 1); + TEST_ASSERT_FLOAT_ARRAY_WITHIN(1.0f, p0, p4, 4); + TEST_ASSERT_FLOAT_ARRAY_WITHIN(2.0f, p0, p5, 1); + TEST_ASSERT_FLOAT_ARRAY_WITHIN(2.0f, p0, p5, 2); + TEST_ASSERT_FLOAT_ARRAY_WITHIN(1.0f, NULL, NULL, 1); +#endif +} + +void testFloatArraysWithinUnusualDelta(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {(float)-INFINITY, -8.0f, 25.4f, -0.123f}; + float p1[] = {(float)INFINITY, 10.1f}; + + TEST_ASSERT_FLOAT_ARRAY_WITHIN(INFINITY, p0, p1, 2); + + EXPECT_ABORT_BEGIN + TEST_ASSERT_FLOAT_ARRAY_WITHIN(NAN, p0, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testEqualFloatEachEqual(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {1.0f, 1.0f, 1.0f, 1.0f}; + float p1[] = {-0.123f, -0.123f, -0.123f, -0.123f}; + float p2[] = {25.4f, 25.4f, 25.4f, -0.2f}; + float p3[] = {1.0f, -23.0f, 25.0f, -0.26f}; + + TEST_ASSERT_EACH_EQUAL_FLOAT(1.0f, p0, 1); + TEST_ASSERT_EACH_EQUAL_FLOAT(1.0f, p0, 4); + TEST_ASSERT_EACH_EQUAL_FLOAT(-0.123f, p1, 4); + TEST_ASSERT_EACH_EQUAL_FLOAT(25.4f, p2, 3); + TEST_ASSERT_EACH_EQUAL_FLOAT(1.0f, p3, 1); +#endif +} + +void testNotEqualFloatEachEqualActualNull(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float* p0 = NULL; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_FLOAT(5, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatEachEqual1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {0.253f, 8.0f, 0.253f, 0.253f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_FLOAT(0.253f, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatEachEqual2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {8.0f, 8.0f, 8.0f, 0.253f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_FLOAT(8.0f, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatEachEqual3(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {1.0f, 1.0f, 1.0f, 0.253f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_FLOAT(1.0f, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatEachEqualNegative1(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {-1.0f, -0.253f, -0.253f, -0.253f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_FLOAT(-0.253f, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatEachEqualNegative2(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {-25.4f, -8.0f, -25.4f, -25.4f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_FLOAT(-25.4f, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testNotEqualFloatEachEqualNegative3(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {-8.0f, -8.0f, -8.0f, -0.253f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_FLOAT(-8.0f, p0, 4); + VERIFY_FAILS_END +#endif +} + +void testEqualFloatEachEqualNaN(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {0.0f / f_zero, 0.0f / f_zero, 0.0f / f_zero, 0.0f / f_zero}; + + TEST_ASSERT_EACH_EQUAL_FLOAT(0.0f / f_zero, p0, 4); +#endif +} + +void testEqualFloatEachEqualInf(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[] = {1.0f / f_zero, 1.0f / f_zero, 25.4f, 0.253f}; + + TEST_ASSERT_EACH_EQUAL_FLOAT(1.0f / f_zero, p0, 2); +#endif +} + +void testNotEqualFloatEachEqualLengthZero(void) +{ +#ifdef UNITY_EXCLUDE_FLOAT + TEST_IGNORE(); +#else + float p0[1] = {0.0f}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_FLOAT(0.0f, p0, 0); + VERIFY_FAILS_END +#endif +} + +#if defined(UNITY_EXCLUDE_FLOAT_PRINT) || defined(UNITY_INCLUDE_DOUBLE) || !defined(USING_OUTPUT_SPY) +UNITY_FUNCTION_ATTR(noreturn) +#endif +void testFloatPrinting(void) +{ +#if defined(UNITY_EXCLUDE_FLOAT_PRINT) || defined(UNITY_INCLUDE_DOUBLE) || !defined(USING_OUTPUT_SPY) + TEST_IGNORE(); +#else + TEST_ASSERT_EQUAL_PRINT_FLOATING("0", 0.0f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("4.99e-07", 0.000000499f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("0.1004695", 0.100469499f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("2", 1.9999995f); /*Rounding to int place*/ + TEST_ASSERT_EQUAL_PRINT_FLOATING("1", 1.0f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("1.25", 1.25f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("7.999999", 7.999999f); /*Not rounding*/ + TEST_ASSERT_EQUAL_PRINT_FLOATING("16.00002", 16.00002f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("16.00004", 16.00004f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("16.00006", 16.00006f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("9999999", 9999999.0f); /*Last full print integer*/ + + TEST_ASSERT_EQUAL_PRINT_FLOATING("-0", -0.0f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-4.99e-07", -0.000000499f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-0.1004695", -0.100469499f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-2", -1.9999995f); /*Rounding to int place*/ + TEST_ASSERT_EQUAL_PRINT_FLOATING("-1", -1.0f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-1.25", -1.25f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-7.999999", -7.999999f); /*Not rounding*/ + TEST_ASSERT_EQUAL_PRINT_FLOATING("-16.00002", -16.00002f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-16.00004", -16.00004f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-16.00006", -16.00006f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-9999999", -9999999.0f); /*Last full print integer*/ + + /* Fails, prints "4.294968e+09" due to FP math imprecision + * TEST_ASSERT_EQUAL_PRINT_FLOATING("4.294967e+09", 4294967296.0f); */ + TEST_ASSERT_EQUAL_PRINT_FLOATING("5e+09", 5000000000.0f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("8e+09", 8.0e+09f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("8.309999e+09", 8309999104.0f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("1e+10", 1.0e+10f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("1e+10", 10000000000.0f); + /* Some compilers have trouble with inexact float constants, a float cast works generally */ + TEST_ASSERT_EQUAL_PRINT_FLOATING("1.000055e+10", (float)1.000055e+10f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("1.1e+38", (float)1.10000005e+38f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("1.635299e+10", 1.63529943e+10f); + /* Fails, prints "3.402824e+38" due to FP math imprecision + * TEST_ASSERT_EQUAL_PRINT_FLOATING("3.402823e+38", 3.40282346638e38f); */ + + TEST_ASSERT_EQUAL_PRINT_FLOATING("-1e+10", -1.0e+10f); + /* Fails, prints "-3.402824e+38" due to FP math imprecision + * TEST_ASSERT_EQUAL_PRINT_FLOATING("-3.402823e+38", -3.40282346638e38f); */ +#endif +} + +#if defined(UNITY_EXCLUDE_FLOAT_PRINT) || defined(UNITY_INCLUDE_DOUBLE) || !defined(USING_OUTPUT_SPY) +UNITY_FUNCTION_ATTR(noreturn) +#endif +void testFloatPrintingRoundTiesToEven(void) +{ +#if defined(UNITY_EXCLUDE_FLOAT_PRINT) || defined(UNITY_INCLUDE_DOUBLE) || !defined(USING_OUTPUT_SPY) + TEST_IGNORE(); +#else + #ifdef UNITY_ROUND_TIES_AWAY_FROM_ZERO + TEST_ASSERT_EQUAL_PRINT_FLOATING("0.0004882813", 0.00048828125f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("488281.3", 488281.25f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("5.000001e-07", 0.00000050000005f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-5.000001e-07", -0.00000050000005f); + #else /* Default to Round ties to even */ + TEST_ASSERT_EQUAL_PRINT_FLOATING("0.0004882812", 0.00048828125f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("488281.2", 488281.25f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("5e-07", 0.00000050000005f); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-5e-07", -0.00000050000005f); + #endif +#endif +} + +void testFloatPrintingInfinityAndNaN(void) +{ +#if defined(UNITY_EXCLUDE_FLOAT_PRINT) || !defined(USING_OUTPUT_SPY) + TEST_IGNORE(); +#else + TEST_ASSERT_EQUAL_PRINT_FLOATING("inf", 1.0f / f_zero); + TEST_ASSERT_EQUAL_PRINT_FLOATING("-inf", -1.0f / f_zero); + + TEST_ASSERT_EQUAL_PRINT_FLOATING("nan", 0.0f / f_zero); +#endif +} + +#if defined(UNITY_TEST_ALL_FLOATS_PRINT_OK) && defined(USING_OUTPUT_SPY) +#ifdef UNITY_INCLUDE_DOUBLE +static void printFloatValue(float f) +{ + char expected[18]; + + startPutcharSpy(); + UnityPrintFloat(f); + + sprintf(expected, "%.9g", f); + /* We print all NaN's as "nan", not "-nan" */ + if (strcmp(expected, "-nan") == 0) strcpy(expected, "nan"); + + if (strcmp(expected, getBufferPutcharSpy())) + { + /* Fail with diagnostic printing */ + TEST_ASSERT_EQUAL_PRINT_FLOATING(expected, f); + } +} +#else +static void printFloatValue(float f) +{ + char expected[18]; + char expected_lower[18]; + char expected_lower2[18]; + char expected_lower3[18]; + char expected_higher[18]; + char expected_higher2[18]; + char expected_higher3[18]; + + startPutcharSpy(); + UnityPrintFloat(f); + + sprintf(expected, "%.7g", f); + /* We print all NaN's as "nan", not "-nan" */ + if (strcmp(expected, "-nan") == 0) strcpy(expected, "nan"); + + strcpy(expected_lower, expected); + strcpy(expected_lower2, expected); + strcpy(expected_lower3, expected); + strcpy(expected_higher, expected); + strcpy(expected_higher2, expected); + strcpy(expected_higher3, expected); + + /* Allow for rounding differences in the last digit */ + double lower = (double)f * 0.99999995; + double higher = (double)f * 1.00000005; + + if(isfinite(lower)) sprintf(expected_lower, "%.7g", lower); + if(isfinite(higher)) sprintf(expected_higher, "%.7g", higher); + + /* Outside [1,10000000] allow for relative error of +/-2.5e-7 */ + if (f < 1.0 || f > 10000000) + { + double lower2 = (double)f * 0.99999985; + double lower3 = (double)f * 0.99999975; + double higher2 = (double)f * 1.00000015; + double higher3 = (double)f * 1.00000025; + + if (isfinite(lower2)) sprintf(expected_lower2, "%.7g", lower2); + if (isfinite(lower3)) sprintf(expected_lower3, "%.7g", lower3); + if (isfinite(higher2)) sprintf(expected_higher2, "%.7g", higher2); + if (isfinite(higher3)) sprintf(expected_higher3, "%.7g", higher3); + } + + if (strcmp(expected, getBufferPutcharSpy()) != 0 && + strcmp(expected_lower, getBufferPutcharSpy()) != 0 && + strcmp(expected_lower2, getBufferPutcharSpy()) != 0 && + strcmp(expected_lower3, getBufferPutcharSpy()) != 0 && + strcmp(expected_higher, getBufferPutcharSpy()) != 0 && + strcmp(expected_higher2, getBufferPutcharSpy()) != 0 && + strcmp(expected_higher3, getBufferPutcharSpy()) != 0) + { + /* Fail with diagnostic printing */ + TEST_ASSERT_EQUAL_PRINT_FLOATING(expected, f); + } +} +#endif +#endif + +#if !defined(UNITY_TEST_ALL_FLOATS_PRINT_OK) || !defined(USING_OUTPUT_SPY) +UNITY_FUNCTION_ATTR(noreturn) +#endif +void testFloatPrintingRandomSamples(void) +{ +#if !defined(UNITY_TEST_ALL_FLOATS_PRINT_OK) || !defined(USING_OUTPUT_SPY) + TEST_IGNORE(); +#else + union { float f_value; uint32_t int_value; } u; + + /* These values are not covered by the MINSTD generator */ + u.int_value = 0x00000000; printFloatValue(u.f_value); + u.int_value = 0x80000000; printFloatValue(u.f_value); + u.int_value = 0x7fffffff; printFloatValue(u.f_value); + u.int_value = 0xffffffff; printFloatValue(u.f_value); + + uint32_t a = 1; + for(int num_tested = 0; num_tested < 1000000; num_tested++) + { + /* MINSTD pseudo-random number generator */ + a = (uint32_t)(((uint64_t)a * 48271u) % 2147483647u); + + /* MINSTD does not set the highest bit; test both possibilities */ + u.int_value = a; printFloatValue(u.f_value); + u.int_value = a | 0x80000000; printFloatValue(u.f_value); + } +#endif +} diff --git a/lib/Unity/test/tests/test_unity_integers.c b/lib/Unity/test/tests/test_unity_integers.c new file mode 100644 index 0000000..495d87d --- /dev/null +++ b/lib/Unity/test/tests/test_unity_integers.c @@ -0,0 +1,2863 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#define TEST_INSTANCES +#include "self_assessment_utils.h" + +static int SetToOneToFailInTearDown; +static int SetToOneMeanWeAlreadyCheckedThisGuy; + +void setUp(void) +{ + SetToOneToFailInTearDown = 0; + SetToOneMeanWeAlreadyCheckedThisGuy = 0; +} + +void tearDown(void) +{ + endPutcharSpy(); /* Stop suppressing test output */ + if (SetToOneToFailInTearDown == 1) + { + /* These will be skipped internally if already failed/ignored */ + TEST_FAIL_MESSAGE("<= Failed in tearDown"); + TEST_IGNORE_MESSAGE("<= Ignored in tearDown"); + } + if ((SetToOneMeanWeAlreadyCheckedThisGuy == 0) && (Unity.CurrentTestFailed > 0)) + { + UnityPrint(": [[[[ Test Should Have Passed But Did Not ]]]]"); + UNITY_OUTPUT_CHAR('\n'); + } +} + +void testNotEqualInts(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT(3982, 3983); + VERIFY_FAILS_END +} + +void testNotEqualInt8s(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT8(-127, -126); + VERIFY_FAILS_END +} + +void testNotEqualChars(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_CHAR('A', 'a'); + VERIFY_FAILS_END +} + +void testNotEqualInt16s(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT16(-16383, -16382); + VERIFY_FAILS_END +} + +void testNotEqualInt32s(void) +{ + EXPECT_ABORT_BEGIN + /*use largest 32 bit negative to test printability*/ + /*note: (-2147483647 - 1) is used instead of -2147483648 because of C90 casting rules */ + TEST_ASSERT_EQUAL_INT32(-2147483647, (-2147483647 - 1)); + VERIFY_FAILS_END +} + +void testNotEqualBits(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_BITS(0xFF00, 0x5555, 0x5A55); + VERIFY_FAILS_END +} + +void testNotEqualUInts(void) +{ + UNITY_UINT16 v0, v1; + + v0 = 9000; + v1 = 9001; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT(v0, v1); + VERIFY_FAILS_END +} + +void testNotEqualUInt8s(void) +{ + UNITY_UINT8 v0, v1; + + v0 = 254; + v1 = 255; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT8(v0, v1); + VERIFY_FAILS_END +} + +void testNotEqualUInt16s(void) +{ + UNITY_UINT16 v0, v1; + + v0 = 65535u; + v1 = 65534u; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT16(v0, v1); + VERIFY_FAILS_END +} + +void testNotEqualUInt32s(void) +{ + UNITY_UINT32 v0, v1; + + v0 = 4294967295u; + v1 = 4294967294u; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT32(v0, v1); + VERIFY_FAILS_END +} + +void testNotEqualHex8s(void) +{ + UNITY_UINT8 v0, v1; + + v0 = 0x23; + v1 = 0x22; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX8(v0, v1); + VERIFY_FAILS_END +} + +void testNotEqualHex8sIfSigned(void) +{ + UNITY_INT8 v0, v1; + + v0 = -2; + v1 = 2; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX8(v0, v1); + VERIFY_FAILS_END +} + +void testNotEqualHex16s(void) +{ + UNITY_UINT16 v0, v1; + + v0 = 0x1234; + v1 = 0x1235; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX16(v0, v1); + VERIFY_FAILS_END +} + +void testNotEqualHex16sIfSigned(void) +{ + UNITY_INT16 v0, v1; + + v0 = -1024; + v1 = -1028; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX16(v0, v1); + VERIFY_FAILS_END +} + +void testNotEqualHex32s(void) +{ + UNITY_UINT32 v0, v1; + + v0 = 900000; + v1 = 900001; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX32(v0, v1); + VERIFY_FAILS_END +} + +void testNotEqualHex32sIfSigned(void) +{ + UNITY_INT32 v0, v1; + + v0 = -900000; + v1 = 900001; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX32(v0, v1); + VERIFY_FAILS_END +} + +void testEqualInts(void) +{ + int v0, v1; + int *p0, *p1; + + v0 = 19467; + v1 = 19467; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_INT(1837, 1837); + TEST_ASSERT_EQUAL_INT(-27365, -27365); + TEST_ASSERT_EQUAL_INT(v0, v1); + TEST_ASSERT_EQUAL_INT(19467, v1); + TEST_ASSERT_EQUAL_INT(v0, 19467); + TEST_ASSERT_EQUAL_INT(*p0, v1); + TEST_ASSERT_EQUAL_INT(*p0, *p1); + TEST_ASSERT_EQUAL_INT(*p0, 19467); +} + +void testEqualInt8s(void) +{ + UNITY_INT8 v0, v1; + UNITY_INT8 *p0, *p1; + + v0 = 0x22; + v1 = 0x22; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_INT8(0x22, 0x22); + TEST_ASSERT_EQUAL_INT8(v0, v1); + TEST_ASSERT_EQUAL_INT8(0x22, v1); + TEST_ASSERT_EQUAL_INT8(v0, 0x22); + TEST_ASSERT_EQUAL_INT8(*p0, v1); + TEST_ASSERT_EQUAL_INT8(*p0, *p1); + TEST_ASSERT_EQUAL_INT8(*p0, 0x22); +} + +void testEqualInt8sWhenThereAreDifferencesOutside8Bits(void) +{ + TEST_ASSERT_EQUAL_INT8(0x321,0x421); + TEST_ASSERT_EQUAL_INT8(0xFF21,0x0021); +} + +void testEqualChars(void) +{ + char v0, v1; + char *p0, *p1; + + v0 = 'A'; + v1 = 'A'; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_CHAR('A', 'A'); + TEST_ASSERT_EQUAL_CHAR(v0, v1); + TEST_ASSERT_EQUAL_CHAR('A', v1); + TEST_ASSERT_EQUAL_CHAR(v0, 'A'); + TEST_ASSERT_EQUAL_CHAR(*p0, v1); + TEST_ASSERT_EQUAL_CHAR(*p0, *p1); + TEST_ASSERT_EQUAL_CHAR(*p0, 'A'); +} + +void testEqualCharsWhenThereAreDifferencesOutside8Bits(void) +{ + TEST_ASSERT_EQUAL_CHAR(0x321,0x421); + TEST_ASSERT_EQUAL_CHAR(0xFF21,0x0021); +} + + +void testEqualInt16s(void) +{ + UNITY_INT16 v0, v1; + UNITY_INT16 *p0, *p1; + + v0 = 0x7876; + v1 = 0x7876; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_INT16(0x7876, 0x7876); + TEST_ASSERT_EQUAL_INT16(v0, v1); + TEST_ASSERT_EQUAL_INT16(0x7876, v1); + TEST_ASSERT_EQUAL_INT16(v0, 0x7876); + TEST_ASSERT_EQUAL_INT16(*p0, v1); + TEST_ASSERT_EQUAL_INT16(*p0, *p1); + TEST_ASSERT_EQUAL_INT16(*p0, 0x7876); +} + +void testEqualInt16sNegatives(void) +{ + UNITY_INT16 v0, v1; + UNITY_INT16 *p0, *p1; + + v0 = -7876; + v1 = -7876; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_INT16(-7876, -7876); + TEST_ASSERT_EQUAL_INT16(v0, v1); + TEST_ASSERT_EQUAL_INT16(-7876, v1); + TEST_ASSERT_EQUAL_INT16(v0, -7876); + TEST_ASSERT_EQUAL_INT16(*p0, v1); + TEST_ASSERT_EQUAL_INT16(*p0, *p1); + TEST_ASSERT_EQUAL_INT16(*p0, -7876); +} + +void testEqualInt16sWhenThereAreDifferencesOutside16Bits(void) +{ + TEST_ASSERT_EQUAL_INT16(0x54321,0x64321); + TEST_ASSERT_EQUAL_INT16(0xFFFF4321,0x00004321); +} + +void testEqualInt32s(void) +{ + UNITY_INT32 v0, v1; + UNITY_INT32 *p0, *p1; + + v0 = 0x78760000; + v1 = 0x78760000; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_INT32(0x78760000, 0x78760000); + TEST_ASSERT_EQUAL_INT32(v0, v1); + TEST_ASSERT_EQUAL_INT32(0x78760000, v1); + TEST_ASSERT_EQUAL_INT32(v0, 0x78760000); + TEST_ASSERT_EQUAL_INT32(*p0, v1); + TEST_ASSERT_EQUAL_INT32(*p0, *p1); + TEST_ASSERT_EQUAL_INT32(*p0, 0x78760000); +} + +void testEqualInt32sNegatives(void) +{ + UNITY_INT32 v0, v1; + UNITY_INT32 *p0, *p1; + + v0 = -123456789; + v1 = -123456789; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_INT32(-123456789, -123456789); + TEST_ASSERT_EQUAL_INT32(v0, v1); + TEST_ASSERT_EQUAL_INT32(-123456789, v1); + TEST_ASSERT_EQUAL_INT32(v0, -123456789); + TEST_ASSERT_EQUAL_INT32(*p0, v1); + TEST_ASSERT_EQUAL_INT32(*p0, *p1); + TEST_ASSERT_EQUAL_INT32(*p0, -123456789); +} + + +void testEqualUints(void) +{ + unsigned int v0, v1; + unsigned int *p0, *p1; + + v0 = 19467; + v1 = 19467; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_UINT(1837, 1837); + TEST_ASSERT_EQUAL_UINT(v0, v1); + TEST_ASSERT_EQUAL_UINT(19467, v1); + TEST_ASSERT_EQUAL_UINT(v0, 19467); + TEST_ASSERT_EQUAL_UINT(*p0, v1); + TEST_ASSERT_EQUAL_UINT(*p0, *p1); + TEST_ASSERT_EQUAL_UINT(*p0, 19467); + TEST_ASSERT_EQUAL_UINT(60872u, 60872u); +} + + +void testEqualUint8s(void) +{ + UNITY_UINT8 v0, v1; + UNITY_UINT8 *p0, *p1; + + v0 = 0x22; + v1 = 0x22; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_UINT8(0x22, 0x22); + TEST_ASSERT_EQUAL_UINT8(v0, v1); + TEST_ASSERT_EQUAL_UINT8(0x22, v1); + TEST_ASSERT_EQUAL_UINT8(v0, 0x22); + TEST_ASSERT_EQUAL_UINT8(*p0, v1); + TEST_ASSERT_EQUAL_UINT8(*p0, *p1); + TEST_ASSERT_EQUAL_UINT8(*p0, 0x22); +} + +void testEqualUint8sWhenThereAreDifferencesOutside8Bits(void) +{ + TEST_ASSERT_EQUAL_UINT8(0x321,0x421); + TEST_ASSERT_EQUAL_UINT8(0xFF21,0x0021); +} + +void testEqualUint16s(void) +{ + UNITY_UINT16 v0, v1; + UNITY_UINT16 *p0, *p1; + + v0 = 0x9876; + v1 = 0x9876; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_UINT16(0x9876, 0x9876); + TEST_ASSERT_EQUAL_UINT16(v0, v1); + TEST_ASSERT_EQUAL_UINT16(0x9876, v1); + TEST_ASSERT_EQUAL_UINT16(v0, 0x9876); + TEST_ASSERT_EQUAL_UINT16(*p0, v1); + TEST_ASSERT_EQUAL_UINT16(*p0, *p1); + TEST_ASSERT_EQUAL_UINT16(*p0, 0x9876); +} + +void testEqualUint16sWhenThereAreDifferencesOutside16Bits(void) +{ + TEST_ASSERT_EQUAL_UINT16(0x54321,0x64321); + TEST_ASSERT_EQUAL_UINT16(0xFFFF4321,0x00004321); +} + +void testEqualUint32s(void) +{ + UNITY_UINT32 v0, v1; + UNITY_UINT32 *p0, *p1; + + v0 = 0x98760000; + v1 = 0x98760000; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_UINT32(0x98760000, 0x98760000); + TEST_ASSERT_EQUAL_UINT32(v0, v1); + TEST_ASSERT_EQUAL_UINT32(0x98760000, v1); + TEST_ASSERT_EQUAL_UINT32(v0, 0x98760000); + TEST_ASSERT_EQUAL_UINT32(*p0, v1); + TEST_ASSERT_EQUAL_UINT32(*p0, *p1); + TEST_ASSERT_EQUAL_UINT32(*p0, 0x98760000); +} + +void testNotEqual(void) +{ + TEST_ASSERT_NOT_EQUAL(0, 1); + TEST_ASSERT_NOT_EQUAL(1, 0); + TEST_ASSERT_NOT_EQUAL(100, 101); + TEST_ASSERT_NOT_EQUAL(0, -1); + TEST_ASSERT_NOT_EQUAL(65535, -65535); + TEST_ASSERT_NOT_EQUAL(75, 900); + TEST_ASSERT_NOT_EQUAL(-100, -101); +} + +void testEqualHex8s(void) +{ + UNITY_UINT8 v0, v1; + UNITY_UINT8 *p0, *p1; + + v0 = 0x22; + v1 = 0x22; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_HEX8(0x22, 0x22); + TEST_ASSERT_EQUAL_HEX8(v0, v1); + TEST_ASSERT_EQUAL_HEX8(0x22, v1); + TEST_ASSERT_EQUAL_HEX8(v0, 0x22); + TEST_ASSERT_EQUAL_HEX8(*p0, v1); + TEST_ASSERT_EQUAL_HEX8(*p0, *p1); + TEST_ASSERT_EQUAL_HEX8(*p0, 0x22); +} + +void testEqualHex8sWhenThereAreDifferencesOutside8Bits(void) +{ + TEST_ASSERT_EQUAL_HEX8(0x321,0x421); + TEST_ASSERT_EQUAL_HEX8(0xFF21,0x0021); +} + +void testEqualHex8sNegatives(void) +{ + UNITY_UINT8 v0, v1; + UNITY_UINT8 *p0, *p1; + + v0 = 0xDD; + v1 = 0xDD; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_HEX8(0xDD, 0xDD); + TEST_ASSERT_EQUAL_HEX8(v0, v1); + TEST_ASSERT_EQUAL_HEX8(0xDD, v1); + TEST_ASSERT_EQUAL_HEX8(v0, 0xDD); + TEST_ASSERT_EQUAL_HEX8(*p0, v1); + TEST_ASSERT_EQUAL_HEX8(*p0, *p1); + TEST_ASSERT_EQUAL_HEX8(*p0, 0xDD); +} + +void testEqualHex16s(void) +{ + UNITY_UINT16 v0, v1; + UNITY_UINT16 *p0, *p1; + + v0 = 0x9876; + v1 = 0x9876; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_HEX16(0x9876, 0x9876); + TEST_ASSERT_EQUAL_HEX16(v0, v1); + TEST_ASSERT_EQUAL_HEX16(0x9876, v1); + TEST_ASSERT_EQUAL_HEX16(v0, 0x9876); + TEST_ASSERT_EQUAL_HEX16(*p0, v1); + TEST_ASSERT_EQUAL_HEX16(*p0, *p1); + TEST_ASSERT_EQUAL_HEX16(*p0, 0x9876); +} + +void testEqualHex16sWhenThereAreDifferencesOutside16Bits(void) +{ + TEST_ASSERT_EQUAL_HEX16(0x54321,0x64321); + TEST_ASSERT_EQUAL_HEX16(0xFFFF4321,0x00004321); +} + +void testEqualHex32s(void) +{ + UNITY_UINT32 v0, v1; + UNITY_UINT32 *p0, *p1; + + v0 = 0x98765432ul; + v1 = 0x98765432ul; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_HEX32(0x98765432ul, 0x98765432ul); + TEST_ASSERT_EQUAL_HEX32(v0, v1); + TEST_ASSERT_EQUAL_HEX32(0x98765432ul, v1); + TEST_ASSERT_EQUAL_HEX32(v0, 0x98765432ul); + TEST_ASSERT_EQUAL_HEX32(*p0, v1); + TEST_ASSERT_EQUAL_HEX32(*p0, *p1); + TEST_ASSERT_EQUAL_HEX32(*p0, 0x98765432ul); +} + +void testEqualBits(void) +{ + UNITY_UINT32 v0 = 0xFF55AA00; + UNITY_UINT32 v1 = 0x55550000; + + TEST_ASSERT_BITS(v1, v0, 0x55550000); + TEST_ASSERT_BITS(v1, v0, 0xFF55CC00); + TEST_ASSERT_BITS(0xFFFFFFFF, v0, 0xFF55AA00); + TEST_ASSERT_BITS(0xFFFFFFFF, v0, v0); + TEST_ASSERT_BITS(0xF0F0F0F0, v0, 0xFC5DAE0F); + TEST_ASSERT_BITS_HIGH(v1, v0); + TEST_ASSERT_BITS_LOW(0x000055FF, v0); + TEST_ASSERT_BIT_HIGH(30, v0); + TEST_ASSERT_BIT_LOW(5, v0); +} + +void testNotEqualBitHigh(void) +{ + UNITY_UINT32 v0 = 0x7F55AA00; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_BIT_HIGH(31, v0); + VERIFY_FAILS_END +} + +void testNotEqualBitLow(void) +{ + UNITY_UINT32 v0 = 0xFF55AA00; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_BIT_LOW(30, v0); + VERIFY_FAILS_END +} + +void testNotEqualBitsHigh(void) +{ + UNITY_UINT32 v0 = 0xFF55AA00; + UNITY_UINT32 v1 = 0x55550000; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_BITS_HIGH(v0, v1); + VERIFY_FAILS_END + +} + +void testNotEqualBitsLow(void) +{ + UNITY_UINT32 v0 = 0xFF55AA00; + UNITY_UINT32 v1 = 0x55550000; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_BITS_LOW(v0, v1); + VERIFY_FAILS_END +} + + +void testEqualShorts(void) +{ + short v0, v1; + short *p0, *p1; + + v0 = 19467; + v1 = 19467; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_INT(1837, 1837); + TEST_ASSERT_EQUAL_INT(-2987, -2987); + TEST_ASSERT_EQUAL_INT(v0, v1); + TEST_ASSERT_EQUAL_INT(19467, v1); + TEST_ASSERT_EQUAL_INT(v0, 19467); + TEST_ASSERT_EQUAL_INT(*p0, v1); + TEST_ASSERT_EQUAL_INT(*p0, *p1); + TEST_ASSERT_EQUAL_INT(*p0, 19467); +} + +void testEqualUShorts(void) +{ + unsigned short v0, v1; + unsigned short *p0, *p1; + + v0 = 19467; + v1 = 19467; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_UINT(1837, 1837); + TEST_ASSERT_EQUAL_UINT(2987, 2987); + TEST_ASSERT_EQUAL_UINT(v0, v1); + TEST_ASSERT_EQUAL_UINT(19467, v1); + TEST_ASSERT_EQUAL_UINT(v0, 19467); + TEST_ASSERT_EQUAL_UINT(*p0, v1); + TEST_ASSERT_EQUAL_UINT(*p0, *p1); + TEST_ASSERT_EQUAL_UINT(*p0, 19467); +} + +void testEqualUInts(void) +{ + unsigned char v0, v1; + unsigned char *p0, *p1; + + v0 = 109; + v1 = 109; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_UINT(42, 42); + TEST_ASSERT_EQUAL_UINT(-116, -116); + TEST_ASSERT_EQUAL_UINT(v0, v1); + TEST_ASSERT_EQUAL_UINT(109, v1); + TEST_ASSERT_EQUAL_UINT(v0, 109); + TEST_ASSERT_EQUAL_UINT(*p0, v1); + TEST_ASSERT_EQUAL_UINT(*p0, *p1); + TEST_ASSERT_EQUAL_UINT(*p0, 109); +} + +void testEqualUChars(void) +{ + unsigned char v0, v1; + unsigned char *p0, *p1; + + v0 = 251; + v1 = 251; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_INT(42, 42); + TEST_ASSERT_EQUAL_INT(v0, v1); + TEST_ASSERT_EQUAL_INT(251, v1); + TEST_ASSERT_EQUAL_INT(v0, 251); + TEST_ASSERT_EQUAL_INT(*p0, v1); + TEST_ASSERT_EQUAL_INT(*p0, *p1); + TEST_ASSERT_EQUAL_INT(*p0, 251); +} + +void testEqualPointers(void) +{ + int v0, v1; + int *p0, *p1, *p2; + + v0 = 19467; + v1 = 18271; + p0 = &v0; + p1 = &v1; + p2 = &v1; + + TEST_ASSERT_EQUAL_PTR(p0, &v0); + TEST_ASSERT_EQUAL_PTR(&v1, p1); + TEST_ASSERT_EQUAL_PTR(p2, p1); + TEST_ASSERT_EQUAL_PTR(&v0, &v0); +} + +void testNotEqualPointers(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_PTR(0x12345678, 0x12345677); + VERIFY_FAILS_END +} + +void testIntsWithinDelta(void) +{ + TEST_ASSERT_INT_WITHIN(1, 5000, 5001); + TEST_ASSERT_INT_WITHIN(5, 5000, 4996); + TEST_ASSERT_INT_WITHIN(5, 5000, 5005); + TEST_ASSERT_INT_WITHIN(500, 50, -440); + + TEST_ASSERT_INT_WITHIN(2, -1, -1); + TEST_ASSERT_INT_WITHIN(5, 1, -1); + TEST_ASSERT_INT_WITHIN(5, -1, 1); +} + +void testIntsWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_INT_WITHIN_MESSAGE(1, 5000, 5001, "Custom Message."); + TEST_ASSERT_INT_WITHIN_MESSAGE(5, 5000, 4996, "Custom Message."); + TEST_ASSERT_INT_WITHIN_MESSAGE(5, 5000, 5005, "Custom Message."); + TEST_ASSERT_INT_WITHIN_MESSAGE(500, 50, -440, "Custom Message."); + + TEST_ASSERT_INT_WITHIN_MESSAGE(2, -1, -1, "Custom Message."); + TEST_ASSERT_INT_WITHIN_MESSAGE(5, 1, -1, "Custom Message."); + TEST_ASSERT_INT_WITHIN_MESSAGE(5, -1, 1, "Custom Message."); +} + +void testIntsNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT_WITHIN(5, 5000, 5006); + VERIFY_FAILS_END +} + +void testIntsNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT_WITHIN_MESSAGE(5, 5000, 5006, "Custom Message."); + VERIFY_FAILS_END +} + +void testUIntsWithinDelta(void) +{ + TEST_ASSERT_UINT_WITHIN(1, 5000, 5001); + TEST_ASSERT_UINT_WITHIN(5, 5000, 4996); + TEST_ASSERT_UINT_WITHIN(5, 5000, 5005); +} + +void testUIntsWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_UINT_WITHIN_MESSAGE(1, 5000, 5001, "Custom Message."); + TEST_ASSERT_UINT_WITHIN_MESSAGE(5, 5000, 4996, "Custom Message."); + TEST_ASSERT_UINT_WITHIN_MESSAGE(5, 5000, 5005, "Custom Message."); +} + +void testUIntsNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_WITHIN(1, 2147483647u, 2147483649u); + VERIFY_FAILS_END +} + +void testUIntsNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_WITHIN_MESSAGE(1, 2147483647u, 2147483649u, "Custom Message."); + VERIFY_FAILS_END +} + +void testUIntsNotWithinDeltaEvenThoughASignedIntWouldPassSmallFirst(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_WITHIN(5, 1, -1); + VERIFY_FAILS_END +} + +void testUIntsNotWithinDeltaEvenThoughASignedIntWouldPassSmallFirstAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_WITHIN_MESSAGE(5, 1, -1, "Custom Message."); + VERIFY_FAILS_END +} + +void testUIntsNotWithinDeltaEvenThoughASignedIntWouldPassBigFirst(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_WITHIN(5, -1, 1); + VERIFY_FAILS_END +} + +void testUIntsNotWithinDeltaEvenThoughASignedIntWouldPassBigFirstAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT_WITHIN_MESSAGE(5, -1, 1, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX32sWithinDelta(void) +{ + TEST_ASSERT_HEX32_WITHIN(1, 5000, 5001); + TEST_ASSERT_HEX32_WITHIN(5, 5000, 4996); + TEST_ASSERT_HEX32_WITHIN(5, 5000, 5005); +} + +void testHEX32sWithinDeltaShouldIgnoreSign(void) +{ + TEST_ASSERT_HEX32_WITHIN(1, 0x7FFFFFFF, 0x80000000); +} + +void testHEX32sWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_HEX32_WITHIN_MESSAGE(1, 5000, 5001, "Custom Message."); + TEST_ASSERT_HEX32_WITHIN_MESSAGE(5, 5000, 4996, "Custom Message."); + TEST_ASSERT_HEX32_WITHIN_MESSAGE(5, 5000, 5005, "Custom Message."); +} + +void testHEX32sNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_WITHIN(1, 2147483647u, 2147483649u); + VERIFY_FAILS_END +} + +void testHEX32sNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_WITHIN_MESSAGE(1, 2147483647u, 2147483649u, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX32sNotWithinDeltaEvenThoughASignedIntWouldPass(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_WITHIN(5, 1, -1); + VERIFY_FAILS_END +} + +void testHEX32sNotWithinDeltaEvenThoughASignedIntWouldPassAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX32_WITHIN_MESSAGE(5, 1, -1, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX16sWithinDelta(void) +{ + TEST_ASSERT_HEX16_WITHIN(1, 5000, 5001); + TEST_ASSERT_HEX16_WITHIN(5, 5000, 4996); + TEST_ASSERT_HEX16_WITHIN(5, 5000, 5005); +} + +void testHEX16sWithinDeltaShouldIgnoreSign(void) +{ + TEST_ASSERT_HEX16_WITHIN(1, 0x7FFF, 0x8000); +} + +void testHEX16sWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_HEX16_WITHIN_MESSAGE(1, 5000, 5001, "Custom Message."); + TEST_ASSERT_HEX16_WITHIN_MESSAGE(5, 5000, 4996, "Custom Message."); + TEST_ASSERT_HEX16_WITHIN_MESSAGE(5, 5000, 5005, "Custom Message."); +} + +void testHEX16sWithinDeltaWhenThereAreDifferenceOutsideOf16Bits(void) +{ + TEST_ASSERT_HEX16_WITHIN(5, 0x54321, 0x44321); +} + +void testHEX16sWithinDeltaWhenThereAreDifferenceOutsideOf16BitsAndCustomMessage(void) +{ + TEST_ASSERT_HEX16_WITHIN_MESSAGE(5, 0x54321, 0x44321, "Custom Message."); +} + +void testHEX16sNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX16_WITHIN(2, 65535, 0); + VERIFY_FAILS_END +} + +void testHEX16sNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX16_WITHIN_MESSAGE(2, 65535, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testHEX8sWithinDelta(void) +{ + TEST_ASSERT_HEX8_WITHIN(1, 254, 255); + TEST_ASSERT_HEX8_WITHIN(5, 251, 255); + TEST_ASSERT_HEX8_WITHIN(5, 1, 4); +} + +void testHEX8sWithinDeltaShouldIgnoreSign(void) +{ + TEST_ASSERT_HEX8_WITHIN(1, 0x7F, 0x80); +} + +void testHEX8sWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_HEX8_WITHIN_MESSAGE(1, 254, 255, "Custom Message."); + TEST_ASSERT_HEX8_WITHIN_MESSAGE(5, 251, 255, "Custom Message."); + TEST_ASSERT_HEX8_WITHIN_MESSAGE(5, 1, 4, "Custom Message."); +} + +void testHEX8sWithinDeltaWhenThereAreDifferenceOutsideOf8Bits(void) +{ + TEST_ASSERT_HEX8_WITHIN(5, 0x123, 0xF23); +} + +void testHEX8sWithinDeltaWhenThereAreDifferenceOutsideOf8BitsAndCustomMessage(void) +{ + TEST_ASSERT_HEX8_WITHIN_MESSAGE(5, 0x123, 0xF23, "Custom Message."); +} + +void testHEX8sNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX8_WITHIN(2, 255, 0); + VERIFY_FAILS_END +} + +void testHEX8sNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX8_WITHIN_MESSAGE(2, 255, 0, "Custom Message."); + VERIFY_FAILS_END +} + +/*-----------------*/ + +void testUINT32sWithinDelta(void) +{ + TEST_ASSERT_UINT32_WITHIN(1, 5000, 5001); + TEST_ASSERT_UINT32_WITHIN(5, 5000, 4996); + TEST_ASSERT_UINT32_WITHIN(5, 5000, 5005); +} + +void testUINT32sWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_UINT32_WITHIN_MESSAGE(1, 5000, 5001, "Custom Message."); + TEST_ASSERT_UINT32_WITHIN_MESSAGE(5, 5000, 4996, "Custom Message."); + TEST_ASSERT_UINT32_WITHIN_MESSAGE(5, 5000, 5005, "Custom Message."); +} + +void testUINT32sNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT32_WITHIN(1, 2147483647u, 2147483649u); + VERIFY_FAILS_END +} + +void testUINT32sNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT32_WITHIN_MESSAGE(1, 2147483647u, 2147483649u, "Custom Message."); + VERIFY_FAILS_END +} + +void testUINT32sNotWithinDeltaEvenThoughASignedIntWouldPass(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT32_WITHIN(5, 1, -1); + VERIFY_FAILS_END +} + +void testUINT32sNotWithinDeltaEvenThoughASignedIntWouldPassAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT32_WITHIN_MESSAGE(5, 1, -1, "Custom Message."); + VERIFY_FAILS_END +} + +void testUINT16sWithinDelta(void) +{ + TEST_ASSERT_UINT16_WITHIN(1, 5000, 5001); + TEST_ASSERT_UINT16_WITHIN(5, 5000, 4996); + TEST_ASSERT_UINT16_WITHIN(5, 5000, 5005); +} + +void testUINT16sWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_UINT16_WITHIN_MESSAGE(1, 5000, 5001, "Custom Message."); + TEST_ASSERT_UINT16_WITHIN_MESSAGE(5, 5000, 4996, "Custom Message."); + TEST_ASSERT_UINT16_WITHIN_MESSAGE(5, 5000, 5005, "Custom Message."); +} + +void testUINT16sWithinDeltaWhenThereAreDifferenceOutsideOf16Bits(void) +{ + TEST_ASSERT_UINT16_WITHIN(5, 0x54321, 0x44321); +} + +void testUINT16sWithinDeltaWhenThereAreDifferenceOutsideOf16BitsAndCustomMessage(void) +{ + TEST_ASSERT_UINT16_WITHIN_MESSAGE(5, 0x54321, 0x44321, "Custom Message."); +} + +void testUINT16sNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT16_WITHIN(2, 65535, 0); + VERIFY_FAILS_END +} + +void testUINT16sNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT16_WITHIN_MESSAGE(2, 65535, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testUINT8sWithinDelta(void) +{ + TEST_ASSERT_UINT8_WITHIN(1, 254, 255); + TEST_ASSERT_UINT8_WITHIN(5, 251, 255); + TEST_ASSERT_UINT8_WITHIN(5, 1, 4); +} + +void testUINT8sWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_UINT8_WITHIN_MESSAGE(1, 254, 255, "Custom Message."); + TEST_ASSERT_UINT8_WITHIN_MESSAGE(5, 251, 255, "Custom Message."); + TEST_ASSERT_UINT8_WITHIN_MESSAGE(5, 1, 4, "Custom Message."); +} + +void testUINT8sWithinDeltaWhenThereAreDifferenceOutsideOf8Bits(void) +{ + TEST_ASSERT_UINT8_WITHIN(5, 0x123, 0xF23); +} + +void testUINT8sWithinDeltaWhenThereAreDifferenceOutsideOf8BitsAndCustomMessage(void) +{ + TEST_ASSERT_UINT8_WITHIN_MESSAGE(5, 0x123, 0xF23, "Custom Message."); +} + +void testUINT8sNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT8_WITHIN(2, 255, 0); + VERIFY_FAILS_END +} + +void testUINT8sNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT8_WITHIN_MESSAGE(2, 255, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testINT32sWithinDelta(void) +{ + TEST_ASSERT_INT32_WITHIN(1, 5000, 5001); + TEST_ASSERT_INT32_WITHIN(5, 1, -2); + TEST_ASSERT_INT32_WITHIN(5, -2, 1); +} + +void testINT32sWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_INT32_WITHIN_MESSAGE(1, 5000, 5001, "Custom Message."); +} + +void testINT32sNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT32_WITHIN(1, -3, 1); + VERIFY_FAILS_END +} + +void testINT32sNotWithinDeltaAndDifferenceOverflows(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT32_WITHIN(1, -1, 0x7FFFFFFF); + VERIFY_FAILS_END +} +void testINT32sNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT32_WITHIN_MESSAGE(1, -2, 1, "Custom Message."); + VERIFY_FAILS_END +} + +void testINT16sWithinDelta(void) +{ + TEST_ASSERT_INT16_WITHIN(1, 5000, 5001); + TEST_ASSERT_INT16_WITHIN(5, 2, -2); + TEST_ASSERT_INT16_WITHIN(5, -2, 2); +} + +void testINT16sWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_INT16_WITHIN_MESSAGE(1, 5000, 5001, "Custom Message."); +} + +void testINT16sWithinDeltaWhenThereAreDifferenceOutsideOf16Bits(void) +{ + TEST_ASSERT_INT16_WITHIN(5, 0x54321, 0x44321); +} + +void testINT16sWithinDeltaWhenThereAreDifferenceOutsideOf16BitsAndCustomMessage(void) +{ + TEST_ASSERT_INT16_WITHIN_MESSAGE(5, 0x54321, 0x44321, "Custom Message."); +} + +void testINT16sNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT16_WITHIN(2, 4, -2); + VERIFY_FAILS_END +} + +void testINT16sNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT16_WITHIN_MESSAGE(2, 3, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testINT8sWithinDelta(void) +{ + TEST_ASSERT_INT8_WITHIN(1, 127, 126); + TEST_ASSERT_INT8_WITHIN(5, -2, 2); + TEST_ASSERT_INT8_WITHIN(5, 2, -2); +} + +void testINT8sWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_INT8_WITHIN_MESSAGE(5, 1, 4, "Custom Message."); +} + +void testINT8sWithinDeltaWhenThereAreDifferenceOutsideOf8Bits(void) +{ + TEST_ASSERT_INT8_WITHIN(5, 0x123, 0xF23); +} + +void testINT8sWithinDeltaWhenThereAreDifferenceOutsideOf8BitsAndCustomMessage(void) +{ + TEST_ASSERT_INT8_WITHIN_MESSAGE(5, 0x123, 0xF23, "Custom Message."); +} + +void testINT8sNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT8_WITHIN(2, -3, 0); + VERIFY_FAILS_END +} + +void testINT8sNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT8_WITHIN_MESSAGE(2, -4, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testCHARsWithinDelta(void) +{ + TEST_ASSERT_CHAR_WITHIN(1, 'M', 'L'); + TEST_ASSERT_CHAR_WITHIN(5, -2, 2); + TEST_ASSERT_CHAR_WITHIN(5, 2, -2); +} + +void testCHARsWithinDeltaAndCustomMessage(void) +{ + TEST_ASSERT_CHAR_WITHIN_MESSAGE(5, 1, 4, "Custom Message."); +} + +void testCHARsWithinDeltaWhenThereAreDifferenceOutsideOf8Bits(void) +{ + TEST_ASSERT_CHAR_WITHIN(5, 0x123, 0xF23); +} + +void testCHARsWithinDeltaWhenThereAreDifferenceOutsideOf8BitsAndCustomMessage(void) +{ + TEST_ASSERT_CHAR_WITHIN_MESSAGE(5, 0x123, 0xF23, "Custom Message."); +} + +void testCHARsNotWithinDelta(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_CHAR_WITHIN(2, -3, 0); + VERIFY_FAILS_END +} + +void testCHARsNotWithinDeltaAndCustomMessage(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_CHAR_WITHIN_MESSAGE(2, -4, 0, "Custom Message."); + VERIFY_FAILS_END +} + +void testNotEqualINT(void) +{ + UNITY_INT v0, v1; + UNITY_INT *p0, *p1; + + v0 = 302; + v1 = 3334; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_INT(v0, v1); + TEST_ASSERT_NOT_EQUAL_INT(*p0, v1); + TEST_ASSERT_NOT_EQUAL_INT(v0, *p1); + TEST_ASSERT_NOT_EQUAL_INT(*p1, *p0); +} + +void testNotNotEqualINT(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_INT(302, 302); + VERIFY_FAILS_END +} + +void testNotEqualINT8(void) +{ + UNITY_INT8 v0, v1; + UNITY_INT8 *p0, *p1; + + v0 = -128; + v1 = 127; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_INT8(v0, v1); + TEST_ASSERT_NOT_EQUAL_INT8(*p0, v1); + TEST_ASSERT_NOT_EQUAL_INT8(v0, *p1); + TEST_ASSERT_NOT_EQUAL_INT8(*p1, *p0); +} + +void testNotNotEqualINT8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_INT8(-128, -128); + VERIFY_FAILS_END +} + +void testNotEqualCHAR(void) +{ + char v0, v1; + char *p0, *p1; + + v0 = -128; + v1 = 127; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_CHAR(v0, v1); + TEST_ASSERT_NOT_EQUAL_CHAR(*p0, v1); + TEST_ASSERT_NOT_EQUAL_CHAR(v0, *p1); + TEST_ASSERT_NOT_EQUAL_CHAR(*p1, *p0); +} + +void testNotNotEqualCHAR(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_CHAR(127, 127); + VERIFY_FAILS_END +} + +void testNotEqualINT16(void) +{ + UNITY_INT16 v0, v1; + UNITY_INT16 *p0, *p1; + + v0 = -32768; + v1 = 32767; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_INT16(v0, v1); + TEST_ASSERT_NOT_EQUAL_INT16(*p0, v1); + TEST_ASSERT_NOT_EQUAL_INT16(v0, *p1); + TEST_ASSERT_NOT_EQUAL_INT16(*p1, *p0); +} + +void testNotNotEqualINT16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_INT16(-32768, -32768); + VERIFY_FAILS_END +} + +void testNotEqualINT32(void) +{ + UNITY_INT32 v0, v1; + UNITY_INT32 *p0, *p1; + + v0 = -214783648; + v1 = 214783647; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_INT32(v0, v1); + TEST_ASSERT_NOT_EQUAL_INT32(*p0, v1); + TEST_ASSERT_NOT_EQUAL_INT32(v0, *p1); + TEST_ASSERT_NOT_EQUAL_INT32(*p1, *p0); +} + +void testNotNotEqualINT32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_INT32(-214783648, -214783648); + VERIFY_FAILS_END +} + +void testNotEqualUINT(void) +{ + UNITY_UINT v0, v1; + UNITY_UINT *p0, *p1; + + v0 = 0; + v1 = 1; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_UINT(v0, v1); + TEST_ASSERT_NOT_EQUAL_UINT(*p0, v1); + TEST_ASSERT_NOT_EQUAL_UINT(v0, *p1); + TEST_ASSERT_NOT_EQUAL_UINT(*p1, *p0); +} + +void testNotNotEqualUINT(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_UINT(1, 1); + VERIFY_FAILS_END +} + +void testNotEqualUINT8(void) +{ + UNITY_UINT8 v0, v1; + UNITY_UINT8 *p0, *p1; + + v0 = 0; + v1 = 255; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_UINT8(v0, v1); + TEST_ASSERT_NOT_EQUAL_UINT8(*p0, v1); + TEST_ASSERT_NOT_EQUAL_UINT8(v0, *p1); + TEST_ASSERT_NOT_EQUAL_UINT8(*p1, *p0); +} + +void testNotNotEqualUINT8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_UINT8(255, 255); + VERIFY_FAILS_END +} + +void testNotEqualUINT16(void) +{ + UNITY_UINT16 v0, v1; + UNITY_UINT16 *p0, *p1; + + v0 = 0; + v1 = 65535; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_UINT16(v0, v1); + TEST_ASSERT_NOT_EQUAL_UINT16(*p0, v1); + TEST_ASSERT_NOT_EQUAL_UINT16(v0, *p1); + TEST_ASSERT_NOT_EQUAL_UINT16(*p1, *p0); +} + +void testNotNotEqualUINT16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_UINT16(65535, 65535); + VERIFY_FAILS_END +} + +void testNotEqualUINT32(void) +{ + UNITY_UINT32 v0, v1; + UNITY_UINT32 *p0, *p1; + + v0 = 0u; + v1 = 4294967295u; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_UINT32(v0, v1); + TEST_ASSERT_NOT_EQUAL_UINT32(*p0, v1); + TEST_ASSERT_NOT_EQUAL_UINT32(v0, *p1); + TEST_ASSERT_NOT_EQUAL_UINT32(*p1, *p0); +} + +void testNotNotEqualUINT32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_UINT32(4294967295u, 4294967295u); + VERIFY_FAILS_END +} + +void testNotEqualHEX8(void) +{ + UNITY_UINT8 v0, v1; + UNITY_UINT8 *p0, *p1; + + v0 = 0x00; + v1 = 0xFF; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_HEX8(v0, v1); + TEST_ASSERT_NOT_EQUAL_HEX8(*p0, v1); + TEST_ASSERT_NOT_EQUAL_HEX8(v0, *p1); + TEST_ASSERT_NOT_EQUAL_HEX8(*p1, *p0); +} + +void testNotNotEqualHEX8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_HEX8(0xFF, 0xFF); + VERIFY_FAILS_END +} + +void testNotEqualHEX16(void) +{ + UNITY_UINT16 v0, v1; + UNITY_UINT16 *p0, *p1; + + v0 = 0x0000; + v1 = 0xFFFF; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_HEX16(v0, v1); + TEST_ASSERT_NOT_EQUAL_HEX16(*p0, v1); + TEST_ASSERT_NOT_EQUAL_HEX16(v0, *p1); + TEST_ASSERT_NOT_EQUAL_HEX16(*p1, *p0); +} + +void testNotNotEqualHEX16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_HEX16(0xFFFF, 0xFFFF); + VERIFY_FAILS_END +} + +void testNotEqualHEX32(void) +{ + UNITY_UINT32 v0, v1; + UNITY_UINT32 *p0, *p1; + + v0 = 0x00000000; + v1 = 0xFFFFFFFF; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_NOT_EQUAL_HEX32(v0, v1); + TEST_ASSERT_NOT_EQUAL_HEX32(*p0, v1); + TEST_ASSERT_NOT_EQUAL_HEX32(v0, *p1); + TEST_ASSERT_NOT_EQUAL_HEX32(*p1, *p0); +} + +void testNotNotEqualHEX32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_NOT_EQUAL_HEX32(0xFFFFFFFF, 0xFFFFFFFF); + VERIFY_FAILS_END +} + +/*-----------------*/ + +void testGreaterThan(void) +{ + UNITY_INT v0, v1; + UNITY_INT *p0, *p1; + + v0 = 0; + v1 = 1; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN(v0, v1); + TEST_ASSERT_GREATER_THAN(*p0, v1); + TEST_ASSERT_GREATER_THAN(v0, *p1); + TEST_ASSERT_GREATER_THAN(*p0, *p1); +} + +void testNotGreaterThan(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN(0, -1); + VERIFY_FAILS_END +} + +void testGreaterThanINT(void) +{ + UNITY_INT v0, v1; + UNITY_INT *p0, *p1; + + v0 = 302; + v1 = 3334; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_INT(v0, v1); + TEST_ASSERT_GREATER_THAN_INT(*p0, v1); + TEST_ASSERT_GREATER_THAN_INT(v0, *p1); + TEST_ASSERT_GREATER_THAN_INT(*p0, *p1); +} + +void testNotGreaterThanINT(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_INT(3334, 302); + VERIFY_FAILS_END +} + +void testGreaterThanINT8(void) +{ + UNITY_INT8 v0, v1; + UNITY_INT8 *p0, *p1; + + v0 = -128; + v1 = 127; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_INT8(v0, v1); + TEST_ASSERT_GREATER_THAN_INT8(*p0, v1); + TEST_ASSERT_GREATER_THAN_INT8(v0, *p1); + TEST_ASSERT_GREATER_THAN_INT8(*p0, *p1); +} + +void testNotGreaterThanINT8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_INT8(127, -128); + VERIFY_FAILS_END +} + +void testGreaterThanCHAR(void) +{ + char v0, v1; + char *p0, *p1; + + v0 = -128; + v1 = 127; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_CHAR(v0, v1); + TEST_ASSERT_GREATER_THAN_CHAR(*p0, v1); + TEST_ASSERT_GREATER_THAN_CHAR(v0, *p1); + TEST_ASSERT_GREATER_THAN_CHAR(*p0, *p1); +} + +void testNotGreaterThanCHAR(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_CHAR(127, -128); + VERIFY_FAILS_END +} + +void testGreaterThanINT16(void) +{ + UNITY_INT16 v0, v1; + UNITY_INT16 *p0, *p1; + + v0 = -32768; + v1 = 32767; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_INT16(v0, v1); + TEST_ASSERT_GREATER_THAN_INT16(*p0, v1); + TEST_ASSERT_GREATER_THAN_INT16(v0, *p1); + TEST_ASSERT_GREATER_THAN_INT16(*p0, *p1); +} + +void testNotGreaterThanINT16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_INT16(32768, -32768); + VERIFY_FAILS_END +} + +void testGreaterThanINT32(void) +{ + UNITY_INT32 v0, v1; + UNITY_INT32 *p0, *p1; + + v0 = -214783648; + v1 = 214783647; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_INT32(v0, v1); + TEST_ASSERT_GREATER_THAN_INT32(*p0, v1); + TEST_ASSERT_GREATER_THAN_INT32(v0, *p1); + TEST_ASSERT_GREATER_THAN_INT32(*p0, *p1); +} + +void testNotGreaterThanINT32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_INT32(214783647, -214783648); + VERIFY_FAILS_END +} + +void testGreaterThanUINT(void) +{ + UNITY_UINT v0, v1; + UNITY_UINT *p0, *p1; + + v0 = 0; + v1 = 1; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_UINT(v0, v1); + TEST_ASSERT_GREATER_THAN_UINT(*p0, v1); + TEST_ASSERT_GREATER_THAN_UINT(v0, *p1); + TEST_ASSERT_GREATER_THAN_UINT(*p0, *p1); +} + +void testNotGreaterThanUINT(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_UINT(1, 0); + VERIFY_FAILS_END +} + +void testGreaterThanUINT8(void) +{ + UNITY_UINT8 v0, v1; + UNITY_UINT8 *p0, *p1; + + v0 = 0; + v1 = 255; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_UINT8(v0, v1); + TEST_ASSERT_GREATER_THAN_UINT8(*p0, v1); + TEST_ASSERT_GREATER_THAN_UINT8(v0, *p1); + TEST_ASSERT_GREATER_THAN_UINT8(*p0, *p1); +} + +void testNotGreaterThanUINT8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_UINT8(255, 0); + VERIFY_FAILS_END +} + +void testGreaterThanUINT16(void) +{ + UNITY_UINT16 v0, v1; + UNITY_UINT16 *p0, *p1; + + v0 = 0; + v1 = 65535; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_UINT16(v0, v1); + TEST_ASSERT_GREATER_THAN_UINT16(*p0, v1); + TEST_ASSERT_GREATER_THAN_UINT16(v0, *p1); + TEST_ASSERT_GREATER_THAN_UINT16(*p0, *p1); +} + +void testNotGreaterThanUINT16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_UINT16(65535, 0); + VERIFY_FAILS_END +} + +void testGreaterThanUINT32(void) +{ + UNITY_UINT32 v0, v1; + UNITY_UINT32 *p0, *p1; + + v0 = 0u; + v1 = 4294967295u; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_UINT32(v0, v1); + TEST_ASSERT_GREATER_THAN_UINT32(*p0, v1); + TEST_ASSERT_GREATER_THAN_UINT32(v0, *p1); + TEST_ASSERT_GREATER_THAN_UINT32(*p0, *p1); +} + +void testNotGreaterThanUINT32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_UINT32(4294967295u, 0); + VERIFY_FAILS_END +} + +void testGreaterThanHEX8(void) +{ + UNITY_UINT8 v0, v1; + UNITY_UINT8 *p0, *p1; + + v0 = 0x00; + v1 = 0xFF; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_HEX8(v0, v1); + TEST_ASSERT_GREATER_THAN_HEX8(*p0, v1); + TEST_ASSERT_GREATER_THAN_HEX8(v0, *p1); + TEST_ASSERT_GREATER_THAN_HEX8(*p0, *p1); +} + +void testNotGreaterThanHEX8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_HEX8(0xFF, 0x00); + VERIFY_FAILS_END +} + +void testGreaterThanHEX16(void) +{ + UNITY_UINT16 v0, v1; + UNITY_UINT16 *p0, *p1; + + v0 = 0x0000; + v1 = 0xFFFF; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_HEX16(v0, v1); + TEST_ASSERT_GREATER_THAN_HEX16(*p0, v1); + TEST_ASSERT_GREATER_THAN_HEX16(v0, *p1); + TEST_ASSERT_GREATER_THAN_HEX16(*p0, *p1); +} + +void testNotGreaterThanHEX16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_HEX16(0xFFFF, 0x00); + VERIFY_FAILS_END +} + +void testGreaterThanHEX32(void) +{ + UNITY_UINT32 v0, v1; + UNITY_UINT32 *p0, *p1; + + v0 = 0x00000000; + v1 = 0xFFFFFFFF; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_GREATER_THAN_HEX32(v0, v1); + TEST_ASSERT_GREATER_THAN_HEX32(*p0, v1); + TEST_ASSERT_GREATER_THAN_HEX32(v0, *p1); + TEST_ASSERT_GREATER_THAN_HEX32(*p0, *p1); +} + +void testNotGreaterThanHEX32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_THAN_HEX32(0xFFFFFFFF, 0x00); + VERIFY_FAILS_END +} + +void testGreaterOrEqual(void) +{ + UNITY_INT v0, v1, v2; + UNITY_INT *p0, *p1, *p2; + + v0 = 0; + v1 = 1; + v2 = 0; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL(*p0, *p2); +} + +void testNotGreaterOrEqual(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL(0, -1); + VERIFY_FAILS_END +} + +void testGreaterOrEqualINT(void) +{ + UNITY_INT v0, v1, v2; + UNITY_INT *p0, *p1, *p2; + + v0 = 302; + v1 = 3334; + v2 = 302; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_INT(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_INT(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_INT(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_INT(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_INT(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_INT(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_INT(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_INT(*p0, *p2); +} + +void testNotGreaterOrEqualINT(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_INT(3334, 302); + VERIFY_FAILS_END +} + +void testGreaterOrEqualINT8(void) +{ + UNITY_INT8 v0, v1, v2; + UNITY_INT8 *p0, *p1, *p2; + + v0 = -128; + v1 = 127; + v2 = -128; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_INT8(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_INT8(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_INT8(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_INT8(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_INT8(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_INT8(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_INT8(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_INT8(*p0, *p2); +} + +void testNotGreaterOrEqualINT8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_INT8(127, -128); + VERIFY_FAILS_END +} + +void testGreaterOrEqualCHAR(void) +{ + char v0, v1, v2; + char *p0, *p1, *p2; + + v0 = -128; + v1 = 127; + v2 = -128; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_CHAR(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_CHAR(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_CHAR(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_CHAR(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_CHAR(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_CHAR(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_CHAR(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_CHAR(*p0, *p2); +} + +void testNotGreaterOrEqualCHAR(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_CHAR(127, -128); + VERIFY_FAILS_END +} + +void testGreaterOrEqualINT16(void) +{ + UNITY_INT16 v0, v1, v2; + UNITY_INT16 *p0, *p1, *p2; + + v0 = -32768; + v1 = 32767; + v2 = -32768; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_INT16(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_INT16(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_INT16(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_INT16(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_INT16(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_INT16(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_INT16(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_INT16(*p0, *p2); +} + +void testNotGreaterOrEqualINT16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_INT16(32767, -32768); + VERIFY_FAILS_END +} + +void testGreaterOrEqualINT32(void) +{ + UNITY_INT32 v0, v1, v2; + UNITY_INT32 *p0, *p1, *p2; + + v0 = -214783648; + v1 = 214783647; + v2 = -214783648; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_INT32(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_INT32(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_INT32(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_INT32(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_INT32(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_INT32(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_INT32(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_INT32(*p0, *p2); +} + +void testNotGreaterOrEqualINT32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_INT32(214783647, -214783648); + VERIFY_FAILS_END +} + +void testGreaterOrEqualUINT(void) +{ + UNITY_UINT v0, v1, v2; + UNITY_UINT *p0, *p1, *p2; + + v0 = 0; + v1 = 1; + v2 = 0; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_UINT(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT(*p0, *p2); +} + +void testNotGreaterOrEqualUINT(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_UINT(1, 0); + VERIFY_FAILS_END +} + +void testGreaterOrEqualUINT8(void) +{ + UNITY_UINT8 v0, v1, v2; + UNITY_UINT8 *p0, *p1, *p2; + + v0 = 0; + v1 = 255; + v2 = 0; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_UINT8(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT8(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT8(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT8(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT8(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT8(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT8(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT8(*p0, *p2); +} + +void testNotGreaterOrEqualUINT8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_UINT8(255, 0); + VERIFY_FAILS_END +} + +void testGreaterOrEqualUINT16(void) +{ + UNITY_UINT16 v0, v1, v2; + UNITY_UINT16 *p0, *p1, *p2; + + v0 = 0; + v1 = 65535; + v2 = 0; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_UINT16(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT16(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT16(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT16(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT16(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT16(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT16(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT16(*p0, *p2); +} + +void testNotGreaterOrEqualUINT16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_UINT16(65535, 0); + VERIFY_FAILS_END +} + +void testGreaterOrEqualUINT32(void) +{ + UNITY_UINT32 v0, v1, v2; + UNITY_UINT32 *p0, *p1, *p2; + + v0 = 0; + v1 = 4294967295u; + v2 = 0; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_UINT32(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT32(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT32(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT32(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_UINT32(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT32(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT32(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_UINT32(*p0, *p2); +} + +void testNotGreaterOrEqualUINT32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_UINT32(4294967295u, 0); + VERIFY_FAILS_END +} + +void testGreaterOrEqualHEX8(void) +{ + UNITY_UINT8 v0, v1, v2; + UNITY_UINT8 *p0, *p1, *p2; + + v0 = 0x00; + v1 = 0xFF; + v2 = 0x00; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_HEX8(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX8(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX8(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX8(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX8(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_HEX8(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_HEX8(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_HEX8(*p0, *p2); +} + +void testNotGreaterOrEqualHEX8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_HEX8(0xFF, 0x00); + VERIFY_FAILS_END +} + +void testGreaterOrEqualHEX16(void) +{ + UNITY_UINT16 v0, v1, v2; + UNITY_UINT16 *p0, *p1, *p2; + + v0 = 0x0000; + v1 = 0xFFFF; + v2 = 0x0000; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_HEX16(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX16(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX16(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX16(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX16(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_HEX16(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_HEX16(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_HEX16(*p0, *p2); +} + +void testNotGreaterOrEqualHEX16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_HEX16(0xFFFF, 0x00); + VERIFY_FAILS_END +} + +void testGreaterOrEqualHEX32(void) +{ + UNITY_UINT32 v0, v1, v2; + UNITY_UINT32 *p0, *p1, *p2; + + v0 = 0x00000000; + v1 = 0xFFFFFFFF; + v2 = 0x00000000; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_GREATER_OR_EQUAL_HEX32(v0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX32(*p0, v1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX32(v0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX32(*p0, *p1); + TEST_ASSERT_GREATER_OR_EQUAL_HEX32(v0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_HEX32(*p0, v2); + TEST_ASSERT_GREATER_OR_EQUAL_HEX32(v0, *p2); + TEST_ASSERT_GREATER_OR_EQUAL_HEX32(*p0, *p2); +} + +void testNotGreaterOrEqualHEX32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_GREATER_OR_EQUAL_HEX32(0xFFFFFFFF, 0x00); + VERIFY_FAILS_END +} + +/*-----------------*/ + +void testLessThan(void) +{ + UNITY_INT v0, v1; + UNITY_INT *p0, *p1; + + v0 = 0; + v1 = -1; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN(v0, v1); + TEST_ASSERT_LESS_THAN(*p0, v1); + TEST_ASSERT_LESS_THAN(v0, *p1); + TEST_ASSERT_LESS_THAN(*p0, *p1); +} + +void testNotLessThan(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN(0, 1); + VERIFY_FAILS_END +} + +void testLessThanINT(void) +{ + UNITY_INT v0, v1; + UNITY_INT *p0, *p1; + + v0 = 3334; + v1 = 302; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_INT(v0, v1); + TEST_ASSERT_LESS_THAN_INT(*p0, v1); + TEST_ASSERT_LESS_THAN_INT(v0, *p1); + TEST_ASSERT_LESS_THAN_INT(*p0, *p1); +} + +void testNotLessThanINT(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_INT(302, 3334); + VERIFY_FAILS_END +} + +void testLessThanINT8(void) +{ + UNITY_INT8 v0, v1; + UNITY_INT8 *p0, *p1; + + v0 = 127; + v1 = -128; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_INT8(v0, v1); + TEST_ASSERT_LESS_THAN_INT8(*p0, v1); + TEST_ASSERT_LESS_THAN_INT8(v0, *p1); + TEST_ASSERT_LESS_THAN_INT8(*p0, *p1); +} + +void testNotLessThanINT8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_INT8(-128, 127); + VERIFY_FAILS_END +} + +void testLessThanCHAR(void) +{ + char v0, v1; + char *p0, *p1; + + v0 = 127; + v1 = -128; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_CHAR(v0, v1); + TEST_ASSERT_LESS_THAN_CHAR(*p0, v1); + TEST_ASSERT_LESS_THAN_CHAR(v0, *p1); + TEST_ASSERT_LESS_THAN_CHAR(*p0, *p1); +} + +void testNotLessThanCHAR(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_CHAR(-128, 127); + VERIFY_FAILS_END +} + +void testLessThanINT16(void) +{ + UNITY_INT16 v0, v1; + UNITY_INT16 *p0, *p1; + + v0 = 32767; + v1 = -32768; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_INT16(v0, v1); + TEST_ASSERT_LESS_THAN_INT16(*p0, v1); + TEST_ASSERT_LESS_THAN_INT16(v0, *p1); + TEST_ASSERT_LESS_THAN_INT16(*p0, *p1); +} + +void testNotLessThanINT16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_INT16(-32768, 32767); + VERIFY_FAILS_END +} + +void testLessThanINT32(void) +{ + UNITY_INT32 v0, v1; + UNITY_INT32 *p0, *p1; + + v0 = 214783647; + v1 = -214783648; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_INT32(v0, v1); + TEST_ASSERT_LESS_THAN_INT32(*p0, v1); + TEST_ASSERT_LESS_THAN_INT32(v0, *p1); + TEST_ASSERT_LESS_THAN_INT32(*p0, *p1); +} + +void testNotLessThanINT32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_INT32(-214783648, 214783647); + VERIFY_FAILS_END +} + +void testLessThanUINT(void) +{ + UNITY_UINT v0, v1; + UNITY_UINT *p0, *p1; + + v0 = 1; + v1 = 0; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_UINT(v0, v1); + TEST_ASSERT_LESS_THAN_UINT(*p0, v1); + TEST_ASSERT_LESS_THAN_UINT(v0, *p1); + TEST_ASSERT_LESS_THAN_UINT(*p0, *p1); +} + +void testNotLessThanUINT(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_UINT(0, 1); + VERIFY_FAILS_END +} + +void testLessThanUINT8(void) +{ + UNITY_UINT8 v0, v1; + UNITY_UINT8 *p0, *p1; + + v0 = 255; + v1 = 0; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_UINT8(v0, v1); + TEST_ASSERT_LESS_THAN_UINT8(*p0, v1); + TEST_ASSERT_LESS_THAN_UINT8(v0, *p1); + TEST_ASSERT_LESS_THAN_UINT8(*p0, *p1); +} + +void testNotLessThanUINT8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_UINT8(0, 255); + VERIFY_FAILS_END +} + +void testLessThanUINT16(void) +{ + UNITY_UINT16 v0, v1; + UNITY_UINT16 *p0, *p1; + + v0 = 65535; + v1 = 0; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_UINT16(v0, v1); + TEST_ASSERT_LESS_THAN_UINT16(*p0, v1); + TEST_ASSERT_LESS_THAN_UINT16(v0, *p1); + TEST_ASSERT_LESS_THAN_UINT16(*p0, *p1); +} + +void testNotLessThanUINT16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_UINT16(0, 65535); + VERIFY_FAILS_END +} + +void testLessThanUINT32(void) +{ + UNITY_UINT32 v0, v1; + UNITY_UINT32 *p0, *p1; + + v0 = 4294967295u; + v1 = 0; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_UINT32(v0, v1); + TEST_ASSERT_LESS_THAN_UINT32(*p0, v1); + TEST_ASSERT_LESS_THAN_UINT32(v0, *p1); + TEST_ASSERT_LESS_THAN_UINT32(*p0, *p1); +} + +void testNotLessThanUINT32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_UINT32(0, 4294967295u); + VERIFY_FAILS_END +} + +void testLessThanHEX8(void) +{ + UNITY_UINT8 v0, v1; + UNITY_UINT8 *p0, *p1; + + v0 = 0xFF; + v1 = 0x00; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_HEX8(v0, v1); + TEST_ASSERT_LESS_THAN_HEX8(*p0, v1); + TEST_ASSERT_LESS_THAN_HEX8(v0, *p1); + TEST_ASSERT_LESS_THAN_HEX8(*p0, *p1); +} + +void testNotLessThanHEX8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_HEX8(0x00, 0xFF); + VERIFY_FAILS_END +} + +void testLessThanHEX16(void) +{ + UNITY_UINT16 v0, v1; + UNITY_UINT16 *p0, *p1; + + v0 = 0xFFFF; + v1 = 0x0000; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_HEX16(v0, v1); + TEST_ASSERT_LESS_THAN_HEX16(*p0, v1); + TEST_ASSERT_LESS_THAN_HEX16(v0, *p1); + TEST_ASSERT_LESS_THAN_HEX16(*p0, *p1); +} + +void testNotLessThanHEX16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_HEX16(0x0000, 0xFFFF); + VERIFY_FAILS_END +} + +void testLessThanHEX32(void) +{ + UNITY_UINT32 v0, v1; + UNITY_UINT32 *p0, *p1; + + v0 = 0xFFFFFFFF; + v1 = 0x00000000; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_LESS_THAN_HEX32(v0, v1); + TEST_ASSERT_LESS_THAN_HEX32(*p0, v1); + TEST_ASSERT_LESS_THAN_HEX32(v0, *p1); + TEST_ASSERT_LESS_THAN_HEX32(*p0, *p1); +} + +void testNotLessThanHEX32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_THAN_HEX32(0x00000000, 0xFFFFFFFF); + VERIFY_FAILS_END +} + +void testLessOrEqual(void) +{ + UNITY_INT v0, v1, v2; + UNITY_INT *p0, *p1, *p2; + + v0 = 0; + v1 = -1; + v2 = 0; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL(*p0, *p2); +} + +void testNotLessOrEqual(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL(0, 1); + VERIFY_FAILS_END +} + +void testLessOrEqualINT(void) +{ + UNITY_INT v0, v1, v2; + UNITY_INT *p0, *p1, *p2; + + v0 = 3334; + v1 = 302; + v2 = 3334; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_INT(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_INT(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_INT(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_INT(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_INT(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_INT(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_INT(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_INT(*p0, *p2); +} + +void testNotLessOrEqualINT(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_INT(302, 3334); + VERIFY_FAILS_END +} + +void testLessOrEqualINT8(void) +{ + UNITY_INT8 v0, v1, v2; + UNITY_INT8 *p0, *p1, *p2; + + v0 = 127; + v1 = -128; + v2 = 127; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_INT8(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_INT8(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_INT8(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_INT8(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_INT8(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_INT8(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_INT8(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_INT8(*p0, *p2); +} + +void testNotLessOrEqualINT8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_INT8(-128, 127); + VERIFY_FAILS_END +} + +void testLessOrEqualCHAR(void) +{ + char v0, v1, v2; + char *p0, *p1, *p2; + + v0 = 127; + v1 = -128; + v2 = 127; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_CHAR(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_CHAR(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_CHAR(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_CHAR(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_CHAR(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_CHAR(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_CHAR(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_CHAR(*p0, *p2); +} + +void testNotLessOrEqualCHAR(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_CHAR(-128, 127); + VERIFY_FAILS_END +} + +void testLessOrEqualINT16(void) +{ + UNITY_INT16 v0, v1, v2; + UNITY_INT16 *p0, *p1, *p2; + + v0 = 32767; + v1 = -32768; + v2 = 32767; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_INT16(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_INT16(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_INT16(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_INT16(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_INT16(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_INT16(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_INT16(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_INT16(*p0, *p2); +} + +void testNotLessOrEqualINT16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_INT16(-32768, 32767); + VERIFY_FAILS_END +} + +void testLessOrEqualINT32(void) +{ + UNITY_INT32 v0, v1, v2; + UNITY_INT32 *p0, *p1, *p2; + + v0 = 214783647; + v1 = -214783648; + v2 = 214783647; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_INT32(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_INT32(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_INT32(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_INT32(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_INT32(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_INT32(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_INT32(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_INT32(*p0, *p2); +} + +void testNotLessOrEqualINT32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_INT32(-214783648, 214783647); + VERIFY_FAILS_END +} + +void testLessOrEqualUINT(void) +{ + UNITY_UINT v0, v1, v2; + UNITY_UINT *p0, *p1, *p2; + + v0 = 1; + v1 = 0; + v2 = 1; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_UINT(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_UINT(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_UINT(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_UINT(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_UINT(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_UINT(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_UINT(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_UINT(*p0, *p2); +} + +void testNotLessOrEqualUINT(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_UINT(0, 1); + VERIFY_FAILS_END +} + +void testLessOrEqualUINT8(void) +{ + UNITY_UINT8 v0, v1, v2; + UNITY_UINT8 *p0, *p1, *p2; + + v0 = 255; + v1 = 0; + v2 = 255; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_UINT8(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_UINT8(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_UINT8(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_UINT8(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_UINT8(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_UINT8(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_UINT8(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_UINT8(*p0, *p2); +} + +void testNotLessOrEqualUINT8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_UINT8(0, 255); + VERIFY_FAILS_END +} + +void testLessOrEqualUINT16(void) +{ + UNITY_UINT16 v0, v1, v2; + UNITY_UINT16 *p0, *p1, *p2; + + v0 = 65535; + v1 = 0; + v2 = 65535; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_UINT16(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_UINT16(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_UINT16(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_UINT16(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_UINT16(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_UINT16(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_UINT16(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_UINT16(*p0, *p2); +} + +void testNotLessOrEqualUINT16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_UINT16(0, 65535); + VERIFY_FAILS_END +} + +void testLessOrEqualUINT32(void) +{ + UNITY_UINT32 v0, v1, v2; + UNITY_UINT32 *p0, *p1, *p2; + + v0 = 4294967295u; + v1 = 0; + v2 = 4294967295u; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_UINT32(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_UINT32(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_UINT32(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_UINT32(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_UINT32(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_UINT32(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_UINT32(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_UINT32(*p0, *p2); +} + +void testNotLessOrEqualUINT32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_UINT32(0, 4294967295u); + VERIFY_FAILS_END +} + +void testLessOrEqualHEX8(void) +{ + UNITY_UINT8 v0, v1, v2; + UNITY_UINT8 *p0, *p1, *p2; + + v0 = 0xFF; + v1 = 0x00; + v2 = 0xFF; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_HEX8(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_HEX8(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_HEX8(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_HEX8(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_HEX8(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_HEX8(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_HEX8(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_HEX8(*p0, *p2); +} + +void testNotLessOrEqualHEX8(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_HEX8(0x00, 0xFF); + VERIFY_FAILS_END +} + +void testLessOrEqualHEX16(void) +{ + UNITY_UINT16 v0, v1, v2; + UNITY_UINT16 *p0, *p1, *p2; + + v0 = 0xFFFF; + v1 = 0x0000; + v2 = 0xFFFF; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_HEX16(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_HEX16(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_HEX16(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_HEX16(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_HEX16(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_HEX16(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_HEX16(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_HEX16(*p0, *p2); +} + +void testNotLessOrEqualHEX16(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_HEX16(0x0000, 0xFFFF); + VERIFY_FAILS_END +} + +void testLessOrEqualHEX32(void) +{ + UNITY_UINT32 v0, v1, v2; + UNITY_UINT32 *p0, *p1, *p2; + + v0 = 0xFFFFFFFF; + v1 = 0x00000000; + v2 = 0xFFFFFFFF; + p0 = &v0; + p1 = &v1; + p2 = &v2; + + TEST_ASSERT_LESS_OR_EQUAL_HEX32(v0, v1); + TEST_ASSERT_LESS_OR_EQUAL_HEX32(*p0, v1); + TEST_ASSERT_LESS_OR_EQUAL_HEX32(v0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_HEX32(*p0, *p1); + TEST_ASSERT_LESS_OR_EQUAL_HEX32(v0, v2); + TEST_ASSERT_LESS_OR_EQUAL_HEX32(*p0, v2); + TEST_ASSERT_LESS_OR_EQUAL_HEX32(v0, *p2); + TEST_ASSERT_LESS_OR_EQUAL_HEX32(*p0, *p2); +} + +void testNotLessOrEqualHEX32(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_LESS_OR_EQUAL_HEX32(0x00000000, 0xFFFFFFFF); + VERIFY_FAILS_END +} + +void testHexPrintsUpToMaxNumberOfNibbles(void) +{ +#ifndef USING_OUTPUT_SPY + TEST_IGNORE(); +#else + startPutcharSpy(); + UnityPrintNumberHex(0xBEE, 21); + endPutcharSpy(); +#ifdef UNITY_SUPPORT_64 + TEST_ASSERT_EQUAL_INT(16, strlen(getBufferPutcharSpy())); +#else + TEST_ASSERT_EQUAL_INT( 8, strlen(getBufferPutcharSpy())); +#endif +#endif +} + +void testPrintNumbers32(void) +{ +#ifndef USING_OUTPUT_SPY + TEST_IGNORE_MESSAGE("Compile with '-D UNITY_OUTPUT_CHAR=putcharSpy' to enable print testing"); +#else + TEST_ASSERT_EQUAL_PRINT_NUMBERS("0", 0); + TEST_ASSERT_EQUAL_PRINT_NUMBERS("1", 1); + TEST_ASSERT_EQUAL_PRINT_NUMBERS("-1", -1); + TEST_ASSERT_EQUAL_PRINT_NUMBERS("2000000000", 2000000000); + TEST_ASSERT_EQUAL_PRINT_NUMBERS("-2147483648", (UNITY_INT32)0x80000000); + TEST_ASSERT_EQUAL_PRINT_NUMBERS("-1", (UNITY_INT32)0xFFFFFFFF); +#endif +} + +void testPrintNumbersUnsigned32(void) +{ +#ifndef USING_OUTPUT_SPY + TEST_IGNORE(); +#else + TEST_ASSERT_EQUAL_PRINT_UNSIGNED_NUMBERS("0", 0); + TEST_ASSERT_EQUAL_PRINT_UNSIGNED_NUMBERS("1", 1); + TEST_ASSERT_EQUAL_PRINT_UNSIGNED_NUMBERS("1500000000", 1500000000); + TEST_ASSERT_EQUAL_PRINT_UNSIGNED_NUMBERS("2147483648", (UNITY_UINT32)0x80000000); + TEST_ASSERT_EQUAL_PRINT_UNSIGNED_NUMBERS("4294967295", (UNITY_UINT32)0xFFFFFFFF); +#endif +} diff --git a/lib/Unity/test/tests/test_unity_integers_64.c b/lib/Unity/test/tests/test_unity_integers_64.c new file mode 100644 index 0000000..e6a965a --- /dev/null +++ b/lib/Unity/test/tests/test_unity_integers_64.c @@ -0,0 +1,783 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#define TEST_INSTANCES +#include "self_assessment_utils.h" + +static int SetToOneToFailInTearDown; +static int SetToOneMeanWeAlreadyCheckedThisGuy; + +void setUp(void) +{ + SetToOneToFailInTearDown = 0; + SetToOneMeanWeAlreadyCheckedThisGuy = 0; +} + +void tearDown(void) +{ + endPutcharSpy(); /* Stop suppressing test output */ + if (SetToOneToFailInTearDown == 1) + { + /* These will be skipped internally if already failed/ignored */ + TEST_FAIL_MESSAGE("<= Failed in tearDown"); + TEST_IGNORE_MESSAGE("<= Ignored in tearDown"); + } + if ((SetToOneMeanWeAlreadyCheckedThisGuy == 0) && (Unity.CurrentTestFailed > 0)) + { + UnityPrint(": [[[[ Test Should Have Passed But Did Not ]]]]"); + UNITY_OUTPUT_CHAR('\n'); + } +} + +void testInt64ArrayWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualSmallDelta[] = {12345001, -12344996, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + TEST_ASSERT_INT64_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_INT64_ARRAY_WITHIN(110, expected, actualBigDelta, 3); +#endif +} + +void testInt64ArrayWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualSmallDelta[] = {12345001, -12344996, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 3, "Custom Message."); +#endif +} + +void testInt64ArrayNotWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayNotWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaPointless(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN(110, expected, actualBigDelta, 0); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaPointlessAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaExpectedNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN(110, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaExpectedNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 actualBigDelta[] = {12345101, -12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(110, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaActualNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN(110, expected, NULL, 3); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaActualNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(110, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testInt64ArrayWithinDeltaSamePointer(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, expected, expected, 3); +#endif +} + +void testInt64ArrayWithinDeltaSamePointerAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 expected[] = {12345000, -12344995, 12345005}; + + TEST_ASSERT_INT64_ARRAY_WITHIN_MESSAGE(110, expected, expected, 3, "Custom Message."); +#endif +} + +void testUInt64ArrayWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualSmallDelta[] = {12345001, 12344996, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + TEST_ASSERT_UINT64_ARRAY_WITHIN(1, expected, actualSmallDelta, 3); + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, expected, actualBigDelta, 3); +#endif +} + +void testUInt64ArrayWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualSmallDelta[] = {12345001, 12344996, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(1, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 3, "Custom Message."); +#endif +} + +void testUInt64ArrayNotWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN(1, expected, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayNotWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(1, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaPointless(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, expected, actualBigDelta, 0); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaPointlessAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(110, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaExpectedNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaExpectedNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 actualBigDelta[] = {12345101, 12344896, 12345055}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(110, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaActualNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, expected, NULL, 3); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaActualNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(110, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testUInt64ArrayWithinDeltaSamePointer(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + + TEST_ASSERT_UINT64_ARRAY_WITHIN(110, expected, expected, 3); +#endif +} + +void testUInt64ArrayWithinDeltaSamePointerAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {12345000, 12344995, 12345005}; + + TEST_ASSERT_UINT64_ARRAY_WITHIN_MESSAGE(110, expected, expected, 3, "Custom Message."); +#endif +} + +void testHEX64ArrayWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualSmallDelta[] = {0xABCD123500000000, 0xABCD112100000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x100000000, expected, actualSmallDelta, 3); + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x6E00000000, expected, actualBigDelta, 3); +#endif +} + +void testHEX64ArrayWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualSmallDelta[] = {0xABCD123500000000, 0xABCD112100000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x100000000, expected, actualSmallDelta, 3, "Custom Message."); + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x6E00000000, expected, actualBigDelta, 3, "Custom Message."); +#endif +} + +void testHEX64ArrayNotWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x100000000, expected, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayNotWithinDeltaAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x100000000, expected, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaPointless(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x6E00000000, expected, actualBigDelta, 0); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaPointlessAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x6E00000000, expected, actualBigDelta, 0, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaExpectedNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x6E00000000, NULL, actualBigDelta, 3); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaExpectedNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 actualBigDelta[] = {0xABCD126700000000, 0xABCD118800000000, 0xABCD12AC00000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x6E00000000, NULL, actualBigDelta, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaActualNull(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x6E00000000, expected, NULL, 3); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaActualNullAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x6E00000000, expected, NULL, 3, "Custom Message."); + VERIFY_FAILS_END +#endif +} + +void testHEX64ArrayWithinDeltaSamePointer(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + + TEST_ASSERT_HEX64_ARRAY_WITHIN(0x6E00000000, expected, expected, 3); +#endif +} + +void testHEX64ArrayWithinDeltaSamePointerAndMessage(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 expected[] = {0xABCD123400000000, 0xABCD112200000000, 0xABCD127700000000}; + + TEST_ASSERT_HEX64_ARRAY_WITHIN_MESSAGE(0x6E00000000, expected, expected, 3, "Custom Message."); +#endif +} + +void testEqualHex64s(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 v0, v1; + UNITY_UINT64 *p0, *p1; + + v0 = 0x9876543201234567; + v1 = 0x9876543201234567; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_HEX64(0x9876543201234567, 0x9876543201234567); + TEST_ASSERT_EQUAL_HEX64(v0, v1); + TEST_ASSERT_EQUAL_HEX64(0x9876543201234567, v1); + TEST_ASSERT_EQUAL_HEX64(v0, 0x9876543201234567); + TEST_ASSERT_EQUAL_HEX64(*p0, v1); + TEST_ASSERT_EQUAL_HEX64(*p0, *p1); + TEST_ASSERT_EQUAL_HEX64(*p0, 0x9876543201234567); +#endif +} + +void testEqualUint64s(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 v0, v1; + UNITY_UINT64 *p0, *p1; + + v0 = 0x9876543201234567; + v1 = 0x9876543201234567; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_UINT64(0x9876543201234567, 0x9876543201234567); + TEST_ASSERT_EQUAL_UINT64(v0, v1); + TEST_ASSERT_EQUAL_UINT64(0x9876543201234567, v1); + TEST_ASSERT_EQUAL_UINT64(v0, 0x9876543201234567); + TEST_ASSERT_EQUAL_UINT64(*p0, v1); + TEST_ASSERT_EQUAL_UINT64(*p0, *p1); + TEST_ASSERT_EQUAL_UINT64(*p0, 0x9876543201234567); +#endif +} + +void testEqualInt64s(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 v0, v1; + UNITY_INT64 *p0, *p1; + + v0 = (UNITY_INT64)0x9876543201234567; + v1 = (UNITY_INT64)0x9876543201234567; + p0 = &v0; + p1 = &v1; + + TEST_ASSERT_EQUAL_INT64(0x9876543201234567, 0x9876543201234567); + TEST_ASSERT_EQUAL_INT64(v0, v1); + TEST_ASSERT_EQUAL_INT64(0x9876543201234567, v1); + TEST_ASSERT_EQUAL_INT64(v0, 0x9876543201234567); + TEST_ASSERT_EQUAL_INT64(*p0, v1); + TEST_ASSERT_EQUAL_INT64(*p0, *p1); + TEST_ASSERT_EQUAL_INT64(*p0, 0x9876543201234567); +#endif +} + + +void testNotEqualHex64s(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 v0, v1; + + v0 = 9000000000; + v1 = 9100000000; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX64(v0, v1); + VERIFY_FAILS_END +#endif +} + +void testNotEqualUint64s(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_UINT64 v0, v1; + + v0 = 9000000000; + v1 = 9100000000; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_UINT64(v0, v1); + VERIFY_FAILS_END +#endif +} + +void testNotEqualInt64s(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 v0, v1; + + v0 = -9000000000; + v1 = 9100000000; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_INT64(v0, v1); + VERIFY_FAILS_END +#endif +} + +void testNotEqualHex64sIfSigned(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + UNITY_INT64 v0, v1; + + v0 = -9000000000; + v1 = 9000000000; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_HEX64(v0, v1); + VERIFY_FAILS_END +#endif +} + +void testHEX64sWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + TEST_ASSERT_HEX64_WITHIN(1, 0x7FFFFFFFFFFFFFFF,0x7FFFFFFFFFFFFFFE); + TEST_ASSERT_HEX64_WITHIN(5, 5000, 4996); + TEST_ASSERT_HEX64_WITHIN(5, 5000, 5005); +#endif +} + +void testHEX32sWithinDeltaShouldIgnoreSign(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + TEST_ASSERT_HEX64_WITHIN(1, 0x7FFFFFFFFFFFFFFF,0x8000000000000000); +#endif +} + +void testHEX64sNotWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_WITHIN(1, 0x7FFFFFFFFFFFFFFF, 0x7FFFFFFFFFFFFFFC); + VERIFY_FAILS_END +#endif +} + +void testHEX64sNotWithinDeltaEvenThoughASignedIntWouldPass(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_HEX64_WITHIN(5, 1, -1); + VERIFY_FAILS_END +#endif +} + +void testUINT64sWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + TEST_ASSERT_UINT64_WITHIN(1, 0x7FFFFFFFFFFFFFFF,0x7FFFFFFFFFFFFFFE); + TEST_ASSERT_UINT64_WITHIN(5, 5000, 4996); + TEST_ASSERT_UINT64_WITHIN(5, 5000, 5005); +#endif +} + +void testUINT64sNotWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_WITHIN(1, 0x7FFFFFFFFFFFFFFF, 0x7FFFFFFFFFFFFFFC); + VERIFY_FAILS_END +#endif +} + +void testUINT64sNotWithinDeltaEvenThoughASignedIntWouldPass(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_UINT64_WITHIN(5, 1, -1); + VERIFY_FAILS_END +#endif +} + +void testINT64sWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + TEST_ASSERT_INT64_WITHIN(1, 0x7FFFFFFFFFFFFFFF,0x7FFFFFFFFFFFFFFE); + TEST_ASSERT_INT64_WITHIN(5, 5000, 4996); + TEST_ASSERT_INT64_WITHIN(5, 5000, 5005); +#endif +} + +void testINT64sNotWithinDelta(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_WITHIN(1, 0x7FFFFFFFFFFFFFFF, 0x7FFFFFFFFFFFFFFC); + VERIFY_FAILS_END +#endif +} + +void testINT64sNotWithinDeltaAndDifferenceOverflows(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + EXPECT_ABORT_BEGIN + TEST_ASSERT_INT64_WITHIN(1, 0x8000000000000000, 0x7FFFFFFFFFFFFFFF); + VERIFY_FAILS_END +#endif +} + +void testPrintNumbersInt64(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + #ifndef USING_OUTPUT_SPY + TEST_IGNORE(); + #else + TEST_ASSERT_EQUAL_PRINT_NUMBERS("0", 0); + TEST_ASSERT_EQUAL_PRINT_NUMBERS("10000000000", 10000000000); + TEST_ASSERT_EQUAL_PRINT_NUMBERS("-9223372036854775808", (UNITY_INT)0x8000000000000000); + TEST_ASSERT_EQUAL_PRINT_NUMBERS("-1", (UNITY_INT)0xFFFFFFFFFFFFFFFF); + #endif +#endif +} + +void testPrintNumbersUInt64(void) +{ +#ifndef UNITY_SUPPORT_64 + TEST_IGNORE(); +#else + #ifndef USING_OUTPUT_SPY + TEST_IGNORE(); + #else + TEST_ASSERT_EQUAL_PRINT_UNSIGNED_NUMBERS("0", 0); + TEST_ASSERT_EQUAL_PRINT_UNSIGNED_NUMBERS("70000000000", 70000000000); + TEST_ASSERT_EQUAL_PRINT_UNSIGNED_NUMBERS("9223372036854775808", (UNITY_UINT)0x8000000000000000); + TEST_ASSERT_EQUAL_PRINT_UNSIGNED_NUMBERS("18446744073709551615", (UNITY_UINT)0xFFFFFFFFFFFFFFFF); + #endif +#endif +} diff --git a/lib/Unity/test/tests/test_unity_memory.c b/lib/Unity/test/tests/test_unity_memory.c new file mode 100644 index 0000000..7ee48d2 --- /dev/null +++ b/lib/Unity/test/tests/test_unity_memory.c @@ -0,0 +1,82 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#define TEST_INSTANCES +#include "self_assessment_utils.h" + +static int SetToOneToFailInTearDown; +static int SetToOneMeanWeAlreadyCheckedThisGuy; + +void setUp(void) +{ + SetToOneToFailInTearDown = 0; + SetToOneMeanWeAlreadyCheckedThisGuy = 0; +} + +void tearDown(void) +{ + endPutcharSpy(); /* Stop suppressing test output */ + if (SetToOneToFailInTearDown == 1) + { + /* These will be skipped internally if already failed/ignored */ + TEST_FAIL_MESSAGE("<= Failed in tearDown"); + TEST_IGNORE_MESSAGE("<= Ignored in tearDown"); + } + if ((SetToOneMeanWeAlreadyCheckedThisGuy == 0) && (Unity.CurrentTestFailed > 0)) + { + UnityPrint(": [[[[ Test Should Have Passed But Did Not ]]]]"); + UNITY_OUTPUT_CHAR('\n'); + } +} + +void testEqualMemory(void) +{ + const char *testString = "whatever"; + + TEST_ASSERT_EQUAL_MEMORY(testString, testString, 8); + TEST_ASSERT_EQUAL_MEMORY("whatever", "whatever", 8); + TEST_ASSERT_EQUAL_MEMORY("whatever", testString, 8); + TEST_ASSERT_EQUAL_MEMORY(testString, "whatever", 8); + TEST_ASSERT_EQUAL_MEMORY(testString, "whatever", 2); + TEST_ASSERT_EQUAL_MEMORY(NULL, NULL, 1); +} + +void testNotEqualMemory1(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_MEMORY("foo", "bar", 3); + VERIFY_FAILS_END +} + +void testNotEqualMemory2(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_MEMORY("fool", "food", 4); + VERIFY_FAILS_END +} + +void testNotEqualMemory3(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_MEMORY(NULL, "food", 4); + VERIFY_FAILS_END +} + +void testNotEqualMemory4(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_MEMORY("fool", NULL, 4); + VERIFY_FAILS_END +} + +void testNotEqualMemoryLengthZero(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_MEMORY(NULL, NULL, 0); + VERIFY_FAILS_END +} diff --git a/lib/Unity/test/tests/test_unity_parameterized.c b/lib/Unity/test/tests/test_unity_parameterized.c new file mode 100644 index 0000000..8059893 --- /dev/null +++ b/lib/Unity/test/tests/test_unity_parameterized.c @@ -0,0 +1,309 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include +#include +#include "unity.h" +#include "types_for_test.h" + +/* Include Passthroughs for Linking Tests */ +void putcharSpy(int c) { (void)putchar(c);} +void flushSpy(void) {} + +#define EXPECT_ABORT_BEGIN \ + if (TEST_PROTECT()) \ + { + +#define VERIFY_FAILS_END \ + } \ + Unity.CurrentTestFailed = (Unity.CurrentTestFailed != 0) ? 0 : 1; \ + if (Unity.CurrentTestFailed == 1) { \ + SetToOneMeanWeAlreadyCheckedThisGuy = 1; \ + UnityPrintNumberUnsigned(Unity.CurrentTestLineNumber); \ + UNITY_OUTPUT_CHAR(':'); \ + UnityPrint(Unity.CurrentTestName); \ + UnityPrint(":FAIL: [[[[ Test Should Have Failed But Did Not ]]]]"); \ + UNITY_OUTPUT_CHAR('\n'); \ + } + +#define VERIFY_IGNORES_END \ + } \ + Unity.CurrentTestFailed = (Unity.CurrentTestIgnored != 0) ? 0 : 1; \ + Unity.CurrentTestIgnored = 0; \ + if (Unity.CurrentTestFailed == 1) { \ + SetToOneMeanWeAlreadyCheckedThisGuy = 1; \ + UnityPrintNumberUnsigned(Unity.CurrentTestLineNumber); \ + UNITY_OUTPUT_CHAR(':'); \ + UnityPrint(Unity.CurrentTestName); \ + UnityPrint(":FAIL: [[[[ Test Should Have Ignored But Did Not ]]]]"); \ + UNITY_OUTPUT_CHAR('\n'); \ + } + +static int SetToOneToFailInTearDown; +static int SetToOneMeanWeAlreadyCheckedThisGuy; +static unsigned NextExpectedStringIndex; +static unsigned NextExpectedCharIndex; +static unsigned NextExpectedSpaceIndex; + +void suiteSetUp(void) +{ + NextExpectedStringIndex = 0; + NextExpectedCharIndex = 0; + NextExpectedSpaceIndex = 0; +} + +void setUp(void) +{ + SetToOneToFailInTearDown = 0; + SetToOneMeanWeAlreadyCheckedThisGuy = 0; +} + +void tearDown(void) +{ + if (SetToOneToFailInTearDown == 1) + TEST_FAIL_MESSAGE("<= Failed in tearDown"); + if ((SetToOneMeanWeAlreadyCheckedThisGuy == 0) && (Unity.CurrentTestFailed > 0)) + { + UnityPrint(": [[[[ Test Should Have Passed But Did Not ]]]]"); + UNITY_OUTPUT_CHAR('\n'); + } +} + +TEST_CASE(0) +TEST_CASE(44) +TEST_CASE((90)+9) +void test_TheseShouldAllPass(int Num) +{ + TEST_ASSERT_TRUE(Num < 100); +} + +TEST_CASE(3) +TEST_CASE(77) +TEST_CASE( (99) + 1 - (1)) +void test_TheseShouldAllFail(int Num) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_TRUE(Num > 100); + VERIFY_FAILS_END +} + +TEST_CASE(1) +TEST_CASE(44) +TEST_CASE(99) +TEST_CASE(98) +void test_TheseAreEveryOther(int Num) +{ + if (Num & 1) + { + EXPECT_ABORT_BEGIN + TEST_ASSERT_TRUE(Num > 100); + VERIFY_FAILS_END + } + else + { + TEST_ASSERT_TRUE(Num < 100); + } +} + +void test_NormalPassesStillWork(void) +{ + TEST_ASSERT_TRUE(1); +} + +void test_NormalFailsStillWork(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_TRUE(0); + VERIFY_FAILS_END +} + +TEST_CASE(0, "abc") +TEST_CASE(1, "{") +TEST_CASE(2, "}") +TEST_CASE(3, ";") +TEST_CASE(4, "\"quoted\"") +void test_StringsArePreserved(unsigned index, const char * str) +{ + static const char * const expected[] = + { + "abc", + "{", + "}", + ";", + "\"quoted\"" + }; + + /* Ensure that no test cases are skipped by tracking the next expected index */ + TEST_ASSERT_EQUAL_UINT32(NextExpectedStringIndex, index); + TEST_ASSERT_LESS_THAN(sizeof(expected) / sizeof(expected[0]), index); + TEST_ASSERT_EQUAL_STRING(expected[index], str); + + NextExpectedStringIndex++; +} + +TEST_CASE(0, 'x') +TEST_CASE(1, '{') +TEST_CASE(2, '}') +TEST_CASE(3, ';') +TEST_CASE(4, '\'') +TEST_CASE(5, '"') +void test_CharsArePreserved(unsigned index, char c) +{ + static const char expected[] = + { + 'x', + '{', + '}', + ';', + '\'', + '"' + }; + + /* Ensure that no test cases are skipped by tracking the next expected index */ + TEST_ASSERT_EQUAL_UINT32(NextExpectedCharIndex, index); + TEST_ASSERT_LESS_THAN(sizeof(expected) / sizeof(expected[0]), index); + TEST_ASSERT_EQUAL(expected[index], c); + + NextExpectedCharIndex++; +} + +TEST_RANGE([0, 10, 2]) +void test_SingleRange(unsigned value) +{ + TEST_ASSERT_EQUAL(0, value % 2); + TEST_ASSERT_LESS_OR_EQUAL(10, value); +} + +TEST_RANGE([1, 2, 1], [2, 1, -1]) +void test_TwoRanges(unsigned first, unsigned second) +{ + TEST_ASSERT_LESS_OR_EQUAL(4, first * second); +} + +TEST_RANGE(<0, 10, 2>) +void test_SingleExclusiveRange(unsigned value) +{ + TEST_ASSERT_EQUAL(0, value % 2); + TEST_ASSERT_LESS_THAN(10, value); +} + +TEST_RANGE([2, 4, 1], <1, 2, 1>) +void test_BothInclusiveAndExclusiveRange(unsigned first, unsigned second) +{ + TEST_ASSERT_LESS_THAN(first, second); +} + +TEST_CASE(0, + + 1) +TEST_CASE(1, + + 2 + + ) +TEST_RANGE([2, + 5 , + 1], [6, 6, 1]) +TEST_CASE( + + 6 , 7) +TEST_MATRIX([7, + 8 , + + 9, 10], + [ + 11] + + ) +void test_SpaceInTestCase(unsigned index, unsigned bigger) +{ + TEST_ASSERT_EQUAL_UINT32(NextExpectedSpaceIndex, index); + TEST_ASSERT_LESS_THAN(bigger, index); + + NextExpectedSpaceIndex++; +} + +TEST_MATRIX([1, 5, (2*2)+1, 4]) +void test_SingleMatix(unsigned value) +{ + TEST_ASSERT_LESS_OR_EQUAL(10, value); +} + +TEST_MATRIX([2, 5l, 4u+3, 4ul], [-2, 3]) +void test_TwoMatrices(unsigned first, signed second) +{ + static unsigned idx = 0; + static const unsigned expected[] = + { + // -2 3 + -4, 6, // 2 + -10, 15, // 5 + -14, 21, // 7 + -8, 12, // 4 + }; + TEST_ASSERT_EQUAL_INT(expected[idx++], first * second); +} + +TEST_MATRIX(["String1", "String,2", "Stri" "ng3", "String[4]", "String\"5\""], [-5, 12.5f]) +void test_StringsAndNumbersMatrices(const char* str, float number) +{ + static unsigned idx = 0; + static const char* expected[] = + { + "String1_-05.00", + "String1_+12.50", + "String,2_-05.00", + "String,2_+12.50", + "String3_-05.00", + "String3_+12.50", + "String[4]_-05.00", + "String[4]_+12.50", + "String\"5\"_-05.00", + "String\"5\"_+12.50", + }; + char buf[200] = {0}; + snprintf(buf, sizeof(buf), "%s_%+06.2f", str, number); + TEST_ASSERT_EQUAL_STRING(expected[idx++], buf); +} + +TEST_MATRIX( + [ENUM_A, ENUM_4, ENUM_C], + [test_arr[0], 7.8f, test_arr[2]], + ['a', 'f', '[', ']', '\'', '"'], +) +void test_EnumCharAndArrayMatrices(test_enum_t e, float n, char c) +{ + static unsigned enum_idx = 0; + static const test_enum_t exp_enum[3] = { + ENUM_A, ENUM_4, ENUM_C, + }; + + static unsigned float_idx = 0; + float exp_float[3] = {0}; + exp_float[0] = test_arr[0]; + exp_float[1] = 7.8f; + exp_float[2] = test_arr[2]; + + static unsigned char_idx = 0; + static const test_enum_t exp_char[] = { + 'a', 'f', '[', ']', '\'', '"' + }; + + TEST_ASSERT_EQUAL_INT(exp_enum[enum_idx], e); + TEST_ASSERT_EQUAL_FLOAT(exp_float[float_idx], n); + TEST_ASSERT_EQUAL_CHAR(exp_char[char_idx], c); + + char_idx = (char_idx + 1) % 6; + if (char_idx == 0.0f) + { + float_idx = (float_idx + 1) % 3; + if (float_idx == 0.0f) + { + enum_idx = (enum_idx + 1) % 3; + } + } +} diff --git a/lib/Unity/test/tests/test_unity_parameterizedDemo.c b/lib/Unity/test/tests/test_unity_parameterizedDemo.c new file mode 100644 index 0000000..d0ea962 --- /dev/null +++ b/lib/Unity/test/tests/test_unity_parameterizedDemo.c @@ -0,0 +1,28 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" + +/* Support for Meta Test Rig */ +#ifndef TEST_CASE +#define TEST_CASE(...) +#endif +#ifndef TEST_RANGE +#define TEST_RANGE(...) +#endif +#ifndef TEST_MATRIX +#define TEST_MATRIX(...) +#endif + +TEST_CASE(1, 2, 5) +TEST_CASE(10, 7, 20) +TEST_RANGE([3, 4, 1], [10, 5, -2], <30, 31, 1>) +TEST_MATRIX([3, 4, 7], [10, 8, 2, 1],[30u, 20.0f]) +void test_demoParamFunction(int a, int b, int c) +{ + TEST_ASSERT_GREATER_THAN_INT(a + b, c); +} diff --git a/lib/Unity/test/tests/test_unity_strings.c b/lib/Unity/test/tests/test_unity_strings.c new file mode 100644 index 0000000..bb38ecb --- /dev/null +++ b/lib/Unity/test/tests/test_unity_strings.c @@ -0,0 +1,330 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#include "unity.h" +#define TEST_INSTANCES +#include "self_assessment_utils.h" + +static int SetToOneToFailInTearDown; +static int SetToOneMeanWeAlreadyCheckedThisGuy; + +void setUp(void) +{ + SetToOneToFailInTearDown = 0; + SetToOneMeanWeAlreadyCheckedThisGuy = 0; +} + +void tearDown(void) +{ + endPutcharSpy(); /* Stop suppressing test output */ + if (SetToOneToFailInTearDown == 1) + { + /* These will be skipped internally if already failed/ignored */ + TEST_FAIL_MESSAGE("<= Failed in tearDown"); + TEST_IGNORE_MESSAGE("<= Ignored in tearDown"); + } + if ((SetToOneMeanWeAlreadyCheckedThisGuy == 0) && (Unity.CurrentTestFailed > 0)) + { + UnityPrint(": [[[[ Test Should Have Passed But Did Not ]]]]"); + UNITY_OUTPUT_CHAR('\n'); + } +} + +void testEqualStrings(void) +{ + const char *testString = "foo"; + + TEST_ASSERT_EQUAL_STRING(testString, testString); + TEST_ASSERT_EQUAL_STRING_MESSAGE("foo", "foo", "foo isn't foo"); + TEST_ASSERT_EQUAL_STRING("foo", testString); + TEST_ASSERT_EQUAL_STRING(testString, "foo"); + TEST_ASSERT_EQUAL_STRING("", ""); +} + +void testEqualStringsLen(void) +{ + const char *testString = "foobar"; + TEST_ASSERT_EQUAL_STRING_LEN(testString, testString, strlen(testString)); + TEST_ASSERT_EQUAL_STRING_LEN_MESSAGE("foobar", "foobaz", 5, "fooba isn't fooba"); + TEST_ASSERT_EQUAL_STRING_LEN("foo", testString, 3); + TEST_ASSERT_EQUAL_STRING_LEN(testString, "foo", 3); + TEST_ASSERT_EQUAL_STRING_LEN("", "", 3); +} + +void testEqualStringsWithCarriageReturnsAndLineFeeds(void) +{ + const char *testString = "foo\r\nbar"; + + TEST_ASSERT_EQUAL_STRING(testString, testString); + TEST_ASSERT_EQUAL_STRING("foo\r\nbar", "foo\r\nbar"); + TEST_ASSERT_EQUAL_STRING("foo\r\nbar", testString); + TEST_ASSERT_EQUAL_STRING(testString, "foo\r\nbar"); + TEST_ASSERT_EQUAL_STRING("", ""); +} + +void testNotEqualString1(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING("foo", "bar"); + VERIFY_FAILS_END +} + +void testNotEqualStringLen1(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_LEN("foobar", "foobaz", 6); + VERIFY_FAILS_END +} + +void testNotEqualString2(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING("foo", ""); + VERIFY_FAILS_END +} + +void testNotEqualStringLen2(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_LEN("foo", "", 3); + VERIFY_FAILS_END +} + +void testNotEqualString3(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING("", "bar"); + VERIFY_FAILS_END +} + +void testNotEqualStringLen3(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_LEN("", "bar", 3); + VERIFY_FAILS_END +} + +void testNotEqualString4(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING("bar\r", "bar\n"); + VERIFY_FAILS_END +} + +void testNotEqualStringLen4(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_LEN("ba\r\x16", "ba\r\n", 4); + VERIFY_FAILS_END +} + +void testNotEqualString5(void) +{ + const char str1[] = { 0x41, 0x42, 0x03, 0x00 }; + const char str2[] = { 0x41, 0x42, 0x04, 0x00 }; + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING(str1, str2); + VERIFY_FAILS_END +} + +void testNotEqualString_ExpectedStringIsNull(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING(NULL, "bar"); + VERIFY_FAILS_END +} + +void testNotEqualStringLen_ExpectedStringIsNull(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_LEN(NULL, "bar", 1); + VERIFY_FAILS_END +} + +void testNotEqualString_ActualStringIsNull(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING("foo", NULL); + VERIFY_FAILS_END +} + +void testNotEqualStringLen_ActualStringIsNull(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_LEN("foo", NULL, 1); + VERIFY_FAILS_END +} + +void testNotEqualString_ExpectedStringIsLonger(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING("foo2", "foo"); + VERIFY_FAILS_END +} + +void testNotEqualString_ActualStringIsLonger(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING("foo", "foo2"); + VERIFY_FAILS_END +} + +void testEqualStringArrays(void) +{ + const char *testStrings[] = { "foo", "boo", "woo", "moo" }; + const char *expStrings[] = { "foo", "boo", "woo", "zoo" }; + + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, expStrings, 3); + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, testStrings, 3); + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, testStrings, 2); + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, testStrings, 1); +} + +void testNotEqualStringArray1(void) +{ + const char *testStrings[] = { "foo", "boo", "woo", "moo" }; + const char *expStrings[] = { "foo", "boo", "woo", "zoo" }; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, testStrings, 4); + VERIFY_FAILS_END +} + +void testNotEqualStringArray2(void) +{ + const char *testStrings[] = { "zoo", "boo", "woo", "moo" }; + const char *expStrings[] = { "foo", "boo", "woo", "moo" }; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, testStrings, 4); + VERIFY_FAILS_END +} + +void testNotEqualStringArray3(void) +{ + const char *testStrings[] = { "foo", "boo", "woo", NULL }; + const char *expStrings[] = { "foo", "boo", "woo", "zoo" }; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, testStrings, 4); + VERIFY_FAILS_END +} + +void testNotEqualStringArray4(void) +{ + const char *testStrings[] = { "foo", "boo", "woo", "moo" }; + const char *expStrings[] = { "foo", NULL, "woo", "moo" }; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, testStrings, 4); + VERIFY_FAILS_END +} + +void testNotEqualStringArray5(void) +{ + const char **testStrings = NULL; + const char *expStrings[] = { "foo", "boo", "woo", "zoo" }; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, testStrings, 4); + VERIFY_FAILS_END +} + +void testNotEqualStringArray6(void) +{ + const char *testStrings[] = { "foo", "boo", "woo", "zoo" }; + const char **expStrings = NULL; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, testStrings, 4); + VERIFY_FAILS_END +} + +void testEqualStringArrayIfBothNulls(void) +{ + const char **testStrings = NULL; + const char **expStrings = NULL; + + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, testStrings, 4); +} + +void testNotEqualStringArrayLengthZero(void) +{ + const char *testStrings[] = {NULL}; + const char **expStrings = NULL; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EQUAL_STRING_ARRAY(expStrings, testStrings, 0); + VERIFY_FAILS_END +} + +void testEqualStringEachEqual(void) +{ + const char *testStrings1[] = { "foo", "foo", "foo", "foo" }; + const char *testStrings2[] = { "boo", "boo", "boo", "zoo" }; + const char *testStrings3[] = { "", "", "", "" }; + + TEST_ASSERT_EACH_EQUAL_STRING("foo", testStrings1, 4); + TEST_ASSERT_EACH_EQUAL_STRING("foo", testStrings1, 1); + TEST_ASSERT_EACH_EQUAL_STRING("boo", testStrings2, 3); + TEST_ASSERT_EACH_EQUAL_STRING("", testStrings3, 4); +} + +void testNotEqualStringEachEqual1(void) +{ + const char *testStrings[] = { "foo", "foo", "foo", "moo" }; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_STRING("foo", testStrings, 4); + VERIFY_FAILS_END +} + +void testNotEqualStringEachEqual2(void) +{ + const char *testStrings[] = { "boo", "foo", "foo", "foo" }; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_STRING("foo", testStrings, 4); + VERIFY_FAILS_END +} + +void testNotEqualStringEachEqual3(void) +{ + const char *testStrings[] = { "foo", "foo", "foo", NULL }; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_STRING("foo", testStrings, 4); + VERIFY_FAILS_END +} + +void testNotEqualStringEachEqual4(void) +{ + const char *testStrings[] = { "foo", "foo", "woo", "foo" }; + + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_STRING("foo", testStrings, 4); + VERIFY_FAILS_END +} + +void testNotEqualStringEachEqual5(void) +{ + EXPECT_ABORT_BEGIN + TEST_ASSERT_EACH_EQUAL_STRING("foo", NULL, 1); + VERIFY_FAILS_END +} + +void testCstringsEscapeSequence(void) +{ +#ifndef USING_OUTPUT_SPY + TEST_IGNORE(); +#else + startPutcharSpy(); + UnityPrint("\x16\x10"); + endPutcharSpy(); + TEST_ASSERT_EQUAL_STRING("\\x16\\x10", getBufferPutcharSpy()); +#endif +} diff --git a/lib/Unity/test/tests/types_for_test.h b/lib/Unity/test/tests/types_for_test.h new file mode 100644 index 0000000..00f580d --- /dev/null +++ b/lib/Unity/test/tests/types_for_test.h @@ -0,0 +1,21 @@ +/* ========================================================================= + Unity - A Test Framework for C + ThrowTheSwitch.org + Copyright (c) 2007-26 Mike Karlesky, Mark VanderVoord, & Greg Williams + SPDX-License-Identifier: MIT +========================================================================= */ + +#pragma once + +typedef enum { + ENUM_A, + ENUM_2, + ENUM_C, + ENUM_4, +} test_enum_t; + +static const float test_arr[] = { + 1.2f, + 2.3f, + 3.4f, +}; diff --git a/lib/Unity/unityConfig.cmake b/lib/Unity/unityConfig.cmake new file mode 100644 index 0000000..55410cc --- /dev/null +++ b/lib/Unity/unityConfig.cmake @@ -0,0 +1 @@ +include(${CMAKE_CURRENT_LIST_DIR}/unityTargets.cmake) \ No newline at end of file diff --git a/lib/fff/.github/ISSUE_TEMPLATE/bug_report.md b/lib/fff/.github/ISSUE_TEMPLATE/bug_report.md new file mode 100644 index 0000000..fa04e0a --- /dev/null +++ b/lib/fff/.github/ISSUE_TEMPLATE/bug_report.md @@ -0,0 +1,28 @@ +--- +name: Bug report +about: Create a report to help us improve + +--- + +**Describe the bug** +A clear and concise description of what the bug is. + +**To Reproduce** +Steps to reproduce the behavior: +1. Go to '...' +2. Click on '....' +3. Scroll down to '....' +4. See error + +**Expected behavior** +A clear and concise description of what you expected to happen. + +**Screenshots** +If applicable, add screenshots to help explain your problem. + +**Compiler, toolset, platform (please complete the following information):** + - OS: [e.g. Ubuntu 16.04 LTS] + - Compiler: [e.g. gcc (Ubuntu 5.4.0-6ubuntu1~16.04.10) 5.4.0 20160609] + +**Additional context** +Add any other context about the problem here. diff --git a/lib/fff/.github/ISSUE_TEMPLATE/feature_request.md b/lib/fff/.github/ISSUE_TEMPLATE/feature_request.md new file mode 100644 index 0000000..066b2d9 --- /dev/null +++ b/lib/fff/.github/ISSUE_TEMPLATE/feature_request.md @@ -0,0 +1,17 @@ +--- +name: Feature request +about: Suggest an idea for this project + +--- + +**Is your feature request related to a problem? Please describe.** +A clear and concise description of what the problem is. Ex. I'm always frustrated when [...] + +**Describe the solution you'd like** +A clear and concise description of what you want to happen. + +**Describe alternatives you've considered** +A clear and concise description of any alternative solutions or features you've considered. + +**Additional context** +Add any other context or screenshots about the feature request here. diff --git a/lib/fff/.github/PULL_REQUEST_TEMPLATE.md b/lib/fff/.github/PULL_REQUEST_TEMPLATE.md new file mode 100644 index 0000000..10f1195 --- /dev/null +++ b/lib/fff/.github/PULL_REQUEST_TEMPLATE.md @@ -0,0 +1,8 @@ +Thank you for your contribution. + +Before submitting this PR, please make sure: + +- [ ] Your code builds clean without any errors or warnings +- [ ] You are not breaking consistency +- [ ] You have added unit tests +- [ ] All tests and other checks pass diff --git a/lib/fff/.github/workflows/verify_pr.yaml b/lib/fff/.github/workflows/verify_pr.yaml new file mode 100644 index 0000000..588afac --- /dev/null +++ b/lib/fff/.github/workflows/verify_pr.yaml @@ -0,0 +1,25 @@ +name: Check PR + +on: + pull_request: + branches: + - master + push: + + +jobs: + check-pr: + runs-on: ${{ matrix.os }} + strategy: + matrix: + os: [ubuntu-latest, windows-latest, macos-latest] + steps: + - uses: actions/checkout@v3 + - uses: seanmiddleditch/gha-setup-ninja@master + - name: Build + run: | + mkdir build + cmake -GNinja -B build + cmake --build build + ctest --test-dir build --output-on-failure + diff --git a/lib/fff/.gitignore b/lib/fff/.gitignore new file mode 100644 index 0000000..42ff828 --- /dev/null +++ b/lib/fff/.gitignore @@ -0,0 +1,40 @@ +build/ +*~ +*.sublime-project +*.sublime-workspace + +# User-specific files +*.rsuser +*.suo +*.user +*.userosscache +*.sln.docstates + +# Build results +[Dd]ebug/ +[Dd]ebugPublic/ +[Rr]elease/ +[Rr]eleases/ +x64/ +x86/ +bld/ +[Bb]in/ +[Oo]bj/ +[Ll]og/ + +# Visual Studio 2015/2017 cache/options directory +.vs/ + +# IntelliJ IDE project directory +.idea/ + +# Visual C++ cache files +ipch/ +*.aps +*.ncb +*.opendb +*.opensdf +*.sdf +*.cachefile +*.VC.db +*.VC.VC.opendb diff --git a/lib/fff/.travis.yml b/lib/fff/.travis.yml new file mode 100644 index 0000000..cb7ea9b --- /dev/null +++ b/lib/fff/.travis.yml @@ -0,0 +1,8 @@ +language: cpp +compiler: + - clang + - gcc +script: ./buildandtest +os: + - linux + - osx diff --git a/lib/fff/CMakeLists.txt b/lib/fff/CMakeLists.txt new file mode 100644 index 0000000..1672943 --- /dev/null +++ b/lib/fff/CMakeLists.txt @@ -0,0 +1,46 @@ +# Copyright 2022 Google LLC +# SPDX-License-Identifier: Apache-2.0 + +cmake_minimum_required(VERSION 3.20.0) +project(fff) + +set(CMAKE_CXX_STANDARD 11) + +# Enable ctest +enable_testing() + +add_library(fff INTERFACE) + +option(FFF_GENERATE "If enabled, fff.h will be regenerated using ruby" OFF) + +# Generate fff.h if fakegen.rb changed +if(FFF_GENERATE) + add_custom_command( + OUTPUT + ${CMAKE_CURRENT_LIST_DIR}/fff.h + COMMAND + ruby ${CMAKE_CURRENT_LIST_DIR}/fakegen.rb >> ${CMAKE_CURRENT_LIST_DIR}/fff.h + DEPENDS + ${CMAKE_CURRENT_LIST_DIR}/fakegen.rb + ${CMAKE_CURRENT_LIST_DIR}/LICENSE + ) + add_custom_target(fff_h DEPENDS ${CMAKE_CURRENT_LIST_DIR}/fff.h) +else() + add_library(fff_h INTERFACE) + set_target_properties(fff_h + PROPERTIES PUBLIC_HEADER "fff.h" + ) +endif() + +add_dependencies(fff fff_h) + +# Add an interface library for fff.h +target_include_directories(fff INTERFACE ${CMAKE_CURRENT_LIST_DIR}) + +option(FFF_UNIT_TESTING "If enabled, fff tests will be compiled and run" OFF) + +if(FFF_UNIT_TESTING) + # Add tests and samples + add_subdirectory(test) + add_subdirectory(examples) +endif() diff --git a/lib/fff/LICENSE b/lib/fff/LICENSE new file mode 100644 index 0000000..7b3129b --- /dev/null +++ b/lib/fff/LICENSE @@ -0,0 +1,25 @@ +/* +LICENSE + +The MIT License (MIT) + +Copyright (c) 2010 Michael Long + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in all +copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE +SOFTWARE. +*/ \ No newline at end of file diff --git a/lib/fff/README.md b/lib/fff/README.md new file mode 100644 index 0000000..0b10627 --- /dev/null +++ b/lib/fff/README.md @@ -0,0 +1,665 @@ +# Fake Function Framework (fff) +----------------------------- + +[![Build Status](https://travis-ci.org/meekrosoft/fff.svg?branch=master)](https://travis-ci.org/meekrosoft/fff) +[![Build status](https://ci.appveyor.com/api/projects/status/md1gn8cxnjkrkq3b/branch/master?svg=true)](https://ci.appveyor.com/project/wulfgarpro/fff/branch/master) +[![Gitter chat](https://badges.gitter.im/gitterHQ/gitter.png)](https://gitter.im/wulfgarpro/fff?utm_source=share-link&utm_medium=link&utm_campaign=share-link) + +- [A Fake Function Framework for C](#a-fake-function-framework-for-c) +- [Hello Fake World!](#hello-fake-world) +- [Capturing Arguments](#capturing-arguments) +- [Return Values](#return-values) +- [Resetting a Fake](#resetting-a-fake) +- [Call History](#call-history) +- [Default Argument History](#default-argument-history) +- [User Defined Argument History](#user-defined-argument-history) +- [Function Return Value Sequences](#function-return-value-sequences) +- [Custom Return Value Delegate](#custom-return-value-delegate) +- [Return Value History](#return-value-history) +- [Variadic Functions](#variadic-functions) +- [Common Questions](#common-questions) +- [Specifying GCC Function Attributes](#specifying-gcc-function-attributes) +- [Find Out More](#find-out-more) +- [Benefits](#benefits) +- [Under the Hood](#under-the-hood) +- [Cheat Sheet](#cheat-sheet) + +## A Fake Function Framework for C +fff is a micro-framework for creating fake C functions for tests. Because life +is too short to spend time hand-writing fake functions for testing. + +## Running all tests + +### Linux / MacOS +To run all the tests and sample apps, simply call `$ buildandtest`. This script +will call down into CMake with the following: + +```shell +cmake -B build -DFFF_GENERATE=ON -DFFF_UNIT_TESTING=ON +cmake --build build +ctest --test-dir build --output-on-failure +``` + +## Hello Fake World! + +Say you are testing an embedded user interface and you have a function that +you want to create a fake for: + +```c +// UI.c +... +void DISPLAY_init(); +... +``` + +Here's how you would define a fake function for this in your test suite: + +```c +// test.c(pp) +#include "fff.h" +DEFINE_FFF_GLOBALS; +FAKE_VOID_FUNC(DISPLAY_init); +``` + +And the unit test might look something like this: + +```c +TEST_F(GreeterTests, init_initialises_display) +{ + UI_init(); + ASSERT_EQ(DISPLAY_init_fake.call_count, 1); +} +``` + +So what has happened here? The first thing to note is that the framework is +header only, all you need to do to use it is download `fff.h` and include +it in your test suite. + +The magic is in the `FAKE_VOID_FUNC`. This +expands a macro that defines a function returning `void` +which has zero arguments. It also defines a struct +`"function_name"_fake` which contains all the information about the fake. +For instance, `DISPLAY_init_fake.call_count`is incremented every time the faked +function is called. + +Under the hood it generates a struct that looks like this: + +```c +typedef struct DISPLAY_init_Fake { + unsigned int call_count; + unsigned int arg_history_len; + unsigned int arg_histories_dropped; + void(*custom_fake)(); +} DISPLAY_init_Fake; +DISPLAY_init_Fake DISPLAY_init_fake; +``` + +## Capturing Arguments + +Ok, enough with the toy examples. What about faking functions with arguments? + +```c +// UI.c +... +void DISPLAY_output(char * message); +... +``` + +Here's how you would define a fake function for this in your test suite: + +```c +FAKE_VOID_FUNC(DISPLAY_output, char *); +``` + +And the unit test might look something like this: + +```c +TEST_F(UITests, write_line_outputs_lines_to_display) +{ + char msg[] = "helloworld"; + UI_write_line(msg); + ASSERT_EQ(DISPLAY_output_fake.call_count, 1); + ASSERT_EQ(strncmp(DISPLAY_output_fake.arg0_val, msg, 26), 0); +} +``` + + +There is no more magic here, the `FAKE_VOID_FUNC` works as in the +previous example. The number of arguments that the function takes is calculated, + and the macro arguments following the function name defines the argument +type (a char pointer in this example). + +A variable is created for every argument in the form +`"function_name"fake.argN_val` + +## Return Values + +When you want to define a fake function that returns a value, you should use the +`FAKE_VALUE_FUNC` macro. For instance: + +```c +// UI.c +... +unsigned int DISPLAY_get_line_capacity(); +unsigned int DISPLAY_get_line_insert_index(); +... +``` + +Here's how you would define fake functions for these in your test suite: + +```c +FAKE_VALUE_FUNC(unsigned int, DISPLAY_get_line_capacity); +FAKE_VALUE_FUNC(unsigned int, DISPLAY_get_line_insert_index); +``` + +And the unit test might look something like this: + +```c +TEST_F(UITests, when_empty_lines_write_line_doesnt_clear_screen) +{ + // given + DISPLAY_get_line_insert_index_fake.return_val = 1; + char msg[] = "helloworld"; + // when + UI_write_line(msg); + // then + ASSERT_EQ(DISPLAY_clear_fake.call_count, 0); +} +``` + +Of course you can mix and match these macros to define a value function with +arguments, for instance to fake: + +```c +double pow(double base, double exponent); +``` + +you would use a syntax like this: + +```c +FAKE_VALUE_FUNC(double, pow, double, double); +``` +## Resetting a Fake + +Good tests are isolated tests, so it is important to reset the fakes for each +unit test. All the fakes have a reset function to reset their arguments and +call counts. It is good practice is to call the reset function for all the +fakes in the setup function of your test suite. + +```c +void setup() +{ + // Register resets + RESET_FAKE(DISPLAY_init); + RESET_FAKE(DISPLAY_clear); + RESET_FAKE(DISPLAY_output_message); + RESET_FAKE(DISPLAY_get_line_capacity); + RESET_FAKE(DISPLAY_get_line_insert_index); +} +``` + +You might want to define a macro to do this: + +```c +/* List of fakes used by this unit tester */ +#define FFF_FAKES_LIST(FAKE) \ + FAKE(DISPLAY_init) \ + FAKE(DISPLAY_clear) \ + FAKE(DISPLAY_output_message) \ + FAKE(DISPLAY_get_line_capacity) \ + FAKE(DISPLAY_get_line_insert_index) + +void setup() +{ + /* Register resets */ + FFF_FAKES_LIST(RESET_FAKE); + + /* reset common FFF internal structures */ + FFF_RESET_HISTORY(); +} +``` + +## Call History +Say you want to test that a function calls functionA, then functionB, then +functionA again, how would you do that? Well fff maintains a call +history so that it is easy to assert these expectations. + +Here's how it works: + +```c +FAKE_VOID_FUNC(voidfunc2, char, char); +FAKE_VALUE_FUNC(long, longfunc0); + +TEST_F(FFFTestSuite, calls_in_correct_order) +{ + longfunc0(); + voidfunc2(); + longfunc0(); + + ASSERT_EQ(fff.call_history[0], (void *)longfunc0); + ASSERT_EQ(fff.call_history[1], (void *)voidfunc2); + ASSERT_EQ(fff.call_history[2], (void *)longfunc0); +} +``` + +They are reset by calling `FFF_RESET_HISTORY();` + +## Default Argument History + +The framework will by default store the arguments for the last ten calls made +to a fake function. + +```c +TEST_F(FFFTestSuite, when_fake_func_called_then_arguments_captured_in_history) +{ + voidfunc2('g', 'h'); + voidfunc2('i', 'j'); + ASSERT_EQ('g', voidfunc2_fake.arg0_history[0]); + ASSERT_EQ('h', voidfunc2_fake.arg1_history[0]); + ASSERT_EQ('i', voidfunc2_fake.arg0_history[1]); + ASSERT_EQ('j', voidfunc2_fake.arg1_history[1]); +} +``` + +There are two ways to find out if calls have been dropped. The first is to +check the dropped histories counter: + +```c +TEST_F(FFFTestSuite, when_fake_func_called_max_times_plus_one_then_one_argument_history_dropped) +{ + int i; + for(i = 0; i < 10; i++) + { + voidfunc2('1'+i, '2'+i); + } + voidfunc2('1', '2'); + ASSERT_EQ(1u, voidfunc2_fake.arg_histories_dropped); +} +``` + +The other is to check if the call count is greater than the history size: + +```c +ASSERT(voidfunc2_fake.arg_history_len < voidfunc2_fake.call_count); +``` + +The argument histories for a fake function are reset when the `RESET_FAKE` +function is called + +## User Defined Argument History + +If you wish to control how many calls to capture for argument history you can +override the default by defining it before include the `fff.h` like this: + +```c +// Want to keep the argument history for 13 calls +#define FFF_ARG_HISTORY_LEN 13 +// Want to keep the call sequence history for 17 function calls +#define FFF_CALL_HISTORY_LEN 17 + +#include "../fff.h" +``` + +## Function Return Value Sequences + +Often in testing we would like to test the behaviour of sequence of function call +events. One way to do this with fff is to specify a sequence of return values +with for the fake function. It is probably easier to describe with an example: + +```c +// faking "long longfunc();" +FAKE_VALUE_FUNC(long, longfunc0); + +TEST_F(FFFTestSuite, return_value_sequences_exhausted) +{ + long myReturnVals[3] = { 3, 7, 9 }; + SET_RETURN_SEQ(longfunc0, myReturnVals, 3); + ASSERT_EQ(myReturnVals[0], longfunc0()); + ASSERT_EQ(myReturnVals[1], longfunc0()); + ASSERT_EQ(myReturnVals[2], longfunc0()); + ASSERT_EQ(myReturnVals[2], longfunc0()); + ASSERT_EQ(myReturnVals[2], longfunc0()); +} +``` + +By specifying a return value sequence using the `SET_RETURN_SEQ` macro, +the fake will return the values given in the parameter array in sequence. When +the end of the sequence is reached the fake will continue to return the last +value in the sequence indefinitely. + +## Custom Return Value Delegate + +You can specify your own function to provide the return value for the fake. This +is done by setting the `custom_fake` member of the fake. Here's an example: + +```c +#define MEANING_OF_LIFE 42 +long my_custom_value_fake(void) +{ + return MEANING_OF_LIFE; +} +TEST_F(FFFTestSuite, when_value_custom_fake_called_THEN_it_returns_custom_return_value) +{ + longfunc0_fake.custom_fake = my_custom_value_fake; + long retval = longfunc0(); + ASSERT_EQ(MEANING_OF_LIFE, retval); +} +``` + +### Custom Return Value Delegate Sequences + +Say you have a function with an out parameter, and you want it to have a different behaviour +on the first three calls, for example: set the value 'x' to the out parameter on the first call, +the value 'y' to the out parameter on the second call, and the value 'z' to the out parameter +on the third call. You can specify a sequence of custom functions to a non-variadic function +using the `SET_CUSTOM_FAKE_SEQ` macro. Here's an example: + +```c +void voidfunc1outparam_custom_fake1(char *a) +{ + *a = 'x'; +} + +void voidfunc1outparam_custom_fake2(char *a) +{ + *a = 'y'; +} + +void voidfunc1outparam_custom_fake3(char *a) +{ + *a = 'z'; +} + +TEST_F(FFFTestSuite, custom_fake_sequence_not_exausthed) +{ + void (*custom_fakes[])(char *) = {voidfunc1outparam_custom_fake1, + voidfunc1outparam_custom_fake2, + voidfunc1outparam_custom_fake3}; + char a = 'a'; + + SET_CUSTOM_FAKE_SEQ(voidfunc1outparam, custom_fakes, 3); + + voidfunc1outparam(&a); + ASSERT_EQ('x', a); + voidfunc1outparam(&a); + ASSERT_EQ('y', a); + voidfunc1outparam(&a); + ASSERT_EQ('z', a); +} +``` + +The fake will call your custom functions in the order specified by the `SET_CUSTOM_FAKE_SEQ` +macro. When the last custom fake is reached the fake will keep calling the last custom +fake in the sequence. This macro works much like the `SET_RETURN_SEQ` macro. + +## Return Value History + +Say you have two functions f1 and f2. f2 must be called to release some resource +allocated by f1, but only in the cases where f1 returns zero. f1 could be +pthread_mutex_trylock and f2 could be pthread_mutex_unlock. fff will +save the history of returned values so this can be easily checked, even when +you use a sequence of custom fakes. Here's a simple example: + + TEST_F(FFFTestSuite, return_value_sequence_saved_in_history) + { + long myReturnVals[3] = { 3, 7, 9 }; + SET_RETURN_SEQ(longfunc0, myReturnVals, 3); + longfunc0(); + longfunc0(); + longfunc0(); + ASSERT_EQ(myReturnVals[0], longfunc0_fake.return_val_history[0]); + ASSERT_EQ(myReturnVals[1], longfunc0_fake.return_val_history[1]); + ASSERT_EQ(myReturnVals[2], longfunc0_fake.return_val_history[2]); + } + +You access the returned values in the `return_val_history` field. + +## Variadic Functions + +You can fake variadic functions using the macros `FAKE_VALUE_FUNC_VARARG` +and `FAKE_VOID_FUNC_VARARG`. For instance: + + FAKE_VALUE_FUNC_VARARG(int, fprintf, FILE *, const char*, ...); + +In order to access the variadic parameters from a custom fake function, declare a +`va_list` parameter. For instance, a custom fake for `fprintf()` +could call the real `fprintf()` like this: + + int fprintf_custom(FILE *stream, const char *format, va_list ap) { + if (fprintf0_fake.return_val < 0) // should we fail? + return fprintf0_fake.return_val; + return vfprintf(stream, format, ap); + } + +Just like [return value delegates](#custom-return-value-delegate-sequences), you can also specify sequences for variadic functions using `SET_CUSTOM_FAKE_SEQ`. +See the test files for examples. + +## Common Questions + +### How do I specify calling conventions for my fake functions? + +fff has a limited capability for enabling specification of Microsoft's Visual C/C++ calling conventions, but this support must be enabled when generating fff's header file `fff.h`. + +```bash +ruby fakegen.rb --with-calling-conventions > fff.h +``` + +By enabling this support, all of fff's fake function scaffolding will necessitate the specification of a calling convention, e.g. `__cdecl` for each VALUE or VOID fake. + +Here are some basic examples: take note that the placement of the calling convention being specified is different depending on whether the fake is a VOID or VALUE function. + +```c +FAKE_VOID_FUNC(__cdecl, voidfunc1, int); +FAKE_VALUE_FUNC(long, __cdecl, longfunc0); +``` + +### How do I fake a function that returns a value by reference? + +The basic mechanism that fff provides you in this case is the custom_fake field described in the *Custom Return Value Delegate* example above. + +You need to create a custom function (e.g. getTime_custom_fake) to produce the output optionally by use of a helper variable (e.g. getTime_custom_now) to retrieve that output from. Then some creativity to tie it all together. The most important part (IMHO) is to keep your test case readable and maintainable. + +In case your project uses a C compiler that supports nested functions (e.g. GCC), or when using C++ lambdas, you can even combine all this in a single unit test function so you can easily oversee all details of the test. + +```c +#include + +/* Configure FFF to use std::function, which enables capturing lambdas */ +#define CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN, FUNCNAME, ...) \ + std::function FUNCNAME + +#include "fff.h" + +/* The time structure */ +typedef struct { + int hour, min; +} Time; + +/* Our fake function */ +FAKE_VOID_FUNC(getTime, Time*); + +/* A test using the getTime fake function */ +TEST_F(FFFTestSuite, when_value_custom_fake_called_THEN_it_returns_custom_output) +{ + Time t; + Time getTime_custom_now = { + .hour = 13, + .min = 05, + }; + getTime_fake.custom_fake = [getTime_custom_now](Time *now) { + *now = getTime_custom_now; + }; + + /* when getTime is called */ + getTime(&t); + + /* then the specific time must be produced */ + ASSERT_EQ(t.hour, 13); + ASSERT_EQ(t.min, 05); +} +``` + +### How do I fake a function with a function pointer parameter? + +Using fff to stub functions that have function pointer parameter can cause problems when trying to stub them. Presented here is an example how to deal with this situation. + +If you need to stub a function that has a function pointer parameter, e.g. something like: + +```c +/* timer.h */ +typedef int timer_handle; +extern int timer_start(timer_handle handle, long delay, void (*cb_function) (int arg), int arg); +``` + +Then creating a fake like below will horribly fail when trying to compile because the fff macro will internally expand into an illegal variable ```int (*)(int) arg2_val```. + +```c +/* The fake, attempt one */ +FAKE_VALUE_FUNC(int, + timer_start, + timer_handle, + long, + void (*) (int argument), + int); +``` + +The solution to this problem is to create a bridging type that needs only to be visible in the unit tester. The fake will use that intermediate type. This way the compiler will not complain because the types match. + +```c +/* Additional type needed to be able to use callback in fff */ +typedef void (*timer_cb) (int argument); + +/* The fake, attempt two */ +FAKE_VALUE_FUNC(int, + timer_start, + timer_handle, + long, + timer_cb, + int); +``` + +Here are some ideas how to create a test case with callbacks. + +```c +/* Unit test */ +TEST_F(FFFTestSuite, test_fake_with_function_pointer) +{ + int cb_timeout_called = 0; + int result = 0; + + void cb_timeout(int argument) + { + cb_timeout_called++; + } + + int timer_start_custom_fake(timer_handle handle, + long delay, + void (*cb_function) (int arg), + int arg) + { + if (cb_function) cb_function(arg); + return timer_start_fake.return_val; + } + + /* given the custom fake for timer_start */ + timer_start_fake.return_val = 33; + timer_start_fake.custom_fake = timer_start_custom_fake; + + /* when timer_start is called + * (actually you would call your own function-under-test + * that would then call the fake function) + */ + result = timer_start(10, 100, cb_timeout, 55); + + /* then the timer_start fake must have been called correctly */ + ASSERT_EQ(result, 33); + ASSERT_EQ(timer_start_fake.call_count, 1); + ASSERT_EQ(timer_start_fake.arg0_val, 10); + ASSERT_EQ(timer_start_fake.arg1_val, 100); + ASSERT_EQ(timer_start_fake.arg2_val, cb_timeout); /* callback provided by unit tester */ + ASSERT_EQ(timer_start_fake.arg3_val, 55); + + /* and ofcourse our custom fake correctly calls the registered callback */ + ASSERT_EQ(cb_timeout_called, 1); +} +``` + +### How do I reuse a fake across multiple test-suites? + +fff functions like `FAKE_VALUE_FUNC` will perform both the declaration AND the definition of the fake function and the corresponding data structs. This cannot be placed in a header, since it will lead to multiple definitions of the fake functions. + +The solution is to separate declaration and definition of the fakes, and place the declaration into a public header file, and the definition into a private source file. + +Here is an example of how it could be done: + +```c +/* Public header file */ +#include "fff.h" + +DECLARE_FAKE_VALUE_FUNC(int, value_function, int, int); +DECLARE_FAKE_VOID_FUNC(void_function, int, int); +DECLARE_FAKE_VALUE_FUNC_VARARG(int, value_function_vargs, const char *, int, ...); +DECLARE_FAKE_VOID_FUNC_VARARG(void_function_vargs, const char *, int, ...); + + +/* Private source file file */ +#include "public_header.h" + +DEFINE_FAKE_VALUE_FUNC(int, value_function, int, int); +DEFINE_FAKE_VOID_FUNC(void_function, int, int); +DEFINE_FAKE_VALUE_FUNC_VARARG(int, value_function_vargs, const char *, int, ...); +DEFINE_FAKE_VOID_FUNC_VARARG(void_function_vargs, const char *, int, ...); + +``` + +## Specifying GCC Function Attributes + +You can specify GCC function attributes for your fakes using the `FFF_GCC_FUNCTION_ATTRIBUTES` directive. + +### Weak Functions + +One usful attribute is the _weak_ attribute that marks a function such that it can be overridden by a non-weak variant at link time. Using weak functions in combination with fff can help simplify your testing approach. + +For example: +* Define a library of fake functions, e.g. libfake.a. +* Link a binary (you might have many) that defines a subset of real variants of the fake functions to the aforementioned fake library. +* This has the benefit of allowing a binary to selectively use a subset of the required fake functions while testing the real variants without the need for many different make targets. + +You can mark all fakes with the weak attribute like so: +``` +#define FFF_GCC_FUNCTION_ATTRIBUTES __attribute__((weak)) +#include "fff.h" +``` + +See the example project that demonstrates the above approach: _./examples/weak_linking_. + +## Find Out More + +Look under the examples directory for full length examples in both C and C++. +There is also a test suite for the framework under the test directory. + +------------------------- + +## Benefits +So whats the point? + + * To make it easy to create fake functions for testing C code. + * It is simple - just include a header file and you are good to go. + * To work in both C and C++ test environments + + +## Under the Hood + * The fff.h header file is generated by a ruby script + * There are tests under _./test_ + * There is an example for testing an embedded UI and a hardware driver under _./examples_ + * There is an example of weak_linking under _./examples_ + + +## Cheat Sheet +| Macro | Description | Example | +|-------|-------------|---------| +| FAKE_VOID_FUNC(fn [,arg_types*]); | Define a fake function named fn returning void with n arguments | FAKE_VOID_FUNC(DISPLAY_output_message, const char*); | +| FAKE_VALUE_FUNC(return_type, fn [,arg_types*]); | Define a fake function returning a value with type return_type taking n arguments | FAKE_VALUE_FUNC(int, DISPLAY_get_line_insert_index); | +| FAKE_VOID_FUNC_VARARG(fn [,arg_types*], ...); | Define a fake variadic function returning void with type return_type taking n arguments and n variadic arguments | FAKE_VOID_FUNC_VARARG(fn, const char*, ...) | +| FAKE_VALUE_FUNC_VARARG(return_type, fn [,arg_types*], ...); | Define a fake variadic function returning a value with type return_type taking n arguments and n variadic arguments | FAKE_VALUE_FUNC_VARARG(int, fprintf, FILE*, const char*, ...) | +| RESET_FAKE(fn); | Reset the state of fake function called fn | RESET_FAKE(DISPLAY_init); | diff --git a/lib/fff/examples/CMakeLists.txt b/lib/fff/examples/CMakeLists.txt new file mode 100644 index 0000000..58a3d09 --- /dev/null +++ b/lib/fff/examples/CMakeLists.txt @@ -0,0 +1,6 @@ +# Copyright 2022 Google LLC +# SPDX-License-Identifier: Apache-2.0 + +add_subdirectory(driver_testing) +add_subdirectory(embedded_ui) +add_subdirectory(weak_linking) diff --git a/lib/fff/examples/driver_testing/CMakeLists.txt b/lib/fff/examples/driver_testing/CMakeLists.txt new file mode 100644 index 0000000..3580349 --- /dev/null +++ b/lib/fff/examples/driver_testing/CMakeLists.txt @@ -0,0 +1,31 @@ +# Copyright 2022 Google LLC +# SPDX-License-Identifier: Apache-2.0 + +# Create the driver test binary +add_executable(driver_test + src/driver.c + src/driver.test.cpp +) +target_include_directories(driver_test PRIVATE include) +target_link_libraries(driver_test PRIVATE GTest::gtest_main fff) +target_compile_definitions(driver_test PUBLIC TEST_USER_OWN_TR1_TUPLE=1 TESTING) + +# Create the driver fff test binary +add_executable(driver_fff_test + src/driver.c + src/driver.test.fff.cpp +) +target_include_directories(driver_fff_test PRIVATE include) +target_link_libraries(driver_fff_test PRIVATE GTest::gtest_main fff) +target_compile_definitions(driver_fff_test PUBLIC TEST_USER_OWN_TR1_TUPLE=1 TESTING) + +# Add tests to ctest +add_test( + NAME driver_test + COMMAND $ +) + +add_test( + NAME driver_fff_test + COMMAND $ +) diff --git a/lib/fff/examples/driver_testing/include/driver.h b/lib/fff/examples/driver_testing/include/driver.h new file mode 100644 index 0000000..b7406d4 --- /dev/null +++ b/lib/fff/examples/driver_testing/include/driver.h @@ -0,0 +1,11 @@ + +#ifndef DRIVER +#define DRIVER + +#include + +void driver_write(uint8_t val); +uint8_t driver_read(); +void driver_init_device(); + +#endif /*include guard*/ diff --git a/lib/fff/examples/driver_testing/include/hardware_abstraction.h b/lib/fff/examples/driver_testing/include/hardware_abstraction.h new file mode 100644 index 0000000..affa92e --- /dev/null +++ b/lib/fff/examples/driver_testing/include/hardware_abstraction.h @@ -0,0 +1,15 @@ +#ifndef HARDWARE_ABSTRACTION +#define HARDWARE_ABSTRACTION + +#include + +#ifndef TESTING +#define IO_MEM_RD8(ADDR) (*((volatile uint8_t *)(ADDR))) +#define IO_MEM_WR8(ADDR, VAL_8) (*((volatile uint8_t *)(ADDR)) = (VAL_8)) +#else +/* In testing use fake functions to record calls to IO memory */ +uint8_t IO_MEM_RD8(uint32_t reg); +void IO_MEM_WR8(uint32_t reg, uint8_t val); +#endif + +#endif /* Include guard */ diff --git a/lib/fff/examples/driver_testing/include/registers.h b/lib/fff/examples/driver_testing/include/registers.h new file mode 100644 index 0000000..5c9e5a9 --- /dev/null +++ b/lib/fff/examples/driver_testing/include/registers.h @@ -0,0 +1,13 @@ +#ifndef REGISTERS_H_ +#define REGISTERS_H_ + +#define DRIVER_OUTPUT_REGISTER 0xFFAAu +#define DRIVER_INPUT_REGISTER 0XFFABu +#define DRIVER_PERIPHERAL_ENABLE_REG 0xFFACu +#define DRIVER_PERIPHERAL_INITIALIZE_REG 0xFFACu + +#define HARDWARE_VERSION_REGISTER 0xFF00u +#define HARDWARE_REV_A 0x00u +#define HARDWARE_REV_B 0x01u + +#endif /* REGISTERS_H_ */ diff --git a/lib/fff/examples/driver_testing/src/driver.c b/lib/fff/examples/driver_testing/src/driver.c new file mode 100644 index 0000000..9454ba6 --- /dev/null +++ b/lib/fff/examples/driver_testing/src/driver.c @@ -0,0 +1,24 @@ + + +#include "hardware_abstraction.h" +#include "registers.h" + +void driver_write(uint8_t val) +{ + IO_MEM_WR8(DRIVER_OUTPUT_REGISTER, val); +} + +uint8_t driver_read() +{ + return IO_MEM_RD8(DRIVER_INPUT_REGISTER); +} + +void driver_init_device() +{ + uint8_t hw_version = IO_MEM_RD8(HARDWARE_VERSION_REGISTER); + if(HARDWARE_REV_B == hw_version) + { + IO_MEM_WR8(DRIVER_PERIPHERAL_ENABLE_REG, 1); + } + IO_MEM_WR8(DRIVER_PERIPHERAL_INITIALIZE_REG, 1); +} diff --git a/lib/fff/examples/driver_testing/src/driver.test.cpp b/lib/fff/examples/driver_testing/src/driver.test.cpp new file mode 100644 index 0000000..cd80bb3 --- /dev/null +++ b/lib/fff/examples/driver_testing/src/driver.test.cpp @@ -0,0 +1,50 @@ +extern "C" +{ +#include "driver.h" +#include "registers.h" +} +#include "../../../fff.h" +#include + + +extern "C" +{ + static uint8_t readVal; + static int readCalled; + static uint32_t readRegister; + uint8_t IO_MEM_RD8(uint32_t reg) + { + readRegister = reg; + readCalled++; + return readVal; + } + + static uint32_t writeRegister; + static uint8_t writeVal; + static int writeCalled; + void IO_MEM_WR8(uint32_t reg, uint8_t val) + { + writeRegister = reg; + writeVal = val; + writeCalled++; + } +} + +TEST(Driver, When_writing_Then_writes_data_to_DRIVER_OUTPUT_REGISTER) +{ + driver_write(0x34); + ASSERT_EQ(1u, writeCalled); + ASSERT_EQ(0x34u, writeVal); + ASSERT_EQ(DRIVER_OUTPUT_REGISTER, writeRegister); +} + + +TEST(Driver, When_reading_data_Then_reads_from_DRIVER_INPUT_REGISTER) +{ + readVal = 0x55; + uint8_t returnedValue = driver_read(); + ASSERT_EQ(1u, readCalled); + ASSERT_EQ(0x55u, returnedValue); + ASSERT_EQ(readRegister, DRIVER_INPUT_REGISTER); +} + diff --git a/lib/fff/examples/driver_testing/src/driver.test.fff.cpp b/lib/fff/examples/driver_testing/src/driver.test.fff.cpp new file mode 100644 index 0000000..56f6192 --- /dev/null +++ b/lib/fff/examples/driver_testing/src/driver.test.fff.cpp @@ -0,0 +1,63 @@ +extern "C"{ + #include "driver.h" + #include "registers.h" + #include "hardware_abstraction.h" +} +#include "fff.h" +#include + +DEFINE_FFF_GLOBALS; + +FAKE_VOID_FUNC(IO_MEM_WR8, uint32_t, uint8_t); +FAKE_VALUE_FUNC(uint8_t, IO_MEM_RD8, uint32_t); + +class DriverTestFFF : public testing::Test +{ +public: + void SetUp() + { + RESET_FAKE(IO_MEM_WR8); + RESET_FAKE(IO_MEM_RD8); + FFF_RESET_HISTORY(); + } + +}; + +TEST_F(DriverTestFFF, When_writing_Then_writes_data_to_DRIVER_OUTPUT_REGISTER) +{ + driver_write(0x34); + ASSERT_EQ(1u, IO_MEM_WR8_fake.call_count); + ASSERT_EQ(0x34u, IO_MEM_WR8_fake.arg1_val); + ASSERT_EQ(DRIVER_OUTPUT_REGISTER, IO_MEM_WR8_fake.arg0_val); +} + + +TEST_F(DriverTestFFF, When_reading_data_Then_reads_from_DRIVER_INPUT_REGISTER) +{ + IO_MEM_RD8_fake.return_val = 0x55; + uint8_t returnedValue = driver_read(); + ASSERT_EQ(1u, IO_MEM_RD8_fake.call_count); + ASSERT_EQ(0x55u, returnedValue); + ASSERT_EQ(IO_MEM_RD8_fake.arg0_val, DRIVER_INPUT_REGISTER); +} + +TEST_F(DriverTestFFF, Given_revisionB_device_When_initialize_Then_enable_peripheral_before_initializing_it) +{ + // Given + IO_MEM_RD8_fake.return_val = HARDWARE_REV_B; + // When + driver_init_device(); + + //Then + // Gets the hardware revision + ASSERT_EQ((void*) IO_MEM_RD8, fff.call_history[0]); + ASSERT_EQ(HARDWARE_VERSION_REGISTER, IO_MEM_RD8_fake.arg0_history[0]); + // Enables Peripheral + ASSERT_EQ((void*) IO_MEM_WR8, fff.call_history[1]); + ASSERT_EQ(DRIVER_PERIPHERAL_ENABLE_REG, IO_MEM_WR8_fake.arg0_history[0]); + ASSERT_EQ(1, IO_MEM_WR8_fake.arg1_history[0]); + // Initializes Peripheral + ASSERT_EQ((void*) IO_MEM_WR8, fff.call_history[2]); + ASSERT_EQ(DRIVER_PERIPHERAL_INITIALIZE_REG,IO_MEM_WR8_fake.arg0_history[1]); + ASSERT_EQ(1, IO_MEM_WR8_fake.arg1_history[1]); +} diff --git a/lib/fff/examples/embedded_ui/CMakeLists.txt b/lib/fff/examples/embedded_ui/CMakeLists.txt new file mode 100644 index 0000000..d2f3015 --- /dev/null +++ b/lib/fff/examples/embedded_ui/CMakeLists.txt @@ -0,0 +1,23 @@ +# Copyright 2022 Google LLC +# SPDX-License-Identifier: Apache-2.0 + +# Create the ui_test_ansic test binary +add_executable(ui_test_ansic src/UI_test_ansic.c src/UI.c) +target_include_directories(ui_test_ansic PRIVATE include) +target_link_libraries(ui_test_ansic PRIVATE fff) + +# Create the ui_test_cpp test binary +add_executable(ui_test_cpp src/UI_test_cpp.cpp src/UI.c) +target_include_directories(ui_test_cpp PRIVATE include) +target_link_libraries(ui_test_cpp PRIVATE GTest::gtest_main fff) + +# Add tests to ctest +add_test( + NAME ui_test_ansic + COMMAND $ +) + +add_test( + NAME ui_test_cpp + COMMAND $ +) diff --git a/lib/fff/examples/embedded_ui/Kata.txt b/lib/fff/examples/embedded_ui/Kata.txt new file mode 100644 index 0000000..b466c36 --- /dev/null +++ b/lib/fff/examples/embedded_ui/Kata.txt @@ -0,0 +1,25 @@ + +Problem Definition +------------------ +The task is to write a user interface module for an embedded device. + +Interrupts: + * The user interface is responsible for initializing the display. + * The user interface will register an interrupt handler for GPIO input 2 (a + push button). + * It will be possible to register a callback function for button presses. + * When there is no callback function set the irq handler will increment a + missed irq counter. + * When the interrupt occurs the handler will schedule or execute the button + press callback if there is one registered. +Output: + * Tasks can write messages to the user interface to be output on the display. + * The display is line oriented; when the last line of the display is written + the user interface is responsible for clearing the display. + * The display is 26 characters wide. Any string longer than that must be + truncated before being sent to the display. The string must be null + terminated and thus maximum 27 bytes long. + + * BONUS: Have the display be scrolling, i.e. when the display is full, the + previous lines must be shifted up one and the new line written in the bottom + line. diff --git a/lib/fff/examples/embedded_ui/include/DISPLAY.h b/lib/fff/examples/embedded_ui/include/DISPLAY.h new file mode 100644 index 0000000..45ca62e --- /dev/null +++ b/lib/fff/examples/embedded_ui/include/DISPLAY.h @@ -0,0 +1,17 @@ +/* + * DISPLAY.h + * + * Created on: Dec 17, 2010 + * Author: mlong + */ + +#ifndef DISPLAY_H_ +#define DISPLAY_H_ + +void DISPLAY_init(); +void DISPLAY_clear(); +unsigned int DISPLAY_get_line_capacity(); +unsigned int DISPLAY_get_line_insert_index(); +void DISPLAY_output(char * message); + +#endif /* DISPLAY_H_ */ diff --git a/lib/fff/examples/embedded_ui/include/SYSTEM.h b/lib/fff/examples/embedded_ui/include/SYSTEM.h new file mode 100644 index 0000000..080144f --- /dev/null +++ b/lib/fff/examples/embedded_ui/include/SYSTEM.h @@ -0,0 +1,21 @@ +/* + * DISPLAY.h + * + * Created on: Dec 17, 2010 + * Author: mlong + */ + +#ifndef SYSTEM_H_ +#define SYSTEM_H_ + +typedef void (*irq_func_t)(void); + +#define IRQ_GPIO_0 0x70 +#define IRQ_GPIO_1 0x71 +#define IRQ_GPIO_2 0x72 +#define IRQ_GPIO_3 0x73 + + +void SYSTEM_register_irq(irq_func_t, unsigned int irq); + +#endif /* SYSTEM_H_ */ diff --git a/lib/fff/examples/embedded_ui/include/UI.h b/lib/fff/examples/embedded_ui/include/UI.h new file mode 100644 index 0000000..8a3fb5c --- /dev/null +++ b/lib/fff/examples/embedded_ui/include/UI.h @@ -0,0 +1,12 @@ +#ifndef UI_H_ +#define UI_H_ + +typedef void (*button_cbk_t)(void); + +void UI_init(); +unsigned int UI_get_missed_irqs(); +void UI_button_irq_handler(); +void UI_register_button_cbk(button_cbk_t cbk); +void UI_write_line(char *line); + +#endif /* UI_H_ */ diff --git a/lib/fff/examples/embedded_ui/src/UI.c b/lib/fff/examples/embedded_ui/src/UI.c new file mode 100644 index 0000000..8ce996e --- /dev/null +++ b/lib/fff/examples/embedded_ui/src/UI.c @@ -0,0 +1,48 @@ +#include "UI.h" +#include "DISPLAY.h" +#include "SYSTEM.h" +#include + +static unsigned int missed_irq_counter; +button_cbk_t button_cbk; + + +void UI_init() +{ + DISPLAY_init(); + SYSTEM_register_irq(UI_button_irq_handler, IRQ_GPIO_2); + button_cbk = 0; + missed_irq_counter = 0; +} + +unsigned int UI_get_missed_irqs() +{ + return missed_irq_counter; +} + +void UI_button_irq_handler() +{ + if(button_cbk) + { + button_cbk(); + } + else + { + missed_irq_counter++; + } +} + +void UI_register_button_cbk(button_cbk_t cbk) +{ + button_cbk = cbk; +} + +void UI_write_line(char *line) +{ + static char out[27]; + strncpy(out, line, 26); + out[26] = '\0'; + if(DISPLAY_get_line_capacity() == DISPLAY_get_line_insert_index()) + DISPLAY_clear(); + DISPLAY_output(out); +} diff --git a/lib/fff/examples/embedded_ui/src/UI_test_ansic.c b/lib/fff/examples/embedded_ui/src/UI_test_ansic.c new file mode 100644 index 0000000..3e3fce9 --- /dev/null +++ b/lib/fff/examples/embedded_ui/src/UI_test_ansic.c @@ -0,0 +1,183 @@ +#include "UI.h" +#include "fff.h" +#include "SYSTEM.h" +#include "DISPLAY.h" + +#include +#include +#include + +/* Test Framework :-) */ +void setup(); +#define TEST_F(SUITE, NAME) void NAME() +#define RUN_TEST(SUITE, TESTNAME) printf(" Running %s.%s: \n", #SUITE, #TESTNAME); setup(); TESTNAME(); printf(" SUCCESS\n"); + +DEFINE_FFF_GLOBALS; + +/* SYSTEM.h */ +FAKE_VOID_FUNC2(SYSTEM_register_irq, irq_func_t, unsigned int); +/* DISPLAY.h */ +FAKE_VOID_FUNC(DISPLAY_init); +FAKE_VOID_FUNC(DISPLAY_clear); +FAKE_VOID_FUNC(DISPLAY_output, char *); +FAKE_VALUE_FUNC(unsigned int, DISPLAY_get_line_capacity); +FAKE_VALUE_FUNC(unsigned int, DISPLAY_get_line_insert_index); + +FAKE_VOID_FUNC0(button_press_cbk); + + + +/* Initialializers called for every test */ +void setup() +{ + RESET_FAKE(SYSTEM_register_irq); + + RESET_FAKE(DISPLAY_init) + RESET_FAKE(DISPLAY_clear) + RESET_FAKE(DISPLAY_output) + RESET_FAKE(DISPLAY_get_line_capacity) + RESET_FAKE(DISPLAY_get_line_insert_index); + + RESET_FAKE(button_press_cbk); + + FFF_RESET_HISTORY(); + + DISPLAY_get_line_capacity_fake.return_val = 2; +} + +/* Tests go here */ +TEST_F(UITests, init_will_initialise_display) +{ + UI_init(); + assert(DISPLAY_init_fake.call_count == 1); +} + +TEST_F(UITests, init_will_register_interrupt_gpio2) +{ + UI_init(); + assert(SYSTEM_register_irq_fake.call_count == 1); + assert(SYSTEM_register_irq_fake.arg0_val == UI_button_irq_handler); + assert(SYSTEM_register_irq_fake.arg1_val == IRQ_GPIO_2); +} + +TEST_F(UITests, when_no_irq_then_missed_irq_counter_zero) +{ + assert(UI_get_missed_irqs() == 0); +} + +TEST_F(UITests, when_one_irq_and_no_handler_then_missed_irq_counter_one) +{ + UI_button_irq_handler(); + assert(UI_get_missed_irqs() == 1); +} + +TEST_F(UITests, when_one_irq_and_valid_callback_then_missed_irq_counter_zero) +{ + UI_init(); + UI_register_button_cbk(button_press_cbk); + UI_button_irq_handler(); + assert(UI_get_missed_irqs() == 0); +} + +TEST_F(UITests, when_one_irq_and_valid_callback_then_callback_called) +{ + UI_register_button_cbk(button_press_cbk); + UI_button_irq_handler(); + assert(button_press_cbk_fake.call_count == 1); +} + +TEST_F(UITests, write_line_outputs_lines_to_display) +{ + char msg[] = "helloworld"; + UI_write_line(msg); + assert(DISPLAY_output_fake.call_count == 1); + assert(strncmp(DISPLAY_output_fake.arg0_val, msg, 26) == 0); +} + +TEST_F(UITests, when_no_empty_lines_write_line_clears_screen_and_outputs_lines_to_display) +{ + DISPLAY_get_line_insert_index_fake.return_val = 2; + char msg[] = "helloworld"; + + UI_write_line(msg); + + assert(DISPLAY_clear_fake.call_count == 1); + assert(DISPLAY_output_fake.call_count == 1); + // Check the order of the calls: Don't care about the first two: + // DISPLAY_get_line_capacity and DISPLAY_get_line_insert_index + assert(fff.call_history_idx == 4); + assert(fff.call_history[2] == (void *) DISPLAY_clear); + assert(fff.call_history[3] == (void *) DISPLAY_output); +} + +TEST_F(UITests, when_empty_lines_write_line_doesnt_clear_screen) +{ + // given + DISPLAY_get_line_insert_index_fake.return_val = 1; + char msg[] = "helloworld"; + // when + UI_write_line(msg); + // then + assert(DISPLAY_clear_fake.call_count == 0); +} + +TEST_F(UITests, when_string_longer_than_26_then_truncated_string_output) +{ + // given + char input[] = "abcdefghijklmnopqrstuvwxyz0123456789"; + char expected[] = "abcdefghijklmnopqrstuvwxyz"; + // when + UI_write_line(input); + // then + assert(strncmp(expected, DISPLAY_output_fake.arg0_val, 37) == 0); +} + +TEST_F(UITests, when_outputting_to_full_display_then_previous_inserted) +{ + // given + DISPLAY_get_line_insert_index_fake.return_val = 1; + char oldest[] = "oldest"; + char newest[] = "newest"; + // when + UI_write_line(oldest); + UI_write_line(newest); + // then + + assert(DISPLAY_output_fake.call_count == 2); + + // fills last line + assert(strncmp(oldest, DISPLAY_output_fake.arg0_history[0], 37) == 0); + //clears + assert(DISPLAY_clear_fake.call_count == 1); + // inserts old line at first + assert(strncmp(oldest, DISPLAY_output_fake.arg0_history[1], 37) == 0); + // then inserts new line + assert(strncmp(newest, DISPLAY_output_fake.arg0_history[2], 37) == 0); +} + +int main() +{ + setbuf(stdout, NULL); + fprintf(stdout, "-------------\n"); + fprintf(stdout, "Running Tests\n"); + fprintf(stdout, "-------------\n\n"); + fflush(0); + + /* Run tests */ + RUN_TEST(UITests, init_will_initialise_display); + RUN_TEST(UITests, init_will_register_interrupt_gpio2); + RUN_TEST(UITests, when_no_irq_then_missed_irq_counter_zero); + RUN_TEST(UITests, when_one_irq_and_no_handler_then_missed_irq_counter_one); + RUN_TEST(UITests, when_one_irq_and_valid_callback_then_missed_irq_counter_zero); + RUN_TEST(UITests, when_one_irq_and_valid_callback_then_callback_called); + RUN_TEST(UITests, write_line_outputs_lines_to_display); + RUN_TEST(UITests, when_no_empty_lines_write_line_clears_screen_and_outputs_lines_to_display); + RUN_TEST(UITests, when_empty_lines_write_line_doesnt_clear_screen); + RUN_TEST(UITests, when_string_longer_than_26_then_truncated_string_output); + + printf("\n-------------\n"); + printf("Complete\n"); + printf("-------------\n\n"); + + return 0; +} diff --git a/lib/fff/examples/embedded_ui/src/UI_test_cpp.cpp b/lib/fff/examples/embedded_ui/src/UI_test_cpp.cpp new file mode 100644 index 0000000..e7d9bba --- /dev/null +++ b/lib/fff/examples/embedded_ui/src/UI_test_cpp.cpp @@ -0,0 +1,136 @@ +extern "C"{ +#include "UI.h" +#include "SYSTEM.h" +#include "DISPLAY.h" +} +#include + + +#include "fff.h" +DEFINE_FFF_GLOBALS; + +/* SYSTEM.h */ +FAKE_VOID_FUNC(SYSTEM_register_irq, irq_func_t, unsigned int); +/* DISPLAY.h */ +FAKE_VOID_FUNC(DISPLAY_init); +FAKE_VOID_FUNC(DISPLAY_clear); +FAKE_VOID_FUNC(DISPLAY_output, char *); +FAKE_VALUE_FUNC(unsigned int, DISPLAY_get_line_capacity); +FAKE_VALUE_FUNC(unsigned int, DISPLAY_get_line_insert_index); + +FAKE_VOID_FUNC(button_press_cbk); + + +class UITests : public testing::Test +{ +public: + + void SetUp() + { + // Register resets + RESET_FAKE(SYSTEM_register_irq); + + RESET_FAKE(DISPLAY_init) + RESET_FAKE(DISPLAY_clear) + RESET_FAKE(DISPLAY_output) + RESET_FAKE(DISPLAY_get_line_capacity) + RESET_FAKE(DISPLAY_get_line_insert_index); + + RESET_FAKE(button_press_cbk); + + FFF_RESET_HISTORY(); + // non default init + DISPLAY_get_line_capacity_fake.return_val = 2; + } +}; + + + +/* Tests go here */ +TEST_F(UITests, init_will_initialise_display) +{ + UI_init(); + ASSERT_EQ(DISPLAY_init_fake.call_count, 1); +} + +TEST_F(UITests, init_will_register_interrupt_gpio2) +{ + UI_init(); + ASSERT_EQ(SYSTEM_register_irq_fake.call_count, 1); + ASSERT_EQ((void *)SYSTEM_register_irq_fake.arg0_val, (void *)UI_button_irq_handler); + ASSERT_EQ(SYSTEM_register_irq_fake.arg1_val, IRQ_GPIO_2); +} + +TEST_F(UITests, when_no_irq_then_missed_irq_counter_zero) +{ + ASSERT_EQ(UI_get_missed_irqs(), 0); +} + +TEST_F(UITests, when_one_irq_and_no_handler_then_missed_irq_counter_one) +{ + UI_button_irq_handler(); + ASSERT_EQ(UI_get_missed_irqs(), 1); +} + +TEST_F(UITests, when_one_irq_and_valid_callback_then_missed_irq_counter_zero) +{ + UI_init(); + UI_register_button_cbk(button_press_cbk); + UI_button_irq_handler(); + ASSERT_EQ(UI_get_missed_irqs(), 0); +} + +TEST_F(UITests, when_one_irq_and_valid_callback_then_callback_called) +{ + UI_register_button_cbk(button_press_cbk); + UI_button_irq_handler(); + ASSERT_EQ(button_press_cbk_fake.call_count, 1); +} + +TEST_F(UITests, write_line_outputs_lines_to_display) +{ + char msg[] = "helloworld"; + UI_write_line(msg); + ASSERT_EQ(DISPLAY_output_fake.call_count, 1); + ASSERT_EQ(strncmp(DISPLAY_output_fake.arg0_val, msg, 26), 0); +} + +TEST_F(UITests, when_no_empty_lines_write_line_clears_screen_and_outputs_lines_to_display) +{ + DISPLAY_get_line_insert_index_fake.return_val = 2; + char msg[] = "helloworld"; + + UI_write_line(msg); + + ASSERT_EQ(DISPLAY_clear_fake.call_count, 1); + ASSERT_EQ(DISPLAY_output_fake.call_count, 1); + // Check the order of the calls: Don't care about the first two: + // DISPLAY_get_line_capacity and DISPLAY_get_line_insert_index + ASSERT_EQ(fff.call_history_idx, 4); + ASSERT_EQ(fff.call_history[2], (void *) DISPLAY_clear); + ASSERT_EQ(fff.call_history[3], (void *) DISPLAY_output); +} + +TEST_F(UITests, when_empty_lines_write_line_doesnt_clear_screen) +{ + // given + DISPLAY_get_line_insert_index_fake.return_val = 1; + char msg[] = "helloworld"; + // when + UI_write_line(msg); + // then + ASSERT_EQ(DISPLAY_clear_fake.call_count, 0); +} + +TEST_F(UITests, when_string_longer_than_26_then_truncated_string_output) +{ + // given + char input[] = "abcdefghijklmnopqrstuvwxyz0123456789"; + char expected[] = "abcdefghijklmnopqrstuvwxyz"; + // when + UI_write_line(input); + // then + ASSERT_EQ(strncmp(expected, DISPLAY_output_fake.arg0_val, 37), 0); +} + + diff --git a/lib/fff/examples/weak_linking/CMakeLists.txt b/lib/fff/examples/weak_linking/CMakeLists.txt new file mode 100644 index 0000000..b1d5679 --- /dev/null +++ b/lib/fff/examples/weak_linking/CMakeLists.txt @@ -0,0 +1,54 @@ +# Copyright 2022 Google LLC +# SPDX-License-Identifier: Apache-2.0 + +# Skip these tests for Windows +if(WIN32) + message(STATUS "Weak linking requires __attribute__((weak)) which isn't supported on MS VS, skipping tests") + return() +endif() + +# Set the global FFF_GCC_FUNCTION_ATTRIBUTES for config.h +set(FFF_GCC_FUNCTION_ATTRIBUTES "__attribute__((weak))") +configure_file(config/config.h.in ${CMAKE_CURRENT_BINARY_DIR}/config.h) + +# Create a libfakes static library that will be used in the executables below. +# This library will depend on the above generated config.h which will add the +# FFF 'weak' function attributes. +add_library(libfakes STATIC + test/src/bus.fake.c + test/src/display.fake.c + test/src/error.fake.c + test/src/sensor.fake.c + test/src/test_common.c +) +target_precompile_headers(libfakes PUBLIC ${CMAKE_CURRENT_BINARY_DIR}/config.h) +target_include_directories(libfakes PUBLIC include test/include) +target_link_libraries(libfakes PUBLIC fff) + +# Create the main test binary +add_executable(test_main src/main.c test/src/main.test.c) +target_link_libraries(test_main PRIVATE libfakes) + +# Create the sensor test binary +add_executable(test_sensor src/sensor.c test/src/sensor.test.c) +target_link_libraries(test_sensor PRIVATE libfakes) + +# Create the display test binary +add_executable(test_display src/display.c test/src/display.test.c ${LIBFAKES_SRCS}) +target_link_libraries(test_display PRIVATE libfakes) + +# Add tests to ctest +add_test( + NAME test_main + COMMAND $ +) + +add_test( + NAME test_sensor + COMMAND $ +) + +add_test( + NAME test_display + COMMAND $ +) diff --git a/lib/fff/examples/weak_linking/config/config.h.in b/lib/fff/examples/weak_linking/config/config.h.in new file mode 100644 index 0000000..30121ce --- /dev/null +++ b/lib/fff/examples/weak_linking/config/config.h.in @@ -0,0 +1,5 @@ +/* Copyright 2022 Google LLC + * SPDX-License-Identifier: Apache-2.0 + */ + +#cmakedefine FFF_GCC_FUNCTION_ATTRIBUTES @FFF_GCC_FUNCTION_ATTRIBUTES@ diff --git a/lib/fff/examples/weak_linking/include/bus.h b/lib/fff/examples/weak_linking/include/bus.h new file mode 100644 index 0000000..84a56cf --- /dev/null +++ b/lib/fff/examples/weak_linking/include/bus.h @@ -0,0 +1,6 @@ +#pragma once + +#include "error.h" + +bool bus_read_write( uint8_t dev, uint8_t registry, uint8_t* buffer, int len, bool assume_echo ); +bool bus_write( uint8_t dev, uint8_t registry, const uint8_t* buffer, int len, bool assume_echo ); diff --git a/lib/fff/examples/weak_linking/include/display.h b/lib/fff/examples/weak_linking/include/display.h new file mode 100644 index 0000000..da1ee1f --- /dev/null +++ b/lib/fff/examples/weak_linking/include/display.h @@ -0,0 +1,5 @@ +#pragma once +#include "error.h" + +bool display_init(); +void display_update( const char* info ); diff --git a/lib/fff/examples/weak_linking/include/error.h b/lib/fff/examples/weak_linking/include/error.h new file mode 100644 index 0000000..dd52269 --- /dev/null +++ b/lib/fff/examples/weak_linking/include/error.h @@ -0,0 +1,7 @@ +#pragma once + +#include +#include + +void runtime_error( const char* msg ); +char* runtime_error_nice_print( const char* msg ); diff --git a/lib/fff/examples/weak_linking/include/sensor.h b/lib/fff/examples/weak_linking/include/sensor.h new file mode 100644 index 0000000..e199e45 --- /dev/null +++ b/lib/fff/examples/weak_linking/include/sensor.h @@ -0,0 +1,6 @@ +#pragma once + +#include "error.h" + +bool sensor_init(); +float sensor_read(); diff --git a/lib/fff/examples/weak_linking/src/bus.c b/lib/fff/examples/weak_linking/src/bus.c new file mode 100644 index 0000000..5706932 --- /dev/null +++ b/lib/fff/examples/weak_linking/src/bus.c @@ -0,0 +1,30 @@ +#pragma once + +uint16_t* BUS_REGISTER_BASE = (uint16_t*)0xDEADBEEF; + +typedef struct +{ + uint16_t action; + uint16_t reg; + uint8_t input; + uint8_t output +} BusDevice; + +BusDevice* BUS = (BusDevice*)BUS_REGISTER_BASE; + +bool bus_read_write( uint8_t dev, uint8_t registry, uint8_t* buffer, int len, bool assume_echo ) +{ + // Something that we dont want to run, since the emulation would be hard. + BUS->action = 0x01; + BUS->reg = registry; + for ( int loop =0 ; loop < len; loop ++ ) + { + char output = buffer[loop]; + BUS->output = output; + buffer[loop] = BUS->input; + + if ( ( assume_echo ) && ( buffer[loop] != output ) ) + return false; + } + return true; +} diff --git a/lib/fff/examples/weak_linking/src/display.c b/lib/fff/examples/weak_linking/src/display.c new file mode 100644 index 0000000..1b9a7d6 --- /dev/null +++ b/lib/fff/examples/weak_linking/src/display.c @@ -0,0 +1,29 @@ +#include + +#include "display.h" +#include "bus.h" + +#define DISPLAY_ADDRESS 0xAF +#define DISPLAY_REG_INIT 0x10 +#define DISPLAY_REG_UPDATE 0x20 + +bool display_init() +{ + char init_config[] = { 0xDE, 0xFE, 0x00 }; + bus_read_write( DISPLAY_ADDRESS, DISPLAY_REG_INIT, (uint8_t*)init_config, 3, false ); + + if (init_config[2] != 0x10) + return false; + + return true; +} + +void display_update( const char* info ) +{ + int len = strlen( info ); + + if ( bus_write( DISPLAY_ADDRESS, DISPLAY_REG_UPDATE, (const uint8_t*)info, len, true ) != true ) + { + runtime_error("display update failed!"); + } +} diff --git a/lib/fff/examples/weak_linking/src/error.c b/lib/fff/examples/weak_linking/src/error.c new file mode 100644 index 0000000..5e7db63 --- /dev/null +++ b/lib/fff/examples/weak_linking/src/error.c @@ -0,0 +1,10 @@ +#include +#include "error.h" + +char* runtime_error_nice_print( const char* msg ) +{ + char* buffer = malloc(512); + snprintf(buffer, 512, "Got error: %s", msg ); + buffer[511] = 0; + return buffer; +} diff --git a/lib/fff/examples/weak_linking/src/main.c b/lib/fff/examples/weak_linking/src/main.c new file mode 100644 index 0000000..88be84c --- /dev/null +++ b/lib/fff/examples/weak_linking/src/main.c @@ -0,0 +1,27 @@ +#include +#include + +#include "display.h" +#include "sensor.h" + +void give_error( const char* msg ) +{ + char* buffer = runtime_error_nice_print( msg ); + runtime_error( buffer ); + free(buffer); +} + +int update_main( void ) +{ + if ( !sensor_init() ) + runtime_error("sensor init failed"); + + if ( !display_init() ) + runtime_error("display init failed"); + + char buffer[32]; + float reading = sensor_read(); + snprintf( buffer, 32, "Sensor: %0.1f", reading ); + display_update( buffer ); + return 0; +} diff --git a/lib/fff/examples/weak_linking/src/sensor.c b/lib/fff/examples/weak_linking/src/sensor.c new file mode 100644 index 0000000..bff6642 --- /dev/null +++ b/lib/fff/examples/weak_linking/src/sensor.c @@ -0,0 +1,29 @@ +#include + +#include "sensor.h" +#include "bus.h" + +#define SENSOR_ADDRESS 0xAA +#define SENSOR_REG_READ 0xF0 + +float LOCAL_buffer[4]; + +bool sensor_init() +{ + memset( LOCAL_buffer, 0x00, sizeof(LOCAL_buffer)); + return true; +} + +float sensor_read() +{ + char data[4] = { 0xFF, 0xFF, 0x00, 0x00 }; + bus_read_write( SENSOR_ADDRESS, SENSOR_REG_READ, (uint8_t*)&data, 4, false ); + + if (data[0] != 0x10) + { + runtime_error("sensor read failed"); + } + + float ret_value = data[1] + data[2] / 256.0; + return ret_value; +} diff --git a/lib/fff/examples/weak_linking/test/include/bus.fake.h b/lib/fff/examples/weak_linking/test/include/bus.fake.h new file mode 100644 index 0000000..170e45a --- /dev/null +++ b/lib/fff/examples/weak_linking/test/include/bus.fake.h @@ -0,0 +1,10 @@ +#ifndef _AUTOFAKE_BUS_H +#define _AUTOFAKE_BUS_H + +#include "fff.h" +#include "bus.h" + +DECLARE_FAKE_VALUE_FUNC( bool, bus_read_write, uint8_t, uint8_t, uint8_t*, int, bool ); +DECLARE_FAKE_VALUE_FUNC( bool, bus_write, uint8_t, uint8_t, const uint8_t*, int, bool ); + +#endif // _AUTOFAKE_BUS_H diff --git a/lib/fff/examples/weak_linking/test/include/display.fake.h b/lib/fff/examples/weak_linking/test/include/display.fake.h new file mode 100644 index 0000000..ef2adae --- /dev/null +++ b/lib/fff/examples/weak_linking/test/include/display.fake.h @@ -0,0 +1,10 @@ +#ifndef _AUTOFAKE_DISPLAY_H +#define _AUTOFAKE_DISPLAY_H + +#include "fff.h" +#include "display.h" + +DECLARE_FAKE_VALUE_FUNC( bool, display_init ); +DECLARE_FAKE_VOID_FUNC( display_update, const char* ); + +#endif // _AUTOFAKE_DISPLAY_H diff --git a/lib/fff/examples/weak_linking/test/include/error.fake.h b/lib/fff/examples/weak_linking/test/include/error.fake.h new file mode 100644 index 0000000..ee127ec --- /dev/null +++ b/lib/fff/examples/weak_linking/test/include/error.fake.h @@ -0,0 +1,10 @@ +#ifndef _AUTOFAKE_ERROR_H +#define _AUTOFAKE_ERROR_H + +#include "fff.h" +#include "error.h" + +DECLARE_FAKE_VOID_FUNC( runtime_error, const char* ); +DECLARE_FAKE_VALUE_FUNC( char*, runtime_error_nice_print, const char* ); + +#endif // _AUTOFAKE_ERROR_H diff --git a/lib/fff/examples/weak_linking/test/include/sensor.fake.h b/lib/fff/examples/weak_linking/test/include/sensor.fake.h new file mode 100644 index 0000000..ae363f8 --- /dev/null +++ b/lib/fff/examples/weak_linking/test/include/sensor.fake.h @@ -0,0 +1,13 @@ + +#ifndef _AUTOMOCK_SENSOR_H +#define _AUTOMOCK_SENSOR_H + +#include "fff.h" +#include "sensor.h" + +DECLARE_FAKE_VALUE_FUNC( bool, sensor_init ); +DECLARE_FAKE_VALUE_FUNC( float, sensor_read ); + +void TEST_sensor_generate_data( char* buffer, float value ); + +#endif // _AUTOMOCK_SENSOR_H diff --git a/lib/fff/examples/weak_linking/test/include/test_common.h b/lib/fff/examples/weak_linking/test/include/test_common.h new file mode 100644 index 0000000..a282dd1 --- /dev/null +++ b/lib/fff/examples/weak_linking/test/include/test_common.h @@ -0,0 +1,13 @@ +#pragma once + +#include +#include + +#include "fff.h" +#include "bus.fake.h" +#include "error.fake.h" + + +void init_tests(); + +extern char GLOBAL_TEST_bus_read_ret[32]; diff --git a/lib/fff/examples/weak_linking/test/src/bus.fake.c b/lib/fff/examples/weak_linking/test/src/bus.fake.c new file mode 100644 index 0000000..e3a9f76 --- /dev/null +++ b/lib/fff/examples/weak_linking/test/src/bus.fake.c @@ -0,0 +1,4 @@ +#include "bus.fake.h" + +DEFINE_FAKE_VALUE_FUNC( bool, bus_read_write, uint8_t, uint8_t, uint8_t*, int, bool ); +DEFINE_FAKE_VALUE_FUNC( bool, bus_write, uint8_t, uint8_t, const uint8_t*, int, bool ); diff --git a/lib/fff/examples/weak_linking/test/src/display.fake.c b/lib/fff/examples/weak_linking/test/src/display.fake.c new file mode 100644 index 0000000..f8dec66 --- /dev/null +++ b/lib/fff/examples/weak_linking/test/src/display.fake.c @@ -0,0 +1,4 @@ +#include "display.fake.h" + +DEFINE_FAKE_VALUE_FUNC( bool, display_init ); +DEFINE_FAKE_VOID_FUNC( display_update, const char* ); diff --git a/lib/fff/examples/weak_linking/test/src/display.test.c b/lib/fff/examples/weak_linking/test/src/display.test.c new file mode 100644 index 0000000..269ae32 --- /dev/null +++ b/lib/fff/examples/weak_linking/test/src/display.test.c @@ -0,0 +1,24 @@ +#include "test_common.h" +#include "display.h" + +DEFINE_FFF_GLOBALS; + + +int main(void) +{ + init_tests(); // Resets common and hook errors to asserts. + + GLOBAL_TEST_bus_read_ret[2] = 0x10; + assert( display_init() == true ); + assert( bus_read_write_fake.call_count == 1); + + display_update( "TEST INFO" ); + assert( bus_read_write_fake.call_count == 1 ); + assert( bus_write_fake.call_count == 1 ); + + GLOBAL_TEST_bus_read_ret[2] = 0x00; + assert( display_init() == false ); + + printf("Test " __FILE__ " ok\n"); + return 0; +} diff --git a/lib/fff/examples/weak_linking/test/src/error.fake.c b/lib/fff/examples/weak_linking/test/src/error.fake.c new file mode 100644 index 0000000..0a39478 --- /dev/null +++ b/lib/fff/examples/weak_linking/test/src/error.fake.c @@ -0,0 +1,4 @@ +#include "error.fake.h" + +DEFINE_FAKE_VOID_FUNC( runtime_error, const char* ); +DEFINE_FAKE_VALUE_FUNC( char*, runtime_error_nice_print, const char* ); diff --git a/lib/fff/examples/weak_linking/test/src/main.test.c b/lib/fff/examples/weak_linking/test/src/main.test.c new file mode 100644 index 0000000..6ac023c --- /dev/null +++ b/lib/fff/examples/weak_linking/test/src/main.test.c @@ -0,0 +1,26 @@ + +#include "display.fake.h" +#include "sensor.fake.h" +#include "test_common.h" + +DEFINE_FFF_GLOBALS; + + +int update_main( void ); + +int main(void) +{ + init_tests(); // Resets common and hook errors to asserts. + + sensor_init_fake.return_val = true; + display_init_fake.return_val = true; + + update_main(); + + assert( sensor_init_fake.call_count == 1 ); + assert( display_init_fake.call_count == 1 ); + assert( display_update_fake.call_count == 1 ); + + printf("Test " __FILE__ " ok\n"); + return 0; +} diff --git a/lib/fff/examples/weak_linking/test/src/sensor.fake.c b/lib/fff/examples/weak_linking/test/src/sensor.fake.c new file mode 100644 index 0000000..4fdaa66 --- /dev/null +++ b/lib/fff/examples/weak_linking/test/src/sensor.fake.c @@ -0,0 +1,11 @@ +#include "sensor.fake.h" + +DEFINE_FAKE_VALUE_FUNC( bool, sensor_init ); +DEFINE_FAKE_VALUE_FUNC( float, sensor_read ); + +void TEST_sensor_generate_data( char* buffer, float value ) +{ + buffer[0] = 0x10; + buffer[1] = (int)(value); + buffer[2] = (value - buffer[1])*255; +} diff --git a/lib/fff/examples/weak_linking/test/src/sensor.test.c b/lib/fff/examples/weak_linking/test/src/sensor.test.c new file mode 100644 index 0000000..8126cb6 --- /dev/null +++ b/lib/fff/examples/weak_linking/test/src/sensor.test.c @@ -0,0 +1,23 @@ +#include + +#include "test_common.h" + +#include "sensor.h" +#include "sensor.fake.h" + +DEFINE_FFF_GLOBALS; + + +int main(void) +{ + init_tests(); + + assert( sensor_init() == true ); + + TEST_sensor_generate_data( GLOBAL_TEST_bus_read_ret, 1.5f ); + float value = sensor_read(); + float value_error = value - 1.5f; + assert( value_error < 0.1f && value_error > -0.1f ); + printf("Test " __FILE__ " ok\n"); + return 0; +} diff --git a/lib/fff/examples/weak_linking/test/src/test_common.c b/lib/fff/examples/weak_linking/test/src/test_common.c new file mode 100644 index 0000000..58c3b44 --- /dev/null +++ b/lib/fff/examples/weak_linking/test/src/test_common.c @@ -0,0 +1,33 @@ +#include "test_common.h" +#include +#include + +char GLOBAL_TEST_bus_read_ret[32]; + + +void spoof_runtime_error( const char* info ) +{ + fprintf(stderr, "Runtime error: %s\n", info ); + assert(0); +} + +bool spoof_bus_read_write( uint8_t dev, uint8_t registry, uint8_t* buffer, int len, bool assume_echo ) +{ + memcpy( buffer, GLOBAL_TEST_bus_read_ret, len ); + fprintf(stderr, "bus spoof %d %d\n", (int)dev, (int)registry ); + return true; +} + +void init_tests() +{ + memset( GLOBAL_TEST_bus_read_ret, 0x00, sizeof(GLOBAL_TEST_bus_read_ret)); + FFF_RESET_HISTORY(); + + RESET_FAKE(bus_read_write); + RESET_FAKE(bus_write); + RESET_FAKE(runtime_error); + + runtime_error_fake.custom_fake = spoof_runtime_error; + bus_read_write_fake.custom_fake = spoof_bus_read_write; + bus_write_fake.return_val = true; +} \ No newline at end of file diff --git a/lib/fff/fakegen.rb b/lib/fff/fakegen.rb new file mode 100644 index 0000000..e3c0a86 --- /dev/null +++ b/lib/fff/fakegen.rb @@ -0,0 +1,698 @@ + +# fakegen.rb +# A simple code generator to create some C macros for defining test fake functions + + +$cpp_output = true +$MAX_ARGS = 20 +$DEFAULT_ARG_HISTORY = 50 +$MAX_CALL_HISTORY = 50 + +def license + File.foreach("#{__dir__}/LICENSE") { |line| putd line } +end + +def include_dependencies + putd "#include " + putd "#include /* For memset and memcpy */" + puts +end + +def output_constants + putd "#define FFF_MAX_ARGS (#{$MAX_ARGS}u)" + putd "#ifndef FFF_ARG_HISTORY_LEN" + indent { + putd "#define FFF_ARG_HISTORY_LEN (#{$DEFAULT_ARG_HISTORY}u)" + } + putd "#endif" + putd "#ifndef FFF_CALL_HISTORY_LEN" + indent { + putd "#define FFF_CALL_HISTORY_LEN (#{$MAX_CALL_HISTORY}u)" + } + putd "#endif" + putd "#ifndef FFF_GCC_FUNCTION_ATTRIBUTES" + indent { + putd "#define FFF_GCC_FUNCTION_ATTRIBUTES" + } + putd "#endif" + +end + + +def output_default_function_pointer_macro(has_calling_conventions) + name = has_calling_conventions ? "(CALLING_CONVENTION *FUNCNAME)" : "(*FUNCNAME)" + calling_conv = has_calling_conventions ? ", CALLING_CONVENTION" : "" + putd "#ifndef CUSTOM_FFF_FUNCTION_TEMPLATE" + putd_backslash "#define CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN#{calling_conv}, FUNCNAME, ...)" + indent { + putd "RETURN#{name}(__VA_ARGS__)" + } + putd "#endif /* CUSTOM_FFF_FUNCTION_TEMPLATE */" +end + + + + +# ------ Helper macros to use internally ------ # +def output_internal_helper_macros + putd "/* -- INTERNAL HELPER MACROS -- */" + + define_return_sequence_helper + define_custom_fake_sequence_helper + define_reset_fake_macro + define_declare_arg_helper + define_declare_all_func_common_helper + define_declare_return_value_history + define_save_arg_helper + define_room_for_more_history + define_save_ret_history_helper + define_save_arg_history_helper + define_history_dropped_helper + define_value_function_variables_helper + define_custom_fake_seq_variables_helper + define_increment_call_count_helper + define_return_fake_result_helper + define_extern_c_helper + define_reset_fake_helper + + putd "/* -- END INTERNAL HELPER MACROS -- */" + puts +end + +def define_return_sequence_helper + putd_backslash "#define SET_RETURN_SEQ(FUNCNAME, ARRAY_POINTER, ARRAY_LEN)" + indent { + putd_backslash "FUNCNAME##_fake.return_val_seq = ARRAY_POINTER;" + putd "FUNCNAME##_fake.return_val_seq_len = ARRAY_LEN;" + } +end + +def define_custom_fake_sequence_helper + putd_backslash "#define SET_CUSTOM_FAKE_SEQ(FUNCNAME, ARRAY_POINTER, ARRAY_LEN)" + indent { + putd_backslash "FUNCNAME##_fake.custom_fake_seq = ARRAY_POINTER;" + putd "FUNCNAME##_fake.custom_fake_seq_len = ARRAY_LEN;" + } +end + +def define_reset_fake_macro + puts + putd "/* Defining a function to reset a fake function */" + putd_backslash "#define RESET_FAKE(FUNCNAME) {" + indent { + putd_backslash "FUNCNAME##_reset();" + } + putd_backslash "}" + puts +end + +def define_declare_arg_helper + puts + putd_backslash "#define DECLARE_ARG(type, n, FUNCNAME)" + indent { + putd_backslash "type arg##n##_val;" + putd "type arg##n##_history[FFF_ARG_HISTORY_LEN];" + } +end + +def define_declare_all_func_common_helper + puts + putd_backslash "#define DECLARE_ALL_FUNC_COMMON" + indent { + putd_backslash "unsigned int call_count;" + putd_backslash "unsigned int arg_history_len;" + putd_backslash "unsigned int arg_histories_dropped;" + } +end + +def define_declare_return_value_history + putd "" + putd_backslash "#define DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE)" + indent { + putd "RETURN_TYPE return_val_history[FFF_ARG_HISTORY_LEN];" + } +end + +def define_save_arg_helper + puts + putd_backslash "#define SAVE_ARG(FUNCNAME, n)" + indent { + putd "memcpy((void*)&FUNCNAME##_fake.arg##n##_val, (void*)&arg##n, sizeof(arg##n));" + } +end + +def define_save_ret_history_helper + putd "" + putd_backslash "#define SAVE_RET_HISTORY(FUNCNAME, RETVAL)" + indent { + putd_backslash "if ((FUNCNAME##_fake.call_count - 1) < FFF_ARG_HISTORY_LEN)" + indent { + putd_backslash "memcpy((void *)&FUNCNAME##_fake.return_val_history[FUNCNAME##_fake.call_count - 1], (const void *) &RETVAL, sizeof(RETVAL));" + } + } +end + +def define_room_for_more_history + puts + putd_backslash "#define ROOM_FOR_MORE_HISTORY(FUNCNAME)" + indent { + putd "FUNCNAME##_fake.call_count < FFF_ARG_HISTORY_LEN" + } +end + +def define_save_arg_history_helper + puts + putd_backslash "#define SAVE_ARG_HISTORY(FUNCNAME, ARGN)" + indent { + putd "memcpy((void*)&FUNCNAME##_fake.arg##ARGN##_history[FUNCNAME##_fake.call_count], (void*)&arg##ARGN, sizeof(arg##ARGN));" + } +end + +def define_history_dropped_helper + puts + putd_backslash "#define HISTORY_DROPPED(FUNCNAME)" + indent { + putd "FUNCNAME##_fake.arg_histories_dropped++" + } +end + +def define_value_function_variables_helper + puts + putd_backslash "#define DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE)" + indent { + putd_backslash "RETURN_TYPE return_val;" + putd_backslash "int return_val_seq_len;" + putd_backslash "int return_val_seq_idx;" + putd_backslash "RETURN_TYPE * return_val_seq;" + } +end + +def define_custom_fake_seq_variables_helper + puts + putd_backslash "#define DECLARE_CUSTOM_FAKE_SEQ_VARIABLES" + indent { + putd_backslash "int custom_fake_seq_len;" + putd_backslash "int custom_fake_seq_idx;" + } +end + +def define_increment_call_count_helper + puts + putd_backslash "#define INCREMENT_CALL_COUNT(FUNCNAME)" + indent { + putd "FUNCNAME##_fake.call_count++" + } +end + +def define_return_fake_result_helper + puts + putd_backslash "#define RETURN_FAKE_RESULT(FUNCNAME)" + indent { + putd_backslash "if (FUNCNAME##_fake.return_val_seq_len){ /* then its a sequence */" + indent { + putd_backslash "if(FUNCNAME##_fake.return_val_seq_idx < FUNCNAME##_fake.return_val_seq_len) {" + indent { + putd_backslash "SAVE_RET_HISTORY(FUNCNAME, FUNCNAME##_fake.return_val_seq[FUNCNAME##_fake.return_val_seq_idx])" + putd_backslash "return FUNCNAME##_fake.return_val_seq[FUNCNAME##_fake.return_val_seq_idx++];" + } + putd_backslash "}" + putd_backslash "SAVE_RET_HISTORY(FUNCNAME, FUNCNAME##_fake.return_val_seq[FUNCNAME##_fake.return_val_seq_len-1])" + putd_backslash "return FUNCNAME##_fake.return_val_seq[FUNCNAME##_fake.return_val_seq_len-1]; /* return last element */" + } + putd_backslash "}" + putd_backslash "SAVE_RET_HISTORY(FUNCNAME, FUNCNAME##_fake.return_val)" + putd_backslash "return FUNCNAME##_fake.return_val;" + } +end + +def define_extern_c_helper + puts + putd "#ifdef __cplusplus" + indent { + putd "#define FFF_EXTERN_C extern \"C\"{" + putd "#define FFF_END_EXTERN_C } " + } + putd "#else /* ansi c */" + indent { + putd "#define FFF_EXTERN_C " + putd "#define FFF_END_EXTERN_C " + } + putd "#endif /* cpp/ansi c */" +end + +def define_reset_fake_helper + puts + putd_backslash "#define DEFINE_RESET_FUNCTION(FUNCNAME)" + indent { + putd_backslash "void FUNCNAME##_reset(void){" + indent { + putd_backslash "memset((void*)&FUNCNAME##_fake, 0, sizeof(FUNCNAME##_fake) - sizeof(FUNCNAME##_fake.custom_fake) - sizeof(FUNCNAME##_fake.custom_fake_seq));" + putd_backslash "FUNCNAME##_fake.custom_fake = NULL;" + putd_backslash "FUNCNAME##_fake.custom_fake_seq = NULL;" + putd_backslash "FUNCNAME##_fake.arg_history_len = FFF_ARG_HISTORY_LEN;" + } + putd "}" + } +end +# ------ End Helper macros ------ # + +#fakegen helpers to print at levels of indentation +$current_depth = 0 +def putd(str) + $current_depth.times {|not_used| print " "} + puts str +end + +#multiline putd which adds a \ at the end of the generated macro +def putd_backslash str + putd(str + " \\") +end + +def pushd + $current_depth = $current_depth + 4 +end + +def popd + $current_depth = $current_depth - 4 +end + +def indent + pushd + yield + popd +end + +def output_macro(arg_count, has_varargs, has_calling_conventions, is_value_function) + + vararg_name = has_varargs ? "_VARARG" : "" + fake_macro_name = is_value_function ? "FAKE_VALUE_FUNC#{arg_count}#{vararg_name}" : "FAKE_VOID_FUNC#{arg_count}#{vararg_name}" + declare_macro_name = "DECLARE_#{fake_macro_name}" + define_macro_name = "DEFINE_#{fake_macro_name}" + saved_arg_count = arg_count - (has_varargs ? 1 : 0) + return_type = is_value_function ? "RETURN_TYPE" : "" + + puts + output_macro_header(declare_macro_name, saved_arg_count, has_varargs, has_calling_conventions, return_type) + indent { + output_variables(saved_arg_count, has_varargs, has_calling_conventions, is_value_function) + } + + puts + output_macro_header(define_macro_name, saved_arg_count, has_varargs, has_calling_conventions, return_type) + indent { + putd_backslash "FUNCNAME##_Fake FUNCNAME##_fake;" + putd_backslash function_signature(saved_arg_count, has_varargs, has_calling_conventions, is_value_function) + "{" + indent { + output_function_body(saved_arg_count, has_varargs, is_value_function) + } + putd_backslash "}" + putd_backslash "DEFINE_RESET_FUNCTION(FUNCNAME)" + } + + puts + + output_macro_header(fake_macro_name, saved_arg_count, has_varargs, has_calling_conventions, return_type) + indent { + putd macro_signature_for(declare_macro_name, saved_arg_count, has_varargs, has_calling_conventions, return_type) + putd macro_signature_for(define_macro_name, saved_arg_count, has_varargs, has_calling_conventions, return_type) + puts + } +end + +def output_macro_header(macro_name, arg_count, has_varargs, has_calling_conventions, return_type) + output_macro_name(macro_name, arg_count, has_varargs, has_calling_conventions, return_type) +end + +# #define #macro_name(RETURN_TYPE, FUNCNAME, ARG0,...) +def output_macro_name(macro_name, arg_count, has_varargs, has_calling_conventions, return_type) + putd "#define " + macro_signature_for(macro_name, arg_count, has_varargs, has_calling_conventions, return_type) +end + +# #macro_name(RETURN_TYPE, FUNCNAME, ARG0,...) \ +def macro_signature_for(macro_name, arg_count, has_varargs, has_calling_conventions, return_type) + parameter_list = "#{macro_name}(" + if return_type != "" + parameter_list += return_type + parameter_list += ", " + end + parameter_list += "CALLING_CONVENTION, " if (has_calling_conventions) + parameter_list += "FUNCNAME" + + arg_count.times { |i| parameter_list += ", ARG#{i}_TYPE" } + + parameter_list += ", ..." if has_varargs + + parameter_list += ") \\" + + parameter_list +end + +def output_variables(arg_count, has_varargs, has_calling_conventions, is_value_function) + in_struct{ + arg_count.times { |argN| + putd_backslash "DECLARE_ARG(ARG#{argN}_TYPE, #{argN}, FUNCNAME)" + } + putd_backslash "DECLARE_ALL_FUNC_COMMON" + putd_backslash "DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE)" unless not is_value_function + putd_backslash "DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE)" unless not is_value_function + putd_backslash "DECLARE_CUSTOM_FAKE_SEQ_VARIABLES" + output_custom_function_signature(arg_count, has_varargs, has_calling_conventions, is_value_function) + output_custom_function_array(arg_count, has_varargs, has_calling_conventions, is_value_function) + } + putd_backslash "extern FUNCNAME##_Fake FUNCNAME##_fake;" + putd_backslash "void FUNCNAME##_reset(void);" + putd_backslash function_signature(arg_count, has_varargs, has_calling_conventions, is_value_function) + ";" +end + +#example: ARG0_TYPE arg0, ARG1_TYPE arg1 +def arg_val_list(args_count) + return "void" if (args_count == 0) + arguments = [] + args_count.times { |i| arguments << "ARG#{i}_TYPE arg#{i}" } + arguments.join(", ") +end + +#example: ARG0_TYPE, ARG1_TYPE +def arg_type_list(args_count) + return "void" if (args_count == 0) + arguments = [] + args_count.times { |i| arguments << "ARG#{i}_TYPE" } + arguments.join(", ") +end + +#example: arg0, arg1 +def arg_list(args_count) + arguments = [] + args_count.times { |i| arguments << "arg#{i}" } + arguments.join(", ") +end + +# RETURN_TYPE (*custom_fake)(ARG0_TYPE arg0);\ +# OR +# RETURN_TYPE (CALLING_CONVENTION *custom_fake)(ARG0_TYPE arg0);\ +# +# void (*custom_fake)(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2);\ +def output_custom_function_signature(arg_count, has_varargs, has_calling_conventions, is_value_function) + return_type = is_value_function ? "RETURN_TYPE" : "void" + ap_list = has_varargs ? ", va_list ap" : "" + calling_conv = has_calling_conventions ? ", CALLING_CONVENTION" : "" + putd_backslash "CUSTOM_FFF_FUNCTION_TEMPLATE(#{return_type}#{calling_conv}, custom_fake, #{arg_type_list(arg_count)}#{ap_list});" +end + +def output_custom_function_array(arg_count, has_varargs, has_calling_conventions, is_value_function) + return_type = is_value_function ? "RETURN_TYPE" : "void" + ap_list = has_varargs ? ", va_list ap" : "" + calling_conv = has_calling_conventions ? ", CALLING_CONVENTION" : "" + putd_backslash "CUSTOM_FFF_FUNCTION_TEMPLATE(#{return_type}#{calling_conv}, *custom_fake_seq, #{arg_type_list(arg_count)}#{ap_list});" +end + +# example: RETURN_TYPE FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1) +# OR +# RETURN_TYPE CALLING_CONVENTION FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1) +def function_signature(arg_count, has_varargs, has_calling_conventions, is_value_function) + return_type = is_value_function ? "RETURN_TYPE" : "void" + varargs = has_varargs ? ", ..." : "" + calling_conventions = has_calling_conventions ? + "#{return_type} FFF_GCC_FUNCTION_ATTRIBUTES CALLING_CONVENTION FUNCNAME(#{arg_val_list(arg_count)}#{varargs})" : + "#{return_type} FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(#{arg_val_list(arg_count)}#{varargs})" +end + +def output_function_body(arg_count, has_varargs, is_value_function) + arg_count.times { |i| putd_backslash "SAVE_ARG(FUNCNAME, #{i});" } + putd_backslash "if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){" + indent { + arg_count.times { |i| putd_backslash "SAVE_ARG_HISTORY(FUNCNAME, #{i});" } + } + putd_backslash "}" + putd_backslash "else{" + indent { + putd_backslash "HISTORY_DROPPED(FUNCNAME);" + } + putd_backslash "}" + putd_backslash "INCREMENT_CALL_COUNT(FUNCNAME);" + putd_backslash "REGISTER_CALL(FUNCNAME);" + + if has_varargs + return_type = is_value_function ? "return " : "" + putd_backslash "if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */" + indent { + putd_backslash "if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){" + indent { + putd_backslash "va_list ap;" + putd_backslash "va_start(ap, arg#{arg_count-1});" + putd_backslash "RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](#{arg_list(arg_count)}, ap);" unless not is_value_function + putd_backslash "SAVE_RET_HISTORY(FUNCNAME, ret);" unless not is_value_function + putd_backslash "va_end(ap);" unless not is_value_function + putd_backslash "return ret;" unless not is_value_function + putd_backslash "#{return_type}FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](#{arg_list(arg_count)}, ap);" unless is_value_function + putd_backslash "va_end(ap);" unless is_value_function + } + putd_backslash "}" + putd_backslash "else{" + indent { + putd_backslash "va_list ap;" + putd_backslash "va_start(ap, arg#{arg_count-1});" + putd_backslash "RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](#{arg_list(arg_count)}, ap);" unless not is_value_function + putd_backslash "SAVE_RET_HISTORY(FUNCNAME, ret);" unless not is_value_function + putd_backslash "va_end(ap);" unless not is_value_function + putd_backslash "return ret;" unless not is_value_function + putd_backslash "#{return_type}FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](#{arg_list(arg_count)}, ap);" unless is_value_function + putd_backslash "va_end(ap);" unless is_value_function + } + putd_backslash "}" + } + putd_backslash "}" + putd_backslash "if(FUNCNAME##_fake.custom_fake){" + indent { + putd_backslash "RETURN_TYPE ret;" if is_value_function + putd_backslash "va_list ap;" + putd_backslash "va_start(ap, arg#{arg_count-1});" + } + custom_fake_call = "FUNCNAME##_fake.custom_fake(#{arg_list(arg_count)}, ap);" + indent { + if is_value_function + putd_backslash "ret = #{custom_fake_call}" + else + putd_backslash "#{custom_fake_call}" + end + putd_backslash "va_end(ap);" + putd_backslash "SAVE_RET_HISTORY(FUNCNAME, ret);" unless not is_value_function + putd_backslash "return ret;" if is_value_function + } + putd_backslash "}" + else + return_type = is_value_function ? "return " : "" + putd_backslash "if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */" + indent { + putd_backslash "if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){" + indent { + putd_backslash "RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](#{arg_list(arg_count)});" unless not is_value_function + putd_backslash "SAVE_RET_HISTORY(FUNCNAME, ret);" unless not is_value_function + putd_backslash "return ret;" unless not is_value_function + putd_backslash "#{return_type}FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](#{arg_list(arg_count)});" unless is_value_function + } + putd_backslash "}" + putd_backslash "else{" + indent { + putd_backslash "RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](#{arg_list(arg_count)});" unless not is_value_function + putd_backslash "SAVE_RET_HISTORY(FUNCNAME, ret);" unless not is_value_function + putd_backslash "return ret;" unless not is_value_function + putd_backslash "#{return_type}FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](#{arg_list(arg_count)});" unless is_value_function + } + putd_backslash "}" + } + putd_backslash "}" + putd_backslash "if (FUNCNAME##_fake.custom_fake != NULL){ " + indent { + putd_backslash "RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(#{arg_list(arg_count)});" unless not is_value_function + putd_backslash "SAVE_RET_HISTORY(FUNCNAME, ret);" unless not is_value_function + putd_backslash "return ret;" unless not is_value_function + putd_backslash "#{return_type}FUNCNAME##_fake.custom_fake(#{arg_list(arg_count)});" unless is_value_function + } + putd_backslash "}" + end + + putd_backslash "RETURN_FAKE_RESULT(FUNCNAME)" if is_value_function +end + +def define_fff_globals + putd "typedef void (*fff_function_t)(void);" + putd "typedef struct { " + indent { + putd "fff_function_t call_history[FFF_CALL_HISTORY_LEN];" + putd "unsigned int call_history_idx;" + } + putd "} fff_globals_t;" + puts + putd "FFF_EXTERN_C" + putd "extern fff_globals_t fff;" + putd "FFF_END_EXTERN_C" + puts + putd_backslash "#define DEFINE_FFF_GLOBALS" + indent { + putd_backslash "FFF_EXTERN_C" + indent { + putd_backslash "fff_globals_t fff;" + } + putd "FFF_END_EXTERN_C" + } + puts + putd_backslash "#define FFF_RESET_HISTORY()" + indent { + putd_backslash "fff.call_history_idx = 0;" + putd "memset(fff.call_history, 0, sizeof(fff.call_history));" + } + puts + putd_backslash "#define REGISTER_CALL(function)" + indent { + putd_backslash "if(fff.call_history_idx < FFF_CALL_HISTORY_LEN)" + indent { + putd "fff.call_history[fff.call_history_idx++] = (fff_function_t)function;" + } + } +end + +def in_struct + putd_backslash "typedef struct FUNCNAME##_Fake {" + indent { + yield + } + putd_backslash "} FUNCNAME##_Fake;" +end + +def include_guard + putd "#ifndef FAKE_FUNCTIONS" + putd "#define FAKE_FUNCTIONS" + puts + + yield + + puts + putd "#endif /* FAKE_FUNCTIONS */" +end + +def msvc_expand_macro_fix + putd "/* MSVC expand macro fix */" + putd "#define EXPAND(x) x" +end + +def generate_arg_sequence(args, prefix, do_reverse, joinstr) + fmap = (0..args).flat_map {|i| [prefix + i.to_s]} + if do_reverse then fmap.reverse.join(joinstr) else fmap.join(", ") end +end + +def counting_macro_instance(type, has_calling_conventions, vararg = :non_vararg, prefix = "") + appendix = (vararg == :vararg) ? "_VARARG" : "" + if has_calling_conventions + minus_count = (type == :VOID) ? 2 : 3 + else + minus_count = (type == :VOID) ? 1 : 2 + end + + <<-MACRO_COUNTING_INSTANCE +#define #{prefix}FAKE_#{type.to_s}_FUNC#{appendix}(...) \ + EXPAND(#{prefix}FUNC_#{type.to_s}#{appendix}_(PP_NARG_MINUS#{minus_count}(__VA_ARGS__), __VA_ARGS__)) + +#define #{prefix}FUNC_#{type.to_s}#{appendix}_(N,...) \ + EXPAND(#{prefix}FUNC_#{type.to_s}#{appendix}_N(N,__VA_ARGS__)) + +#define #{prefix}FUNC_#{type.to_s}#{appendix}_N(N,...) \ + EXPAND(#{prefix}FAKE_#{type.to_s}_FUNC ## N#{" ## _VARARG" if vararg == :vararg}(__VA_ARGS__)) + + MACRO_COUNTING_INSTANCE +end + +def output_macro_counting_shortcuts(has_calling_conventions) + has_calling_conventions ? + (arg_depth = ["3", "2"]; calling_conv = "callingConv, ") : + (arg_depth = ["2", "1"]; calling_conv = "") + + msvc_expand_macro_fix + putd <<-MACRO_COUNTING + +#define PP_NARG_MINUS#{arg_depth[0]}(...) \ + EXPAND(PP_NARG_MINUS#{arg_depth[0]}_(__VA_ARGS__, PP_RSEQ_N_MINUS#{arg_depth[0]}())) + +#define PP_NARG_MINUS#{arg_depth[0]}_(...) \ + EXPAND(PP_ARG_MINUS#{arg_depth[0]}_N(__VA_ARGS__)) + +#define PP_ARG_MINUS#{arg_depth[0]}_N(returnVal, #{calling_conv} #{generate_arg_sequence($MAX_ARGS, '_', false, ", ")}, N, ...) N + +#define PP_RSEQ_N_MINUS#{arg_depth[0]}() \ + #{generate_arg_sequence($MAX_ARGS, '', true, ',')} + +#define PP_NARG_MINUS#{arg_depth[1]}(...) \ + EXPAND(PP_NARG_MINUS#{arg_depth[1]}_(__VA_ARGS__, PP_RSEQ_N_MINUS#{arg_depth[1]}())) + +#define PP_NARG_MINUS#{arg_depth[1]}_(...) \ + EXPAND(PP_ARG_MINUS#{arg_depth[1]}_N(__VA_ARGS__)) + +#define PP_ARG_MINUS#{arg_depth[1]}_N(#{calling_conv} #{generate_arg_sequence($MAX_ARGS, '_', false, ", ")}, N, ...) N + +#define PP_RSEQ_N_MINUS#{arg_depth[1]}() \ + #{generate_arg_sequence($MAX_ARGS, '', true, ',')} + + + +/* DECLARE AND DEFINE FAKE FUNCTIONS - PLACE IN TEST FILES */ + +#{counting_macro_instance(:VALUE, has_calling_conventions)} +#{counting_macro_instance(:VOID, has_calling_conventions)} +#{counting_macro_instance(:VALUE, has_calling_conventions, :vararg)} +#{counting_macro_instance(:VOID, has_calling_conventions, :vararg)} + +/* DECLARE FAKE FUNCTIONS - PLACE IN HEADER FILES */ + +#{counting_macro_instance(:VALUE, has_calling_conventions, :non_vararg, "DECLARE_")} +#{counting_macro_instance(:VOID, has_calling_conventions, :non_vararg, "DECLARE_")} +#{counting_macro_instance(:VALUE, has_calling_conventions, :vararg, "DECLARE_")} +#{counting_macro_instance(:VOID, has_calling_conventions, :vararg, "DECLARE_")} + +/* DEFINE FAKE FUNCTIONS - PLACE IN SOURCE FILES */ + +#{counting_macro_instance(:VALUE, has_calling_conventions, :non_vararg, "DEFINE_")} +#{counting_macro_instance(:VOID, has_calling_conventions, :non_vararg, "DEFINE_")} +#{counting_macro_instance(:VALUE, has_calling_conventions, :vararg, "DEFINE_")} +#{counting_macro_instance(:VOID, has_calling_conventions, :vararg, "DEFINE_")} + + MACRO_COUNTING +end + +def output_c_and_cpp(has_calling_conventions) + license + include_guard { + include_dependencies + output_constants + output_default_function_pointer_macro(has_calling_conventions) + output_internal_helper_macros + yield + output_macro_counting_shortcuts(has_calling_conventions) + } +end + +def help + # Check if we should generate _with_ support for specifying calling conventions + if (ARGV[0] == "--help" or ARGV[0] == "-h") + puts "Usage: fakegen.rb [options] + -h, --help Show this help message + -wcc, --with-calling-conventions Support specifying calling conventions" + exit + end + yield +end + +help { + # Determine if we should generate with support for calling conventions + has_calling_conventions = true if (ARGV[0] == "--with-calling-conventions" or ARGV[0] == "-wcc") + # lets generate!! + output_c_and_cpp(has_calling_conventions) { + define_fff_globals + # Create fake generators for 0..MAX_ARGS + num_fake_generators = $MAX_ARGS + 1 + num_fake_generators.times {|arg_count| output_macro(arg_count, false, has_calling_conventions, false)} + num_fake_generators.times {|arg_count| output_macro(arg_count, false, has_calling_conventions, true)} + # generate the varargs variants + (2..$MAX_ARGS).each {|arg_count| output_macro(arg_count, true, has_calling_conventions, false)} + (2..$MAX_ARGS).each {|arg_count| output_macro(arg_count, true, has_calling_conventions, true)} + } +} \ No newline at end of file diff --git a/lib/fff/fff.h b/lib/fff/fff.h new file mode 100644 index 0000000..cdb1c46 --- /dev/null +++ b/lib/fff/fff.h @@ -0,0 +1,6588 @@ +/* +LICENSE + +The MIT License (MIT) + +Copyright (c) 2010 Michael Long + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in all +copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE +SOFTWARE. +*/ +#ifndef FAKE_FUNCTIONS +#define FAKE_FUNCTIONS + +#include +#include /* For memset and memcpy */ + +#define FFF_MAX_ARGS (20u) +#ifndef FFF_ARG_HISTORY_LEN + #define FFF_ARG_HISTORY_LEN (50u) +#endif +#ifndef FFF_CALL_HISTORY_LEN + #define FFF_CALL_HISTORY_LEN (50u) +#endif +#ifndef FFF_GCC_FUNCTION_ATTRIBUTES + #define FFF_GCC_FUNCTION_ATTRIBUTES +#endif +#ifndef CUSTOM_FFF_FUNCTION_TEMPLATE +#define CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN, FUNCNAME, ...) \ + RETURN(*FUNCNAME)(__VA_ARGS__) +#endif /* CUSTOM_FFF_FUNCTION_TEMPLATE */ +/* -- INTERNAL HELPER MACROS -- */ +#define SET_RETURN_SEQ(FUNCNAME, ARRAY_POINTER, ARRAY_LEN) \ + FUNCNAME##_fake.return_val_seq = ARRAY_POINTER; \ + FUNCNAME##_fake.return_val_seq_len = ARRAY_LEN; +#define SET_CUSTOM_FAKE_SEQ(FUNCNAME, ARRAY_POINTER, ARRAY_LEN) \ + FUNCNAME##_fake.custom_fake_seq = ARRAY_POINTER; \ + FUNCNAME##_fake.custom_fake_seq_len = ARRAY_LEN; + +/* Defining a function to reset a fake function */ +#define RESET_FAKE(FUNCNAME) { \ + FUNCNAME##_reset(); \ +} \ + + +#define DECLARE_ARG(type, n, FUNCNAME) \ + type arg##n##_val; \ + type arg##n##_history[FFF_ARG_HISTORY_LEN]; + +#define DECLARE_ALL_FUNC_COMMON \ + unsigned int call_count; \ + unsigned int arg_history_len; \ + unsigned int arg_histories_dropped; \ + +#define DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + RETURN_TYPE return_val_history[FFF_ARG_HISTORY_LEN]; + +#define SAVE_ARG(FUNCNAME, n) \ + memcpy((void*)&FUNCNAME##_fake.arg##n##_val, (void*)&arg##n, sizeof(arg##n)); + +#define ROOM_FOR_MORE_HISTORY(FUNCNAME) \ + FUNCNAME##_fake.call_count < FFF_ARG_HISTORY_LEN + +#define SAVE_RET_HISTORY(FUNCNAME, RETVAL) \ + if ((FUNCNAME##_fake.call_count - 1) < FFF_ARG_HISTORY_LEN) \ + memcpy((void *)&FUNCNAME##_fake.return_val_history[FUNCNAME##_fake.call_count - 1], (const void *) &RETVAL, sizeof(RETVAL)); \ + +#define SAVE_ARG_HISTORY(FUNCNAME, ARGN) \ + memcpy((void*)&FUNCNAME##_fake.arg##ARGN##_history[FUNCNAME##_fake.call_count], (void*)&arg##ARGN, sizeof(arg##ARGN)); + +#define HISTORY_DROPPED(FUNCNAME) \ + FUNCNAME##_fake.arg_histories_dropped++ + +#define DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + RETURN_TYPE return_val; \ + int return_val_seq_len; \ + int return_val_seq_idx; \ + RETURN_TYPE * return_val_seq; \ + +#define DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + int custom_fake_seq_len; \ + int custom_fake_seq_idx; \ + +#define INCREMENT_CALL_COUNT(FUNCNAME) \ + FUNCNAME##_fake.call_count++ + +#define RETURN_FAKE_RESULT(FUNCNAME) \ + if (FUNCNAME##_fake.return_val_seq_len){ /* then its a sequence */ \ + if(FUNCNAME##_fake.return_val_seq_idx < FUNCNAME##_fake.return_val_seq_len) { \ + SAVE_RET_HISTORY(FUNCNAME, FUNCNAME##_fake.return_val_seq[FUNCNAME##_fake.return_val_seq_idx]) \ + return FUNCNAME##_fake.return_val_seq[FUNCNAME##_fake.return_val_seq_idx++]; \ + } \ + SAVE_RET_HISTORY(FUNCNAME, FUNCNAME##_fake.return_val_seq[FUNCNAME##_fake.return_val_seq_len-1]) \ + return FUNCNAME##_fake.return_val_seq[FUNCNAME##_fake.return_val_seq_len-1]; /* return last element */ \ + } \ + SAVE_RET_HISTORY(FUNCNAME, FUNCNAME##_fake.return_val) \ + return FUNCNAME##_fake.return_val; \ + +#ifdef __cplusplus + #define FFF_EXTERN_C extern "C"{ + #define FFF_END_EXTERN_C } +#else /* ansi c */ + #define FFF_EXTERN_C + #define FFF_END_EXTERN_C +#endif /* cpp/ansi c */ + +#define DEFINE_RESET_FUNCTION(FUNCNAME) \ + void FUNCNAME##_reset(void){ \ + memset((void*)&FUNCNAME##_fake, 0, sizeof(FUNCNAME##_fake) - sizeof(FUNCNAME##_fake.custom_fake) - sizeof(FUNCNAME##_fake.custom_fake_seq)); \ + FUNCNAME##_fake.custom_fake = NULL; \ + FUNCNAME##_fake.custom_fake_seq = NULL; \ + FUNCNAME##_fake.arg_history_len = FFF_ARG_HISTORY_LEN; \ + } +/* -- END INTERNAL HELPER MACROS -- */ + +typedef void (*fff_function_t)(void); +typedef struct { + fff_function_t call_history[FFF_CALL_HISTORY_LEN]; + unsigned int call_history_idx; +} fff_globals_t; + +FFF_EXTERN_C +extern fff_globals_t fff; +FFF_END_EXTERN_C + +#define DEFINE_FFF_GLOBALS \ + FFF_EXTERN_C \ + fff_globals_t fff; \ + FFF_END_EXTERN_C + +#define FFF_RESET_HISTORY() \ + fff.call_history_idx = 0; \ + memset(fff.call_history, 0, sizeof(fff.call_history)); + +#define REGISTER_CALL(function) \ + if(fff.call_history_idx < FFF_CALL_HISTORY_LEN) \ + fff.call_history[fff.call_history_idx++] = (fff_function_t)function; + +#define DECLARE_FAKE_VOID_FUNC0(FUNCNAME) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, void); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, void); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(void); \ + +#define DEFINE_FAKE_VOID_FUNC0(FUNCNAME) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(void){ \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC0(FUNCNAME) \ + DECLARE_FAKE_VOID_FUNC0(FUNCNAME) \ + DEFINE_FAKE_VOID_FUNC0(FUNCNAME) \ + + +#define DECLARE_FAKE_VOID_FUNC1(FUNCNAME, ARG0_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0); \ + +#define DEFINE_FAKE_VOID_FUNC1(FUNCNAME, ARG0_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0){ \ + SAVE_ARG(FUNCNAME, 0); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC1(FUNCNAME, ARG0_TYPE) \ + DECLARE_FAKE_VOID_FUNC1(FUNCNAME, ARG0_TYPE) \ + DEFINE_FAKE_VOID_FUNC1(FUNCNAME, ARG0_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC2(FUNCNAME, ARG0_TYPE, ARG1_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1); \ + +#define DEFINE_FAKE_VOID_FUNC2(FUNCNAME, ARG0_TYPE, ARG1_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC2(FUNCNAME, ARG0_TYPE, ARG1_TYPE) \ + DECLARE_FAKE_VOID_FUNC2(FUNCNAME, ARG0_TYPE, ARG1_TYPE) \ + DEFINE_FAKE_VOID_FUNC2(FUNCNAME, ARG0_TYPE, ARG1_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC3(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2); \ + +#define DEFINE_FAKE_VOID_FUNC3(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC3(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE) \ + DECLARE_FAKE_VOID_FUNC3(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE) \ + DEFINE_FAKE_VOID_FUNC3(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC4(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3); \ + +#define DEFINE_FAKE_VOID_FUNC4(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC4(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE) \ + DECLARE_FAKE_VOID_FUNC4(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE) \ + DEFINE_FAKE_VOID_FUNC4(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC5(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4); \ + +#define DEFINE_FAKE_VOID_FUNC5(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC5(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE) \ + DECLARE_FAKE_VOID_FUNC5(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE) \ + DEFINE_FAKE_VOID_FUNC5(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC6(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5); \ + +#define DEFINE_FAKE_VOID_FUNC6(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC6(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE) \ + DECLARE_FAKE_VOID_FUNC6(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE) \ + DEFINE_FAKE_VOID_FUNC6(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC7(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6); \ + +#define DEFINE_FAKE_VOID_FUNC7(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC7(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE) \ + DECLARE_FAKE_VOID_FUNC7(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE) \ + DEFINE_FAKE_VOID_FUNC7(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC8(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7); \ + +#define DEFINE_FAKE_VOID_FUNC8(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC8(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE) \ + DECLARE_FAKE_VOID_FUNC8(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE) \ + DEFINE_FAKE_VOID_FUNC8(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC9(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8); \ + +#define DEFINE_FAKE_VOID_FUNC9(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC9(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE) \ + DECLARE_FAKE_VOID_FUNC9(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE) \ + DEFINE_FAKE_VOID_FUNC9(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC10(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9); \ + +#define DEFINE_FAKE_VOID_FUNC10(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC10(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE) \ + DECLARE_FAKE_VOID_FUNC10(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE) \ + DEFINE_FAKE_VOID_FUNC10(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC11(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10); \ + +#define DEFINE_FAKE_VOID_FUNC11(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC11(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE) \ + DECLARE_FAKE_VOID_FUNC11(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE) \ + DEFINE_FAKE_VOID_FUNC11(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC12(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11); \ + +#define DEFINE_FAKE_VOID_FUNC12(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC12(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE) \ + DECLARE_FAKE_VOID_FUNC12(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE) \ + DEFINE_FAKE_VOID_FUNC12(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC13(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12); \ + +#define DEFINE_FAKE_VOID_FUNC13(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC13(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE) \ + DECLARE_FAKE_VOID_FUNC13(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE) \ + DEFINE_FAKE_VOID_FUNC13(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC14(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13); \ + +#define DEFINE_FAKE_VOID_FUNC14(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC14(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE) \ + DECLARE_FAKE_VOID_FUNC14(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE) \ + DEFINE_FAKE_VOID_FUNC14(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC15(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14); \ + +#define DEFINE_FAKE_VOID_FUNC15(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC15(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE) \ + DECLARE_FAKE_VOID_FUNC15(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE) \ + DEFINE_FAKE_VOID_FUNC15(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC16(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15); \ + +#define DEFINE_FAKE_VOID_FUNC16(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC16(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE) \ + DECLARE_FAKE_VOID_FUNC16(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE) \ + DEFINE_FAKE_VOID_FUNC16(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC17(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16); \ + +#define DEFINE_FAKE_VOID_FUNC17(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC17(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE) \ + DECLARE_FAKE_VOID_FUNC17(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE) \ + DEFINE_FAKE_VOID_FUNC17(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC18(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ARG(ARG17_TYPE, 17, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17); \ + +#define DEFINE_FAKE_VOID_FUNC18(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + SAVE_ARG(FUNCNAME, 17); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + SAVE_ARG_HISTORY(FUNCNAME, 17); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC18(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE) \ + DECLARE_FAKE_VOID_FUNC18(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE) \ + DEFINE_FAKE_VOID_FUNC18(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC19(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ARG(ARG17_TYPE, 17, FUNCNAME) \ + DECLARE_ARG(ARG18_TYPE, 18, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18); \ + +#define DEFINE_FAKE_VOID_FUNC19(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + SAVE_ARG(FUNCNAME, 17); \ + SAVE_ARG(FUNCNAME, 18); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + SAVE_ARG_HISTORY(FUNCNAME, 17); \ + SAVE_ARG_HISTORY(FUNCNAME, 18); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC19(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE) \ + DECLARE_FAKE_VOID_FUNC19(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE) \ + DEFINE_FAKE_VOID_FUNC19(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC20(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ARG(ARG17_TYPE, 17, FUNCNAME) \ + DECLARE_ARG(ARG18_TYPE, 18, FUNCNAME) \ + DECLARE_ARG(ARG19_TYPE, 19, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18, ARG19_TYPE arg19); \ + +#define DEFINE_FAKE_VOID_FUNC20(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18, ARG19_TYPE arg19){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + SAVE_ARG(FUNCNAME, 17); \ + SAVE_ARG(FUNCNAME, 18); \ + SAVE_ARG(FUNCNAME, 19); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + SAVE_ARG_HISTORY(FUNCNAME, 17); \ + SAVE_ARG_HISTORY(FUNCNAME, 18); \ + SAVE_ARG_HISTORY(FUNCNAME, 19); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, arg19); \ + } \ + else{ \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, arg19); \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, arg19); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC20(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE) \ + DECLARE_FAKE_VOID_FUNC20(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE) \ + DEFINE_FAKE_VOID_FUNC20(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC0(RETURN_TYPE, FUNCNAME) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, void); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, void); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(void); \ + +#define DEFINE_FAKE_VALUE_FUNC0(RETURN_TYPE, FUNCNAME) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(void){ \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC0(RETURN_TYPE, FUNCNAME) \ + DECLARE_FAKE_VALUE_FUNC0(RETURN_TYPE, FUNCNAME) \ + DEFINE_FAKE_VALUE_FUNC0(RETURN_TYPE, FUNCNAME) \ + + +#define DECLARE_FAKE_VALUE_FUNC1(RETURN_TYPE, FUNCNAME, ARG0_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0); \ + +#define DEFINE_FAKE_VALUE_FUNC1(RETURN_TYPE, FUNCNAME, ARG0_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0){ \ + SAVE_ARG(FUNCNAME, 0); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC1(RETURN_TYPE, FUNCNAME, ARG0_TYPE) \ + DECLARE_FAKE_VALUE_FUNC1(RETURN_TYPE, FUNCNAME, ARG0_TYPE) \ + DEFINE_FAKE_VALUE_FUNC1(RETURN_TYPE, FUNCNAME, ARG0_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC2(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1); \ + +#define DEFINE_FAKE_VALUE_FUNC2(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC2(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE) \ + DECLARE_FAKE_VALUE_FUNC2(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE) \ + DEFINE_FAKE_VALUE_FUNC2(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC3(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2); \ + +#define DEFINE_FAKE_VALUE_FUNC3(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC3(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE) \ + DECLARE_FAKE_VALUE_FUNC3(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE) \ + DEFINE_FAKE_VALUE_FUNC3(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC4(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3); \ + +#define DEFINE_FAKE_VALUE_FUNC4(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC4(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE) \ + DECLARE_FAKE_VALUE_FUNC4(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE) \ + DEFINE_FAKE_VALUE_FUNC4(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC5(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4); \ + +#define DEFINE_FAKE_VALUE_FUNC5(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC5(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE) \ + DECLARE_FAKE_VALUE_FUNC5(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE) \ + DEFINE_FAKE_VALUE_FUNC5(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC6(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5); \ + +#define DEFINE_FAKE_VALUE_FUNC6(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC6(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE) \ + DECLARE_FAKE_VALUE_FUNC6(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE) \ + DEFINE_FAKE_VALUE_FUNC6(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC7(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6); \ + +#define DEFINE_FAKE_VALUE_FUNC7(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC7(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE) \ + DECLARE_FAKE_VALUE_FUNC7(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE) \ + DEFINE_FAKE_VALUE_FUNC7(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC8(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7); \ + +#define DEFINE_FAKE_VALUE_FUNC8(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC8(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE) \ + DECLARE_FAKE_VALUE_FUNC8(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE) \ + DEFINE_FAKE_VALUE_FUNC8(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC9(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8); \ + +#define DEFINE_FAKE_VALUE_FUNC9(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC9(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE) \ + DECLARE_FAKE_VALUE_FUNC9(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE) \ + DEFINE_FAKE_VALUE_FUNC9(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC10(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9); \ + +#define DEFINE_FAKE_VALUE_FUNC10(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC10(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE) \ + DECLARE_FAKE_VALUE_FUNC10(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE) \ + DEFINE_FAKE_VALUE_FUNC10(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC11(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10); \ + +#define DEFINE_FAKE_VALUE_FUNC11(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC11(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE) \ + DECLARE_FAKE_VALUE_FUNC11(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE) \ + DEFINE_FAKE_VALUE_FUNC11(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC12(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11); \ + +#define DEFINE_FAKE_VALUE_FUNC12(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC12(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE) \ + DECLARE_FAKE_VALUE_FUNC12(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE) \ + DEFINE_FAKE_VALUE_FUNC12(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC13(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12); \ + +#define DEFINE_FAKE_VALUE_FUNC13(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC13(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE) \ + DECLARE_FAKE_VALUE_FUNC13(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE) \ + DEFINE_FAKE_VALUE_FUNC13(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC14(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13); \ + +#define DEFINE_FAKE_VALUE_FUNC14(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC14(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE) \ + DECLARE_FAKE_VALUE_FUNC14(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE) \ + DEFINE_FAKE_VALUE_FUNC14(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC15(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14); \ + +#define DEFINE_FAKE_VALUE_FUNC15(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC15(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE) \ + DECLARE_FAKE_VALUE_FUNC15(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE) \ + DEFINE_FAKE_VALUE_FUNC15(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC16(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15); \ + +#define DEFINE_FAKE_VALUE_FUNC16(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC16(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE) \ + DECLARE_FAKE_VALUE_FUNC16(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE) \ + DEFINE_FAKE_VALUE_FUNC16(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC17(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16); \ + +#define DEFINE_FAKE_VALUE_FUNC17(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC17(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE) \ + DECLARE_FAKE_VALUE_FUNC17(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE) \ + DEFINE_FAKE_VALUE_FUNC17(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC18(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ARG(ARG17_TYPE, 17, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17); \ + +#define DEFINE_FAKE_VALUE_FUNC18(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + SAVE_ARG(FUNCNAME, 17); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + SAVE_ARG_HISTORY(FUNCNAME, 17); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC18(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE) \ + DECLARE_FAKE_VALUE_FUNC18(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE) \ + DEFINE_FAKE_VALUE_FUNC18(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC19(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ARG(ARG17_TYPE, 17, FUNCNAME) \ + DECLARE_ARG(ARG18_TYPE, 18, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18); \ + +#define DEFINE_FAKE_VALUE_FUNC19(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + SAVE_ARG(FUNCNAME, 17); \ + SAVE_ARG(FUNCNAME, 18); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + SAVE_ARG_HISTORY(FUNCNAME, 17); \ + SAVE_ARG_HISTORY(FUNCNAME, 18); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC19(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE) \ + DECLARE_FAKE_VALUE_FUNC19(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE) \ + DEFINE_FAKE_VALUE_FUNC19(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE) \ + + +#define DECLARE_FAKE_VALUE_FUNC20(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ARG(ARG17_TYPE, 17, FUNCNAME) \ + DECLARE_ARG(ARG18_TYPE, 18, FUNCNAME) \ + DECLARE_ARG(ARG19_TYPE, 19, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18, ARG19_TYPE arg19); \ + +#define DEFINE_FAKE_VALUE_FUNC20(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18, ARG19_TYPE arg19){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + SAVE_ARG(FUNCNAME, 17); \ + SAVE_ARG(FUNCNAME, 18); \ + SAVE_ARG(FUNCNAME, 19); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + SAVE_ARG_HISTORY(FUNCNAME, 17); \ + SAVE_ARG_HISTORY(FUNCNAME, 18); \ + SAVE_ARG_HISTORY(FUNCNAME, 19); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, arg19); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + else{ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, arg19); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + } \ + if (FUNCNAME##_fake.custom_fake != NULL){ \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, arg19); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC20(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE) \ + DECLARE_FAKE_VALUE_FUNC20(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE) \ + DEFINE_FAKE_VALUE_FUNC20(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ARG19_TYPE) \ + + +#define DECLARE_FAKE_VOID_FUNC2_VARARG(FUNCNAME, ARG0_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ...); \ + +#define DEFINE_FAKE_VOID_FUNC2_VARARG(FUNCNAME, ARG0_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg0); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg0); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg0); \ + FUNCNAME##_fake.custom_fake(arg0, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC2_VARARG(FUNCNAME, ARG0_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC2_VARARG(FUNCNAME, ARG0_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC2_VARARG(FUNCNAME, ARG0_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC3_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ...); \ + +#define DEFINE_FAKE_VOID_FUNC3_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg1); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg1); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg1); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC3_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC3_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC3_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC4_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ...); \ + +#define DEFINE_FAKE_VOID_FUNC4_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg2); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg2); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg2); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC4_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC4_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC4_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC5_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ...); \ + +#define DEFINE_FAKE_VOID_FUNC5_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg3); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg3); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg3); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC5_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC5_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC5_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC6_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ...); \ + +#define DEFINE_FAKE_VOID_FUNC6_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg4); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg4); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg4); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC6_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC6_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC6_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC7_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ...); \ + +#define DEFINE_FAKE_VOID_FUNC7_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg5); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg5); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg5); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC7_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC7_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC7_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC8_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ...); \ + +#define DEFINE_FAKE_VOID_FUNC8_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg6); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg6); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg6); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC8_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC8_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC8_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC9_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ...); \ + +#define DEFINE_FAKE_VOID_FUNC9_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg7); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg7); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg7); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC9_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC9_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC9_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC10_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ...); \ + +#define DEFINE_FAKE_VOID_FUNC10_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg8); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg8); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg8); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC10_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC10_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC10_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC11_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ...); \ + +#define DEFINE_FAKE_VOID_FUNC11_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg9); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg9); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg9); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC11_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC11_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC11_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC12_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ...); \ + +#define DEFINE_FAKE_VOID_FUNC12_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg10); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg10); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg10); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC12_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC12_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC12_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC13_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ...); \ + +#define DEFINE_FAKE_VOID_FUNC13_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg11); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg11); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg11); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC13_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC13_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC13_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC14_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ...); \ + +#define DEFINE_FAKE_VOID_FUNC14_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg12); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg12); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg12); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC14_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC14_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC14_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC15_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ...); \ + +#define DEFINE_FAKE_VOID_FUNC15_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg13); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg13); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg13); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC15_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC15_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC15_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC16_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ...); \ + +#define DEFINE_FAKE_VOID_FUNC16_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg14); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg14); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg14); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC16_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC16_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC16_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC17_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ...); \ + +#define DEFINE_FAKE_VOID_FUNC17_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg15); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg15); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg15); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC17_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC17_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC17_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC18_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ...); \ + +#define DEFINE_FAKE_VOID_FUNC18_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg16); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg16); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg16); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC18_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC18_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC18_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC19_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ARG(ARG17_TYPE, 17, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ...); \ + +#define DEFINE_FAKE_VOID_FUNC19_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + SAVE_ARG(FUNCNAME, 17); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + SAVE_ARG_HISTORY(FUNCNAME, 17); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg17); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg17); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg17); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC19_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC19_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC19_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ...) \ + + +#define DECLARE_FAKE_VOID_FUNC20_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ARG(ARG17_TYPE, 17, FUNCNAME) \ + DECLARE_ARG(ARG18_TYPE, 18, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18, ...); \ + +#define DEFINE_FAKE_VOID_FUNC20_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + void FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + SAVE_ARG(FUNCNAME, 17); \ + SAVE_ARG(FUNCNAME, 18); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + SAVE_ARG_HISTORY(FUNCNAME, 17); \ + SAVE_ARG_HISTORY(FUNCNAME, 18); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg18); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, ap); \ + va_end(ap); \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg18); \ + FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, ap); \ + va_end(ap); \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + va_list ap; \ + va_start(ap, arg18); \ + FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, ap); \ + va_end(ap); \ + } \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VOID_FUNC20_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ...) \ + DECLARE_FAKE_VOID_FUNC20_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ...) \ + DEFINE_FAKE_VOID_FUNC20_VARARG(FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC2_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC2_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg0); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg0); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg0); \ + ret = FUNCNAME##_fake.custom_fake(arg0, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC2_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC2_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC2_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC3_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC3_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg1); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg1); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg1); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC3_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC3_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC3_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC4_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC4_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg2); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg2); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg2); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC4_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC4_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC4_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC5_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC5_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg3); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg3); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg3); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC5_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC5_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC5_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC6_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC6_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg4); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg4); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg4); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC6_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC6_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC6_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC7_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC7_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg5); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg5); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg5); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC7_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC7_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC7_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC8_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC8_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg6); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg6); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg6); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC8_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC8_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC8_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC9_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC9_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg7); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg7); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg7); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC9_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC9_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC9_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC10_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC10_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg8); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg8); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg8); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC10_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC10_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC10_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC11_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC11_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg9); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg9); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg9); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC11_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC11_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC11_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC12_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC12_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg10); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg10); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg10); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC12_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC12_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC12_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC13_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC13_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg11); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg11); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg11); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC13_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC13_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC13_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC14_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC14_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg12); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg12); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg12); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC14_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC14_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC14_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC15_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC15_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg13); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg13); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg13); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC15_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC15_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC15_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC16_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC16_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg14); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg14); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg14); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC16_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC16_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC16_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC17_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC17_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg15); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg15); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg15); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC17_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC17_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC17_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC18_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC18_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg16); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg16); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg16); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC18_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC18_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC18_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC19_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ARG(ARG17_TYPE, 17, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC19_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + SAVE_ARG(FUNCNAME, 17); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + SAVE_ARG_HISTORY(FUNCNAME, 17); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg17); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg17); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg17); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC19_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC19_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC19_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ...) \ + + +#define DECLARE_FAKE_VALUE_FUNC20_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ...) \ + typedef struct FUNCNAME##_Fake { \ + DECLARE_ARG(ARG0_TYPE, 0, FUNCNAME) \ + DECLARE_ARG(ARG1_TYPE, 1, FUNCNAME) \ + DECLARE_ARG(ARG2_TYPE, 2, FUNCNAME) \ + DECLARE_ARG(ARG3_TYPE, 3, FUNCNAME) \ + DECLARE_ARG(ARG4_TYPE, 4, FUNCNAME) \ + DECLARE_ARG(ARG5_TYPE, 5, FUNCNAME) \ + DECLARE_ARG(ARG6_TYPE, 6, FUNCNAME) \ + DECLARE_ARG(ARG7_TYPE, 7, FUNCNAME) \ + DECLARE_ARG(ARG8_TYPE, 8, FUNCNAME) \ + DECLARE_ARG(ARG9_TYPE, 9, FUNCNAME) \ + DECLARE_ARG(ARG10_TYPE, 10, FUNCNAME) \ + DECLARE_ARG(ARG11_TYPE, 11, FUNCNAME) \ + DECLARE_ARG(ARG12_TYPE, 12, FUNCNAME) \ + DECLARE_ARG(ARG13_TYPE, 13, FUNCNAME) \ + DECLARE_ARG(ARG14_TYPE, 14, FUNCNAME) \ + DECLARE_ARG(ARG15_TYPE, 15, FUNCNAME) \ + DECLARE_ARG(ARG16_TYPE, 16, FUNCNAME) \ + DECLARE_ARG(ARG17_TYPE, 17, FUNCNAME) \ + DECLARE_ARG(ARG18_TYPE, 18, FUNCNAME) \ + DECLARE_ALL_FUNC_COMMON \ + DECLARE_VALUE_FUNCTION_VARIABLES(RETURN_TYPE) \ + DECLARE_RETURN_VALUE_HISTORY(RETURN_TYPE) \ + DECLARE_CUSTOM_FAKE_SEQ_VARIABLES \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, custom_fake, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, va_list ap); \ + CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN_TYPE, *custom_fake_seq, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, va_list ap); \ + } FUNCNAME##_Fake; \ + extern FUNCNAME##_Fake FUNCNAME##_fake; \ + void FUNCNAME##_reset(void); \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18, ...); \ + +#define DEFINE_FAKE_VALUE_FUNC20_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ...) \ + FUNCNAME##_Fake FUNCNAME##_fake; \ + RETURN_TYPE FFF_GCC_FUNCTION_ATTRIBUTES FUNCNAME(ARG0_TYPE arg0, ARG1_TYPE arg1, ARG2_TYPE arg2, ARG3_TYPE arg3, ARG4_TYPE arg4, ARG5_TYPE arg5, ARG6_TYPE arg6, ARG7_TYPE arg7, ARG8_TYPE arg8, ARG9_TYPE arg9, ARG10_TYPE arg10, ARG11_TYPE arg11, ARG12_TYPE arg12, ARG13_TYPE arg13, ARG14_TYPE arg14, ARG15_TYPE arg15, ARG16_TYPE arg16, ARG17_TYPE arg17, ARG18_TYPE arg18, ...){ \ + SAVE_ARG(FUNCNAME, 0); \ + SAVE_ARG(FUNCNAME, 1); \ + SAVE_ARG(FUNCNAME, 2); \ + SAVE_ARG(FUNCNAME, 3); \ + SAVE_ARG(FUNCNAME, 4); \ + SAVE_ARG(FUNCNAME, 5); \ + SAVE_ARG(FUNCNAME, 6); \ + SAVE_ARG(FUNCNAME, 7); \ + SAVE_ARG(FUNCNAME, 8); \ + SAVE_ARG(FUNCNAME, 9); \ + SAVE_ARG(FUNCNAME, 10); \ + SAVE_ARG(FUNCNAME, 11); \ + SAVE_ARG(FUNCNAME, 12); \ + SAVE_ARG(FUNCNAME, 13); \ + SAVE_ARG(FUNCNAME, 14); \ + SAVE_ARG(FUNCNAME, 15); \ + SAVE_ARG(FUNCNAME, 16); \ + SAVE_ARG(FUNCNAME, 17); \ + SAVE_ARG(FUNCNAME, 18); \ + if(ROOM_FOR_MORE_HISTORY(FUNCNAME)){ \ + SAVE_ARG_HISTORY(FUNCNAME, 0); \ + SAVE_ARG_HISTORY(FUNCNAME, 1); \ + SAVE_ARG_HISTORY(FUNCNAME, 2); \ + SAVE_ARG_HISTORY(FUNCNAME, 3); \ + SAVE_ARG_HISTORY(FUNCNAME, 4); \ + SAVE_ARG_HISTORY(FUNCNAME, 5); \ + SAVE_ARG_HISTORY(FUNCNAME, 6); \ + SAVE_ARG_HISTORY(FUNCNAME, 7); \ + SAVE_ARG_HISTORY(FUNCNAME, 8); \ + SAVE_ARG_HISTORY(FUNCNAME, 9); \ + SAVE_ARG_HISTORY(FUNCNAME, 10); \ + SAVE_ARG_HISTORY(FUNCNAME, 11); \ + SAVE_ARG_HISTORY(FUNCNAME, 12); \ + SAVE_ARG_HISTORY(FUNCNAME, 13); \ + SAVE_ARG_HISTORY(FUNCNAME, 14); \ + SAVE_ARG_HISTORY(FUNCNAME, 15); \ + SAVE_ARG_HISTORY(FUNCNAME, 16); \ + SAVE_ARG_HISTORY(FUNCNAME, 17); \ + SAVE_ARG_HISTORY(FUNCNAME, 18); \ + } \ + else{ \ + HISTORY_DROPPED(FUNCNAME); \ + } \ + INCREMENT_CALL_COUNT(FUNCNAME); \ + REGISTER_CALL(FUNCNAME); \ + if (FUNCNAME##_fake.custom_fake_seq_len){ /* a sequence of custom fakes */ \ + if (FUNCNAME##_fake.custom_fake_seq_idx < FUNCNAME##_fake.custom_fake_seq_len){ \ + va_list ap; \ + va_start(ap, arg18); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_idx++](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + else{ \ + va_list ap; \ + va_start(ap, arg18); \ + RETURN_TYPE ret = FUNCNAME##_fake.custom_fake_seq[FUNCNAME##_fake.custom_fake_seq_len-1](arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + va_end(ap); \ + return ret; \ + } \ + } \ + if(FUNCNAME##_fake.custom_fake){ \ + RETURN_TYPE ret; \ + va_list ap; \ + va_start(ap, arg18); \ + ret = FUNCNAME##_fake.custom_fake(arg0, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9, arg10, arg11, arg12, arg13, arg14, arg15, arg16, arg17, arg18, ap); \ + va_end(ap); \ + SAVE_RET_HISTORY(FUNCNAME, ret); \ + return ret; \ + } \ + RETURN_FAKE_RESULT(FUNCNAME) \ + } \ + DEFINE_RESET_FUNCTION(FUNCNAME) \ + +#define FAKE_VALUE_FUNC20_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ...) \ + DECLARE_FAKE_VALUE_FUNC20_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ...) \ + DEFINE_FAKE_VALUE_FUNC20_VARARG(RETURN_TYPE, FUNCNAME, ARG0_TYPE, ARG1_TYPE, ARG2_TYPE, ARG3_TYPE, ARG4_TYPE, ARG5_TYPE, ARG6_TYPE, ARG7_TYPE, ARG8_TYPE, ARG9_TYPE, ARG10_TYPE, ARG11_TYPE, ARG12_TYPE, ARG13_TYPE, ARG14_TYPE, ARG15_TYPE, ARG16_TYPE, ARG17_TYPE, ARG18_TYPE, ...) \ + +/* MSVC expand macro fix */ +#define EXPAND(x) x + +#define PP_NARG_MINUS2(...) EXPAND(PP_NARG_MINUS2_(__VA_ARGS__, PP_RSEQ_N_MINUS2())) + +#define PP_NARG_MINUS2_(...) EXPAND(PP_ARG_MINUS2_N(__VA_ARGS__)) + +#define PP_ARG_MINUS2_N(returnVal, _0, _1, _2, _3, _4, _5, _6, _7, _8, _9, _10, _11, _12, _13, _14, _15, _16, _17, _18, _19, _20, N, ...) N + +#define PP_RSEQ_N_MINUS2() 20,19,18,17,16,15,14,13,12,11,10,9,8,7,6,5,4,3,2,1,0 + +#define PP_NARG_MINUS1(...) EXPAND(PP_NARG_MINUS1_(__VA_ARGS__, PP_RSEQ_N_MINUS1())) + +#define PP_NARG_MINUS1_(...) EXPAND(PP_ARG_MINUS1_N(__VA_ARGS__)) + +#define PP_ARG_MINUS1_N( _0, _1, _2, _3, _4, _5, _6, _7, _8, _9, _10, _11, _12, _13, _14, _15, _16, _17, _18, _19, _20, N, ...) N + +#define PP_RSEQ_N_MINUS1() 20,19,18,17,16,15,14,13,12,11,10,9,8,7,6,5,4,3,2,1,0 + + + +/* DECLARE AND DEFINE FAKE FUNCTIONS - PLACE IN TEST FILES */ + +#define FAKE_VALUE_FUNC(...) EXPAND(FUNC_VALUE_(PP_NARG_MINUS2(__VA_ARGS__), __VA_ARGS__)) + +#define FUNC_VALUE_(N,...) EXPAND(FUNC_VALUE_N(N,__VA_ARGS__)) + +#define FUNC_VALUE_N(N,...) EXPAND(FAKE_VALUE_FUNC ## N(__VA_ARGS__)) + + +#define FAKE_VOID_FUNC(...) EXPAND(FUNC_VOID_(PP_NARG_MINUS1(__VA_ARGS__), __VA_ARGS__)) + +#define FUNC_VOID_(N,...) EXPAND(FUNC_VOID_N(N,__VA_ARGS__)) + +#define FUNC_VOID_N(N,...) EXPAND(FAKE_VOID_FUNC ## N(__VA_ARGS__)) + + +#define FAKE_VALUE_FUNC_VARARG(...) EXPAND(FUNC_VALUE_VARARG_(PP_NARG_MINUS2(__VA_ARGS__), __VA_ARGS__)) + +#define FUNC_VALUE_VARARG_(N,...) EXPAND(FUNC_VALUE_VARARG_N(N,__VA_ARGS__)) + +#define FUNC_VALUE_VARARG_N(N,...) EXPAND(FAKE_VALUE_FUNC ## N ## _VARARG(__VA_ARGS__)) + + +#define FAKE_VOID_FUNC_VARARG(...) EXPAND(FUNC_VOID_VARARG_(PP_NARG_MINUS1(__VA_ARGS__), __VA_ARGS__)) + +#define FUNC_VOID_VARARG_(N,...) EXPAND(FUNC_VOID_VARARG_N(N,__VA_ARGS__)) + +#define FUNC_VOID_VARARG_N(N,...) EXPAND(FAKE_VOID_FUNC ## N ## _VARARG(__VA_ARGS__)) + + + +/* DECLARE FAKE FUNCTIONS - PLACE IN HEADER FILES */ + +#define DECLARE_FAKE_VALUE_FUNC(...) EXPAND(DECLARE_FUNC_VALUE_(PP_NARG_MINUS2(__VA_ARGS__), __VA_ARGS__)) + +#define DECLARE_FUNC_VALUE_(N,...) EXPAND(DECLARE_FUNC_VALUE_N(N,__VA_ARGS__)) + +#define DECLARE_FUNC_VALUE_N(N,...) EXPAND(DECLARE_FAKE_VALUE_FUNC ## N(__VA_ARGS__)) + + +#define DECLARE_FAKE_VOID_FUNC(...) EXPAND(DECLARE_FUNC_VOID_(PP_NARG_MINUS1(__VA_ARGS__), __VA_ARGS__)) + +#define DECLARE_FUNC_VOID_(N,...) EXPAND(DECLARE_FUNC_VOID_N(N,__VA_ARGS__)) + +#define DECLARE_FUNC_VOID_N(N,...) EXPAND(DECLARE_FAKE_VOID_FUNC ## N(__VA_ARGS__)) + + +#define DECLARE_FAKE_VALUE_FUNC_VARARG(...) EXPAND(DECLARE_FUNC_VALUE_VARARG_(PP_NARG_MINUS2(__VA_ARGS__), __VA_ARGS__)) + +#define DECLARE_FUNC_VALUE_VARARG_(N,...) EXPAND(DECLARE_FUNC_VALUE_VARARG_N(N,__VA_ARGS__)) + +#define DECLARE_FUNC_VALUE_VARARG_N(N,...) EXPAND(DECLARE_FAKE_VALUE_FUNC ## N ## _VARARG(__VA_ARGS__)) + + +#define DECLARE_FAKE_VOID_FUNC_VARARG(...) EXPAND(DECLARE_FUNC_VOID_VARARG_(PP_NARG_MINUS1(__VA_ARGS__), __VA_ARGS__)) + +#define DECLARE_FUNC_VOID_VARARG_(N,...) EXPAND(DECLARE_FUNC_VOID_VARARG_N(N,__VA_ARGS__)) + +#define DECLARE_FUNC_VOID_VARARG_N(N,...) EXPAND(DECLARE_FAKE_VOID_FUNC ## N ## _VARARG(__VA_ARGS__)) + + + +/* DEFINE FAKE FUNCTIONS - PLACE IN SOURCE FILES */ + +#define DEFINE_FAKE_VALUE_FUNC(...) EXPAND(DEFINE_FUNC_VALUE_(PP_NARG_MINUS2(__VA_ARGS__), __VA_ARGS__)) + +#define DEFINE_FUNC_VALUE_(N,...) EXPAND(DEFINE_FUNC_VALUE_N(N,__VA_ARGS__)) + +#define DEFINE_FUNC_VALUE_N(N,...) EXPAND(DEFINE_FAKE_VALUE_FUNC ## N(__VA_ARGS__)) + + +#define DEFINE_FAKE_VOID_FUNC(...) EXPAND(DEFINE_FUNC_VOID_(PP_NARG_MINUS1(__VA_ARGS__), __VA_ARGS__)) + +#define DEFINE_FUNC_VOID_(N,...) EXPAND(DEFINE_FUNC_VOID_N(N,__VA_ARGS__)) + +#define DEFINE_FUNC_VOID_N(N,...) EXPAND(DEFINE_FAKE_VOID_FUNC ## N(__VA_ARGS__)) + + +#define DEFINE_FAKE_VALUE_FUNC_VARARG(...) EXPAND(DEFINE_FUNC_VALUE_VARARG_(PP_NARG_MINUS2(__VA_ARGS__), __VA_ARGS__)) + +#define DEFINE_FUNC_VALUE_VARARG_(N,...) EXPAND(DEFINE_FUNC_VALUE_VARARG_N(N,__VA_ARGS__)) + +#define DEFINE_FUNC_VALUE_VARARG_N(N,...) EXPAND(DEFINE_FAKE_VALUE_FUNC ## N ## _VARARG(__VA_ARGS__)) + + +#define DEFINE_FAKE_VOID_FUNC_VARARG(...) EXPAND(DEFINE_FUNC_VOID_VARARG_(PP_NARG_MINUS1(__VA_ARGS__), __VA_ARGS__)) + +#define DEFINE_FUNC_VOID_VARARG_(N,...) EXPAND(DEFINE_FUNC_VOID_VARARG_N(N,__VA_ARGS__)) + +#define DEFINE_FUNC_VOID_VARARG_N(N,...) EXPAND(DEFINE_FAKE_VOID_FUNC ## N ## _VARARG(__VA_ARGS__)) + + + + +#endif /* FAKE_FUNCTIONS */ diff --git a/lib/fff/test/CMakeLists.txt b/lib/fff/test/CMakeLists.txt new file mode 100644 index 0000000..d4ccbf8 --- /dev/null +++ b/lib/fff/test/CMakeLists.txt @@ -0,0 +1,87 @@ +# Copyright 2022 Google LLC +# SPDX-License-Identifier: Apache-2.0 + +# Create a list of common files needed for tests +set( + COMMON_FILE_LIST + include/c_test_framework.h + src/test_cases.include +) + +include(FetchContent) + +FetchContent_Declare( + googletest + GIT_REPOSITORY https://github.com/google/googletest.git + GIT_TAG v1.12.0 +) + +set(gtest_force_shared_crt ON CACHE BOOL "" FORCE) +FetchContent_MakeAvailable(googletest) + +# Create the C test executable +add_executable(c_test src/fff_test_c.c ${COMMON_FILE_LIST}) +target_include_directories(c_test PRIVATE include) +target_link_libraries(c_test PRIVATE fff) + +# Create the C++ test executable +add_executable(cpp_test src/fff_test_cpp.cpp ${COMMON_FILE_LIST}) +target_include_directories(cpp_test PRIVATE include) +target_link_libraries(cpp_test PRIVATE GTest::gtest_main fff) + +# Create the C global test executable +add_executable(c_global_test + src/fff_test_global_c.c + src/global_fakes.c + include/global_fakes.h + ${COMMON_FILE_LIST} +) +target_include_directories(c_global_test PRIVATE include) +target_link_libraries(c_global_test PRIVATE fff) + +# Create the C++ global test executable +add_executable(cpp_global_test + src/fff_test_global_cpp.cpp + src/global_fakes.c + include/global_fakes.h + ${COMMON_FILE_LIST} +) +target_include_directories(cpp_global_test PRIVATE include) +target_link_libraries(cpp_global_test PRIVATE GTest::gtest_main fff) + +# Create the C++ custom function signature executable +add_executable(cpp_custom_fn_signature_test + src/fff_test_custom_function_template.cpp + ${COMMON_FILE_LIST} +) +target_include_directories(cpp_custom_fn_signature_test PRIVATE include) +target_link_libraries(cpp_custom_fn_signature_test PRIVATE GTest::gtest_main fff) +# Due to a bug in WinLibs for Windows it's not currently possible to use: +# target_precompile_headers(cpp_custom_fn_signature_test PUBLIC include/custom_function.hpp) +# See more info at target_precompile_headers(cpp_custom_fn_signature_test PUBLIC include/custom_function.hpp) + +add_test( + NAME cpp_custom_fn_signature_test + COMMAND $ + ) + +# Add the tests for ctest +add_test( + NAME c_test + COMMAND $ +) + +add_test( + NAME cpp_test + COMMAND $ +) + +add_test( + NAME c_global_test + COMMAND $ +) + +add_test( + NAME cpp_global_test + COMMAND $ +) \ No newline at end of file diff --git a/lib/fff/test/include/c_test_framework.h b/lib/fff/test/include/c_test_framework.h new file mode 100644 index 0000000..297a33a --- /dev/null +++ b/lib/fff/test/include/c_test_framework.h @@ -0,0 +1,15 @@ +#ifndef C_TEST_FRAMEWORK_H_ +#define C_TEST_FRAMEWORK_H_ + +#include +#include +#include + +/* Test Framework :-) */ +void setup(); +#define TEST_F(SUITE, NAME) void NAME() +#define RUN_TEST(SUITE, TESTNAME) do { printf(" Running %s.%s: \n", #SUITE, #TESTNAME); setup(); TESTNAME(); printf(" SUCCESS\n"); } while (0) +#define ASSERT_EQ(A, B) assert((A) == (B)) +#define ASSERT_TRUE(A) assert((A)) + +#endif /* C_TEST_FRAMEWORK_H_ */ diff --git a/lib/fff/test/include/custom_function.hpp b/lib/fff/test/include/custom_function.hpp new file mode 100644 index 0000000..d9f3934 --- /dev/null +++ b/lib/fff/test/include/custom_function.hpp @@ -0,0 +1,10 @@ +/* Copyright 2022 Google LLC + * SPDX-License-Identifier: Apache-2.0 + */ + +#pragma once + +#include + +#define CUSTOM_FFF_FUNCTION_TEMPLATE(RETURN, FUNCNAME, ...) \ + std::function FUNCNAME diff --git a/lib/fff/test/include/fff_wrapper.hpp b/lib/fff/test/include/fff_wrapper.hpp new file mode 100644 index 0000000..e3c0cac --- /dev/null +++ b/lib/fff/test/include/fff_wrapper.hpp @@ -0,0 +1,11 @@ +/* Copyright 2022 Google LLC + * SPDX-License-Identifier: Apache-2.0 + */ + +#pragma once + +#include + +#include "custom_function.hpp" + +#include \ No newline at end of file diff --git a/lib/fff/test/include/global_fakes.h b/lib/fff/test/include/global_fakes.h new file mode 100644 index 0000000..b76a9aa --- /dev/null +++ b/lib/fff/test/include/global_fakes.h @@ -0,0 +1,49 @@ +#ifndef GLOBAL_FAKES_H_ +#define GLOBAL_FAKES_H_ + +#include +#include + + +//// Imaginary production code header file /// +enum MYBOOL { FALSE = 899, TRUE }; +struct MyStruct { + int x; + int y; +}; +enum MYBOOL enumfunc(); +struct MyStruct structfunc(); +//// End Imaginary production code header file /// + +#ifndef TEST_WITH_CALLING_CONVENTIONS +DECLARE_FAKE_VOID_FUNC(voidfunc1, int); +DECLARE_FAKE_VOID_FUNC(voidfunc2, char, char); +DECLARE_FAKE_VOID_FUNC(voidfunc1outparam, char *); +DECLARE_FAKE_VALUE_FUNC(long, longfunc0); +DECLARE_FAKE_VALUE_FUNC(enum MYBOOL, enumfunc0); +DECLARE_FAKE_VALUE_FUNC(struct MyStruct, structfunc0); +DECLARE_FAKE_VOID_FUNC_VARARG(voidfunc3var, const char *, int, ...); +DECLARE_FAKE_VALUE_FUNC_VARARG(int, valuefunc3var, const char *, int, ...); +DECLARE_FAKE_VOID_FUNC(voidfunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +DECLARE_FAKE_VALUE_FUNC(int, valuefunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +#else +DECLARE_FAKE_VOID_FUNC(__cdecl, voidfunc1, int); +DECLARE_FAKE_VOID_FUNC(__cdecl, voidfunc2, char, char); +DECLARE_FAKE_VOID_FUNC(__cdecl, voidfunc1outparam, char *); +DECLARE_FAKE_VALUE_FUNC(long, __cdecl, longfunc0); +DECLARE_FAKE_VALUE_FUNC(enum MYBOOL, __cdecl, enumfunc0); +DECLARE_FAKE_VALUE_FUNC(struct MyStruct, __cdecl, structfunc0); +DECLARE_FAKE_VOID_FUNC_VARARG(__cdecl, voidfunc3var, const char *, int, ...); +DECLARE_FAKE_VALUE_FUNC_VARARG(int, __cdecl, valuefunc3var, const char *, int, ...); +DECLARE_FAKE_VOID_FUNC(__cdecl, voidfunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +DECLARE_FAKE_VALUE_FUNC(int, __cdecl, valuefunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +#endif + +#ifndef __cplusplus +#ifndef TEST_WITH_CALLING_CONVENTIONS +DECLARE_FAKE_VALUE_FUNC(int, strlcpy3, char* const, const char* const, const size_t); +#else +DECLARE_FAKE_VALUE_FUNC(int, __cdecl, strlcpy3, char* const, const char* const, const size_t); +#endif +#endif /* __cplusplus */ +#endif /* GLOBAL_FAKES_H_ */ diff --git a/lib/fff/test/src/fff_test_c.c b/lib/fff/test/src/fff_test_c.c new file mode 100644 index 0000000..398a4b5 --- /dev/null +++ b/lib/fff/test/src/fff_test_c.c @@ -0,0 +1,132 @@ + +// Want to keep the argument history for 13 calls +#define OVERRIDE_ARG_HIST_LEN 13u +#define FFF_ARG_HISTORY_LEN OVERRIDE_ARG_HIST_LEN +// Want to keep the call sequence history for 17 function calls +#define OVERRIDE_CALL_HIST_LEN 17u +#define FFF_CALL_HISTORY_LEN OVERRIDE_CALL_HIST_LEN + +#include "fff.h" +#include "c_test_framework.h" + +#include +#include +#include + + + +enum MYBOOL { FALSE = 899, TRUE }; +struct MyStruct { + int x; + int y; +}; + +#ifndef TEST_WITH_CALLING_CONVENTIONS +FAKE_VOID_FUNC(voidfunc1, int); +FAKE_VOID_FUNC(voidfunc2, char, char); +FAKE_VOID_FUNC(voidfunc1outparam, char *); +FAKE_VALUE_FUNC(long, longfunc0); +FAKE_VALUE_FUNC(enum MYBOOL, enumfunc0); +FAKE_VALUE_FUNC(struct MyStruct, structfunc0); +FAKE_VOID_FUNC_VARARG(voidfunc3var, const char *, int, ...); +FAKE_VALUE_FUNC_VARARG(int, valuefunc3var, const char *, int, ...); +FAKE_VALUE_FUNC(int, strlcpy3, char* const, const char* const, const size_t); +FAKE_VOID_FUNC(voidfunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +FAKE_VALUE_FUNC(int, valuefunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +#else +FAKE_VOID_FUNC(__cdecl, voidfunc1, int); +FAKE_VOID_FUNC(__cdecl, voidfunc2, char, char); +FAKE_VOID_FUNC(__cdecl, voidfunc1outparam, char *); +FAKE_VALUE_FUNC(long, __cdecl, longfunc0); +FAKE_VALUE_FUNC(enum MYBOOL, __cdecl, enumfunc0); +FAKE_VALUE_FUNC(struct MyStruct, __cdecl, structfunc0); +FAKE_VOID_FUNC_VARARG(__cdecl, voidfunc3var, char *, int, ...); +FAKE_VALUE_FUNC_VARARG(int, __cdecl, valuefunc3var, char *, int, ...); +FAKE_VALUE_FUNC(int, __cdecl, strlcpy3, char* const, const char* const, const size_t); +FAKE_VOID_FUNC(__cdecl, voidfunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +FAKE_VALUE_FUNC(int, __cdecl, valuefunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +#endif + +void setup() +{ + RESET_FAKE(voidfunc1); + RESET_FAKE(voidfunc2); + RESET_FAKE(voidfunc1outparam); + RESET_FAKE(longfunc0); + RESET_FAKE(enumfunc0); + RESET_FAKE(structfunc0); + RESET_FAKE(voidfunc3var); + RESET_FAKE(valuefunc3var); + RESET_FAKE(strlcpy3); + FFF_RESET_HISTORY(); +} + + +#include "test_cases.include" + +TEST_F(FFFTestSuite, default_constants_can_be_overridden) +{ + unsigned sizeCallHistory = (sizeof fff.call_history) / (sizeof fff.call_history[0]); + ASSERT_EQ(OVERRIDE_CALL_HIST_LEN, sizeCallHistory); + ASSERT_EQ(OVERRIDE_ARG_HIST_LEN, voidfunc2_fake.arg_history_len); +} + +DEFINE_FFF_GLOBALS; +int main() +{ + setbuf(stdout, NULL); + fprintf(stdout, "-------------\n"); + fprintf(stdout, "Running Tests\n"); + fprintf(stdout, "-------------\n\n"); + fflush(0); + + /* Run tests */ + RUN_TEST(FFFTestSuite, when_void_func_never_called_then_callcount_is_zero); + RUN_TEST(FFFTestSuite, when_void_func_called_once_then_callcount_is_one); + RUN_TEST(FFFTestSuite, when_void_func_called_once_and_reset_then_callcount_is_zero); + RUN_TEST(FFFTestSuite, when_void_func_with_1_integer_arg_called_then_last_arg_captured); + RUN_TEST(FFFTestSuite, when_void_func_with_1_integer_arg_called_twice_then_last_arg_captured); + RUN_TEST(FFFTestSuite, when_void_func_with_1_integer_arg_called_and_reset_then_captured_arg_is_zero); + RUN_TEST(FFFTestSuite, when_void_func_with_2_char_args_called_then_last_args_captured); + RUN_TEST(FFFTestSuite, when_void_func_with_2_char_args_called_twice_then_last_args_captured); + RUN_TEST(FFFTestSuite, when_void_func_with_2_char_args_called_and_reset_then_captured_arg_is_zero); + RUN_TEST(FFFTestSuite, when_fake_func_called_then_const_arguments_captured); + + RUN_TEST(FFFTestSuite, when_fake_func_created_default_history_is_fifty_calls); + RUN_TEST(FFFTestSuite, when_fake_func_called_then_arguments_captured_in_history); + RUN_TEST(FFFTestSuite, argument_history_is_reset_when_RESET_FAKE_called); + RUN_TEST(FFFTestSuite, when_fake_func_called_max_times_then_no_argument_histories_dropped); + RUN_TEST(FFFTestSuite, when_fake_func_called_max_times_plus_one_then_one_argument_history_dropped); + + RUN_TEST(FFFTestSuite, value_func_will_return_zero_by_default); + RUN_TEST(FFFTestSuite, value_func_will_return_value_given); + RUN_TEST(FFFTestSuite, value_func_will_return_zero_after_reset); + RUN_TEST(FFFTestSuite, register_call_macro_registers_one_call); + RUN_TEST(FFFTestSuite, register_call_macro_registers_two_calls); + RUN_TEST(FFFTestSuite, reset_call_history_resets_call_history); + RUN_TEST(FFFTestSuite, call_history_will_not_write_past_array_bounds); + RUN_TEST(FFFTestSuite, calling_fake_registers_one_call); + + RUN_TEST(FFFTestSuite, return_value_sequences_not_exhausted); + RUN_TEST(FFFTestSuite, return_value_sequences_exhausted); + RUN_TEST(FFFTestSuite, default_constants_can_be_overridden); + + RUN_TEST(FFFTestSuite, can_register_custom_fake); + RUN_TEST(FFFTestSuite, when_value_custom_fake_called_THEN_it_returns_custom_return_value); + + RUN_TEST(FFFTestSuite, use_void_vararg_fake_with_different_number_of_arguments); + RUN_TEST(FFFTestSuite, use_value_vararg_fake_with_different_number_of_arguments); + RUN_TEST(FFFTestSuite, vararg_custom_fake_sequence_not_exhausted); + RUN_TEST(FFFTestSuite, vararg_custom_fake_seq_return_values_saved_in_history); + RUN_TEST(FFFTestSuite, vararg_custom_fake_sequence_exhausted); + RUN_TEST(FFFTestSuite, vararg_custom_fake_sequence_reset); + + RUN_TEST(FFFTestSuite, can_capture_upto_20_arguments_correctly); + RUN_TEST(FFFTestSuite, value_func_can_capture_upto_20_arguments_correctly); + + printf("\n-------------\n"); + printf("Complete\n"); + printf("-------------\n\n"); + + return 0; +} diff --git a/lib/fff/test/src/fff_test_cpp.cpp b/lib/fff/test/src/fff_test_cpp.cpp new file mode 100644 index 0000000..153daef --- /dev/null +++ b/lib/fff/test/src/fff_test_cpp.cpp @@ -0,0 +1,101 @@ +/* + * fff_test.cpp + * + * Created on: Dec 20, 2010 + * Author: mlong + */ + +// Want to keep the argument history for 13 calls +#define OVERRIDE_ARG_HIST_LEN 13u +#define FFF_ARG_HISTORY_LEN OVERRIDE_ARG_HIST_LEN +// Want to keep the call sequence history for 17 function calls +#define OVERRIDE_CALL_HIST_LEN 17u +#define FFF_CALL_HISTORY_LEN OVERRIDE_CALL_HIST_LEN + +#include "fff.h" +#include "gtest/gtest.h" + +DEFINE_FFF_GLOBALS + +#ifndef TEST_WITH_CALLING_CONVENTIONS +FAKE_VOID_FUNC(voidfunc1, int); +FAKE_VOID_FUNC(voidfunc2, char, char); +FAKE_VOID_FUNC(voidfunc1outparam, char *); +FAKE_VALUE_FUNC(long, longfunc0); +FAKE_VOID_FUNC_VARARG(voidfunc3var, const char *, int, ...); +FAKE_VALUE_FUNC_VARARG(int, valuefunc3var, const char *, int, ...); +FAKE_VOID_FUNC(voidfunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +FAKE_VALUE_FUNC(int, valuefunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +#else +FAKE_VOID_FUNC(__cdecl, voidfunc1, int); +FAKE_VOID_FUNC(__cdecl, voidfunc2, char, char); +FAKE_VOID_FUNC(__cdecl, voidfunc1outparam, char *); +FAKE_VALUE_FUNC(long, __cdecl, longfunc0); +FAKE_VOID_FUNC_VARARG(__cdecl, voidfunc3var, const char *, int, ...); +FAKE_VALUE_FUNC_VARARG(int, __cdecl, valuefunc3var, const char *, int, ...); +FAKE_VOID_FUNC(__cdecl, voidfunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +FAKE_VALUE_FUNC(int, __cdecl, valuefunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +#endif + +class FFFTestSuite: public testing::Test +{ +public: + void SetUp() + { + RESET_FAKE(voidfunc1); + RESET_FAKE(voidfunc2); + RESET_FAKE(longfunc0); + RESET_FAKE(voidfunc1outparam); + RESET_FAKE(voidfunc3var); + RESET_FAKE(valuefunc3var); + FFF_RESET_HISTORY(); + } +}; + +TEST_F(FFFTestSuite, default_constants_can_be_overridden) +{ + unsigned sizeCallHistory = (sizeof fff.call_history) / (sizeof fff.call_history[0]); + ASSERT_EQ(OVERRIDE_CALL_HIST_LEN, sizeCallHistory); + ASSERT_EQ(OVERRIDE_ARG_HIST_LEN, voidfunc2_fake.arg_history_len); +} + +// Fake declared in C++ context (not extern "C", using namespace) +// before the fake is declared +namespace cxx +{ + typedef int int_t; + void voidfunc1(cxx::int_t); +} + +// Now declare the fake. Must be in the same namespace as the +// original declaration. +namespace cxx +{ +#ifndef TEST_WITH_CALLING_CONVENTIONS + FAKE_VOID_FUNC(voidfunc1, cxx::int_t); +#else + FAKE_VOID_FUNC(_cdecl, voidfunc1, cxx::int_t); +#endif +} + +TEST_F(FFFTestSuite, cxx_fake_is_called) +{ + cxx::voidfunc1(66); + ASSERT_EQ(cxx::voidfunc1_fake.call_count, 1u); + ASSERT_EQ(cxx::voidfunc1_fake.arg0_val, 66); +} + +static int cxx_my_custom_fake_called = 0; +void cxx_my_custom_fake(cxx::int_t i) +{ + cxx_my_custom_fake_called++; +} + +TEST_F(FFFTestSuite, cxx_can_register_custom_fake) +{ + cxx::voidfunc1_fake.custom_fake = cxx_my_custom_fake; + cxx::voidfunc1(66); + ASSERT_EQ(1, cxx_my_custom_fake_called); +} + +#include "test_cases.include" diff --git a/lib/fff/test/src/fff_test_custom_function_template.cpp b/lib/fff/test/src/fff_test_custom_function_template.cpp new file mode 100644 index 0000000..53689c3 --- /dev/null +++ b/lib/fff/test/src/fff_test_custom_function_template.cpp @@ -0,0 +1,29 @@ +/* Copyright 2022 Google LLC + * SPDX-License-Identifier: Apache-2.0 + */ + +#include + +#include "fff_wrapper.hpp" + +DEFINE_FFF_GLOBALS + +FAKE_VOID_FUNC(do_stuff, int); + +class FFFCustomFakeSuite : public ::testing::Test { + public: + void SetUp() override { + RESET_FAKE(do_stuff); + FFF_RESET_HISTORY(); + } +}; + +TEST_F(FFFCustomFakeSuite, custom_cpp_fake_function) +{ + int x = 0; + do_stuff_fake.custom_fake = [&x](int i) { + x = i; + }; + do_stuff(5); + ASSERT_EQ(5, x); +} diff --git a/lib/fff/test/src/fff_test_global_c.c b/lib/fff/test/src/fff_test_global_c.c new file mode 100644 index 0000000..c74ea6a --- /dev/null +++ b/lib/fff/test/src/fff_test_global_c.c @@ -0,0 +1,84 @@ + +#include "global_fakes.h" +#include "c_test_framework.h" + + + +DEFINE_FFF_GLOBALS; + +void setup() +{ + RESET_FAKE(voidfunc1); + RESET_FAKE(voidfunc2); + RESET_FAKE(voidfunc1outparam); + RESET_FAKE(longfunc0); + RESET_FAKE(enumfunc0); + RESET_FAKE(structfunc0); + RESET_FAKE(voidfunc3var); + RESET_FAKE(valuefunc3var); + RESET_FAKE(strlcpy3); + + FFF_RESET_HISTORY(); +} + + +#include "test_cases.include" + + +int main() +{ + setbuf(stdout, NULL); + fprintf(stdout, "-------------\n"); + fprintf(stdout, "Running Tests\n"); + fprintf(stdout, "-------------\n\n"); + fflush(0); + + /* Run tests */ + RUN_TEST(FFFTestSuite, when_void_func_never_called_then_callcount_is_zero); + RUN_TEST(FFFTestSuite, when_void_func_called_once_then_callcount_is_one); + RUN_TEST(FFFTestSuite, when_void_func_called_once_and_reset_then_callcount_is_zero); + RUN_TEST(FFFTestSuite, when_void_func_with_1_integer_arg_called_then_last_arg_captured); + RUN_TEST(FFFTestSuite, when_void_func_with_1_integer_arg_called_twice_then_last_arg_captured); + RUN_TEST(FFFTestSuite, when_void_func_with_1_integer_arg_called_and_reset_then_captured_arg_is_zero); + RUN_TEST(FFFTestSuite, when_void_func_with_2_char_args_called_then_last_args_captured); + RUN_TEST(FFFTestSuite, when_void_func_with_2_char_args_called_twice_then_last_args_captured); + RUN_TEST(FFFTestSuite, when_void_func_with_2_char_args_called_and_reset_then_captured_arg_is_zero); + RUN_TEST(FFFTestSuite, when_fake_func_called_then_const_arguments_captured); + + RUN_TEST(FFFTestSuite, when_fake_func_created_default_history_is_fifty_calls); + RUN_TEST(FFFTestSuite, when_fake_func_called_then_arguments_captured_in_history); + RUN_TEST(FFFTestSuite, argument_history_is_reset_when_RESET_FAKE_called); + RUN_TEST(FFFTestSuite, when_fake_func_called_max_times_then_no_argument_histories_dropped); + RUN_TEST(FFFTestSuite, when_fake_func_called_max_times_plus_one_then_one_argument_history_dropped); + + RUN_TEST(FFFTestSuite, value_func_will_return_zero_by_default); + RUN_TEST(FFFTestSuite, value_func_will_return_value_given); + RUN_TEST(FFFTestSuite, value_func_will_return_zero_after_reset); + RUN_TEST(FFFTestSuite, register_call_macro_registers_one_call); + RUN_TEST(FFFTestSuite, register_call_macro_registers_two_calls); + RUN_TEST(FFFTestSuite, reset_call_history_resets_call_history); + RUN_TEST(FFFTestSuite, call_history_will_not_write_past_array_bounds); + RUN_TEST(FFFTestSuite, calling_fake_registers_one_call); + + RUN_TEST(FFFTestSuite, return_value_sequences_not_exhausted); + RUN_TEST(FFFTestSuite, return_value_sequences_exhausted); + + RUN_TEST(FFFTestSuite, can_register_custom_fake); + RUN_TEST(FFFTestSuite, when_value_custom_fake_called_THEN_it_returns_custom_return_value); + + RUN_TEST(FFFTestSuite, use_void_vararg_fake_with_different_number_of_arguments); + RUN_TEST(FFFTestSuite, use_value_vararg_fake_with_different_number_of_arguments); + RUN_TEST(FFFTestSuite, vararg_custom_fake_sequence_not_exhausted); + RUN_TEST(FFFTestSuite, vararg_custom_fake_seq_return_values_saved_in_history); + RUN_TEST(FFFTestSuite, vararg_custom_fake_sequence_exhausted); + RUN_TEST(FFFTestSuite, vararg_custom_fake_sequence_reset); + + RUN_TEST(FFFTestSuite, can_capture_upto_20_arguments_correctly); + RUN_TEST(FFFTestSuite, value_func_can_capture_upto_20_arguments_correctly); + + printf("\n-------------\n"); + printf("Complete\n"); + printf("-------------\n\n"); + + return 0; +} diff --git a/lib/fff/test/src/fff_test_global_cpp.cpp b/lib/fff/test/src/fff_test_global_cpp.cpp new file mode 100644 index 0000000..bb4993d --- /dev/null +++ b/lib/fff/test/src/fff_test_global_cpp.cpp @@ -0,0 +1,26 @@ + +extern "C"{ + #include "global_fakes.h" +} +#include "gtest/gtest.h" + +DEFINE_FFF_GLOBALS; + +class FFFTestSuite: public testing::Test +{ +public: + void SetUp() + { + RESET_FAKE(voidfunc1); + RESET_FAKE(voidfunc2); + RESET_FAKE(longfunc0); + RESET_FAKE(voidfunc1outparam); + RESET_FAKE(voidfunc3var); + RESET_FAKE(valuefunc3var); + FFF_RESET_HISTORY(); + } +}; + +#include "test_cases.include" + + diff --git a/lib/fff/test/src/global_fakes.c b/lib/fff/test/src/global_fakes.c new file mode 100644 index 0000000..cbd57ab --- /dev/null +++ b/lib/fff/test/src/global_fakes.c @@ -0,0 +1,34 @@ +#include "global_fakes.h" +#include // for memcpy + +#ifndef TEST_WITH_CALLING_CONVENTIONS +DEFINE_FAKE_VOID_FUNC(voidfunc1, int); +DEFINE_FAKE_VOID_FUNC(voidfunc2, char, char); +DEFINE_FAKE_VOID_FUNC(voidfunc1outparam, char *); + +DEFINE_FAKE_VALUE_FUNC(long, longfunc0); +DEFINE_FAKE_VALUE_FUNC(enum MYBOOL, enumfunc0); +DEFINE_FAKE_VALUE_FUNC(struct MyStruct, structfunc0); +DEFINE_FAKE_VOID_FUNC_VARARG(voidfunc3var, const char *, int, ...); +DEFINE_FAKE_VALUE_FUNC_VARARG(int, valuefunc3var, const char *, int, ...); +#ifndef __cplusplus +DEFINE_FAKE_VALUE_FUNC(int, strlcpy3, char* const, const char* const, const size_t); +#endif /* __cplusplus */ +DEFINE_FAKE_VOID_FUNC(voidfunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +DEFINE_FAKE_VALUE_FUNC(int, valuefunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +#else +DEFINE_FAKE_VOID_FUNC(__cdecl, voidfunc1, int); +DEFINE_FAKE_VOID_FUNC(__cdecl, voidfunc2, char, char); +DEFINE_FAKE_VOID_FUNC(__cdecl, voidfunc1outparam, char *); + +DEFINE_FAKE_VALUE_FUNC(long, __cdecl, longfunc0); +DEFINE_FAKE_VALUE_FUNC(enum MYBOOL, __cdecl, enumfunc0); +DEFINE_FAKE_VALUE_FUNC(struct MyStruct, __cdecl, structfunc0); +DEFINE_FAKE_VOID_FUNC_VARARG(__cdecl, voidfunc3var, const char *, int, ...); +DEFINE_FAKE_VALUE_FUNC_VARARG(int, __cdecl, valuefunc3var, const char *, int, ...); +#ifndef __cplusplus +DEFINE_FAKE_VALUE_FUNC(int, __cdecl, strlcpy3, char* const, const char* const, const size_t); +#endif /* __cplusplus */ +DEFINE_FAKE_VOID_FUNC(__cdecl, voidfunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +DEFINE_FAKE_VALUE_FUNC(int, __cdecl,valuefunc20, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int, int); +#endif diff --git a/lib/fff/test/src/test_cases.include b/lib/fff/test/src/test_cases.include new file mode 100644 index 0000000..261f7f2 --- /dev/null +++ b/lib/fff/test/src/test_cases.include @@ -0,0 +1,544 @@ + + +TEST_F(FFFTestSuite, when_void_func_never_called_then_callcount_is_zero) +{ + ASSERT_EQ(voidfunc1_fake.call_count, 0u); +} + +TEST_F(FFFTestSuite, when_void_func_called_once_then_callcount_is_one) +{ + voidfunc1(66); + ASSERT_EQ(voidfunc1_fake.call_count, 1u); +} + +TEST_F(FFFTestSuite, when_void_func_called_once_and_reset_then_callcount_is_zero) +{ + voidfunc1(66); + RESET_FAKE(voidfunc1); + ASSERT_EQ(voidfunc1_fake.call_count, 0u); +} + +// Single Argument +TEST_F(FFFTestSuite, when_void_func_with_1_integer_arg_called_then_last_arg_captured) +{ + voidfunc1(77); + ASSERT_EQ(voidfunc1_fake.arg0_val, 77); +} + +TEST_F(FFFTestSuite, when_void_func_with_1_integer_arg_called_twice_then_last_arg_captured) +{ + voidfunc1(77); + voidfunc1(12); + ASSERT_EQ(voidfunc1_fake.arg0_val, 12); +} + +TEST_F(FFFTestSuite, when_void_func_with_1_integer_arg_called_and_reset_then_captured_arg_is_zero) +{ + voidfunc1(11); + RESET_FAKE(voidfunc1); + ASSERT_EQ(voidfunc1_fake.arg0_val, 0); +} + +// Two Arguments +TEST_F(FFFTestSuite, when_void_func_with_2_char_args_called_then_last_args_captured) +{ + voidfunc2('a', 'b'); + ASSERT_EQ(voidfunc2_fake.arg0_val, 'a'); + ASSERT_EQ(voidfunc2_fake.arg1_val, 'b'); +} + +TEST_F(FFFTestSuite, when_void_func_with_2_char_args_called_twice_then_last_args_captured) +{ + voidfunc2('a', 'b'); + voidfunc2('c', 'd'); + ASSERT_EQ(voidfunc2_fake.arg0_val, 'c'); + ASSERT_EQ(voidfunc2_fake.arg1_val, 'd'); +} + +TEST_F(FFFTestSuite, when_void_func_with_2_char_args_called_and_reset_then_captured_arg_is_zero) +{ + voidfunc2('e', 'f'); + RESET_FAKE(voidfunc2); + ASSERT_EQ(voidfunc2_fake.arg0_val, 0); + ASSERT_EQ(voidfunc2_fake.arg1_val, 0); +} + +#ifndef __cplusplus +TEST_F(FFFTestSuite, when_fake_func_called_then_const_arguments_captured) +{ + char dst[80]; + strlcpy3(dst, __FUNCTION__, sizeof(__FUNCTION__)); +} +#endif /* __cplusplus */ + +// Argument history +TEST_F(FFFTestSuite, when_fake_func_created_default_history_is_fifty_calls) +{ + ASSERT_EQ(FFF_ARG_HISTORY_LEN, (sizeof voidfunc2_fake.arg0_history) / (sizeof voidfunc2_fake.arg0_history[0])); + ASSERT_EQ(FFF_ARG_HISTORY_LEN, (sizeof voidfunc2_fake.arg1_history) / (sizeof voidfunc2_fake.arg1_history[0])); +} + +TEST_F(FFFTestSuite, when_fake_func_called_then_arguments_captured_in_history) +{ + voidfunc2('g', 'h'); + ASSERT_EQ('g', voidfunc2_fake.arg0_history[0]); + ASSERT_EQ('h', voidfunc2_fake.arg1_history[0]); +} + +TEST_F(FFFTestSuite, argument_history_is_reset_when_RESET_FAKE_called) +{ + //given + voidfunc2('g', 'h'); + ASSERT_EQ('g', voidfunc2_fake.arg0_history[0]); + ASSERT_EQ('h', voidfunc2_fake.arg1_history[0]); + //when + RESET_FAKE(voidfunc2); + //then + ASSERT_EQ('\0', voidfunc2_fake.arg0_history[0]); + ASSERT_EQ('\0', voidfunc2_fake.arg1_history[0]); +} + +TEST_F(FFFTestSuite, when_fake_func_called_max_times_then_no_argument_histories_dropped) +{ + unsigned int i; + for (i = 0; i < FFF_ARG_HISTORY_LEN; i++) + { + voidfunc2('1' + i, '2' + i); + } + ASSERT_EQ(0u, voidfunc2_fake.arg_histories_dropped); +} + +TEST_F(FFFTestSuite, when_fake_func_called_max_times_plus_one_then_one_argument_history_dropped) +{ + unsigned int i; + for (i = 0; i < FFF_ARG_HISTORY_LEN; i++) + { + voidfunc2('1' + i, '2' + i); + } + voidfunc2('1', '2'); + ASSERT_EQ(1u, voidfunc2_fake.arg_histories_dropped); + // or in other words.. + ASSERT_TRUE(voidfunc2_fake.call_count > voidfunc2_fake.arg_history_len); +} + +// Return values +TEST_F(FFFTestSuite, value_func_will_return_zero_by_default) +{ + ASSERT_EQ(0l, longfunc0()); +} + +TEST_F(FFFTestSuite, value_func_will_return_value_given) +{ + longfunc0_fake.return_val = 99l; + ASSERT_EQ(99l, longfunc0()); +} + +TEST_F(FFFTestSuite, value_func_will_return_zero_after_reset) +{ + longfunc0_fake.return_val = 99l; + RESET_FAKE(longfunc0); + ASSERT_EQ(0l, longfunc0()); +} + +TEST_F(FFFTestSuite, register_call_macro_registers_one_call) +{ + REGISTER_CALL(longfunc0); + ASSERT_EQ(fff.call_history[0], (void *)longfunc0); +} + +TEST_F(FFFTestSuite, register_call_macro_registers_two_calls) +{ + REGISTER_CALL(longfunc0); + REGISTER_CALL(voidfunc2); + + ASSERT_EQ(fff.call_history[0], (void *)longfunc0); + ASSERT_EQ(fff.call_history[1], (void *)voidfunc2); +} + +TEST_F(FFFTestSuite, reset_call_history_resets_call_history) +{ + REGISTER_CALL(longfunc0); + REGISTER_CALL(voidfunc1); + FFF_RESET_HISTORY(); + REGISTER_CALL(voidfunc2); + + ASSERT_EQ(1u, fff.call_history_idx); + ASSERT_EQ(fff.call_history[0], (void *)voidfunc2); + ASSERT_EQ(fff.call_history[1], (void *)0); +} + +TEST_F(FFFTestSuite, call_history_will_not_write_past_array_bounds) +{ + for (unsigned int i = 0; i < FFF_CALL_HISTORY_LEN + 1; i++) + { + REGISTER_CALL(longfunc0); + } + ASSERT_EQ(FFF_CALL_HISTORY_LEN, fff.call_history_idx); +} + +TEST_F(FFFTestSuite, calling_fake_registers_one_call) +{ + longfunc0(); + ASSERT_EQ(fff.call_history_idx, 1u); + ASSERT_EQ(fff.call_history[0], (void *)longfunc0); +} + +TEST_F(FFFTestSuite, return_value_sequences_not_exhausted) +{ + long myReturnVals[3] = { 3, 7, 9 }; + SET_RETURN_SEQ(longfunc0, myReturnVals, 3); + ASSERT_EQ(myReturnVals[0], longfunc0()); + ASSERT_EQ(myReturnVals[1], longfunc0()); + ASSERT_EQ(myReturnVals[2], longfunc0()); +} + + +TEST_F(FFFTestSuite, return_value_sequences_exhausted) +{ + long myReturnVals[3] = { 3, 7, 9 }; + SET_RETURN_SEQ(longfunc0, myReturnVals, 3); + ASSERT_EQ(myReturnVals[0], longfunc0()); + ASSERT_EQ(myReturnVals[1], longfunc0()); + ASSERT_EQ(myReturnVals[2], longfunc0()); + ASSERT_EQ(myReturnVals[2], longfunc0()); + ASSERT_EQ(myReturnVals[2], longfunc0()); +} + +TEST_F(FFFTestSuite, return_value_sequences_reset) +{ + long myReturnVals[3] = { 3, 7, 9 }; + SET_RETURN_SEQ(longfunc0, myReturnVals, 3); + ASSERT_EQ(myReturnVals[0], longfunc0()); + ASSERT_EQ(myReturnVals[1], longfunc0()); + RESET_FAKE(longfunc0); + ASSERT_EQ(0, longfunc0()); +} + +static int my_custom_fake_called = 0; +void my_custom_fake(char a, char b) +{ + my_custom_fake_called++; +} + +TEST_F(FFFTestSuite, can_register_custom_fake) +{ + voidfunc2_fake.custom_fake = my_custom_fake; + voidfunc2('a', 'b'); + ASSERT_EQ(1, my_custom_fake_called); +} + +void voidfunc1outparam_custom_fake1(char *a) +{ + *a = 'x'; +} + +void voidfunc1outparam_custom_fake2(char *a) +{ + *a = 'y'; +} + +void voidfunc1outparam_custom_fake3(char *a) +{ + *a = 'z'; +} + +TEST_F(FFFTestSuite, custom_fake_sequence_not_exausthed) +{ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fakes[], char *) = { + voidfunc1outparam_custom_fake1, + voidfunc1outparam_custom_fake2, + voidfunc1outparam_custom_fake3 + }; + char a = 'a'; + + SET_CUSTOM_FAKE_SEQ(voidfunc1outparam, custom_fakes, 3); + + voidfunc1outparam(&a); + ASSERT_EQ('x', a); + voidfunc1outparam(&a); + ASSERT_EQ('y', a); + voidfunc1outparam(&a); + ASSERT_EQ('z', a); +} + +TEST_F(FFFTestSuite, return_value_sequence_saved_in_history) +{ + long myReturnVals[3] = { 3, 7, 9 }; + SET_RETURN_SEQ(longfunc0, myReturnVals, 3); + longfunc0(); + longfunc0(); + longfunc0(); + ASSERT_EQ(myReturnVals[0], longfunc0_fake.return_val_history[0]); + ASSERT_EQ(myReturnVals[1], longfunc0_fake.return_val_history[1]); + ASSERT_EQ(myReturnVals[2], longfunc0_fake.return_val_history[2]); +} + +TEST_F(FFFTestSuite, return_value_saved_in_history) +{ + long i; + + for (i = 0; i < FFF_ARG_HISTORY_LEN; i++) + { + longfunc0_fake.return_val = i + 1; + longfunc0(); + } + + for (i = 0; i < FFF_ARG_HISTORY_LEN; i++) + { + ASSERT_EQ(longfunc0_fake.return_val_history[i], i + 1); + } +} + +long custom_longfunc1(void) +{ + return 42; +} + +long custom_longfunc2(void) +{ + return 15; +} + +long custom_longfunc3(void) +{ + return 7; +} + +TEST_F(FFFTestSuite, custom_fake_seq_return_values_saved_in_history) +{ + CUSTOM_FFF_FUNCTION_TEMPLATE(long, custom_fakes[], void) = { + custom_longfunc1, + custom_longfunc2, + custom_longfunc3}; + + SET_CUSTOM_FAKE_SEQ(longfunc0, custom_fakes, 3); + + longfunc0(); + longfunc0(); + longfunc0(); + + ASSERT_EQ(42, longfunc0_fake.return_val_history[0]); + ASSERT_EQ(15, longfunc0_fake.return_val_history[1]); + ASSERT_EQ(7, longfunc0_fake.return_val_history[2]); +} + +TEST_F(FFFTestSuite, custom_fake_sequence_exhausted) +{ + CUSTOM_FFF_FUNCTION_TEMPLATE(void, custom_fakes[], char *) = { + voidfunc1outparam_custom_fake1, + voidfunc1outparam_custom_fake2, + voidfunc1outparam_custom_fake3}; + char a = 'a'; + + SET_CUSTOM_FAKE_SEQ(voidfunc1outparam, custom_fakes, 3); + + voidfunc1outparam(&a); + ASSERT_EQ('x', a); + voidfunc1outparam(&a); + ASSERT_EQ('y', a); + voidfunc1outparam(&a); + ASSERT_EQ('z', a); + a = 'a'; + voidfunc1outparam(&a); + ASSERT_EQ('z', a); + a = 'b'; + voidfunc1outparam(&a); + ASSERT_EQ('z', a); +} +//DECLARE_FAKE_VALUE_FUNC0(long, longfunc0); +#define MEANING_OF_LIFE 42 +long my_custom_value_fake(void) +{ + return MEANING_OF_LIFE; +} + +long my_custom_value_fake2(void) +{ + static long val = 0; + return val++; +} + +TEST_F(FFFTestSuite, when_value_custom_fake_called_THEN_it_returns_custom_return_value) +{ + longfunc0_fake.custom_fake = my_custom_value_fake; + long retval = longfunc0(); + ASSERT_EQ(MEANING_OF_LIFE, retval); +} + +TEST_F(FFFTestSuite, return_values_from_custom_fake_saved_in_history) +{ + longfunc0_fake.custom_fake = my_custom_value_fake2; + longfunc0(); + longfunc0(); + longfunc0(); + + ASSERT_EQ(0, longfunc0_fake.return_val_history[0]); + ASSERT_EQ(1, longfunc0_fake.return_val_history[1]); + ASSERT_EQ(2, longfunc0_fake.return_val_history[2]); +} + +int valuefunc3var_custom_fake1(const char *str, int a, va_list vl) +{ + int arg; + while ((arg = va_arg(vl, int)) != 0) + a += arg; + return a; +} + +int valuefunc3var_custom_fake2(const char *str, int a, va_list vl) +{ + int arg; + while ((arg = va_arg(vl, int)) != 0) + a -= arg; + return a; +} + +int valuefunc3var_custom_fake3(const char *str, int a, va_list vl) +{ + int arg; + while ((arg = va_arg(vl, int)) != 0) + a *= arg; + return a; +} + +TEST_F(FFFTestSuite, vararg_custom_fake_sequence_not_exhausted) +{ + CUSTOM_FFF_FUNCTION_TEMPLATE(int, custom_fakes[], const char *, int, + va_list) = {valuefunc3var_custom_fake1, + valuefunc3var_custom_fake2, + valuefunc3var_custom_fake3}; + SET_CUSTOM_FAKE_SEQ(valuefunc3var, custom_fakes, 3); + int a = 1; + ASSERT_EQ(valuefunc3var("a", a, 2, 3, 4, 0), 10); + ASSERT_EQ(valuefunc3var("aa", a, 2, 3, 4, 2, 0), -10); + ASSERT_EQ(valuefunc3var("aaa", a, 2, 3, 0), 6); +} + +TEST_F(FFFTestSuite, vararg_custom_fake_seq_return_values_saved_in_history) +{ + CUSTOM_FFF_FUNCTION_TEMPLATE(int, custom_fakes[], const char *, int, + va_list) = {valuefunc3var_custom_fake1, + valuefunc3var_custom_fake2, + valuefunc3var_custom_fake3}; + SET_CUSTOM_FAKE_SEQ(valuefunc3var, custom_fakes, 3); + int a = 1; + valuefunc3var("a", a, 2, 3, 4, 0); + valuefunc3var("aa", a, 2, 3, 4, 2, 0); + valuefunc3var("aaa", a, 2, 3, 0); + ASSERT_EQ(10, valuefunc3var_fake.return_val_history[0]); + ASSERT_EQ(-10, valuefunc3var_fake.return_val_history[1]); + ASSERT_EQ(6, valuefunc3var_fake.return_val_history[2]); +} + +TEST_F(FFFTestSuite, vararg_custom_fake_sequence_exhausted) +{ + CUSTOM_FFF_FUNCTION_TEMPLATE(int, custom_fakes[], const char *, int, + va_list) = {valuefunc3var_custom_fake1, + valuefunc3var_custom_fake2, + valuefunc3var_custom_fake3}; + SET_CUSTOM_FAKE_SEQ(valuefunc3var, custom_fakes, 3); + int a = 1; + ASSERT_EQ(valuefunc3var("a", a, 2, 3, 4, 0), 10); + ASSERT_EQ(valuefunc3var("aa", a, 2, 3, 4, 2, 0), -10); + ASSERT_EQ(valuefunc3var("aaa", a, 2, 3, 0), 6); + ASSERT_EQ(valuefunc3var("aaa", a, 4, 5, 1, 0), 20); + ASSERT_EQ(valuefunc3var("aaa", a, 4, 0), 4); +} + +TEST_F(FFFTestSuite, vararg_custom_fake_sequence_reset) +{ + CUSTOM_FFF_FUNCTION_TEMPLATE(int, custom_fakes[], const char *, int, + va_list) = {valuefunc3var_custom_fake1, + valuefunc3var_custom_fake2, + valuefunc3var_custom_fake3}; + SET_CUSTOM_FAKE_SEQ(valuefunc3var, custom_fakes, 3); + int a = 1; + ASSERT_EQ(valuefunc3var("a", a, 2, 3, 4, 0), 10); + ASSERT_EQ(valuefunc3var("aa", a, 2, 3, 4, 2, 0), -10); + RESET_FAKE(valuefunc3var); + ASSERT_EQ(0, valuefunc3var("b", 7, 4, 5)); + valuefunc3var_fake.return_val = 1; + ASSERT_EQ(1, valuefunc3var("c", 5, 4, 4)); + valuefunc3var_fake.return_val = 2; + ASSERT_EQ(2, valuefunc3var("d", 6, 3, 5)); +} + +TEST_F(FFFTestSuite, use_void_vararg_fake_with_different_number_of_arguments) +{ + voidfunc3var("0 parameters", 0); + voidfunc3var("1 parameter", 1, 10); + voidfunc3var("2 parameters", 2, 10, 20); + voidfunc3var("3 parameters", 3, 10, 20, 30); + + ASSERT_EQ(voidfunc3var_fake.call_count, 4u); + char msg[] = "3 parameters"; + ASSERT_EQ(strcmp(voidfunc3var_fake.arg0_val, msg), 0); + ASSERT_EQ(3, voidfunc3var_fake.arg1_val); +} + +TEST_F(FFFTestSuite, use_value_vararg_fake_with_different_number_of_arguments) +{ + valuefunc3var("0 parameters", 0); + valuefunc3var("1 parameter", 1, 10); + valuefunc3var("2 parameters", 2, 10, 20); + valuefunc3var("3 parameters", 3, 10, 20, 30); + + ASSERT_EQ(valuefunc3var_fake.call_count, 4u); + char msg[] = "3 parameters"; + ASSERT_EQ(strcmp(valuefunc3var_fake.arg0_val, msg), 0); + ASSERT_EQ(3, valuefunc3var_fake.arg1_val); +} + +TEST_F(FFFTestSuite, can_capture_upto_20_arguments_correctly) +{ + voidfunc20(0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,17,18,19); + ASSERT_EQ(0, voidfunc20_fake.arg0_val); + ASSERT_EQ(1, voidfunc20_fake.arg1_val); + ASSERT_EQ(2, voidfunc20_fake.arg2_val); + ASSERT_EQ(3, voidfunc20_fake.arg3_val); + ASSERT_EQ(4, voidfunc20_fake.arg4_val); + ASSERT_EQ(5, voidfunc20_fake.arg5_val); + ASSERT_EQ(6, voidfunc20_fake.arg6_val); + ASSERT_EQ(7, voidfunc20_fake.arg7_val); + ASSERT_EQ(8, voidfunc20_fake.arg8_val); + ASSERT_EQ(9, voidfunc20_fake.arg9_val); + ASSERT_EQ(10, voidfunc20_fake.arg10_val); + ASSERT_EQ(11, voidfunc20_fake.arg11_val); + ASSERT_EQ(12, voidfunc20_fake.arg12_val); + ASSERT_EQ(13, voidfunc20_fake.arg13_val); + ASSERT_EQ(14, voidfunc20_fake.arg14_val); + ASSERT_EQ(15, voidfunc20_fake.arg15_val); + ASSERT_EQ(16, voidfunc20_fake.arg16_val); + ASSERT_EQ(17, voidfunc20_fake.arg17_val); + ASSERT_EQ(18, voidfunc20_fake.arg18_val); + ASSERT_EQ(19, voidfunc20_fake.arg19_val); +} + +TEST_F(FFFTestSuite, value_func_can_capture_upto_20_arguments_correctly) +{ + valuefunc20_fake.return_val = 42; + + int return_val = valuefunc20(0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,17,18,19); + + ASSERT_EQ(42, return_val); + ASSERT_EQ(0, valuefunc20_fake.arg0_val); + ASSERT_EQ(1, valuefunc20_fake.arg1_val); + ASSERT_EQ(2, valuefunc20_fake.arg2_val); + ASSERT_EQ(3, valuefunc20_fake.arg3_val); + ASSERT_EQ(4, valuefunc20_fake.arg4_val); + ASSERT_EQ(5, valuefunc20_fake.arg5_val); + ASSERT_EQ(6, valuefunc20_fake.arg6_val); + ASSERT_EQ(7, valuefunc20_fake.arg7_val); + ASSERT_EQ(8, valuefunc20_fake.arg8_val); + ASSERT_EQ(9, valuefunc20_fake.arg9_val); + ASSERT_EQ(10, valuefunc20_fake.arg10_val); + ASSERT_EQ(11, valuefunc20_fake.arg11_val); + ASSERT_EQ(12, valuefunc20_fake.arg12_val); + ASSERT_EQ(13, valuefunc20_fake.arg13_val); + ASSERT_EQ(14, valuefunc20_fake.arg14_val); + ASSERT_EQ(15, valuefunc20_fake.arg15_val); + ASSERT_EQ(16, valuefunc20_fake.arg16_val); + ASSERT_EQ(17, valuefunc20_fake.arg17_val); + ASSERT_EQ(18, valuefunc20_fake.arg18_val); + ASSERT_EQ(19, valuefunc20_fake.arg19_val); +} diff --git a/sdk/CMakeLists.txt b/sdk/CMakeLists.txt new file mode 100644 index 0000000..53478b5 --- /dev/null +++ b/sdk/CMakeLists.txt @@ -0,0 +1,69 @@ +# sdk/CMakeLists.txt Драйверы NXP MCUXpresso SDK для MIMXRT1052CVJ5B Vendored: +# стабильная версия, не обновляется +# +# Добавление нового драйвера: см. docs/SDK_DRIVERS.md + +if(BUILD_TESTS_HOST) + return() +endif() + +# ----------------------------------------------------------------------------- +# Макрос для создания SDK драйвер-таргетов Использование: add_sdk_driver(ИМЯ +# ФАЙЛ_ИСХОДНИКА) Создаёт таргет sdk_ИМЯ с автоматическим подключением +# sdk_device +# ----------------------------------------------------------------------------- +macro(add_sdk_driver DRIVER_NAME DRIVER_SOURCE) + add_library(sdk_${DRIVER_NAME} STATIC + devices/MIMXRT1052/drivers/${DRIVER_SOURCE}) + target_include_directories(sdk_${DRIVER_NAME} + PUBLIC devices/MIMXRT1052/drivers) + target_link_libraries(sdk_${DRIVER_NAME} PUBLIC sdk_device) +endmacro() + +# ----------------------------------------------------------------------------- +# Базовый таргет — нужен всегда, подключается транзитивно через bsp_board +# ----------------------------------------------------------------------------- +add_library(sdk_device STATIC devices/MIMXRT1052/system_MIMXRT1052.c) +target_include_directories( + sdk_device PUBLIC devices/MIMXRT1052 devices/MIMXRT1052/drivers + devices/MIMXRT1052/periph CMSIS/Core/Include/) + +target_compile_definitions(sdk_device PUBLIC CPU_MIMXRT1052CVJ5B) + +# ----------------------------------------------------------------------------- +# Утилиты — базовые вещи, нужны большинству драйверов +# ----------------------------------------------------------------------------- +add_sdk_driver(common fsl_common.c) +add_sdk_driver(clock fsl_clock.c) + +# clock зависит от common +target_link_libraries(sdk_clock PUBLIC sdk_common) + +# ----------------------------------------------------------------------------- +# Драйверы периферии +# ----------------------------------------------------------------------------- +add_sdk_driver(gpio fsl_gpio.c) +add_sdk_driver(lpuart fsl_lpuart.c) +add_sdk_driver(flexcan fsl_flexcan.c) +add_sdk_driver(usdhc fsl_usdhc.c) +add_sdk_driver(lpi2c fsl_lpi2c.c) +add_sdk_driver(pwm fsl_pwm.c) +add_sdk_driver(adc fsl_adc.c) + +# Драйверы которые зависят от clock +target_link_libraries(sdk_lpuart PUBLIC sdk_clock) +target_link_libraries(sdk_flexcan PUBLIC sdk_clock) +target_link_libraries(sdk_usdhc PUBLIC sdk_clock) +target_link_libraries(sdk_lpi2c PUBLIC sdk_clock) +target_link_libraries(sdk_pwm PUBLIC sdk_clock) +target_link_libraries(sdk_adc PUBLIC sdk_clock) + +# ----------------------------------------------------------------------------- +# SEMC и FlexSPI — инициализируются через DCD и FDCB, драйверы нужны только если +# обращаешься к ним явно из кода +# ----------------------------------------------------------------------------- +add_sdk_driver(semc fsl_semc.c) +add_sdk_driver(flexspi fsl_flexspi.c) + +target_link_libraries(sdk_semc PUBLIC sdk_clock) +target_link_libraries(sdk_flexspi PUBLIC sdk_clock) diff --git a/sdk/README.md b/sdk/README.md new file mode 100644 index 0000000..16312cb --- /dev/null +++ b/sdk/README.md @@ -0,0 +1,147 @@ +# Добавление и использование драйверов NXP SDK + +Руководство по добавлению новых драйверов из SDK в проект и их использованию в BSP и firmware. + +--- + +## Структура sdk/ + +```bash +sdk/ +├── CMakeLists.txt # все SDK таргеты +├── CMSIS/ +│ └── Include/ +└── devices/ + └── MIMXRT1052/ + ├── system_MIMXRT1052.c + ├── drivers/ # здесь живут все драйверы + │ ├── fsl_flexcan.c / .h + │ ├── fsl_lpuart.c / .h + │ └── ... + └── utilities/ +``` + +--- + +## Как добавить новый драйвер + +### Шаг 1 — Найти исходник драйвера + +В SDK смотришь `devices/MIMXRT1052/drivers/`. Каждый драйвер — пара `.c` + `.h` файлов. + +Если нужен FlexCAN — это `fsl_flexcan.c` + `fsl_flexcan.h`. + +Для сложных драйверов (USDHC, SEMC) загляни в NXP-овский cmake файл рядом с драйвером — там указаны зависимости. Например файл `driver_flexcan.cmake` содержит: + +```cmake +target_sources(... fsl_flexcan.c) +# зависит от driver_common +``` + +Это подскажет какие ещё таргеты нужно добавить в зависимости. + +### Шаг 2 — Добавить таргет в sdk/CMakeLists.txt + +Открываешь `sdk/CMakeLists.txt` и добавляешь через макрос `add_sdk_driver`: + +```cmake +# Простой драйвер без дополнительных зависимостей +add_sdk_driver(flexcan fsl_flexcan.c) + +# Драйвер с зависимостью от другого SDK таргета +add_sdk_driver(flexcan fsl_flexcan.c) +target_link_libraries(sdk_flexcan PUBLIC sdk_clock) +``` + +Макрос `add_sdk_driver(ИМЯ ФАЙЛ)` автоматически: + +- Создаёт таргет `sdk_ИМЯ` +- Добавляет `fsl_ИМЯ.c` как источник +- Прокидывает `devices/MIMXRT1052/drivers` как PUBLIC include +- Линкует `sdk_device` как PUBLIC зависимость + +### Шаг 3 — Использовать в BSP или firmware + +**В BSP** — если драйвер нужен для инициализации платы (clock, gpio, common): + +```cmake +# bsp/CMakeLists.txt +target_link_libraries(bsp_board PUBLIC + sdk_device + sdk_clock # ← добавил + sdk_common # ← добавил +) +``` + +`PUBLIC` — транзитивно подтянется во все firmware таргеты которые линкуют `bsp_board`. + +**В firmware** — если драйвер нужен только конкретному проекту: + +```cmake +# firmware/test/CMakeLists.txt +target_link_libraries(firmware_test PRIVATE + bsp_board # транзитивно даёт sdk_device, sdk_clock, sdk_common + sdk_flexcan # ← добавил только здесь — нужен только тестовой прошивке + sdk_lpuart +) +``` + +`PRIVATE` — драйвер линкуется только в этот бинарь, не экспортируется наружу. + +--- + +## Справочник таргетов sdk/ + +| Таргет | Файл | Когда нужен | +| ------------- | --------------------- | ------------------------------------ | +| `sdk_device` | `system_MIMXRT1052.c` | Всегда (базовый) | +| `sdk_common` | `fsl_common.c` | Всегда (базовые утилиты) | +| `sdk_clock` | `fsl_clock.c` | Всегда (тактирование) | +| `sdk_gpio` | `fsl_gpio.c` | Кнопки, светодиоды, дискретные входы | +| `sdk_lpuart` | `fsl_lpuart.c` | UART1, RS_RX в режиме UART | +| `sdk_flexcan` | `fsl_flexcan.c` | CAN | +| `sdk_usdhc` | `fsl_usdhc.c` | uSD слот | +| `sdk_semc` | `fsl_semc.c` | SDRAM (обычно не нужен — DCD) | +| `sdk_flexspi` | `fsl_flexspi.c` | QSPI Flash (обычно не нужен — FDCB) | +| `sdk_lcdifv2` | `fsl_lcdifv2.c` | LCD интерфейс | +| `sdk_pwm` | `fsl_pwm.c` | FlexPWM (VOLUME, подсветка) | +| `sdk_adc` | `fsl_adc.c` | ADC | + +--- + +## Правила использования PUBLIC / PRIVATE + +```bash +PUBLIC — используй в bsp_board и sdk таргетах + (зависимость экспортируется транзитивно) + +PRIVATE — используй в firmware таргетах + (зависимость только для этого бинаря) +``` + +**Пример транзитивной цепочки:** + +```bash +firmware_test + └── bsp_board (PRIVATE) + ├── sdk_device (PUBLIC) ← подтягивается в firmware_test автоматически + ├── sdk_clock (PUBLIC) ← подтягивается в firmware_test автоматически + └── sdk_common (PUBLIC) ← подтягивается в firmware_test автоматически +``` + +Благодаря этому в `firmware_test/CMakeLists.txt` не нужно явно прописывать `sdk_device`, `sdk_clock`, `sdk_common` — они приходят через `bsp_board`. + +--- + +## Пример: добавить поддержку I2C (LPI2C) для BM8563 + +```cmake +# 1. sdk/CMakeLists.txt — добавляешь таргет +add_sdk_driver(lpi2c fsl_lpi2c.c) + +# 2. bsp/CMakeLists.txt — если I2C нужен для инициализации платы +target_link_libraries(bsp_board PUBLIC sdk_lpi2c) + +# ИЛИ firmware/app/CMakeLists.txt — если только в боевой прошивке +target_link_libraries(firmware_app PRIVATE sdk_lpi2c) +``` diff --git a/tests/CMakeLists.txt b/tests/CMakeLists.txt new file mode 100644 index 0000000..453c11d --- /dev/null +++ b/tests/CMakeLists.txt @@ -0,0 +1,14 @@ +option(BUILD_TESTS_HOST "Build host unit tests" OFF) +option(BUILD_TESTS_TARGET "Build on-target tests" OFF) + +if(BUILD_TESTS_HOST) + message(STATUS "⚙️ Configuring host unit-tests..") + add_subdirectory(host) + return() +endif() + +if(BUILD_TESTS_TARGET) + message(STATUS "⚙️ Configuring on-target unit-tests..") + add_subdirectory(target) + return() +endif() diff --git a/tests/HostTestingGuide.md b/tests/HostTestingGuide.md new file mode 100644 index 0000000..100ddcd --- /dev/null +++ b/tests/HostTestingGuide.md @@ -0,0 +1,618 @@ +# Юнит тестирование: Unity + FFF + +## Содержание + +- [Юнит тестирование: Unity + FFF](#юнит-тестирование-unity--fff) + - [Содержание](#содержание) + - [1. Архитектура тестирования](#1-архитектура-тестирования) + - [2. Структура тестового файла](#2-структура-тестового-файла) + - [3. Unity — assertion API](#3-unity--assertion-api) + - [Целые числа](#целые-числа) + - [Числа с плавающей точкой](#числа-с-плавающей-точкой) + - [Булевые значения](#булевые-значения) + - [Указатели](#указатели) + - [Строки и массивы](#строки-и-массивы) + - [Диапазоны](#диапазоны) + - [Явный провал / пропуск](#явный-провал--пропуск) + - [4. FFF — создание фейков](#4-fff--создание-фейков) + - [Макросы объявления](#макросы-объявления) + - [Где объявлять](#где-объявлять) + - [5. FFF — управление поведением](#5-fff--управление-поведением) + - [Задать возвращаемое значение](#задать-возвращаемое-значение) + - [Подставить кастомную реализацию](#подставить-кастомную-реализацию) + - [Захват аргументов через custom\_fake](#захват-аргументов-через-custom_fake) + - [6. FFF — проверка вызовов](#6-fff--проверка-вызовов) + - [Счётчики и аргументы последнего вызова](#счётчики-и-аргументы-последнего-вызова) + - [История всех вызовов](#история-всех-вызовов) + - [Порядок вызовов разных функций](#порядок-вызовов-разных-функций) + - [Функция не была вызвана](#функция-не-была-вызвана) + - [7. Паттерны работы с HAL](#7-паттерны-работы-с-hal) + - [Паттерн: заглушка HAL для host-сборки](#паттерн-заглушка-hal-для-host-сборки) + - [Паттерн: мок таймера](#паттерн-мок-таймера) + - [Паттерн: тест конечного автомата (FSM)](#паттерн-тест-конечного-автомата-fsm) + - [8. Организация фейков в проекте](#8-организация-фейков-в-проекте) + - [9. setUp / tearDown — правильный сброс](#9-setup--teardown--правильный-сброс) + - [10. Ограничения и обходные пути](#10-ограничения-и-обходные-пути) + - [`static` функции](#static-функции) + - [Настройка лимитов истории](#настройка-лимитов-истории) + - [Глобальные хендлеры HAL](#глобальные-хендлеры-hal) + - [11. CMakeLists.txt для host-тестов](#11-cmakeliststxt-для-host-тестов) + - [12. Запуск тестов](#12-запуск-тестов) + - [Пример вывода при успехе](#пример-вывода-при-успехе) + - [Пример вывода при провале](#пример-вывода-при-провале) + +--- + +## 1. Архитектура тестирования + +В bare-metal проекте тестируемый код вызывает HAL-функции, которые недоступны на хосте. +FFF подменяет эти вызовы фейками, Unity проверяет результаты. + +``` +┌─────────────────────────────────────────────┐ +│ Host Test Runner │ +│ │ +│ ┌──────────┐ ┌──────────┐ │ +│ │ Unity │ │ FFF │ │ +│ │ (assert) │ │ (fakes) │ │ +│ └──────────┘ └──────────┘ │ +│ ↓ ↓ │ +│ ┌─────────────────────────────┐ │ +│ │ Тестируемый код │ │ +│ │ App/Src/led.c │ │ +│ └─────────────────────────────┘ │ +│ ↓ вызывает │ +│ ┌─────────────────────────────┐ │ +│ │ HAL Fakes (вместо реального│ │ +│ │ stm32f4xx_hal.h) │ │ +│ └─────────────────────────────┘ │ +└─────────────────────────────────────────────┘ +``` + +**Принцип seam (шов):** тестируемый код не знает, что вызывает фейк, а не реальный HAL — линковщик подставляет нужную реализацию в зависимости от сборки. + +--- + +## 2. Структура тестового файла + +```c +// Tests/host/test_led.c + +#include "fff.h" // мок-фреймворк +#include "unity.h" // assertion фреймворк +#include "hal_fakes.h" // объявления фейков HAL +#include "led.h" // тестируемый модуль + +// Обязательно — ровно один раз на весь тестовый файл +DEFINE_FFF_GLOBALS; + +// ─── Жизненный цикл теста ───────────────────────────────────────────────── + +void setUp(void) +{ + // Сбрасываем фейки перед каждым тестом + RESET_FAKE(HAL_GPIO_WritePin); + RESET_FAKE(HAL_GetTick); + FFF_RESET_HISTORY(); +} + +void tearDown(void) {} + +// ─── Тесты ──────────────────────────────────────────────────────────────── + +void test_led_on_sets_gpio_high(void) +{ + led_set(LED_ON); + + TEST_ASSERT_EQUAL(1, HAL_GPIO_WritePin_fake.call_count); + TEST_ASSERT_EQUAL(GPIO_PIN_SET, HAL_GPIO_WritePin_fake.arg2_val); +} + +void test_led_off_sets_gpio_low(void) +{ + led_set(LED_OFF); + + TEST_ASSERT_EQUAL(GPIO_PIN_RESET, HAL_GPIO_WritePin_fake.arg2_val); +} + +// ─── Runner ─────────────────────────────────────────────────────────────── + +int main(void) +{ + UNITY_BEGIN(); + RUN_TEST(test_led_on_sets_gpio_high); + RUN_TEST(test_led_off_sets_gpio_low); + return UNITY_END(); +} +``` + +--- + +## 3. Unity — assertion API + +### Целые числа + +```c +TEST_ASSERT_EQUAL(expected, actual) +TEST_ASSERT_EQUAL_INT(expected, actual) +TEST_ASSERT_EQUAL_INT8(expected, actual) +TEST_ASSERT_EQUAL_INT16(expected, actual) +TEST_ASSERT_EQUAL_INT32(expected, actual) +TEST_ASSERT_EQUAL_UINT8(expected, actual) +TEST_ASSERT_EQUAL_UINT32(expected, actual) +TEST_ASSERT_NOT_EQUAL(expected, actual) +``` + +### Числа с плавающей точкой + +```c +TEST_ASSERT_EQUAL_FLOAT(expected, actual) +TEST_ASSERT_FLOAT_WITHIN(delta, expected, actual) // |actual - expected| < delta +TEST_ASSERT_EQUAL_DOUBLE(expected, actual) +``` + +### Булевые значения + +```c +TEST_ASSERT_TRUE(condition) +TEST_ASSERT_FALSE(condition) +TEST_ASSERT_NULL(pointer) +TEST_ASSERT_NOT_NULL(pointer) +``` + +### Указатели + +```c +TEST_ASSERT_EQUAL_PTR(expected, actual) +``` + +### Строки и массивы + +```c +TEST_ASSERT_EQUAL_STRING(expected, actual) +TEST_ASSERT_EQUAL_MEMORY(expected, actual, len) // побайтовое сравнение +TEST_ASSERT_EQUAL_INT_ARRAY(expected, actual, len) // сравнение массивов int +TEST_ASSERT_EQUAL_UINT8_ARRAY(expected, actual, len) +``` + +### Диапазоны + +```c +TEST_ASSERT_INT_WITHIN(delta, expected, actual) +TEST_ASSERT_UINT32_WITHIN(delta, expected, actual) +``` + +### Явный провал / пропуск + +```c +TEST_FAIL() // тест падает безусловно +TEST_FAIL_MESSAGE("причина") // с сообщением +TEST_IGNORE() // тест пропускается (помечается как ignored) +TEST_IGNORE_MESSAGE("в процессе") +``` + +--- + +## 4. FFF — создание фейков + +### Макросы объявления + +```c +// void функция без аргументов +FAKE_VOID_FUNC(HAL_Init); + +// void функция с аргументами +FAKE_VOID_FUNC(HAL_GPIO_WritePin, + GPIO_TypeDef*, // arg0 + uint16_t, // arg1 + GPIO_PinState); // arg2 + +// Функция с возвращаемым значением +FAKE_VALUE_FUNC(HAL_StatusTypeDef, + HAL_UART_Transmit, + UART_HandleTypeDef*, // arg0 + uint8_t*, // arg1 + uint16_t, // arg2 + uint32_t); // arg3 + +// Без аргументов, с возвращаемым значением +FAKE_VALUE_FUNC(uint32_t, HAL_GetTick); + +// Функция с переменным числом аргументов +FAKE_VOID_FUNC_VARARG(printf_fake, const char*, ...); +``` + +### Где объявлять + +| Место | Назначение | +|---|---| +| `hal_fakes.h` | `DECLARE_FAKE_*` — объявления для хедера | +| `hal_fakes.c` | `DEFINE_FAKE_*` — определения, компилируется один раз | +| Тестовый файл | `DEFINE_FFF_GLOBALS` — ровно в одном `.c` файле | + +```c +// hal_fakes.h +#pragma once +#include "fff.h" +#include "stm32f4xx_hal.h" // типы GPIO_TypeDef и т.д. + +DECLARE_FAKE_VOID_FUNC(HAL_GPIO_WritePin, GPIO_TypeDef*, uint16_t, GPIO_PinState); +DECLARE_FAKE_VALUE_FUNC(uint32_t, HAL_GetTick); +DECLARE_FAKE_VALUE_FUNC(HAL_StatusTypeDef, HAL_UART_Transmit, + UART_HandleTypeDef*, uint8_t*, uint16_t, uint32_t); +``` + +```c +// hal_fakes.c +#include "hal_fakes.h" + +DEFINE_FAKE_VOID_FUNC(HAL_GPIO_WritePin, GPIO_TypeDef*, uint16_t, GPIO_PinState); +DEFINE_FAKE_VALUE_FUNC(uint32_t, HAL_GetTick); +DEFINE_FAKE_VALUE_FUNC(HAL_StatusTypeDef, HAL_UART_Transmit, + UART_HandleTypeDef*, uint8_t*, uint16_t, uint32_t); +``` + +--- + +## 5. FFF — управление поведением + +### Задать возвращаемое значение + +```c +// Константное значение — возвращается при каждом вызове +HAL_UART_Transmit_fake.return_val = HAL_ERROR; + +// Последовательность значений — каждый вызов берёт следующее +HAL_StatusTypeDef seq[] = {HAL_OK, HAL_OK, HAL_TIMEOUT}; +SET_RETURN_SEQ(HAL_UART_Transmit, seq, 3); +// 1-й вызов → HAL_OK +// 2-й вызов → HAL_OK +// 3-й вызов → HAL_TIMEOUT +// 4-й и далее → последнее значение (HAL_TIMEOUT) +``` + +### Подставить кастомную реализацию + +```c +// Эмулируем тикающий таймер +static uint32_t s_tick_ms = 0; + +static uint32_t fake_get_tick_incrementing(void) +{ + s_tick_ms += 10; + return s_tick_ms; +} + +void test_timeout_after_100ms(void) +{ + HAL_GetTick_fake.custom_fake = fake_get_tick_incrementing; + s_tick_ms = 0; + + bool result = wait_with_timeout(100); + + TEST_ASSERT_TRUE(result); + TEST_ASSERT_EQUAL(11, HAL_GetTick_fake.call_count); +} +``` + +> `custom_fake` имеет наивысший приоритет — если задан, `return_val` и +> `return_val_seq` игнорируются. + +### Захват аргументов через custom_fake + +```c +static uint8_t s_captured_data[64]; +static uint16_t s_captured_size; + +static HAL_StatusTypeDef fake_uart_capture(UART_HandleTypeDef *p_huart, + uint8_t *p_data, + uint16_t size, + uint32_t timeout) +{ + s_captured_size = size; + memcpy(s_captured_data, p_data, size); + return HAL_OK; +} + +void test_uart_sends_correct_payload(void) +{ + HAL_UART_Transmit_fake.custom_fake = fake_uart_capture; + + protocol_send_ping(); + + TEST_ASSERT_EQUAL(4, s_captured_size); + TEST_ASSERT_EQUAL_UINT8_ARRAY("\xAA\x01\x00\xBB", s_captured_data, 4); +} +``` + +--- + +## 6. FFF — проверка вызовов + +### Счётчики и аргументы последнего вызова + +```c +// Количество вызовов +TEST_ASSERT_EQUAL(2, HAL_GPIO_WritePin_fake.call_count); + +// Аргументы последнего вызова +TEST_ASSERT_EQUAL_PTR(GPIOA, HAL_GPIO_WritePin_fake.arg0_val); +TEST_ASSERT_EQUAL(GPIO_PIN_5, HAL_GPIO_WritePin_fake.arg1_val); +TEST_ASSERT_EQUAL(GPIO_PIN_SET, HAL_GPIO_WritePin_fake.arg2_val); +``` + +### История всех вызовов + +```c +// История аргументов — по умолчанию хранит FFF_ARG_HISTORY_LEN=50 вызовов +TEST_ASSERT_EQUAL(GPIO_PIN_SET, HAL_GPIO_WritePin_fake.arg2_history[0]); +TEST_ASSERT_EQUAL(GPIO_PIN_RESET, HAL_GPIO_WritePin_fake.arg2_history[1]); +``` + +### Порядок вызовов разных функций + +```c +// FFF хранит глобальную историю вызовов всех фейков +void test_init_sequence_order(void) +{ + module_init(); + + // HAL_Init должен вызваться раньше HAL_GPIO_Init + TEST_ASSERT_EQUAL_PTR(HAL_Init, fff.call_history[0]); + TEST_ASSERT_EQUAL_PTR(HAL_GPIO_Init, fff.call_history[1]); +} +``` + +### Функция не была вызвана + +```c +void test_no_gpio_toggle_on_error(void) +{ + HAL_UART_Transmit_fake.return_val = HAL_ERROR; + + module_process(); + + TEST_ASSERT_EQUAL(0, HAL_GPIO_WritePin_fake.call_count); +} +``` + +--- + +## 7. Паттерны работы с HAL + +### Паттерн: заглушка HAL для host-сборки + +Создай `Tests/host/stubs/stm32f4xx_hal.h` — минимальный хедер с нужными типами: + +```c +// Tests/host/stubs/stm32f4xx_hal.h +#pragma once +#include + +typedef struct { uint32_t placeholder; } GPIO_TypeDef; +typedef struct { uint32_t placeholder; } UART_HandleTypeDef; + +typedef enum { GPIO_PIN_RESET = 0, GPIO_PIN_SET } GPIO_PinState; +typedef enum { HAL_OK = 0, HAL_ERROR, HAL_BUSY, HAL_TIMEOUT } HAL_StatusTypeDef; + +#define GPIOA ((GPIO_TypeDef *)0x40020000) +#define GPIOB ((GPIO_TypeDef *)0x40020400) + +#define GPIO_PIN_5 ((uint16_t)0x0020) +#define GPIO_PIN_13 ((uint16_t)0x2000) +``` + +### Паттерн: мок таймера + +```c +static uint32_t s_mock_tick = 0; + +void mock_tick_reset(void) { s_mock_tick = 0; } +void mock_tick_advance(uint32_t ms) { s_mock_tick += ms; } + +static uint32_t fake_hal_get_tick(void) { return s_mock_tick; } + +void setUp(void) +{ + RESET_FAKE(HAL_GetTick); + HAL_GetTick_fake.custom_fake = fake_hal_get_tick; + mock_tick_reset(); +} + +void test_retry_stops_after_timeout(void) +{ + HAL_UART_Transmit_fake.return_val = HAL_TIMEOUT; + + bool result = uart_send_with_retry("data", 4, /*timeout_ms=*/300); + + TEST_ASSERT_FALSE(result); + // За 300ms при retry каждые 100ms — ровно 3 попытки + TEST_ASSERT_EQUAL(3, HAL_UART_Transmit_fake.call_count); +} +``` + +### Паттерн: тест конечного автомата (FSM) + +```c +void test_fsm_transitions_on_uart_error(void) +{ + HAL_StatusTypeDef seq[] = {HAL_OK, HAL_ERROR}; + SET_RETURN_SEQ(HAL_UART_Transmit, seq, 2); + + fsm_init(); + fsm_step(); + fsm_step(); + + TEST_ASSERT_EQUAL(FSM_STATE_ERROR, fsm_get_state()); + TEST_ASSERT_EQUAL(2, HAL_UART_Transmit_fake.call_count); +} +``` + +--- + +## 8. Организация фейков в проекте + +``` +Tests/ +├── CMakeLists.txt +├── host/ +│ ├── CMakeLists.txt +│ ├── stubs/ +│ │ ├── stm32f4xx_hal.h # минимальные типы для компиляции на хосте +│ │ └── stm32f4xx_hal_conf.h +│ ├── fakes/ +│ │ ├── hal_fakes.h # DECLARE_FAKE_* для всех HAL функций +│ │ └── hal_fakes.c # DEFINE_FAKE_* — компилируется один раз +│ ├── test_led.c +│ ├── test_uart.c +│ └── test_fsm.c +└── target/ + └── ... +``` + +--- + +## 9. setUp / tearDown — правильный сброс + +`RESET_FAKE` сбрасывает для одного фейка: счётчик вызовов, историю аргументов, `return_val`, `custom_fake`. + +`FFF_RESET_HISTORY` сбрасывает глобальную историю порядка вызовов. + +```c +void setUp(void) +{ + RESET_FAKE(HAL_GPIO_WritePin); + RESET_FAKE(HAL_UART_Transmit); + RESET_FAKE(HAL_GetTick); + + FFF_RESET_HISTORY(); + + // Восстанавливаем дефолтное поведение + HAL_GetTick_fake.return_val = 0; + HAL_UART_Transmit_fake.return_val = HAL_OK; +} +``` + +> Никогда не полагайся на порядок выполнения тестов. Каждый тест должен +> работать независимо — `setUp` обязан полностью сбрасывать состояние. + +--- + +## 10. Ограничения и обходные пути + +### `static` функции + +FFF не может замокать `static` функции — они невидимы снаружи translation unit. + +```c +// ❌ Нельзя замокать напрямую +static void internal_process(void) { ... } + +// ✅ Решение — compile-time seam +#ifdef UNIT_TEST + void internal_process(void); // тест подставит свою реализацию +#else + static void internal_process(void) { ... } +#endif +``` + +### Настройка лимитов истории + +```c +// Переопределяется перед включением fff.h +#define FFF_ARG_HISTORY_LEN 100 // сколько вызовов хранить на фейк +#define FFF_CALL_HISTORY_LEN 100 // размер глобальной истории вызовов +#include "fff.h" +``` + +### Глобальные хендлеры HAL + +```c +// Тестовый файл — заглушка глобального хендлера +UART_HandleTypeDef huart1 = {0}; +``` + +--- + +## 11. CMakeLists.txt для host-тестов + +```cmake +# Tests/host/CMakeLists.txt + +# Библиотека фейков — общая для всех тестов +add_library(hal_fakes STATIC fakes/hal_fakes.c) +target_include_directories(hal_fakes PUBLIC fakes/ stubs/) +target_link_libraries(hal_fakes PUBLIC ThirdParty) + +# Макрос для регистрации тестов +function(add_host_test TEST_NAME TEST_SOURCES APP_SOURCES) + add_executable(${TEST_NAME} ${TEST_SOURCES} ${APP_SOURCES}) + target_include_directories(${TEST_NAME} PRIVATE + ${PROJECT_SOURCE_DIR}/App/Inc + ) + target_compile_definitions(${TEST_NAME} PRIVATE UNIT_TEST) + target_link_libraries(${TEST_NAME} PRIVATE hal_fakes ThirdParty) + add_test(NAME ${TEST_NAME} COMMAND ${TEST_NAME}) +endfunction() + +add_host_test(test_led + test_led.c + ${PROJECT_SOURCE_DIR}/App/Src/led.c +) + +add_host_test(test_uart + test_uart.c + ${PROJECT_SOURCE_DIR}/App/Src/uart.c +) +``` + +> `UNIT_TEST` define передаётся в тестируемый код — используй его для +> compile-time seam при работе со `static` функциями. + +--- + +## 12. Запуск тестов + +```bash +# 1. Конфигурация +cmake --preset host-debug + +# 2. Сборка +cmake --build --preset host-debug-build + +# 3. Запуск всех тестов +ctest --preset host-debug-test + +# Запуск конкретного теста с полным выводом +ctest --preset host-debug-test -R test_led -V + +# Запуск напрямую — полный вывод Unity +./build-host-debug/Tests/host/test_led + +# Одной командой +cmake --preset host-debug && \ +cmake --build --preset host-debug-build && \ +ctest --preset host-debug-test +``` + +### Пример вывода при успехе + +``` +test_led.c:28:test_led_on_sets_gpio_high:PASS +test_led.c:35:test_led_off_sets_gpio_low:PASS + +----------------------- +2 Tests 0 Failures 0 Ignored +OK +``` + +### Пример вывода при провале + +``` +test_led.c:29:test_led_on_sets_gpio_high:FAIL: + Expected 1 Was 0 + +----------------------- +2 Tests 1 Failures 0 Ignored +FAIL +``` \ No newline at end of file diff --git a/tests/README.md b/tests/README.md new file mode 100644 index 0000000..7a91099 --- /dev/null +++ b/tests/README.md @@ -0,0 +1,312 @@ +# Юнит тестирование CTest, Unity, CMakePresets + +- [Юнит тестирование CTest, Unity, CMakePresets](#юнит-тестирование-ctest-unity-cmakepresets) + - [1. Общая архитектура](#1-общая-архитектура) + - [1.1 Структура проекта](#11-структура-проекта) + - [1.2 CMake конфигурация](#12-cmake-конфигурация) + - [1.3 CMake Presets](#13-cmake-presets) + - [2. Использование](#2-использование) + - [2.1 CLI](#21-cli) + - [3. Ключевые принципы](#3-ключевые-принципы) + - [4. Итоговый Workflow](#4-итоговый-workflow) + +## 1. Общая архитектура + +| Компонент | Назначение | Где используется | +| ------------------------ | --------------------------------------------- | ---------------- | +| **Unity** | Фреймворк unit-тестирования (ThrowTheSwitch) | Host + Target | +| **SEGGER RTT** | Вывод логов через отладчик | Только Target | +| **ThirdParty INTERFACE** | Централизованная точка для всех зависимостей | Везде | +| **CMake Presets** | Конфигурационные профили для разных окружений | CLI + VSCode | +| **CTest** | Запуск и отчёты по тестам | Host тесты | + +### 1.1 Структура проекта + +```bash +ProjectRoot/ +├── CMakeLists.txt # Корневой CMake +├── CMakePresets.json # Presets для host/target +├── cmake/ +│ └── toolchain-stm32f4.cmake # ARM GCC toolchain +│ +├── App/ # Код приложения +│ ├── Src/ +│ │ └── app.c # Тестируемый код +│ └── Inc/ +│ └── app.h +│ +├── Tests/ # Все тесты +│ ├── CMakeLists.txt # enable_testing() + опции +│ ├── host/ # Host тесты (Mac) +│ │ ├── CMakeLists.txt +│ │ └── test_host_simple.c +│ └── target/ # Target тесты (STM32) +│ ├── CMakeLists.txt +│ ├── test_main.c # Unity runner для МК +│ └── test_gpio.c +│ +├── ThirdParty/ # Внешние зависимости +│ ├── CMakeLists.txt # INTERFACE библиотека +│ ├── Unity/ # git submodules +│ │ └── src/ +│ │ ├── unity.c +│ │ └── unity.h +│ └── SEGGER_RTT/ +│ ├── RTT/ +│ └── wrapper/ +│ └── CMakeLists.txt # PUBLIC include пути +│ +├── build-host/ # Сборка для Mac (генерируется) +└── build-target/ # Сборка для STM32 (генерируется) +``` + +### 1.2 CMake конфигурация + +1. Корневой **CMakeLists.txt** + +```cmake +cmake_minimum_required(VERSION 3.22) +project(MySTM32Project C ASM) + +# Добавляем все компоненты +add_subdirectory(ThirdParty) # Зависимости +add_subdirectory(App) # Код приложения +add_subdirectory(Tests) # Тесты +``` + +1. ThirdParty/CMakeLists.txt (**INTERFACE** библиотека) + + • INTERFACE библиотека НЕ генерирует .a/.so файлы + • Служит контейнером для передачи зависимостей + • Наследует PUBLIC свойства от связанных библиотек + • Передаёт всё потребителям одной строкой target_link_libraries(MyApp ThirdParty) + +Как работает **INTERFACE**: + +```txt +1. ThirdParty INTERFACE создана (без файлов) +2. target_link_libraries(ThirdParty INTERFACE SeggerRTT) + → ThirdParty наследует PUBLIC свойства SeggerRTT: + - include пути: RTT/ + - defines: RTT_MODE=1 + - библиотеку: libSeggerRTT.a +3. target_link_libraries(MyApp ThirdParty) + → MyApp автоматически получает ВСЁ от ThirdParty +``` + +1. **Tests/CMakeLists.txt** (входная точка для тестов) + +```cmake +# ⚠️ ОБЯЗАТЕЛЬНО! Регистрирует тесты в CTest +enable_testing() + +# Опции для выбора типа тестов +option(BUILD_TESTS_HOST "Build host (Mac) unit tests" ON) +option(BUILD_TESTS_TARGET "Build STM32 target tests" OFF) + +# Host тесты (Mac) +if(BUILD_TESTS_HOST) + message(STATUS "🔧 Building host tests") + add_subdirectory(host) +endif() + +# Target тесты (STM32) +if(BUILD_TESTS_TARGET) + message(STATUS "🔧 Building target tests") + add_subdirectory(target) +endif() +``` + +1. **Tests/host/CMakeLists.txt** (host тесты) + +```cmake +# Тестовый исполняемый файл +add_executable(test_host_simple + test_host_simple.c # Код тестов + ${PROJECT_SOURCE_DIR}/App/Src/app.c # Тестируемый код +) + +# Include пути +target_include_directories(test_host_simple PRIVATE + ${PROJECT_SOURCE_DIR}/App/Inc # Заголовки приложения + ${PROJECT_SOURCE_DIR}/ThirdParty/Unity/src # unity.h +) + +# Линковка с ThirdParty → автоматически получаем Unity +target_link_libraries(test_host_simple PRIVATE ThirdParty) + +# ⚠️ КРИТИЧНО! Регистрация в CTest +add_test(NAME test_host_simple + COMMAND test_host_simple + WORKING_DIRECTORY ${CMAKE_BINARY_DIR}) # build-host/ +``` + +1. **Tests/target/CMakeLists.txt** (target тесты) + +```cmake +# Тестовый ELF для STM32 +add_executable(test_gpio.elf + test_main.c # Unity runner + test_gpio.c # Тесты GPIO + ${PROJECT_SOURCE_DIR}/Src/hw/gpio_driver.c +) + +target_include_directories(test_gpio.elf PRIVATE + ${PROJECT_SOURCE_DIR}/Src/hw +) + +# ThirdParty даёт Unity + RTT +target_link_libraries(test_gpio.elf PRIVATE ThirdParty) + +# Линкер скрипт для STM32 +target_link_options(test_gpio.elf PRIVATE + -T${PROJECT_SOURCE_DIR}/cmake/STM32F407VETx_flash.ld + -Wl,--gc-sections + -Wl,--print-memory-usage +) + +# Отчёт размера +add_custom_command(TARGET test_gpio.elf POST_BUILD + COMMAND ${CMAKE_SIZE} $ +) +``` + +### 1.3 CMake Presets + +```json +{ + "version": 6, + "configurePresets": [ + { + "name": "host-debug", + "displayName": "🖥️ Host Debug Tests", + "description": "Unit tests for Mac (AppleClang)", + "binaryDir": "${sourceDir}/build-host", + "generator": "Ninja", + "cacheVariables": { + "CMAKE_BUILD_TYPE": "Debug", + "BUILD_TESTS_HOST": "ON", + "BUILD_TESTS_TARGET": "OFF", + "UNITY_ENABLED": "ON", + "SEGGER_RTT_ENABLED": "OFF" + } + }, + { + "name": "target-debug", + "displayName": "🎯 STM32F407 Target Tests", + "description": "Integration tests for STM32", + "binaryDir": "${sourceDir}/build-target", + "generator": "Ninja", + "toolchainFile": "${sourceDir}/cmake/toolchain-stm32f4.cmake", + "cacheVariables": { + "CMAKE_BUILD_TYPE": "Debug", + "BUILD_TESTS_HOST": "OFF", + "BUILD_TESTS_TARGET": "ON", + "UNITY_ENABLED": "ON", + "SEGGER_RTT_ENABLED": "ON" + } + } + ], + "buildPresets": [ + { + "name": "host-debug-build", + "configurePreset": "host-debug", + "displayName": "Build Host Tests", + "targets": ["test_host_simple"] + }, + { + "name": "target-debug-flash", + "configurePreset": "target-debug", + "displayName": "Flash Target Tests", + "targets": ["test_gpio.elf"] + } + ], + "testPresets": [ + { + "name": "host-debug-test", + "configurePreset": "host-debug", + "displayName": "🧪 Run Host Tests", + "output": { + "outputOnFailure": true, + "verbosity": "detailed" + } + } + ] +} +``` + +Что делают **presets**: + +| Preset | Компилятор | Опции | Результат | +| ------------ | ---------- | --------------------- | --------------------------- | +| host-debug | AppleClang | BUILD_TESTS_HOST=ON | build-host/test_host_simple | +| target-debug | ARM GCC | BUILD_TESTS_TARGET=ON | build-target/test_gpio.elf | + +## 2. Использование + +### 2.1 CLI + +**Host** тесты + +```bash +# 1. Конфигурация +cmake --preset host-debug + +# 2. Сборка +cmake --build --preset host-debug-build + +# 3. Запуск тестов +ctest --preset host-debug-test + +# Или всё одной командой: +cmake --preset host-debug && \ +cmake --build --preset host-debug-build && \ +ctest --preset host-debug-test +``` + +**Target** тесты + +```bash +# 1. Конфигурация +cmake --preset target-debug + +# 2. Сборка +cmake --build --preset target-debug-flash + +# 3. Прошивка и запуск +probe-rs run --chip STM32F407VETx build-target/test_gpio.elf + +# Смотрим вывод RTT в терминале! +``` + +## 3. Ключевые принципы + +1. **INTERFACE** библиотека **ThirdParty** + • Контейнер зависимостей без генерации файлов + • Наследует **PUBLIC** свойства от связанных библиотек + • Передаёт всё одной строкой `target_link_libraries(App ThirdParty)` +2. **CMake Presets** + • Один файл для всех конфигураций (host/target) + • Опции управляют включением тестов ( BUILD_TESTS_HOST/TARGET ) + • Build presets с targets предотвращают сборку лишнего +3. **CTest** интеграция + • `enable_testing()` в `Tests/CMakeLists.txt` + • `add_test()` для каждого теста + • `WORKING_DIRECTORY ${CMAKE_BINARY_DIR}` критично! +4. Фиксы **Unity** + • Явное `target_include_directories` для `Unity/src` + • `Unity CMakeLists.txt` не экспортирует **PUBLIC** пути + +## 4. Итоговый Workflow + +| Шаг | Действие | +| :---- | ------------------------------------------------------------------------------------- | +| **1** | Написали код в `App/Src/app.c` | +| **2** | Написали `host` тест в `Tests/host/test_host_simple.c` | +| **3** | `cmake --preset host-debug` → AppleClang, build-host/, Unity enabled | +| **4** | `cmake --build --preset host-debug-build` → Только test_host_simple собирается | +| **5** | `ctest --preset host-debug-test` → Тесты выполняются, отчёт CTest | +| **6** | Всё работает! Добавили target тест в `Tests/target/` | +| **7** | `cmake --preset target-debug` → ARM GCC, build-target/, Unity + RTT enabled | +| **8** | `cmake --build --preset target-debug-flash` → `test_gpio.elf` создан | +| **9** | `probe-rs run --chip STM32F407VETx test_gpio.elf` → Прошивка, запуск, вывод через RTT | diff --git a/tests/host/CMakeLists.txt b/tests/host/CMakeLists.txt new file mode 100644 index 0000000..5acc32e --- /dev/null +++ b/tests/host/CMakeLists.txt @@ -0,0 +1,16 @@ +function(add_host_test TEST_NAME TEST_SOURCES) + add_executable(${TEST_NAME} ${TEST_SOURCES}) + + target_link_libraries(${TEST_NAME} PRIVATE lib_external) + + add_test( + NAME ${TEST_NAME} + COMMAND ${TEST_NAME} + WORKING_DIRECTORY ${CMAKE_BINARY_DIR}) +endfunction() + +# Подключаешь тесты лаконично add_host_test( test_host_simple test_host_simple.c +# ${PROJECT_SOURCE_DIR}/lib/hal/src/app.c # тестируемый модуль ) + +# add_host_test(test_host_second test_host_second.c +# ${PROJECT_SOURCE_DIR}/lib/hal/src/app.c) diff --git a/tests/host/test_host_second.c b/tests/host/test_host_second.c new file mode 100644 index 0000000..bd2f196 --- /dev/null +++ b/tests/host/test_host_second.c @@ -0,0 +1,34 @@ +#include "app.h" // Подключение заголовочного файла с тестируемым функционалом +#include "fff.h" +#include "unity.h" +void setUp(void) { + // Инициализация перед каждым тестом (опционально) +} + +void tearDown(void) { + // Очистка после теста (опционально) +} + +// Тест 1: Проверка сложения +void test_app_add_returns_correct_sum(void) { + TEST_ASSERT_EQUAL_INT(5, foo_add(2, 3)); + TEST_ASSERT_EQUAL_INT(0, foo_add(0, 0)); +} + +// Тест 2: Отрицательные числа +void test_app_add_handles_negative(void) { + TEST_ASSERT_EQUAL_INT(-1, foo_add(-2, 1)); +} + +// Тест 3: Переполнение (boundary case) +void test_app_add_overflow(void) { + TEST_ASSERT_INT_WITHIN(1, 2147483647, foo_add(2147483646, 1)); +} + +int main(void) { + UNITY_BEGIN(); // Запуск Unity + RUN_TEST(test_app_add_returns_correct_sum); + RUN_TEST(test_app_add_handles_negative); + RUN_TEST(test_app_add_overflow); + return UNITY_END(); // Отчёт +} \ No newline at end of file diff --git a/tests/host/test_host_simple.c b/tests/host/test_host_simple.c new file mode 100644 index 0000000..e6740fe --- /dev/null +++ b/tests/host/test_host_simple.c @@ -0,0 +1,26 @@ + +#include "app.h" // Подключение заголовочного файла с тестируемым функционалом +#include "unity.h" + +void setUp(void) { + // вызывется перед каждым тестом +} + +void tearDown(void) { + // после каждого теста +} + +void test_add_returns_correct_sum(void) { + TEST_ASSERT_EQUAL_INT(5, foo_add(2, 3)); +} + +void test_add_handles_negative(void) { + TEST_ASSERT_EQUAL_INT(1, foo_add(3, -2)); +} + +int main(void) { + UNITY_BEGIN(); + RUN_TEST(test_add_returns_correct_sum); + RUN_TEST(test_add_handles_negative); + return UNITY_END(); +} diff --git a/tests/target/CMakeLists.txt b/tests/target/CMakeLists.txt new file mode 100644 index 0000000..e69de29 diff --git a/tests/target/test_target_simple.c b/tests/target/test_target_simple.c new file mode 100644 index 0000000..e69de29 diff --git a/tools/dcd.bin b/tools/dcd.bin new file mode 100644 index 0000000000000000000000000000000000000000..ccdf38733735bb87ecd83152ad49085f269edaf0 GIT binary patch literal 1208 zcmb8vv1;2;6vpu*BNEfvSc9Ps5yWW?b-`eVX2_7hHE8hQAwz~xGGs`>g9i^DT=1Y6 zQ#54okRgKy4=K3Np+kp^eSknAPmtH>)P9owLtE$&EkB)mb)!jJ?<(I1 zzjVnVj&O_;3=NrIbPrZhd9D9PH>7b&N0C&T;Mg{;1XAOi);LXUuB?u`$l}1JM+y8e!87m z5la}L_C1@gVTg5XU=v%|!F@cyLv$En5BqqGCwPiyc#ao1z#)!sj1!zu9XZwlv<<3-dy@KIiit`f8mY z)*5$al|32R`!_G;Q`fnORZw}$Pw%Yq!%Cs<({Inaw`#inKj%wNo7aD)Z7bD!`%j%` af7faFUB9cxY(u8|ztN3$(|A*+@#b&Fb_Ci0 literal 0 HcmV?d00001 diff --git a/tools/tft_flexspi.bd b/tools/tft_flexspi.bd new file mode 100644 index 0000000..9b7fde1 --- /dev/null +++ b/tools/tft_flexspi.bd @@ -0,0 +1,15 @@ +options { + flags = 0x00; + startAddress = 0x60000000; + ivtOffset = 0x1000; + initialLoadSize = 0x2000; + DCDFilePath = "dcd.bin"; + entryPointAddress = 0x60002305; +} + +sources { + elfFile = extern(0); +} + +section (0) { +} diff --git a/tools/tft_sdram.bd b/tools/tft_sdram.bd new file mode 100644 index 0000000..1a07414 --- /dev/null +++ b/tools/tft_sdram.bd @@ -0,0 +1,15 @@ +options { + flags = 0x00; + startAddress = 0x80000000; + ivtOffset = 0x1000; + initialLoadSize = 0x2000; + DCDFilePath = "dcd.bin"; + entryPointAddress = 0x80002305; +} + +sources { + elfFile = extern(0); +} + +section (0) { +}