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RGB[A] <-> XYZ
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@ -345,7 +345,70 @@ __kernel void YCrCb2RGB(__global const uchar* src, int src_step, int src_offset,
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}
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}
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///////////////////////////////////// RGB <-> XYZ //////////////////////////////////////
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__kernel void RGB2XYZ(int cols, int rows, int src_step, int dst_step,
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int bidx, __global const DATA_TYPE* src, __global DATA_TYPE* dst,
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int src_offset, int dst_offset, __constant COEFF_TYPE * coeffs)
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{
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int dx = get_global_id(0);
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int dy = get_global_id(1);
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if (dy < rows && dx < cols)
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{
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dx <<= 2;
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int src_idx = mad24(dy, src_step, src_offset + dx);
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int dst_idx = mad24(dy, dst_step, dst_offset + dx);
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DATA_TYPE r = src[src_idx], g = src[src_idx + 1], b = src[src_idx + 2];
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#ifdef DEPTH_5
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float x = r * coeffs[0] + g * coeffs[1] + b * coeffs[2];
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float y = r * coeffs[3] + g * coeffs[4] + b * coeffs[5];
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float z = r * coeffs[6] + g * coeffs[7] + b * coeffs[8];
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#else
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int x = CV_DESCALE(r * coeffs[0] + g * coeffs[1] + b * coeffs[2], xyz_shift);
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int y = CV_DESCALE(r * coeffs[3] + g * coeffs[4] + b * coeffs[5], xyz_shift);
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int z = CV_DESCALE(r * coeffs[6] + g * coeffs[7] + b * coeffs[8], xyz_shift);
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#endif
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dst[dst_idx] = SAT_CAST(x);
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dst[dst_idx + 1] = SAT_CAST(y);
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dst[dst_idx + 2] = SAT_CAST(z);
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}
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}
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__kernel void XYZ2RGB(int cols, int rows, int src_step, int dst_step,
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int bidx, __global const DATA_TYPE* src, __global DATA_TYPE* dst,
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int src_offset, int dst_offset, __constant COEFF_TYPE * coeffs)
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{
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int dx = get_global_id(0);
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int dy = get_global_id(1);
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if (dy < rows && dx < cols)
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{
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dx <<= 2;
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int src_idx = mad24(dy, src_step, src_offset + dx);
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int dst_idx = mad24(dy, dst_step, dst_offset + dx);
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DATA_TYPE x = src[src_idx], y = src[src_idx + 1], z = src[src_idx + 2];
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#ifdef DEPTH_5
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float b = x * coeffs[0] + y * coeffs[1] + z * coeffs[2];
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float g = x * coeffs[3] + y * coeffs[4] + z * coeffs[5];
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float r = x * coeffs[6] + y * coeffs[7] + z * coeffs[8];
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#else
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int b = CV_DESCALE(x * coeffs[0] + y * coeffs[1] + z * coeffs[2], xyz_shift);
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int g = CV_DESCALE(x * coeffs[3] + y * coeffs[4] + z * coeffs[5], xyz_shift);
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int r = CV_DESCALE(x * coeffs[6] + y * coeffs[7] + z * coeffs[8], xyz_shift);
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#endif
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dst[dst_idx] = SAT_CAST(b);
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dst[dst_idx + 1] = SAT_CAST(g);
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dst[dst_idx + 2] = SAT_CAST(r);
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#if dcn == 4
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dst[dst_idx + 3] = MAX_NUM;
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#endif
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}
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}
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@ -91,46 +91,6 @@ enum
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BLOCK_SIZE = 256
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};
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__constant float c_YCrCb2RGBCoeffs_f[4] = { 1.403f, -0.714f, -0.344f, 1.773f };
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__constant int c_YCrCb2RGBCoeffs_i[4] = { 22987, -11698, -5636, 29049 };
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__kernel void YCrCb2RGB(int cols, int rows, int src_step, int dst_step,
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int bidx, __global const DATA_TYPE* src, __global DATA_TYPE* dst,
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int src_offset, int dst_offset)
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{
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int x = get_global_id(0);
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int y = get_global_id(1);
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if (y < rows && x < cols)
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{
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x <<= 2;
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int src_idx = mad24(y, src_step, src_offset + x);
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int dst_idx = mad24(y, dst_step, dst_offset + x);
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DATA_TYPE ycrcb[] = { src[src_idx], src[src_idx + 1], src[src_idx + 2] };
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#ifdef DEPTH_5
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__constant float * coeff = c_YCrCb2RGBCoeffs_f;
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float r = ycrcb[0] + coeff[0] * (ycrcb[1] - HALF_MAX);
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float g = ycrcb[0] + coeff[1] * (ycrcb[1] - HALF_MAX) + coeff[2] * (ycrcb[2] - HALF_MAX);
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float b = ycrcb[0] + coeff[3] * (ycrcb[2] - HALF_MAX);
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#else
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__constant int * coeff = c_YCrCb2RGBCoeffs_i;
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int r = ycrcb[0] + CV_DESCALE(coeff[0] * (ycrcb[1] - HALF_MAX), yuv_shift);
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int g = ycrcb[0] + CV_DESCALE(coeff[1] * (ycrcb[1] - HALF_MAX) + coeff[2] * (ycrcb[2] - HALF_MAX), yuv_shift);
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int b = ycrcb[0] + CV_DESCALE(coeff[3] * (ycrcb[2] - HALF_MAX), yuv_shift);
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#endif
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dst[dst_idx + (bidx^2)] = SAT_CAST(r);
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dst[dst_idx + 1] = SAT_CAST(g);
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dst[dst_idx + bidx] = SAT_CAST(b);
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#if dcn == 4
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dst[dst_idx + 3] = MAX_NUM;
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#endif
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}
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}
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///////////////////////////////////// RGB <-> XYZ //////////////////////////////////////
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__kernel void RGB2XYZ(int cols, int rows, int src_step, int dst_step,
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