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810 lines
32 KiB
Common Lisp
810 lines
32 KiB
Common Lisp
/*M///////////////////////////////////////////////////////////////////////////////////////
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//
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// IMPORTANT: READ BEFORE DOWNLOADING, COPYING, INSTALLING OR USING.
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//
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// By downloading, copying, installing or using the software you agree to this license.
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// If you do not agree to this license, do not download, install,
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// copy or use the software.
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//
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//
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// License Agreement
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// For Open Source Computer Vision Library
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//
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// Copyright (C) 2010-2012, Institute Of Software Chinese Academy Of Science, all rights reserved.
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// Copyright (C) 2010-2012, Advanced Micro Devices, Inc., all rights reserved.
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// Third party copyrights are property of their respective owners.
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//
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// @Authors
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// Jiang Liyuan, jlyuan001.good@163.com
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// Peng Xiao, pengxiao@outlook.com
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//
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// Redistribution and use in source and binary forms, with or without modification,
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// are permitted provided that the following conditions are met:
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//
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// * Redistribution's of source code must retain the above copyright notice,
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// this list of conditions and the following disclaimer.
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//
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// * Redistribution's in binary form must reproduce the above copyright notice,
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// this list of conditions and the following disclaimer in the documentation
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// and/or other oclMaterials provided with the distribution.
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//
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// * The name of the copyright holders may not be used to endorse or promote products
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// derived from this software without specific prior written permission.
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//
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// This software is provided by the copyright holders and contributors as is and
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// any express or implied warranties, including, but not limited to, the implied
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// warranties of merchantability and fitness for a particular purpose are disclaimed.
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// In no event shall the Intel Corporation or contributors be liable for any direct,
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// indirect, incidental, special, exemplary, or consequential damages
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// (including, but not limited to, procurement of substitute goods or services;
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// loss of use, data, or profits; or business interruption) however caused
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// and on any theory of liability, whether in contract, strict liability,
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// or tort (including negligence or otherwise) arising in any way out of
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// the use of this software, even if advised of the possibility of such damage.
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//
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//M*/
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#if defined (DOUBLE_SUPPORT)
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#ifdef cl_khr_fp64
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#pragma OPENCL EXTENSION cl_khr_fp64:enable
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#elif defined (cl_amd_fp64)
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#pragma OPENCL EXTENSION cl_amd_fp64:enable
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#endif
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#endif
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#ifndef OP_BINARY
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#define OP_BINARY &
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#endif
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//////////////////////////////////////////////////////////////////////////////////////////////////////
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////////////////////////////////////////////bitwise_binary////////////////////////////////////////////
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//////////////////////////////////////////////////////////////////////////////////////////////////////
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/**************************************bitwise_binary with mask**************************************/
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__kernel void arithm_bitwise_binary_with_mask_C1_D0 (
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__global uchar *src1, int src1_step, int src1_offset,
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__global uchar *src2, int src2_step, int src2_offset,
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__global uchar *mask, int mask_step, int mask_offset,
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__global uchar *dst, int dst_step, int dst_offset,
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int rows, int cols, int dst_step1)
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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 (x < cols && y < rows)
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{
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x = x << 2;
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#ifdef dst_align
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#undef dst_align
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#endif
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#define dst_align (dst_offset & 3)
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int src1_index = mad24(y, src1_step, x + src1_offset - dst_align);
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int src2_index = mad24(y, src2_step, x + src2_offset - dst_align);
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int mask_index = mad24(y, mask_step, x + mask_offset - dst_align);
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int dst_start = mad24(y, dst_step, dst_offset);
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int dst_end = mad24(y, dst_step, dst_offset + dst_step1);
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int dst_index = mad24(y, dst_step, dst_offset + x & (int)0xfffffffc);
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uchar4 src1_data = vload4(0, src1 + src1_index);
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uchar4 src2_data = vload4(0, src2 + src2_index);
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uchar4 mask_data = vload4(0, mask + mask_index);
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uchar4 data = *((__global uchar4 *)(dst + dst_index));
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uchar4 tmp_data = src1_data OP_BINARY src2_data;
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data.x = ((mask_data.x) && (dst_index + 0 >= dst_start) && (dst_index + 0 < dst_end)) ? tmp_data.x : data.x;
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data.y = ((mask_data.y) && (dst_index + 1 >= dst_start) && (dst_index + 1 < dst_end)) ? tmp_data.y : data.y;
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data.z = ((mask_data.z) && (dst_index + 2 >= dst_start) && (dst_index + 2 < dst_end)) ? tmp_data.z : data.z;
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data.w = ((mask_data.w) && (dst_index + 3 >= dst_start) && (dst_index + 3 < dst_end)) ? tmp_data.w : data.w;
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*((__global uchar4 *)(dst + dst_index)) = data;
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}
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}
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__kernel void arithm_bitwise_binary_with_mask_C1_D1 (
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__global char *src1, int src1_step, int src1_offset,
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__global char *src2, int src2_step, int src2_offset,
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__global uchar *mask, int mask_step, int mask_offset,
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__global char *dst, int dst_step, int dst_offset,
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int rows, int cols, int dst_step1)
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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 (x < cols && y < rows)
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{
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x = x << 2;
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#ifdef dst_align
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#undef dst_align
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#endif
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#define dst_align (dst_offset & 3)
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int src1_index = mad24(y, src1_step, x + src1_offset - dst_align);
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int src2_index = mad24(y, src2_step, x + src2_offset - dst_align);
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int mask_index = mad24(y, mask_step, x + mask_offset - dst_align);
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int dst_start = mad24(y, dst_step, dst_offset);
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int dst_end = mad24(y, dst_step, dst_offset + dst_step1);
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int dst_index = mad24(y, dst_step, dst_offset + x & (int)0xfffffffc);
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char4 src1_data = vload4(0, src1 + src1_index);
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char4 src2_data = vload4(0, src2 + src2_index);
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uchar4 mask_data = vload4(0, mask + mask_index);
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char4 data = *((__global char4 *)(dst + dst_index));
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char4 tmp_data = src1_data OP_BINARY src2_data;
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data.x = convert_char((mask_data.x) && (dst_index + 0 >= dst_start) && (dst_index + 0 < dst_end)) ? tmp_data.x : data.x;
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data.y = convert_char((mask_data.y) && (dst_index + 1 >= dst_start) && (dst_index + 1 < dst_end)) ? tmp_data.y : data.y;
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data.z = convert_char((mask_data.z) && (dst_index + 2 >= dst_start) && (dst_index + 2 < dst_end)) ? tmp_data.z : data.z;
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data.w = convert_char((mask_data.w) && (dst_index + 3 >= dst_start) && (dst_index + 3 < dst_end)) ? tmp_data.w : data.w;
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*((__global char4 *)(dst + dst_index)) = data;
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}
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}
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__kernel void arithm_bitwise_binary_with_mask_C1_D2 (
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__global ushort *src1, int src1_step, int src1_offset,
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__global ushort *src2, int src2_step, int src2_offset,
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__global uchar *mask, int mask_step, int mask_offset,
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__global ushort *dst, int dst_step, int dst_offset,
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int rows, int cols, int dst_step1)
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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 (x < cols && y < rows)
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{
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x = x << 1;
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#ifdef dst_align
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#undef dst_align
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#endif
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#define dst_align ((dst_offset / 2) & 1)
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int src1_index = mad24(y, src1_step, (x << 1) + src1_offset - (dst_align << 1));
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int src2_index = mad24(y, src2_step, (x << 1) + src2_offset - (dst_align << 1));
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int mask_index = mad24(y, mask_step, x + mask_offset - dst_align);
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int dst_start = mad24(y, dst_step, dst_offset);
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int dst_end = mad24(y, dst_step, dst_offset + dst_step1);
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int dst_index = mad24(y, dst_step, dst_offset + (x << 1) & (int)0xfffffffc);
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ushort2 src1_data = vload2(0, (__global ushort *)((__global char *)src1 + src1_index));
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ushort2 src2_data = vload2(0, (__global ushort *)((__global char *)src2 + src2_index));
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uchar2 mask_data = vload2(0, mask + mask_index);
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ushort2 data = *((__global ushort2 *)((__global uchar *)dst + dst_index));
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ushort2 tmp_data = src1_data OP_BINARY src2_data;
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data.x = convert_ushort((mask_data.x) && (dst_index + 0 >= dst_start) && (dst_index + 0 < dst_end)) ? tmp_data.x : data.x;
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data.y = convert_ushort((mask_data.y) && (dst_index + 2 >= dst_start) && (dst_index + 2 < dst_end)) ? tmp_data.y : data.y;
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*((__global ushort2 *)((__global uchar *)dst + dst_index)) = data;
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}
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}
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__kernel void arithm_bitwise_binary_with_mask_C1_D3 (
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__global short *src1, int src1_step, int src1_offset,
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__global short *src2, int src2_step, int src2_offset,
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__global uchar *mask, int mask_step, int mask_offset,
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__global short *dst, int dst_step, int dst_offset,
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int rows, int cols, int dst_step1)
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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 (x < cols && y < rows)
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{
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x = x << 1;
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#ifdef dst_align
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#undef dst_align
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#endif
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#define dst_align ((dst_offset / 2) & 1)
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int src1_index = mad24(y, src1_step, (x << 1) + src1_offset - (dst_align << 1));
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int src2_index = mad24(y, src2_step, (x << 1) + src2_offset - (dst_align << 1));
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int mask_index = mad24(y, mask_step, x + mask_offset - dst_align);
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int dst_start = mad24(y, dst_step, dst_offset);
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int dst_end = mad24(y, dst_step, dst_offset + dst_step1);
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int dst_index = mad24(y, dst_step, dst_offset + (x << 1) & (int)0xfffffffc);
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short2 src1_data = vload2(0, (__global short *)((__global char *)src1 + src1_index));
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short2 src2_data = vload2(0, (__global short *)((__global char *)src2 + src2_index));
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uchar2 mask_data = vload2(0, mask + mask_index);
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short2 data = *((__global short2 *)((__global uchar *)dst + dst_index));
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short2 tmp_data = src1_data OP_BINARY src2_data;
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data.x = convert_short((mask_data.x) && (dst_index + 0 >= dst_start) && (dst_index + 0 < dst_end)) ? tmp_data.x : data.x;
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data.y = convert_short((mask_data.y) && (dst_index + 2 >= dst_start) && (dst_index + 2 < dst_end)) ? tmp_data.y : data.y;
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*((__global short2 *)((__global uchar *)dst + dst_index)) = data;
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}
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}
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__kernel void arithm_bitwise_binary_with_mask_C1_D4 (
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__global int *src1, int src1_step, int src1_offset,
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__global int *src2, int src2_step, int src2_offset,
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__global uchar *mask, int mask_step, int mask_offset,
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__global int *dst, int dst_step, int dst_offset,
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int rows, int cols, int dst_step1)
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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 (x < cols && y < rows)
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{
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int src1_index = mad24(y, src1_step, (x << 2) + src1_offset);
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int src2_index = mad24(y, src2_step, (x << 2) + src2_offset);
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int mask_index = mad24(y, mask_step, x + mask_offset);
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int dst_index = mad24(y, dst_step, (x << 2) + dst_offset);
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uchar mask_data = *(mask + mask_index);
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int src_data1 = *((__global int *)((__global char *)src1 + src1_index));
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int src_data2 = *((__global int *)((__global char *)src2 + src2_index));
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int dst_data = *((__global int *)((__global char *)dst + dst_index));
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int data = src_data1 OP_BINARY src_data2;
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data = mask_data ? data : dst_data;
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*((__global int *)((__global char *)dst + dst_index)) = data;
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}
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}
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__kernel void arithm_bitwise_binary_with_mask_C1_D5 (
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__global char *src1, int src1_step, int src1_offset,
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__global char *src2, int src2_step, int src2_offset,
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__global uchar *mask, int mask_step, int mask_offset,
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__global char *dst, int dst_step, int dst_offset,
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int rows, int cols, int dst_step1)
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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 (x < cols && y < rows)
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{
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int src1_index = mad24(y, src1_step, (x << 2) + src1_offset);
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int src2_index = mad24(y, src2_step, (x << 2) + src2_offset);
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int mask_index = mad24(y, mask_step, x + mask_offset);
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int dst_index = mad24(y, dst_step, (x << 2) + dst_offset);
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uchar mask_data = *(mask + mask_index);
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char4 src_data1 = *((__global char4 *)((__global char *)src1 + src1_index));
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char4 src_data2 = *((__global char4 *)((__global char *)src2 + src2_index));
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char4 dst_data = *((__global char4 *)((__global char *)dst + dst_index));
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char4 data = src_data1 OP_BINARY src_data2;
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data = mask_data ? data : dst_data;
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*((__global char4 *)((__global char *)dst + dst_index)) = data;
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}
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}
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__kernel void arithm_bitwise_binary_with_mask_C1_D6 (
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__global char *src1, int src1_step, int src1_offset,
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__global char *src2, int src2_step, int src2_offset,
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__global uchar *mask, int mask_step, int mask_offset,
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__global char *dst, int dst_step, int dst_offset,
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int rows, int cols, int dst_step1)
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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 (x < cols && y < rows)
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{
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int src1_index = mad24(y, src1_step, (x << 3) + src1_offset);
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int src2_index = mad24(y, src2_step, (x << 3) + src2_offset);
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int mask_index = mad24(y, mask_step, x + mask_offset);
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int dst_index = mad24(y, dst_step, (x << 3) + dst_offset);
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uchar mask_data = *(mask + mask_index);
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char8 src_data1 = *((__global char8 *)((__global char *)src1 + src1_index));
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char8 src_data2 = *((__global char8 *)((__global char *)src2 + src2_index));
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char8 dst_data = *((__global char8 *)((__global char *)dst + dst_index));
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char8 data = src_data1 OP_BINARY src_data2;
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data = mask_data ? data : dst_data;
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*((__global char8 *)((__global char *)dst + dst_index)) = data;
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}
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}
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__kernel void arithm_bitwise_binary_with_mask_C2_D0 (
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__global uchar *src1, int src1_step, int src1_offset,
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__global uchar *src2, int src2_step, int src2_offset,
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__global uchar *mask, int mask_step, int mask_offset,
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__global uchar *dst, int dst_step, int dst_offset,
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int rows, int cols, int dst_step1)
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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 (x < cols && y < rows)
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{
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x = x << 1;
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#ifdef dst_align
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#undef dst_align
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#endif
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#define dst_align ((dst_offset / 2) & 1)
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int src1_index = mad24(y, src1_step, (x << 1) + src1_offset - (dst_align << 1));
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int src2_index = mad24(y, src2_step, (x << 1) + src2_offset - (dst_align << 1));
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int mask_index = mad24(y, mask_step, x + mask_offset - dst_align);
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int dst_start = mad24(y, dst_step, dst_offset);
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int dst_end = mad24(y, dst_step, dst_offset + dst_step1);
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int dst_index = mad24(y, dst_step, dst_offset + (x << 1) & (int)0xfffffffc);
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uchar4 src1_data = vload4(0, src1 + src1_index);
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uchar4 src2_data = vload4(0, src2 + src2_index);
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uchar2 mask_data = vload2(0, mask + mask_index);
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uchar4 data = *((__global uchar4 *)(dst + dst_index));
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uchar4 tmp_data = src1_data OP_BINARY src2_data;
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data.xy = ((mask_data.x) && (dst_index + 0 >= dst_start)) ? tmp_data.xy : data.xy;
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data.zw = ((mask_data.y) && (dst_index + 2 < dst_end )) ? tmp_data.zw : data.zw;
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*((__global uchar4 *)(dst + dst_index)) = data;
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}
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}
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__kernel void arithm_bitwise_binary_with_mask_C2_D1 (
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__global char *src1, int src1_step, int src1_offset,
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__global char *src2, int src2_step, int src2_offset,
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__global uchar *mask, int mask_step, int mask_offset,
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__global char *dst, int dst_step, int dst_offset,
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int rows, int cols, int dst_step1)
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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 (x < cols && y < rows)
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{
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x = x << 1;
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#ifdef dst_align
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#undef dst_align
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#endif
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#define dst_align ((dst_offset / 2) & 1)
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int src1_index = mad24(y, src1_step, (x << 1) + src1_offset - (dst_align << 1));
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int src2_index = mad24(y, src2_step, (x << 1) + src2_offset - (dst_align << 1));
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int mask_index = mad24(y, mask_step, x + mask_offset - dst_align);
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int dst_start = mad24(y, dst_step, dst_offset);
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int dst_end = mad24(y, dst_step, dst_offset + dst_step1);
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int dst_index = mad24(y, dst_step, dst_offset + (x << 1) & (int)0xfffffffc);
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char4 src1_data = vload4(0, src1 + src1_index);
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char4 src2_data = vload4(0, src2 + src2_index);
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uchar2 mask_data = vload2(0, mask + mask_index);
|
|
|
|
char4 data = *((__global char4 *)(dst + dst_index));
|
|
char4 tmp_data = src1_data OP_BINARY src2_data;
|
|
|
|
data.xy = ((mask_data.x) && (dst_index + 0 >= dst_start)) ? tmp_data.xy : data.xy;
|
|
data.zw = ((mask_data.y) && (dst_index + 2 < dst_end )) ? tmp_data.zw : data.zw;
|
|
|
|
*((__global char4 *)(dst + dst_index)) = data;
|
|
}
|
|
}
|
|
|
|
__kernel void arithm_bitwise_binary_with_mask_C2_D2 (
|
|
__global ushort *src1, int src1_step, int src1_offset,
|
|
__global ushort *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global ushort *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 2) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 2) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 2) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
ushort2 src_data1 = *((__global ushort2 *)((__global char *)src1 + src1_index));
|
|
ushort2 src_data2 = *((__global ushort2 *)((__global char *)src2 + src2_index));
|
|
ushort2 dst_data = *((__global ushort2 *)((__global char *)dst + dst_index));
|
|
|
|
ushort2 data = src_data1 OP_BINARY src_data2;
|
|
data = mask_data ? data : dst_data;
|
|
|
|
*((__global ushort2 *)((__global char *)dst + dst_index)) = data;
|
|
}
|
|
}
|
|
__kernel void arithm_bitwise_binary_with_mask_C2_D3 (
|
|
__global short *src1, int src1_step, int src1_offset,
|
|
__global short *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global short *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 2) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 2) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 2) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
short2 src_data1 = *((__global short2 *)((__global char *)src1 + src1_index));
|
|
short2 src_data2 = *((__global short2 *)((__global char *)src2 + src2_index));
|
|
short2 dst_data = *((__global short2 *)((__global char *)dst + dst_index));
|
|
|
|
short2 data = src_data1 OP_BINARY src_data2;
|
|
data = mask_data ? data : dst_data;
|
|
|
|
*((__global short2 *)((__global char *)dst + dst_index)) = data;
|
|
}
|
|
}
|
|
__kernel void arithm_bitwise_binary_with_mask_C2_D4 (
|
|
__global int *src1, int src1_step, int src1_offset,
|
|
__global int *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global int *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 3) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 3) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 3) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
int2 src_data1 = *((__global int2 *)((__global char *)src1 + src1_index));
|
|
int2 src_data2 = *((__global int2 *)((__global char *)src2 + src2_index));
|
|
int2 dst_data = *((__global int2 *)((__global char *)dst + dst_index));
|
|
|
|
int2 data = src_data1 OP_BINARY src_data2;
|
|
data = mask_data ? data : dst_data;
|
|
|
|
*((__global int2 *)((__global char *)dst + dst_index)) = data;
|
|
}
|
|
}
|
|
__kernel void arithm_bitwise_binary_with_mask_C2_D5 (
|
|
__global char *src1, int src1_step, int src1_offset,
|
|
__global char *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global char *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 3) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 3) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 3) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
char8 src_data1 = *((__global char8 *)((__global char *)src1 + src1_index));
|
|
char8 src_data2 = *((__global char8 *)((__global char *)src2 + src2_index));
|
|
char8 dst_data = *((__global char8 *)((__global char *)dst + dst_index));
|
|
|
|
char8 data = src_data1 OP_BINARY src_data2;
|
|
data = mask_data ? data : dst_data;
|
|
|
|
*((__global char8 *)((__global char *)dst + dst_index)) = data;
|
|
}
|
|
}
|
|
|
|
__kernel void arithm_bitwise_binary_with_mask_C2_D6 (
|
|
__global char *src1, int src1_step, int src1_offset,
|
|
__global char *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global char *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 4) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 4) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 4) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
char16 src_data1 = *((__global char16 *)((__global char *)src1 + src1_index));
|
|
char16 src_data2 = *((__global char16 *)((__global char *)src2 + src2_index));
|
|
char16 dst_data = *((__global char16 *)((__global char *)dst + dst_index));
|
|
|
|
char16 data = src_data1 OP_BINARY src_data2;
|
|
data = mask_data ? data : dst_data;
|
|
|
|
*((__global char16 *)((__global char *)dst + dst_index)) = data;
|
|
}
|
|
}
|
|
|
|
|
|
__kernel void arithm_bitwise_binary_with_mask_C4_D0 (
|
|
__global uchar *src1, int src1_step, int src1_offset,
|
|
__global uchar *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global uchar *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 2) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 2) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 2) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
uchar4 src_data1 = *((__global uchar4 *)(src1 + src1_index));
|
|
uchar4 src_data2 = *((__global uchar4 *)(src2 + src2_index));
|
|
uchar4 dst_data = *((__global uchar4 *)(dst + dst_index));
|
|
|
|
uchar4 data = src_data1 OP_BINARY src_data2;
|
|
data = mask_data ? data : dst_data;
|
|
|
|
*((__global uchar4 *)(dst + dst_index)) = data;
|
|
}
|
|
}
|
|
|
|
|
|
__kernel void arithm_bitwise_binary_with_mask_C4_D1 (
|
|
__global char *src1, int src1_step, int src1_offset,
|
|
__global char *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global char *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 2) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 2) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 2) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
char4 src_data1 = *((__global char4 *)(src1 + src1_index));
|
|
char4 src_data2 = *((__global char4 *)(src2 + src2_index));
|
|
char4 dst_data = *((__global char4 *)(dst + dst_index));
|
|
|
|
char4 data = src_data1 OP_BINARY src_data2;
|
|
data = mask_data ? data : dst_data;
|
|
|
|
*((__global char4 *)(dst + dst_index)) = data;
|
|
}
|
|
}
|
|
|
|
__kernel void arithm_bitwise_binary_with_mask_C4_D2 (
|
|
__global ushort *src1, int src1_step, int src1_offset,
|
|
__global ushort *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global ushort *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 3) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 3) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 3) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
ushort4 src_data1 = *((__global ushort4 *)((__global char *)src1 + src1_index));
|
|
ushort4 src_data2 = *((__global ushort4 *)((__global char *)src2 + src2_index));
|
|
ushort4 dst_data = *((__global ushort4 *)((__global char *)dst + dst_index));
|
|
|
|
ushort4 data = src_data1 OP_BINARY src_data2;
|
|
data = mask_data ? data : dst_data;
|
|
|
|
*((__global ushort4 *)((__global char *)dst + dst_index)) = data;
|
|
}
|
|
}
|
|
__kernel void arithm_bitwise_binary_with_mask_C4_D3 (
|
|
__global short *src1, int src1_step, int src1_offset,
|
|
__global short *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global short *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 3) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 3) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 3) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
short4 src_data1 = *((__global short4 *)((__global char *)src1 + src1_index));
|
|
short4 src_data2 = *((__global short4 *)((__global char *)src2 + src2_index));
|
|
short4 dst_data = *((__global short4 *)((__global char *)dst + dst_index));
|
|
|
|
short4 data = src_data1 OP_BINARY src_data2;
|
|
data = mask_data ? data : dst_data;
|
|
|
|
*((__global short4 *)((__global char *)dst + dst_index)) = data;
|
|
}
|
|
}
|
|
__kernel void arithm_bitwise_binary_with_mask_C4_D4 (
|
|
__global int *src1, int src1_step, int src1_offset,
|
|
__global int *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global int *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 4) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 4) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 4) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
int4 src_data1 = *((__global int4 *)((__global char *)src1 + src1_index));
|
|
int4 src_data2 = *((__global int4 *)((__global char *)src2 + src2_index));
|
|
int4 dst_data = *((__global int4 *)((__global char *)dst + dst_index));
|
|
|
|
int4 data = src_data1 OP_BINARY src_data2;
|
|
data = mask_data ? data : dst_data;
|
|
|
|
*((__global int4 *)((__global char *)dst + dst_index)) = data;
|
|
}
|
|
}
|
|
__kernel void arithm_bitwise_binary_with_mask_C4_D5 (
|
|
__global char *src1, int src1_step, int src1_offset,
|
|
__global char *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global char *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 4) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 4) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 4) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
char16 src_data1 = *((__global char16 *)((__global char *)src1 + src1_index));
|
|
char16 src_data2 = *((__global char16 *)((__global char *)src2 + src2_index));
|
|
char16 dst_data = *((__global char16 *)((__global char *)dst + dst_index));
|
|
|
|
char16 data = src_data1 OP_BINARY src_data2;
|
|
data = mask_data ? data : dst_data;
|
|
|
|
*((__global char16 *)((__global char *)dst + dst_index)) = data;
|
|
}
|
|
}
|
|
#if defined (DOUBLE_SUPPORT)
|
|
__kernel void arithm_bitwise_binary_with_mask_C4_D6 (
|
|
__global char *src1, int src1_step, int src1_offset,
|
|
__global char *src2, int src2_step, int src2_offset,
|
|
__global uchar *mask, int mask_step, int mask_offset,
|
|
__global char *dst, int dst_step, int dst_offset,
|
|
int rows, int cols, int dst_step1)
|
|
{
|
|
|
|
int x = get_global_id(0);
|
|
int y = get_global_id(1);
|
|
|
|
if (x < cols && y < rows)
|
|
{
|
|
int src1_index = mad24(y, src1_step, (x << 5) + src1_offset);
|
|
int src2_index = mad24(y, src2_step, (x << 5) + src2_offset);
|
|
int mask_index = mad24(y, mask_step, x + mask_offset);
|
|
int dst_index = mad24(y, dst_step, (x << 5) + dst_offset);
|
|
|
|
uchar mask_data = *(mask + mask_index);
|
|
|
|
char8 src_data1_0 = *((__global char8 *)((__global char *)src1 + src1_index + 0));
|
|
char8 src_data1_1 = *((__global char8 *)((__global char *)src1 + src1_index + 8));
|
|
char8 src_data1_2 = *((__global char8 *)((__global char *)src1 + src1_index + 16));
|
|
char8 src_data1_3 = *((__global char8 *)((__global char *)src1 + src1_index + 24));
|
|
|
|
char8 src_data2_0 = *((__global char8 *)((__global char *)src2 + src2_index + 0));
|
|
char8 src_data2_1 = *((__global char8 *)((__global char *)src2 + src2_index + 8));
|
|
char8 src_data2_2 = *((__global char8 *)((__global char *)src2 + src2_index + 16));
|
|
char8 src_data2_3 = *((__global char8 *)((__global char *)src2 + src2_index + 24));
|
|
|
|
char8 dst_data_0 = *((__global char8 *)((__global char *)dst + dst_index + 0));
|
|
char8 dst_data_1 = *((__global char8 *)((__global char *)dst + dst_index + 8));
|
|
char8 dst_data_2 = *((__global char8 *)((__global char *)dst + dst_index + 16));
|
|
char8 dst_data_3 = *((__global char8 *)((__global char *)dst + dst_index + 24));
|
|
|
|
char8 data_0 = src_data1_0 OP_BINARY src_data2_0;
|
|
char8 data_1 = src_data1_1 OP_BINARY src_data2_1;
|
|
char8 data_2 = src_data1_2 OP_BINARY src_data2_2;
|
|
char8 data_3 = src_data1_3 OP_BINARY src_data2_3;
|
|
|
|
data_0 = mask_data ? data_0 : dst_data_0;
|
|
data_1 = mask_data ? data_1 : dst_data_1;
|
|
data_2 = mask_data ? data_2 : dst_data_2;
|
|
data_3 = mask_data ? data_3 : dst_data_3;
|
|
|
|
*((__global char8 *)((__global char *)dst + dst_index + 0)) = data_0;
|
|
*((__global char8 *)((__global char *)dst + dst_index + 8)) = data_1;
|
|
*((__global char8 *)((__global char *)dst + dst_index + 16)) = data_2;
|
|
*((__global char8 *)((__global char *)dst + dst_index + 24)) = data_3;
|
|
}
|
|
}
|
|
#endif
|