1 /*
2 * Copyright (C) 2007 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 "SurfaceComposerClient"
18
19 #include <stdint.h>
20 #include <sys/types.h>
21
22 #include <android/gui/IWindowInfosListener.h>
23 #include <utils/Errors.h>
24 #include <utils/Log.h>
25 #include <utils/SortedVector.h>
26 #include <utils/String8.h>
27 #include <utils/threads.h>
28
29 #include <binder/IPCThreadState.h>
30 #include <binder/IServiceManager.h>
31 #include <binder/ProcessState.h>
32
33 #include <system/graphics.h>
34
35 #include <gui/BufferItemConsumer.h>
36 #include <gui/CpuConsumer.h>
37 #include <gui/IGraphicBufferProducer.h>
38 #include <gui/ISurfaceComposer.h>
39 #include <gui/ISurfaceComposerClient.h>
40 #include <gui/LayerState.h>
41 #include <gui/Surface.h>
42 #include <gui/SurfaceComposerClient.h>
43 #include <gui/WindowInfo.h>
44 #include <private/gui/ParcelUtils.h>
45 #include <ui/DisplayMode.h>
46 #include <ui/DynamicDisplayInfo.h>
47
48 #include <private/gui/ComposerService.h>
49
50 // This server size should always be smaller than the server cache size
51 #define BUFFER_CACHE_MAX_SIZE 64
52
53 namespace android {
54
55 using gui::FocusRequest;
56 using gui::WindowInfo;
57 using gui::WindowInfoHandle;
58 using gui::WindowInfosListener;
59 using ui::ColorMode;
60 // ---------------------------------------------------------------------------
61
62 ANDROID_SINGLETON_STATIC_INSTANCE(ComposerService);
63
ComposerService()64 ComposerService::ComposerService()
65 : Singleton<ComposerService>() {
66 Mutex::Autolock _l(mLock);
67 connectLocked();
68 }
69
connectLocked()70 bool ComposerService::connectLocked() {
71 const String16 name("SurfaceFlinger");
72 mComposerService = waitForService<ISurfaceComposer>(name);
73 if (mComposerService == nullptr) {
74 return false; // fatal error or permission problem
75 }
76
77 // Create the death listener.
78 class DeathObserver : public IBinder::DeathRecipient {
79 ComposerService& mComposerService;
80 virtual void binderDied(const wp<IBinder>& who) {
81 ALOGW("ComposerService remote (surfaceflinger) died [%p]",
82 who.unsafe_get());
83 mComposerService.composerServiceDied();
84 }
85 public:
86 explicit DeathObserver(ComposerService& mgr) : mComposerService(mgr) { }
87 };
88
89 mDeathObserver = new DeathObserver(*const_cast<ComposerService*>(this));
90 IInterface::asBinder(mComposerService)->linkToDeath(mDeathObserver);
91 return true;
92 }
93
getComposerService()94 /*static*/ sp<ISurfaceComposer> ComposerService::getComposerService() {
95 ComposerService& instance = ComposerService::getInstance();
96 Mutex::Autolock _l(instance.mLock);
97 if (instance.mComposerService == nullptr) {
98 if (ComposerService::getInstance().connectLocked()) {
99 ALOGD("ComposerService reconnected");
100 WindowInfosListenerReporter::getInstance()->reconnect(instance.mComposerService);
101 }
102 }
103 return instance.mComposerService;
104 }
105
composerServiceDied()106 void ComposerService::composerServiceDied()
107 {
108 Mutex::Autolock _l(mLock);
109 mComposerService = nullptr;
110 mDeathObserver = nullptr;
111 }
112
113 class DefaultComposerClient: public Singleton<DefaultComposerClient> {
114 Mutex mLock;
115 sp<SurfaceComposerClient> mClient;
116 friend class Singleton<ComposerService>;
117 public:
getComposerClient()118 static sp<SurfaceComposerClient> getComposerClient() {
119 DefaultComposerClient& dc = DefaultComposerClient::getInstance();
120 Mutex::Autolock _l(dc.mLock);
121 if (dc.mClient == nullptr) {
122 dc.mClient = new SurfaceComposerClient;
123 }
124 return dc.mClient;
125 }
126 };
127 ANDROID_SINGLETON_STATIC_INSTANCE(DefaultComposerClient);
128
129
getDefault()130 sp<SurfaceComposerClient> SurfaceComposerClient::getDefault() {
131 return DefaultComposerClient::getComposerClient();
132 }
133
~JankDataListener()134 JankDataListener::~JankDataListener() {
135 }
136
137 // ---------------------------------------------------------------------------
138
139 // TransactionCompletedListener does not use ANDROID_SINGLETON_STATIC_INSTANCE because it needs
140 // to be able to return a sp<> to its instance to pass to SurfaceFlinger.
141 // ANDROID_SINGLETON_STATIC_INSTANCE only allows a reference to an instance.
142
143 // 0 is an invalid callback id
TransactionCompletedListener()144 TransactionCompletedListener::TransactionCompletedListener() : mCallbackIdCounter(1) {}
145
getNextIdLocked()146 int64_t TransactionCompletedListener::getNextIdLocked() {
147 return mCallbackIdCounter++;
148 }
149
150 sp<TransactionCompletedListener> TransactionCompletedListener::sInstance = nullptr;
151
setInstance(const sp<TransactionCompletedListener> & listener)152 void TransactionCompletedListener::setInstance(const sp<TransactionCompletedListener>& listener) {
153 sInstance = listener;
154 }
155
getInstance()156 sp<TransactionCompletedListener> TransactionCompletedListener::getInstance() {
157 if (sInstance == nullptr) {
158 sInstance = new TransactionCompletedListener;
159 }
160 return sInstance;
161 }
162
getIInstance()163 sp<ITransactionCompletedListener> TransactionCompletedListener::getIInstance() {
164 return static_cast<sp<ITransactionCompletedListener>>(getInstance());
165 }
166
startListeningLocked()167 void TransactionCompletedListener::startListeningLocked() {
168 if (mListening) {
169 return;
170 }
171 ProcessState::self()->startThreadPool();
172 mListening = true;
173 }
174
addCallbackFunction(const TransactionCompletedCallback & callbackFunction,const std::unordered_set<sp<SurfaceControl>,SurfaceComposerClient::SCHash> & surfaceControls,CallbackId::Type callbackType)175 CallbackId TransactionCompletedListener::addCallbackFunction(
176 const TransactionCompletedCallback& callbackFunction,
177 const std::unordered_set<sp<SurfaceControl>, SurfaceComposerClient::SCHash>&
178 surfaceControls,
179 CallbackId::Type callbackType) {
180 std::lock_guard<std::mutex> lock(mMutex);
181 startListeningLocked();
182
183 CallbackId callbackId(getNextIdLocked(), callbackType);
184 mCallbacks[callbackId].callbackFunction = callbackFunction;
185 auto& callbackSurfaceControls = mCallbacks[callbackId].surfaceControls;
186
187 for (const auto& surfaceControl : surfaceControls) {
188 callbackSurfaceControls[surfaceControl->getHandle()] = surfaceControl;
189 }
190
191 return callbackId;
192 }
193
addJankListener(const sp<JankDataListener> & listener,sp<SurfaceControl> surfaceControl)194 void TransactionCompletedListener::addJankListener(const sp<JankDataListener>& listener,
195 sp<SurfaceControl> surfaceControl) {
196 std::lock_guard<std::mutex> lock(mMutex);
197 mJankListeners.insert({surfaceControl->getLayerId(), listener});
198 }
199
removeJankListener(const sp<JankDataListener> & listener)200 void TransactionCompletedListener::removeJankListener(const sp<JankDataListener>& listener) {
201 std::lock_guard<std::mutex> lock(mMutex);
202 for (auto it = mJankListeners.begin(); it != mJankListeners.end();) {
203 if (it->second == listener) {
204 it = mJankListeners.erase(it);
205 } else {
206 it++;
207 }
208 }
209 }
210
setReleaseBufferCallback(const ReleaseCallbackId & callbackId,ReleaseBufferCallback listener)211 void TransactionCompletedListener::setReleaseBufferCallback(const ReleaseCallbackId& callbackId,
212 ReleaseBufferCallback listener) {
213 std::scoped_lock<std::mutex> lock(mMutex);
214 mReleaseBufferCallbacks[callbackId] = listener;
215 }
216
removeReleaseBufferCallback(const ReleaseCallbackId & callbackId)217 void TransactionCompletedListener::removeReleaseBufferCallback(
218 const ReleaseCallbackId& callbackId) {
219 std::scoped_lock<std::mutex> lock(mMutex);
220 mReleaseBufferCallbacks.erase(callbackId);
221 }
222
addSurfaceStatsListener(void * context,void * cookie,sp<SurfaceControl> surfaceControl,SurfaceStatsCallback listener)223 void TransactionCompletedListener::addSurfaceStatsListener(void* context, void* cookie,
224 sp<SurfaceControl> surfaceControl, SurfaceStatsCallback listener) {
225 std::scoped_lock<std::recursive_mutex> lock(mSurfaceStatsListenerMutex);
226 mSurfaceStatsListeners.insert(
227 {surfaceControl->getLayerId(), SurfaceStatsCallbackEntry(context, cookie, listener)});
228 }
229
removeSurfaceStatsListener(void * context,void * cookie)230 void TransactionCompletedListener::removeSurfaceStatsListener(void* context, void* cookie) {
231 std::scoped_lock<std::recursive_mutex> lock(mSurfaceStatsListenerMutex);
232 for (auto it = mSurfaceStatsListeners.begin(); it != mSurfaceStatsListeners.end();) {
233 auto [itContext, itCookie, itListener] = it->second;
234 if (itContext == context && itCookie == cookie) {
235 it = mSurfaceStatsListeners.erase(it);
236 } else {
237 it++;
238 }
239 }
240 }
241
addSurfaceControlToCallbacks(const sp<SurfaceControl> & surfaceControl,const std::unordered_set<CallbackId,CallbackIdHash> & callbackIds)242 void TransactionCompletedListener::addSurfaceControlToCallbacks(
243 const sp<SurfaceControl>& surfaceControl,
244 const std::unordered_set<CallbackId, CallbackIdHash>& callbackIds) {
245 std::lock_guard<std::mutex> lock(mMutex);
246
247 for (auto callbackId : callbackIds) {
248 mCallbacks[callbackId].surfaceControls.emplace(std::piecewise_construct,
249 std::forward_as_tuple(
250 surfaceControl->getHandle()),
251 std::forward_as_tuple(surfaceControl));
252 }
253 }
254
onTransactionCompleted(ListenerStats listenerStats)255 void TransactionCompletedListener::onTransactionCompleted(ListenerStats listenerStats) {
256 std::unordered_map<CallbackId, CallbackTranslation, CallbackIdHash> callbacksMap;
257 std::multimap<int32_t, sp<JankDataListener>> jankListenersMap;
258 {
259 std::lock_guard<std::mutex> lock(mMutex);
260
261 /* This listener knows all the sp<IBinder> to sp<SurfaceControl> for all its registered
262 * callbackIds, except for when Transactions are merged together. This probably cannot be
263 * solved before this point because the Transactions could be merged together and applied in
264 * a different process.
265 *
266 * Fortunately, we get all the callbacks for this listener for the same frame together at
267 * the same time. This means if any Transactions were merged together, we will get their
268 * callbacks at the same time. We can combine all the sp<IBinder> to sp<SurfaceControl> maps
269 * for all the callbackIds to generate one super map that contains all the sp<IBinder> to
270 * sp<SurfaceControl> that could possibly exist for the callbacks.
271 */
272 callbacksMap = mCallbacks;
273 jankListenersMap = mJankListeners;
274 for (const auto& transactionStats : listenerStats.transactionStats) {
275 for (auto& callbackId : transactionStats.callbackIds) {
276 mCallbacks.erase(callbackId);
277 }
278 }
279 }
280 for (const auto& transactionStats : listenerStats.transactionStats) {
281 // handle on commit callbacks
282 for (auto callbackId : transactionStats.callbackIds) {
283 if (callbackId.type != CallbackId::Type::ON_COMMIT) {
284 continue;
285 }
286 auto& [callbackFunction, callbackSurfaceControls] = callbacksMap[callbackId];
287 if (!callbackFunction) {
288 ALOGE("cannot call null callback function, skipping");
289 continue;
290 }
291 std::vector<SurfaceControlStats> surfaceControlStats;
292 for (const auto& surfaceStats : transactionStats.surfaceStats) {
293 surfaceControlStats
294 .emplace_back(callbacksMap[callbackId]
295 .surfaceControls[surfaceStats.surfaceControl],
296 transactionStats.latchTime, surfaceStats.acquireTime,
297 transactionStats.presentFence,
298 surfaceStats.previousReleaseFence, surfaceStats.transformHint,
299 surfaceStats.eventStats, surfaceStats.currentMaxAcquiredBufferCount);
300 }
301
302 callbackFunction(transactionStats.latchTime, transactionStats.presentFence,
303 surfaceControlStats);
304 }
305
306 // handle on complete callbacks
307 for (auto callbackId : transactionStats.callbackIds) {
308 if (callbackId.type != CallbackId::Type::ON_COMPLETE) {
309 continue;
310 }
311 auto& [callbackFunction, callbackSurfaceControls] = callbacksMap[callbackId];
312 if (!callbackFunction) {
313 ALOGE("cannot call null callback function, skipping");
314 continue;
315 }
316 std::vector<SurfaceControlStats> surfaceControlStats;
317 for (const auto& surfaceStats : transactionStats.surfaceStats) {
318 surfaceControlStats
319 .emplace_back(callbacksMap[callbackId]
320 .surfaceControls[surfaceStats.surfaceControl],
321 transactionStats.latchTime, surfaceStats.acquireTime,
322 transactionStats.presentFence,
323 surfaceStats.previousReleaseFence, surfaceStats.transformHint,
324 surfaceStats.eventStats, surfaceStats.currentMaxAcquiredBufferCount);
325 if (callbacksMap[callbackId].surfaceControls[surfaceStats.surfaceControl]) {
326 callbacksMap[callbackId]
327 .surfaceControls[surfaceStats.surfaceControl]
328 ->setTransformHint(surfaceStats.transformHint);
329 }
330 // If there is buffer id set, we look up any pending client release buffer callbacks
331 // and call them. This is a performance optimization when we have a transaction
332 // callback and a release buffer callback happening at the same time to avoid an
333 // additional ipc call from the server.
334 if (surfaceStats.previousReleaseCallbackId != ReleaseCallbackId::INVALID_ID) {
335 ReleaseBufferCallback callback;
336 {
337 std::scoped_lock<std::mutex> lock(mMutex);
338 callback = popReleaseBufferCallbackLocked(
339 surfaceStats.previousReleaseCallbackId);
340 }
341 if (callback) {
342 callback(surfaceStats.previousReleaseCallbackId,
343 surfaceStats.previousReleaseFence
344 ? surfaceStats.previousReleaseFence
345 : Fence::NO_FENCE,
346 surfaceStats.transformHint,
347 surfaceStats.currentMaxAcquiredBufferCount);
348 }
349 }
350 }
351
352 callbackFunction(transactionStats.latchTime, transactionStats.presentFence,
353 surfaceControlStats);
354 }
355
356 for (const auto& surfaceStats : transactionStats.surfaceStats) {
357 // The callbackMap contains the SurfaceControl object, which we need to look up the
358 // layerId. Since we don't know which callback contains the SurfaceControl, iterate
359 // through all until the SC is found.
360 int32_t layerId = -1;
361 for (auto callbackId : transactionStats.callbackIds) {
362 sp<SurfaceControl> sc =
363 callbacksMap[callbackId].surfaceControls[surfaceStats.surfaceControl];
364 if (sc != nullptr) {
365 layerId = sc->getLayerId();
366 break;
367 }
368 }
369
370 {
371 // Acquire surface stats listener lock such that we guarantee that after calling
372 // unregister, there won't be any further callback.
373 std::scoped_lock<std::recursive_mutex> lock(mSurfaceStatsListenerMutex);
374 auto listenerRange = mSurfaceStatsListeners.equal_range(layerId);
375 for (auto it = listenerRange.first; it != listenerRange.second; it++) {
376 auto entry = it->second;
377 entry.callback(entry.context, transactionStats.latchTime,
378 transactionStats.presentFence, surfaceStats);
379 }
380 }
381
382 if (surfaceStats.jankData.empty()) continue;
383 auto jankRange = jankListenersMap.equal_range(layerId);
384 for (auto it = jankRange.first; it != jankRange.second; it++) {
385 it->second->onJankDataAvailable(surfaceStats.jankData);
386 }
387 }
388 }
389 }
390
onReleaseBuffer(ReleaseCallbackId callbackId,sp<Fence> releaseFence,uint32_t transformHint,uint32_t currentMaxAcquiredBufferCount)391 void TransactionCompletedListener::onReleaseBuffer(ReleaseCallbackId callbackId,
392 sp<Fence> releaseFence, uint32_t transformHint,
393 uint32_t currentMaxAcquiredBufferCount) {
394 ReleaseBufferCallback callback;
395 {
396 std::scoped_lock<std::mutex> lock(mMutex);
397 callback = popReleaseBufferCallbackLocked(callbackId);
398 }
399 if (!callback) {
400 ALOGE("Could not call release buffer callback, buffer not found %s",
401 callbackId.to_string().c_str());
402 return;
403 }
404 callback(callbackId, releaseFence, transformHint, currentMaxAcquiredBufferCount);
405 }
406
popReleaseBufferCallbackLocked(const ReleaseCallbackId & callbackId)407 ReleaseBufferCallback TransactionCompletedListener::popReleaseBufferCallbackLocked(
408 const ReleaseCallbackId& callbackId) {
409 ReleaseBufferCallback callback;
410 auto itr = mReleaseBufferCallbacks.find(callbackId);
411 if (itr == mReleaseBufferCallbacks.end()) {
412 return nullptr;
413 }
414 callback = itr->second;
415 mReleaseBufferCallbacks.erase(itr);
416 return callback;
417 }
418
419 // ---------------------------------------------------------------------------
420
421 void removeDeadBufferCallback(void* /*context*/, uint64_t graphicBufferId);
422
423 /**
424 * We use the BufferCache to reduce the overhead of exchanging GraphicBuffers with
425 * the server. If we were to simply parcel the GraphicBuffer we would pay two overheads
426 * 1. Cost of sending the FD
427 * 2. Cost of importing the GraphicBuffer with the mapper in the receiving process.
428 * To ease this cost we implement the following scheme of caching buffers to integers,
429 * or said-otherwise, naming them with integers. This is the scheme known as slots in
430 * the legacy BufferQueue system.
431 * 1. When sending Buffers to SurfaceFlinger we look up the Buffer in the cache.
432 * 2. If there is a cache-hit we remove the Buffer from the Transaction and instead
433 * send the cached integer.
434 * 3. If there is a cache miss, we cache the new buffer and send the integer
435 * along with the Buffer, SurfaceFlinger on it's side creates a new cache
436 * entry, and we use the integer for further communication.
437 * A few details about lifetime:
438 * 1. The cache evicts by LRU. The server side cache is keyed by BufferCache::getToken
439 * which is per process Unique. The server side cache is larger than the client side
440 * cache so that the server will never evict entries before the client.
441 * 2. When the client evicts an entry it notifies the server via an uncacheBuffer
442 * transaction.
443 * 3. The client only references the Buffers by ID, and uses buffer->addDeathCallback
444 * to auto-evict destroyed buffers.
445 */
446 class BufferCache : public Singleton<BufferCache> {
447 public:
BufferCache()448 BufferCache() : token(new BBinder()) {}
449
getToken()450 sp<IBinder> getToken() {
451 return IInterface::asBinder(TransactionCompletedListener::getIInstance());
452 }
453
getCacheId(const sp<GraphicBuffer> & buffer,uint64_t * cacheId)454 status_t getCacheId(const sp<GraphicBuffer>& buffer, uint64_t* cacheId) {
455 std::lock_guard<std::mutex> lock(mMutex);
456
457 auto itr = mBuffers.find(buffer->getId());
458 if (itr == mBuffers.end()) {
459 return BAD_VALUE;
460 }
461 itr->second = getCounter();
462 *cacheId = buffer->getId();
463 return NO_ERROR;
464 }
465
cache(const sp<GraphicBuffer> & buffer)466 uint64_t cache(const sp<GraphicBuffer>& buffer) {
467 std::lock_guard<std::mutex> lock(mMutex);
468
469 if (mBuffers.size() >= BUFFER_CACHE_MAX_SIZE) {
470 evictLeastRecentlyUsedBuffer();
471 }
472
473 buffer->addDeathCallback(removeDeadBufferCallback, nullptr);
474
475 mBuffers[buffer->getId()] = getCounter();
476 return buffer->getId();
477 }
478
uncache(uint64_t cacheId)479 void uncache(uint64_t cacheId) {
480 std::lock_guard<std::mutex> lock(mMutex);
481 uncacheLocked(cacheId);
482 }
483
uncacheLocked(uint64_t cacheId)484 void uncacheLocked(uint64_t cacheId) REQUIRES(mMutex) {
485 mBuffers.erase(cacheId);
486 SurfaceComposerClient::doUncacheBufferTransaction(cacheId);
487 }
488
489 private:
evictLeastRecentlyUsedBuffer()490 void evictLeastRecentlyUsedBuffer() REQUIRES(mMutex) {
491 auto itr = mBuffers.begin();
492 uint64_t minCounter = itr->second;
493 auto minBuffer = itr;
494 itr++;
495
496 while (itr != mBuffers.end()) {
497 uint64_t counter = itr->second;
498 if (counter < minCounter) {
499 minCounter = counter;
500 minBuffer = itr;
501 }
502 itr++;
503 }
504 uncacheLocked(minBuffer->first);
505 }
506
getCounter()507 uint64_t getCounter() REQUIRES(mMutex) {
508 static uint64_t counter = 0;
509 return counter++;
510 }
511
512 std::mutex mMutex;
513 std::map<uint64_t /*Cache id*/, uint64_t /*counter*/> mBuffers GUARDED_BY(mMutex);
514
515 // Used by ISurfaceComposer to identify which process is sending the cached buffer.
516 sp<IBinder> token;
517 };
518
519 ANDROID_SINGLETON_STATIC_INSTANCE(BufferCache);
520
removeDeadBufferCallback(void *,uint64_t graphicBufferId)521 void removeDeadBufferCallback(void* /*context*/, uint64_t graphicBufferId) {
522 // GraphicBuffer id's are used as the cache ids.
523 BufferCache::getInstance().uncache(graphicBufferId);
524 }
525
526 // ---------------------------------------------------------------------------
527
528 // Initialize transaction id counter used to generate transaction ids
529 // Transactions will start counting at 1, 0 is used for invalid transactions
530 std::atomic<uint32_t> SurfaceComposerClient::Transaction::idCounter = 1;
531
Transaction()532 SurfaceComposerClient::Transaction::Transaction() {
533 mId = generateId();
534 }
535
Transaction(const Transaction & other)536 SurfaceComposerClient::Transaction::Transaction(const Transaction& other)
537 : mId(other.mId),
538 mForceSynchronous(other.mForceSynchronous),
539 mTransactionNestCount(other.mTransactionNestCount),
540 mAnimation(other.mAnimation),
541 mEarlyWakeupStart(other.mEarlyWakeupStart),
542 mEarlyWakeupEnd(other.mEarlyWakeupEnd),
543 mContainsBuffer(other.mContainsBuffer),
544 mDesiredPresentTime(other.mDesiredPresentTime),
545 mIsAutoTimestamp(other.mIsAutoTimestamp),
546 mFrameTimelineInfo(other.mFrameTimelineInfo),
547 mApplyToken(other.mApplyToken) {
548 mDisplayStates = other.mDisplayStates;
549 mComposerStates = other.mComposerStates;
550 mInputWindowCommands = other.mInputWindowCommands;
551 mListenerCallbacks = other.mListenerCallbacks;
552 }
553
554 std::unique_ptr<SurfaceComposerClient::Transaction>
createFromParcel(const Parcel * parcel)555 SurfaceComposerClient::Transaction::createFromParcel(const Parcel* parcel) {
556 auto transaction = std::make_unique<Transaction>();
557 if (transaction->readFromParcel(parcel) == NO_ERROR) {
558 return transaction;
559 }
560 return nullptr;
561 }
562
generateId()563 int64_t SurfaceComposerClient::Transaction::generateId() {
564 return (((int64_t)getpid()) << 32) | idCounter++;
565 }
566
readFromParcel(const Parcel * parcel)567 status_t SurfaceComposerClient::Transaction::readFromParcel(const Parcel* parcel) {
568 const uint32_t forceSynchronous = parcel->readUint32();
569 const uint32_t transactionNestCount = parcel->readUint32();
570 const bool animation = parcel->readBool();
571 const bool earlyWakeupStart = parcel->readBool();
572 const bool earlyWakeupEnd = parcel->readBool();
573 const bool containsBuffer = parcel->readBool();
574 const int64_t desiredPresentTime = parcel->readInt64();
575 const bool isAutoTimestamp = parcel->readBool();
576 FrameTimelineInfo frameTimelineInfo;
577 SAFE_PARCEL(frameTimelineInfo.read, *parcel);
578
579 sp<IBinder> applyToken;
580 parcel->readNullableStrongBinder(&applyToken);
581 size_t count = static_cast<size_t>(parcel->readUint32());
582 if (count > parcel->dataSize()) {
583 return BAD_VALUE;
584 }
585 SortedVector<DisplayState> displayStates;
586 displayStates.setCapacity(count);
587 for (size_t i = 0; i < count; i++) {
588 DisplayState displayState;
589 if (displayState.read(*parcel) == BAD_VALUE) {
590 return BAD_VALUE;
591 }
592 displayStates.add(displayState);
593 }
594
595 count = static_cast<size_t>(parcel->readUint32());
596 if (count > parcel->dataSize()) {
597 return BAD_VALUE;
598 }
599 std::unordered_map<sp<ITransactionCompletedListener>, CallbackInfo, TCLHash> listenerCallbacks;
600 listenerCallbacks.reserve(count);
601 for (size_t i = 0; i < count; i++) {
602 sp<ITransactionCompletedListener> listener =
603 interface_cast<ITransactionCompletedListener>(parcel->readStrongBinder());
604 size_t numCallbackIds = parcel->readUint32();
605 if (numCallbackIds > parcel->dataSize()) {
606 return BAD_VALUE;
607 }
608 for (size_t j = 0; j < numCallbackIds; j++) {
609 CallbackId id;
610 parcel->readParcelable(&id);
611 listenerCallbacks[listener].callbackIds.insert(id);
612 }
613 size_t numSurfaces = parcel->readUint32();
614 if (numSurfaces > parcel->dataSize()) {
615 return BAD_VALUE;
616 }
617 for (size_t j = 0; j < numSurfaces; j++) {
618 sp<SurfaceControl> surface;
619 SAFE_PARCEL(SurfaceControl::readFromParcel, *parcel, &surface);
620 listenerCallbacks[listener].surfaceControls.insert(surface);
621 }
622 }
623
624 count = static_cast<size_t>(parcel->readUint32());
625 if (count > parcel->dataSize()) {
626 return BAD_VALUE;
627 }
628 std::unordered_map<sp<IBinder>, ComposerState, IBinderHash> composerStates;
629 composerStates.reserve(count);
630 for (size_t i = 0; i < count; i++) {
631 sp<IBinder> surfaceControlHandle;
632 SAFE_PARCEL(parcel->readStrongBinder, &surfaceControlHandle);
633
634 ComposerState composerState;
635 if (composerState.read(*parcel) == BAD_VALUE) {
636 return BAD_VALUE;
637 }
638
639 composerStates[surfaceControlHandle] = composerState;
640 }
641
642 InputWindowCommands inputWindowCommands;
643 inputWindowCommands.read(*parcel);
644
645 // Parsing was successful. Update the object.
646 mForceSynchronous = forceSynchronous;
647 mTransactionNestCount = transactionNestCount;
648 mAnimation = animation;
649 mEarlyWakeupStart = earlyWakeupStart;
650 mEarlyWakeupEnd = earlyWakeupEnd;
651 mContainsBuffer = containsBuffer;
652 mDesiredPresentTime = desiredPresentTime;
653 mIsAutoTimestamp = isAutoTimestamp;
654 mFrameTimelineInfo = frameTimelineInfo;
655 mDisplayStates = displayStates;
656 mListenerCallbacks = listenerCallbacks;
657 mComposerStates = composerStates;
658 mInputWindowCommands = inputWindowCommands;
659 mApplyToken = applyToken;
660 return NO_ERROR;
661 }
662
writeToParcel(Parcel * parcel) const663 status_t SurfaceComposerClient::Transaction::writeToParcel(Parcel* parcel) const {
664 // If we write the Transaction to a parcel, we want to ensure the Buffers are cached
665 // before crossing the IPC boundary. Otherwise the receiving party will cache the buffers
666 // but is unlikely to use them again as they are owned by the other process.
667 // You may be asking yourself, is this const cast safe? Const cast is safe up
668 // until the point where you try and write to an object that was originally const at which
669 // point we enter undefined behavior. In this case we are safe though, because there are
670 // two possibilities:
671 // 1. The SurfaceComposerClient::Transaction was originally non-const. Safe.
672 // 2. It was originall const! In this case not only was it useless, but it by definition
673 // contains no composer states and so cacheBuffers will not perform any writes.
674
675 const_cast<SurfaceComposerClient::Transaction*>(this)->cacheBuffers();
676
677 parcel->writeUint32(mForceSynchronous);
678 parcel->writeUint32(mTransactionNestCount);
679 parcel->writeBool(mAnimation);
680 parcel->writeBool(mEarlyWakeupStart);
681 parcel->writeBool(mEarlyWakeupEnd);
682 parcel->writeBool(mContainsBuffer);
683 parcel->writeInt64(mDesiredPresentTime);
684 parcel->writeBool(mIsAutoTimestamp);
685 SAFE_PARCEL(mFrameTimelineInfo.write, *parcel);
686 parcel->writeStrongBinder(mApplyToken);
687 parcel->writeUint32(static_cast<uint32_t>(mDisplayStates.size()));
688 for (auto const& displayState : mDisplayStates) {
689 displayState.write(*parcel);
690 }
691
692 parcel->writeUint32(static_cast<uint32_t>(mListenerCallbacks.size()));
693 for (auto const& [listener, callbackInfo] : mListenerCallbacks) {
694 parcel->writeStrongBinder(ITransactionCompletedListener::asBinder(listener));
695 parcel->writeUint32(static_cast<uint32_t>(callbackInfo.callbackIds.size()));
696 for (auto callbackId : callbackInfo.callbackIds) {
697 parcel->writeParcelable(callbackId);
698 }
699 parcel->writeUint32(static_cast<uint32_t>(callbackInfo.surfaceControls.size()));
700 for (auto surfaceControl : callbackInfo.surfaceControls) {
701 SAFE_PARCEL(surfaceControl->writeToParcel, *parcel);
702 }
703 }
704
705 parcel->writeUint32(static_cast<uint32_t>(mComposerStates.size()));
706 for (auto const& [handle, composerState] : mComposerStates) {
707 SAFE_PARCEL(parcel->writeStrongBinder, handle);
708 composerState.write(*parcel);
709 }
710
711 mInputWindowCommands.write(*parcel);
712 return NO_ERROR;
713 }
714
merge(Transaction && other)715 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::merge(Transaction&& other) {
716 for (auto const& [handle, composerState] : other.mComposerStates) {
717 if (mComposerStates.count(handle) == 0) {
718 mComposerStates[handle] = composerState;
719 } else {
720 mComposerStates[handle].state.merge(composerState.state);
721 }
722 }
723
724 for (auto const& state : other.mDisplayStates) {
725 ssize_t index = mDisplayStates.indexOf(state);
726 if (index < 0) {
727 mDisplayStates.add(state);
728 } else {
729 mDisplayStates.editItemAt(static_cast<size_t>(index)).merge(state);
730 }
731 }
732
733 for (const auto& [listener, callbackInfo] : other.mListenerCallbacks) {
734 auto& [callbackIds, surfaceControls] = callbackInfo;
735 mListenerCallbacks[listener].callbackIds.insert(std::make_move_iterator(
736 callbackIds.begin()),
737 std::make_move_iterator(callbackIds.end()));
738
739 mListenerCallbacks[listener].surfaceControls.insert(surfaceControls.begin(),
740 surfaceControls.end());
741
742 auto& currentProcessCallbackInfo =
743 mListenerCallbacks[TransactionCompletedListener::getIInstance()];
744 currentProcessCallbackInfo.surfaceControls
745 .insert(std::make_move_iterator(surfaceControls.begin()),
746 std::make_move_iterator(surfaceControls.end()));
747
748 // register all surface controls for all callbackIds for this listener that is merging
749 for (const auto& surfaceControl : currentProcessCallbackInfo.surfaceControls) {
750 TransactionCompletedListener::getInstance()
751 ->addSurfaceControlToCallbacks(surfaceControl,
752 currentProcessCallbackInfo.callbackIds);
753 }
754 }
755
756 mInputWindowCommands.merge(other.mInputWindowCommands);
757
758 mContainsBuffer |= other.mContainsBuffer;
759 mEarlyWakeupStart = mEarlyWakeupStart || other.mEarlyWakeupStart;
760 mEarlyWakeupEnd = mEarlyWakeupEnd || other.mEarlyWakeupEnd;
761 mApplyToken = other.mApplyToken;
762
763 mFrameTimelineInfo.merge(other.mFrameTimelineInfo);
764
765 other.clear();
766 return *this;
767 }
768
clear()769 void SurfaceComposerClient::Transaction::clear() {
770 mComposerStates.clear();
771 mDisplayStates.clear();
772 mListenerCallbacks.clear();
773 mInputWindowCommands.clear();
774 mContainsBuffer = false;
775 mForceSynchronous = 0;
776 mTransactionNestCount = 0;
777 mAnimation = false;
778 mEarlyWakeupStart = false;
779 mEarlyWakeupEnd = false;
780 mDesiredPresentTime = 0;
781 mIsAutoTimestamp = true;
782 mFrameTimelineInfo.clear();
783 mApplyToken = nullptr;
784 }
785
doUncacheBufferTransaction(uint64_t cacheId)786 void SurfaceComposerClient::doUncacheBufferTransaction(uint64_t cacheId) {
787 sp<ISurfaceComposer> sf(ComposerService::getComposerService());
788
789 client_cache_t uncacheBuffer;
790 uncacheBuffer.token = BufferCache::getInstance().getToken();
791 uncacheBuffer.id = cacheId;
792
793 sp<IBinder> applyToken = IInterface::asBinder(TransactionCompletedListener::getIInstance());
794 sf->setTransactionState(FrameTimelineInfo{}, {}, {}, 0, applyToken, {}, systemTime(), true,
795 uncacheBuffer, false, {}, 0 /* Undefined transactionId */);
796 }
797
cacheBuffers()798 void SurfaceComposerClient::Transaction::cacheBuffers() {
799 if (!mContainsBuffer) {
800 return;
801 }
802
803 size_t count = 0;
804 for (auto& [handle, cs] : mComposerStates) {
805 layer_state_t* s = &(mComposerStates[handle].state);
806 if (!(s->what & layer_state_t::eBufferChanged)) {
807 continue;
808 } else if (s->what & layer_state_t::eCachedBufferChanged) {
809 // If eBufferChanged and eCachedBufferChanged are both trued then that means
810 // we already cached the buffer in a previous call to cacheBuffers, perhaps
811 // from writeToParcel on a Transaction that was merged in to this one.
812 continue;
813 }
814
815 // Don't try to cache a null buffer. Sending null buffers is cheap so we shouldn't waste
816 // time trying to cache them.
817 if (!s->buffer) {
818 continue;
819 }
820
821 uint64_t cacheId = 0;
822 status_t ret = BufferCache::getInstance().getCacheId(s->buffer, &cacheId);
823 if (ret == NO_ERROR) {
824 // Cache-hit. Strip the buffer and send only the id.
825 s->what &= ~static_cast<uint64_t>(layer_state_t::eBufferChanged);
826 s->buffer = nullptr;
827 } else {
828 // Cache-miss. Include the buffer and send the new cacheId.
829 cacheId = BufferCache::getInstance().cache(s->buffer);
830 }
831 s->what |= layer_state_t::eCachedBufferChanged;
832 s->cachedBuffer.token = BufferCache::getInstance().getToken();
833 s->cachedBuffer.id = cacheId;
834
835 // If we have more buffers than the size of the cache, we should stop caching so we don't
836 // evict other buffers in this transaction
837 count++;
838 if (count >= BUFFER_CACHE_MAX_SIZE) {
839 break;
840 }
841 }
842 }
843
apply(bool synchronous)844 status_t SurfaceComposerClient::Transaction::apply(bool synchronous) {
845 if (mStatus != NO_ERROR) {
846 return mStatus;
847 }
848
849 sp<ISurfaceComposer> sf(ComposerService::getComposerService());
850
851 bool hasListenerCallbacks = !mListenerCallbacks.empty();
852 std::vector<ListenerCallbacks> listenerCallbacks;
853 // For every listener with registered callbacks
854 for (const auto& [listener, callbackInfo] : mListenerCallbacks) {
855 auto& [callbackIds, surfaceControls] = callbackInfo;
856 if (callbackIds.empty()) {
857 continue;
858 }
859
860 if (surfaceControls.empty()) {
861 listenerCallbacks.emplace_back(IInterface::asBinder(listener), std::move(callbackIds));
862 } else {
863 // If the listener has any SurfaceControls set on this Transaction update the surface
864 // state
865 for (const auto& surfaceControl : surfaceControls) {
866 layer_state_t* s = getLayerState(surfaceControl);
867 if (!s) {
868 ALOGE("failed to get layer state");
869 continue;
870 }
871 std::vector<CallbackId> callbacks(callbackIds.begin(), callbackIds.end());
872 s->what |= layer_state_t::eHasListenerCallbacksChanged;
873 s->listeners.emplace_back(IInterface::asBinder(listener), callbacks);
874 }
875 }
876 }
877
878 cacheBuffers();
879
880 Vector<ComposerState> composerStates;
881 Vector<DisplayState> displayStates;
882 uint32_t flags = 0;
883
884 mForceSynchronous |= synchronous;
885
886 for (auto const& kv : mComposerStates){
887 composerStates.add(kv.second);
888 }
889
890 displayStates = std::move(mDisplayStates);
891
892 if (mForceSynchronous) {
893 flags |= ISurfaceComposer::eSynchronous;
894 }
895 if (mAnimation) {
896 flags |= ISurfaceComposer::eAnimation;
897 }
898
899 // If both mEarlyWakeupStart and mEarlyWakeupEnd are set
900 // it is equivalent for none
901 if (mEarlyWakeupStart && !mEarlyWakeupEnd) {
902 flags |= ISurfaceComposer::eEarlyWakeupStart;
903 }
904 if (mEarlyWakeupEnd && !mEarlyWakeupStart) {
905 flags |= ISurfaceComposer::eEarlyWakeupEnd;
906 }
907
908 sp<IBinder> applyToken = mApplyToken
909 ? mApplyToken
910 : IInterface::asBinder(TransactionCompletedListener::getIInstance());
911
912 sf->setTransactionState(mFrameTimelineInfo, composerStates, displayStates, flags, applyToken,
913 mInputWindowCommands, mDesiredPresentTime, mIsAutoTimestamp,
914 {} /*uncacheBuffer - only set in doUncacheBufferTransaction*/,
915 hasListenerCallbacks, listenerCallbacks, mId);
916 mId = generateId();
917
918 // Clear the current states and flags
919 clear();
920
921 mStatus = NO_ERROR;
922 return NO_ERROR;
923 }
924
925 // ---------------------------------------------------------------------------
926
createDisplay(const String8 & displayName,bool secure)927 sp<IBinder> SurfaceComposerClient::createDisplay(const String8& displayName, bool secure) {
928 return ComposerService::getComposerService()->createDisplay(displayName,
929 secure);
930 }
931
destroyDisplay(const sp<IBinder> & display)932 void SurfaceComposerClient::destroyDisplay(const sp<IBinder>& display) {
933 return ComposerService::getComposerService()->destroyDisplay(display);
934 }
935
getPhysicalDisplayIds()936 std::vector<PhysicalDisplayId> SurfaceComposerClient::getPhysicalDisplayIds() {
937 return ComposerService::getComposerService()->getPhysicalDisplayIds();
938 }
939
getPrimaryPhysicalDisplayId(PhysicalDisplayId * id)940 status_t SurfaceComposerClient::getPrimaryPhysicalDisplayId(PhysicalDisplayId* id) {
941 return ComposerService::getComposerService()->getPrimaryPhysicalDisplayId(id);
942 }
943
getInternalDisplayId()944 std::optional<PhysicalDisplayId> SurfaceComposerClient::getInternalDisplayId() {
945 return ComposerService::getComposerService()->getInternalDisplayId();
946 }
947
getPhysicalDisplayToken(PhysicalDisplayId displayId)948 sp<IBinder> SurfaceComposerClient::getPhysicalDisplayToken(PhysicalDisplayId displayId) {
949 return ComposerService::getComposerService()->getPhysicalDisplayToken(displayId);
950 }
951
getInternalDisplayToken()952 sp<IBinder> SurfaceComposerClient::getInternalDisplayToken() {
953 return ComposerService::getComposerService()->getInternalDisplayToken();
954 }
955
setAnimationTransaction()956 void SurfaceComposerClient::Transaction::setAnimationTransaction() {
957 mAnimation = true;
958 }
959
setEarlyWakeupStart()960 void SurfaceComposerClient::Transaction::setEarlyWakeupStart() {
961 mEarlyWakeupStart = true;
962 }
963
setEarlyWakeupEnd()964 void SurfaceComposerClient::Transaction::setEarlyWakeupEnd() {
965 mEarlyWakeupEnd = true;
966 }
967
getLayerState(const sp<SurfaceControl> & sc)968 layer_state_t* SurfaceComposerClient::Transaction::getLayerState(const sp<SurfaceControl>& sc) {
969 auto handle = sc->getLayerStateHandle();
970
971 if (mComposerStates.count(handle) == 0) {
972 // we don't have it, add an initialized layer_state to our list
973 ComposerState s;
974
975 s.state.surface = handle;
976 s.state.layerId = sc->getLayerId();
977
978 mComposerStates[handle] = s;
979 }
980
981 return &(mComposerStates[handle].state);
982 }
983
registerSurfaceControlForCallback(const sp<SurfaceControl> & sc)984 void SurfaceComposerClient::Transaction::registerSurfaceControlForCallback(
985 const sp<SurfaceControl>& sc) {
986 auto& callbackInfo = mListenerCallbacks[TransactionCompletedListener::getIInstance()];
987 callbackInfo.surfaceControls.insert(sc);
988
989 TransactionCompletedListener::getInstance()
990 ->addSurfaceControlToCallbacks(sc, callbackInfo.callbackIds);
991 }
992
setPosition(const sp<SurfaceControl> & sc,float x,float y)993 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setPosition(
994 const sp<SurfaceControl>& sc, float x, float y) {
995 layer_state_t* s = getLayerState(sc);
996 if (!s) {
997 mStatus = BAD_INDEX;
998 return *this;
999 }
1000 s->what |= layer_state_t::ePositionChanged;
1001 s->x = x;
1002 s->y = y;
1003
1004 registerSurfaceControlForCallback(sc);
1005 return *this;
1006 }
1007
show(const sp<SurfaceControl> & sc)1008 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::show(
1009 const sp<SurfaceControl>& sc) {
1010 return setFlags(sc, 0, layer_state_t::eLayerHidden);
1011 }
1012
hide(const sp<SurfaceControl> & sc)1013 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::hide(
1014 const sp<SurfaceControl>& sc) {
1015 return setFlags(sc, layer_state_t::eLayerHidden, layer_state_t::eLayerHidden);
1016 }
1017
setSize(const sp<SurfaceControl> & sc,uint32_t w,uint32_t h)1018 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setSize(
1019 const sp<SurfaceControl>& sc, uint32_t w, uint32_t h) {
1020 layer_state_t* s = getLayerState(sc);
1021 if (!s) {
1022 mStatus = BAD_INDEX;
1023 return *this;
1024 }
1025 s->what |= layer_state_t::eSizeChanged;
1026 s->w = w;
1027 s->h = h;
1028
1029 registerSurfaceControlForCallback(sc);
1030 return *this;
1031 }
1032
setLayer(const sp<SurfaceControl> & sc,int32_t z)1033 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setLayer(
1034 const sp<SurfaceControl>& sc, int32_t z) {
1035 layer_state_t* s = getLayerState(sc);
1036 if (!s) {
1037 mStatus = BAD_INDEX;
1038 return *this;
1039 }
1040 s->what |= layer_state_t::eLayerChanged;
1041 s->what &= ~layer_state_t::eRelativeLayerChanged;
1042 s->z = z;
1043
1044 registerSurfaceControlForCallback(sc);
1045 return *this;
1046 }
1047
setRelativeLayer(const sp<SurfaceControl> & sc,const sp<SurfaceControl> & relativeTo,int32_t z)1048 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setRelativeLayer(
1049 const sp<SurfaceControl>& sc, const sp<SurfaceControl>& relativeTo, int32_t z) {
1050 layer_state_t* s = getLayerState(sc);
1051 if (!s) {
1052 mStatus = BAD_INDEX;
1053 return *this;
1054 }
1055 s->what |= layer_state_t::eRelativeLayerChanged;
1056 s->what &= ~layer_state_t::eLayerChanged;
1057 s->relativeLayerSurfaceControl = relativeTo;
1058 s->z = z;
1059
1060 registerSurfaceControlForCallback(sc);
1061 return *this;
1062 }
1063
setFlags(const sp<SurfaceControl> & sc,uint32_t flags,uint32_t mask)1064 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setFlags(
1065 const sp<SurfaceControl>& sc, uint32_t flags,
1066 uint32_t mask) {
1067 layer_state_t* s = getLayerState(sc);
1068 if (!s) {
1069 mStatus = BAD_INDEX;
1070 return *this;
1071 }
1072 if ((mask & layer_state_t::eLayerOpaque) || (mask & layer_state_t::eLayerHidden) ||
1073 (mask & layer_state_t::eLayerSecure) || (mask & layer_state_t::eLayerSkipScreenshot) ||
1074 (mask & layer_state_t::eEnableBackpressure)) {
1075 s->what |= layer_state_t::eFlagsChanged;
1076 }
1077 s->flags &= ~mask;
1078 s->flags |= (flags & mask);
1079 s->mask |= mask;
1080
1081 registerSurfaceControlForCallback(sc);
1082 return *this;
1083 }
1084
setTransparentRegionHint(const sp<SurfaceControl> & sc,const Region & transparentRegion)1085 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setTransparentRegionHint(
1086 const sp<SurfaceControl>& sc,
1087 const Region& transparentRegion) {
1088 layer_state_t* s = getLayerState(sc);
1089 if (!s) {
1090 mStatus = BAD_INDEX;
1091 return *this;
1092 }
1093 s->what |= layer_state_t::eTransparentRegionChanged;
1094 s->transparentRegion = transparentRegion;
1095
1096 registerSurfaceControlForCallback(sc);
1097 return *this;
1098 }
1099
setAlpha(const sp<SurfaceControl> & sc,float alpha)1100 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setAlpha(
1101 const sp<SurfaceControl>& sc, float alpha) {
1102 layer_state_t* s = getLayerState(sc);
1103 if (!s) {
1104 mStatus = BAD_INDEX;
1105 return *this;
1106 }
1107 s->what |= layer_state_t::eAlphaChanged;
1108 s->alpha = alpha;
1109
1110 registerSurfaceControlForCallback(sc);
1111 return *this;
1112 }
1113
setLayerStack(const sp<SurfaceControl> & sc,uint32_t layerStack)1114 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setLayerStack(
1115 const sp<SurfaceControl>& sc, uint32_t layerStack) {
1116 layer_state_t* s = getLayerState(sc);
1117 if (!s) {
1118 mStatus = BAD_INDEX;
1119 return *this;
1120 }
1121 s->what |= layer_state_t::eLayerStackChanged;
1122 s->layerStack = layerStack;
1123
1124 registerSurfaceControlForCallback(sc);
1125 return *this;
1126 }
1127
setMetadata(const sp<SurfaceControl> & sc,uint32_t key,const Parcel & p)1128 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setMetadata(
1129 const sp<SurfaceControl>& sc, uint32_t key, const Parcel& p) {
1130 layer_state_t* s = getLayerState(sc);
1131 if (!s) {
1132 mStatus = BAD_INDEX;
1133 return *this;
1134 }
1135 s->what |= layer_state_t::eMetadataChanged;
1136
1137 s->metadata.mMap[key] = {p.data(), p.data() + p.dataSize()};
1138
1139 registerSurfaceControlForCallback(sc);
1140 return *this;
1141 }
1142
setMatrix(const sp<SurfaceControl> & sc,float dsdx,float dtdx,float dtdy,float dsdy)1143 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setMatrix(
1144 const sp<SurfaceControl>& sc, float dsdx, float dtdx,
1145 float dtdy, float dsdy) {
1146 layer_state_t* s = getLayerState(sc);
1147 if (!s) {
1148 mStatus = BAD_INDEX;
1149 return *this;
1150 }
1151 s->what |= layer_state_t::eMatrixChanged;
1152 layer_state_t::matrix22_t matrix;
1153 matrix.dsdx = dsdx;
1154 matrix.dtdx = dtdx;
1155 matrix.dsdy = dsdy;
1156 matrix.dtdy = dtdy;
1157 s->matrix = matrix;
1158
1159 registerSurfaceControlForCallback(sc);
1160 return *this;
1161 }
1162
setCrop(const sp<SurfaceControl> & sc,const Rect & crop)1163 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setCrop(
1164 const sp<SurfaceControl>& sc, const Rect& crop) {
1165 layer_state_t* s = getLayerState(sc);
1166 if (!s) {
1167 mStatus = BAD_INDEX;
1168 return *this;
1169 }
1170 s->what |= layer_state_t::eCropChanged;
1171 s->crop = crop;
1172
1173 registerSurfaceControlForCallback(sc);
1174 return *this;
1175 }
1176
setCornerRadius(const sp<SurfaceControl> & sc,float cornerRadius)1177 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setCornerRadius(
1178 const sp<SurfaceControl>& sc, float cornerRadius) {
1179 layer_state_t* s = getLayerState(sc);
1180 if (!s) {
1181 mStatus = BAD_INDEX;
1182 return *this;
1183 }
1184 s->what |= layer_state_t::eCornerRadiusChanged;
1185 s->cornerRadius = cornerRadius;
1186 return *this;
1187 }
1188
setBackgroundBlurRadius(const sp<SurfaceControl> & sc,int backgroundBlurRadius)1189 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setBackgroundBlurRadius(
1190 const sp<SurfaceControl>& sc, int backgroundBlurRadius) {
1191 layer_state_t* s = getLayerState(sc);
1192 if (!s) {
1193 mStatus = BAD_INDEX;
1194 return *this;
1195 }
1196 s->what |= layer_state_t::eBackgroundBlurRadiusChanged;
1197 s->backgroundBlurRadius = backgroundBlurRadius;
1198 return *this;
1199 }
1200
setBlurRegions(const sp<SurfaceControl> & sc,const std::vector<BlurRegion> & blurRegions)1201 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setBlurRegions(
1202 const sp<SurfaceControl>& sc, const std::vector<BlurRegion>& blurRegions) {
1203 layer_state_t* s = getLayerState(sc);
1204 if (!s) {
1205 mStatus = BAD_INDEX;
1206 return *this;
1207 }
1208 s->what |= layer_state_t::eBlurRegionsChanged;
1209 s->blurRegions = blurRegions;
1210 return *this;
1211 }
1212
reparent(const sp<SurfaceControl> & sc,const sp<SurfaceControl> & newParent)1213 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::reparent(
1214 const sp<SurfaceControl>& sc, const sp<SurfaceControl>& newParent) {
1215 layer_state_t* s = getLayerState(sc);
1216 if (!s) {
1217 mStatus = BAD_INDEX;
1218 return *this;
1219 }
1220 if (SurfaceControl::isSameSurface(sc, newParent)) {
1221 return *this;
1222 }
1223 s->what |= layer_state_t::eReparent;
1224 s->parentSurfaceControlForChild = newParent ? newParent->getParentingLayer() : nullptr;
1225
1226 registerSurfaceControlForCallback(sc);
1227 return *this;
1228 }
1229
setColor(const sp<SurfaceControl> & sc,const half3 & color)1230 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setColor(
1231 const sp<SurfaceControl>& sc,
1232 const half3& color) {
1233 layer_state_t* s = getLayerState(sc);
1234 if (!s) {
1235 mStatus = BAD_INDEX;
1236 return *this;
1237 }
1238 s->what |= layer_state_t::eColorChanged;
1239 s->color = color;
1240
1241 registerSurfaceControlForCallback(sc);
1242 return *this;
1243 }
1244
setBackgroundColor(const sp<SurfaceControl> & sc,const half3 & color,float alpha,ui::Dataspace dataspace)1245 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setBackgroundColor(
1246 const sp<SurfaceControl>& sc, const half3& color, float alpha, ui::Dataspace dataspace) {
1247 layer_state_t* s = getLayerState(sc);
1248 if (!s) {
1249 mStatus = BAD_INDEX;
1250 return *this;
1251 }
1252
1253 s->what |= layer_state_t::eBackgroundColorChanged;
1254 s->color = color;
1255 s->bgColorAlpha = alpha;
1256 s->bgColorDataspace = dataspace;
1257
1258 registerSurfaceControlForCallback(sc);
1259 return *this;
1260 }
1261
setTransform(const sp<SurfaceControl> & sc,uint32_t transform)1262 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setTransform(
1263 const sp<SurfaceControl>& sc, uint32_t transform) {
1264 layer_state_t* s = getLayerState(sc);
1265 if (!s) {
1266 mStatus = BAD_INDEX;
1267 return *this;
1268 }
1269 s->what |= layer_state_t::eTransformChanged;
1270 s->transform = transform;
1271
1272 registerSurfaceControlForCallback(sc);
1273 return *this;
1274 }
1275
1276 SurfaceComposerClient::Transaction&
setTransformToDisplayInverse(const sp<SurfaceControl> & sc,bool transformToDisplayInverse)1277 SurfaceComposerClient::Transaction::setTransformToDisplayInverse(const sp<SurfaceControl>& sc,
1278 bool transformToDisplayInverse) {
1279 layer_state_t* s = getLayerState(sc);
1280 if (!s) {
1281 mStatus = BAD_INDEX;
1282 return *this;
1283 }
1284 s->what |= layer_state_t::eTransformToDisplayInverseChanged;
1285 s->transformToDisplayInverse = transformToDisplayInverse;
1286
1287 registerSurfaceControlForCallback(sc);
1288 return *this;
1289 }
1290
setBuffer(const sp<SurfaceControl> & sc,const sp<GraphicBuffer> & buffer,const ReleaseCallbackId & id,ReleaseBufferCallback callback)1291 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setBuffer(
1292 const sp<SurfaceControl>& sc, const sp<GraphicBuffer>& buffer, const ReleaseCallbackId& id,
1293 ReleaseBufferCallback callback) {
1294 layer_state_t* s = getLayerState(sc);
1295 if (!s) {
1296 mStatus = BAD_INDEX;
1297 return *this;
1298 }
1299 removeReleaseBufferCallback(s);
1300 s->what |= layer_state_t::eBufferChanged;
1301 s->buffer = buffer;
1302 s->releaseBufferEndpoint = IInterface::asBinder(TransactionCompletedListener::getIInstance());
1303 if (mIsAutoTimestamp) {
1304 mDesiredPresentTime = systemTime();
1305 }
1306 setReleaseBufferCallback(s, id, callback);
1307
1308 registerSurfaceControlForCallback(sc);
1309
1310 mContainsBuffer = true;
1311 return *this;
1312 }
1313
removeReleaseBufferCallback(layer_state_t * s)1314 void SurfaceComposerClient::Transaction::removeReleaseBufferCallback(layer_state_t* s) {
1315 if (!s->releaseBufferListener) {
1316 return;
1317 }
1318
1319 s->what &= ~static_cast<uint64_t>(layer_state_t::eReleaseBufferListenerChanged);
1320 s->releaseBufferListener = nullptr;
1321 auto listener = TransactionCompletedListener::getInstance();
1322 listener->removeReleaseBufferCallback(s->releaseCallbackId);
1323 s->releaseCallbackId = ReleaseCallbackId::INVALID_ID;
1324 }
1325
setReleaseBufferCallback(layer_state_t * s,const ReleaseCallbackId & id,ReleaseBufferCallback callback)1326 void SurfaceComposerClient::Transaction::setReleaseBufferCallback(layer_state_t* s,
1327 const ReleaseCallbackId& id,
1328 ReleaseBufferCallback callback) {
1329 if (!callback) {
1330 return;
1331 }
1332
1333 if (!s->buffer) {
1334 ALOGW("Transaction::setReleaseBufferCallback"
1335 "ignored trying to set a callback on a null buffer.");
1336 return;
1337 }
1338
1339 s->what |= layer_state_t::eReleaseBufferListenerChanged;
1340 s->releaseBufferListener = TransactionCompletedListener::getIInstance();
1341 s->releaseCallbackId = id;
1342 auto listener = TransactionCompletedListener::getInstance();
1343 listener->setReleaseBufferCallback(id, callback);
1344 }
1345
setAcquireFence(const sp<SurfaceControl> & sc,const sp<Fence> & fence)1346 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setAcquireFence(
1347 const sp<SurfaceControl>& sc, const sp<Fence>& fence) {
1348 layer_state_t* s = getLayerState(sc);
1349 if (!s) {
1350 mStatus = BAD_INDEX;
1351 return *this;
1352 }
1353 s->what |= layer_state_t::eAcquireFenceChanged;
1354 s->acquireFence = fence;
1355
1356 registerSurfaceControlForCallback(sc);
1357 return *this;
1358 }
1359
setDataspace(const sp<SurfaceControl> & sc,ui::Dataspace dataspace)1360 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setDataspace(
1361 const sp<SurfaceControl>& sc, ui::Dataspace dataspace) {
1362 layer_state_t* s = getLayerState(sc);
1363 if (!s) {
1364 mStatus = BAD_INDEX;
1365 return *this;
1366 }
1367 s->what |= layer_state_t::eDataspaceChanged;
1368 s->dataspace = dataspace;
1369
1370 registerSurfaceControlForCallback(sc);
1371 return *this;
1372 }
1373
setHdrMetadata(const sp<SurfaceControl> & sc,const HdrMetadata & hdrMetadata)1374 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setHdrMetadata(
1375 const sp<SurfaceControl>& sc, const HdrMetadata& hdrMetadata) {
1376 layer_state_t* s = getLayerState(sc);
1377 if (!s) {
1378 mStatus = BAD_INDEX;
1379 return *this;
1380 }
1381 s->what |= layer_state_t::eHdrMetadataChanged;
1382 s->hdrMetadata = hdrMetadata;
1383
1384 registerSurfaceControlForCallback(sc);
1385 return *this;
1386 }
1387
setSurfaceDamageRegion(const sp<SurfaceControl> & sc,const Region & surfaceDamageRegion)1388 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setSurfaceDamageRegion(
1389 const sp<SurfaceControl>& sc, const Region& surfaceDamageRegion) {
1390 layer_state_t* s = getLayerState(sc);
1391 if (!s) {
1392 mStatus = BAD_INDEX;
1393 return *this;
1394 }
1395 s->what |= layer_state_t::eSurfaceDamageRegionChanged;
1396 s->surfaceDamageRegion = surfaceDamageRegion;
1397
1398 registerSurfaceControlForCallback(sc);
1399 return *this;
1400 }
1401
setApi(const sp<SurfaceControl> & sc,int32_t api)1402 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setApi(
1403 const sp<SurfaceControl>& sc, int32_t api) {
1404 layer_state_t* s = getLayerState(sc);
1405 if (!s) {
1406 mStatus = BAD_INDEX;
1407 return *this;
1408 }
1409 s->what |= layer_state_t::eApiChanged;
1410 s->api = api;
1411
1412 registerSurfaceControlForCallback(sc);
1413 return *this;
1414 }
1415
setSidebandStream(const sp<SurfaceControl> & sc,const sp<NativeHandle> & sidebandStream)1416 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setSidebandStream(
1417 const sp<SurfaceControl>& sc, const sp<NativeHandle>& sidebandStream) {
1418 layer_state_t* s = getLayerState(sc);
1419 if (!s) {
1420 mStatus = BAD_INDEX;
1421 return *this;
1422 }
1423 s->what |= layer_state_t::eSidebandStreamChanged;
1424 s->sidebandStream = sidebandStream;
1425
1426 registerSurfaceControlForCallback(sc);
1427 return *this;
1428 }
1429
setDesiredPresentTime(nsecs_t desiredPresentTime)1430 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setDesiredPresentTime(
1431 nsecs_t desiredPresentTime) {
1432 mDesiredPresentTime = desiredPresentTime;
1433 mIsAutoTimestamp = false;
1434 return *this;
1435 }
1436
setColorSpaceAgnostic(const sp<SurfaceControl> & sc,const bool agnostic)1437 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setColorSpaceAgnostic(
1438 const sp<SurfaceControl>& sc, const bool agnostic) {
1439 layer_state_t* s = getLayerState(sc);
1440 if (!s) {
1441 mStatus = BAD_INDEX;
1442 return *this;
1443 }
1444 s->what |= layer_state_t::eColorSpaceAgnosticChanged;
1445 s->colorSpaceAgnostic = agnostic;
1446
1447 registerSurfaceControlForCallback(sc);
1448 return *this;
1449 }
1450
1451 SurfaceComposerClient::Transaction&
setFrameRateSelectionPriority(const sp<SurfaceControl> & sc,int32_t priority)1452 SurfaceComposerClient::Transaction::setFrameRateSelectionPriority(const sp<SurfaceControl>& sc,
1453 int32_t priority) {
1454 layer_state_t* s = getLayerState(sc);
1455 if (!s) {
1456 mStatus = BAD_INDEX;
1457 return *this;
1458 }
1459
1460 s->what |= layer_state_t::eFrameRateSelectionPriority;
1461 s->frameRateSelectionPriority = priority;
1462
1463 registerSurfaceControlForCallback(sc);
1464 return *this;
1465 }
1466
addTransactionCallback(TransactionCompletedCallbackTakesContext callback,void * callbackContext,CallbackId::Type callbackType)1467 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::addTransactionCallback(
1468 TransactionCompletedCallbackTakesContext callback, void* callbackContext,
1469 CallbackId::Type callbackType) {
1470 auto listener = TransactionCompletedListener::getInstance();
1471
1472 auto callbackWithContext = std::bind(callback, callbackContext, std::placeholders::_1,
1473 std::placeholders::_2, std::placeholders::_3);
1474 const auto& surfaceControls =
1475 mListenerCallbacks[TransactionCompletedListener::getIInstance()].surfaceControls;
1476
1477 CallbackId callbackId =
1478 listener->addCallbackFunction(callbackWithContext, surfaceControls, callbackType);
1479
1480 mListenerCallbacks[TransactionCompletedListener::getIInstance()].callbackIds.emplace(
1481 callbackId);
1482 return *this;
1483 }
1484
1485 SurfaceComposerClient::Transaction&
addTransactionCompletedCallback(TransactionCompletedCallbackTakesContext callback,void * callbackContext)1486 SurfaceComposerClient::Transaction::addTransactionCompletedCallback(
1487 TransactionCompletedCallbackTakesContext callback, void* callbackContext) {
1488 return addTransactionCallback(callback, callbackContext, CallbackId::Type::ON_COMPLETE);
1489 }
1490
1491 SurfaceComposerClient::Transaction&
addTransactionCommittedCallback(TransactionCompletedCallbackTakesContext callback,void * callbackContext)1492 SurfaceComposerClient::Transaction::addTransactionCommittedCallback(
1493 TransactionCompletedCallbackTakesContext callback, void* callbackContext) {
1494 return addTransactionCallback(callback, callbackContext, CallbackId::Type::ON_COMMIT);
1495 }
1496
notifyProducerDisconnect(const sp<SurfaceControl> & sc)1497 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::notifyProducerDisconnect(
1498 const sp<SurfaceControl>& sc) {
1499 layer_state_t* s = getLayerState(sc);
1500 if (!s) {
1501 mStatus = BAD_INDEX;
1502 return *this;
1503 }
1504
1505 s->what |= layer_state_t::eProducerDisconnect;
1506 return *this;
1507 }
1508
setFrameNumber(const sp<SurfaceControl> & sc,uint64_t frameNumber)1509 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setFrameNumber(
1510 const sp<SurfaceControl>& sc, uint64_t frameNumber) {
1511 layer_state_t* s = getLayerState(sc);
1512 if (!s) {
1513 mStatus = BAD_INDEX;
1514 return *this;
1515 }
1516
1517 s->what |= layer_state_t::eFrameNumberChanged;
1518 s->frameNumber = frameNumber;
1519
1520 return *this;
1521 }
1522
setInputWindowInfo(const sp<SurfaceControl> & sc,const WindowInfo & info)1523 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setInputWindowInfo(
1524 const sp<SurfaceControl>& sc, const WindowInfo& info) {
1525 layer_state_t* s = getLayerState(sc);
1526 if (!s) {
1527 mStatus = BAD_INDEX;
1528 return *this;
1529 }
1530 s->windowInfoHandle = new WindowInfoHandle(info);
1531 s->what |= layer_state_t::eInputInfoChanged;
1532 return *this;
1533 }
1534
setFocusedWindow(const FocusRequest & request)1535 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setFocusedWindow(
1536 const FocusRequest& request) {
1537 mInputWindowCommands.focusRequests.push_back(request);
1538 return *this;
1539 }
1540
syncInputWindows()1541 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::syncInputWindows() {
1542 mInputWindowCommands.syncInputWindows = true;
1543 return *this;
1544 }
1545
setColorTransform(const sp<SurfaceControl> & sc,const mat3 & matrix,const vec3 & translation)1546 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setColorTransform(
1547 const sp<SurfaceControl>& sc, const mat3& matrix, const vec3& translation) {
1548 layer_state_t* s = getLayerState(sc);
1549 if (!s) {
1550 mStatus = BAD_INDEX;
1551 return *this;
1552 }
1553 s->what |= layer_state_t::eColorTransformChanged;
1554 s->colorTransform = mat4(matrix, translation);
1555
1556 registerSurfaceControlForCallback(sc);
1557 return *this;
1558 }
1559
setGeometry(const sp<SurfaceControl> & sc,const Rect & source,const Rect & dst,int transform)1560 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setGeometry(
1561 const sp<SurfaceControl>& sc, const Rect& source, const Rect& dst, int transform) {
1562 setCrop(sc, source);
1563
1564 int x = dst.left;
1565 int y = dst.top;
1566
1567 float sourceWidth = source.getWidth();
1568 float sourceHeight = source.getHeight();
1569
1570 float xScale = sourceWidth < 0 ? 1.0f : dst.getWidth() / sourceWidth;
1571 float yScale = sourceHeight < 0 ? 1.0f : dst.getHeight() / sourceHeight;
1572 float matrix[4] = {1, 0, 0, 1};
1573
1574 switch (transform) {
1575 case NATIVE_WINDOW_TRANSFORM_FLIP_H:
1576 matrix[0] = -xScale; matrix[1] = 0;
1577 matrix[2] = 0; matrix[3] = yScale;
1578 x += source.getWidth();
1579 break;
1580 case NATIVE_WINDOW_TRANSFORM_FLIP_V:
1581 matrix[0] = xScale; matrix[1] = 0;
1582 matrix[2] = 0; matrix[3] = -yScale;
1583 y += source.getHeight();
1584 break;
1585 case NATIVE_WINDOW_TRANSFORM_ROT_90:
1586 matrix[0] = 0; matrix[1] = -yScale;
1587 matrix[2] = xScale; matrix[3] = 0;
1588 x += source.getHeight();
1589 break;
1590 case NATIVE_WINDOW_TRANSFORM_ROT_180:
1591 matrix[0] = -xScale; matrix[1] = 0;
1592 matrix[2] = 0; matrix[3] = -yScale;
1593 x += source.getWidth();
1594 y += source.getHeight();
1595 break;
1596 case NATIVE_WINDOW_TRANSFORM_ROT_270:
1597 matrix[0] = 0; matrix[1] = yScale;
1598 matrix[2] = -xScale; matrix[3] = 0;
1599 y += source.getWidth();
1600 break;
1601 default:
1602 matrix[0] = xScale; matrix[1] = 0;
1603 matrix[2] = 0; matrix[3] = yScale;
1604 break;
1605 }
1606 setMatrix(sc, matrix[0], matrix[1], matrix[2], matrix[3]);
1607 float offsetX = xScale * source.left;
1608 float offsetY = yScale * source.top;
1609 setPosition(sc, x - offsetX, y - offsetY);
1610
1611 return *this;
1612 }
1613
setShadowRadius(const sp<SurfaceControl> & sc,float shadowRadius)1614 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setShadowRadius(
1615 const sp<SurfaceControl>& sc, float shadowRadius) {
1616 layer_state_t* s = getLayerState(sc);
1617 if (!s) {
1618 mStatus = BAD_INDEX;
1619 return *this;
1620 }
1621 s->what |= layer_state_t::eShadowRadiusChanged;
1622 s->shadowRadius = shadowRadius;
1623 return *this;
1624 }
1625
setFrameRate(const sp<SurfaceControl> & sc,float frameRate,int8_t compatibility,int8_t changeFrameRateStrategy)1626 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setFrameRate(
1627 const sp<SurfaceControl>& sc, float frameRate, int8_t compatibility,
1628 int8_t changeFrameRateStrategy) {
1629 layer_state_t* s = getLayerState(sc);
1630 if (!s) {
1631 mStatus = BAD_INDEX;
1632 return *this;
1633 }
1634 // Allow privileged values as well here, those will be ignored by SF if
1635 // the caller is not privileged
1636 if (!ValidateFrameRate(frameRate, compatibility, changeFrameRateStrategy,
1637 "Transaction::setFrameRate",
1638 /*privileged=*/true)) {
1639 mStatus = BAD_VALUE;
1640 return *this;
1641 }
1642 s->what |= layer_state_t::eFrameRateChanged;
1643 s->frameRate = frameRate;
1644 s->frameRateCompatibility = compatibility;
1645 s->changeFrameRateStrategy = changeFrameRateStrategy;
1646 return *this;
1647 }
1648
setFixedTransformHint(const sp<SurfaceControl> & sc,int32_t fixedTransformHint)1649 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setFixedTransformHint(
1650 const sp<SurfaceControl>& sc, int32_t fixedTransformHint) {
1651 layer_state_t* s = getLayerState(sc);
1652 if (!s) {
1653 mStatus = BAD_INDEX;
1654 return *this;
1655 }
1656
1657 const ui::Transform::RotationFlags transform = fixedTransformHint == -1
1658 ? ui::Transform::ROT_INVALID
1659 : ui::Transform::toRotationFlags(static_cast<ui::Rotation>(fixedTransformHint));
1660 s->what |= layer_state_t::eFixedTransformHintChanged;
1661 s->fixedTransformHint = transform;
1662 return *this;
1663 }
1664
setFrameTimelineInfo(const FrameTimelineInfo & frameTimelineInfo)1665 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setFrameTimelineInfo(
1666 const FrameTimelineInfo& frameTimelineInfo) {
1667 mFrameTimelineInfo.merge(frameTimelineInfo);
1668 return *this;
1669 }
1670
setAutoRefresh(const sp<SurfaceControl> & sc,bool autoRefresh)1671 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setAutoRefresh(
1672 const sp<SurfaceControl>& sc, bool autoRefresh) {
1673 layer_state_t* s = getLayerState(sc);
1674 if (!s) {
1675 mStatus = BAD_INDEX;
1676 return *this;
1677 }
1678
1679 s->what |= layer_state_t::eAutoRefreshChanged;
1680 s->autoRefresh = autoRefresh;
1681 return *this;
1682 }
1683
setTrustedOverlay(const sp<SurfaceControl> & sc,bool isTrustedOverlay)1684 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setTrustedOverlay(
1685 const sp<SurfaceControl>& sc, bool isTrustedOverlay) {
1686 layer_state_t* s = getLayerState(sc);
1687 if (!s) {
1688 mStatus = BAD_INDEX;
1689 return *this;
1690 }
1691
1692 s->what |= layer_state_t::eTrustedOverlayChanged;
1693 s->isTrustedOverlay = isTrustedOverlay;
1694 return *this;
1695 }
1696
setApplyToken(const sp<IBinder> & applyToken)1697 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setApplyToken(
1698 const sp<IBinder>& applyToken) {
1699 mApplyToken = applyToken;
1700 return *this;
1701 }
1702
setStretchEffect(const sp<SurfaceControl> & sc,const StretchEffect & stretchEffect)1703 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setStretchEffect(
1704 const sp<SurfaceControl>& sc, const StretchEffect& stretchEffect) {
1705 layer_state_t* s = getLayerState(sc);
1706 if (!s) {
1707 mStatus = BAD_INDEX;
1708 return *this;
1709 }
1710
1711 s->what |= layer_state_t::eStretchChanged;
1712 s->stretchEffect = stretchEffect;
1713 return *this;
1714 }
1715
setBufferCrop(const sp<SurfaceControl> & sc,const Rect & bufferCrop)1716 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setBufferCrop(
1717 const sp<SurfaceControl>& sc, const Rect& bufferCrop) {
1718 layer_state_t* s = getLayerState(sc);
1719 if (!s) {
1720 mStatus = BAD_INDEX;
1721 return *this;
1722 }
1723
1724 s->what |= layer_state_t::eBufferCropChanged;
1725 s->bufferCrop = bufferCrop;
1726
1727 registerSurfaceControlForCallback(sc);
1728 return *this;
1729 }
1730
setDestinationFrame(const sp<SurfaceControl> & sc,const Rect & destinationFrame)1731 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setDestinationFrame(
1732 const sp<SurfaceControl>& sc, const Rect& destinationFrame) {
1733 layer_state_t* s = getLayerState(sc);
1734 if (!s) {
1735 mStatus = BAD_INDEX;
1736 return *this;
1737 }
1738
1739 s->what |= layer_state_t::eDestinationFrameChanged;
1740 s->destinationFrame = destinationFrame;
1741
1742 registerSurfaceControlForCallback(sc);
1743 return *this;
1744 }
1745
setDropInputMode(const sp<SurfaceControl> & sc,gui::DropInputMode mode)1746 SurfaceComposerClient::Transaction& SurfaceComposerClient::Transaction::setDropInputMode(
1747 const sp<SurfaceControl>& sc, gui::DropInputMode mode) {
1748 layer_state_t* s = getLayerState(sc);
1749 if (!s) {
1750 mStatus = BAD_INDEX;
1751 return *this;
1752 }
1753
1754 s->what |= layer_state_t::eDropInputModeChanged;
1755 s->dropInputMode = mode;
1756
1757 registerSurfaceControlForCallback(sc);
1758 return *this;
1759 }
1760
1761 // ---------------------------------------------------------------------------
1762
getDisplayState(const sp<IBinder> & token)1763 DisplayState& SurfaceComposerClient::Transaction::getDisplayState(const sp<IBinder>& token) {
1764 DisplayState s;
1765 s.token = token;
1766 ssize_t index = mDisplayStates.indexOf(s);
1767 if (index < 0) {
1768 // we don't have it, add an initialized layer_state to our list
1769 s.what = 0;
1770 index = mDisplayStates.add(s);
1771 }
1772 return mDisplayStates.editItemAt(static_cast<size_t>(index));
1773 }
1774
setDisplaySurface(const sp<IBinder> & token,const sp<IGraphicBufferProducer> & bufferProducer)1775 status_t SurfaceComposerClient::Transaction::setDisplaySurface(const sp<IBinder>& token,
1776 const sp<IGraphicBufferProducer>& bufferProducer) {
1777 if (bufferProducer.get() != nullptr) {
1778 // Make sure that composition can never be stalled by a virtual display
1779 // consumer that isn't processing buffers fast enough.
1780 status_t err = bufferProducer->setAsyncMode(true);
1781 if (err != NO_ERROR) {
1782 ALOGE("Composer::setDisplaySurface Failed to enable async mode on the "
1783 "BufferQueue. This BufferQueue cannot be used for virtual "
1784 "display. (%d)", err);
1785 return err;
1786 }
1787 }
1788 DisplayState& s(getDisplayState(token));
1789 s.surface = bufferProducer;
1790 s.what |= DisplayState::eSurfaceChanged;
1791 return NO_ERROR;
1792 }
1793
setDisplayLayerStack(const sp<IBinder> & token,uint32_t layerStack)1794 void SurfaceComposerClient::Transaction::setDisplayLayerStack(const sp<IBinder>& token,
1795 uint32_t layerStack) {
1796 DisplayState& s(getDisplayState(token));
1797 s.layerStack = layerStack;
1798 s.what |= DisplayState::eLayerStackChanged;
1799 }
1800
setDisplayFlags(const sp<IBinder> & token,uint32_t flags)1801 void SurfaceComposerClient::Transaction::setDisplayFlags(const sp<IBinder>& token, uint32_t flags) {
1802 DisplayState& s(getDisplayState(token));
1803 s.flags = flags;
1804 s.what |= DisplayState::eFlagsChanged;
1805 }
1806
setDisplayProjection(const sp<IBinder> & token,ui::Rotation orientation,const Rect & layerStackRect,const Rect & displayRect)1807 void SurfaceComposerClient::Transaction::setDisplayProjection(const sp<IBinder>& token,
1808 ui::Rotation orientation,
1809 const Rect& layerStackRect,
1810 const Rect& displayRect) {
1811 DisplayState& s(getDisplayState(token));
1812 s.orientation = orientation;
1813 s.layerStackSpaceRect = layerStackRect;
1814 s.orientedDisplaySpaceRect = displayRect;
1815 s.what |= DisplayState::eDisplayProjectionChanged;
1816 mForceSynchronous = true; // TODO: do we actually still need this?
1817 }
1818
setDisplaySize(const sp<IBinder> & token,uint32_t width,uint32_t height)1819 void SurfaceComposerClient::Transaction::setDisplaySize(const sp<IBinder>& token, uint32_t width, uint32_t height) {
1820 DisplayState& s(getDisplayState(token));
1821 s.width = width;
1822 s.height = height;
1823 s.what |= DisplayState::eDisplaySizeChanged;
1824 }
1825
1826 // ---------------------------------------------------------------------------
1827
SurfaceComposerClient()1828 SurfaceComposerClient::SurfaceComposerClient() : mStatus(NO_INIT) {}
1829
SurfaceComposerClient(const sp<ISurfaceComposerClient> & client)1830 SurfaceComposerClient::SurfaceComposerClient(const sp<ISurfaceComposerClient>& client)
1831 : mStatus(NO_ERROR), mClient(client) {}
1832
onFirstRef()1833 void SurfaceComposerClient::onFirstRef() {
1834 sp<ISurfaceComposer> sf(ComposerService::getComposerService());
1835 if (sf != nullptr && mStatus == NO_INIT) {
1836 sp<ISurfaceComposerClient> conn;
1837 conn = sf->createConnection();
1838 if (conn != nullptr) {
1839 mClient = conn;
1840 mStatus = NO_ERROR;
1841 }
1842 }
1843 }
1844
~SurfaceComposerClient()1845 SurfaceComposerClient::~SurfaceComposerClient() {
1846 dispose();
1847 }
1848
initCheck() const1849 status_t SurfaceComposerClient::initCheck() const {
1850 return mStatus;
1851 }
1852
connection() const1853 sp<IBinder> SurfaceComposerClient::connection() const {
1854 return IInterface::asBinder(mClient);
1855 }
1856
linkToComposerDeath(const sp<IBinder::DeathRecipient> & recipient,void * cookie,uint32_t flags)1857 status_t SurfaceComposerClient::linkToComposerDeath(
1858 const sp<IBinder::DeathRecipient>& recipient,
1859 void* cookie, uint32_t flags) {
1860 sp<ISurfaceComposer> sf(ComposerService::getComposerService());
1861 return IInterface::asBinder(sf)->linkToDeath(recipient, cookie, flags);
1862 }
1863
dispose()1864 void SurfaceComposerClient::dispose() {
1865 // this can be called more than once.
1866 sp<ISurfaceComposerClient> client;
1867 Mutex::Autolock _lm(mLock);
1868 if (mClient != nullptr) {
1869 client = mClient; // hold ref while lock is held
1870 mClient.clear();
1871 }
1872 mStatus = NO_INIT;
1873 }
1874
createSurface(const String8 & name,uint32_t w,uint32_t h,PixelFormat format,uint32_t flags,const sp<IBinder> & parentHandle,LayerMetadata metadata,uint32_t * outTransformHint)1875 sp<SurfaceControl> SurfaceComposerClient::createSurface(const String8& name, uint32_t w, uint32_t h,
1876 PixelFormat format, uint32_t flags,
1877 const sp<IBinder>& parentHandle,
1878 LayerMetadata metadata,
1879 uint32_t* outTransformHint) {
1880 sp<SurfaceControl> s;
1881 createSurfaceChecked(name, w, h, format, &s, flags, parentHandle, std::move(metadata),
1882 outTransformHint);
1883 return s;
1884 }
1885
createWithSurfaceParent(const String8 & name,uint32_t w,uint32_t h,PixelFormat format,uint32_t flags,Surface * parent,LayerMetadata metadata,uint32_t * outTransformHint)1886 sp<SurfaceControl> SurfaceComposerClient::createWithSurfaceParent(const String8& name, uint32_t w,
1887 uint32_t h, PixelFormat format,
1888 uint32_t flags, Surface* parent,
1889 LayerMetadata metadata,
1890 uint32_t* outTransformHint) {
1891 sp<SurfaceControl> sur;
1892 status_t err = mStatus;
1893
1894 if (mStatus == NO_ERROR) {
1895 sp<IBinder> handle;
1896 sp<IGraphicBufferProducer> parentGbp = parent->getIGraphicBufferProducer();
1897 sp<IGraphicBufferProducer> gbp;
1898
1899 uint32_t transformHint = 0;
1900 int32_t id = -1;
1901 err = mClient->createWithSurfaceParent(name, w, h, format, flags, parentGbp,
1902 std::move(metadata), &handle, &gbp, &id,
1903 &transformHint);
1904 if (outTransformHint) {
1905 *outTransformHint = transformHint;
1906 }
1907 ALOGE_IF(err, "SurfaceComposerClient::createWithSurfaceParent error %s", strerror(-err));
1908 if (err == NO_ERROR) {
1909 return new SurfaceControl(this, handle, gbp, id, transformHint);
1910 }
1911 }
1912 return nullptr;
1913 }
1914
createSurfaceChecked(const String8 & name,uint32_t w,uint32_t h,PixelFormat format,sp<SurfaceControl> * outSurface,uint32_t flags,const sp<IBinder> & parentHandle,LayerMetadata metadata,uint32_t * outTransformHint)1915 status_t SurfaceComposerClient::createSurfaceChecked(const String8& name, uint32_t w, uint32_t h,
1916 PixelFormat format,
1917 sp<SurfaceControl>* outSurface, uint32_t flags,
1918 const sp<IBinder>& parentHandle,
1919 LayerMetadata metadata,
1920 uint32_t* outTransformHint) {
1921 sp<SurfaceControl> sur;
1922 status_t err = mStatus;
1923
1924 if (mStatus == NO_ERROR) {
1925 sp<IBinder> handle;
1926 sp<IGraphicBufferProducer> gbp;
1927
1928 uint32_t transformHint = 0;
1929 int32_t id = -1;
1930 err = mClient->createSurface(name, w, h, format, flags, parentHandle, std::move(metadata),
1931 &handle, &gbp, &id, &transformHint);
1932
1933 if (outTransformHint) {
1934 *outTransformHint = transformHint;
1935 }
1936 ALOGE_IF(err, "SurfaceComposerClient::createSurface error %s", strerror(-err));
1937 if (err == NO_ERROR) {
1938 *outSurface =
1939 new SurfaceControl(this, handle, gbp, id, w, h, format, transformHint, flags);
1940 }
1941 }
1942 return err;
1943 }
1944
mirrorSurface(SurfaceControl * mirrorFromSurface)1945 sp<SurfaceControl> SurfaceComposerClient::mirrorSurface(SurfaceControl* mirrorFromSurface) {
1946 if (mirrorFromSurface == nullptr) {
1947 return nullptr;
1948 }
1949
1950 sp<IBinder> handle;
1951 sp<IBinder> mirrorFromHandle = mirrorFromSurface->getHandle();
1952 int32_t layer_id = -1;
1953 status_t err = mClient->mirrorSurface(mirrorFromHandle, &handle, &layer_id);
1954 if (err == NO_ERROR) {
1955 return new SurfaceControl(this, handle, nullptr, layer_id, true /* owned */);
1956 }
1957 return nullptr;
1958 }
1959
clearLayerFrameStats(const sp<IBinder> & token) const1960 status_t SurfaceComposerClient::clearLayerFrameStats(const sp<IBinder>& token) const {
1961 if (mStatus != NO_ERROR) {
1962 return mStatus;
1963 }
1964 return mClient->clearLayerFrameStats(token);
1965 }
1966
getLayerFrameStats(const sp<IBinder> & token,FrameStats * outStats) const1967 status_t SurfaceComposerClient::getLayerFrameStats(const sp<IBinder>& token,
1968 FrameStats* outStats) const {
1969 if (mStatus != NO_ERROR) {
1970 return mStatus;
1971 }
1972 return mClient->getLayerFrameStats(token, outStats);
1973 }
1974
1975 // ----------------------------------------------------------------------------
1976
enableVSyncInjections(bool enable)1977 status_t SurfaceComposerClient::enableVSyncInjections(bool enable) {
1978 sp<ISurfaceComposer> sf(ComposerService::getComposerService());
1979 return sf->enableVSyncInjections(enable);
1980 }
1981
injectVSync(nsecs_t when)1982 status_t SurfaceComposerClient::injectVSync(nsecs_t when) {
1983 sp<ISurfaceComposer> sf(ComposerService::getComposerService());
1984 return sf->injectVSync(when);
1985 }
1986
getDisplayState(const sp<IBinder> & display,ui::DisplayState * state)1987 status_t SurfaceComposerClient::getDisplayState(const sp<IBinder>& display,
1988 ui::DisplayState* state) {
1989 return ComposerService::getComposerService()->getDisplayState(display, state);
1990 }
1991
getStaticDisplayInfo(const sp<IBinder> & display,ui::StaticDisplayInfo * info)1992 status_t SurfaceComposerClient::getStaticDisplayInfo(const sp<IBinder>& display,
1993 ui::StaticDisplayInfo* info) {
1994 return ComposerService::getComposerService()->getStaticDisplayInfo(display, info);
1995 }
1996
getDynamicDisplayInfo(const sp<IBinder> & display,ui::DynamicDisplayInfo * info)1997 status_t SurfaceComposerClient::getDynamicDisplayInfo(const sp<IBinder>& display,
1998 ui::DynamicDisplayInfo* info) {
1999 return ComposerService::getComposerService()->getDynamicDisplayInfo(display, info);
2000 }
2001
getActiveDisplayMode(const sp<IBinder> & display,ui::DisplayMode * mode)2002 status_t SurfaceComposerClient::getActiveDisplayMode(const sp<IBinder>& display,
2003 ui::DisplayMode* mode) {
2004 ui::DynamicDisplayInfo info;
2005 status_t result = getDynamicDisplayInfo(display, &info);
2006 if (result != NO_ERROR) {
2007 return result;
2008 }
2009
2010 if (const auto activeMode = info.getActiveDisplayMode()) {
2011 *mode = *activeMode;
2012 return NO_ERROR;
2013 }
2014
2015 ALOGE("Active display mode not found.");
2016 return NAME_NOT_FOUND;
2017 }
2018
setDesiredDisplayModeSpecs(const sp<IBinder> & displayToken,ui::DisplayModeId defaultMode,bool allowGroupSwitching,float primaryRefreshRateMin,float primaryRefreshRateMax,float appRequestRefreshRateMin,float appRequestRefreshRateMax)2019 status_t SurfaceComposerClient::setDesiredDisplayModeSpecs(
2020 const sp<IBinder>& displayToken, ui::DisplayModeId defaultMode, bool allowGroupSwitching,
2021 float primaryRefreshRateMin, float primaryRefreshRateMax, float appRequestRefreshRateMin,
2022 float appRequestRefreshRateMax) {
2023 return ComposerService::getComposerService()
2024 ->setDesiredDisplayModeSpecs(displayToken, defaultMode, allowGroupSwitching,
2025 primaryRefreshRateMin, primaryRefreshRateMax,
2026 appRequestRefreshRateMin, appRequestRefreshRateMax);
2027 }
2028
getDesiredDisplayModeSpecs(const sp<IBinder> & displayToken,ui::DisplayModeId * outDefaultMode,bool * outAllowGroupSwitching,float * outPrimaryRefreshRateMin,float * outPrimaryRefreshRateMax,float * outAppRequestRefreshRateMin,float * outAppRequestRefreshRateMax)2029 status_t SurfaceComposerClient::getDesiredDisplayModeSpecs(const sp<IBinder>& displayToken,
2030 ui::DisplayModeId* outDefaultMode,
2031 bool* outAllowGroupSwitching,
2032 float* outPrimaryRefreshRateMin,
2033 float* outPrimaryRefreshRateMax,
2034 float* outAppRequestRefreshRateMin,
2035 float* outAppRequestRefreshRateMax) {
2036 return ComposerService::getComposerService()
2037 ->getDesiredDisplayModeSpecs(displayToken, outDefaultMode, outAllowGroupSwitching,
2038 outPrimaryRefreshRateMin, outPrimaryRefreshRateMax,
2039 outAppRequestRefreshRateMin, outAppRequestRefreshRateMax);
2040 }
2041
getDisplayNativePrimaries(const sp<IBinder> & display,ui::DisplayPrimaries & outPrimaries)2042 status_t SurfaceComposerClient::getDisplayNativePrimaries(const sp<IBinder>& display,
2043 ui::DisplayPrimaries& outPrimaries) {
2044 return ComposerService::getComposerService()->getDisplayNativePrimaries(display, outPrimaries);
2045 }
2046
setActiveColorMode(const sp<IBinder> & display,ColorMode colorMode)2047 status_t SurfaceComposerClient::setActiveColorMode(const sp<IBinder>& display,
2048 ColorMode colorMode) {
2049 return ComposerService::getComposerService()->setActiveColorMode(display, colorMode);
2050 }
2051
setAutoLowLatencyMode(const sp<IBinder> & display,bool on)2052 void SurfaceComposerClient::setAutoLowLatencyMode(const sp<IBinder>& display, bool on) {
2053 ComposerService::getComposerService()->setAutoLowLatencyMode(display, on);
2054 }
2055
setGameContentType(const sp<IBinder> & display,bool on)2056 void SurfaceComposerClient::setGameContentType(const sp<IBinder>& display, bool on) {
2057 ComposerService::getComposerService()->setGameContentType(display, on);
2058 }
2059
setDisplayPowerMode(const sp<IBinder> & token,int mode)2060 void SurfaceComposerClient::setDisplayPowerMode(const sp<IBinder>& token,
2061 int mode) {
2062 ComposerService::getComposerService()->setPowerMode(token, mode);
2063 }
2064
getCompositionPreference(ui::Dataspace * defaultDataspace,ui::PixelFormat * defaultPixelFormat,ui::Dataspace * wideColorGamutDataspace,ui::PixelFormat * wideColorGamutPixelFormat)2065 status_t SurfaceComposerClient::getCompositionPreference(
2066 ui::Dataspace* defaultDataspace, ui::PixelFormat* defaultPixelFormat,
2067 ui::Dataspace* wideColorGamutDataspace, ui::PixelFormat* wideColorGamutPixelFormat) {
2068 return ComposerService::getComposerService()
2069 ->getCompositionPreference(defaultDataspace, defaultPixelFormat,
2070 wideColorGamutDataspace, wideColorGamutPixelFormat);
2071 }
2072
getProtectedContentSupport()2073 bool SurfaceComposerClient::getProtectedContentSupport() {
2074 bool supported = false;
2075 ComposerService::getComposerService()->getProtectedContentSupport(&supported);
2076 return supported;
2077 }
2078
clearAnimationFrameStats()2079 status_t SurfaceComposerClient::clearAnimationFrameStats() {
2080 return ComposerService::getComposerService()->clearAnimationFrameStats();
2081 }
2082
getAnimationFrameStats(FrameStats * outStats)2083 status_t SurfaceComposerClient::getAnimationFrameStats(FrameStats* outStats) {
2084 return ComposerService::getComposerService()->getAnimationFrameStats(outStats);
2085 }
2086
overrideHdrTypes(const sp<IBinder> & display,const std::vector<ui::Hdr> & hdrTypes)2087 status_t SurfaceComposerClient::overrideHdrTypes(const sp<IBinder>& display,
2088 const std::vector<ui::Hdr>& hdrTypes) {
2089 return ComposerService::getComposerService()->overrideHdrTypes(display, hdrTypes);
2090 }
2091
onPullAtom(const int32_t atomId,std::string * outData,bool * success)2092 status_t SurfaceComposerClient::onPullAtom(const int32_t atomId, std::string* outData,
2093 bool* success) {
2094 return ComposerService::getComposerService()->onPullAtom(atomId, outData, success);
2095 }
2096
getDisplayedContentSamplingAttributes(const sp<IBinder> & display,ui::PixelFormat * outFormat,ui::Dataspace * outDataspace,uint8_t * outComponentMask)2097 status_t SurfaceComposerClient::getDisplayedContentSamplingAttributes(const sp<IBinder>& display,
2098 ui::PixelFormat* outFormat,
2099 ui::Dataspace* outDataspace,
2100 uint8_t* outComponentMask) {
2101 return ComposerService::getComposerService()
2102 ->getDisplayedContentSamplingAttributes(display, outFormat, outDataspace,
2103 outComponentMask);
2104 }
2105
setDisplayContentSamplingEnabled(const sp<IBinder> & display,bool enable,uint8_t componentMask,uint64_t maxFrames)2106 status_t SurfaceComposerClient::setDisplayContentSamplingEnabled(const sp<IBinder>& display,
2107 bool enable, uint8_t componentMask,
2108 uint64_t maxFrames) {
2109 return ComposerService::getComposerService()->setDisplayContentSamplingEnabled(display, enable,
2110 componentMask,
2111 maxFrames);
2112 }
2113
getDisplayedContentSample(const sp<IBinder> & display,uint64_t maxFrames,uint64_t timestamp,DisplayedFrameStats * outStats)2114 status_t SurfaceComposerClient::getDisplayedContentSample(const sp<IBinder>& display,
2115 uint64_t maxFrames, uint64_t timestamp,
2116 DisplayedFrameStats* outStats) {
2117 return ComposerService::getComposerService()->getDisplayedContentSample(display, maxFrames,
2118 timestamp, outStats);
2119 }
2120
isWideColorDisplay(const sp<IBinder> & display,bool * outIsWideColorDisplay)2121 status_t SurfaceComposerClient::isWideColorDisplay(const sp<IBinder>& display,
2122 bool* outIsWideColorDisplay) {
2123 return ComposerService::getComposerService()->isWideColorDisplay(display,
2124 outIsWideColorDisplay);
2125 }
2126
addRegionSamplingListener(const Rect & samplingArea,const sp<IBinder> & stopLayerHandle,const sp<IRegionSamplingListener> & listener)2127 status_t SurfaceComposerClient::addRegionSamplingListener(
2128 const Rect& samplingArea, const sp<IBinder>& stopLayerHandle,
2129 const sp<IRegionSamplingListener>& listener) {
2130 return ComposerService::getComposerService()->addRegionSamplingListener(samplingArea,
2131 stopLayerHandle,
2132 listener);
2133 }
2134
removeRegionSamplingListener(const sp<IRegionSamplingListener> & listener)2135 status_t SurfaceComposerClient::removeRegionSamplingListener(
2136 const sp<IRegionSamplingListener>& listener) {
2137 return ComposerService::getComposerService()->removeRegionSamplingListener(listener);
2138 }
2139
addFpsListener(int32_t taskId,const sp<gui::IFpsListener> & listener)2140 status_t SurfaceComposerClient::addFpsListener(int32_t taskId,
2141 const sp<gui::IFpsListener>& listener) {
2142 return ComposerService::getComposerService()->addFpsListener(taskId, listener);
2143 }
2144
removeFpsListener(const sp<gui::IFpsListener> & listener)2145 status_t SurfaceComposerClient::removeFpsListener(const sp<gui::IFpsListener>& listener) {
2146 return ComposerService::getComposerService()->removeFpsListener(listener);
2147 }
2148
addTunnelModeEnabledListener(const sp<gui::ITunnelModeEnabledListener> & listener)2149 status_t SurfaceComposerClient::addTunnelModeEnabledListener(
2150 const sp<gui::ITunnelModeEnabledListener>& listener) {
2151 return ComposerService::getComposerService()->addTunnelModeEnabledListener(listener);
2152 }
2153
removeTunnelModeEnabledListener(const sp<gui::ITunnelModeEnabledListener> & listener)2154 status_t SurfaceComposerClient::removeTunnelModeEnabledListener(
2155 const sp<gui::ITunnelModeEnabledListener>& listener) {
2156 return ComposerService::getComposerService()->removeTunnelModeEnabledListener(listener);
2157 }
2158
getDisplayBrightnessSupport(const sp<IBinder> & displayToken)2159 bool SurfaceComposerClient::getDisplayBrightnessSupport(const sp<IBinder>& displayToken) {
2160 bool support = false;
2161 ComposerService::getComposerService()->getDisplayBrightnessSupport(displayToken, &support);
2162 return support;
2163 }
2164
setDisplayBrightness(const sp<IBinder> & displayToken,const gui::DisplayBrightness & brightness)2165 status_t SurfaceComposerClient::setDisplayBrightness(const sp<IBinder>& displayToken,
2166 const gui::DisplayBrightness& brightness) {
2167 return ComposerService::getComposerService()->setDisplayBrightness(displayToken, brightness);
2168 }
2169
addHdrLayerInfoListener(const sp<IBinder> & displayToken,const sp<gui::IHdrLayerInfoListener> & listener)2170 status_t SurfaceComposerClient::addHdrLayerInfoListener(
2171 const sp<IBinder>& displayToken, const sp<gui::IHdrLayerInfoListener>& listener) {
2172 return ComposerService::getComposerService()->addHdrLayerInfoListener(displayToken, listener);
2173 }
2174
removeHdrLayerInfoListener(const sp<IBinder> & displayToken,const sp<gui::IHdrLayerInfoListener> & listener)2175 status_t SurfaceComposerClient::removeHdrLayerInfoListener(
2176 const sp<IBinder>& displayToken, const sp<gui::IHdrLayerInfoListener>& listener) {
2177 return ComposerService::getComposerService()->removeHdrLayerInfoListener(displayToken,
2178 listener);
2179 }
2180
notifyPowerBoost(int32_t boostId)2181 status_t SurfaceComposerClient::notifyPowerBoost(int32_t boostId) {
2182 return ComposerService::getComposerService()->notifyPowerBoost(boostId);
2183 }
2184
setGlobalShadowSettings(const half4 & ambientColor,const half4 & spotColor,float lightPosY,float lightPosZ,float lightRadius)2185 status_t SurfaceComposerClient::setGlobalShadowSettings(const half4& ambientColor,
2186 const half4& spotColor, float lightPosY,
2187 float lightPosZ, float lightRadius) {
2188 return ComposerService::getComposerService()->setGlobalShadowSettings(ambientColor, spotColor,
2189 lightPosY, lightPosZ,
2190 lightRadius);
2191 }
2192
getGPUContextPriority()2193 int SurfaceComposerClient::getGPUContextPriority() {
2194 return ComposerService::getComposerService()->getGPUContextPriority();
2195 }
2196
addWindowInfosListener(const sp<WindowInfosListener> & windowInfosListener)2197 status_t SurfaceComposerClient::addWindowInfosListener(
2198 const sp<WindowInfosListener>& windowInfosListener) {
2199 return WindowInfosListenerReporter::getInstance()
2200 ->addWindowInfosListener(windowInfosListener, ComposerService::getComposerService());
2201 }
2202
removeWindowInfosListener(const sp<WindowInfosListener> & windowInfosListener)2203 status_t SurfaceComposerClient::removeWindowInfosListener(
2204 const sp<WindowInfosListener>& windowInfosListener) {
2205 return WindowInfosListenerReporter::getInstance()
2206 ->removeWindowInfosListener(windowInfosListener, ComposerService::getComposerService());
2207 }
2208
2209 // ----------------------------------------------------------------------------
2210
captureDisplay(const DisplayCaptureArgs & captureArgs,const sp<IScreenCaptureListener> & captureListener)2211 status_t ScreenshotClient::captureDisplay(const DisplayCaptureArgs& captureArgs,
2212 const sp<IScreenCaptureListener>& captureListener) {
2213 sp<ISurfaceComposer> s(ComposerService::getComposerService());
2214 if (s == nullptr) return NO_INIT;
2215
2216 return s->captureDisplay(captureArgs, captureListener);
2217 }
2218
captureDisplay(uint64_t displayOrLayerStack,const sp<IScreenCaptureListener> & captureListener)2219 status_t ScreenshotClient::captureDisplay(uint64_t displayOrLayerStack,
2220 const sp<IScreenCaptureListener>& captureListener) {
2221 sp<ISurfaceComposer> s(ComposerService::getComposerService());
2222 if (s == nullptr) return NO_INIT;
2223
2224 return s->captureDisplay(displayOrLayerStack, captureListener);
2225 }
2226
captureLayers(const LayerCaptureArgs & captureArgs,const sp<IScreenCaptureListener> & captureListener)2227 status_t ScreenshotClient::captureLayers(const LayerCaptureArgs& captureArgs,
2228 const sp<IScreenCaptureListener>& captureListener) {
2229 sp<ISurfaceComposer> s(ComposerService::getComposerService());
2230 if (s == nullptr) return NO_INIT;
2231
2232 return s->captureLayers(captureArgs, captureListener);
2233 }
2234
2235 } // namespace android
2236