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rtabmap/corelib/test/test_sensorevent.cpp

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Adding doc and tests (#1492) * added doc and tests for util2d.h * updated cmake-ros ci * Added util3d.h doc and tests * util3d_transforms.h: Added doc and tests * util3d_filtering.h: started doc and test * util3d_filtering.h: more tests and doc * Added more doc/tests * finished util3d_filtering doc and tests * added test for util2d::depthBleedingFiltering * Added util3d_registration tests * Added util3d_features.h doc/tests * added doc/tests for util3d_correspondences.h * added doc/gtest for util3d_mapping.h (missing hpp functions) * finished testing util3d_mapping.hpp * Added util3d_motion_estimation.h tests (2D->3D done) * finished util3d_motion_estimation.h tests * minimal util3d_surface.h * Added Transform and VisualWord tests * Added doc for CameraModel and StereoCameraModel * Added more logs in ros ci * Passing tests on fical * improved all devcontainer * added devcontainer kilted, fixed source setup.bash, removed ldconfig in ros-cmake workflow * cleanup * source ros * Added utilite tests * Added testing to appveyor, github actions cancellable on re-commit on same branch * appveyor testing without all targets * appveyor: specifying ALL_BUILD target * Fixed Util2dTest.NMSImageBoundsRespected test * Fixing PCL Indices error on old pcl * Added VWDictionary tests and doc. 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2026-08-06 13:32:20 -07:00
#include <gtest/gtest.h>
#include <rtabmap/core/SensorEvent.h>
#include <rtabmap/core/SensorData.h>
#include <rtabmap/core/SensorCaptureInfo.h>
#include <opencv2/core.hpp>
using namespace rtabmap;
// Constructor Tests
TEST(SensorEventTest, ConstructorFromImage)
{
cv::Mat image = cv::Mat::zeros(480, 640, CV_8UC3);
int seq = 42;
double stamp = 12345.678;
std::string cameraName = "camera1";
SensorEvent event(image, seq, stamp, cameraName);
EXPECT_EQ(event.getCode(), SensorEvent::kCodeData);
EXPECT_EQ(event.getClassName(), "SensorEvent");
EXPECT_EQ(event.cameraName(), cameraName);
EXPECT_EQ(event.data().id(), seq);
EXPECT_DOUBLE_EQ(event.data().stamp(), stamp);
EXPECT_FALSE(event.data().imageRaw().empty());
}
TEST(SensorEventTest, ConstructorFromImageDefaults)
{
cv::Mat image = cv::Mat::zeros(480, 640, CV_8UC1);
SensorEvent event(image);
EXPECT_EQ(event.getCode(), SensorEvent::kCodeData);
EXPECT_EQ(event.data().id(), 0);
EXPECT_DOUBLE_EQ(event.data().stamp(), 0.0);
EXPECT_TRUE(event.cameraName().empty());
}
TEST(SensorEventTest, ConstructorEndOfStream)
{
SensorEvent event;
EXPECT_EQ(event.getCode(), SensorEvent::kCodeNoMoreImages);
EXPECT_EQ(event.getClassName(), "SensorEvent");
// End-of-stream event may have empty or default sensor data
}
TEST(SensorEventTest, ConstructorFromSensorData)
{
SensorData data;
data.setId(100);
data.setStamp(54321.0);
cv::Mat image = cv::Mat::ones(240, 320, CV_8UC3) * 128;
data.setRGBDImage(image, cv::Mat(), CameraModel());
SensorEvent event(data);
EXPECT_EQ(event.getCode(), SensorEvent::kCodeData);
EXPECT_EQ(event.data().id(), 100);
EXPECT_DOUBLE_EQ(event.data().stamp(), 54321.0);
EXPECT_TRUE(event.cameraName().empty());
}
TEST(SensorEventTest, ConstructorFromSensorDataWithCameraName)
{
SensorData data;
data.setId(200);
std::string cameraName = "stereo_camera";
SensorEvent event(data, cameraName);
EXPECT_EQ(event.getCode(), SensorEvent::kCodeData);
EXPECT_EQ(event.data().id(), 200);
EXPECT_EQ(event.cameraName(), cameraName);
}
TEST(SensorEventTest, ConstructorFromSensorDataWithCaptureInfo)
{
SensorData data;
data.setId(300);
data.setStamp(98765.432);
SensorCaptureInfo captureInfo;
captureInfo.cameraName = "rgbd_camera";
captureInfo.id = 300;
captureInfo.stamp = 98765.432;
captureInfo.timeCapture = 0.01f;
captureInfo.timeTotal = 0.05f;
captureInfo.odomPose = Transform(1.0f, 2.0f, 3.0f, 0, 0, 0);
SensorEvent event(data, captureInfo);
EXPECT_EQ(event.getCode(), SensorEvent::kCodeData);
EXPECT_EQ(event.data().id(), 300);
EXPECT_EQ(event.cameraName(), "rgbd_camera");
const auto& info = event.info();
EXPECT_EQ(info.id, 300);
EXPECT_DOUBLE_EQ(info.stamp, 98765.432);
EXPECT_FLOAT_EQ(info.timeCapture, 0.01f);
EXPECT_FLOAT_EQ(info.timeTotal, 0.05f);
EXPECT_FLOAT_EQ(info.odomPose.x(), 1.0f);
}
// Event Code Tests
TEST(SensorEventTest, EventCodeData)
{
cv::Mat image = cv::Mat::zeros(100, 100, CV_8UC1);
SensorEvent event(image);
EXPECT_EQ(event.getCode(), SensorEvent::kCodeData);
}
TEST(SensorEventTest, EventCodeNoMoreImages)
{
SensorEvent event;
EXPECT_EQ(event.getCode(), SensorEvent::kCodeNoMoreImages);
}
// Class Name Tests
TEST(SensorEventTest, GetClassName)
{
cv::Mat image = cv::Mat::zeros(100, 100, CV_8UC1);
SensorEvent event1(image);
SensorEvent event2; // End of stream
EXPECT_EQ(event1.getClassName(), "SensorEvent");
EXPECT_EQ(event2.getClassName(), "SensorEvent");
}
// Data Access Tests
TEST(SensorEventTest, DataAccess)
{
SensorData data;
data.setId(500);
data.setStamp(11111.0);
cv::Mat image = cv::Mat::ones(100, 100, CV_8UC3) * 255;
data.setRGBDImage(image, cv::Mat(), CameraModel());
SensorEvent event(data);
const auto& retrievedData = event.data();
EXPECT_EQ(retrievedData.id(), 500);
EXPECT_DOUBLE_EQ(retrievedData.stamp(), 11111.0);
EXPECT_FALSE(retrievedData.imageRaw().empty());
EXPECT_EQ(retrievedData.imageRaw().rows, 100);
EXPECT_EQ(retrievedData.imageRaw().cols, 100);
}
// Camera Name Tests
TEST(SensorEventTest, CameraName)
{
cv::Mat image = cv::Mat::zeros(100, 100, CV_8UC1);
// Without camera name
SensorEvent event1(image);
EXPECT_TRUE(event1.cameraName().empty());
// With camera name
SensorEvent event2(image, 0, 0.0, "my_camera");
EXPECT_EQ(event2.cameraName(), "my_camera");
// With SensorData and camera name
SensorData data;
SensorEvent event3(data, "another_camera");
EXPECT_EQ(event3.cameraName(), "another_camera");
}
// Sensor Capture Info Tests
TEST(SensorEventTest, SensorCaptureInfo)
{
SensorData data;
data.setId(600);
SensorCaptureInfo captureInfo;
captureInfo.cameraName = "test_camera";
captureInfo.id = 600;
captureInfo.stamp = 22222.0;
captureInfo.timeCapture = 0.005f;
captureInfo.timeDeskewing = 0.001f;
captureInfo.timeDisparity = 0.010f;
captureInfo.timeTotal = 0.020f;
captureInfo.odomPose = Transform(10.0f, 20.0f, 30.0f, 0, 0, 0);
captureInfo.odomCovariance = cv::Mat::eye(6, 6, CV_64FC1) * 0.1;
SensorEvent event(data, captureInfo);
const auto& info = event.info();
EXPECT_EQ(info.cameraName, "test_camera");
EXPECT_EQ(info.id, 600);
EXPECT_DOUBLE_EQ(info.stamp, 22222.0);
EXPECT_FLOAT_EQ(info.timeCapture, 0.005f);
EXPECT_FLOAT_EQ(info.timeDeskewing, 0.001f);
EXPECT_FLOAT_EQ(info.timeDisparity, 0.010f);
EXPECT_FLOAT_EQ(info.timeTotal, 0.020f);
EXPECT_FLOAT_EQ(info.odomPose.x(), 10.0f);
EXPECT_FLOAT_EQ(info.odomPose.y(), 20.0f);
EXPECT_FLOAT_EQ(info.odomPose.z(), 30.0f);
EXPECT_FALSE(info.odomCovariance.empty());
EXPECT_EQ(info.odomCovariance.rows, 6);
EXPECT_EQ(info.odomCovariance.cols, 6);
}
TEST(SensorEventTest, SensorCaptureInfoDefaultValues)
{
cv::Mat image = cv::Mat::zeros(100, 100, CV_8UC1);
SensorEvent event(image, 0, 0.0, "camera");
const auto& info = event.info();
EXPECT_EQ(info.id, 0);
EXPECT_DOUBLE_EQ(info.stamp, 0.0);
EXPECT_FLOAT_EQ(info.timeCapture, 0.0f);
EXPECT_FLOAT_EQ(info.timeTotal, 0.0f);
EXPECT_TRUE(info.odomPose.isNull());
EXPECT_FALSE(info.odomCovariance.empty()); // Should be initialized to identity
}
// Comprehensive Tests
TEST(SensorEventTest, ComprehensiveUsage)
{
// Create sensor data with multiple components
SensorData data;
data.setId(1000);
data.setStamp(99999.999);
cv::Mat rgb = cv::Mat::ones(480, 640, CV_8UC3) * 128;
cv::Mat depth = cv::Mat::ones(480, 640, CV_16UC1) * 1000;
CameraModel model(525.0, 525.0, 320.0, 240.0);
data.setRGBDImage(rgb, depth, model);
// Create capture info with timing and odometry
SensorCaptureInfo captureInfo;
captureInfo.cameraName = "comprehensive_camera";
captureInfo.id = 1000;
captureInfo.stamp = 99999.999;
captureInfo.timeCapture = 0.010f;
captureInfo.timeDisparity = 0.020f;
captureInfo.timeTotal = 0.050f;
captureInfo.odomPose = Transform(1.5f, 2.5f, 3.5f, 0, 0, 0);
SensorEvent event(data, captureInfo);
// Verify event properties
EXPECT_EQ(event.getCode(), SensorEvent::kCodeData);
EXPECT_EQ(event.getClassName(), "SensorEvent");
// Verify sensor data
EXPECT_EQ(event.data().id(), 1000);
EXPECT_DOUBLE_EQ(event.data().stamp(), 99999.999);
EXPECT_FALSE(event.data().imageRaw().empty());
EXPECT_FALSE(event.data().depthOrRightRaw().empty());
// Verify capture info
EXPECT_EQ(event.cameraName(), "comprehensive_camera");
const auto& info = event.info();
EXPECT_FLOAT_EQ(info.timeCapture, 0.010f);
EXPECT_FLOAT_EQ(info.timeDisparity, 0.020f);
EXPECT_FLOAT_EQ(info.timeTotal, 0.050f);
EXPECT_FLOAT_EQ(info.odomPose.x(), 1.5f);
}
// Edge Cases
TEST(SensorEventTest, EmptyImage)
{
cv::Mat emptyImage;
SensorEvent event(emptyImage);
EXPECT_EQ(event.getCode(), SensorEvent::kCodeData);
EXPECT_TRUE(event.data().imageRaw().empty());
}
TEST(SensorEventTest, DifferentImageTypes)
{
// Grayscale
cv::Mat gray = cv::Mat::zeros(100, 100, CV_8UC1);
SensorEvent event1(gray);
EXPECT_FALSE(event1.data().imageRaw().empty());
// Color
cv::Mat color = cv::Mat::zeros(100, 100, CV_8UC3);
SensorEvent event2(color);
EXPECT_FALSE(event2.data().imageRaw().empty());
// Float
cv::Mat floatImg = cv::Mat::zeros(100, 100, CV_32FC1);
SensorEvent event;
EXPECT_THROW(event = SensorEvent(floatImg), UException);
}
// UEvent Inheritance Tests
TEST(SensorEventTest, UEventInheritance)
{
cv::Mat image = cv::Mat::zeros(100, 100, CV_8UC1);
SensorEvent event(image);
// Should be usable as UEvent
UEvent* baseEvent = &event;
EXPECT_EQ(baseEvent->getCode(), SensorEvent::kCodeData);
EXPECT_EQ(baseEvent->getClassName(), "SensorEvent");
}
TEST(SensorEventTest, PolymorphicBehavior)
{
cv::Mat image = cv::Mat::zeros(100, 100, CV_8UC1);
SensorEvent* event = new SensorEvent(image);
UEvent* baseEvent = event;
EXPECT_EQ(baseEvent->getCode(), SensorEvent::kCodeData);
EXPECT_EQ(baseEvent->getClassName(), "SensorEvent");
delete event;
}