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Optimization for getLines
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fee8f29f48
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@ -728,6 +728,7 @@ static bool ocl_HoughLines(InputArray _src, OutputArray _lines, double rho, doub
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if (!fillAccumKernel.run(2, globalThreads, fillAccumLT, false))
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return false;
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const int pixPerWI = 8;
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ocl::Kernel getLinesKernel("get_lines", ocl::imgproc::hough_lines_oclsrc,
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format("-D GET_LINES"));
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if (getLinesKernel.empty())
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@ -740,7 +741,7 @@ static bool ocl_HoughLines(InputArray _src, OutputArray _lines, double rho, doub
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getLinesKernel.args(ocl::KernelArg::ReadOnly(accum), ocl::KernelArg::WriteOnlyNoSize(lines),
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ocl::KernelArg::PtrWriteOnly(counters), linesMax, threshold, (float) rho, (float) theta);
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globalThreads[0] = numrho; globalThreads[1] = numangle;
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globalThreads[0] = (numrho + pixPerWI - 1)/pixPerWI; globalThreads[1] = numangle;
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if (!getLinesKernel.run(2, globalThreads, NULL, false))
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return false;
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@ -88,7 +88,7 @@ __kernel void fill_accum_local(__global const uchar * list_ptr, int list_step, i
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__global uchar * accum_ptr, int accum_step, int accum_offset, int accum_rows, int accum_cols,
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int total_points, float irho, float theta, int numrho, int numangle)
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{
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int theta_idx = get_global_id(1);
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int theta_idx = get_group_id(1);
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int count_idx = get_local_id(0);
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if (theta_idx > 0 && theta_idx < numangle + 1)
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@ -140,32 +140,37 @@ __kernel void get_lines(__global uchar * accum_ptr, int accum_step, int accum_of
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__global uchar * lines_ptr, int lines_step, int lines_offset, __global int* lines_index_ptr,
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int linesMax, int threshold, float rho, float theta)
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{
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int x = get_global_id(0);
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int x0 = get_global_id(0);
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int y = get_global_id(1);
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int gl_size = get_global_size(0);
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if (x < accum_cols-2 && y < accum_rows-2)
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if (y < accum_rows-2)
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{
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__global uchar* accum = accum_ptr + mad24(y+1, accum_step, mad24(x+1, (int) sizeof(int), accum_offset));
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__global uchar* accum = accum_ptr + mad24(y+1, accum_step, mad24(x0+1, (int) sizeof(int), accum_offset));
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__global float2* lines = (__global float2*)(lines_ptr + lines_offset);
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__global int* lines_index = lines_index_ptr + 1;
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int curVote = ACCUM(accum);
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if (curVote > threshold && curVote > ACCUM(accum - sizeof(int)) && curVote >= ACCUM(accum + sizeof(int)) &&
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curVote > ACCUM(accum - accum_step) && curVote >= ACCUM(accum + accum_step))
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for (int x=x0; x<accum_cols-2; x+=gl_size)
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{
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int index = atomic_inc(lines_index);
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int curVote = ACCUM(accum);
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if (index < linesMax)
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if (curVote > threshold && curVote > ACCUM(accum - sizeof(int)) && curVote >= ACCUM(accum + sizeof(int)) &&
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curVote > ACCUM(accum - accum_step) && curVote >= ACCUM(accum + accum_step))
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{
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float radius = (x - (accum_cols - 3) * 0.5f) * rho;
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float angle = y * theta;
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int index = atomic_inc(lines_index);
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lines[index] = (float2)(radius, angle);
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if (index < linesMax)
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{
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float radius = (x - (accum_cols - 3) * 0.5f) * rho;
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float angle = y * theta;
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lines[index] = (float2)(radius, angle);
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}
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}
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accum += gl_size * (int) sizeof(int);
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}
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}
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}
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#endif
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#endif
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