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features2d(test): more AKAZE tests
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@ -2144,7 +2144,8 @@ void generateDescriptorSubsample(Mat& sampleList, Mat& comparisons, int nbits,
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}
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ssz *= nchannels;
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CV_Assert(nbits <= ssz); // Descriptor size can't be bigger than full descriptor
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CV_Assert(ssz == 162*nchannels);
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CV_Assert(nbits <= ssz && "Descriptor size can't be bigger than full descriptor (486 = 162*3 - 3 channels)");
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// Since the full descriptor is usually under 10k elements, we pick
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// the selection from the full matrix. We take as many samples per
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@ -43,6 +43,7 @@
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using namespace std;
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using namespace cv;
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using namespace testing;
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const string FEATURES2D_DIR = "features2d";
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const string IMAGE_FILENAME = "tsukuba.png";
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@ -417,68 +418,82 @@ TEST( Features2d_DescriptorExtractor, batch )
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}
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}
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TEST( Features2d_Feature2d, no_crash )
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class DescriptorImage : public TestWithParam<std::string>
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{
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protected:
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virtual void SetUp() {
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pattern = GetParam();
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}
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std::string pattern;
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};
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TEST_P(DescriptorImage, no_crash)
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{
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const String& pattern = string(cvtest::TS::ptr()->get_data_path() + "shared/*.png");
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vector<String> fnames;
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glob(pattern, fnames, false);
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glob(cvtest::TS::ptr()->get_data_path() + pattern, fnames, false);
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sort(fnames.begin(), fnames.end());
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Ptr<AKAZE> akaze = AKAZE::create();
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Ptr<AKAZE> akaze_mldb = AKAZE::create(AKAZE::DESCRIPTOR_MLDB);
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Ptr<AKAZE> akaze_mldb_upright = AKAZE::create(AKAZE::DESCRIPTOR_MLDB_UPRIGHT);
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Ptr<AKAZE> akaze_mldb_256 = AKAZE::create(AKAZE::DESCRIPTOR_MLDB, 256);
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Ptr<AKAZE> akaze_mldb_upright_256 = AKAZE::create(AKAZE::DESCRIPTOR_MLDB_UPRIGHT, 256);
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Ptr<AKAZE> akaze_kaze = AKAZE::create(AKAZE::DESCRIPTOR_KAZE);
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Ptr<AKAZE> akaze_kaze_upright = AKAZE::create(AKAZE::DESCRIPTOR_KAZE_UPRIGHT);
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Ptr<ORB> orb = ORB::create();
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Ptr<KAZE> kaze = KAZE::create();
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Ptr<BRISK> brisk = BRISK::create();
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size_t i, n = fnames.size();
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size_t n = fnames.size();
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vector<KeyPoint> keypoints;
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Mat descriptors;
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orb->setMaxFeatures(5000);
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for( i = 0; i < n; i++ )
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for(size_t i = 0; i < n; i++ )
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{
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printf("%d. image: %s:\n", (int)i, fnames[i].c_str());
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if( strstr(fnames[i].c_str(), "MP.png") != 0 )
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{
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printf("\tskip\n");
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continue;
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}
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bool checkCount = strstr(fnames[i].c_str(), "templ.png") == 0;
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Mat img = imread(fnames[i], -1);
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printf("\tAKAZE ... "); fflush(stdout);
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akaze->detectAndCompute(img, noArray(), keypoints, descriptors);
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printf("(%d keypoints) ", (int)keypoints.size()); fflush(stdout);
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if( checkCount )
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{
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EXPECT_GT((int)keypoints.size(), 0);
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}
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ASSERT_EQ(descriptors.rows, (int)keypoints.size());
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printf("ok\n");
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printf("\tKAZE ... "); fflush(stdout);
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kaze->detectAndCompute(img, noArray(), keypoints, descriptors);
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printf("(%d keypoints) ", (int)keypoints.size()); fflush(stdout);
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if( checkCount )
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{
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EXPECT_GT((int)keypoints.size(), 0);
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}
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ASSERT_EQ(descriptors.rows, (int)keypoints.size());
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printf("ok\n");
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printf("\t%dx%d\n", img.cols, img.rows);
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printf("\tORB ... "); fflush(stdout);
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orb->detectAndCompute(img, noArray(), keypoints, descriptors);
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printf("(%d keypoints) ", (int)keypoints.size()); fflush(stdout);
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if( checkCount )
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{
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EXPECT_GT((int)keypoints.size(), 0);
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}
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#define TEST_DETECTOR(name, descriptor) \
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keypoints.clear(); descriptors.release(); \
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printf("\t" name "\n"); fflush(stdout); \
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descriptor->detectAndCompute(img, noArray(), keypoints, descriptors); \
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printf("\t\t\t(%d keypoints, descriptor size = %d)\n", (int)keypoints.size(), descriptors.cols); fflush(stdout); \
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if (checkCount) \
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{ \
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EXPECT_GT((int)keypoints.size(), 0); \
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} \
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ASSERT_EQ(descriptors.rows, (int)keypoints.size());
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printf("ok\n");
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printf("\tBRISK ... "); fflush(stdout);
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brisk->detectAndCompute(img, noArray(), keypoints, descriptors);
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printf("(%d keypoints) ", (int)keypoints.size()); fflush(stdout);
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if( checkCount )
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{
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EXPECT_GT((int)keypoints.size(), 0);
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}
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ASSERT_EQ(descriptors.rows, (int)keypoints.size());
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printf("ok\n");
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TEST_DETECTOR("AKAZE:MLDB", akaze_mldb);
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TEST_DETECTOR("AKAZE:MLDB_UPRIGHT", akaze_mldb_upright);
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TEST_DETECTOR("AKAZE:MLDB_256", akaze_mldb_256);
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TEST_DETECTOR("AKAZE:MLDB_UPRIGHT_256", akaze_mldb_upright_256);
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TEST_DETECTOR("AKAZE:KAZE", akaze_kaze);
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TEST_DETECTOR("AKAZE:KAZE_UPRIGHT", akaze_kaze_upright);
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TEST_DETECTOR("KAZE", kaze);
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TEST_DETECTOR("ORB", orb);
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TEST_DETECTOR("BRISK", brisk);
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}
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}
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INSTANTIATE_TEST_CASE_P(Features2d, DescriptorImage,
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testing::Values(
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"shared/lena.png",
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"shared/box*.png",
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"shared/fruits*.png",
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"shared/airplane.png",
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"shared/graffiti.png",
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"shared/1_itseez-0001*.png",
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"shared/pic*.png",
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"shared/templ.png"
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)
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);
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@ -8,7 +8,11 @@ from pprint import PrettyPrinter as PP
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LONG_TESTS_DEBUG_VALGRIND = [
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('calib3d', 'Calib3d_InitUndistortRectifyMap.accuracy', 2017.22),
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('dnn', 'Reproducibility*', 1000), # large DNN models
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('features2d', 'Features2d_Feature2d.no_crash', 1235.68),
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('features2d', 'Features2d/DescriptorImage.no_crash/3', 1000),
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('features2d', 'Features2d/DescriptorImage.no_crash/4', 1000),
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('features2d', 'Features2d/DescriptorImage.no_crash/5', 1000),
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('features2d', 'Features2d/DescriptorImage.no_crash/6', 1000),
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('features2d', 'Features2d/DescriptorImage.no_crash/7', 1000),
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('imgcodecs', 'Imgcodecs_Png.write_big', 1000), # memory limit
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('imgcodecs', 'Imgcodecs_Tiff.decode_tile16384x16384', 1000), # memory limit
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('ml', 'ML_RTrees.regression', 1423.47),
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