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rtabmap/corelib/test/test_sensorcapture.cpp
matlabbe 338e142e58 CI coverage: adding g2o, gtsam, ceres and libpointmatcher. (#1743)
* CI coverage: adding g2o, gtsam, ceres and libpointmatcher. Also fetch test data for integration tests.

* ld

* Increasing ci test timeout for coverage

* Fixed tests when vertigo is not there

* verbose tests

* updating flaky test

* faster coverage by extending unit tests and disable integration test (only for coverage report)

* improving coverage of unit tests in comparison to integrations tests

* fixing not covered new lines
2026-08-08 23:47:48 -07:00

447 lines
11 KiB
C++

#include <gtest/gtest.h>
#include <rtabmap/core/SensorCapture.h>
#include <rtabmap/core/SensorData.h>
#include <rtabmap/core/SensorCaptureInfo.h>
#include <rtabmap/core/Transform.h>
#include <rtabmap/utilite/UTimer.h>
#include <opencv2/core.hpp>
using namespace rtabmap;
// Mock SensorCapture implementation for testing
class MockSensorCapture : public SensorCapture
{
public:
MockSensorCapture(float frameRate = 0, const Transform & localTransform = Transform::getIdentity()) :
SensorCapture(frameRate, localTransform),
initCalled_(false),
initResult_(true),
serial_("MOCK_SENSOR_001"),
odomProvided_(false),
captureCount_(0)
{
}
virtual ~MockSensorCapture() {}
virtual bool init(const std::string & calibrationFolder = ".", const std::string & cameraName = "")
{
initCalled_ = true;
calibrationFolder_ = calibrationFolder;
cameraName_ = cameraName;
return initResult_;
}
virtual std::string getSerial() const
{
return serial_;
}
virtual bool odomProvided() const
{
return odomProvided_;
}
virtual bool getPose(double stamp, Transform & pose, cv::Mat & covariance, double maxWaitTime = 0.06)
{
if (odomProvided_)
{
pose = Transform(1, 0, 0, 0, 0, 0, 1);
covariance = cv::Mat::eye(6, 6, CV_64FC1);
return true;
}
return false;
}
// Test helpers
void setInitResult(bool result) { initResult_ = result; }
void setSerial(const std::string & serial) { serial_ = serial; }
void setOdomProvided(bool provided) { odomProvided_ = true; }
bool wasInitCalled() const { return initCalled_; }
std::string getCalibrationFolder() const { return calibrationFolder_; }
std::string getCameraName() const { return cameraName_; }
int getCaptureCount() const { return captureCount_; }
protected:
virtual SensorData captureData(SensorCaptureInfo * info = 0)
{
++captureCount_;
cv::Mat image = cv::Mat::ones(480, 640, CV_8UC3) * 128;
SensorData data(image, getNextSeqID(), UTimer::now());
return data;
}
private:
bool initCalled_;
bool initResult_;
std::string serial_;
bool odomProvided_;
std::string calibrationFolder_;
std::string cameraName_;
int captureCount_;
};
// Constructor Tests
TEST(SensorCaptureTest, DefaultConstructor)
{
MockSensorCapture sensor;
EXPECT_EQ(sensor.getFrameRate(), 0.0f);
EXPECT_TRUE(sensor.getLocalTransform().isIdentity());
EXPECT_FALSE(sensor.wasInitCalled());
EXPECT_EQ(sensor.getSerial(), "MOCK_SENSOR_001");
EXPECT_FALSE(sensor.odomProvided());
}
TEST(SensorCaptureTest, ConstructorWithFrameRate)
{
float frameRate = 30.0f;
MockSensorCapture sensor(frameRate);
EXPECT_FLOAT_EQ(sensor.getFrameRate(), frameRate);
EXPECT_TRUE(sensor.getLocalTransform().isIdentity());
}
TEST(SensorCaptureTest, ConstructorWithLocalTransform)
{
Transform localTransform(1, 0, 0, 0, 0, 0, 1);
MockSensorCapture sensor(0, localTransform);
EXPECT_EQ(sensor.getLocalTransform(), localTransform);
}
TEST(SensorCaptureTest, ConstructorWithFrameRateAndTransform)
{
float frameRate = 15.0f;
Transform localTransform(0, 0, 1, 0, -1, 0, 0, 0, 0, -1, 0, 0);
MockSensorCapture sensor(frameRate, localTransform);
EXPECT_FLOAT_EQ(sensor.getFrameRate(), frameRate);
EXPECT_EQ(sensor.getLocalTransform(), localTransform);
}
// Init Tests
TEST(SensorCaptureTest, InitDefault)
{
MockSensorCapture sensor;
EXPECT_TRUE(sensor.init());
EXPECT_TRUE(sensor.wasInitCalled());
EXPECT_EQ(sensor.getCalibrationFolder(), ".");
EXPECT_EQ(sensor.getCameraName(), "");
}
TEST(SensorCaptureTest, InitWithCalibrationFolder)
{
MockSensorCapture sensor;
std::string folder = "/path/to/calibration";
EXPECT_TRUE(sensor.init(folder));
EXPECT_EQ(sensor.getCalibrationFolder(), folder);
EXPECT_EQ(sensor.getCameraName(), "");
}
TEST(SensorCaptureTest, InitWithCalibrationFolderAndCameraName)
{
MockSensorCapture sensor;
std::string folder = "/path/to/calibration";
std::string cameraName = "camera1";
EXPECT_TRUE(sensor.init(folder, cameraName));
EXPECT_EQ(sensor.getCalibrationFolder(), folder);
EXPECT_EQ(sensor.getCameraName(), cameraName);
}
TEST(SensorCaptureTest, InitFailure)
{
MockSensorCapture sensor;
sensor.setInitResult(false);
EXPECT_FALSE(sensor.init());
EXPECT_TRUE(sensor.wasInitCalled());
}
// Serial Tests
TEST(SensorCaptureTest, GetSerial)
{
MockSensorCapture sensor;
EXPECT_EQ(sensor.getSerial(), "MOCK_SENSOR_001");
sensor.setSerial("CUSTOM_SERIAL_123");
EXPECT_EQ(sensor.getSerial(), "CUSTOM_SERIAL_123");
}
// Frame Rate Tests
TEST(SensorCaptureTest, SetGetFrameRate)
{
MockSensorCapture sensor;
EXPECT_EQ(sensor.getFrameRate(), 0.0f);
sensor.setFrameRate(30.0f);
EXPECT_FLOAT_EQ(sensor.getFrameRate(), 30.0f);
sensor.setFrameRate(0.0f);
EXPECT_FLOAT_EQ(sensor.getFrameRate(), 0.0f);
sensor.setFrameRate(60.0f);
EXPECT_FLOAT_EQ(sensor.getFrameRate(), 60.0f);
}
// Local Transform Tests
TEST(SensorCaptureTest, SetGetLocalTransform)
{
MockSensorCapture sensor;
EXPECT_TRUE(sensor.getLocalTransform().isIdentity());
Transform transform(1, 0, 0, 0, 0, 0, 1);
sensor.setLocalTransform(transform);
EXPECT_EQ(sensor.getLocalTransform(), transform);
Transform transform2(0, 0, 1, 0, -1, 0, 0, 0, 0, -1, 0, 0);
sensor.setLocalTransform(transform2);
EXPECT_EQ(sensor.getLocalTransform(), transform2);
}
// Reset Timer Tests
TEST(SensorCaptureTest, ResetTimer)
{
MockSensorCapture sensor;
// Reset should not throw
EXPECT_NO_THROW(sensor.resetTimer());
// After reset, timer should be ready for frame rate control
sensor.setFrameRate(10.0f);
sensor.resetTimer();
// First capture should be fast (no throttling needed)
SensorData data = sensor.takeData();
EXPECT_TRUE(data.isValid());
}
// TakeData Tests
TEST(SensorCaptureTest, TakeDataBasic)
{
MockSensorCapture sensor;
SensorData data = sensor.takeData();
EXPECT_TRUE(data.isValid());
EXPECT_GT(data.id(), 0);
EXPECT_GT(data.stamp(), 0.0);
EXPECT_FALSE(data.imageRaw().empty());
EXPECT_EQ(sensor.getCaptureCount(), 1);
}
TEST(SensorCaptureTest, TakeDataWithInfo)
{
MockSensorCapture sensor;
SensorCaptureInfo info;
SensorData data = sensor.takeData(&info);
EXPECT_TRUE(data.isValid());
EXPECT_EQ(info.id, data.id());
EXPECT_DOUBLE_EQ(info.stamp, data.stamp());
EXPECT_GT(info.timeCapture, 0.0);
EXPECT_LE(info.timeCapture, 0.1); // Should be very fast for mock
}
TEST(SensorCaptureTest, TakeDataSequenceIDs)
{
MockSensorCapture sensor;
SensorData data1 = sensor.takeData();
SensorData data2 = sensor.takeData();
SensorData data3 = sensor.takeData();
EXPECT_EQ(data1.id() + 1, data2.id());
EXPECT_EQ(data2.id() + 1, data3.id());
EXPECT_EQ(sensor.getCaptureCount(), 3);
}
TEST(SensorCaptureTest, TakeDataNoFrameRateThrottling)
{
MockSensorCapture sensor;
sensor.setFrameRate(0.0f); // Unlimited
UTimer timer;
SensorData data1 = sensor.takeData();
SensorData data2 = sensor.takeData();
double elapsed = timer.ticks();
// Without throttling, captures should be very fast
EXPECT_LT(elapsed, 0.1);
EXPECT_TRUE(data1.isValid());
EXPECT_TRUE(data2.isValid());
}
TEST(SensorCaptureTest, TakeDataWithFrameRateThrottling)
{
MockSensorCapture sensor;
sensor.setFrameRate(10.0f); // 10 Hz = 100ms per frame
sensor.resetTimer();
UTimer timer;
SensorData data1 = sensor.takeData();
SensorData data2 = sensor.takeData();
double elapsed = timer.ticks();
// With 10 Hz throttling, two captures should wait ~100 ms each (~200 ms total).
EXPECT_GE(elapsed, 0.19);
EXPECT_LE(elapsed, 1.0); // allow scheduler jitter on loaded CI runners (e.g. macOS overshot 0.5 by ~3 ms)
EXPECT_TRUE(data1.isValid());
EXPECT_TRUE(data2.isValid());
}
// OdomProvided Tests
TEST(SensorCaptureTest, OdomProvidedDefault)
{
MockSensorCapture sensor;
EXPECT_FALSE(sensor.odomProvided());
}
TEST(SensorCaptureTest, OdomProvidedEnabled)
{
MockSensorCapture sensor;
sensor.setOdomProvided(true);
EXPECT_TRUE(sensor.odomProvided());
}
// GetPose Tests
TEST(SensorCaptureTest, GetPoseDefault)
{
MockSensorCapture sensor;
Transform pose;
cv::Mat covariance;
EXPECT_FALSE(sensor.getPose(0.0, pose, covariance));
}
TEST(SensorCaptureTest, GetPoseWithOdom)
{
MockSensorCapture sensor;
sensor.setOdomProvided(true);
Transform pose;
cv::Mat covariance;
EXPECT_TRUE(sensor.getPose(0.0, pose, covariance));
EXPECT_FALSE(pose.isNull());
EXPECT_FALSE(covariance.empty());
EXPECT_EQ(covariance.rows, 6);
EXPECT_EQ(covariance.cols, 6);
}
// Comprehensive Usage Test
TEST(SensorCaptureTest, ComprehensiveUsage)
{
// Create sensor with frame rate and transform
float frameRate = 20.0f;
Transform localTransform(0, 0, 1, 0, -1, 0, 0, 0, 0, -1, 0, 0);
MockSensorCapture sensor(frameRate, localTransform);
// Initialize
EXPECT_TRUE(sensor.init("/calib", "test_camera"));
EXPECT_EQ(sensor.getCalibrationFolder(), "/calib");
EXPECT_EQ(sensor.getCameraName(), "test_camera");
// Verify settings
EXPECT_FLOAT_EQ(sensor.getFrameRate(), frameRate);
EXPECT_EQ(sensor.getLocalTransform(), localTransform);
EXPECT_EQ(sensor.getSerial(), "MOCK_SENSOR_001");
// Change settings
sensor.setFrameRate(30.0f);
Transform newTransform = Transform::getIdentity();
sensor.setLocalTransform(newTransform);
sensor.setSerial("NEW_SERIAL");
EXPECT_FLOAT_EQ(sensor.getFrameRate(), 30.0f);
EXPECT_EQ(sensor.getLocalTransform(), newTransform);
EXPECT_EQ(sensor.getSerial(), "NEW_SERIAL");
// Capture data
sensor.resetTimer();
SensorCaptureInfo info;
SensorData data = sensor.takeData(&info);
EXPECT_TRUE(data.isValid());
EXPECT_EQ(info.id, data.id());
EXPECT_DOUBLE_EQ(info.stamp, data.stamp());
EXPECT_GT(info.timeCapture, 0.0);
EXPECT_EQ(sensor.getCaptureCount(), 1);
}
// Edge Cases
TEST(SensorCaptureTest, TakeDataMultipleCalls)
{
MockSensorCapture sensor;
for (int i = 0; i < 10; ++i)
{
SensorData data = sensor.takeData();
EXPECT_TRUE(data.isValid());
}
EXPECT_EQ(sensor.getCaptureCount(), 10);
}
TEST(SensorCaptureTest, TakeDataWithNullInfo)
{
MockSensorCapture sensor;
// Should not crash with null info
SensorData data = sensor.takeData(nullptr);
EXPECT_TRUE(data.isValid());
}
TEST(SensorCaptureTest, HighFrameRate)
{
MockSensorCapture sensor;
sensor.setFrameRate(1000.0f); // Very high frame rate
sensor.resetTimer();
// Should handle high frame rate gracefully
UTimer timer;
SensorData data = sensor.takeData();
double elapsed = timer.ticks();
EXPECT_TRUE(data.isValid());
EXPECT_GE(elapsed, 0.001);
EXPECT_LT(elapsed, 0.01);
}
TEST(SensorCaptureTest, VeryLowFrameRate)
{
MockSensorCapture sensor;
sensor.setFrameRate(2.0f); // 2 Hz = 500 ms per frame
sensor.resetTimer();
UTimer timer;
SensorData data = sensor.takeData();
double elapsed = timer.ticks();
EXPECT_TRUE(data.isValid());
EXPECT_GE(elapsed, 0.5);
EXPECT_LT(elapsed, 0.75); // allow scheduler jitter on loaded CI runners (e.g. macOS)
}