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Open Source Computer Vision Library
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84 lines
3.9 KiB
84 lines
3.9 KiB
#ifndef __OPENCV_PERF_GPU_UTILITY_HPP__ |
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#define __OPENCV_PERF_GPU_UTILITY_HPP__ |
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#include "opencv2/core/core.hpp" |
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#include "opencv2/core/gpumat.hpp" |
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#include "opencv2/imgproc/imgproc.hpp" |
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#include "opencv2/ts/ts_perf.hpp" |
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void fillRandom(cv::Mat& m, double a = 0.0, double b = 255.0); |
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cv::Mat readImage(const std::string& fileName, int flags = cv::IMREAD_COLOR); |
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using perf::MatType; |
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using perf::MatDepth; |
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CV_ENUM(BorderMode, cv::BORDER_REFLECT101, cv::BORDER_REPLICATE, cv::BORDER_CONSTANT, cv::BORDER_REFLECT, cv::BORDER_WRAP) |
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#define ALL_BORDER_MODES testing::ValuesIn(BorderMode::all()) |
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CV_ENUM(Interpolation, cv::INTER_NEAREST, cv::INTER_LINEAR, cv::INTER_CUBIC, cv::INTER_AREA) |
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#define ALL_INTERPOLATIONS testing::ValuesIn(Interpolation::all()) |
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CV_ENUM(NormType, cv::NORM_INF, cv::NORM_L1, cv::NORM_L2, cv::NORM_HAMMING, cv::NORM_MINMAX) |
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const int Gray = 1, TwoChannel = 2, BGR = 3, BGRA = 4; |
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CV_ENUM(MatCn, Gray, TwoChannel, BGR, BGRA) |
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#define GPU_CHANNELS_1_3_4 testing::Values(Gray, BGR, BGRA) |
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#define GPU_CHANNELS_1_3 testing::Values(Gray, BGR) |
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struct CvtColorInfo |
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{ |
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int scn; |
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int dcn; |
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int code; |
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explicit CvtColorInfo(int scn_=0, int dcn_=0, int code_=0) : scn(scn_), dcn(dcn_), code(code_) {} |
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}; |
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void PrintTo(const CvtColorInfo& info, std::ostream* os); |
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#define GET_PARAM(k) std::tr1::get< k >(GetParam()) |
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#define DEF_PARAM_TEST(name, ...) typedef ::perf::TestBaseWithParam< std::tr1::tuple< __VA_ARGS__ > > name |
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#define DEF_PARAM_TEST_1(name, param_type) typedef ::perf::TestBaseWithParam< param_type > name |
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DEF_PARAM_TEST_1(Sz, cv::Size); |
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typedef perf::Size_MatType Sz_Type; |
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DEF_PARAM_TEST(Sz_Depth, cv::Size, MatDepth); |
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DEF_PARAM_TEST(Sz_Depth_Cn, cv::Size, MatDepth, MatCn); |
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#define GPU_TYPICAL_MAT_SIZES testing::Values(perf::sz720p, perf::szSXGA, perf::sz1080p) |
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#define GPU_SANITY_CHECK(dmat, ...) \ |
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do{ \ |
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cv::Mat d##dmat(dmat); \ |
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SANITY_CHECK(d##dmat, ## __VA_ARGS__); \ |
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} while(0) |
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#define CPU_SANITY_CHECK(cmat, ...) \ |
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do{ \ |
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SANITY_CHECK(cmat, ## __VA_ARGS__); \ |
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} while(0) |
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#define GPU_SANITY_CHECK_KEYPOINTS(alg, dmat, ...) \ |
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do{ \ |
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cv::Mat d##dmat(dmat); \ |
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cv::Mat __pt_x = d##dmat.row(cv::gpu::alg##_GPU::X_ROW); \ |
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cv::Mat __pt_y = d##dmat.row(cv::gpu::alg##_GPU::Y_ROW); \ |
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cv::Mat __angle = d##dmat.row(cv::gpu::alg##_GPU::ANGLE_ROW); \ |
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cv::Mat __octave = d##dmat.row(cv::gpu::alg##_GPU::OCTAVE_ROW); \ |
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cv::Mat __size = d##dmat.row(cv::gpu::alg##_GPU::SIZE_ROW); \ |
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::perf::Regression::add(this, std::string(#dmat) + "-pt-x-row", __pt_x, ## __VA_ARGS__); \ |
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::perf::Regression::add(this, std::string(#dmat) + "-pt-y-row", __pt_y, ## __VA_ARGS__); \ |
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::perf::Regression::add(this, std::string(#dmat) + "-angle-row", __angle, ## __VA_ARGS__); \ |
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::perf::Regression::add(this, std::string(#dmat) + "octave-row", __octave, ## __VA_ARGS__); \ |
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::perf::Regression::add(this, std::string(#dmat) + "-pt-size-row", __size, ## __VA_ARGS__); \ |
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} while(0) |
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#define GPU_SANITY_CHECK_RESPONSE(alg, dmat, ...) \ |
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do{ \ |
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cv::Mat d##dmat(dmat); \ |
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cv::Mat __response = d##dmat.row(cv::gpu::alg##_GPU::RESPONSE_ROW); \ |
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::perf::Regression::add(this, std::string(#dmat) + "-response-row", __response, ## __VA_ARGS__); \ |
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} while(0) |
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#define FAIL_NO_CPU() FAIL() << "No such CPU implementation analogy" |
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#endif // __OPENCV_PERF_GPU_UTILITY_HPP__
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