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Dan Stoza289ade12014-02-28 11:17:17 -08001/*
2 * Copyright 2014 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
Mark Salyzyn8f515ce2014-06-09 14:32:04 -070017#include <inttypes.h>
18
Dan Stoza3e96f192014-03-03 10:16:19 -080019#define LOG_TAG "BufferQueueConsumer"
20#define ATRACE_TAG ATRACE_TAG_GRAPHICS
21//#define LOG_NDEBUG 0
22
Dan Stoza289ade12014-02-28 11:17:17 -080023#include <gui/BufferItem.h>
24#include <gui/BufferQueueConsumer.h>
25#include <gui/BufferQueueCore.h>
26#include <gui/IConsumerListener.h>
Dan Stozad1c10362014-03-28 15:19:08 -070027#include <gui/IProducerListener.h>
Dan Stoza289ade12014-02-28 11:17:17 -080028
29namespace android {
30
31BufferQueueConsumer::BufferQueueConsumer(const sp<BufferQueueCore>& core) :
32 mCore(core),
33 mSlots(core->mSlots),
34 mConsumerName() {}
35
36BufferQueueConsumer::~BufferQueueConsumer() {}
37
38status_t BufferQueueConsumer::acquireBuffer(BufferItem* outBuffer,
39 nsecs_t expectedPresent) {
40 ATRACE_CALL();
41 Mutex::Autolock lock(mCore->mMutex);
42
43 // Check that the consumer doesn't currently have the maximum number of
44 // buffers acquired. We allow the max buffer count to be exceeded by one
45 // buffer so that the consumer can successfully set up the newly acquired
46 // buffer before releasing the old one.
47 int numAcquiredBuffers = 0;
Dan Stoza3e96f192014-03-03 10:16:19 -080048 for (int s = 0; s < BufferQueueDefs::NUM_BUFFER_SLOTS; ++s) {
Dan Stoza289ade12014-02-28 11:17:17 -080049 if (mSlots[s].mBufferState == BufferSlot::ACQUIRED) {
50 ++numAcquiredBuffers;
51 }
52 }
53 if (numAcquiredBuffers >= mCore->mMaxAcquiredBufferCount + 1) {
54 BQ_LOGE("acquireBuffer: max acquired buffer count reached: %d (max %d)",
55 numAcquiredBuffers, mCore->mMaxAcquiredBufferCount);
56 return INVALID_OPERATION;
57 }
58
59 // Check if the queue is empty.
60 // In asynchronous mode the list is guaranteed to be one buffer deep,
61 // while in synchronous mode we use the oldest buffer.
62 if (mCore->mQueue.empty()) {
63 return NO_BUFFER_AVAILABLE;
64 }
65
66 BufferQueueCore::Fifo::iterator front(mCore->mQueue.begin());
67
68 // If expectedPresent is specified, we may not want to return a buffer yet.
69 // If it's specified and there's more than one buffer queued, we may want
70 // to drop a buffer.
71 if (expectedPresent != 0) {
72 const int MAX_REASONABLE_NSEC = 1000000000ULL; // 1 second
73
74 // The 'expectedPresent' argument indicates when the buffer is expected
75 // to be presented on-screen. If the buffer's desired present time is
76 // earlier (less) than expectedPresent -- meaning it will be displayed
77 // on time or possibly late if we show it as soon as possible -- we
78 // acquire and return it. If we don't want to display it until after the
79 // expectedPresent time, we return PRESENT_LATER without acquiring it.
80 //
81 // To be safe, we don't defer acquisition if expectedPresent is more
82 // than one second in the future beyond the desired present time
83 // (i.e., we'd be holding the buffer for a long time).
84 //
85 // NOTE: Code assumes monotonic time values from the system clock
86 // are positive.
87
88 // Start by checking to see if we can drop frames. We skip this check if
89 // the timestamps are being auto-generated by Surface. If the app isn't
90 // generating timestamps explicitly, it probably doesn't want frames to
91 // be discarded based on them.
92 while (mCore->mQueue.size() > 1 && !mCore->mQueue[0].mIsAutoTimestamp) {
93 // If entry[1] is timely, drop entry[0] (and repeat). We apply an
94 // additional criterion here: we only drop the earlier buffer if our
95 // desiredPresent falls within +/- 1 second of the expected present.
96 // Otherwise, bogus desiredPresent times (e.g., 0 or a small
97 // relative timestamp), which normally mean "ignore the timestamp
98 // and acquire immediately", would cause us to drop frames.
99 //
100 // We may want to add an additional criterion: don't drop the
101 // earlier buffer if entry[1]'s fence hasn't signaled yet.
102 const BufferItem& bufferItem(mCore->mQueue[1]);
103 nsecs_t desiredPresent = bufferItem.mTimestamp;
104 if (desiredPresent < expectedPresent - MAX_REASONABLE_NSEC ||
105 desiredPresent > expectedPresent) {
106 // This buffer is set to display in the near future, or
107 // desiredPresent is garbage. Either way we don't want to drop
108 // the previous buffer just to get this on the screen sooner.
Mark Salyzyn8f515ce2014-06-09 14:32:04 -0700109 BQ_LOGV("acquireBuffer: nodrop desire=%" PRId64 " expect=%"
110 PRId64 " (%" PRId64 ") now=%" PRId64,
111 desiredPresent, expectedPresent,
Dan Stoza289ade12014-02-28 11:17:17 -0800112 desiredPresent - expectedPresent,
113 systemTime(CLOCK_MONOTONIC));
114 break;
115 }
116
Mark Salyzyn8f515ce2014-06-09 14:32:04 -0700117 BQ_LOGV("acquireBuffer: drop desire=%" PRId64 " expect=%" PRId64
118 " size=%zu",
Dan Stoza289ade12014-02-28 11:17:17 -0800119 desiredPresent, expectedPresent, mCore->mQueue.size());
120 if (mCore->stillTracking(front)) {
121 // Front buffer is still in mSlots, so mark the slot as free
122 mSlots[front->mSlot].mBufferState = BufferSlot::FREE;
123 }
124 mCore->mQueue.erase(front);
125 front = mCore->mQueue.begin();
126 }
127
128 // See if the front buffer is due
129 nsecs_t desiredPresent = front->mTimestamp;
130 if (desiredPresent > expectedPresent &&
131 desiredPresent < expectedPresent + MAX_REASONABLE_NSEC) {
Mark Salyzyn8f515ce2014-06-09 14:32:04 -0700132 BQ_LOGV("acquireBuffer: defer desire=%" PRId64 " expect=%" PRId64
133 " (%" PRId64 ") now=%" PRId64,
134 desiredPresent, expectedPresent,
Dan Stoza289ade12014-02-28 11:17:17 -0800135 desiredPresent - expectedPresent,
136 systemTime(CLOCK_MONOTONIC));
137 return PRESENT_LATER;
138 }
139
Mark Salyzyn8f515ce2014-06-09 14:32:04 -0700140 BQ_LOGV("acquireBuffer: accept desire=%" PRId64 " expect=%" PRId64 " "
141 "(%" PRId64 ") now=%" PRId64, desiredPresent, expectedPresent,
Dan Stoza289ade12014-02-28 11:17:17 -0800142 desiredPresent - expectedPresent,
143 systemTime(CLOCK_MONOTONIC));
144 }
145
146 int slot = front->mSlot;
147 *outBuffer = *front;
148 ATRACE_BUFFER_INDEX(slot);
149
Mark Salyzyn8f515ce2014-06-09 14:32:04 -0700150 BQ_LOGV("acquireBuffer: acquiring { slot=%d/%" PRIu64 " buffer=%p }",
Dan Stoza289ade12014-02-28 11:17:17 -0800151 slot, front->mFrameNumber, front->mGraphicBuffer->handle);
152 // If the front buffer is still being tracked, update its slot state
153 if (mCore->stillTracking(front)) {
154 mSlots[slot].mAcquireCalled = true;
155 mSlots[slot].mNeedsCleanupOnRelease = false;
156 mSlots[slot].mBufferState = BufferSlot::ACQUIRED;
157 mSlots[slot].mFence = Fence::NO_FENCE;
158 }
159
160 // If the buffer has previously been acquired by the consumer, set
161 // mGraphicBuffer to NULL to avoid unnecessarily remapping this buffer
162 // on the consumer side
163 if (outBuffer->mAcquireCalled) {
164 outBuffer->mGraphicBuffer = NULL;
165 }
166
167 mCore->mQueue.erase(front);
Dan Stozaae3c3682014-04-18 15:43:35 -0700168
169 // We might have freed a slot while dropping old buffers, or the producer
170 // may be blocked waiting for the number of buffers in the queue to
171 // decrease.
Dan Stoza289ade12014-02-28 11:17:17 -0800172 mCore->mDequeueCondition.broadcast();
173
174 ATRACE_INT(mCore->mConsumerName.string(), mCore->mQueue.size());
175
176 return NO_ERROR;
177}
178
Dan Stoza9f3053d2014-03-06 15:14:33 -0800179status_t BufferQueueConsumer::detachBuffer(int slot) {
180 ATRACE_CALL();
181 ATRACE_BUFFER_INDEX(slot);
182 BQ_LOGV("detachBuffer(C): slot %d", slot);
183 Mutex::Autolock lock(mCore->mMutex);
184
185 if (mCore->mIsAbandoned) {
186 BQ_LOGE("detachBuffer(C): BufferQueue has been abandoned");
187 return NO_INIT;
188 }
189
190 if (slot < 0 || slot >= BufferQueueDefs::NUM_BUFFER_SLOTS) {
191 BQ_LOGE("detachBuffer(C): slot index %d out of range [0, %d)",
192 slot, BufferQueueDefs::NUM_BUFFER_SLOTS);
193 return BAD_VALUE;
194 } else if (mSlots[slot].mBufferState != BufferSlot::ACQUIRED) {
195 BQ_LOGE("detachBuffer(C): slot %d is not owned by the consumer "
196 "(state = %d)", slot, mSlots[slot].mBufferState);
197 return BAD_VALUE;
198 }
199
200 mCore->freeBufferLocked(slot);
201 mCore->mDequeueCondition.broadcast();
202
203 return NO_ERROR;
204}
205
206status_t BufferQueueConsumer::attachBuffer(int* outSlot,
207 const sp<android::GraphicBuffer>& buffer) {
208 ATRACE_CALL();
209
210 if (outSlot == NULL) {
211 BQ_LOGE("attachBuffer(P): outSlot must not be NULL");
212 return BAD_VALUE;
213 } else if (buffer == NULL) {
214 BQ_LOGE("attachBuffer(P): cannot attach NULL buffer");
215 return BAD_VALUE;
216 }
217
218 Mutex::Autolock lock(mCore->mMutex);
219
220 // Make sure we don't have too many acquired buffers and find a free slot
221 // to put the buffer into (the oldest if there are multiple).
222 int numAcquiredBuffers = 0;
223 int found = BufferQueueCore::INVALID_BUFFER_SLOT;
224 for (int s = 0; s < BufferQueueDefs::NUM_BUFFER_SLOTS; ++s) {
225 if (mSlots[s].mBufferState == BufferSlot::ACQUIRED) {
226 ++numAcquiredBuffers;
227 } else if (mSlots[s].mBufferState == BufferSlot::FREE) {
228 if (found == BufferQueueCore::INVALID_BUFFER_SLOT ||
229 mSlots[s].mFrameNumber < mSlots[found].mFrameNumber) {
230 found = s;
231 }
232 }
233 }
234
235 if (numAcquiredBuffers >= mCore->mMaxAcquiredBufferCount + 1) {
236 BQ_LOGE("attachBuffer(P): max acquired buffer count reached: %d "
237 "(max %d)", numAcquiredBuffers,
238 mCore->mMaxAcquiredBufferCount);
239 return INVALID_OPERATION;
240 }
241 if (found == BufferQueueCore::INVALID_BUFFER_SLOT) {
242 BQ_LOGE("attachBuffer(P): could not find free buffer slot");
243 return NO_MEMORY;
244 }
245
246 *outSlot = found;
247 ATRACE_BUFFER_INDEX(*outSlot);
248 BQ_LOGV("attachBuffer(C): returning slot %d", *outSlot);
249
Dan Stoza20c56722015-03-16 12:58:45 -0700250 // If these are modified, they also need to be modified in
251 // CpuConsumer::attachAndReleaseBuffer
Dan Stoza9f3053d2014-03-06 15:14:33 -0800252 mSlots[*outSlot].mGraphicBuffer = buffer;
Dan Stoza20c56722015-03-16 12:58:45 -0700253 mSlots[*outSlot].mFence = Fence::NO_FENCE;
254 mSlots[*outSlot].mFrameNumber = 0;
255
256 // Changes to these do not need to be propagated to CpuConsumer
Dan Stoza9f3053d2014-03-06 15:14:33 -0800257 mSlots[*outSlot].mBufferState = BufferSlot::ACQUIRED;
258 mSlots[*outSlot].mAttachedByConsumer = true;
Dan Stoza9f3053d2014-03-06 15:14:33 -0800259 mSlots[*outSlot].mNeedsCleanupOnRelease = false;
Dan Stoza9f3053d2014-03-06 15:14:33 -0800260
Dan Stoza99b18b42014-03-28 15:34:33 -0700261 // mAcquireCalled tells BufferQueue that it doesn't need to send a valid
262 // GraphicBuffer pointer on the next acquireBuffer call, which decreases
263 // Binder traffic by not un/flattening the GraphicBuffer. However, it
264 // requires that the consumer maintain a cached copy of the slot <--> buffer
265 // mappings, which is why the consumer doesn't need the valid pointer on
266 // acquire.
267 //
268 // The StreamSplitter is one of the primary users of the attach/detach
269 // logic, and while it is running, all buffers it acquires are immediately
270 // detached, and all buffers it eventually releases are ones that were
271 // attached (as opposed to having been obtained from acquireBuffer), so it
272 // doesn't make sense to maintain the slot/buffer mappings, which would
273 // become invalid for every buffer during detach/attach. By setting this to
274 // false, the valid GraphicBuffer pointer will always be sent with acquire
275 // for attached buffers.
276 mSlots[*outSlot].mAcquireCalled = false;
277
Dan Stoza9f3053d2014-03-06 15:14:33 -0800278 return NO_ERROR;
279}
280
Dan Stoza289ade12014-02-28 11:17:17 -0800281status_t BufferQueueConsumer::releaseBuffer(int slot, uint64_t frameNumber,
282 const sp<Fence>& releaseFence, EGLDisplay eglDisplay,
283 EGLSyncKHR eglFence) {
284 ATRACE_CALL();
285 ATRACE_BUFFER_INDEX(slot);
286
Dan Stoza9f3053d2014-03-06 15:14:33 -0800287 if (slot < 0 || slot >= BufferQueueDefs::NUM_BUFFER_SLOTS ||
288 releaseFence == NULL) {
Dan Stoza289ade12014-02-28 11:17:17 -0800289 return BAD_VALUE;
290 }
291
Dan Stozad1c10362014-03-28 15:19:08 -0700292 sp<IProducerListener> listener;
293 { // Autolock scope
294 Mutex::Autolock lock(mCore->mMutex);
Dan Stoza289ade12014-02-28 11:17:17 -0800295
Dan Stozad1c10362014-03-28 15:19:08 -0700296 // If the frame number has changed because the buffer has been reallocated,
297 // we can ignore this releaseBuffer for the old buffer
298 if (frameNumber != mSlots[slot].mFrameNumber) {
299 return STALE_BUFFER_SLOT;
300 }
Dan Stoza289ade12014-02-28 11:17:17 -0800301
Dan Stozad1c10362014-03-28 15:19:08 -0700302 // Make sure this buffer hasn't been queued while acquired by the consumer
303 BufferQueueCore::Fifo::iterator current(mCore->mQueue.begin());
304 while (current != mCore->mQueue.end()) {
305 if (current->mSlot == slot) {
306 BQ_LOGE("releaseBuffer: buffer slot %d pending release is "
307 "currently queued", slot);
308 return BAD_VALUE;
309 }
310 ++current;
311 }
312
313 if (mSlots[slot].mBufferState == BufferSlot::ACQUIRED) {
314 mSlots[slot].mEglDisplay = eglDisplay;
315 mSlots[slot].mEglFence = eglFence;
316 mSlots[slot].mFence = releaseFence;
317 mSlots[slot].mBufferState = BufferSlot::FREE;
318 listener = mCore->mConnectedProducerListener;
319 BQ_LOGV("releaseBuffer: releasing slot %d", slot);
320 } else if (mSlots[slot].mNeedsCleanupOnRelease) {
321 BQ_LOGV("releaseBuffer: releasing a stale buffer slot %d "
322 "(state = %d)", slot, mSlots[slot].mBufferState);
323 mSlots[slot].mNeedsCleanupOnRelease = false;
324 return STALE_BUFFER_SLOT;
325 } else {
326 BQ_LOGV("releaseBuffer: attempted to release buffer slot %d "
327 "but its state was %d", slot, mSlots[slot].mBufferState);
Dan Stoza9f3053d2014-03-06 15:14:33 -0800328 return BAD_VALUE;
Dan Stoza289ade12014-02-28 11:17:17 -0800329 }
Dan Stoza289ade12014-02-28 11:17:17 -0800330
Dan Stozad1c10362014-03-28 15:19:08 -0700331 mCore->mDequeueCondition.broadcast();
332 } // Autolock scope
Dan Stoza289ade12014-02-28 11:17:17 -0800333
Dan Stozad1c10362014-03-28 15:19:08 -0700334 // Call back without lock held
335 if (listener != NULL) {
336 listener->onBufferReleased();
337 }
Dan Stoza289ade12014-02-28 11:17:17 -0800338
339 return NO_ERROR;
340}
341
342status_t BufferQueueConsumer::connect(
343 const sp<IConsumerListener>& consumerListener, bool controlledByApp) {
344 ATRACE_CALL();
345
346 if (consumerListener == NULL) {
347 BQ_LOGE("connect(C): consumerListener may not be NULL");
348 return BAD_VALUE;
349 }
350
351 BQ_LOGV("connect(C): controlledByApp=%s",
352 controlledByApp ? "true" : "false");
353
354 Mutex::Autolock lock(mCore->mMutex);
355
356 if (mCore->mIsAbandoned) {
357 BQ_LOGE("connect(C): BufferQueue has been abandoned");
358 return NO_INIT;
359 }
360
361 mCore->mConsumerListener = consumerListener;
362 mCore->mConsumerControlledByApp = controlledByApp;
363
364 return NO_ERROR;
365}
366
367status_t BufferQueueConsumer::disconnect() {
368 ATRACE_CALL();
369
370 BQ_LOGV("disconnect(C)");
371
372 Mutex::Autolock lock(mCore->mMutex);
373
374 if (mCore->mConsumerListener == NULL) {
375 BQ_LOGE("disconnect(C): no consumer is connected");
Dan Stoza9f3053d2014-03-06 15:14:33 -0800376 return BAD_VALUE;
Dan Stoza289ade12014-02-28 11:17:17 -0800377 }
378
379 mCore->mIsAbandoned = true;
380 mCore->mConsumerListener = NULL;
381 mCore->mQueue.clear();
382 mCore->freeAllBuffersLocked();
383 mCore->mDequeueCondition.broadcast();
384 return NO_ERROR;
385}
386
Dan Stozafebd4f42014-04-09 16:14:51 -0700387status_t BufferQueueConsumer::getReleasedBuffers(uint64_t *outSlotMask) {
Dan Stoza289ade12014-02-28 11:17:17 -0800388 ATRACE_CALL();
389
390 if (outSlotMask == NULL) {
391 BQ_LOGE("getReleasedBuffers: outSlotMask may not be NULL");
392 return BAD_VALUE;
393 }
394
395 Mutex::Autolock lock(mCore->mMutex);
396
397 if (mCore->mIsAbandoned) {
398 BQ_LOGE("getReleasedBuffers: BufferQueue has been abandoned");
399 return NO_INIT;
400 }
401
Dan Stozafebd4f42014-04-09 16:14:51 -0700402 uint64_t mask = 0;
Dan Stoza3e96f192014-03-03 10:16:19 -0800403 for (int s = 0; s < BufferQueueDefs::NUM_BUFFER_SLOTS; ++s) {
Dan Stoza289ade12014-02-28 11:17:17 -0800404 if (!mSlots[s].mAcquireCalled) {
Dan Stozafebd4f42014-04-09 16:14:51 -0700405 mask |= (1ULL << s);
Dan Stoza289ade12014-02-28 11:17:17 -0800406 }
407 }
408
409 // Remove from the mask queued buffers for which acquire has been called,
410 // since the consumer will not receive their buffer addresses and so must
411 // retain their cached information
412 BufferQueueCore::Fifo::iterator current(mCore->mQueue.begin());
413 while (current != mCore->mQueue.end()) {
414 if (current->mAcquireCalled) {
Dan Stozafebd4f42014-04-09 16:14:51 -0700415 mask &= ~(1ULL << current->mSlot);
Dan Stoza289ade12014-02-28 11:17:17 -0800416 }
417 ++current;
418 }
419
Dan Stozafebd4f42014-04-09 16:14:51 -0700420 BQ_LOGV("getReleasedBuffers: returning mask %#" PRIx64, mask);
Dan Stoza289ade12014-02-28 11:17:17 -0800421 *outSlotMask = mask;
422 return NO_ERROR;
423}
424
425status_t BufferQueueConsumer::setDefaultBufferSize(uint32_t width,
426 uint32_t height) {
427 ATRACE_CALL();
428
429 if (width == 0 || height == 0) {
430 BQ_LOGV("setDefaultBufferSize: dimensions cannot be 0 (width=%u "
431 "height=%u)", width, height);
432 return BAD_VALUE;
433 }
434
435 BQ_LOGV("setDefaultBufferSize: width=%u height=%u", width, height);
436
437 Mutex::Autolock lock(mCore->mMutex);
438 mCore->mDefaultWidth = width;
439 mCore->mDefaultHeight = height;
440 return NO_ERROR;
441}
442
443status_t BufferQueueConsumer::setDefaultMaxBufferCount(int bufferCount) {
444 ATRACE_CALL();
445 Mutex::Autolock lock(mCore->mMutex);
446 return mCore->setDefaultMaxBufferCountLocked(bufferCount);
447}
448
449status_t BufferQueueConsumer::disableAsyncBuffer() {
450 ATRACE_CALL();
451
452 Mutex::Autolock lock(mCore->mMutex);
453
454 if (mCore->mConsumerListener != NULL) {
455 BQ_LOGE("disableAsyncBuffer: consumer already connected");
456 return INVALID_OPERATION;
457 }
458
459 BQ_LOGV("disableAsyncBuffer");
460 mCore->mUseAsyncBuffer = false;
461 return NO_ERROR;
462}
463
464status_t BufferQueueConsumer::setMaxAcquiredBufferCount(
465 int maxAcquiredBuffers) {
466 ATRACE_CALL();
467
468 if (maxAcquiredBuffers < 1 ||
469 maxAcquiredBuffers > BufferQueueCore::MAX_MAX_ACQUIRED_BUFFERS) {
470 BQ_LOGE("setMaxAcquiredBufferCount: invalid count %d",
471 maxAcquiredBuffers);
472 return BAD_VALUE;
473 }
474
475 Mutex::Autolock lock(mCore->mMutex);
476
477 if (mCore->mConnectedApi != BufferQueueCore::NO_CONNECTED_API) {
478 BQ_LOGE("setMaxAcquiredBufferCount: producer is already connected");
479 return INVALID_OPERATION;
480 }
481
482 BQ_LOGV("setMaxAcquiredBufferCount: %d", maxAcquiredBuffers);
483 mCore->mMaxAcquiredBufferCount = maxAcquiredBuffers;
484 return NO_ERROR;
485}
486
487void BufferQueueConsumer::setConsumerName(const String8& name) {
488 ATRACE_CALL();
489 BQ_LOGV("setConsumerName: '%s'", name.string());
490 Mutex::Autolock lock(mCore->mMutex);
491 mCore->mConsumerName = name;
492 mConsumerName = name;
493}
494
Dan Stozad723bd72014-11-18 10:24:03 -0800495status_t BufferQueueConsumer::setDefaultBufferFormat(PixelFormat defaultFormat) {
Dan Stoza289ade12014-02-28 11:17:17 -0800496 ATRACE_CALL();
497 BQ_LOGV("setDefaultBufferFormat: %u", defaultFormat);
498 Mutex::Autolock lock(mCore->mMutex);
499 mCore->mDefaultBufferFormat = defaultFormat;
500 return NO_ERROR;
501}
502
Eino-Ville Talvala5b75a512015-02-19 16:10:43 -0800503status_t BufferQueueConsumer::setDefaultBufferDataSpace(
504 android_dataspace defaultDataSpace) {
505 ATRACE_CALL();
506 BQ_LOGV("setDefaultBufferDataSpace: %u", defaultDataSpace);
507 Mutex::Autolock lock(mCore->mMutex);
508 mCore->mDefaultBufferDataSpace = defaultDataSpace;
509 return NO_ERROR;
510}
511
Dan Stoza289ade12014-02-28 11:17:17 -0800512status_t BufferQueueConsumer::setConsumerUsageBits(uint32_t usage) {
513 ATRACE_CALL();
514 BQ_LOGV("setConsumerUsageBits: %#x", usage);
515 Mutex::Autolock lock(mCore->mMutex);
516 mCore->mConsumerUsageBits = usage;
517 return NO_ERROR;
518}
519
520status_t BufferQueueConsumer::setTransformHint(uint32_t hint) {
521 ATRACE_CALL();
522 BQ_LOGV("setTransformHint: %#x", hint);
523 Mutex::Autolock lock(mCore->mMutex);
524 mCore->mTransformHint = hint;
525 return NO_ERROR;
526}
527
Jesse Hall399184a2014-03-03 15:42:54 -0800528sp<NativeHandle> BufferQueueConsumer::getSidebandStream() const {
529 return mCore->mSidebandStream;
530}
531
Dan Stoza289ade12014-02-28 11:17:17 -0800532void BufferQueueConsumer::dump(String8& result, const char* prefix) const {
533 mCore->dump(result, prefix);
534}
535
536} // namespace android