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| 1 // Copyright 2014 The Chromium Authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. |
| 4 |
| 5 #include "media/formats/mp2t/es_parser_mpeg1audio.h" |
| 6 |
| 7 #include <list> |
| 8 |
| 9 #include "base/basictypes.h" |
| 10 #include "base/bind.h" |
| 11 #include "base/logging.h" |
| 12 #include "base/strings/string_number_conversions.h" |
| 13 #include "media/base/audio_timestamp_helper.h" |
| 14 #include "media/base/bit_reader.h" |
| 15 #include "media/base/buffers.h" |
| 16 #include "media/base/channel_layout.h" |
| 17 #include "media/base/stream_parser_buffer.h" |
| 18 #include "media/formats/common/offset_byte_queue.h" |
| 19 #include "media/formats/mp2t/mp2t_common.h" |
| 20 #include "media/formats/mpeg/mpeg1_audio_stream_parser.h" |
| 21 |
| 22 namespace media { |
| 23 namespace mp2t { |
| 24 |
| 25 struct EsParserMpeg1Audio::Mpeg1AudioFrame { |
| 26 // Pointer to the ES data. |
| 27 const uint8* data; |
| 28 |
| 29 // Frame size. |
| 30 int size; |
| 31 |
| 32 // Number of samples in the frame. |
| 33 int sample_count; |
| 34 |
| 35 // Frame offset in the ES queue. |
| 36 int64 queue_offset; |
| 37 }; |
| 38 |
| 39 EsParserMpeg1Audio::EsParserMpeg1Audio( |
| 40 const NewAudioConfigCB& new_audio_config_cb, |
| 41 const EmitBufferCB& emit_buffer_cb, |
| 42 const LogCB& log_cb) |
| 43 : log_cb_(log_cb), |
| 44 new_audio_config_cb_(new_audio_config_cb), |
| 45 emit_buffer_cb_(emit_buffer_cb) { |
| 46 } |
| 47 |
| 48 EsParserMpeg1Audio::~EsParserMpeg1Audio() { |
| 49 } |
| 50 |
| 51 bool EsParserMpeg1Audio::ParseFromEsQueue() { |
| 52 // Look for every MPEG1 audio frame in the ES buffer. |
| 53 Mpeg1AudioFrame mpeg1audio_frame; |
| 54 while (LookForMpeg1AudioFrame(&mpeg1audio_frame)) { |
| 55 // Update the audio configuration if needed. |
| 56 DCHECK_GE(mpeg1audio_frame.size, MPEG1AudioStreamParser::kHeaderSize); |
| 57 if (!UpdateAudioConfiguration(mpeg1audio_frame.data)) |
| 58 return false; |
| 59 |
| 60 // Get the PTS & the duration of this access unit. |
| 61 TimingDesc current_timing_desc = |
| 62 GetTimingDescriptor(mpeg1audio_frame.queue_offset); |
| 63 if (current_timing_desc.pts != kNoTimestamp()) |
| 64 audio_timestamp_helper_->SetBaseTimestamp(current_timing_desc.pts); |
| 65 |
| 66 if (audio_timestamp_helper_->base_timestamp() == kNoTimestamp()) { |
| 67 DVLOG(1) << "Audio frame with unknown timestamp"; |
| 68 return false; |
| 69 } |
| 70 base::TimeDelta current_pts = audio_timestamp_helper_->GetTimestamp(); |
| 71 base::TimeDelta frame_duration = |
| 72 audio_timestamp_helper_->GetFrameDuration( |
| 73 mpeg1audio_frame.sample_count); |
| 74 |
| 75 // Emit an audio frame. |
| 76 bool is_key_frame = true; |
| 77 |
| 78 // TODO(wolenetz/acolwell): Validate and use a common cross-parser TrackId |
| 79 // type and allow multiple audio tracks. See https://crbug.com/341581. |
| 80 scoped_refptr<StreamParserBuffer> stream_parser_buffer = |
| 81 StreamParserBuffer::CopyFrom( |
| 82 mpeg1audio_frame.data, |
| 83 mpeg1audio_frame.size, |
| 84 is_key_frame, |
| 85 DemuxerStream::AUDIO, 0); |
| 86 stream_parser_buffer->set_timestamp(current_pts); |
| 87 stream_parser_buffer->set_duration(frame_duration); |
| 88 emit_buffer_cb_.Run(stream_parser_buffer); |
| 89 |
| 90 // Update the PTS of the next frame. |
| 91 audio_timestamp_helper_->AddFrames(mpeg1audio_frame.sample_count); |
| 92 |
| 93 // Skip the current frame. |
| 94 SkipMpeg1AudioFrame(mpeg1audio_frame); |
| 95 } |
| 96 |
| 97 return true; |
| 98 } |
| 99 |
| 100 void EsParserMpeg1Audio::Flush() { |
| 101 } |
| 102 |
| 103 void EsParserMpeg1Audio::ResetInternal() { |
| 104 last_audio_decoder_config_ = AudioDecoderConfig(); |
| 105 } |
| 106 |
| 107 bool EsParserMpeg1Audio::LookForMpeg1AudioFrame( |
| 108 Mpeg1AudioFrame* mpeg1audio_frame) { |
| 109 int es_size; |
| 110 const uint8* es; |
| 111 es_queue_->Peek(&es, &es_size); |
| 112 |
| 113 int max_offset = es_size - MPEG1AudioStreamParser::kHeaderSize; |
| 114 if (max_offset <= 0) |
| 115 return false; |
| 116 |
| 117 for (int offset = 0; offset < max_offset; offset++) { |
| 118 const uint8* cur_buf = &es[offset]; |
| 119 if (cur_buf[0] != 0xff) |
| 120 continue; |
| 121 |
| 122 int remaining_size = es_size - offset; |
| 123 DCHECK_GE(remaining_size, MPEG1AudioStreamParser::kHeaderSize); |
| 124 MPEG1AudioStreamParser::Header header; |
| 125 if (!MPEG1AudioStreamParser::ParseHeader(log_cb_, cur_buf, &header)) |
| 126 continue; |
| 127 |
| 128 if (remaining_size < header.frame_size) { |
| 129 // Not a full frame: will resume when we have more data. |
| 130 // Remove all the bytes located before the frame header, |
| 131 // these bytes will not be used anymore. |
| 132 es_queue_->Pop(offset); |
| 133 return false; |
| 134 } |
| 135 |
| 136 // Check whether there is another frame |
| 137 // |frame_size| apart from the current one. |
| 138 if (remaining_size >= header.frame_size + 1 && |
| 139 cur_buf[header.frame_size] != 0xff) { |
| 140 continue; |
| 141 } |
| 142 |
| 143 es_queue_->Pop(offset); |
| 144 es_queue_->Peek(&mpeg1audio_frame->data, &es_size); |
| 145 mpeg1audio_frame->queue_offset = es_queue_->head(); |
| 146 mpeg1audio_frame->size = header.frame_size; |
| 147 mpeg1audio_frame->sample_count = header.sample_count; |
| 148 DVLOG(LOG_LEVEL_ES) |
| 149 << "MPEG1 audio syncword @ pos=" << mpeg1audio_frame->queue_offset |
| 150 << " frame_size=" << mpeg1audio_frame->size; |
| 151 DVLOG(LOG_LEVEL_ES) |
| 152 << "MPEG1 audio header: " |
| 153 << base::HexEncode(mpeg1audio_frame->data, |
| 154 MPEG1AudioStreamParser::kHeaderSize); |
| 155 return true; |
| 156 } |
| 157 |
| 158 es_queue_->Pop(max_offset); |
| 159 return false; |
| 160 } |
| 161 |
| 162 bool EsParserMpeg1Audio::UpdateAudioConfiguration( |
| 163 const uint8* mpeg1audio_header) { |
| 164 MPEG1AudioStreamParser::Header header; |
| 165 if (!MPEG1AudioStreamParser::ParseHeader(log_cb_, |
| 166 mpeg1audio_header, |
| 167 &header)) { |
| 168 return false; |
| 169 } |
| 170 |
| 171 // TODO(damienv): Verify whether Android playback requires the extra data |
| 172 // field for Mpeg1 audio. If yes, we should generate this field. |
| 173 AudioDecoderConfig audio_decoder_config( |
| 174 kCodecMP3, |
| 175 kSampleFormatS16, |
| 176 header.channel_layout, |
| 177 header.sample_rate, |
| 178 NULL, 0, |
| 179 false); |
| 180 |
| 181 if (!audio_decoder_config.Matches(last_audio_decoder_config_)) { |
| 182 DVLOG(1) << "Sampling frequency: " << header.sample_rate; |
| 183 DVLOG(1) << "Channel layout: " << header.channel_layout; |
| 184 // Reset the timestamp helper to use a new time scale. |
| 185 if (audio_timestamp_helper_ && |
| 186 audio_timestamp_helper_->base_timestamp() != kNoTimestamp()) { |
| 187 base::TimeDelta base_timestamp = audio_timestamp_helper_->GetTimestamp(); |
| 188 audio_timestamp_helper_.reset( |
| 189 new AudioTimestampHelper(header.sample_rate)); |
| 190 audio_timestamp_helper_->SetBaseTimestamp(base_timestamp); |
| 191 } else { |
| 192 audio_timestamp_helper_.reset( |
| 193 new AudioTimestampHelper(header.sample_rate)); |
| 194 } |
| 195 // Audio config notification. |
| 196 last_audio_decoder_config_ = audio_decoder_config; |
| 197 new_audio_config_cb_.Run(audio_decoder_config); |
| 198 } |
| 199 |
| 200 return true; |
| 201 } |
| 202 |
| 203 void EsParserMpeg1Audio::SkipMpeg1AudioFrame( |
| 204 const Mpeg1AudioFrame& mpeg1audio_frame) { |
| 205 DCHECK_EQ(mpeg1audio_frame.queue_offset, es_queue_->head()); |
| 206 es_queue_->Pop(mpeg1audio_frame.size); |
| 207 } |
| 208 |
| 209 } // namespace mp2t |
| 210 } // namespace media |
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