fix-variance-estimation
parent
e8da2d947a
commit
19ee850211
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@ -65,29 +65,31 @@ void cuAmpcorChunk::run(int idxDown_, int idxAcross_)
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// 41 x 41, if halfsearchrange=20
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// 41 x 41, if halfsearchrange=20
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cuArraysMaxloc2D(r_corrBatchRaw, offsetInit, r_maxval, stream);
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cuArraysMaxloc2D(r_corrBatchRaw, offsetInit, r_maxval, stream);
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// Estimation of statistics
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// estimate variance
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// Extraction of correlation surface around the peak
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cuEstimateVariance(r_referenceBatchRaw->size, r_corrBatchRaw, offsetInit, r_maxval, r_covValue, stream);
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// estimate SNR
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// step1: extraction of correlation surface around the peak
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cuArraysCopyExtractCorr(r_corrBatchRaw, r_corrBatchRawZoomIn, i_corrBatchZoomInValid, offsetInit, stream);
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cuArraysCopyExtractCorr(r_corrBatchRaw, r_corrBatchRawZoomIn, i_corrBatchZoomInValid, offsetInit, stream);
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// Summation of correlation and data point values
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// step2: summation of correlation and data point values
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cuArraysSumCorr(r_corrBatchRawZoomIn, i_corrBatchZoomInValid, r_corrBatchSum, i_corrBatchValidCount, stream);
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cuArraysSumCorr(r_corrBatchRawZoomIn, i_corrBatchZoomInValid, r_corrBatchSum, i_corrBatchValidCount, stream);
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#ifdef CUAMPCOR_DEBUG
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#ifdef CUAMPCOR_DEBUG
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r_maxval->outputToFile("r_maxval", stream);
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r_corrBatchRawZoomIn->outputToFile("r_corrBatchRawStatZoomIn", stream);
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i_corrBatchZoomInValid->outputToFile("i_corrBatchZoomInValid", stream);
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i_corrBatchZoomInValid->outputToFile("i_corrBatchZoomInValid", stream);
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r_corrBatchSum->outputToFile("r_corrBatchSum", stream);
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r_corrBatchSum->outputToFile("r_corrBatchSum", stream);
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i_corrBatchValidCount->outputToFile("i_corrBatchValidCount", stream);
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#endif
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#endif
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// SNR
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// step3: divide the peak value by the mean of surrounding values
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cuEstimateSnr(r_corrBatchSum, i_corrBatchValidCount, r_maxval, r_snrValue, stream);
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cuEstimateSnr(r_corrBatchSum, i_corrBatchValidCount, r_maxval, r_snrValue, stream);
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// Variance
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cuEstimateVariance(r_corrBatchRaw, offsetInit, r_maxval, r_covValue, stream);
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#ifdef CUAMPCOR_DEBUG
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#ifdef CUAMPCOR_DEBUG
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offsetInit->outputToFile("i_offsetInit", stream);
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offsetInit->outputToFile("i_offsetInit", stream);
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r_maxval->outputToFile("r_maxval", stream);
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r_snrValue->outputToFile("r_snrValue", stream);
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r_corrBatchRawZoomIn->outputToFile("r_corrBatchRawStatZoomIn", stream);
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r_covValue->outputToFile("r_covValue", stream);
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i_corrBatchZoomInValid->outputToFile("i_corrBatchStatZoomInValid", stream);
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#endif
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#endif
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// Using the approximate estimation to adjust secondary image (half search window size becomes only 4 pixels)
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// Using the approximate estimation to adjust secondary image (half search window size becomes only 4 pixels)
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@ -91,7 +91,7 @@ void cuArraysSumCorr(cuArrays<float> *images, cuArrays<int> *imagesValid, cuArra
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void cuEstimateSnr(cuArrays<float> *corrSum, cuArrays<int> *corrValidCount, cuArrays<float> *maxval, cuArrays<float> *snrValue, cudaStream_t stream);
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void cuEstimateSnr(cuArrays<float> *corrSum, cuArrays<int> *corrValidCount, cuArrays<float> *maxval, cuArrays<float> *snrValue, cudaStream_t stream);
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// implemented in cuEstimateStats.cu
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// implemented in cuEstimateStats.cu
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void cuEstimateVariance(cuArrays<float> *corrBatchRaw, cuArrays<int2> *maxloc, cuArrays<float> *maxval, cuArrays<float3> *covValue, cudaStream_t stream);
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void cuEstimateVariance(int winSize, cuArrays<float> *corrBatchRaw, cuArrays<int2> *maxloc, cuArrays<float> *maxval, cuArrays<float3> *covValue, cudaStream_t stream);
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#endif
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#endif
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@ -46,7 +46,7 @@ void cuEstimateSnr(cuArrays<float> *corrSum, cuArrays<int> *corrValidCount, cuAr
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}
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}
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// cuda kernel for cuEstimateVariance
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// cuda kernel for cuEstimateVariance
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__global__ void cudaKernel_estimateVar(const float* corrBatchRaw, const int NX, const int NY,
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__global__ void cudaKernel_estimateVar(const int winSize, const float* corrBatchRaw, const int NX, const int NY,
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const int2* maxloc, const float* maxval, float3* covValue, const int size)
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const int2* maxloc, const float* maxval, float3* covValue, const int size)
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{
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{
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@ -78,14 +78,12 @@ __global__ void cudaKernel_estimateVar(const float* corrBatchRaw, const int NX,
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int idx21 = offset + (px + 1) * NY + py ;
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int idx21 = offset + (px + 1) * NY + py ;
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int idx22 = offset + (px + 1) * NY + py + 1;
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int idx22 = offset + (px + 1) * NY + py + 1;
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float dxx = - ( corrBatchRaw[idx21] + corrBatchRaw[idx01] - 2*corrBatchRaw[idx11] ) * 0.5;
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float dxx = - ( corrBatchRaw[idx21] + corrBatchRaw[idx01] - 2*corrBatchRaw[idx11] ) * 1.0;
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float dyy = - ( corrBatchRaw[idx12] + corrBatchRaw[idx10] - 2*corrBatchRaw[idx11] ) * 0.5;
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float dyy = - ( corrBatchRaw[idx12] + corrBatchRaw[idx10] - 2*corrBatchRaw[idx11] ) * 1.0;
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float dxy = - ( corrBatchRaw[idx22] + corrBatchRaw[idx00] - corrBatchRaw[idx20] - corrBatchRaw[idx02] ) *0.25;
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float dxy = ( corrBatchRaw[idx22] + corrBatchRaw[idx00] - corrBatchRaw[idx20] - corrBatchRaw[idx02] ) *0.25;
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float n2 = fmaxf(1 - peak, 0.0);
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float n2 = fmaxf(1 - peak, 0.0);
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int winSize = NX*NY;
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dxx = dxx * winSize;
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dxx = dxx * winSize;
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dyy = dyy * winSize;
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dyy = dyy * winSize;
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dxy = dxy * winSize;
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dxy = dxy * winSize;
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@ -113,18 +111,19 @@ __global__ void cudaKernel_estimateVar(const float* corrBatchRaw, const int NX,
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/**
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/**
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* Estimate the variance of the correlation surface
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* Estimate the variance of the correlation surface
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* @param[in] winSize size of reference chip
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* @param[in] corrBatchRaw correlation surface
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* @param[in] corrBatchRaw correlation surface
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* @param[in] maxloc maximum location
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* @param[in] maxloc maximum location
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* @param[in] maxval maximum value
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* @param[in] maxval maximum value
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* @param[out] covValue variance value
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* @param[out] covValue variance value
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* @param[in] stream cuda stream
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* @param[in] stream cuda stream
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*/
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*/
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void cuEstimateVariance(cuArrays<float> *corrBatchRaw, cuArrays<int2> *maxloc, cuArrays<float> *maxval, cuArrays<float3> *covValue, cudaStream_t stream)
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void cuEstimateVariance(int winSize, cuArrays<float> *corrBatchRaw, cuArrays<int2> *maxloc, cuArrays<float> *maxval, cuArrays<float3> *covValue, cudaStream_t stream)
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{
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{
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int size = corrBatchRaw->count;
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int size = corrBatchRaw->count;
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// One dimensional launching parameters to loop over every correlation surface.
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// One dimensional launching parameters to loop over every correlation surface.
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cudaKernel_estimateVar<<< IDIVUP(size, NTHREADS), NTHREADS, 0, stream>>>
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cudaKernel_estimateVar<<< IDIVUP(size, NTHREADS), NTHREADS, 0, stream>>>
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(corrBatchRaw->devData, corrBatchRaw->height, corrBatchRaw->width, maxloc->devData, maxval->devData, covValue->devData, size);
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(winSize, corrBatchRaw->devData, corrBatchRaw->height, corrBatchRaw->width, maxloc->devData, maxval->devData, covValue->devData, size);
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getLastCudaError("cudaKernel_estimateVar error\n");
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getLastCudaError("cudaKernel_estimateVar error\n");
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}
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}
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//end of file
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//end of file
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