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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) 2010-2013, Institute Of Software Chinese Academy Of Science, all rights reserved. |
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// Copyright (C) 2010-2013, 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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// Erping Pang, erping@multicorewareinc.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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// |
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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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#define TYPE double |
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#else |
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#define TYPE float |
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#endif |
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#if defined ADDEXP |
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#define EXP(X) exp(X) |
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#else |
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#define EXP(X) X |
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#endif |
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#if defined ADDPOW |
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#define POW(X,Y) pow(fabs(X),(Y)) |
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#else |
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#define POW(X,Y) X |
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#endif |
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#define FLT_MAX 3.402823466e+38F |
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#define MAX_VAL (FLT_MAX*1e-3) |
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|
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__kernel void svm_linear(__global float* src, int src_step, __global float* src2, int src2_step, __global TYPE* dst, int dst_step, int src_rows, int src2_cols, |
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int width, TYPE alpha, TYPE beta) |
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{ |
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const int col = get_global_id(0); |
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const int row = get_global_id(1); |
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|
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if(row < src_rows && col < src2_cols) |
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{ |
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int t = 0; |
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TYPE temp = 0.0; |
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for(t = 0; t < width - 16; t += 16) |
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{ |
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float16 t0 = vload16(0, src + row * src_step + t); |
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float16 t1 = vload16(0, src2 + col * src2_step + t); |
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t0 *= t1; |
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temp += t0.s0 + t0.s1 + t0.s2 + t0.s3 + t0.s4 + t0.s5 + t0.s6 + t0.s7 + |
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t0.s8 + t0.s9 + t0.sa + t0.sb + t0.sc + t0.sd + t0.se + t0.sf; |
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} |
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for(; t < width; t++) |
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{ |
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temp += src[row * src_step + t] * src2[col * src2_step + t]; |
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} |
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|
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TYPE temp1 = (TYPE) (temp * alpha + beta); |
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|
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if( temp1 > MAX_VAL ) |
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{ |
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dst[row * dst_step + col] = MAX_VAL; |
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} |
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else |
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{ |
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dst[row * dst_step + col] = temp1; |
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} |
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|
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} |
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|
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} |
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__kernel void svm_sigmod(__global float* src, int src_step, __global float* src2, int src2_step, __global TYPE* dst, int dst_step, int src_rows, int src2_cols, |
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int width, TYPE alpha, TYPE beta) |
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{ |
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const int col = get_global_id(0); |
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const int row = get_global_id(1); |
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|
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if(row < src_rows && col < src2_cols) |
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{ |
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int t = 0; |
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TYPE temp = 0.0; |
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for(t = 0; t < width - 16; t += 16) |
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{ |
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float16 t0 = vload16(0, src + row * src_step + t); |
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float16 t1 = vload16(0, src2 + col * src2_step + t); |
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t0 *= t1; |
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temp += t0.s0 + t0.s1 + t0.s2 + t0.s3 + t0.s4 + t0.s5 + t0.s6 + t0.s7 + |
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t0.s8 + t0.s9 + t0.sa + t0.sb + t0.sc + t0.sd + t0.se + t0.sf; |
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} |
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for(; t < width; t++) |
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{ |
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temp += src[row * src_step + t] * src2[col * src2_step + t]; |
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} |
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TYPE tp = (TYPE) (temp * alpha + beta); |
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TYPE e = exp(-fabs(tp)); |
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TYPE temp1; |
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if(tp > 0) |
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{ |
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temp1 = (TYPE)((1. - e) / (1. + e)); |
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} |
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else |
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{ |
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temp1 = (TYPE)((e - 1.) / (e + 1.)); |
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} |
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|
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if( temp1 > MAX_VAL ) |
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{ |
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dst[row * dst_step + col] = MAX_VAL; |
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} |
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else |
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{ |
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dst[row * dst_step + col] = temp1; |
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} |
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} |
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|
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} |
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__kernel void svm_poly(__global float* src, int src_step, __global float* src2, int src2_step, __global TYPE* dst, int dst_step, int src_rows, int src2_cols, |
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int width, TYPE alpha, TYPE beta, TYPE degree) |
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{ |
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const int col = get_global_id(0); |
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const int row = get_global_id(1); |
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|
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if(row < src_rows && col < src2_cols) |
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{ |
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int t = 0; |
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TYPE temp = 0.0; |
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for(t = 0; t < width - 16; t += 16) |
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{ |
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float16 t0 = vload16(0, src + row * src_step + t); |
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float16 t1 = vload16(0, src2 + col * src2_step + t); |
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t0 *= t1; |
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temp += t0.s0 + t0.s1 + t0.s2 + t0.s3 + t0.s4 + t0.s5 + t0.s6 + t0.s7 + |
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t0.s8 + t0.s9 + t0.sa + t0.sb + t0.sc + t0.sd + t0.se + t0.sf; |
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} |
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for(; t < width; t++) |
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{ |
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temp += src[row * src_step + t] * src2[col * src2_step + t]; |
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} |
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TYPE temp1 = (TYPE)(POW((temp * alpha + beta), degree)); |
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|
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if( temp1 > MAX_VAL ) |
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{ |
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dst[row * dst_step + col] = MAX_VAL; |
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} |
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else |
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{ |
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dst[row * dst_step + col] = temp1; |
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} |
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} |
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|
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} |
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__kernel void svm_rbf(__global float* src, int src_step, __global float* src2, int src2_step, __global TYPE* dst, int dst_step, int src_rows, int src2_cols, |
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int width, TYPE gamma) |
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{ |
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const int col = get_global_id(0); |
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const int row = get_global_id(1); |
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|
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if(row < src_rows && col < src2_cols) |
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{ |
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int t = 0; |
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TYPE temp = 0.0; |
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for(t = 0; t < width - 16; t += 16) |
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{ |
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float16 t0 = vload16(0, src + row * src_step + t); |
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float16 t1 = vload16(0, src2 + col * src2_step + t); |
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t0 = (t0 - t1) * (t0 - t1); |
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temp += t0.s0 + t0.s1 + t0.s2 + t0.s3 + t0.s4 + t0.s5 + t0.s6 + t0.s7 + |
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t0.s8 + t0.s9 + t0.sa + t0.sb + t0.sc + t0.sd + t0.se + t0.sf; |
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} |
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for(; t < width; t++) |
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{ |
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temp += (src[row * src_step + t] - src2[col * src2_step + t]) * (src[row * src_step + t] - src2[col * src2_step + t]); |
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} |
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TYPE temp1 = EXP((TYPE)(temp * gamma)); |
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if( temp1 > MAX_VAL ) |
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{ |
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dst[row * dst_step + col] = MAX_VAL; |
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} |
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else |
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{ |
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dst[row * dst_step + col] = temp1; |
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} |
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} |
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} |
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