Files
opencv-MIRROR/modules/core/perf/perf_split.cpp
2026-07-20 10:21:00 +08:00

58 lines
1.4 KiB
C++

#include "perf_precomp.hpp"
namespace opencv_test
{
using namespace perf;
typedef tuple<Size, MatType, int> Size_Depth_Channels_t;
typedef perf::TestBaseWithParam<Size_Depth_Channels_t> Size_Depth_Channels;
PERF_TEST_P( Size_Depth_Channels, split,
testing::Combine
(
testing::Values(TYPICAL_MAT_SIZES),
testing::Values(CV_8U, CV_16S, CV_32F, CV_64F),
testing::Values(2, 3, 4)
)
)
{
Size sz = get<0>(GetParam());
int depth = get<1>(GetParam());
int channels = get<2>(GetParam());
Mat m(sz, CV_MAKETYPE(depth, channels));
randu(m, 0, 255);
vector<Mat> mv;
int runs = (sz.width <= 640) ? 8 : 1;
TEST_CYCLE_MULTIRUN(runs) split(m, (vector<Mat>&)mv);
SANITY_CHECK(mv, 2e-5);
}
typedef tuple<Size, int> Size_Channel_t;
typedef perf::TestBaseWithParam<Size_Channel_t> Size_Channel;
PERF_TEST_P( Size_Channel, extractChannel,
testing::Combine
(
testing::Values(TYPICAL_MAT_SIZES),
testing::Values(0, 1)
)
)
{
Size sz = get<0>(GetParam());
int channel = get<1>(GetParam());
Mat src(sz, CV_8UC2);
Mat dst(sz, CV_8UC1);
randu(src, 0, 255);
int runs = (sz.width <= 640) ? 8 : 1;
TEST_CYCLE_MULTIRUN(runs) extractChannel(src, dst, channel);
SANITY_CHECK(dst);
}
} // namespace