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__kernel void avgblur_horiz(__write_only image2d_t dst, |
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__read_only image2d_t src, |
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int rad) |
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{ |
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const sampler_t sampler = (CLK_NORMALIZED_COORDS_FALSE | |
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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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int2 size = (int2)(get_global_size(0), get_global_size(1)); |
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int count = 0; |
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float4 acc = (float4)(0,0,0,0); |
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for (int xx = max(0, loc.x - rad); xx < min(loc.x + rad + 1, size.x); xx++) { |
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count++; |
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acc += read_imagef(src, sampler, (int2)(xx, loc.y)); |
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} |
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write_imagef(dst, loc, acc / count); |
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} |
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__kernel void avgblur_vert(__write_only image2d_t dst, |
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__read_only image2d_t src, |
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int radv) |
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{ |
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const sampler_t sampler = (CLK_NORMALIZED_COORDS_FALSE | |
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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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int2 size = (int2)(get_global_size(0), get_global_size(1)); |
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int count = 0; |
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float4 acc = (float4)(0,0,0,0); |
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for (int yy = max(0, loc.y - radv); yy < min(loc.y + radv + 1, size.y); yy++) { |
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count++; |
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acc += read_imagef(src, sampler, (int2)(loc.x, yy)); |
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} |
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write_imagef(dst, loc, acc / count); |
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} |
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