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 "APM_AudioPolicyManager"
18 
19 // Need to keep the log statements even in production builds
20 // to enable VERBOSE logging dynamically.
21 // You can enable VERBOSE logging as follows:
22 // adb shell setprop log.tag.APM_AudioPolicyManager V
23 #define LOG_NDEBUG 0
24 
25 //#define VERY_VERBOSE_LOGGING
26 #ifdef VERY_VERBOSE_LOGGING
27 #define ALOGVV ALOGV
28 #else
29 #define ALOGVV(a...) do { } while(0)
30 #endif
31 
32 #define AUDIO_POLICY_XML_CONFIG_FILE_PATH_MAX_LENGTH 128
33 #define AUDIO_POLICY_XML_CONFIG_FILE_NAME "audio_policy_configuration.xml"
34 #define AUDIO_POLICY_A2DP_OFFLOAD_DISABLED_XML_CONFIG_FILE_NAME \
35         "audio_policy_configuration_a2dp_offload_disabled.xml"
36 #define AUDIO_POLICY_BLUETOOTH_LEGACY_HAL_XML_CONFIG_FILE_NAME \
37         "audio_policy_configuration_bluetooth_legacy_hal.xml"
38 
39 #include <algorithm>
40 #include <inttypes.h>
41 #include <math.h>
42 #include <set>
43 #include <unordered_set>
44 #include <vector>
45 #include <cutils/properties.h>
46 #include <utils/Log.h>
47 #include <media/AudioParameter.h>
48 #include <private/android_filesystem_config.h>
49 #include <system/audio.h>
50 #include <system/audio_config.h>
51 #include "AudioPolicyManager.h"
52 #include <Serializer.h>
53 #include "TypeConverter.h"
54 #include <policy.h>
55 
56 namespace android {
57 
58 //FIXME: workaround for truncated touch sounds
59 // to be removed when the problem is handled by system UI
60 #define TOUCH_SOUND_FIXED_DELAY_MS 100
61 
62 // Largest difference in dB on earpiece in call between the voice volume and another
63 // media / notification / system volume.
64 constexpr float IN_CALL_EARPIECE_HEADROOM_DB = 3.f;
65 
66 // Compressed formats for MSD module, ordered from most preferred to least preferred.
67 static const std::vector<audio_format_t> compressedFormatsOrder = {{
68         AUDIO_FORMAT_MAT_2_1, AUDIO_FORMAT_MAT_2_0, AUDIO_FORMAT_E_AC3,
69         AUDIO_FORMAT_AC3, AUDIO_FORMAT_PCM_16_BIT }};
70 // Channel masks for MSD module, 3D > 2D > 1D ordering (most preferred to least preferred).
71 static const std::vector<audio_channel_mask_t> surroundChannelMasksOrder = {{
72         AUDIO_CHANNEL_OUT_3POINT1POINT2, AUDIO_CHANNEL_OUT_3POINT0POINT2,
73         AUDIO_CHANNEL_OUT_2POINT1POINT2, AUDIO_CHANNEL_OUT_2POINT0POINT2,
74         AUDIO_CHANNEL_OUT_5POINT1, AUDIO_CHANNEL_OUT_STEREO }};
75 
76 template <typename T>
operator ==(const SortedVector<T> & left,const SortedVector<T> & right)77 bool operator== (const SortedVector<T> &left, const SortedVector<T> &right)
78 {
79     if (left.size() != right.size()) {
80         return false;
81     }
82     for (size_t index = 0; index < right.size(); index++) {
83         if (left[index] != right[index]) {
84             return false;
85         }
86     }
87     return true;
88 }
89 
90 template <typename T>
operator !=(const SortedVector<T> & left,const SortedVector<T> & right)91 bool operator!= (const SortedVector<T> &left, const SortedVector<T> &right)
92 {
93     return !(left == right);
94 }
95 
96 // ----------------------------------------------------------------------------
97 // AudioPolicyInterface implementation
98 // ----------------------------------------------------------------------------
99 
setDeviceConnectionState(audio_devices_t device,audio_policy_dev_state_t state,const char * device_address,const char * device_name,audio_format_t encodedFormat)100 status_t AudioPolicyManager::setDeviceConnectionState(audio_devices_t device,
101                                                       audio_policy_dev_state_t state,
102                                                       const char *device_address,
103                                                       const char *device_name,
104                                                       audio_format_t encodedFormat)
105 {
106     status_t status = setDeviceConnectionStateInt(device, state, device_address,
107                                                   device_name, encodedFormat);
108     nextAudioPortGeneration();
109     return status;
110 }
111 
broadcastDeviceConnectionState(const sp<DeviceDescriptor> & device,audio_policy_dev_state_t state)112 void AudioPolicyManager::broadcastDeviceConnectionState(const sp<DeviceDescriptor> &device,
113                                                         audio_policy_dev_state_t state)
114 {
115     AudioParameter param(String8(device->address().c_str()));
116     const String8 key(state == AUDIO_POLICY_DEVICE_STATE_AVAILABLE ?
117                 AudioParameter::keyDeviceConnect : AudioParameter::keyDeviceDisconnect);
118     param.addInt(key, device->type());
119     mpClientInterface->setParameters(AUDIO_IO_HANDLE_NONE, param.toString());
120 }
121 
setDeviceConnectionStateInt(audio_devices_t deviceType,audio_policy_dev_state_t state,const char * device_address,const char * device_name,audio_format_t encodedFormat)122 status_t AudioPolicyManager::setDeviceConnectionStateInt(audio_devices_t deviceType,
123                                                          audio_policy_dev_state_t state,
124                                                          const char *device_address,
125                                                          const char *device_name,
126                                                          audio_format_t encodedFormat)
127 {
128     ALOGV("setDeviceConnectionStateInt() device: 0x%X, state %d, address %s name %s format 0x%X",
129             deviceType, state, device_address, device_name, encodedFormat);
130 
131     // connect/disconnect only 1 device at a time
132     if (!audio_is_output_device(deviceType) && !audio_is_input_device(deviceType)) return BAD_VALUE;
133 
134     sp<DeviceDescriptor> device =
135             mHwModules.getDeviceDescriptor(deviceType, device_address, device_name, encodedFormat,
136                                            state == AUDIO_POLICY_DEVICE_STATE_AVAILABLE);
137     return device ? setDeviceConnectionStateInt(device, state) : INVALID_OPERATION;
138 }
139 
setDeviceConnectionStateInt(const sp<DeviceDescriptor> & device,audio_policy_dev_state_t state)140 status_t AudioPolicyManager::setDeviceConnectionStateInt(const sp<DeviceDescriptor> &device,
141                                                          audio_policy_dev_state_t state)
142 {
143     // handle output devices
144     if (audio_is_output_device(device->type())) {
145         SortedVector <audio_io_handle_t> outputs;
146 
147         ssize_t index = mAvailableOutputDevices.indexOf(device);
148 
149         // save a copy of the opened output descriptors before any output is opened or closed
150         // by checkOutputsForDevice(). This will be needed by checkOutputForAllStrategies()
151         mPreviousOutputs = mOutputs;
152         switch (state)
153         {
154         // handle output device connection
155         case AUDIO_POLICY_DEVICE_STATE_AVAILABLE: {
156             if (index >= 0) {
157                 ALOGW("%s() device already connected: %s", __func__, device->toString().c_str());
158                 return INVALID_OPERATION;
159             }
160             ALOGV("%s() connecting device %s format %x",
161                     __func__, device->toString().c_str(), device->getEncodedFormat());
162 
163             // register new device as available
164             if (mAvailableOutputDevices.add(device) < 0) {
165                 return NO_MEMORY;
166             }
167 
168             // Before checking outputs, broadcast connect event to allow HAL to retrieve dynamic
169             // parameters on newly connected devices (instead of opening the outputs...)
170             broadcastDeviceConnectionState(device, state);
171 
172             if (checkOutputsForDevice(device, state, outputs) != NO_ERROR) {
173                 mAvailableOutputDevices.remove(device);
174 
175                 mHwModules.cleanUpForDevice(device);
176 
177                 broadcastDeviceConnectionState(device, AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE);
178                 return INVALID_OPERATION;
179             }
180 
181             // Populate encapsulation information when a output device is connected.
182             device->setEncapsulationInfoFromHal(mpClientInterface);
183 
184             // outputs should never be empty here
185             ALOG_ASSERT(outputs.size() != 0, "setDeviceConnectionState():"
186                     "checkOutputsForDevice() returned no outputs but status OK");
187             ALOGV("%s() checkOutputsForDevice() returned %zu outputs", __func__, outputs.size());
188 
189             } break;
190         // handle output device disconnection
191         case AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE: {
192             if (index < 0) {
193                 ALOGW("%s() device not connected: %s", __func__, device->toString().c_str());
194                 return INVALID_OPERATION;
195             }
196 
197             ALOGV("%s() disconnecting output device %s", __func__, device->toString().c_str());
198 
199             // Send Disconnect to HALs
200             broadcastDeviceConnectionState(device, state);
201 
202             // remove device from available output devices
203             mAvailableOutputDevices.remove(device);
204 
205             mOutputs.clearSessionRoutesForDevice(device);
206 
207             checkOutputsForDevice(device, state, outputs);
208 
209             // Reset active device codec
210             device->setEncodedFormat(AUDIO_FORMAT_DEFAULT);
211 
212             } break;
213 
214         default:
215             ALOGE("%s() invalid state: %x", __func__, state);
216             return BAD_VALUE;
217         }
218 
219         // Propagate device availability to Engine
220         setEngineDeviceConnectionState(device, state);
221 
222         // No need to evaluate playback routing when connecting a remote submix
223         // output device used by a dynamic policy of type recorder as no
224         // playback use case is affected.
225         bool doCheckForDeviceAndOutputChanges = true;
226         if (device->type() == AUDIO_DEVICE_OUT_REMOTE_SUBMIX && device->address() != "0") {
227             for (audio_io_handle_t output : outputs) {
228                 sp<SwAudioOutputDescriptor> desc = mOutputs.valueFor(output);
229                 sp<AudioPolicyMix> policyMix = desc->mPolicyMix.promote();
230                 if (policyMix != nullptr
231                         && policyMix->mMixType == MIX_TYPE_RECORDERS
232                         && device->address() == policyMix->mDeviceAddress.string()) {
233                     doCheckForDeviceAndOutputChanges = false;
234                     break;
235                 }
236             }
237         }
238 
239         auto checkCloseOutputs = [&]() {
240             // outputs must be closed after checkOutputForAllStrategies() is executed
241             if (!outputs.isEmpty()) {
242                 for (audio_io_handle_t output : outputs) {
243                     sp<SwAudioOutputDescriptor> desc = mOutputs.valueFor(output);
244                     // close unused outputs after device disconnection or direct outputs that have
245                     // been opened by checkOutputsForDevice() to query dynamic parameters
246                     if ((state == AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE) ||
247                             (((desc->mFlags & AUDIO_OUTPUT_FLAG_DIRECT) != 0) &&
248                                 (desc->mDirectOpenCount == 0))) {
249                         closeOutput(output);
250                     }
251                 }
252                 // check A2DP again after closing A2DP output to reset mA2dpSuspended if needed
253                 return true;
254             }
255             return false;
256         };
257 
258         if (doCheckForDeviceAndOutputChanges) {
259             checkForDeviceAndOutputChanges(checkCloseOutputs);
260         } else {
261             checkCloseOutputs();
262         }
263 
264         if (mEngine->getPhoneState() == AUDIO_MODE_IN_CALL && hasPrimaryOutput()) {
265             DeviceVector newDevices = getNewOutputDevices(mPrimaryOutput, false /*fromCache*/);
266             updateCallRouting(newDevices);
267         }
268         const DeviceVector msdOutDevices = getMsdAudioOutDevices();
269         for (size_t i = 0; i < mOutputs.size(); i++) {
270             sp<SwAudioOutputDescriptor> desc = mOutputs.valueAt(i);
271             if ((mEngine->getPhoneState() != AUDIO_MODE_IN_CALL) || (desc != mPrimaryOutput)) {
272                 DeviceVector newDevices = getNewOutputDevices(desc, true /*fromCache*/);
273                 // do not force device change on duplicated output because if device is 0, it will
274                 // also force a device 0 for the two outputs it is duplicated to which may override
275                 // a valid device selection on those outputs.
276                 bool force = (msdOutDevices.isEmpty() || msdOutDevices != desc->devices())
277                         && !desc->isDuplicated()
278                         && (!device_distinguishes_on_address(device->type())
279                                 // always force when disconnecting (a non-duplicated device)
280                                 || (state == AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE));
281                 setOutputDevices(desc, newDevices, force, 0);
282             }
283         }
284 
285         if (state == AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE) {
286             cleanUpForDevice(device);
287         }
288 
289         mpClientInterface->onAudioPortListUpdate();
290         return NO_ERROR;
291     }  // end if is output device
292 
293     // handle input devices
294     if (audio_is_input_device(device->type())) {
295         ssize_t index = mAvailableInputDevices.indexOf(device);
296         switch (state)
297         {
298         // handle input device connection
299         case AUDIO_POLICY_DEVICE_STATE_AVAILABLE: {
300             if (index >= 0) {
301                 ALOGW("%s() device already connected: %s", __func__, device->toString().c_str());
302                 return INVALID_OPERATION;
303             }
304 
305             if (mAvailableInputDevices.add(device) < 0) {
306                 return NO_MEMORY;
307             }
308 
309             // Before checking intputs, broadcast connect event to allow HAL to retrieve dynamic
310             // parameters on newly connected devices (instead of opening the inputs...)
311             broadcastDeviceConnectionState(device, state);
312 
313             if (checkInputsForDevice(device, state) != NO_ERROR) {
314                 mAvailableInputDevices.remove(device);
315 
316                 broadcastDeviceConnectionState(device, AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE);
317 
318                 mHwModules.cleanUpForDevice(device);
319 
320                 return INVALID_OPERATION;
321             }
322 
323         } break;
324 
325         // handle input device disconnection
326         case AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE: {
327             if (index < 0) {
328                 ALOGW("%s() device not connected: %s", __func__, device->toString().c_str());
329                 return INVALID_OPERATION;
330             }
331 
332             ALOGV("%s() disconnecting input device %s", __func__, device->toString().c_str());
333 
334             // Set Disconnect to HALs
335             broadcastDeviceConnectionState(device, state);
336 
337             mAvailableInputDevices.remove(device);
338 
339             checkInputsForDevice(device, state);
340         } break;
341 
342         default:
343             ALOGE("%s() invalid state: %x", __func__, state);
344             return BAD_VALUE;
345         }
346 
347         // Propagate device availability to Engine
348         setEngineDeviceConnectionState(device, state);
349 
350         checkCloseInputs();
351         // As the input device list can impact the output device selection, update
352         // getDeviceForStrategy() cache
353         updateDevicesAndOutputs();
354 
355         if (mEngine->getPhoneState() == AUDIO_MODE_IN_CALL && hasPrimaryOutput()) {
356             DeviceVector newDevices = getNewOutputDevices(mPrimaryOutput, false /*fromCache*/);
357             updateCallRouting(newDevices);
358         }
359 
360         if (state == AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE) {
361             cleanUpForDevice(device);
362         }
363 
364         mpClientInterface->onAudioPortListUpdate();
365         return NO_ERROR;
366     } // end if is input device
367 
368     ALOGW("%s() invalid device: %s", __func__, device->toString().c_str());
369     return BAD_VALUE;
370 }
371 
setEngineDeviceConnectionState(const sp<DeviceDescriptor> device,audio_policy_dev_state_t state)372 void AudioPolicyManager::setEngineDeviceConnectionState(const sp<DeviceDescriptor> device,
373                                       audio_policy_dev_state_t state) {
374 
375     // the Engine does not have to know about remote submix devices used by dynamic audio policies
376     if (audio_is_remote_submix_device(device->type()) && device->address() != "0") {
377         return;
378     }
379     mEngine->setDeviceConnectionState(device, state);
380 }
381 
382 
getDeviceConnectionState(audio_devices_t device,const char * device_address)383 audio_policy_dev_state_t AudioPolicyManager::getDeviceConnectionState(audio_devices_t device,
384                                                                       const char *device_address)
385 {
386     sp<DeviceDescriptor> devDesc =
387             mHwModules.getDeviceDescriptor(device, device_address, "", AUDIO_FORMAT_DEFAULT,
388                                            false /* allowToCreate */,
389                                            (strlen(device_address) != 0)/*matchAddress*/);
390 
391     if (devDesc == 0) {
392         ALOGV("getDeviceConnectionState() undeclared device, type %08x, address: %s",
393               device, device_address);
394         return AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE;
395     }
396 
397     DeviceVector *deviceVector;
398 
399     if (audio_is_output_device(device)) {
400         deviceVector = &mAvailableOutputDevices;
401     } else if (audio_is_input_device(device)) {
402         deviceVector = &mAvailableInputDevices;
403     } else {
404         ALOGW("%s() invalid device type %08x", __func__, device);
405         return AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE;
406     }
407 
408     return (deviceVector->getDevice(
409                 device, String8(device_address), AUDIO_FORMAT_DEFAULT) != 0) ?
410             AUDIO_POLICY_DEVICE_STATE_AVAILABLE : AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE;
411 }
412 
handleDeviceConfigChange(audio_devices_t device,const char * device_address,const char * device_name,audio_format_t encodedFormat)413 status_t AudioPolicyManager::handleDeviceConfigChange(audio_devices_t device,
414                                                       const char *device_address,
415                                                       const char *device_name,
416                                                       audio_format_t encodedFormat)
417 {
418     status_t status;
419     String8 reply;
420     AudioParameter param;
421     int isReconfigA2dpSupported = 0;
422 
423     ALOGV("handleDeviceConfigChange(() device: 0x%X, address %s name %s encodedFormat: 0x%X",
424           device, device_address, device_name, encodedFormat);
425 
426     // connect/disconnect only 1 device at a time
427     if (!audio_is_output_device(device) && !audio_is_input_device(device)) return BAD_VALUE;
428 
429     // Check if the device is currently connected
430     DeviceVector deviceList = mAvailableOutputDevices.getDevicesFromType(device);
431     if (deviceList.empty()) {
432         // Nothing to do: device is not connected
433         return NO_ERROR;
434     }
435     sp<DeviceDescriptor> devDesc = deviceList.itemAt(0);
436 
437     // For offloaded A2DP, Hw modules may have the capability to
438     // configure codecs.
439     // Handle two specific cases by sending a set parameter to
440     // configure A2DP codecs. No need to toggle device state.
441     // Case 1: A2DP active device switches from primary to primary
442     // module
443     // Case 2: A2DP device config changes on primary module.
444     if (audio_is_a2dp_out_device(device)) {
445         sp<HwModule> module = mHwModules.getModuleForDeviceType(device, encodedFormat);
446         audio_module_handle_t primaryHandle = mPrimaryOutput->getModuleHandle();
447         if (availablePrimaryOutputDevices().contains(devDesc) &&
448            (module != 0 && module->getHandle() == primaryHandle)) {
449             reply = mpClientInterface->getParameters(
450                         AUDIO_IO_HANDLE_NONE,
451                         String8(AudioParameter::keyReconfigA2dpSupported));
452             AudioParameter repliedParameters(reply);
453             repliedParameters.getInt(
454                     String8(AudioParameter::keyReconfigA2dpSupported), isReconfigA2dpSupported);
455             if (isReconfigA2dpSupported) {
456                 const String8 key(AudioParameter::keyReconfigA2dp);
457                 param.add(key, String8("true"));
458                 mpClientInterface->setParameters(AUDIO_IO_HANDLE_NONE, param.toString());
459                 devDesc->setEncodedFormat(encodedFormat);
460                 return NO_ERROR;
461             }
462         }
463     }
464 
465     // Toggle the device state: UNAVAILABLE -> AVAILABLE
466     // This will force reading again the device configuration
467     status = setDeviceConnectionState(device,
468                                       AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE,
469                                       device_address, device_name,
470                                       devDesc->getEncodedFormat());
471     if (status != NO_ERROR) {
472         ALOGW("handleDeviceConfigChange() error disabling connection state: %d",
473               status);
474         return status;
475     }
476 
477     status = setDeviceConnectionState(device,
478                                       AUDIO_POLICY_DEVICE_STATE_AVAILABLE,
479                                       device_address, device_name, encodedFormat);
480     if (status != NO_ERROR) {
481         ALOGW("handleDeviceConfigChange() error enabling connection state: %d",
482               status);
483         return status;
484     }
485 
486     return NO_ERROR;
487 }
488 
getHwOffloadEncodingFormatsSupportedForA2DP(std::vector<audio_format_t> * formats)489 status_t AudioPolicyManager::getHwOffloadEncodingFormatsSupportedForA2DP(
490                                     std::vector<audio_format_t> *formats)
491 {
492     ALOGV("getHwOffloadEncodingFormatsSupportedForA2DP()");
493     status_t status = NO_ERROR;
494     std::unordered_set<audio_format_t> formatSet;
495     sp<HwModule> primaryModule =
496             mHwModules.getModuleFromName(AUDIO_HARDWARE_MODULE_ID_PRIMARY);
497     if (primaryModule == nullptr) {
498         ALOGE("%s() unable to get primary module", __func__);
499         return NO_INIT;
500     }
501     DeviceVector declaredDevices = primaryModule->getDeclaredDevices().getDevicesFromTypes(
502             getAudioDeviceOutAllA2dpSet());
503     for (const auto& device : declaredDevices) {
504         formatSet.insert(device->encodedFormats().begin(), device->encodedFormats().end());
505     }
506     formats->assign(formatSet.begin(), formatSet.end());
507     return status;
508 }
509 
updateCallRouting(const DeviceVector & rxDevices,uint32_t delayMs)510 uint32_t AudioPolicyManager::updateCallRouting(const DeviceVector &rxDevices, uint32_t delayMs)
511 {
512     bool createTxPatch = false;
513     bool createRxPatch = false;
514     uint32_t muteWaitMs = 0;
515 
516     if(!hasPrimaryOutput() ||
517             mPrimaryOutput->devices().onlyContainsDevicesWithType(AUDIO_DEVICE_OUT_STUB)) {
518         return muteWaitMs;
519     }
520     ALOG_ASSERT(!rxDevices.isEmpty(), "updateCallRouting() no selected output device");
521 
522     audio_attributes_t attr = { .source = AUDIO_SOURCE_VOICE_COMMUNICATION };
523     auto txSourceDevice = mEngine->getInputDeviceForAttributes(attr);
524     ALOG_ASSERT(txSourceDevice != 0, "updateCallRouting() input selected device not available");
525 
526     ALOGV("updateCallRouting device rxDevice %s txDevice %s",
527           rxDevices.itemAt(0)->toString().c_str(), txSourceDevice->toString().c_str());
528 
529     // release existing RX patch if any
530     if (mCallRxPatch != 0) {
531         releaseAudioPatchInternal(mCallRxPatch->getHandle());
532         mCallRxPatch.clear();
533     }
534     // release TX patch if any
535     if (mCallTxPatch != 0) {
536         releaseAudioPatchInternal(mCallTxPatch->getHandle());
537         mCallTxPatch.clear();
538     }
539 
540     auto telephonyRxModule =
541         mHwModules.getModuleForDeviceType(AUDIO_DEVICE_IN_TELEPHONY_RX, AUDIO_FORMAT_DEFAULT);
542     auto telephonyTxModule =
543         mHwModules.getModuleForDeviceType(AUDIO_DEVICE_OUT_TELEPHONY_TX, AUDIO_FORMAT_DEFAULT);
544     // retrieve Rx Source and Tx Sink device descriptors
545     sp<DeviceDescriptor> rxSourceDevice =
546         mAvailableInputDevices.getDevice(AUDIO_DEVICE_IN_TELEPHONY_RX,
547                                          String8(),
548                                          AUDIO_FORMAT_DEFAULT);
549     sp<DeviceDescriptor> txSinkDevice =
550         mAvailableOutputDevices.getDevice(AUDIO_DEVICE_OUT_TELEPHONY_TX,
551                                           String8(),
552                                           AUDIO_FORMAT_DEFAULT);
553 
554     // RX and TX Telephony device are declared by Primary Audio HAL
555     if (isPrimaryModule(telephonyRxModule) && isPrimaryModule(telephonyTxModule) &&
556             (telephonyRxModule->getHalVersionMajor() >= 3)) {
557         if (rxSourceDevice == 0 || txSinkDevice == 0) {
558             // RX / TX Telephony device(s) is(are) not currently available
559             ALOGE("updateCallRouting() no telephony Tx and/or RX device");
560             return muteWaitMs;
561         }
562         // createAudioPatchInternal now supports both HW / SW bridging
563         createRxPatch = true;
564         createTxPatch = true;
565     } else {
566         // If the RX device is on the primary HW module, then use legacy routing method for
567         // voice calls via setOutputDevice() on primary output.
568         // Otherwise, create two audio patches for TX and RX path.
569         createRxPatch = !(availablePrimaryOutputDevices().contains(rxDevices.itemAt(0))) &&
570                 (rxSourceDevice != 0);
571         // If the TX device is also on the primary HW module, setOutputDevice() will take care
572         // of it due to legacy implementation. If not, create a patch.
573         createTxPatch = !(availablePrimaryModuleInputDevices().contains(txSourceDevice)) &&
574                 (txSinkDevice != 0);
575     }
576     // Use legacy routing method for voice calls via setOutputDevice() on primary output.
577     // Otherwise, create two audio patches for TX and RX path.
578     if (!createRxPatch) {
579         muteWaitMs = setOutputDevices(mPrimaryOutput, rxDevices, true, delayMs);
580     } else { // create RX path audio patch
581         mCallRxPatch = createTelephonyPatch(true /*isRx*/, rxDevices.itemAt(0), delayMs);
582 
583         // If the TX device is on the primary HW module but RX device is
584         // on other HW module, SinkMetaData of telephony input should handle it
585         // assuming the device uses audio HAL V5.0 and above
586     }
587     if (createTxPatch) { // create TX path audio patch
588         // terminate active capture if on the same HW module as the call TX source device
589         // FIXME: would be better to refine to only inputs whose profile connects to the
590         // call TX device but this information is not in the audio patch and logic here must be
591         // symmetric to the one in startInput()
592         for (const auto& activeDesc : mInputs.getActiveInputs()) {
593             if (activeDesc->hasSameHwModuleAs(txSourceDevice)) {
594                 closeActiveClients(activeDesc);
595             }
596         }
597         mCallTxPatch = createTelephonyPatch(false /*isRx*/, txSourceDevice, delayMs);
598     }
599 
600     return muteWaitMs;
601 }
602 
createTelephonyPatch(bool isRx,const sp<DeviceDescriptor> & device,uint32_t delayMs)603 sp<AudioPatch> AudioPolicyManager::createTelephonyPatch(
604         bool isRx, const sp<DeviceDescriptor> &device, uint32_t delayMs) {
605     PatchBuilder patchBuilder;
606 
607     if (device == nullptr) {
608         return nullptr;
609     }
610 
611     // @TODO: still ignoring the address, or not dealing platform with multiple telephony devices
612     if (isRx) {
613         patchBuilder.addSink(device).
614                 addSource(mAvailableInputDevices.getDevice(
615                     AUDIO_DEVICE_IN_TELEPHONY_RX, String8(), AUDIO_FORMAT_DEFAULT));
616     } else {
617         patchBuilder.addSource(device).
618                 addSink(mAvailableOutputDevices.getDevice(
619                     AUDIO_DEVICE_OUT_TELEPHONY_TX, String8(), AUDIO_FORMAT_DEFAULT));
620     }
621 
622     audio_patch_handle_t patchHandle = AUDIO_PATCH_HANDLE_NONE;
623     status_t status =
624             createAudioPatchInternal(patchBuilder.patch(), &patchHandle, mUidCached, delayMs);
625     ssize_t index = mAudioPatches.indexOfKey(patchHandle);
626     if (status != NO_ERROR || index < 0) {
627         ALOGW("%s() error %d creating %s audio patch", __func__, status, isRx ? "RX" : "TX");
628         return nullptr;
629     }
630     return mAudioPatches.valueAt(index);
631 }
632 
isDeviceOfModule(const sp<DeviceDescriptor> & devDesc,const char * moduleId) const633 bool AudioPolicyManager::isDeviceOfModule(
634         const sp<DeviceDescriptor>& devDesc, const char *moduleId) const {
635     sp<HwModule> module = mHwModules.getModuleFromName(moduleId);
636     if (module != 0) {
637         return mAvailableOutputDevices.getDevicesFromHwModule(module->getHandle())
638                 .indexOf(devDesc) != NAME_NOT_FOUND
639                 || mAvailableInputDevices.getDevicesFromHwModule(module->getHandle())
640                 .indexOf(devDesc) != NAME_NOT_FOUND;
641     }
642     return false;
643 }
644 
setPhoneState(audio_mode_t state)645 void AudioPolicyManager::setPhoneState(audio_mode_t state)
646 {
647     ALOGV("setPhoneState() state %d", state);
648     // store previous phone state for management of sonification strategy below
649     int oldState = mEngine->getPhoneState();
650 
651     if (mEngine->setPhoneState(state) != NO_ERROR) {
652         ALOGW("setPhoneState() invalid or same state %d", state);
653         return;
654     }
655     /// Opens: can these line be executed after the switch of volume curves???
656     if (isStateInCall(oldState)) {
657         ALOGV("setPhoneState() in call state management: new state is %d", state);
658         // force reevaluating accessibility routing when call stops
659         mpClientInterface->invalidateStream(AUDIO_STREAM_ACCESSIBILITY);
660     }
661 
662     /**
663      * Switching to or from incall state or switching between telephony and VoIP lead to force
664      * routing command.
665      */
666     bool force = ((isStateInCall(oldState) != isStateInCall(state))
667                   || (isStateInCall(state) && (state != oldState)));
668 
669     // check for device and output changes triggered by new phone state
670     checkForDeviceAndOutputChanges();
671 
672     int delayMs = 0;
673     if (isStateInCall(state)) {
674         nsecs_t sysTime = systemTime();
675         auto musicStrategy = streamToStrategy(AUDIO_STREAM_MUSIC);
676         auto sonificationStrategy = streamToStrategy(AUDIO_STREAM_ALARM);
677         for (size_t i = 0; i < mOutputs.size(); i++) {
678             sp<SwAudioOutputDescriptor> desc = mOutputs.valueAt(i);
679             // mute media and sonification strategies and delay device switch by the largest
680             // latency of any output where either strategy is active.
681             // This avoid sending the ring tone or music tail into the earpiece or headset.
682             if ((desc->isStrategyActive(musicStrategy, SONIFICATION_HEADSET_MUSIC_DELAY, sysTime) ||
683                  desc->isStrategyActive(sonificationStrategy, SONIFICATION_HEADSET_MUSIC_DELAY,
684                                         sysTime)) &&
685                     (delayMs < (int)desc->latency()*2)) {
686                 delayMs = desc->latency()*2;
687             }
688             setStrategyMute(musicStrategy, true, desc);
689             setStrategyMute(musicStrategy, false, desc, MUTE_TIME_MS,
690                 mEngine->getOutputDevicesForAttributes(attributes_initializer(AUDIO_USAGE_MEDIA),
691                                                        nullptr, true /*fromCache*/).types());
692             setStrategyMute(sonificationStrategy, true, desc);
693             setStrategyMute(sonificationStrategy, false, desc, MUTE_TIME_MS,
694                 mEngine->getOutputDevicesForAttributes(attributes_initializer(AUDIO_USAGE_ALARM),
695                                                        nullptr, true /*fromCache*/).types());
696         }
697     }
698 
699     if (hasPrimaryOutput()) {
700         // Note that despite the fact that getNewOutputDevices() is called on the primary output,
701         // the device returned is not necessarily reachable via this output
702         DeviceVector rxDevices = getNewOutputDevices(mPrimaryOutput, false /*fromCache*/);
703         // force routing command to audio hardware when ending call
704         // even if no device change is needed
705         if (isStateInCall(oldState) && rxDevices.isEmpty()) {
706             rxDevices = mPrimaryOutput->devices();
707         }
708 
709         if (state == AUDIO_MODE_IN_CALL) {
710             updateCallRouting(rxDevices, delayMs);
711         } else if (oldState == AUDIO_MODE_IN_CALL) {
712             if (mCallRxPatch != 0) {
713                 releaseAudioPatchInternal(mCallRxPatch->getHandle());
714                 mCallRxPatch.clear();
715             }
716             if (mCallTxPatch != 0) {
717                 releaseAudioPatchInternal(mCallTxPatch->getHandle());
718                 mCallTxPatch.clear();
719             }
720             setOutputDevices(mPrimaryOutput, rxDevices, force, 0);
721         } else {
722             setOutputDevices(mPrimaryOutput, rxDevices, force, 0);
723         }
724     }
725 
726     // reevaluate routing on all outputs in case tracks have been started during the call
727     for (size_t i = 0; i < mOutputs.size(); i++) {
728         sp<SwAudioOutputDescriptor> desc = mOutputs.valueAt(i);
729         DeviceVector newDevices = getNewOutputDevices(desc, true /*fromCache*/);
730         if (state != AUDIO_MODE_IN_CALL || desc != mPrimaryOutput) {
731             setOutputDevices(desc, newDevices, !newDevices.isEmpty(), 0 /*delayMs*/);
732         }
733     }
734 
735     if (isStateInCall(state)) {
736         ALOGV("setPhoneState() in call state management: new state is %d", state);
737         // force reevaluating accessibility routing when call starts
738         mpClientInterface->invalidateStream(AUDIO_STREAM_ACCESSIBILITY);
739     }
740 
741     // Flag that ringtone volume must be limited to music volume until we exit MODE_RINGTONE
742     mLimitRingtoneVolume = (state == AUDIO_MODE_RINGTONE &&
743                             isStreamActive(AUDIO_STREAM_MUSIC, SONIFICATION_HEADSET_MUSIC_DELAY));
744 }
745 
getPhoneState()746 audio_mode_t AudioPolicyManager::getPhoneState() {
747     return mEngine->getPhoneState();
748 }
749 
setForceUse(audio_policy_force_use_t usage,audio_policy_forced_cfg_t config)750 void AudioPolicyManager::setForceUse(audio_policy_force_use_t usage,
751                                      audio_policy_forced_cfg_t config)
752 {
753     ALOGV("setForceUse() usage %d, config %d, mPhoneState %d", usage, config, mEngine->getPhoneState());
754     if (config == mEngine->getForceUse(usage)) {
755         return;
756     }
757 
758     if (mEngine->setForceUse(usage, config) != NO_ERROR) {
759         ALOGW("setForceUse() could not set force cfg %d for usage %d", config, usage);
760         return;
761     }
762     bool forceVolumeReeval = (usage == AUDIO_POLICY_FORCE_FOR_COMMUNICATION) ||
763             (usage == AUDIO_POLICY_FORCE_FOR_DOCK) ||
764             (usage == AUDIO_POLICY_FORCE_FOR_SYSTEM);
765 
766     // check for device and output changes triggered by new force usage
767     checkForDeviceAndOutputChanges();
768 
769     // force client reconnection to reevaluate flag AUDIO_FLAG_AUDIBILITY_ENFORCED
770     if (usage == AUDIO_POLICY_FORCE_FOR_SYSTEM) {
771         mpClientInterface->invalidateStream(AUDIO_STREAM_SYSTEM);
772         mpClientInterface->invalidateStream(AUDIO_STREAM_ENFORCED_AUDIBLE);
773     }
774 
775     //FIXME: workaround for truncated touch sounds
776     // to be removed when the problem is handled by system UI
777     uint32_t delayMs = 0;
778     if (usage == AUDIO_POLICY_FORCE_FOR_COMMUNICATION) {
779         delayMs = TOUCH_SOUND_FIXED_DELAY_MS;
780     }
781 
782     updateCallAndOutputRouting(forceVolumeReeval, delayMs);
783 
784     for (const auto& activeDesc : mInputs.getActiveInputs()) {
785         auto newDevice = getNewInputDevice(activeDesc);
786         // Force new input selection if the new device can not be reached via current input
787         if (activeDesc->mProfile->getSupportedDevices().contains(newDevice)) {
788             setInputDevice(activeDesc->mIoHandle, newDevice);
789         } else {
790             closeInput(activeDesc->mIoHandle);
791         }
792     }
793 }
794 
setSystemProperty(const char * property,const char * value)795 void AudioPolicyManager::setSystemProperty(const char* property, const char* value)
796 {
797     ALOGV("setSystemProperty() property %s, value %s", property, value);
798 }
799 
800 // Find an output profile compatible with the parameters passed. When "directOnly" is set, restrict
801 // search to profiles for direct outputs.
getProfileForOutput(const DeviceVector & devices,uint32_t samplingRate,audio_format_t format,audio_channel_mask_t channelMask,audio_output_flags_t flags,bool directOnly)802 sp<IOProfile> AudioPolicyManager::getProfileForOutput(
803                                                    const DeviceVector& devices,
804                                                    uint32_t samplingRate,
805                                                    audio_format_t format,
806                                                    audio_channel_mask_t channelMask,
807                                                    audio_output_flags_t flags,
808                                                    bool directOnly)
809 {
810     if (directOnly) {
811         // only retain flags that will drive the direct output profile selection
812         // if explicitly requested
813         static const uint32_t kRelevantFlags =
814                 (AUDIO_OUTPUT_FLAG_HW_AV_SYNC | AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD |
815                  AUDIO_OUTPUT_FLAG_VOIP_RX | AUDIO_OUTPUT_FLAG_MMAP_NOIRQ);
816         flags =
817             (audio_output_flags_t)((flags & kRelevantFlags) | AUDIO_OUTPUT_FLAG_DIRECT);
818     }
819 
820     sp<IOProfile> profile;
821 
822     for (const auto& hwModule : mHwModules) {
823         for (const auto& curProfile : hwModule->getOutputProfiles()) {
824             if (!curProfile->isCompatibleProfile(devices,
825                     samplingRate, NULL /*updatedSamplingRate*/,
826                     format, NULL /*updatedFormat*/,
827                     channelMask, NULL /*updatedChannelMask*/,
828                     flags)) {
829                 continue;
830             }
831             // reject profiles not corresponding to a device currently available
832             if (!mAvailableOutputDevices.containsAtLeastOne(curProfile->getSupportedDevices())) {
833                 continue;
834             }
835             // reject profiles if connected device does not support codec
836             if (!curProfile->devicesSupportEncodedFormats(devices.types())) {
837                 continue;
838             }
839             if (!directOnly) return curProfile;
840             // when searching for direct outputs, if several profiles are compatible, give priority
841             // to one with offload capability
842             if (profile != 0 && ((curProfile->getFlags() & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) == 0)) {
843                 continue;
844             }
845             profile = curProfile;
846             if ((profile->getFlags() & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) != 0) {
847                 break;
848             }
849         }
850     }
851     return profile;
852 }
853 
getOutput(audio_stream_type_t stream)854 audio_io_handle_t AudioPolicyManager::getOutput(audio_stream_type_t stream)
855 {
856     DeviceVector devices = mEngine->getOutputDevicesForStream(stream, false /*fromCache*/);
857 
858     // Note that related method getOutputForAttr() uses getOutputForDevice() not selectOutput().
859     // We use selectOutput() here since we don't have the desired AudioTrack sample rate,
860     // format, flags, etc. This may result in some discrepancy for functions that utilize
861     // getOutput() solely on audio_stream_type such as AudioSystem::getOutputFrameCount()
862     // and AudioSystem::getOutputSamplingRate().
863 
864     SortedVector<audio_io_handle_t> outputs = getOutputsForDevices(devices, mOutputs);
865     const audio_io_handle_t output = selectOutput(outputs);
866 
867     ALOGV("getOutput() stream %d selected devices %s, output %d", stream,
868           devices.toString().c_str(), output);
869     return output;
870 }
871 
getAudioAttributes(audio_attributes_t * dstAttr,const audio_attributes_t * srcAttr,audio_stream_type_t srcStream)872 status_t AudioPolicyManager::getAudioAttributes(audio_attributes_t *dstAttr,
873                                                 const audio_attributes_t *srcAttr,
874                                                 audio_stream_type_t srcStream)
875 {
876     if (srcAttr != NULL) {
877         if (!isValidAttributes(srcAttr)) {
878             ALOGE("%s invalid attributes: usage=%d content=%d flags=0x%x tags=[%s]",
879                     __func__,
880                     srcAttr->usage, srcAttr->content_type, srcAttr->flags,
881                     srcAttr->tags);
882             return BAD_VALUE;
883         }
884         *dstAttr = *srcAttr;
885     } else {
886         if (srcStream < AUDIO_STREAM_MIN || srcStream >= AUDIO_STREAM_PUBLIC_CNT) {
887             ALOGE("%s:  invalid stream type", __func__);
888             return BAD_VALUE;
889         }
890         *dstAttr = mEngine->getAttributesForStreamType(srcStream);
891     }
892 
893     // Only honor audibility enforced when required. The client will be
894     // forced to reconnect if the forced usage changes.
895     if (mEngine->getForceUse(AUDIO_POLICY_FORCE_FOR_SYSTEM) != AUDIO_POLICY_FORCE_SYSTEM_ENFORCED) {
896         dstAttr->flags &= ~AUDIO_FLAG_AUDIBILITY_ENFORCED;
897     }
898 
899     return NO_ERROR;
900 }
901 
getOutputForAttrInt(audio_attributes_t * resultAttr,audio_io_handle_t * output,audio_session_t session,const audio_attributes_t * attr,audio_stream_type_t * stream,uid_t uid,const audio_config_t * config,audio_output_flags_t * flags,audio_port_handle_t * selectedDeviceId,bool * isRequestedDeviceForExclusiveUse,std::vector<sp<AudioPolicyMix>> * secondaryMixes,output_type_t * outputType)902 status_t AudioPolicyManager::getOutputForAttrInt(
903         audio_attributes_t *resultAttr,
904         audio_io_handle_t *output,
905         audio_session_t session,
906         const audio_attributes_t *attr,
907         audio_stream_type_t *stream,
908         uid_t uid,
909         const audio_config_t *config,
910         audio_output_flags_t *flags,
911         audio_port_handle_t *selectedDeviceId,
912         bool *isRequestedDeviceForExclusiveUse,
913         std::vector<sp<AudioPolicyMix>> *secondaryMixes,
914         output_type_t *outputType)
915 {
916     DeviceVector outputDevices;
917     const audio_port_handle_t requestedPortId = *selectedDeviceId;
918     DeviceVector msdDevices = getMsdAudioOutDevices();
919     const sp<DeviceDescriptor> requestedDevice =
920         mAvailableOutputDevices.getDeviceFromId(requestedPortId);
921 
922     *outputType = API_OUTPUT_INVALID;
923     status_t status = getAudioAttributes(resultAttr, attr, *stream);
924     if (status != NO_ERROR) {
925         return status;
926     }
927     if (auto it = mAllowedCapturePolicies.find(uid); it != end(mAllowedCapturePolicies)) {
928         resultAttr->flags |= it->second;
929     }
930     *stream = mEngine->getStreamTypeForAttributes(*resultAttr);
931 
932     ALOGV("%s() attributes=%s stream=%s session %d selectedDeviceId %d", __func__,
933           toString(*resultAttr).c_str(), toString(*stream).c_str(), session, requestedPortId);
934 
935     // The primary output is the explicit routing (eg. setPreferredDevice) if specified,
936     //       otherwise, fallback to the dynamic policies, if none match, query the engine.
937     // Secondary outputs are always found by dynamic policies as the engine do not support them
938     sp<AudioPolicyMix> primaryMix;
939     status = mPolicyMixes.getOutputForAttr(*resultAttr, uid, *flags, primaryMix, secondaryMixes);
940     if (status != OK) {
941         return status;
942     }
943 
944     // Explicit routing is higher priority then any dynamic policy primary output
945     bool usePrimaryOutputFromPolicyMixes = requestedDevice == nullptr && primaryMix != nullptr;
946 
947     // FIXME: in case of RENDER policy, the output capabilities should be checked
948     if ((usePrimaryOutputFromPolicyMixes
949             || (secondaryMixes != nullptr && !secondaryMixes->empty()))
950         && !audio_is_linear_pcm(config->format)) {
951         ALOGD("%s: rejecting request as dynamic audio policy only support pcm", __func__);
952         return BAD_VALUE;
953     }
954     if (usePrimaryOutputFromPolicyMixes) {
955         sp<DeviceDescriptor> deviceDesc =
956                 mAvailableOutputDevices.getDevice(primaryMix->mDeviceType,
957                                                   primaryMix->mDeviceAddress,
958                                                   AUDIO_FORMAT_DEFAULT);
959         sp<SwAudioOutputDescriptor> policyDesc = primaryMix->getOutput();
960         if (deviceDesc != nullptr
961                 && (policyDesc == nullptr || (policyDesc->mFlags & AUDIO_OUTPUT_FLAG_DIRECT))) {
962             audio_io_handle_t newOutput;
963             status = openDirectOutput(
964                     *stream, session, config,
965                     (audio_output_flags_t)(*flags | AUDIO_OUTPUT_FLAG_DIRECT),
966                     DeviceVector(deviceDesc), &newOutput);
967             if (status != NO_ERROR) {
968                 policyDesc = nullptr;
969             } else {
970                 policyDesc = mOutputs.valueFor(newOutput);
971                 primaryMix->setOutput(policyDesc);
972             }
973         }
974         if (policyDesc != nullptr) {
975             policyDesc->mPolicyMix = primaryMix;
976             *output = policyDesc->mIoHandle;
977             *selectedDeviceId = deviceDesc != 0 ? deviceDesc->getId() : AUDIO_PORT_HANDLE_NONE;
978 
979             ALOGV("getOutputForAttr() returns output %d", *output);
980             if (resultAttr->usage == AUDIO_USAGE_VIRTUAL_SOURCE) {
981                 *outputType = API_OUT_MIX_PLAYBACK;
982             } else {
983                 *outputType = API_OUTPUT_LEGACY;
984             }
985             return NO_ERROR;
986         }
987     }
988     // Virtual sources must always be dynamicaly or explicitly routed
989     if (resultAttr->usage == AUDIO_USAGE_VIRTUAL_SOURCE) {
990         ALOGW("getOutputForAttr() no policy mix found for usage AUDIO_USAGE_VIRTUAL_SOURCE");
991         return BAD_VALUE;
992     }
993     // explicit routing managed by getDeviceForStrategy in APM is now handled by engine
994     // in order to let the choice of the order to future vendor engine
995     outputDevices = mEngine->getOutputDevicesForAttributes(*resultAttr, requestedDevice, false);
996 
997     if ((resultAttr->flags & AUDIO_FLAG_HW_AV_SYNC) != 0) {
998         *flags = (audio_output_flags_t)(*flags | AUDIO_OUTPUT_FLAG_HW_AV_SYNC);
999     }
1000 
1001     // Set incall music only if device was explicitly set, and fallback to the device which is
1002     // chosen by the engine if not.
1003     // FIXME: provide a more generic approach which is not device specific and move this back
1004     // to getOutputForDevice.
1005     // TODO: Remove check of AUDIO_STREAM_MUSIC once migration is completed on the app side.
1006     if (outputDevices.onlyContainsDevicesWithType(AUDIO_DEVICE_OUT_TELEPHONY_TX) &&
1007         (*stream == AUDIO_STREAM_MUSIC  || resultAttr->usage == AUDIO_USAGE_VOICE_COMMUNICATION) &&
1008         audio_is_linear_pcm(config->format) &&
1009         isCallAudioAccessible()) {
1010         if (requestedPortId != AUDIO_PORT_HANDLE_NONE) {
1011             *flags = (audio_output_flags_t)AUDIO_OUTPUT_FLAG_INCALL_MUSIC;
1012             *isRequestedDeviceForExclusiveUse = true;
1013         }
1014     }
1015 
1016     ALOGV("%s() device %s, sampling rate %d, format %#x, channel mask %#x, flags %#x stream %s",
1017           __func__, outputDevices.toString().c_str(), config->sample_rate, config->format,
1018           config->channel_mask, *flags, toString(*stream).c_str());
1019 
1020     *output = AUDIO_IO_HANDLE_NONE;
1021     if (!msdDevices.isEmpty()) {
1022         *output = getOutputForDevices(msdDevices, session, *stream, config, flags);
1023         sp<DeviceDescriptor> device = outputDevices.isEmpty() ? nullptr : outputDevices.itemAt(0);
1024         if (*output != AUDIO_IO_HANDLE_NONE && setMsdPatch(device) == NO_ERROR) {
1025             ALOGV("%s() Using MSD devices %s instead of devices %s",
1026                   __func__, msdDevices.toString().c_str(), outputDevices.toString().c_str());
1027             outputDevices = msdDevices;
1028         } else {
1029             *output = AUDIO_IO_HANDLE_NONE;
1030         }
1031     }
1032     if (*output == AUDIO_IO_HANDLE_NONE) {
1033         *output = getOutputForDevices(outputDevices, session, *stream, config,
1034                 flags, resultAttr->flags & AUDIO_FLAG_MUTE_HAPTIC);
1035     }
1036     if (*output == AUDIO_IO_HANDLE_NONE) {
1037         return INVALID_OPERATION;
1038     }
1039 
1040     *selectedDeviceId = getFirstDeviceId(outputDevices);
1041 
1042     if (outputDevices.onlyContainsDevicesWithType(AUDIO_DEVICE_OUT_TELEPHONY_TX)) {
1043         *outputType = API_OUTPUT_TELEPHONY_TX;
1044     } else {
1045         *outputType = API_OUTPUT_LEGACY;
1046     }
1047 
1048     ALOGV("%s returns output %d selectedDeviceId %d", __func__, *output, *selectedDeviceId);
1049 
1050     return NO_ERROR;
1051 }
1052 
getOutputForAttr(const audio_attributes_t * attr,audio_io_handle_t * output,audio_session_t session,audio_stream_type_t * stream,uid_t uid,const audio_config_t * config,audio_output_flags_t * flags,audio_port_handle_t * selectedDeviceId,audio_port_handle_t * portId,std::vector<audio_io_handle_t> * secondaryOutputs,output_type_t * outputType)1053 status_t AudioPolicyManager::getOutputForAttr(const audio_attributes_t *attr,
1054                                               audio_io_handle_t *output,
1055                                               audio_session_t session,
1056                                               audio_stream_type_t *stream,
1057                                               uid_t uid,
1058                                               const audio_config_t *config,
1059                                               audio_output_flags_t *flags,
1060                                               audio_port_handle_t *selectedDeviceId,
1061                                               audio_port_handle_t *portId,
1062                                               std::vector<audio_io_handle_t> *secondaryOutputs,
1063                                               output_type_t *outputType)
1064 {
1065     // The supplied portId must be AUDIO_PORT_HANDLE_NONE
1066     if (*portId != AUDIO_PORT_HANDLE_NONE) {
1067         return INVALID_OPERATION;
1068     }
1069     const audio_port_handle_t requestedPortId = *selectedDeviceId;
1070     audio_attributes_t resultAttr;
1071     bool isRequestedDeviceForExclusiveUse = false;
1072     std::vector<sp<AudioPolicyMix>> secondaryMixes;
1073     const sp<DeviceDescriptor> requestedDevice =
1074       mAvailableOutputDevices.getDeviceFromId(requestedPortId);
1075 
1076     // Prevent from storing invalid requested device id in clients
1077     const audio_port_handle_t sanitizedRequestedPortId =
1078       requestedDevice != nullptr ? requestedPortId : AUDIO_PORT_HANDLE_NONE;
1079     *selectedDeviceId = sanitizedRequestedPortId;
1080 
1081     status_t status = getOutputForAttrInt(&resultAttr, output, session, attr, stream, uid,
1082             config, flags, selectedDeviceId, &isRequestedDeviceForExclusiveUse,
1083             secondaryOutputs != nullptr ? &secondaryMixes : nullptr, outputType);
1084     if (status != NO_ERROR) {
1085         return status;
1086     }
1087     std::vector<wp<SwAudioOutputDescriptor>> weakSecondaryOutputDescs;
1088     if (secondaryOutputs != nullptr) {
1089         for (auto &secondaryMix : secondaryMixes) {
1090             sp<SwAudioOutputDescriptor> outputDesc = secondaryMix->getOutput();
1091             if (outputDesc != nullptr &&
1092                 outputDesc->mIoHandle != AUDIO_IO_HANDLE_NONE) {
1093                 secondaryOutputs->push_back(outputDesc->mIoHandle);
1094                 weakSecondaryOutputDescs.push_back(outputDesc);
1095             }
1096         }
1097     }
1098 
1099     audio_config_base_t clientConfig = {.sample_rate = config->sample_rate,
1100         .channel_mask = config->channel_mask,
1101         .format = config->format,
1102     };
1103     *portId = PolicyAudioPort::getNextUniqueId();
1104 
1105     sp<SwAudioOutputDescriptor> outputDesc = mOutputs.valueFor(*output);
1106     sp<TrackClientDescriptor> clientDesc =
1107         new TrackClientDescriptor(*portId, uid, session, resultAttr, clientConfig,
1108                                   sanitizedRequestedPortId, *stream,
1109                                   mEngine->getProductStrategyForAttributes(resultAttr),
1110                                   toVolumeSource(resultAttr),
1111                                   *flags, isRequestedDeviceForExclusiveUse,
1112                                   std::move(weakSecondaryOutputDescs),
1113                                   outputDesc->mPolicyMix);
1114     outputDesc->addClient(clientDesc);
1115 
1116     ALOGV("%s() returns output %d requestedPortId %d selectedDeviceId %d for port ID %d", __func__,
1117           *output, requestedPortId, *selectedDeviceId, *portId);
1118 
1119     return NO_ERROR;
1120 }
1121 
openDirectOutput(audio_stream_type_t stream,audio_session_t session,const audio_config_t * config,audio_output_flags_t flags,const DeviceVector & devices,audio_io_handle_t * output)1122 status_t AudioPolicyManager::openDirectOutput(audio_stream_type_t stream,
1123                                               audio_session_t session,
1124                                               const audio_config_t *config,
1125                                               audio_output_flags_t flags,
1126                                               const DeviceVector &devices,
1127                                               audio_io_handle_t *output) {
1128 
1129     *output = AUDIO_IO_HANDLE_NONE;
1130 
1131     // skip direct output selection if the request can obviously be attached to a mixed output
1132     // and not explicitly requested
1133     if (((flags & AUDIO_OUTPUT_FLAG_DIRECT) == 0) &&
1134             audio_is_linear_pcm(config->format) && config->sample_rate <= SAMPLE_RATE_HZ_MAX &&
1135             audio_channel_count_from_out_mask(config->channel_mask) <= 2) {
1136         return NAME_NOT_FOUND;
1137     }
1138 
1139     // Do not allow offloading if one non offloadable effect is enabled or MasterMono is enabled.
1140     // This prevents creating an offloaded track and tearing it down immediately after start
1141     // when audioflinger detects there is an active non offloadable effect.
1142     // FIXME: We should check the audio session here but we do not have it in this context.
1143     // This may prevent offloading in rare situations where effects are left active by apps
1144     // in the background.
1145     sp<IOProfile> profile;
1146     if (((flags & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) == 0) ||
1147             !(mEffects.isNonOffloadableEffectEnabled() || mMasterMono)) {
1148         profile = getProfileForOutput(
1149                 devices, config->sample_rate, config->format, config->channel_mask,
1150                 flags, true /* directOnly */);
1151     }
1152 
1153     if (profile == nullptr) {
1154         return NAME_NOT_FOUND;
1155     }
1156 
1157     // exclusive outputs for MMAP and Offload are enforced by different session ids.
1158     for (size_t i = 0; i < mOutputs.size(); i++) {
1159         sp<SwAudioOutputDescriptor> desc = mOutputs.valueAt(i);
1160         if (!desc->isDuplicated() && (profile == desc->mProfile)) {
1161             // reuse direct output if currently open by the same client
1162             // and configured with same parameters
1163             if ((config->sample_rate == desc->getSamplingRate()) &&
1164                 (config->format == desc->getFormat()) &&
1165                 (config->channel_mask == desc->getChannelMask()) &&
1166                 (session == desc->mDirectClientSession)) {
1167                 desc->mDirectOpenCount++;
1168                 ALOGI("%s reusing direct output %d for session %d", __func__,
1169                     mOutputs.keyAt(i), session);
1170                 *output = mOutputs.keyAt(i);
1171                 return NO_ERROR;
1172             }
1173         }
1174     }
1175 
1176     if (!profile->canOpenNewIo()) {
1177         return NAME_NOT_FOUND;
1178     }
1179 
1180     sp<SwAudioOutputDescriptor> outputDesc =
1181             new SwAudioOutputDescriptor(profile, mpClientInterface);
1182 
1183     String8 address = getFirstDeviceAddress(devices);
1184 
1185     // MSD patch may be using the only output stream that can service this request. Release
1186     // MSD patch to prioritize this request over any active output on MSD.
1187     AudioPatchCollection msdPatches = getMsdPatches();
1188     for (size_t i = 0; i < msdPatches.size(); i++) {
1189         const auto& patch = msdPatches[i];
1190         for (size_t j = 0; j < patch->mPatch.num_sinks; ++j) {
1191             const struct audio_port_config *sink = &patch->mPatch.sinks[j];
1192             if (sink->type == AUDIO_PORT_TYPE_DEVICE &&
1193                     devices.containsDeviceWithType(sink->ext.device.type) &&
1194                     (address.isEmpty() || strncmp(sink->ext.device.address, address.string(),
1195                             AUDIO_DEVICE_MAX_ADDRESS_LEN) == 0)) {
1196                 releaseAudioPatch(patch->getHandle(), mUidCached);
1197                 break;
1198             }
1199         }
1200     }
1201 
1202     status_t status = outputDesc->open(config, devices, stream, flags, output);
1203 
1204     // only accept an output with the requested parameters
1205     if (status != NO_ERROR ||
1206         (config->sample_rate != 0 && config->sample_rate != outputDesc->getSamplingRate()) ||
1207         (config->format != AUDIO_FORMAT_DEFAULT && config->format != outputDesc->getFormat()) ||
1208         (config->channel_mask != 0 && config->channel_mask != outputDesc->getChannelMask())) {
1209         ALOGV("%s failed opening direct output: output %d sample rate %d %d,"
1210                 "format %d %d, channel mask %04x %04x", __func__, *output, config->sample_rate,
1211                 outputDesc->getSamplingRate(), config->format, outputDesc->getFormat(),
1212                 config->channel_mask, outputDesc->getChannelMask());
1213         if (*output != AUDIO_IO_HANDLE_NONE) {
1214             outputDesc->close();
1215         }
1216         // fall back to mixer output if possible when the direct output could not be open
1217         if (audio_is_linear_pcm(config->format) &&
1218                 config->sample_rate  <= SAMPLE_RATE_HZ_MAX) {
1219             return NAME_NOT_FOUND;
1220         }
1221         *output = AUDIO_IO_HANDLE_NONE;
1222         return BAD_VALUE;
1223     }
1224     outputDesc->mDirectOpenCount = 1;
1225     outputDesc->mDirectClientSession = session;
1226 
1227     addOutput(*output, outputDesc);
1228     mPreviousOutputs = mOutputs;
1229     ALOGV("%s returns new direct output %d", __func__, *output);
1230     mpClientInterface->onAudioPortListUpdate();
1231     return NO_ERROR;
1232 }
1233 
getOutputForDevices(const DeviceVector & devices,audio_session_t session,audio_stream_type_t stream,const audio_config_t * config,audio_output_flags_t * flags,bool forceMutingHaptic)1234 audio_io_handle_t AudioPolicyManager::getOutputForDevices(
1235         const DeviceVector &devices,
1236         audio_session_t session,
1237         audio_stream_type_t stream,
1238         const audio_config_t *config,
1239         audio_output_flags_t *flags,
1240         bool forceMutingHaptic)
1241 {
1242     audio_io_handle_t output = AUDIO_IO_HANDLE_NONE;
1243 
1244     // Discard haptic channel mask when forcing muting haptic channels.
1245     audio_channel_mask_t channelMask = forceMutingHaptic
1246             ? (config->channel_mask & ~AUDIO_CHANNEL_HAPTIC_ALL) : config->channel_mask;
1247 
1248     // open a direct output if required by specified parameters
1249     //force direct flag if offload flag is set: offloading implies a direct output stream
1250     // and all common behaviors are driven by checking only the direct flag
1251     // this should normally be set appropriately in the policy configuration file
1252     if ((*flags & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) != 0) {
1253         *flags = (audio_output_flags_t)(*flags | AUDIO_OUTPUT_FLAG_DIRECT);
1254     }
1255     if ((*flags & AUDIO_OUTPUT_FLAG_HW_AV_SYNC) != 0) {
1256         *flags = (audio_output_flags_t)(*flags | AUDIO_OUTPUT_FLAG_DIRECT);
1257     }
1258     // only allow deep buffering for music stream type
1259     if (stream != AUDIO_STREAM_MUSIC) {
1260         *flags = (audio_output_flags_t)(*flags &~AUDIO_OUTPUT_FLAG_DEEP_BUFFER);
1261     } else if (/* stream == AUDIO_STREAM_MUSIC && */
1262             *flags == AUDIO_OUTPUT_FLAG_NONE &&
1263             property_get_bool("audio.deep_buffer.media", false /* default_value */)) {
1264         // use DEEP_BUFFER as default output for music stream type
1265         *flags = (audio_output_flags_t)AUDIO_OUTPUT_FLAG_DEEP_BUFFER;
1266     }
1267     if (stream == AUDIO_STREAM_TTS) {
1268         *flags = AUDIO_OUTPUT_FLAG_TTS;
1269     } else if (stream == AUDIO_STREAM_VOICE_CALL &&
1270                audio_is_linear_pcm(config->format) &&
1271                (*flags & AUDIO_OUTPUT_FLAG_INCALL_MUSIC) == 0) {
1272         *flags = (audio_output_flags_t)(AUDIO_OUTPUT_FLAG_VOIP_RX |
1273                                        AUDIO_OUTPUT_FLAG_DIRECT);
1274         ALOGV("Set VoIP and Direct output flags for PCM format");
1275     }
1276 
1277     audio_config_t directConfig = *config;
1278     directConfig.channel_mask = channelMask;
1279     status_t status = openDirectOutput(stream, session, &directConfig, *flags, devices, &output);
1280     if (status != NAME_NOT_FOUND) {
1281         return output;
1282     }
1283 
1284     // A request for HW A/V sync cannot fallback to a mixed output because time
1285     // stamps are embedded in audio data
1286     if ((*flags & (AUDIO_OUTPUT_FLAG_HW_AV_SYNC | AUDIO_OUTPUT_FLAG_MMAP_NOIRQ)) != 0) {
1287         return AUDIO_IO_HANDLE_NONE;
1288     }
1289 
1290     // ignoring channel mask due to downmix capability in mixer
1291 
1292     // open a non direct output
1293 
1294     // for non direct outputs, only PCM is supported
1295     if (audio_is_linear_pcm(config->format)) {
1296         // get which output is suitable for the specified stream. The actual
1297         // routing change will happen when startOutput() will be called
1298         SortedVector<audio_io_handle_t> outputs = getOutputsForDevices(devices, mOutputs);
1299 
1300         // at this stage we should ignore the DIRECT flag as no direct output could be found earlier
1301         *flags = (audio_output_flags_t)(*flags & ~AUDIO_OUTPUT_FLAG_DIRECT);
1302         output = selectOutput(outputs, *flags, config->format, channelMask, config->sample_rate);
1303     }
1304     ALOGW_IF((output == 0), "getOutputForDevices() could not find output for stream %d, "
1305             "sampling rate %d, format %#x, channels %#x, flags %#x",
1306             stream, config->sample_rate, config->format, channelMask, *flags);
1307 
1308     return output;
1309 }
1310 
getMsdAudioInDevice() const1311 sp<DeviceDescriptor> AudioPolicyManager::getMsdAudioInDevice() const {
1312     auto msdInDevices = mHwModules.getAvailableDevicesFromModuleName(AUDIO_HARDWARE_MODULE_ID_MSD,
1313                                                                      mAvailableInputDevices);
1314     return msdInDevices.isEmpty()? nullptr : msdInDevices.itemAt(0);
1315 }
1316 
getMsdAudioOutDevices() const1317 DeviceVector AudioPolicyManager::getMsdAudioOutDevices() const {
1318     return mHwModules.getAvailableDevicesFromModuleName(AUDIO_HARDWARE_MODULE_ID_MSD,
1319                                                         mAvailableOutputDevices);
1320 }
1321 
getMsdPatches() const1322 const AudioPatchCollection AudioPolicyManager::getMsdPatches() const {
1323     AudioPatchCollection msdPatches;
1324     sp<HwModule> msdModule = mHwModules.getModuleFromName(AUDIO_HARDWARE_MODULE_ID_MSD);
1325     if (msdModule != 0) {
1326         for (size_t i = 0; i < mAudioPatches.size(); ++i) {
1327             sp<AudioPatch> patch = mAudioPatches.valueAt(i);
1328             for (size_t j = 0; j < patch->mPatch.num_sources; ++j) {
1329                 const struct audio_port_config *source = &patch->mPatch.sources[j];
1330                 if (source->type == AUDIO_PORT_TYPE_DEVICE &&
1331                         source->ext.device.hw_module == msdModule->getHandle()) {
1332                     msdPatches.addAudioPatch(patch->getHandle(), patch);
1333                 }
1334             }
1335         }
1336     }
1337     return msdPatches;
1338 }
1339 
getBestMsdAudioProfileFor(const sp<DeviceDescriptor> & outputDevice,bool hwAvSync,audio_port_config * sourceConfig,audio_port_config * sinkConfig) const1340 status_t AudioPolicyManager::getBestMsdAudioProfileFor(const sp<DeviceDescriptor> &outputDevice,
1341         bool hwAvSync, audio_port_config *sourceConfig, audio_port_config *sinkConfig) const
1342 {
1343     sp<HwModule> msdModule = mHwModules.getModuleFromName(AUDIO_HARDWARE_MODULE_ID_MSD);
1344     if (msdModule == nullptr) {
1345         ALOGE("%s() unable to get MSD module", __func__);
1346         return NO_INIT;
1347     }
1348     sp<HwModule> deviceModule = mHwModules.getModuleForDevice(outputDevice, AUDIO_FORMAT_DEFAULT);
1349     if (deviceModule == nullptr) {
1350         ALOGE("%s() unable to get module for %s", __func__, outputDevice->toString().c_str());
1351         return NO_INIT;
1352     }
1353     const InputProfileCollection &inputProfiles = msdModule->getInputProfiles();
1354     if (inputProfiles.isEmpty()) {
1355         ALOGE("%s() no input profiles for MSD module", __func__);
1356         return NO_INIT;
1357     }
1358     const OutputProfileCollection &outputProfiles = deviceModule->getOutputProfiles();
1359     if (outputProfiles.isEmpty()) {
1360         ALOGE("%s() no output profiles for device %s", __func__, outputDevice->toString().c_str());
1361         return NO_INIT;
1362     }
1363     AudioProfileVector msdProfiles;
1364     // Each IOProfile represents a MixPort from audio_policy_configuration.xml
1365     for (const auto &inProfile : inputProfiles) {
1366         if (hwAvSync == ((inProfile->getFlags() & AUDIO_INPUT_FLAG_HW_AV_SYNC) != 0)) {
1367             appendAudioProfiles(msdProfiles, inProfile->getAudioProfiles());
1368         }
1369     }
1370     AudioProfileVector deviceProfiles;
1371     for (const auto &outProfile : outputProfiles) {
1372         if (hwAvSync == ((outProfile->getFlags() & AUDIO_OUTPUT_FLAG_HW_AV_SYNC) != 0)) {
1373             appendAudioProfiles(deviceProfiles, outProfile->getAudioProfiles());
1374         }
1375     }
1376     struct audio_config_base bestSinkConfig;
1377     status_t result = findBestMatchingOutputConfig(msdProfiles, deviceProfiles,
1378             compressedFormatsOrder, surroundChannelMasksOrder, true /*preferHigherSamplingRates*/,
1379             bestSinkConfig);
1380     if (result != NO_ERROR) {
1381         ALOGD("%s() no matching profiles found for device: %s, hwAvSync: %d",
1382                 __func__, outputDevice->toString().c_str(), hwAvSync);
1383         return result;
1384     }
1385     sinkConfig->sample_rate = bestSinkConfig.sample_rate;
1386     sinkConfig->channel_mask = bestSinkConfig.channel_mask;
1387     sinkConfig->format = bestSinkConfig.format;
1388     // For encoded streams force direct flag to prevent downstream mixing.
1389     sinkConfig->flags.output = static_cast<audio_output_flags_t>(
1390             sinkConfig->flags.output | AUDIO_OUTPUT_FLAG_DIRECT);
1391     if (audio_is_iec61937_compatible(sinkConfig->format)) {
1392         // For formats compatible with IEC61937 encapsulation, assume that
1393         // the record thread input from MSD is IEC61937 framed (for proportional buffer sizing).
1394         // Add the AUDIO_OUTPUT_FLAG_IEC958_NONAUDIO flag so downstream HAL can distinguish between
1395         // raw and IEC61937 framed streams.
1396         sinkConfig->flags.output = static_cast<audio_output_flags_t>(
1397                 sinkConfig->flags.output | AUDIO_OUTPUT_FLAG_IEC958_NONAUDIO);
1398     }
1399     sourceConfig->sample_rate = bestSinkConfig.sample_rate;
1400     // Specify exact channel mask to prevent guessing by bit count in PatchPanel.
1401     sourceConfig->channel_mask = audio_channel_mask_out_to_in(bestSinkConfig.channel_mask);
1402     sourceConfig->format = bestSinkConfig.format;
1403     // Copy input stream directly without any processing (e.g. resampling).
1404     sourceConfig->flags.input = static_cast<audio_input_flags_t>(
1405             sourceConfig->flags.input | AUDIO_INPUT_FLAG_DIRECT);
1406     if (hwAvSync) {
1407         sinkConfig->flags.output = static_cast<audio_output_flags_t>(
1408                 sinkConfig->flags.output | AUDIO_OUTPUT_FLAG_HW_AV_SYNC);
1409         sourceConfig->flags.input = static_cast<audio_input_flags_t>(
1410                 sourceConfig->flags.input | AUDIO_INPUT_FLAG_HW_AV_SYNC);
1411     }
1412     const unsigned int config_mask = AUDIO_PORT_CONFIG_SAMPLE_RATE |
1413             AUDIO_PORT_CONFIG_CHANNEL_MASK | AUDIO_PORT_CONFIG_FORMAT | AUDIO_PORT_CONFIG_FLAGS;
1414     sinkConfig->config_mask |= config_mask;
1415     sourceConfig->config_mask |= config_mask;
1416     return NO_ERROR;
1417 }
1418 
buildMsdPatch(const sp<DeviceDescriptor> & outputDevice) const1419 PatchBuilder AudioPolicyManager::buildMsdPatch(const sp<DeviceDescriptor> &outputDevice) const
1420 {
1421     PatchBuilder patchBuilder;
1422     patchBuilder.addSource(getMsdAudioInDevice()).addSink(outputDevice);
1423     audio_port_config sourceConfig = patchBuilder.patch()->sources[0];
1424     audio_port_config sinkConfig = patchBuilder.patch()->sinks[0];
1425     // TODO: Figure out whether MSD module has HW_AV_SYNC flag set in the AP config file.
1426     // For now, we just forcefully try with HwAvSync first.
1427     status_t res = getBestMsdAudioProfileFor(outputDevice, true /*hwAvSync*/,
1428             &sourceConfig, &sinkConfig) == NO_ERROR ? NO_ERROR :
1429             getBestMsdAudioProfileFor(
1430                     outputDevice, false /*hwAvSync*/, &sourceConfig, &sinkConfig);
1431     if (res == NO_ERROR) {
1432         // Found a matching profile for encoded audio. Re-create PatchBuilder with this config.
1433         return (PatchBuilder()).addSource(sourceConfig).addSink(sinkConfig);
1434     }
1435     ALOGV("%s() no matching profile found. Fall through to default PCM patch"
1436             " supporting PCM format conversion.", __func__);
1437     return patchBuilder;
1438 }
1439 
setMsdPatch(const sp<DeviceDescriptor> & outputDevice)1440 status_t AudioPolicyManager::setMsdPatch(const sp<DeviceDescriptor> &outputDevice) {
1441     sp<DeviceDescriptor> device = outputDevice;
1442     if (device == nullptr) {
1443         // Use media strategy for unspecified output device. This should only
1444         // occur on checkForDeviceAndOutputChanges(). Device connection events may
1445         // therefore invalidate explicit routing requests.
1446         DeviceVector devices = mEngine->getOutputDevicesForAttributes(
1447                     attributes_initializer(AUDIO_USAGE_MEDIA), nullptr, false /*fromCache*/);
1448         LOG_ALWAYS_FATAL_IF(devices.isEmpty(), "no outpudevice to set Msd Patch");
1449         device = devices.itemAt(0);
1450     }
1451     ALOGV("%s() for device %s", __func__, device->toString().c_str());
1452     PatchBuilder patchBuilder = buildMsdPatch(device);
1453     const struct audio_patch* patch = patchBuilder.patch();
1454     const AudioPatchCollection msdPatches = getMsdPatches();
1455     if (!msdPatches.isEmpty()) {
1456         LOG_ALWAYS_FATAL_IF(msdPatches.size() > 1,
1457                 "The current MSD prototype only supports one output patch");
1458         sp<AudioPatch> currentPatch = msdPatches.valueAt(0);
1459         if (audio_patches_are_equal(&currentPatch->mPatch, patch)) {
1460             return NO_ERROR;
1461         }
1462         releaseAudioPatch(currentPatch->getHandle(), mUidCached);
1463     }
1464     status_t status = installPatch(__func__, -1 /*index*/, nullptr /*patchHandle*/,
1465             patch, 0 /*delayMs*/, mUidCached, nullptr /*patchDescPtr*/);
1466     ALOGE_IF(status != NO_ERROR, "%s() error %d creating MSD audio patch", __func__, status);
1467     ALOGI_IF(status == NO_ERROR, "%s() Patch created from MSD_IN to "
1468            "device:%s (format:%#x channels:%#x samplerate:%d)", __func__,
1469              device->toString().c_str(), patch->sources[0].format,
1470              patch->sources[0].channel_mask, patch->sources[0].sample_rate);
1471     return status;
1472 }
1473 
selectOutput(const SortedVector<audio_io_handle_t> & outputs,audio_output_flags_t flags,audio_format_t format,audio_channel_mask_t channelMask,uint32_t samplingRate)1474 audio_io_handle_t AudioPolicyManager::selectOutput(const SortedVector<audio_io_handle_t>& outputs,
1475                                                        audio_output_flags_t flags,
1476                                                        audio_format_t format,
1477                                                        audio_channel_mask_t channelMask,
1478                                                        uint32_t samplingRate)
1479 {
1480     LOG_ALWAYS_FATAL_IF(!(format == AUDIO_FORMAT_INVALID || audio_is_linear_pcm(format)),
1481         "%s called with format %#x", __func__, format);
1482 
1483     // Flags disqualifying an output: the match must happen before calling selectOutput()
1484     static const audio_output_flags_t kExcludedFlags = (audio_output_flags_t)
1485         (AUDIO_OUTPUT_FLAG_HW_AV_SYNC | AUDIO_OUTPUT_FLAG_MMAP_NOIRQ | AUDIO_OUTPUT_FLAG_DIRECT);
1486 
1487     // Flags expressing a functional request: must be honored in priority over
1488     // other criteria
1489     static const audio_output_flags_t kFunctionalFlags = (audio_output_flags_t)
1490         (AUDIO_OUTPUT_FLAG_VOIP_RX | AUDIO_OUTPUT_FLAG_INCALL_MUSIC |
1491             AUDIO_OUTPUT_FLAG_TTS | AUDIO_OUTPUT_FLAG_DIRECT_PCM);
1492     // Flags expressing a performance request: have lower priority than serving
1493     // requested sampling rate or channel mask
1494     static const audio_output_flags_t kPerformanceFlags = (audio_output_flags_t)
1495         (AUDIO_OUTPUT_FLAG_FAST | AUDIO_OUTPUT_FLAG_DEEP_BUFFER |
1496             AUDIO_OUTPUT_FLAG_RAW | AUDIO_OUTPUT_FLAG_SYNC);
1497 
1498     const audio_output_flags_t functionalFlags =
1499         (audio_output_flags_t)(flags & kFunctionalFlags);
1500     const audio_output_flags_t performanceFlags =
1501         (audio_output_flags_t)(flags & kPerformanceFlags);
1502 
1503     audio_io_handle_t bestOutput = (outputs.size() == 0) ? AUDIO_IO_HANDLE_NONE : outputs[0];
1504 
1505     // select one output among several that provide a path to a particular device or set of
1506     // devices (the list was previously build by getOutputsForDevices()).
1507     // The priority is as follows:
1508     // 1: the output supporting haptic playback when requesting haptic playback
1509     // 2: the output with the highest number of requested functional flags
1510     // 3: the output supporting the exact channel mask
1511     // 4: the output with a higher channel count than requested
1512     // 5: the output with a higher sampling rate than requested
1513     // 6: the output with the highest number of requested performance flags
1514     // 7: the output with the bit depth the closest to the requested one
1515     // 8: the primary output
1516     // 9: the first output in the list
1517 
1518     // matching criteria values in priority order for best matching output so far
1519     std::vector<uint32_t> bestMatchCriteria(8, 0);
1520 
1521     const uint32_t channelCount = audio_channel_count_from_out_mask(channelMask);
1522     const uint32_t hapticChannelCount = audio_channel_count_from_out_mask(
1523         channelMask & AUDIO_CHANNEL_HAPTIC_ALL);
1524 
1525     for (audio_io_handle_t output : outputs) {
1526         sp<SwAudioOutputDescriptor> outputDesc = mOutputs.valueFor(output);
1527         // matching criteria values in priority order for current output
1528         std::vector<uint32_t> currentMatchCriteria(8, 0);
1529 
1530         if (outputDesc->isDuplicated()) {
1531             continue;
1532         }
1533         if ((kExcludedFlags & outputDesc->mFlags) != 0) {
1534             continue;
1535         }
1536 
1537         // If haptic channel is specified, use the haptic output if present.
1538         // When using haptic output, same audio format and sample rate are required.
1539         const uint32_t outputHapticChannelCount = audio_channel_count_from_out_mask(
1540             outputDesc->getChannelMask() & AUDIO_CHANNEL_HAPTIC_ALL);
1541         if ((hapticChannelCount == 0) != (outputHapticChannelCount == 0)) {
1542             continue;
1543         }
1544         if (outputHapticChannelCount >= hapticChannelCount
1545             && format == outputDesc->getFormat()
1546             && samplingRate == outputDesc->getSamplingRate()) {
1547                 currentMatchCriteria[0] = outputHapticChannelCount;
1548         }
1549 
1550         // functional flags match
1551         currentMatchCriteria[1] = popcount(outputDesc->mFlags & functionalFlags);
1552 
1553         // channel mask and channel count match
1554         uint32_t outputChannelCount = audio_channel_count_from_out_mask(
1555                 outputDesc->getChannelMask());
1556         if (channelMask != AUDIO_CHANNEL_NONE && channelCount > 2 &&
1557             channelCount <= outputChannelCount) {
1558             if ((audio_channel_mask_get_representation(channelMask) ==
1559                     audio_channel_mask_get_representation(outputDesc->getChannelMask())) &&
1560                     ((channelMask & outputDesc->getChannelMask()) == channelMask)) {
1561                 currentMatchCriteria[2] = outputChannelCount;
1562             }
1563             currentMatchCriteria[3] = outputChannelCount;
1564         }
1565 
1566         // sampling rate match
1567         if (samplingRate > SAMPLE_RATE_HZ_DEFAULT &&
1568                 samplingRate <= outputDesc->getSamplingRate()) {
1569             currentMatchCriteria[4] = outputDesc->getSamplingRate();
1570         }
1571 
1572         // performance flags match
1573         currentMatchCriteria[5] = popcount(outputDesc->mFlags & performanceFlags);
1574 
1575         // format match
1576         if (format != AUDIO_FORMAT_INVALID) {
1577             currentMatchCriteria[6] =
1578                 PolicyAudioPort::kFormatDistanceMax -
1579                 PolicyAudioPort::formatDistance(format, outputDesc->getFormat());
1580         }
1581 
1582         // primary output match
1583         currentMatchCriteria[7] = outputDesc->mFlags & AUDIO_OUTPUT_FLAG_PRIMARY;
1584 
1585         // compare match criteria by priority then value
1586         if (std::lexicographical_compare(bestMatchCriteria.begin(), bestMatchCriteria.end(),
1587                 currentMatchCriteria.begin(), currentMatchCriteria.end())) {
1588             bestMatchCriteria = currentMatchCriteria;
1589             bestOutput = output;
1590 
1591             std::stringstream result;
1592             std::copy(bestMatchCriteria.begin(), bestMatchCriteria.end(),
1593                 std::ostream_iterator<int>(result, " "));
1594             ALOGV("%s new bestOutput %d criteria %s",
1595                 __func__, bestOutput, result.str().c_str());
1596         }
1597     }
1598 
1599     return bestOutput;
1600 }
1601 
startOutput(audio_port_handle_t portId)1602 status_t AudioPolicyManager::startOutput(audio_port_handle_t portId)
1603 {
1604     ALOGV("%s portId %d", __FUNCTION__, portId);
1605 
1606     sp<SwAudioOutputDescriptor> outputDesc = mOutputs.getOutputForClient(portId);
1607     if (outputDesc == 0) {
1608         ALOGW("startOutput() no output for client %d", portId);
1609         return BAD_VALUE;
1610     }
1611     sp<TrackClientDescriptor> client = outputDesc->getClient(portId);
1612 
1613     ALOGV("startOutput() output %d, stream %d, session %d",
1614           outputDesc->mIoHandle, client->stream(), client->session());
1615 
1616     status_t status = outputDesc->start();
1617     if (status != NO_ERROR) {
1618         return status;
1619     }
1620 
1621     uint32_t delayMs;
1622     status = startSource(outputDesc, client, &delayMs);
1623 
1624     if (status != NO_ERROR) {
1625         outputDesc->stop();
1626         return status;
1627     }
1628     if (delayMs != 0) {
1629         usleep(delayMs * 1000);
1630     }
1631 
1632     return status;
1633 }
1634 
startSource(const sp<SwAudioOutputDescriptor> & outputDesc,const sp<TrackClientDescriptor> & client,uint32_t * delayMs)1635 status_t AudioPolicyManager::startSource(const sp<SwAudioOutputDescriptor>& outputDesc,
1636                                          const sp<TrackClientDescriptor>& client,
1637                                          uint32_t *delayMs)
1638 {
1639     // cannot start playback of STREAM_TTS if any other output is being used
1640     uint32_t beaconMuteLatency = 0;
1641 
1642     *delayMs = 0;
1643     audio_stream_type_t stream = client->stream();
1644     auto clientVolSrc = client->volumeSource();
1645     auto clientStrategy = client->strategy();
1646     auto clientAttr = client->attributes();
1647     if (stream == AUDIO_STREAM_TTS) {
1648         ALOGV("\t found BEACON stream");
1649         if (!mTtsOutputAvailable && mOutputs.isAnyOutputActive(
1650                                     toVolumeSource(AUDIO_STREAM_TTS) /*sourceToIgnore*/)) {
1651             return INVALID_OPERATION;
1652         } else {
1653             beaconMuteLatency = handleEventForBeacon(STARTING_BEACON);
1654         }
1655     } else {
1656         // some playback other than beacon starts
1657         beaconMuteLatency = handleEventForBeacon(STARTING_OUTPUT);
1658     }
1659 
1660     // force device change if the output is inactive and no audio patch is already present.
1661     // check active before incrementing usage count
1662     bool force = !outputDesc->isActive() &&
1663             (outputDesc->getPatchHandle() == AUDIO_PATCH_HANDLE_NONE);
1664 
1665     DeviceVector devices;
1666     sp<AudioPolicyMix> policyMix = outputDesc->mPolicyMix.promote();
1667     const char *address = NULL;
1668     if (policyMix != nullptr) {
1669         audio_devices_t newDeviceType;
1670         address = policyMix->mDeviceAddress.string();
1671         if ((policyMix->mRouteFlags & MIX_ROUTE_FLAG_LOOP_BACK) == MIX_ROUTE_FLAG_LOOP_BACK) {
1672             newDeviceType = AUDIO_DEVICE_OUT_REMOTE_SUBMIX;
1673         } else {
1674             newDeviceType = policyMix->mDeviceType;
1675         }
1676         sp device = mAvailableOutputDevices.getDevice(newDeviceType, String8(address),
1677                                                         AUDIO_FORMAT_DEFAULT);
1678         ALOG_ASSERT(device, "%s: no device found t=%u, a=%s", __func__, newDeviceType, address);
1679         devices.add(device);
1680     }
1681 
1682     // requiresMuteCheck is false when we can bypass mute strategy.
1683     // It covers a common case when there is no materially active audio
1684     // and muting would result in unnecessary delay and dropped audio.
1685     const uint32_t outputLatencyMs = outputDesc->latency();
1686     bool requiresMuteCheck = outputDesc->isActive(outputLatencyMs * 2);  // account for drain
1687 
1688     // increment usage count for this stream on the requested output:
1689     // NOTE that the usage count is the same for duplicated output and hardware output which is
1690     // necessary for a correct control of hardware output routing by startOutput() and stopOutput()
1691     outputDesc->setClientActive(client, true);
1692 
1693     if (client->hasPreferredDevice(true)) {
1694         if (outputDesc->clientsList(true /*activeOnly*/).size() == 1 &&
1695                 client->isPreferredDeviceForExclusiveUse()) {
1696             // Preferred device may be exclusive, use only if no other active clients on this output
1697             devices = DeviceVector(
1698                         mAvailableOutputDevices.getDeviceFromId(client->preferredDeviceId()));
1699         } else {
1700             devices = getNewOutputDevices(outputDesc, false /*fromCache*/);
1701         }
1702         if (devices != outputDesc->devices()) {
1703             checkStrategyRoute(clientStrategy, outputDesc->mIoHandle);
1704         }
1705     }
1706 
1707     if (followsSameRouting(clientAttr, attributes_initializer(AUDIO_USAGE_MEDIA))) {
1708         selectOutputForMusicEffects();
1709     }
1710 
1711     if (outputDesc->getActivityCount(clientVolSrc) == 1 || !devices.isEmpty()) {
1712         // starting an output being rerouted?
1713         if (devices.isEmpty()) {
1714             devices = getNewOutputDevices(outputDesc, false /*fromCache*/);
1715         }
1716         bool shouldWait =
1717             (followsSameRouting(clientAttr, attributes_initializer(AUDIO_USAGE_ALARM)) ||
1718              followsSameRouting(clientAttr, attributes_initializer(AUDIO_USAGE_NOTIFICATION)) ||
1719              (beaconMuteLatency > 0));
1720         uint32_t waitMs = beaconMuteLatency;
1721         for (size_t i = 0; i < mOutputs.size(); i++) {
1722             sp<SwAudioOutputDescriptor> desc = mOutputs.valueAt(i);
1723             if (desc != outputDesc) {
1724                 // An output has a shared device if
1725                 // - managed by the same hw module
1726                 // - supports the currently selected device
1727                 const bool sharedDevice = outputDesc->sharesHwModuleWith(desc)
1728                         && (!desc->filterSupportedDevices(devices).isEmpty());
1729 
1730                 // force a device change if any other output is:
1731                 // - managed by the same hw module
1732                 // - supports currently selected device
1733                 // - has a current device selection that differs from selected device.
1734                 // - has an active audio patch
1735                 // In this case, the audio HAL must receive the new device selection so that it can
1736                 // change the device currently selected by the other output.
1737                 if (sharedDevice &&
1738                         desc->devices() != devices &&
1739                         desc->getPatchHandle() != AUDIO_PATCH_HANDLE_NONE) {
1740                     force = true;
1741                 }
1742                 // wait for audio on other active outputs to be presented when starting
1743                 // a notification so that audio focus effect can propagate, or that a mute/unmute
1744                 // event occurred for beacon
1745                 const uint32_t latencyMs = desc->latency();
1746                 const bool isActive = desc->isActive(latencyMs * 2);  // account for drain
1747 
1748                 if (shouldWait && isActive && (waitMs < latencyMs)) {
1749                     waitMs = latencyMs;
1750                 }
1751 
1752                 // Require mute check if another output is on a shared device
1753                 // and currently active to have proper drain and avoid pops.
1754                 // Note restoring AudioTracks onto this output needs to invoke
1755                 // a volume ramp if there is no mute.
1756                 requiresMuteCheck |= sharedDevice && isActive;
1757             }
1758         }
1759 
1760         const uint32_t muteWaitMs =
1761                 setOutputDevices(outputDesc, devices, force, 0, NULL, requiresMuteCheck);
1762 
1763         // apply volume rules for current stream and device if necessary
1764         auto &curves = getVolumeCurves(client->attributes());
1765         checkAndSetVolume(curves, client->volumeSource(),
1766                           curves.getVolumeIndex(outputDesc->devices().types()),
1767                           outputDesc,
1768                           outputDesc->devices().types());
1769 
1770         // update the outputs if starting an output with a stream that can affect notification
1771         // routing
1772         handleNotificationRoutingForStream(stream);
1773 
1774         // force reevaluating accessibility routing when ringtone or alarm starts
1775         if (followsSameRouting(clientAttr, attributes_initializer(AUDIO_USAGE_ALARM))) {
1776             mpClientInterface->invalidateStream(AUDIO_STREAM_ACCESSIBILITY);
1777         }
1778 
1779         if (waitMs > muteWaitMs) {
1780             *delayMs = waitMs - muteWaitMs;
1781         }
1782 
1783         // FIXME: A device change (muteWaitMs > 0) likely introduces a volume change.
1784         // A volume change enacted by APM with 0 delay is not synchronous, as it goes
1785         // via AudioCommandThread to AudioFlinger.  Hence it is possible that the volume
1786         // change occurs after the MixerThread starts and causes a stream volume
1787         // glitch.
1788         //
1789         // We do not introduce additional delay here.
1790     }
1791 
1792     if (stream == AUDIO_STREAM_ENFORCED_AUDIBLE &&
1793             mEngine->getForceUse(
1794                     AUDIO_POLICY_FORCE_FOR_SYSTEM) == AUDIO_POLICY_FORCE_SYSTEM_ENFORCED) {
1795         setStrategyMute(streamToStrategy(AUDIO_STREAM_ALARM), true, outputDesc);
1796     }
1797 
1798     // Automatically enable the remote submix input when output is started on a re routing mix
1799     // of type MIX_TYPE_RECORDERS
1800     if (isSingleDeviceType(devices.types(), &audio_is_remote_submix_device) &&
1801         policyMix != NULL && policyMix->mMixType == MIX_TYPE_RECORDERS) {
1802         setDeviceConnectionStateInt(AUDIO_DEVICE_IN_REMOTE_SUBMIX,
1803                                     AUDIO_POLICY_DEVICE_STATE_AVAILABLE,
1804                                     address,
1805                                     "remote-submix",
1806                                     AUDIO_FORMAT_DEFAULT);
1807     }
1808 
1809     return NO_ERROR;
1810 }
1811 
stopOutput(audio_port_handle_t portId)1812 status_t AudioPolicyManager::stopOutput(audio_port_handle_t portId)
1813 {
1814     ALOGV("%s portId %d", __FUNCTION__, portId);
1815 
1816     sp<SwAudioOutputDescriptor> outputDesc = mOutputs.getOutputForClient(portId);
1817     if (outputDesc == 0) {
1818         ALOGW("stopOutput() no output for client %d", portId);
1819         return BAD_VALUE;
1820     }
1821     sp<TrackClientDescriptor> client = outputDesc->getClient(portId);
1822 
1823     ALOGV("stopOutput() output %d, stream %d, session %d",
1824           outputDesc->mIoHandle, client->stream(), client->session());
1825 
1826     status_t status = stopSource(outputDesc, client);
1827 
1828     if (status == NO_ERROR ) {
1829         outputDesc->stop();
1830     }
1831     return status;
1832 }
1833 
stopSource(const sp<SwAudioOutputDescriptor> & outputDesc,const sp<TrackClientDescriptor> & client)1834 status_t AudioPolicyManager::stopSource(const sp<SwAudioOutputDescriptor>& outputDesc,
1835                                         const sp<TrackClientDescriptor>& client)
1836 {
1837     // always handle stream stop, check which stream type is stopping
1838     audio_stream_type_t stream = client->stream();
1839     auto clientVolSrc = client->volumeSource();
1840 
1841     handleEventForBeacon(stream == AUDIO_STREAM_TTS ? STOPPING_BEACON : STOPPING_OUTPUT);
1842 
1843     if (outputDesc->getActivityCount(clientVolSrc) > 0) {
1844         if (outputDesc->getActivityCount(clientVolSrc) == 1) {
1845             // Automatically disable the remote submix input when output is stopped on a
1846             // re routing mix of type MIX_TYPE_RECORDERS
1847             sp<AudioPolicyMix> policyMix = outputDesc->mPolicyMix.promote();
1848             if (isSingleDeviceType(
1849                     outputDesc->devices().types(), &audio_is_remote_submix_device) &&
1850                 policyMix != nullptr &&
1851                 policyMix->mMixType == MIX_TYPE_RECORDERS) {
1852                 setDeviceConnectionStateInt(AUDIO_DEVICE_IN_REMOTE_SUBMIX,
1853                                             AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE,
1854                                             policyMix->mDeviceAddress,
1855                                             "remote-submix", AUDIO_FORMAT_DEFAULT);
1856             }
1857         }
1858         bool forceDeviceUpdate = false;
1859         if (client->hasPreferredDevice(true)) {
1860             checkStrategyRoute(client->strategy(), AUDIO_IO_HANDLE_NONE);
1861             forceDeviceUpdate = true;
1862         }
1863 
1864         // decrement usage count of this stream on the output
1865         outputDesc->setClientActive(client, false);
1866 
1867         // store time at which the stream was stopped - see isStreamActive()
1868         if (outputDesc->getActivityCount(clientVolSrc) == 0 || forceDeviceUpdate) {
1869             outputDesc->setStopTime(client, systemTime());
1870             DeviceVector newDevices = getNewOutputDevices(outputDesc, false /*fromCache*/);
1871             // delay the device switch by twice the latency because stopOutput() is executed when
1872             // the track stop() command is received and at that time the audio track buffer can
1873             // still contain data that needs to be drained. The latency only covers the audio HAL
1874             // and kernel buffers. Also the latency does not always include additional delay in the
1875             // audio path (audio DSP, CODEC ...)
1876             setOutputDevices(outputDesc, newDevices, false, outputDesc->latency()*2);
1877 
1878             // force restoring the device selection on other active outputs if it differs from the
1879             // one being selected for this output
1880             uint32_t delayMs = outputDesc->latency()*2;
1881             for (size_t i = 0; i < mOutputs.size(); i++) {
1882                 sp<SwAudioOutputDescriptor> desc = mOutputs.valueAt(i);
1883                 if (desc != outputDesc &&
1884                         desc->isActive() &&
1885                         outputDesc->sharesHwModuleWith(desc) &&
1886                         (newDevices != desc->devices())) {
1887                     DeviceVector newDevices2 = getNewOutputDevices(desc, false /*fromCache*/);
1888                     bool force = desc->devices() != newDevices2;
1889 
1890                     setOutputDevices(desc, newDevices2, force, delayMs);
1891 
1892                     // re-apply device specific volume if not done by setOutputDevice()
1893                     if (!force) {
1894                         applyStreamVolumes(desc, newDevices2.types(), delayMs);
1895                     }
1896                 }
1897             }
1898             // update the outputs if stopping one with a stream that can affect notification routing
1899             handleNotificationRoutingForStream(stream);
1900         }
1901 
1902         if (stream == AUDIO_STREAM_ENFORCED_AUDIBLE &&
1903                 mEngine->getForceUse(AUDIO_POLICY_FORCE_FOR_SYSTEM) == AUDIO_POLICY_FORCE_SYSTEM_ENFORCED) {
1904             setStrategyMute(streamToStrategy(AUDIO_STREAM_ALARM), false, outputDesc);
1905         }
1906 
1907         if (followsSameRouting(client->attributes(), attributes_initializer(AUDIO_USAGE_MEDIA))) {
1908             selectOutputForMusicEffects();
1909         }
1910         return NO_ERROR;
1911     } else {
1912         ALOGW("stopOutput() refcount is already 0");
1913         return INVALID_OPERATION;
1914     }
1915 }
1916 
releaseOutput(audio_port_handle_t portId)1917 void AudioPolicyManager::releaseOutput(audio_port_handle_t portId)
1918 {
1919     ALOGV("%s portId %d", __FUNCTION__, portId);
1920 
1921     sp<SwAudioOutputDescriptor> outputDesc = mOutputs.getOutputForClient(portId);
1922     if (outputDesc == 0) {
1923         // If an output descriptor is closed due to a device routing change,
1924         // then there are race conditions with releaseOutput from tracks
1925         // that may be destroyed (with no PlaybackThread) or a PlaybackThread
1926         // destroyed shortly thereafter.
1927         //
1928         // Here we just log a warning, instead of a fatal error.
1929         ALOGW("releaseOutput() no output for client %d", portId);
1930         return;
1931     }
1932 
1933     ALOGV("releaseOutput() %d", outputDesc->mIoHandle);
1934 
1935     if (outputDesc->mFlags & AUDIO_OUTPUT_FLAG_DIRECT) {
1936         if (outputDesc->mDirectOpenCount <= 0) {
1937             ALOGW("releaseOutput() invalid open count %d for output %d",
1938                   outputDesc->mDirectOpenCount, outputDesc->mIoHandle);
1939             return;
1940         }
1941         if (--outputDesc->mDirectOpenCount == 0) {
1942             closeOutput(outputDesc->mIoHandle);
1943             mpClientInterface->onAudioPortListUpdate();
1944         }
1945     }
1946     // stopOutput() needs to be successfully called before releaseOutput()
1947     // otherwise there may be inaccurate stream reference counts.
1948     // This is checked in outputDesc->removeClient below.
1949     outputDesc->removeClient(portId);
1950 }
1951 
getInputForAttr(const audio_attributes_t * attr,audio_io_handle_t * input,audio_unique_id_t riid,audio_session_t session,uid_t uid,const audio_config_base_t * config,audio_input_flags_t flags,audio_port_handle_t * selectedDeviceId,input_type_t * inputType,audio_port_handle_t * portId)1952 status_t AudioPolicyManager::getInputForAttr(const audio_attributes_t *attr,
1953                                              audio_io_handle_t *input,
1954                                              audio_unique_id_t riid,
1955                                              audio_session_t session,
1956                                              uid_t uid,
1957                                              const audio_config_base_t *config,
1958                                              audio_input_flags_t flags,
1959                                              audio_port_handle_t *selectedDeviceId,
1960                                              input_type_t *inputType,
1961                                              audio_port_handle_t *portId)
1962 {
1963     ALOGV("%s() source %d, sampling rate %d, format %#x, channel mask %#x, session %d, "
1964           "flags %#x attributes=%s", __func__, attr->source, config->sample_rate,
1965           config->format, config->channel_mask, session, flags, toString(*attr).c_str());
1966 
1967     status_t status = NO_ERROR;
1968     audio_source_t halInputSource;
1969     audio_attributes_t attributes = *attr;
1970     sp<AudioPolicyMix> policyMix;
1971     sp<DeviceDescriptor> device;
1972     sp<AudioInputDescriptor> inputDesc;
1973     sp<RecordClientDescriptor> clientDesc;
1974     audio_port_handle_t requestedDeviceId = *selectedDeviceId;
1975     bool isSoundTrigger;
1976 
1977     // The supplied portId must be AUDIO_PORT_HANDLE_NONE
1978     if (*portId != AUDIO_PORT_HANDLE_NONE) {
1979         return INVALID_OPERATION;
1980     }
1981 
1982     if (attr->source == AUDIO_SOURCE_DEFAULT) {
1983         attributes.source = AUDIO_SOURCE_MIC;
1984     }
1985 
1986     // Explicit routing?
1987     sp<DeviceDescriptor> explicitRoutingDevice =
1988             mAvailableInputDevices.getDeviceFromId(*selectedDeviceId);
1989 
1990     // special case for mmap capture: if an input IO handle is specified, we reuse this input if
1991     // possible
1992     if ((flags & AUDIO_INPUT_FLAG_MMAP_NOIRQ) == AUDIO_INPUT_FLAG_MMAP_NOIRQ &&
1993             *input != AUDIO_IO_HANDLE_NONE) {
1994         ssize_t index = mInputs.indexOfKey(*input);
1995         if (index < 0) {
1996             ALOGW("getInputForAttr() unknown MMAP input %d", *input);
1997             status = BAD_VALUE;
1998             goto error;
1999         }
2000         sp<AudioInputDescriptor> inputDesc = mInputs.valueAt(index);
2001         RecordClientVector clients = inputDesc->getClientsForSession(session);
2002         if (clients.size() == 0) {
2003             ALOGW("getInputForAttr() unknown session %d on input %d", session, *input);
2004             status = BAD_VALUE;
2005             goto error;
2006         }
2007         // For MMAP mode, the first call to getInputForAttr() is made on behalf of audioflinger.
2008         // The second call is for the first active client and sets the UID. Any further call
2009         // corresponds to a new client and is only permitted from the same UID.
2010         // If the first UID is silenced, allow a new UID connection and replace with new UID
2011         if (clients.size() > 1) {
2012             for (const auto& client : clients) {
2013                 // The client map is ordered by key values (portId) and portIds are allocated
2014                 // incrementaly. So the first client in this list is the one opened by audio flinger
2015                 // when the mmap stream is created and should be ignored as it does not correspond
2016                 // to an actual client
2017                 if (client == *clients.cbegin()) {
2018                     continue;
2019                 }
2020                 if (uid != client->uid() && !client->isSilenced()) {
2021                     ALOGW("getInputForAttr() bad uid %d for client %d uid %d",
2022                           uid, client->portId(), client->uid());
2023                     status = INVALID_OPERATION;
2024                     goto error;
2025                 }
2026             }
2027         }
2028         *inputType = API_INPUT_LEGACY;
2029         device = inputDesc->getDevice();
2030 
2031         ALOGI("%s reusing MMAP input %d for session %d", __FUNCTION__, *input, session);
2032         goto exit;
2033     }
2034 
2035     *input = AUDIO_IO_HANDLE_NONE;
2036     *inputType = API_INPUT_INVALID;
2037 
2038     halInputSource = attributes.source;
2039 
2040     if (attributes.source == AUDIO_SOURCE_REMOTE_SUBMIX &&
2041             strncmp(attributes.tags, "addr=", strlen("addr=")) == 0) {
2042         status = mPolicyMixes.getInputMixForAttr(attributes, &policyMix);
2043         if (status != NO_ERROR) {
2044             ALOGW("%s could not find input mix for attr %s",
2045                     __func__, toString(attributes).c_str());
2046             goto error;
2047         }
2048         device = mAvailableInputDevices.getDevice(AUDIO_DEVICE_IN_REMOTE_SUBMIX,
2049                                                   String8(attr->tags + strlen("addr=")),
2050                                                   AUDIO_FORMAT_DEFAULT);
2051         if (device == nullptr) {
2052             ALOGW("%s could not find in Remote Submix device for source %d, tags %s",
2053                     __func__, attributes.source, attributes.tags);
2054             status = BAD_VALUE;
2055             goto error;
2056         }
2057 
2058         if (is_mix_loopback_render(policyMix->mRouteFlags)) {
2059             *inputType = API_INPUT_MIX_PUBLIC_CAPTURE_PLAYBACK;
2060         } else {
2061             *inputType = API_INPUT_MIX_EXT_POLICY_REROUTE;
2062         }
2063     } else {
2064         if (explicitRoutingDevice != nullptr) {
2065             device = explicitRoutingDevice;
2066         } else {
2067             // Prevent from storing invalid requested device id in clients
2068             requestedDeviceId = AUDIO_PORT_HANDLE_NONE;
2069             device = mEngine->getInputDeviceForAttributes(attributes, &policyMix);
2070         }
2071         if (device == nullptr) {
2072             ALOGW("getInputForAttr() could not find device for source %d", attributes.source);
2073             status = BAD_VALUE;
2074             goto error;
2075         }
2076         if (policyMix) {
2077             ALOG_ASSERT(policyMix->mMixType == MIX_TYPE_RECORDERS, "Invalid Mix Type");
2078             // there is an external policy, but this input is attached to a mix of recorders,
2079             // meaning it receives audio injected into the framework, so the recorder doesn't
2080             // know about it and is therefore considered "legacy"
2081             *inputType = API_INPUT_LEGACY;
2082         } else if (audio_is_remote_submix_device(device->type())) {
2083             *inputType = API_INPUT_MIX_CAPTURE;
2084         } else if (device->type() == AUDIO_DEVICE_IN_TELEPHONY_RX) {
2085             *inputType = API_INPUT_TELEPHONY_RX;
2086         } else {
2087             *inputType = API_INPUT_LEGACY;
2088         }
2089 
2090     }
2091 
2092     *input = getInputForDevice(device, session, attributes, config, flags, policyMix);
2093     if (*input == AUDIO_IO_HANDLE_NONE) {
2094         status = INVALID_OPERATION;
2095         goto error;
2096     }
2097 
2098 exit:
2099 
2100     *selectedDeviceId = mAvailableInputDevices.contains(device) ?
2101                 device->getId() : AUDIO_PORT_HANDLE_NONE;
2102 
2103     isSoundTrigger = attributes.source == AUDIO_SOURCE_HOTWORD &&
2104         mSoundTriggerSessions.indexOfKey(session) >= 0;
2105     *portId = PolicyAudioPort::getNextUniqueId();
2106 
2107     clientDesc = new RecordClientDescriptor(*portId, riid, uid, session, attributes, *config,
2108                                             requestedDeviceId, attributes.source, flags,
2109                                             isSoundTrigger);
2110     inputDesc = mInputs.valueFor(*input);
2111     inputDesc->addClient(clientDesc);
2112 
2113     ALOGV("getInputForAttr() returns input %d type %d selectedDeviceId %d for port ID %d",
2114             *input, *inputType, *selectedDeviceId, *portId);
2115 
2116     return NO_ERROR;
2117 
2118 error:
2119     return status;
2120 }
2121 
2122 
getInputForDevice(const sp<DeviceDescriptor> & device,audio_session_t session,const audio_attributes_t & attributes,const audio_config_base_t * config,audio_input_flags_t flags,const sp<AudioPolicyMix> & policyMix)2123 audio_io_handle_t AudioPolicyManager::getInputForDevice(const sp<DeviceDescriptor> &device,
2124                                                         audio_session_t session,
2125                                                         const audio_attributes_t &attributes,
2126                                                         const audio_config_base_t *config,
2127                                                         audio_input_flags_t flags,
2128                                                         const sp<AudioPolicyMix> &policyMix)
2129 {
2130     audio_io_handle_t input = AUDIO_IO_HANDLE_NONE;
2131     audio_source_t halInputSource = attributes.source;
2132     bool isSoundTrigger = false;
2133 
2134     if (attributes.source == AUDIO_SOURCE_HOTWORD) {
2135         ssize_t index = mSoundTriggerSessions.indexOfKey(session);
2136         if (index >= 0) {
2137             input = mSoundTriggerSessions.valueFor(session);
2138             isSoundTrigger = true;
2139             flags = (audio_input_flags_t)(flags | AUDIO_INPUT_FLAG_HW_HOTWORD);
2140             ALOGV("SoundTrigger capture on session %d input %d", session, input);
2141         } else {
2142             halInputSource = AUDIO_SOURCE_VOICE_RECOGNITION;
2143         }
2144     } else if (attributes.source == AUDIO_SOURCE_VOICE_COMMUNICATION &&
2145                audio_is_linear_pcm(config->format)) {
2146         flags = (audio_input_flags_t)(flags | AUDIO_INPUT_FLAG_VOIP_TX);
2147     }
2148 
2149     // find a compatible input profile (not necessarily identical in parameters)
2150     sp<IOProfile> profile;
2151     // sampling rate and flags may be updated by getInputProfile
2152     uint32_t profileSamplingRate = (config->sample_rate == 0) ?
2153             SAMPLE_RATE_HZ_DEFAULT : config->sample_rate;
2154     audio_format_t profileFormat;
2155     audio_channel_mask_t profileChannelMask = config->channel_mask;
2156     audio_input_flags_t profileFlags = flags;
2157     for (;;) {
2158         profileFormat = config->format; // reset each time through loop, in case it is updated
2159         profile = getInputProfile(device, profileSamplingRate, profileFormat, profileChannelMask,
2160                                   profileFlags);
2161         if (profile != 0) {
2162             break; // success
2163         } else if (profileFlags & AUDIO_INPUT_FLAG_RAW) {
2164             profileFlags = (audio_input_flags_t) (profileFlags & ~AUDIO_INPUT_FLAG_RAW); // retry
2165         } else if (profileFlags != AUDIO_INPUT_FLAG_NONE) {
2166             profileFlags = AUDIO_INPUT_FLAG_NONE; // retry
2167         } else { // fail
2168             ALOGW("%s could not find profile for device %s, sampling rate %u, format %#x, "
2169                   "channel mask 0x%X, flags %#x", __func__, device->toString().c_str(),
2170                   config->sample_rate, config->format, config->channel_mask, flags);
2171             return input;
2172         }
2173     }
2174     // Pick input sampling rate if not specified by client
2175     uint32_t samplingRate = config->sample_rate;
2176     if (samplingRate == 0) {
2177         samplingRate = profileSamplingRate;
2178     }
2179 
2180     if (profile->getModuleHandle() == 0) {
2181         ALOGE("getInputForAttr(): HW module %s not opened", profile->getModuleName());
2182         return input;
2183     }
2184 
2185     if (!profile->canOpenNewIo()) {
2186         for (size_t i = 0; i < mInputs.size(); ) {
2187             sp<AudioInputDescriptor> desc = mInputs.valueAt(i);
2188             if (desc->mProfile != profile) {
2189                 i++;
2190                 continue;
2191             }
2192             // if sound trigger, reuse input if used by other sound trigger on same session
2193             // else
2194             //    reuse input if active client app is not in IDLE state
2195             //
2196             RecordClientVector clients = desc->clientsList();
2197             bool doClose = false;
2198             for (const auto& client : clients) {
2199                 if (isSoundTrigger != client->isSoundTrigger()) {
2200                     continue;
2201                 }
2202                 if (client->isSoundTrigger()) {
2203                     if (session == client->session()) {
2204                         return desc->mIoHandle;
2205                     }
2206                     continue;
2207                 }
2208                 if (client->active() && client->appState() != APP_STATE_IDLE) {
2209                     return desc->mIoHandle;
2210                 }
2211                 doClose = true;
2212             }
2213             if (doClose) {
2214                 closeInput(desc->mIoHandle);
2215             } else {
2216                 i++;
2217             }
2218         }
2219     }
2220 
2221     sp<AudioInputDescriptor> inputDesc = new AudioInputDescriptor(profile, mpClientInterface);
2222 
2223     audio_config_t lConfig = AUDIO_CONFIG_INITIALIZER;
2224     lConfig.sample_rate = profileSamplingRate;
2225     lConfig.channel_mask = profileChannelMask;
2226     lConfig.format = profileFormat;
2227 
2228     status_t status = inputDesc->open(&lConfig, device, halInputSource, profileFlags, &input);
2229 
2230     // only accept input with the exact requested set of parameters
2231     if (status != NO_ERROR || input == AUDIO_IO_HANDLE_NONE ||
2232         (profileSamplingRate != lConfig.sample_rate) ||
2233         !audio_formats_match(profileFormat, lConfig.format) ||
2234         (profileChannelMask != lConfig.channel_mask)) {
2235         ALOGW("getInputForAttr() failed opening input: sampling rate %d"
2236               ", format %#x, channel mask %#x",
2237               profileSamplingRate, profileFormat, profileChannelMask);
2238         if (input != AUDIO_IO_HANDLE_NONE) {
2239             inputDesc->close();
2240         }
2241         return AUDIO_IO_HANDLE_NONE;
2242     }
2243 
2244     inputDesc->mPolicyMix = policyMix;
2245 
2246     addInput(input, inputDesc);
2247     mpClientInterface->onAudioPortListUpdate();
2248 
2249     return input;
2250 }
2251 
startInput(audio_port_handle_t portId)2252 status_t AudioPolicyManager::startInput(audio_port_handle_t portId)
2253 {
2254     ALOGV("%s portId %d", __FUNCTION__, portId);
2255 
2256     sp<AudioInputDescriptor> inputDesc = mInputs.getInputForClient(portId);
2257     if (inputDesc == 0) {
2258         ALOGW("%s no input for client %d", __FUNCTION__, portId);
2259         return BAD_VALUE;
2260     }
2261     audio_io_handle_t input = inputDesc->mIoHandle;
2262     sp<RecordClientDescriptor> client = inputDesc->getClient(portId);
2263     if (client->active()) {
2264         ALOGW("%s input %d client %d already started", __FUNCTION__, input, client->portId());
2265         return INVALID_OPERATION;
2266     }
2267 
2268     audio_session_t session = client->session();
2269 
2270     ALOGV("%s input:%d, session:%d)", __FUNCTION__, input, session);
2271 
2272     Vector<sp<AudioInputDescriptor>> activeInputs = mInputs.getActiveInputs();
2273 
2274     status_t status = inputDesc->start();
2275     if (status != NO_ERROR) {
2276         return status;
2277     }
2278 
2279     // increment activity count before calling getNewInputDevice() below as only active sessions
2280     // are considered for device selection
2281     inputDesc->setClientActive(client, true);
2282 
2283     // indicate active capture to sound trigger service if starting capture from a mic on
2284     // primary HW module
2285     sp<DeviceDescriptor> device = getNewInputDevice(inputDesc);
2286     if (device != nullptr) {
2287         status = setInputDevice(input, device, true /* force */);
2288     } else {
2289         ALOGW("%s no new input device can be found for descriptor %d",
2290                 __FUNCTION__, inputDesc->getId());
2291         status = BAD_VALUE;
2292     }
2293 
2294     if (status == NO_ERROR && inputDesc->activeCount() == 1) {
2295         sp<AudioPolicyMix> policyMix = inputDesc->mPolicyMix.promote();
2296         // if input maps to a dynamic policy with an activity listener, notify of state change
2297         if ((policyMix != nullptr)
2298                 && ((policyMix->mCbFlags & AudioMix::kCbFlagNotifyActivity) != 0)) {
2299             mpClientInterface->onDynamicPolicyMixStateUpdate(policyMix->mDeviceAddress,
2300                     MIX_STATE_MIXING);
2301         }
2302 
2303         DeviceVector primaryInputDevices = availablePrimaryModuleInputDevices();
2304         if (primaryInputDevices.contains(device) &&
2305                 mInputs.activeInputsCountOnDevices(primaryInputDevices) == 1) {
2306             mpClientInterface->setSoundTriggerCaptureState(true);
2307         }
2308 
2309         // automatically enable the remote submix output when input is started if not
2310         // used by a policy mix of type MIX_TYPE_RECORDERS
2311         // For remote submix (a virtual device), we open only one input per capture request.
2312         if (audio_is_remote_submix_device(inputDesc->getDeviceType())) {
2313             String8 address = String8("");
2314             if (policyMix == nullptr) {
2315                 address = String8("0");
2316             } else if (policyMix->mMixType == MIX_TYPE_PLAYERS) {
2317                 address = policyMix->mDeviceAddress;
2318             }
2319             if (address != "") {
2320                 setDeviceConnectionStateInt(AUDIO_DEVICE_OUT_REMOTE_SUBMIX,
2321                         AUDIO_POLICY_DEVICE_STATE_AVAILABLE,
2322                         address, "remote-submix", AUDIO_FORMAT_DEFAULT);
2323             }
2324         }
2325     } else if (status != NO_ERROR) {
2326         // Restore client activity state.
2327         inputDesc->setClientActive(client, false);
2328         inputDesc->stop();
2329     }
2330 
2331     ALOGV("%s input %d source = %d status = %d exit",
2332             __FUNCTION__, input, client->source(), status);
2333 
2334     return status;
2335 }
2336 
stopInput(audio_port_handle_t portId)2337 status_t AudioPolicyManager::stopInput(audio_port_handle_t portId)
2338 {
2339     ALOGV("%s portId %d", __FUNCTION__, portId);
2340 
2341     sp<AudioInputDescriptor> inputDesc = mInputs.getInputForClient(portId);
2342     if (inputDesc == 0) {
2343         ALOGW("%s no input for client %d", __FUNCTION__, portId);
2344         return BAD_VALUE;
2345     }
2346     audio_io_handle_t input = inputDesc->mIoHandle;
2347     sp<RecordClientDescriptor> client = inputDesc->getClient(portId);
2348     if (!client->active()) {
2349         ALOGW("%s input %d client %d already stopped", __FUNCTION__, input, client->portId());
2350         return INVALID_OPERATION;
2351     }
2352 
2353     inputDesc->setClientActive(client, false);
2354 
2355     inputDesc->stop();
2356     if (inputDesc->isActive()) {
2357         setInputDevice(input, getNewInputDevice(inputDesc), false /* force */);
2358     } else {
2359         sp<AudioPolicyMix> policyMix = inputDesc->mPolicyMix.promote();
2360         // if input maps to a dynamic policy with an activity listener, notify of state change
2361         if ((policyMix != nullptr)
2362                 && ((policyMix->mCbFlags & AudioMix::kCbFlagNotifyActivity) != 0)) {
2363             mpClientInterface->onDynamicPolicyMixStateUpdate(policyMix->mDeviceAddress,
2364                     MIX_STATE_IDLE);
2365         }
2366 
2367         // automatically disable the remote submix output when input is stopped if not
2368         // used by a policy mix of type MIX_TYPE_RECORDERS
2369         if (audio_is_remote_submix_device(inputDesc->getDeviceType())) {
2370             String8 address = String8("");
2371             if (policyMix == nullptr) {
2372                 address = String8("0");
2373             } else if (policyMix->mMixType == MIX_TYPE_PLAYERS) {
2374                 address = policyMix->mDeviceAddress;
2375             }
2376             if (address != "") {
2377                 setDeviceConnectionStateInt(AUDIO_DEVICE_OUT_REMOTE_SUBMIX,
2378                                          AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE,
2379                                          address, "remote-submix", AUDIO_FORMAT_DEFAULT);
2380             }
2381         }
2382         resetInputDevice(input);
2383 
2384         // indicate inactive capture to sound trigger service if stopping capture from a mic on
2385         // primary HW module
2386         DeviceVector primaryInputDevices = availablePrimaryModuleInputDevices();
2387         if (primaryInputDevices.contains(inputDesc->getDevice()) &&
2388                 mInputs.activeInputsCountOnDevices(primaryInputDevices) == 0) {
2389             mpClientInterface->setSoundTriggerCaptureState(false);
2390         }
2391         inputDesc->clearPreemptedSessions();
2392     }
2393     return NO_ERROR;
2394 }
2395 
releaseInput(audio_port_handle_t portId)2396 void AudioPolicyManager::releaseInput(audio_port_handle_t portId)
2397 {
2398     ALOGV("%s portId %d", __FUNCTION__, portId);
2399 
2400     sp<AudioInputDescriptor> inputDesc = mInputs.getInputForClient(portId);
2401     if (inputDesc == 0) {
2402         ALOGW("%s no input for client %d", __FUNCTION__, portId);
2403         return;
2404     }
2405     sp<RecordClientDescriptor> client = inputDesc->getClient(portId);
2406     audio_io_handle_t input = inputDesc->mIoHandle;
2407 
2408     ALOGV("%s %d", __FUNCTION__, input);
2409 
2410     inputDesc->removeClient(portId);
2411 
2412     if (inputDesc->getClientCount() > 0) {
2413         ALOGV("%s(%d) %zu clients remaining", __func__, portId, inputDesc->getClientCount());
2414         return;
2415     }
2416 
2417     closeInput(input);
2418     mpClientInterface->onAudioPortListUpdate();
2419     ALOGV("%s exit", __FUNCTION__);
2420 }
2421 
closeActiveClients(const sp<AudioInputDescriptor> & input)2422 void AudioPolicyManager::closeActiveClients(const sp<AudioInputDescriptor>& input)
2423 {
2424     RecordClientVector clients = input->clientsList(true);
2425 
2426     for (const auto& client : clients) {
2427         closeClient(client->portId());
2428     }
2429 }
2430 
closeClient(audio_port_handle_t portId)2431 void AudioPolicyManager::closeClient(audio_port_handle_t portId)
2432 {
2433     stopInput(portId);
2434     releaseInput(portId);
2435 }
2436 
checkCloseInputs()2437 void AudioPolicyManager::checkCloseInputs() {
2438     // After connecting or disconnecting an input device, close input if:
2439     // - it has no client (was just opened to check profile)  OR
2440     // - none of its supported devices are connected anymore OR
2441     // - one of its clients cannot be routed to one of its supported
2442     // devices anymore. Otherwise update device selection
2443     std::vector<audio_io_handle_t> inputsToClose;
2444     for (size_t i = 0; i < mInputs.size(); i++) {
2445         const sp<AudioInputDescriptor> input = mInputs.valueAt(i);
2446         if (input->clientsList().size() == 0
2447                 || !mAvailableInputDevices.containsAtLeastOne(input->supportedDevices())) {
2448             inputsToClose.push_back(mInputs.keyAt(i));
2449         } else {
2450             bool close = false;
2451             for (const auto& client : input->clientsList()) {
2452                 sp<DeviceDescriptor> device =
2453                     mEngine->getInputDeviceForAttributes(client->attributes());
2454                 if (!input->supportedDevices().contains(device)) {
2455                     close = true;
2456                     break;
2457                 }
2458             }
2459             if (close) {
2460                 inputsToClose.push_back(mInputs.keyAt(i));
2461             } else {
2462                 setInputDevice(input->mIoHandle, getNewInputDevice(input));
2463             }
2464         }
2465     }
2466 
2467     for (const audio_io_handle_t handle : inputsToClose) {
2468         ALOGV("%s closing input %d", __func__, handle);
2469         closeInput(handle);
2470     }
2471 }
2472 
initStreamVolume(audio_stream_type_t stream,int indexMin,int indexMax)2473 void AudioPolicyManager::initStreamVolume(audio_stream_type_t stream, int indexMin, int indexMax)
2474 {
2475     ALOGV("initStreamVolume() stream %d, min %d, max %d", stream , indexMin, indexMax);
2476     if (indexMin < 0 || indexMax < 0) {
2477         ALOGE("%s for stream %d: invalid min %d or max %d", __func__, stream , indexMin, indexMax);
2478         return;
2479     }
2480     getVolumeCurves(stream).initVolume(indexMin, indexMax);
2481 
2482     // initialize other private stream volumes which follow this one
2483     for (int curStream = 0; curStream < AUDIO_STREAM_FOR_POLICY_CNT; curStream++) {
2484         if (!streamsMatchForvolume(stream, (audio_stream_type_t)curStream)) {
2485             continue;
2486         }
2487         getVolumeCurves((audio_stream_type_t)curStream).initVolume(indexMin, indexMax);
2488     }
2489 }
2490 
setStreamVolumeIndex(audio_stream_type_t stream,int index,audio_devices_t device)2491 status_t AudioPolicyManager::setStreamVolumeIndex(audio_stream_type_t stream,
2492                                                   int index,
2493                                                   audio_devices_t device)
2494 {
2495     auto attributes = mEngine->getAttributesForStreamType(stream);
2496     if (attributes == AUDIO_ATTRIBUTES_INITIALIZER) {
2497         ALOGW("%s: no group for stream %s, bailing out", __func__, toString(stream).c_str());
2498         return NO_ERROR;
2499     }
2500     ALOGV("%s: stream %s attributes=%s", __func__,
2501           toString(stream).c_str(), toString(attributes).c_str());
2502     return setVolumeIndexForAttributes(attributes, index, device);
2503 }
2504 
getStreamVolumeIndex(audio_stream_type_t stream,int * index,audio_devices_t device)2505 status_t AudioPolicyManager::getStreamVolumeIndex(audio_stream_type_t stream,
2506                                                   int *index,
2507                                                   audio_devices_t device)
2508 {
2509     // if device is AUDIO_DEVICE_OUT_DEFAULT_FOR_VOLUME, return volume for device selected for this
2510     // stream by the engine.
2511     DeviceTypeSet deviceTypes = {device};
2512     if (device == AUDIO_DEVICE_OUT_DEFAULT_FOR_VOLUME) {
2513         deviceTypes = mEngine->getOutputDevicesForStream(
2514                 stream, true /*fromCache*/).types();
2515     }
2516     return getVolumeIndex(getVolumeCurves(stream), *index, deviceTypes);
2517 }
2518 
setVolumeIndexForAttributes(const audio_attributes_t & attributes,int index,audio_devices_t device)2519 status_t AudioPolicyManager::setVolumeIndexForAttributes(const audio_attributes_t &attributes,
2520                                                          int index,
2521                                                          audio_devices_t device)
2522 {
2523     // Get Volume group matching the Audio Attributes
2524     auto group = mEngine->getVolumeGroupForAttributes(attributes);
2525     if (group == VOLUME_GROUP_NONE) {
2526         ALOGD("%s: no group matching with %s", __FUNCTION__, toString(attributes).c_str());
2527         return BAD_VALUE;
2528     }
2529     ALOGV("%s: group %d matching with %s", __FUNCTION__, group, toString(attributes).c_str());
2530     status_t status = NO_ERROR;
2531     IVolumeCurves &curves = getVolumeCurves(attributes);
2532     VolumeSource vs = toVolumeSource(group);
2533     product_strategy_t strategy = mEngine->getProductStrategyForAttributes(attributes);
2534 
2535     status = setVolumeCurveIndex(index, device, curves);
2536     if (status != NO_ERROR) {
2537         ALOGE("%s failed to set curve index for group %d device 0x%X", __func__, group, device);
2538         return status;
2539     }
2540 
2541     DeviceTypeSet curSrcDevices;
2542     auto curCurvAttrs = curves.getAttributes();
2543     if (!curCurvAttrs.empty() && curCurvAttrs.front() != defaultAttr) {
2544         auto attr = curCurvAttrs.front();
2545         curSrcDevices = mEngine->getOutputDevicesForAttributes(attr, nullptr, false).types();
2546     } else if (!curves.getStreamTypes().empty()) {
2547         auto stream = curves.getStreamTypes().front();
2548         curSrcDevices = mEngine->getOutputDevicesForStream(stream, false).types();
2549     } else {
2550         ALOGE("%s: Invalid src %d: no valid attributes nor stream",__func__, vs);
2551         return BAD_VALUE;
2552     }
2553     audio_devices_t curSrcDevice = Volume::getDeviceForVolume(curSrcDevices);
2554     resetDeviceTypes(curSrcDevices, curSrcDevice);
2555 
2556     // update volume on all outputs and streams matching the following:
2557     // - The requested stream (or a stream matching for volume control) is active on the output
2558     // - The device (or devices) selected by the engine for this stream includes
2559     // the requested device
2560     // - For non default requested device, currently selected device on the output is either the
2561     // requested device or one of the devices selected by the engine for this stream
2562     // - For default requested device (AUDIO_DEVICE_OUT_DEFAULT_FOR_VOLUME), apply volume only if
2563     // no specific device volume value exists for currently selected device.
2564     for (size_t i = 0; i < mOutputs.size(); i++) {
2565         sp<SwAudioOutputDescriptor> desc = mOutputs.valueAt(i);
2566         DeviceTypeSet curDevices = desc->devices().types();
2567 
2568         if (curDevices.erase(AUDIO_DEVICE_OUT_SPEAKER_SAFE)) {
2569             curDevices.insert(AUDIO_DEVICE_OUT_SPEAKER);
2570         }
2571         if (!(desc->isActive(vs) || isInCall())) {
2572             continue;
2573         }
2574         if (device != AUDIO_DEVICE_OUT_DEFAULT_FOR_VOLUME &&
2575                 curDevices.find(device) == curDevices.end()) {
2576             continue;
2577         }
2578         bool applyVolume = false;
2579         if (device != AUDIO_DEVICE_OUT_DEFAULT_FOR_VOLUME) {
2580             curSrcDevices.insert(device);
2581             applyVolume = (curSrcDevices.find(
2582                     Volume::getDeviceForVolume(curDevices)) != curSrcDevices.end());
2583         } else {
2584             applyVolume = !curves.hasVolumeIndexForDevice(curSrcDevice);
2585         }
2586         if (!applyVolume) {
2587             continue; // next output
2588         }
2589         // Inter / intra volume group priority management: Loop on strategies arranged by priority
2590         // If a higher priority strategy is active, and the output is routed to a device with a
2591         // HW Gain management, do not change the volume
2592         if (desc->useHwGain()) {
2593             applyVolume = false;
2594             for (const auto &productStrategy : mEngine->getOrderedProductStrategies()) {
2595                 auto activeClients = desc->clientsList(true /*activeOnly*/, productStrategy,
2596                                                        false /*preferredDevice*/);
2597                 if (activeClients.empty()) {
2598                     continue;
2599                 }
2600                 bool isPreempted = false;
2601                 bool isHigherPriority = productStrategy < strategy;
2602                 for (const auto &client : activeClients) {
2603                     if (isHigherPriority && (client->volumeSource() != vs)) {
2604                         ALOGV("%s: Strategy=%d (\nrequester:\n"
2605                               " group %d, volumeGroup=%d attributes=%s)\n"
2606                               " higher priority source active:\n"
2607                               " volumeGroup=%d attributes=%s) \n"
2608                               " on output %zu, bailing out", __func__, productStrategy,
2609                               group, group, toString(attributes).c_str(),
2610                               client->volumeSource(), toString(client->attributes()).c_str(), i);
2611                         applyVolume = false;
2612                         isPreempted = true;
2613                         break;
2614                     }
2615                     // However, continue for loop to ensure no higher prio clients running on output
2616                     if (client->volumeSource() == vs) {
2617                         applyVolume = true;
2618                     }
2619                 }
2620                 if (isPreempted || applyVolume) {
2621                     break;
2622                 }
2623             }
2624             if (!applyVolume) {
2625                 continue; // next output
2626             }
2627         }
2628         //FIXME: workaround for truncated touch sounds
2629         // delayed volume change for system stream to be removed when the problem is
2630         // handled by system UI
2631         status_t volStatus = checkAndSetVolume(
2632                     curves, vs, index, desc, curDevices,
2633                     ((vs == toVolumeSource(AUDIO_STREAM_SYSTEM))?
2634                          TOUCH_SOUND_FIXED_DELAY_MS : 0));
2635         if (volStatus != NO_ERROR) {
2636             status = volStatus;
2637         }
2638     }
2639     mpClientInterface->onAudioVolumeGroupChanged(group, 0 /*flags*/);
2640     return status;
2641 }
2642 
setVolumeCurveIndex(int index,audio_devices_t device,IVolumeCurves & volumeCurves)2643 status_t AudioPolicyManager::setVolumeCurveIndex(int index,
2644                                                  audio_devices_t device,
2645                                                  IVolumeCurves &volumeCurves)
2646 {
2647     // VOICE_CALL stream has minVolumeIndex > 0  but can be muted directly by an
2648     // app that has MODIFY_PHONE_STATE permission.
2649     bool hasVoice = hasVoiceStream(volumeCurves.getStreamTypes());
2650     if (((index < volumeCurves.getVolumeIndexMin()) && !(hasVoice && index == 0)) ||
2651             (index > volumeCurves.getVolumeIndexMax())) {
2652         ALOGD("%s: wrong index %d min=%d max=%d", __FUNCTION__, index,
2653               volumeCurves.getVolumeIndexMin(), volumeCurves.getVolumeIndexMax());
2654         return BAD_VALUE;
2655     }
2656     if (!audio_is_output_device(device)) {
2657         return BAD_VALUE;
2658     }
2659 
2660     // Force max volume if stream cannot be muted
2661     if (!volumeCurves.canBeMuted()) index = volumeCurves.getVolumeIndexMax();
2662 
2663     ALOGV("%s device %08x, index %d", __FUNCTION__ , device, index);
2664     volumeCurves.addCurrentVolumeIndex(device, index);
2665     return NO_ERROR;
2666 }
2667 
getVolumeIndexForAttributes(const audio_attributes_t & attr,int & index,audio_devices_t device)2668 status_t AudioPolicyManager::getVolumeIndexForAttributes(const audio_attributes_t &attr,
2669                                                          int &index,
2670                                                          audio_devices_t device)
2671 {
2672     // if device is AUDIO_DEVICE_OUT_DEFAULT_FOR_VOLUME, return volume for device selected for this
2673     // stream by the engine.
2674     DeviceTypeSet deviceTypes = {device};
2675     if (device == AUDIO_DEVICE_OUT_DEFAULT_FOR_VOLUME) {
2676         DeviceTypeSet deviceTypes = mEngine->getOutputDevicesForAttributes(
2677                 attr, nullptr, true /*fromCache*/).types();
2678     }
2679     return getVolumeIndex(getVolumeCurves(attr), index, deviceTypes);
2680 }
2681 
getVolumeIndex(const IVolumeCurves & curves,int & index,const DeviceTypeSet & deviceTypes) const2682 status_t AudioPolicyManager::getVolumeIndex(const IVolumeCurves &curves,
2683                                             int &index,
2684                                             const DeviceTypeSet& deviceTypes) const
2685 {
2686     if (isSingleDeviceType(deviceTypes, audio_is_output_device)) {
2687         return BAD_VALUE;
2688     }
2689     index = curves.getVolumeIndex(deviceTypes);
2690     ALOGV("%s: device %s index %d", __FUNCTION__, dumpDeviceTypes(deviceTypes).c_str(), index);
2691     return NO_ERROR;
2692 }
2693 
getMinVolumeIndexForAttributes(const audio_attributes_t & attr,int & index)2694 status_t AudioPolicyManager::getMinVolumeIndexForAttributes(const audio_attributes_t &attr,
2695                                                             int &index)
2696 {
2697     index = getVolumeCurves(attr).getVolumeIndexMin();
2698     return NO_ERROR;
2699 }
2700 
getMaxVolumeIndexForAttributes(const audio_attributes_t & attr,int & index)2701 status_t AudioPolicyManager::getMaxVolumeIndexForAttributes(const audio_attributes_t &attr,
2702                                                             int &index)
2703 {
2704     index = getVolumeCurves(attr).getVolumeIndexMax();
2705     return NO_ERROR;
2706 }
2707 
selectOutputForMusicEffects()2708 audio_io_handle_t AudioPolicyManager::selectOutputForMusicEffects()
2709 {
2710     // select one output among several suitable for global effects.
2711     // The priority is as follows:
2712     // 1: An offloaded output. If the effect ends up not being offloadable,
2713     //    AudioFlinger will invalidate the track and the offloaded output
2714     //    will be closed causing the effect to be moved to a PCM output.
2715     // 2: A deep buffer output
2716     // 3: The primary output
2717     // 4: the first output in the list
2718 
2719     DeviceVector devices = mEngine->getOutputDevicesForAttributes(
2720                 attributes_initializer(AUDIO_USAGE_MEDIA), nullptr, false /*fromCache*/);
2721     SortedVector<audio_io_handle_t> outputs = getOutputsForDevices(devices, mOutputs);
2722 
2723     if (outputs.size() == 0) {
2724         return AUDIO_IO_HANDLE_NONE;
2725     }
2726 
2727     audio_io_handle_t output = AUDIO_IO_HANDLE_NONE;
2728     bool activeOnly = true;
2729 
2730     while (output == AUDIO_IO_HANDLE_NONE) {
2731         audio_io_handle_t outputOffloaded = AUDIO_IO_HANDLE_NONE;
2732         audio_io_handle_t outputDeepBuffer = AUDIO_IO_HANDLE_NONE;
2733         audio_io_handle_t outputPrimary = AUDIO_IO_HANDLE_NONE;
2734 
2735         for (audio_io_handle_t output : outputs) {
2736             sp<SwAudioOutputDescriptor> desc = mOutputs.valueFor(output);
2737             if (activeOnly && !desc->isActive(toVolumeSource(AUDIO_STREAM_MUSIC))) {
2738                 continue;
2739             }
2740             ALOGV("selectOutputForMusicEffects activeOnly %d output %d flags 0x%08x",
2741                   activeOnly, output, desc->mFlags);
2742             if ((desc->mFlags & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) != 0) {
2743                 outputOffloaded = output;
2744             }
2745             if ((desc->mFlags & AUDIO_OUTPUT_FLAG_DEEP_BUFFER) != 0) {
2746                 outputDeepBuffer = output;
2747             }
2748             if ((desc->mFlags & AUDIO_OUTPUT_FLAG_PRIMARY) != 0) {
2749                 outputPrimary = output;
2750             }
2751         }
2752         if (outputOffloaded != AUDIO_IO_HANDLE_NONE) {
2753             output = outputOffloaded;
2754         } else if (outputDeepBuffer != AUDIO_IO_HANDLE_NONE) {
2755             output = outputDeepBuffer;
2756         } else if (outputPrimary != AUDIO_IO_HANDLE_NONE) {
2757             output = outputPrimary;
2758         } else {
2759             output = outputs[0];
2760         }
2761         activeOnly = false;
2762     }
2763 
2764     if (output != mMusicEffectOutput) {
2765         mEffects.moveEffects(AUDIO_SESSION_OUTPUT_MIX, mMusicEffectOutput, output);
2766         mpClientInterface->moveEffects(AUDIO_SESSION_OUTPUT_MIX, mMusicEffectOutput, output);
2767         mMusicEffectOutput = output;
2768     }
2769 
2770     ALOGV("selectOutputForMusicEffects selected output %d", output);
2771     return output;
2772 }
2773 
getOutputForEffect(const effect_descriptor_t * desc __unused)2774 audio_io_handle_t AudioPolicyManager::getOutputForEffect(const effect_descriptor_t *desc __unused)
2775 {
2776     return selectOutputForMusicEffects();
2777 }
2778 
registerEffect(const effect_descriptor_t * desc,audio_io_handle_t io,uint32_t strategy,int session,int id)2779 status_t AudioPolicyManager::registerEffect(const effect_descriptor_t *desc,
2780                                 audio_io_handle_t io,
2781                                 uint32_t strategy,
2782                                 int session,
2783                                 int id)
2784 {
2785     if (session != AUDIO_SESSION_DEVICE) {
2786         ssize_t index = mOutputs.indexOfKey(io);
2787         if (index < 0) {
2788             index = mInputs.indexOfKey(io);
2789             if (index < 0) {
2790                 ALOGW("registerEffect() unknown io %d", io);
2791                 return INVALID_OPERATION;
2792             }
2793         }
2794     }
2795     return mEffects.registerEffect(desc, io, session, id,
2796                                    (strategy == streamToStrategy(AUDIO_STREAM_MUSIC) ||
2797                                    strategy == PRODUCT_STRATEGY_NONE));
2798 }
2799 
unregisterEffect(int id)2800 status_t AudioPolicyManager::unregisterEffect(int id)
2801 {
2802     if (mEffects.getEffect(id) == nullptr) {
2803         return INVALID_OPERATION;
2804     }
2805     if (mEffects.isEffectEnabled(id)) {
2806         ALOGW("%s effect %d enabled", __FUNCTION__, id);
2807         setEffectEnabled(id, false);
2808     }
2809     return mEffects.unregisterEffect(id);
2810 }
2811 
setEffectEnabled(int id,bool enabled)2812 status_t AudioPolicyManager::setEffectEnabled(int id, bool enabled)
2813 {
2814     sp<EffectDescriptor> effect = mEffects.getEffect(id);
2815     if (effect == nullptr) {
2816         return INVALID_OPERATION;
2817     }
2818 
2819     status_t status = mEffects.setEffectEnabled(id, enabled);
2820     if (status == NO_ERROR) {
2821         mInputs.trackEffectEnabled(effect, enabled);
2822     }
2823     return status;
2824 }
2825 
2826 
moveEffectsToIo(const std::vector<int> & ids,audio_io_handle_t io)2827 status_t AudioPolicyManager::moveEffectsToIo(const std::vector<int>& ids, audio_io_handle_t io)
2828 {
2829    mEffects.moveEffects(ids, io);
2830    return NO_ERROR;
2831 }
2832 
isStreamActive(audio_stream_type_t stream,uint32_t inPastMs) const2833 bool AudioPolicyManager::isStreamActive(audio_stream_type_t stream, uint32_t inPastMs) const
2834 {
2835     return mOutputs.isActive(toVolumeSource(stream), inPastMs);
2836 }
2837 
isStreamActiveRemotely(audio_stream_type_t stream,uint32_t inPastMs) const2838 bool AudioPolicyManager::isStreamActiveRemotely(audio_stream_type_t stream, uint32_t inPastMs) const
2839 {
2840     return mOutputs.isActiveRemotely(toVolumeSource(stream), inPastMs);
2841 }
2842 
isSourceActive(audio_source_t source) const2843 bool AudioPolicyManager::isSourceActive(audio_source_t source) const
2844 {
2845     for (size_t i = 0; i < mInputs.size(); i++) {
2846         const sp<AudioInputDescriptor>  inputDescriptor = mInputs.valueAt(i);
2847         if (inputDescriptor->isSourceActive(source)) {
2848             return true;
2849         }
2850     }
2851     return false;
2852 }
2853 
2854 // Register a list of custom mixes with their attributes and format.
2855 // When a mix is registered, corresponding input and output profiles are
2856 // added to the remote submix hw module. The profile contains only the
2857 // parameters (sampling rate, format...) specified by the mix.
2858 // The corresponding input remote submix device is also connected.
2859 //
2860 // When a remote submix device is connected, the address is checked to select the
2861 // appropriate profile and the corresponding input or output stream is opened.
2862 //
2863 // When capture starts, getInputForAttr() will:
2864 //  - 1 look for a mix matching the address passed in attribtutes tags if any
2865 //  - 2 if none found, getDeviceForInputSource() will:
2866 //     - 2.1 look for a mix matching the attributes source
2867 //     - 2.2 if none found, default to device selection by policy rules
2868 // At this time, the corresponding output remote submix device is also connected
2869 // and active playback use cases can be transferred to this mix if needed when reconnecting
2870 // after AudioTracks are invalidated
2871 //
2872 // When playback starts, getOutputForAttr() will:
2873 //  - 1 look for a mix matching the address passed in attribtutes tags if any
2874 //  - 2 if none found, look for a mix matching the attributes usage
2875 //  - 3 if none found, default to device and output selection by policy rules.
2876 
registerPolicyMixes(const Vector<AudioMix> & mixes)2877 status_t AudioPolicyManager::registerPolicyMixes(const Vector<AudioMix>& mixes)
2878 {
2879     ALOGV("registerPolicyMixes() %zu mix(es)", mixes.size());
2880     status_t res = NO_ERROR;
2881     bool checkOutputs = false;
2882     sp<HwModule> rSubmixModule;
2883     // examine each mix's route type
2884     for (size_t i = 0; i < mixes.size(); i++) {
2885         AudioMix mix = mixes[i];
2886         // Only capture of playback is allowed in LOOP_BACK & RENDER mode
2887         if (is_mix_loopback_render(mix.mRouteFlags) && mix.mMixType != MIX_TYPE_PLAYERS) {
2888             ALOGE("Unsupported Policy Mix %zu of %zu: "
2889                   "Only capture of playback is allowed in LOOP_BACK & RENDER mode",
2890                    i, mixes.size());
2891             res = INVALID_OPERATION;
2892             break;
2893         }
2894         // LOOP_BACK and LOOP_BACK | RENDER have the same remote submix backend and are handled
2895         // in the same way.
2896         if ((mix.mRouteFlags & MIX_ROUTE_FLAG_LOOP_BACK) == MIX_ROUTE_FLAG_LOOP_BACK) {
2897             ALOGV("registerPolicyMixes() mix %zu of %zu is LOOP_BACK %d", i, mixes.size(),
2898                   mix.mRouteFlags);
2899             if (rSubmixModule == 0) {
2900                 rSubmixModule = mHwModules.getModuleFromName(
2901                         AUDIO_HARDWARE_MODULE_ID_REMOTE_SUBMIX);
2902                 if (rSubmixModule == 0) {
2903                     ALOGE("Unable to find audio module for submix, aborting mix %zu registration",
2904                             i);
2905                     res = INVALID_OPERATION;
2906                     break;
2907                 }
2908             }
2909 
2910             String8 address = mix.mDeviceAddress;
2911             audio_devices_t deviceTypeToMakeAvailable;
2912             if (mix.mMixType == MIX_TYPE_PLAYERS) {
2913                 mix.mDeviceType = AUDIO_DEVICE_OUT_REMOTE_SUBMIX;
2914                 deviceTypeToMakeAvailable = AUDIO_DEVICE_IN_REMOTE_SUBMIX;
2915             } else {
2916                 mix.mDeviceType = AUDIO_DEVICE_IN_REMOTE_SUBMIX;
2917                 deviceTypeToMakeAvailable = AUDIO_DEVICE_OUT_REMOTE_SUBMIX;
2918             }
2919 
2920             if (mPolicyMixes.registerMix(mix, 0 /*output desc*/) != NO_ERROR) {
2921                 ALOGE("Error registering mix %zu for address %s", i, address.string());
2922                 res = INVALID_OPERATION;
2923                 break;
2924             }
2925             audio_config_t outputConfig = mix.mFormat;
2926             audio_config_t inputConfig = mix.mFormat;
2927             // NOTE: audio flinger mixer does not support mono output: configure remote submix HAL
2928             // in stereo and let audio flinger do the channel conversion if needed.
2929             outputConfig.channel_mask = AUDIO_CHANNEL_OUT_STEREO;
2930             inputConfig.channel_mask = AUDIO_CHANNEL_IN_STEREO;
2931             rSubmixModule->addOutputProfile(address.c_str(), &outputConfig,
2932                     AUDIO_DEVICE_OUT_REMOTE_SUBMIX, address);
2933             rSubmixModule->addInputProfile(address.c_str(), &inputConfig,
2934                     AUDIO_DEVICE_IN_REMOTE_SUBMIX, address);
2935 
2936             if ((res = setDeviceConnectionStateInt(deviceTypeToMakeAvailable,
2937                     AUDIO_POLICY_DEVICE_STATE_AVAILABLE,
2938                     address.string(), "remote-submix", AUDIO_FORMAT_DEFAULT)) != NO_ERROR) {
2939                 ALOGE("Failed to set remote submix device available, type %u, address %s",
2940                         mix.mDeviceType, address.string());
2941                 break;
2942             }
2943         } else if ((mix.mRouteFlags & MIX_ROUTE_FLAG_RENDER) == MIX_ROUTE_FLAG_RENDER) {
2944             String8 address = mix.mDeviceAddress;
2945             audio_devices_t type = mix.mDeviceType;
2946             ALOGV(" registerPolicyMixes() mix %zu of %zu is RENDER, dev=0x%X addr=%s",
2947                     i, mixes.size(), type, address.string());
2948 
2949             sp<DeviceDescriptor> device = mHwModules.getDeviceDescriptor(
2950                     mix.mDeviceType, mix.mDeviceAddress,
2951                     String8(), AUDIO_FORMAT_DEFAULT);
2952             if (device == nullptr) {
2953                 res = INVALID_OPERATION;
2954                 break;
2955             }
2956 
2957             bool foundOutput = false;
2958             // First try to find an already opened output supporting the device
2959             for (size_t j = 0 ; j < mOutputs.size() && !foundOutput && res == NO_ERROR; j++) {
2960                 sp<SwAudioOutputDescriptor> desc = mOutputs.valueAt(j);
2961 
2962                 if (!desc->isDuplicated() && desc->supportedDevices().contains(device)) {
2963                     if (mPolicyMixes.registerMix(mix, desc) != NO_ERROR) {
2964                         ALOGE("Could not register mix RENDER,  dev=0x%X addr=%s", type,
2965                               address.string());
2966                         res = INVALID_OPERATION;
2967                     } else {
2968                         foundOutput = true;
2969                     }
2970                 }
2971             }
2972             // If no output found, try to find a direct output profile supporting the device
2973             for (size_t i = 0; i < mHwModules.size() && !foundOutput && res == NO_ERROR; i++) {
2974                 sp<HwModule> module = mHwModules[i];
2975                 for (size_t j = 0;
2976                         j < module->getOutputProfiles().size() && !foundOutput && res == NO_ERROR;
2977                         j++) {
2978                     sp<IOProfile> profile = module->getOutputProfiles()[j];
2979                     if (profile->isDirectOutput() && profile->supportsDevice(device)) {
2980                         if (mPolicyMixes.registerMix(mix, nullptr) != NO_ERROR) {
2981                             ALOGE("Could not register mix RENDER,  dev=0x%X addr=%s", type,
2982                                   address.string());
2983                             res = INVALID_OPERATION;
2984                         } else {
2985                             foundOutput = true;
2986                         }
2987                     }
2988                 }
2989             }
2990             if (res != NO_ERROR) {
2991                 ALOGE(" Error registering mix %zu for device 0x%X addr %s",
2992                         i, type, address.string());
2993                 res = INVALID_OPERATION;
2994                 break;
2995             } else if (!foundOutput) {
2996                 ALOGE(" Output not found for mix %zu for device 0x%X addr %s",
2997                         i, type, address.string());
2998                 res = INVALID_OPERATION;
2999                 break;
3000             } else {
3001                 checkOutputs = true;
3002             }
3003         }
3004     }
3005     if (res != NO_ERROR) {
3006         unregisterPolicyMixes(mixes);
3007     } else if (checkOutputs) {
3008         checkForDeviceAndOutputChanges();
3009         updateCallAndOutputRouting();
3010     }
3011     return res;
3012 }
3013 
unregisterPolicyMixes(Vector<AudioMix> mixes)3014 status_t AudioPolicyManager::unregisterPolicyMixes(Vector<AudioMix> mixes)
3015 {
3016     ALOGV("unregisterPolicyMixes() num mixes %zu", mixes.size());
3017     status_t res = NO_ERROR;
3018     bool checkOutputs = false;
3019     sp<HwModule> rSubmixModule;
3020     // examine each mix's route type
3021     for (const auto& mix : mixes) {
3022         if ((mix.mRouteFlags & MIX_ROUTE_FLAG_LOOP_BACK) == MIX_ROUTE_FLAG_LOOP_BACK) {
3023 
3024             if (rSubmixModule == 0) {
3025                 rSubmixModule = mHwModules.getModuleFromName(
3026                         AUDIO_HARDWARE_MODULE_ID_REMOTE_SUBMIX);
3027                 if (rSubmixModule == 0) {
3028                     res = INVALID_OPERATION;
3029                     continue;
3030                 }
3031             }
3032 
3033             String8 address = mix.mDeviceAddress;
3034 
3035             if (mPolicyMixes.unregisterMix(mix) != NO_ERROR) {
3036                 res = INVALID_OPERATION;
3037                 continue;
3038             }
3039 
3040             for (auto device : {AUDIO_DEVICE_IN_REMOTE_SUBMIX, AUDIO_DEVICE_OUT_REMOTE_SUBMIX}) {
3041                 if (getDeviceConnectionState(device, address.string()) ==
3042                         AUDIO_POLICY_DEVICE_STATE_AVAILABLE)  {
3043                     res = setDeviceConnectionStateInt(device, AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE,
3044                                                       address.string(), "remote-submix",
3045                                                       AUDIO_FORMAT_DEFAULT);
3046                     if (res != OK) {
3047                         ALOGE("Error making RemoteSubmix device unavailable for mix "
3048                               "with type %d, address %s", device, address.string());
3049                     }
3050                 }
3051             }
3052             rSubmixModule->removeOutputProfile(address.c_str());
3053             rSubmixModule->removeInputProfile(address.c_str());
3054 
3055         } else if ((mix.mRouteFlags & MIX_ROUTE_FLAG_RENDER) == MIX_ROUTE_FLAG_RENDER) {
3056             if (mPolicyMixes.unregisterMix(mix) != NO_ERROR) {
3057                 res = INVALID_OPERATION;
3058                 continue;
3059             } else {
3060                 checkOutputs = true;
3061             }
3062         }
3063     }
3064     if (res == NO_ERROR && checkOutputs) {
3065         checkForDeviceAndOutputChanges();
3066         updateCallAndOutputRouting();
3067     }
3068     return res;
3069 }
3070 
dumpManualSurroundFormats(String8 * dst) const3071 void AudioPolicyManager::dumpManualSurroundFormats(String8 *dst) const
3072 {
3073     size_t i = 0;
3074     constexpr size_t audioFormatPrefixLen = sizeof("AUDIO_FORMAT_");
3075     for (const auto& fmt : mManualSurroundFormats) {
3076         if (i++ != 0) dst->append(", ");
3077         std::string sfmt;
3078         FormatConverter::toString(fmt, sfmt);
3079         dst->append(sfmt.size() >= audioFormatPrefixLen ?
3080                 sfmt.c_str() + audioFormatPrefixLen - 1 : sfmt.c_str());
3081     }
3082 }
3083 
3084 // Returns true if all devices types match the predicate and are supported by one HW module
areAllDevicesSupported(const Vector<AudioDeviceTypeAddr> & devices,std::function<bool (audio_devices_t)> predicate,const char * context)3085 bool  AudioPolicyManager::areAllDevicesSupported(
3086         const Vector<AudioDeviceTypeAddr>& devices,
3087         std::function<bool(audio_devices_t)> predicate,
3088         const char *context) {
3089     for (size_t i = 0; i < devices.size(); i++) {
3090         sp<DeviceDescriptor> devDesc = mHwModules.getDeviceDescriptor(
3091                 devices[i].mType, devices[i].mAddress.c_str(), String8(),
3092                 AUDIO_FORMAT_DEFAULT, false /*allowToCreate*/, true /*matchAddress*/);
3093         if (devDesc == nullptr || (predicate != nullptr && !predicate(devices[i].mType))) {
3094             ALOGE("%s: device type %#x address %s not supported or not an output device",
3095                     context, devices[i].mType, devices[i].mAddress.c_str());
3096             return false;
3097         }
3098     }
3099     return true;
3100 }
3101 
setUidDeviceAffinities(uid_t uid,const Vector<AudioDeviceTypeAddr> & devices)3102 status_t AudioPolicyManager::setUidDeviceAffinities(uid_t uid,
3103         const Vector<AudioDeviceTypeAddr>& devices) {
3104     ALOGV("%s() uid=%d num devices %zu", __FUNCTION__, uid, devices.size());
3105     if (!areAllDevicesSupported(devices, audio_is_output_device, __func__)) {
3106         return BAD_VALUE;
3107     }
3108     status_t res =  mPolicyMixes.setUidDeviceAffinities(uid, devices);
3109     if (res != NO_ERROR) {
3110         ALOGE("%s() Could not set all device affinities for uid = %d", __FUNCTION__, uid);
3111         return res;
3112     }
3113 
3114     checkForDeviceAndOutputChanges();
3115     updateCallAndOutputRouting();
3116 
3117     return NO_ERROR;
3118 }
3119 
removeUidDeviceAffinities(uid_t uid)3120 status_t AudioPolicyManager::removeUidDeviceAffinities(uid_t uid) {
3121     ALOGV("%s() uid=%d", __FUNCTION__, uid);
3122     status_t res = mPolicyMixes.removeUidDeviceAffinities(uid);
3123     if (res != NO_ERROR) {
3124         ALOGE("%s() Could not remove all device affinities for uid = %d",
3125             __FUNCTION__, uid);
3126         return INVALID_OPERATION;
3127     }
3128 
3129     checkForDeviceAndOutputChanges();
3130     updateCallAndOutputRouting();
3131 
3132     return res;
3133 }
3134 
setPreferredDeviceForStrategy(product_strategy_t strategy,const AudioDeviceTypeAddr & device)3135 status_t AudioPolicyManager::setPreferredDeviceForStrategy(product_strategy_t strategy,
3136                                                    const AudioDeviceTypeAddr &device) {
3137     ALOGV("%s() strategy=%d device=%08x addr=%s", __FUNCTION__,
3138             strategy, device.mType, device.mAddress.c_str());
3139 
3140     Vector<AudioDeviceTypeAddr> devices;
3141     devices.add(device);
3142     if (!areAllDevicesSupported(devices, audio_is_output_device, __func__)) {
3143         return BAD_VALUE;
3144     }
3145     status_t status = mEngine->setPreferredDeviceForStrategy(strategy, device);
3146     if (status != NO_ERROR) {
3147         ALOGW("Engine could not set preferred device %08x %s for strategy %d",
3148                 device.mType, device.mAddress.c_str(), strategy);
3149         return status;
3150     }
3151 
3152     checkForDeviceAndOutputChanges();
3153     updateCallAndOutputRouting();
3154 
3155     return NO_ERROR;
3156 }
3157 
updateCallAndOutputRouting(bool forceVolumeReeval,uint32_t delayMs)3158 void AudioPolicyManager::updateCallAndOutputRouting(bool forceVolumeReeval, uint32_t delayMs)
3159 {
3160     uint32_t waitMs = 0;
3161     if (mEngine->getPhoneState() == AUDIO_MODE_IN_CALL && hasPrimaryOutput()) {
3162         DeviceVector newDevices = getNewOutputDevices(mPrimaryOutput, true /*fromCache*/);
3163         waitMs = updateCallRouting(newDevices, delayMs);
3164     }
3165     for (size_t i = 0; i < mOutputs.size(); i++) {
3166         sp<SwAudioOutputDescriptor> outputDesc = mOutputs.valueAt(i);
3167         DeviceVector newDevices = getNewOutputDevices(outputDesc, true /*fromCache*/);
3168         if ((mEngine->getPhoneState() != AUDIO_MODE_IN_CALL) || (outputDesc != mPrimaryOutput)) {
3169             // As done in setDeviceConnectionState, we could also fix default device issue by
3170             // preventing the force re-routing in case of default dev that distinguishes on address.
3171             // Let's give back to engine full device choice decision however.
3172             waitMs = setOutputDevices(outputDesc, newDevices, !newDevices.isEmpty(), delayMs);
3173         }
3174         if (forceVolumeReeval && !newDevices.isEmpty()) {
3175             applyStreamVolumes(outputDesc, newDevices.types(), waitMs, true);
3176         }
3177     }
3178 }
3179 
removePreferredDeviceForStrategy(product_strategy_t strategy)3180 status_t AudioPolicyManager::removePreferredDeviceForStrategy(product_strategy_t strategy)
3181 {
3182     ALOGI("%s() strategy=%d", __FUNCTION__, strategy);
3183 
3184     status_t status = mEngine->removePreferredDeviceForStrategy(strategy);
3185     if (status != NO_ERROR) {
3186         ALOGW("Engine could not remove preferred device for strategy %d", strategy);
3187         return status;
3188     }
3189 
3190     checkForDeviceAndOutputChanges();
3191     updateCallAndOutputRouting();
3192 
3193     return NO_ERROR;
3194 }
3195 
getPreferredDeviceForStrategy(product_strategy_t strategy,AudioDeviceTypeAddr & device)3196 status_t AudioPolicyManager::getPreferredDeviceForStrategy(product_strategy_t strategy,
3197                                                    AudioDeviceTypeAddr &device) {
3198     return mEngine->getPreferredDeviceForStrategy(strategy, device);
3199 }
3200 
setUserIdDeviceAffinities(int userId,const Vector<AudioDeviceTypeAddr> & devices)3201 status_t AudioPolicyManager::setUserIdDeviceAffinities(int userId,
3202         const Vector<AudioDeviceTypeAddr>& devices) {
3203     ALOGI("%s() userId=%d num devices %zu", __FUNCTION__, userId, devices.size());\
3204     if (!areAllDevicesSupported(devices, audio_is_output_device, __func__)) {
3205         return BAD_VALUE;
3206     }
3207     status_t status =  mPolicyMixes.setUserIdDeviceAffinities(userId, devices);
3208     if (status != NO_ERROR) {
3209         ALOGE("%s() could not set device affinity for userId %d",
3210             __FUNCTION__, userId);
3211         return status;
3212     }
3213 
3214     // reevaluate outputs for all devices
3215     checkForDeviceAndOutputChanges();
3216     updateCallAndOutputRouting();
3217 
3218     return NO_ERROR;
3219 }
3220 
removeUserIdDeviceAffinities(int userId)3221 status_t AudioPolicyManager::removeUserIdDeviceAffinities(int userId) {
3222     ALOGI("%s() userId=%d", __FUNCTION__, userId);
3223     status_t status = mPolicyMixes.removeUserIdDeviceAffinities(userId);
3224     if (status != NO_ERROR) {
3225         ALOGE("%s() Could not remove all device affinities fo userId = %d",
3226             __FUNCTION__, userId);
3227         return status;
3228     }
3229 
3230     // reevaluate outputs for all devices
3231     checkForDeviceAndOutputChanges();
3232     updateCallAndOutputRouting();
3233 
3234     return NO_ERROR;
3235 }
3236 
dump(String8 * dst) const3237 void AudioPolicyManager::dump(String8 *dst) const
3238 {
3239     dst->appendFormat("\nAudioPolicyManager Dump: %p\n", this);
3240     dst->appendFormat(" Primary Output: %d\n",
3241              hasPrimaryOutput() ? mPrimaryOutput->mIoHandle : AUDIO_IO_HANDLE_NONE);
3242     std::string stateLiteral;
3243     AudioModeConverter::toString(mEngine->getPhoneState(), stateLiteral);
3244     dst->appendFormat(" Phone state: %s\n", stateLiteral.c_str());
3245     const char* forceUses[AUDIO_POLICY_FORCE_USE_CNT] = {
3246         "communications", "media", "record", "dock", "system",
3247         "HDMI system audio", "encoded surround output", "vibrate ringing" };
3248     for (audio_policy_force_use_t i = AUDIO_POLICY_FORCE_FOR_COMMUNICATION;
3249          i < AUDIO_POLICY_FORCE_USE_CNT; i = (audio_policy_force_use_t)((int)i + 1)) {
3250         audio_policy_forced_cfg_t forceUseValue = mEngine->getForceUse(i);
3251         dst->appendFormat(" Force use for %s: %d", forceUses[i], forceUseValue);
3252         if (i == AUDIO_POLICY_FORCE_FOR_ENCODED_SURROUND &&
3253                 forceUseValue == AUDIO_POLICY_FORCE_ENCODED_SURROUND_MANUAL) {
3254             dst->append(" (MANUAL: ");
3255             dumpManualSurroundFormats(dst);
3256             dst->append(")");
3257         }
3258         dst->append("\n");
3259     }
3260     dst->appendFormat(" TTS output %savailable\n", mTtsOutputAvailable ? "" : "not ");
3261     dst->appendFormat(" Master mono: %s\n", mMasterMono ? "on" : "off");
3262     dst->appendFormat(" Config source: %s\n", mConfig.getSource().c_str()); // getConfig not const
3263     mAvailableOutputDevices.dump(dst, String8("Available output"));
3264     mAvailableInputDevices.dump(dst, String8("Available input"));
3265     mHwModulesAll.dump(dst);
3266     mOutputs.dump(dst);
3267     mInputs.dump(dst);
3268     mEffects.dump(dst);
3269     mAudioPatches.dump(dst);
3270     mPolicyMixes.dump(dst);
3271     mAudioSources.dump(dst);
3272 
3273     dst->appendFormat(" AllowedCapturePolicies:\n");
3274     for (auto& policy : mAllowedCapturePolicies) {
3275         dst->appendFormat("   - uid=%d flag_mask=%#x\n", policy.first, policy.second);
3276     }
3277 
3278     dst->appendFormat("\nPolicy Engine dump:\n");
3279     mEngine->dump(dst);
3280 }
3281 
dump(int fd)3282 status_t AudioPolicyManager::dump(int fd)
3283 {
3284     String8 result;
3285     dump(&result);
3286     write(fd, result.string(), result.size());
3287     return NO_ERROR;
3288 }
3289 
setAllowedCapturePolicy(uid_t uid,audio_flags_mask_t capturePolicy)3290 status_t AudioPolicyManager::setAllowedCapturePolicy(uid_t uid, audio_flags_mask_t capturePolicy)
3291 {
3292     mAllowedCapturePolicies[uid] = capturePolicy;
3293     return NO_ERROR;
3294 }
3295 
3296 // This function checks for the parameters which can be offloaded.
3297 // This can be enhanced depending on the capability of the DSP and policy
3298 // of the system.
isOffloadSupported(const audio_offload_info_t & offloadInfo)3299 bool AudioPolicyManager::isOffloadSupported(const audio_offload_info_t& offloadInfo)
3300 {
3301     ALOGV("isOffloadSupported: SR=%u, CM=0x%x, Format=0x%x, StreamType=%d,"
3302      " BitRate=%u, duration=%" PRId64 " us, has_video=%d",
3303      offloadInfo.sample_rate, offloadInfo.channel_mask,
3304      offloadInfo.format,
3305      offloadInfo.stream_type, offloadInfo.bit_rate, offloadInfo.duration_us,
3306      offloadInfo.has_video);
3307 
3308     if (mMasterMono) {
3309         return false; // no offloading if mono is set.
3310     }
3311 
3312     // Check if offload has been disabled
3313     if (property_get_bool("audio.offload.disable", false /* default_value */)) {
3314         ALOGV("offload disabled by audio.offload.disable");
3315         return false;
3316     }
3317 
3318     // Check if stream type is music, then only allow offload as of now.
3319     if (offloadInfo.stream_type != AUDIO_STREAM_MUSIC)
3320     {
3321         ALOGV("isOffloadSupported: stream_type != MUSIC, returning false");
3322         return false;
3323     }
3324 
3325     //TODO: enable audio offloading with video when ready
3326     const bool allowOffloadWithVideo =
3327             property_get_bool("audio.offload.video", false /* default_value */);
3328     if (offloadInfo.has_video && !allowOffloadWithVideo) {
3329         ALOGV("isOffloadSupported: has_video == true, returning false");
3330         return false;
3331     }
3332 
3333     //If duration is less than minimum value defined in property, return false
3334     const int min_duration_secs = property_get_int32(
3335             "audio.offload.min.duration.secs", -1 /* default_value */);
3336     if (min_duration_secs >= 0) {
3337         if (offloadInfo.duration_us < min_duration_secs * 1000000LL) {
3338             ALOGV("Offload denied by duration < audio.offload.min.duration.secs(=%d)",
3339                     min_duration_secs);
3340             return false;
3341         }
3342     } else if (offloadInfo.duration_us < OFFLOAD_DEFAULT_MIN_DURATION_SECS * 1000000) {
3343         ALOGV("Offload denied by duration < default min(=%u)", OFFLOAD_DEFAULT_MIN_DURATION_SECS);
3344         return false;
3345     }
3346 
3347     // Do not allow offloading if one non offloadable effect is enabled. This prevents from
3348     // creating an offloaded track and tearing it down immediately after start when audioflinger
3349     // detects there is an active non offloadable effect.
3350     // FIXME: We should check the audio session here but we do not have it in this context.
3351     // This may prevent offloading in rare situations where effects are left active by apps
3352     // in the background.
3353     if (mEffects.isNonOffloadableEffectEnabled()) {
3354         return false;
3355     }
3356 
3357     // See if there is a profile to support this.
3358     // AUDIO_DEVICE_NONE
3359     sp<IOProfile> profile = getProfileForOutput(DeviceVector() /*ignore device */,
3360                                             offloadInfo.sample_rate,
3361                                             offloadInfo.format,
3362                                             offloadInfo.channel_mask,
3363                                             AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD,
3364                                             true /* directOnly */);
3365     ALOGV("isOffloadSupported() profile %sfound", profile != 0 ? "" : "NOT ");
3366     return (profile != 0);
3367 }
3368 
isDirectOutputSupported(const audio_config_base_t & config,const audio_attributes_t & attributes)3369 bool AudioPolicyManager::isDirectOutputSupported(const audio_config_base_t& config,
3370                                                  const audio_attributes_t& attributes) {
3371     audio_output_flags_t output_flags = AUDIO_OUTPUT_FLAG_NONE;
3372     audio_flags_to_audio_output_flags(attributes.flags, &output_flags);
3373     sp<IOProfile> profile = getProfileForOutput(DeviceVector() /*ignore device */,
3374                                             config.sample_rate,
3375                                             config.format,
3376                                             config.channel_mask,
3377                                             output_flags,
3378                                             true /* directOnly */);
3379     ALOGV("%s() profile %sfound with name: %s, "
3380         "sample rate: %u, format: 0x%x, channel_mask: 0x%x, output flags: 0x%x",
3381         __FUNCTION__, profile != 0 ? "" : "NOT ",
3382         (profile != 0 ? profile->getTagName().c_str() : "null"),
3383         config.sample_rate, config.format, config.channel_mask, output_flags);
3384     return (profile != 0);
3385 }
3386 
listAudioPorts(audio_port_role_t role,audio_port_type_t type,unsigned int * num_ports,struct audio_port * ports,unsigned int * generation)3387 status_t AudioPolicyManager::listAudioPorts(audio_port_role_t role,
3388                                             audio_port_type_t type,
3389                                             unsigned int *num_ports,
3390                                             struct audio_port *ports,
3391                                             unsigned int *generation)
3392 {
3393     if (num_ports == NULL || (*num_ports != 0 && ports == NULL) ||
3394             generation == NULL) {
3395         return BAD_VALUE;
3396     }
3397     ALOGV("listAudioPorts() role %d type %d num_ports %d ports %p", role, type, *num_ports, ports);
3398     if (ports == NULL) {
3399         *num_ports = 0;
3400     }
3401 
3402     size_t portsWritten = 0;
3403     size_t portsMax = *num_ports;
3404     *num_ports = 0;
3405     if (type == AUDIO_PORT_TYPE_NONE || type == AUDIO_PORT_TYPE_DEVICE) {
3406         // do not report devices with type AUDIO_DEVICE_IN_STUB or AUDIO_DEVICE_OUT_STUB
3407         // as they are used by stub HALs by convention
3408         if (role == AUDIO_PORT_ROLE_SINK || role == AUDIO_PORT_ROLE_NONE) {
3409             for (const auto& dev : mAvailableOutputDevices) {
3410                 if (dev->type() == AUDIO_DEVICE_OUT_STUB) {
3411                     continue;
3412                 }
3413                 if (portsWritten < portsMax) {
3414                     dev->toAudioPort(&ports[portsWritten++]);
3415                 }
3416                 (*num_ports)++;
3417             }
3418         }
3419         if (role == AUDIO_PORT_ROLE_SOURCE || role == AUDIO_PORT_ROLE_NONE) {
3420             for (const auto& dev : mAvailableInputDevices) {
3421                 if (dev->type() == AUDIO_DEVICE_IN_STUB) {
3422                     continue;
3423                 }
3424                 if (portsWritten < portsMax) {
3425                     dev->toAudioPort(&ports[portsWritten++]);
3426                 }
3427                 (*num_ports)++;
3428             }
3429         }
3430     }
3431     if (type == AUDIO_PORT_TYPE_NONE || type == AUDIO_PORT_TYPE_MIX) {
3432         if (role == AUDIO_PORT_ROLE_SINK || role == AUDIO_PORT_ROLE_NONE) {
3433             for (size_t i = 0; i < mInputs.size() && portsWritten < portsMax; i++) {
3434                 mInputs[i]->toAudioPort(&ports[portsWritten++]);
3435             }
3436             *num_ports += mInputs.size();
3437         }
3438         if (role == AUDIO_PORT_ROLE_SOURCE || role == AUDIO_PORT_ROLE_NONE) {
3439             size_t numOutputs = 0;
3440             for (size_t i = 0; i < mOutputs.size(); i++) {
3441                 if (!mOutputs[i]->isDuplicated()) {
3442                     numOutputs++;
3443                     if (portsWritten < portsMax) {
3444                         mOutputs[i]->toAudioPort(&ports[portsWritten++]);
3445                     }
3446                 }
3447             }
3448             *num_ports += numOutputs;
3449         }
3450     }
3451     *generation = curAudioPortGeneration();
3452     ALOGV("listAudioPorts() got %zu ports needed %d", portsWritten, *num_ports);
3453     return NO_ERROR;
3454 }
3455 
getAudioPort(struct audio_port * port)3456 status_t AudioPolicyManager::getAudioPort(struct audio_port *port)
3457 {
3458     if (port == nullptr || port->id == AUDIO_PORT_HANDLE_NONE) {
3459         return BAD_VALUE;
3460     }
3461     sp<DeviceDescriptor> dev = mAvailableOutputDevices.getDeviceFromId(port->id);
3462     if (dev != 0) {
3463         dev->toAudioPort(port);
3464         return NO_ERROR;
3465     }
3466     dev = mAvailableInputDevices.getDeviceFromId(port->id);
3467     if (dev != 0) {
3468         dev->toAudioPort(port);
3469         return NO_ERROR;
3470     }
3471     sp<SwAudioOutputDescriptor> out = mOutputs.getOutputFromId(port->id);
3472     if (out != 0) {
3473         out->toAudioPort(port);
3474         return NO_ERROR;
3475     }
3476     sp<AudioInputDescriptor> in = mInputs.getInputFromId(port->id);
3477     if (in != 0) {
3478         in->toAudioPort(port);
3479         return NO_ERROR;
3480     }
3481     return BAD_VALUE;
3482 }
3483 
createAudioPatchInternal(const struct audio_patch * patch,audio_patch_handle_t * handle,uid_t uid,uint32_t delayMs,const sp<SourceClientDescriptor> & sourceDesc)3484 status_t AudioPolicyManager::createAudioPatchInternal(const struct audio_patch *patch,
3485                                                       audio_patch_handle_t *handle,
3486                                                       uid_t uid, uint32_t delayMs,
3487                                                       const sp<SourceClientDescriptor>& sourceDesc)
3488 {
3489     ALOGV("%s", __func__);
3490     if (handle == NULL || patch == NULL) {
3491         return BAD_VALUE;
3492     }
3493     ALOGV("%s num sources %d num sinks %d", __func__, patch->num_sources, patch->num_sinks);
3494 
3495     if (!audio_patch_is_valid(patch)) {
3496         return BAD_VALUE;
3497     }
3498     // only one source per audio patch supported for now
3499     if (patch->num_sources > 1) {
3500         return INVALID_OPERATION;
3501     }
3502 
3503     if (patch->sources[0].role != AUDIO_PORT_ROLE_SOURCE) {
3504         return INVALID_OPERATION;
3505     }
3506     for (size_t i = 0; i < patch->num_sinks; i++) {
3507         if (patch->sinks[i].role != AUDIO_PORT_ROLE_SINK) {
3508             return INVALID_OPERATION;
3509         }
3510     }
3511 
3512     sp<AudioPatch> patchDesc;
3513     ssize_t index = mAudioPatches.indexOfKey(*handle);
3514 
3515     ALOGV("%s source id %d role %d type %d", __func__, patch->sources[0].id,
3516                                                        patch->sources[0].role,
3517                                                        patch->sources[0].type);
3518 #if LOG_NDEBUG == 0
3519     for (size_t i = 0; i < patch->num_sinks; i++) {
3520         ALOGV("%s sink %zu: id %d role %d type %d", __func__ ,i, patch->sinks[i].id,
3521                                                                  patch->sinks[i].role,
3522                                                                  patch->sinks[i].type);
3523     }
3524 #endif
3525 
3526     if (index >= 0) {
3527         patchDesc = mAudioPatches.valueAt(index);
3528         ALOGV("%s mUidCached %d patchDesc->mUid %d uid %d",
3529               __func__, mUidCached, patchDesc->getUid(), uid);
3530         if (patchDesc->getUid() != mUidCached && uid != patchDesc->getUid()) {
3531             return INVALID_OPERATION;
3532         }
3533     } else {
3534         *handle = AUDIO_PATCH_HANDLE_NONE;
3535     }
3536 
3537     if (patch->sources[0].type == AUDIO_PORT_TYPE_MIX) {
3538         sp<SwAudioOutputDescriptor> outputDesc = mOutputs.getOutputFromId(patch->sources[0].id);
3539         if (outputDesc == NULL) {
3540             ALOGV("%s output not found for id %d", __func__, patch->sources[0].id);
3541             return BAD_VALUE;
3542         }
3543         ALOG_ASSERT(!outputDesc->isDuplicated(),"duplicated output %d in source in ports",
3544                                                 outputDesc->mIoHandle);
3545         if (patchDesc != 0) {
3546             if (patchDesc->mPatch.sources[0].id != patch->sources[0].id) {
3547                 ALOGV("%s source id differs for patch current id %d new id %d",
3548                       __func__, patchDesc->mPatch.sources[0].id, patch->sources[0].id);
3549                 return BAD_VALUE;
3550             }
3551         }
3552         DeviceVector devices;
3553         for (size_t i = 0; i < patch->num_sinks; i++) {
3554             // Only support mix to devices connection
3555             // TODO add support for mix to mix connection
3556             if (patch->sinks[i].type != AUDIO_PORT_TYPE_DEVICE) {
3557                 ALOGV("%s source mix but sink is not a device", __func__);
3558                 return INVALID_OPERATION;
3559             }
3560             sp<DeviceDescriptor> devDesc =
3561                     mAvailableOutputDevices.getDeviceFromId(patch->sinks[i].id);
3562             if (devDesc == 0) {
3563                 ALOGV("%s out device not found for id %d", __func__, patch->sinks[i].id);
3564                 return BAD_VALUE;
3565             }
3566 
3567             if (!outputDesc->mProfile->isCompatibleProfile(DeviceVector(devDesc),
3568                                                            patch->sources[0].sample_rate,
3569                                                            NULL,  // updatedSamplingRate
3570                                                            patch->sources[0].format,
3571                                                            NULL,  // updatedFormat
3572                                                            patch->sources[0].channel_mask,
3573                                                            NULL,  // updatedChannelMask
3574                                                            AUDIO_OUTPUT_FLAG_NONE /*FIXME*/)) {
3575                 ALOGV("%s profile not supported for device %08x", __func__, devDesc->type());
3576                 return INVALID_OPERATION;
3577             }
3578             devices.add(devDesc);
3579         }
3580         if (devices.size() == 0) {
3581             return INVALID_OPERATION;
3582         }
3583 
3584         // TODO: reconfigure output format and channels here
3585         ALOGV("%s setting device %s on output %d",
3586               __func__, dumpDeviceTypes(devices.types()).c_str(), outputDesc->mIoHandle);
3587         setOutputDevices(outputDesc, devices, true, 0, handle);
3588         index = mAudioPatches.indexOfKey(*handle);
3589         if (index >= 0) {
3590             if (patchDesc != 0 && patchDesc != mAudioPatches.valueAt(index)) {
3591                 ALOGW("%s setOutputDevice() did not reuse the patch provided", __func__);
3592             }
3593             patchDesc = mAudioPatches.valueAt(index);
3594             patchDesc->setUid(uid);
3595             ALOGV("%s success", __func__);
3596         } else {
3597             ALOGW("%s setOutputDevice() failed to create a patch", __func__);
3598             return INVALID_OPERATION;
3599         }
3600     } else if (patch->sources[0].type == AUDIO_PORT_TYPE_DEVICE) {
3601         if (patch->sinks[0].type == AUDIO_PORT_TYPE_MIX) {
3602             // input device to input mix connection
3603             // only one sink supported when connecting an input device to a mix
3604             if (patch->num_sinks > 1) {
3605                 return INVALID_OPERATION;
3606             }
3607             sp<AudioInputDescriptor> inputDesc = mInputs.getInputFromId(patch->sinks[0].id);
3608             if (inputDesc == NULL) {
3609                 return BAD_VALUE;
3610             }
3611             if (patchDesc != 0) {
3612                 if (patchDesc->mPatch.sinks[0].id != patch->sinks[0].id) {
3613                     return BAD_VALUE;
3614                 }
3615             }
3616             sp<DeviceDescriptor> device =
3617                     mAvailableInputDevices.getDeviceFromId(patch->sources[0].id);
3618             if (device == 0) {
3619                 return BAD_VALUE;
3620             }
3621 
3622             if (!inputDesc->mProfile->isCompatibleProfile(DeviceVector(device),
3623                                                           patch->sinks[0].sample_rate,
3624                                                           NULL, /*updatedSampleRate*/
3625                                                           patch->sinks[0].format,
3626                                                           NULL, /*updatedFormat*/
3627                                                           patch->sinks[0].channel_mask,
3628                                                           NULL, /*updatedChannelMask*/
3629                                                           // FIXME for the parameter type,
3630                                                           // and the NONE
3631                                                           (audio_output_flags_t)
3632                                                             AUDIO_INPUT_FLAG_NONE)) {
3633                 return INVALID_OPERATION;
3634             }
3635             // TODO: reconfigure output format and channels here
3636             ALOGV("%s setting device %s on output %d", __func__,
3637                   device->toString().c_str(), inputDesc->mIoHandle);
3638             setInputDevice(inputDesc->mIoHandle, device, true, handle);
3639             index = mAudioPatches.indexOfKey(*handle);
3640             if (index >= 0) {
3641                 if (patchDesc != 0 && patchDesc != mAudioPatches.valueAt(index)) {
3642                     ALOGW("%s setInputDevice() did not reuse the patch provided", __func__);
3643                 }
3644                 patchDesc = mAudioPatches.valueAt(index);
3645                 patchDesc->setUid(uid);
3646                 ALOGV("%s success", __func__);
3647             } else {
3648                 ALOGW("%s setInputDevice() failed to create a patch", __func__);
3649                 return INVALID_OPERATION;
3650             }
3651         } else if (patch->sinks[0].type == AUDIO_PORT_TYPE_DEVICE) {
3652             // device to device connection
3653             if (patchDesc != 0) {
3654                 if (patchDesc->mPatch.sources[0].id != patch->sources[0].id) {
3655                     return BAD_VALUE;
3656                 }
3657             }
3658             sp<DeviceDescriptor> srcDevice =
3659                     mAvailableInputDevices.getDeviceFromId(patch->sources[0].id);
3660             if (srcDevice == 0) {
3661                 return BAD_VALUE;
3662             }
3663 
3664             //update source and sink with our own data as the data passed in the patch may
3665             // be incomplete.
3666             PatchBuilder patchBuilder;
3667             audio_port_config sourcePortConfig = {};
3668             srcDevice->toAudioPortConfig(&sourcePortConfig, &patch->sources[0]);
3669             patchBuilder.addSource(sourcePortConfig);
3670 
3671             for (size_t i = 0; i < patch->num_sinks; i++) {
3672                 if (patch->sinks[i].type != AUDIO_PORT_TYPE_DEVICE) {
3673                     ALOGV("%s source device but one sink is not a device", __func__);
3674                     return INVALID_OPERATION;
3675                 }
3676                 sp<DeviceDescriptor> sinkDevice =
3677                         mAvailableOutputDevices.getDeviceFromId(patch->sinks[i].id);
3678                 if (sinkDevice == 0) {
3679                     return BAD_VALUE;
3680                 }
3681                 audio_port_config sinkPortConfig = {};
3682                 sinkDevice->toAudioPortConfig(&sinkPortConfig, &patch->sinks[i]);
3683                 patchBuilder.addSink(sinkPortConfig);
3684 
3685                 // create a software bridge in PatchPanel if:
3686                 // - source and sink devices are on different HW modules OR
3687                 // - audio HAL version is < 3.0
3688                 // - audio HAL version is >= 3.0 but no route has been declared between devices
3689                 // - called from startAudioSource (aka sourceDesc != nullptr) and source device does
3690                 //   not have a gain controller
3691                 if (!srcDevice->hasSameHwModuleAs(sinkDevice) ||
3692                         (srcDevice->getModuleVersionMajor() < 3) ||
3693                         !srcDevice->getModule()->supportsPatch(srcDevice, sinkDevice) ||
3694                         (sourceDesc != nullptr &&
3695                          srcDevice->getAudioPort()->getGains().size() == 0)) {
3696                     // support only one sink device for now to simplify output selection logic
3697                     if (patch->num_sinks > 1) {
3698                         return INVALID_OPERATION;
3699                     }
3700                     audio_io_handle_t output = AUDIO_IO_HANDLE_NONE;
3701                     if (sourceDesc != nullptr) {
3702                         // take care of dynamic routing for SwOutput selection,
3703                         audio_attributes_t attributes = sourceDesc->attributes();
3704                         audio_stream_type_t stream = sourceDesc->stream();
3705                         audio_attributes_t resultAttr;
3706                         audio_config_t config = AUDIO_CONFIG_INITIALIZER;
3707                         config.sample_rate = sourceDesc->config().sample_rate;
3708                         config.channel_mask = sourceDesc->config().channel_mask;
3709                         config.format = sourceDesc->config().format;
3710                         audio_output_flags_t flags = AUDIO_OUTPUT_FLAG_NONE;
3711                         audio_port_handle_t selectedDeviceId = AUDIO_PORT_HANDLE_NONE;
3712                         bool isRequestedDeviceForExclusiveUse = false;
3713                         output_type_t outputType;
3714                         getOutputForAttrInt(&resultAttr, &output, AUDIO_SESSION_NONE, &attributes,
3715                                             &stream, sourceDesc->uid(), &config, &flags,
3716                                             &selectedDeviceId, &isRequestedDeviceForExclusiveUse,
3717                                             nullptr, &outputType);
3718                         if (output == AUDIO_IO_HANDLE_NONE) {
3719                             ALOGV("%s no output for device %s",
3720                                   __FUNCTION__, sinkDevice->toString().c_str());
3721                             return INVALID_OPERATION;
3722                         }
3723                     } else {
3724                         SortedVector<audio_io_handle_t> outputs =
3725                                 getOutputsForDevices(DeviceVector(sinkDevice), mOutputs);
3726                         // if the sink device is reachable via an opened output stream, request to
3727                         // go via this output stream by adding a second source to the patch
3728                         // description
3729                         output = selectOutput(outputs);
3730                     }
3731                     if (output != AUDIO_IO_HANDLE_NONE) {
3732                         sp<SwAudioOutputDescriptor> outputDesc = mOutputs.valueFor(output);
3733                         if (outputDesc->isDuplicated()) {
3734                             ALOGV("%s output for device %s is duplicated",
3735                                   __FUNCTION__, sinkDevice->toString().c_str());
3736                             return INVALID_OPERATION;
3737                         }
3738                         audio_port_config srcMixPortConfig = {};
3739                         outputDesc->toAudioPortConfig(&srcMixPortConfig, &patch->sources[0]);
3740                         if (sourceDesc != nullptr) {
3741                             sourceDesc->setSwOutput(outputDesc);
3742                         }
3743                         // for volume control, we may need a valid stream
3744                         srcMixPortConfig.ext.mix.usecase.stream = sourceDesc != nullptr ?
3745                                     sourceDesc->stream() : AUDIO_STREAM_PATCH;
3746                         patchBuilder.addSource(srcMixPortConfig);
3747                     }
3748                 }
3749             }
3750             // TODO: check from routing capabilities in config file and other conflicting patches
3751 
3752             status_t status = installPatch(
3753                         __func__, index, handle, patchBuilder.patch(), delayMs, uid, &patchDesc);
3754             if (status != NO_ERROR) {
3755                 ALOGW("%s patch panel could not connect device patch, error %d", __func__, status);
3756                 return INVALID_OPERATION;
3757             }
3758         } else {
3759             return BAD_VALUE;
3760         }
3761     } else {
3762         return BAD_VALUE;
3763     }
3764     return NO_ERROR;
3765 }
3766 
releaseAudioPatch(audio_patch_handle_t handle,uid_t uid)3767 status_t AudioPolicyManager::releaseAudioPatch(audio_patch_handle_t handle,
3768                                                   uid_t uid)
3769 {
3770     ALOGV("releaseAudioPatch() patch %d", handle);
3771 
3772     ssize_t index = mAudioPatches.indexOfKey(handle);
3773 
3774     if (index < 0) {
3775         return BAD_VALUE;
3776     }
3777     sp<AudioPatch> patchDesc = mAudioPatches.valueAt(index);
3778     ALOGV("%s() mUidCached %d patchDesc->mUid %d uid %d",
3779           __func__, mUidCached, patchDesc->getUid(), uid);
3780     if (patchDesc->getUid() != mUidCached && uid != patchDesc->getUid()) {
3781         return INVALID_OPERATION;
3782     }
3783     return releaseAudioPatchInternal(handle);
3784 }
3785 
releaseAudioPatchInternal(audio_patch_handle_t handle,uint32_t delayMs)3786 status_t AudioPolicyManager::releaseAudioPatchInternal(audio_patch_handle_t handle,
3787                                                        uint32_t delayMs)
3788 {
3789     ALOGV("%s patch %d", __func__, handle);
3790     if (mAudioPatches.indexOfKey(handle) < 0) {
3791         ALOGE("%s: no patch found with handle=%d", __func__, handle);
3792         return BAD_VALUE;
3793     }
3794     sp<AudioPatch> patchDesc = mAudioPatches.valueFor(handle);
3795     struct audio_patch *patch = &patchDesc->mPatch;
3796     patchDesc->setUid(mUidCached);
3797     if (patch->sources[0].type == AUDIO_PORT_TYPE_MIX) {
3798         sp<SwAudioOutputDescriptor> outputDesc = mOutputs.getOutputFromId(patch->sources[0].id);
3799         if (outputDesc == NULL) {
3800             ALOGV("%s output not found for id %d", __func__, patch->sources[0].id);
3801             return BAD_VALUE;
3802         }
3803 
3804         setOutputDevices(outputDesc,
3805                          getNewOutputDevices(outputDesc, true /*fromCache*/),
3806                          true,
3807                          0,
3808                          NULL);
3809     } else if (patch->sources[0].type == AUDIO_PORT_TYPE_DEVICE) {
3810         if (patch->sinks[0].type == AUDIO_PORT_TYPE_MIX) {
3811             sp<AudioInputDescriptor> inputDesc = mInputs.getInputFromId(patch->sinks[0].id);
3812             if (inputDesc == NULL) {
3813                 ALOGV("%s input not found for id %d", __func__, patch->sinks[0].id);
3814                 return BAD_VALUE;
3815             }
3816             setInputDevice(inputDesc->mIoHandle,
3817                            getNewInputDevice(inputDesc),
3818                            true,
3819                            NULL);
3820         } else if (patch->sinks[0].type == AUDIO_PORT_TYPE_DEVICE) {
3821             status_t status =
3822                     mpClientInterface->releaseAudioPatch(patchDesc->getAfHandle(), delayMs);
3823             ALOGV("%s patch panel returned %d patchHandle %d",
3824                   __func__, status, patchDesc->getAfHandle());
3825             removeAudioPatch(patchDesc->getHandle());
3826             nextAudioPortGeneration();
3827             mpClientInterface->onAudioPatchListUpdate();
3828             // SW Bridge
3829             if (patch->num_sources > 1 && patch->sources[1].type == AUDIO_PORT_TYPE_MIX) {
3830                 sp<SwAudioOutputDescriptor> outputDesc =
3831                         mOutputs.getOutputFromId(patch->sources[1].id);
3832                 if (outputDesc == NULL) {
3833                     ALOGE("%s output not found for id %d", __func__, patch->sources[0].id);
3834                     return BAD_VALUE;
3835                 }
3836                 if (patchDesc->getHandle() != outputDesc->getPatchHandle()) {
3837                     // force SwOutput patch removal as AF counter part patch has already gone.
3838                     ALOGV("%s reset patch handle on Output as different from SWBridge", __func__);
3839                     removeAudioPatch(outputDesc->getPatchHandle());
3840                 }
3841                 outputDesc->setPatchHandle(AUDIO_PATCH_HANDLE_NONE);
3842                 setOutputDevices(outputDesc,
3843                                  getNewOutputDevices(outputDesc, true /*fromCache*/),
3844                                  true, /*force*/
3845                                  0,
3846                                  NULL);
3847             }
3848         } else {
3849             return BAD_VALUE;
3850         }
3851     } else {
3852         return BAD_VALUE;
3853     }
3854     return NO_ERROR;
3855 }
3856 
listAudioPatches(unsigned int * num_patches,struct audio_patch * patches,unsigned int * generation)3857 status_t AudioPolicyManager::listAudioPatches(unsigned int *num_patches,
3858                                               struct audio_patch *patches,
3859                                               unsigned int *generation)
3860 {
3861     if (generation == NULL) {
3862         return BAD_VALUE;
3863     }
3864     *generation = curAudioPortGeneration();
3865     return mAudioPatches.listAudioPatches(num_patches, patches);
3866 }
3867 
setAudioPortConfig(const struct audio_port_config * config)3868 status_t AudioPolicyManager::setAudioPortConfig(const struct audio_port_config *config)
3869 {
3870     ALOGV("setAudioPortConfig()");
3871 
3872     if (config == NULL) {
3873         return BAD_VALUE;
3874     }
3875     ALOGV("setAudioPortConfig() on port handle %d", config->id);
3876     // Only support gain configuration for now
3877     if (config->config_mask != AUDIO_PORT_CONFIG_GAIN) {
3878         return INVALID_OPERATION;
3879     }
3880 
3881     sp<AudioPortConfig> audioPortConfig;
3882     if (config->type == AUDIO_PORT_TYPE_MIX) {
3883         if (config->role == AUDIO_PORT_ROLE_SOURCE) {
3884             sp<SwAudioOutputDescriptor> outputDesc = mOutputs.getOutputFromId(config->id);
3885             if (outputDesc == NULL) {
3886                 return BAD_VALUE;
3887             }
3888             ALOG_ASSERT(!outputDesc->isDuplicated(),
3889                         "setAudioPortConfig() called on duplicated output %d",
3890                         outputDesc->mIoHandle);
3891             audioPortConfig = outputDesc;
3892         } else if (config->role == AUDIO_PORT_ROLE_SINK) {
3893             sp<AudioInputDescriptor> inputDesc = mInputs.getInputFromId(config->id);
3894             if (inputDesc == NULL) {
3895                 return BAD_VALUE;
3896             }
3897             audioPortConfig = inputDesc;
3898         } else {
3899             return BAD_VALUE;
3900         }
3901     } else if (config->type == AUDIO_PORT_TYPE_DEVICE) {
3902         sp<DeviceDescriptor> deviceDesc;
3903         if (config->role == AUDIO_PORT_ROLE_SOURCE) {
3904             deviceDesc = mAvailableInputDevices.getDeviceFromId(config->id);
3905         } else if (config->role == AUDIO_PORT_ROLE_SINK) {
3906             deviceDesc = mAvailableOutputDevices.getDeviceFromId(config->id);
3907         } else {
3908             return BAD_VALUE;
3909         }
3910         if (deviceDesc == NULL) {
3911             return BAD_VALUE;
3912         }
3913         audioPortConfig = deviceDesc;
3914     } else {
3915         return BAD_VALUE;
3916     }
3917 
3918     struct audio_port_config backupConfig = {};
3919     status_t status = audioPortConfig->applyAudioPortConfig(config, &backupConfig);
3920     if (status == NO_ERROR) {
3921         struct audio_port_config newConfig = {};
3922         audioPortConfig->toAudioPortConfig(&newConfig, config);
3923         status = mpClientInterface->setAudioPortConfig(&newConfig, 0);
3924     }
3925     if (status != NO_ERROR) {
3926         audioPortConfig->applyAudioPortConfig(&backupConfig);
3927     }
3928 
3929     return status;
3930 }
3931 
releaseResourcesForUid(uid_t uid)3932 void AudioPolicyManager::releaseResourcesForUid(uid_t uid)
3933 {
3934     clearAudioSources(uid);
3935     clearAudioPatches(uid);
3936     clearSessionRoutes(uid);
3937 }
3938 
clearAudioPatches(uid_t uid)3939 void AudioPolicyManager::clearAudioPatches(uid_t uid)
3940 {
3941     for (ssize_t i = (ssize_t)mAudioPatches.size() - 1; i >= 0; i--)  {
3942         sp<AudioPatch> patchDesc = mAudioPatches.valueAt(i);
3943         if (patchDesc->getUid() == uid) {
3944             releaseAudioPatch(mAudioPatches.keyAt(i), uid);
3945         }
3946     }
3947 }
3948 
checkStrategyRoute(product_strategy_t ps,audio_io_handle_t ouptutToSkip)3949 void AudioPolicyManager::checkStrategyRoute(product_strategy_t ps, audio_io_handle_t ouptutToSkip)
3950 {
3951     // Take the first attributes following the product strategy as it is used to retrieve the routed
3952     // device. All attributes wihin a strategy follows the same "routing strategy"
3953     auto attributes = mEngine->getAllAttributesForProductStrategy(ps).front();
3954     DeviceVector devices = mEngine->getOutputDevicesForAttributes(attributes, nullptr, false);
3955     SortedVector<audio_io_handle_t> outputs = getOutputsForDevices(devices, mOutputs);
3956     for (size_t j = 0; j < mOutputs.size(); j++) {
3957         if (mOutputs.keyAt(j) == ouptutToSkip) {
3958             continue;
3959         }
3960         sp<SwAudioOutputDescriptor> outputDesc = mOutputs.valueAt(j);
3961         if (!outputDesc->isStrategyActive(ps)) {
3962             continue;
3963         }
3964         // If the default device for this strategy is on another output mix,
3965         // invalidate all tracks in this strategy to force re connection.
3966         // Otherwise select new device on the output mix.
3967         if (outputs.indexOf(mOutputs.keyAt(j)) < 0) {
3968             for (auto stream : mEngine->getStreamTypesForProductStrategy(ps)) {
3969                 mpClientInterface->invalidateStream(stream);
3970             }
3971         } else {
3972             setOutputDevices(
3973                         outputDesc, getNewOutputDevices(outputDesc, false /*fromCache*/), false);
3974         }
3975     }
3976 }
3977 
clearSessionRoutes(uid_t uid)3978 void AudioPolicyManager::clearSessionRoutes(uid_t uid)
3979 {
3980     // remove output routes associated with this uid
3981     std::vector<product_strategy_t> affectedStrategies;
3982     for (size_t i = 0; i < mOutputs.size(); i++) {
3983         sp<AudioOutputDescriptor> outputDesc = mOutputs.valueAt(i);
3984         for (const auto& client : outputDesc->getClientIterable()) {
3985             if (client->hasPreferredDevice() && client->uid() == uid) {
3986                 client->setPreferredDeviceId(AUDIO_PORT_HANDLE_NONE);
3987                 auto clientStrategy = client->strategy();
3988                 if (std::find(begin(affectedStrategies), end(affectedStrategies), clientStrategy) !=
3989                         end(affectedStrategies)) {
3990                     continue;
3991                 }
3992                 affectedStrategies.push_back(client->strategy());
3993             }
3994         }
3995     }
3996     // reroute outputs if necessary
3997     for (const auto& strategy : affectedStrategies) {
3998         checkStrategyRoute(strategy, AUDIO_IO_HANDLE_NONE);
3999     }
4000 
4001     // remove input routes associated with this uid
4002     SortedVector<audio_source_t> affectedSources;
4003     for (size_t i = 0; i < mInputs.size(); i++) {
4004         sp<AudioInputDescriptor> inputDesc = mInputs.valueAt(i);
4005         for (const auto& client : inputDesc->getClientIterable()) {
4006             if (client->hasPreferredDevice() && client->uid() == uid) {
4007                 client->setPreferredDeviceId(AUDIO_PORT_HANDLE_NONE);
4008                 affectedSources.add(client->source());
4009             }
4010         }
4011     }
4012     // reroute inputs if necessary
4013     SortedVector<audio_io_handle_t> inputsToClose;
4014     for (size_t i = 0; i < mInputs.size(); i++) {
4015         sp<AudioInputDescriptor> inputDesc = mInputs.valueAt(i);
4016         if (affectedSources.indexOf(inputDesc->source()) >= 0) {
4017             inputsToClose.add(inputDesc->mIoHandle);
4018         }
4019     }
4020     for (const auto& input : inputsToClose) {
4021         closeInput(input);
4022     }
4023 }
4024 
clearAudioSources(uid_t uid)4025 void AudioPolicyManager::clearAudioSources(uid_t uid)
4026 {
4027     for (ssize_t i = (ssize_t)mAudioSources.size() - 1; i >= 0; i--)  {
4028         sp<SourceClientDescriptor> sourceDesc = mAudioSources.valueAt(i);
4029         if (sourceDesc->uid() == uid) {
4030             stopAudioSource(mAudioSources.keyAt(i));
4031         }
4032     }
4033 }
4034 
acquireSoundTriggerSession(audio_session_t * session,audio_io_handle_t * ioHandle,audio_devices_t * device)4035 status_t AudioPolicyManager::acquireSoundTriggerSession(audio_session_t *session,
4036                                        audio_io_handle_t *ioHandle,
4037                                        audio_devices_t *device)
4038 {
4039     *session = (audio_session_t)mpClientInterface->newAudioUniqueId(AUDIO_UNIQUE_ID_USE_SESSION);
4040     *ioHandle = (audio_io_handle_t)mpClientInterface->newAudioUniqueId(AUDIO_UNIQUE_ID_USE_INPUT);
4041     audio_attributes_t attr = { .source = AUDIO_SOURCE_HOTWORD };
4042     *device = mEngine->getInputDeviceForAttributes(attr)->type();
4043 
4044     return mSoundTriggerSessions.acquireSession(*session, *ioHandle);
4045 }
4046 
startAudioSource(const struct audio_port_config * source,const audio_attributes_t * attributes,audio_port_handle_t * portId,uid_t uid)4047 status_t AudioPolicyManager::startAudioSource(const struct audio_port_config *source,
4048                                               const audio_attributes_t *attributes,
4049                                               audio_port_handle_t *portId,
4050                                               uid_t uid)
4051 {
4052     ALOGV("%s", __FUNCTION__);
4053     *portId = AUDIO_PORT_HANDLE_NONE;
4054 
4055     if (source == NULL || attributes == NULL || portId == NULL) {
4056         ALOGW("%s invalid argument: source %p attributes %p handle %p",
4057               __FUNCTION__, source, attributes, portId);
4058         return BAD_VALUE;
4059     }
4060 
4061     if (source->role != AUDIO_PORT_ROLE_SOURCE ||
4062             source->type != AUDIO_PORT_TYPE_DEVICE) {
4063         ALOGW("%s INVALID_OPERATION source->role %d source->type %d",
4064               __FUNCTION__, source->role, source->type);
4065         return INVALID_OPERATION;
4066     }
4067 
4068     sp<DeviceDescriptor> srcDevice =
4069             mAvailableInputDevices.getDevice(source->ext.device.type,
4070                                              String8(source->ext.device.address),
4071                                              AUDIO_FORMAT_DEFAULT);
4072     if (srcDevice == 0) {
4073         ALOGW("%s source->ext.device.type %08x not found", __FUNCTION__, source->ext.device.type);
4074         return BAD_VALUE;
4075     }
4076 
4077     *portId = PolicyAudioPort::getNextUniqueId();
4078 
4079     sp<SourceClientDescriptor> sourceDesc =
4080         new SourceClientDescriptor(*portId, uid, *attributes, *source, srcDevice,
4081                                    mEngine->getStreamTypeForAttributes(*attributes),
4082                                    mEngine->getProductStrategyForAttributes(*attributes),
4083                                    toVolumeSource(*attributes));
4084 
4085     status_t status = connectAudioSource(sourceDesc);
4086     if (status == NO_ERROR) {
4087         mAudioSources.add(*portId, sourceDesc);
4088     }
4089     return status;
4090 }
4091 
connectAudioSource(const sp<SourceClientDescriptor> & sourceDesc)4092 status_t AudioPolicyManager::connectAudioSource(const sp<SourceClientDescriptor>& sourceDesc)
4093 {
4094     ALOGV("%s handle %d", __FUNCTION__, sourceDesc->portId());
4095 
4096     // make sure we only have one patch per source.
4097     disconnectAudioSource(sourceDesc);
4098 
4099     audio_attributes_t attributes = sourceDesc->attributes();
4100     sp<DeviceDescriptor> srcDevice = sourceDesc->srcDevice();
4101 
4102     DeviceVector sinkDevices =
4103             mEngine->getOutputDevicesForAttributes(attributes, nullptr, true);
4104     ALOG_ASSERT(!sinkDevices.isEmpty(), "connectAudioSource(): no device found for attributes");
4105     sp<DeviceDescriptor> sinkDevice = sinkDevices.itemAt(0);
4106     ALOG_ASSERT(mAvailableOutputDevices.contains(sinkDevice), "%s: Device %s not available",
4107                 __FUNCTION__, sinkDevice->toString().c_str());
4108 
4109     PatchBuilder patchBuilder;
4110     patchBuilder.addSink(sinkDevice).addSource(srcDevice);
4111     audio_patch_handle_t handle = AUDIO_PATCH_HANDLE_NONE;
4112     status_t status =
4113             createAudioPatchInternal(patchBuilder.patch(), &handle, mUidCached, 0, sourceDesc);
4114     if (status != NO_ERROR || mAudioPatches.indexOfKey(handle) < 0) {
4115         ALOGW("%s patch panel could not connect device patch, error %d", __func__, status);
4116         return INVALID_OPERATION;
4117     }
4118     sourceDesc->setPatchHandle(handle);
4119     // SW Bridge? (@todo: HW bridge, keep track of HwOutput for device selection "reconsideration")
4120     sp<SwAudioOutputDescriptor> swOutput = sourceDesc->swOutput().promote();
4121     if (swOutput != 0) {
4122         status = swOutput->start();
4123         if (status != NO_ERROR) {
4124             goto FailureSourceAdded;
4125         }
4126         if (swOutput->getClient(sourceDesc->portId()) != nullptr) {
4127             ALOGW("%s source portId has already been attached to outputDesc", __func__);
4128             goto FailureReleasePatch;
4129         }
4130         swOutput->addClient(sourceDesc);
4131         uint32_t delayMs = 0;
4132         status = startSource(swOutput, sourceDesc, &delayMs);
4133         if (status != NO_ERROR) {
4134             ALOGW("%s failed to start source, error %d", __FUNCTION__, status);
4135             goto FailureSourceActive;
4136         }
4137         if (delayMs != 0) {
4138             usleep(delayMs * 1000);
4139         }
4140     } else {
4141         sp<HwAudioOutputDescriptor> hwOutputDesc = sourceDesc->hwOutput().promote();
4142         if (hwOutputDesc != 0) {
4143           //   create Hwoutput and add to mHwOutputs
4144         } else {
4145             ALOGW("%s source has neither SW nor HW output", __FUNCTION__);
4146         }
4147     }
4148     return NO_ERROR;
4149 
4150 FailureSourceActive:
4151     swOutput->stop();
4152     releaseOutput(sourceDesc->portId());
4153 FailureSourceAdded:
4154     sourceDesc->setSwOutput(nullptr);
4155 FailureReleasePatch:
4156     releaseAudioPatchInternal(handle);
4157     return INVALID_OPERATION;
4158 }
4159 
stopAudioSource(audio_port_handle_t portId)4160 status_t AudioPolicyManager::stopAudioSource(audio_port_handle_t portId)
4161 {
4162     sp<SourceClientDescriptor> sourceDesc = mAudioSources.valueFor(portId);
4163     ALOGV("%s port ID %d", __FUNCTION__, portId);
4164     if (sourceDesc == 0) {
4165         ALOGW("%s unknown source for port ID %d", __FUNCTION__, portId);
4166         return BAD_VALUE;
4167     }
4168     status_t status = disconnectAudioSource(sourceDesc);
4169 
4170     mAudioSources.removeItem(portId);
4171     return status;
4172 }
4173 
setMasterMono(bool mono)4174 status_t AudioPolicyManager::setMasterMono(bool mono)
4175 {
4176     if (mMasterMono == mono) {
4177         return NO_ERROR;
4178     }
4179     mMasterMono = mono;
4180     // if enabling mono we close all offloaded devices, which will invalidate the
4181     // corresponding AudioTrack. The AudioTrack client/MediaPlayer is responsible
4182     // for recreating the new AudioTrack as non-offloaded PCM.
4183     //
4184     // If disabling mono, we leave all tracks as is: we don't know which clients
4185     // and tracks are able to be recreated as offloaded. The next "song" should
4186     // play back offloaded.
4187     if (mMasterMono) {
4188         Vector<audio_io_handle_t> offloaded;
4189         for (size_t i = 0; i < mOutputs.size(); ++i) {
4190             sp<SwAudioOutputDescriptor> desc = mOutputs.valueAt(i);
4191             if (desc->mFlags & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) {
4192                 offloaded.push(desc->mIoHandle);
4193             }
4194         }
4195         for (const auto& handle : offloaded) {
4196             closeOutput(handle);
4197         }
4198     }
4199     // update master mono for all remaining outputs
4200     for (size_t i = 0; i < mOutputs.size(); ++i) {
4201         updateMono(mOutputs.keyAt(i));
4202     }
4203     return NO_ERROR;
4204 }
4205 
getMasterMono(bool * mono)4206 status_t AudioPolicyManager::getMasterMono(bool *mono)
4207 {
4208     *mono = mMasterMono;
4209     return NO_ERROR;
4210 }
4211 
getStreamVolumeDB(audio_stream_type_t stream,int index,audio_devices_t device)4212 float AudioPolicyManager::getStreamVolumeDB(
4213         audio_stream_type_t stream, int index, audio_devices_t device)
4214 {
4215     return computeVolume(getVolumeCurves(stream), toVolumeSource(stream), index, {device});
4216 }
4217 
getSurroundFormats(unsigned int * numSurroundFormats,audio_format_t * surroundFormats,bool * surroundFormatsEnabled,bool reported)4218 status_t AudioPolicyManager::getSurroundFormats(unsigned int *numSurroundFormats,
4219                                                 audio_format_t *surroundFormats,
4220                                                 bool *surroundFormatsEnabled,
4221                                                 bool reported)
4222 {
4223     if (numSurroundFormats == NULL || (*numSurroundFormats != 0 &&
4224             (surroundFormats == NULL || surroundFormatsEnabled == NULL))) {
4225         return BAD_VALUE;
4226     }
4227     ALOGV("%s() numSurroundFormats %d surroundFormats %p surroundFormatsEnabled %p reported %d",
4228             __func__, *numSurroundFormats, surroundFormats, surroundFormatsEnabled, reported);
4229 
4230     size_t formatsWritten = 0;
4231     size_t formatsMax = *numSurroundFormats;
4232     std::unordered_set<audio_format_t> formats; // Uses primary surround formats only
4233     if (reported) {
4234         // Return formats from all device profiles that have already been resolved by
4235         // checkOutputsForDevice().
4236         for (size_t i = 0; i < mAvailableOutputDevices.size(); i++) {
4237             sp<DeviceDescriptor> device = mAvailableOutputDevices[i];
4238             FormatVector supportedFormats =
4239                     device->getAudioPort()->getAudioProfiles().getSupportedFormats();
4240             for (size_t j = 0; j < supportedFormats.size(); j++) {
4241                 if (mConfig.getSurroundFormats().count(supportedFormats[j]) != 0) {
4242                     formats.insert(supportedFormats[j]);
4243                 } else {
4244                     for (const auto& pair : mConfig.getSurroundFormats()) {
4245                         if (pair.second.count(supportedFormats[j]) != 0) {
4246                             formats.insert(pair.first);
4247                             break;
4248                         }
4249                     }
4250                 }
4251             }
4252         }
4253     } else {
4254         for (const auto& pair : mConfig.getSurroundFormats()) {
4255             formats.insert(pair.first);
4256         }
4257     }
4258     *numSurroundFormats = formats.size();
4259     audio_policy_forced_cfg_t forceUse = mEngine->getForceUse(
4260             AUDIO_POLICY_FORCE_FOR_ENCODED_SURROUND);
4261     for (const auto& format: formats) {
4262         if (formatsWritten < formatsMax) {
4263             surroundFormats[formatsWritten] = format;
4264             bool formatEnabled = true;
4265             switch (forceUse) {
4266                 case AUDIO_POLICY_FORCE_ENCODED_SURROUND_MANUAL:
4267                     formatEnabled = mManualSurroundFormats.count(format) != 0;
4268                     break;
4269                 case AUDIO_POLICY_FORCE_ENCODED_SURROUND_NEVER:
4270                     formatEnabled = false;
4271                     break;
4272                 default: // AUTO or ALWAYS => true
4273                     break;
4274             }
4275             surroundFormatsEnabled[formatsWritten++] = formatEnabled;
4276         }
4277     }
4278     return NO_ERROR;
4279 }
4280 
setSurroundFormatEnabled(audio_format_t audioFormat,bool enabled)4281 status_t AudioPolicyManager::setSurroundFormatEnabled(audio_format_t audioFormat, bool enabled)
4282 {
4283     ALOGV("%s() format 0x%X enabled %d", __func__, audioFormat, enabled);
4284     const auto& formatIter = mConfig.getSurroundFormats().find(audioFormat);
4285     if (formatIter == mConfig.getSurroundFormats().end()) {
4286         ALOGW("%s() format 0x%X is not a known surround format", __func__, audioFormat);
4287         return BAD_VALUE;
4288     }
4289 
4290     if (mEngine->getForceUse(AUDIO_POLICY_FORCE_FOR_ENCODED_SURROUND) !=
4291             AUDIO_POLICY_FORCE_ENCODED_SURROUND_MANUAL) {
4292         ALOGW("%s() not in manual mode for surround sound format selection", __func__);
4293         return INVALID_OPERATION;
4294     }
4295 
4296     if ((mManualSurroundFormats.count(audioFormat) != 0) == enabled) {
4297         return NO_ERROR;
4298     }
4299 
4300     std::unordered_set<audio_format_t> surroundFormatsBackup(mManualSurroundFormats);
4301     if (enabled) {
4302         mManualSurroundFormats.insert(audioFormat);
4303         for (const auto& subFormat : formatIter->second) {
4304             mManualSurroundFormats.insert(subFormat);
4305         }
4306     } else {
4307         mManualSurroundFormats.erase(audioFormat);
4308         for (const auto& subFormat : formatIter->second) {
4309             mManualSurroundFormats.erase(subFormat);
4310         }
4311     }
4312 
4313     sp<SwAudioOutputDescriptor> outputDesc;
4314     bool profileUpdated = false;
4315     DeviceVector hdmiOutputDevices = mAvailableOutputDevices.getDevicesFromType(
4316         AUDIO_DEVICE_OUT_HDMI);
4317     for (size_t i = 0; i < hdmiOutputDevices.size(); i++) {
4318         // Simulate reconnection to update enabled surround sound formats.
4319         String8 address = String8(hdmiOutputDevices[i]->address().c_str());
4320         std::string name = hdmiOutputDevices[i]->getName();
4321         status_t status = setDeviceConnectionStateInt(AUDIO_DEVICE_OUT_HDMI,
4322                                                       AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE,
4323                                                       address.c_str(),
4324                                                       name.c_str(),
4325                                                       AUDIO_FORMAT_DEFAULT);
4326         if (status != NO_ERROR) {
4327             continue;
4328         }
4329         status = setDeviceConnectionStateInt(AUDIO_DEVICE_OUT_HDMI,
4330                                              AUDIO_POLICY_DEVICE_STATE_AVAILABLE,
4331                                              address.c_str(),
4332                                              name.c_str(),
4333                                              AUDIO_FORMAT_DEFAULT);
4334         profileUpdated |= (status == NO_ERROR);
4335     }
4336     // FIXME: Why doing this for input HDMI devices if we don't augment their reported formats?
4337     DeviceVector hdmiInputDevices = mAvailableInputDevices.getDevicesFromType(
4338                 AUDIO_DEVICE_IN_HDMI);
4339     for (size_t i = 0; i < hdmiInputDevices.size(); i++) {
4340         // Simulate reconnection to update enabled surround sound formats.
4341         String8 address = String8(hdmiInputDevices[i]->address().c_str());
4342         std::string name = hdmiInputDevices[i]->getName();
4343         status_t status = setDeviceConnectionStateInt(AUDIO_DEVICE_IN_HDMI,
4344                                                       AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE,
4345                                                       address.c_str(),
4346                                                       name.c_str(),
4347                                                       AUDIO_FORMAT_DEFAULT);
4348         if (status != NO_ERROR) {
4349             continue;
4350         }
4351         status = setDeviceConnectionStateInt(AUDIO_DEVICE_IN_HDMI,
4352                                              AUDIO_POLICY_DEVICE_STATE_AVAILABLE,
4353                                              address.c_str(),
4354                                              name.c_str(),
4355                                              AUDIO_FORMAT_DEFAULT);
4356         profileUpdated |= (status == NO_ERROR);
4357     }
4358 
4359     if (!profileUpdated) {
4360         ALOGW("%s() no audio profiles updated, undoing surround formats change", __func__);
4361         mManualSurroundFormats = std::move(surroundFormatsBackup);
4362     }
4363 
4364     return profileUpdated ? NO_ERROR : INVALID_OPERATION;
4365 }
4366 
setAppState(audio_port_handle_t portId,app_state_t state)4367 void AudioPolicyManager::setAppState(audio_port_handle_t portId, app_state_t state)
4368 {
4369     ALOGV("%s(portId:%d, state:%d)", __func__, portId, state);
4370     for (size_t i = 0; i < mInputs.size(); i++) {
4371         mInputs.valueAt(i)->setAppState(portId, state);
4372     }
4373 }
4374 
isHapticPlaybackSupported()4375 bool AudioPolicyManager::isHapticPlaybackSupported()
4376 {
4377     for (const auto& hwModule : mHwModules) {
4378         const OutputProfileCollection &outputProfiles = hwModule->getOutputProfiles();
4379         for (const auto &outProfile : outputProfiles) {
4380             struct audio_port audioPort;
4381             outProfile->toAudioPort(&audioPort);
4382             for (size_t i = 0; i < audioPort.num_channel_masks; i++) {
4383                 if (audioPort.channel_masks[i] & AUDIO_CHANNEL_HAPTIC_ALL) {
4384                     return true;
4385                 }
4386             }
4387         }
4388     }
4389     return false;
4390 }
4391 
isCallScreenModeSupported()4392 bool AudioPolicyManager::isCallScreenModeSupported()
4393 {
4394     return getConfig().isCallScreenModeSupported();
4395 }
4396 
4397 
disconnectAudioSource(const sp<SourceClientDescriptor> & sourceDesc)4398 status_t AudioPolicyManager::disconnectAudioSource(const sp<SourceClientDescriptor>& sourceDesc)
4399 {
4400     ALOGV("%s port Id %d", __FUNCTION__, sourceDesc->portId());
4401     sp<SwAudioOutputDescriptor> swOutput = sourceDesc->swOutput().promote();
4402     if (swOutput != 0) {
4403         status_t status = stopSource(swOutput, sourceDesc);
4404         if (status == NO_ERROR) {
4405             swOutput->stop();
4406         }
4407         releaseOutput(sourceDesc->portId());
4408     } else {
4409         sp<HwAudioOutputDescriptor> hwOutputDesc = sourceDesc->hwOutput().promote();
4410         if (hwOutputDesc != 0) {
4411           //   close Hwoutput and remove from mHwOutputs
4412         } else {
4413             ALOGW("%s source has neither SW nor HW output", __FUNCTION__);
4414         }
4415     }
4416     return releaseAudioPatchInternal(sourceDesc->getPatchHandle());
4417 }
4418 
getSourceForAttributesOnOutput(audio_io_handle_t output,const audio_attributes_t & attr)4419 sp<SourceClientDescriptor> AudioPolicyManager::getSourceForAttributesOnOutput(
4420         audio_io_handle_t output, const audio_attributes_t &attr)
4421 {
4422     sp<SourceClientDescriptor> source;
4423     for (size_t i = 0; i < mAudioSources.size(); i++)  {
4424         sp<SourceClientDescriptor> sourceDesc = mAudioSources.valueAt(i);
4425         sp<SwAudioOutputDescriptor> outputDesc = sourceDesc->swOutput().promote();
4426         if (followsSameRouting(attr, sourceDesc->attributes()) &&
4427                                outputDesc != 0 && outputDesc->mIoHandle == output) {
4428             source = sourceDesc;
4429             break;
4430         }
4431     }
4432     return source;
4433 }
4434 
4435 // ----------------------------------------------------------------------------
4436 // AudioPolicyManager
4437 // ----------------------------------------------------------------------------
nextAudioPortGeneration()4438 uint32_t AudioPolicyManager::nextAudioPortGeneration()
4439 {
4440     return mAudioPortGeneration++;
4441 }
4442 
deserializeAudioPolicyXmlConfig(AudioPolicyConfig & config)4443 static status_t deserializeAudioPolicyXmlConfig(AudioPolicyConfig &config) {
4444     char audioPolicyXmlConfigFile[AUDIO_POLICY_XML_CONFIG_FILE_PATH_MAX_LENGTH];
4445     std::vector<const char*> fileNames;
4446     status_t ret;
4447 
4448     if (property_get_bool("ro.bluetooth.a2dp_offload.supported", false)) {
4449         if (property_get_bool("persist.bluetooth.bluetooth_audio_hal.disabled", false) &&
4450             property_get_bool("persist.bluetooth.a2dp_offload.disabled", false)) {
4451             // Both BluetoothAudio@2.0 and BluetoothA2dp@1.0 (Offlaod) are disabled, and uses
4452             // the legacy hardware module for A2DP and hearing aid.
4453             fileNames.push_back(AUDIO_POLICY_BLUETOOTH_LEGACY_HAL_XML_CONFIG_FILE_NAME);
4454         } else if (property_get_bool("persist.bluetooth.a2dp_offload.disabled", false)) {
4455             // A2DP offload supported but disabled: try to use special XML file
4456             fileNames.push_back(AUDIO_POLICY_A2DP_OFFLOAD_DISABLED_XML_CONFIG_FILE_NAME);
4457         }
4458     } else if (property_get_bool("persist.bluetooth.bluetooth_audio_hal.disabled", false)) {
4459         fileNames.push_back(AUDIO_POLICY_BLUETOOTH_LEGACY_HAL_XML_CONFIG_FILE_NAME);
4460     }
4461     fileNames.push_back(AUDIO_POLICY_XML_CONFIG_FILE_NAME);
4462 
4463     for (const char* fileName : fileNames) {
4464         for (const auto& path : audio_get_configuration_paths()) {
4465             snprintf(audioPolicyXmlConfigFile, sizeof(audioPolicyXmlConfigFile),
4466                      "%s/%s", path.c_str(), fileName);
4467             ret = deserializeAudioPolicyFile(audioPolicyXmlConfigFile, &config);
4468             if (ret == NO_ERROR) {
4469                 config.setSource(audioPolicyXmlConfigFile);
4470                 return ret;
4471             }
4472         }
4473     }
4474     return ret;
4475 }
4476 
AudioPolicyManager(AudioPolicyClientInterface * clientInterface,bool)4477 AudioPolicyManager::AudioPolicyManager(AudioPolicyClientInterface *clientInterface,
4478                                        bool /*forTesting*/)
4479     :
4480     mUidCached(AID_AUDIOSERVER), // no need to call getuid(), there's only one of us running.
4481     mpClientInterface(clientInterface),
4482     mLimitRingtoneVolume(false), mLastVoiceVolume(-1.0f),
4483     mA2dpSuspended(false),
4484     mConfig(mHwModulesAll, mOutputDevicesAll, mInputDevicesAll, mDefaultOutputDevice),
4485     mAudioPortGeneration(1),
4486     mBeaconMuteRefCount(0),
4487     mBeaconPlayingRefCount(0),
4488     mBeaconMuted(false),
4489     mTtsOutputAvailable(false),
4490     mMasterMono(false),
4491     mMusicEffectOutput(AUDIO_IO_HANDLE_NONE)
4492 {
4493 }
4494 
AudioPolicyManager(AudioPolicyClientInterface * clientInterface)4495 AudioPolicyManager::AudioPolicyManager(AudioPolicyClientInterface *clientInterface)
4496         : AudioPolicyManager(clientInterface, false /*forTesting*/)
4497 {
4498     loadConfig();
4499 }
4500 
loadConfig()4501 void AudioPolicyManager::loadConfig() {
4502     if (deserializeAudioPolicyXmlConfig(getConfig()) != NO_ERROR) {
4503         ALOGE("could not load audio policy configuration file, setting defaults");
4504         getConfig().setDefault();
4505     }
4506 }
4507 
initialize()4508 status_t AudioPolicyManager::initialize() {
4509     {
4510         auto engLib = EngineLibrary::load(
4511                         "libaudiopolicyengine" + getConfig().getEngineLibraryNameSuffix() + ".so");
4512         if (!engLib) {
4513             ALOGE("%s: Failed to load the engine library", __FUNCTION__);
4514             return NO_INIT;
4515         }
4516         mEngine = engLib->createEngine();
4517         if (mEngine == nullptr) {
4518             ALOGE("%s: Failed to instantiate the APM engine", __FUNCTION__);
4519             return NO_INIT;
4520         }
4521     }
4522     mEngine->setObserver(this);
4523     status_t status = mEngine->initCheck();
4524     if (status != NO_ERROR) {
4525         LOG_FATAL("Policy engine not initialized(err=%d)", status);
4526         return status;
4527     }
4528 
4529     // after parsing the config, mOutputDevicesAll and mInputDevicesAll contain all known devices;
4530     // open all output streams needed to access attached devices
4531     onNewAudioModulesAvailableInt(nullptr /*newDevices*/);
4532 
4533     // make sure default device is reachable
4534     if (mDefaultOutputDevice == 0 || !mAvailableOutputDevices.contains(mDefaultOutputDevice)) {
4535         ALOGE_IF(mDefaultOutputDevice != 0, "Default device %s is unreachable",
4536                  mDefaultOutputDevice->toString().c_str());
4537         status = NO_INIT;
4538     }
4539     // If microphones address is empty, set it according to device type
4540     for (size_t i = 0; i < mAvailableInputDevices.size(); i++) {
4541         if (mAvailableInputDevices[i]->address().empty()) {
4542             if (mAvailableInputDevices[i]->type() == AUDIO_DEVICE_IN_BUILTIN_MIC) {
4543                 mAvailableInputDevices[i]->setAddress(AUDIO_BOTTOM_MICROPHONE_ADDRESS);
4544             } else if (mAvailableInputDevices[i]->type() == AUDIO_DEVICE_IN_BACK_MIC) {
4545                 mAvailableInputDevices[i]->setAddress(AUDIO_BACK_MICROPHONE_ADDRESS);
4546             }
4547         }
4548     }
4549 
4550     if (mPrimaryOutput == 0) {
4551         ALOGE("Failed to open primary output");
4552         status = NO_INIT;
4553     }
4554 
4555     // Silence ALOGV statements
4556     property_set("log.tag." LOG_TAG, "D");
4557 
4558     updateDevicesAndOutputs();
4559     return status;
4560 }
4561 
~AudioPolicyManager()4562 AudioPolicyManager::~AudioPolicyManager()
4563 {
4564    for (size_t i = 0; i < mOutputs.size(); i++) {
4565         mOutputs.valueAt(i)->close();
4566    }
4567    for (size_t i = 0; i < mInputs.size(); i++) {
4568         mInputs.valueAt(i)->close();
4569    }
4570    mAvailableOutputDevices.clear();
4571    mAvailableInputDevices.clear();
4572    mOutputs.clear();
4573    mInputs.clear();
4574    mHwModules.clear();
4575    mHwModulesAll.clear();
4576    mManualSurroundFormats.clear();
4577 }
4578 
initCheck()4579 status_t AudioPolicyManager::initCheck()
4580 {
4581     return hasPrimaryOutput() ? NO_ERROR : NO_INIT;
4582 }
4583 
4584 // ---
4585 
onNewAudioModulesAvailable()4586 void AudioPolicyManager::onNewAudioModulesAvailable()
4587 {
4588     DeviceVector newDevices;
4589     onNewAudioModulesAvailableInt(&newDevices);
4590     if (!newDevices.empty()) {
4591         nextAudioPortGeneration();
4592         mpClientInterface->onAudioPortListUpdate();
4593     }
4594 }
4595 
onNewAudioModulesAvailableInt(DeviceVector * newDevices)4596 void AudioPolicyManager::onNewAudioModulesAvailableInt(DeviceVector *newDevices)
4597 {
4598     for (const auto& hwModule : mHwModulesAll) {
4599         if (std::find(mHwModules.begin(), mHwModules.end(), hwModule) != mHwModules.end()) {
4600             continue;
4601         }
4602         hwModule->setHandle(mpClientInterface->loadHwModule(hwModule->getName()));
4603         if (hwModule->getHandle() == AUDIO_MODULE_HANDLE_NONE) {
4604             ALOGW("could not open HW module %s", hwModule->getName());
4605             continue;
4606         }
4607         mHwModules.push_back(hwModule);
4608         // open all output streams needed to access attached devices
4609         // except for direct output streams that are only opened when they are actually
4610         // required by an app.
4611         // This also validates mAvailableOutputDevices list
4612         for (const auto& outProfile : hwModule->getOutputProfiles()) {
4613             if (!outProfile->canOpenNewIo()) {
4614                 ALOGE("Invalid Output profile max open count %u for profile %s",
4615                       outProfile->maxOpenCount, outProfile->getTagName().c_str());
4616                 continue;
4617             }
4618             if (!outProfile->hasSupportedDevices()) {
4619                 ALOGW("Output profile contains no device on module %s", hwModule->getName());
4620                 continue;
4621             }
4622             if ((outProfile->getFlags() & AUDIO_OUTPUT_FLAG_TTS) != 0) {
4623                 mTtsOutputAvailable = true;
4624             }
4625 
4626             const DeviceVector &supportedDevices = outProfile->getSupportedDevices();
4627             DeviceVector availProfileDevices = supportedDevices.filter(mOutputDevicesAll);
4628             sp<DeviceDescriptor> supportedDevice = 0;
4629             if (supportedDevices.contains(mDefaultOutputDevice)) {
4630                 supportedDevice = mDefaultOutputDevice;
4631             } else {
4632                 // choose first device present in profile's SupportedDevices also part of
4633                 // mAvailableOutputDevices.
4634                 if (availProfileDevices.isEmpty()) {
4635                     continue;
4636                 }
4637                 supportedDevice = availProfileDevices.itemAt(0);
4638             }
4639             if (!mOutputDevicesAll.contains(supportedDevice)) {
4640                 continue;
4641             }
4642             sp<SwAudioOutputDescriptor> outputDesc = new SwAudioOutputDescriptor(outProfile,
4643                                                                                  mpClientInterface);
4644             audio_io_handle_t output = AUDIO_IO_HANDLE_NONE;
4645             status_t status = outputDesc->open(nullptr, DeviceVector(supportedDevice),
4646                                                AUDIO_STREAM_DEFAULT,
4647                                                AUDIO_OUTPUT_FLAG_NONE, &output);
4648             if (status != NO_ERROR) {
4649                 ALOGW("Cannot open output stream for devices %s on hw module %s",
4650                       supportedDevice->toString().c_str(), hwModule->getName());
4651                 continue;
4652             }
4653             for (const auto &device : availProfileDevices) {
4654                 // give a valid ID to an attached device once confirmed it is reachable
4655                 if (!device->isAttached()) {
4656                     device->attach(hwModule);
4657                     mAvailableOutputDevices.add(device);
4658                     device->setEncapsulationInfoFromHal(mpClientInterface);
4659                     if (newDevices) newDevices->add(device);
4660                     setEngineDeviceConnectionState(device, AUDIO_POLICY_DEVICE_STATE_AVAILABLE);
4661                 }
4662             }
4663             if (mPrimaryOutput == 0 &&
4664                     outProfile->getFlags() & AUDIO_OUTPUT_FLAG_PRIMARY) {
4665                 mPrimaryOutput = outputDesc;
4666             }
4667             if ((outProfile->getFlags() & AUDIO_OUTPUT_FLAG_DIRECT) != 0) {
4668                 outputDesc->close();
4669             } else {
4670                 addOutput(output, outputDesc);
4671                 setOutputDevices(outputDesc,
4672                                  DeviceVector(supportedDevice),
4673                                  true,
4674                                  0,
4675                                  NULL);
4676             }
4677         }
4678         // open input streams needed to access attached devices to validate
4679         // mAvailableInputDevices list
4680         for (const auto& inProfile : hwModule->getInputProfiles()) {
4681             if (!inProfile->canOpenNewIo()) {
4682                 ALOGE("Invalid Input profile max open count %u for profile %s",
4683                       inProfile->maxOpenCount, inProfile->getTagName().c_str());
4684                 continue;
4685             }
4686             if (!inProfile->hasSupportedDevices()) {
4687                 ALOGW("Input profile contains no device on module %s", hwModule->getName());
4688                 continue;
4689             }
4690             // chose first device present in profile's SupportedDevices also part of
4691             // available input devices
4692             const DeviceVector &supportedDevices = inProfile->getSupportedDevices();
4693             DeviceVector availProfileDevices = supportedDevices.filter(mInputDevicesAll);
4694             if (availProfileDevices.isEmpty()) {
4695                 ALOGE("%s: Input device list is empty!", __FUNCTION__);
4696                 continue;
4697             }
4698             sp<AudioInputDescriptor> inputDesc =
4699                     new AudioInputDescriptor(inProfile, mpClientInterface);
4700 
4701             audio_io_handle_t input = AUDIO_IO_HANDLE_NONE;
4702             status_t status = inputDesc->open(nullptr,
4703                                               availProfileDevices.itemAt(0),
4704                                               AUDIO_SOURCE_MIC,
4705                                               AUDIO_INPUT_FLAG_NONE,
4706                                               &input);
4707             if (status != NO_ERROR) {
4708                 ALOGW("Cannot open input stream for device %s on hw module %s",
4709                       availProfileDevices.toString().c_str(),
4710                       hwModule->getName());
4711                 continue;
4712             }
4713             for (const auto &device : availProfileDevices) {
4714                 // give a valid ID to an attached device once confirmed it is reachable
4715                 if (!device->isAttached()) {
4716                     device->attach(hwModule);
4717                     device->importAudioPortAndPickAudioProfile(inProfile, true);
4718                     mAvailableInputDevices.add(device);
4719                     if (newDevices) newDevices->add(device);
4720                     setEngineDeviceConnectionState(device, AUDIO_POLICY_DEVICE_STATE_AVAILABLE);
4721                 }
4722             }
4723             inputDesc->close();
4724         }
4725     }
4726 }
4727 
addOutput(audio_io_handle_t output,const sp<SwAudioOutputDescriptor> & outputDesc)4728 void AudioPolicyManager::addOutput(audio_io_handle_t output,
4729                                    const sp<SwAudioOutputDescriptor>& outputDesc)
4730 {
4731     mOutputs.add(output, outputDesc);
4732     applyStreamVolumes(outputDesc, DeviceTypeSet(), 0 /* delayMs */, true /* force */);
4733     updateMono(output); // update mono status when adding to output list
4734     selectOutputForMusicEffects();
4735     nextAudioPortGeneration();
4736 }
4737 
removeOutput(audio_io_handle_t output)4738 void AudioPolicyManager::removeOutput(audio_io_handle_t output)
4739 {
4740     mOutputs.removeItem(output);
4741     selectOutputForMusicEffects();
4742 }
4743 
addInput(audio_io_handle_t input,const sp<AudioInputDescriptor> & inputDesc)4744 void AudioPolicyManager::addInput(audio_io_handle_t input,
4745                                   const sp<AudioInputDescriptor>& inputDesc)
4746 {
4747     mInputs.add(input, inputDesc);
4748     nextAudioPortGeneration();
4749 }
4750 
checkOutputsForDevice(const sp<DeviceDescriptor> & device,audio_policy_dev_state_t state,SortedVector<audio_io_handle_t> & outputs)4751 status_t AudioPolicyManager::checkOutputsForDevice(const sp<DeviceDescriptor>& device,
4752                                                    audio_policy_dev_state_t state,
4753                                                    SortedVector<audio_io_handle_t>& outputs)
4754 {
4755     audio_devices_t deviceType = device->type();
4756     const String8 &address = String8(device->address().c_str());
4757     sp<SwAudioOutputDescriptor> desc;
4758 
4759     if (audio_device_is_digital(deviceType)) {
4760         // erase all current sample rates, formats and channel masks
4761         device->clearAudioProfiles();
4762     }
4763 
4764     if (state == AUDIO_POLICY_DEVICE_STATE_AVAILABLE) {
4765         // first list already open outputs that can be routed to this device
4766         for (size_t i = 0; i < mOutputs.size(); i++) {
4767             desc = mOutputs.valueAt(i);
4768             if (!desc->isDuplicated() && desc->supportsDevice(device)
4769                     && desc->devicesSupportEncodedFormats({deviceType})) {
4770                 ALOGV("checkOutputsForDevice(): adding opened output %d on device %s",
4771                       mOutputs.keyAt(i), device->toString().c_str());
4772                 outputs.add(mOutputs.keyAt(i));
4773             }
4774         }
4775         // then look for output profiles that can be routed to this device
4776         SortedVector< sp<IOProfile> > profiles;
4777         for (const auto& hwModule : mHwModules) {
4778             for (size_t j = 0; j < hwModule->getOutputProfiles().size(); j++) {
4779                 sp<IOProfile> profile = hwModule->getOutputProfiles()[j];
4780                 if (profile->supportsDevice(device)) {
4781                     profiles.add(profile);
4782                     ALOGV("checkOutputsForDevice(): adding profile %zu from module %s",
4783                           j, hwModule->getName());
4784                 }
4785             }
4786         }
4787 
4788         ALOGV("  found %zu profiles, %zu outputs", profiles.size(), outputs.size());
4789 
4790         if (profiles.isEmpty() && outputs.isEmpty()) {
4791             ALOGW("checkOutputsForDevice(): No output available for device %04x", deviceType);
4792             return BAD_VALUE;
4793         }
4794 
4795         // open outputs for matching profiles if needed. Direct outputs are also opened to
4796         // query for dynamic parameters and will be closed later by setDeviceConnectionState()
4797         for (ssize_t profile_index = 0; profile_index < (ssize_t)profiles.size(); profile_index++) {
4798             sp<IOProfile> profile = profiles[profile_index];
4799 
4800             // nothing to do if one output is already opened for this profile
4801             size_t j;
4802             for (j = 0; j < outputs.size(); j++) {
4803                 desc = mOutputs.valueFor(outputs.itemAt(j));
4804                 if (!desc->isDuplicated() && desc->mProfile == profile) {
4805                     // matching profile: save the sample rates, format and channel masks supported
4806                     // by the profile in our device descriptor
4807                     if (audio_device_is_digital(deviceType)) {
4808                         device->importAudioPortAndPickAudioProfile(profile);
4809                     }
4810                     break;
4811                 }
4812             }
4813             if (j != outputs.size()) {
4814                 continue;
4815             }
4816 
4817             if (!profile->canOpenNewIo()) {
4818                 ALOGW("Max Output number %u already opened for this profile %s",
4819                       profile->maxOpenCount, profile->getTagName().c_str());
4820                 continue;
4821             }
4822 
4823             ALOGV("opening output for device %08x with params %s profile %p name %s",
4824                   deviceType, address.string(), profile.get(), profile->getName().c_str());
4825             desc = new SwAudioOutputDescriptor(profile, mpClientInterface);
4826             audio_io_handle_t output = AUDIO_IO_HANDLE_NONE;
4827             status_t status = desc->open(nullptr, DeviceVector(device),
4828                                          AUDIO_STREAM_DEFAULT, AUDIO_OUTPUT_FLAG_NONE, &output);
4829 
4830             if (status == NO_ERROR) {
4831                 // Here is where the out_set_parameters() for card & device gets called
4832                 if (!address.isEmpty()) {
4833                     char *param = audio_device_address_to_parameter(deviceType, address);
4834                     mpClientInterface->setParameters(output, String8(param));
4835                     free(param);
4836                 }
4837                 updateAudioProfiles(device, output, profile->getAudioProfiles());
4838                 if (!profile->hasValidAudioProfile()) {
4839                     ALOGW("checkOutputsForDevice() missing param");
4840                     desc->close();
4841                     output = AUDIO_IO_HANDLE_NONE;
4842                 } else if (profile->hasDynamicAudioProfile()) {
4843                     desc->close();
4844                     output = AUDIO_IO_HANDLE_NONE;
4845                     audio_config_t config = AUDIO_CONFIG_INITIALIZER;
4846                     profile->pickAudioProfile(
4847                             config.sample_rate, config.channel_mask, config.format);
4848                     config.offload_info.sample_rate = config.sample_rate;
4849                     config.offload_info.channel_mask = config.channel_mask;
4850                     config.offload_info.format = config.format;
4851 
4852                     status_t status = desc->open(&config, DeviceVector(device),
4853                                                  AUDIO_STREAM_DEFAULT,
4854                                                  AUDIO_OUTPUT_FLAG_NONE, &output);
4855                     if (status != NO_ERROR) {
4856                         output = AUDIO_IO_HANDLE_NONE;
4857                     }
4858                 }
4859 
4860                 if (output != AUDIO_IO_HANDLE_NONE) {
4861                     addOutput(output, desc);
4862                     if (audio_is_remote_submix_device(deviceType) && address != "0") {
4863                         sp<AudioPolicyMix> policyMix;
4864                         if (mPolicyMixes.getAudioPolicyMix(deviceType, address, policyMix)
4865                                 == NO_ERROR) {
4866                             policyMix->setOutput(desc);
4867                             desc->mPolicyMix = policyMix;
4868                         } else {
4869                             ALOGW("checkOutputsForDevice() cannot find policy for address %s",
4870                                   address.string());
4871                         }
4872 
4873                     } else if (((desc->mFlags & AUDIO_OUTPUT_FLAG_DIRECT) == 0) &&
4874                                     hasPrimaryOutput()) {
4875                         // no duplicated output for direct outputs and
4876                         // outputs used by dynamic policy mixes
4877                         audio_io_handle_t duplicatedOutput = AUDIO_IO_HANDLE_NONE;
4878 
4879                         //TODO: configure audio effect output stage here
4880 
4881                         // open a duplicating output thread for the new output and the primary output
4882                         sp<SwAudioOutputDescriptor> dupOutputDesc =
4883                                 new SwAudioOutputDescriptor(NULL, mpClientInterface);
4884                         status_t status = dupOutputDesc->openDuplicating(mPrimaryOutput, desc,
4885                                                                          &duplicatedOutput);
4886                         if (status == NO_ERROR) {
4887                             // add duplicated output descriptor
4888                             addOutput(duplicatedOutput, dupOutputDesc);
4889                         } else {
4890                             ALOGW("checkOutputsForDevice() could not open dup output for %d and %d",
4891                                     mPrimaryOutput->mIoHandle, output);
4892                             desc->close();
4893                             removeOutput(output);
4894                             nextAudioPortGeneration();
4895                             output = AUDIO_IO_HANDLE_NONE;
4896                         }
4897                     }
4898                 }
4899             } else {
4900                 output = AUDIO_IO_HANDLE_NONE;
4901             }
4902             if (output == AUDIO_IO_HANDLE_NONE) {
4903                 ALOGW("checkOutputsForDevice() could not open output for device %x", deviceType);
4904                 profiles.removeAt(profile_index);
4905                 profile_index--;
4906             } else {
4907                 outputs.add(output);
4908                 // Load digital format info only for digital devices
4909                 if (audio_device_is_digital(deviceType)) {
4910                     device->importAudioPortAndPickAudioProfile(profile);
4911                 }
4912 
4913                 if (device_distinguishes_on_address(deviceType)) {
4914                     ALOGV("checkOutputsForDevice(): setOutputDevices %s",
4915                             device->toString().c_str());
4916                     setOutputDevices(desc, DeviceVector(device), true/*force*/, 0/*delay*/,
4917                                      NULL/*patch handle*/);
4918                 }
4919                 ALOGV("checkOutputsForDevice(): adding output %d", output);
4920             }
4921         }
4922 
4923         if (profiles.isEmpty()) {
4924             ALOGW("checkOutputsForDevice(): No output available for device %04x", deviceType);
4925             return BAD_VALUE;
4926         }
4927     } else { // Disconnect
4928         // check if one opened output is not needed any more after disconnecting one device
4929         for (size_t i = 0; i < mOutputs.size(); i++) {
4930             desc = mOutputs.valueAt(i);
4931             if (!desc->isDuplicated()) {
4932                 // exact match on device
4933                 if (device_distinguishes_on_address(deviceType) && desc->supportsDevice(device)
4934                         && desc->devicesSupportEncodedFormats({deviceType})) {
4935                     outputs.add(mOutputs.keyAt(i));
4936                 } else if (!mAvailableOutputDevices.containsAtLeastOne(desc->supportedDevices())) {
4937                     ALOGV("checkOutputsForDevice(): disconnecting adding output %d",
4938                             mOutputs.keyAt(i));
4939                     outputs.add(mOutputs.keyAt(i));
4940                 }
4941             }
4942         }
4943         // Clear any profiles associated with the disconnected device.
4944         for (const auto& hwModule : mHwModules) {
4945             for (size_t j = 0; j < hwModule->getOutputProfiles().size(); j++) {
4946                 sp<IOProfile> profile = hwModule->getOutputProfiles()[j];
4947                 if (profile->supportsDevice(device)) {
4948                     ALOGV("checkOutputsForDevice(): "
4949                             "clearing direct output profile %zu on module %s",
4950                             j, hwModule->getName());
4951                     profile->clearAudioProfiles();
4952                 }
4953             }
4954         }
4955     }
4956     return NO_ERROR;
4957 }
4958 
checkInputsForDevice(const sp<DeviceDescriptor> & device,audio_policy_dev_state_t state)4959 status_t AudioPolicyManager::checkInputsForDevice(const sp<DeviceDescriptor>& device,
4960                                                   audio_policy_dev_state_t state)
4961 {
4962     sp<AudioInputDescriptor> desc;
4963 
4964     if (audio_device_is_digital(device->type())) {
4965         // erase all current sample rates, formats and channel masks
4966         device->clearAudioProfiles();
4967     }
4968 
4969     if (state == AUDIO_POLICY_DEVICE_STATE_AVAILABLE) {
4970         // look for input profiles that can be routed to this device
4971         SortedVector< sp<IOProfile> > profiles;
4972         for (const auto& hwModule : mHwModules) {
4973             for (size_t profile_index = 0;
4974                  profile_index < hwModule->getInputProfiles().size();
4975                  profile_index++) {
4976                 sp<IOProfile> profile = hwModule->getInputProfiles()[profile_index];
4977 
4978                 if (profile->supportsDevice(device)) {
4979                     profiles.add(profile);
4980                     ALOGV("checkInputsForDevice(): adding profile %zu from module %s",
4981                           profile_index, hwModule->getName());
4982                 }
4983             }
4984         }
4985 
4986         if (profiles.isEmpty()) {
4987             ALOGW("%s: No input profile available for device %s",
4988                 __func__, device->toString().c_str());
4989             return BAD_VALUE;
4990         }
4991 
4992         // open inputs for matching profiles if needed. Direct inputs are also opened to
4993         // query for dynamic parameters and will be closed later by setDeviceConnectionState()
4994         for (ssize_t profile_index = 0; profile_index < (ssize_t)profiles.size(); profile_index++) {
4995 
4996             sp<IOProfile> profile = profiles[profile_index];
4997 
4998             // nothing to do if one input is already opened for this profile
4999             size_t input_index;
5000             for (input_index = 0; input_index < mInputs.size(); input_index++) {
5001                 desc = mInputs.valueAt(input_index);
5002                 if (desc->mProfile == profile) {
5003                     if (audio_device_is_digital(device->type())) {
5004                         device->importAudioPortAndPickAudioProfile(profile);
5005                     }
5006                     break;
5007                 }
5008             }
5009             if (input_index != mInputs.size()) {
5010                 continue;
5011             }
5012 
5013             if (!profile->canOpenNewIo()) {
5014                 ALOGW("Max Input number %u already opened for this profile %s",
5015                       profile->maxOpenCount, profile->getTagName().c_str());
5016                 continue;
5017             }
5018 
5019             desc = new AudioInputDescriptor(profile, mpClientInterface);
5020             audio_io_handle_t input = AUDIO_IO_HANDLE_NONE;
5021             status_t status = desc->open(nullptr,
5022                                          device,
5023                                          AUDIO_SOURCE_MIC,
5024                                          AUDIO_INPUT_FLAG_NONE,
5025                                          &input);
5026 
5027             if (status == NO_ERROR) {
5028                 const String8& address = String8(device->address().c_str());
5029                 if (!address.isEmpty()) {
5030                     char *param = audio_device_address_to_parameter(device->type(), address);
5031                     mpClientInterface->setParameters(input, String8(param));
5032                     free(param);
5033                 }
5034                 updateAudioProfiles(device, input, profile->getAudioProfiles());
5035                 if (!profile->hasValidAudioProfile()) {
5036                     ALOGW("checkInputsForDevice() direct input missing param");
5037                     desc->close();
5038                     input = AUDIO_IO_HANDLE_NONE;
5039                 }
5040 
5041                 if (input != AUDIO_IO_HANDLE_NONE) {
5042                     addInput(input, desc);
5043                 }
5044             } // endif input != 0
5045 
5046             if (input == AUDIO_IO_HANDLE_NONE) {
5047                 ALOGW("%s could not open input for device %s", __func__,
5048                        device->toString().c_str());
5049                 profiles.removeAt(profile_index);
5050                 profile_index--;
5051             } else {
5052                 if (audio_device_is_digital(device->type())) {
5053                     device->importAudioPortAndPickAudioProfile(profile);
5054                 }
5055                 ALOGV("checkInputsForDevice(): adding input %d", input);
5056             }
5057         } // end scan profiles
5058 
5059         if (profiles.isEmpty()) {
5060             ALOGW("%s: No input available for device %s", __func__,  device->toString().c_str());
5061             return BAD_VALUE;
5062         }
5063     } else {
5064         // Disconnect
5065         // Clear any profiles associated with the disconnected device.
5066         for (const auto& hwModule : mHwModules) {
5067             for (size_t profile_index = 0;
5068                  profile_index < hwModule->getInputProfiles().size();
5069                  profile_index++) {
5070                 sp<IOProfile> profile = hwModule->getInputProfiles()[profile_index];
5071                 if (profile->supportsDevice(device)) {
5072                     ALOGV("checkInputsForDevice(): clearing direct input profile %zu on module %s",
5073                             profile_index, hwModule->getName());
5074                     profile->clearAudioProfiles();
5075                 }
5076             }
5077         }
5078     } // end disconnect
5079 
5080     return NO_ERROR;
5081 }
5082 
5083 
closeOutput(audio_io_handle_t output)5084 void AudioPolicyManager::closeOutput(audio_io_handle_t output)
5085 {
5086     ALOGV("closeOutput(%d)", output);
5087 
5088     sp<SwAudioOutputDescriptor> closingOutput = mOutputs.valueFor(output);
5089     if (closingOutput == NULL) {
5090         ALOGW("closeOutput() unknown output %d", output);
5091         return;
5092     }
5093     const bool closingOutputWasActive = closingOutput->isActive();
5094     mPolicyMixes.closeOutput(closingOutput);
5095 
5096     // look for duplicated outputs connected to the output being removed.
5097     for (size_t i = 0; i < mOutputs.size(); i++) {
5098         sp<SwAudioOutputDescriptor> dupOutput = mOutputs.valueAt(i);
5099         if (dupOutput->isDuplicated() &&
5100                 (dupOutput->mOutput1 == closingOutput || dupOutput->mOutput2 == closingOutput)) {
5101             sp<SwAudioOutputDescriptor> remainingOutput =
5102                 dupOutput->mOutput1 == closingOutput ? dupOutput->mOutput2 : dupOutput->mOutput1;
5103             // As all active tracks on duplicated output will be deleted,
5104             // and as they were also referenced on the other output, the reference
5105             // count for their stream type must be adjusted accordingly on
5106             // the other output.
5107             const bool wasActive = remainingOutput->isActive();
5108             // Note: no-op on the closing output where all clients has already been set inactive
5109             dupOutput->setAllClientsInactive();
5110             // stop() will be a no op if the output is still active but is needed in case all
5111             // active streams refcounts where cleared above
5112             if (wasActive) {
5113                 remainingOutput->stop();
5114             }
5115             audio_io_handle_t duplicatedOutput = mOutputs.keyAt(i);
5116             ALOGV("closeOutput() closing also duplicated output %d", duplicatedOutput);
5117 
5118             mpClientInterface->closeOutput(duplicatedOutput);
5119             removeOutput(duplicatedOutput);
5120         }
5121     }
5122 
5123     nextAudioPortGeneration();
5124 
5125     ssize_t index = mAudioPatches.indexOfKey(closingOutput->getPatchHandle());
5126     if (index >= 0) {
5127         sp<AudioPatch> patchDesc = mAudioPatches.valueAt(index);
5128         (void) /*status_t status*/ mpClientInterface->releaseAudioPatch(
5129                     patchDesc->getAfHandle(), 0);
5130         mAudioPatches.removeItemsAt(index);
5131         mpClientInterface->onAudioPatchListUpdate();
5132     }
5133 
5134     if (closingOutputWasActive) {
5135         closingOutput->stop();
5136     }
5137     closingOutput->close();
5138 
5139     removeOutput(output);
5140     mPreviousOutputs = mOutputs;
5141 
5142     // MSD patches may have been released to support a non-MSD direct output. Reset MSD patch if
5143     // no direct outputs are open.
5144     if (!getMsdAudioOutDevices().isEmpty()) {
5145         bool directOutputOpen = false;
5146         for (size_t i = 0; i < mOutputs.size(); i++) {
5147             if (mOutputs[i]->mFlags & AUDIO_OUTPUT_FLAG_DIRECT) {
5148                 directOutputOpen = true;
5149                 break;
5150             }
5151         }
5152         if (!directOutputOpen) {
5153             ALOGV("no direct outputs open, reset MSD patch");
5154             setMsdPatch();
5155         }
5156     }
5157 }
5158 
closeInput(audio_io_handle_t input)5159 void AudioPolicyManager::closeInput(audio_io_handle_t input)
5160 {
5161     ALOGV("closeInput(%d)", input);
5162 
5163     sp<AudioInputDescriptor> inputDesc = mInputs.valueFor(input);
5164     if (inputDesc == NULL) {
5165         ALOGW("closeInput() unknown input %d", input);
5166         return;
5167     }
5168 
5169     nextAudioPortGeneration();
5170 
5171     sp<DeviceDescriptor> device = inputDesc->getDevice();
5172     ssize_t index = mAudioPatches.indexOfKey(inputDesc->getPatchHandle());
5173     if (index >= 0) {
5174         sp<AudioPatch> patchDesc = mAudioPatches.valueAt(index);
5175         (void) /*status_t status*/ mpClientInterface->releaseAudioPatch(
5176                     patchDesc->getAfHandle(), 0);
5177         mAudioPatches.removeItemsAt(index);
5178         mpClientInterface->onAudioPatchListUpdate();
5179     }
5180 
5181     inputDesc->close();
5182     mInputs.removeItem(input);
5183 
5184     DeviceVector primaryInputDevices = availablePrimaryModuleInputDevices();
5185     if (primaryInputDevices.contains(device) &&
5186             mInputs.activeInputsCountOnDevices(primaryInputDevices) == 0) {
5187         mpClientInterface->setSoundTriggerCaptureState(false);
5188     }
5189 }
5190 
getOutputsForDevices(const DeviceVector & devices,const SwAudioOutputCollection & openOutputs)5191 SortedVector<audio_io_handle_t> AudioPolicyManager::getOutputsForDevices(
5192             const DeviceVector &devices,
5193             const SwAudioOutputCollection& openOutputs)
5194 {
5195     SortedVector<audio_io_handle_t> outputs;
5196 
5197     ALOGVV("%s() devices %s", __func__, devices.toString().c_str());
5198     for (size_t i = 0; i < openOutputs.size(); i++) {
5199         ALOGVV("output %zu isDuplicated=%d device=%s",
5200                 i, openOutputs.valueAt(i)->isDuplicated(),
5201                 openOutputs.valueAt(i)->supportedDevices().toString().c_str());
5202         if (openOutputs.valueAt(i)->supportsAllDevices(devices)
5203                 && openOutputs.valueAt(i)->devicesSupportEncodedFormats(devices.types())) {
5204             ALOGVV("%s() found output %d", __func__, openOutputs.keyAt(i));
5205             outputs.add(openOutputs.keyAt(i));
5206         }
5207     }
5208     return outputs;
5209 }
5210 
checkForDeviceAndOutputChanges(std::function<bool ()> onOutputsChecked)5211 void AudioPolicyManager::checkForDeviceAndOutputChanges(std::function<bool()> onOutputsChecked)
5212 {
5213     // checkA2dpSuspend must run before checkOutputForAllStrategies so that A2DP
5214     // output is suspended before any tracks are moved to it
5215     checkA2dpSuspend();
5216     checkOutputForAllStrategies();
5217     checkSecondaryOutputs();
5218     if (onOutputsChecked != nullptr && onOutputsChecked()) checkA2dpSuspend();
5219     updateDevicesAndOutputs();
5220     if (mHwModules.getModuleFromName(AUDIO_HARDWARE_MODULE_ID_MSD) != 0) {
5221         setMsdPatch();
5222     }
5223 }
5224 
followsSameRouting(const audio_attributes_t & lAttr,const audio_attributes_t & rAttr) const5225 bool AudioPolicyManager::followsSameRouting(const audio_attributes_t &lAttr,
5226                                             const audio_attributes_t &rAttr) const
5227 {
5228     return mEngine->getProductStrategyForAttributes(lAttr) ==
5229             mEngine->getProductStrategyForAttributes(rAttr);
5230 }
5231 
checkOutputForAttributes(const audio_attributes_t & attr)5232 void AudioPolicyManager::checkOutputForAttributes(const audio_attributes_t &attr)
5233 {
5234     auto psId = mEngine->getProductStrategyForAttributes(attr);
5235 
5236     DeviceVector oldDevices = mEngine->getOutputDevicesForAttributes(attr, 0, true /*fromCache*/);
5237     DeviceVector newDevices = mEngine->getOutputDevicesForAttributes(attr, 0, false /*fromCache*/);
5238 
5239     SortedVector<audio_io_handle_t> srcOutputs = getOutputsForDevices(oldDevices, mPreviousOutputs);
5240     SortedVector<audio_io_handle_t> dstOutputs = getOutputsForDevices(newDevices, mOutputs);
5241 
5242     uint32_t maxLatency = 0;
5243     bool invalidate = false;
5244     // take into account dynamic audio policies related changes: if a client is now associated
5245     // to a different policy mix than at creation time, invalidate corresponding stream
5246     for (size_t i = 0; i < mPreviousOutputs.size() && !invalidate; i++) {
5247         const sp<SwAudioOutputDescriptor>& desc = mPreviousOutputs.valueAt(i);
5248         if (desc->isDuplicated()) {
5249             continue;
5250         }
5251         for (const sp<TrackClientDescriptor>& client : desc->getClientIterable()) {
5252             if (mEngine->getProductStrategyForAttributes(client->attributes()) != psId) {
5253                 continue;
5254             }
5255             sp<AudioPolicyMix> primaryMix;
5256             status_t status = mPolicyMixes.getOutputForAttr(client->attributes(), client->uid(),
5257                     client->flags(), primaryMix, nullptr);
5258             if (status != OK) {
5259                 continue;
5260             }
5261             if (client->getPrimaryMix() != primaryMix) {
5262                 invalidate = true;
5263                 if (desc->isStrategyActive(psId)) {
5264                     maxLatency = desc->latency();
5265                 }
5266                 break;
5267             }
5268         }
5269     }
5270 
5271     if (srcOutputs != dstOutputs || invalidate) {
5272         // get maximum latency of all source outputs to determine the minimum mute time guaranteeing
5273         // audio from invalidated tracks will be rendered when unmuting
5274         for (audio_io_handle_t srcOut : srcOutputs) {
5275             sp<SwAudioOutputDescriptor> desc = mPreviousOutputs.valueFor(srcOut);
5276             if (desc == nullptr) continue;
5277 
5278             if (desc->isStrategyActive(psId) && maxLatency < desc->latency()) {
5279                 maxLatency = desc->latency();
5280             }
5281 
5282             if (invalidate) continue;
5283 
5284             for (auto client : desc->clientsList(false /*activeOnly*/)) {
5285                 if (desc->isDuplicated() || !desc->mProfile->isDirectOutput()) {
5286                     // a client on a non direct outputs has necessarily a linear PCM format
5287                     // so we can call selectOutput() safely
5288                     const audio_io_handle_t newOutput = selectOutput(dstOutputs,
5289                                                                      client->flags(),
5290                                                                      client->config().format,
5291                                                                      client->config().channel_mask,
5292                                                                      client->config().sample_rate);
5293                     if (newOutput != srcOut) {
5294                         invalidate = true;
5295                         break;
5296                     }
5297                 } else {
5298                     sp<IOProfile> profile = getProfileForOutput(newDevices,
5299                                    client->config().sample_rate,
5300                                    client->config().format,
5301                                    client->config().channel_mask,
5302                                    client->flags(),
5303                                    true /* directOnly */);
5304                     if (profile != desc->mProfile) {
5305                         invalidate = true;
5306                         break;
5307                     }
5308                 }
5309             }
5310         }
5311 
5312         ALOGV_IF(!(srcOutputs.isEmpty() || dstOutputs.isEmpty()),
5313               "%s: strategy %d, moving from output %s to output %s", __func__, psId,
5314               std::to_string(srcOutputs[0]).c_str(),
5315               std::to_string(dstOutputs[0]).c_str());
5316         // mute strategy while moving tracks from one output to another
5317         for (audio_io_handle_t srcOut : srcOutputs) {
5318             sp<SwAudioOutputDescriptor> desc = mPreviousOutputs.valueFor(srcOut);
5319             if (desc == nullptr) continue;
5320 
5321             if (desc->isStrategyActive(psId)) {
5322                 setStrategyMute(psId, true, desc);
5323                 setStrategyMute(psId, false, desc, maxLatency * LATENCY_MUTE_FACTOR,
5324                                 newDevices.types());
5325             }
5326             sp<SourceClientDescriptor> source = getSourceForAttributesOnOutput(srcOut, attr);
5327             if (source != 0){
5328                 connectAudioSource(source);
5329             }
5330         }
5331 
5332         // Move effects associated to this stream from previous output to new output
5333         if (followsSameRouting(attr, attributes_initializer(AUDIO_USAGE_MEDIA))) {
5334             selectOutputForMusicEffects();
5335         }
5336         // Move tracks associated to this stream (and linked) from previous output to new output
5337         if (invalidate) {
5338             for (auto stream :  mEngine->getStreamTypesForProductStrategy(psId)) {
5339                 mpClientInterface->invalidateStream(stream);
5340             }
5341         }
5342     }
5343 }
5344 
checkOutputForAllStrategies()5345 void AudioPolicyManager::checkOutputForAllStrategies()
5346 {
5347     for (const auto &strategy : mEngine->getOrderedProductStrategies()) {
5348         auto attributes = mEngine->getAllAttributesForProductStrategy(strategy).front();
5349         checkOutputForAttributes(attributes);
5350     }
5351 }
5352 
checkSecondaryOutputs()5353 void AudioPolicyManager::checkSecondaryOutputs() {
5354     std::set<audio_stream_type_t> streamsToInvalidate;
5355     for (size_t i = 0; i < mOutputs.size(); i++) {
5356         const sp<SwAudioOutputDescriptor>& outputDescriptor = mOutputs[i];
5357         for (const sp<TrackClientDescriptor>& client : outputDescriptor->getClientIterable()) {
5358             sp<AudioPolicyMix> primaryMix;
5359             std::vector<sp<AudioPolicyMix>> secondaryMixes;
5360             status_t status = mPolicyMixes.getOutputForAttr(client->attributes(), client->uid(),
5361                     client->flags(), primaryMix, &secondaryMixes);
5362             std::vector<sp<SwAudioOutputDescriptor>> secondaryDescs;
5363             for (auto &secondaryMix : secondaryMixes) {
5364                 sp<SwAudioOutputDescriptor> outputDesc = secondaryMix->getOutput();
5365                 if (outputDesc != nullptr &&
5366                     outputDesc->mIoHandle != AUDIO_IO_HANDLE_NONE) {
5367                     secondaryDescs.push_back(outputDesc);
5368                 }
5369             }
5370 
5371             if (status != OK ||
5372                 !std::equal(client->getSecondaryOutputs().begin(),
5373                             client->getSecondaryOutputs().end(),
5374                             secondaryDescs.begin(), secondaryDescs.end())) {
5375                 streamsToInvalidate.insert(client->stream());
5376             }
5377         }
5378     }
5379     for (audio_stream_type_t stream : streamsToInvalidate) {
5380         ALOGD("%s Invalidate stream %d due to secondary output change", __func__, stream);
5381         mpClientInterface->invalidateStream(stream);
5382     }
5383 }
5384 
checkA2dpSuspend()5385 void AudioPolicyManager::checkA2dpSuspend()
5386 {
5387     audio_io_handle_t a2dpOutput = mOutputs.getA2dpOutput();
5388     if (a2dpOutput == 0 || mOutputs.isA2dpOffloadedOnPrimary()) {
5389         mA2dpSuspended = false;
5390         return;
5391     }
5392 
5393     bool isScoConnected =
5394             (mAvailableInputDevices.types().count(AUDIO_DEVICE_IN_BLUETOOTH_SCO_HEADSET) != 0 ||
5395              !Intersection(mAvailableOutputDevices.types(), getAudioDeviceOutAllScoSet()).empty());
5396 
5397     // if suspended, restore A2DP output if:
5398     //      ((SCO device is NOT connected) ||
5399     //       ((forced usage communication is NOT SCO) && (forced usage for record is NOT SCO) &&
5400     //        (phone state is NOT in call) && (phone state is NOT ringing)))
5401     //
5402     // if not suspended, suspend A2DP output if:
5403     //      (SCO device is connected) &&
5404     //       ((forced usage for communication is SCO) || (forced usage for record is SCO) ||
5405     //       ((phone state is in call) || (phone state is ringing)))
5406     //
5407     if (mA2dpSuspended) {
5408         if (!isScoConnected ||
5409              ((mEngine->getForceUse(AUDIO_POLICY_FORCE_FOR_COMMUNICATION) !=
5410                      AUDIO_POLICY_FORCE_BT_SCO) &&
5411               (mEngine->getForceUse(AUDIO_POLICY_FORCE_FOR_RECORD) !=
5412                       AUDIO_POLICY_FORCE_BT_SCO) &&
5413               (mEngine->getPhoneState() != AUDIO_MODE_IN_CALL) &&
5414               (mEngine->getPhoneState() != AUDIO_MODE_RINGTONE))) {
5415 
5416             mpClientInterface->restoreOutput(a2dpOutput);
5417             mA2dpSuspended = false;
5418         }
5419     } else {
5420         if (isScoConnected &&
5421              ((mEngine->getForceUse(AUDIO_POLICY_FORCE_FOR_COMMUNICATION) ==
5422                      AUDIO_POLICY_FORCE_BT_SCO) ||
5423               (mEngine->getForceUse(AUDIO_POLICY_FORCE_FOR_RECORD) ==
5424                       AUDIO_POLICY_FORCE_BT_SCO) ||
5425               (mEngine->getPhoneState() == AUDIO_MODE_IN_CALL) ||
5426               (mEngine->getPhoneState() == AUDIO_MODE_RINGTONE))) {
5427 
5428             mpClientInterface->suspendOutput(a2dpOutput);
5429             mA2dpSuspended = true;
5430         }
5431     }
5432 }
5433 
getNewOutputDevices(const sp<SwAudioOutputDescriptor> & outputDesc,bool fromCache)5434 DeviceVector AudioPolicyManager::getNewOutputDevices(const sp<SwAudioOutputDescriptor>& outputDesc,
5435                                                      bool fromCache)
5436 {
5437     DeviceVector devices;
5438 
5439     ssize_t index = mAudioPatches.indexOfKey(outputDesc->getPatchHandle());
5440     if (index >= 0) {
5441         sp<AudioPatch> patchDesc = mAudioPatches.valueAt(index);
5442         if (patchDesc->getUid() != mUidCached) {
5443             ALOGV("%s device %s forced by patch %d", __func__,
5444                   outputDesc->devices().toString().c_str(), outputDesc->getPatchHandle());
5445             return  outputDesc->devices();
5446         }
5447     }
5448 
5449     // Honor explicit routing requests only if no client using default routing is active on this
5450     // input: a specific app can not force routing for other apps by setting a preferred device.
5451     bool active; // unused
5452     sp<DeviceDescriptor> device =
5453         findPreferredDevice(outputDesc, PRODUCT_STRATEGY_NONE, active, mAvailableOutputDevices);
5454     if (device != nullptr) {
5455         return DeviceVector(device);
5456     }
5457 
5458     // Legacy Engine cannot take care of bus devices and mix, so we need to handle the conflict
5459     // of setForceUse / Default Bus device here
5460     device = mPolicyMixes.getDeviceAndMixForOutput(outputDesc, mAvailableOutputDevices);
5461     if (device != nullptr) {
5462         return DeviceVector(device);
5463     }
5464 
5465     for (const auto &productStrategy : mEngine->getOrderedProductStrategies()) {
5466         StreamTypeVector streams = mEngine->getStreamTypesForProductStrategy(productStrategy);
5467         auto attr = mEngine->getAllAttributesForProductStrategy(productStrategy).front();
5468 
5469         if ((hasVoiceStream(streams) &&
5470              (isInCall() || mOutputs.isStrategyActiveOnSameModule(productStrategy, outputDesc)) &&
5471              !isStreamActive(AUDIO_STREAM_ENFORCED_AUDIBLE, 0)) ||
5472              ((hasStream(streams, AUDIO_STREAM_ALARM) || hasStream(streams, AUDIO_STREAM_ENFORCED_AUDIBLE)) &&
5473                 mOutputs.isStrategyActiveOnSameModule(productStrategy, outputDesc)) ||
5474                 outputDesc->isStrategyActive(productStrategy)) {
5475             // Retrieval of devices for voice DL is done on primary output profile, cannot
5476             // check the route (would force modifying configuration file for this profile)
5477             devices = mEngine->getOutputDevicesForAttributes(attr, nullptr, fromCache);
5478             break;
5479         }
5480     }
5481     ALOGV("%s selected devices %s", __func__, devices.toString().c_str());
5482     return devices;
5483 }
5484 
getNewInputDevice(const sp<AudioInputDescriptor> & inputDesc)5485 sp<DeviceDescriptor> AudioPolicyManager::getNewInputDevice(
5486         const sp<AudioInputDescriptor>& inputDesc)
5487 {
5488     sp<DeviceDescriptor> device;
5489 
5490     ssize_t index = mAudioPatches.indexOfKey(inputDesc->getPatchHandle());
5491     if (index >= 0) {
5492         sp<AudioPatch> patchDesc = mAudioPatches.valueAt(index);
5493         if (patchDesc->getUid() != mUidCached) {
5494             ALOGV("getNewInputDevice() device %s forced by patch %d",
5495                   inputDesc->getDevice()->toString().c_str(), inputDesc->getPatchHandle());
5496             return inputDesc->getDevice();
5497         }
5498     }
5499 
5500     // Honor explicit routing requests only if no client using default routing is active on this
5501     // input: a specific app can not force routing for other apps by setting a preferred device.
5502     bool active;
5503     device = findPreferredDevice(inputDesc, AUDIO_SOURCE_DEFAULT, active, mAvailableInputDevices);
5504     if (device != nullptr) {
5505         return device;
5506     }
5507 
5508     // If we are not in call and no client is active on this input, this methods returns
5509     // a null sp<>, causing the patch on the input stream to be released.
5510     audio_attributes_t attributes = inputDesc->getHighestPriorityAttributes();
5511     if (attributes.source == AUDIO_SOURCE_DEFAULT && isInCall()) {
5512         attributes.source = AUDIO_SOURCE_VOICE_COMMUNICATION;
5513     }
5514     if (attributes.source != AUDIO_SOURCE_DEFAULT) {
5515         device = mEngine->getInputDeviceForAttributes(attributes);
5516     }
5517 
5518     return device;
5519 }
5520 
streamsMatchForvolume(audio_stream_type_t stream1,audio_stream_type_t stream2)5521 bool AudioPolicyManager::streamsMatchForvolume(audio_stream_type_t stream1,
5522                                                audio_stream_type_t stream2) {
5523     return (stream1 == stream2);
5524 }
5525 
getDevicesForStream(audio_stream_type_t stream)5526 audio_devices_t AudioPolicyManager::getDevicesForStream(audio_stream_type_t stream) {
5527     // By checking the range of stream before calling getStrategy, we avoid
5528     // getOutputDevicesForStream's behavior for invalid streams.
5529     // engine's getOutputDevicesForStream would fallback on its default behavior (most probably
5530     // device for music stream), but we want to return the empty set.
5531     if (stream < AUDIO_STREAM_MIN || stream >= AUDIO_STREAM_PUBLIC_CNT) {
5532         return AUDIO_DEVICE_NONE;
5533     }
5534     DeviceVector activeDevices;
5535     DeviceVector devices;
5536     for (audio_stream_type_t curStream = AUDIO_STREAM_MIN; curStream < AUDIO_STREAM_PUBLIC_CNT;
5537          curStream = (audio_stream_type_t) (curStream + 1)) {
5538         if (!streamsMatchForvolume(stream, curStream)) {
5539             continue;
5540         }
5541         DeviceVector curDevices = mEngine->getOutputDevicesForStream(curStream, false/*fromCache*/);
5542         devices.merge(curDevices);
5543         for (audio_io_handle_t output : getOutputsForDevices(curDevices, mOutputs)) {
5544             sp<AudioOutputDescriptor> outputDesc = mOutputs.valueFor(output);
5545             if (outputDesc->isActive(toVolumeSource(curStream))) {
5546                 activeDevices.merge(outputDesc->devices());
5547             }
5548         }
5549     }
5550 
5551     // Favor devices selected on active streams if any to report correct device in case of
5552     // explicit device selection
5553     if (!activeDevices.isEmpty()) {
5554         devices = activeDevices;
5555     }
5556     /*Filter SPEAKER_SAFE out of results, as AudioService doesn't know about it
5557       and doesn't really need to.*/
5558     DeviceVector speakerSafeDevices = devices.getDevicesFromType(AUDIO_DEVICE_OUT_SPEAKER_SAFE);
5559     if (!speakerSafeDevices.isEmpty()) {
5560         devices.merge(mAvailableOutputDevices.getDevicesFromType(AUDIO_DEVICE_OUT_SPEAKER));
5561         devices.remove(speakerSafeDevices);
5562     }
5563     // FIXME: use DeviceTypeSet when Java layer is ready for it.
5564     return deviceTypesToBitMask(devices.types());
5565 }
5566 
getDevicesForAttributes(const audio_attributes_t & attr,AudioDeviceTypeAddrVector * devices)5567 status_t AudioPolicyManager::getDevicesForAttributes(
5568         const audio_attributes_t &attr, AudioDeviceTypeAddrVector *devices) {
5569     if (devices == nullptr) {
5570         return BAD_VALUE;
5571     }
5572     // check dynamic policies but only for primary descriptors (secondary not used for audible
5573     // audio routing, only used for duplication for playback capture)
5574     sp<AudioPolicyMix> policyMix;
5575     status_t status = mPolicyMixes.getOutputForAttr(attr, 0 /*uid unknown here*/,
5576             AUDIO_OUTPUT_FLAG_NONE, policyMix, nullptr);
5577     if (status != OK) {
5578         return status;
5579     }
5580     if (policyMix != nullptr && policyMix->getOutput() != nullptr) {
5581         AudioDeviceTypeAddr device(policyMix->mDeviceType, policyMix->mDeviceAddress.c_str());
5582         devices->push_back(device);
5583         return NO_ERROR;
5584     }
5585     DeviceVector curDevices = mEngine->getOutputDevicesForAttributes(attr, nullptr, false);
5586     for (const auto& device : curDevices) {
5587         devices->push_back(device->getDeviceTypeAddr());
5588     }
5589     return NO_ERROR;
5590 }
5591 
handleNotificationRoutingForStream(audio_stream_type_t stream)5592 void AudioPolicyManager::handleNotificationRoutingForStream(audio_stream_type_t stream) {
5593     switch(stream) {
5594     case AUDIO_STREAM_MUSIC:
5595         checkOutputForAttributes(attributes_initializer(AUDIO_USAGE_NOTIFICATION));
5596         updateDevicesAndOutputs();
5597         break;
5598     default:
5599         break;
5600     }
5601 }
5602 
handleEventForBeacon(int event)5603 uint32_t AudioPolicyManager::handleEventForBeacon(int event) {
5604 
5605     // skip beacon mute management if a dedicated TTS output is available
5606     if (mTtsOutputAvailable) {
5607         return 0;
5608     }
5609 
5610     switch(event) {
5611     case STARTING_OUTPUT:
5612         mBeaconMuteRefCount++;
5613         break;
5614     case STOPPING_OUTPUT:
5615         if (mBeaconMuteRefCount > 0) {
5616             mBeaconMuteRefCount--;
5617         }
5618         break;
5619     case STARTING_BEACON:
5620         mBeaconPlayingRefCount++;
5621         break;
5622     case STOPPING_BEACON:
5623         if (mBeaconPlayingRefCount > 0) {
5624             mBeaconPlayingRefCount--;
5625         }
5626         break;
5627     }
5628 
5629     if (mBeaconMuteRefCount > 0) {
5630         // any playback causes beacon to be muted
5631         return setBeaconMute(true);
5632     } else {
5633         // no other playback: unmute when beacon starts playing, mute when it stops
5634         return setBeaconMute(mBeaconPlayingRefCount == 0);
5635     }
5636 }
5637 
setBeaconMute(bool mute)5638 uint32_t AudioPolicyManager::setBeaconMute(bool mute) {
5639     ALOGV("setBeaconMute(%d) mBeaconMuteRefCount=%d mBeaconPlayingRefCount=%d",
5640             mute, mBeaconMuteRefCount, mBeaconPlayingRefCount);
5641     // keep track of muted state to avoid repeating mute/unmute operations
5642     if (mBeaconMuted != mute) {
5643         // mute/unmute AUDIO_STREAM_TTS on all outputs
5644         ALOGV("\t muting %d", mute);
5645         uint32_t maxLatency = 0;
5646         auto ttsVolumeSource = toVolumeSource(AUDIO_STREAM_TTS);
5647         for (size_t i = 0; i < mOutputs.size(); i++) {
5648             sp<SwAudioOutputDescriptor> desc = mOutputs.valueAt(i);
5649             setVolumeSourceMute(ttsVolumeSource, mute/*on*/, desc, 0 /*delay*/, DeviceTypeSet());
5650             const uint32_t latency = desc->latency() * 2;
5651             if (latency > maxLatency) {
5652                 maxLatency = latency;
5653             }
5654         }
5655         mBeaconMuted = mute;
5656         return maxLatency;
5657     }
5658     return 0;
5659 }
5660 
updateDevicesAndOutputs()5661 void AudioPolicyManager::updateDevicesAndOutputs()
5662 {
5663     mEngine->updateDeviceSelectionCache();
5664     mPreviousOutputs = mOutputs;
5665 }
5666 
checkDeviceMuteStrategies(const sp<AudioOutputDescriptor> & outputDesc,const DeviceVector & prevDevices,uint32_t delayMs)5667 uint32_t AudioPolicyManager::checkDeviceMuteStrategies(const sp<AudioOutputDescriptor>& outputDesc,
5668                                                        const DeviceVector &prevDevices,
5669                                                        uint32_t delayMs)
5670 {
5671     // mute/unmute strategies using an incompatible device combination
5672     // if muting, wait for the audio in pcm buffer to be drained before proceeding
5673     // if unmuting, unmute only after the specified delay
5674     if (outputDesc->isDuplicated()) {
5675         return 0;
5676     }
5677 
5678     uint32_t muteWaitMs = 0;
5679     DeviceVector devices = outputDesc->devices();
5680     bool shouldMute = outputDesc->isActive() && (devices.size() >= 2);
5681 
5682     auto productStrategies = mEngine->getOrderedProductStrategies();
5683     for (const auto &productStrategy : productStrategies) {
5684         auto attributes = mEngine->getAllAttributesForProductStrategy(productStrategy).front();
5685         DeviceVector curDevices =
5686                 mEngine->getOutputDevicesForAttributes(attributes, nullptr, false/*fromCache*/);
5687         curDevices = curDevices.filter(outputDesc->supportedDevices());
5688         bool mute = shouldMute && curDevices.containsAtLeastOne(devices) && curDevices != devices;
5689         bool doMute = false;
5690 
5691         if (mute && !outputDesc->isStrategyMutedByDevice(productStrategy)) {
5692             doMute = true;
5693             outputDesc->setStrategyMutedByDevice(productStrategy, true);
5694         } else if (!mute && outputDesc->isStrategyMutedByDevice(productStrategy)) {
5695             doMute = true;
5696             outputDesc->setStrategyMutedByDevice(productStrategy, false);
5697         }
5698         if (doMute) {
5699             for (size_t j = 0; j < mOutputs.size(); j++) {
5700                 sp<AudioOutputDescriptor> desc = mOutputs.valueAt(j);
5701                 // skip output if it does not share any device with current output
5702                 if (!desc->supportedDevices().containsAtLeastOne(outputDesc->supportedDevices())) {
5703                     continue;
5704                 }
5705                 ALOGVV("%s() %s (curDevice %s)", __func__,
5706                       mute ? "muting" : "unmuting", curDevices.toString().c_str());
5707                 setStrategyMute(productStrategy, mute, desc, mute ? 0 : delayMs);
5708                 if (desc->isStrategyActive(productStrategy)) {
5709                     if (mute) {
5710                         // FIXME: should not need to double latency if volume could be applied
5711                         // immediately by the audioflinger mixer. We must account for the delay
5712                         // between now and the next time the audioflinger thread for this output
5713                         // will process a buffer (which corresponds to one buffer size,
5714                         // usually 1/2 or 1/4 of the latency).
5715                         if (muteWaitMs < desc->latency() * 2) {
5716                             muteWaitMs = desc->latency() * 2;
5717                         }
5718                     }
5719                 }
5720             }
5721         }
5722     }
5723 
5724     // temporary mute output if device selection changes to avoid volume bursts due to
5725     // different per device volumes
5726     if (outputDesc->isActive() && (devices != prevDevices)) {
5727         uint32_t tempMuteWaitMs = outputDesc->latency() * 2;
5728         // temporary mute duration is conservatively set to 4 times the reported latency
5729         uint32_t tempMuteDurationMs = outputDesc->latency() * 4;
5730         if (muteWaitMs < tempMuteWaitMs) {
5731             muteWaitMs = tempMuteWaitMs;
5732         }
5733         for (const auto &activeVs : outputDesc->getActiveVolumeSources()) {
5734             // make sure that we do not start the temporary mute period too early in case of
5735             // delayed device change
5736             setVolumeSourceMute(activeVs, true, outputDesc, delayMs);
5737             setVolumeSourceMute(activeVs, false, outputDesc, delayMs + tempMuteDurationMs,
5738                                 devices.types());
5739         }
5740     }
5741 
5742     // wait for the PCM output buffers to empty before proceeding with the rest of the command
5743     if (muteWaitMs > delayMs) {
5744         muteWaitMs -= delayMs;
5745         usleep(muteWaitMs * 1000);
5746         return muteWaitMs;
5747     }
5748     return 0;
5749 }
5750 
setOutputDevices(const sp<SwAudioOutputDescriptor> & outputDesc,const DeviceVector & devices,bool force,int delayMs,audio_patch_handle_t * patchHandle,bool requiresMuteCheck)5751 uint32_t AudioPolicyManager::setOutputDevices(const sp<SwAudioOutputDescriptor>& outputDesc,
5752                                               const DeviceVector &devices,
5753                                               bool force,
5754                                               int delayMs,
5755                                               audio_patch_handle_t *patchHandle,
5756                                               bool requiresMuteCheck)
5757 {
5758     ALOGV("%s device %s delayMs %d", __func__, devices.toString().c_str(), delayMs);
5759     uint32_t muteWaitMs;
5760 
5761     if (outputDesc->isDuplicated()) {
5762         muteWaitMs = setOutputDevices(outputDesc->subOutput1(), devices, force, delayMs,
5763                 nullptr /* patchHandle */, requiresMuteCheck);
5764         muteWaitMs += setOutputDevices(outputDesc->subOutput2(), devices, force, delayMs,
5765                 nullptr /* patchHandle */, requiresMuteCheck);
5766         return muteWaitMs;
5767     }
5768 
5769     // filter devices according to output selected
5770     DeviceVector filteredDevices = outputDesc->filterSupportedDevices(devices);
5771     DeviceVector prevDevices = outputDesc->devices();
5772 
5773     ALOGV("setOutputDevices() prevDevice %s", prevDevices.toString().c_str());
5774 
5775     if (!filteredDevices.isEmpty()) {
5776         outputDesc->setDevices(filteredDevices);
5777     }
5778 
5779     // if the outputs are not materially active, there is no need to mute.
5780     if (requiresMuteCheck) {
5781         muteWaitMs = checkDeviceMuteStrategies(outputDesc, prevDevices, delayMs);
5782     } else {
5783         ALOGV("%s: suppressing checkDeviceMuteStrategies", __func__);
5784         muteWaitMs = 0;
5785     }
5786 
5787     // no need to proceed if new device is not AUDIO_DEVICE_NONE and not supported by current
5788     // output profile or if new device is not supported AND previous device(s) is(are) still
5789     // available (otherwise reset device must be done on the output)
5790     if (!devices.isEmpty() && filteredDevices.isEmpty() &&
5791             !mAvailableOutputDevices.filter(prevDevices).empty()) {
5792         ALOGV("%s: unsupported device %s for output", __func__, devices.toString().c_str());
5793         // restore previous device after evaluating strategy mute state
5794         outputDesc->setDevices(prevDevices);
5795         return muteWaitMs;
5796     }
5797 
5798     // Do not change the routing if:
5799     //      the requested device is AUDIO_DEVICE_NONE
5800     //      OR the requested device is the same as current device
5801     //  AND force is not specified
5802     //  AND the output is connected by a valid audio patch.
5803     // Doing this check here allows the caller to call setOutputDevices() without conditions
5804     if ((filteredDevices.isEmpty() || filteredDevices == prevDevices) &&
5805             !force && outputDesc->getPatchHandle() != 0) {
5806         ALOGV("%s setting same device %s or null device, force=%d, patch handle=%d", __func__,
5807               filteredDevices.toString().c_str(), force, outputDesc->getPatchHandle());
5808         return muteWaitMs;
5809     }
5810 
5811     ALOGV("%s changing device to %s", __func__, filteredDevices.toString().c_str());
5812 
5813     // do the routing
5814     if (filteredDevices.isEmpty()) {
5815         resetOutputDevice(outputDesc, delayMs, NULL);
5816     } else {
5817         PatchBuilder patchBuilder;
5818         patchBuilder.addSource(outputDesc);
5819         ALOG_ASSERT(filteredDevices.size() <= AUDIO_PATCH_PORTS_MAX, "Too many sink ports");
5820         for (const auto &filteredDevice : filteredDevices) {
5821             patchBuilder.addSink(filteredDevice);
5822         }
5823 
5824         // Add half reported latency to delayMs when muteWaitMs is null in order
5825         // to avoid disordered sequence of muting volume and changing devices.
5826         installPatch(__func__, patchHandle, outputDesc.get(), patchBuilder.patch(),
5827                 muteWaitMs == 0 ? (delayMs + (outputDesc->latency() / 2)) : delayMs);
5828     }
5829 
5830     // update stream volumes according to new device
5831     applyStreamVolumes(outputDesc, filteredDevices.types(), delayMs);
5832 
5833     return muteWaitMs;
5834 }
5835 
resetOutputDevice(const sp<AudioOutputDescriptor> & outputDesc,int delayMs,audio_patch_handle_t * patchHandle)5836 status_t AudioPolicyManager::resetOutputDevice(const sp<AudioOutputDescriptor>& outputDesc,
5837                                                int delayMs,
5838                                                audio_patch_handle_t *patchHandle)
5839 {
5840     ssize_t index;
5841     if (patchHandle) {
5842         index = mAudioPatches.indexOfKey(*patchHandle);
5843     } else {
5844         index = mAudioPatches.indexOfKey(outputDesc->getPatchHandle());
5845     }
5846     if (index < 0) {
5847         return INVALID_OPERATION;
5848     }
5849     sp< AudioPatch> patchDesc = mAudioPatches.valueAt(index);
5850     status_t status = mpClientInterface->releaseAudioPatch(patchDesc->getAfHandle(), delayMs);
5851     ALOGV("resetOutputDevice() releaseAudioPatch returned %d", status);
5852     outputDesc->setPatchHandle(AUDIO_PATCH_HANDLE_NONE);
5853     removeAudioPatch(patchDesc->getHandle());
5854     nextAudioPortGeneration();
5855     mpClientInterface->onAudioPatchListUpdate();
5856     return status;
5857 }
5858 
setInputDevice(audio_io_handle_t input,const sp<DeviceDescriptor> & device,bool force,audio_patch_handle_t * patchHandle)5859 status_t AudioPolicyManager::setInputDevice(audio_io_handle_t input,
5860                                             const sp<DeviceDescriptor> &device,
5861                                             bool force,
5862                                             audio_patch_handle_t *patchHandle)
5863 {
5864     status_t status = NO_ERROR;
5865 
5866     sp<AudioInputDescriptor> inputDesc = mInputs.valueFor(input);
5867     if ((device != nullptr) && ((device != inputDesc->getDevice()) || force)) {
5868         inputDesc->setDevice(device);
5869 
5870         if (mAvailableInputDevices.contains(device)) {
5871             PatchBuilder patchBuilder;
5872             patchBuilder.addSink(inputDesc,
5873             // AUDIO_SOURCE_HOTWORD is for internal use only:
5874             // handled as AUDIO_SOURCE_VOICE_RECOGNITION by the audio HAL
5875                     [inputDesc](const PatchBuilder::mix_usecase_t& usecase) {
5876                         auto result = usecase;
5877                         if (result.source == AUDIO_SOURCE_HOTWORD && !inputDesc->isSoundTrigger()) {
5878                             result.source = AUDIO_SOURCE_VOICE_RECOGNITION;
5879                         }
5880                         return result; }).
5881             //only one input device for now
5882                     addSource(device);
5883             status = installPatch(__func__, patchHandle, inputDesc.get(), patchBuilder.patch(), 0);
5884         }
5885     }
5886     return status;
5887 }
5888 
resetInputDevice(audio_io_handle_t input,audio_patch_handle_t * patchHandle)5889 status_t AudioPolicyManager::resetInputDevice(audio_io_handle_t input,
5890                                               audio_patch_handle_t *patchHandle)
5891 {
5892     sp<AudioInputDescriptor> inputDesc = mInputs.valueFor(input);
5893     ssize_t index;
5894     if (patchHandle) {
5895         index = mAudioPatches.indexOfKey(*patchHandle);
5896     } else {
5897         index = mAudioPatches.indexOfKey(inputDesc->getPatchHandle());
5898     }
5899     if (index < 0) {
5900         return INVALID_OPERATION;
5901     }
5902     sp< AudioPatch> patchDesc = mAudioPatches.valueAt(index);
5903     status_t status = mpClientInterface->releaseAudioPatch(patchDesc->getAfHandle(), 0);
5904     ALOGV("resetInputDevice() releaseAudioPatch returned %d", status);
5905     inputDesc->setPatchHandle(AUDIO_PATCH_HANDLE_NONE);
5906     removeAudioPatch(patchDesc->getHandle());
5907     nextAudioPortGeneration();
5908     mpClientInterface->onAudioPatchListUpdate();
5909     return status;
5910 }
5911 
getInputProfile(const sp<DeviceDescriptor> & device,uint32_t & samplingRate,audio_format_t & format,audio_channel_mask_t & channelMask,audio_input_flags_t flags)5912 sp<IOProfile> AudioPolicyManager::getInputProfile(const sp<DeviceDescriptor> &device,
5913                                                   uint32_t& samplingRate,
5914                                                   audio_format_t& format,
5915                                                   audio_channel_mask_t& channelMask,
5916                                                   audio_input_flags_t flags)
5917 {
5918     // Choose an input profile based on the requested capture parameters: select the first available
5919     // profile supporting all requested parameters.
5920     //
5921     // TODO: perhaps isCompatibleProfile should return a "matching" score so we can return
5922     // the best matching profile, not the first one.
5923 
5924     sp<IOProfile> firstInexact;
5925     uint32_t updatedSamplingRate = 0;
5926     audio_format_t updatedFormat = AUDIO_FORMAT_INVALID;
5927     audio_channel_mask_t updatedChannelMask = AUDIO_CHANNEL_INVALID;
5928     for (const auto& hwModule : mHwModules) {
5929         for (const auto& profile : hwModule->getInputProfiles()) {
5930             // profile->log();
5931             //updatedFormat = format;
5932             if (profile->isCompatibleProfile(DeviceVector(device), samplingRate,
5933                                              &samplingRate  /*updatedSamplingRate*/,
5934                                              format,
5935                                              &format,       /*updatedFormat*/
5936                                              channelMask,
5937                                              &channelMask   /*updatedChannelMask*/,
5938                                              // FIXME ugly cast
5939                                              (audio_output_flags_t) flags,
5940                                              true /*exactMatchRequiredForInputFlags*/)) {
5941                 return profile;
5942             }
5943             if (firstInexact == nullptr && profile->isCompatibleProfile(DeviceVector(device),
5944                                              samplingRate,
5945                                              &updatedSamplingRate,
5946                                              format,
5947                                              &updatedFormat,
5948                                              channelMask,
5949                                              &updatedChannelMask,
5950                                              // FIXME ugly cast
5951                                              (audio_output_flags_t) flags,
5952                                              false /*exactMatchRequiredForInputFlags*/)) {
5953                 firstInexact = profile;
5954             }
5955 
5956         }
5957     }
5958     if (firstInexact != nullptr) {
5959         samplingRate = updatedSamplingRate;
5960         format = updatedFormat;
5961         channelMask = updatedChannelMask;
5962         return firstInexact;
5963     }
5964     return NULL;
5965 }
5966 
computeVolume(IVolumeCurves & curves,VolumeSource volumeSource,int index,const DeviceTypeSet & deviceTypes)5967 float AudioPolicyManager::computeVolume(IVolumeCurves &curves,
5968                                         VolumeSource volumeSource,
5969                                         int index,
5970                                         const DeviceTypeSet& deviceTypes)
5971 {
5972     float volumeDb = curves.volIndexToDb(Volume::getDeviceCategory(deviceTypes), index);
5973 
5974     // handle the case of accessibility active while a ringtone is playing: if the ringtone is much
5975     // louder than the accessibility prompt, the prompt cannot be heard, thus masking the touch
5976     // exploration of the dialer UI. In this situation, bring the accessibility volume closer to
5977     // the ringtone volume
5978     const auto callVolumeSrc = toVolumeSource(AUDIO_STREAM_VOICE_CALL);
5979     const auto ringVolumeSrc = toVolumeSource(AUDIO_STREAM_RING);
5980     const auto musicVolumeSrc = toVolumeSource(AUDIO_STREAM_MUSIC);
5981     const auto alarmVolumeSrc = toVolumeSource(AUDIO_STREAM_ALARM);
5982     const auto a11yVolumeSrc = toVolumeSource(AUDIO_STREAM_ACCESSIBILITY);
5983 
5984     if (volumeSource == a11yVolumeSrc
5985             && (AUDIO_MODE_RINGTONE == mEngine->getPhoneState()) &&
5986             mOutputs.isActive(ringVolumeSrc, 0)) {
5987         auto &ringCurves = getVolumeCurves(AUDIO_STREAM_RING);
5988         const float ringVolumeDb = computeVolume(ringCurves, ringVolumeSrc, index, deviceTypes);
5989         return ringVolumeDb - 4 > volumeDb ? ringVolumeDb - 4 : volumeDb;
5990     }
5991 
5992     // in-call: always cap volume by voice volume + some low headroom
5993     if ((volumeSource != callVolumeSrc && (isInCall() ||
5994                                            mOutputs.isActiveLocally(callVolumeSrc))) &&
5995             (volumeSource == toVolumeSource(AUDIO_STREAM_SYSTEM) ||
5996              volumeSource == ringVolumeSrc || volumeSource == musicVolumeSrc ||
5997              volumeSource == alarmVolumeSrc ||
5998              volumeSource == toVolumeSource(AUDIO_STREAM_NOTIFICATION) ||
5999              volumeSource == toVolumeSource(AUDIO_STREAM_ENFORCED_AUDIBLE) ||
6000              volumeSource == toVolumeSource(AUDIO_STREAM_DTMF) ||
6001              volumeSource == a11yVolumeSrc)) {
6002         auto &voiceCurves = getVolumeCurves(callVolumeSrc);
6003         int voiceVolumeIndex = voiceCurves.getVolumeIndex(deviceTypes);
6004         const float maxVoiceVolDb =
6005                 computeVolume(voiceCurves, callVolumeSrc, voiceVolumeIndex, deviceTypes)
6006                 + IN_CALL_EARPIECE_HEADROOM_DB;
6007         // FIXME: Workaround for call screening applications until a proper audio mode is defined
6008         // to support this scenario : Exempt the RING stream from the audio cap if the audio was
6009         // programmatically muted.
6010         // VOICE_CALL stream has minVolumeIndex > 0 : Users cannot set the volume of voice calls to
6011         // 0. We don't want to cap volume when the system has programmatically muted the voice call
6012         // stream. See setVolumeCurveIndex() for more information.
6013         bool exemptFromCapping =
6014                 ((volumeSource == ringVolumeSrc) || (volumeSource == a11yVolumeSrc))
6015                 && (voiceVolumeIndex == 0);
6016         ALOGV_IF(exemptFromCapping, "%s volume source %d at vol=%f not capped", __func__,
6017                  volumeSource, volumeDb);
6018         if ((volumeDb > maxVoiceVolDb) && !exemptFromCapping) {
6019             ALOGV("%s volume source %d at vol=%f overriden by volume group %d at vol=%f", __func__,
6020                   volumeSource, volumeDb, callVolumeSrc, maxVoiceVolDb);
6021             volumeDb = maxVoiceVolDb;
6022         }
6023     }
6024     // if a headset is connected, apply the following rules to ring tones and notifications
6025     // to avoid sound level bursts in user's ears:
6026     // - always attenuate notifications volume by 6dB
6027     // - attenuate ring tones volume by 6dB unless music is not playing and
6028     // speaker is part of the select devices
6029     // - if music is playing, always limit the volume to current music volume,
6030     // with a minimum threshold at -36dB so that notification is always perceived.
6031     if (!Intersection(deviceTypes,
6032             {AUDIO_DEVICE_OUT_BLUETOOTH_A2DP, AUDIO_DEVICE_OUT_BLUETOOTH_A2DP_HEADPHONES,
6033              AUDIO_DEVICE_OUT_WIRED_HEADSET, AUDIO_DEVICE_OUT_WIRED_HEADPHONE,
6034              AUDIO_DEVICE_OUT_USB_HEADSET, AUDIO_DEVICE_OUT_HEARING_AID}).empty() &&
6035             ((volumeSource == alarmVolumeSrc ||
6036               volumeSource == ringVolumeSrc) ||
6037              (volumeSource == toVolumeSource(AUDIO_STREAM_NOTIFICATION)) ||
6038              (volumeSource == toVolumeSource(AUDIO_STREAM_SYSTEM)) ||
6039              ((volumeSource == toVolumeSource(AUDIO_STREAM_ENFORCED_AUDIBLE)) &&
6040               (mEngine->getForceUse(AUDIO_POLICY_FORCE_FOR_SYSTEM) == AUDIO_POLICY_FORCE_NONE))) &&
6041             curves.canBeMuted()) {
6042 
6043         // when the phone is ringing we must consider that music could have been paused just before
6044         // by the music application and behave as if music was active if the last music track was
6045         // just stopped
6046         if (isStreamActive(AUDIO_STREAM_MUSIC, SONIFICATION_HEADSET_MUSIC_DELAY) ||
6047                 mLimitRingtoneVolume) {
6048             volumeDb += SONIFICATION_HEADSET_VOLUME_FACTOR_DB;
6049             DeviceTypeSet musicDevice =
6050                     mEngine->getOutputDevicesForAttributes(attributes_initializer(AUDIO_USAGE_MEDIA),
6051                                                            nullptr, true /*fromCache*/).types();
6052             auto &musicCurves = getVolumeCurves(AUDIO_STREAM_MUSIC);
6053             float musicVolDb = computeVolume(musicCurves,
6054                                              musicVolumeSrc,
6055                                              musicCurves.getVolumeIndex(musicDevice),
6056                                              musicDevice);
6057             float minVolDb = (musicVolDb > SONIFICATION_HEADSET_VOLUME_MIN_DB) ?
6058                         musicVolDb : SONIFICATION_HEADSET_VOLUME_MIN_DB;
6059             if (volumeDb > minVolDb) {
6060                 volumeDb = minVolDb;
6061                 ALOGV("computeVolume limiting volume to %f musicVol %f", minVolDb, musicVolDb);
6062             }
6063             if (!Intersection(deviceTypes, {AUDIO_DEVICE_OUT_BLUETOOTH_A2DP,
6064                     AUDIO_DEVICE_OUT_BLUETOOTH_A2DP_HEADPHONES}).empty()) {
6065                 // on A2DP, also ensure notification volume is not too low compared to media when
6066                 // intended to be played
6067                 if ((volumeDb > -96.0f) &&
6068                         (musicVolDb - SONIFICATION_A2DP_MAX_MEDIA_DIFF_DB > volumeDb)) {
6069                     ALOGV("%s increasing volume for volume source=%d device=%s from %f to %f",
6070                           __func__, volumeSource, dumpDeviceTypes(deviceTypes).c_str(), volumeDb,
6071                           musicVolDb - SONIFICATION_A2DP_MAX_MEDIA_DIFF_DB);
6072                     volumeDb = musicVolDb - SONIFICATION_A2DP_MAX_MEDIA_DIFF_DB;
6073                 }
6074             }
6075         } else if ((Volume::getDeviceForVolume(deviceTypes) != AUDIO_DEVICE_OUT_SPEAKER) ||
6076                    (!(volumeSource == alarmVolumeSrc || volumeSource == ringVolumeSrc))) {
6077             volumeDb += SONIFICATION_HEADSET_VOLUME_FACTOR_DB;
6078         }
6079     }
6080 
6081     return volumeDb;
6082 }
6083 
rescaleVolumeIndex(int srcIndex,VolumeSource fromVolumeSource,VolumeSource toVolumeSource)6084 int AudioPolicyManager::rescaleVolumeIndex(int srcIndex,
6085                                            VolumeSource fromVolumeSource,
6086                                            VolumeSource toVolumeSource)
6087 {
6088     if (fromVolumeSource == toVolumeSource) {
6089         return srcIndex;
6090     }
6091     auto &srcCurves = getVolumeCurves(fromVolumeSource);
6092     auto &dstCurves = getVolumeCurves(toVolumeSource);
6093     float minSrc = (float)srcCurves.getVolumeIndexMin();
6094     float maxSrc = (float)srcCurves.getVolumeIndexMax();
6095     float minDst = (float)dstCurves.getVolumeIndexMin();
6096     float maxDst = (float)dstCurves.getVolumeIndexMax();
6097 
6098     // preserve mute request or correct range
6099     if (srcIndex < minSrc) {
6100         if (srcIndex == 0) {
6101             return 0;
6102         }
6103         srcIndex = minSrc;
6104     } else if (srcIndex > maxSrc) {
6105         srcIndex = maxSrc;
6106     }
6107     return (int)(minDst + ((srcIndex - minSrc) * (maxDst - minDst)) / (maxSrc - minSrc));
6108 }
6109 
checkAndSetVolume(IVolumeCurves & curves,VolumeSource volumeSource,int index,const sp<AudioOutputDescriptor> & outputDesc,DeviceTypeSet deviceTypes,int delayMs,bool force)6110 status_t AudioPolicyManager::checkAndSetVolume(IVolumeCurves &curves,
6111                                                VolumeSource volumeSource,
6112                                                int index,
6113                                                const sp<AudioOutputDescriptor>& outputDesc,
6114                                                DeviceTypeSet deviceTypes,
6115                                                int delayMs,
6116                                                bool force)
6117 {
6118     // do not change actual attributes volume if the attributes is muted
6119     if (outputDesc->isMuted(volumeSource)) {
6120         ALOGVV("%s: volume source %d muted count %d active=%d", __func__, volumeSource,
6121                outputDesc->getMuteCount(volumeSource), outputDesc->isActive(volumeSource));
6122         return NO_ERROR;
6123     }
6124     VolumeSource callVolSrc = toVolumeSource(AUDIO_STREAM_VOICE_CALL);
6125     VolumeSource btScoVolSrc = toVolumeSource(AUDIO_STREAM_BLUETOOTH_SCO);
6126     bool isVoiceVolSrc = callVolSrc == volumeSource;
6127     bool isBtScoVolSrc = btScoVolSrc == volumeSource;
6128 
6129     audio_policy_forced_cfg_t forceUseForComm =
6130             mEngine->getForceUse(AUDIO_POLICY_FORCE_FOR_COMMUNICATION);
6131     // do not change in call volume if bluetooth is connected and vice versa
6132     // if sco and call follow same curves, bypass forceUseForComm
6133     if ((callVolSrc != btScoVolSrc) &&
6134             ((isVoiceVolSrc && forceUseForComm == AUDIO_POLICY_FORCE_BT_SCO) ||
6135              (isBtScoVolSrc && forceUseForComm != AUDIO_POLICY_FORCE_BT_SCO))) {
6136         ALOGV("%s cannot set volume group %d volume with force use = %d for comm", __func__,
6137              volumeSource, forceUseForComm);
6138         return INVALID_OPERATION;
6139     }
6140     if (deviceTypes.empty()) {
6141         deviceTypes = outputDesc->devices().types();
6142     }
6143 
6144     float volumeDb = computeVolume(curves, volumeSource, index, deviceTypes);
6145     if (outputDesc->isFixedVolume(deviceTypes) ||
6146             // Force VoIP volume to max for bluetooth SCO
6147 
6148             ((isVoiceVolSrc || isBtScoVolSrc) &&
6149                     isSingleDeviceType(deviceTypes, audio_is_bluetooth_out_sco_device))) {
6150         volumeDb = 0.0f;
6151     }
6152     outputDesc->setVolume(
6153             volumeDb, volumeSource, curves.getStreamTypes(), deviceTypes, delayMs, force);
6154 
6155     if (isVoiceVolSrc || isBtScoVolSrc) {
6156         float voiceVolume;
6157         // Force voice volume to max or mute for Bluetooth SCO as other attenuations are managed by the headset
6158         if (isVoiceVolSrc) {
6159             voiceVolume = (float)index/(float)curves.getVolumeIndexMax();
6160         } else {
6161             voiceVolume = index == 0 ? 0.0 : 1.0;
6162         }
6163         if (voiceVolume != mLastVoiceVolume) {
6164             mpClientInterface->setVoiceVolume(voiceVolume, delayMs);
6165             mLastVoiceVolume = voiceVolume;
6166         }
6167     }
6168     return NO_ERROR;
6169 }
6170 
applyStreamVolumes(const sp<AudioOutputDescriptor> & outputDesc,const DeviceTypeSet & deviceTypes,int delayMs,bool force)6171 void AudioPolicyManager::applyStreamVolumes(const sp<AudioOutputDescriptor>& outputDesc,
6172                                             const DeviceTypeSet& deviceTypes,
6173                                             int delayMs,
6174                                             bool force)
6175 {
6176     ALOGVV("applyStreamVolumes() for device %s", dumpDeviceTypes(deviceTypes).c_str());
6177     for (const auto &volumeGroup : mEngine->getVolumeGroups()) {
6178         auto &curves = getVolumeCurves(toVolumeSource(volumeGroup));
6179         checkAndSetVolume(curves, toVolumeSource(volumeGroup),
6180                           curves.getVolumeIndex(deviceTypes),
6181                           outputDesc, deviceTypes, delayMs, force);
6182     }
6183 }
6184 
setStrategyMute(product_strategy_t strategy,bool on,const sp<AudioOutputDescriptor> & outputDesc,int delayMs,DeviceTypeSet deviceTypes)6185 void AudioPolicyManager::setStrategyMute(product_strategy_t strategy,
6186                                          bool on,
6187                                          const sp<AudioOutputDescriptor>& outputDesc,
6188                                          int delayMs,
6189                                          DeviceTypeSet deviceTypes)
6190 {
6191     std::vector<VolumeSource> sourcesToMute;
6192     for (auto attributes: mEngine->getAllAttributesForProductStrategy(strategy)) {
6193         ALOGVV("%s() attributes %s, mute %d, output ID %d", __func__,
6194                toString(attributes).c_str(), on, outputDesc->getId());
6195         VolumeSource source = toVolumeSource(attributes);
6196         if (std::find(begin(sourcesToMute), end(sourcesToMute), source) == end(sourcesToMute)) {
6197             sourcesToMute.push_back(source);
6198         }
6199     }
6200     for (auto source : sourcesToMute) {
6201         setVolumeSourceMute(source, on, outputDesc, delayMs, deviceTypes);
6202     }
6203 
6204 }
6205 
setVolumeSourceMute(VolumeSource volumeSource,bool on,const sp<AudioOutputDescriptor> & outputDesc,int delayMs,DeviceTypeSet deviceTypes)6206 void AudioPolicyManager::setVolumeSourceMute(VolumeSource volumeSource,
6207                                              bool on,
6208                                              const sp<AudioOutputDescriptor>& outputDesc,
6209                                              int delayMs,
6210                                              DeviceTypeSet deviceTypes)
6211 {
6212     if (deviceTypes.empty()) {
6213         deviceTypes = outputDesc->devices().types();
6214     }
6215     auto &curves = getVolumeCurves(volumeSource);
6216     if (on) {
6217         if (!outputDesc->isMuted(volumeSource)) {
6218             if (curves.canBeMuted() &&
6219                     (volumeSource != toVolumeSource(AUDIO_STREAM_ENFORCED_AUDIBLE) ||
6220                      (mEngine->getForceUse(AUDIO_POLICY_FORCE_FOR_SYSTEM) ==
6221                       AUDIO_POLICY_FORCE_NONE))) {
6222                 checkAndSetVolume(curves, volumeSource, 0, outputDesc, deviceTypes, delayMs);
6223             }
6224         }
6225         // increment mMuteCount after calling checkAndSetVolume() so that volume change is not
6226         // ignored
6227         outputDesc->incMuteCount(volumeSource);
6228     } else {
6229         if (!outputDesc->isMuted(volumeSource)) {
6230             ALOGV("%s unmuting non muted attributes!", __func__);
6231             return;
6232         }
6233         if (outputDesc->decMuteCount(volumeSource) == 0) {
6234             checkAndSetVolume(curves, volumeSource,
6235                               curves.getVolumeIndex(deviceTypes),
6236                               outputDesc,
6237                               deviceTypes,
6238                               delayMs);
6239         }
6240     }
6241 }
6242 
isValidAttributes(const audio_attributes_t * paa)6243 bool AudioPolicyManager::isValidAttributes(const audio_attributes_t *paa)
6244 {
6245     // has flags that map to a stream type?
6246     if ((paa->flags & (AUDIO_FLAG_AUDIBILITY_ENFORCED | AUDIO_FLAG_SCO | AUDIO_FLAG_BEACON)) != 0) {
6247         return true;
6248     }
6249 
6250     // has known usage?
6251     switch (paa->usage) {
6252     case AUDIO_USAGE_UNKNOWN:
6253     case AUDIO_USAGE_MEDIA:
6254     case AUDIO_USAGE_VOICE_COMMUNICATION:
6255     case AUDIO_USAGE_VOICE_COMMUNICATION_SIGNALLING:
6256     case AUDIO_USAGE_ALARM:
6257     case AUDIO_USAGE_NOTIFICATION:
6258     case AUDIO_USAGE_NOTIFICATION_TELEPHONY_RINGTONE:
6259     case AUDIO_USAGE_NOTIFICATION_COMMUNICATION_REQUEST:
6260     case AUDIO_USAGE_NOTIFICATION_COMMUNICATION_INSTANT:
6261     case AUDIO_USAGE_NOTIFICATION_COMMUNICATION_DELAYED:
6262     case AUDIO_USAGE_NOTIFICATION_EVENT:
6263     case AUDIO_USAGE_ASSISTANCE_ACCESSIBILITY:
6264     case AUDIO_USAGE_ASSISTANCE_NAVIGATION_GUIDANCE:
6265     case AUDIO_USAGE_ASSISTANCE_SONIFICATION:
6266     case AUDIO_USAGE_GAME:
6267     case AUDIO_USAGE_VIRTUAL_SOURCE:
6268     case AUDIO_USAGE_ASSISTANT:
6269     case AUDIO_USAGE_CALL_ASSISTANT:
6270     case AUDIO_USAGE_EMERGENCY:
6271     case AUDIO_USAGE_SAFETY:
6272     case AUDIO_USAGE_VEHICLE_STATUS:
6273     case AUDIO_USAGE_ANNOUNCEMENT:
6274         break;
6275     default:
6276         return false;
6277     }
6278     return true;
6279 }
6280 
getForceUse(audio_policy_force_use_t usage)6281 audio_policy_forced_cfg_t AudioPolicyManager::getForceUse(audio_policy_force_use_t usage)
6282 {
6283     return mEngine->getForceUse(usage);
6284 }
6285 
isInCall()6286 bool AudioPolicyManager::isInCall()
6287 {
6288     return isStateInCall(mEngine->getPhoneState());
6289 }
6290 
isStateInCall(int state)6291 bool AudioPolicyManager::isStateInCall(int state)
6292 {
6293     return is_state_in_call(state);
6294 }
6295 
isCallAudioAccessible()6296 bool AudioPolicyManager::isCallAudioAccessible()
6297 {
6298     audio_mode_t mode = mEngine->getPhoneState();
6299     return (mode == AUDIO_MODE_IN_CALL)
6300             || (mode == AUDIO_MODE_IN_COMMUNICATION)
6301             || (mode == AUDIO_MODE_CALL_SCREEN);
6302 }
6303 
cleanUpForDevice(const sp<DeviceDescriptor> & deviceDesc)6304 void AudioPolicyManager::cleanUpForDevice(const sp<DeviceDescriptor>& deviceDesc)
6305 {
6306     for (ssize_t i = (ssize_t)mAudioSources.size() - 1; i >= 0; i--)  {
6307         sp<SourceClientDescriptor> sourceDesc = mAudioSources.valueAt(i);
6308         if (sourceDesc->srcDevice()->equals(deviceDesc)) {
6309             ALOGV("%s releasing audio source %d", __FUNCTION__, sourceDesc->portId());
6310             stopAudioSource(sourceDesc->portId());
6311         }
6312     }
6313 
6314     for (ssize_t i = (ssize_t)mAudioPatches.size() - 1; i >= 0; i--)  {
6315         sp<AudioPatch> patchDesc = mAudioPatches.valueAt(i);
6316         bool release = false;
6317         for (size_t j = 0; j < patchDesc->mPatch.num_sources && !release; j++)  {
6318             const struct audio_port_config *source = &patchDesc->mPatch.sources[j];
6319             if (source->type == AUDIO_PORT_TYPE_DEVICE &&
6320                     source->ext.device.type == deviceDesc->type()) {
6321                 release = true;
6322             }
6323         }
6324         for (size_t j = 0; j < patchDesc->mPatch.num_sinks && !release; j++)  {
6325             const struct audio_port_config *sink = &patchDesc->mPatch.sinks[j];
6326             if (sink->type == AUDIO_PORT_TYPE_DEVICE &&
6327                     sink->ext.device.type == deviceDesc->type()) {
6328                 release = true;
6329             }
6330         }
6331         if (release) {
6332             ALOGV("%s releasing patch %u", __FUNCTION__, patchDesc->getHandle());
6333             releaseAudioPatch(patchDesc->getHandle(), patchDesc->getUid());
6334         }
6335     }
6336 
6337     mInputs.clearSessionRoutesForDevice(deviceDesc);
6338 
6339     mHwModules.cleanUpForDevice(deviceDesc);
6340 }
6341 
modifySurroundFormats(const sp<DeviceDescriptor> & devDesc,FormatVector * formatsPtr)6342 void AudioPolicyManager::modifySurroundFormats(
6343         const sp<DeviceDescriptor>& devDesc, FormatVector *formatsPtr) {
6344     std::unordered_set<audio_format_t> enforcedSurround(
6345             devDesc->encodedFormats().begin(), devDesc->encodedFormats().end());
6346     std::unordered_set<audio_format_t> allSurround;  // A flat set of all known surround formats
6347     for (const auto& pair : mConfig.getSurroundFormats()) {
6348         allSurround.insert(pair.first);
6349         for (const auto& subformat : pair.second) allSurround.insert(subformat);
6350     }
6351 
6352     audio_policy_forced_cfg_t forceUse = mEngine->getForceUse(
6353             AUDIO_POLICY_FORCE_FOR_ENCODED_SURROUND);
6354     ALOGD("%s: forced use = %d", __FUNCTION__, forceUse);
6355     // This is the resulting set of formats depending on the surround mode:
6356     //   'all surround' = allSurround
6357     //   'enforced surround' = enforcedSurround [may include IEC69137 which isn't raw surround fmt]
6358     //   'non-surround' = not in 'all surround' and not in 'enforced surround'
6359     //   'manual surround' = mManualSurroundFormats
6360     // AUTO:   formats v 'enforced surround'
6361     // ALWAYS: formats v 'all surround' v 'enforced surround'
6362     // NEVER:  formats ^ 'non-surround'
6363     // MANUAL: formats ^ ('non-surround' v 'manual surround' v (IEC69137 ^ 'enforced surround'))
6364 
6365     std::unordered_set<audio_format_t> formatSet;
6366     if (forceUse == AUDIO_POLICY_FORCE_ENCODED_SURROUND_MANUAL
6367             || forceUse == AUDIO_POLICY_FORCE_ENCODED_SURROUND_NEVER) {
6368         // formatSet is (formats ^ 'non-surround')
6369         for (auto formatIter = formatsPtr->begin(); formatIter != formatsPtr->end(); ++formatIter) {
6370             if (allSurround.count(*formatIter) == 0 && enforcedSurround.count(*formatIter) == 0) {
6371                 formatSet.insert(*formatIter);
6372             }
6373         }
6374     } else {
6375         formatSet.insert(formatsPtr->begin(), formatsPtr->end());
6376     }
6377     formatsPtr->clear();  // Re-filled from the formatSet at the end.
6378 
6379     if (forceUse == AUDIO_POLICY_FORCE_ENCODED_SURROUND_MANUAL) {
6380         formatSet.insert(mManualSurroundFormats.begin(), mManualSurroundFormats.end());
6381         // Enable IEC61937 when in MANUAL mode if it's enforced for this device.
6382         if (enforcedSurround.count(AUDIO_FORMAT_IEC61937) != 0) {
6383             formatSet.insert(AUDIO_FORMAT_IEC61937);
6384         }
6385     } else if (forceUse != AUDIO_POLICY_FORCE_ENCODED_SURROUND_NEVER) { // AUTO or ALWAYS
6386         if (forceUse == AUDIO_POLICY_FORCE_ENCODED_SURROUND_ALWAYS) {
6387             formatSet.insert(allSurround.begin(), allSurround.end());
6388         }
6389         formatSet.insert(enforcedSurround.begin(), enforcedSurround.end());
6390     }
6391     for (const auto& format : formatSet) {
6392         formatsPtr->push_back(format);
6393     }
6394 }
6395 
modifySurroundChannelMasks(ChannelMaskSet * channelMasksPtr)6396 void AudioPolicyManager::modifySurroundChannelMasks(ChannelMaskSet *channelMasksPtr) {
6397     ChannelMaskSet &channelMasks = *channelMasksPtr;
6398     audio_policy_forced_cfg_t forceUse = mEngine->getForceUse(
6399             AUDIO_POLICY_FORCE_FOR_ENCODED_SURROUND);
6400 
6401     // If NEVER, then remove support for channelMasks > stereo.
6402     if (forceUse == AUDIO_POLICY_FORCE_ENCODED_SURROUND_NEVER) {
6403         for (auto it = channelMasks.begin(); it != channelMasks.end();) {
6404             audio_channel_mask_t channelMask = *it;
6405             if (channelMask & ~AUDIO_CHANNEL_OUT_STEREO) {
6406                 ALOGI("%s: force NEVER, so remove channelMask 0x%08x", __FUNCTION__, channelMask);
6407                 it = channelMasks.erase(it);
6408             } else {
6409                 ++it;
6410             }
6411         }
6412     // If ALWAYS or MANUAL, then make sure we at least support 5.1
6413     } else if (forceUse == AUDIO_POLICY_FORCE_ENCODED_SURROUND_ALWAYS
6414             || forceUse == AUDIO_POLICY_FORCE_ENCODED_SURROUND_MANUAL) {
6415         bool supports5dot1 = false;
6416         // Are there any channel masks that can be considered "surround"?
6417         for (audio_channel_mask_t channelMask : channelMasks) {
6418             if ((channelMask & AUDIO_CHANNEL_OUT_5POINT1) == AUDIO_CHANNEL_OUT_5POINT1) {
6419                 supports5dot1 = true;
6420                 break;
6421             }
6422         }
6423         // If not then add 5.1 support.
6424         if (!supports5dot1) {
6425             channelMasks.insert(AUDIO_CHANNEL_OUT_5POINT1);
6426             ALOGI("%s: force MANUAL or ALWAYS, so adding channelMask for 5.1 surround", __func__);
6427         }
6428     }
6429 }
6430 
updateAudioProfiles(const sp<DeviceDescriptor> & devDesc,audio_io_handle_t ioHandle,AudioProfileVector & profiles)6431 void AudioPolicyManager::updateAudioProfiles(const sp<DeviceDescriptor>& devDesc,
6432                                              audio_io_handle_t ioHandle,
6433                                              AudioProfileVector &profiles)
6434 {
6435     String8 reply;
6436     audio_devices_t device = devDesc->type();
6437 
6438     // Format MUST be checked first to update the list of AudioProfile
6439     if (profiles.hasDynamicFormat()) {
6440         reply = mpClientInterface->getParameters(
6441                 ioHandle, String8(AudioParameter::keyStreamSupportedFormats));
6442         ALOGV("%s: supported formats %d, %s", __FUNCTION__, ioHandle, reply.string());
6443         AudioParameter repliedParameters(reply);
6444         if (repliedParameters.get(
6445                 String8(AudioParameter::keyStreamSupportedFormats), reply) != NO_ERROR) {
6446             ALOGE("%s: failed to retrieve format, bailing out", __FUNCTION__);
6447             return;
6448         }
6449         FormatVector formats = formatsFromString(reply.string());
6450         if (device == AUDIO_DEVICE_OUT_HDMI
6451                 || isDeviceOfModule(devDesc, AUDIO_HARDWARE_MODULE_ID_MSD)) {
6452             modifySurroundFormats(devDesc, &formats);
6453         }
6454         addProfilesForFormats(profiles, formats);
6455     }
6456 
6457     for (audio_format_t format : profiles.getSupportedFormats()) {
6458         ChannelMaskSet channelMasks;
6459         SampleRateSet samplingRates;
6460         AudioParameter requestedParameters;
6461         requestedParameters.addInt(String8(AudioParameter::keyFormat), format);
6462 
6463         if (profiles.hasDynamicRateFor(format)) {
6464             reply = mpClientInterface->getParameters(
6465                     ioHandle,
6466                     requestedParameters.toString() + ";" +
6467                     AudioParameter::keyStreamSupportedSamplingRates);
6468             ALOGV("%s: supported sampling rates %s", __FUNCTION__, reply.string());
6469             AudioParameter repliedParameters(reply);
6470             if (repliedParameters.get(
6471                     String8(AudioParameter::keyStreamSupportedSamplingRates), reply) == NO_ERROR) {
6472                 samplingRates = samplingRatesFromString(reply.string());
6473             }
6474         }
6475         if (profiles.hasDynamicChannelsFor(format)) {
6476             reply = mpClientInterface->getParameters(ioHandle,
6477                                                      requestedParameters.toString() + ";" +
6478                                                      AudioParameter::keyStreamSupportedChannels);
6479             ALOGV("%s: supported channel masks %s", __FUNCTION__, reply.string());
6480             AudioParameter repliedParameters(reply);
6481             if (repliedParameters.get(
6482                     String8(AudioParameter::keyStreamSupportedChannels), reply) == NO_ERROR) {
6483                 channelMasks = channelMasksFromString(reply.string());
6484                 if (device == AUDIO_DEVICE_OUT_HDMI
6485                         || isDeviceOfModule(devDesc, AUDIO_HARDWARE_MODULE_ID_MSD)) {
6486                     modifySurroundChannelMasks(&channelMasks);
6487                 }
6488             }
6489         }
6490         addDynamicAudioProfileAndSort(
6491                 profiles, new AudioProfile(format, channelMasks, samplingRates));
6492     }
6493 }
6494 
installPatch(const char * caller,audio_patch_handle_t * patchHandle,AudioIODescriptorInterface * ioDescriptor,const struct audio_patch * patch,int delayMs)6495 status_t AudioPolicyManager::installPatch(const char *caller,
6496                                           audio_patch_handle_t *patchHandle,
6497                                           AudioIODescriptorInterface *ioDescriptor,
6498                                           const struct audio_patch *patch,
6499                                           int delayMs)
6500 {
6501     ssize_t index = mAudioPatches.indexOfKey(
6502             patchHandle && *patchHandle != AUDIO_PATCH_HANDLE_NONE ?
6503             *patchHandle : ioDescriptor->getPatchHandle());
6504     sp<AudioPatch> patchDesc;
6505     status_t status = installPatch(
6506             caller, index, patchHandle, patch, delayMs, mUidCached, &patchDesc);
6507     if (status == NO_ERROR) {
6508         ioDescriptor->setPatchHandle(patchDesc->getHandle());
6509     }
6510     return status;
6511 }
6512 
installPatch(const char * caller,ssize_t index,audio_patch_handle_t * patchHandle,const struct audio_patch * patch,int delayMs,uid_t uid,sp<AudioPatch> * patchDescPtr)6513 status_t AudioPolicyManager::installPatch(const char *caller,
6514                                           ssize_t index,
6515                                           audio_patch_handle_t *patchHandle,
6516                                           const struct audio_patch *patch,
6517                                           int delayMs,
6518                                           uid_t uid,
6519                                           sp<AudioPatch> *patchDescPtr)
6520 {
6521     sp<AudioPatch> patchDesc;
6522     audio_patch_handle_t afPatchHandle = AUDIO_PATCH_HANDLE_NONE;
6523     if (index >= 0) {
6524         patchDesc = mAudioPatches.valueAt(index);
6525         afPatchHandle = patchDesc->getAfHandle();
6526     }
6527 
6528     status_t status = mpClientInterface->createAudioPatch(patch, &afPatchHandle, delayMs);
6529     ALOGV("%s() AF::createAudioPatch returned %d patchHandle %d num_sources %d num_sinks %d",
6530             caller, status, afPatchHandle, patch->num_sources, patch->num_sinks);
6531     if (status == NO_ERROR) {
6532         if (index < 0) {
6533             patchDesc = new AudioPatch(patch, uid);
6534             addAudioPatch(patchDesc->getHandle(), patchDesc);
6535         } else {
6536             patchDesc->mPatch = *patch;
6537         }
6538         patchDesc->setAfHandle(afPatchHandle);
6539         if (patchHandle) {
6540             *patchHandle = patchDesc->getHandle();
6541         }
6542         nextAudioPortGeneration();
6543         mpClientInterface->onAudioPatchListUpdate();
6544     }
6545     if (patchDescPtr) *patchDescPtr = patchDesc;
6546     return status;
6547 }
6548 
6549 } // namespace android
6550