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479 lines
13 KiB
C++
479 lines
13 KiB
C++
/**
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* @file
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* @brief Unit tests for openshot::FFmpegReader
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* @author Jonathan Thomas <jonathan@openshot.org>
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*
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* @ref License
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*/
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// Copyright (c) 2008-2019 OpenShot Studios, LLC
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//
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// SPDX-License-Identifier: LGPL-3.0-or-later
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#include <sstream>
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#include <memory>
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#include <set>
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#include "openshot_catch.h"
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#include "FFmpegReader.h"
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#include "Exceptions.h"
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#include "Frame.h"
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#include "Timeline.h"
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#include "Json.h"
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using namespace openshot;
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TEST_CASE( "Invalid_Path", "[libopenshot][ffmpegreader]" )
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{
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// Check invalid path
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CHECK_THROWS_AS(FFmpegReader(""), InvalidFile);
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}
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TEST_CASE( "GetFrame_Before_Opening", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader
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std::stringstream path;
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path << TEST_MEDIA_PATH << "piano.wav";
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FFmpegReader r(path.str());
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// Check invalid path
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CHECK_THROWS_AS(r.GetFrame(1), ReaderClosed);
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}
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TEST_CASE( "Check_Audio_File", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader
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std::stringstream path;
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path << TEST_MEDIA_PATH << "piano.wav";
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FFmpegReader r(path.str());
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r.Open();
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// Get frame 1
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std::shared_ptr<Frame> f = r.GetFrame(1);
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// Get the number of channels and samples
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float *samples = f->GetAudioSamples(0);
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// Check audio properties
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CHECK(f->GetAudioChannelsCount() == 2);
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CHECK(f->GetAudioSamplesCount() == 266);
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// Check actual sample values (to be sure the waveform is correct)
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CHECK(samples[0] == Approx(0.0f).margin(0.00001));
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CHECK(samples[50] == Approx(0.0f).margin(0.00001));
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CHECK(samples[100] == Approx(0.0f).margin(0.00001));
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CHECK(samples[200] == Approx(0.0f).margin(0.00001));
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CHECK(samples[230] == Approx(0.16406f).margin(0.00001));
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CHECK(samples[265] == Approx(-0.06250f).margin(0.00001));
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// Close reader
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r.Close();
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}
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TEST_CASE( "Check_Video_File", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader
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std::stringstream path;
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path << TEST_MEDIA_PATH << "test.mp4";
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FFmpegReader r(path.str());
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r.Open();
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// Get frame 1
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std::shared_ptr<Frame> f = r.GetFrame(1);
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// Get the image data
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const unsigned char* pixels = f->GetPixels(10);
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int pixel_index = 112 * 4; // pixel 112 (4 bytes per pixel)
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// Check image properties on scanline 10, pixel 112
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CHECK((int)pixels[pixel_index] == Approx(21).margin(5));
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CHECK((int)pixels[pixel_index + 1] == Approx(191).margin(5));
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CHECK((int)pixels[pixel_index + 2] == Approx(0).margin(5));
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CHECK((int)pixels[pixel_index + 3] == Approx(255).margin(5));
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// Check pixel function
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CHECK(f->CheckPixel(10, 112, 21, 191, 0, 255, 5) == true);
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CHECK_FALSE(f->CheckPixel(10, 112, 0, 0, 0, 0, 5));
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// Get frame 1
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f = r.GetFrame(2);
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// Get the next frame
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pixels = f->GetPixels(10);
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pixel_index = 112 * 4; // pixel 112 (4 bytes per pixel)
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// Check image properties on scanline 10, pixel 112
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CHECK((int)pixels[pixel_index] == Approx(0).margin(5));
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CHECK((int)pixels[pixel_index + 1] == Approx(96).margin(5));
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CHECK((int)pixels[pixel_index + 2] == Approx(188).margin(5));
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CHECK((int)pixels[pixel_index + 3] == Approx(255).margin(5));
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// Check pixel function
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CHECK(f->CheckPixel(10, 112, 0, 96, 188, 255, 5) == true);
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CHECK_FALSE(f->CheckPixel(10, 112, 0, 0, 0, 0, 5));
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// Close reader
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r.Close();
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}
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TEST_CASE( "Seek", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader
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std::stringstream path;
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path << TEST_MEDIA_PATH << "sintel_trailer-720p.mp4";
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FFmpegReader r(path.str());
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r.Open();
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// Get frame
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std::shared_ptr<Frame> f = r.GetFrame(1);
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CHECK(f->number == 1);
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// Get frame
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f = r.GetFrame(300);
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CHECK(f->number == 300);
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// Get frame
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f = r.GetFrame(301);
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CHECK(f->number == 301);
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// Get frame
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f = r.GetFrame(315);
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CHECK(f->number == 315);
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// Get frame
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f = r.GetFrame(275);
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CHECK(f->number == 275);
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// Get frame
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f = r.GetFrame(270);
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CHECK(f->number == 270);
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// Get frame
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f = r.GetFrame(500);
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CHECK(f->number == 500);
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// Get frame
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f = r.GetFrame(100);
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CHECK(f->number == 100);
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// Get frame
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f = r.GetFrame(600);
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CHECK(f->number == 600);
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// Get frame
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f = r.GetFrame(1);
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CHECK(f->number == 1);
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// Get frame
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f = r.GetFrame(700);
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CHECK(f->number == 700);
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// Close reader
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r.Close();
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}
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TEST_CASE( "Frame_Rate", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader
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std::stringstream path;
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path << TEST_MEDIA_PATH << "sintel_trailer-720p.mp4";
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FFmpegReader r(path.str());
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r.Open();
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// Verify detected frame rate
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openshot::Fraction rate = r.info.fps;
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CHECK(rate.num == 24);
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CHECK(rate.den == 1);
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r.Close();
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}
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TEST_CASE( "Duration_And_Length", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader
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std::stringstream path;
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path << TEST_MEDIA_PATH << "sintel_trailer-720p.mp4";
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FFmpegReader r(path.str());
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r.Open();
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// Duration and frame count should match (length derived from default Video_Preferred duration strategy)
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CHECK(r.info.video_length == 1253);
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CHECK(r.info.duration == Approx(52.208333f).margin(0.0005f));
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r.Close();
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}
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TEST_CASE( "Duration_Strategy_Video_Preferred", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader preferring video duration (then falling back to audio/format)
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std::stringstream path;
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path << TEST_MEDIA_PATH << "sintel_trailer-720p.mp4";
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FFmpegReader r(path.str(), DurationStrategy::VideoPreferred);
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r.Open();
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// Video stream duration should win, but still fall back to others if missing
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CHECK(r.info.video_length == 1253);
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CHECK(r.info.duration == Approx(52.208333).margin(0.0005f));
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r.Close();
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// Audio-only file should fallback to its audio duration
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std::stringstream audio_path;
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audio_path << TEST_MEDIA_PATH << "piano.wav";
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FFmpegReader audio_reader(audio_path.str(), DurationStrategy::VideoPreferred);
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audio_reader.Open();
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CHECK(audio_reader.info.video_length == 132);
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CHECK(audio_reader.info.duration == Approx(4.4f).margin(0.001f));
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audio_reader.Close();
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}
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TEST_CASE( "Duration_Strategy_Longest_Stream", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader preferring the longest duration among streams/format
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std::stringstream path;
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path << TEST_MEDIA_PATH << "sintel_trailer-720p.mp4";
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FFmpegReader r(path.str(), DurationStrategy::LongestStream);
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r.Open();
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CHECK(r.info.video_length == 1253);
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CHECK(r.info.duration == Approx(52.208333).margin(0.0005f));
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r.Close();
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// Audio-only file should resolve to the audio duration
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std::stringstream audio_path;
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audio_path << TEST_MEDIA_PATH << "piano.wav";
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FFmpegReader audio_reader(audio_path.str(), DurationStrategy::LongestStream);
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audio_reader.Open();
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CHECK(audio_reader.info.video_length == 132);
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CHECK(audio_reader.info.duration == Approx(4.4f).margin(0.001f));
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audio_reader.Close();
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}
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TEST_CASE( "Duration_Strategy_Audio_Preferred", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader preferring audio duration (then falling back to audio/format)
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std::stringstream path;
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path << TEST_MEDIA_PATH << "sintel_trailer-720p.mp4";
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FFmpegReader r(path.str(), DurationStrategy::AudioPreferred);
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r.Open();
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// Audio stream duration should win, but still fall back to others if missing
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CHECK(r.info.video_length == 1247);
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CHECK(r.info.duration == Approx(51.958333).margin(0.0005f));
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r.Close();
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// Audio-only file should still resolve to the audio duration
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std::stringstream audio_path;
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audio_path << TEST_MEDIA_PATH << "piano.wav";
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FFmpegReader audio_reader(audio_path.str(), DurationStrategy::AudioPreferred);
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audio_reader.Open();
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CHECK(audio_reader.info.video_length == 132);
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CHECK(audio_reader.info.duration == Approx(4.4f).margin(0.001f));
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audio_reader.Close();
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}
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TEST_CASE( "GIF_TimeBase", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader
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std::stringstream path;
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path << TEST_MEDIA_PATH << "animation.gif";
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FFmpegReader r(path.str());
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r.Open();
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// Verify basic info
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CHECK(r.info.fps.num == 5);
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CHECK(r.info.fps.den == 1);
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CHECK(r.info.video_length == 20);
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CHECK(r.info.duration == Approx(4.0f).margin(0.01));
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auto frame_color = [](std::shared_ptr<Frame> f) {
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const unsigned char* row = f->GetPixels(25);
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return row[25 * 4];
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};
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auto expected_color = [](int frame) {
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return (frame - 1) * 10;
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};
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for (int i = 1; i <= r.info.video_length; ++i) {
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CHECK(frame_color(r.GetFrame(i)) == expected_color(i));
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}
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r.Close();
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}
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TEST_CASE( "Multiple_Open_and_Close", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader
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std::stringstream path;
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path << TEST_MEDIA_PATH << "sintel_trailer-720p.mp4";
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FFmpegReader r(path.str());
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r.Open();
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// Get frame that requires a seek
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std::shared_ptr<Frame> f = r.GetFrame(1200);
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CHECK(f->number == 1200);
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// Close and Re-open the reader
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r.Close();
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r.Open();
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// Get frame
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f = r.GetFrame(1);
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CHECK(f->number == 1);
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f = r.GetFrame(250);
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CHECK(f->number == 250);
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// Close and Re-open the reader
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r.Close();
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r.Open();
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// Get frame
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f = r.GetFrame(750);
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CHECK(f->number == 750);
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f = r.GetFrame(1000);
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CHECK(f->number == 1000);
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// Close reader
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r.Close();
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}
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TEST_CASE( "verify parent Timeline", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader
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std::stringstream path;
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path << TEST_MEDIA_PATH << "sintel_trailer-720p.mp4";
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FFmpegReader r(path.str());
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r.Open();
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// Check size of frame image
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CHECK(r.GetFrame(1)->GetImage()->width() == 1280);
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CHECK(r.GetFrame(1)->GetImage()->height() == 720);
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r.GetFrame(1)->GetImage()->save("reader-1.png", "PNG");
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// Create a Clip associated with this reader
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Clip c1(&r);
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c1.Open();
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// Check size of frame image (should still be the same)
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CHECK(r.GetFrame(1)->GetImage()->width() == 1280);
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CHECK(r.GetFrame(1)->GetImage()->height() == 720);
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// Create Timeline
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Timeline t1(640, 480, Fraction(30,1), 44100, 2, LAYOUT_STEREO);
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t1.AddClip(&c1);
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// Check size of frame image (it should now match the parent timeline)
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CHECK(r.GetFrame(1)->GetImage()->width() == 640);
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CHECK(r.GetFrame(1)->GetImage()->height() == 360);
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c1.Close();
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t1.Close();
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}
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TEST_CASE( "DisplayInfo", "[libopenshot][ffmpegreader]" )
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{
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// Create a reader
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std::stringstream path;
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path << TEST_MEDIA_PATH << "sintel_trailer-720p.mp4";
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FFmpegReader r(path.str());
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r.Open();
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std::string expected(R"(----------------------------
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----- File Information -----
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----------------------------
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--> Has Video: true
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--> Has Audio: true
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--> Has Single Image: false
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--> Duration: 52.21 Seconds
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--> File Size: 7.26 MB
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----------------------------
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----- Video Attributes -----
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----------------------------
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--> Width: 1280
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--> Height: 720)");
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// Store the DisplayInfo() text in 'output'
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std::stringstream output;
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r.DisplayInfo(&output);
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// Compare a [0, expected.size()) substring of output to expected
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CHECK(output.str().substr(0, expected.size()) == expected);
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}
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TEST_CASE( "Decoding AV1 Video", "[libopenshot][ffmpegreader]" )
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{
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try {
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// Create a reader
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std::stringstream path;
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path << TEST_MEDIA_PATH << "test_video_sync.mp4";
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FFmpegReader r(path.str());
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r.Open();
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std::shared_ptr<Frame> f = r.GetFrame(1);
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// Get the image data
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const unsigned char *pixels = f->GetPixels(10);
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int pixel_index = 112 * 4;
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// Check image properties on scanline 10, pixel 112
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CHECK((int) pixels[pixel_index] == Approx(0).margin(5));
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CHECK((int) pixels[pixel_index + 1] == Approx(0).margin(5));
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CHECK((int) pixels[pixel_index + 2] == Approx(0).margin(5));
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CHECK((int) pixels[pixel_index + 3] == Approx(255).margin(5));
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f = r.GetFrame(90);
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// Get the image data
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pixels = f->GetPixels(820);
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pixel_index = 930 * 4;
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// Check image properties on scanline 820, pixel 930
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CHECK((int) pixels[pixel_index] == Approx(255).margin(5));
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CHECK((int) pixels[pixel_index + 1] == Approx(255).margin(5));
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CHECK((int) pixels[pixel_index + 2] == Approx(255).margin(5));
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CHECK((int) pixels[pixel_index + 3] == Approx(255).margin(5));
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f = r.GetFrame(160);
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// Get the image data
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pixels = f->GetPixels(420);
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pixel_index = 930 * 4;
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// Check image properties on scanline 820, pixel 930
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CHECK((int) pixels[pixel_index] == Approx(255).margin(5));
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CHECK((int) pixels[pixel_index + 1] == Approx(255).margin(5));
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CHECK((int) pixels[pixel_index + 2] == Approx(255).margin(5));
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CHECK((int) pixels[pixel_index + 3] == Approx(255).margin(5));
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f = r.GetFrame(240);
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// Get the image data
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pixels = f->GetPixels(624);
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pixel_index = 930 * 4;
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// Check image properties on scanline 820, pixel 930
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CHECK((int) pixels[pixel_index] == Approx(255).margin(5));
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CHECK((int) pixels[pixel_index + 1] == Approx(255).margin(5));
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CHECK((int) pixels[pixel_index + 2] == Approx(255).margin(5));
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CHECK((int) pixels[pixel_index + 3] == Approx(255).margin(5));
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// Close reader
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r.Close();
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} catch (const InvalidCodec & e) {
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// Ignore older FFmpeg versions which don't support AV1
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} catch (const InvalidFile & e) {
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// Ignore older FFmpeg versions which don't support AV1
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}
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} |