fixed several test failures; currently 9 out of 73 tests fail
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@ -187,6 +187,28 @@ namespace cv
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}
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}
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void write(FileStorage& fs) const
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{
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fs << "descriptor" << descriptor;
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fs << "descriptor_channels" << descriptor_channels;
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fs << "descriptor_size" << descriptor_size;
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fs << "threshold" << threshold;
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fs << "octaves" << octaves;
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fs << "sublevels" << sublevels;
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fs << "diffusivity" << diffusivity;
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}
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void read(const FileNode& fn)
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{
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descriptor = (int)fn["descriptor"];
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descriptor_channels = (int)fn["descriptor_channels"];
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descriptor_size = (int)fn["descriptor_size"];
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threshold = (float)fn["threshold"];
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octaves = (int)fn["octaves"];
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sublevels = (int)fn["sublevels"];
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diffusivity = (int)fn["diffusivity"];
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}
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int descriptor;
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int descriptor_channels;
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int descriptor_size;
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@ -2099,7 +2099,7 @@ BriskLayer::BriskLayer(const BriskLayer& layer, int mode)
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void
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BriskLayer::getAgastPoints(int threshold, std::vector<KeyPoint>& keypoints)
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{
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fast_9_16_->set("threshold", threshold);
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fast_9_16_ = FastFeatureDetector::create(threshold);
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fast_9_16_->detect(img_, keypoints);
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// also write scores
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@ -60,6 +60,11 @@ void Feature2D::detect( InputArray image,
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std::vector<KeyPoint>& keypoints,
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InputArray mask )
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{
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if( image.empty() )
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{
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keypoints.clear();
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return;
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}
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detectAndCompute(image, mask, keypoints, noArray(), false);
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}
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@ -97,6 +102,11 @@ void Feature2D::compute( InputArray image,
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std::vector<KeyPoint>& keypoints,
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OutputArray descriptors )
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{
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if( image.empty() )
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{
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descriptors.release();
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return;
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}
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detectAndCompute(image, noArray(), keypoints, descriptors, true);
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}
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@ -132,6 +132,26 @@ namespace cv
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}
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}
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void write(FileStorage& fs) const
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{
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fs << "extended" << (int)extended;
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fs << "upright" << (int)upright;
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fs << "threshold" << threshold;
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fs << "octaves" << octaves;
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fs << "sublevels" << sublevels;
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fs << "diffusivity" << diffusivity;
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}
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void read(const FileNode& fn)
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{
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extended = (int)fn["extended"] != 0;
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upright = (int)fn["upright"] != 0;
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threshold = (float)fn["threshold"];
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octaves = (int)fn["octaves"];
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sublevels = (int)fn["sublevels"];
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diffusivity = (int)fn["diffusivity"];
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}
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bool extended;
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bool upright;
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float threshold;
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@ -145,7 +145,7 @@ int KAZEFeatures::Create_Nonlinear_Scale_Space(const Mat &img)
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*/
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void KAZEFeatures::Compute_KContrast(const Mat &img, const float &kpercentile)
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{
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options_.kcontrast = compute_k_percentile(img, kpercentile, options_.sderivatives, options_.kcontrast_bins, 0, 0);
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options_.kcontrast = compute_k_percentile(img, kpercentile, options_.sderivatives, options_.kcontrast_bins, 0, 0);
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}
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/* ************************************************************************* */
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@ -72,7 +72,7 @@ void CV_BRISKTest::run( int )
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cvtColor(image1, gray1, COLOR_BGR2GRAY);
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cvtColor(image2, gray2, COLOR_BGR2GRAY);
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Ptr<FeatureDetector> detector = Algorithm::create<FeatureDetector>("Feature2D.BRISK");
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Ptr<FeatureDetector> detector = BRISK::create();
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vector<KeyPoint> keypoints1;
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vector<KeyPoint> keypoints2;
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@ -532,12 +532,14 @@ void CV_DescriptorMatcherTest::run( int )
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TEST( Features2d_DescriptorMatcher_BruteForce, regression )
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{
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CV_DescriptorMatcherTest test( "descriptor-matcher-brute-force", Algorithm::create<DescriptorMatcher>("DescriptorMatcher.BFMatcher"), 0.01f );
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CV_DescriptorMatcherTest test( "descriptor-matcher-brute-force",
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DescriptorMatcher::create("BFMatcher"), 0.01f );
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test.safe_run();
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}
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TEST( Features2d_DescriptorMatcher_FlannBased, regression )
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{
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CV_DescriptorMatcherTest test( "descriptor-matcher-flann-based", Algorithm::create<DescriptorMatcher>("DescriptorMatcher.FlannBasedMatcher"), 0.04f );
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CV_DescriptorMatcherTest test( "descriptor-matcher-flann-based",
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DescriptorMatcher::create("FlannBasedMatcher"), 0.04f );
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test.safe_run();
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}
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@ -47,9 +47,7 @@ using namespace cv;
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TEST(Features2D_ORB, _1996)
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{
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Ptr<FeatureDetector> fd = ORB::create();
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fd->set("nFeatures", 10000);//setting a higher maximum to make effect of threshold visible
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fd->set("fastThreshold", 20);//more features than the default
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Ptr<FeatureDetector> fd = ORB::create(10000, 1.2f, 8, 31, 0, 2, ORB::HARRIS_SCORE, 31, 20);
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Ptr<DescriptorExtractor> de = fd;
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Mat image = imread(string(cvtest::TS::ptr()->get_data_path()) + "shared/lena.png");
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@ -615,19 +615,15 @@ TEST(Features2d_RotationInvariance_Detector_ORB, regression)
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TEST(Features2d_RotationInvariance_Descriptor_BRISK, regression)
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{
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DescriptorRotationInvarianceTest test(Algorithm::create<FeatureDetector>("Feature2D.BRISK"),
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Algorithm::create<DescriptorExtractor>("Feature2D.BRISK"),
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Algorithm::create<DescriptorExtractor>("Feature2D.BRISK")->defaultNorm(),
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0.99f);
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Ptr<Feature2D> f2d = BRISK::create();
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DescriptorRotationInvarianceTest test(f2d, f2d, f2d->defaultNorm(), 0.99f);
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test.safe_run();
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}
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TEST(Features2d_RotationInvariance_Descriptor_ORB, regression)
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{
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DescriptorRotationInvarianceTest test(Algorithm::create<FeatureDetector>("Feature2D.ORB"),
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Algorithm::create<DescriptorExtractor>("Feature2D.ORB"),
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Algorithm::create<DescriptorExtractor>("Feature2D.ORB")->defaultNorm(),
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0.99f);
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Ptr<Feature2D> f2d = ORB::create();
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DescriptorRotationInvarianceTest test(f2d, f2d, f2d->defaultNorm(), 0.99f);
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test.safe_run();
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}
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@ -646,25 +642,19 @@ TEST(Features2d_RotationInvariance_Descriptor_ORB, regression)
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TEST(Features2d_ScaleInvariance_Detector_BRISK, regression)
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{
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DetectorScaleInvarianceTest test(Algorithm::create<FeatureDetector>("Feature2D.BRISK"),
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0.08f,
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0.49f);
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DetectorScaleInvarianceTest test(BRISK::create(), 0.08f, 0.49f);
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test.safe_run();
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}
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TEST(Features2d_ScaleInvariance_Detector_KAZE, regression)
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{
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DetectorScaleInvarianceTest test(Algorithm::create<FeatureDetector>("Feature2D.KAZE"),
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0.08f,
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0.49f);
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DetectorScaleInvarianceTest test(KAZE::create(), 0.08f, 0.49f);
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test.safe_run();
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}
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TEST(Features2d_ScaleInvariance_Detector_AKAZE, regression)
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{
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DetectorScaleInvarianceTest test(Algorithm::create<FeatureDetector>("Feature2D.AKAZE"),
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0.08f,
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0.49f);
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DetectorScaleInvarianceTest test(AKAZE::create(), 0.08f, 0.49f);
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test.safe_run();
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}
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