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#ifndef __OPENCV_TEST_PRECOMP_HPP__
#define __OPENCV_TEST_PRECOMP_HPP__

#include "opencv2/ts.hpp"
#include "opencv2/ts/ts_perf.hpp"
#include "opencv2/core/utility.hpp"
#include "opencv2/core/ocl.hpp"

#include "opencv2/dnn.hpp"
#include "test_common.hpp"

namespace opencv_test {
using namespace cv::dnn;

static testing::internal::ParamGenerator<Target> availableDnnTargets()
{
    static std::vector<Target> targets;
    if (targets.empty())
    {
        targets.push_back(DNN_TARGET_CPU);
#ifdef HAVE_OPENCL
        if (cv::ocl::useOpenCL())
            targets.push_back(DNN_TARGET_OPENCL);
#endif
    }
    return testing::ValuesIn(targets);
}

class DNNTestLayer : public TestWithParam<tuple<Backend, Target> >
{
public:
    dnn::Backend backend;
    dnn::Target target;
    double default_l1, default_lInf;

    DNNTestLayer()
    {
        backend = (dnn::Backend)(int)get<0>(GetParam());
        target = (dnn::Target)(int)get<1>(GetParam());
        getDefaultThresholds(backend, target, &default_l1, &default_lInf);
    }

   static void getDefaultThresholds(int backend, int target, double* l1, double* lInf)
   {
       if (target == DNN_TARGET_OPENCL_FP16 || target == DNN_TARGET_MYRIAD)
       {
           *l1 = 4e-3;
           *lInf = 2e-2;
       }
       else
       {
           *l1 = 1e-5;
           *lInf = 1e-4;
       }
   }

   static void checkBackend(int backend, int target, Mat* inp = 0, Mat* ref = 0)
   {
       if (backend == DNN_BACKEND_OPENCV && (target == DNN_TARGET_OPENCL || target == DNN_TARGET_OPENCL_FP16))
       {
#ifdef HAVE_OPENCL
           if (!cv::ocl::useOpenCL())
#endif
           {
               throw SkipTestException("OpenCL is not available/disabled in OpenCV");
           }
       }
       if (backend == DNN_BACKEND_INFERENCE_ENGINE && target == DNN_TARGET_MYRIAD)
       {
           if (!checkMyriadTarget())
           {
               throw SkipTestException("Myriad is not available/disabled in OpenCV");
           }
#if defined(INF_ENGINE_RELEASE) && INF_ENGINE_RELEASE < 2018030000
           if (inp && ref && inp->size[0] != 1)
           {
               // Myriad plugin supports only batch size 1. Slice a single sample.
               if (inp->size[0] == ref->size[0])
               {
                   std::vector<cv::Range> range(inp->dims, Range::all());
                   range[0] = Range(0, 1);
                   *inp = inp->operator()(range);

                   range = std::vector<cv::Range>(ref->dims, Range::all());
                   range[0] = Range(0, 1);
                   *ref = ref->operator()(range);
               }
               else
                   throw SkipTestException("Myriad plugin supports only batch size 1");
           }
#else
           if (inp && ref && inp->dims == 4 && ref->dims == 4 &&
               inp->size[0] != 1 && inp->size[0] != ref->size[0])
               throw SkipTestException("Inconsistent batch size of input and output blobs for Myriad plugin");

#endif
       }
   }

protected:
    void checkBackend(Mat* inp = 0, Mat* ref = 0)
    {
        checkBackend(backend, target, inp, ref);
    }
};

} // namespace
#endif