1 /*
2 * Copyright (C) 2015 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_AudioPolicyMix"
18 // #define LOG_NDEBUG 0
19
20 #include <algorithm>
21 #include <iterator>
22 #include <optional>
23 #include <regex>
24 #include "AudioPolicyMix.h"
25 #include "TypeConverter.h"
26 #include "HwModule.h"
27 #include "PolicyAudioPort.h"
28 #include "IOProfile.h"
29 #include <AudioOutputDescriptor.h>
30
31 namespace android {
32 namespace {
33
matchAddressToTags(const audio_attributes_t & attr,const String8 & addr)34 bool matchAddressToTags(const audio_attributes_t& attr, const String8& addr) {
35 std::optional<std::string> tagAddress = extractAddressFromAudioAttributes(attr);
36 return tagAddress.has_value() && tagAddress->compare(addr.c_str()) == 0;
37 }
38
39 // Returns true if the criterion matches.
40 // The exclude criteria are handled in the same way as positive
41 // ones - only condition is matched (the function will return
42 // same result both for RULE_MATCH_X and RULE_EXCLUDE_X).
isCriterionMatched(const AudioMixMatchCriterion & criterion,const audio_attributes_t & attr,const uid_t uid,const audio_session_t session)43 bool isCriterionMatched(const AudioMixMatchCriterion& criterion,
44 const audio_attributes_t& attr,
45 const uid_t uid,
46 const audio_session_t session) {
47 uint32_t ruleWithoutExclusion = criterion.mRule & ~RULE_EXCLUSION_MASK;
48 switch(ruleWithoutExclusion) {
49 case RULE_MATCH_ATTRIBUTE_USAGE:
50 return criterion.mValue.mUsage == attr.usage;
51 case RULE_MATCH_ATTRIBUTE_CAPTURE_PRESET:
52 return criterion.mValue.mSource == attr.source;
53 case RULE_MATCH_UID:
54 return criterion.mValue.mUid == uid;
55 case RULE_MATCH_USERID:
56 {
57 userid_t userId = multiuser_get_user_id(uid);
58 return criterion.mValue.mUserId == userId;
59 }
60 case RULE_MATCH_AUDIO_SESSION_ID:
61 return criterion.mValue.mAudioSessionId == session;
62 }
63 ALOGE("Encountered invalid mix rule 0x%x", criterion.mRule);
64 return false;
65 }
66
67 // Returns true if vector of criteria is matched:
68 // - If any of the exclude criteria is matched the criteria doesn't match.
69 // - Otherwise, for each 'dimension' of positive rule present
70 // (usage, capture preset, uid, userid...) at least one rule must match
71 // for the criteria to match.
areMixCriteriaMatched(const std::vector<AudioMixMatchCriterion> & criteria,const audio_attributes_t & attr,const uid_t uid,const audio_session_t session)72 bool areMixCriteriaMatched(const std::vector<AudioMixMatchCriterion>& criteria,
73 const audio_attributes_t& attr,
74 const uid_t uid,
75 const audio_session_t session) {
76 // If any of the exclusion criteria are matched the mix doesn't match.
77 auto isMatchingExcludeCriterion = [&](const AudioMixMatchCriterion& c) {
78 return c.isExcludeCriterion() && isCriterionMatched(c, attr, uid, session);
79 };
80 if (std::any_of(criteria.begin(), criteria.end(), isMatchingExcludeCriterion)) {
81 return false;
82 }
83
84 uint32_t presentPositiveRules = 0; // Bitmask of all present positive criteria.
85 uint32_t matchedPositiveRules = 0; // Bitmask of all matched positive criteria.
86 for (const auto& criterion : criteria) {
87 if (criterion.isExcludeCriterion()) {
88 continue;
89 }
90 presentPositiveRules |= criterion.mRule;
91 if (isCriterionMatched(criterion, attr, uid, session)) {
92 matchedPositiveRules |= criterion.mRule;
93 }
94 }
95 return presentPositiveRules == matchedPositiveRules;
96 }
97
98 // Consistency checks: for each "dimension" of rules (usage, uid...), we can
99 // only have MATCH rules, or EXCLUDE rules in each dimension, not a combination.
areMixCriteriaConsistent(const std::vector<AudioMixMatchCriterion> & criteria)100 bool areMixCriteriaConsistent(const std::vector<AudioMixMatchCriterion>& criteria) {
101 std::set<uint32_t> positiveCriteria;
102 for (const AudioMixMatchCriterion& c : criteria) {
103 if (c.isExcludeCriterion()) {
104 continue;
105 }
106 positiveCriteria.insert(c.mRule);
107 }
108
109 auto isConflictingCriterion = [&positiveCriteria](const AudioMixMatchCriterion& c) {
110 uint32_t ruleWithoutExclusion = c.mRule & ~RULE_EXCLUSION_MASK;
111 return c.isExcludeCriterion() &&
112 (positiveCriteria.find(ruleWithoutExclusion) != positiveCriteria.end());
113 };
114 return std::none_of(criteria.begin(), criteria.end(), isConflictingCriterion);
115 }
116
117 template <typename Predicate>
EraseCriteriaIf(std::vector<AudioMixMatchCriterion> & v,const Predicate & predicate)118 void EraseCriteriaIf(std::vector<AudioMixMatchCriterion>& v,
119 const Predicate& predicate) {
120 v.erase(std::remove_if(v.begin(), v.end(), predicate), v.end());
121 }
122
123 } // namespace
124
dump(String8 * dst,int spaces,int index) const125 void AudioPolicyMix::dump(String8 *dst, int spaces, int index) const
126 {
127 dst->appendFormat("%*sAudio Policy Mix %d (%p):\n", spaces, "", index + 1, this);
128 std::string mixTypeLiteral;
129 if (!MixTypeConverter::toString(mMixType, mixTypeLiteral)) {
130 ALOGE("%s: failed to convert mix type %d", __FUNCTION__, mMixType);
131 return;
132 }
133 dst->appendFormat("%*s- mix type: %s\n", spaces, "", mixTypeLiteral.c_str());
134
135 std::string routeFlagLiteral;
136 RouteFlagTypeConverter::maskToString(mRouteFlags, routeFlagLiteral);
137 dst->appendFormat("%*s- Route Flags: %s\n", spaces, "", routeFlagLiteral.c_str());
138
139 dst->appendFormat("%*s- device type: %s\n", spaces, "", toString(mDeviceType).c_str());
140
141 dst->appendFormat("%*s- device address: %s\n", spaces, "", mDeviceAddress.string());
142
143 dst->appendFormat("%*s- output: %d\n", spaces, "",
144 mOutput == nullptr ? 0 : mOutput->mIoHandle);
145
146 int indexCriterion = 0;
147 for (const auto &criterion : mCriteria) {
148 dst->appendFormat("%*s- Criterion %d: ", spaces + 2, "", indexCriterion++);
149
150 std::string ruleType, ruleValue;
151 bool unknownRule = !RuleTypeConverter::toString(criterion.mRule, ruleType);
152 switch (criterion.mRule & ~RULE_EXCLUSION_MASK) { // no need to match RULE_EXCLUDE_...
153 case RULE_MATCH_ATTRIBUTE_USAGE:
154 UsageTypeConverter::toString(criterion.mValue.mUsage, ruleValue);
155 break;
156 case RULE_MATCH_ATTRIBUTE_CAPTURE_PRESET:
157 SourceTypeConverter::toString(criterion.mValue.mSource, ruleValue);
158 break;
159 case RULE_MATCH_UID:
160 ruleValue = std::to_string(criterion.mValue.mUid);
161 break;
162 case RULE_MATCH_USERID:
163 ruleValue = std::to_string(criterion.mValue.mUserId);
164 break;
165 case RULE_MATCH_AUDIO_SESSION_ID:
166 ruleValue = std::to_string(criterion.mValue.mAudioSessionId);
167 break;
168 default:
169 unknownRule = true;
170 }
171
172 if (!unknownRule) {
173 dst->appendFormat("%s %s\n", ruleType.c_str(), ruleValue.c_str());
174 } else {
175 dst->appendFormat("Unknown rule type value 0x%x\n", criterion.mRule);
176 }
177 }
178 }
179
registerMix(const AudioMix & mix,const sp<SwAudioOutputDescriptor> & desc)180 status_t AudioPolicyMixCollection::registerMix(const AudioMix& mix,
181 const sp<SwAudioOutputDescriptor>& desc)
182 {
183 for (size_t i = 0; i < size(); i++) {
184 const sp<AudioPolicyMix>& registeredMix = itemAt(i);
185 if (mix.mDeviceType == registeredMix->mDeviceType
186 && mix.mDeviceAddress.compare(registeredMix->mDeviceAddress) == 0
187 && is_mix_loopback(mix.mRouteFlags)) {
188 ALOGE("registerMix(): mix already registered for dev=0x%x addr=%s",
189 mix.mDeviceType, mix.mDeviceAddress.string());
190 return BAD_VALUE;
191 }
192 }
193 if (!areMixCriteriaConsistent(mix.mCriteria)) {
194 ALOGE("registerMix(): Mix contains inconsistent criteria "
195 "(MATCH & EXCLUDE criteria of the same type)");
196 return BAD_VALUE;
197 }
198 sp<AudioPolicyMix> policyMix = sp<AudioPolicyMix>::make(mix);
199 add(policyMix);
200 ALOGD("registerMix(): adding mix for dev=0x%x addr=%s",
201 policyMix->mDeviceType, policyMix->mDeviceAddress.string());
202
203 if (desc != nullptr) {
204 desc->mPolicyMix = policyMix;
205 policyMix->setOutput(desc);
206 }
207 return NO_ERROR;
208 }
209
unregisterMix(const AudioMix & mix)210 status_t AudioPolicyMixCollection::unregisterMix(const AudioMix& mix)
211 {
212 for (size_t i = 0; i < size(); i++) {
213 const sp<AudioPolicyMix>& registeredMix = itemAt(i);
214 if (mix.mDeviceType == registeredMix->mDeviceType
215 && mix.mDeviceAddress.compare(registeredMix->mDeviceAddress) == 0) {
216 ALOGD("unregisterMix(): removing mix for dev=0x%x addr=%s",
217 mix.mDeviceType, mix.mDeviceAddress.string());
218 removeAt(i);
219 return NO_ERROR;
220 }
221 }
222
223 ALOGE("unregisterMix(): mix not registered for dev=0x%x addr=%s",
224 mix.mDeviceType, mix.mDeviceAddress.string());
225 return BAD_VALUE;
226 }
227
getAudioPolicyMix(audio_devices_t deviceType,const String8 & address,sp<AudioPolicyMix> & policyMix) const228 status_t AudioPolicyMixCollection::getAudioPolicyMix(audio_devices_t deviceType,
229 const String8& address, sp<AudioPolicyMix> &policyMix) const
230 {
231
232 ALOGV("getAudioPolicyMix() for dev=0x%x addr=%s", deviceType, address.string());
233 for (ssize_t i = 0; i < size(); i++) {
234 // Workaround: when an in audio policy is registered, it opens an output
235 // that tries to find the audio policy, thus the device must be ignored.
236 if (itemAt(i)->mDeviceAddress.compare(address) == 0) {
237 policyMix = itemAt(i);
238 ALOGV("getAudioPolicyMix: found mix %zu match (devType=0x%x addr=%s)",
239 i, deviceType, address.string());
240 return NO_ERROR;
241 }
242 }
243
244 ALOGE("getAudioPolicyMix(): mix not registered for dev=0x%x addr=%s",
245 deviceType, address.string());
246 return BAD_VALUE;
247 }
248
closeOutput(sp<SwAudioOutputDescriptor> & desc)249 void AudioPolicyMixCollection::closeOutput(sp<SwAudioOutputDescriptor> &desc)
250 {
251 for (size_t i = 0; i < size(); i++) {
252 sp<AudioPolicyMix> policyMix = itemAt(i);
253 if (policyMix->getOutput() == desc) {
254 policyMix->clearOutput();
255 }
256 }
257 }
258
getOutputForAttr(const audio_attributes_t & attributes,const audio_config_base_t & config,const uid_t uid,const audio_session_t session,audio_output_flags_t flags,const DeviceVector & availableOutputDevices,const sp<DeviceDescriptor> & requestedDevice,sp<AudioPolicyMix> & primaryMix,std::vector<sp<AudioPolicyMix>> * secondaryMixes,bool & usePrimaryOutputFromPolicyMixes)259 status_t AudioPolicyMixCollection::getOutputForAttr(
260 const audio_attributes_t& attributes, const audio_config_base_t& config, const uid_t uid,
261 const audio_session_t session,
262 audio_output_flags_t flags,
263 const DeviceVector &availableOutputDevices,
264 const sp<DeviceDescriptor>& requestedDevice,
265 sp<AudioPolicyMix> &primaryMix,
266 std::vector<sp<AudioPolicyMix>> *secondaryMixes,
267 bool& usePrimaryOutputFromPolicyMixes)
268 {
269 ALOGV("getOutputForAttr() querying %zu mixes:", size());
270 primaryMix.clear();
271 bool mixesDisallowsRequestedDevice = false;
272 for (size_t i = 0; i < size(); i++) {
273 sp<AudioPolicyMix> policyMix = itemAt(i);
274 const bool primaryOutputMix = !is_mix_loopback_render(policyMix->mRouteFlags);
275 sp<DeviceDescriptor> mixDevice = getOutputDeviceForMix(policyMix.get(),
276 availableOutputDevices);
277 if (mixDisallowsRequestedDevice(policyMix.get(), requestedDevice, mixDevice, uid)) {
278 ALOGV("%s: Mix %zu: does not allows device", __func__, i);
279 mixesDisallowsRequestedDevice = true;
280 }
281
282 if (primaryOutputMix && primaryMix != nullptr) {
283 ALOGV("%s: Skiping %zu: Primary output already found", __func__, i);
284 continue; // Primary output already found
285 }
286
287 if(!mixMatch(policyMix.get(), i, attributes, config, uid, session)) {
288 ALOGV("%s: Mix %zu: does not match", __func__, i);
289 continue; // skip the mix
290 }
291
292 if ((flags & AUDIO_OUTPUT_FLAG_MMAP_NOIRQ) && is_mix_loopback(policyMix->mRouteFlags)) {
293 // AAudio MMAP_NOIRQ streams cannot be routed to loopback/loopback+render
294 // using dynamic audio policy.
295 ALOGD("%s: Rejecting MMAP_NOIRQ request matched to loopback dynamic audio policy mix.",
296 __func__);
297 return INVALID_OPERATION;
298 }
299
300 if (mixDevice != nullptr && mixDevice->equals(requestedDevice)) {
301 ALOGV("%s: Mix %zu: requested device mathches", __func__, i);
302 mixesDisallowsRequestedDevice = false;
303 }
304
305 if (primaryOutputMix) {
306 primaryMix = policyMix;
307 ALOGV("%s: Mix %zu: set primary desc", __func__, i);
308 } else {
309 ALOGV("%s: Add a secondary desc %zu", __func__, i);
310 if (secondaryMixes != nullptr) {
311 secondaryMixes->push_back(policyMix);
312 }
313 }
314 }
315
316 // Explicit routing is higher priority than dynamic policy primary output, but policy may
317 // explicitly deny it
318 usePrimaryOutputFromPolicyMixes =
319 (mixesDisallowsRequestedDevice || requestedDevice == nullptr) && primaryMix != nullptr;
320
321 return NO_ERROR;
322 }
323
getOutputDeviceForMix(const AudioMix * mix,const DeviceVector & availableOutputDevices)324 sp<DeviceDescriptor> AudioPolicyMixCollection::getOutputDeviceForMix(const AudioMix* mix,
325 const DeviceVector& availableOutputDevices) {
326 ALOGV("%s: device (0x%x, addr=%s) forced by mix", __func__, mix->mDeviceType,
327 mix->mDeviceAddress.c_str());
328 return availableOutputDevices.getDevice(mix->mDeviceType, mix->mDeviceAddress,
329 AUDIO_FORMAT_DEFAULT);
330 }
331
mixDisallowsRequestedDevice(const AudioMix * mix,const sp<DeviceDescriptor> & requestedDevice,const sp<DeviceDescriptor> & mixDevice,const uid_t uid)332 bool AudioPolicyMixCollection::mixDisallowsRequestedDevice(const AudioMix* mix,
333 const sp<DeviceDescriptor>& requestedDevice,
334 const sp<DeviceDescriptor>& mixDevice,
335 const uid_t uid) {
336 if (requestedDevice == nullptr || mixDevice == nullptr) {
337 return false;
338 }
339
340 return is_mix_disallows_preferred_device(mix->mRouteFlags)
341 && requestedDevice->equals(mixDevice)
342 && mix->hasUserIdRule(false /* match */, multiuser_get_user_id(uid));
343 }
344
mixMatch(const AudioMix * mix,size_t mixIndex,const audio_attributes_t & attributes,const audio_config_base_t & config,uid_t uid,audio_session_t session)345 bool AudioPolicyMixCollection::mixMatch(const AudioMix* mix, size_t mixIndex,
346 const audio_attributes_t& attributes, const audio_config_base_t& config,
347 uid_t uid, audio_session_t session) {
348
349 if (mix->mMixType == MIX_TYPE_PLAYERS) {
350 // Loopback render mixes are created from a public API and thus restricted
351 // to non sensible audio that have not opted out.
352 if (is_mix_loopback_render(mix->mRouteFlags)) {
353 if (!(attributes.usage == AUDIO_USAGE_UNKNOWN ||
354 attributes.usage == AUDIO_USAGE_MEDIA ||
355 attributes.usage == AUDIO_USAGE_GAME ||
356 attributes.usage == AUDIO_USAGE_VOICE_COMMUNICATION)) {
357 return false;
358 }
359 auto hasFlag = [](auto flags, auto flag) { return (flags & flag) == flag; };
360 if (hasFlag(attributes.flags, AUDIO_FLAG_NO_SYSTEM_CAPTURE)) {
361 return false;
362 }
363
364 if (attributes.usage == AUDIO_USAGE_VOICE_COMMUNICATION) {
365 if (!mix->mVoiceCommunicationCaptureAllowed) {
366 return false;
367 }
368 } else if (!mix->mAllowPrivilegedMediaPlaybackCapture &&
369 hasFlag(attributes.flags, AUDIO_FLAG_NO_MEDIA_PROJECTION)) {
370 return false;
371 }
372 }
373
374 // Permit match only if requested format and mix format are PCM and can be format
375 // adapted by the mixer, or are the same (compressed) format.
376 if (!is_mix_loopback(mix->mRouteFlags) &&
377 !((audio_is_linear_pcm(config.format) && audio_is_linear_pcm(mix->mFormat.format)) ||
378 (config.format == mix->mFormat.format)) &&
379 config.format != AUDIO_CONFIG_BASE_INITIALIZER.format) {
380 return false;
381 }
382
383 // if there is an address match, prioritize that match
384 if (matchAddressToTags(attributes, mix->mDeviceAddress)
385 || areMixCriteriaMatched(mix->mCriteria, attributes, uid, session)) {
386 ALOGV("\tgetOutputForAttr will use mix %zu", mixIndex);
387 return true;
388 }
389 } else if (mix->mMixType == MIX_TYPE_RECORDERS) {
390 if (attributes.usage == AUDIO_USAGE_VIRTUAL_SOURCE &&
391 matchAddressToTags(attributes, mix->mDeviceAddress)) {
392 return true;
393 }
394 }
395 return false;
396 }
397
getDeviceAndMixForOutput(const sp<SwAudioOutputDescriptor> & output,const DeviceVector & availableOutputDevices)398 sp<DeviceDescriptor> AudioPolicyMixCollection::getDeviceAndMixForOutput(
399 const sp<SwAudioOutputDescriptor> &output,
400 const DeviceVector &availableOutputDevices)
401 {
402 for (size_t i = 0; i < size(); i++) {
403 if (itemAt(i)->getOutput() == output) {
404 // This Desc is involved in a Mix, which has the highest prio
405 return getOutputDeviceForMix(itemAt(i).get(), availableOutputDevices);
406 }
407 }
408 return nullptr;
409 }
410
getDeviceAndMixForInputSource(const audio_attributes_t & attributes,const DeviceVector & availDevices,uid_t uid,audio_session_t session,sp<AudioPolicyMix> * policyMix) const411 sp<DeviceDescriptor> AudioPolicyMixCollection::getDeviceAndMixForInputSource(
412 const audio_attributes_t& attributes,
413 const DeviceVector &availDevices,
414 uid_t uid,
415 audio_session_t session,
416 sp<AudioPolicyMix> *policyMix) const
417 {
418 for (size_t i = 0; i < size(); i++) {
419 AudioPolicyMix *mix = itemAt(i).get();
420 if (mix->mMixType != MIX_TYPE_RECORDERS) {
421 continue;
422 }
423 if (areMixCriteriaMatched(mix->mCriteria, attributes, uid, session)) {
424 // Assuming PolicyMix only for remote submix for input
425 // so mix->mDeviceType can only be AUDIO_DEVICE_OUT_REMOTE_SUBMIX.
426 auto mixDevice = availDevices.getDevice(AUDIO_DEVICE_IN_REMOTE_SUBMIX,
427 mix->mDeviceAddress, AUDIO_FORMAT_DEFAULT);
428 if (mixDevice != nullptr) {
429 if (policyMix != nullptr) {
430 *policyMix = mix;
431 }
432 return mixDevice;
433 }
434 }
435 }
436 return nullptr;
437 }
438
getInputMixForAttr(audio_attributes_t attr,sp<AudioPolicyMix> * policyMix)439 status_t AudioPolicyMixCollection::getInputMixForAttr(
440 audio_attributes_t attr, sp<AudioPolicyMix> *policyMix)
441 {
442 std::optional<std::string> address = extractAddressFromAudioAttributes(attr);
443 if (!address.has_value()) {
444 return BAD_VALUE;
445 }
446
447 #ifdef LOG_NDEBUG
448 ALOGV("getInputMixForAttr looking for address %s for source %d\n mixes available:",
449 address->c_str(), attr.source);
450 for (size_t i = 0; i < size(); i++) {
451 const sp<AudioPolicyMix> audioPolicyMix = itemAt(i);
452 ALOGV("\tmix %zu address=%s", i, audioPolicyMix->mDeviceAddress.string());
453 }
454 #endif
455
456 size_t index;
457 for (index = 0; index < size(); index++) {
458 const sp<AudioPolicyMix>& registeredMix = itemAt(index);
459 if (address->compare(registeredMix->mDeviceAddress.c_str()) == 0) {
460 ALOGD("getInputMixForAttr found addr=%s dev=0x%x",
461 registeredMix->mDeviceAddress.string(), registeredMix->mDeviceType);
462 break;
463 }
464 }
465 if (index == size()) {
466 ALOGW("getInputMixForAttr() no policy for address %s", address->c_str());
467 return BAD_VALUE;
468 }
469 const sp<AudioPolicyMix> audioPolicyMix = itemAt(index);
470
471 if (audioPolicyMix->mMixType != MIX_TYPE_PLAYERS) {
472 ALOGW("getInputMixForAttr() bad policy mix type for address %s", address->c_str());
473 return BAD_VALUE;
474 }
475 if (policyMix != nullptr) {
476 *policyMix = audioPolicyMix;
477 }
478 return NO_ERROR;
479 }
480
setUidDeviceAffinities(uid_t uid,const AudioDeviceTypeAddrVector & devices)481 status_t AudioPolicyMixCollection::setUidDeviceAffinities(uid_t uid,
482 const AudioDeviceTypeAddrVector& devices) {
483 // verify feasibility: for each player mix: if it already contains a
484 // "match uid" rule for this uid, return an error
485 // (adding a uid-device affinity would result in contradictory rules)
486 for (size_t i = 0; i < size(); i++) {
487 const AudioPolicyMix* mix = itemAt(i).get();
488 if (!mix->isDeviceAffinityCompatible()) {
489 continue;
490 }
491 if (mix->hasUidRule(true /*match*/, uid)) {
492 return INVALID_OPERATION;
493 }
494 }
495
496 // remove existing rules for this uid
497 removeUidDeviceAffinities(uid);
498
499 // for each player mix:
500 // IF device is not a target for the mix,
501 // AND it doesn't have a "match uid" rule
502 // THEN add a rule to exclude the uid
503 for (size_t i = 0; i < size(); i++) {
504 AudioPolicyMix *mix = itemAt(i).get();
505 if (!mix->isDeviceAffinityCompatible()) {
506 continue;
507 }
508 // check if this mix goes to a device in the list of devices
509 bool deviceMatch = false;
510 const AudioDeviceTypeAddr mixDevice(mix->mDeviceType, mix->mDeviceAddress.string());
511 for (size_t j = 0; j < devices.size(); j++) {
512 if (mixDevice.equals(devices[j])) {
513 deviceMatch = true;
514 break;
515 }
516 }
517 if (!deviceMatch && !mix->hasMatchUidRule()) {
518 // this mix doesn't go to one of the listed devices for the given uid,
519 // and it's not already restricting the mix on a uid,
520 // modify its rules to exclude the uid
521 if (!mix->hasUidRule(false /*match*/, uid)) {
522 // no need to do it again if uid is already excluded
523 mix->setExcludeUid(uid);
524 }
525 }
526 }
527
528 return NO_ERROR;
529 }
530
removeUidDeviceAffinities(uid_t uid)531 status_t AudioPolicyMixCollection::removeUidDeviceAffinities(uid_t uid) {
532 // for each player mix: remove existing rules that match or exclude this uid
533 for (size_t i = 0; i < size(); i++) {
534 AudioPolicyMix *mix = itemAt(i).get();
535 if (!mix->isDeviceAffinityCompatible()) {
536 continue;
537 }
538
539 // is this rule excluding the uid? (not considering uid match rules
540 // as those are not used for uid-device affinity)
541 EraseCriteriaIf(mix->mCriteria, [uid](const AudioMixMatchCriterion& c) {
542 return c.mRule == RULE_EXCLUDE_UID && c.mValue.mUid == uid;
543 });
544 }
545 return NO_ERROR;
546 }
547
getDevicesForUid(uid_t uid,Vector<AudioDeviceTypeAddr> & devices) const548 status_t AudioPolicyMixCollection::getDevicesForUid(uid_t uid,
549 Vector<AudioDeviceTypeAddr>& devices) const {
550 // for each player mix: find rules that don't exclude this uid, and add the device to the list
551 for (size_t i = 0; i < size(); i++) {
552 bool ruleAllowsUid = true;
553 const AudioPolicyMix *mix = itemAt(i).get();
554 if (mix->mMixType != MIX_TYPE_PLAYERS) {
555 continue;
556 }
557 for (size_t j = 0; j < mix->mCriteria.size(); j++) {
558 const uint32_t rule = mix->mCriteria[j].mRule;
559 if (rule == RULE_EXCLUDE_UID
560 && uid == mix->mCriteria[j].mValue.mUid) {
561 ruleAllowsUid = false;
562 break;
563 }
564 }
565 if (ruleAllowsUid) {
566 devices.add(AudioDeviceTypeAddr(mix->mDeviceType, mix->mDeviceAddress.string()));
567 }
568 }
569 return NO_ERROR;
570 }
571
setUserIdDeviceAffinities(int userId,const AudioDeviceTypeAddrVector & devices)572 status_t AudioPolicyMixCollection::setUserIdDeviceAffinities(int userId,
573 const AudioDeviceTypeAddrVector& devices) {
574 // verify feasibility: for each player mix: if it already contains a
575 // "match userId" rule for this userId, return an error
576 // (adding a userId-device affinity would result in contradictory rules)
577 for (size_t i = 0; i < size(); i++) {
578 AudioPolicyMix* mix = itemAt(i).get();
579 if (!mix->isDeviceAffinityCompatible()) {
580 continue;
581 }
582 if (mix->hasUserIdRule(true /*match*/, userId)) {
583 return INVALID_OPERATION;
584 }
585 }
586
587 // remove existing rules for this userId
588 removeUserIdDeviceAffinities(userId);
589
590 // for each player mix:
591 // IF device is not a target for the mix,
592 // AND it doesn't have a "match userId" rule
593 // THEN add a rule to exclude the userId
594 for (size_t i = 0; i < size(); i++) {
595 AudioPolicyMix *mix = itemAt(i).get();
596 if (!mix->isDeviceAffinityCompatible()) {
597 continue;
598 }
599 // check if this mix goes to a device in the list of devices
600 bool deviceMatch = false;
601 const AudioDeviceTypeAddr mixDevice(mix->mDeviceType, mix->mDeviceAddress.string());
602 for (size_t j = 0; j < devices.size(); j++) {
603 if (mixDevice.equals(devices[j])) {
604 deviceMatch = true;
605 break;
606 }
607 }
608 if (!deviceMatch && !mix->hasUserIdRule(true /*match*/)) {
609 // this mix doesn't go to one of the listed devices for the given userId,
610 // and it's not already restricting the mix on a userId,
611 // modify its rules to exclude the userId
612 if (!mix->hasUserIdRule(false /* match */, userId)) {
613 // no need to do it again if userId is already excluded
614 mix->setExcludeUserId(userId);
615 mix->mRouteFlags = mix->mRouteFlags | MIX_ROUTE_FLAG_DISALLOWS_PREFERRED_DEVICE;
616 }
617 }
618 }
619
620 return NO_ERROR;
621 }
622
removeUserIdDeviceAffinities(int userId)623 status_t AudioPolicyMixCollection::removeUserIdDeviceAffinities(int userId) {
624 // for each player mix: remove existing rules that match or exclude this userId
625 for (size_t i = 0; i < size(); i++) {
626 AudioPolicyMix *mix = itemAt(i).get();
627 if (!mix->isDeviceAffinityCompatible()) {
628 continue;
629 }
630
631 // is this rule excluding the userId? (not considering userId match rules
632 // as those are not used for userId-device affinity)
633 EraseCriteriaIf(mix->mCriteria, [userId](const AudioMixMatchCriterion& c) {
634 return c.mRule == RULE_EXCLUDE_USERID && c.mValue.mUserId == userId;
635 });
636
637 if (!mix->hasUserIdRule(false /* match */)) {
638 mix->mRouteFlags = mix->mRouteFlags & ~MIX_ROUTE_FLAG_DISALLOWS_PREFERRED_DEVICE;
639 }
640 }
641 return NO_ERROR;
642 }
643
getDevicesForUserId(int userId,AudioDeviceTypeAddrVector & devices) const644 status_t AudioPolicyMixCollection::getDevicesForUserId(int userId,
645 AudioDeviceTypeAddrVector& devices) const {
646 // for each player mix:
647 // find rules that don't exclude this userId, and add the device to the list
648 for (size_t i = 0; i < size(); i++) {
649 bool ruleAllowsUserId = true;
650 const AudioPolicyMix *mix = itemAt(i).get();
651 if (mix->mMixType != MIX_TYPE_PLAYERS) {
652 continue;
653 }
654 for (size_t j = 0; j < mix->mCriteria.size(); j++) {
655 const uint32_t rule = mix->mCriteria[j].mRule;
656 if (rule == RULE_EXCLUDE_USERID
657 && userId == mix->mCriteria[j].mValue.mUserId) {
658 ruleAllowsUserId = false;
659 break;
660 }
661 }
662 if (ruleAllowsUserId) {
663 devices.push_back(AudioDeviceTypeAddr(mix->mDeviceType, mix->mDeviceAddress.string()));
664 }
665 }
666 return NO_ERROR;
667 }
668
dump(String8 * dst) const669 void AudioPolicyMixCollection::dump(String8 *dst) const
670 {
671 dst->append("\n Audio Policy Mix:\n");
672 for (size_t i = 0; i < size(); i++) {
673 itemAt(i)->dump(dst, 2, i);
674 }
675 }
676
extractAddressFromAudioAttributes(const audio_attributes_t & attr)677 std::optional<std::string> extractAddressFromAudioAttributes(const audio_attributes_t& attr) {
678 static const std::regex addrTagRegex("addr=([^;]+)");
679
680 std::cmatch match;
681 if (std::regex_search(attr.tags, match, addrTagRegex)) {
682 return match[1].str();
683 }
684 return std::nullopt;
685 }
686
687 }; //namespace android
688