mirror of
https://gitlab.winehq.org/wine/wine-gecko.git
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229 lines
7.1 KiB
C++
229 lines
7.1 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "gtest/gtest.h"
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#include "VorbisTrackEncoder.h"
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#include "WebMWriter.h"
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#include "MediaStreamGraph.h"
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using namespace mozilla;
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class TestVorbisTrackEncoder : public VorbisTrackEncoder
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{
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public:
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// Return true if it has successfully initialized the vorbis encoder.
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bool TestVorbisCreation(int aChannels, int aSamplingRate)
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{
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if (Init(aChannels, aSamplingRate) == NS_OK) {
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return true;
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}
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return false;
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}
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};
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static bool
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TestVorbisInit(int aChannels, int aSamplingRate)
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{
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TestVorbisTrackEncoder encoder;
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return encoder.TestVorbisCreation(aChannels, aSamplingRate);
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}
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static int
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ReadLacing(const uint8_t* aInput, uint32_t aInputLength, uint32_t& aReadBytes)
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{
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aReadBytes = 0;
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int packetSize = 0;
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while (aReadBytes < aInputLength) {
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if (aInput[aReadBytes] == 255) {
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packetSize += 255;
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aReadBytes++;
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} else { // the last byte
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packetSize += aInput[aReadBytes];
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aReadBytes++;
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break;
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}
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}
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return packetSize;
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}
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static bool
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parseVorbisMetadata(nsTArray<uint8_t>& aData, int aChannels, int aRate)
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{
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uint32_t offset = 0;
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// the first byte should be 2.
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if (aData.ElementAt(0) != 2) {
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return false;
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}
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offset = 1;
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// Read the length of header and header_comm
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uint32_t readbytes;
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ogg_packet header;
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ogg_packet header_comm;
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ogg_packet header_code;
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memset(&header, 0, sizeof(ogg_packet));
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memset(&header_comm, 0, sizeof(ogg_packet));
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memset(&header_code, 0, sizeof(ogg_packet));
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int header_length;
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int header_comm_length;
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int header_code_length;
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EXPECT_TRUE(offset < aData.Length());
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header_length = ReadLacing(aData.Elements()+offset, aData.Length()-offset,
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readbytes);
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offset += readbytes;
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EXPECT_TRUE(offset < aData.Length());
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header_comm_length = ReadLacing(aData.Elements()+offset,
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aData.Length()-offset, readbytes);
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offset += readbytes;
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EXPECT_TRUE(offset < aData.Length());
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// The rest length is header_code.
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header_code_length = aData.Length() - offset - header_length
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- header_comm_length;
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EXPECT_TRUE(header_code_length >= 32);
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// Verify the three header packets by vorbis_synthesis_headerin.
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// Raise the b_o_s (begin of stream) flag.
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header.b_o_s = true;
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header.packet = aData.Elements() + offset;
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header.bytes = header_length;
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offset += header_length;
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header_comm.packet = aData.Elements() + offset;
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header_comm.bytes = header_comm_length;
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offset += header_comm_length;
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header_code.packet = aData.Elements() + offset;
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header_code.bytes = header_code_length;
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vorbis_info vi;
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vorbis_comment vc;
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vorbis_info_init(&vi);
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vorbis_comment_init(&vc);
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EXPECT_TRUE(0 == vorbis_synthesis_headerin(&vi, &vc, &header));
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EXPECT_TRUE(0 == vorbis_synthesis_headerin(&vi, &vc, &header_comm));
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EXPECT_TRUE(0 == vorbis_synthesis_headerin(&vi, &vc, &header_code));
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EXPECT_TRUE(vi.channels == aChannels);
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EXPECT_TRUE(vi.rate == aRate);
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vorbis_info_clear(&vi);
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vorbis_comment_clear(&vc);
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return true;
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}
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// Test init function
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TEST(VorbisTrackEncoder, Init)
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{
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// Channel number range test
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// Expect false with 0 or negative channels of input signal.
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EXPECT_FALSE(TestVorbisInit(0, 16000));
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EXPECT_FALSE(TestVorbisInit(-1, 16000));
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EXPECT_FALSE(TestVorbisInit(8 + 1, 16000));
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// Sample rate and channel range test.
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for (int i = 1; i <= 8; i++) {
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EXPECT_FALSE(TestVorbisInit(i, -1));
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EXPECT_FALSE(TestVorbisInit(i, 2000));
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EXPECT_FALSE(TestVorbisInit(i, 4000));
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EXPECT_FALSE(TestVorbisInit(i, 7999));
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EXPECT_TRUE(TestVorbisInit(i, 8000));
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EXPECT_TRUE(TestVorbisInit(i, 11000));
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EXPECT_TRUE(TestVorbisInit(i, 16000));
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EXPECT_TRUE(TestVorbisInit(i, 22050));
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EXPECT_TRUE(TestVorbisInit(i, 32000));
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EXPECT_TRUE(TestVorbisInit(i, 44100));
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EXPECT_TRUE(TestVorbisInit(i, 48000));
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EXPECT_TRUE(TestVorbisInit(i, 96000));
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EXPECT_TRUE(TestVorbisInit(i, 192000));
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EXPECT_FALSE(TestVorbisInit(i, 192001));
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EXPECT_FALSE(TestVorbisInit(i, 200000 + 1));
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}
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}
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// Test metadata
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TEST(VorbisTrackEncoder, Metadata)
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{
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// Initiate vorbis encoder.
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TestVorbisTrackEncoder encoder;
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int channels = 1;
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int rate = 44100;
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encoder.TestVorbisCreation(channels, rate);
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nsRefPtr<TrackMetadataBase> meta = encoder.GetMetadata();
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nsRefPtr<VorbisMetadata> vorbisMetadata(static_cast<VorbisMetadata*>(meta.get()));
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// According to initialization parameters, verify the correctness
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// of vorbisMetadata.
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EXPECT_TRUE(vorbisMetadata->mChannels == channels);
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EXPECT_TRUE(vorbisMetadata->mSamplingFrequency == rate);
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EXPECT_TRUE(parseVorbisMetadata(vorbisMetadata->mData, channels, rate));
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}
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// Test encode function
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TEST(VorbisTrackEncoder, EncodedFrame)
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{
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// Initiate vorbis encoder
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TestVorbisTrackEncoder encoder;
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int channels = 1;
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int rate = 44100;
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encoder.TestVorbisCreation(channels, rate);
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// Generate 1 second samples.
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// Reference PeerConnectionMedia.h::Fake_AudioGenerator
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nsRefPtr<mozilla::SharedBuffer> samples =
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mozilla::SharedBuffer::Create(rate * sizeof(AudioDataValue));
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AudioDataValue* data = static_cast<AudioDataValue*>(samples->Data());
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for (int i = 0; i < rate; i++) {
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data[i] = ((i%8)*4000) - (7*4000)/2;
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}
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nsAutoTArray<const AudioDataValue*,1> channelData;
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channelData.AppendElement(data);
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AudioSegment segment;
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segment.AppendFrames(samples.forget(), channelData, 44100);
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// Track change notification.
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encoder.NotifyQueuedTrackChanges(nullptr, 0, 0, 0, segment);
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// Pull Encoded data back from encoder and verify encoded samples.
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EncodedFrameContainer container;
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EXPECT_TRUE(NS_SUCCEEDED(encoder.GetEncodedTrack(container)));
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// Should have some encoded data.
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EXPECT_TRUE(container.GetEncodedFrames().Length() > 0);
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EXPECT_TRUE(container.GetEncodedFrames().ElementAt(0)->GetFrameData().Length()
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> 0);
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EXPECT_TRUE(container.GetEncodedFrames().ElementAt(0)->GetFrameType() ==
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EncodedFrame::FrameType::VORBIS_AUDIO_FRAME);
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// Encoded data doesn't have duration and timestamp.
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EXPECT_TRUE(container.GetEncodedFrames().ElementAt(0)->GetDuration() == 0);
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EXPECT_TRUE(container.GetEncodedFrames().ElementAt(0)->GetTimeStamp() == 0);
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}
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// EOS test
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TEST(VorbisTrackEncoder, EncodeComplete)
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{
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// Initiate vorbis encoder
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TestVorbisTrackEncoder encoder;
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int channels = 1;
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int rate = 44100;
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encoder.TestVorbisCreation(channels, rate);
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// Track end notification.
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AudioSegment segment;
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encoder.NotifyQueuedTrackChanges(nullptr, 0, 0,
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MediaStreamListener::TRACK_EVENT_ENDED,
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segment);
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// Pull Encoded Data back from encoder. Since we had send out
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// EOS to encoder, encoder.GetEncodedTrack should return
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// NS_OK immidiately.
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EncodedFrameContainer container;
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EXPECT_TRUE(NS_SUCCEEDED(encoder.GetEncodedTrack(container)));
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}
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