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      1 /*M///////////////////////////////////////////////////////////////////////////////////////
      2 //
      3 //  IMPORTANT: READ BEFORE DOWNLOADING, COPYING, INSTALLING OR USING.
      4 //
      5 //  By downloading, copying, installing or using the software you agree to this license.
      6 //  If you do not agree to this license, do not download, install,
      7 //  copy or use the software.
      8 //
      9 //
     10 //                           License Agreement
     11 //                For Open Source Computer Vision Library
     12 //
     13 // Copyright (C) 2010-2012, Multicoreware, Inc., all rights reserved.
     14 // Copyright (C) 2010-2012, Advanced Micro Devices, Inc., all rights reserved.
     15 // Third party copyrights are property of their respective owners.
     16 //
     17 // @Authors
     18 //    Fangfang Bai, fangfang (at) multicorewareinc.com
     19 //    Jin Ma,       jin (at) multicorewareinc.com
     20 //
     21 // Redistribution and use in source and binary forms, with or without modification,
     22 // are permitted provided that the following conditions are met:
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     24 //   * Redistribution's of source code must retain the above copyright notice,
     25 //     this list of conditions and the following disclaimer.
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     27 //   * Redistribution's in binary form must reproduce the above copyright notice,
     28 //     this list of conditions and the following disclaimer in the documentation
     29 //     and/or other materials provided with the distribution.
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     31 //   * The name of the copyright holders may not be used to endorse or promote products
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     39 // (including, but not limited to, procurement of substitute goods or services;
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     42 // or tort (including negligence or otherwise) arising in any way out of
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     45 //M*/
     46 
     47 #include "../perf_precomp.hpp"
     48 #include "opencv2/ts/ocl_perf.hpp"
     49 
     50 #ifdef HAVE_OPENCL
     51 
     52 namespace cvtest {
     53 namespace ocl {
     54 
     55 ///////////// PyrDown //////////////////////
     56 
     57 typedef Size_MatType PyrDownFixture;
     58 
     59 OCL_PERF_TEST_P(PyrDownFixture, PyrDown,
     60             ::testing::Combine(OCL_TEST_SIZES, OCL_TEST_TYPES_134))
     61 {
     62     const Size_MatType_t params = GetParam();
     63     const Size srcSize = get<0>(params);
     64     const int type = get<1>(params);
     65     const Size dstSize((srcSize.height + 1) >> 1, (srcSize.width + 1) >> 1);
     66     const double eps = CV_MAT_DEPTH(type) <= CV_32S ? 1 : 1e-5;
     67 
     68     checkDeviceMaxMemoryAllocSize(srcSize, type);
     69     checkDeviceMaxMemoryAllocSize(dstSize, type);
     70 
     71     UMat src(srcSize, type), dst(dstSize, type);
     72     declare.in(src, WARMUP_RNG).out(dst);
     73 
     74     OCL_TEST_CYCLE() cv::pyrDown(src, dst);
     75 
     76     SANITY_CHECK(dst, eps);
     77 }
     78 
     79 ///////////// PyrUp ////////////////////////
     80 
     81 typedef Size_MatType PyrUpFixture;
     82 
     83 OCL_PERF_TEST_P(PyrUpFixture, PyrUp,
     84             ::testing::Combine(OCL_TEST_SIZES, OCL_TEST_TYPES_134))
     85 {
     86     const Size_MatType_t params = GetParam();
     87     const Size srcSize = get<0>(params);
     88     const int type = get<1>(params);
     89     const Size dstSize(srcSize.height << 1, srcSize.width << 1);
     90     const double eps = CV_MAT_DEPTH(type) <= CV_32S ? 1 : 1e-5;
     91 
     92     checkDeviceMaxMemoryAllocSize(srcSize, type);
     93     checkDeviceMaxMemoryAllocSize(dstSize, type);
     94 
     95     UMat src(srcSize, type), dst(dstSize, type);
     96     declare.in(src, WARMUP_RNG).out(dst);
     97 
     98     OCL_TEST_CYCLE() cv::pyrUp(src, dst);
     99 
    100     SANITY_CHECK(dst, eps);
    101 }
    102 
    103 ///////////// buildPyramid ////////////////////////
    104 
    105 typedef Size_MatType BuildPyramidFixture;
    106 
    107 OCL_PERF_TEST_P(BuildPyramidFixture, BuildPyramid,
    108                 ::testing::Combine(OCL_TEST_SIZES, OCL_TEST_TYPES_134))
    109 {
    110     const Size_MatType_t params = GetParam();
    111     const Size srcSize = get<0>(params);
    112     const int type = get<1>(params), maxLevel = 5;
    113     const double eps = CV_MAT_DEPTH(type) <= CV_32S ? 1 : 1e-5;
    114 
    115     checkDeviceMaxMemoryAllocSize(srcSize, type);
    116 
    117     std::vector<UMat> dst(maxLevel);
    118     UMat src(srcSize, type);
    119     declare.in(src, WARMUP_RNG);
    120 
    121     OCL_TEST_CYCLE() cv::buildPyramid(src, dst, maxLevel);
    122 
    123     UMat dst0 = dst[0], dst1 = dst[1], dst2 = dst[2], dst3 = dst[3], dst4 = dst[4];
    124 
    125     SANITY_CHECK(dst0, eps);
    126     SANITY_CHECK(dst1, eps);
    127     SANITY_CHECK(dst2, eps);
    128     SANITY_CHECK(dst3, eps);
    129     SANITY_CHECK(dst4, eps);
    130 }
    131 
    132 } } // namespace cvtest::ocl
    133 
    134 #endif // HAVE_OPENCL
    135