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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/fake_audio_input_stream.h" | 5 #include "media/audio/fake_audio_input_stream.h" |
6 | 6 |
7 #include "base/bind.h" | 7 #include "base/bind.h" |
| 8 #include "base/bind_helpers.h" |
8 #include "base/command_line.h" | 9 #include "base/command_line.h" |
9 #include "base/files/file.h" | 10 #include "base/files/file_path.h" |
10 #include "base/lazy_instance.h" | 11 #include "base/single_thread_task_runner.h" |
| 12 #include "base/time/time.h" |
11 #include "media/audio/audio_manager_base.h" | 13 #include "media/audio/audio_manager_base.h" |
12 #include "media/base/audio_bus.h" | 14 #include "media/base/audio_bus.h" |
13 #include "media/base/media_switches.h" | 15 #include "media/base/media_switches.h" |
14 | 16 |
15 using base::TimeTicks; | |
16 using base::TimeDelta; | |
17 | |
18 namespace media { | 17 namespace media { |
19 | 18 |
20 namespace { | |
21 | |
22 // These values are based on experiments for local-to-local | |
23 // PeerConnection to demonstrate audio/video synchronization. | |
24 const int kBeepDurationMilliseconds = 20; | |
25 const int kBeepFrequency = 400; | |
26 | |
27 // Intervals between two automatic beeps. | |
28 const int kAutomaticBeepIntervalInMs = 500; | |
29 | |
30 // Automatic beep will be triggered every |kAutomaticBeepIntervalInMs| unless | |
31 // users explicitly call BeepOnce(), which will disable the automatic beep. | |
32 class BeepContext { | |
33 public: | |
34 BeepContext() : beep_once_(false), automatic_beep_(true) {} | |
35 | |
36 void SetBeepOnce(bool enable) { | |
37 base::AutoLock auto_lock(lock_); | |
38 beep_once_ = enable; | |
39 | |
40 // Disable the automatic beep if users explicit set |beep_once_| to true. | |
41 if (enable) | |
42 automatic_beep_ = false; | |
43 } | |
44 bool beep_once() const { | |
45 base::AutoLock auto_lock(lock_); | |
46 return beep_once_; | |
47 } | |
48 bool automatic_beep() const { | |
49 base::AutoLock auto_lock(lock_); | |
50 return automatic_beep_; | |
51 } | |
52 | |
53 private: | |
54 mutable base::Lock lock_; | |
55 bool beep_once_; | |
56 bool automatic_beep_; | |
57 }; | |
58 | |
59 // Opens |wav_filename|, reads it and loads it as a wav file. This function will | |
60 // bluntly trigger CHECKs if we can't read the file or if it's malformed. The | |
61 // caller takes ownership of the returned data. The size of the data is stored | |
62 // in |read_length|. | |
63 scoped_ptr<uint8[]> ReadWavFile(const base::FilePath& wav_filename, | |
64 size_t* file_length) { | |
65 base::File wav_file( | |
66 wav_filename, base::File::FLAG_OPEN | base::File::FLAG_READ); | |
67 if (!wav_file.IsValid()) { | |
68 CHECK(false) << "Failed to read " << wav_filename.value() << " as input to " | |
69 << "the fake device."; | |
70 return nullptr; | |
71 } | |
72 | |
73 size_t wav_file_length = wav_file.GetLength(); | |
74 CHECK_GT(wav_file_length, 0u) | |
75 << "Input file to fake device is empty: " << wav_filename.value(); | |
76 | |
77 uint8* wav_file_data = new uint8[wav_file_length]; | |
78 size_t read_bytes = wav_file.Read(0, reinterpret_cast<char*>(wav_file_data), | |
79 wav_file_length); | |
80 if (read_bytes != wav_file_length) { | |
81 CHECK(false) << "Failed to read all bytes of " << wav_filename.value(); | |
82 return nullptr; | |
83 } | |
84 *file_length = wav_file_length; | |
85 return scoped_ptr<uint8[]>(wav_file_data); | |
86 } | |
87 | |
88 // Opens |wav_filename|, reads it and loads it as a Wav file. This function will | |
89 // bluntly trigger CHECKs if we can't read the file or if it's malformed. | |
90 scoped_ptr<media::WavAudioHandler> CreateWavAudioHandler( | |
91 const base::FilePath& wav_filename, const uint8* wav_file_data, | |
92 size_t wav_file_length, const AudioParameters& expected_params) { | |
93 base::StringPiece wav_data(reinterpret_cast<const char*>(wav_file_data), | |
94 wav_file_length); | |
95 scoped_ptr<media::WavAudioHandler> wav_audio_handler( | |
96 new media::WavAudioHandler(wav_data)); | |
97 return wav_audio_handler.Pass(); | |
98 } | |
99 | |
100 static base::LazyInstance<BeepContext> g_beep_context = | |
101 LAZY_INSTANCE_INITIALIZER; | |
102 | |
103 } // namespace | |
104 | |
105 AudioInputStream* FakeAudioInputStream::MakeFakeStream( | 19 AudioInputStream* FakeAudioInputStream::MakeFakeStream( |
106 AudioManagerBase* manager, | 20 AudioManagerBase* manager, |
107 const AudioParameters& params) { | 21 const AudioParameters& params) { |
108 return new FakeAudioInputStream(manager, params); | 22 return new FakeAudioInputStream(manager, params); |
109 } | 23 } |
110 | 24 |
111 FakeAudioInputStream::FakeAudioInputStream(AudioManagerBase* manager, | 25 FakeAudioInputStream::FakeAudioInputStream(AudioManagerBase* manager, |
112 const AudioParameters& params) | 26 const AudioParameters& params) |
113 : audio_manager_(manager), | 27 : audio_manager_(manager), |
114 callback_(NULL), | 28 callback_(NULL), |
115 buffer_size_((params.channels() * params.bits_per_sample() * | 29 fake_audio_provider_(manager->GetWorkerTaskRunner(), params) { |
116 params.frames_per_buffer()) / | |
117 8), | |
118 params_(params), | |
119 task_runner_(manager->GetTaskRunner()), | |
120 callback_interval_(base::TimeDelta::FromMilliseconds( | |
121 (params.frames_per_buffer() * 1000) / params.sample_rate())), | |
122 beep_duration_in_buffers_(kBeepDurationMilliseconds * | |
123 params.sample_rate() / | |
124 params.frames_per_buffer() / | |
125 1000), | |
126 beep_generated_in_buffers_(0), | |
127 beep_period_in_frames_(params.sample_rate() / kBeepFrequency), | |
128 audio_bus_(AudioBus::Create(params)), | |
129 wav_file_read_pos_(0), | |
130 weak_factory_(this) { | |
131 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); | 30 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); |
132 } | 31 } |
133 | 32 |
134 FakeAudioInputStream::~FakeAudioInputStream() {} | 33 FakeAudioInputStream::~FakeAudioInputStream() { |
| 34 DCHECK(!callback_); |
| 35 } |
135 | 36 |
136 bool FakeAudioInputStream::Open() { | 37 bool FakeAudioInputStream::Open() { |
137 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); | 38 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); |
138 buffer_.reset(new uint8[buffer_size_]); | |
139 memset(buffer_.get(), 0, buffer_size_); | |
140 audio_bus_->Zero(); | |
141 | |
142 if (base::CommandLine::ForCurrentProcess()->HasSwitch( | 39 if (base::CommandLine::ForCurrentProcess()->HasSwitch( |
143 switches::kUseFileForFakeAudioCapture)) { | 40 switches::kUseFileForFakeAudioCapture)) { |
144 OpenInFileMode(base::CommandLine::ForCurrentProcess()->GetSwitchValuePath( | 41 base::FilePath path_to_wav_file = |
145 switches::kUseFileForFakeAudioCapture)); | 42 base::CommandLine::ForCurrentProcess()->GetSwitchValuePath( |
| 43 switches::kUseFileForFakeAudioCapture); |
| 44 CHECK(!path_to_wav_file.empty()) |
| 45 << "You must pass the file to use as argument to --" |
| 46 << switches::kUseFileForFakeAudioCapture << "."; |
| 47 fake_audio_provider_.OpenInFileMode(path_to_wav_file); |
| 48 } else { |
| 49 fake_audio_provider_.OpenInBeepMode(); |
146 } | 50 } |
147 | |
148 return true; | 51 return true; |
149 } | 52 } |
150 | 53 |
151 void FakeAudioInputStream::Start(AudioInputCallback* callback) { | 54 void FakeAudioInputStream::Start(AudioInputCallback* callback) { |
152 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); | 55 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); |
153 DCHECK(!callback_); | |
154 callback_ = callback; | 56 callback_ = callback; |
155 last_callback_time_ = TimeTicks::Now(); | 57 fake_audio_provider_.Start(base::Bind( |
156 | 58 &FakeAudioInputStream::OnMoreInputData, base::Unretained(this))); |
157 task_runner_->PostDelayedTask( | |
158 FROM_HERE, | |
159 base::Bind(&FakeAudioInputStream::DoCallback, weak_factory_.GetWeakPtr()), | |
160 callback_interval_); | |
161 } | |
162 | |
163 void FakeAudioInputStream::DoCallback() { | |
164 DCHECK(callback_); | |
165 | |
166 const TimeTicks now = TimeTicks::Now(); | |
167 base::TimeDelta next_callback_time = | |
168 last_callback_time_ + callback_interval_ * 2 - now; | |
169 | |
170 // If we are falling behind, try to catch up as much as we can in the next | |
171 // callback. | |
172 if (next_callback_time < base::TimeDelta()) | |
173 next_callback_time = base::TimeDelta(); | |
174 | |
175 if (PlayingFromFile()) { | |
176 PlayFile(); | |
177 } else { | |
178 PlayBeep(); | |
179 } | |
180 | |
181 last_callback_time_ = now; | |
182 | |
183 task_runner_->PostDelayedTask( | |
184 FROM_HERE, | |
185 base::Bind(&FakeAudioInputStream::DoCallback, weak_factory_.GetWeakPtr()), | |
186 next_callback_time); | |
187 } | |
188 | |
189 void FakeAudioInputStream::OpenInFileMode(const base::FilePath& wav_filename) { | |
190 CHECK(!wav_filename.empty()) | |
191 << "You must pass the file to use as argument to --" | |
192 << switches::kUseFileForFakeAudioCapture << "."; | |
193 | |
194 // Read the file, and put its data in a scoped_ptr so it gets deleted later. | |
195 size_t file_length = 0; | |
196 wav_file_data_ = ReadWavFile(wav_filename, &file_length); | |
197 wav_audio_handler_ = CreateWavAudioHandler( | |
198 wav_filename, wav_file_data_.get(), file_length, params_); | |
199 | |
200 // Hook us up so we pull in data from the file into the converter. We need to | |
201 // modify the wav file's audio parameters since we'll be reading small slices | |
202 // of it at a time and not the whole thing (like 10 ms at a time). | |
203 AudioParameters file_audio_slice( | |
204 wav_audio_handler_->params().format(), | |
205 wav_audio_handler_->params().channel_layout(), | |
206 wav_audio_handler_->params().sample_rate(), | |
207 wav_audio_handler_->params().bits_per_sample(), | |
208 params_.frames_per_buffer()); | |
209 | |
210 file_audio_converter_.reset( | |
211 new AudioConverter(file_audio_slice, params_, false)); | |
212 file_audio_converter_->AddInput(this); | |
213 } | |
214 | |
215 bool FakeAudioInputStream::PlayingFromFile() { | |
216 return wav_audio_handler_.get() != nullptr; | |
217 } | |
218 | |
219 void FakeAudioInputStream::PlayFile() { | |
220 // Stop playing if we've played out the whole file. | |
221 if (wav_audio_handler_->AtEnd(wav_file_read_pos_)) | |
222 return; | |
223 | |
224 file_audio_converter_->Convert(audio_bus_.get()); | |
225 callback_->OnData(this, audio_bus_.get(), buffer_size_, 1.0); | |
226 } | |
227 | |
228 void FakeAudioInputStream::PlayBeep() { | |
229 // Accumulate the time from the last beep. | |
230 interval_from_last_beep_ += TimeTicks::Now() - last_callback_time_; | |
231 | |
232 memset(buffer_.get(), 0, buffer_size_); | |
233 bool should_beep = false; | |
234 { | |
235 BeepContext* beep_context = g_beep_context.Pointer(); | |
236 if (beep_context->automatic_beep()) { | |
237 base::TimeDelta delta = interval_from_last_beep_ - | |
238 TimeDelta::FromMilliseconds(kAutomaticBeepIntervalInMs); | |
239 if (delta > base::TimeDelta()) { | |
240 should_beep = true; | |
241 interval_from_last_beep_ = delta; | |
242 } | |
243 } else { | |
244 should_beep = beep_context->beep_once(); | |
245 beep_context->SetBeepOnce(false); | |
246 } | |
247 } | |
248 | |
249 // If this object was instructed to generate a beep or has started to | |
250 // generate a beep sound. | |
251 if (should_beep || beep_generated_in_buffers_) { | |
252 // Compute the number of frames to output high value. Then compute the | |
253 // number of bytes based on channels and bits per channel. | |
254 int high_frames = beep_period_in_frames_ / 2; | |
255 int high_bytes = high_frames * params_.bits_per_sample() * | |
256 params_.channels() / 8; | |
257 | |
258 // Separate high and low with the same number of bytes to generate a | |
259 // square wave. | |
260 int position = 0; | |
261 while (position + high_bytes <= buffer_size_) { | |
262 // Write high values first. | |
263 memset(buffer_.get() + position, 128, high_bytes); | |
264 // Then leave low values in the buffer with |high_bytes|. | |
265 position += high_bytes * 2; | |
266 } | |
267 | |
268 ++beep_generated_in_buffers_; | |
269 if (beep_generated_in_buffers_ >= beep_duration_in_buffers_) | |
270 beep_generated_in_buffers_ = 0; | |
271 } | |
272 | |
273 audio_bus_->FromInterleaved( | |
274 buffer_.get(), audio_bus_->frames(), params_.bits_per_sample() / 8); | |
275 callback_->OnData(this, audio_bus_.get(), buffer_size_, 1.0); | |
276 } | 59 } |
277 | 60 |
278 void FakeAudioInputStream::Stop() { | 61 void FakeAudioInputStream::Stop() { |
279 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); | 62 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); |
280 weak_factory_.InvalidateWeakPtrs(); | 63 fake_audio_provider_.Stop(); |
281 callback_ = NULL; | 64 callback_ = NULL; |
282 } | 65 } |
283 | 66 |
284 void FakeAudioInputStream::Close() { | 67 void FakeAudioInputStream::Close() { |
285 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); | 68 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); |
| 69 DCHECK(!callback_); |
286 audio_manager_->ReleaseInputStream(this); | 70 audio_manager_->ReleaseInputStream(this); |
287 } | 71 } |
288 | 72 |
289 double FakeAudioInputStream::GetMaxVolume() { | 73 double FakeAudioInputStream::GetMaxVolume() { |
290 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); | 74 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); |
291 return 1.0; | 75 return 1.0; |
292 } | 76 } |
293 | 77 |
294 void FakeAudioInputStream::SetVolume(double volume) { | 78 void FakeAudioInputStream::SetVolume(double volume) { |
295 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); | 79 DCHECK(audio_manager_->GetTaskRunner()->BelongsToCurrentThread()); |
(...skipping 10 matching lines...) Expand all Loading... |
306 } | 90 } |
307 | 91 |
308 bool FakeAudioInputStream::SetAutomaticGainControl(bool enabled) { | 92 bool FakeAudioInputStream::SetAutomaticGainControl(bool enabled) { |
309 return false; | 93 return false; |
310 } | 94 } |
311 | 95 |
312 bool FakeAudioInputStream::GetAutomaticGainControl() { | 96 bool FakeAudioInputStream::GetAutomaticGainControl() { |
313 return false; | 97 return false; |
314 } | 98 } |
315 | 99 |
316 // static | 100 void FakeAudioInputStream::OnMoreInputData( |
317 void FakeAudioInputStream::BeepOnce() { | 101 AudioBus* audio_bus, int buffer_size) { |
318 BeepContext* beep_context = g_beep_context.Pointer(); | 102 DCHECK(audio_manager_->GetWorkerTaskRunner()->BelongsToCurrentThread()); |
319 beep_context->SetBeepOnce(true); | 103 DCHECK(callback_); |
| 104 callback_->OnData(this, audio_bus, buffer_size, 1.0); |
320 } | 105 } |
321 | 106 |
322 double FakeAudioInputStream::ProvideInput(AudioBus* audio_bus_into_converter, | 107 void FakeAudioInputStream::BeepOnce() { |
323 base::TimeDelta buffer_delay) { | 108 FakeAudioProvider::BeepOnce(); |
324 // Unfilled frames will be zeroed by CopyTo. | 109 } |
325 size_t bytes_written; | |
326 wav_audio_handler_->CopyTo(audio_bus_into_converter, wav_file_read_pos_, | |
327 &bytes_written); | |
328 wav_file_read_pos_ += bytes_written; | |
329 return 1.0; | |
330 }; | |
331 | 110 |
332 } // namespace media | 111 } // namespace media |
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