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* 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. Fixed LSH not working (fix from https://github.com/flann-lib/flann/pull/472 * fixing some appveyor CI errors, added test to check dictionary serialization against all type * Added StereoDense, StereoBM and StereoSGBM doc and tests * Added Stereo tests * Added CameraModel and StereoCameraModel tests * Added doc and test for Statistics * Added doc/tests for Signature * Added doc/test for SensorEvent, added doc for SensorCaptureInfo * Added doc to SensorData * Added SensorData tests * Added SensorCapture and SensorCaptureThread doc and tests * fixed sensordata test * updated SSC test and doc * Added doc and tests for BayesFilter class * Enabled testing on mac, updated windows testing like on linux * added test_link * fixed unresolved on windows * fixed ThreadHandle error on macos ci * Added GPS and GeodeticCoords tests * Added tests for compression * Added Odometry tests (base class only) * Added DBDriver tests * Added coverage report * uniformized test names * fixing concurancy and coverage ci * dont built tools, examples and app for coverage build * fixed report tool rebuilt without qt compilation error * updated coverage option * updated coverage config * added doc CI job * fixing windows and mac ci errors * Added DBDriverSqlite3 tests * Added IMU tests * Added Graph tests * fixing flaky macos test * Added IMUThread and IMUFilter tests * Added Landmarks tests * Added LASWriter tests * fixing seed flaky test * fixing flaky macos timing tests * Added LocalGrid tests * Added LocalGridMaker tests * fixing ci errors * Added GlobalMap tests * Added doc for EnvSensor * Added Features2D tests * Added Registration tests * Added RegistrationVis tests * Added doc for Rtabmap and Memory classes * Added Memory and Rtabmap tests * making some tests less flaky * lcov 1.14 support * updated compatible tool arguments * Added integration tests (RGB-D, Stereo, Lidar2d, Lidar3d) * More octomap checks * Refactored how/when python interpretor is created to simplify library usage * Added python tests * fixed some flaky tests * suppressed some third party related warnings * fixed ceres tests * more flaky fixes * Fixing tests without libpointmatcher * Added RANSAC rejection filter to PCL ICP * fixing multi platform flakiness * Added test to detect regression * Fixing windows pcl link error * fixed some macos flakiness * bigger 2D2D registration error on opencv 4.6.0 * flakiness * fixing flaky tests on windows and mac * flaky thread test on slow mac VM * windows slow test * fixing more ci erros * fxing temp dir on windows * Added Optimizer tests and discovered some bugs (fixed) * fixing flaky tests in mac and windows * Added Optimizer doc * Added GTSAM BA, updated Ceres to use g2o ba parameters. Renamed g2o's ba related parameters to Optimizer group and used by both gtsam and ceres. * fixing build without gtsam * fixing home dir * fixing python ci isssues * Added multicam ba tests * Added Ceres multicam BA support * Aligned BundleAdjustment parameters with Optimizer/Strategy to avoid confusion in the code * Added BA integration test * Added robust graph optimization integration test * Added loop3it test * Added stereo20Hz test * Added smartfactor gtsam * Fixed bugged check and warn if python didn't return any descriptors * Fixing gtsam version build issues * fixing tilt on windows ci * loosing ceres integration test for ci * mac ci flakiness * updating missing param in gui * updating test bound for mac * added appearance-based tests, set min gftt quality to quality level * testing more stuff * improving features2d tests * ci flakiness * fixing flaky ci * ci fixes * flaky fixes * Added RegistrationIcp tests * Added icp integration test with real-worl corridor like env * intermediate nodes * fixing enum * Updated test to catch #1714 * Fixed 2d corridor failing on pcl * flaky pnp test * flaky brisk test * Set rtabmap_integration test as long * updating loop closure test * flaky ci tests * TEsting roundtrip g2o/toro save/load * loosing test bound * fixed cuda capable checks * flaky tests * Debugging test hanging * more debugging stuff * updating limit * windows: disabled cuda on ci to avoid incompatible driver issue. Fixing a bad test mem allocation * trying fixing cuda hanging issue * fixing ci flakyness * flaky tests * Updated BOW flaky tests by checking min precision/recall instead of recall@100precision. Fixed signature test * CameraModel::load() test initRectificationMap param * test dbdriver load dictionary idsOnly * Memory: test keepLinkedInDb param * added dummyDictionary tests * test intermediate nodes count * Added MarkerDetector tests * reverted breaking change of UMutex and USemaphore * Features2d: fixed compiltion warnings with clang about override * clang warnings * fixing test build with pcl 1.8 * g2o and gtsam build errors on android * opencv5 test fixes * disabled testing for ios and android builds * normalized endline characters for easier diff * added LF CRLF rule * bump 0.23.10. fixing doc version * Publish rtabmap website doc from ci * fixing MSCVC build error * macos icp flaky test * fixing ceres macos test bound * ficing more flaky tests * fixing opencv5 related test errors. Also fixed an actual bug in ENU_WGS84ToGeocentric_WGS84() * added comment about mrpt change * removed rosdoc2 (will add it for rtabmap_ros later) * fixing website style * updated download links * locally deployable website with api * sweep doxygen issues * improved/revised doxygen main pages * removed examples empty page * Updated doxygen style * more concise doxygen groups * added api link on main readme * fixing utilite test error * fixing CommonFilteringGroundNormalsUp test * updated precisionRecall test bounds for Freak and brief descriptors * fixing scale check in ba tests * disabled tests on windows cuda build (missing dlls amd runner cannot test cuda anyway) * ceres: missing suitesparse dep in windows ci * adjusting recall thr for fast/freak * ficing more flaky tests * fixing flaky tests * disabled coverage in ros ci * Enable integration tests for ros ci jobs * loosing up some threshold for failing tests * trigger cache * fixing test data in ros ci. Updated flaky test for mac * slaking some test limit * Fixed rtabmap-detectMoreLoopClosures inverted output value * loosing up sift recall on mac * optimizer re-ordered distribution for reproducible results (mac g2o) * macos dump test crash log * combining all tests to save time on shared library reload. Also fixed Logs with missing arguments. * Added ENABLE_FORMAT_ERRORS cmake option * do test only one time * fixed all format warnings * format security android build errors * less verbose tests * updated ImuUThread test * fixed a log * Fixed libpointmatcher 2d normals eigen issue * Fixing libpointmatcher conversion issues * fixing libpointmatcher test on windows ci * cleanup comments, relax some test thr * disabled sequoia-intel ci build (too flaky, would need extensive testing directly on that machine)
320 lines
13 KiB
C++
320 lines
13 KiB
C++
#include <gtest/gtest.h>
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#include <opencv2/core.hpp>
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#include <opencv2/imgproc.hpp>
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#if CV_MAJOR_VERSION < 5
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#include <opencv2/features2d.hpp>
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#else
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#include <opencv2/features.hpp>
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#endif
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#include "rtabmap/core/Stereo.h"
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#include "rtabmap/core/Parameters.h"
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#include "rtabmap/utilite/ULogger.h"
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#include "rtabmap/utilite/UException.h"
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#include <memory>
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#include <vector>
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using namespace rtabmap;
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class StereoTest : public ::testing::Test {
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protected:
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void SetUp() override {
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// Create synthetic stereo images for testing
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// Generate random pattern for left image
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int imageWidth = 160;
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int imageHeight = 120;
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leftImage_ = cv::Mat(imageHeight, imageWidth, CV_8UC1);
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cv::randu(leftImage_, cv::Scalar(0), cv::Scalar(256));
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// Shift the entire left image left by shiftPixels_ to create the right image
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// Right image will have zeros on the right edge where there's no correspondence
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shiftPixels_ = 5;
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rightImage_ = cv::Mat::zeros(leftImage_.size(), CV_8UC1);
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cv::Rect leftROI(shiftPixels_, 0, leftImage_.cols - shiftPixels_, leftImage_.rows);
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cv::Rect rightROI(0, 0, leftImage_.cols - shiftPixels_, leftImage_.rows);
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leftImage_(leftROI).copyTo(rightImage_(rightROI));
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// Detect feature points in the left image
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// Use a simple corner detector to get test points
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cv::Mat corners;
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cv::goodFeaturesToTrack(leftImage_, corners, 50, 0.01, 10);
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leftCorners_.clear();
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for(int i = 0; i < corners.rows; ++i)
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{
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leftCorners_.push_back(cv::Point2f(corners.at<float>(i, 0), corners.at<float>(i, 1)));
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}
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// Filter corners to be in valid region (not too close to edges and within valid disparity range)
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std::vector<cv::Point2f> filteredCorners;
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for(const cv::Point2f& pt : leftCorners_)
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{
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// Ensure corner is not too close to edges and will have valid correspondence
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if(pt.x >= shiftPixels_ + 10 && pt.x < leftImage_.cols - 10 &&
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pt.y >= 10 && pt.y < leftImage_.rows - 10)
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{
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filteredCorners.push_back(pt);
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}
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}
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leftCorners_ = filteredCorners;
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// Ensure we have some corners to test with
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if(leftCorners_.empty())
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{
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// Add some manual test points if no corners detected
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leftCorners_.push_back(cv::Point2f(50, 50));
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leftCorners_.push_back(cv::Point2f(80, 60));
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leftCorners_.push_back(cv::Point2f(100, 40));
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}
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}
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void TearDown() override {
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}
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cv::Mat leftImage_;
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cv::Mat rightImage_;
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std::vector<cv::Point2f> leftCorners_;
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int shiftPixels_; ///< Number of pixels the right image is shifted left (expected disparity)
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};
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// Helper function to get strategy name for error messages
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const char* getStrategyName(bool opticalFlow) {
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return opticalFlow ? "OpticalFlow" : "BlockMatching";
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}
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// Stereo Tests
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TEST_F(StereoTest, Constructor)
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{
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// Test with both strategies
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bool strategies[] = {false, true}; // false = BlockMatching, true = OpticalFlow
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for(bool opticalFlow : strategies)
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{
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ParametersMap params;
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params.insert(ParametersPair(Parameters::kStereoOpticalFlow(), opticalFlow ? "true" : "false"));
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std::unique_ptr<Stereo> stereo(Stereo::create(params));
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EXPECT_NE(stereo.get(), nullptr) << "Strategy: " << getStrategyName(opticalFlow);
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}
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}
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TEST_F(StereoTest, ParseParameters)
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{
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// Test with both strategies
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bool strategies[] = {false, true};
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for(bool opticalFlow : strategies)
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{
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ParametersMap params;
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params.insert(ParametersPair(Parameters::kStereoOpticalFlow(), opticalFlow ? "true" : "false"));
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params.insert(ParametersPair(Parameters::kStereoWinWidth(), "10"));
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params.insert(ParametersPair(Parameters::kStereoWinHeight(), "10"));
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params.insert(ParametersPair(Parameters::kStereoIterations(), "10"));
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params.insert(ParametersPair(Parameters::kStereoMaxLevel(), "2"));
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params.insert(ParametersPair(Parameters::kStereoMinDisparity(), "0.0"));
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params.insert(ParametersPair(Parameters::kStereoMaxDisparity(), "64.0"));
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params.insert(ParametersPair(Parameters::kStereoSSD(), "true"));
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params.insert(ParametersPair(Parameters::kStereoEps(), "0.01"));
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params.insert(ParametersPair(Parameters::kStereoGpu(), "false"));
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std::unique_ptr<Stereo> stereo(Stereo::create(params));
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EXPECT_NE(stereo.get(), nullptr) << "Strategy: " << getStrategyName(opticalFlow);
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stereo->parseParameters(params);
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// Should not throw
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EXPECT_TRUE(true) << "Strategy: " << getStrategyName(opticalFlow);
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}
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}
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TEST_F(StereoTest, ComputeCorrespondences)
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{
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// Test with both strategies
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bool strategies[] = {false, true};
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for(bool opticalFlow : strategies)
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{
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ParametersMap params;
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params.insert(ParametersPair(Parameters::kStereoOpticalFlow(), opticalFlow ? "true" : "false"));
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params.insert(ParametersPair(Parameters::kStereoMinDisparity(), "0.0"));
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params.insert(ParametersPair(Parameters::kStereoMaxDisparity(), "20.0")); // Should cover shiftPixels_ (5)
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std::unique_ptr<Stereo> stereo(Stereo::create(params));
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EXPECT_NE(stereo.get(), nullptr) << "Strategy: " << getStrategyName(opticalFlow);
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std::vector<unsigned char> status;
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std::vector<cv::Point2f> rightCorners = stereo->computeCorrespondences(
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leftImage_, rightImage_, leftCorners_, status);
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EXPECT_EQ(rightCorners.size(), leftCorners_.size()) << "Strategy: " << getStrategyName(opticalFlow);
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EXPECT_EQ(status.size(), leftCorners_.size()) << "Strategy: " << getStrategyName(opticalFlow);
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// Count valid correspondences
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int validCount = 0;
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int correctDisparityCount = 0;
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for(size_t i = 0; i < status.size(); ++i)
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{
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if(status[i] != 0)
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{
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validCount++;
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// Check that disparity is approximately shiftPixels_
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float disparity = leftCorners_[i].x - rightCorners[i].x;
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if(std::abs(disparity - shiftPixels_) < 2.0f) // Allow 2 pixels tolerance
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{
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correctDisparityCount++;
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}
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}
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}
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// Should have some valid correspondences
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EXPECT_GT(validCount, 0) << "Strategy: " << getStrategyName(opticalFlow);
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// Most valid correspondences should have correct disparity
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if(validCount > 0)
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{
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float correctRatio = static_cast<float>(correctDisparityCount) / validCount;
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EXPECT_GT(correctRatio, 0.5f) << "Strategy: " << getStrategyName(opticalFlow); // At least 50% should be correct
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}
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}
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}
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TEST_F(StereoTest, ComputeCorrespondencesEmptyCorners)
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{
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// Test with both strategies
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bool strategies[] = {false, true};
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for(bool opticalFlow : strategies)
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{
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ParametersMap params;
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params.insert(ParametersPair(Parameters::kStereoOpticalFlow(), opticalFlow ? "true" : "false"));
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std::unique_ptr<Stereo> stereo(Stereo::create(params));
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EXPECT_NE(stereo.get(), nullptr) << "Strategy: " << getStrategyName(opticalFlow);
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std::vector<cv::Point2f> emptyCorners;
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std::vector<unsigned char> status;
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std::vector<cv::Point2f> rightCorners;
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rightCorners = stereo->computeCorrespondences(
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leftImage_, rightImage_, emptyCorners, status);
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EXPECT_EQ(rightCorners.size(), 0u) << "Strategy: " << getStrategyName(opticalFlow);
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EXPECT_EQ(status.size(), 0u) << "Strategy: " << getStrategyName(opticalFlow);
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}
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}
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TEST_F(StereoTest, ComputeCorrespondencesDifferentSizes)
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{
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// Test with both strategies
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bool strategies[] = {false, true};
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for(bool opticalFlow : strategies)
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{
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ParametersMap params;
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params.insert(ParametersPair(Parameters::kStereoOpticalFlow(), opticalFlow ? "true" : "false"));
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std::unique_ptr<Stereo> stereo(Stereo::create(params));
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EXPECT_NE(stereo.get(), nullptr) << "Strategy: " << getStrategyName(opticalFlow);
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cv::Mat smallRight = cv::Mat::zeros(50, 50, CV_8UC1);
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std::vector<unsigned char> status;
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// Should throw
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EXPECT_THROW(stereo->computeCorrespondences(leftImage_, smallRight, leftCorners_, status), UException)
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<< "Strategy: " << getStrategyName(opticalFlow);
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}
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}
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TEST_F(StereoTest, ComputeCorrespondencesEmptyImages)
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{
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// Test with both strategies
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bool strategies[] = {false, true};
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for(bool opticalFlow : strategies)
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{
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ParametersMap params;
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params.insert(ParametersPair(Parameters::kStereoOpticalFlow(), opticalFlow ? "true" : "false"));
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std::unique_ptr<Stereo> stereo(Stereo::create(params));
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EXPECT_NE(stereo.get(), nullptr) << "Strategy: " << getStrategyName(opticalFlow);
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cv::Mat emptyLeft, emptyRight;
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std::vector<unsigned char> status;
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// Should throw
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EXPECT_THROW(stereo->computeCorrespondences(emptyLeft, emptyRight, leftCorners_, status), UException)
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<< "Strategy: " << getStrategyName(opticalFlow);
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}
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}
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TEST_F(StereoTest, GetterMethods)
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{
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// Test with both strategies
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bool strategies[] = {false, true};
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for(bool opticalFlow : strategies)
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{
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ParametersMap params;
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params.insert(ParametersPair(Parameters::kStereoOpticalFlow(), opticalFlow ? "true" : "false"));
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params.insert(ParametersPair(Parameters::kStereoWinWidth(), "12"));
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params.insert(ParametersPair(Parameters::kStereoWinHeight(), "8"));
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params.insert(ParametersPair(Parameters::kStereoIterations(), "15"));
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params.insert(ParametersPair(Parameters::kStereoMaxLevel(), "3"));
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params.insert(ParametersPair(Parameters::kStereoMinDisparity(), "1.0"));
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params.insert(ParametersPair(Parameters::kStereoMaxDisparity(), "50.0"));
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params.insert(ParametersPair(Parameters::kStereoSSD(), "false"));
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std::unique_ptr<Stereo> stereo(Stereo::create(params));
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EXPECT_NE(stereo.get(), nullptr) << "Strategy: " << getStrategyName(opticalFlow);
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cv::Size winSize = stereo->winSize();
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EXPECT_EQ(winSize.width, 12) << "Strategy: " << getStrategyName(opticalFlow);
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EXPECT_EQ(winSize.height, 8) << "Strategy: " << getStrategyName(opticalFlow);
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EXPECT_EQ(stereo->iterations(), 15) << "Strategy: " << getStrategyName(opticalFlow);
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EXPECT_EQ(stereo->maxLevel(), 3) << "Strategy: " << getStrategyName(opticalFlow);
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EXPECT_FLOAT_EQ(stereo->minDisparity(), 1.0f) << "Strategy: " << getStrategyName(opticalFlow);
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EXPECT_FLOAT_EQ(stereo->maxDisparity(), 50.0f) << "Strategy: " << getStrategyName(opticalFlow);
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EXPECT_FALSE(stereo->winSSD()) << "Strategy: " << getStrategyName(opticalFlow);
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EXPECT_FALSE(stereo->isGpuEnabled()) << "Strategy: " << getStrategyName(opticalFlow);
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}
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}
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TEST_F(StereoTest, StereoOpticalFlowIsGpuEnabled)
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{
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// Test GPU enable/disable for optical flow
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ParametersMap params;
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params.insert(ParametersPair(Parameters::kStereoOpticalFlow(), "true"));
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params.insert(ParametersPair(Parameters::kStereoGpu(), "false"));
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std::unique_ptr<Stereo> stereo(Stereo::create(params));
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EXPECT_NE(stereo.get(), nullptr);
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EXPECT_FALSE(stereo->isGpuEnabled());
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// Test with GPU enabled (may not be available)
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ParametersMap params2;
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params2.insert(ParametersPair(Parameters::kStereoOpticalFlow(), "true"));
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params2.insert(ParametersPair(Parameters::kStereoGpu(), "true"));
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std::unique_ptr<Stereo> stereo2(Stereo::create(params2));
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EXPECT_NE(stereo2.get(), nullptr);
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// GPU may or may not be enabled depending on build configuration
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// Just verify the method doesn't crash
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bool gpuEnabled = stereo2->isGpuEnabled();
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(void)gpuEnabled; // Suppress unused variable warning
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}
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TEST_F(StereoTest, StereoOpticalFlowEpsilon)
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{
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// Test epsilon parameter for optical flow
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ParametersMap params;
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params.insert(ParametersPair(Parameters::kStereoOpticalFlow(), "true"));
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params.insert(ParametersPair(Parameters::kStereoEps(), "0.005"));
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std::unique_ptr<Stereo> stereo(Stereo::create(params));
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EXPECT_NE(stereo.get(), nullptr);
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// Cast to StereoOpticalFlow to access epsilon()
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StereoOpticalFlow* opticalFlow = dynamic_cast<StereoOpticalFlow*>(stereo.get());
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EXPECT_NE(opticalFlow, nullptr);
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EXPECT_FLOAT_EQ(opticalFlow->epsilon(), 0.005f);
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}
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