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@ -338,7 +338,7 @@ static void findStereoCorrespondenceBM_SSE2( const Mat& left, const Mat& right, |
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int ftzero = state.preFilterCap; |
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int textureThreshold = state.textureThreshold; |
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int uniquenessRatio = state.uniquenessRatio; |
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short FILTERED = (short)((mindisp - 1) << DISPARITY_SHIFT); |
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short FILTERED = (short)((mindisp - 1) << DISPARITY_SHIFT_16S); |
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ushort *sad, *hsad0, *hsad, *hsad_sub; |
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int *htext; |
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@ -1096,7 +1096,14 @@ public: |
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if( params.uniquenessRatio < 0 ) |
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CV_Error( Error::StsOutOfRange, "uniqueness ratio must be non-negative" ); |
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int FILTERED = (params.minDisparity - 1) << DISPARITY_SHIFT; |
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int disp_shift; |
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if (dtype == CV_16SC1) |
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disp_shift = DISPARITY_SHIFT_16S; |
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else |
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disp_shift = DISPARITY_SHIFT_32S; |
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int FILTERED = (params.minDisparity - 1) << disp_shift; |
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#ifdef HAVE_OPENCL |
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if(ocl::useOpenCL() && disparr.isUMat() && params.textureThreshold == 0) |
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@ -1109,7 +1116,7 @@ public: |
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if( params.speckleRange >= 0 && params.speckleWindowSize > 0 ) |
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filterSpeckles(disparr.getMat(), FILTERED, params.speckleWindowSize, params.speckleRange, slidingSumBuf); |
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if (dtype == CV_32F) |
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disparr.getUMat().convertTo(disparr, CV_32FC1, 1./(1 << DISPARITY_SHIFT), 0); |
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disparr.getUMat().convertTo(disparr, CV_32FC1, 1./(1 << disp_shift), 0); |
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CV_IMPL_ADD(CV_IMPL_OCL); |
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return; |
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} |
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@ -1138,7 +1145,7 @@ public: |
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if( lofs >= width || rofs >= width || width1 < 1 ) |
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{ |
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disp0 = Scalar::all( FILTERED * ( disp0.type() < CV_32F ? 1 : 1./(1 << DISPARITY_SHIFT) ) ); |
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disp0 = Scalar::all( FILTERED * ( disp0.type() < CV_32F ? 1 : 1./(1 << disp_shift) ) ); |
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return; |
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} |
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@ -1194,7 +1201,7 @@ public: |
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filterSpeckles(disp, FILTERED, params.speckleWindowSize, params.speckleRange, slidingSumBuf); |
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if (disp0.data != disp.data) |
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disp.convertTo(disp0, disp0.type(), 1./(1 << DISPARITY_SHIFT), 0); |
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disp.convertTo(disp0, disp0.type(), 1./(1 << disp_shift), 0); |
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} |
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int getMinDisparity() const { return params.minDisparity; } |
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