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Open Source Computer Vision Library
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184 lines
5.7 KiB
184 lines
5.7 KiB
// This file is part of OpenCV project. |
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// It is subject to the license terms in the LICENSE file found in the top-level directory |
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// of this distribution and at http://opencv.org/license.html. |
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// |
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// Copyright (C) 2020 Intel Corporation |
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#include "test_precomp.hpp" |
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#include <opencv2/gapi/media.hpp> |
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//////////////////////////////////////////////////////////////////////////////// |
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// cv::GFrame tests |
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namespace opencv_test { |
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G_API_OP(GBlurFrame, <GMat(GFrame)>, "test.blur_frame") { |
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static GMatDesc outMeta(GFrameDesc in) { |
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return cv::GMatDesc(CV_8U,3,in.size); |
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} |
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}; |
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GAPI_OCV_KERNEL(OCVBlurFrame, GBlurFrame) { |
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static void run(const cv::MediaFrame &in, cv::Mat& out) { |
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GAPI_Assert(in.desc().fmt == cv::MediaFormat::BGR); |
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cv::MediaFrame::View view = in.access(cv::MediaFrame::Access::R); |
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cv::blur(cv::Mat(in.desc().size, CV_8UC3, view.ptr[0], view.stride[0]), |
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out, |
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cv::Size{3,3}); |
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} |
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}; |
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//////////////////////////////////////////////////////////////////////////////// |
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// cv::MediaFrame tests |
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namespace { |
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class TestMediaBGR final: public cv::MediaFrame::IAdapter { |
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cv::Mat m_mat; |
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using Cb = cv::MediaFrame::View::Callback; |
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Cb m_cb; |
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public: |
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explicit TestMediaBGR(cv::Mat m, Cb cb = [](){}) |
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: m_mat(m), m_cb(cb) { |
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} |
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cv::GFrameDesc meta() const override { |
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return cv::GFrameDesc{cv::MediaFormat::BGR, cv::Size(m_mat.cols, m_mat.rows)}; |
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} |
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cv::MediaFrame::View access(cv::MediaFrame::Access) override { |
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cv::MediaFrame::View::Ptrs pp = { m_mat.ptr(), nullptr, nullptr, nullptr }; |
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cv::MediaFrame::View::Strides ss = { m_mat.step, 0u, 0u, 0u }; |
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return cv::MediaFrame::View(std::move(pp), std::move(ss), Cb{m_cb}); |
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} |
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}; |
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class TestMediaNV12 final: public cv::MediaFrame::IAdapter { |
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cv::Mat m_y; |
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cv::Mat m_uv; |
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public: |
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TestMediaNV12(cv::Mat y, cv::Mat uv) : m_y(y), m_uv(uv) { |
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} |
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cv::GFrameDesc meta() const override { |
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return cv::GFrameDesc{cv::MediaFormat::NV12, cv::Size(m_y.cols, m_y.rows)}; |
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} |
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cv::MediaFrame::View access(cv::MediaFrame::Access) override { |
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cv::MediaFrame::View::Ptrs pp = { |
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m_y.ptr(), m_uv.ptr(), nullptr, nullptr |
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}; |
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cv::MediaFrame::View::Strides ss = { |
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m_y.step, m_uv.step, 0u, 0u |
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}; |
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return cv::MediaFrame::View(std::move(pp), std::move(ss)); |
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} |
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}; |
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} // anonymous namespace |
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struct MediaFrame_Test: public ::testing::Test { |
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using M = cv::Mat; |
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using MF = cv::MediaFrame; |
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MF frame; |
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}; |
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struct MediaFrame_BGR: public MediaFrame_Test { |
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M bgr; |
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MediaFrame_BGR() |
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: bgr(M::eye(240, 320, CV_8UC3)) { |
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cv::randn(bgr, cv::Scalar::all(127.0f), cv::Scalar::all(40.f)); |
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frame = MF::Create<TestMediaBGR>(bgr); |
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} |
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}; |
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TEST_F(MediaFrame_BGR, Meta) { |
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auto meta = frame.desc(); |
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EXPECT_EQ(cv::MediaFormat::BGR, meta.fmt); |
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EXPECT_EQ(cv::Size(320,240), meta.size); |
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} |
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TEST_F(MediaFrame_BGR, Access) { |
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cv::MediaFrame::View view1 = frame.access(cv::MediaFrame::Access::R); |
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EXPECT_EQ(bgr.ptr(), view1.ptr[0]); |
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EXPECT_EQ(bgr.step, view1.stride[0]); |
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cv::MediaFrame::View view2 = frame.access(cv::MediaFrame::Access::R); |
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EXPECT_EQ(bgr.ptr(), view2.ptr[0]); |
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EXPECT_EQ(bgr.step, view2.stride[0]); |
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} |
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TEST_F(MediaFrame_BGR, Input) { |
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// Run the OpenCV code |
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cv::Mat out_mat_ocv, out_mat_gapi; |
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cv::blur(bgr, out_mat_ocv, cv::Size{3,3}); |
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// Run the G-API code |
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cv::GFrame in; |
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cv::GMat out = GBlurFrame::on(in); |
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cv::GComputation(cv::GIn(in), cv::GOut(out)) |
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.apply(cv::gin(frame), |
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cv::gout(out_mat_gapi), |
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cv::compile_args(cv::gapi::kernels<OCVBlurFrame>())); |
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// Compare |
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EXPECT_EQ(0, cvtest::norm(out_mat_ocv, out_mat_gapi, NORM_INF)); |
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} |
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struct MediaFrame_NV12: public MediaFrame_Test { |
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cv::Size sz; |
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cv::Mat buf, y, uv; |
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MediaFrame_NV12() |
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: sz {320, 240} |
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, buf(M::eye(sz.height*3/2, sz.width, CV_8UC1)) |
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, y (buf.rowRange(0, sz.height)) |
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, uv (buf.rowRange(sz.height, sz.height*3/2)) { |
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frame = MF::Create<TestMediaNV12>(y, uv); |
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} |
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}; |
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TEST_F(MediaFrame_NV12, Meta) { |
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auto meta = frame.desc(); |
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EXPECT_EQ(cv::MediaFormat::NV12, meta.fmt); |
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EXPECT_EQ(cv::Size(320,240), meta.size); |
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} |
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TEST_F(MediaFrame_NV12, Access) { |
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cv::MediaFrame::View view1 = frame.access(cv::MediaFrame::Access::R); |
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EXPECT_EQ(y. ptr(), view1.ptr [0]); |
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EXPECT_EQ(y. step, view1.stride[0]); |
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EXPECT_EQ(uv.ptr(), view1.ptr [1]); |
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EXPECT_EQ(uv.step, view1.stride[1]); |
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cv::MediaFrame::View view2 = frame.access(cv::MediaFrame::Access::R); |
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EXPECT_EQ(y. ptr(), view2.ptr [0]); |
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EXPECT_EQ(y. step, view2.stride[0]); |
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EXPECT_EQ(uv.ptr(), view2.ptr [1]); |
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EXPECT_EQ(uv.step, view2.stride[1]); |
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} |
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TEST(MediaFrame, Callback) { |
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int counter = 0; |
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cv::Mat bgr = cv::Mat::eye(240, 320, CV_8UC3); |
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cv::MediaFrame frame = cv::MediaFrame::Create<TestMediaBGR>(bgr, [&counter](){counter++;}); |
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// Test that the callback (in this case, incrementing the counter) |
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// is called only on View destruction. |
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EXPECT_EQ(0, counter); |
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{ |
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cv::MediaFrame::View v1 = frame.access(cv::MediaFrame::Access::R); |
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EXPECT_EQ(0, counter); |
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} |
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EXPECT_EQ(1, counter); |
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{ |
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cv::MediaFrame::View v1 = frame.access(cv::MediaFrame::Access::R); |
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EXPECT_EQ(1, counter); |
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cv::MediaFrame::View v2 = frame.access(cv::MediaFrame::Access::W); |
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EXPECT_EQ(1, counter); |
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} |
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EXPECT_EQ(3, counter); |
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} |
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TEST(MediaFrame, blobParams) { |
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cv::Mat bgr = cv::Mat::eye(240, 320, CV_8UC3); |
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cv::MediaFrame frame = cv::MediaFrame::Create<TestMediaBGR>(bgr); |
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EXPECT_NO_THROW(frame.blobParams()); |
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} |
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} // namespace opencv_test
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