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| 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. | 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
| 4 | 4 |
| 5 #include "media/audio/audio_output_controller.h" | 5 #include "media/audio/audio_output_controller.h" |
| 6 | 6 |
| 7 #include "base/bind.h" | 7 #include "base/bind.h" |
| 8 #include "base/debug/trace_event.h" | 8 #include "base/debug/trace_event.h" |
| 9 #include "base/message_loop/message_loop.h" | 9 #include "base/message_loop/message_loop.h" |
| 10 #include "base/metrics/histogram.h" | 10 #include "base/metrics/histogram.h" |
| 11 #include "base/threading/platform_thread.h" | 11 #include "base/threading/platform_thread.h" |
| 12 #include "base/time/time.h" | 12 #include "base/time/time.h" |
| 13 #include "build/build_config.h" | 13 #include "build/build_config.h" |
| 14 #include "media/audio/audio_silence_detector.h" | 14 #include "media/audio/audio_power_monitor.h" |
| 15 #include "media/audio/audio_util.h" | 15 #include "media/audio/audio_util.h" |
| 16 #include "media/audio/shared_memory_util.h" | 16 #include "media/audio/shared_memory_util.h" |
| 17 #include "media/base/scoped_histogram_timer.h" | 17 #include "media/base/scoped_histogram_timer.h" |
| 18 | 18 |
| 19 using base::Time; | 19 using base::Time; |
| 20 using base::TimeDelta; | 20 using base::TimeDelta; |
| 21 | 21 |
| 22 namespace media { | 22 namespace media { |
| 23 | 23 |
| 24 // Amount of contiguous time where all audio is silent before considering the | 24 // Time constant for AudioPowerMonitor. See AudioPowerMonitor ctor comments for |
| 25 // stream to have transitioned and EventHandler::OnAudible() should be called. | 25 // semantics. This value was arbitrarily chosen, but seems to work well. |
| 26 static const int kQuestionableSilencePeriodMillis = 50; | 26 static const int kPowerMeasurementTimeConstantMillis = 10; |
| 27 | 27 |
| 28 // Sample value range below which audio is considered indistinguishably silent. | 28 // Desired frequency of calls to EventHandler::OnPowerMeasured() for reporting |
| 29 // | 29 // power levels in the audio signal. |
| 30 // TODO(miu): This value should be specified in dbFS units rather than full | 30 static const int kPowerMeasurementsPerSecond = 30; |
| 31 // scale. See TODO in audio_silence_detector.h. | |
| 32 static const float kIndistinguishableSilenceThreshold = | |
| 33 1.0f / 4096.0f; // Note: This is approximately -72 dbFS. | |
| 34 | 31 |
| 35 // Polling-related constants. | 32 // Polling-related constants. |
| 36 const int AudioOutputController::kPollNumAttempts = 3; | 33 const int AudioOutputController::kPollNumAttempts = 3; |
| 37 const int AudioOutputController::kPollPauseInMilliseconds = 3; | 34 const int AudioOutputController::kPollPauseInMilliseconds = 3; |
| 38 | 35 |
| 39 AudioOutputController::AudioOutputController(AudioManager* audio_manager, | 36 AudioOutputController::AudioOutputController(AudioManager* audio_manager, |
| 40 EventHandler* handler, | 37 EventHandler* handler, |
| 41 const AudioParameters& params, | 38 const AudioParameters& params, |
| 42 const std::string& input_device_id, | 39 const std::string& input_device_id, |
| 43 SyncReader* sync_reader) | 40 SyncReader* sync_reader) |
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| 151 SCOPED_UMA_HISTOGRAM_TIMER("Media.AudioOutputController.PlayTime"); | 148 SCOPED_UMA_HISTOGRAM_TIMER("Media.AudioOutputController.PlayTime"); |
| 152 | 149 |
| 153 // We can start from created or paused state. | 150 // We can start from created or paused state. |
| 154 if (state_ != kCreated && state_ != kPaused) | 151 if (state_ != kCreated && state_ != kPaused) |
| 155 return; | 152 return; |
| 156 | 153 |
| 157 // Ask for first packet. | 154 // Ask for first packet. |
| 158 sync_reader_->UpdatePendingBytes(0); | 155 sync_reader_->UpdatePendingBytes(0); |
| 159 | 156 |
| 160 state_ = kPlaying; | 157 state_ = kPlaying; |
| 161 silence_detector_.reset(new AudioSilenceDetector( | 158 |
| 159 // Start monitoring power levels and send an initial notification that we're |
| 160 // starting in silence. |
| 161 handler_->OnPowerMeasured(AudioPowerMonitor::zero_power(), false); |
| 162 power_monitor_callback_.Reset( |
| 163 base::Bind(&EventHandler::OnPowerMeasured, base::Unretained(handler_))); |
| 164 power_monitor_.reset(new AudioPowerMonitor( |
| 162 params_.sample_rate(), | 165 params_.sample_rate(), |
| 163 TimeDelta::FromMilliseconds(kQuestionableSilencePeriodMillis), | 166 TimeDelta::FromMilliseconds(kPowerMeasurementTimeConstantMillis), |
| 164 kIndistinguishableSilenceThreshold)); | 167 TimeDelta::FromSeconds(1) / kPowerMeasurementsPerSecond, |
| 168 base::MessageLoop::current(), |
| 169 power_monitor_callback_.callback())); |
| 165 | 170 |
| 166 // We start the AudioOutputStream lazily. | 171 // We start the AudioOutputStream lazily. |
| 167 AllowEntryToOnMoreIOData(); | 172 AllowEntryToOnMoreIOData(); |
| 168 stream_->Start(this); | 173 stream_->Start(this); |
| 169 | 174 |
| 170 // Tell the event handler that we are now playing, and also start the silence | |
| 171 // detection notifications. | |
| 172 handler_->OnPlaying(); | 175 handler_->OnPlaying(); |
| 173 silence_detector_->Start( | |
| 174 base::Bind(&EventHandler::OnAudible, base::Unretained(handler_))); | |
| 175 } | 176 } |
| 176 | 177 |
| 177 void AudioOutputController::StopStream() { | 178 void AudioOutputController::StopStream() { |
| 178 DCHECK(message_loop_->BelongsToCurrentThread()); | 179 DCHECK(message_loop_->BelongsToCurrentThread()); |
| 179 | 180 |
| 180 if (state_ == kPlaying) { | 181 if (state_ == kPlaying) { |
| 181 stream_->Stop(); | 182 stream_->Stop(); |
| 182 DisallowEntryToOnMoreIOData(); | 183 DisallowEntryToOnMoreIOData(); |
| 183 silence_detector_->Stop(true); | 184 |
| 184 silence_detector_.reset(); | 185 // Stop monitoring power levels. By canceling power_monitor_callback_, any |
| 186 // tasks posted to |message_loop_| by AudioPowerMonitor during the |
| 187 // stream_->Stop() call above will not run. |
| 188 power_monitor_.reset(); |
| 189 power_monitor_callback_.Cancel(); |
| 190 |
| 185 state_ = kPaused; | 191 state_ = kPaused; |
| 186 } | 192 } |
| 187 } | 193 } |
| 188 | 194 |
| 189 void AudioOutputController::DoPause() { | 195 void AudioOutputController::DoPause() { |
| 190 DCHECK(message_loop_->BelongsToCurrentThread()); | 196 DCHECK(message_loop_->BelongsToCurrentThread()); |
| 191 SCOPED_UMA_HISTOGRAM_TIMER("Media.AudioOutputController.PauseTime"); | 197 SCOPED_UMA_HISTOGRAM_TIMER("Media.AudioOutputController.PauseTime"); |
| 192 | 198 |
| 193 StopStream(); | 199 StopStream(); |
| 194 | 200 |
| 195 if (state_ != kPaused) | 201 if (state_ != kPaused) |
| 196 return; | 202 return; |
| 197 | 203 |
| 198 // Send a special pause mark to the low-latency audio thread. | 204 // Send a special pause mark to the low-latency audio thread. |
| 199 sync_reader_->UpdatePendingBytes(kPauseMark); | 205 sync_reader_->UpdatePendingBytes(kPauseMark); |
| 200 | 206 |
| 207 // Paused means silence follows. |
| 208 handler_->OnPowerMeasured(AudioPowerMonitor::zero_power(), false); |
| 209 |
| 201 handler_->OnPaused(); | 210 handler_->OnPaused(); |
| 202 } | 211 } |
| 203 | 212 |
| 204 void AudioOutputController::DoClose() { | 213 void AudioOutputController::DoClose() { |
| 205 DCHECK(message_loop_->BelongsToCurrentThread()); | 214 DCHECK(message_loop_->BelongsToCurrentThread()); |
| 206 SCOPED_UMA_HISTOGRAM_TIMER("Media.AudioOutputController.CloseTime"); | 215 SCOPED_UMA_HISTOGRAM_TIMER("Media.AudioOutputController.CloseTime"); |
| 207 | 216 |
| 208 if (state_ != kClosed) { | 217 if (state_ != kClosed) { |
| 209 DoStopCloseAndClearStream(); | 218 DoStopCloseAndClearStream(); |
| 210 sync_reader_->Close(); | 219 sync_reader_->Close(); |
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| 263 const bool kShouldBlock = true; | 272 const bool kShouldBlock = true; |
| 264 #else | 273 #else |
| 265 const bool kShouldBlock = diverting_to_stream_ != NULL; | 274 const bool kShouldBlock = diverting_to_stream_ != NULL; |
| 266 #endif | 275 #endif |
| 267 | 276 |
| 268 const int frames = sync_reader_->Read(kShouldBlock, source, dest); | 277 const int frames = sync_reader_->Read(kShouldBlock, source, dest); |
| 269 DCHECK_LE(0, frames); | 278 DCHECK_LE(0, frames); |
| 270 sync_reader_->UpdatePendingBytes( | 279 sync_reader_->UpdatePendingBytes( |
| 271 buffers_state.total_bytes() + frames * params_.GetBytesPerFrame()); | 280 buffers_state.total_bytes() + frames * params_.GetBytesPerFrame()); |
| 272 | 281 |
| 273 silence_detector_->Scan(dest, frames); | 282 power_monitor_->Scan(*dest, frames); |
| 274 | 283 |
| 275 AllowEntryToOnMoreIOData(); | 284 AllowEntryToOnMoreIOData(); |
| 276 return frames; | 285 return frames; |
| 277 } | 286 } |
| 278 | 287 |
| 279 void AudioOutputController::OnError(AudioOutputStream* stream) { | 288 void AudioOutputController::OnError(AudioOutputStream* stream) { |
| 280 // Handle error on the audio controller thread. | 289 // Handle error on the audio controller thread. |
| 281 message_loop_->PostTask(FROM_HERE, base::Bind( | 290 message_loop_->PostTask(FROM_HERE, base::Bind( |
| 282 &AudioOutputController::DoReportError, this)); | 291 &AudioOutputController::DoReportError, this)); |
| 283 } | 292 } |
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| 377 DCHECK(base::AtomicRefCountIsZero(&num_allowed_io_)); | 386 DCHECK(base::AtomicRefCountIsZero(&num_allowed_io_)); |
| 378 base::AtomicRefCountInc(&num_allowed_io_); | 387 base::AtomicRefCountInc(&num_allowed_io_); |
| 379 } | 388 } |
| 380 | 389 |
| 381 void AudioOutputController::DisallowEntryToOnMoreIOData() { | 390 void AudioOutputController::DisallowEntryToOnMoreIOData() { |
| 382 const bool is_zero = !base::AtomicRefCountDec(&num_allowed_io_); | 391 const bool is_zero = !base::AtomicRefCountDec(&num_allowed_io_); |
| 383 DCHECK(is_zero); | 392 DCHECK(is_zero); |
| 384 } | 393 } |
| 385 | 394 |
| 386 } // namespace media | 395 } // namespace media |
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