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3f22f4727c
Address https://github.com/opencv/opencv/issues/22868 Used the same defaults as it's done for FFmpeg ### Pull Request Readiness Checklist See details at https://github.com/opencv/opencv/wiki/How_to_contribute#making-a-good-pull-request - [x] I agree to contribute to the project under Apache 2 License. - [x] To the best of my knowledge, the proposed patch is not based on a code under GPL or another license that is incompatible with OpenCV - [x] The PR is proposed to the proper branch - [x] There is a reference to the original bug report and related work - [ ] There is accuracy test, performance test and test data in opencv_extra repository, if applicable Patch to opencv_extra has the same branch name. - [ ] The feature is well documented and sample code can be built with the project CMake ``` force_builders=Custom build_image:Custom=gstreamer:16.04 buildworker:Custom=linux-1 ```
182 lines
7.5 KiB
C++
182 lines
7.5 KiB
C++
// 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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#include "test_precomp.hpp"
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namespace opencv_test { namespace {
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typedef tuple< string, Size, Size, int > Param;
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typedef testing::TestWithParam< Param > videoio_gstreamer;
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TEST_P(videoio_gstreamer, read_check)
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{
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if (!videoio_registry::hasBackend(CAP_GSTREAMER))
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throw SkipTestException("GStreamer backend was not found");
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string format = get<0>(GetParam());
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Size frame_size = get<1>(GetParam());
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Size mat_size = get<2>(GetParam());
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int convertToRGB = get<3>(GetParam());
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int count_frames = 10;
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std::ostringstream pipeline;
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pipeline << "videotestsrc pattern=ball num-buffers=" << count_frames << " ! " << format;
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pipeline << ", width=" << frame_size.width << ", height=" << frame_size.height << " ! appsink";
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VideoCapture cap;
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ASSERT_NO_THROW(cap.open(pipeline.str(), CAP_GSTREAMER));
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ASSERT_TRUE(cap.isOpened());
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Mat buffer, decode_frame, gray_frame, rgb_frame;
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for (int i = 0; i < count_frames; ++i)
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{
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cap >> buffer;
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decode_frame = (format == "jpegenc ! image/jpeg") ? imdecode(buffer, IMREAD_UNCHANGED) : buffer;
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EXPECT_EQ(mat_size, decode_frame.size());
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cvtColor(decode_frame, rgb_frame, convertToRGB);
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cvtColor(rgb_frame, gray_frame, COLOR_RGB2GRAY);
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if (gray_frame.depth() == CV_16U)
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{
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gray_frame.convertTo(gray_frame, CV_8U, 255.0/65535);
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}
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vector<Vec3f> circles;
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HoughCircles(gray_frame, circles, HOUGH_GRADIENT, 1, gray_frame.rows/16, 100, 30, 1, 30 );
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if (circles.size() == 1)
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{
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EXPECT_NEAR(18.5, circles[0][2], 1.0);
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}
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else
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{
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ADD_FAILURE() << "Found " << circles.size() << " on frame " << i ;
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}
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}
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{
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Mat frame;
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cap >> frame;
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EXPECT_TRUE(frame.empty());
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}
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cap.release();
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ASSERT_FALSE(cap.isOpened());
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}
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static const Param test_data[] = {
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make_tuple("video/x-raw, format=BGR" , Size(640, 480), Size(640, 480), COLOR_BGR2RGB),
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make_tuple("video/x-raw, format=BGRA" , Size(640, 480), Size(640, 480), COLOR_BGRA2RGB),
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make_tuple("video/x-raw, format=RGBA" , Size(640, 480), Size(640, 480), COLOR_RGBA2RGB),
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make_tuple("video/x-raw, format=BGRx" , Size(640, 480), Size(640, 480), COLOR_BGRA2RGB),
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make_tuple("video/x-raw, format=RGBx" , Size(640, 480), Size(640, 480), COLOR_RGBA2RGB),
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make_tuple("video/x-raw, format=GRAY8", Size(640, 480), Size(640, 480), COLOR_GRAY2RGB),
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make_tuple("video/x-raw, format=UYVY" , Size(640, 480), Size(640, 480), COLOR_YUV2RGB_UYVY),
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make_tuple("video/x-raw, format=YUY2" , Size(640, 480), Size(640, 480), COLOR_YUV2RGB_YUY2),
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make_tuple("video/x-raw, format=YVYU" , Size(640, 480), Size(640, 480), COLOR_YUV2RGB_YVYU),
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make_tuple("video/x-raw, format=NV12" , Size(640, 480), Size(640, 720), COLOR_YUV2RGB_NV12),
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make_tuple("video/x-raw, format=NV21" , Size(640, 480), Size(640, 720), COLOR_YUV2RGB_NV21),
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make_tuple("video/x-raw, format=YV12" , Size(640, 480), Size(640, 720), COLOR_YUV2RGB_YV12),
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make_tuple("video/x-raw, format=I420" , Size(640, 480), Size(640, 720), COLOR_YUV2RGB_I420),
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make_tuple("video/x-bayer" , Size(640, 480), Size(640, 480), COLOR_BayerBG2RGB),
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make_tuple("jpegenc ! image/jpeg" , Size(640, 480), Size(640, 480), COLOR_BGR2RGB),
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// unaligned cases, strides information must be used
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make_tuple("video/x-raw, format=BGR" , Size(322, 242), Size(322, 242), COLOR_BGR2RGB),
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make_tuple("video/x-raw, format=GRAY8", Size(322, 242), Size(322, 242), COLOR_GRAY2RGB),
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make_tuple("video/x-raw, format=NV12" , Size(322, 242), Size(322, 363), COLOR_YUV2RGB_NV12),
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make_tuple("video/x-raw, format=NV21" , Size(322, 242), Size(322, 363), COLOR_YUV2RGB_NV21),
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make_tuple("video/x-raw, format=YV12" , Size(322, 242), Size(322, 363), COLOR_YUV2RGB_YV12),
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make_tuple("video/x-raw, format=I420" , Size(322, 242), Size(322, 363), COLOR_YUV2RGB_I420),
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// 16 bit
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make_tuple("video/x-raw, format=GRAY16_LE", Size(640, 480), Size(640, 480), COLOR_GRAY2RGB),
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make_tuple("video/x-raw, format=GRAY16_BE", Size(640, 480), Size(640, 480), COLOR_GRAY2RGB),
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};
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INSTANTIATE_TEST_CASE_P(videoio, videoio_gstreamer, testing::ValuesIn(test_data));
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TEST(videoio_gstreamer, unsupported_pipeline)
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{
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if (!videoio_registry::hasBackend(CAP_GSTREAMER))
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throw SkipTestException("GStreamer backend was not found");
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// could not link videoconvert0 to matroskamux0, matroskamux0 can't handle caps video/x-raw, format=(string)RGBA
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std::string pipeline = "appsrc ! videoconvert ! video/x-raw, format=(string)RGBA ! matroskamux ! filesink location=test.mkv";
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Size frame_size(640, 480);
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VideoWriter writer;
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EXPECT_NO_THROW(writer.open(pipeline, CAP_GSTREAMER, 0/*fourcc*/, 30/*fps*/, frame_size, true));
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EXPECT_FALSE(writer.isOpened());
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// no frames
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EXPECT_NO_THROW(writer.release());
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}
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TEST(videoio_gstreamer, gray16_writing)
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{
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if (!videoio_registry::hasBackend(CAP_GSTREAMER))
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throw SkipTestException("GStreamer backend was not found");
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Size frame_size(320, 240);
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// generate a noise frame
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Mat frame = Mat(frame_size, CV_16U);
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randu(frame, 0, 65535);
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// generate a temp filename, and fix path separators to how GStreamer expects them
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cv::String temp_file = cv::tempfile(".raw");
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std::replace(temp_file.begin(), temp_file.end(), '\\', '/');
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// write noise frame to file using GStreamer
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std::ostringstream writer_pipeline;
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writer_pipeline << "appsrc ! filesink location=" << temp_file;
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std::vector<int> params {
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VIDEOWRITER_PROP_IS_COLOR, 0/*false*/,
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VIDEOWRITER_PROP_DEPTH, CV_16U
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};
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VideoWriter writer;
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ASSERT_NO_THROW(writer.open(writer_pipeline.str(), CAP_GSTREAMER, 0/*fourcc*/, 30/*fps*/, frame_size, params));
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ASSERT_TRUE(writer.isOpened());
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ASSERT_NO_THROW(writer.write(frame));
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ASSERT_NO_THROW(writer.release());
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// read noise frame back in
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Mat written_frame(frame_size, CV_16U);
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std::ifstream fs(temp_file, std::ios::in | std::ios::binary);
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fs.read((char*)written_frame.ptr(0), frame_size.width * frame_size.height * 2);
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ASSERT_TRUE(fs);
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fs.close();
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// compare to make sure it's identical
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EXPECT_EQ(0, cv::norm(frame, written_frame, NORM_INF));
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// remove temp file
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EXPECT_EQ(0, remove(temp_file.c_str()));
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}
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TEST(videoio_gstreamer, timeout_property)
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{
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if (!videoio_registry::hasBackend(CAP_GSTREAMER))
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throw SkipTestException("GStreamer backend was not found");
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VideoCapture cap;
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cap.open("videotestsrc ! appsink", CAP_GSTREAMER);
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ASSERT_TRUE(cap.isOpened());
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const double default_timeout = 30000; // 30 seconds
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const double open_timeout = 5678; // 3 seconds
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const double read_timeout = 1234; // 1 second
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EXPECT_NEAR(default_timeout, cap.get(CAP_PROP_OPEN_TIMEOUT_MSEC), 1e-3);
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const double current_read_timeout = cap.get(CAP_PROP_READ_TIMEOUT_MSEC);
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const bool read_timeout_supported = current_read_timeout > 0.0;
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if (read_timeout_supported)
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{
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EXPECT_NEAR(default_timeout, current_read_timeout, 1e-3);
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}
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cap.set(CAP_PROP_OPEN_TIMEOUT_MSEC, open_timeout);
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EXPECT_NEAR(open_timeout, cap.get(CAP_PROP_OPEN_TIMEOUT_MSEC), 1e-3);
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if (read_timeout_supported)
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{
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cap.set(CAP_PROP_READ_TIMEOUT_MSEC, read_timeout);
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EXPECT_NEAR(read_timeout, cap.get(CAP_PROP_READ_TIMEOUT_MSEC), 1e-3);
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}
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}
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}} // namespace
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