• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /*
2  * Copyright (C) 2010 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 "Surface"
18 #define ATRACE_TAG ATRACE_TAG_GRAPHICS
19 //#define LOG_NDEBUG 0
20 
21 #include <gui/Surface.h>
22 
23 #include <condition_variable>
24 #include <deque>
25 #include <mutex>
26 #include <thread>
27 
28 #include <inttypes.h>
29 
30 #include <android/native_window.h>
31 
32 #include <utils/Log.h>
33 #include <utils/Trace.h>
34 #include <utils/NativeHandle.h>
35 
36 #include <ui/DisplayStatInfo.h>
37 #include <ui/DynamicDisplayInfo.h>
38 #include <ui/Fence.h>
39 #include <ui/GraphicBuffer.h>
40 #include <ui/Region.h>
41 
42 #include <gui/BufferItem.h>
43 #include <gui/IProducerListener.h>
44 
45 #include <gui/ISurfaceComposer.h>
46 #include <gui/LayerState.h>
47 #include <private/gui/ComposerService.h>
48 
49 namespace android {
50 
51 using ui::Dataspace;
52 
53 namespace {
54 
isInterceptorRegistrationOp(int op)55 bool isInterceptorRegistrationOp(int op) {
56     return op == NATIVE_WINDOW_SET_CANCEL_INTERCEPTOR ||
57             op == NATIVE_WINDOW_SET_DEQUEUE_INTERCEPTOR ||
58             op == NATIVE_WINDOW_SET_PERFORM_INTERCEPTOR ||
59             op == NATIVE_WINDOW_SET_QUEUE_INTERCEPTOR ||
60             op == NATIVE_WINDOW_SET_QUERY_INTERCEPTOR;
61 }
62 
63 } // namespace
64 
Surface(const sp<IGraphicBufferProducer> & bufferProducer,bool controlledByApp,const sp<IBinder> & surfaceControlHandle)65 Surface::Surface(const sp<IGraphicBufferProducer>& bufferProducer, bool controlledByApp,
66                  const sp<IBinder>& surfaceControlHandle)
67       : mGraphicBufferProducer(bufferProducer),
68         mCrop(Rect::EMPTY_RECT),
69         mBufferAge(0),
70         mGenerationNumber(0),
71         mSharedBufferMode(false),
72         mAutoRefresh(false),
73         mAutoPrerotation(false),
74         mSharedBufferSlot(BufferItem::INVALID_BUFFER_SLOT),
75         mSharedBufferHasBeenQueued(false),
76         mQueriedSupportedTimestamps(false),
77         mFrameTimestampsSupportsPresent(false),
78         mEnableFrameTimestamps(false),
79         mFrameEventHistory(std::make_unique<ProducerFrameEventHistory>()) {
80     // Initialize the ANativeWindow function pointers.
81     ANativeWindow::setSwapInterval  = hook_setSwapInterval;
82     ANativeWindow::dequeueBuffer    = hook_dequeueBuffer;
83     ANativeWindow::cancelBuffer     = hook_cancelBuffer;
84     ANativeWindow::queueBuffer      = hook_queueBuffer;
85     ANativeWindow::query            = hook_query;
86     ANativeWindow::perform          = hook_perform;
87 
88     ANativeWindow::dequeueBuffer_DEPRECATED = hook_dequeueBuffer_DEPRECATED;
89     ANativeWindow::cancelBuffer_DEPRECATED  = hook_cancelBuffer_DEPRECATED;
90     ANativeWindow::lockBuffer_DEPRECATED    = hook_lockBuffer_DEPRECATED;
91     ANativeWindow::queueBuffer_DEPRECATED   = hook_queueBuffer_DEPRECATED;
92 
93     const_cast<int&>(ANativeWindow::minSwapInterval) = 0;
94     const_cast<int&>(ANativeWindow::maxSwapInterval) = 1;
95 
96     mReqWidth = 0;
97     mReqHeight = 0;
98     mReqFormat = 0;
99     mReqUsage = 0;
100     mTimestamp = NATIVE_WINDOW_TIMESTAMP_AUTO;
101     mDataSpace = Dataspace::UNKNOWN;
102     mScalingMode = NATIVE_WINDOW_SCALING_MODE_FREEZE;
103     mTransform = 0;
104     mStickyTransform = 0;
105     mDefaultWidth = 0;
106     mDefaultHeight = 0;
107     mUserWidth = 0;
108     mUserHeight = 0;
109     mTransformHint = 0;
110     mConsumerRunningBehind = false;
111     mConnectedToCpu = false;
112     mProducerControlledByApp = controlledByApp;
113     mSwapIntervalZero = false;
114     mMaxBufferCount = NUM_BUFFER_SLOTS;
115     mSurfaceControlHandle = surfaceControlHandle;
116 }
117 
~Surface()118 Surface::~Surface() {
119     if (mConnectedToCpu) {
120         Surface::disconnect(NATIVE_WINDOW_API_CPU);
121     }
122 }
123 
composerService() const124 sp<ISurfaceComposer> Surface::composerService() const {
125     return ComposerService::getComposerService();
126 }
127 
now() const128 nsecs_t Surface::now() const {
129     return systemTime();
130 }
131 
getIGraphicBufferProducer() const132 sp<IGraphicBufferProducer> Surface::getIGraphicBufferProducer() const {
133     return mGraphicBufferProducer;
134 }
135 
setSidebandStream(const sp<NativeHandle> & stream)136 void Surface::setSidebandStream(const sp<NativeHandle>& stream) {
137     mGraphicBufferProducer->setSidebandStream(stream);
138 }
139 
allocateBuffers()140 void Surface::allocateBuffers() {
141     uint32_t reqWidth = mReqWidth ? mReqWidth : mUserWidth;
142     uint32_t reqHeight = mReqHeight ? mReqHeight : mUserHeight;
143     mGraphicBufferProducer->allocateBuffers(reqWidth, reqHeight,
144             mReqFormat, mReqUsage);
145 }
146 
setGenerationNumber(uint32_t generation)147 status_t Surface::setGenerationNumber(uint32_t generation) {
148     status_t result = mGraphicBufferProducer->setGenerationNumber(generation);
149     if (result == NO_ERROR) {
150         mGenerationNumber = generation;
151     }
152     return result;
153 }
154 
getNextFrameNumber() const155 uint64_t Surface::getNextFrameNumber() const {
156     Mutex::Autolock lock(mMutex);
157     return mNextFrameNumber;
158 }
159 
getConsumerName() const160 String8 Surface::getConsumerName() const {
161     return mGraphicBufferProducer->getConsumerName();
162 }
163 
setDequeueTimeout(nsecs_t timeout)164 status_t Surface::setDequeueTimeout(nsecs_t timeout) {
165     return mGraphicBufferProducer->setDequeueTimeout(timeout);
166 }
167 
getLastQueuedBuffer(sp<GraphicBuffer> * outBuffer,sp<Fence> * outFence,float outTransformMatrix[16])168 status_t Surface::getLastQueuedBuffer(sp<GraphicBuffer>* outBuffer,
169         sp<Fence>* outFence, float outTransformMatrix[16]) {
170     return mGraphicBufferProducer->getLastQueuedBuffer(outBuffer, outFence,
171             outTransformMatrix);
172 }
173 
getDisplayRefreshCycleDuration(nsecs_t * outRefreshDuration)174 status_t Surface::getDisplayRefreshCycleDuration(nsecs_t* outRefreshDuration) {
175     ATRACE_CALL();
176 
177     DisplayStatInfo stats;
178     status_t result = composerService()->getDisplayStats(nullptr, &stats);
179     if (result != NO_ERROR) {
180         return result;
181     }
182 
183     *outRefreshDuration = stats.vsyncPeriod;
184 
185     return NO_ERROR;
186 }
187 
enableFrameTimestamps(bool enable)188 void Surface::enableFrameTimestamps(bool enable) {
189     Mutex::Autolock lock(mMutex);
190     // If going from disabled to enabled, get the initial values for
191     // compositor and display timing.
192     if (!mEnableFrameTimestamps && enable) {
193         FrameEventHistoryDelta delta;
194         mGraphicBufferProducer->getFrameTimestamps(&delta);
195         mFrameEventHistory->applyDelta(delta);
196     }
197     mEnableFrameTimestamps = enable;
198 }
199 
getCompositorTiming(nsecs_t * compositeDeadline,nsecs_t * compositeInterval,nsecs_t * compositeToPresentLatency)200 status_t Surface::getCompositorTiming(
201         nsecs_t* compositeDeadline, nsecs_t* compositeInterval,
202         nsecs_t* compositeToPresentLatency) {
203     Mutex::Autolock lock(mMutex);
204     if (!mEnableFrameTimestamps) {
205         return INVALID_OPERATION;
206     }
207 
208     if (compositeDeadline != nullptr) {
209         *compositeDeadline =
210                 mFrameEventHistory->getNextCompositeDeadline(now());
211     }
212     if (compositeInterval != nullptr) {
213         *compositeInterval = mFrameEventHistory->getCompositeInterval();
214     }
215     if (compositeToPresentLatency != nullptr) {
216         *compositeToPresentLatency =
217                 mFrameEventHistory->getCompositeToPresentLatency();
218     }
219     return NO_ERROR;
220 }
221 
checkConsumerForUpdates(const FrameEvents * e,const uint64_t lastFrameNumber,const nsecs_t * outLatchTime,const nsecs_t * outFirstRefreshStartTime,const nsecs_t * outLastRefreshStartTime,const nsecs_t * outGpuCompositionDoneTime,const nsecs_t * outDisplayPresentTime,const nsecs_t * outDequeueReadyTime,const nsecs_t * outReleaseTime)222 static bool checkConsumerForUpdates(
223         const FrameEvents* e, const uint64_t lastFrameNumber,
224         const nsecs_t* outLatchTime,
225         const nsecs_t* outFirstRefreshStartTime,
226         const nsecs_t* outLastRefreshStartTime,
227         const nsecs_t* outGpuCompositionDoneTime,
228         const nsecs_t* outDisplayPresentTime,
229         const nsecs_t* outDequeueReadyTime,
230         const nsecs_t* outReleaseTime) {
231     bool checkForLatch = (outLatchTime != nullptr) && !e->hasLatchInfo();
232     bool checkForFirstRefreshStart = (outFirstRefreshStartTime != nullptr) &&
233             !e->hasFirstRefreshStartInfo();
234     bool checkForGpuCompositionDone = (outGpuCompositionDoneTime != nullptr) &&
235             !e->hasGpuCompositionDoneInfo();
236     bool checkForDisplayPresent = (outDisplayPresentTime != nullptr) &&
237             !e->hasDisplayPresentInfo();
238 
239     // LastRefreshStart, DequeueReady, and Release are never available for the
240     // last frame.
241     bool checkForLastRefreshStart = (outLastRefreshStartTime != nullptr) &&
242             !e->hasLastRefreshStartInfo() &&
243             (e->frameNumber != lastFrameNumber);
244     bool checkForDequeueReady = (outDequeueReadyTime != nullptr) &&
245             !e->hasDequeueReadyInfo() && (e->frameNumber != lastFrameNumber);
246     bool checkForRelease = (outReleaseTime != nullptr) &&
247             !e->hasReleaseInfo() && (e->frameNumber != lastFrameNumber);
248 
249     // RequestedPresent and Acquire info are always available producer-side.
250     return checkForLatch || checkForFirstRefreshStart ||
251             checkForLastRefreshStart || checkForGpuCompositionDone ||
252             checkForDisplayPresent || checkForDequeueReady || checkForRelease;
253 }
254 
getFrameTimestamp(nsecs_t * dst,const nsecs_t & src)255 static void getFrameTimestamp(nsecs_t *dst, const nsecs_t& src) {
256     if (dst != nullptr) {
257         // We always get valid timestamps for these eventually.
258         *dst = (src == FrameEvents::TIMESTAMP_PENDING) ?
259                 NATIVE_WINDOW_TIMESTAMP_PENDING : src;
260     }
261 }
262 
getFrameTimestampFence(nsecs_t * dst,const std::shared_ptr<FenceTime> & src,bool fenceShouldBeKnown)263 static void getFrameTimestampFence(nsecs_t *dst,
264         const std::shared_ptr<FenceTime>& src, bool fenceShouldBeKnown) {
265     if (dst != nullptr) {
266         if (!fenceShouldBeKnown) {
267             *dst = NATIVE_WINDOW_TIMESTAMP_PENDING;
268             return;
269         }
270 
271         nsecs_t signalTime = src->getSignalTime();
272         *dst = (signalTime == Fence::SIGNAL_TIME_PENDING) ?
273                     NATIVE_WINDOW_TIMESTAMP_PENDING :
274                 (signalTime == Fence::SIGNAL_TIME_INVALID) ?
275                     NATIVE_WINDOW_TIMESTAMP_INVALID :
276                 signalTime;
277     }
278 }
279 
getFrameTimestamps(uint64_t frameNumber,nsecs_t * outRequestedPresentTime,nsecs_t * outAcquireTime,nsecs_t * outLatchTime,nsecs_t * outFirstRefreshStartTime,nsecs_t * outLastRefreshStartTime,nsecs_t * outGpuCompositionDoneTime,nsecs_t * outDisplayPresentTime,nsecs_t * outDequeueReadyTime,nsecs_t * outReleaseTime)280 status_t Surface::getFrameTimestamps(uint64_t frameNumber,
281         nsecs_t* outRequestedPresentTime, nsecs_t* outAcquireTime,
282         nsecs_t* outLatchTime, nsecs_t* outFirstRefreshStartTime,
283         nsecs_t* outLastRefreshStartTime, nsecs_t* outGpuCompositionDoneTime,
284         nsecs_t* outDisplayPresentTime, nsecs_t* outDequeueReadyTime,
285         nsecs_t* outReleaseTime) {
286     ATRACE_CALL();
287 
288     Mutex::Autolock lock(mMutex);
289 
290     if (!mEnableFrameTimestamps) {
291         return INVALID_OPERATION;
292     }
293 
294     // Verify the requested timestamps are supported.
295     querySupportedTimestampsLocked();
296     if (outDisplayPresentTime != nullptr && !mFrameTimestampsSupportsPresent) {
297         return BAD_VALUE;
298     }
299 
300     FrameEvents* events = mFrameEventHistory->getFrame(frameNumber);
301     if (events == nullptr) {
302         // If the entry isn't available in the producer, it's definitely not
303         // available in the consumer.
304         return NAME_NOT_FOUND;
305     }
306 
307     // Update our cache of events if the requested events are not available.
308     if (checkConsumerForUpdates(events, mLastFrameNumber,
309             outLatchTime, outFirstRefreshStartTime, outLastRefreshStartTime,
310             outGpuCompositionDoneTime, outDisplayPresentTime,
311             outDequeueReadyTime, outReleaseTime)) {
312         FrameEventHistoryDelta delta;
313         mGraphicBufferProducer->getFrameTimestamps(&delta);
314         mFrameEventHistory->applyDelta(delta);
315         events = mFrameEventHistory->getFrame(frameNumber);
316     }
317 
318     if (events == nullptr) {
319         // The entry was available before the update, but was overwritten
320         // after the update. Make sure not to send the wrong frame's data.
321         return NAME_NOT_FOUND;
322     }
323 
324     getFrameTimestamp(outRequestedPresentTime, events->requestedPresentTime);
325     getFrameTimestamp(outLatchTime, events->latchTime);
326     getFrameTimestamp(outFirstRefreshStartTime, events->firstRefreshStartTime);
327     getFrameTimestamp(outLastRefreshStartTime, events->lastRefreshStartTime);
328     getFrameTimestamp(outDequeueReadyTime, events->dequeueReadyTime);
329 
330     getFrameTimestampFence(outAcquireTime, events->acquireFence,
331             events->hasAcquireInfo());
332     getFrameTimestampFence(outGpuCompositionDoneTime,
333             events->gpuCompositionDoneFence,
334             events->hasGpuCompositionDoneInfo());
335     getFrameTimestampFence(outDisplayPresentTime, events->displayPresentFence,
336             events->hasDisplayPresentInfo());
337     getFrameTimestampFence(outReleaseTime, events->releaseFence,
338             events->hasReleaseInfo());
339 
340     return NO_ERROR;
341 }
342 
getWideColorSupport(bool * supported)343 status_t Surface::getWideColorSupport(bool* supported) {
344     ATRACE_CALL();
345 
346     const sp<IBinder> display = composerService()->getInternalDisplayToken();
347     if (display == nullptr) {
348         return NAME_NOT_FOUND;
349     }
350 
351     *supported = false;
352     status_t error = composerService()->isWideColorDisplay(display, supported);
353     return error;
354 }
355 
getHdrSupport(bool * supported)356 status_t Surface::getHdrSupport(bool* supported) {
357     ATRACE_CALL();
358 
359     const sp<IBinder> display = composerService()->getInternalDisplayToken();
360     if (display == nullptr) {
361         return NAME_NOT_FOUND;
362     }
363 
364     ui::DynamicDisplayInfo info;
365     if (status_t err = composerService()->getDynamicDisplayInfo(display, &info); err != NO_ERROR) {
366         return err;
367     }
368 
369     *supported = !info.hdrCapabilities.getSupportedHdrTypes().empty();
370     return NO_ERROR;
371 }
372 
hook_setSwapInterval(ANativeWindow * window,int interval)373 int Surface::hook_setSwapInterval(ANativeWindow* window, int interval) {
374     Surface* c = getSelf(window);
375     return c->setSwapInterval(interval);
376 }
377 
hook_dequeueBuffer(ANativeWindow * window,ANativeWindowBuffer ** buffer,int * fenceFd)378 int Surface::hook_dequeueBuffer(ANativeWindow* window,
379         ANativeWindowBuffer** buffer, int* fenceFd) {
380     Surface* c = getSelf(window);
381     {
382         std::shared_lock<std::shared_mutex> lock(c->mInterceptorMutex);
383         if (c->mDequeueInterceptor != nullptr) {
384             auto interceptor = c->mDequeueInterceptor;
385             auto data = c->mDequeueInterceptorData;
386             return interceptor(window, Surface::dequeueBufferInternal, data, buffer, fenceFd);
387         }
388     }
389     return c->dequeueBuffer(buffer, fenceFd);
390 }
391 
dequeueBufferInternal(ANativeWindow * window,ANativeWindowBuffer ** buffer,int * fenceFd)392 int Surface::dequeueBufferInternal(ANativeWindow* window, ANativeWindowBuffer** buffer,
393                                    int* fenceFd) {
394     Surface* c = getSelf(window);
395     return c->dequeueBuffer(buffer, fenceFd);
396 }
397 
hook_cancelBuffer(ANativeWindow * window,ANativeWindowBuffer * buffer,int fenceFd)398 int Surface::hook_cancelBuffer(ANativeWindow* window,
399         ANativeWindowBuffer* buffer, int fenceFd) {
400     Surface* c = getSelf(window);
401     {
402         std::shared_lock<std::shared_mutex> lock(c->mInterceptorMutex);
403         if (c->mCancelInterceptor != nullptr) {
404             auto interceptor = c->mCancelInterceptor;
405             auto data = c->mCancelInterceptorData;
406             return interceptor(window, Surface::cancelBufferInternal, data, buffer, fenceFd);
407         }
408     }
409     return c->cancelBuffer(buffer, fenceFd);
410 }
411 
cancelBufferInternal(ANativeWindow * window,ANativeWindowBuffer * buffer,int fenceFd)412 int Surface::cancelBufferInternal(ANativeWindow* window, ANativeWindowBuffer* buffer, int fenceFd) {
413     Surface* c = getSelf(window);
414     return c->cancelBuffer(buffer, fenceFd);
415 }
416 
hook_queueBuffer(ANativeWindow * window,ANativeWindowBuffer * buffer,int fenceFd)417 int Surface::hook_queueBuffer(ANativeWindow* window,
418         ANativeWindowBuffer* buffer, int fenceFd) {
419     Surface* c = getSelf(window);
420     {
421         std::shared_lock<std::shared_mutex> lock(c->mInterceptorMutex);
422         if (c->mQueueInterceptor != nullptr) {
423             auto interceptor = c->mQueueInterceptor;
424             auto data = c->mQueueInterceptorData;
425             return interceptor(window, Surface::queueBufferInternal, data, buffer, fenceFd);
426         }
427     }
428     return c->queueBuffer(buffer, fenceFd);
429 }
430 
queueBufferInternal(ANativeWindow * window,ANativeWindowBuffer * buffer,int fenceFd)431 int Surface::queueBufferInternal(ANativeWindow* window, ANativeWindowBuffer* buffer, int fenceFd) {
432     Surface* c = getSelf(window);
433     return c->queueBuffer(buffer, fenceFd);
434 }
435 
hook_dequeueBuffer_DEPRECATED(ANativeWindow * window,ANativeWindowBuffer ** buffer)436 int Surface::hook_dequeueBuffer_DEPRECATED(ANativeWindow* window,
437         ANativeWindowBuffer** buffer) {
438     Surface* c = getSelf(window);
439     ANativeWindowBuffer* buf;
440     int fenceFd = -1;
441     int result = c->dequeueBuffer(&buf, &fenceFd);
442     if (result != OK) {
443         return result;
444     }
445     sp<Fence> fence(new Fence(fenceFd));
446     int waitResult = fence->waitForever("dequeueBuffer_DEPRECATED");
447     if (waitResult != OK) {
448         ALOGE("dequeueBuffer_DEPRECATED: Fence::wait returned an error: %d",
449                 waitResult);
450         c->cancelBuffer(buf, -1);
451         return waitResult;
452     }
453     *buffer = buf;
454     return result;
455 }
456 
hook_cancelBuffer_DEPRECATED(ANativeWindow * window,ANativeWindowBuffer * buffer)457 int Surface::hook_cancelBuffer_DEPRECATED(ANativeWindow* window,
458         ANativeWindowBuffer* buffer) {
459     Surface* c = getSelf(window);
460     return c->cancelBuffer(buffer, -1);
461 }
462 
hook_lockBuffer_DEPRECATED(ANativeWindow * window,ANativeWindowBuffer * buffer)463 int Surface::hook_lockBuffer_DEPRECATED(ANativeWindow* window,
464         ANativeWindowBuffer* buffer) {
465     Surface* c = getSelf(window);
466     return c->lockBuffer_DEPRECATED(buffer);
467 }
468 
hook_queueBuffer_DEPRECATED(ANativeWindow * window,ANativeWindowBuffer * buffer)469 int Surface::hook_queueBuffer_DEPRECATED(ANativeWindow* window,
470         ANativeWindowBuffer* buffer) {
471     Surface* c = getSelf(window);
472     return c->queueBuffer(buffer, -1);
473 }
474 
hook_perform(ANativeWindow * window,int operation,...)475 int Surface::hook_perform(ANativeWindow* window, int operation, ...) {
476     va_list args;
477     va_start(args, operation);
478     Surface* c = getSelf(window);
479     int result;
480     // Don't acquire shared ownership of the interceptor mutex if we're going to
481     // do interceptor registration, as otherwise we'll deadlock on acquiring
482     // exclusive ownership.
483     if (!isInterceptorRegistrationOp(operation)) {
484         std::shared_lock<std::shared_mutex> lock(c->mInterceptorMutex);
485         if (c->mPerformInterceptor != nullptr) {
486             result = c->mPerformInterceptor(window, Surface::performInternal,
487                                             c->mPerformInterceptorData, operation, args);
488             va_end(args);
489             return result;
490         }
491     }
492     result = c->perform(operation, args);
493     va_end(args);
494     return result;
495 }
496 
performInternal(ANativeWindow * window,int operation,va_list args)497 int Surface::performInternal(ANativeWindow* window, int operation, va_list args) {
498     Surface* c = getSelf(window);
499     return c->perform(operation, args);
500 }
501 
hook_query(const ANativeWindow * window,int what,int * value)502 int Surface::hook_query(const ANativeWindow* window, int what, int* value) {
503     const Surface* c = getSelf(window);
504     {
505         std::shared_lock<std::shared_mutex> lock(c->mInterceptorMutex);
506         if (c->mQueryInterceptor != nullptr) {
507             auto interceptor = c->mQueryInterceptor;
508             auto data = c->mQueryInterceptorData;
509             return interceptor(window, Surface::queryInternal, data, what, value);
510         }
511     }
512     return c->query(what, value);
513 }
514 
queryInternal(const ANativeWindow * window,int what,int * value)515 int Surface::queryInternal(const ANativeWindow* window, int what, int* value) {
516     const Surface* c = getSelf(window);
517     return c->query(what, value);
518 }
519 
setSwapInterval(int interval)520 int Surface::setSwapInterval(int interval) {
521     ATRACE_CALL();
522     // EGL specification states:
523     //  interval is silently clamped to minimum and maximum implementation
524     //  dependent values before being stored.
525 
526     if (interval < minSwapInterval)
527         interval = minSwapInterval;
528 
529     if (interval > maxSwapInterval)
530         interval = maxSwapInterval;
531 
532     const bool wasSwapIntervalZero = mSwapIntervalZero;
533     mSwapIntervalZero = (interval == 0);
534 
535     if (mSwapIntervalZero != wasSwapIntervalZero) {
536         mGraphicBufferProducer->setAsyncMode(mSwapIntervalZero);
537     }
538 
539     return NO_ERROR;
540 }
541 
542 class FenceMonitor {
543 public:
FenceMonitor(const char * name)544     explicit FenceMonitor(const char* name) : mName(name), mFencesQueued(0), mFencesSignaled(0) {
545         std::thread thread(&FenceMonitor::loop, this);
546         pthread_setname_np(thread.native_handle(), mName);
547         thread.detach();
548     }
549 
queueFence(const sp<Fence> & fence)550     void queueFence(const sp<Fence>& fence) {
551         char message[64];
552 
553         std::lock_guard<std::mutex> lock(mMutex);
554         if (fence->getSignalTime() != Fence::SIGNAL_TIME_PENDING) {
555             snprintf(message, sizeof(message), "%s fence %u has signaled", mName, mFencesQueued);
556             ATRACE_NAME(message);
557             // Need an increment on both to make the trace number correct.
558             mFencesQueued++;
559             mFencesSignaled++;
560             return;
561         }
562         snprintf(message, sizeof(message), "Trace %s fence %u", mName, mFencesQueued);
563         ATRACE_NAME(message);
564 
565         mQueue.push_back(fence);
566         mCondition.notify_one();
567         mFencesQueued++;
568         ATRACE_INT(mName, int32_t(mQueue.size()));
569     }
570 
571 private:
572 #pragma clang diagnostic push
573 #pragma clang diagnostic ignored "-Wmissing-noreturn"
loop()574     void loop() {
575         while (true) {
576             threadLoop();
577         }
578     }
579 #pragma clang diagnostic pop
580 
threadLoop()581     void threadLoop() {
582         sp<Fence> fence;
583         uint32_t fenceNum;
584         {
585             std::unique_lock<std::mutex> lock(mMutex);
586             while (mQueue.empty()) {
587                 mCondition.wait(lock);
588             }
589             fence = mQueue[0];
590             fenceNum = mFencesSignaled;
591         }
592         {
593             char message[64];
594             snprintf(message, sizeof(message), "waiting for %s %u", mName, fenceNum);
595             ATRACE_NAME(message);
596 
597             status_t result = fence->waitForever(message);
598             if (result != OK) {
599                 ALOGE("Error waiting for fence: %d", result);
600             }
601         }
602         {
603             std::lock_guard<std::mutex> lock(mMutex);
604             mQueue.pop_front();
605             mFencesSignaled++;
606             ATRACE_INT(mName, int32_t(mQueue.size()));
607         }
608     }
609 
610     const char* mName;
611     uint32_t mFencesQueued;
612     uint32_t mFencesSignaled;
613     std::deque<sp<Fence>> mQueue;
614     std::condition_variable mCondition;
615     std::mutex mMutex;
616 };
617 
getDequeueBufferInputLocked(IGraphicBufferProducer::DequeueBufferInput * dequeueInput)618 void Surface::getDequeueBufferInputLocked(
619         IGraphicBufferProducer::DequeueBufferInput* dequeueInput) {
620     LOG_ALWAYS_FATAL_IF(dequeueInput == nullptr, "input is null");
621 
622     dequeueInput->width = mReqWidth ? mReqWidth : mUserWidth;
623     dequeueInput->height = mReqHeight ? mReqHeight : mUserHeight;
624 
625     dequeueInput->format = mReqFormat;
626     dequeueInput->usage = mReqUsage;
627 
628     dequeueInput->getTimestamps = mEnableFrameTimestamps;
629 }
630 
dequeueBuffer(android_native_buffer_t ** buffer,int * fenceFd)631 int Surface::dequeueBuffer(android_native_buffer_t** buffer, int* fenceFd) {
632     ATRACE_CALL();
633     ALOGV("Surface::dequeueBuffer");
634 
635     IGraphicBufferProducer::DequeueBufferInput dqInput;
636     {
637         Mutex::Autolock lock(mMutex);
638         if (mReportRemovedBuffers) {
639             mRemovedBuffers.clear();
640         }
641 
642         getDequeueBufferInputLocked(&dqInput);
643 
644         if (mSharedBufferMode && mAutoRefresh && mSharedBufferSlot !=
645                 BufferItem::INVALID_BUFFER_SLOT) {
646             sp<GraphicBuffer>& gbuf(mSlots[mSharedBufferSlot].buffer);
647             if (gbuf != nullptr) {
648                 *buffer = gbuf.get();
649                 *fenceFd = -1;
650                 return OK;
651             }
652         }
653     } // Drop the lock so that we can still touch the Surface while blocking in IGBP::dequeueBuffer
654 
655     int buf = -1;
656     sp<Fence> fence;
657     nsecs_t startTime = systemTime();
658 
659     FrameEventHistoryDelta frameTimestamps;
660     status_t result = mGraphicBufferProducer->dequeueBuffer(&buf, &fence, dqInput.width,
661                                                             dqInput.height, dqInput.format,
662                                                             dqInput.usage, &mBufferAge,
663                                                             dqInput.getTimestamps ?
664                                                                     &frameTimestamps : nullptr);
665     mLastDequeueDuration = systemTime() - startTime;
666 
667     if (result < 0) {
668         ALOGV("dequeueBuffer: IGraphicBufferProducer::dequeueBuffer"
669                 "(%d, %d, %d, %#" PRIx64 ") failed: %d",
670                 dqInput.width, dqInput.height, dqInput.format, dqInput.usage, result);
671         return result;
672     }
673 
674     if (buf < 0 || buf >= NUM_BUFFER_SLOTS) {
675         ALOGE("dequeueBuffer: IGraphicBufferProducer returned invalid slot number %d", buf);
676         android_errorWriteLog(0x534e4554, "36991414"); // SafetyNet logging
677         return FAILED_TRANSACTION;
678     }
679 
680     Mutex::Autolock lock(mMutex);
681 
682     // Write this while holding the mutex
683     mLastDequeueStartTime = startTime;
684 
685     sp<GraphicBuffer>& gbuf(mSlots[buf].buffer);
686 
687     // this should never happen
688     ALOGE_IF(fence == nullptr, "Surface::dequeueBuffer: received null Fence! buf=%d", buf);
689 
690     if (CC_UNLIKELY(atrace_is_tag_enabled(ATRACE_TAG_GRAPHICS))) {
691         static FenceMonitor hwcReleaseThread("HWC release");
692         hwcReleaseThread.queueFence(fence);
693     }
694 
695     if (result & IGraphicBufferProducer::RELEASE_ALL_BUFFERS) {
696         freeAllBuffers();
697     }
698 
699     if (dqInput.getTimestamps) {
700          mFrameEventHistory->applyDelta(frameTimestamps);
701     }
702 
703     if ((result & IGraphicBufferProducer::BUFFER_NEEDS_REALLOCATION) || gbuf == nullptr) {
704         if (mReportRemovedBuffers && (gbuf != nullptr)) {
705             mRemovedBuffers.push_back(gbuf);
706         }
707         result = mGraphicBufferProducer->requestBuffer(buf, &gbuf);
708         if (result != NO_ERROR) {
709             ALOGE("dequeueBuffer: IGraphicBufferProducer::requestBuffer failed: %d", result);
710             mGraphicBufferProducer->cancelBuffer(buf, fence);
711             return result;
712         }
713     }
714 
715     if (fence->isValid()) {
716         *fenceFd = fence->dup();
717         if (*fenceFd == -1) {
718             ALOGE("dequeueBuffer: error duping fence: %d", errno);
719             // dup() should never fail; something is badly wrong. Soldier on
720             // and hope for the best; the worst that should happen is some
721             // visible corruption that lasts until the next frame.
722         }
723     } else {
724         *fenceFd = -1;
725     }
726 
727     *buffer = gbuf.get();
728 
729     if (mSharedBufferMode && mAutoRefresh) {
730         mSharedBufferSlot = buf;
731         mSharedBufferHasBeenQueued = false;
732     } else if (mSharedBufferSlot == buf) {
733         mSharedBufferSlot = BufferItem::INVALID_BUFFER_SLOT;
734         mSharedBufferHasBeenQueued = false;
735     }
736 
737     mDequeuedSlots.insert(buf);
738 
739     return OK;
740 }
741 
dequeueBuffers(std::vector<BatchBuffer> * buffers)742 int Surface::dequeueBuffers(std::vector<BatchBuffer>* buffers) {
743     using DequeueBufferInput = IGraphicBufferProducer::DequeueBufferInput;
744     using DequeueBufferOutput = IGraphicBufferProducer::DequeueBufferOutput;
745     using CancelBufferInput = IGraphicBufferProducer::CancelBufferInput;
746     using RequestBufferOutput = IGraphicBufferProducer::RequestBufferOutput;
747 
748     ATRACE_CALL();
749     ALOGV("Surface::dequeueBuffers");
750 
751     if (buffers->size() == 0) {
752         ALOGE("%s: must dequeue at least 1 buffer!", __FUNCTION__);
753         return BAD_VALUE;
754     }
755 
756     if (mSharedBufferMode) {
757         ALOGE("%s: batch operation is not supported in shared buffer mode!",
758                 __FUNCTION__);
759         return INVALID_OPERATION;
760     }
761 
762     size_t numBufferRequested = buffers->size();
763     DequeueBufferInput input;
764 
765     {
766         Mutex::Autolock lock(mMutex);
767         if (mReportRemovedBuffers) {
768             mRemovedBuffers.clear();
769         }
770 
771         getDequeueBufferInputLocked(&input);
772     } // Drop the lock so that we can still touch the Surface while blocking in IGBP::dequeueBuffers
773 
774     std::vector<DequeueBufferInput> dequeueInput(numBufferRequested, input);
775     std::vector<DequeueBufferOutput> dequeueOutput;
776 
777     nsecs_t startTime = systemTime();
778 
779     status_t result = mGraphicBufferProducer->dequeueBuffers(dequeueInput, &dequeueOutput);
780 
781     mLastDequeueDuration = systemTime() - startTime;
782 
783     if (result < 0) {
784         ALOGV("%s: IGraphicBufferProducer::dequeueBuffers"
785                 "(%d, %d, %d, %#" PRIx64 ") failed: %d",
786                 __FUNCTION__, input.width, input.height, input.format, input.usage, result);
787         return result;
788     }
789 
790     std::vector<CancelBufferInput> cancelBufferInputs(numBufferRequested);
791     std::vector<status_t> cancelBufferOutputs;
792     for (size_t i = 0; i < numBufferRequested; i++) {
793         cancelBufferInputs[i].slot = dequeueOutput[i].slot;
794         cancelBufferInputs[i].fence = dequeueOutput[i].fence;
795     }
796 
797     for (const auto& output : dequeueOutput) {
798         if (output.result < 0) {
799             mGraphicBufferProducer->cancelBuffers(cancelBufferInputs, &cancelBufferOutputs);
800             ALOGV("%s: IGraphicBufferProducer::dequeueBuffers"
801                     "(%d, %d, %d, %#" PRIx64 ") failed: %d",
802                     __FUNCTION__, input.width, input.height, input.format, input.usage,
803                     output.result);
804             return output.result;
805         }
806 
807         if (output.slot < 0 || output.slot >= NUM_BUFFER_SLOTS) {
808             mGraphicBufferProducer->cancelBuffers(cancelBufferInputs, &cancelBufferOutputs);
809             ALOGE("%s: IGraphicBufferProducer returned invalid slot number %d",
810                     __FUNCTION__, output.slot);
811             android_errorWriteLog(0x534e4554, "36991414"); // SafetyNet logging
812             return FAILED_TRANSACTION;
813         }
814 
815         if (input.getTimestamps && !output.timestamps.has_value()) {
816             mGraphicBufferProducer->cancelBuffers(cancelBufferInputs, &cancelBufferOutputs);
817             ALOGE("%s: no frame timestamp returns!", __FUNCTION__);
818             return FAILED_TRANSACTION;
819         }
820 
821         // this should never happen
822         ALOGE_IF(output.fence == nullptr,
823                 "%s: received null Fence! slot=%d", __FUNCTION__, output.slot);
824     }
825 
826     Mutex::Autolock lock(mMutex);
827 
828     // Write this while holding the mutex
829     mLastDequeueStartTime = startTime;
830 
831     std::vector<int32_t> requestBufferSlots;
832     requestBufferSlots.reserve(numBufferRequested);
833     // handle release all buffers and request buffers
834     for (const auto& output : dequeueOutput) {
835         if (output.result & IGraphicBufferProducer::RELEASE_ALL_BUFFERS) {
836             ALOGV("%s: RELEASE_ALL_BUFFERS during batch operation", __FUNCTION__);
837             freeAllBuffers();
838             break;
839         }
840     }
841 
842     for (const auto& output : dequeueOutput) {
843         // Collect slots that needs requesting buffer
844         sp<GraphicBuffer>& gbuf(mSlots[output.slot].buffer);
845         if ((result & IGraphicBufferProducer::BUFFER_NEEDS_REALLOCATION) || gbuf == nullptr) {
846             if (mReportRemovedBuffers && (gbuf != nullptr)) {
847                 mRemovedBuffers.push_back(gbuf);
848             }
849             requestBufferSlots.push_back(output.slot);
850         }
851     }
852 
853     // Batch request Buffer
854     std::vector<RequestBufferOutput> reqBufferOutput;
855     if (requestBufferSlots.size() > 0) {
856         result = mGraphicBufferProducer->requestBuffers(requestBufferSlots, &reqBufferOutput);
857         if (result != NO_ERROR) {
858             ALOGE("%s: IGraphicBufferProducer::requestBuffers failed: %d",
859                     __FUNCTION__, result);
860             mGraphicBufferProducer->cancelBuffers(cancelBufferInputs, &cancelBufferOutputs);
861             return result;
862         }
863 
864         // Check if we have any single failure
865         for (size_t i = 0; i < requestBufferSlots.size(); i++) {
866             if (reqBufferOutput[i].result != OK) {
867                 ALOGE("%s: IGraphicBufferProducer::requestBuffers failed at %zu-th buffer, slot %d",
868                         __FUNCTION__, i, requestBufferSlots[i]);
869                 mGraphicBufferProducer->cancelBuffers(cancelBufferInputs, &cancelBufferOutputs);
870                 return reqBufferOutput[i].result;
871             }
872         }
873 
874         // Fill request buffer results to mSlots
875         for (size_t i = 0; i < requestBufferSlots.size(); i++) {
876             mSlots[requestBufferSlots[i]].buffer = reqBufferOutput[i].buffer;
877         }
878     }
879 
880     for (size_t batchIdx = 0; batchIdx < numBufferRequested; batchIdx++) {
881         const auto& output = dequeueOutput[batchIdx];
882         int slot = output.slot;
883         sp<GraphicBuffer>& gbuf(mSlots[slot].buffer);
884 
885         if (CC_UNLIKELY(atrace_is_tag_enabled(ATRACE_TAG_GRAPHICS))) {
886             static FenceMonitor hwcReleaseThread("HWC release");
887             hwcReleaseThread.queueFence(output.fence);
888         }
889 
890         if (input.getTimestamps) {
891              mFrameEventHistory->applyDelta(output.timestamps.value());
892         }
893 
894         if (output.fence->isValid()) {
895             buffers->at(batchIdx).fenceFd = output.fence->dup();
896             if (buffers->at(batchIdx).fenceFd == -1) {
897                 ALOGE("%s: error duping fence: %d", __FUNCTION__, errno);
898                 // dup() should never fail; something is badly wrong. Soldier on
899                 // and hope for the best; the worst that should happen is some
900                 // visible corruption that lasts until the next frame.
901             }
902         } else {
903             buffers->at(batchIdx).fenceFd = -1;
904         }
905 
906         buffers->at(batchIdx).buffer = gbuf.get();
907         mDequeuedSlots.insert(slot);
908     }
909     return OK;
910 }
911 
cancelBuffer(android_native_buffer_t * buffer,int fenceFd)912 int Surface::cancelBuffer(android_native_buffer_t* buffer,
913         int fenceFd) {
914     ATRACE_CALL();
915     ALOGV("Surface::cancelBuffer");
916     Mutex::Autolock lock(mMutex);
917     int i = getSlotFromBufferLocked(buffer);
918     if (i < 0) {
919         if (fenceFd >= 0) {
920             close(fenceFd);
921         }
922         return i;
923     }
924     if (mSharedBufferSlot == i && mSharedBufferHasBeenQueued) {
925         if (fenceFd >= 0) {
926             close(fenceFd);
927         }
928         return OK;
929     }
930     sp<Fence> fence(fenceFd >= 0 ? new Fence(fenceFd) : Fence::NO_FENCE);
931     mGraphicBufferProducer->cancelBuffer(i, fence);
932 
933     if (mSharedBufferMode && mAutoRefresh && mSharedBufferSlot == i) {
934         mSharedBufferHasBeenQueued = true;
935     }
936 
937     mDequeuedSlots.erase(i);
938 
939     return OK;
940 }
941 
cancelBuffers(const std::vector<BatchBuffer> & buffers)942 int Surface::cancelBuffers(const std::vector<BatchBuffer>& buffers) {
943     using CancelBufferInput = IGraphicBufferProducer::CancelBufferInput;
944     ATRACE_CALL();
945     ALOGV("Surface::cancelBuffers");
946 
947     if (mSharedBufferMode) {
948         ALOGE("%s: batch operation is not supported in shared buffer mode!",
949                 __FUNCTION__);
950         return INVALID_OPERATION;
951     }
952 
953     size_t numBuffers = buffers.size();
954     std::vector<CancelBufferInput> cancelBufferInputs(numBuffers);
955     std::vector<status_t> cancelBufferOutputs;
956     size_t numBuffersCancelled = 0;
957     int badSlotResult = 0;
958     for (size_t i = 0; i < numBuffers; i++) {
959         int slot = getSlotFromBufferLocked(buffers[i].buffer);
960         int fenceFd = buffers[i].fenceFd;
961         if (slot < 0) {
962             if (fenceFd >= 0) {
963                 close(fenceFd);
964             }
965             ALOGE("%s: cannot find slot number for cancelled buffer", __FUNCTION__);
966             badSlotResult = slot;
967         } else {
968             sp<Fence> fence(fenceFd >= 0 ? new Fence(fenceFd) : Fence::NO_FENCE);
969             cancelBufferInputs[numBuffersCancelled].slot = slot;
970             cancelBufferInputs[numBuffersCancelled++].fence = fence;
971         }
972     }
973     cancelBufferInputs.resize(numBuffersCancelled);
974     mGraphicBufferProducer->cancelBuffers(cancelBufferInputs, &cancelBufferOutputs);
975 
976 
977     for (size_t i = 0; i < numBuffersCancelled; i++) {
978         mDequeuedSlots.erase(cancelBufferInputs[i].slot);
979     }
980 
981     if (badSlotResult != 0) {
982         return badSlotResult;
983     }
984     return OK;
985 }
986 
getSlotFromBufferLocked(android_native_buffer_t * buffer) const987 int Surface::getSlotFromBufferLocked(
988         android_native_buffer_t* buffer) const {
989     if (buffer == nullptr) {
990         ALOGE("%s: input buffer is null!", __FUNCTION__);
991         return BAD_VALUE;
992     }
993 
994     for (int i = 0; i < NUM_BUFFER_SLOTS; i++) {
995         if (mSlots[i].buffer != nullptr &&
996                 mSlots[i].buffer->handle == buffer->handle) {
997             return i;
998         }
999     }
1000     ALOGE("%s: unknown buffer: %p", __FUNCTION__, buffer->handle);
1001     return BAD_VALUE;
1002 }
1003 
lockBuffer_DEPRECATED(android_native_buffer_t * buffer)1004 int Surface::lockBuffer_DEPRECATED(android_native_buffer_t* buffer __attribute__((unused))) {
1005     ALOGV("Surface::lockBuffer");
1006     Mutex::Autolock lock(mMutex);
1007     return OK;
1008 }
1009 
getQueueBufferInputLocked(android_native_buffer_t * buffer,int fenceFd,nsecs_t timestamp,IGraphicBufferProducer::QueueBufferInput * out)1010 void Surface::getQueueBufferInputLocked(android_native_buffer_t* buffer, int fenceFd,
1011         nsecs_t timestamp, IGraphicBufferProducer::QueueBufferInput* out) {
1012     bool isAutoTimestamp = false;
1013 
1014     if (timestamp == NATIVE_WINDOW_TIMESTAMP_AUTO) {
1015         timestamp = systemTime(SYSTEM_TIME_MONOTONIC);
1016         isAutoTimestamp = true;
1017         ALOGV("Surface::queueBuffer making up timestamp: %.2f ms",
1018             timestamp / 1000000.0);
1019     }
1020 
1021     // Make sure the crop rectangle is entirely inside the buffer.
1022     Rect crop(Rect::EMPTY_RECT);
1023     mCrop.intersect(Rect(buffer->width, buffer->height), &crop);
1024 
1025     sp<Fence> fence(fenceFd >= 0 ? new Fence(fenceFd) : Fence::NO_FENCE);
1026     IGraphicBufferProducer::QueueBufferInput input(timestamp, isAutoTimestamp,
1027             static_cast<android_dataspace>(mDataSpace), crop, mScalingMode,
1028             mTransform ^ mStickyTransform, fence, mStickyTransform,
1029             mEnableFrameTimestamps);
1030 
1031     // we should send HDR metadata as needed if this becomes a bottleneck
1032     input.setHdrMetadata(mHdrMetadata);
1033 
1034     if (mConnectedToCpu || mDirtyRegion.bounds() == Rect::INVALID_RECT) {
1035         input.setSurfaceDamage(Region::INVALID_REGION);
1036     } else {
1037         // Here we do two things:
1038         // 1) The surface damage was specified using the OpenGL ES convention of
1039         //    the origin being in the bottom-left corner. Here we flip to the
1040         //    convention that the rest of the system uses (top-left corner) by
1041         //    subtracting all top/bottom coordinates from the buffer height.
1042         // 2) If the buffer is coming in rotated (for example, because the EGL
1043         //    implementation is reacting to the transform hint coming back from
1044         //    SurfaceFlinger), the surface damage needs to be rotated the
1045         //    opposite direction, since it was generated assuming an unrotated
1046         //    buffer (the app doesn't know that the EGL implementation is
1047         //    reacting to the transform hint behind its back). The
1048         //    transformations in the switch statement below apply those
1049         //    complementary rotations (e.g., if 90 degrees, rotate 270 degrees).
1050 
1051         int width = buffer->width;
1052         int height = buffer->height;
1053         bool rotated90 = (mTransform ^ mStickyTransform) &
1054                 NATIVE_WINDOW_TRANSFORM_ROT_90;
1055         if (rotated90) {
1056             std::swap(width, height);
1057         }
1058 
1059         Region flippedRegion;
1060         for (auto rect : mDirtyRegion) {
1061             int left = rect.left;
1062             int right = rect.right;
1063             int top = height - rect.bottom; // Flip from OpenGL convention
1064             int bottom = height - rect.top; // Flip from OpenGL convention
1065             switch (mTransform ^ mStickyTransform) {
1066                 case NATIVE_WINDOW_TRANSFORM_ROT_90: {
1067                     // Rotate 270 degrees
1068                     Rect flippedRect{top, width - right, bottom, width - left};
1069                     flippedRegion.orSelf(flippedRect);
1070                     break;
1071                 }
1072                 case NATIVE_WINDOW_TRANSFORM_ROT_180: {
1073                     // Rotate 180 degrees
1074                     Rect flippedRect{width - right, height - bottom,
1075                             width - left, height - top};
1076                     flippedRegion.orSelf(flippedRect);
1077                     break;
1078                 }
1079                 case NATIVE_WINDOW_TRANSFORM_ROT_270: {
1080                     // Rotate 90 degrees
1081                     Rect flippedRect{height - bottom, left,
1082                             height - top, right};
1083                     flippedRegion.orSelf(flippedRect);
1084                     break;
1085                 }
1086                 default: {
1087                     Rect flippedRect{left, top, right, bottom};
1088                     flippedRegion.orSelf(flippedRect);
1089                     break;
1090                 }
1091             }
1092         }
1093 
1094         input.setSurfaceDamage(flippedRegion);
1095     }
1096     *out = input;
1097 }
1098 
onBufferQueuedLocked(int slot,sp<Fence> fence,const IGraphicBufferProducer::QueueBufferOutput & output)1099 void Surface::onBufferQueuedLocked(int slot, sp<Fence> fence,
1100         const IGraphicBufferProducer::QueueBufferOutput& output) {
1101     mDequeuedSlots.erase(slot);
1102 
1103     if (mEnableFrameTimestamps) {
1104         mFrameEventHistory->applyDelta(output.frameTimestamps);
1105         // Update timestamps with the local acquire fence.
1106         // The consumer doesn't send it back to prevent us from having two
1107         // file descriptors of the same fence.
1108         mFrameEventHistory->updateAcquireFence(mNextFrameNumber,
1109                 std::make_shared<FenceTime>(fence));
1110 
1111         // Cache timestamps of signaled fences so we can close their file
1112         // descriptors.
1113         mFrameEventHistory->updateSignalTimes();
1114     }
1115 
1116     mLastFrameNumber = mNextFrameNumber;
1117 
1118     mDefaultWidth = output.width;
1119     mDefaultHeight = output.height;
1120     mNextFrameNumber = output.nextFrameNumber;
1121 
1122     // Ignore transform hint if sticky transform is set or transform to display inverse flag is
1123     // set.
1124     if (mStickyTransform == 0 && !transformToDisplayInverse()) {
1125         mTransformHint = output.transformHint;
1126     }
1127 
1128     mConsumerRunningBehind = (output.numPendingBuffers >= 2);
1129 
1130     if (!mConnectedToCpu) {
1131         // Clear surface damage back to full-buffer
1132         mDirtyRegion = Region::INVALID_REGION;
1133     }
1134 
1135     if (mSharedBufferMode && mAutoRefresh && mSharedBufferSlot == slot) {
1136         mSharedBufferHasBeenQueued = true;
1137     }
1138 
1139     mQueueBufferCondition.broadcast();
1140 
1141     if (CC_UNLIKELY(atrace_is_tag_enabled(ATRACE_TAG_GRAPHICS))) {
1142         static FenceMonitor gpuCompletionThread("GPU completion");
1143         gpuCompletionThread.queueFence(fence);
1144     }
1145 }
1146 
queueBuffer(android_native_buffer_t * buffer,int fenceFd)1147 int Surface::queueBuffer(android_native_buffer_t* buffer, int fenceFd) {
1148     ATRACE_CALL();
1149     ALOGV("Surface::queueBuffer");
1150     Mutex::Autolock lock(mMutex);
1151 
1152     int i = getSlotFromBufferLocked(buffer);
1153     if (i < 0) {
1154         if (fenceFd >= 0) {
1155             close(fenceFd);
1156         }
1157         return i;
1158     }
1159     if (mSharedBufferSlot == i && mSharedBufferHasBeenQueued) {
1160         if (fenceFd >= 0) {
1161             close(fenceFd);
1162         }
1163         return OK;
1164     }
1165 
1166     IGraphicBufferProducer::QueueBufferOutput output;
1167     IGraphicBufferProducer::QueueBufferInput input;
1168     getQueueBufferInputLocked(buffer, fenceFd, mTimestamp, &input);
1169     sp<Fence> fence = input.fence;
1170 
1171     nsecs_t now = systemTime();
1172     status_t err = mGraphicBufferProducer->queueBuffer(i, input, &output);
1173     mLastQueueDuration = systemTime() - now;
1174     if (err != OK)  {
1175         ALOGE("queueBuffer: error queuing buffer, %d", err);
1176     }
1177 
1178     onBufferQueuedLocked(i, fence, output);
1179     return err;
1180 }
1181 
queueBuffers(const std::vector<BatchQueuedBuffer> & buffers)1182 int Surface::queueBuffers(const std::vector<BatchQueuedBuffer>& buffers) {
1183     ATRACE_CALL();
1184     ALOGV("Surface::queueBuffers");
1185     Mutex::Autolock lock(mMutex);
1186 
1187     if (mSharedBufferMode) {
1188         ALOGE("%s: batched operation is not supported in shared buffer mode", __FUNCTION__);
1189         return INVALID_OPERATION;
1190     }
1191 
1192     size_t numBuffers = buffers.size();
1193     std::vector<IGraphicBufferProducer::QueueBufferInput> queueBufferInputs(numBuffers);
1194     std::vector<IGraphicBufferProducer::QueueBufferOutput> queueBufferOutputs;
1195     std::vector<int> bufferSlots(numBuffers, -1);
1196     std::vector<sp<Fence>> bufferFences(numBuffers);
1197 
1198     for (size_t batchIdx = 0; batchIdx < numBuffers; batchIdx++) {
1199         int i = getSlotFromBufferLocked(buffers[batchIdx].buffer);
1200         if (i < 0) {
1201             if (buffers[batchIdx].fenceFd >= 0) {
1202                 close(buffers[batchIdx].fenceFd);
1203             }
1204             return i;
1205         }
1206         bufferSlots[batchIdx] = i;
1207 
1208         IGraphicBufferProducer::QueueBufferInput input;
1209         getQueueBufferInputLocked(
1210                 buffers[batchIdx].buffer, buffers[batchIdx].fenceFd, buffers[batchIdx].timestamp,
1211                 &input);
1212         bufferFences[batchIdx] = input.fence;
1213         queueBufferInputs[batchIdx] = input;
1214     }
1215 
1216     nsecs_t now = systemTime();
1217     status_t err = mGraphicBufferProducer->queueBuffers(queueBufferInputs, &queueBufferOutputs);
1218     mLastQueueDuration = systemTime() - now;
1219     if (err != OK)  {
1220         ALOGE("%s: error queuing buffer, %d", __FUNCTION__, err);
1221     }
1222 
1223 
1224     for (size_t batchIdx = 0; batchIdx < numBuffers; batchIdx++) {
1225         onBufferQueuedLocked(bufferSlots[batchIdx], bufferFences[batchIdx],
1226                 queueBufferOutputs[batchIdx]);
1227     }
1228 
1229     return err;
1230 }
1231 
querySupportedTimestampsLocked() const1232 void Surface::querySupportedTimestampsLocked() const {
1233     // mMutex must be locked when calling this method.
1234 
1235     if (mQueriedSupportedTimestamps) {
1236         return;
1237     }
1238     mQueriedSupportedTimestamps = true;
1239 
1240     std::vector<FrameEvent> supportedFrameTimestamps;
1241     status_t err = composerService()->getSupportedFrameTimestamps(
1242             &supportedFrameTimestamps);
1243 
1244     if (err != NO_ERROR) {
1245         return;
1246     }
1247 
1248     for (auto sft : supportedFrameTimestamps) {
1249         if (sft == FrameEvent::DISPLAY_PRESENT) {
1250             mFrameTimestampsSupportsPresent = true;
1251         }
1252     }
1253 }
1254 
query(int what,int * value) const1255 int Surface::query(int what, int* value) const {
1256     ATRACE_CALL();
1257     ALOGV("Surface::query");
1258     { // scope for the lock
1259         Mutex::Autolock lock(mMutex);
1260         switch (what) {
1261             case NATIVE_WINDOW_FORMAT:
1262                 if (mReqFormat) {
1263                     *value = static_cast<int>(mReqFormat);
1264                     return NO_ERROR;
1265                 }
1266                 break;
1267             case NATIVE_WINDOW_QUEUES_TO_WINDOW_COMPOSER: {
1268                 status_t err = mGraphicBufferProducer->query(what, value);
1269                 if (err == NO_ERROR) {
1270                     return NO_ERROR;
1271                 }
1272                 sp<ISurfaceComposer> surfaceComposer = composerService();
1273                 if (surfaceComposer == nullptr) {
1274                     return -EPERM; // likely permissions error
1275                 }
1276                 if (surfaceComposer->authenticateSurfaceTexture(mGraphicBufferProducer)) {
1277                     *value = 1;
1278                 } else {
1279                     *value = 0;
1280                 }
1281                 return NO_ERROR;
1282             }
1283             case NATIVE_WINDOW_CONCRETE_TYPE:
1284                 *value = NATIVE_WINDOW_SURFACE;
1285                 return NO_ERROR;
1286             case NATIVE_WINDOW_DEFAULT_WIDTH:
1287                 *value = static_cast<int>(
1288                         mUserWidth ? mUserWidth : mDefaultWidth);
1289                 return NO_ERROR;
1290             case NATIVE_WINDOW_DEFAULT_HEIGHT:
1291                 *value = static_cast<int>(
1292                         mUserHeight ? mUserHeight : mDefaultHeight);
1293                 return NO_ERROR;
1294             case NATIVE_WINDOW_TRANSFORM_HINT:
1295                 *value = static_cast<int>(getTransformHint());
1296                 return NO_ERROR;
1297             case NATIVE_WINDOW_CONSUMER_RUNNING_BEHIND: {
1298                 status_t err = NO_ERROR;
1299                 if (!mConsumerRunningBehind) {
1300                     *value = 0;
1301                 } else {
1302                     err = mGraphicBufferProducer->query(what, value);
1303                     if (err == NO_ERROR) {
1304                         mConsumerRunningBehind = *value;
1305                     }
1306                 }
1307                 return err;
1308             }
1309             case NATIVE_WINDOW_BUFFER_AGE: {
1310                 if (mBufferAge > INT32_MAX) {
1311                     *value = 0;
1312                 } else {
1313                     *value = static_cast<int32_t>(mBufferAge);
1314                 }
1315                 return NO_ERROR;
1316             }
1317             case NATIVE_WINDOW_LAST_DEQUEUE_DURATION: {
1318                 int64_t durationUs = mLastDequeueDuration / 1000;
1319                 *value = durationUs > std::numeric_limits<int>::max() ?
1320                         std::numeric_limits<int>::max() :
1321                         static_cast<int>(durationUs);
1322                 return NO_ERROR;
1323             }
1324             case NATIVE_WINDOW_LAST_QUEUE_DURATION: {
1325                 int64_t durationUs = mLastQueueDuration / 1000;
1326                 *value = durationUs > std::numeric_limits<int>::max() ?
1327                         std::numeric_limits<int>::max() :
1328                         static_cast<int>(durationUs);
1329                 return NO_ERROR;
1330             }
1331             case NATIVE_WINDOW_FRAME_TIMESTAMPS_SUPPORTS_PRESENT: {
1332                 querySupportedTimestampsLocked();
1333                 *value = mFrameTimestampsSupportsPresent ? 1 : 0;
1334                 return NO_ERROR;
1335             }
1336             case NATIVE_WINDOW_IS_VALID: {
1337                 *value = mGraphicBufferProducer != nullptr ? 1 : 0;
1338                 return NO_ERROR;
1339             }
1340             case NATIVE_WINDOW_DATASPACE: {
1341                 *value = static_cast<int>(mDataSpace);
1342                 return NO_ERROR;
1343             }
1344             case NATIVE_WINDOW_MAX_BUFFER_COUNT: {
1345                 *value = mMaxBufferCount;
1346                 return NO_ERROR;
1347             }
1348         }
1349     }
1350     return mGraphicBufferProducer->query(what, value);
1351 }
1352 
perform(int operation,va_list args)1353 int Surface::perform(int operation, va_list args)
1354 {
1355     int res = NO_ERROR;
1356     switch (operation) {
1357     case NATIVE_WINDOW_CONNECT:
1358         // deprecated. must return NO_ERROR.
1359         break;
1360     case NATIVE_WINDOW_DISCONNECT:
1361         // deprecated. must return NO_ERROR.
1362         break;
1363     case NATIVE_WINDOW_SET_USAGE:
1364         res = dispatchSetUsage(args);
1365         break;
1366     case NATIVE_WINDOW_SET_CROP:
1367         res = dispatchSetCrop(args);
1368         break;
1369     case NATIVE_WINDOW_SET_BUFFER_COUNT:
1370         res = dispatchSetBufferCount(args);
1371         break;
1372     case NATIVE_WINDOW_SET_BUFFERS_GEOMETRY:
1373         res = dispatchSetBuffersGeometry(args);
1374         break;
1375     case NATIVE_WINDOW_SET_BUFFERS_TRANSFORM:
1376         res = dispatchSetBuffersTransform(args);
1377         break;
1378     case NATIVE_WINDOW_SET_BUFFERS_STICKY_TRANSFORM:
1379         res = dispatchSetBuffersStickyTransform(args);
1380         break;
1381     case NATIVE_WINDOW_SET_BUFFERS_TIMESTAMP:
1382         res = dispatchSetBuffersTimestamp(args);
1383         break;
1384     case NATIVE_WINDOW_SET_BUFFERS_DIMENSIONS:
1385         res = dispatchSetBuffersDimensions(args);
1386         break;
1387     case NATIVE_WINDOW_SET_BUFFERS_USER_DIMENSIONS:
1388         res = dispatchSetBuffersUserDimensions(args);
1389         break;
1390     case NATIVE_WINDOW_SET_BUFFERS_FORMAT:
1391         res = dispatchSetBuffersFormat(args);
1392         break;
1393     case NATIVE_WINDOW_LOCK:
1394         res = dispatchLock(args);
1395         break;
1396     case NATIVE_WINDOW_UNLOCK_AND_POST:
1397         res = dispatchUnlockAndPost(args);
1398         break;
1399     case NATIVE_WINDOW_SET_SCALING_MODE:
1400         res = dispatchSetScalingMode(args);
1401         break;
1402     case NATIVE_WINDOW_API_CONNECT:
1403         res = dispatchConnect(args);
1404         break;
1405     case NATIVE_WINDOW_API_DISCONNECT:
1406         res = dispatchDisconnect(args);
1407         break;
1408     case NATIVE_WINDOW_SET_SIDEBAND_STREAM:
1409         res = dispatchSetSidebandStream(args);
1410         break;
1411     case NATIVE_WINDOW_SET_BUFFERS_DATASPACE:
1412         res = dispatchSetBuffersDataSpace(args);
1413         break;
1414     case NATIVE_WINDOW_SET_BUFFERS_SMPTE2086_METADATA:
1415         res = dispatchSetBuffersSmpte2086Metadata(args);
1416         break;
1417     case NATIVE_WINDOW_SET_BUFFERS_CTA861_3_METADATA:
1418         res = dispatchSetBuffersCta8613Metadata(args);
1419         break;
1420     case NATIVE_WINDOW_SET_BUFFERS_HDR10_PLUS_METADATA:
1421         res = dispatchSetBuffersHdr10PlusMetadata(args);
1422         break;
1423     case NATIVE_WINDOW_SET_SURFACE_DAMAGE:
1424         res = dispatchSetSurfaceDamage(args);
1425         break;
1426     case NATIVE_WINDOW_SET_SHARED_BUFFER_MODE:
1427         res = dispatchSetSharedBufferMode(args);
1428         break;
1429     case NATIVE_WINDOW_SET_AUTO_REFRESH:
1430         res = dispatchSetAutoRefresh(args);
1431         break;
1432     case NATIVE_WINDOW_GET_REFRESH_CYCLE_DURATION:
1433         res = dispatchGetDisplayRefreshCycleDuration(args);
1434         break;
1435     case NATIVE_WINDOW_GET_NEXT_FRAME_ID:
1436         res = dispatchGetNextFrameId(args);
1437         break;
1438     case NATIVE_WINDOW_ENABLE_FRAME_TIMESTAMPS:
1439         res = dispatchEnableFrameTimestamps(args);
1440         break;
1441     case NATIVE_WINDOW_GET_COMPOSITOR_TIMING:
1442         res = dispatchGetCompositorTiming(args);
1443         break;
1444     case NATIVE_WINDOW_GET_FRAME_TIMESTAMPS:
1445         res = dispatchGetFrameTimestamps(args);
1446         break;
1447     case NATIVE_WINDOW_GET_WIDE_COLOR_SUPPORT:
1448         res = dispatchGetWideColorSupport(args);
1449         break;
1450     case NATIVE_WINDOW_GET_HDR_SUPPORT:
1451         res = dispatchGetHdrSupport(args);
1452         break;
1453     case NATIVE_WINDOW_SET_USAGE64:
1454         res = dispatchSetUsage64(args);
1455         break;
1456     case NATIVE_WINDOW_GET_CONSUMER_USAGE64:
1457         res = dispatchGetConsumerUsage64(args);
1458         break;
1459     case NATIVE_WINDOW_SET_AUTO_PREROTATION:
1460         res = dispatchSetAutoPrerotation(args);
1461         break;
1462     case NATIVE_WINDOW_GET_LAST_DEQUEUE_START:
1463         res = dispatchGetLastDequeueStartTime(args);
1464         break;
1465     case NATIVE_WINDOW_SET_DEQUEUE_TIMEOUT:
1466         res = dispatchSetDequeueTimeout(args);
1467         break;
1468     case NATIVE_WINDOW_GET_LAST_DEQUEUE_DURATION:
1469         res = dispatchGetLastDequeueDuration(args);
1470         break;
1471     case NATIVE_WINDOW_GET_LAST_QUEUE_DURATION:
1472         res = dispatchGetLastQueueDuration(args);
1473         break;
1474     case NATIVE_WINDOW_SET_FRAME_RATE:
1475         res = dispatchSetFrameRate(args);
1476         break;
1477     case NATIVE_WINDOW_SET_CANCEL_INTERCEPTOR:
1478         res = dispatchAddCancelInterceptor(args);
1479         break;
1480     case NATIVE_WINDOW_SET_DEQUEUE_INTERCEPTOR:
1481         res = dispatchAddDequeueInterceptor(args);
1482         break;
1483     case NATIVE_WINDOW_SET_PERFORM_INTERCEPTOR:
1484         res = dispatchAddPerformInterceptor(args);
1485         break;
1486     case NATIVE_WINDOW_SET_QUEUE_INTERCEPTOR:
1487         res = dispatchAddQueueInterceptor(args);
1488         break;
1489     case NATIVE_WINDOW_SET_QUERY_INTERCEPTOR:
1490         res = dispatchAddQueryInterceptor(args);
1491         break;
1492     case NATIVE_WINDOW_ALLOCATE_BUFFERS:
1493         allocateBuffers();
1494         res = NO_ERROR;
1495         break;
1496     case NATIVE_WINDOW_GET_LAST_QUEUED_BUFFER:
1497         res = dispatchGetLastQueuedBuffer(args);
1498         break;
1499     case NATIVE_WINDOW_GET_LAST_QUEUED_BUFFER2:
1500         res = dispatchGetLastQueuedBuffer2(args);
1501         break;
1502     case NATIVE_WINDOW_SET_FRAME_TIMELINE_INFO:
1503         res = dispatchSetFrameTimelineInfo(args);
1504         break;
1505     default:
1506         res = NAME_NOT_FOUND;
1507         break;
1508     }
1509     return res;
1510 }
1511 
dispatchConnect(va_list args)1512 int Surface::dispatchConnect(va_list args) {
1513     int api = va_arg(args, int);
1514     return connect(api);
1515 }
1516 
dispatchDisconnect(va_list args)1517 int Surface::dispatchDisconnect(va_list args) {
1518     int api = va_arg(args, int);
1519     return disconnect(api);
1520 }
1521 
dispatchSetUsage(va_list args)1522 int Surface::dispatchSetUsage(va_list args) {
1523     uint64_t usage = va_arg(args, uint32_t);
1524     return setUsage(usage);
1525 }
1526 
dispatchSetUsage64(va_list args)1527 int Surface::dispatchSetUsage64(va_list args) {
1528     uint64_t usage = va_arg(args, uint64_t);
1529     return setUsage(usage);
1530 }
1531 
dispatchSetCrop(va_list args)1532 int Surface::dispatchSetCrop(va_list args) {
1533     android_native_rect_t const* rect = va_arg(args, android_native_rect_t*);
1534     return setCrop(reinterpret_cast<Rect const*>(rect));
1535 }
1536 
dispatchSetBufferCount(va_list args)1537 int Surface::dispatchSetBufferCount(va_list args) {
1538     size_t bufferCount = va_arg(args, size_t);
1539     return setBufferCount(static_cast<int32_t>(bufferCount));
1540 }
1541 
dispatchSetBuffersGeometry(va_list args)1542 int Surface::dispatchSetBuffersGeometry(va_list args) {
1543     uint32_t width = va_arg(args, uint32_t);
1544     uint32_t height = va_arg(args, uint32_t);
1545     PixelFormat format = va_arg(args, PixelFormat);
1546     int err = setBuffersDimensions(width, height);
1547     if (err != 0) {
1548         return err;
1549     }
1550     return setBuffersFormat(format);
1551 }
1552 
dispatchSetBuffersDimensions(va_list args)1553 int Surface::dispatchSetBuffersDimensions(va_list args) {
1554     uint32_t width = va_arg(args, uint32_t);
1555     uint32_t height = va_arg(args, uint32_t);
1556     return setBuffersDimensions(width, height);
1557 }
1558 
dispatchSetBuffersUserDimensions(va_list args)1559 int Surface::dispatchSetBuffersUserDimensions(va_list args) {
1560     uint32_t width = va_arg(args, uint32_t);
1561     uint32_t height = va_arg(args, uint32_t);
1562     return setBuffersUserDimensions(width, height);
1563 }
1564 
dispatchSetBuffersFormat(va_list args)1565 int Surface::dispatchSetBuffersFormat(va_list args) {
1566     PixelFormat format = va_arg(args, PixelFormat);
1567     return setBuffersFormat(format);
1568 }
1569 
dispatchSetScalingMode(va_list args)1570 int Surface::dispatchSetScalingMode(va_list args) {
1571     int mode = va_arg(args, int);
1572     return setScalingMode(mode);
1573 }
1574 
dispatchSetBuffersTransform(va_list args)1575 int Surface::dispatchSetBuffersTransform(va_list args) {
1576     uint32_t transform = va_arg(args, uint32_t);
1577     return setBuffersTransform(transform);
1578 }
1579 
dispatchSetBuffersStickyTransform(va_list args)1580 int Surface::dispatchSetBuffersStickyTransform(va_list args) {
1581     uint32_t transform = va_arg(args, uint32_t);
1582     return setBuffersStickyTransform(transform);
1583 }
1584 
dispatchSetBuffersTimestamp(va_list args)1585 int Surface::dispatchSetBuffersTimestamp(va_list args) {
1586     int64_t timestamp = va_arg(args, int64_t);
1587     return setBuffersTimestamp(timestamp);
1588 }
1589 
dispatchLock(va_list args)1590 int Surface::dispatchLock(va_list args) {
1591     ANativeWindow_Buffer* outBuffer = va_arg(args, ANativeWindow_Buffer*);
1592     ARect* inOutDirtyBounds = va_arg(args, ARect*);
1593     return lock(outBuffer, inOutDirtyBounds);
1594 }
1595 
dispatchUnlockAndPost(va_list args)1596 int Surface::dispatchUnlockAndPost(va_list args __attribute__((unused))) {
1597     return unlockAndPost();
1598 }
1599 
dispatchSetSidebandStream(va_list args)1600 int Surface::dispatchSetSidebandStream(va_list args) {
1601     native_handle_t* sH = va_arg(args, native_handle_t*);
1602     sp<NativeHandle> sidebandHandle = NativeHandle::create(sH, false);
1603     setSidebandStream(sidebandHandle);
1604     return OK;
1605 }
1606 
dispatchSetBuffersDataSpace(va_list args)1607 int Surface::dispatchSetBuffersDataSpace(va_list args) {
1608     Dataspace dataspace = static_cast<Dataspace>(va_arg(args, int));
1609     return setBuffersDataSpace(dataspace);
1610 }
1611 
dispatchSetBuffersSmpte2086Metadata(va_list args)1612 int Surface::dispatchSetBuffersSmpte2086Metadata(va_list args) {
1613     const android_smpte2086_metadata* metadata =
1614         va_arg(args, const android_smpte2086_metadata*);
1615     return setBuffersSmpte2086Metadata(metadata);
1616 }
1617 
dispatchSetBuffersCta8613Metadata(va_list args)1618 int Surface::dispatchSetBuffersCta8613Metadata(va_list args) {
1619     const android_cta861_3_metadata* metadata =
1620         va_arg(args, const android_cta861_3_metadata*);
1621     return setBuffersCta8613Metadata(metadata);
1622 }
1623 
dispatchSetBuffersHdr10PlusMetadata(va_list args)1624 int Surface::dispatchSetBuffersHdr10PlusMetadata(va_list args) {
1625     const size_t size = va_arg(args, size_t);
1626     const uint8_t* metadata = va_arg(args, const uint8_t*);
1627     return setBuffersHdr10PlusMetadata(size, metadata);
1628 }
1629 
dispatchSetSurfaceDamage(va_list args)1630 int Surface::dispatchSetSurfaceDamage(va_list args) {
1631     android_native_rect_t* rects = va_arg(args, android_native_rect_t*);
1632     size_t numRects = va_arg(args, size_t);
1633     setSurfaceDamage(rects, numRects);
1634     return NO_ERROR;
1635 }
1636 
dispatchSetSharedBufferMode(va_list args)1637 int Surface::dispatchSetSharedBufferMode(va_list args) {
1638     bool sharedBufferMode = va_arg(args, int);
1639     return setSharedBufferMode(sharedBufferMode);
1640 }
1641 
dispatchSetAutoRefresh(va_list args)1642 int Surface::dispatchSetAutoRefresh(va_list args) {
1643     bool autoRefresh = va_arg(args, int);
1644     return setAutoRefresh(autoRefresh);
1645 }
1646 
dispatchGetDisplayRefreshCycleDuration(va_list args)1647 int Surface::dispatchGetDisplayRefreshCycleDuration(va_list args) {
1648     nsecs_t* outRefreshDuration = va_arg(args, int64_t*);
1649     return getDisplayRefreshCycleDuration(outRefreshDuration);
1650 }
1651 
dispatchGetNextFrameId(va_list args)1652 int Surface::dispatchGetNextFrameId(va_list args) {
1653     uint64_t* nextFrameId = va_arg(args, uint64_t*);
1654     *nextFrameId = getNextFrameNumber();
1655     return NO_ERROR;
1656 }
1657 
dispatchEnableFrameTimestamps(va_list args)1658 int Surface::dispatchEnableFrameTimestamps(va_list args) {
1659     bool enable = va_arg(args, int);
1660     enableFrameTimestamps(enable);
1661     return NO_ERROR;
1662 }
1663 
dispatchGetCompositorTiming(va_list args)1664 int Surface::dispatchGetCompositorTiming(va_list args) {
1665     nsecs_t* compositeDeadline = va_arg(args, int64_t*);
1666     nsecs_t* compositeInterval = va_arg(args, int64_t*);
1667     nsecs_t* compositeToPresentLatency = va_arg(args, int64_t*);
1668     return getCompositorTiming(compositeDeadline, compositeInterval,
1669             compositeToPresentLatency);
1670 }
1671 
dispatchGetFrameTimestamps(va_list args)1672 int Surface::dispatchGetFrameTimestamps(va_list args) {
1673     uint64_t frameId = va_arg(args, uint64_t);
1674     nsecs_t* outRequestedPresentTime = va_arg(args, int64_t*);
1675     nsecs_t* outAcquireTime = va_arg(args, int64_t*);
1676     nsecs_t* outLatchTime = va_arg(args, int64_t*);
1677     nsecs_t* outFirstRefreshStartTime = va_arg(args, int64_t*);
1678     nsecs_t* outLastRefreshStartTime = va_arg(args, int64_t*);
1679     nsecs_t* outGpuCompositionDoneTime = va_arg(args, int64_t*);
1680     nsecs_t* outDisplayPresentTime = va_arg(args, int64_t*);
1681     nsecs_t* outDequeueReadyTime = va_arg(args, int64_t*);
1682     nsecs_t* outReleaseTime = va_arg(args, int64_t*);
1683     return getFrameTimestamps(frameId,
1684             outRequestedPresentTime, outAcquireTime, outLatchTime,
1685             outFirstRefreshStartTime, outLastRefreshStartTime,
1686             outGpuCompositionDoneTime, outDisplayPresentTime,
1687             outDequeueReadyTime, outReleaseTime);
1688 }
1689 
dispatchGetWideColorSupport(va_list args)1690 int Surface::dispatchGetWideColorSupport(va_list args) {
1691     bool* outSupport = va_arg(args, bool*);
1692     return getWideColorSupport(outSupport);
1693 }
1694 
dispatchGetHdrSupport(va_list args)1695 int Surface::dispatchGetHdrSupport(va_list args) {
1696     bool* outSupport = va_arg(args, bool*);
1697     return getHdrSupport(outSupport);
1698 }
1699 
dispatchGetConsumerUsage64(va_list args)1700 int Surface::dispatchGetConsumerUsage64(va_list args) {
1701     uint64_t* usage = va_arg(args, uint64_t*);
1702     return getConsumerUsage(usage);
1703 }
1704 
dispatchSetAutoPrerotation(va_list args)1705 int Surface::dispatchSetAutoPrerotation(va_list args) {
1706     bool autoPrerotation = va_arg(args, int);
1707     return setAutoPrerotation(autoPrerotation);
1708 }
1709 
dispatchGetLastDequeueStartTime(va_list args)1710 int Surface::dispatchGetLastDequeueStartTime(va_list args) {
1711     int64_t* lastDequeueStartTime = va_arg(args, int64_t*);
1712     *lastDequeueStartTime = mLastDequeueStartTime;
1713     return NO_ERROR;
1714 }
1715 
dispatchSetDequeueTimeout(va_list args)1716 int Surface::dispatchSetDequeueTimeout(va_list args) {
1717     nsecs_t timeout = va_arg(args, int64_t);
1718     return setDequeueTimeout(timeout);
1719 }
1720 
dispatchGetLastDequeueDuration(va_list args)1721 int Surface::dispatchGetLastDequeueDuration(va_list args) {
1722     int64_t* lastDequeueDuration = va_arg(args, int64_t*);
1723     *lastDequeueDuration = mLastDequeueDuration;
1724     return NO_ERROR;
1725 }
1726 
dispatchGetLastQueueDuration(va_list args)1727 int Surface::dispatchGetLastQueueDuration(va_list args) {
1728     int64_t* lastQueueDuration = va_arg(args, int64_t*);
1729     *lastQueueDuration = mLastQueueDuration;
1730     return NO_ERROR;
1731 }
1732 
dispatchSetFrameRate(va_list args)1733 int Surface::dispatchSetFrameRate(va_list args) {
1734     float frameRate = static_cast<float>(va_arg(args, double));
1735     int8_t compatibility = static_cast<int8_t>(va_arg(args, int));
1736     int8_t changeFrameRateStrategy = static_cast<int8_t>(va_arg(args, int));
1737     return setFrameRate(frameRate, compatibility, changeFrameRateStrategy);
1738 }
1739 
dispatchAddCancelInterceptor(va_list args)1740 int Surface::dispatchAddCancelInterceptor(va_list args) {
1741     ANativeWindow_cancelBufferInterceptor interceptor =
1742             va_arg(args, ANativeWindow_cancelBufferInterceptor);
1743     void* data = va_arg(args, void*);
1744     std::lock_guard<std::shared_mutex> lock(mInterceptorMutex);
1745     mCancelInterceptor = interceptor;
1746     mCancelInterceptorData = data;
1747     return NO_ERROR;
1748 }
1749 
dispatchAddDequeueInterceptor(va_list args)1750 int Surface::dispatchAddDequeueInterceptor(va_list args) {
1751     ANativeWindow_dequeueBufferInterceptor interceptor =
1752             va_arg(args, ANativeWindow_dequeueBufferInterceptor);
1753     void* data = va_arg(args, void*);
1754     std::lock_guard<std::shared_mutex> lock(mInterceptorMutex);
1755     mDequeueInterceptor = interceptor;
1756     mDequeueInterceptorData = data;
1757     return NO_ERROR;
1758 }
1759 
dispatchAddPerformInterceptor(va_list args)1760 int Surface::dispatchAddPerformInterceptor(va_list args) {
1761     ANativeWindow_performInterceptor interceptor = va_arg(args, ANativeWindow_performInterceptor);
1762     void* data = va_arg(args, void*);
1763     std::lock_guard<std::shared_mutex> lock(mInterceptorMutex);
1764     mPerformInterceptor = interceptor;
1765     mPerformInterceptorData = data;
1766     return NO_ERROR;
1767 }
1768 
dispatchAddQueueInterceptor(va_list args)1769 int Surface::dispatchAddQueueInterceptor(va_list args) {
1770     ANativeWindow_queueBufferInterceptor interceptor =
1771             va_arg(args, ANativeWindow_queueBufferInterceptor);
1772     void* data = va_arg(args, void*);
1773     std::lock_guard<std::shared_mutex> lock(mInterceptorMutex);
1774     mQueueInterceptor = interceptor;
1775     mQueueInterceptorData = data;
1776     return NO_ERROR;
1777 }
1778 
dispatchAddQueryInterceptor(va_list args)1779 int Surface::dispatchAddQueryInterceptor(va_list args) {
1780     ANativeWindow_queryInterceptor interceptor = va_arg(args, ANativeWindow_queryInterceptor);
1781     void* data = va_arg(args, void*);
1782     std::lock_guard<std::shared_mutex> lock(mInterceptorMutex);
1783     mQueryInterceptor = interceptor;
1784     mQueryInterceptorData = data;
1785     return NO_ERROR;
1786 }
1787 
dispatchGetLastQueuedBuffer(va_list args)1788 int Surface::dispatchGetLastQueuedBuffer(va_list args) {
1789     AHardwareBuffer** buffer = va_arg(args, AHardwareBuffer**);
1790     int* fence = va_arg(args, int*);
1791     float* matrix = va_arg(args, float*);
1792     sp<GraphicBuffer> graphicBuffer;
1793     sp<Fence> spFence;
1794 
1795     int result = mGraphicBufferProducer->getLastQueuedBuffer(&graphicBuffer, &spFence, matrix);
1796 
1797     if (graphicBuffer != nullptr) {
1798         *buffer = graphicBuffer->toAHardwareBuffer();
1799         AHardwareBuffer_acquire(*buffer);
1800     } else {
1801         *buffer = nullptr;
1802     }
1803 
1804     if (spFence != nullptr) {
1805         *fence = spFence->dup();
1806     } else {
1807         *fence = -1;
1808     }
1809     return result;
1810 }
1811 
dispatchGetLastQueuedBuffer2(va_list args)1812 int Surface::dispatchGetLastQueuedBuffer2(va_list args) {
1813     AHardwareBuffer** buffer = va_arg(args, AHardwareBuffer**);
1814     int* fence = va_arg(args, int*);
1815     ARect* crop = va_arg(args, ARect*);
1816     uint32_t* transform = va_arg(args, uint32_t*);
1817     sp<GraphicBuffer> graphicBuffer;
1818     sp<Fence> spFence;
1819 
1820     Rect r;
1821     int result =
1822             mGraphicBufferProducer->getLastQueuedBuffer(&graphicBuffer, &spFence, &r, transform);
1823 
1824     if (graphicBuffer != nullptr) {
1825         *buffer = graphicBuffer->toAHardwareBuffer();
1826         AHardwareBuffer_acquire(*buffer);
1827 
1828         // Avoid setting crop* unless buffer is valid (matches IGBP behavior)
1829         crop->left = r.left;
1830         crop->top = r.top;
1831         crop->right = r.right;
1832         crop->bottom = r.bottom;
1833     } else {
1834         *buffer = nullptr;
1835     }
1836 
1837     if (spFence != nullptr) {
1838         *fence = spFence->dup();
1839     } else {
1840         *fence = -1;
1841     }
1842     return result;
1843 }
1844 
dispatchSetFrameTimelineInfo(va_list args)1845 int Surface::dispatchSetFrameTimelineInfo(va_list args) {
1846     ATRACE_CALL();
1847     auto frameTimelineVsyncId = static_cast<int64_t>(va_arg(args, int64_t));
1848     auto inputEventId = static_cast<int32_t>(va_arg(args, int32_t));
1849 
1850     ALOGV("Surface::%s", __func__);
1851     return setFrameTimelineInfo({frameTimelineVsyncId, inputEventId});
1852 }
1853 
transformToDisplayInverse() const1854 bool Surface::transformToDisplayInverse() const {
1855     return (mTransform & NATIVE_WINDOW_TRANSFORM_INVERSE_DISPLAY) ==
1856             NATIVE_WINDOW_TRANSFORM_INVERSE_DISPLAY;
1857 }
1858 
connect(int api)1859 int Surface::connect(int api) {
1860     static sp<IProducerListener> listener = new StubProducerListener();
1861     return connect(api, listener);
1862 }
1863 
connect(int api,const sp<IProducerListener> & listener)1864 int Surface::connect(int api, const sp<IProducerListener>& listener) {
1865     return connect(api, listener, false);
1866 }
1867 
connect(int api,bool reportBufferRemoval,const sp<SurfaceListener> & sListener)1868 int Surface::connect(
1869         int api, bool reportBufferRemoval, const sp<SurfaceListener>& sListener) {
1870     if (sListener != nullptr) {
1871         mListenerProxy = new ProducerListenerProxy(this, sListener);
1872     }
1873     return connect(api, mListenerProxy, reportBufferRemoval);
1874 }
1875 
connect(int api,const sp<IProducerListener> & listener,bool reportBufferRemoval)1876 int Surface::connect(
1877         int api, const sp<IProducerListener>& listener, bool reportBufferRemoval) {
1878     ATRACE_CALL();
1879     ALOGV("Surface::connect");
1880     Mutex::Autolock lock(mMutex);
1881     IGraphicBufferProducer::QueueBufferOutput output;
1882     mReportRemovedBuffers = reportBufferRemoval;
1883     int err = mGraphicBufferProducer->connect(listener, api, mProducerControlledByApp, &output);
1884     if (err == NO_ERROR) {
1885         mDefaultWidth = output.width;
1886         mDefaultHeight = output.height;
1887         mNextFrameNumber = output.nextFrameNumber;
1888         mMaxBufferCount = output.maxBufferCount;
1889 
1890         // Ignore transform hint if sticky transform is set or transform to display inverse flag is
1891         // set. Transform hint should be ignored if the client is expected to always submit buffers
1892         // in the same orientation.
1893         if (mStickyTransform == 0 && !transformToDisplayInverse()) {
1894             mTransformHint = output.transformHint;
1895         }
1896 
1897         mConsumerRunningBehind = (output.numPendingBuffers >= 2);
1898     }
1899     if (!err && api == NATIVE_WINDOW_API_CPU) {
1900         mConnectedToCpu = true;
1901         // Clear the dirty region in case we're switching from a non-CPU API
1902         mDirtyRegion.clear();
1903     } else if (!err) {
1904         // Initialize the dirty region for tracking surface damage
1905         mDirtyRegion = Region::INVALID_REGION;
1906     }
1907 
1908     return err;
1909 }
1910 
1911 
disconnect(int api,IGraphicBufferProducer::DisconnectMode mode)1912 int Surface::disconnect(int api, IGraphicBufferProducer::DisconnectMode mode) {
1913     ATRACE_CALL();
1914     ALOGV("Surface::disconnect");
1915     Mutex::Autolock lock(mMutex);
1916     mRemovedBuffers.clear();
1917     mSharedBufferSlot = BufferItem::INVALID_BUFFER_SLOT;
1918     mSharedBufferHasBeenQueued = false;
1919     freeAllBuffers();
1920     int err = mGraphicBufferProducer->disconnect(api, mode);
1921     if (!err) {
1922         mReqFormat = 0;
1923         mReqWidth = 0;
1924         mReqHeight = 0;
1925         mReqUsage = 0;
1926         mCrop.clear();
1927         mScalingMode = NATIVE_WINDOW_SCALING_MODE_FREEZE;
1928         mTransform = 0;
1929         mStickyTransform = 0;
1930         mAutoPrerotation = false;
1931         mEnableFrameTimestamps = false;
1932         mMaxBufferCount = NUM_BUFFER_SLOTS;
1933 
1934         if (api == NATIVE_WINDOW_API_CPU) {
1935             mConnectedToCpu = false;
1936         }
1937     }
1938     return err;
1939 }
1940 
detachNextBuffer(sp<GraphicBuffer> * outBuffer,sp<Fence> * outFence)1941 int Surface::detachNextBuffer(sp<GraphicBuffer>* outBuffer,
1942         sp<Fence>* outFence) {
1943     ATRACE_CALL();
1944     ALOGV("Surface::detachNextBuffer");
1945 
1946     if (outBuffer == nullptr || outFence == nullptr) {
1947         return BAD_VALUE;
1948     }
1949 
1950     Mutex::Autolock lock(mMutex);
1951     if (mReportRemovedBuffers) {
1952         mRemovedBuffers.clear();
1953     }
1954 
1955     sp<GraphicBuffer> buffer(nullptr);
1956     sp<Fence> fence(nullptr);
1957     status_t result = mGraphicBufferProducer->detachNextBuffer(
1958             &buffer, &fence);
1959     if (result != NO_ERROR) {
1960         return result;
1961     }
1962 
1963     *outBuffer = buffer;
1964     if (fence != nullptr && fence->isValid()) {
1965         *outFence = fence;
1966     } else {
1967         *outFence = Fence::NO_FENCE;
1968     }
1969 
1970     for (int i = 0; i < NUM_BUFFER_SLOTS; i++) {
1971         if (mSlots[i].buffer != nullptr &&
1972                 mSlots[i].buffer->getId() == buffer->getId()) {
1973             if (mReportRemovedBuffers) {
1974                 mRemovedBuffers.push_back(mSlots[i].buffer);
1975             }
1976             mSlots[i].buffer = nullptr;
1977         }
1978     }
1979 
1980     return NO_ERROR;
1981 }
1982 
attachBuffer(ANativeWindowBuffer * buffer)1983 int Surface::attachBuffer(ANativeWindowBuffer* buffer)
1984 {
1985     ATRACE_CALL();
1986     ALOGV("Surface::attachBuffer");
1987 
1988     Mutex::Autolock lock(mMutex);
1989     if (mReportRemovedBuffers) {
1990         mRemovedBuffers.clear();
1991     }
1992 
1993     sp<GraphicBuffer> graphicBuffer(static_cast<GraphicBuffer*>(buffer));
1994     uint32_t priorGeneration = graphicBuffer->mGenerationNumber;
1995     graphicBuffer->mGenerationNumber = mGenerationNumber;
1996     int32_t attachedSlot = -1;
1997     status_t result = mGraphicBufferProducer->attachBuffer(&attachedSlot, graphicBuffer);
1998     if (result != NO_ERROR) {
1999         ALOGE("attachBuffer: IGraphicBufferProducer call failed (%d)", result);
2000         graphicBuffer->mGenerationNumber = priorGeneration;
2001         return result;
2002     }
2003     if (mReportRemovedBuffers && (mSlots[attachedSlot].buffer != nullptr)) {
2004         mRemovedBuffers.push_back(mSlots[attachedSlot].buffer);
2005     }
2006     mSlots[attachedSlot].buffer = graphicBuffer;
2007     mDequeuedSlots.insert(attachedSlot);
2008 
2009     return NO_ERROR;
2010 }
2011 
setUsage(uint64_t reqUsage)2012 int Surface::setUsage(uint64_t reqUsage)
2013 {
2014     ALOGV("Surface::setUsage");
2015     Mutex::Autolock lock(mMutex);
2016     if (reqUsage != mReqUsage) {
2017         mSharedBufferSlot = BufferItem::INVALID_BUFFER_SLOT;
2018     }
2019     mReqUsage = reqUsage;
2020     return OK;
2021 }
2022 
setCrop(Rect const * rect)2023 int Surface::setCrop(Rect const* rect)
2024 {
2025     ATRACE_CALL();
2026 
2027     Rect realRect(Rect::EMPTY_RECT);
2028     if (rect == nullptr || rect->isEmpty()) {
2029         realRect.clear();
2030     } else {
2031         realRect = *rect;
2032     }
2033 
2034     ALOGV("Surface::setCrop rect=[%d %d %d %d]",
2035             realRect.left, realRect.top, realRect.right, realRect.bottom);
2036 
2037     Mutex::Autolock lock(mMutex);
2038     mCrop = realRect;
2039     return NO_ERROR;
2040 }
2041 
setBufferCount(int bufferCount)2042 int Surface::setBufferCount(int bufferCount)
2043 {
2044     ATRACE_CALL();
2045     ALOGV("Surface::setBufferCount");
2046     Mutex::Autolock lock(mMutex);
2047 
2048     status_t err = NO_ERROR;
2049     if (bufferCount == 0) {
2050         err = mGraphicBufferProducer->setMaxDequeuedBufferCount(1);
2051     } else {
2052         int minUndequeuedBuffers = 0;
2053         err = mGraphicBufferProducer->query(
2054                 NATIVE_WINDOW_MIN_UNDEQUEUED_BUFFERS, &minUndequeuedBuffers);
2055         if (err == NO_ERROR) {
2056             err = mGraphicBufferProducer->setMaxDequeuedBufferCount(
2057                     bufferCount - minUndequeuedBuffers);
2058         }
2059     }
2060 
2061     ALOGE_IF(err, "IGraphicBufferProducer::setBufferCount(%d) returned %s",
2062              bufferCount, strerror(-err));
2063 
2064     return err;
2065 }
2066 
setMaxDequeuedBufferCount(int maxDequeuedBuffers)2067 int Surface::setMaxDequeuedBufferCount(int maxDequeuedBuffers) {
2068     ATRACE_CALL();
2069     ALOGV("Surface::setMaxDequeuedBufferCount");
2070     Mutex::Autolock lock(mMutex);
2071 
2072     status_t err = mGraphicBufferProducer->setMaxDequeuedBufferCount(
2073             maxDequeuedBuffers);
2074     ALOGE_IF(err, "IGraphicBufferProducer::setMaxDequeuedBufferCount(%d) "
2075             "returned %s", maxDequeuedBuffers, strerror(-err));
2076 
2077     return err;
2078 }
2079 
setAsyncMode(bool async)2080 int Surface::setAsyncMode(bool async) {
2081     ATRACE_CALL();
2082     ALOGV("Surface::setAsyncMode");
2083     Mutex::Autolock lock(mMutex);
2084 
2085     status_t err = mGraphicBufferProducer->setAsyncMode(async);
2086     ALOGE_IF(err, "IGraphicBufferProducer::setAsyncMode(%d) returned %s",
2087             async, strerror(-err));
2088 
2089     return err;
2090 }
2091 
setSharedBufferMode(bool sharedBufferMode)2092 int Surface::setSharedBufferMode(bool sharedBufferMode) {
2093     ATRACE_CALL();
2094     ALOGV("Surface::setSharedBufferMode (%d)", sharedBufferMode);
2095     Mutex::Autolock lock(mMutex);
2096 
2097     status_t err = mGraphicBufferProducer->setSharedBufferMode(
2098             sharedBufferMode);
2099     if (err == NO_ERROR) {
2100         mSharedBufferMode = sharedBufferMode;
2101     }
2102     ALOGE_IF(err, "IGraphicBufferProducer::setSharedBufferMode(%d) returned"
2103             "%s", sharedBufferMode, strerror(-err));
2104 
2105     return err;
2106 }
2107 
setAutoRefresh(bool autoRefresh)2108 int Surface::setAutoRefresh(bool autoRefresh) {
2109     ATRACE_CALL();
2110     ALOGV("Surface::setAutoRefresh (%d)", autoRefresh);
2111     Mutex::Autolock lock(mMutex);
2112 
2113     status_t err = mGraphicBufferProducer->setAutoRefresh(autoRefresh);
2114     if (err == NO_ERROR) {
2115         mAutoRefresh = autoRefresh;
2116     }
2117     ALOGE_IF(err, "IGraphicBufferProducer::setAutoRefresh(%d) returned %s",
2118             autoRefresh, strerror(-err));
2119     return err;
2120 }
2121 
setBuffersDimensions(uint32_t width,uint32_t height)2122 int Surface::setBuffersDimensions(uint32_t width, uint32_t height)
2123 {
2124     ATRACE_CALL();
2125     ALOGV("Surface::setBuffersDimensions");
2126 
2127     if ((width && !height) || (!width && height))
2128         return BAD_VALUE;
2129 
2130     Mutex::Autolock lock(mMutex);
2131     if (width != mReqWidth || height != mReqHeight) {
2132         mSharedBufferSlot = BufferItem::INVALID_BUFFER_SLOT;
2133     }
2134     mReqWidth = width;
2135     mReqHeight = height;
2136     return NO_ERROR;
2137 }
2138 
setBuffersUserDimensions(uint32_t width,uint32_t height)2139 int Surface::setBuffersUserDimensions(uint32_t width, uint32_t height)
2140 {
2141     ATRACE_CALL();
2142     ALOGV("Surface::setBuffersUserDimensions");
2143 
2144     if ((width && !height) || (!width && height))
2145         return BAD_VALUE;
2146 
2147     Mutex::Autolock lock(mMutex);
2148     if (width != mUserWidth || height != mUserHeight) {
2149         mSharedBufferSlot = BufferItem::INVALID_BUFFER_SLOT;
2150     }
2151     mUserWidth = width;
2152     mUserHeight = height;
2153     return NO_ERROR;
2154 }
2155 
setBuffersFormat(PixelFormat format)2156 int Surface::setBuffersFormat(PixelFormat format)
2157 {
2158     ALOGV("Surface::setBuffersFormat");
2159 
2160     Mutex::Autolock lock(mMutex);
2161     if (format != mReqFormat) {
2162         mSharedBufferSlot = BufferItem::INVALID_BUFFER_SLOT;
2163     }
2164     mReqFormat = format;
2165     return NO_ERROR;
2166 }
2167 
setScalingMode(int mode)2168 int Surface::setScalingMode(int mode)
2169 {
2170     ATRACE_CALL();
2171     ALOGV("Surface::setScalingMode(%d)", mode);
2172 
2173     switch (mode) {
2174         case NATIVE_WINDOW_SCALING_MODE_FREEZE:
2175         case NATIVE_WINDOW_SCALING_MODE_SCALE_TO_WINDOW:
2176         case NATIVE_WINDOW_SCALING_MODE_SCALE_CROP:
2177         case NATIVE_WINDOW_SCALING_MODE_NO_SCALE_CROP:
2178             break;
2179         default:
2180             ALOGE("unknown scaling mode: %d", mode);
2181             return BAD_VALUE;
2182     }
2183 
2184     Mutex::Autolock lock(mMutex);
2185     mScalingMode = mode;
2186     return NO_ERROR;
2187 }
2188 
setBuffersTransform(uint32_t transform)2189 int Surface::setBuffersTransform(uint32_t transform)
2190 {
2191     ATRACE_CALL();
2192     ALOGV("Surface::setBuffersTransform");
2193     Mutex::Autolock lock(mMutex);
2194     // Ensure NATIVE_WINDOW_TRANSFORM_INVERSE_DISPLAY is sticky. If the client sets the flag, do not
2195     // override it until the surface is disconnected. This is a temporary workaround for camera
2196     // until they switch to using Buffer State Layers. Currently if client sets the buffer transform
2197     // it may be overriden by the buffer producer when the producer sets the buffer transform.
2198     if (transformToDisplayInverse()) {
2199         transform |= NATIVE_WINDOW_TRANSFORM_INVERSE_DISPLAY;
2200     }
2201     mTransform = transform;
2202     return NO_ERROR;
2203 }
2204 
setBuffersStickyTransform(uint32_t transform)2205 int Surface::setBuffersStickyTransform(uint32_t transform)
2206 {
2207     ATRACE_CALL();
2208     ALOGV("Surface::setBuffersStickyTransform");
2209     Mutex::Autolock lock(mMutex);
2210     mStickyTransform = transform;
2211     return NO_ERROR;
2212 }
2213 
setBuffersTimestamp(int64_t timestamp)2214 int Surface::setBuffersTimestamp(int64_t timestamp)
2215 {
2216     ALOGV("Surface::setBuffersTimestamp");
2217     Mutex::Autolock lock(mMutex);
2218     mTimestamp = timestamp;
2219     return NO_ERROR;
2220 }
2221 
setBuffersDataSpace(Dataspace dataSpace)2222 int Surface::setBuffersDataSpace(Dataspace dataSpace)
2223 {
2224     ALOGV("Surface::setBuffersDataSpace");
2225     Mutex::Autolock lock(mMutex);
2226     mDataSpace = dataSpace;
2227     return NO_ERROR;
2228 }
2229 
setBuffersSmpte2086Metadata(const android_smpte2086_metadata * metadata)2230 int Surface::setBuffersSmpte2086Metadata(const android_smpte2086_metadata* metadata) {
2231     ALOGV("Surface::setBuffersSmpte2086Metadata");
2232     Mutex::Autolock lock(mMutex);
2233     if (metadata) {
2234         mHdrMetadata.smpte2086 = *metadata;
2235         mHdrMetadata.validTypes |= HdrMetadata::SMPTE2086;
2236     } else {
2237         mHdrMetadata.validTypes &= ~HdrMetadata::SMPTE2086;
2238     }
2239     return NO_ERROR;
2240 }
2241 
setBuffersCta8613Metadata(const android_cta861_3_metadata * metadata)2242 int Surface::setBuffersCta8613Metadata(const android_cta861_3_metadata* metadata) {
2243     ALOGV("Surface::setBuffersCta8613Metadata");
2244     Mutex::Autolock lock(mMutex);
2245     if (metadata) {
2246         mHdrMetadata.cta8613 = *metadata;
2247         mHdrMetadata.validTypes |= HdrMetadata::CTA861_3;
2248     } else {
2249         mHdrMetadata.validTypes &= ~HdrMetadata::CTA861_3;
2250     }
2251     return NO_ERROR;
2252 }
2253 
setBuffersHdr10PlusMetadata(const size_t size,const uint8_t * metadata)2254 int Surface::setBuffersHdr10PlusMetadata(const size_t size, const uint8_t* metadata) {
2255     ALOGV("Surface::setBuffersBlobMetadata");
2256     Mutex::Autolock lock(mMutex);
2257     if (size > 0) {
2258         mHdrMetadata.hdr10plus.assign(metadata, metadata + size);
2259         mHdrMetadata.validTypes |= HdrMetadata::HDR10PLUS;
2260     } else {
2261         mHdrMetadata.validTypes &= ~HdrMetadata::HDR10PLUS;
2262         mHdrMetadata.hdr10plus.clear();
2263     }
2264     return NO_ERROR;
2265 }
2266 
getBuffersDataSpace()2267 Dataspace Surface::getBuffersDataSpace() {
2268     ALOGV("Surface::getBuffersDataSpace");
2269     Mutex::Autolock lock(mMutex);
2270     return mDataSpace;
2271 }
2272 
freeAllBuffers()2273 void Surface::freeAllBuffers() {
2274     if (!mDequeuedSlots.empty()) {
2275         ALOGE("%s: %zu buffers were freed while being dequeued!",
2276                 __FUNCTION__, mDequeuedSlots.size());
2277     }
2278     for (int i = 0; i < NUM_BUFFER_SLOTS; i++) {
2279         mSlots[i].buffer = nullptr;
2280     }
2281 }
2282 
getAndFlushBuffersFromSlots(const std::vector<int32_t> & slots,std::vector<sp<GraphicBuffer>> * outBuffers)2283 status_t Surface::getAndFlushBuffersFromSlots(const std::vector<int32_t>& slots,
2284         std::vector<sp<GraphicBuffer>>* outBuffers) {
2285     ALOGV("Surface::getAndFlushBuffersFromSlots");
2286     for (int32_t i : slots) {
2287         if (i < 0 || i >= NUM_BUFFER_SLOTS) {
2288             ALOGE("%s: Invalid slotIndex: %d", __FUNCTION__, i);
2289             return BAD_VALUE;
2290         }
2291     }
2292 
2293     Mutex::Autolock lock(mMutex);
2294     for (int32_t i : slots) {
2295         if (mSlots[i].buffer == nullptr) {
2296             ALOGW("%s: Discarded slot %d doesn't contain buffer!", __FUNCTION__, i);
2297             continue;
2298         }
2299         // Don't flush currently dequeued buffers
2300         if (mDequeuedSlots.count(i) > 0) {
2301             continue;
2302         }
2303         outBuffers->push_back(mSlots[i].buffer);
2304         mSlots[i].buffer = nullptr;
2305     }
2306     return OK;
2307 }
2308 
setSurfaceDamage(android_native_rect_t * rects,size_t numRects)2309 void Surface::setSurfaceDamage(android_native_rect_t* rects, size_t numRects) {
2310     ATRACE_CALL();
2311     ALOGV("Surface::setSurfaceDamage");
2312     Mutex::Autolock lock(mMutex);
2313 
2314     if (mConnectedToCpu || numRects == 0) {
2315         mDirtyRegion = Region::INVALID_REGION;
2316         return;
2317     }
2318 
2319     mDirtyRegion.clear();
2320     for (size_t r = 0; r < numRects; ++r) {
2321         // We intentionally flip top and bottom here, since because they're
2322         // specified with a bottom-left origin, top > bottom, which fails
2323         // validation in the Region class. We will fix this up when we flip to a
2324         // top-left origin in queueBuffer.
2325         Rect rect(rects[r].left, rects[r].bottom, rects[r].right, rects[r].top);
2326         mDirtyRegion.orSelf(rect);
2327     }
2328 }
2329 
2330 // ----------------------------------------------------------------------
2331 // the lock/unlock APIs must be used from the same thread
2332 
copyBlt(const sp<GraphicBuffer> & dst,const sp<GraphicBuffer> & src,const Region & reg,int * dstFenceFd)2333 static status_t copyBlt(
2334         const sp<GraphicBuffer>& dst,
2335         const sp<GraphicBuffer>& src,
2336         const Region& reg,
2337         int *dstFenceFd)
2338 {
2339     if (dst->getId() == src->getId())
2340         return OK;
2341 
2342     // src and dst with, height and format must be identical. no verification
2343     // is done here.
2344     status_t err;
2345     uint8_t* src_bits = nullptr;
2346     err = src->lock(GRALLOC_USAGE_SW_READ_OFTEN, reg.bounds(),
2347             reinterpret_cast<void**>(&src_bits));
2348     ALOGE_IF(err, "error locking src buffer %s", strerror(-err));
2349 
2350     uint8_t* dst_bits = nullptr;
2351     err = dst->lockAsync(GRALLOC_USAGE_SW_WRITE_OFTEN, reg.bounds(),
2352             reinterpret_cast<void**>(&dst_bits), *dstFenceFd);
2353     ALOGE_IF(err, "error locking dst buffer %s", strerror(-err));
2354     *dstFenceFd = -1;
2355 
2356     Region::const_iterator head(reg.begin());
2357     Region::const_iterator tail(reg.end());
2358     if (head != tail && src_bits && dst_bits) {
2359         const size_t bpp = bytesPerPixel(src->format);
2360         const size_t dbpr = static_cast<uint32_t>(dst->stride) * bpp;
2361         const size_t sbpr = static_cast<uint32_t>(src->stride) * bpp;
2362 
2363         while (head != tail) {
2364             const Rect& r(*head++);
2365             int32_t h = r.height();
2366             if (h <= 0) continue;
2367             size_t size = static_cast<uint32_t>(r.width()) * bpp;
2368             uint8_t const * s = src_bits +
2369                     static_cast<uint32_t>(r.left + src->stride * r.top) * bpp;
2370             uint8_t       * d = dst_bits +
2371                     static_cast<uint32_t>(r.left + dst->stride * r.top) * bpp;
2372             if (dbpr==sbpr && size==sbpr) {
2373                 size *= static_cast<size_t>(h);
2374                 h = 1;
2375             }
2376             do {
2377                 memcpy(d, s, size);
2378                 d += dbpr;
2379                 s += sbpr;
2380             } while (--h > 0);
2381         }
2382     }
2383 
2384     if (src_bits)
2385         src->unlock();
2386 
2387     if (dst_bits)
2388         dst->unlockAsync(dstFenceFd);
2389 
2390     return err;
2391 }
2392 
2393 // ----------------------------------------------------------------------------
2394 
lock(ANativeWindow_Buffer * outBuffer,ARect * inOutDirtyBounds)2395 status_t Surface::lock(
2396         ANativeWindow_Buffer* outBuffer, ARect* inOutDirtyBounds)
2397 {
2398     if (mLockedBuffer != nullptr) {
2399         ALOGE("Surface::lock failed, already locked");
2400         return INVALID_OPERATION;
2401     }
2402 
2403     if (!mConnectedToCpu) {
2404         int err = Surface::connect(NATIVE_WINDOW_API_CPU);
2405         if (err) {
2406             return err;
2407         }
2408         // we're intending to do software rendering from this point
2409         setUsage(GRALLOC_USAGE_SW_READ_OFTEN | GRALLOC_USAGE_SW_WRITE_OFTEN);
2410     }
2411 
2412     ANativeWindowBuffer* out;
2413     int fenceFd = -1;
2414     status_t err = dequeueBuffer(&out, &fenceFd);
2415     ALOGE_IF(err, "dequeueBuffer failed (%s)", strerror(-err));
2416     if (err == NO_ERROR) {
2417         sp<GraphicBuffer> backBuffer(GraphicBuffer::getSelf(out));
2418         const Rect bounds(backBuffer->width, backBuffer->height);
2419 
2420         Region newDirtyRegion;
2421         if (inOutDirtyBounds) {
2422             newDirtyRegion.set(static_cast<Rect const&>(*inOutDirtyBounds));
2423             newDirtyRegion.andSelf(bounds);
2424         } else {
2425             newDirtyRegion.set(bounds);
2426         }
2427 
2428         // figure out if we can copy the frontbuffer back
2429         const sp<GraphicBuffer>& frontBuffer(mPostedBuffer);
2430         const bool canCopyBack = (frontBuffer != nullptr &&
2431                 backBuffer->width  == frontBuffer->width &&
2432                 backBuffer->height == frontBuffer->height &&
2433                 backBuffer->format == frontBuffer->format);
2434 
2435         if (canCopyBack) {
2436             // copy the area that is invalid and not repainted this round
2437             const Region copyback(mDirtyRegion.subtract(newDirtyRegion));
2438             if (!copyback.isEmpty()) {
2439                 copyBlt(backBuffer, frontBuffer, copyback, &fenceFd);
2440             }
2441         } else {
2442             // if we can't copy-back anything, modify the user's dirty
2443             // region to make sure they redraw the whole buffer
2444             newDirtyRegion.set(bounds);
2445             mDirtyRegion.clear();
2446             Mutex::Autolock lock(mMutex);
2447             for (size_t i=0 ; i<NUM_BUFFER_SLOTS ; i++) {
2448                 mSlots[i].dirtyRegion.clear();
2449             }
2450         }
2451 
2452 
2453         { // scope for the lock
2454             Mutex::Autolock lock(mMutex);
2455             int backBufferSlot(getSlotFromBufferLocked(backBuffer.get()));
2456             if (backBufferSlot >= 0) {
2457                 Region& dirtyRegion(mSlots[backBufferSlot].dirtyRegion);
2458                 mDirtyRegion.subtract(dirtyRegion);
2459                 dirtyRegion = newDirtyRegion;
2460             }
2461         }
2462 
2463         mDirtyRegion.orSelf(newDirtyRegion);
2464         if (inOutDirtyBounds) {
2465             *inOutDirtyBounds = newDirtyRegion.getBounds();
2466         }
2467 
2468         void* vaddr;
2469         status_t res = backBuffer->lockAsync(
2470                 GRALLOC_USAGE_SW_READ_OFTEN | GRALLOC_USAGE_SW_WRITE_OFTEN,
2471                 newDirtyRegion.bounds(), &vaddr, fenceFd);
2472 
2473         ALOGW_IF(res, "failed locking buffer (handle = %p)",
2474                 backBuffer->handle);
2475 
2476         if (res != 0) {
2477             err = INVALID_OPERATION;
2478         } else {
2479             mLockedBuffer = backBuffer;
2480             outBuffer->width  = backBuffer->width;
2481             outBuffer->height = backBuffer->height;
2482             outBuffer->stride = backBuffer->stride;
2483             outBuffer->format = backBuffer->format;
2484             outBuffer->bits   = vaddr;
2485         }
2486     }
2487     return err;
2488 }
2489 
unlockAndPost()2490 status_t Surface::unlockAndPost()
2491 {
2492     if (mLockedBuffer == nullptr) {
2493         ALOGE("Surface::unlockAndPost failed, no locked buffer");
2494         return INVALID_OPERATION;
2495     }
2496 
2497     int fd = -1;
2498     status_t err = mLockedBuffer->unlockAsync(&fd);
2499     ALOGE_IF(err, "failed unlocking buffer (%p)", mLockedBuffer->handle);
2500 
2501     err = queueBuffer(mLockedBuffer.get(), fd);
2502     ALOGE_IF(err, "queueBuffer (handle=%p) failed (%s)",
2503             mLockedBuffer->handle, strerror(-err));
2504 
2505     mPostedBuffer = mLockedBuffer;
2506     mLockedBuffer = nullptr;
2507     return err;
2508 }
2509 
waitForNextFrame(uint64_t lastFrame,nsecs_t timeout)2510 bool Surface::waitForNextFrame(uint64_t lastFrame, nsecs_t timeout) {
2511     Mutex::Autolock lock(mMutex);
2512     if (mNextFrameNumber > lastFrame) {
2513       return true;
2514     }
2515     return mQueueBufferCondition.waitRelative(mMutex, timeout) == OK;
2516 }
2517 
getUniqueId(uint64_t * outId) const2518 status_t Surface::getUniqueId(uint64_t* outId) const {
2519     Mutex::Autolock lock(mMutex);
2520     return mGraphicBufferProducer->getUniqueId(outId);
2521 }
2522 
getConsumerUsage(uint64_t * outUsage) const2523 int Surface::getConsumerUsage(uint64_t* outUsage) const {
2524     Mutex::Autolock lock(mMutex);
2525     return mGraphicBufferProducer->getConsumerUsage(outUsage);
2526 }
2527 
getAndFlushRemovedBuffers(std::vector<sp<GraphicBuffer>> * out)2528 status_t Surface::getAndFlushRemovedBuffers(std::vector<sp<GraphicBuffer>>* out) {
2529     if (out == nullptr) {
2530         ALOGE("%s: out must not be null!", __FUNCTION__);
2531         return BAD_VALUE;
2532     }
2533 
2534     Mutex::Autolock lock(mMutex);
2535     *out = mRemovedBuffers;
2536     mRemovedBuffers.clear();
2537     return OK;
2538 }
2539 
attachAndQueueBufferWithDataspace(Surface * surface,sp<GraphicBuffer> buffer,Dataspace dataspace)2540 status_t Surface::attachAndQueueBufferWithDataspace(Surface* surface, sp<GraphicBuffer> buffer,
2541                                                     Dataspace dataspace) {
2542     if (buffer == nullptr) {
2543         return BAD_VALUE;
2544     }
2545     int err = static_cast<ANativeWindow*>(surface)->perform(surface, NATIVE_WINDOW_API_CONNECT,
2546                                                             NATIVE_WINDOW_API_CPU);
2547     if (err != OK) {
2548         return err;
2549     }
2550     ui::Dataspace tmpDataspace = surface->getBuffersDataSpace();
2551     err = surface->setBuffersDataSpace(dataspace);
2552     if (err != OK) {
2553         return err;
2554     }
2555     err = surface->attachBuffer(buffer->getNativeBuffer());
2556     if (err != OK) {
2557         return err;
2558     }
2559     err = static_cast<ANativeWindow*>(surface)->queueBuffer(surface, buffer->getNativeBuffer(), -1);
2560     if (err != OK) {
2561         return err;
2562     }
2563     err = surface->setBuffersDataSpace(tmpDataspace);
2564     if (err != OK) {
2565         return err;
2566     }
2567     err = surface->disconnect(NATIVE_WINDOW_API_CPU);
2568     return err;
2569 }
2570 
setAutoPrerotation(bool autoPrerotation)2571 int Surface::setAutoPrerotation(bool autoPrerotation) {
2572     ATRACE_CALL();
2573     ALOGV("Surface::setAutoPrerotation (%d)", autoPrerotation);
2574     Mutex::Autolock lock(mMutex);
2575 
2576     if (mAutoPrerotation == autoPrerotation) {
2577         return OK;
2578     }
2579 
2580     status_t err = mGraphicBufferProducer->setAutoPrerotation(autoPrerotation);
2581     if (err == NO_ERROR) {
2582         mAutoPrerotation = autoPrerotation;
2583     }
2584     ALOGE_IF(err, "IGraphicBufferProducer::setAutoPrerotation(%d) returned %s", autoPrerotation,
2585              strerror(-err));
2586     return err;
2587 }
2588 
onBuffersDiscarded(const std::vector<int32_t> & slots)2589 void Surface::ProducerListenerProxy::onBuffersDiscarded(const std::vector<int32_t>& slots) {
2590     ATRACE_CALL();
2591     sp<Surface> parent = mParent.promote();
2592     if (parent == nullptr) {
2593         return;
2594     }
2595 
2596     std::vector<sp<GraphicBuffer>> discardedBufs;
2597     status_t res = parent->getAndFlushBuffersFromSlots(slots, &discardedBufs);
2598     if (res != OK) {
2599         ALOGE("%s: Failed to get buffers from slots: %s(%d)", __FUNCTION__,
2600                 strerror(-res), res);
2601         return;
2602     }
2603 
2604     mSurfaceListener->onBuffersDiscarded(discardedBufs);
2605 }
2606 
setFrameRate(float frameRate,int8_t compatibility,int8_t changeFrameRateStrategy)2607 status_t Surface::setFrameRate(float frameRate, int8_t compatibility,
2608                                int8_t changeFrameRateStrategy) {
2609     ATRACE_CALL();
2610     ALOGV("Surface::setFrameRate");
2611 
2612     if (!ValidateFrameRate(frameRate, compatibility, changeFrameRateStrategy,
2613                            "Surface::setFrameRate")) {
2614         return BAD_VALUE;
2615     }
2616 
2617     return composerService()->setFrameRate(mGraphicBufferProducer, frameRate, compatibility,
2618                                            changeFrameRateStrategy);
2619 }
2620 
setFrameTimelineInfo(const FrameTimelineInfo & frameTimelineInfo)2621 status_t Surface::setFrameTimelineInfo(const FrameTimelineInfo& frameTimelineInfo) {
2622     return composerService()->setFrameTimelineInfo(mGraphicBufferProducer, frameTimelineInfo);
2623 }
2624 
2625 }; // namespace android
2626