选项

cpp-testing

affaan-m/ECC affaan-m/ECC

使用 GoogleTest/GoogleMock 配合 CMake/CTest 编写、修改和运行 C++ 测试,包括 TDD 工作流、代码覆盖率和 sanitizers。

...展开全部
0
更新时间 2026-10-01

C++ 测试(代理技能)

基于 CMake/CTest 并结合 GoogleTest/GoogleMock,针对现代 C++(C++17/20)的以代理为中心的测试工作流。

何时使用

  • 编写新的 C++ 测试或修复现有测试
  • 为 C++ 组件设计单元测试/集成测试覆盖率
  • 增加测试覆盖率、持续集成(CI)门控或回归保护
  • 配置 CMake/CTest 工作流以实现一致的执行
  • 排查测试失败或不稳定行为
  • 启用内存/竞态条件诊断的 sanitizers

何时不应使用

  • 在不修改测试的情况下实现新产品功能
  • 与测试覆盖率或测试失败无关的大规模重构
  • 在不通过测试回归验证的情况下进行性能调优
  • 非 C++ 项目或非测试任务

核心概念

  • TDD循环:红 → 绿 → 重构(先写测试,最小修复,然后清理)。
  • 隔离:优先使用依赖注入和模拟对象,而非全局状态。
  • 测试布局: tests/unit, tests/integration, tests/testdata.
  • 模拟对象与伪对象:模拟对象用于交互,伪对象用于带状态的行为。
  • CTest 测试发现:使用 gtest_discover_tests() 实现稳定的测试发现。
  • CI 信号:先运行子集,然后使用 --output-on-failure.

TDD 工作流

遵循 RED → GREEN → REFACTOR 循环:

  1. RED:编写一个能捕获新行为的失败测试
  2. GREEN:实现最小的修改以通过测试
  3. 重构:在测试保持通过状态的同时进行代码整理
// tests/add_test.cpp
#include 

int Add(int a, int b); // Provided by production code.

TEST(AddTest, AddsTwoNumbers) { // RED
  EXPECT_EQ(Add(2, 3), 5);
}

// src/add.cpp
int Add(int a, int b) { // GREEN
  return a + b;
}

// REFACTOR: simplify/rename once tests pass

代码示例

基本单元测试(gtest)

// tests/calculator_test.cpp
#include 

int Add(int a, int b); // Provided by production code.

TEST(CalculatorTest, AddsTwoNumbers) {
    EXPECT_EQ(Add(2, 3), 5);
}

测试 fixture(gtest)

// tests/user_store_test.cpp
// Pseudocode stub: replace UserStore/User with project types.
#include 
#include 
#include 
#include 

struct User { std::string name; };
class UserStore {
public:
    explicit UserStore(std::string /*path*/) {}
    void Seed(std::initializer_list /*users*/) {}
    std::optional Find(const std::string &/*name*/) { return User{"alice"}; }
};

class UserStoreTest : public ::testing::Test {
protected:
    void SetUp() override {
        store = std::make_unique(":memory:");
        store->Seed({{"alice"}, {"bob"}});
    }

    std::unique_ptr store;
};

TEST_F(UserStoreTest, FindsExistingUser) {
    auto user = store->Find("alice");
    ASSERT_TRUE(user.has_value());
    EXPECT_EQ(user->name, "alice");
}

模拟(gmock)

// tests/notifier_test.cpp
#include 
#include 
#include 

class Notifier {
public:
    virtual ~Notifier() = default;
    virtual void Send(const std::string &message) = 0;
};

class MockNotifier : public Notifier {
public:
    MOCK_METHOD(void, Send, (const std::string &message), (override));
};

class Service {
public:
    explicit Service(Notifier ¬ifier) : notifier_(notifier) {}
    void Publish(const std::string &message) { notifier_.Send(message); }

private:
    Notifier ¬ifier_;
};

TEST(ServiceTest, SendsNotifications) {
    MockNotifier notifier;
    Service service(notifier);

    EXPECT_CALL(notifier, Send("hello")).Times(1);
    service.Publish("hello");
}

CMake/CTest 快速入门

# CMakeLists.txt (excerpt)
cmake_minimum_required(VERSION 3.20)
project(example LANGUAGES CXX)

set(CMAKE_CXX_STANDARD 20)
set(CMAKE_CXX_STANDARD_REQUIRED ON)

include(FetchContent)
# Prefer project-locked versions. If using a tag, use a pinned version per project policy.
set(GTEST_VERSION v1.17.0) # Adjust to project policy.
FetchContent_Declare(
  googletest
  # Google Test framework (official repository)
  URL https://github.com/google/googletest/archive/refs/tags/${GTEST_VERSION}.zip
)
FetchContent_MakeAvailable(googletest)

add_executable(example_tests
  tests/calculator_test.cpp
  src/calculator.cpp
)
target_link_libraries(example_tests GTest::gtest GTest::gmock GTest::gtest_main)

enable_testing()
include(GoogleTest)
gtest_discover_tests(example_tests)
cmake -S . -B build -DCMAKE_BUILD_TYPE=Debug
cmake --build build -j
ctest --test-dir build --output-on-failure

运行测试

ctest --test-dir build --output-on-failure
ctest --test-dir build -R ClampTest
ctest --test-dir build -R "UserStoreTest.*" --output-on-failure
./build/example_tests --gtest_filter=ClampTest.*
./build/example_tests --gtest_filter=UserStoreTest.FindsExistingUser

调试失败情况

  1. 使用 gtest 过滤器重新运行单个失败的测试。
  2. 在失败的断言周围添加作用域日志。
  3. 在启用 sanitizers 的情况下重新运行。
  4. 一旦查明根本原因,将测试范围扩展至整个测试套件。

代码覆盖率

优先使用目标级设置,而非全局标志。

option(ENABLE_COVERAGE "Enable coverage flags" OFF)

if(ENABLE_COVERAGE)
  if(CMAKE_CXX_COMPILER_ID MATCHES "GNU")
    target_compile_options(example_tests PRIVATE --coverage)
    target_link_options(example_tests PRIVATE --coverage)
  elseif(CMAKE_CXX_COMPILER_ID MATCHES "Clang")
    target_compile_options(example_tests PRIVATE -fprofile-instr-generate -fcoverage-mapping)
    target_link_options(example_tests PRIVATE -fprofile-instr-generate)
  endif()
endif()

GCC + gcov + lcov:

cmake -S . -B build-cov -DENABLE_COVERAGE=ON
cmake --build build-cov -j
ctest --test-dir build-cov
lcov --capture --directory build-cov --output-file coverage.info
lcov --remove coverage.info '/usr/*' --output-file coverage.info
genhtml coverage.info --output-directory coverage

Clang + llvm-cov:

cmake -S . -B build-llvm -DENABLE_COVERAGE=ON -DCMAKE_CXX_COMPILER=clang++
cmake --build build-llvm -j
LLVM_PROFILE_FILE="build-llvm/default.profraw" ctest --test-dir build-llvm
llvm-profdata merge -sparse build-llvm/default.profraw -o build-llvm/default.profdata
llvm-cov report build-llvm/example_tests -instr-profile=build-llvm/default.profdata

sanitizers

option(ENABLE_ASAN "Enable AddressSanitizer" OFF)
option(ENABLE_UBSAN "Enable UndefinedBehaviorSanitizer" OFF)
option(ENABLE_TSAN "Enable ThreadSanitizer" OFF)

if(ENABLE_ASAN)
  add_compile_options(-fsanitize=address -fno-omit-frame-pointer)
  add_link_options(-fsanitize=address)
endif()
if(ENABLE_UBSAN)
  add_compile_options(-fsanitize=undefined -fno-omit-frame-pointer)
  add_link_options(-fsanitize=undefined)
endif()
if(ENABLE_TSAN)
  add_compile_options(-fsanitize=thread)
  add_link_options(-fsanitize=thread)
endif()

不稳定的测试防护措施

  • 切勿使用 sleep 进行同步;应使用条件变量或锁。
  • 确保每个测试的临时目录都是唯一的,并始终清理它们。
  • 在单元测试中避免实时、网络或文件系统的依赖。
  • 对随机化输入使用确定性的种子值。

最佳实践

应做

  • 保持测试的确定性和隔离性
  • 优先使用依赖注入而非全局变量
  • 使用 ASSERT_* 用于先决条件, EXPECT_* 用于多项检查
  • 在 CTest 标签或目录中区分单元测试与集成测试
  • 在持续集成中运行清理工具以检测内存问题和竞态条件

不要

  • 单元测试中不要依赖实时或网络
  • 当可以使用条件变量时,不要使用 sleep 作为同步手段
  • 不要对简单的值对象进行过度模拟
  • 不要对非关键日志使用易出错的字符串匹配

常见陷阱

  • 使用固定的临时文件路径 → 为每个测试生成唯一的临时目录并清理它们。
  • 依赖墙钟时间 → 注入时钟或使用伪时间源。
  • 不稳定的并发测试 → 使用条件变量/锁和有界等待。
  • 隐藏的全局状态 → 在测试 fixture 中重置全局状态或移除全局变量。
  • 过度模拟 → 对于有状态的行为,优先使用伪对象,仅模拟交互。
  • 缺少 sanitizer 运行 → 在 CI 中添加 ASan/UBSan/TSan 构建。
  • 仅在调试构建中进行代码覆盖率检测 → 确保代码覆盖率目标使用一致的参数。

可选附录:模糊测试/属性测试

仅当项目已支持 LLVM/libFuzzer 或属性测试库时才使用。

  • libFuzzer:最适合 I/O 极少的纯函数。
  • RapidCheck:基于属性的测试,用于验证不变量。

最简 libFuzzer 测试框架(伪代码:替换 ParseConfig):

#include 
#include 
#include 

extern "C" int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size) {
    std::string input(reinterpret_cast(data), size);
    // ParseConfig(input); // project function
    return 0;
}

GoogleTest的替代方案

  • Catch2:仅需头文件,表达力强的匹配器
  • doctest:轻量级,编译开销极小
在 GitHub 上查看
---
name: cpp-testing
description: Write, fix, and run C++ tests using GoogleTest/GoogleMock with CMake/CTest, including TDD workflows, coverage, and sanitizers.
---

# C++ Testing (Agent Skill)

Agent-focused testing workflow for modern C++ (C++17/20) using GoogleTest/GoogleMock with CMake/CTest.

## When to Use

- Writing new C++ tests or fixing existing tests
- Designing unit/integration test coverage for C++ components
- Adding test coverage, CI gating, or regression protection
- Configuring CMake/CTest workflows for consistent execution
- Investigating test failures or flaky behavior
- Enabling sanitizers for memory/race diagnostics

### When NOT to Use

- Implementing new product features without test changes
- Large-scale refactors unrelated to test coverage or failures
- Performance tuning without test regressions to validate
- Non-C++ projects or non-test tasks

## Core Concepts

- **TDD loop**: red → green → refactor (tests first, minimal fix, then cleanups).
- **Isolation**: prefer dependency injection and fakes over global state.
- **Test layout**: `tests/unit`, `tests/integration`, `tests/testdata`.
- **Mocks vs fakes**: mock for interactions, fake for stateful behavior.
- **CTest discovery**: use `gtest_discover_tests()` for stable test discovery.
- **CI signal**: run subset first, then full suite with `--output-on-failure`.

## TDD Workflow

Follow the RED → GREEN → REFACTOR loop:

1. **RED**: write a failing test that captures the new behavior
2. **GREEN**: implement the smallest change to pass
3. **REFACTOR**: clean up while tests stay green

```cpp
// tests/add_test.cpp
#include <gtest/gtest.h>

int Add(int a, int b); // Provided by production code.

TEST(AddTest, AddsTwoNumbers) { // RED
  EXPECT_EQ(Add(2, 3), 5);
}

// src/add.cpp
int Add(int a, int b) { // GREEN
  return a + b;
}

// REFACTOR: simplify/rename once tests pass
```

## Code Examples

### Basic Unit Test (gtest)

```cpp
// tests/calculator_test.cpp
#include <gtest/gtest.h>

int Add(int a, int b); // Provided by production code.

TEST(CalculatorTest, AddsTwoNumbers) {
    EXPECT_EQ(Add(2, 3), 5);
}
```

### Fixture (gtest)

```cpp
// tests/user_store_test.cpp
// Pseudocode stub: replace UserStore/User with project types.
#include <gtest/gtest.h>
#include <memory>
#include <optional>
#include <string>

struct User { std::string name; };
class UserStore {
public:
    explicit UserStore(std::string /*path*/) {}
    void Seed(std::initializer_list<User> /*users*/) {}
    std::optional<User> Find(const std::string &/*name*/) { return User{"alice"}; }
};

class UserStoreTest : public ::testing::Test {
protected:
    void SetUp() override {
        store = std::make_unique<UserStore>(":memory:");
        store->Seed({{"alice"}, {"bob"}});
    }

    std::unique_ptr<UserStore> store;
};

TEST_F(UserStoreTest, FindsExistingUser) {
    auto user = store->Find("alice");
    ASSERT_TRUE(user.has_value());
    EXPECT_EQ(user->name, "alice");
}
```

### Mock (gmock)

```cpp
// tests/notifier_test.cpp
#include <gmock/gmock.h>
#include <gtest/gtest.h>
#include <string>

class Notifier {
public:
    virtual ~Notifier() = default;
    virtual void Send(const std::string &message) = 0;
};

class MockNotifier : public Notifier {
public:
    MOCK_METHOD(void, Send, (const std::string &message), (override));
};

class Service {
public:
    explicit Service(Notifier &notifier) : notifier_(notifier) {}
    void Publish(const std::string &message) { notifier_.Send(message); }

private:
    Notifier &notifier_;
};

TEST(ServiceTest, SendsNotifications) {
    MockNotifier notifier;
    Service service(notifier);

    EXPECT_CALL(notifier, Send("hello")).Times(1);
    service.Publish("hello");
}
```

### CMake/CTest Quickstart

```cmake
# CMakeLists.txt (excerpt)
cmake_minimum_required(VERSION 3.20)
project(example LANGUAGES CXX)

set(CMAKE_CXX_STANDARD 20)
set(CMAKE_CXX_STANDARD_REQUIRED ON)

include(FetchContent)
# Prefer project-locked versions. If using a tag, use a pinned version per project policy.
set(GTEST_VERSION v1.17.0) # Adjust to project policy.
FetchContent_Declare(
  googletest
  # Google Test framework (official repository)
  URL https://github.com/google/googletest/archive/refs/tags/${GTEST_VERSION}.zip
)
FetchContent_MakeAvailable(googletest)

add_executable(example_tests
  tests/calculator_test.cpp
  src/calculator.cpp
)
target_link_libraries(example_tests GTest::gtest GTest::gmock GTest::gtest_main)

enable_testing()
include(GoogleTest)
gtest_discover_tests(example_tests)
```

```bash
cmake -S . -B build -DCMAKE_BUILD_TYPE=Debug
cmake --build build -j
ctest --test-dir build --output-on-failure
```

## Running Tests

```bash
ctest --test-dir build --output-on-failure
ctest --test-dir build -R ClampTest
ctest --test-dir build -R "UserStoreTest.*" --output-on-failure
```

```bash
./build/example_tests --gtest_filter=ClampTest.*
./build/example_tests --gtest_filter=UserStoreTest.FindsExistingUser
```

## Debugging Failures

1. Re-run the single failing test with gtest filter.
2. Add scoped logging around the failing assertion.
3. Re-run with sanitizers enabled.
4. Expand to full suite once the root cause is fixed.

## Coverage

Prefer target-level settings instead of global flags.

```cmake
option(ENABLE_COVERAGE "Enable coverage flags" OFF)

if(ENABLE_COVERAGE)
  if(CMAKE_CXX_COMPILER_ID MATCHES "GNU")
    target_compile_options(example_tests PRIVATE --coverage)
    target_link_options(example_tests PRIVATE --coverage)
  elseif(CMAKE_CXX_COMPILER_ID MATCHES "Clang")
    target_compile_options(example_tests PRIVATE -fprofile-instr-generate -fcoverage-mapping)
    target_link_options(example_tests PRIVATE -fprofile-instr-generate)
  endif()
endif()
```

GCC + gcov + lcov:

```bash
cmake -S . -B build-cov -DENABLE_COVERAGE=ON
cmake --build build-cov -j
ctest --test-dir build-cov
lcov --capture --directory build-cov --output-file coverage.info
lcov --remove coverage.info '/usr/*' --output-file coverage.info
genhtml coverage.info --output-directory coverage
```

Clang + llvm-cov:

```bash
cmake -S . -B build-llvm -DENABLE_COVERAGE=ON -DCMAKE_CXX_COMPILER=clang++
cmake --build build-llvm -j
LLVM_PROFILE_FILE="build-llvm/default.profraw" ctest --test-dir build-llvm
llvm-profdata merge -sparse build-llvm/default.profraw -o build-llvm/default.profdata
llvm-cov report build-llvm/example_tests -instr-profile=build-llvm/default.profdata
```

## Sanitizers

```cmake
option(ENABLE_ASAN "Enable AddressSanitizer" OFF)
option(ENABLE_UBSAN "Enable UndefinedBehaviorSanitizer" OFF)
option(ENABLE_TSAN "Enable ThreadSanitizer" OFF)

if(ENABLE_ASAN)
  add_compile_options(-fsanitize=address -fno-omit-frame-pointer)
  add_link_options(-fsanitize=address)
endif()
if(ENABLE_UBSAN)
  add_compile_options(-fsanitize=undefined -fno-omit-frame-pointer)
  add_link_options(-fsanitize=undefined)
endif()
if(ENABLE_TSAN)
  add_compile_options(-fsanitize=thread)
  add_link_options(-fsanitize=thread)
endif()
```

## Flaky Tests Guardrails

- Never use `sleep` for synchronization; use condition variables or latches.
- Make temp directories unique per test and always clean them.
- Avoid real time, network, or filesystem dependencies in unit tests.
- Use deterministic seeds for randomized inputs.

## Best Practices

### DO

- Keep tests deterministic and isolated
- Prefer dependency injection over globals
- Use `ASSERT_*` for preconditions, `EXPECT_*` for multiple checks
- Separate unit vs integration tests in CTest labels or directories
- Run sanitizers in CI for memory and race detection

### DON'T

- Don't depend on real time or network in unit tests
- Don't use sleeps as synchronization when a condition variable can be used
- Don't over-mock simple value objects
- Don't use brittle string matching for non-critical logs

### Common Pitfalls

- **Using fixed temp paths** → Generate unique temp directories per test and clean them.
- **Relying on wall clock time** → Inject a clock or use fake time sources.
- **Flaky concurrency tests** → Use condition variables/latches and bounded waits.
- **Hidden global state** → Reset global state in fixtures or remove globals.
- **Over-mocking** → Prefer fakes for stateful behavior and only mock interactions.
- **Missing sanitizer runs** → Add ASan/UBSan/TSan builds in CI.
- **Coverage on debug-only builds** → Ensure coverage targets use consistent flags.

## Optional Appendix: Fuzzing / Property Testing

Only use if the project already supports LLVM/libFuzzer or a property-testing library.

- **libFuzzer**: best for pure functions with minimal I/O.
- **RapidCheck**: property-based tests to validate invariants.

Minimal libFuzzer harness (pseudocode: replace ParseConfig):

```cpp
#include <cstddef>
#include <cstdint>
#include <string>

extern "C" int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size) {
    std::string input(reinterpret_cast<const char *>(data), size);
    // ParseConfig(input); // project function
    return 0;
}
```

## Alternatives to GoogleTest

- **Catch2**: header-only, expressive matchers
- **doctest**: lightweight, minimal compile overhead

所有文件

1 个文件

安装 cpp-testing

下载技能文件并将其解压到 .claude/skills/ 目录中。

下载ZIP

克隆仓库并复制技能文件到您的项目中。

git clone https://github.com/affaan-m/ECC/tree/main/skills/cpp-testing # Copy SKILL.md to your .claude/skills/ directory

复制 复制
快速设置: 将技能文件夹复制到 .claude/skills/ Claude 会自动检测并使用该技能
仓库 affaan-m/ECC

相关技能

algorithmic-art
更新时间 2026-08-27
systematic-debugging
更新时间 2026-09-03
tech-debt-tracker
更新时间 2026-08-29
continual-learning
更新时间 2026-09-10
OR