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     11 //                For Open Source Computer Vision Library
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     42 
     43 #include "test_precomp.hpp"
     44 
     45 #ifdef HAVE_CUDA
     46 
     47 OutputLevel nvidiaTestOutputLevel = OutputLevelNone;
     48 
     49 using namespace cvtest;
     50 using namespace testing;
     51 
     52 struct NVidiaTest : TestWithParam<cv::cuda::DeviceInfo>
     53 {
     54     cv::cuda::DeviceInfo devInfo;
     55 
     56     std::string _path;
     57 
     58     virtual void SetUp()
     59     {
     60         devInfo = GetParam();
     61 
     62         cv::cuda::setDevice(devInfo.deviceID());
     63         _path = TS::ptr()->get_data_path().c_str();
     64         _path = _path + "haarcascade/";
     65     }
     66 };
     67 
     68 struct NPPST : NVidiaTest {};
     69 struct NCV : NVidiaTest {};
     70 
     71 CUDA_TEST_P(NPPST, Integral)
     72 {
     73     bool res = nvidia_NPPST_Integral_Image(_path, nvidiaTestOutputLevel);
     74 
     75     ASSERT_TRUE(res);
     76 }
     77 
     78 CUDA_TEST_P(NPPST, SquaredIntegral)
     79 {
     80     bool res = nvidia_NPPST_Squared_Integral_Image(_path, nvidiaTestOutputLevel);
     81 
     82     ASSERT_TRUE(res);
     83 }
     84 
     85 CUDA_TEST_P(NPPST, RectStdDev)
     86 {
     87     bool res = nvidia_NPPST_RectStdDev(_path, nvidiaTestOutputLevel);
     88 
     89     ASSERT_TRUE(res);
     90 }
     91 
     92 CUDA_TEST_P(NPPST, Resize)
     93 {
     94     bool res = nvidia_NPPST_Resize(_path, nvidiaTestOutputLevel);
     95 
     96     ASSERT_TRUE(res);
     97 }
     98 
     99 CUDA_TEST_P(NPPST, VectorOperations)
    100 {
    101     bool res = nvidia_NPPST_Vector_Operations(_path, nvidiaTestOutputLevel);
    102 
    103     ASSERT_TRUE(res);
    104 }
    105 
    106 CUDA_TEST_P(NPPST, Transpose)
    107 {
    108     bool res = nvidia_NPPST_Transpose(_path, nvidiaTestOutputLevel);
    109 
    110     ASSERT_TRUE(res);
    111 }
    112 
    113 CUDA_TEST_P(NCV, VectorOperations)
    114 {
    115     bool res = nvidia_NCV_Vector_Operations(_path, nvidiaTestOutputLevel);
    116 
    117     ASSERT_TRUE(res);
    118 }
    119 
    120 CUDA_TEST_P(NCV, HaarCascadeLoader)
    121 {
    122     bool res = nvidia_NCV_Haar_Cascade_Loader(_path, nvidiaTestOutputLevel);
    123 
    124     ASSERT_TRUE(res);
    125 }
    126 
    127 CUDA_TEST_P(NCV, HaarCascadeApplication)
    128 {
    129     bool res = nvidia_NCV_Haar_Cascade_Application(_path, nvidiaTestOutputLevel);
    130 
    131     ASSERT_TRUE(res);
    132 }
    133 
    134 CUDA_TEST_P(NCV, HypothesesFiltration)
    135 {
    136     bool res = nvidia_NCV_Hypotheses_Filtration(_path, nvidiaTestOutputLevel);
    137 
    138     ASSERT_TRUE(res);
    139 }
    140 
    141 CUDA_TEST_P(NCV, Visualization)
    142 {
    143     bool res = nvidia_NCV_Visualization(_path, nvidiaTestOutputLevel);
    144 
    145     ASSERT_TRUE(res);
    146 }
    147 
    148 INSTANTIATE_TEST_CASE_P(CUDA_Legacy, NPPST, ALL_DEVICES);
    149 INSTANTIATE_TEST_CASE_P(CUDA_Legacy, NCV, ALL_DEVICES);
    150 
    151 #endif // HAVE_CUDA
    152