1 /*
2 * Copyright (C) 2009 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 #define LOG_TAG "AudioPolicyService"
18 //#define LOG_NDEBUG 0
19
20 #include "Configuration.h"
21 #undef __STRICT_ANSI__
22 #define __STDINT_LIMITS
23 #define __STDC_LIMIT_MACROS
24 #include <stdint.h>
25 #include <sys/time.h>
26 #include <dlfcn.h>
27
28 #include <audio_utils/clock.h>
29 #include <binder/IServiceManager.h>
30 #include <utils/Log.h>
31 #include <cutils/properties.h>
32 #include <binder/IPCThreadState.h>
33 #include <binder/PermissionController.h>
34 #include <binder/IResultReceiver.h>
35 #include <utils/String16.h>
36 #include <utils/threads.h>
37 #include "AudioPolicyService.h"
38 #include <hardware_legacy/power.h>
39 #include <media/AidlConversion.h>
40 #include <media/AudioEffect.h>
41 #include <media/AudioParameter.h>
42 #include <mediautils/ServiceUtilities.h>
43 #include <mediautils/TimeCheck.h>
44 #include <sensorprivacy/SensorPrivacyManager.h>
45
46 #include <system/audio.h>
47 #include <system/audio_policy.h>
48 #include <AudioPolicyManager.h>
49
50 namespace android {
51 using binder::Status;
52
53 static const char kDeadlockedString[] = "AudioPolicyService may be deadlocked\n";
54 static const char kCmdDeadlockedString[] = "AudioPolicyService command thread may be deadlocked\n";
55 static const char kAudioPolicyManagerCustomPath[] = "libaudiopolicymanagercustom.so";
56
57 static const int kDumpLockTimeoutNs = 1 * NANOS_PER_SECOND;
58
59 static const nsecs_t kAudioCommandTimeoutNs = seconds(3); // 3 seconds
60
61 static const String16 sManageAudioPolicyPermission("android.permission.MANAGE_AUDIO_POLICY");
62
63 // ----------------------------------------------------------------------------
64
createAudioPolicyManager(AudioPolicyClientInterface * clientInterface)65 static AudioPolicyInterface* createAudioPolicyManager(AudioPolicyClientInterface *clientInterface)
66 {
67 AudioPolicyManager *apm = new AudioPolicyManager(clientInterface);
68 status_t status = apm->initialize();
69 if (status != NO_ERROR) {
70 delete apm;
71 apm = nullptr;
72 }
73 return apm;
74 }
75
destroyAudioPolicyManager(AudioPolicyInterface * interface)76 static void destroyAudioPolicyManager(AudioPolicyInterface *interface)
77 {
78 delete interface;
79 }
80 // ----------------------------------------------------------------------------
81
AudioPolicyService()82 AudioPolicyService::AudioPolicyService()
83 : BnAudioPolicyService(),
84 mAudioPolicyManager(NULL),
85 mAudioPolicyClient(NULL),
86 mPhoneState(AUDIO_MODE_INVALID),
87 mCaptureStateNotifier(false),
88 mCreateAudioPolicyManager(createAudioPolicyManager),
89 mDestroyAudioPolicyManager(destroyAudioPolicyManager) {
90 }
91
loadAudioPolicyManager()92 void AudioPolicyService::loadAudioPolicyManager()
93 {
94 mLibraryHandle = dlopen(kAudioPolicyManagerCustomPath, RTLD_NOW);
95 if (mLibraryHandle != nullptr) {
96 ALOGI("%s loading %s", __func__, kAudioPolicyManagerCustomPath);
97 mCreateAudioPolicyManager = reinterpret_cast<CreateAudioPolicyManagerInstance>
98 (dlsym(mLibraryHandle, "createAudioPolicyManager"));
99 const char *lastError = dlerror();
100 ALOGW_IF(mCreateAudioPolicyManager == nullptr, "%s createAudioPolicyManager is null %s",
101 __func__, lastError != nullptr ? lastError : "no error");
102
103 mDestroyAudioPolicyManager = reinterpret_cast<DestroyAudioPolicyManagerInstance>(
104 dlsym(mLibraryHandle, "destroyAudioPolicyManager"));
105 lastError = dlerror();
106 ALOGW_IF(mDestroyAudioPolicyManager == nullptr, "%s destroyAudioPolicyManager is null %s",
107 __func__, lastError != nullptr ? lastError : "no error");
108 if (mCreateAudioPolicyManager == nullptr || mDestroyAudioPolicyManager == nullptr){
109 unloadAudioPolicyManager();
110 LOG_ALWAYS_FATAL("could not find audiopolicymanager interface methods");
111 }
112 }
113 }
114
onFirstRef()115 void AudioPolicyService::onFirstRef()
116 {
117 {
118 Mutex::Autolock _l(mLock);
119
120 // start audio commands thread
121 mAudioCommandThread = new AudioCommandThread(String8("ApmAudio"), this);
122 // start output activity command thread
123 mOutputCommandThread = new AudioCommandThread(String8("ApmOutput"), this);
124
125 mAudioPolicyClient = new AudioPolicyClient(this);
126
127 loadAudioPolicyManager();
128 mAudioPolicyManager = mCreateAudioPolicyManager(mAudioPolicyClient);
129 }
130
131 // load audio processing modules
132 sp<AudioPolicyEffects> audioPolicyEffects = new AudioPolicyEffects();
133 sp<UidPolicy> uidPolicy = new UidPolicy(this);
134 sp<SensorPrivacyPolicy> sensorPrivacyPolicy = new SensorPrivacyPolicy(this);
135 {
136 Mutex::Autolock _l(mLock);
137 mAudioPolicyEffects = audioPolicyEffects;
138 mUidPolicy = uidPolicy;
139 mSensorPrivacyPolicy = sensorPrivacyPolicy;
140 }
141 uidPolicy->registerSelf();
142 sensorPrivacyPolicy->registerSelf();
143
144 // Create spatializer if supported
145 if (mAudioPolicyManager != nullptr) {
146 Mutex::Autolock _l(mLock);
147 const audio_attributes_t attr = attributes_initializer(AUDIO_USAGE_MEDIA);
148 AudioDeviceTypeAddrVector devices;
149 bool hasSpatializer = mAudioPolicyManager->canBeSpatialized(&attr, nullptr, devices);
150 if (hasSpatializer) {
151 mSpatializer = Spatializer::create(this);
152 }
153 }
154 AudioSystem::audioPolicyReady();
155 }
156
unloadAudioPolicyManager()157 void AudioPolicyService::unloadAudioPolicyManager()
158 {
159 ALOGV("%s ", __func__);
160 if (mLibraryHandle != nullptr) {
161 dlclose(mLibraryHandle);
162 }
163 mLibraryHandle = nullptr;
164 mCreateAudioPolicyManager = nullptr;
165 mDestroyAudioPolicyManager = nullptr;
166 }
167
~AudioPolicyService()168 AudioPolicyService::~AudioPolicyService()
169 {
170 mAudioCommandThread->exit();
171 mOutputCommandThread->exit();
172
173 mDestroyAudioPolicyManager(mAudioPolicyManager);
174 unloadAudioPolicyManager();
175
176 delete mAudioPolicyClient;
177
178 mNotificationClients.clear();
179 mAudioPolicyEffects.clear();
180
181 mUidPolicy->unregisterSelf();
182 mSensorPrivacyPolicy->unregisterSelf();
183
184 mUidPolicy.clear();
185 mSensorPrivacyPolicy.clear();
186 }
187
188 // A notification client is always registered by AudioSystem when the client process
189 // connects to AudioPolicyService.
registerClient(const sp<media::IAudioPolicyServiceClient> & client)190 Status AudioPolicyService::registerClient(const sp<media::IAudioPolicyServiceClient>& client)
191 {
192 if (client == 0) {
193 ALOGW("%s got NULL client", __FUNCTION__);
194 return Status::ok();
195 }
196 Mutex::Autolock _l(mNotificationClientsLock);
197
198 uid_t uid = IPCThreadState::self()->getCallingUid();
199 pid_t pid = IPCThreadState::self()->getCallingPid();
200 int64_t token = ((int64_t)uid<<32) | pid;
201
202 if (mNotificationClients.indexOfKey(token) < 0) {
203 sp<NotificationClient> notificationClient = new NotificationClient(this,
204 client,
205 uid,
206 pid);
207 ALOGV("registerClient() client %p, uid %d pid %d", client.get(), uid, pid);
208
209 mNotificationClients.add(token, notificationClient);
210
211 sp<IBinder> binder = IInterface::asBinder(client);
212 binder->linkToDeath(notificationClient);
213 }
214 return Status::ok();
215 }
216
setAudioPortCallbacksEnabled(bool enabled)217 Status AudioPolicyService::setAudioPortCallbacksEnabled(bool enabled)
218 {
219 Mutex::Autolock _l(mNotificationClientsLock);
220
221 uid_t uid = IPCThreadState::self()->getCallingUid();
222 pid_t pid = IPCThreadState::self()->getCallingPid();
223 int64_t token = ((int64_t)uid<<32) | pid;
224
225 if (mNotificationClients.indexOfKey(token) < 0) {
226 return Status::ok();
227 }
228 mNotificationClients.valueFor(token)->setAudioPortCallbacksEnabled(enabled);
229 return Status::ok();
230 }
231
setAudioVolumeGroupCallbacksEnabled(bool enabled)232 Status AudioPolicyService::setAudioVolumeGroupCallbacksEnabled(bool enabled)
233 {
234 Mutex::Autolock _l(mNotificationClientsLock);
235
236 uid_t uid = IPCThreadState::self()->getCallingUid();
237 pid_t pid = IPCThreadState::self()->getCallingPid();
238 int64_t token = ((int64_t)uid<<32) | pid;
239
240 if (mNotificationClients.indexOfKey(token) < 0) {
241 return Status::ok();
242 }
243 mNotificationClients.valueFor(token)->setAudioVolumeGroupCallbacksEnabled(enabled);
244 return Status::ok();
245 }
246
247 // removeNotificationClient() is called when the client process dies.
removeNotificationClient(uid_t uid,pid_t pid)248 void AudioPolicyService::removeNotificationClient(uid_t uid, pid_t pid)
249 {
250 bool hasSameUid = false;
251 {
252 Mutex::Autolock _l(mNotificationClientsLock);
253 int64_t token = ((int64_t)uid<<32) | pid;
254 mNotificationClients.removeItem(token);
255 for (size_t i = 0; i < mNotificationClients.size(); i++) {
256 if (mNotificationClients.valueAt(i)->uid() == uid) {
257 hasSameUid = true;
258 break;
259 }
260 }
261 }
262 {
263 Mutex::Autolock _l(mLock);
264 if (mAudioPolicyManager && !hasSameUid) {
265 // called from binder death notification: no need to clear caller identity
266 mAudioPolicyManager->releaseResourcesForUid(uid);
267 }
268 }
269 }
270
onAudioPortListUpdate()271 void AudioPolicyService::onAudioPortListUpdate()
272 {
273 mOutputCommandThread->updateAudioPortListCommand();
274 }
275
doOnAudioPortListUpdate()276 void AudioPolicyService::doOnAudioPortListUpdate()
277 {
278 Mutex::Autolock _l(mNotificationClientsLock);
279 for (size_t i = 0; i < mNotificationClients.size(); i++) {
280 mNotificationClients.valueAt(i)->onAudioPortListUpdate();
281 }
282 }
283
onAudioPatchListUpdate()284 void AudioPolicyService::onAudioPatchListUpdate()
285 {
286 mOutputCommandThread->updateAudioPatchListCommand();
287 }
288
doOnAudioPatchListUpdate()289 void AudioPolicyService::doOnAudioPatchListUpdate()
290 {
291 Mutex::Autolock _l(mNotificationClientsLock);
292 for (size_t i = 0; i < mNotificationClients.size(); i++) {
293 mNotificationClients.valueAt(i)->onAudioPatchListUpdate();
294 }
295 }
296
onAudioVolumeGroupChanged(volume_group_t group,int flags)297 void AudioPolicyService::onAudioVolumeGroupChanged(volume_group_t group, int flags)
298 {
299 mOutputCommandThread->changeAudioVolumeGroupCommand(group, flags);
300 }
301
doOnAudioVolumeGroupChanged(volume_group_t group,int flags)302 void AudioPolicyService::doOnAudioVolumeGroupChanged(volume_group_t group, int flags)
303 {
304 Mutex::Autolock _l(mNotificationClientsLock);
305 for (size_t i = 0; i < mNotificationClients.size(); i++) {
306 mNotificationClients.valueAt(i)->onAudioVolumeGroupChanged(group, flags);
307 }
308 }
309
onDynamicPolicyMixStateUpdate(const String8 & regId,int32_t state)310 void AudioPolicyService::onDynamicPolicyMixStateUpdate(const String8& regId, int32_t state)
311 {
312 ALOGV("AudioPolicyService::onDynamicPolicyMixStateUpdate(%s, %d)",
313 regId.string(), state);
314 mOutputCommandThread->dynamicPolicyMixStateUpdateCommand(regId, state);
315 }
316
doOnDynamicPolicyMixStateUpdate(const String8 & regId,int32_t state)317 void AudioPolicyService::doOnDynamicPolicyMixStateUpdate(const String8& regId, int32_t state)
318 {
319 Mutex::Autolock _l(mNotificationClientsLock);
320 for (size_t i = 0; i < mNotificationClients.size(); i++) {
321 mNotificationClients.valueAt(i)->onDynamicPolicyMixStateUpdate(regId, state);
322 }
323 }
324
onRecordingConfigurationUpdate(int event,const record_client_info_t * clientInfo,const audio_config_base_t * clientConfig,std::vector<effect_descriptor_t> clientEffects,const audio_config_base_t * deviceConfig,std::vector<effect_descriptor_t> effects,audio_patch_handle_t patchHandle,audio_source_t source)325 void AudioPolicyService::onRecordingConfigurationUpdate(
326 int event,
327 const record_client_info_t *clientInfo,
328 const audio_config_base_t *clientConfig,
329 std::vector<effect_descriptor_t> clientEffects,
330 const audio_config_base_t *deviceConfig,
331 std::vector<effect_descriptor_t> effects,
332 audio_patch_handle_t patchHandle,
333 audio_source_t source)
334 {
335 mOutputCommandThread->recordingConfigurationUpdateCommand(event, clientInfo,
336 clientConfig, clientEffects, deviceConfig, effects, patchHandle, source);
337 }
338
doOnRecordingConfigurationUpdate(int event,const record_client_info_t * clientInfo,const audio_config_base_t * clientConfig,std::vector<effect_descriptor_t> clientEffects,const audio_config_base_t * deviceConfig,std::vector<effect_descriptor_t> effects,audio_patch_handle_t patchHandle,audio_source_t source)339 void AudioPolicyService::doOnRecordingConfigurationUpdate(
340 int event,
341 const record_client_info_t *clientInfo,
342 const audio_config_base_t *clientConfig,
343 std::vector<effect_descriptor_t> clientEffects,
344 const audio_config_base_t *deviceConfig,
345 std::vector<effect_descriptor_t> effects,
346 audio_patch_handle_t patchHandle,
347 audio_source_t source)
348 {
349 Mutex::Autolock _l(mNotificationClientsLock);
350 for (size_t i = 0; i < mNotificationClients.size(); i++) {
351 mNotificationClients.valueAt(i)->onRecordingConfigurationUpdate(event, clientInfo,
352 clientConfig, clientEffects, deviceConfig, effects, patchHandle, source);
353 }
354 }
355
onRoutingUpdated()356 void AudioPolicyService::onRoutingUpdated()
357 {
358 mOutputCommandThread->routingChangedCommand();
359 }
360
doOnRoutingUpdated()361 void AudioPolicyService::doOnRoutingUpdated()
362 {
363 Mutex::Autolock _l(mNotificationClientsLock);
364 for (size_t i = 0; i < mNotificationClients.size(); i++) {
365 mNotificationClients.valueAt(i)->onRoutingUpdated();
366 }
367 }
368
onCheckSpatializer()369 void AudioPolicyService::onCheckSpatializer()
370 {
371 Mutex::Autolock _l(mLock);
372 onCheckSpatializer_l();
373 }
374
onCheckSpatializer_l()375 void AudioPolicyService::onCheckSpatializer_l()
376 {
377 if (mSpatializer != nullptr) {
378 mOutputCommandThread->checkSpatializerCommand();
379 }
380 }
381
doOnCheckSpatializer()382 void AudioPolicyService::doOnCheckSpatializer()
383 {
384 Mutex::Autolock _l(mLock);
385
386 if (mSpatializer != nullptr) {
387 // Note: mSpatializer != nullptr => mAudioPolicyManager != nullptr
388 if (mSpatializer->getLevel() != media::SpatializationLevel::NONE) {
389 audio_io_handle_t currentOutput = mSpatializer->getOutput();
390 audio_io_handle_t newOutput;
391 const audio_attributes_t attr = attributes_initializer(AUDIO_USAGE_MEDIA);
392 audio_config_base_t config = mSpatializer->getAudioInConfig();
393 status_t status =
394 mAudioPolicyManager->getSpatializerOutput(&config, &attr, &newOutput);
395
396 if (status == NO_ERROR && currentOutput == newOutput) {
397 return;
398 }
399 mLock.unlock();
400 // It is OK to call detachOutput() is none is already attached.
401 mSpatializer->detachOutput();
402 if (status != NO_ERROR || newOutput == AUDIO_IO_HANDLE_NONE) {
403 mLock.lock();
404 return;
405 }
406 status = mSpatializer->attachOutput(newOutput);
407 mLock.lock();
408 if (status != NO_ERROR) {
409 mAudioPolicyManager->releaseSpatializerOutput(newOutput);
410 }
411 } else if (mSpatializer->getLevel() == media::SpatializationLevel::NONE
412 && mSpatializer->getOutput() != AUDIO_IO_HANDLE_NONE) {
413 mLock.unlock();
414 audio_io_handle_t output = mSpatializer->detachOutput();
415 mLock.lock();
416 if (output != AUDIO_IO_HANDLE_NONE) {
417 mAudioPolicyManager->releaseSpatializerOutput(output);
418 }
419 }
420 }
421 }
422
clientCreateAudioPatch(const struct audio_patch * patch,audio_patch_handle_t * handle,int delayMs)423 status_t AudioPolicyService::clientCreateAudioPatch(const struct audio_patch *patch,
424 audio_patch_handle_t *handle,
425 int delayMs)
426 {
427 return mAudioCommandThread->createAudioPatchCommand(patch, handle, delayMs);
428 }
429
clientReleaseAudioPatch(audio_patch_handle_t handle,int delayMs)430 status_t AudioPolicyService::clientReleaseAudioPatch(audio_patch_handle_t handle,
431 int delayMs)
432 {
433 return mAudioCommandThread->releaseAudioPatchCommand(handle, delayMs);
434 }
435
clientSetAudioPortConfig(const struct audio_port_config * config,int delayMs)436 status_t AudioPolicyService::clientSetAudioPortConfig(const struct audio_port_config *config,
437 int delayMs)
438 {
439 return mAudioCommandThread->setAudioPortConfigCommand(config, delayMs);
440 }
441
NotificationClient(const sp<AudioPolicyService> & service,const sp<media::IAudioPolicyServiceClient> & client,uid_t uid,pid_t pid)442 AudioPolicyService::NotificationClient::NotificationClient(
443 const sp<AudioPolicyService>& service,
444 const sp<media::IAudioPolicyServiceClient>& client,
445 uid_t uid,
446 pid_t pid)
447 : mService(service), mUid(uid), mPid(pid), mAudioPolicyServiceClient(client),
448 mAudioPortCallbacksEnabled(false), mAudioVolumeGroupCallbacksEnabled(false)
449 {
450 }
451
~NotificationClient()452 AudioPolicyService::NotificationClient::~NotificationClient()
453 {
454 }
455
binderDied(const wp<IBinder> & who __unused)456 void AudioPolicyService::NotificationClient::binderDied(const wp<IBinder>& who __unused)
457 {
458 sp<NotificationClient> keep(this);
459 sp<AudioPolicyService> service = mService.promote();
460 if (service != 0) {
461 service->removeNotificationClient(mUid, mPid);
462 }
463 }
464
onAudioPortListUpdate()465 void AudioPolicyService::NotificationClient::onAudioPortListUpdate()
466 {
467 if (mAudioPolicyServiceClient != 0 && mAudioPortCallbacksEnabled) {
468 mAudioPolicyServiceClient->onAudioPortListUpdate();
469 }
470 }
471
onAudioPatchListUpdate()472 void AudioPolicyService::NotificationClient::onAudioPatchListUpdate()
473 {
474 if (mAudioPolicyServiceClient != 0 && mAudioPortCallbacksEnabled) {
475 mAudioPolicyServiceClient->onAudioPatchListUpdate();
476 }
477 }
478
onAudioVolumeGroupChanged(volume_group_t group,int flags)479 void AudioPolicyService::NotificationClient::onAudioVolumeGroupChanged(volume_group_t group,
480 int flags)
481 {
482 if (mAudioPolicyServiceClient != 0 && mAudioVolumeGroupCallbacksEnabled) {
483 mAudioPolicyServiceClient->onAudioVolumeGroupChanged(group, flags);
484 }
485 }
486
487
onDynamicPolicyMixStateUpdate(const String8 & regId,int32_t state)488 void AudioPolicyService::NotificationClient::onDynamicPolicyMixStateUpdate(
489 const String8& regId, int32_t state)
490 {
491 if (mAudioPolicyServiceClient != 0 && isServiceUid(mUid)) {
492 mAudioPolicyServiceClient->onDynamicPolicyMixStateUpdate(
493 legacy2aidl_String8_string(regId).value(), state);
494 }
495 }
496
onRecordingConfigurationUpdate(int event,const record_client_info_t * clientInfo,const audio_config_base_t * clientConfig,std::vector<effect_descriptor_t> clientEffects,const audio_config_base_t * deviceConfig,std::vector<effect_descriptor_t> effects,audio_patch_handle_t patchHandle,audio_source_t source)497 void AudioPolicyService::NotificationClient::onRecordingConfigurationUpdate(
498 int event,
499 const record_client_info_t *clientInfo,
500 const audio_config_base_t *clientConfig,
501 std::vector<effect_descriptor_t> clientEffects,
502 const audio_config_base_t *deviceConfig,
503 std::vector<effect_descriptor_t> effects,
504 audio_patch_handle_t patchHandle,
505 audio_source_t source)
506 {
507 if (mAudioPolicyServiceClient != 0 && isServiceUid(mUid)) {
508 status_t status = [&]() -> status_t {
509 int32_t eventAidl = VALUE_OR_RETURN_STATUS(convertIntegral<int32_t>(event));
510 media::RecordClientInfo clientInfoAidl = VALUE_OR_RETURN_STATUS(
511 legacy2aidl_record_client_info_t_RecordClientInfo(*clientInfo));
512 media::AudioConfigBase clientConfigAidl = VALUE_OR_RETURN_STATUS(
513 legacy2aidl_audio_config_base_t_AudioConfigBase(*clientConfig));
514 std::vector<media::EffectDescriptor> clientEffectsAidl = VALUE_OR_RETURN_STATUS(
515 convertContainer<std::vector<media::EffectDescriptor>>(
516 clientEffects,
517 legacy2aidl_effect_descriptor_t_EffectDescriptor));
518 media::AudioConfigBase deviceConfigAidl = VALUE_OR_RETURN_STATUS(
519 legacy2aidl_audio_config_base_t_AudioConfigBase(*deviceConfig));
520 std::vector<media::EffectDescriptor> effectsAidl = VALUE_OR_RETURN_STATUS(
521 convertContainer<std::vector<media::EffectDescriptor>>(
522 effects,
523 legacy2aidl_effect_descriptor_t_EffectDescriptor));
524 int32_t patchHandleAidl = VALUE_OR_RETURN_STATUS(
525 legacy2aidl_audio_patch_handle_t_int32_t(patchHandle));
526 media::AudioSourceType sourceAidl = VALUE_OR_RETURN_STATUS(
527 legacy2aidl_audio_source_t_AudioSourceType(source));
528 return aidl_utils::statusTFromBinderStatus(
529 mAudioPolicyServiceClient->onRecordingConfigurationUpdate(eventAidl,
530 clientInfoAidl,
531 clientConfigAidl,
532 clientEffectsAidl,
533 deviceConfigAidl,
534 effectsAidl,
535 patchHandleAidl,
536 sourceAidl));
537 }();
538 ALOGW_IF(status != OK, "onRecordingConfigurationUpdate() failed: %d", status);
539 }
540 }
541
setAudioPortCallbacksEnabled(bool enabled)542 void AudioPolicyService::NotificationClient::setAudioPortCallbacksEnabled(bool enabled)
543 {
544 mAudioPortCallbacksEnabled = enabled;
545 }
546
setAudioVolumeGroupCallbacksEnabled(bool enabled)547 void AudioPolicyService::NotificationClient::setAudioVolumeGroupCallbacksEnabled(bool enabled)
548 {
549 mAudioVolumeGroupCallbacksEnabled = enabled;
550 }
551
onRoutingUpdated()552 void AudioPolicyService::NotificationClient::onRoutingUpdated()
553 {
554 if (mAudioPolicyServiceClient != 0 && isServiceUid(mUid)) {
555 mAudioPolicyServiceClient->onRoutingUpdated();
556 }
557 }
558
binderDied(const wp<IBinder> & who)559 void AudioPolicyService::binderDied(const wp<IBinder>& who) {
560 ALOGW("binderDied() %p, calling pid %d", who.unsafe_get(),
561 IPCThreadState::self()->getCallingPid());
562 }
563
dumpTryLock(Mutex & mutex)564 static bool dumpTryLock(Mutex& mutex) ACQUIRE(mutex) NO_THREAD_SAFETY_ANALYSIS
565 {
566 return mutex.timedLock(kDumpLockTimeoutNs) == NO_ERROR;
567 }
568
dumpReleaseLock(Mutex & mutex,bool locked)569 static void dumpReleaseLock(Mutex& mutex, bool locked) RELEASE(mutex) NO_THREAD_SAFETY_ANALYSIS
570 {
571 if (locked) mutex.unlock();
572 }
573
dumpInternals(int fd)574 status_t AudioPolicyService::dumpInternals(int fd)
575 {
576 const size_t SIZE = 256;
577 char buffer[SIZE];
578 String8 result;
579
580 snprintf(buffer, SIZE, "AudioPolicyManager: %p\n", mAudioPolicyManager);
581 result.append(buffer);
582 snprintf(buffer, SIZE, "Command Thread: %p\n", mAudioCommandThread.get());
583 result.append(buffer);
584
585 snprintf(buffer, SIZE, "Supported System Usages:\n");
586 result.append(buffer);
587 for (std::vector<audio_usage_t>::iterator it = mSupportedSystemUsages.begin();
588 it != mSupportedSystemUsages.end(); ++it) {
589 snprintf(buffer, SIZE, "\t%d\n", *it);
590 result.append(buffer);
591 }
592
593 write(fd, result.string(), result.size());
594 return NO_ERROR;
595 }
596
updateUidStates()597 void AudioPolicyService::updateUidStates()
598 {
599 Mutex::Autolock _l(mLock);
600 updateUidStates_l();
601 }
602
updateUidStates_l()603 void AudioPolicyService::updateUidStates_l()
604 {
605 // Go over all active clients and allow capture (does not force silence) in the
606 // following cases:
607 // The client is the assistant
608 // AND an accessibility service is on TOP or a RTT call is active
609 // AND the source is VOICE_RECOGNITION or HOTWORD
610 // OR uses VOICE_RECOGNITION AND is on TOP
611 // OR uses HOTWORD
612 // AND there is no active privacy sensitive capture or call
613 // OR client has CAPTURE_AUDIO_OUTPUT privileged permission
614 // OR The client is an accessibility service
615 // AND Is on TOP
616 // AND the source is VOICE_RECOGNITION or HOTWORD
617 // OR The assistant is not on TOP
618 // AND there is no active privacy sensitive capture or call
619 // OR client has CAPTURE_AUDIO_OUTPUT privileged permission
620 // AND is on TOP
621 // AND the source is VOICE_RECOGNITION or HOTWORD
622 // OR the client source is virtual (remote submix, call audio TX or RX...)
623 // OR the client source is HOTWORD
624 // AND is on TOP
625 // OR all active clients are using HOTWORD source
626 // AND no call is active
627 // OR client has CAPTURE_AUDIO_OUTPUT privileged permission
628 // OR the client is the current InputMethodService
629 // AND a RTT call is active AND the source is VOICE_RECOGNITION
630 // OR Any client
631 // AND The assistant is not on TOP
632 // AND is on TOP or latest started
633 // AND there is no active privacy sensitive capture or call
634 // OR client has CAPTURE_AUDIO_OUTPUT privileged permission
635
636
637 sp<AudioRecordClient> topActive;
638 sp<AudioRecordClient> latestActive;
639 sp<AudioRecordClient> topSensitiveActive;
640 sp<AudioRecordClient> latestSensitiveActiveOrComm;
641
642 nsecs_t topStartNs = 0;
643 nsecs_t latestStartNs = 0;
644 nsecs_t topSensitiveStartNs = 0;
645 nsecs_t latestSensitiveStartNs = 0;
646 bool isA11yOnTop = mUidPolicy->isA11yOnTop();
647 bool isAssistantOnTop = false;
648 bool isSensitiveActive = false;
649 bool isInCall = mPhoneState == AUDIO_MODE_IN_CALL;
650 bool isInCommunication = mPhoneState == AUDIO_MODE_IN_COMMUNICATION;
651 bool rttCallActive = (isInCall || isInCommunication)
652 && mUidPolicy->isRttEnabled();
653 bool onlyHotwordActive = true;
654 bool isPhoneStateOwnerActive = false;
655
656 // if Sensor Privacy is enabled then all recordings should be silenced.
657 if (mSensorPrivacyPolicy->isSensorPrivacyEnabled()) {
658 silenceAllRecordings_l();
659 return;
660 }
661
662 for (size_t i =0; i < mAudioRecordClients.size(); i++) {
663 sp<AudioRecordClient> current = mAudioRecordClients[i];
664 uid_t currentUid = VALUE_OR_FATAL(aidl2legacy_int32_t_uid_t(
665 current->attributionSource.uid));
666 if (!current->active) {
667 continue;
668 }
669
670 app_state_t appState = apmStatFromAmState(mUidPolicy->getUidState(currentUid));
671 // clients which app is in IDLE state are not eligible for top active or
672 // latest active
673 if (appState == APP_STATE_IDLE) {
674 continue;
675 }
676
677 bool isAccessibility = mUidPolicy->isA11yUid(currentUid);
678 // Clients capturing for Accessibility services or virtual sources are not considered
679 // for top or latest active to avoid masking regular clients started before
680 if (!isAccessibility && !isVirtualSource(current->attributes.source)) {
681 bool isAssistant = mUidPolicy->isAssistantUid(currentUid);
682 bool isPrivacySensitive =
683 (current->attributes.flags & AUDIO_FLAG_CAPTURE_PRIVATE) != 0;
684
685 if (appState == APP_STATE_TOP) {
686 if (isPrivacySensitive) {
687 if (current->startTimeNs > topSensitiveStartNs) {
688 topSensitiveActive = current;
689 topSensitiveStartNs = current->startTimeNs;
690 }
691 } else {
692 if (current->startTimeNs > topStartNs) {
693 topActive = current;
694 topStartNs = current->startTimeNs;
695 }
696 }
697 if (isAssistant) {
698 isAssistantOnTop = true;
699 }
700 }
701 // Clients capturing for HOTWORD are not considered
702 // for latest active to avoid masking regular clients started before
703 if (!(current->attributes.source == AUDIO_SOURCE_HOTWORD
704 || ((isA11yOnTop || rttCallActive) && isAssistant))) {
705 if (isPrivacySensitive) {
706 // if audio mode is IN_COMMUNICATION, make sure the audio mode owner
707 // is marked latest sensitive active even if another app qualifies.
708 if (current->startTimeNs > latestSensitiveStartNs
709 || (isInCommunication && currentUid == mPhoneStateOwnerUid)) {
710 if (!isInCommunication || latestSensitiveActiveOrComm == nullptr
711 || VALUE_OR_FATAL(aidl2legacy_int32_t_uid_t(
712 latestSensitiveActiveOrComm->attributionSource.uid))
713 != mPhoneStateOwnerUid) {
714 latestSensitiveActiveOrComm = current;
715 latestSensitiveStartNs = current->startTimeNs;
716 }
717 }
718 isSensitiveActive = true;
719 } else {
720 if (current->startTimeNs > latestStartNs) {
721 latestActive = current;
722 latestStartNs = current->startTimeNs;
723 }
724 }
725 }
726 }
727 if (current->attributes.source != AUDIO_SOURCE_HOTWORD) {
728 onlyHotwordActive = false;
729 }
730 if (currentUid == mPhoneStateOwnerUid) {
731 isPhoneStateOwnerActive = true;
732 }
733 }
734
735 // if no active client with UI on Top, consider latest active as top
736 if (topActive == nullptr) {
737 topActive = latestActive;
738 topStartNs = latestStartNs;
739 }
740 if (topSensitiveActive == nullptr) {
741 topSensitiveActive = latestSensitiveActiveOrComm;
742 topSensitiveStartNs = latestSensitiveStartNs;
743 } else if (latestSensitiveActiveOrComm != nullptr) {
744 // if audio mode is IN_COMMUNICATION, favor audio mode owner over an app with
745 // foreground UI in case both are capturing with privacy sensitive flag.
746 uid_t latestActiveUid = VALUE_OR_FATAL(
747 aidl2legacy_int32_t_uid_t(latestSensitiveActiveOrComm->attributionSource.uid));
748 if (isInCommunication && latestActiveUid == mPhoneStateOwnerUid) {
749 topSensitiveActive = latestSensitiveActiveOrComm;
750 topSensitiveStartNs = latestSensitiveStartNs;
751 }
752 }
753
754 // If both privacy sensitive and regular capture are active:
755 // if the regular capture is privileged
756 // allow concurrency
757 // else
758 // favor the privacy sensitive case
759 if (topActive != nullptr && topSensitiveActive != nullptr
760 && !topActive->canCaptureOutput) {
761 topActive = nullptr;
762 }
763
764 for (size_t i =0; i < mAudioRecordClients.size(); i++) {
765 sp<AudioRecordClient> current = mAudioRecordClients[i];
766 uid_t currentUid = VALUE_OR_FATAL(aidl2legacy_int32_t_uid_t(
767 current->attributionSource.uid));
768 if (!current->active) {
769 continue;
770 }
771
772 audio_source_t source = current->attributes.source;
773 bool isTopOrLatestActive = topActive == nullptr ? false :
774 current->attributionSource.uid == topActive->attributionSource.uid;
775 bool isTopOrLatestSensitive = topSensitiveActive == nullptr ? false :
776 current->attributionSource.uid == topSensitiveActive->attributionSource.uid;
777
778 auto canCaptureIfInCallOrCommunication = [&](const auto &recordClient) REQUIRES(mLock) {
779 uid_t recordUid = VALUE_OR_FATAL(aidl2legacy_int32_t_uid_t(
780 recordClient->attributionSource.uid));
781 bool canCaptureCall = recordClient->canCaptureOutput;
782 bool canCaptureCommunication = recordClient->canCaptureOutput
783 || !isPhoneStateOwnerActive
784 || recordUid == mPhoneStateOwnerUid;
785 return !(isInCall && !canCaptureCall)
786 && !(isInCommunication && !canCaptureCommunication);
787 };
788
789 // By default allow capture if:
790 // The assistant is not on TOP
791 // AND is on TOP or latest started
792 // AND there is no active privacy sensitive capture or call
793 // OR client has CAPTURE_AUDIO_OUTPUT privileged permission
794 bool allowCapture = !isAssistantOnTop
795 && (isTopOrLatestActive || isTopOrLatestSensitive)
796 && !(isSensitiveActive
797 && !(isTopOrLatestSensitive || current->canCaptureOutput))
798 && canCaptureIfInCallOrCommunication(current);
799
800 if (!current->hasOp()) {
801 // Never allow capture if app op is denied
802 allowCapture = false;
803 } else if (isVirtualSource(source)) {
804 // Allow capture for virtual (remote submix, call audio TX or RX...) sources
805 allowCapture = true;
806 } else if (mUidPolicy->isAssistantUid(currentUid)) {
807 // For assistant allow capture if:
808 // An accessibility service is on TOP or a RTT call is active
809 // AND the source is VOICE_RECOGNITION or HOTWORD
810 // OR is on TOP AND uses VOICE_RECOGNITION
811 // OR uses HOTWORD
812 // AND there is no active privacy sensitive capture or call
813 // OR client has CAPTURE_AUDIO_OUTPUT privileged permission
814 if (isA11yOnTop || rttCallActive) {
815 if (source == AUDIO_SOURCE_HOTWORD || source == AUDIO_SOURCE_VOICE_RECOGNITION) {
816 allowCapture = true;
817 }
818 } else {
819 if (((isAssistantOnTop && source == AUDIO_SOURCE_VOICE_RECOGNITION) ||
820 source == AUDIO_SOURCE_HOTWORD)
821 && !(isSensitiveActive && !current->canCaptureOutput)
822 && canCaptureIfInCallOrCommunication(current)) {
823 allowCapture = true;
824 }
825 }
826 } else if (mUidPolicy->isA11yUid(currentUid)) {
827 // For accessibility service allow capture if:
828 // The assistant is not on TOP
829 // AND there is no active privacy sensitive capture or call
830 // OR client has CAPTURE_AUDIO_OUTPUT privileged permission
831 // OR
832 // Is on TOP AND the source is VOICE_RECOGNITION or HOTWORD
833 if (!isAssistantOnTop
834 && !(isSensitiveActive && !current->canCaptureOutput)
835 && canCaptureIfInCallOrCommunication(current)) {
836 allowCapture = true;
837 }
838 if (isA11yOnTop) {
839 if (source == AUDIO_SOURCE_VOICE_RECOGNITION || source == AUDIO_SOURCE_HOTWORD) {
840 allowCapture = true;
841 }
842 }
843 } else if (source == AUDIO_SOURCE_HOTWORD) {
844 // For HOTWORD source allow capture when not on TOP if:
845 // All active clients are using HOTWORD source
846 // AND no call is active
847 // OR client has CAPTURE_AUDIO_OUTPUT privileged permission
848 if (onlyHotwordActive
849 && canCaptureIfInCallOrCommunication(current)) {
850 allowCapture = true;
851 }
852 } else if (mUidPolicy->isCurrentImeUid(currentUid)) {
853 // For current InputMethodService allow capture if:
854 // A RTT call is active AND the source is VOICE_RECOGNITION
855 if (rttCallActive && source == AUDIO_SOURCE_VOICE_RECOGNITION) {
856 allowCapture = true;
857 }
858 }
859 setAppState_l(current,
860 allowCapture ? apmStatFromAmState(mUidPolicy->getUidState(currentUid)) :
861 APP_STATE_IDLE);
862 }
863 }
864
silenceAllRecordings_l()865 void AudioPolicyService::silenceAllRecordings_l() {
866 for (size_t i = 0; i < mAudioRecordClients.size(); i++) {
867 sp<AudioRecordClient> current = mAudioRecordClients[i];
868 if (!isVirtualSource(current->attributes.source)) {
869 setAppState_l(current, APP_STATE_IDLE);
870 }
871 }
872 }
873
874 /* static */
apmStatFromAmState(int amState)875 app_state_t AudioPolicyService::apmStatFromAmState(int amState) {
876
877 if (amState == ActivityManager::PROCESS_STATE_UNKNOWN) {
878 return APP_STATE_IDLE;
879 } else if (amState <= ActivityManager::PROCESS_STATE_TOP) {
880 // include persistent services
881 return APP_STATE_TOP;
882 }
883 return APP_STATE_FOREGROUND;
884 }
885
886 /* static */
isVirtualSource(audio_source_t source)887 bool AudioPolicyService::isVirtualSource(audio_source_t source)
888 {
889 switch (source) {
890 case AUDIO_SOURCE_VOICE_UPLINK:
891 case AUDIO_SOURCE_VOICE_DOWNLINK:
892 case AUDIO_SOURCE_VOICE_CALL:
893 case AUDIO_SOURCE_REMOTE_SUBMIX:
894 case AUDIO_SOURCE_FM_TUNER:
895 case AUDIO_SOURCE_ECHO_REFERENCE:
896 return true;
897 default:
898 break;
899 }
900 return false;
901 }
902
903 /* static */
isAppOpSource(audio_source_t source)904 bool AudioPolicyService::isAppOpSource(audio_source_t source)
905 {
906 switch (source) {
907 case AUDIO_SOURCE_FM_TUNER:
908 case AUDIO_SOURCE_ECHO_REFERENCE:
909 return false;
910 default:
911 break;
912 }
913 return true;
914 }
915
setAppState_l(sp<AudioRecordClient> client,app_state_t state)916 void AudioPolicyService::setAppState_l(sp<AudioRecordClient> client, app_state_t state)
917 {
918 AutoCallerClear acc;
919
920 if (mAudioPolicyManager) {
921 mAudioPolicyManager->setAppState(client->portId, state);
922 }
923 sp<IAudioFlinger> af = AudioSystem::get_audio_flinger();
924 if (af) {
925 bool silenced = state == APP_STATE_IDLE;
926 if (client->silenced != silenced) {
927 if (client->active) {
928 if (silenced) {
929 finishRecording(client->attributionSource, client->attributes.source);
930 } else {
931 std::stringstream msg;
932 msg << "Audio recording un-silenced on session " << client->session;
933 if (!startRecording(client->attributionSource, String16(msg.str().c_str()),
934 client->attributes.source)) {
935 silenced = true;
936 }
937 }
938 }
939 af->setRecordSilenced(client->portId, silenced);
940 client->silenced = silenced;
941 }
942 }
943 }
944
dump(int fd,const Vector<String16> & args __unused)945 status_t AudioPolicyService::dump(int fd, const Vector<String16>& args __unused)
946 {
947 if (!dumpAllowed()) {
948 dumpPermissionDenial(fd);
949 } else {
950 const bool locked = dumpTryLock(mLock);
951 if (!locked) {
952 String8 result(kDeadlockedString);
953 write(fd, result.string(), result.size());
954 }
955
956 dumpInternals(fd);
957 if (mAudioCommandThread != 0) {
958 mAudioCommandThread->dump(fd);
959 }
960
961 if (mAudioPolicyManager) {
962 mAudioPolicyManager->dump(fd);
963 }
964
965 mPackageManager.dump(fd);
966
967 dumpReleaseLock(mLock, locked);
968 }
969 return NO_ERROR;
970 }
971
dumpPermissionDenial(int fd)972 status_t AudioPolicyService::dumpPermissionDenial(int fd)
973 {
974 const size_t SIZE = 256;
975 char buffer[SIZE];
976 String8 result;
977 snprintf(buffer, SIZE, "Permission Denial: "
978 "can't dump AudioPolicyService from pid=%d, uid=%d\n",
979 IPCThreadState::self()->getCallingPid(),
980 IPCThreadState::self()->getCallingUid());
981 result.append(buffer);
982 write(fd, result.string(), result.size());
983 return NO_ERROR;
984 }
985
onTransact(uint32_t code,const Parcel & data,Parcel * reply,uint32_t flags)986 status_t AudioPolicyService::onTransact(
987 uint32_t code, const Parcel& data, Parcel* reply, uint32_t flags) {
988 // make sure transactions reserved to AudioFlinger do not come from other processes
989 switch (code) {
990 case TRANSACTION_startOutput:
991 case TRANSACTION_stopOutput:
992 case TRANSACTION_releaseOutput:
993 case TRANSACTION_getInputForAttr:
994 case TRANSACTION_startInput:
995 case TRANSACTION_stopInput:
996 case TRANSACTION_releaseInput:
997 case TRANSACTION_getOutputForEffect:
998 case TRANSACTION_registerEffect:
999 case TRANSACTION_unregisterEffect:
1000 case TRANSACTION_setEffectEnabled:
1001 case TRANSACTION_getStrategyForStream:
1002 case TRANSACTION_getOutputForAttr:
1003 case TRANSACTION_moveEffectsToIo:
1004 ALOGW("%s: transaction %d received from PID %d",
1005 __func__, code, IPCThreadState::self()->getCallingPid());
1006 return INVALID_OPERATION;
1007 default:
1008 break;
1009 }
1010
1011 // make sure the following transactions come from system components
1012 switch (code) {
1013 case TRANSACTION_setDeviceConnectionState:
1014 case TRANSACTION_handleDeviceConfigChange:
1015 case TRANSACTION_setPhoneState:
1016 //FIXME: Allow setForceUse calls from system apps until a better use case routing API is available
1017 // case TRANSACTION_setForceUse:
1018 case TRANSACTION_initStreamVolume:
1019 case TRANSACTION_setStreamVolumeIndex:
1020 case TRANSACTION_setVolumeIndexForAttributes:
1021 case TRANSACTION_getStreamVolumeIndex:
1022 case TRANSACTION_getVolumeIndexForAttributes:
1023 case TRANSACTION_getMinVolumeIndexForAttributes:
1024 case TRANSACTION_getMaxVolumeIndexForAttributes:
1025 case TRANSACTION_isStreamActive:
1026 case TRANSACTION_isStreamActiveRemotely:
1027 case TRANSACTION_isSourceActive:
1028 case TRANSACTION_getDevicesForStream:
1029 case TRANSACTION_registerPolicyMixes:
1030 case TRANSACTION_setMasterMono:
1031 case TRANSACTION_getSurroundFormats:
1032 case TRANSACTION_getReportedSurroundFormats:
1033 case TRANSACTION_setSurroundFormatEnabled:
1034 case TRANSACTION_setAssistantUid:
1035 case TRANSACTION_setA11yServicesUids:
1036 case TRANSACTION_setUidDeviceAffinities:
1037 case TRANSACTION_removeUidDeviceAffinities:
1038 case TRANSACTION_setUserIdDeviceAffinities:
1039 case TRANSACTION_removeUserIdDeviceAffinities:
1040 case TRANSACTION_getHwOffloadEncodingFormatsSupportedForA2DP:
1041 case TRANSACTION_listAudioVolumeGroups:
1042 case TRANSACTION_getVolumeGroupFromAudioAttributes:
1043 case TRANSACTION_acquireSoundTriggerSession:
1044 case TRANSACTION_releaseSoundTriggerSession:
1045 case TRANSACTION_setRttEnabled:
1046 case TRANSACTION_isCallScreenModeSupported:
1047 case TRANSACTION_setDevicesRoleForStrategy:
1048 case TRANSACTION_setSupportedSystemUsages:
1049 case TRANSACTION_removeDevicesRoleForStrategy:
1050 case TRANSACTION_getDevicesForRoleAndStrategy:
1051 case TRANSACTION_getDevicesForAttributes:
1052 case TRANSACTION_setAllowedCapturePolicy:
1053 case TRANSACTION_onNewAudioModulesAvailable:
1054 case TRANSACTION_setCurrentImeUid:
1055 case TRANSACTION_registerSoundTriggerCaptureStateListener:
1056 case TRANSACTION_setDevicesRoleForCapturePreset:
1057 case TRANSACTION_addDevicesRoleForCapturePreset:
1058 case TRANSACTION_removeDevicesRoleForCapturePreset:
1059 case TRANSACTION_clearDevicesRoleForCapturePreset:
1060 case TRANSACTION_getDevicesForRoleAndCapturePreset:
1061 case TRANSACTION_getSpatializer: {
1062 if (!isServiceUid(IPCThreadState::self()->getCallingUid())) {
1063 ALOGW("%s: transaction %d received from PID %d unauthorized UID %d",
1064 __func__, code, IPCThreadState::self()->getCallingPid(),
1065 IPCThreadState::self()->getCallingUid());
1066 return INVALID_OPERATION;
1067 }
1068 } break;
1069 default:
1070 break;
1071 }
1072
1073 std::string tag("IAudioPolicyService command " + std::to_string(code));
1074 TimeCheck check(tag.c_str());
1075
1076 switch (code) {
1077 case SHELL_COMMAND_TRANSACTION: {
1078 int in = data.readFileDescriptor();
1079 int out = data.readFileDescriptor();
1080 int err = data.readFileDescriptor();
1081 int argc = data.readInt32();
1082 Vector<String16> args;
1083 for (int i = 0; i < argc && data.dataAvail() > 0; i++) {
1084 args.add(data.readString16());
1085 }
1086 sp<IBinder> unusedCallback;
1087 sp<IResultReceiver> resultReceiver;
1088 status_t status;
1089 if ((status = data.readNullableStrongBinder(&unusedCallback)) != NO_ERROR) {
1090 return status;
1091 }
1092 if ((status = data.readNullableStrongBinder(&resultReceiver)) != NO_ERROR) {
1093 return status;
1094 }
1095 status = shellCommand(in, out, err, args);
1096 if (resultReceiver != nullptr) {
1097 resultReceiver->send(status);
1098 }
1099 return NO_ERROR;
1100 }
1101 }
1102
1103 return BnAudioPolicyService::onTransact(code, data, reply, flags);
1104 }
1105
1106 // ------------------- Shell command implementation -------------------
1107
1108 // NOTE: This is a remote API - make sure all args are validated
shellCommand(int in,int out,int err,Vector<String16> & args)1109 status_t AudioPolicyService::shellCommand(int in, int out, int err, Vector<String16>& args) {
1110 if (!checkCallingPermission(sManageAudioPolicyPermission, nullptr, nullptr)) {
1111 return PERMISSION_DENIED;
1112 }
1113 if (in == BAD_TYPE || out == BAD_TYPE || err == BAD_TYPE) {
1114 return BAD_VALUE;
1115 }
1116 if (args.size() >= 3 && args[0] == String16("set-uid-state")) {
1117 return handleSetUidState(args, err);
1118 } else if (args.size() >= 2 && args[0] == String16("reset-uid-state")) {
1119 return handleResetUidState(args, err);
1120 } else if (args.size() >= 2 && args[0] == String16("get-uid-state")) {
1121 return handleGetUidState(args, out, err);
1122 } else if (args.size() >= 1 && args[0] == String16("purge_permission-cache")) {
1123 purgePermissionCache();
1124 return NO_ERROR;
1125 } else if (args.size() == 1 && args[0] == String16("help")) {
1126 printHelp(out);
1127 return NO_ERROR;
1128 }
1129 printHelp(err);
1130 return BAD_VALUE;
1131 }
1132
getUidForPackage(String16 packageName,int userId,uid_t & uid,int err)1133 static status_t getUidForPackage(String16 packageName, int userId, /*inout*/uid_t& uid, int err) {
1134 if (userId < 0) {
1135 ALOGE("Invalid user: %d", userId);
1136 dprintf(err, "Invalid user: %d\n", userId);
1137 return BAD_VALUE;
1138 }
1139
1140 PermissionController pc;
1141 uid = pc.getPackageUid(packageName, 0);
1142 if (uid <= 0) {
1143 ALOGE("Unknown package: '%s'", String8(packageName).string());
1144 dprintf(err, "Unknown package: '%s'\n", String8(packageName).string());
1145 return BAD_VALUE;
1146 }
1147
1148 uid = multiuser_get_uid(userId, uid);
1149 return NO_ERROR;
1150 }
1151
handleSetUidState(Vector<String16> & args,int err)1152 status_t AudioPolicyService::handleSetUidState(Vector<String16>& args, int err) {
1153 // Valid arg.size() is 3 or 5, args.size() is 5 with --user option.
1154 if (!(args.size() == 3 || args.size() == 5)) {
1155 printHelp(err);
1156 return BAD_VALUE;
1157 }
1158
1159 bool active = false;
1160 if (args[2] == String16("active")) {
1161 active = true;
1162 } else if ((args[2] != String16("idle"))) {
1163 ALOGE("Expected active or idle but got: '%s'", String8(args[2]).string());
1164 return BAD_VALUE;
1165 }
1166
1167 int userId = 0;
1168 if (args.size() >= 5 && args[3] == String16("--user")) {
1169 userId = atoi(String8(args[4]));
1170 }
1171
1172 uid_t uid;
1173 if (getUidForPackage(args[1], userId, uid, err) == BAD_VALUE) {
1174 return BAD_VALUE;
1175 }
1176
1177 sp<UidPolicy> uidPolicy;
1178 {
1179 Mutex::Autolock _l(mLock);
1180 uidPolicy = mUidPolicy;
1181 }
1182 if (uidPolicy) {
1183 uidPolicy->addOverrideUid(uid, active);
1184 return NO_ERROR;
1185 }
1186 return NO_INIT;
1187 }
1188
handleResetUidState(Vector<String16> & args,int err)1189 status_t AudioPolicyService::handleResetUidState(Vector<String16>& args, int err) {
1190 // Valid arg.size() is 2 or 4, args.size() is 4 with --user option.
1191 if (!(args.size() == 2 || args.size() == 4)) {
1192 printHelp(err);
1193 return BAD_VALUE;
1194 }
1195
1196 int userId = 0;
1197 if (args.size() >= 4 && args[2] == String16("--user")) {
1198 userId = atoi(String8(args[3]));
1199 }
1200
1201 uid_t uid;
1202 if (getUidForPackage(args[1], userId, uid, err) == BAD_VALUE) {
1203 return BAD_VALUE;
1204 }
1205
1206 sp<UidPolicy> uidPolicy;
1207 {
1208 Mutex::Autolock _l(mLock);
1209 uidPolicy = mUidPolicy;
1210 }
1211 if (uidPolicy) {
1212 uidPolicy->removeOverrideUid(uid);
1213 return NO_ERROR;
1214 }
1215 return NO_INIT;
1216 }
1217
handleGetUidState(Vector<String16> & args,int out,int err)1218 status_t AudioPolicyService::handleGetUidState(Vector<String16>& args, int out, int err) {
1219 // Valid arg.size() is 2 or 4, args.size() is 4 with --user option.
1220 if (!(args.size() == 2 || args.size() == 4)) {
1221 printHelp(err);
1222 return BAD_VALUE;
1223 }
1224
1225 int userId = 0;
1226 if (args.size() >= 4 && args[2] == String16("--user")) {
1227 userId = atoi(String8(args[3]));
1228 }
1229
1230 uid_t uid;
1231 if (getUidForPackage(args[1], userId, uid, err) == BAD_VALUE) {
1232 return BAD_VALUE;
1233 }
1234
1235 sp<UidPolicy> uidPolicy;
1236 {
1237 Mutex::Autolock _l(mLock);
1238 uidPolicy = mUidPolicy;
1239 }
1240 if (uidPolicy) {
1241 return dprintf(out, uidPolicy->isUidActive(uid) ? "active\n" : "idle\n");
1242 }
1243 return NO_INIT;
1244 }
1245
printHelp(int out)1246 status_t AudioPolicyService::printHelp(int out) {
1247 return dprintf(out, "Audio policy service commands:\n"
1248 " get-uid-state <PACKAGE> [--user USER_ID] gets the uid state\n"
1249 " set-uid-state <PACKAGE> <active|idle> [--user USER_ID] overrides the uid state\n"
1250 " reset-uid-state <PACKAGE> [--user USER_ID] clears the uid state override\n"
1251 " help print this message\n");
1252 }
1253
1254 // ----------- AudioPolicyService::UidPolicy implementation ----------
1255
registerSelf()1256 void AudioPolicyService::UidPolicy::registerSelf() {
1257 status_t res = mAm.linkToDeath(this);
1258 mAm.registerUidObserver(this, ActivityManager::UID_OBSERVER_GONE
1259 | ActivityManager::UID_OBSERVER_IDLE
1260 | ActivityManager::UID_OBSERVER_ACTIVE
1261 | ActivityManager::UID_OBSERVER_PROCSTATE,
1262 ActivityManager::PROCESS_STATE_UNKNOWN,
1263 String16("audioserver"));
1264 if (!res) {
1265 Mutex::Autolock _l(mLock);
1266 mObserverRegistered = true;
1267 } else {
1268 ALOGE("UidPolicy::registerSelf linkToDeath failed: %d", res);
1269
1270 mAm.unregisterUidObserver(this);
1271 }
1272 }
1273
unregisterSelf()1274 void AudioPolicyService::UidPolicy::unregisterSelf() {
1275 mAm.unlinkToDeath(this);
1276 mAm.unregisterUidObserver(this);
1277 Mutex::Autolock _l(mLock);
1278 mObserverRegistered = false;
1279 }
1280
binderDied(__unused const wp<IBinder> & who)1281 void AudioPolicyService::UidPolicy::binderDied(__unused const wp<IBinder> &who) {
1282 Mutex::Autolock _l(mLock);
1283 mCachedUids.clear();
1284 mObserverRegistered = false;
1285 }
1286
checkRegistered()1287 void AudioPolicyService::UidPolicy::checkRegistered() {
1288 bool needToReregister = false;
1289 {
1290 Mutex::Autolock _l(mLock);
1291 needToReregister = !mObserverRegistered;
1292 }
1293 if (needToReregister) {
1294 // Looks like ActivityManager has died previously, attempt to re-register.
1295 registerSelf();
1296 }
1297 }
1298
isUidActive(uid_t uid)1299 bool AudioPolicyService::UidPolicy::isUidActive(uid_t uid) {
1300 if (isServiceUid(uid)) return true;
1301 checkRegistered();
1302 {
1303 Mutex::Autolock _l(mLock);
1304 auto overrideIter = mOverrideUids.find(uid);
1305 if (overrideIter != mOverrideUids.end()) {
1306 return overrideIter->second.first;
1307 }
1308 // In an absense of the ActivityManager, assume everything to be active.
1309 if (!mObserverRegistered) return true;
1310 auto cacheIter = mCachedUids.find(uid);
1311 if (cacheIter != mCachedUids.end()) {
1312 return cacheIter->second.first;
1313 }
1314 }
1315 ActivityManager am;
1316 bool active = am.isUidActive(uid, String16("audioserver"));
1317 {
1318 Mutex::Autolock _l(mLock);
1319 mCachedUids.insert(std::pair<uid_t,
1320 std::pair<bool, int>>(uid, std::pair<bool, int>(active,
1321 ActivityManager::PROCESS_STATE_UNKNOWN)));
1322 }
1323 return active;
1324 }
1325
getUidState(uid_t uid)1326 int AudioPolicyService::UidPolicy::getUidState(uid_t uid) {
1327 if (isServiceUid(uid)) {
1328 return ActivityManager::PROCESS_STATE_TOP;
1329 }
1330 checkRegistered();
1331 {
1332 Mutex::Autolock _l(mLock);
1333 auto overrideIter = mOverrideUids.find(uid);
1334 if (overrideIter != mOverrideUids.end()) {
1335 if (overrideIter->second.first) {
1336 if (overrideIter->second.second != ActivityManager::PROCESS_STATE_UNKNOWN) {
1337 return overrideIter->second.second;
1338 } else {
1339 auto cacheIter = mCachedUids.find(uid);
1340 if (cacheIter != mCachedUids.end()) {
1341 return cacheIter->second.second;
1342 }
1343 }
1344 }
1345 return ActivityManager::PROCESS_STATE_UNKNOWN;
1346 }
1347 // In an absense of the ActivityManager, assume everything to be active.
1348 if (!mObserverRegistered) {
1349 return ActivityManager::PROCESS_STATE_TOP;
1350 }
1351 auto cacheIter = mCachedUids.find(uid);
1352 if (cacheIter != mCachedUids.end()) {
1353 if (cacheIter->second.first) {
1354 return cacheIter->second.second;
1355 } else {
1356 return ActivityManager::PROCESS_STATE_UNKNOWN;
1357 }
1358 }
1359 }
1360 ActivityManager am;
1361 bool active = am.isUidActive(uid, String16("audioserver"));
1362 int state = ActivityManager::PROCESS_STATE_UNKNOWN;
1363 if (active) {
1364 state = am.getUidProcessState(uid, String16("audioserver"));
1365 }
1366 {
1367 Mutex::Autolock _l(mLock);
1368 mCachedUids.insert(std::pair<uid_t,
1369 std::pair<bool, int>>(uid, std::pair<bool, int>(active, state)));
1370 }
1371
1372 return state;
1373 }
1374
onUidActive(uid_t uid)1375 void AudioPolicyService::UidPolicy::onUidActive(uid_t uid) {
1376 updateUid(&mCachedUids, uid, true, ActivityManager::PROCESS_STATE_UNKNOWN, true);
1377 }
1378
onUidGone(uid_t uid,__unused bool disabled)1379 void AudioPolicyService::UidPolicy::onUidGone(uid_t uid, __unused bool disabled) {
1380 updateUid(&mCachedUids, uid, false, ActivityManager::PROCESS_STATE_UNKNOWN, false);
1381 }
1382
onUidIdle(uid_t uid,__unused bool disabled)1383 void AudioPolicyService::UidPolicy::onUidIdle(uid_t uid, __unused bool disabled) {
1384 updateUid(&mCachedUids, uid, false, ActivityManager::PROCESS_STATE_UNKNOWN, true);
1385 }
1386
onUidStateChanged(uid_t uid,int32_t procState,int64_t procStateSeq __unused,int32_t capability __unused)1387 void AudioPolicyService::UidPolicy::onUidStateChanged(uid_t uid,
1388 int32_t procState,
1389 int64_t procStateSeq __unused,
1390 int32_t capability __unused) {
1391 if (procState != ActivityManager::PROCESS_STATE_UNKNOWN) {
1392 updateUid(&mCachedUids, uid, true, procState, true);
1393 }
1394 }
1395
updateOverrideUid(uid_t uid,bool active,bool insert)1396 void AudioPolicyService::UidPolicy::updateOverrideUid(uid_t uid, bool active, bool insert) {
1397 updateUid(&mOverrideUids, uid, active, ActivityManager::PROCESS_STATE_UNKNOWN, insert);
1398 }
1399
notifyService()1400 void AudioPolicyService::UidPolicy::notifyService() {
1401 sp<AudioPolicyService> service = mService.promote();
1402 if (service != nullptr) {
1403 service->updateUidStates();
1404 }
1405 }
1406
updateUid(std::unordered_map<uid_t,std::pair<bool,int>> * uids,uid_t uid,bool active,int state,bool insert)1407 void AudioPolicyService::UidPolicy::updateUid(std::unordered_map<uid_t,
1408 std::pair<bool, int>> *uids,
1409 uid_t uid,
1410 bool active,
1411 int state,
1412 bool insert) {
1413 if (isServiceUid(uid)) {
1414 return;
1415 }
1416 bool wasActive = isUidActive(uid);
1417 int previousState = getUidState(uid);
1418 {
1419 Mutex::Autolock _l(mLock);
1420 updateUidLocked(uids, uid, active, state, insert);
1421 }
1422 if (wasActive != isUidActive(uid) || state != previousState) {
1423 notifyService();
1424 }
1425 }
1426
updateUidLocked(std::unordered_map<uid_t,std::pair<bool,int>> * uids,uid_t uid,bool active,int state,bool insert)1427 void AudioPolicyService::UidPolicy::updateUidLocked(std::unordered_map<uid_t,
1428 std::pair<bool, int>> *uids,
1429 uid_t uid,
1430 bool active,
1431 int state,
1432 bool insert) {
1433 auto it = uids->find(uid);
1434 if (it != uids->end()) {
1435 if (insert) {
1436 if (state == ActivityManager::PROCESS_STATE_UNKNOWN) {
1437 it->second.first = active;
1438 }
1439 if (it->second.first) {
1440 it->second.second = state;
1441 } else {
1442 it->second.second = ActivityManager::PROCESS_STATE_UNKNOWN;
1443 }
1444 } else {
1445 uids->erase(it);
1446 }
1447 } else if (insert && (state == ActivityManager::PROCESS_STATE_UNKNOWN)) {
1448 uids->insert(std::pair<uid_t, std::pair<bool, int>>(uid,
1449 std::pair<bool, int>(active, state)));
1450 }
1451 }
1452
isA11yOnTop()1453 bool AudioPolicyService::UidPolicy::isA11yOnTop() {
1454 for (const auto &uid : mCachedUids) {
1455 if (!isA11yUid(uid.first)) {
1456 continue;
1457 }
1458 if (uid.second.second >= ActivityManager::PROCESS_STATE_TOP
1459 && uid.second.second <= ActivityManager::PROCESS_STATE_BOUND_FOREGROUND_SERVICE) {
1460 return true;
1461 }
1462 }
1463 return false;
1464 }
1465
isA11yUid(uid_t uid)1466 bool AudioPolicyService::UidPolicy::isA11yUid(uid_t uid)
1467 {
1468 std::vector<uid_t>::iterator it = find(mA11yUids.begin(), mA11yUids.end(), uid);
1469 return it != mA11yUids.end();
1470 }
1471
1472 // ----------- AudioPolicyService::SensorPrivacyService implementation ----------
registerSelf()1473 void AudioPolicyService::SensorPrivacyPolicy::registerSelf() {
1474 SensorPrivacyManager spm;
1475 mSensorPrivacyEnabled = spm.isSensorPrivacyEnabled();
1476 spm.addSensorPrivacyListener(this);
1477 }
1478
registerSelfForMicrophoneOnly(int userId)1479 void AudioPolicyService::SensorPrivacyPolicy::registerSelfForMicrophoneOnly(int userId) {
1480 SensorPrivacyManager spm;
1481 mSensorPrivacyEnabled = spm.isIndividualSensorPrivacyEnabled(userId,
1482 SensorPrivacyManager::INDIVIDUAL_SENSOR_MICROPHONE);
1483 spm.addIndividualSensorPrivacyListener(userId,
1484 SensorPrivacyManager::INDIVIDUAL_SENSOR_MICROPHONE, this);
1485 }
1486
unregisterSelf()1487 void AudioPolicyService::SensorPrivacyPolicy::unregisterSelf() {
1488 SensorPrivacyManager spm;
1489 spm.removeSensorPrivacyListener(this);
1490 }
1491
isSensorPrivacyEnabled()1492 bool AudioPolicyService::SensorPrivacyPolicy::isSensorPrivacyEnabled() {
1493 return mSensorPrivacyEnabled;
1494 }
1495
onSensorPrivacyChanged(bool enabled)1496 binder::Status AudioPolicyService::SensorPrivacyPolicy::onSensorPrivacyChanged(bool enabled) {
1497 mSensorPrivacyEnabled = enabled;
1498 sp<AudioPolicyService> service = mService.promote();
1499 if (service != nullptr) {
1500 service->updateUidStates();
1501 }
1502 return binder::Status::ok();
1503 }
1504
1505 // ----------- AudioPolicyService::OpRecordAudioMonitor implementation ----------
1506
1507 // static
1508 sp<AudioPolicyService::OpRecordAudioMonitor>
createIfNeeded(const AttributionSourceState & attributionSource,const audio_attributes_t & attr,wp<AudioCommandThread> commandThread)1509 AudioPolicyService::OpRecordAudioMonitor::createIfNeeded(
1510 const AttributionSourceState& attributionSource, const audio_attributes_t& attr,
1511 wp<AudioCommandThread> commandThread)
1512 {
1513 if (isAudioServerOrRootUid(attributionSource.uid)) {
1514 ALOGV("not silencing record for audio or root source %s",
1515 attributionSource.toString().c_str());
1516 return nullptr;
1517 }
1518
1519 if (!AudioPolicyService::isAppOpSource(attr.source)) {
1520 ALOGD("not monitoring app op for uid %d and source %d",
1521 attributionSource.uid, attr.source);
1522 return nullptr;
1523 }
1524
1525 if (!attributionSource.packageName.has_value()
1526 || attributionSource.packageName.value().size() == 0) {
1527 return nullptr;
1528 }
1529 return new OpRecordAudioMonitor(attributionSource, getOpForSource(attr.source), commandThread);
1530 }
1531
OpRecordAudioMonitor(const AttributionSourceState & attributionSource,int32_t appOp,wp<AudioCommandThread> commandThread)1532 AudioPolicyService::OpRecordAudioMonitor::OpRecordAudioMonitor(
1533 const AttributionSourceState& attributionSource, int32_t appOp,
1534 wp<AudioCommandThread> commandThread) :
1535 mHasOp(true), mAttributionSource(attributionSource), mAppOp(appOp),
1536 mCommandThread(commandThread)
1537 {
1538 }
1539
~OpRecordAudioMonitor()1540 AudioPolicyService::OpRecordAudioMonitor::~OpRecordAudioMonitor()
1541 {
1542 if (mOpCallback != 0) {
1543 mAppOpsManager.stopWatchingMode(mOpCallback);
1544 }
1545 mOpCallback.clear();
1546 }
1547
onFirstRef()1548 void AudioPolicyService::OpRecordAudioMonitor::onFirstRef()
1549 {
1550 checkOp();
1551 mOpCallback = new RecordAudioOpCallback(this);
1552 ALOGV("start watching op %d for %s", mAppOp, mAttributionSource.toString().c_str());
1553 // TODO: We need to always watch AppOpsManager::OP_RECORD_AUDIO too
1554 // since it controls the mic permission for legacy apps.
1555 mAppOpsManager.startWatchingMode(mAppOp, VALUE_OR_FATAL(aidl2legacy_string_view_String16(
1556 mAttributionSource.packageName.value_or(""))),
1557 mOpCallback);
1558 }
1559
hasOp() const1560 bool AudioPolicyService::OpRecordAudioMonitor::hasOp() const {
1561 return mHasOp.load();
1562 }
1563
1564 // Called by RecordAudioOpCallback when the app op corresponding to this OpRecordAudioMonitor
1565 // is updated in AppOp callback and in onFirstRef()
1566 // Note this method is never called (and never to be) for audio server / root track
1567 // due to the UID in createIfNeeded(). As a result for those record track, it's:
1568 // - not called from constructor,
1569 // - not called from RecordAudioOpCallback because the callback is not installed in this case
checkOp(bool updateUidStates)1570 void AudioPolicyService::OpRecordAudioMonitor::checkOp(bool updateUidStates)
1571 {
1572 // TODO: We need to always check AppOpsManager::OP_RECORD_AUDIO too
1573 // since it controls the mic permission for legacy apps.
1574 const int32_t mode = mAppOpsManager.checkOp(mAppOp,
1575 mAttributionSource.uid, VALUE_OR_FATAL(aidl2legacy_string_view_String16(
1576 mAttributionSource.packageName.value_or(""))));
1577 const bool hasIt = (mode == AppOpsManager::MODE_ALLOWED);
1578 // verbose logging only log when appOp changed
1579 ALOGI_IF(hasIt != mHasOp.load(),
1580 "App op %d missing, %ssilencing record %s",
1581 mAppOp, hasIt ? "un" : "", mAttributionSource.toString().c_str());
1582 mHasOp.store(hasIt);
1583
1584 if (updateUidStates) {
1585 sp<AudioCommandThread> commandThread = mCommandThread.promote();
1586 if (commandThread != nullptr) {
1587 commandThread->updateUidStatesCommand();
1588 }
1589 }
1590 }
1591
RecordAudioOpCallback(const wp<OpRecordAudioMonitor> & monitor)1592 AudioPolicyService::OpRecordAudioMonitor::RecordAudioOpCallback::RecordAudioOpCallback(
1593 const wp<OpRecordAudioMonitor>& monitor) : mMonitor(monitor)
1594 { }
1595
opChanged(int32_t op,const String16 & packageName __unused)1596 void AudioPolicyService::OpRecordAudioMonitor::RecordAudioOpCallback::opChanged(int32_t op,
1597 const String16& packageName __unused) {
1598 sp<OpRecordAudioMonitor> monitor = mMonitor.promote();
1599 if (monitor != NULL) {
1600 if (op != monitor->getOp()) {
1601 return;
1602 }
1603 monitor->checkOp(true);
1604 }
1605 }
1606
1607
1608 // ----------- AudioPolicyService::AudioCommandThread implementation ----------
1609
AudioCommandThread(String8 name,const wp<AudioPolicyService> & service)1610 AudioPolicyService::AudioCommandThread::AudioCommandThread(String8 name,
1611 const wp<AudioPolicyService>& service)
1612 : Thread(false), mName(name), mService(service)
1613 {
1614 }
1615
1616
~AudioCommandThread()1617 AudioPolicyService::AudioCommandThread::~AudioCommandThread()
1618 {
1619 if (!mAudioCommands.isEmpty()) {
1620 release_wake_lock(mName.string());
1621 }
1622 mAudioCommands.clear();
1623 }
1624
onFirstRef()1625 void AudioPolicyService::AudioCommandThread::onFirstRef()
1626 {
1627 run(mName.string(), ANDROID_PRIORITY_AUDIO);
1628 }
1629
threadLoop()1630 bool AudioPolicyService::AudioCommandThread::threadLoop()
1631 {
1632 nsecs_t waitTime = -1;
1633
1634 mLock.lock();
1635 while (!exitPending())
1636 {
1637 sp<AudioPolicyService> svc;
1638 while (!mAudioCommands.isEmpty() && !exitPending()) {
1639 nsecs_t curTime = systemTime();
1640 // commands are sorted by increasing time stamp: execute them from index 0 and up
1641 if (mAudioCommands[0]->mTime <= curTime) {
1642 sp<AudioCommand> command = mAudioCommands[0];
1643 mAudioCommands.removeAt(0);
1644 mLastCommand = command;
1645
1646 switch (command->mCommand) {
1647 case SET_VOLUME: {
1648 VolumeData *data = (VolumeData *)command->mParam.get();
1649 ALOGV("AudioCommandThread() processing set volume stream %d, \
1650 volume %f, output %d", data->mStream, data->mVolume, data->mIO);
1651 mLock.unlock();
1652 command->mStatus = AudioSystem::setStreamVolume(data->mStream,
1653 data->mVolume,
1654 data->mIO);
1655 mLock.lock();
1656 }break;
1657 case SET_PARAMETERS: {
1658 ParametersData *data = (ParametersData *)command->mParam.get();
1659 ALOGV("AudioCommandThread() processing set parameters string %s, io %d",
1660 data->mKeyValuePairs.string(), data->mIO);
1661 mLock.unlock();
1662 command->mStatus = AudioSystem::setParameters(data->mIO, data->mKeyValuePairs);
1663 mLock.lock();
1664 }break;
1665 case SET_VOICE_VOLUME: {
1666 VoiceVolumeData *data = (VoiceVolumeData *)command->mParam.get();
1667 ALOGV("AudioCommandThread() processing set voice volume volume %f",
1668 data->mVolume);
1669 mLock.unlock();
1670 command->mStatus = AudioSystem::setVoiceVolume(data->mVolume);
1671 mLock.lock();
1672 }break;
1673 case STOP_OUTPUT: {
1674 StopOutputData *data = (StopOutputData *)command->mParam.get();
1675 ALOGV("AudioCommandThread() processing stop output portId %d",
1676 data->mPortId);
1677 svc = mService.promote();
1678 if (svc == 0) {
1679 break;
1680 }
1681 mLock.unlock();
1682 svc->doStopOutput(data->mPortId);
1683 mLock.lock();
1684 }break;
1685 case RELEASE_OUTPUT: {
1686 ReleaseOutputData *data = (ReleaseOutputData *)command->mParam.get();
1687 ALOGV("AudioCommandThread() processing release output portId %d",
1688 data->mPortId);
1689 svc = mService.promote();
1690 if (svc == 0) {
1691 break;
1692 }
1693 mLock.unlock();
1694 svc->doReleaseOutput(data->mPortId);
1695 mLock.lock();
1696 }break;
1697 case CREATE_AUDIO_PATCH: {
1698 CreateAudioPatchData *data = (CreateAudioPatchData *)command->mParam.get();
1699 ALOGV("AudioCommandThread() processing create audio patch");
1700 sp<IAudioFlinger> af = AudioSystem::get_audio_flinger();
1701 if (af == 0) {
1702 command->mStatus = PERMISSION_DENIED;
1703 } else {
1704 mLock.unlock();
1705 command->mStatus = af->createAudioPatch(&data->mPatch, &data->mHandle);
1706 mLock.lock();
1707 }
1708 } break;
1709 case RELEASE_AUDIO_PATCH: {
1710 ReleaseAudioPatchData *data = (ReleaseAudioPatchData *)command->mParam.get();
1711 ALOGV("AudioCommandThread() processing release audio patch");
1712 sp<IAudioFlinger> af = AudioSystem::get_audio_flinger();
1713 if (af == 0) {
1714 command->mStatus = PERMISSION_DENIED;
1715 } else {
1716 mLock.unlock();
1717 command->mStatus = af->releaseAudioPatch(data->mHandle);
1718 mLock.lock();
1719 }
1720 } break;
1721 case UPDATE_AUDIOPORT_LIST: {
1722 ALOGV("AudioCommandThread() processing update audio port list");
1723 svc = mService.promote();
1724 if (svc == 0) {
1725 break;
1726 }
1727 mLock.unlock();
1728 svc->doOnAudioPortListUpdate();
1729 mLock.lock();
1730 }break;
1731 case UPDATE_AUDIOPATCH_LIST: {
1732 ALOGV("AudioCommandThread() processing update audio patch list");
1733 svc = mService.promote();
1734 if (svc == 0) {
1735 break;
1736 }
1737 mLock.unlock();
1738 svc->doOnAudioPatchListUpdate();
1739 mLock.lock();
1740 }break;
1741 case CHANGED_AUDIOVOLUMEGROUP: {
1742 AudioVolumeGroupData *data =
1743 static_cast<AudioVolumeGroupData *>(command->mParam.get());
1744 ALOGV("AudioCommandThread() processing update audio volume group");
1745 svc = mService.promote();
1746 if (svc == 0) {
1747 break;
1748 }
1749 mLock.unlock();
1750 svc->doOnAudioVolumeGroupChanged(data->mGroup, data->mFlags);
1751 mLock.lock();
1752 }break;
1753 case SET_AUDIOPORT_CONFIG: {
1754 SetAudioPortConfigData *data = (SetAudioPortConfigData *)command->mParam.get();
1755 ALOGV("AudioCommandThread() processing set port config");
1756 sp<IAudioFlinger> af = AudioSystem::get_audio_flinger();
1757 if (af == 0) {
1758 command->mStatus = PERMISSION_DENIED;
1759 } else {
1760 mLock.unlock();
1761 command->mStatus = af->setAudioPortConfig(&data->mConfig);
1762 mLock.lock();
1763 }
1764 } break;
1765 case DYN_POLICY_MIX_STATE_UPDATE: {
1766 DynPolicyMixStateUpdateData *data =
1767 (DynPolicyMixStateUpdateData *)command->mParam.get();
1768 ALOGV("AudioCommandThread() processing dyn policy mix state update %s %d",
1769 data->mRegId.string(), data->mState);
1770 svc = mService.promote();
1771 if (svc == 0) {
1772 break;
1773 }
1774 mLock.unlock();
1775 svc->doOnDynamicPolicyMixStateUpdate(data->mRegId, data->mState);
1776 mLock.lock();
1777 } break;
1778 case RECORDING_CONFIGURATION_UPDATE: {
1779 RecordingConfigurationUpdateData *data =
1780 (RecordingConfigurationUpdateData *)command->mParam.get();
1781 ALOGV("AudioCommandThread() processing recording configuration update");
1782 svc = mService.promote();
1783 if (svc == 0) {
1784 break;
1785 }
1786 mLock.unlock();
1787 svc->doOnRecordingConfigurationUpdate(data->mEvent, &data->mClientInfo,
1788 &data->mClientConfig, data->mClientEffects,
1789 &data->mDeviceConfig, data->mEffects,
1790 data->mPatchHandle, data->mSource);
1791 mLock.lock();
1792 } break;
1793 case SET_EFFECT_SUSPENDED: {
1794 SetEffectSuspendedData *data = (SetEffectSuspendedData *)command->mParam.get();
1795 ALOGV("AudioCommandThread() processing set effect suspended");
1796 sp<IAudioFlinger> af = AudioSystem::get_audio_flinger();
1797 if (af != 0) {
1798 mLock.unlock();
1799 af->setEffectSuspended(data->mEffectId, data->mSessionId, data->mSuspended);
1800 mLock.lock();
1801 }
1802 } break;
1803 case AUDIO_MODULES_UPDATE: {
1804 ALOGV("AudioCommandThread() processing audio modules update");
1805 svc = mService.promote();
1806 if (svc == 0) {
1807 break;
1808 }
1809 mLock.unlock();
1810 svc->doOnNewAudioModulesAvailable();
1811 mLock.lock();
1812 } break;
1813 case ROUTING_UPDATED: {
1814 ALOGV("AudioCommandThread() processing routing update");
1815 svc = mService.promote();
1816 if (svc == 0) {
1817 break;
1818 }
1819 mLock.unlock();
1820 svc->doOnRoutingUpdated();
1821 mLock.lock();
1822 } break;
1823
1824 case UPDATE_UID_STATES: {
1825 ALOGV("AudioCommandThread() processing updateUID states");
1826 svc = mService.promote();
1827 if (svc == 0) {
1828 break;
1829 }
1830 mLock.unlock();
1831 svc->updateUidStates();
1832 mLock.lock();
1833 } break;
1834
1835 case CHECK_SPATIALIZER: {
1836 ALOGV("AudioCommandThread() processing updateUID states");
1837 svc = mService.promote();
1838 if (svc == 0) {
1839 break;
1840 }
1841 mLock.unlock();
1842 svc->doOnCheckSpatializer();
1843 mLock.lock();
1844 } break;
1845
1846 default:
1847 ALOGW("AudioCommandThread() unknown command %d", command->mCommand);
1848 }
1849 {
1850 Mutex::Autolock _l(command->mLock);
1851 if (command->mWaitStatus) {
1852 command->mWaitStatus = false;
1853 command->mCond.signal();
1854 }
1855 }
1856 waitTime = -1;
1857 // release mLock before releasing strong reference on the service as
1858 // AudioPolicyService destructor calls AudioCommandThread::exit() which
1859 // acquires mLock.
1860 mLock.unlock();
1861 svc.clear();
1862 mLock.lock();
1863 } else {
1864 waitTime = mAudioCommands[0]->mTime - curTime;
1865 break;
1866 }
1867 }
1868
1869 // release delayed commands wake lock if the queue is empty
1870 if (mAudioCommands.isEmpty()) {
1871 release_wake_lock(mName.string());
1872 }
1873
1874 // At this stage we have either an empty command queue or the first command in the queue
1875 // has a finite delay. So unless we are exiting it is safe to wait.
1876 if (!exitPending()) {
1877 ALOGV("AudioCommandThread() going to sleep");
1878 if (waitTime == -1) {
1879 mWaitWorkCV.wait(mLock);
1880 } else {
1881 mWaitWorkCV.waitRelative(mLock, waitTime);
1882 }
1883 }
1884 }
1885 // release delayed commands wake lock before quitting
1886 if (!mAudioCommands.isEmpty()) {
1887 release_wake_lock(mName.string());
1888 }
1889 mLock.unlock();
1890 return false;
1891 }
1892
dump(int fd)1893 status_t AudioPolicyService::AudioCommandThread::dump(int fd)
1894 {
1895 const size_t SIZE = 256;
1896 char buffer[SIZE];
1897 String8 result;
1898
1899 snprintf(buffer, SIZE, "AudioCommandThread %p Dump\n", this);
1900 result.append(buffer);
1901 write(fd, result.string(), result.size());
1902
1903 const bool locked = dumpTryLock(mLock);
1904 if (!locked) {
1905 String8 result2(kCmdDeadlockedString);
1906 write(fd, result2.string(), result2.size());
1907 }
1908
1909 snprintf(buffer, SIZE, "- Commands:\n");
1910 result = String8(buffer);
1911 result.append(" Command Time Wait pParam\n");
1912 for (size_t i = 0; i < mAudioCommands.size(); i++) {
1913 mAudioCommands[i]->dump(buffer, SIZE);
1914 result.append(buffer);
1915 }
1916 result.append(" Last Command\n");
1917 if (mLastCommand != 0) {
1918 mLastCommand->dump(buffer, SIZE);
1919 result.append(buffer);
1920 } else {
1921 result.append(" none\n");
1922 }
1923
1924 write(fd, result.string(), result.size());
1925
1926 dumpReleaseLock(mLock, locked);
1927
1928 return NO_ERROR;
1929 }
1930
volumeCommand(audio_stream_type_t stream,float volume,audio_io_handle_t output,int delayMs)1931 status_t AudioPolicyService::AudioCommandThread::volumeCommand(audio_stream_type_t stream,
1932 float volume,
1933 audio_io_handle_t output,
1934 int delayMs)
1935 {
1936 sp<AudioCommand> command = new AudioCommand();
1937 command->mCommand = SET_VOLUME;
1938 sp<VolumeData> data = new VolumeData();
1939 data->mStream = stream;
1940 data->mVolume = volume;
1941 data->mIO = output;
1942 command->mParam = data;
1943 command->mWaitStatus = true;
1944 ALOGV("AudioCommandThread() adding set volume stream %d, volume %f, output %d",
1945 stream, volume, output);
1946 return sendCommand(command, delayMs);
1947 }
1948
parametersCommand(audio_io_handle_t ioHandle,const char * keyValuePairs,int delayMs)1949 status_t AudioPolicyService::AudioCommandThread::parametersCommand(audio_io_handle_t ioHandle,
1950 const char *keyValuePairs,
1951 int delayMs)
1952 {
1953 sp<AudioCommand> command = new AudioCommand();
1954 command->mCommand = SET_PARAMETERS;
1955 sp<ParametersData> data = new ParametersData();
1956 data->mIO = ioHandle;
1957 data->mKeyValuePairs = String8(keyValuePairs);
1958 command->mParam = data;
1959 command->mWaitStatus = true;
1960 ALOGV("AudioCommandThread() adding set parameter string %s, io %d ,delay %d",
1961 keyValuePairs, ioHandle, delayMs);
1962 return sendCommand(command, delayMs);
1963 }
1964
voiceVolumeCommand(float volume,int delayMs)1965 status_t AudioPolicyService::AudioCommandThread::voiceVolumeCommand(float volume, int delayMs)
1966 {
1967 sp<AudioCommand> command = new AudioCommand();
1968 command->mCommand = SET_VOICE_VOLUME;
1969 sp<VoiceVolumeData> data = new VoiceVolumeData();
1970 data->mVolume = volume;
1971 command->mParam = data;
1972 command->mWaitStatus = true;
1973 ALOGV("AudioCommandThread() adding set voice volume volume %f", volume);
1974 return sendCommand(command, delayMs);
1975 }
1976
setEffectSuspendedCommand(int effectId,audio_session_t sessionId,bool suspended)1977 void AudioPolicyService::AudioCommandThread::setEffectSuspendedCommand(int effectId,
1978 audio_session_t sessionId,
1979 bool suspended)
1980 {
1981 sp<AudioCommand> command = new AudioCommand();
1982 command->mCommand = SET_EFFECT_SUSPENDED;
1983 sp<SetEffectSuspendedData> data = new SetEffectSuspendedData();
1984 data->mEffectId = effectId;
1985 data->mSessionId = sessionId;
1986 data->mSuspended = suspended;
1987 command->mParam = data;
1988 ALOGV("AudioCommandThread() adding set suspended effectId %d sessionId %d suspended %d",
1989 effectId, sessionId, suspended);
1990 sendCommand(command);
1991 }
1992
1993
stopOutputCommand(audio_port_handle_t portId)1994 void AudioPolicyService::AudioCommandThread::stopOutputCommand(audio_port_handle_t portId)
1995 {
1996 sp<AudioCommand> command = new AudioCommand();
1997 command->mCommand = STOP_OUTPUT;
1998 sp<StopOutputData> data = new StopOutputData();
1999 data->mPortId = portId;
2000 command->mParam = data;
2001 ALOGV("AudioCommandThread() adding stop output portId %d", portId);
2002 sendCommand(command);
2003 }
2004
releaseOutputCommand(audio_port_handle_t portId)2005 void AudioPolicyService::AudioCommandThread::releaseOutputCommand(audio_port_handle_t portId)
2006 {
2007 sp<AudioCommand> command = new AudioCommand();
2008 command->mCommand = RELEASE_OUTPUT;
2009 sp<ReleaseOutputData> data = new ReleaseOutputData();
2010 data->mPortId = portId;
2011 command->mParam = data;
2012 ALOGV("AudioCommandThread() adding release output portId %d", portId);
2013 sendCommand(command);
2014 }
2015
createAudioPatchCommand(const struct audio_patch * patch,audio_patch_handle_t * handle,int delayMs)2016 status_t AudioPolicyService::AudioCommandThread::createAudioPatchCommand(
2017 const struct audio_patch *patch,
2018 audio_patch_handle_t *handle,
2019 int delayMs)
2020 {
2021 status_t status = NO_ERROR;
2022
2023 sp<AudioCommand> command = new AudioCommand();
2024 command->mCommand = CREATE_AUDIO_PATCH;
2025 CreateAudioPatchData *data = new CreateAudioPatchData();
2026 data->mPatch = *patch;
2027 data->mHandle = *handle;
2028 command->mParam = data;
2029 command->mWaitStatus = true;
2030 ALOGV("AudioCommandThread() adding create patch delay %d", delayMs);
2031 status = sendCommand(command, delayMs);
2032 if (status == NO_ERROR) {
2033 *handle = data->mHandle;
2034 }
2035 return status;
2036 }
2037
releaseAudioPatchCommand(audio_patch_handle_t handle,int delayMs)2038 status_t AudioPolicyService::AudioCommandThread::releaseAudioPatchCommand(audio_patch_handle_t handle,
2039 int delayMs)
2040 {
2041 sp<AudioCommand> command = new AudioCommand();
2042 command->mCommand = RELEASE_AUDIO_PATCH;
2043 ReleaseAudioPatchData *data = new ReleaseAudioPatchData();
2044 data->mHandle = handle;
2045 command->mParam = data;
2046 command->mWaitStatus = true;
2047 ALOGV("AudioCommandThread() adding release patch delay %d", delayMs);
2048 return sendCommand(command, delayMs);
2049 }
2050
updateAudioPortListCommand()2051 void AudioPolicyService::AudioCommandThread::updateAudioPortListCommand()
2052 {
2053 sp<AudioCommand> command = new AudioCommand();
2054 command->mCommand = UPDATE_AUDIOPORT_LIST;
2055 ALOGV("AudioCommandThread() adding update audio port list");
2056 sendCommand(command);
2057 }
2058
updateUidStatesCommand()2059 void AudioPolicyService::AudioCommandThread::updateUidStatesCommand()
2060 {
2061 sp<AudioCommand> command = new AudioCommand();
2062 command->mCommand = UPDATE_UID_STATES;
2063 ALOGV("AudioCommandThread() adding update UID states");
2064 sendCommand(command);
2065 }
2066
updateAudioPatchListCommand()2067 void AudioPolicyService::AudioCommandThread::updateAudioPatchListCommand()
2068 {
2069 sp<AudioCommand>command = new AudioCommand();
2070 command->mCommand = UPDATE_AUDIOPATCH_LIST;
2071 ALOGV("AudioCommandThread() adding update audio patch list");
2072 sendCommand(command);
2073 }
2074
changeAudioVolumeGroupCommand(volume_group_t group,int flags)2075 void AudioPolicyService::AudioCommandThread::changeAudioVolumeGroupCommand(volume_group_t group,
2076 int flags)
2077 {
2078 sp<AudioCommand>command = new AudioCommand();
2079 command->mCommand = CHANGED_AUDIOVOLUMEGROUP;
2080 AudioVolumeGroupData *data= new AudioVolumeGroupData();
2081 data->mGroup = group;
2082 data->mFlags = flags;
2083 command->mParam = data;
2084 ALOGV("AudioCommandThread() adding audio volume group changed");
2085 sendCommand(command);
2086 }
2087
setAudioPortConfigCommand(const struct audio_port_config * config,int delayMs)2088 status_t AudioPolicyService::AudioCommandThread::setAudioPortConfigCommand(
2089 const struct audio_port_config *config, int delayMs)
2090 {
2091 sp<AudioCommand> command = new AudioCommand();
2092 command->mCommand = SET_AUDIOPORT_CONFIG;
2093 SetAudioPortConfigData *data = new SetAudioPortConfigData();
2094 data->mConfig = *config;
2095 command->mParam = data;
2096 command->mWaitStatus = true;
2097 ALOGV("AudioCommandThread() adding set port config delay %d", delayMs);
2098 return sendCommand(command, delayMs);
2099 }
2100
dynamicPolicyMixStateUpdateCommand(const String8 & regId,int32_t state)2101 void AudioPolicyService::AudioCommandThread::dynamicPolicyMixStateUpdateCommand(
2102 const String8& regId, int32_t state)
2103 {
2104 sp<AudioCommand> command = new AudioCommand();
2105 command->mCommand = DYN_POLICY_MIX_STATE_UPDATE;
2106 DynPolicyMixStateUpdateData *data = new DynPolicyMixStateUpdateData();
2107 data->mRegId = regId;
2108 data->mState = state;
2109 command->mParam = data;
2110 ALOGV("AudioCommandThread() sending dynamic policy mix (id=%s) state update to %d",
2111 regId.string(), state);
2112 sendCommand(command);
2113 }
2114
recordingConfigurationUpdateCommand(int event,const record_client_info_t * clientInfo,const audio_config_base_t * clientConfig,std::vector<effect_descriptor_t> clientEffects,const audio_config_base_t * deviceConfig,std::vector<effect_descriptor_t> effects,audio_patch_handle_t patchHandle,audio_source_t source)2115 void AudioPolicyService::AudioCommandThread::recordingConfigurationUpdateCommand(
2116 int event,
2117 const record_client_info_t *clientInfo,
2118 const audio_config_base_t *clientConfig,
2119 std::vector<effect_descriptor_t> clientEffects,
2120 const audio_config_base_t *deviceConfig,
2121 std::vector<effect_descriptor_t> effects,
2122 audio_patch_handle_t patchHandle,
2123 audio_source_t source)
2124 {
2125 sp<AudioCommand>command = new AudioCommand();
2126 command->mCommand = RECORDING_CONFIGURATION_UPDATE;
2127 RecordingConfigurationUpdateData *data = new RecordingConfigurationUpdateData();
2128 data->mEvent = event;
2129 data->mClientInfo = *clientInfo;
2130 data->mClientConfig = *clientConfig;
2131 data->mClientEffects = clientEffects;
2132 data->mDeviceConfig = *deviceConfig;
2133 data->mEffects = effects;
2134 data->mPatchHandle = patchHandle;
2135 data->mSource = source;
2136 command->mParam = data;
2137 ALOGV("AudioCommandThread() adding recording configuration update event %d, source %d uid %u",
2138 event, clientInfo->source, clientInfo->uid);
2139 sendCommand(command);
2140 }
2141
audioModulesUpdateCommand()2142 void AudioPolicyService::AudioCommandThread::audioModulesUpdateCommand()
2143 {
2144 sp<AudioCommand> command = new AudioCommand();
2145 command->mCommand = AUDIO_MODULES_UPDATE;
2146 sendCommand(command);
2147 }
2148
routingChangedCommand()2149 void AudioPolicyService::AudioCommandThread::routingChangedCommand()
2150 {
2151 sp<AudioCommand>command = new AudioCommand();
2152 command->mCommand = ROUTING_UPDATED;
2153 ALOGV("AudioCommandThread() adding routing update");
2154 sendCommand(command);
2155 }
2156
checkSpatializerCommand()2157 void AudioPolicyService::AudioCommandThread::checkSpatializerCommand()
2158 {
2159 sp<AudioCommand>command = new AudioCommand();
2160 command->mCommand = CHECK_SPATIALIZER;
2161 ALOGV("AudioCommandThread() adding check spatializer");
2162 sendCommand(command);
2163 }
2164
sendCommand(sp<AudioCommand> & command,int delayMs)2165 status_t AudioPolicyService::AudioCommandThread::sendCommand(sp<AudioCommand>& command, int delayMs)
2166 {
2167 {
2168 Mutex::Autolock _l(mLock);
2169 insertCommand_l(command, delayMs);
2170 mWaitWorkCV.signal();
2171 }
2172 Mutex::Autolock _l(command->mLock);
2173 while (command->mWaitStatus) {
2174 nsecs_t timeOutNs = kAudioCommandTimeoutNs + milliseconds(delayMs);
2175 if (command->mCond.waitRelative(command->mLock, timeOutNs) != NO_ERROR) {
2176 command->mStatus = TIMED_OUT;
2177 command->mWaitStatus = false;
2178 }
2179 }
2180 return command->mStatus;
2181 }
2182
2183 // insertCommand_l() must be called with mLock held
insertCommand_l(sp<AudioCommand> & command,int delayMs)2184 void AudioPolicyService::AudioCommandThread::insertCommand_l(sp<AudioCommand>& command, int delayMs)
2185 {
2186 ssize_t i; // not size_t because i will count down to -1
2187 Vector < sp<AudioCommand> > removedCommands;
2188 command->mTime = systemTime() + milliseconds(delayMs);
2189
2190 // acquire wake lock to make sure delayed commands are processed
2191 if (mAudioCommands.isEmpty()) {
2192 acquire_wake_lock(PARTIAL_WAKE_LOCK, mName.string());
2193 }
2194
2195 // check same pending commands with later time stamps and eliminate them
2196 for (i = (ssize_t)mAudioCommands.size()-1; i >= 0; i--) {
2197 sp<AudioCommand> command2 = mAudioCommands[i];
2198 // commands are sorted by increasing time stamp: no need to scan the rest of mAudioCommands
2199 if (command2->mTime <= command->mTime) break;
2200
2201 // create audio patch or release audio patch commands are equivalent
2202 // with regard to filtering
2203 if ((command->mCommand == CREATE_AUDIO_PATCH) ||
2204 (command->mCommand == RELEASE_AUDIO_PATCH)) {
2205 if ((command2->mCommand != CREATE_AUDIO_PATCH) &&
2206 (command2->mCommand != RELEASE_AUDIO_PATCH)) {
2207 continue;
2208 }
2209 } else if (command2->mCommand != command->mCommand) continue;
2210
2211 switch (command->mCommand) {
2212 case SET_PARAMETERS: {
2213 ParametersData *data = (ParametersData *)command->mParam.get();
2214 ParametersData *data2 = (ParametersData *)command2->mParam.get();
2215 if (data->mIO != data2->mIO) break;
2216 ALOGV("Comparing parameter command %s to new command %s",
2217 data2->mKeyValuePairs.string(), data->mKeyValuePairs.string());
2218 AudioParameter param = AudioParameter(data->mKeyValuePairs);
2219 AudioParameter param2 = AudioParameter(data2->mKeyValuePairs);
2220 for (size_t j = 0; j < param.size(); j++) {
2221 String8 key;
2222 String8 value;
2223 param.getAt(j, key, value);
2224 for (size_t k = 0; k < param2.size(); k++) {
2225 String8 key2;
2226 String8 value2;
2227 param2.getAt(k, key2, value2);
2228 if (key2 == key) {
2229 param2.remove(key2);
2230 ALOGV("Filtering out parameter %s", key2.string());
2231 break;
2232 }
2233 }
2234 }
2235 // if all keys have been filtered out, remove the command.
2236 // otherwise, update the key value pairs
2237 if (param2.size() == 0) {
2238 removedCommands.add(command2);
2239 } else {
2240 data2->mKeyValuePairs = param2.toString();
2241 }
2242 command->mTime = command2->mTime;
2243 // force delayMs to non 0 so that code below does not request to wait for
2244 // command status as the command is now delayed
2245 delayMs = 1;
2246 } break;
2247
2248 case SET_VOLUME: {
2249 VolumeData *data = (VolumeData *)command->mParam.get();
2250 VolumeData *data2 = (VolumeData *)command2->mParam.get();
2251 if (data->mIO != data2->mIO) break;
2252 if (data->mStream != data2->mStream) break;
2253 ALOGV("Filtering out volume command on output %d for stream %d",
2254 data->mIO, data->mStream);
2255 removedCommands.add(command2);
2256 command->mTime = command2->mTime;
2257 // force delayMs to non 0 so that code below does not request to wait for
2258 // command status as the command is now delayed
2259 delayMs = 1;
2260 } break;
2261
2262 case SET_VOICE_VOLUME: {
2263 VoiceVolumeData *data = (VoiceVolumeData *)command->mParam.get();
2264 VoiceVolumeData *data2 = (VoiceVolumeData *)command2->mParam.get();
2265 ALOGV("Filtering out voice volume command value %f replaced by %f",
2266 data2->mVolume, data->mVolume);
2267 removedCommands.add(command2);
2268 command->mTime = command2->mTime;
2269 // force delayMs to non 0 so that code below does not request to wait for
2270 // command status as the command is now delayed
2271 delayMs = 1;
2272 } break;
2273
2274 case CREATE_AUDIO_PATCH:
2275 case RELEASE_AUDIO_PATCH: {
2276 audio_patch_handle_t handle;
2277 struct audio_patch patch;
2278 if (command->mCommand == CREATE_AUDIO_PATCH) {
2279 handle = ((CreateAudioPatchData *)command->mParam.get())->mHandle;
2280 patch = ((CreateAudioPatchData *)command->mParam.get())->mPatch;
2281 } else {
2282 handle = ((ReleaseAudioPatchData *)command->mParam.get())->mHandle;
2283 memset(&patch, 0, sizeof(patch));
2284 }
2285 audio_patch_handle_t handle2;
2286 struct audio_patch patch2;
2287 if (command2->mCommand == CREATE_AUDIO_PATCH) {
2288 handle2 = ((CreateAudioPatchData *)command2->mParam.get())->mHandle;
2289 patch2 = ((CreateAudioPatchData *)command2->mParam.get())->mPatch;
2290 } else {
2291 handle2 = ((ReleaseAudioPatchData *)command2->mParam.get())->mHandle;
2292 memset(&patch2, 0, sizeof(patch2));
2293 }
2294 if (handle != handle2) break;
2295 /* Filter CREATE_AUDIO_PATCH commands only when they are issued for
2296 same output. */
2297 if( (command->mCommand == CREATE_AUDIO_PATCH) &&
2298 (command2->mCommand == CREATE_AUDIO_PATCH) ) {
2299 bool isOutputDiff = false;
2300 if (patch.num_sources == patch2.num_sources) {
2301 for (unsigned count = 0; count < patch.num_sources; count++) {
2302 if (patch.sources[count].id != patch2.sources[count].id) {
2303 isOutputDiff = true;
2304 break;
2305 }
2306 }
2307 if (isOutputDiff)
2308 break;
2309 }
2310 }
2311 ALOGV("Filtering out %s audio patch command for handle %d",
2312 (command->mCommand == CREATE_AUDIO_PATCH) ? "create" : "release", handle);
2313 removedCommands.add(command2);
2314 command->mTime = command2->mTime;
2315 // force delayMs to non 0 so that code below does not request to wait for
2316 // command status as the command is now delayed
2317 delayMs = 1;
2318 } break;
2319
2320 case DYN_POLICY_MIX_STATE_UPDATE: {
2321
2322 } break;
2323
2324 case RECORDING_CONFIGURATION_UPDATE: {
2325
2326 } break;
2327
2328 case ROUTING_UPDATED: {
2329
2330 } break;
2331
2332 default:
2333 break;
2334 }
2335 }
2336
2337 // remove filtered commands
2338 for (size_t j = 0; j < removedCommands.size(); j++) {
2339 // removed commands always have time stamps greater than current command
2340 for (size_t k = i + 1; k < mAudioCommands.size(); k++) {
2341 if (mAudioCommands[k].get() == removedCommands[j].get()) {
2342 ALOGV("suppressing command: %d", mAudioCommands[k]->mCommand);
2343 mAudioCommands.removeAt(k);
2344 break;
2345 }
2346 }
2347 }
2348 removedCommands.clear();
2349
2350 // Disable wait for status if delay is not 0.
2351 // Except for create audio patch command because the returned patch handle
2352 // is needed by audio policy manager
2353 if (delayMs != 0 && command->mCommand != CREATE_AUDIO_PATCH) {
2354 command->mWaitStatus = false;
2355 }
2356
2357 // insert command at the right place according to its time stamp
2358 ALOGV("inserting command: %d at index %zd, num commands %zu",
2359 command->mCommand, i+1, mAudioCommands.size());
2360 mAudioCommands.insertAt(command, i + 1);
2361 }
2362
exit()2363 void AudioPolicyService::AudioCommandThread::exit()
2364 {
2365 ALOGV("AudioCommandThread::exit");
2366 {
2367 AutoMutex _l(mLock);
2368 requestExit();
2369 mWaitWorkCV.signal();
2370 }
2371 // Note that we can call it from the thread loop if all other references have been released
2372 // but it will safely return WOULD_BLOCK in this case
2373 requestExitAndWait();
2374 }
2375
dump(char * buffer,size_t size)2376 void AudioPolicyService::AudioCommandThread::AudioCommand::dump(char* buffer, size_t size)
2377 {
2378 snprintf(buffer, size, " %02d %06d.%03d %01u %p\n",
2379 mCommand,
2380 (int)ns2s(mTime),
2381 (int)ns2ms(mTime)%1000,
2382 mWaitStatus,
2383 mParam.get());
2384 }
2385
2386 /******* helpers for the service_ops callbacks defined below *********/
setParameters(audio_io_handle_t ioHandle,const char * keyValuePairs,int delayMs)2387 void AudioPolicyService::setParameters(audio_io_handle_t ioHandle,
2388 const char *keyValuePairs,
2389 int delayMs)
2390 {
2391 mAudioCommandThread->parametersCommand(ioHandle, keyValuePairs,
2392 delayMs);
2393 }
2394
setStreamVolume(audio_stream_type_t stream,float volume,audio_io_handle_t output,int delayMs)2395 int AudioPolicyService::setStreamVolume(audio_stream_type_t stream,
2396 float volume,
2397 audio_io_handle_t output,
2398 int delayMs)
2399 {
2400 return (int)mAudioCommandThread->volumeCommand(stream, volume,
2401 output, delayMs);
2402 }
2403
setVoiceVolume(float volume,int delayMs)2404 int AudioPolicyService::setVoiceVolume(float volume, int delayMs)
2405 {
2406 return (int)mAudioCommandThread->voiceVolumeCommand(volume, delayMs);
2407 }
2408
setEffectSuspended(int effectId,audio_session_t sessionId,bool suspended)2409 void AudioPolicyService::setEffectSuspended(int effectId,
2410 audio_session_t sessionId,
2411 bool suspended)
2412 {
2413 mAudioCommandThread->setEffectSuspendedCommand(effectId, sessionId, suspended);
2414 }
2415
onNewAudioModulesAvailable()2416 Status AudioPolicyService::onNewAudioModulesAvailable()
2417 {
2418 mOutputCommandThread->audioModulesUpdateCommand();
2419 return Status::ok();
2420 }
2421
2422
2423 extern "C" {
2424 audio_module_handle_t aps_load_hw_module(void *service __unused,
2425 const char *name);
2426 audio_io_handle_t aps_open_output(void *service __unused,
2427 audio_devices_t *pDevices,
2428 uint32_t *pSamplingRate,
2429 audio_format_t *pFormat,
2430 audio_channel_mask_t *pChannelMask,
2431 uint32_t *pLatencyMs,
2432 audio_output_flags_t flags);
2433
2434 audio_io_handle_t aps_open_output_on_module(void *service __unused,
2435 audio_module_handle_t module,
2436 audio_devices_t *pDevices,
2437 uint32_t *pSamplingRate,
2438 audio_format_t *pFormat,
2439 audio_channel_mask_t *pChannelMask,
2440 uint32_t *pLatencyMs,
2441 audio_output_flags_t flags,
2442 const audio_offload_info_t *offloadInfo);
2443 audio_io_handle_t aps_open_dup_output(void *service __unused,
2444 audio_io_handle_t output1,
2445 audio_io_handle_t output2);
2446 int aps_close_output(void *service __unused, audio_io_handle_t output);
2447 int aps_suspend_output(void *service __unused, audio_io_handle_t output);
2448 int aps_restore_output(void *service __unused, audio_io_handle_t output);
2449 audio_io_handle_t aps_open_input(void *service __unused,
2450 audio_devices_t *pDevices,
2451 uint32_t *pSamplingRate,
2452 audio_format_t *pFormat,
2453 audio_channel_mask_t *pChannelMask,
2454 audio_in_acoustics_t acoustics __unused);
2455 audio_io_handle_t aps_open_input_on_module(void *service __unused,
2456 audio_module_handle_t module,
2457 audio_devices_t *pDevices,
2458 uint32_t *pSamplingRate,
2459 audio_format_t *pFormat,
2460 audio_channel_mask_t *pChannelMask);
2461 int aps_close_input(void *service __unused, audio_io_handle_t input);
2462 int aps_invalidate_stream(void *service __unused, audio_stream_type_t stream);
2463 int aps_move_effects(void *service __unused, audio_session_t session,
2464 audio_io_handle_t src_output,
2465 audio_io_handle_t dst_output);
2466 char * aps_get_parameters(void *service __unused, audio_io_handle_t io_handle,
2467 const char *keys);
2468 void aps_set_parameters(void *service, audio_io_handle_t io_handle,
2469 const char *kv_pairs, int delay_ms);
2470 int aps_set_stream_volume(void *service, audio_stream_type_t stream,
2471 float volume, audio_io_handle_t output,
2472 int delay_ms);
2473 int aps_set_voice_volume(void *service, float volume, int delay_ms);
2474 };
2475
2476 } // namespace android
2477