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@ -364,6 +364,7 @@ Scalar cv::ocl::sum(const oclMat &src) |
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if (!src.clCxt->supportsFeature(FEATURE_CL_DOUBLE) && src.depth() == CV_64F) |
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{ |
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CV_Error(CV_GpuNotSupported, "Selected device doesn't support double"); |
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return Scalar::all(0); |
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} |
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static sumFunc functab[3] = |
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{ |
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@ -372,11 +373,7 @@ Scalar cv::ocl::sum(const oclMat &src) |
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arithmetic_sum<double> |
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}; |
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bool hasDouble = src.clCxt->supportsFeature(FEATURE_CL_DOUBLE); |
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int ddepth = std::max(src.depth(), CV_32S); |
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if (!hasDouble && ddepth == CV_64F) |
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ddepth = CV_32F; |
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sumFunc func = functab[ddepth - CV_32S]; |
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return func(src, SUM, ddepth); |
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} |
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@ -386,7 +383,9 @@ Scalar cv::ocl::absSum(const oclMat &src) |
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if (!src.clCxt->supportsFeature(FEATURE_CL_DOUBLE) && src.depth() == CV_64F) |
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{ |
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CV_Error(CV_GpuNotSupported, "Selected device doesn't support double"); |
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return cv::Scalar::all(0); |
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} |
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static sumFunc functab[3] = |
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{ |
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arithmetic_sum<int>, |
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@ -394,11 +393,7 @@ Scalar cv::ocl::absSum(const oclMat &src) |
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arithmetic_sum<double> |
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}; |
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bool hasDouble = src.clCxt->supportsFeature(FEATURE_CL_DOUBLE); |
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int ddepth = std::max(src.depth(), CV_32S); |
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if (!hasDouble && ddepth == CV_64F) |
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ddepth = CV_32F; |
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sumFunc func = functab[ddepth - CV_32S]; |
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return func(src, ABS_SUM, ddepth); |
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} |
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@ -408,17 +403,16 @@ Scalar cv::ocl::sqrSum(const oclMat &src) |
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if (!src.clCxt->supportsFeature(FEATURE_CL_DOUBLE) && src.depth() == CV_64F) |
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{ |
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CV_Error(CV_GpuNotSupported, "Selected device doesn't support double"); |
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return cv::Scalar::all(0); |
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} |
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static sumFunc functab[3] = |
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{ |
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arithmetic_sum<int>, |
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arithmetic_sum<double>, |
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arithmetic_sum<float>, |
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arithmetic_sum<double> |
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}; |
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bool hasDouble = src.clCxt->supportsFeature(FEATURE_CL_DOUBLE); |
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int ddepth = src.depth() <= CV_32S ? CV_32S : (hasDouble ? CV_64F : CV_32F); |
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int ddepth = src.depth() <= CV_32S ? CV_32S : CV_64F; |
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sumFunc func = functab[ddepth - CV_32S]; |
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return func(src, SQR_SUM, ddepth); |
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} |
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@ -539,6 +533,7 @@ void cv::ocl::minMax(const oclMat &src, double *minVal, double *maxVal, const oc |
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if (!src.clCxt->supportsFeature(FEATURE_CL_DOUBLE) && src.depth() == CV_64F) |
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{ |
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CV_Error(CV_GpuNotSupported, "Selected device doesn't support double"); |
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return; |
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} |
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static minMaxFunc functab[] = |
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@ -569,13 +564,17 @@ double cv::ocl::norm(const oclMat &src1, int normType) |
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return norm(src1, oclMat(), normType); |
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} |
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static void arithm_absdiff_nonsaturate_run(const oclMat & src1, const oclMat & src2, oclMat & diff) |
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static void arithm_absdiff_nonsaturate_run(const oclMat & src1, const oclMat & src2, oclMat & diff, int ntype) |
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{ |
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CV_Assert(src1.step % src1.elemSize() == 0 && (src2.empty() || src2.step % src2.elemSize() == 0)); |
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Context *clCxt = src1.clCxt; |
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int ddepth = CV_64F; |
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int ddepth = std::max(src1.depth(), CV_32S); |
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if (ntype == NORM_L2) |
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ddepth = std::max<int>(CV_32F, ddepth); |
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diff.create(src1.size(), CV_MAKE_TYPE(ddepth, src1.channels())); |
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CV_Assert(diff.step % diff.elemSize() == 0); |
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int oclChannels = src1.oclchannels(), sdepth = src1.depth(); |
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int src1step1 = src1.step / src1.elemSize(), src1offset1 = src1.offset / src1.elemSize(); |
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@ -638,7 +637,8 @@ double cv::ocl::norm(const oclMat &src1, const oclMat &src2, int normType) |
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int cn = src1.channels(); |
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double r = 0; |
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oclMat diff; |
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arithm_absdiff_nonsaturate_run(src1, src2, diff); |
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arithm_absdiff_nonsaturate_run(src1, src2, diff, normType); |
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switch (normType) |
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{ |
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