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Side by Side Diff: webrtc/modules/audio_processing/audio_processing_impl.h

Issue 1424663003: Lock scheme #8: Introduced the new locking scheme (Closed) Base URL: https://chromium.googlesource.com/external/webrtc.git@add_threadcheckers_CL
Patch Set: Created a threadsafe wrapper for the random generator in the locktest. Fixed an unprotected variabl… Created 5 years ago
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1 /* 1 /*
2 * Copyright (c) 2012 The WebRTC project authors. All Rights Reserved. 2 * Copyright (c) 2012 The WebRTC project authors. All Rights Reserved.
3 * 3 *
4 * Use of this source code is governed by a BSD-style license 4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source 5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found 6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may 7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree. 8 * be found in the AUTHORS file in the root of the source tree.
9 */ 9 */
10 10
11 #ifndef WEBRTC_MODULES_AUDIO_PROCESSING_AUDIO_PROCESSING_IMPL_H_ 11 #ifndef WEBRTC_MODULES_AUDIO_PROCESSING_AUDIO_PROCESSING_IMPL_H_
12 #define WEBRTC_MODULES_AUDIO_PROCESSING_AUDIO_PROCESSING_IMPL_H_ 12 #define WEBRTC_MODULES_AUDIO_PROCESSING_AUDIO_PROCESSING_IMPL_H_
13 13
14 #include <list> 14 #include <list>
15 #include <string> 15 #include <string>
16 #include <vector> 16 #include <vector>
17 17
18 #include "webrtc/base/criticalsection.h"
18 #include "webrtc/base/scoped_ptr.h" 19 #include "webrtc/base/scoped_ptr.h"
19 #include "webrtc/base/thread_annotations.h" 20 #include "webrtc/base/thread_annotations.h"
21 #include "webrtc/modules/audio_processing/audio_buffer.h"
20 #include "webrtc/modules/audio_processing/include/audio_processing.h" 22 #include "webrtc/modules/audio_processing/include/audio_processing.h"
23 #include "webrtc/system_wrappers/include/file_wrapper.h"
24
25 #ifdef WEBRTC_AUDIOPROC_DEBUG_DUMP
26 // Files generated at build-time by the protobuf compiler.
27 #ifdef WEBRTC_ANDROID_PLATFORM_BUILD
28 #include "external/webrtc/webrtc/modules/audio_processing/debug.pb.h"
29 #else
30 #include "webrtc/audio_processing/debug.pb.h"
31 #endif
32 #endif // WEBRTC_AUDIOPROC_DEBUG_DUMP
21 33
22 namespace webrtc { 34 namespace webrtc {
23 35
24 class AgcManagerDirect; 36 class AgcManagerDirect;
25 class AudioBuffer;
26 class AudioConverter; 37 class AudioConverter;
27 38
28 template<typename T> 39 template<typename T>
29 class Beamformer; 40 class Beamformer;
30 41
31 class CriticalSectionWrapper;
32 class EchoCancellationImpl; 42 class EchoCancellationImpl;
33 class EchoControlMobileImpl; 43 class EchoControlMobileImpl;
34 class FileWrapper;
35 class GainControlImpl; 44 class GainControlImpl;
36 class GainControlForNewAgc; 45 class GainControlForNewAgc;
37 class HighPassFilterImpl; 46 class HighPassFilterImpl;
38 class LevelEstimatorImpl; 47 class LevelEstimatorImpl;
39 class NoiseSuppressionImpl; 48 class NoiseSuppressionImpl;
40 class ProcessingComponent; 49 class ProcessingComponent;
41 class TransientSuppressor; 50 class TransientSuppressor;
42 class VoiceDetectionImpl; 51 class VoiceDetectionImpl;
43 class IntelligibilityEnhancer; 52 class IntelligibilityEnhancer;
44 53
45 #ifdef WEBRTC_AUDIOPROC_DEBUG_DUMP
46 namespace audioproc {
47
48 class Event;
49
50 } // namespace audioproc
51 #endif
52
53 class AudioProcessingImpl : public AudioProcessing { 54 class AudioProcessingImpl : public AudioProcessing {
54 public: 55 public:
56 // Methods forcing APM to run in a single-threaded manner.
57 // Acquires both the render and capture locks.
55 explicit AudioProcessingImpl(const Config& config); 58 explicit AudioProcessingImpl(const Config& config);
56
57 // AudioProcessingImpl takes ownership of beamformer. 59 // AudioProcessingImpl takes ownership of beamformer.
58 AudioProcessingImpl(const Config& config, Beamformer<float>* beamformer); 60 AudioProcessingImpl(const Config& config, Beamformer<float>* beamformer);
59 virtual ~AudioProcessingImpl(); 61 virtual ~AudioProcessingImpl();
60
61 // AudioProcessing methods.
62 int Initialize() override; 62 int Initialize() override;
63 int Initialize(int input_sample_rate_hz, 63 int Initialize(int input_sample_rate_hz,
64 int output_sample_rate_hz, 64 int output_sample_rate_hz,
65 int reverse_sample_rate_hz, 65 int reverse_sample_rate_hz,
66 ChannelLayout input_layout, 66 ChannelLayout input_layout,
67 ChannelLayout output_layout, 67 ChannelLayout output_layout,
68 ChannelLayout reverse_layout) override; 68 ChannelLayout reverse_layout) override;
69 int Initialize(const ProcessingConfig& processing_config) override; 69 int Initialize(const ProcessingConfig& processing_config) override;
70 void SetExtraOptions(const Config& config) override; 70 void SetExtraOptions(const Config& config) override;
71 int proc_sample_rate_hz() const override; 71 void UpdateHistogramsOnCallEnd() override;
72 int proc_split_sample_rate_hz() const override; 72 int StartDebugRecording(const char filename[kMaxFilenameSize]) override;
73 int num_input_channels() const override; 73 int StartDebugRecording(FILE* handle) override;
74 int num_output_channels() const override; 74 int StartDebugRecordingForPlatformFile(rtc::PlatformFile handle) override;
75 int num_reverse_channels() const override; 75 int StopDebugRecording() override;
76 void set_output_will_be_muted(bool muted) override; 76
77 // Capture-side exclusive methods possibly running APM in a
78 // multi-threaded manner. Acquire the capture lock.
77 int ProcessStream(AudioFrame* frame) override; 79 int ProcessStream(AudioFrame* frame) override;
78 int ProcessStream(const float* const* src, 80 int ProcessStream(const float* const* src,
79 size_t samples_per_channel, 81 size_t samples_per_channel,
80 int input_sample_rate_hz, 82 int input_sample_rate_hz,
81 ChannelLayout input_layout, 83 ChannelLayout input_layout,
82 int output_sample_rate_hz, 84 int output_sample_rate_hz,
83 ChannelLayout output_layout, 85 ChannelLayout output_layout,
84 float* const* dest) override; 86 float* const* dest) override;
85 int ProcessStream(const float* const* src, 87 int ProcessStream(const float* const* src,
86 const StreamConfig& input_config, 88 const StreamConfig& input_config,
87 const StreamConfig& output_config, 89 const StreamConfig& output_config,
88 float* const* dest) override; 90 float* const* dest) override;
91 void set_output_will_be_muted(bool muted) override;
92 int set_stream_delay_ms(int delay) override;
93 void set_delay_offset_ms(int offset) override;
94 int delay_offset_ms() const override;
95 void set_stream_key_pressed(bool key_pressed) override;
96
97 // Render-side exclusive methods possibly running APM in a
98 // multi-threaded manner. Acquire the render lock.
89 int AnalyzeReverseStream(AudioFrame* frame) override; 99 int AnalyzeReverseStream(AudioFrame* frame) override;
90 int ProcessReverseStream(AudioFrame* frame) override; 100 int ProcessReverseStream(AudioFrame* frame) override;
91 int AnalyzeReverseStream(const float* const* data, 101 int AnalyzeReverseStream(const float* const* data,
92 size_t samples_per_channel, 102 size_t samples_per_channel,
93 int sample_rate_hz, 103 int sample_rate_hz,
94 ChannelLayout layout) override; 104 ChannelLayout layout) override;
95 int ProcessReverseStream(const float* const* src, 105 int ProcessReverseStream(const float* const* src,
96 const StreamConfig& reverse_input_config, 106 const StreamConfig& reverse_input_config,
97 const StreamConfig& reverse_output_config, 107 const StreamConfig& reverse_output_config,
98 float* const* dest) override; 108 float* const* dest) override;
99 int set_stream_delay_ms(int delay) override; 109
110 // Methods only accessed from APM submodules or
111 // from AudioProcessing tests in a single-threaded manner.
112 // Hence there is no need for locks in these.
113 int proc_sample_rate_hz() const override;
114 int proc_split_sample_rate_hz() const override;
115 int num_input_channels() const override;
116 int num_output_channels() const override;
117 int num_reverse_channels() const override;
100 int stream_delay_ms() const override; 118 int stream_delay_ms() const override;
101 bool was_stream_delay_set() const override; 119 bool was_stream_delay_set() const override
102 void set_delay_offset_ms(int offset) override; 120 EXCLUSIVE_LOCKS_REQUIRED(crit_capture_);
103 int delay_offset_ms() const override; 121
104 void set_stream_key_pressed(bool key_pressed) override; 122 // Methods returning pointers to APM submodules.
105 int StartDebugRecording(const char filename[kMaxFilenameSize]) override; 123 // No locks are aquired in those, as those locks
106 int StartDebugRecording(FILE* handle) override; 124 // would offer no protection (the submodules are
107 int StartDebugRecordingForPlatformFile(rtc::PlatformFile handle) override; 125 // created only once in a single-treaded manner
108 int StopDebugRecording() override; 126 // during APM creation).
109 void UpdateHistogramsOnCallEnd() override;
110 EchoCancellation* echo_cancellation() const override; 127 EchoCancellation* echo_cancellation() const override;
111 EchoControlMobile* echo_control_mobile() const override; 128 EchoControlMobile* echo_control_mobile() const override;
112 GainControl* gain_control() const override; 129 GainControl* gain_control() const override;
113 HighPassFilter* high_pass_filter() const override; 130 HighPassFilter* high_pass_filter() const override;
114 LevelEstimator* level_estimator() const override; 131 LevelEstimator* level_estimator() const override;
115 NoiseSuppression* noise_suppression() const override; 132 NoiseSuppression* noise_suppression() const override;
116 VoiceDetection* voice_detection() const override; 133 VoiceDetection* voice_detection() const override;
117 134
118 protected: 135 protected:
119 // Overridden in a mock. 136 // Overridden in a mock.
120 virtual int InitializeLocked() EXCLUSIVE_LOCKS_REQUIRED(crit_); 137 virtual int InitializeLocked()
138 EXCLUSIVE_LOCKS_REQUIRED(crit_render_, crit_capture_);
121 139
122 private: 140 private:
141 struct ApmPublicSubmodules;
142 struct ApmPrivateSubmodules;
143
144 #ifdef WEBRTC_AUDIOPROC_DEBUG_DUMP
145 // State for the debug dump.
146 struct ApmDebugDumpThreadState {
147 ApmDebugDumpThreadState() : event_msg(new audioproc::Event()) {}
148 rtc::scoped_ptr<audioproc::Event> event_msg; // Protobuf message.
149 std::string event_str; // Memory for protobuf serialization.
150
151 // Serialized string of last saved APM configuration.
152 std::string last_serialized_config;
153 };
154
155 struct ApmDebugDumpState {
156 ApmDebugDumpState() : debug_file(FileWrapper::Create()) {}
157 rtc::scoped_ptr<FileWrapper> debug_file;
158 ApmDebugDumpThreadState render;
159 ApmDebugDumpThreadState capture;
160 };
161 #endif
162
163 // Method for modifying the formats struct that are called from both
164 // the render and capture threads. The check for whether modifications
165 // are needed is done while holding the render lock only, thereby avoiding
166 // that the capture thread blocks the render thread.
167 // The struct is modified in a single-threaded manner by holding both the
168 // render and capture locks.
169 int MaybeInitialize(const ProcessingConfig& config)
170 EXCLUSIVE_LOCKS_REQUIRED(crit_render_);
171
172 int MaybeInitializeRender(const ProcessingConfig& processing_config)
173 EXCLUSIVE_LOCKS_REQUIRED(crit_render_);
174
175 int MaybeInitializeCapture(const ProcessingConfig& processing_config)
176 EXCLUSIVE_LOCKS_REQUIRED(crit_render_);
177
178 // Method for checking for the need of conversion. Accesses the formats
179 // structs in a read manner but the requirement for the render lock to be held
180 // was added as it currently anyway is always called in that manner.
181 bool rev_conversion_needed() const EXCLUSIVE_LOCKS_REQUIRED(crit_render_);
182 bool render_check_rev_conversion_needed() const
183 EXCLUSIVE_LOCKS_REQUIRED(crit_render_);
184
185 // Methods requiring APM running in a single-threaded manner.
186 // Are called with both the render and capture locks already
187 // acquired.
188 void InitializeExperimentalAgc()
189 EXCLUSIVE_LOCKS_REQUIRED(crit_render_, crit_capture_);
190 void InitializeTransient()
191 EXCLUSIVE_LOCKS_REQUIRED(crit_render_, crit_capture_);
192 void InitializeBeamformer()
193 EXCLUSIVE_LOCKS_REQUIRED(crit_render_, crit_capture_);
194 void InitializeIntelligibility()
195 EXCLUSIVE_LOCKS_REQUIRED(crit_render_, crit_capture_);
123 int InitializeLocked(const ProcessingConfig& config) 196 int InitializeLocked(const ProcessingConfig& config)
124 EXCLUSIVE_LOCKS_REQUIRED(crit_); 197 EXCLUSIVE_LOCKS_REQUIRED(crit_render_, crit_capture_);
125 int MaybeInitializeLockedRender(const ProcessingConfig& config) 198
126 EXCLUSIVE_LOCKS_REQUIRED(crit_); 199 // Capture-side exclusive methods possibly running APM in a multi-threaded
127 int MaybeInitializeLockedCapture(const ProcessingConfig& config) 200 // manner that are called with the render lock already acquired.
128 EXCLUSIVE_LOCKS_REQUIRED(crit_); 201 int ProcessStreamLocked() EXCLUSIVE_LOCKS_REQUIRED(crit_capture_);
129 int MaybeInitializeLocked(const ProcessingConfig& config) 202 bool output_copy_needed(bool is_data_processed) const
130 EXCLUSIVE_LOCKS_REQUIRED(crit_); 203 EXCLUSIVE_LOCKS_REQUIRED(crit_capture_);
204 bool is_data_processed() const EXCLUSIVE_LOCKS_REQUIRED(crit_capture_);
205 bool synthesis_needed(bool is_data_processed) const
206 EXCLUSIVE_LOCKS_REQUIRED(crit_capture_);
207 bool analysis_needed(bool is_data_processed) const
208 EXCLUSIVE_LOCKS_REQUIRED(crit_capture_);
209 void MaybeUpdateHistograms() EXCLUSIVE_LOCKS_REQUIRED(crit_capture_);
210
211 // Render-side exclusive methods possibly running APM in a multi-threaded
212 // manner that are called with the render lock already acquired.
131 // TODO(ekm): Remove once all clients updated to new interface. 213 // TODO(ekm): Remove once all clients updated to new interface.
132 int AnalyzeReverseStream(const float* const* src, 214 int AnalyzeReverseStreamLocked(const float* const* src,
133 const StreamConfig& input_config, 215 const StreamConfig& input_config,
134 const StreamConfig& output_config); 216 const StreamConfig& output_config)
135 int ProcessStreamLocked() EXCLUSIVE_LOCKS_REQUIRED(crit_); 217 EXCLUSIVE_LOCKS_REQUIRED(crit_render_);
136 int ProcessReverseStreamLocked() EXCLUSIVE_LOCKS_REQUIRED(crit_); 218 bool is_rev_processed() const EXCLUSIVE_LOCKS_REQUIRED(crit_render_);
137 219 int ProcessReverseStreamLocked() EXCLUSIVE_LOCKS_REQUIRED(crit_render_);
138 bool is_data_processed() const; 220
139 bool output_copy_needed(bool is_data_processed) const; 221 // Debug dump methods that are internal and called without locks.
140 bool synthesis_needed(bool is_data_processed) const; 222 // TODO(peah): Make thread safe.
141 bool analysis_needed(bool is_data_processed) const;
142 bool is_rev_processed() const;
143 bool rev_conversion_needed() const;
144 // TODO(peah): Add EXCLUSIVE_LOCKS_REQUIRED for the method below.
145 bool render_check_rev_conversion_needed() const;
146 void InitializeExperimentalAgc() EXCLUSIVE_LOCKS_REQUIRED(crit_);
147 void InitializeTransient() EXCLUSIVE_LOCKS_REQUIRED(crit_);
148 void InitializeBeamformer() EXCLUSIVE_LOCKS_REQUIRED(crit_);
149 void InitializeIntelligibility() EXCLUSIVE_LOCKS_REQUIRED(crit_);
150 void MaybeUpdateHistograms() EXCLUSIVE_LOCKS_REQUIRED(crit_);
151
152 EchoCancellationImpl* echo_cancellation_;
153 EchoControlMobileImpl* echo_control_mobile_;
154 GainControlImpl* gain_control_;
155 HighPassFilterImpl* high_pass_filter_;
156 LevelEstimatorImpl* level_estimator_;
157 NoiseSuppressionImpl* noise_suppression_;
158 VoiceDetectionImpl* voice_detection_;
159 rtc::scoped_ptr<GainControlForNewAgc> gain_control_for_new_agc_;
160
161 std::list<ProcessingComponent*> component_list_;
162 CriticalSectionWrapper* crit_;
163 rtc::scoped_ptr<AudioBuffer> render_audio_;
164 rtc::scoped_ptr<AudioBuffer> capture_audio_;
165 rtc::scoped_ptr<AudioConverter> render_converter_;
166 #ifdef WEBRTC_AUDIOPROC_DEBUG_DUMP 223 #ifdef WEBRTC_AUDIOPROC_DEBUG_DUMP
167 // TODO(andrew): make this more graceful. Ideally we would split this stuff 224 // TODO(andrew): make this more graceful. Ideally we would split this stuff
168 // out into a separate class with an "enabled" and "disabled" implementation. 225 // out into a separate class with an "enabled" and "disabled" implementation.
169 int WriteMessageToDebugFile(); 226 static int WriteMessageToDebugFile(FileWrapper* debug_file,
170 int WriteInitMessage(); 227 rtc::CriticalSection* crit_debug,
228 ApmDebugDumpThreadState* debug_state);
229 int WriteInitMessage() EXCLUSIVE_LOCKS_REQUIRED(crit_render_, crit_capture_);
171 230
172 // Writes Config message. If not |forced|, only writes the current config if 231 // Writes Config message. If not |forced|, only writes the current config if
173 // it is different from the last saved one; if |forced|, writes the config 232 // it is different from the last saved one; if |forced|, writes the config
174 // regardless of the last saved. 233 // regardless of the last saved.
175 int WriteConfigMessage(bool forced); 234 int WriteConfigMessage(bool forced) EXCLUSIVE_LOCKS_REQUIRED(crit_capture_)
176 235 EXCLUSIVE_LOCKS_REQUIRED(crit_capture_);
177 rtc::scoped_ptr<FileWrapper> debug_file_; 236
178 rtc::scoped_ptr<audioproc::Event> event_msg_; // Protobuf message. 237 // Critical section.
179 std::string event_str_; // Memory for protobuf serialization. 238 mutable rtc::CriticalSection crit_debug_;
180 239
181 // Serialized string of last saved APM configuration. 240 // Debug dump state.
182 std::string last_serialized_config_; 241 ApmDebugDumpState debug_dump_;
183 #endif 242 #endif
184 243
244 // Critical sections.
245 mutable rtc::CriticalSection crit_render_ ACQUIRED_BEFORE(crit_capture_);
246 mutable rtc::CriticalSection crit_capture_;
247
248 // Structs containing the pointers to the submodules.
249 rtc::scoped_ptr<ApmPublicSubmodules> public_submodules_;
250 rtc::scoped_ptr<ApmPrivateSubmodules> private_submodules_
251 GUARDED_BY(crit_capture_);
252
185 // State that is written to while holding both the render and capture locks 253 // State that is written to while holding both the render and capture locks
186 // but can be read while holding only one of the locks. 254 // but can be read without any lock being held.
187 struct SharedState { 255 // As this is only accessed internally of APM, and all internal methods in APM
188 SharedState() 256 // either are holding the render or capture locks, this construct is safe as
257 // it is not possible to read the variables while writing them.
258 struct ApmFormatState {
259 ApmFormatState()
189 : // Format of processing streams at input/output call sites. 260 : // Format of processing streams at input/output call sites.
190 api_format_({{{kSampleRate16kHz, 1, false}, 261 api_format({{{kSampleRate16kHz, 1, false},
191 {kSampleRate16kHz, 1, false}, 262 {kSampleRate16kHz, 1, false},
192 {kSampleRate16kHz, 1, false}, 263 {kSampleRate16kHz, 1, false},
193 {kSampleRate16kHz, 1, false}}}) {} 264 {kSampleRate16kHz, 1, false}}}),
194 ProcessingConfig api_format_; 265 rev_proc_format(kSampleRate16kHz, 1) {}
195 } shared_state_; 266 ProcessingConfig api_format;
196 267 StreamConfig rev_proc_format;
197 // Only the rate and samples fields of fwd_proc_format_ are used because the 268 } formats_;
198 // forward processing number of channels is mutable and is tracked by the 269
199 // capture_audio_. 270 // APM constants.
200 StreamConfig fwd_proc_format_; 271 const struct ApmConstants {
201 StreamConfig rev_proc_format_; 272 ApmConstants(int agc_startup_min_volume,
202 int split_rate_; 273 const std::vector<Point> array_geometry,
203 274 SphericalPointf target_direction,
204 int stream_delay_ms_; 275 bool use_new_agc,
205 int delay_offset_ms_; 276 bool intelligibility_enabled,
206 bool was_stream_delay_set_; 277 bool beamformer_enabled)
207 int last_stream_delay_ms_; 278 : // Format of processing streams at input/output call sites.
208 int last_aec_system_delay_ms_; 279 agc_startup_min_volume(agc_startup_min_volume),
209 int stream_delay_jumps_; 280 array_geometry(array_geometry),
210 int aec_system_delay_jumps_; 281 target_direction(target_direction),
211 282 use_new_agc(use_new_agc),
212 bool output_will_be_muted_ GUARDED_BY(crit_); 283 intelligibility_enabled(intelligibility_enabled),
213 284 beamformer_enabled(beamformer_enabled) {}
214 bool key_pressed_; 285 int agc_startup_min_volume;
215 286 std::vector<Point> array_geometry;
216 // Only set through the constructor's Config parameter. 287 SphericalPointf target_direction;
217 const bool use_new_agc_; 288 bool use_new_agc;
218 rtc::scoped_ptr<AgcManagerDirect> agc_manager_ GUARDED_BY(crit_); 289 bool intelligibility_enabled;
219 int agc_startup_min_volume_; 290 bool beamformer_enabled;
220 291 } constants_;
221 bool transient_suppressor_enabled_; 292
222 rtc::scoped_ptr<TransientSuppressor> transient_suppressor_; 293 struct ApmCaptureState {
223 const bool beamformer_enabled_; 294 ApmCaptureState(bool transient_suppressor_enabled)
224 rtc::scoped_ptr<Beamformer<float>> beamformer_; 295 : aec_system_delay_jumps(-1),
225 const std::vector<Point> array_geometry_; 296 delay_offset_ms(0),
226 const SphericalPointf target_direction_; 297 was_stream_delay_set(false),
227 298 last_stream_delay_ms(0),
228 bool intelligibility_enabled_; 299 last_aec_system_delay_ms(0),
229 rtc::scoped_ptr<IntelligibilityEnhancer> intelligibility_enhancer_; 300 stream_delay_jumps(-1),
301 output_will_be_muted(false),
302 key_pressed(false),
303 transient_suppressor_enabled(transient_suppressor_enabled),
304 fwd_proc_format(kSampleRate16kHz),
305 split_rate(kSampleRate16kHz) {}
306 int aec_system_delay_jumps;
307 int delay_offset_ms;
308 bool was_stream_delay_set;
309 int last_stream_delay_ms;
310 int last_aec_system_delay_ms;
311 int stream_delay_jumps;
312 bool output_will_be_muted;
313 bool key_pressed;
314 bool transient_suppressor_enabled;
315 rtc::scoped_ptr<AudioBuffer> capture_audio;
316 // Only the rate and samples fields of fwd_proc_format_ are used because the
317 // forward processing number of channels is mutable and is tracked by the
318 // capture_audio_.
319 StreamConfig fwd_proc_format;
320 int split_rate;
321 } capture_ GUARDED_BY(crit_capture_);
322
323 struct ApmCaptureNonLockedState {
324 ApmCaptureNonLockedState()
325 : fwd_proc_format(kSampleRate16kHz),
326 split_rate(kSampleRate16kHz),
327 stream_delay_ms(0) {}
328 // Only the rate and samples fields of fwd_proc_format_ are used because the
329 // forward processing number of channels is mutable and is tracked by the
330 // capture_audio_.
331 StreamConfig fwd_proc_format;
332 int split_rate;
333 int stream_delay_ms;
334 } capture_nonlocked_;
335
336 struct ApmRenderState {
337 rtc::scoped_ptr<AudioConverter> render_converter;
338 rtc::scoped_ptr<AudioBuffer> render_audio;
339 } render_ GUARDED_BY(crit_render_);
230 }; 340 };
231 341
232 } // namespace webrtc 342 } // namespace webrtc
233 343
234 #endif // WEBRTC_MODULES_AUDIO_PROCESSING_AUDIO_PROCESSING_IMPL_H_ 344 #endif // WEBRTC_MODULES_AUDIO_PROCESSING_AUDIO_PROCESSING_IMPL_H_
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