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https://github.com/FFmpeg/FFmpeg.git
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581bafa83b
Add opencl version of sobel, prewitt, roberts filters.
128 lines
5.4 KiB
Common Lisp
128 lines
5.4 KiB
Common Lisp
/*
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* Copyright (c) 2018 Danil Iashchenko
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*
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* This file is part of FFmpeg.
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*
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* FFmpeg is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* FFmpeg is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with FFmpeg; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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__kernel void convolution_global(__write_only image2d_t dst,
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__read_only image2d_t src,
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int coef_matrix_dim,
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__constant float *coef_matrix,
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float div,
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float bias)
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{
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const sampler_t sampler = (CLK_NORMALIZED_COORDS_FALSE |
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CLK_ADDRESS_CLAMP_TO_EDGE |
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CLK_FILTER_NEAREST);
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const int half_matrix_dim = (coef_matrix_dim / 2);
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int2 loc = (int2)(get_global_id(0), get_global_id(1));
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float4 convPix = (float4)(0.0f, 0.0f, 0.0f, 0.0f);
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for (int conv_i = -half_matrix_dim; conv_i <= half_matrix_dim; conv_i++) {
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for (int conv_j = -half_matrix_dim; conv_j <= half_matrix_dim; conv_j++) {
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float4 px = read_imagef(src, sampler, loc + (int2)(conv_j, conv_i));
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convPix += px * coef_matrix[(conv_i + half_matrix_dim) * coef_matrix_dim +
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(conv_j + half_matrix_dim)];
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}
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}
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float4 dstPix = convPix * div + bias;
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write_imagef(dst, loc, dstPix);
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}
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__kernel void sobel_global(__write_only image2d_t dst,
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__read_only image2d_t src,
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float div,
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float bias)
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{
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const sampler_t sampler = (CLK_NORMALIZED_COORDS_FALSE |
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CLK_ADDRESS_CLAMP_TO_EDGE |
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CLK_FILTER_NEAREST);
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int2 loc = (int2)(get_global_id(0), get_global_id(1));
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float4 sum1 = read_imagef(src, sampler, loc + (int2)(-1,-1)) * -1 +
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read_imagef(src, sampler, loc + (int2)( 0,-1)) * -2 +
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read_imagef(src, sampler, loc + (int2)( 1,-1)) * -1 +
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read_imagef(src, sampler, loc + (int2)(-1, 1)) * 1 +
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read_imagef(src, sampler, loc + (int2)( 0, 1)) * 2 +
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read_imagef(src, sampler, loc + (int2)( 1, 1)) * 1;
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float4 sum2 = read_imagef(src, sampler, loc + (int2)(-1,-1)) * -1 +
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read_imagef(src, sampler, loc + (int2)(-1, 0)) * -2 +
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read_imagef(src, sampler, loc + (int2)(-1, 1)) * -1 +
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read_imagef(src, sampler, loc + (int2)( 1,-1)) * 1 +
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read_imagef(src, sampler, loc + (int2)( 1, 0)) * 2 +
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read_imagef(src, sampler, loc + (int2)( 1, 1)) * 1;
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float4 dstPix = hypot(sum1, sum2) * div + bias;
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write_imagef(dst, loc, dstPix);
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}
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__kernel void prewitt_global(__write_only image2d_t dst,
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__read_only image2d_t src,
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float div,
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float bias)
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{
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const sampler_t sampler = (CLK_NORMALIZED_COORDS_FALSE |
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CLK_ADDRESS_CLAMP_TO_EDGE |
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CLK_FILTER_NEAREST);
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int2 loc = (int2)(get_global_id(0), get_global_id(1));
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float4 sum1 = read_imagef(src, sampler, loc + (int2)(-1,-1)) * 1 +
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read_imagef(src, sampler, loc + (int2)( 0,-1)) * 1 +
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read_imagef(src, sampler, loc + (int2)( 1,-1)) * 1 +
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read_imagef(src, sampler, loc + (int2)(-1, 1)) * -1 +
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read_imagef(src, sampler, loc + (int2)( 0, 1)) * -1 +
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read_imagef(src, sampler, loc + (int2)( 1, 1)) * -1;
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float4 sum2 = read_imagef(src, sampler, loc + (int2)(-1,-1)) * 1 +
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read_imagef(src, sampler, loc + (int2)(-1, 0)) * 1 +
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read_imagef(src, sampler, loc + (int2)(-1, 1)) * 1 +
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read_imagef(src, sampler, loc + (int2)( 1,-1)) * -1 +
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read_imagef(src, sampler, loc + (int2)( 1, 0)) * -1 +
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read_imagef(src, sampler, loc + (int2)( 1, 1)) * -1;
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float4 dstPix = hypot(sum1, sum2) * div + bias;
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write_imagef(dst, loc, dstPix);
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}
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__kernel void roberts_global(__write_only image2d_t dst,
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__read_only image2d_t src,
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float div,
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float bias)
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{
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const sampler_t sampler = (CLK_NORMALIZED_COORDS_FALSE |
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CLK_ADDRESS_CLAMP_TO_EDGE |
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CLK_FILTER_NEAREST);
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int2 loc = (int2)(get_global_id(0), get_global_id(1));
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float4 sum1 = read_imagef(src, sampler, loc + (int2)(-1,-1)) * 1 +
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read_imagef(src, sampler, loc + (int2)( 0,-1)) * -1;
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float4 sum2 = read_imagef(src, sampler, loc + (int2)(-1, 0)) * -1 +
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read_imagef(src, sampler, loc + (int2)( 0, 0)) * 1;
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float4 dstPix = hypot(sum1, sum2) * div + bias;
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write_imagef(dst, loc, dstPix);
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}
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