AI 自动生成测试用例

This commit is contained in:
lids 2026-04-29 11:21:47 +08:00
parent ddddb6f3b6
commit 5ac5c7b696
2 changed files with 450 additions and 212 deletions

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@ -1,5 +1,9 @@
# GoogleTest
cmake_minimum_required(VERSION 3.10.0)
project(CppGenerate_test)
include(FetchContent)
if (MSVC)
add_compile_options(/utf-8)
endif()
FetchContent_Declare(
googletest
URL https://github.com/google/googletest/archive/03597a01ee50ed33e9dfd640b249b4be3799d395.zip
@ -7,24 +11,15 @@ FetchContent_Declare(
# For Windows: Prevent overriding the parent project's compiler/linker settings
set(gtest_force_shared_crt ON CACHE BOOL "" FORCE)
FetchContent_MakeAvailable(googletest)
set(CMAKE_CXX_STANDARD 14)
set(CMAKE_CXX_STANDARD_REQUIRED ON)
include_directories(${CMAKE_CURRENT_SOURCE_DIR}/../include)
#
include_directories(${CMAKE_SOURCE_DIR}/src)
include_directories(${CMAKE_SOURCE_DIR}/include)
#
include(CTest)
enable_testing()
# alert_manager
add_executable(test_alert_manager test_alert_manager.cpp ../src/alert_manager.cpp)
add_executable(CppGenerate_test test_alert_manager.cpp ../src/alert_manager.cpp)
# UTF-8
if(MSVC)
target_compile_options(test_alert_manager PRIVATE /utf-8)
endif()
target_link_libraries(test_alert_manager gtest gmock gtest_main)
#
target_link_libraries(CppGenerate_test gtest gmock gtest_main)
include(GoogleTest)
gtest_discover_tests(test_alert_manager)
gtest_discover_tests(CppGenerate_test)

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@ -3,265 +3,508 @@
#include <vector>
#include <string>
// Mock for time to ensure deterministic tests
static uint32_t mock_timestamp = 1640995200; // 2022-01-01 00:00:00 UTC
using namespace std;
class MockTime {
public:
static uint32_t getTimestamp() { return mock_timestamp; }
static void setTimestamp(uint32_t t) { mock_timestamp = t; }
};
// Mock time function for deterministic testing
uint32_t mock_timestamp = 1000;
uint32_t getMockTimestamp() { return mock_timestamp; }
// Helper function to compare AlertInfo
bool operator==(const AlertInfo& a, const AlertInfo& b) {
return a.type == b.type &&
a.status == b.status &&
a.trigger_time == b.trigger_time &&
a.acknowledge_time == b.acknowledge_time &&
a.resolve_time == b.resolve_time &&
a.description == b.description;
}
// Override the real time function with mock
uint32_t getCurrentTime() { return getMockTimestamp(); }
// Test fixture
// Test fixture for AlertManager
class AlertManagerTest : public ::testing::Test {
protected:
AlertManager manager;
AlertManager alert_manager;
void SetUp() override {
mock_timestamp = 1640995200;
manager.initialize();
// Reset mock timestamp
mock_timestamp = 1000;
alert_manager.initialize();
}
void TearDown() override {
manager.clearHistory();
void advanceTime(uint32_t seconds) {
mock_timestamp += seconds;
}
};
TEST_F(AlertManagerTest, testAlertManagerDefaultInitialization) {
EXPECT_FLOAT_EQ(manager.getAltitudeThresholds().first, 100.0f);
EXPECT_FLOAT_EQ(manager.getAltitudeThresholds().second, -50.0f);
EXPECT_TRUE(manager.getActiveAlerts().empty());
EXPECT_TRUE(manager.getAlertHistory(10).empty());
// Test checkAltitudeAlert - Normal Input
TEST_F(AlertManagerTest, testCheckAltitudeAlertNormalInput) {
// Arrange
float altitude = 90.0f; // Below upper threshold
// Act
alert_manager.checkAltitudeAlert(altitude, getMockTimestamp());
// Assert
EXPECT_FALSE(alert_manager.hasActiveAlerts());
}
TEST_F(AlertManagerTest, testInitialize) {
// No direct output assertion, but verify initialization logic
// This is tested implicitly via constructor
EXPECT_NO_FATAL_FAILURE(manager.initialize());
// Test checkAltitudeAlert - Upper Threshold Exceeded
TEST_F(AlertManagerTest, testCheckAltitudeAlertUpperThresholdExceeded) {
// Arrange
float altitude = 105.0f; // Above upper threshold
// Act
alert_manager.checkAltitudeAlert(altitude, getMockTimestamp());
// Assert
EXPECT_TRUE(alert_manager.hasActiveAlerts());
auto active_alerts = alert_manager.getActiveAlerts();
EXPECT_EQ(active_alerts.size(), 1);
EXPECT_EQ(active_alerts[0].type, AlertType::ALTITUDE_UPPER);
EXPECT_EQ(active_alerts[0].status, AlertStatus::ACTIVE);
}
TEST_F(AlertManagerTest, testCheckAltitudeAlertNormal) {
mock_timestamp = 1640995200;
manager.checkAltitudeAlert(105.0f, mock_timestamp);
auto alerts = manager.getActiveAlerts();
EXPECT_EQ(alerts.size(), 1);
EXPECT_EQ(alerts[0].type, AlertType::ALTITUDE_UPPER);
EXPECT_EQ(alerts[0].status, AlertStatus::ACTIVE);
EXPECT_EQ(alerts[0].trigger_time, mock_timestamp);
// Test checkAltitudeAlert - Lower Threshold Exceeded
TEST_F(AlertManagerTest, testCheckAltitudeAlertLowerThresholdExceeded) {
// Arrange
float altitude = -60.0f; // Below lower threshold
// Act
alert_manager.checkAltitudeAlert(altitude, getMockTimestamp());
// Assert
EXPECT_TRUE(alert_manager.hasActiveAlerts());
auto active_alerts = alert_manager.getActiveAlerts();
EXPECT_EQ(active_alerts.size(), 1);
EXPECT_EQ(active_alerts[0].type, AlertType::ALTITUDE_LOWER);
EXPECT_EQ(active_alerts[0].status, AlertStatus::ACTIVE);
}
TEST_F(AlertManagerTest, testCheckAltitudeAlertBelowLower) {
mock_timestamp = 1640995200;
manager.checkAltitudeAlert(-55.0f, mock_timestamp);
auto alerts = manager.getActiveAlerts();
EXPECT_EQ(alerts.size(), 1);
EXPECT_EQ(alerts[0].type, AlertType::ALTITUDE_LOWER);
EXPECT_EQ(alerts[0].status, AlertStatus::ACTIVE);
// Test checkAltitudeAlert - Recovery from Upper Threshold
TEST_F(AlertManagerTest, testCheckAltitudeAlertRecoveryFromUpper) {
// Arrange
float altitude_high = 105.0f;
float altitude_low = 90.0f;
// Act
alert_manager.checkAltitudeAlert(altitude_high, getMockTimestamp());
alert_manager.checkAltitudeAlert(altitude_low, getMockTimestamp());
// Assert
EXPECT_FALSE(alert_manager.hasActiveAlerts());
}
TEST_F(AlertManagerTest, testCheckAltitudeAlertResetWhenNormal) {
mock_timestamp = 1640995200;
manager.checkAltitudeAlert(105.0f, mock_timestamp); // Trigger upper
mock_timestamp = 1640995201;
manager.checkAltitudeAlert(90.0f, mock_timestamp); // Reset
auto alerts = manager.getActiveAlerts();
EXPECT_TRUE(alerts.empty());
// Test checkAltitudeAlert - Recovery from Lower Threshold
TEST_F(AlertManagerTest, testCheckAltitudeAlertRecoveryFromLower) {
// Arrange
float altitude_low = -60.0f;
float altitude_high = -40.0f;
// Act
alert_manager.checkAltitudeAlert(altitude_low, getMockTimestamp());
alert_manager.checkAltitudeAlert(altitude_high, getMockTimestamp());
// Assert
EXPECT_FALSE(alert_manager.hasActiveAlerts());
}
TEST_F(AlertManagerTest, testSetAltitudeThresholdsValid) {
manager.setAltitudeThresholds(200.0f, -100.0f);
auto thresholds = manager.getAltitudeThresholds();
EXPECT_FLOAT_EQ(thresholds.first, 200.0f);
EXPECT_FLOAT_EQ(thresholds.second, -100.0f);
// Test setAltitudeThresholds - Valid Thresholds
TEST_F(AlertManagerTest, testSetAltitudeThresholdsValidThresholds) {
// Arrange
float upper = 150.0f;
float lower = -100.0f;
// Act
alert_manager.setAltitudeThresholds(upper, lower);
// Assert
EXPECT_EQ(alert_manager.getAltitudeThresholds().first, upper);
EXPECT_EQ(alert_manager.getAltitudeThresholds().second, lower);
}
TEST_F(AlertManagerTest, testSetAltitudeThresholdsInvalid) {
EXPECT_NO_FATAL_FAILURE(manager.setAltitudeThresholds(50.0f, 100.0f));
// Should print error, but no crash
EXPECT_FLOAT_EQ(manager.getAltitudeThresholds().first, 100.0f);
EXPECT_FLOAT_EQ(manager.getAltitudeThresholds().second, -50.0f);
// Test setAltitudeThresholds - Invalid Thresholds (upper <= lower)
TEST_F(AlertManagerTest, testSetAltitudeThresholdsInvalidThresholds) {
// Arrange
float upper = 100.0f;
float lower = 100.0f;
// Act & Assert
EXPECT_NO_THROW(alert_manager.setAltitudeThresholds(upper, lower));
// Error message should be printed but not throw exception
}
TEST_F(AlertManagerTest, testTriggerSensorFailure) {
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
auto alerts = manager.getActiveAlerts();
EXPECT_EQ(alerts.size(), 1);
EXPECT_EQ(alerts[0].type, AlertType::SENSOR_FAILURE);
EXPECT_EQ(alerts[0].status, AlertStatus::ACTIVE);
EXPECT_EQ(alerts[0].trigger_time, mock_timestamp);
// Test triggerSensorFailure - Normal Operation
TEST_F(AlertManagerTest, testTriggerSensorFailureNormalOperation) {
// Arrange
uint32_t timestamp = getMockTimestamp();
// Act
alert_manager.triggerSensorFailure(timestamp);
// Assert
EXPECT_TRUE(alert_manager.hasActiveAlerts());
auto active_alerts = alert_manager.getActiveAlerts();
EXPECT_EQ(active_alerts.size(), 1);
EXPECT_EQ(active_alerts[0].type, AlertType::SENSOR_FAILURE);
EXPECT_EQ(active_alerts[0].status, AlertStatus::ACTIVE);
}
TEST_F(AlertManagerTest, testTriggerLowBattery) {
mock_timestamp = 1640995200;
manager.triggerLowBattery(mock_timestamp, 15.0f);
auto alerts = manager.getActiveAlerts();
EXPECT_EQ(alerts.size(), 1);
EXPECT_EQ(alerts[0].type, AlertType::LOW_BATTERY);
EXPECT_EQ(alerts[0].status, AlertStatus::ACTIVE);
EXPECT_NE(alerts[0].description.find("15.0%"), std::string::npos);
// Test triggerLowBattery - Normal Operation
TEST_F(AlertManagerTest, testTriggerLowBatteryNormalOperation) {
// Arrange
uint32_t timestamp = getMockTimestamp();
float battery_level = 15.0f;
// Act
alert_manager.triggerLowBattery(timestamp, battery_level);
// Assert
EXPECT_TRUE(alert_manager.hasActiveAlerts());
auto active_alerts = alert_manager.getActiveAlerts();
EXPECT_EQ(active_alerts.size(), 1);
EXPECT_EQ(active_alerts[0].type, AlertType::LOW_BATTERY);
EXPECT_EQ(active_alerts[0].status, AlertStatus::ACTIVE);
EXPECT_NE(active_alerts[0].description.find("低电量警告"), string::npos);
}
TEST_F(AlertManagerTest, testTriggerCommunicationError) {
mock_timestamp = 1640995200;
manager.triggerCommunicationError(mock_timestamp);
auto alerts = manager.getActiveAlerts();
EXPECT_EQ(alerts.size(), 1);
EXPECT_EQ(alerts[0].type, AlertType::COMMUNICATION_ERROR);
EXPECT_EQ(alerts[0].status, AlertStatus::ACTIVE);
// Test triggerCommunicationError - Normal Operation
TEST_F(AlertManagerTest, testTriggerCommunicationErrorNormalOperation) {
// Arrange
uint32_t timestamp = getMockTimestamp();
// Act
alert_manager.triggerCommunicationError(timestamp);
// Assert
EXPECT_TRUE(alert_manager.hasActiveAlerts());
auto active_alerts = alert_manager.getActiveAlerts();
EXPECT_EQ(active_alerts.size(), 1);
EXPECT_EQ(active_alerts[0].type, AlertType::COMMUNICATION_ERROR);
EXPECT_EQ(active_alerts[0].status, AlertStatus::ACTIVE);
}
TEST_F(AlertManagerTest, testAcknowledgeAllAlerts) {
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
manager.triggerLowBattery(mock_timestamp + 1, 10.0f);
mock_timestamp = 1640995202;
manager.acknowledgeAllAlerts(mock_timestamp);
auto alerts = manager.getActiveAlerts();
EXPECT_TRUE(alerts.empty());
EXPECT_EQ(alerts.size(), 0);
// Test acknowledgeAllAlerts - Acknowledge All Active Alerts
TEST_F(AlertManagerTest, testAcknowledgeAllAlertsAcknowledgeAllActive) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
alert_manager.triggerLowBattery(getMockTimestamp(), 10.0f);
// Act
alert_manager.acknowledgeAllAlerts(getMockTimestamp());
// Assert
EXPECT_FALSE(alert_manager.hasUnacknowledgedAlerts());
auto active_alerts = alert_manager.getActiveAlerts();
EXPECT_EQ(active_alerts.size(), 2);
EXPECT_EQ(active_alerts[0].status, AlertStatus::ACKNOWLEDGED);
EXPECT_EQ(active_alerts[1].status, AlertStatus::ACKNOWLEDGED);
}
TEST_F(AlertManagerTest, testAcknowledgeAlert) {
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
mock_timestamp = 1640995201;
manager.acknowledgeAlert(AlertType::SENSOR_FAILURE, mock_timestamp);
auto alerts = manager.getActiveAlerts();
EXPECT_TRUE(alerts.empty());
// Test acknowledgeAlert - Acknowledge Specific Alert
TEST_F(AlertManagerTest, testAcknowledgeAlertAcknowledgeSpecific) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
// Act
alert_manager.acknowledgeAlert(AlertType::SENSOR_FAILURE, getMockTimestamp());
// Assert
EXPECT_FALSE(alert_manager.hasUnacknowledgedAlerts());
auto active_alerts = alert_manager.getActiveAlerts();
EXPECT_EQ(active_alerts.size(), 1);
EXPECT_EQ(active_alerts[0].status, AlertStatus::ACKNOWLEDGED);
}
TEST_F(AlertManagerTest, testResetAlert) {
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
manager.resetAlert(AlertType::SENSOR_FAILURE);
auto alerts = manager.getActiveAlerts();
EXPECT_TRUE(alerts.empty());
// Test acknowledgeAlert - Non-Existing Alert
TEST_F(AlertManagerTest, testAcknowledgeAlertNonExistingAlert) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
// Act
alert_manager.acknowledgeAlert(AlertType::COMMUNICATION_ERROR, getMockTimestamp());
// Assert
EXPECT_TRUE(alert_manager.hasActiveAlerts());
auto active_alerts = alert_manager.getActiveAlerts();
EXPECT_EQ(active_alerts.size(), 1);
EXPECT_EQ(active_alerts[0].status, AlertStatus::ACTIVE);
}
TEST_F(AlertManagerTest, testResetAllAlerts) {
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
manager.triggerLowBattery(mock_timestamp + 1, 10.0f);
manager.resetAllAlerts();
auto alerts = manager.getActiveAlerts();
EXPECT_TRUE(alerts.empty());
// Test resetAlert - Reset Existing Alert
TEST_F(AlertManagerTest, testResetAlertResetExisting) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
// Act
alert_manager.resetAlert(AlertType::SENSOR_FAILURE);
// Assert
EXPECT_FALSE(alert_manager.hasActiveAlerts());
EXPECT_FALSE(alert_manager.hasUnacknowledgedAlerts());
}
TEST_F(AlertManagerTest, testHasActiveAlerts) {
EXPECT_FALSE(manager.hasActiveAlerts());
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
EXPECT_TRUE(manager.hasActiveAlerts());
// Test resetAlert - Reset Non-Existing Alert
TEST_F(AlertManagerTest, testResetAlertResetNonExisting) {
// Arrange
// Act
alert_manager.resetAlert(AlertType::COMMUNICATION_ERROR);
// Assert
EXPECT_FALSE(alert_manager.hasActiveAlerts());
EXPECT_FALSE(alert_manager.hasUnacknowledgedAlerts());
}
TEST_F(AlertManagerTest, testHasUnacknowledgedAlerts) {
EXPECT_FALSE(manager.hasUnacknowledgedAlerts());
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
EXPECT_TRUE(manager.hasUnacknowledgedAlerts());
manager.acknowledgeAllAlerts(mock_timestamp + 1);
EXPECT_FALSE(manager.hasUnacknowledgedAlerts());
// Test resetAllAlerts - Reset All Alerts
TEST_F(AlertManagerTest, testResetAllAlertsResetAll) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
alert_manager.triggerLowBattery(getMockTimestamp(), 10.0f);
// Act
alert_manager.resetAllAlerts();
// Assert
EXPECT_FALSE(alert_manager.hasActiveAlerts());
EXPECT_FALSE(alert_manager.hasUnacknowledgedAlerts());
}
TEST_F(AlertManagerTest, testGetActiveAlerts) {
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
auto alerts = manager.getActiveAlerts();
EXPECT_EQ(alerts.size(), 1);
EXPECT_EQ(alerts[0].type, AlertType::SENSOR_FAILURE);
// Test hasActiveAlerts - No Active Alerts
TEST_F(AlertManagerTest, testHasActiveAlertsNoActiveAlerts) {
// Arrange
// Act
bool result = alert_manager.hasActiveAlerts();
// Assert
EXPECT_FALSE(result);
}
TEST_F(AlertManagerTest, testGetAlertHistoryMaxCount) {
mock_timestamp = 1640995200;
for (int i = 0; i < 15; ++i) {
manager.triggerSensorFailure(mock_timestamp + i);
}
auto history = manager.getAlertHistory(10);
EXPECT_EQ(history.size(), 10);
// Test hasActiveAlerts - With Active Alerts
TEST_F(AlertManagerTest, testHasActiveAlertsWithActiveAlerts) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
// Act
bool result = alert_manager.hasActiveAlerts();
// Assert
EXPECT_TRUE(result);
}
TEST_F(AlertManagerTest, testGetStatusDescriptionNoAlerts) {
std::string desc = manager.getStatusDescription();
EXPECT_EQ(desc, "系统状态:正常");
// Test hasUnacknowledgedAlerts - No Unacknowledged Alerts
TEST_F(AlertManagerTest, testHasUnacknowledgedAlertsNoUnacknowledgedAlerts) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
alert_manager.acknowledgeAllAlerts(getMockTimestamp());
// Act
bool result = alert_manager.hasUnacknowledgedAlerts();
// Assert
EXPECT_FALSE(result);
}
TEST_F(AlertManagerTest, testGetStatusDescriptionWithAlerts) {
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
std::string desc = manager.getStatusDescription();
EXPECT_NE(desc.find("有1个活动预警"), std::string::npos);
EXPECT_NE(desc.find("传感器故障"), std::string::npos);
// Test hasUnacknowledgedAlerts - With Unacknowledged Alerts
TEST_F(AlertManagerTest, testHasUnacknowledgedAlertsWithUnacknowledgedAlerts) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
// Act
bool result = alert_manager.hasUnacknowledgedAlerts();
// Assert
EXPECT_TRUE(result);
}
TEST_F(AlertManagerTest, testClearHistory) {
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
manager.clearHistory();
EXPECT_TRUE(manager.getAlertHistory(10).empty());
// Test getActiveAlerts - Empty List
TEST_F(AlertManagerTest, testGetActiveAlertsEmptyList) {
// Arrange
// Act
vector<AlertInfo> result = alert_manager.getActiveAlerts();
// Assert
EXPECT_EQ(result.size(), 0);
}
TEST_F(AlertManagerTest, testAddToHistoryLimit) {
mock_timestamp = 1640995200;
for (int i = 0; i < 100; ++i) {
manager.triggerSensorFailure(mock_timestamp + i);
}
auto history = manager.getAlertHistory(10);
EXPECT_EQ(history.size(), 10);
// Test getActiveAlerts - With Active Alerts
TEST_F(AlertManagerTest, testGetActiveAlertsWithActiveAlerts) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
// Act
vector<AlertInfo> result = alert_manager.getActiveAlerts();
// Assert
EXPECT_EQ(result.size(), 1);
EXPECT_EQ(result[0].type, AlertType::SENSOR_FAILURE);
EXPECT_EQ(result[0].status, AlertStatus::ACTIVE);
}
TEST_F(AlertManagerTest, testTriggerAlert) {
mock_timestamp = 1640995200;
manager.triggerAlert(AlertType::SENSOR_FAILURE, mock_timestamp, "Test alert");
auto alerts = manager.getActiveAlerts();
EXPECT_EQ(alerts.size(), 1);
EXPECT_EQ(alerts[0].description, "Test alert");
// Test getAlertHistory - Max Count Greater Than History Size
TEST_F(AlertManagerTest, testGetAlertHistoryMaxCountGreaterThanHistorySize) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
alert_manager.triggerLowBattery(getMockTimestamp(), 10.0f);
// Act
vector<AlertInfo> result = alert_manager.getAlertHistory(5);
// Assert
EXPECT_EQ(result.size(), 2);
}
TEST_F(AlertManagerTest, testUpdateAlertStatusAcknowledged) {
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
mock_timestamp = 1640995201;
manager.updateAlertStatus(AlertType::SENSOR_FAILURE, AlertStatus::ACKNOWLEDGED, mock_timestamp);
auto alerts = manager.getActiveAlerts();
EXPECT_TRUE(alerts.empty());
// Test getAlertHistory - Max Count Less Than History Size
TEST_F(AlertManagerTest, testGetAlertHistoryMaxCountLessThanHistorySize) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
alert_manager.triggerLowBattery(getMockTimestamp(), 10.0f);
alert_manager.triggerCommunicationError(getMockTimestamp());
// Act
vector<AlertInfo> result = alert_manager.getAlertHistory(2);
// Assert
EXPECT_EQ(result.size(), 2);
EXPECT_EQ(result[0].type, AlertType::COMMUNICATION_ERROR);
EXPECT_EQ(result[1].type, AlertType::LOW_BATTERY);
}
TEST_F(AlertManagerTest, testUpdateAlertStatusResolved) {
mock_timestamp = 1640995200;
manager.triggerSensorFailure(mock_timestamp);
mock_timestamp = 1640995201;
manager.updateAlertStatus(AlertType::SENSOR_FAILURE, AlertStatus::RESOLVED, mock_timestamp);
auto alerts = manager.getActiveAlerts();
EXPECT_TRUE(alerts.empty());
// Test getStatusDescription - No Active Alerts
TEST_F(AlertManagerTest, testGetStatusDescriptionNoActiveAlerts) {
// Arrange
// Act
string result = alert_manager.getStatusDescription();
// Assert
EXPECT_EQ(result, "系统状态:正常");
}
TEST_F(AlertManagerTest, testGetAlertTypeName) {
EXPECT_EQ(manager.getAlertTypeName(AlertType::ALTITUDE_UPPER), "高度上限预警");
EXPECT_EQ(manager.getAlertTypeName(AlertType::NONE), "");
EXPECT_EQ(manager.getAlertTypeName(static_cast<AlertType>(99)), "未知预警");
// Test getStatusDescription - With Active Alerts
TEST_F(AlertManagerTest, testGetStatusDescriptionWithActiveAlerts) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
// Act
string result = alert_manager.getStatusDescription();
// Assert
EXPECT_NE(result.find("系统状态有1个活动预警"), string::npos);
EXPECT_NE(result.find("传感器故障"), string::npos);
}
TEST_F(AlertManagerTest, testGetAlertStatusName) {
EXPECT_EQ(manager.getAlertStatusName(AlertStatus::ACTIVE), "预警中");
EXPECT_EQ(manager.getAlertStatusName(AlertStatus::INACTIVE), "未激活");
EXPECT_EQ(manager.getAlertStatusName(static_cast<AlertStatus>(99)), "未知状态");
// Test clearHistory - Clear All History
TEST_F(AlertManagerTest, testClearHistoryClearAll) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
alert_manager.triggerLowBattery(getMockTimestamp(), 10.0f);
// Act
alert_manager.clearHistory();
// Assert
EXPECT_EQ(alert_manager.getAlertHistory(10).size(), 0);
}
TEST_F(AlertManagerTest, testDestructorDoesNotCrash) {
// Verify destructor doesn't throw or crash
EXPECT_NO_FATAL_FAILURE({
AlertManager* mgr = new AlertManager();
delete mgr;
});
// Test addToHistory - Add to History
TEST_F(AlertManagerTest, testAddToHistoryAddToHistory) {
// Arrange
AlertInfo alert;
alert.type = AlertType::SENSOR_FAILURE;
alert.status = AlertStatus::ACTIVE;
alert.trigger_time = getMockTimestamp();
alert.description = "Test alert";
// Act
alert_manager.addToHistory(alert);
// Assert
EXPECT_EQ(alert_manager.getAlertHistory(1).size(), 1);
}
// Test triggerAlert - Trigger New Alert
TEST_F(AlertManagerTest, testTriggerAlertTriggerNewAlert) {
// Arrange
uint32_t timestamp = getMockTimestamp();
string description = "Test trigger";
// Act
alert_manager.triggerAlert(AlertType::SENSOR_FAILURE, timestamp, description);
// Assert
EXPECT_TRUE(alert_manager.hasActiveAlerts());
auto active_alerts = alert_manager.getActiveAlerts();
EXPECT_EQ(active_alerts.size(), 1);
EXPECT_EQ(active_alerts[0].type, AlertType::SENSOR_FAILURE);
EXPECT_EQ(active_alerts[0].description, description);
}
// Test updateAlertStatus - Update to Acknowledged
TEST_F(AlertManagerTest, testUpdateAlertStatusUpdateToAcknowledged) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
// Act
alert_manager.updateAlertStatus(AlertType::SENSOR_FAILURE, AlertStatus::ACKNOWLEDGED, getMockTimestamp());
// Assert
auto active_alerts = alert_manager.getActiveAlerts();
EXPECT_EQ(active_alerts.size(), 1);
EXPECT_EQ(active_alerts[0].status, AlertStatus::ACKNOWLEDGED);
}
// Test updateAlertStatus - Update to Resolved
TEST_F(AlertManagerTest, testUpdateAlertStatusUpdateToResolved) {
// Arrange
alert_manager.triggerSensorFailure(getMockTimestamp());
// Act
alert_manager.updateAlertStatus(AlertType::SENSOR_FAILURE, AlertStatus::RESOLVED, getMockTimestamp());
// Assert
auto active_alerts = alert_manager.getActiveAlerts();
EXPECT_EQ(active_alerts.size(), 1);
EXPECT_EQ(active_alerts[0].status, AlertStatus::RESOLVED);
}
// Test getAlertTypeName - Valid Type
TEST_F(AlertManagerTest, testGetAlertTypeNameValidType) {
// Arrange
AlertType type = AlertType::ALTITUDE_UPPER;
// Act
string result = alert_manager.getAlertTypeName(type);
// Assert
EXPECT_EQ(result, "高度上限预警");
}
// Test getAlertTypeName - Unknown Type
TEST_F(AlertManagerTest, testGetAlertTypeNameUnknownType) {
// Arrange
AlertType type = static_cast<AlertType>(999);
// Act
string result = alert_manager.getAlertTypeName(type);
// Assert
EXPECT_EQ(result, "未知预警");
}
// Test getAlertStatusName - Valid Status
TEST_F(AlertManagerTest, testGetAlertStatusNameValidStatus) {
// Arrange
AlertStatus status = AlertStatus::ACTIVE;
// Act
string result = alert_manager.getAlertStatusName(status);
// Assert
EXPECT_EQ(result, "预警中");
}
// Test getAlertStatusName - Unknown Status
TEST_F(AlertManagerTest, testGetAlertStatusNameUnknownStatus) {
// Arrange
AlertStatus status = static_cast<AlertStatus>(999);
// Act
string result = alert_manager.getAlertStatusName(status);
// Assert
EXPECT_EQ(result, "未知状态");
}