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80 lines
4.0 KiB
C++
80 lines
4.0 KiB
C++
#ifndef __OPENCV_PERF_GPU_UTILITY_HPP__
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#define __OPENCV_PERF_GPU_UTILITY_HPP__
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#include <iosfwd>
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#include "opencv2/ts/ts.hpp"
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#include "opencv2/highgui/highgui.hpp"
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#include "opencv2/gpu/gpu.hpp"
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using namespace std;
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using namespace cv;
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using namespace cv::gpu;
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using namespace perf;
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enum {HORIZONTAL_AXIS = 0, VERTICAL_AXIS = 1, BOTH_AXIS = -1};
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CV_ENUM(MorphOp, MORPH_ERODE, MORPH_DILATE)
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CV_ENUM(BorderMode, BORDER_REFLECT101, BORDER_REPLICATE, BORDER_CONSTANT, BORDER_REFLECT, BORDER_WRAP)
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CV_ENUM(FlipCode, HORIZONTAL_AXIS, VERTICAL_AXIS, BOTH_AXIS)
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CV_ENUM(CmpOp, CMP_EQ, CMP_GT, CMP_GE, CMP_LT, CMP_LE, CMP_NE)
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CV_ENUM(Interpolation, INTER_NEAREST, INTER_LINEAR, INTER_CUBIC)
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CV_ENUM(MatchMethod, TM_SQDIFF, TM_SQDIFF_NORMED, TM_CCORR, TM_CCORR_NORMED, TM_CCOEFF, TM_CCOEFF_NORMED)
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CV_ENUM(NormType, NORM_INF, NORM_L1, NORM_L2)
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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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typedef TestBaseWithParam<DeviceInfo> DevInfo;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size> > DevInfo_Size;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, MatType> > DevInfo_MatType;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType> > DevInfo_Size_MatType;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, MatType> > DevInfo_Size_MatType_MatType;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, int> > DevInfo_Size_MatType_KernelSize;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, MorphOp, int> > DevInfo_Size_MatType_MorphOp_KernelSize;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, int, BorderMode> > DevInfo_Size_MatType_KernelSize_BorderMode;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, FlipCode> > DevInfo_Size_MatType_FlipCode;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, CmpOp> > DevInfo_Size_MatType_CmpOp;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, Interpolation> > DevInfo_Size_MatType_Interpolation;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, Interpolation, double> > DevInfo_Size_MatType_Interpolation_SizeCoeff;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, Interpolation, BorderMode> > DevInfo_Size_MatType_Interpolation_BorderMode;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, CvtColorInfo> > DevInfo_Size_MatType_CvtColorInfo;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, MatchMethod> > DevInfo_Size_MatType_MatchMethod;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, NormType> > DevInfo_Size_NormType;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, Size, MatType, NormType> > DevInfo_Size_MatType_NormType;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, int> > DevInfo_DescSize;
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typedef TestBaseWithParam< std::tr1::tuple<DeviceInfo, int, int> > DevInfo_K_DescSize;
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const cv::Size sz1800x1500 = cv::Size(1800, 1500);
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const cv::Size sz4700x3000 = cv::Size(4700, 3000);
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#define GPU_TYPICAL_MAT_SIZES szXGA, szSXGA, sz720p, sz1080p, sz1800x1500, sz4700x3000
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//! read image from testdata folder.
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Mat readImage(const string& fileName, int flags = CV_LOAD_IMAGE_COLOR);
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//! return true if device supports specified feature and gpu module was built with support the feature.
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bool supportFeature(const cv::gpu::DeviceInfo& info, cv::gpu::FeatureSet feature);
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//! return all devices compatible with current gpu module build.
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const std::vector<cv::gpu::DeviceInfo>& devices();
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//! return all devices compatible with current gpu module build which support specified feature.
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std::vector<cv::gpu::DeviceInfo> devices(cv::gpu::FeatureSet feature);
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namespace cv
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{
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namespace gpu
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{
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void PrintTo(const DeviceInfo& info, ::std::ostream* os);
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}
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}
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void PrintTo(const CvtColorInfo& info, ::std::ostream* os);
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#endif // __OPENCV_PERF_GPU_UTILITY_HPP__
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