296 lines
11 KiB
C++
296 lines
11 KiB
C++
// Copyright 2014 Google Inc. All rights reserved.
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//
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file or at
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// https://developers.google.com/open-source/licenses/bsd
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#include "base/file_util.h"
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#include "base/strings/string_number_conversions.h"
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#include "base/strings/stringprintf.h"
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#include "base/time/clock.h"
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#include "media/base/demuxer.h"
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#include "media/base/fixed_encryptor_source.h"
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#include "media/base/media_stream.h"
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#include "media/base/muxer.h"
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#include "media/base/status_test_util.h"
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#include "media/base/stream_info.h"
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#include "media/mp4/mp4_muxer.h"
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#include "media/test/test_data_util.h"
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#include "testing/gtest/include/gtest/gtest.h"
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using ::testing::ValuesIn;
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namespace media {
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namespace {
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const char* kMediaFiles[] = {"bear-1280x720.mp4", "bear-1280x720-av_frag.mp4"};
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// Muxer options.
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const double kSegmentDurationInSeconds = 1.0;
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const double kFragmentDurationInSecodns = 0.1;
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const bool kSegmentSapAligned = true;
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const bool kFragmentSapAligned = true;
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const int kNumSubsegmentsPerSidx = 2;
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const char kOutputVideo[] = "output_video";
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const char kOutputVideo2[] = "output_video_2";
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const char kOutputAudio[] = "output_audio";
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const char kOutputAudio2[] = "output_audio_2";
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const char kOutputNone[] = "";
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const char kSegmentTemplate[] = "template$Number$.m4s";
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const char kSegmentTemplateOutputPattern[] = "template%d.m4s";
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const bool kSingleSegment = true;
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const bool kMultipleSegments = false;
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const bool kEnableEncryption = true;
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const bool kDisableEncryption = false;
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// Encryption constants.
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const char kKeyIdHex[] = "e5007e6e9dcd5ac095202ed3758382cd";
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const char kKeyHex[] = "6fc96fe628a265b13aeddec0bc421f4d";
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const char kPsshHex[] =
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"08011210e5007e6e9dcd5ac095202ed3"
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"758382cd1a0d7769646576696e655f746573742211544553545f"
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"434f4e54454e545f49445f312a025344";
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const double kClearLeadInSeconds = 1.5;
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MediaStream* FindFirstStreamOfType(const std::vector<MediaStream*>& streams,
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StreamType stream_type) {
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typedef std::vector<MediaStream*>::const_iterator StreamIterator;
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for (StreamIterator it = streams.begin(); it != streams.end(); ++it) {
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if ((*it)->info()->stream_type() == stream_type)
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return *it;
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}
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return NULL;
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}
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MediaStream* FindFirstVideoStream(const std::vector<MediaStream*>& streams) {
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return FindFirstStreamOfType(streams, kStreamVideo);
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}
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MediaStream* FindFirstAudioStream(const std::vector<MediaStream*>& streams) {
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return FindFirstStreamOfType(streams, kStreamAudio);
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}
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} // namespace
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class FakeClock : public base::Clock {
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public:
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// Fake the clock to return NULL time.
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virtual base::Time Now() OVERRIDE { return base::Time(); }
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};
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class PackagerTestBasic : public ::testing::TestWithParam<const char*> {
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public:
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PackagerTestBasic() : decryptor_source_(NULL) {}
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virtual void SetUp() OVERRIDE {
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// Create a test directory for testing, will be deleted after test.
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ASSERT_TRUE(base::CreateNewTempDirectory("packager_", &test_directory_));
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// Copy the input to test directory for easy reference.
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ASSERT_TRUE(base::CopyFile(GetTestDataFilePath(GetParam()),
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test_directory_.AppendASCII(GetParam())));
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}
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virtual void TearDown() OVERRIDE { base::DeleteFile(test_directory_, true); }
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std::string GetFullPath(const std::string& file_name);
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// Check if |file1| and |file2| are the same.
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bool ContentsEqual(const std::string& file1, const std::string file2);
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MuxerOptions SetupOptions(const std::string& output, bool single_segment);
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void Remux(const std::string& input,
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const std::string& video_output,
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const std::string& audio_output,
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bool single_segment,
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bool enable_encryption);
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protected:
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base::FilePath test_directory_;
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DecryptorSource* decryptor_source_;
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FakeClock fake_clock_;
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};
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std::string PackagerTestBasic::GetFullPath(const std::string& file_name) {
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return test_directory_.AppendASCII(file_name).value();
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}
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bool PackagerTestBasic::ContentsEqual(const std::string& file1,
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const std::string file2) {
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return base::ContentsEqual(test_directory_.AppendASCII(file1),
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test_directory_.AppendASCII(file2));
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}
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MuxerOptions PackagerTestBasic::SetupOptions(const std::string& output,
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bool single_segment) {
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MuxerOptions options;
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options.single_segment = single_segment;
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options.segment_duration = kSegmentDurationInSeconds;
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options.fragment_duration = kFragmentDurationInSecodns;
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options.segment_sap_aligned = kSegmentSapAligned;
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options.fragment_sap_aligned = kFragmentSapAligned;
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options.num_subsegments_per_sidx = kNumSubsegmentsPerSidx;
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options.output_file_name = GetFullPath(output);
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options.segment_template = GetFullPath(kSegmentTemplate);
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options.temp_file_name = GetFullPath(output + ".temp");
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return options;
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}
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void PackagerTestBasic::Remux(const std::string& input,
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const std::string& video_output,
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const std::string& audio_output,
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bool single_segment,
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bool enable_encryption) {
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CHECK(!video_output.empty() || !audio_output.empty());
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Demuxer demuxer(GetFullPath(input), decryptor_source_);
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ASSERT_OK(demuxer.Initialize());
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FixedEncryptorSource encryptor_source(kKeyIdHex, kKeyHex, kPsshHex);
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ASSERT_OK(encryptor_source.Initialize());
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scoped_ptr<Muxer> muxer_video;
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if (!video_output.empty()) {
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muxer_video.reset(
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new mp4::MP4Muxer(SetupOptions(video_output, single_segment)));
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muxer_video->set_clock(&fake_clock_);
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muxer_video->AddStream(FindFirstVideoStream(demuxer.streams()));
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if (enable_encryption)
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muxer_video->SetEncryptorSource(&encryptor_source, kClearLeadInSeconds);
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}
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scoped_ptr<Muxer> muxer_audio;
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if (!audio_output.empty()) {
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muxer_audio.reset(
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new mp4::MP4Muxer(SetupOptions(audio_output, single_segment)));
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muxer_audio->set_clock(&fake_clock_);
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muxer_audio->AddStream(FindFirstAudioStream(demuxer.streams()));
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if (enable_encryption)
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muxer_video->SetEncryptorSource(&encryptor_source, kClearLeadInSeconds);
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}
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// Start remuxing process.
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ASSERT_OK(demuxer.Run());
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}
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TEST_P(PackagerTestBasic, MP4MuxerSingleSegmentUnencrypted) {
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ASSERT_NO_FATAL_FAILURE(Remux(GetParam(),
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kOutputVideo,
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kOutputNone,
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kSingleSegment,
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kDisableEncryption));
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}
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TEST_P(PackagerTestBasic, MP4MuxerSingleSegmentEncrypted) {
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ASSERT_NO_FATAL_FAILURE(Remux(GetParam(),
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kOutputVideo,
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kOutputNone,
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kSingleSegment,
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kEnableEncryption));
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// Expect the output to be encrypted.
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Demuxer demuxer(GetFullPath(kOutputVideo), decryptor_source_);
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ASSERT_OK(demuxer.Initialize());
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ASSERT_EQ(1u, demuxer.streams().size());
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EXPECT_TRUE(demuxer.streams()[0]->info()->is_encrypted());
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}
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class PackagerTest : public PackagerTestBasic {
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public:
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virtual void SetUp() OVERRIDE {
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PackagerTestBasic::SetUp();
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ASSERT_NO_FATAL_FAILURE(Remux(GetParam(),
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kOutputVideo,
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kOutputNone,
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kSingleSegment,
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kDisableEncryption));
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ASSERT_NO_FATAL_FAILURE(Remux(GetParam(),
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kOutputNone,
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kOutputAudio,
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kSingleSegment,
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kDisableEncryption));
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}
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};
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TEST_P(PackagerTest, MP4MuxerSingleSegmentUnencryptedAgain) {
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// Take the muxer output and feed into muxer again. The new muxer output
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// should contain the same contents as the previous muxer output.
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ASSERT_NO_FATAL_FAILURE(Remux(kOutputVideo,
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kOutputVideo2,
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kOutputNone,
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kSingleSegment,
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kDisableEncryption));
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EXPECT_TRUE(ContentsEqual(kOutputVideo, kOutputVideo2));
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}
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TEST_P(PackagerTest, MP4MuxerSingleSegmentUnencryptedSeparateAudioVideo) {
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ASSERT_NO_FATAL_FAILURE(Remux(GetParam(),
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kOutputVideo2,
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kOutputAudio2,
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kSingleSegment,
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kDisableEncryption));
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// Compare the output with single muxer output. They should match.
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EXPECT_TRUE(ContentsEqual(kOutputVideo, kOutputVideo2));
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EXPECT_TRUE(ContentsEqual(kOutputAudio, kOutputAudio2));
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}
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TEST_P(PackagerTest, MP4MuxerMultiSegmentsUnencrypted) {
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ASSERT_NO_FATAL_FAILURE(Remux(GetParam(),
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kOutputVideo2,
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kOutputNone,
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kMultipleSegments,
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kDisableEncryption));
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// Find and concatenates the segments.
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const std::string kOutputVideoSegmentsCombined =
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std::string(kOutputVideo) + "_combined";
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base::FilePath output_path =
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test_directory_.AppendASCII(kOutputVideoSegmentsCombined);
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ASSERT_TRUE(
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base::CopyFile(test_directory_.AppendASCII(kOutputVideo2), output_path));
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const int kStartSegmentIndex = 1; // start from one.
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int segment_index = kStartSegmentIndex;
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while (true) {
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base::FilePath segment_path = test_directory_.AppendASCII(
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base::StringPrintf(kSegmentTemplateOutputPattern, segment_index));
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if (!base::PathExists(segment_path))
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break;
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std::string segment_content;
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ASSERT_TRUE(base::ReadFileToString(segment_path, &segment_content));
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int bytes_written = file_util::AppendToFile(
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output_path, segment_content.data(), segment_content.size());
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ASSERT_EQ(segment_content.size(), static_cast<size_t>(bytes_written));
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++segment_index;
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}
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// We should have at least one segment.
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ASSERT_LT(kStartSegmentIndex, segment_index);
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// Feed the combined file into muxer again. The new muxer output should be
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// the same as by just feeding the input to muxer.
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ASSERT_NO_FATAL_FAILURE(Remux(kOutputVideoSegmentsCombined,
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kOutputVideo2,
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kOutputNone,
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kSingleSegment,
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kDisableEncryption));
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EXPECT_TRUE(ContentsEqual(kOutputVideo, kOutputVideo2));
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}
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INSTANTIATE_TEST_CASE_P(PackagerEndToEnd,
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PackagerTestBasic,
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ValuesIn(kMediaFiles));
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INSTANTIATE_TEST_CASE_P(PackagerEndToEnd, PackagerTest, ValuesIn(kMediaFiles));
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} // namespace media
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