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Chia-I Wuf1405182017-11-27 11:29:21 -08001/*
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#ifndef ANDROID_BUFFERLAYERCONSUMER_H
18#define ANDROID_BUFFERLAYERCONSUMER_H
19
Chia-I Wuf1405182017-11-27 11:29:21 -080020#include <gui/BufferQueueDefs.h>
21#include <gui/ConsumerBase.h>
Courtney Goeltzenleuchter9bad0d72017-12-19 12:34:34 -070022#include <gui/HdrMetadata.h>
Chia-I Wuf1405182017-11-27 11:29:21 -080023
24#include <ui/FenceTime.h>
25#include <ui/GraphicBuffer.h>
Peiyong Lin34beb7a2018-03-28 11:57:12 -070026#include <ui/GraphicTypes.h>
Chia-I Wu67dcc692017-11-27 14:51:06 -080027#include <ui/Region.h>
Chia-I Wuf1405182017-11-27 11:29:21 -080028
29#include <utils/String8.h>
30#include <utils/Vector.h>
31#include <utils/threads.h>
32
33namespace android {
34// ----------------------------------------------------------------------------
35
Chia-I Wuda5c7302017-11-27 14:51:06 -080036class DispSync;
Chia-I Wuc75c44d2017-11-27 14:32:57 -080037class Layer;
Chia-I Wuf1405182017-11-27 11:29:21 -080038class String8;
39
Peiyong Lin833074a2018-08-28 11:53:54 -070040namespace renderengine {
Lloyd Pique144e1162017-12-20 16:44:52 -080041class RenderEngine;
42class Image;
Peiyong Lin833074a2018-08-28 11:53:54 -070043} // namespace renderengine
Lloyd Pique144e1162017-12-20 16:44:52 -080044
Chia-I Wuf1405182017-11-27 11:29:21 -080045/*
46 * BufferLayerConsumer consumes buffers of graphics data from a BufferQueue,
Chia-I Wu221b5922017-12-14 13:59:16 -080047 * and makes them available to RenderEngine as a texture.
Chia-I Wuf1405182017-11-27 11:29:21 -080048 *
Chia-I Wu221b5922017-12-14 13:59:16 -080049 * A typical usage pattern is to call updateTexImage() when a new frame is
50 * desired. If a new frame is available, the frame is latched. If not, the
51 * previous contents are retained. The texture is attached and updated after
52 * bindTextureImage() is called.
Chia-I Wuf1405182017-11-27 11:29:21 -080053 *
Chia-I Wu221b5922017-12-14 13:59:16 -080054 * All calls to updateTexImage must be made with RenderEngine being current.
55 * The texture is attached to the TEXTURE_EXTERNAL texture target.
Chia-I Wuf1405182017-11-27 11:29:21 -080056 */
57class BufferLayerConsumer : public ConsumerBase {
58public:
Chia-I Wuda5c7302017-11-27 14:51:06 -080059 static const status_t BUFFER_REJECTED = UNKNOWN_ERROR + 8;
60
61 class BufferRejecter {
62 friend class BufferLayerConsumer;
63 virtual bool reject(const sp<GraphicBuffer>& buf, const BufferItem& item) = 0;
64
65 protected:
66 virtual ~BufferRejecter() {}
67 };
68
Chia-I Wufd257f82017-11-27 14:51:06 -080069 struct ContentsChangedListener : public FrameAvailableListener {
70 virtual void onSidebandStreamChanged() = 0;
71 };
Chia-I Wuf1405182017-11-27 11:29:21 -080072
Chia-I Wu221b5922017-12-14 13:59:16 -080073 // BufferLayerConsumer constructs a new BufferLayerConsumer object. The
74 // tex parameter indicates the name of the RenderEngine texture to which
75 // images are to be streamed.
Peiyong Lin833074a2018-08-28 11:53:54 -070076 BufferLayerConsumer(const sp<IGraphicBufferConsumer>& bq, renderengine::RenderEngine& engine,
Lloyd Pique144e1162017-12-20 16:44:52 -080077 uint32_t tex, Layer* layer);
Chia-I Wuf1405182017-11-27 11:29:21 -080078
Chia-I Wufd257f82017-11-27 14:51:06 -080079 // Sets the contents changed listener. This should be used instead of
80 // ConsumerBase::setFrameAvailableListener().
81 void setContentsChangedListener(const wp<ContentsChangedListener>& listener);
82
Chia-I Wuda5c7302017-11-27 14:51:06 -080083 nsecs_t computeExpectedPresent(const DispSync& dispSync);
84
Chia-I Wuf1405182017-11-27 11:29:21 -080085 // updateTexImage acquires the most recently queued buffer, and sets the
86 // image contents of the target texture to it.
87 //
Chia-I Wu221b5922017-12-14 13:59:16 -080088 // This call may only be made while RenderEngine is current.
Chia-I Wuf1405182017-11-27 11:29:21 -080089 //
Chia-I Wu221b5922017-12-14 13:59:16 -080090 // This calls doFenceWait to ensure proper synchronization unless native
91 // fence is supported.
Chia-I Wuda5c7302017-11-27 14:51:06 -080092 //
Chia-I Wu221b5922017-12-14 13:59:16 -080093 // Unlike the GLConsumer version, this version takes a functor that may be
94 // used to reject the newly acquired buffer. It also does not bind the
95 // RenderEngine texture until bindTextureImage is called.
Chia-I Wuda5c7302017-11-27 14:51:06 -080096 status_t updateTexImage(BufferRejecter* rejecter, const DispSync& dispSync, bool* autoRefresh,
97 bool* queuedBuffer, uint64_t maxFrameNumber);
Chia-I Wuf1405182017-11-27 11:29:21 -080098
Chia-I Wu0cb75ac2017-11-27 15:56:04 -080099 // See BufferLayerConsumer::bindTextureImageLocked().
100 status_t bindTextureImage();
101
Chia-I Wuf1405182017-11-27 11:29:21 -0800102 // setReleaseFence stores a fence that will signal when the current buffer
103 // is no longer being read. This fence will be returned to the producer
104 // when the current buffer is released by updateTexImage(). Multiple
105 // fences can be set for a given buffer; they will be merged into a single
106 // union fence.
Chia-I Wuda5c7302017-11-27 14:51:06 -0800107 void setReleaseFence(const sp<Fence>& fence);
108
109 bool releasePendingBuffer();
Chia-I Wuf1405182017-11-27 11:29:21 -0800110
Chia-I Wu0cb75ac2017-11-27 15:56:04 -0800111 sp<Fence> getPrevFinalReleaseFence() const;
112
Chia-I Wu221b5922017-12-14 13:59:16 -0800113 // See GLConsumer::getTransformMatrix.
Chia-I Wuf1405182017-11-27 11:29:21 -0800114 void getTransformMatrix(float mtx[16]);
115
Chia-I Wuf1405182017-11-27 11:29:21 -0800116 // getTimestamp retrieves the timestamp associated with the texture image
117 // set by the most recent call to updateTexImage.
118 //
119 // The timestamp is in nanoseconds, and is monotonically increasing. Its
120 // other semantics (zero point, etc) are source-dependent and should be
121 // documented by the source.
122 int64_t getTimestamp();
123
124 // getDataSpace retrieves the DataSpace associated with the texture image
125 // set by the most recent call to updateTexImage.
Peiyong Lin34beb7a2018-03-28 11:57:12 -0700126 ui::Dataspace getCurrentDataSpace();
Chia-I Wuf1405182017-11-27 11:29:21 -0800127
Courtney Goeltzenleuchter9bad0d72017-12-19 12:34:34 -0700128 // getCurrentHdrMetadata retrieves the HDR metadata associated with the
129 // texture image set by the most recent call to updateTexImage.
130 const HdrMetadata& getCurrentHdrMetadata() const;
131
Chia-I Wuf1405182017-11-27 11:29:21 -0800132 // getFrameNumber retrieves the frame number associated with the texture
133 // image set by the most recent call to updateTexImage.
134 //
135 // The frame number is an incrementing counter set to 0 at the creation of
136 // the BufferQueue associated with this consumer.
137 uint64_t getFrameNumber();
138
Chia-I Wu67dcc692017-11-27 14:51:06 -0800139 bool getTransformToDisplayInverse() const;
140
141 // must be called from SF main thread
142 const Region& getSurfaceDamage() const;
143
Chia-I Wu5c6e4632018-01-11 08:54:38 -0800144 // getCurrentApi retrieves the API which queues the current buffer.
145 int getCurrentApi() const;
146
Chia-I Wu221b5922017-12-14 13:59:16 -0800147 // See GLConsumer::setDefaultBufferSize.
Chia-I Wuf1405182017-11-27 11:29:21 -0800148 status_t setDefaultBufferSize(uint32_t width, uint32_t height);
149
150 // setFilteringEnabled sets whether the transform matrix should be computed
151 // for use with bilinear filtering.
152 void setFilteringEnabled(bool enabled);
153
154 // getCurrentBuffer returns the buffer associated with the current image.
155 // When outSlot is not nullptr, the current buffer slot index is also
156 // returned.
157 sp<GraphicBuffer> getCurrentBuffer(int* outSlot = nullptr) const;
158
Chia-I Wuf1405182017-11-27 11:29:21 -0800159 // getCurrentCrop returns the cropping rectangle of the current buffer.
160 Rect getCurrentCrop() const;
161
162 // getCurrentTransform returns the transform of the current buffer.
163 uint32_t getCurrentTransform() const;
164
165 // getCurrentScalingMode returns the scaling mode of the current buffer.
166 uint32_t getCurrentScalingMode() const;
167
168 // getCurrentFence returns the fence indicating when the current buffer is
169 // ready to be read from.
170 sp<Fence> getCurrentFence() const;
171
172 // getCurrentFence returns the FenceTime indicating when the current
173 // buffer is ready to be read from.
174 std::shared_ptr<FenceTime> getCurrentFenceTime() const;
175
176 // setConsumerUsageBits overrides the ConsumerBase method to OR
177 // DEFAULT_USAGE_FLAGS to usage.
178 status_t setConsumerUsageBits(uint64_t usage);
179
Chia-I Wuf1405182017-11-27 11:29:21 -0800180protected:
181 // abandonLocked overrides the ConsumerBase method to clear
182 // mCurrentTextureImage in addition to the ConsumerBase behavior.
183 virtual void abandonLocked();
184
185 // dumpLocked overrides the ConsumerBase method to dump BufferLayerConsumer-
186 // specific info in addition to the ConsumerBase behavior.
187 virtual void dumpLocked(String8& result, const char* prefix) const;
188
189 // acquireBufferLocked overrides the ConsumerBase method to update the
Chia-I Wu6748db42017-12-01 10:53:53 -0800190 // mImages array in addition to the ConsumerBase behavior.
Chia-I Wuf1405182017-11-27 11:29:21 -0800191 virtual status_t acquireBufferLocked(BufferItem* item, nsecs_t presentWhen,
192 uint64_t maxFrameNumber = 0) override;
193
Chia-I Wu6748db42017-12-01 10:53:53 -0800194 bool canUseImageCrop(const Rect& crop) const;
195
Chia-I Wuf1405182017-11-27 11:29:21 -0800196 struct PendingRelease {
Chia-I Wu6aff69b2017-11-27 14:08:48 -0800197 PendingRelease() : isPending(false), currentTexture(-1), graphicBuffer() {}
Chia-I Wuf1405182017-11-27 11:29:21 -0800198
199 bool isPending;
200 int currentTexture;
201 sp<GraphicBuffer> graphicBuffer;
Chia-I Wuf1405182017-11-27 11:29:21 -0800202 };
203
204 // This releases the buffer in the slot referenced by mCurrentTexture,
205 // then updates state to refer to the BufferItem, which must be a
206 // newly-acquired buffer. If pendingRelease is not null, the parameters
207 // which would have been passed to releaseBufferLocked upon the successful
208 // completion of the method will instead be returned to the caller, so that
209 // it may call releaseBufferLocked itself later.
210 status_t updateAndReleaseLocked(const BufferItem& item,
211 PendingRelease* pendingRelease = nullptr);
212
Chia-I Wu6748db42017-12-01 10:53:53 -0800213 // Binds mTexName and the current buffer to TEXTURE_EXTERNAL target. Uses
Chia-I Wuf1405182017-11-27 11:29:21 -0800214 // mCurrentTexture if it's set, mCurrentTextureImage if not. If the
Chia-I Wu3498e3c2017-12-01 10:19:38 -0800215 // bind succeeds, this calls doFenceWait.
Chia-I Wuf1405182017-11-27 11:29:21 -0800216 status_t bindTextureImageLocked();
217
Chia-I Wuf1405182017-11-27 11:29:21 -0800218private:
Peiyong Lin833074a2018-08-28 11:53:54 -0700219 // Image is a utility class for tracking and creating renderengine::Images. There
Chia-I Wuf1405182017-11-27 11:29:21 -0800220 // is primarily just one image per slot, but there is also special cases:
Chia-I Wuf1405182017-11-27 11:29:21 -0800221 // - After freeBuffer, we must still keep the current image/buffer
Peiyong Lin833074a2018-08-28 11:53:54 -0700222 // Reference counting renderengine::Images lets us handle all these cases easily while
223 // also only creating new renderengine::Images from buffers when required.
Chia-I Wu6748db42017-12-01 10:53:53 -0800224 class Image : public LightRefBase<Image> {
Chia-I Wuf1405182017-11-27 11:29:21 -0800225 public:
Peiyong Lin833074a2018-08-28 11:53:54 -0700226 Image(sp<GraphicBuffer> graphicBuffer, renderengine::RenderEngine& engine);
Chia-I Wuf1405182017-11-27 11:29:21 -0800227
Chia-I Wu6748db42017-12-01 10:53:53 -0800228 Image(const Image& rhs) = delete;
229 Image& operator=(const Image& rhs) = delete;
Chia-I Wuf1405182017-11-27 11:29:21 -0800230
Peiyong Lin833074a2018-08-28 11:53:54 -0700231 // createIfNeeded creates an renderengine::Image if we haven't created one yet.
Krzysztof Kosiński7108c312018-06-27 19:12:54 -0700232 status_t createIfNeeded();
Chia-I Wuf1405182017-11-27 11:29:21 -0800233
234 const sp<GraphicBuffer>& graphicBuffer() { return mGraphicBuffer; }
235 const native_handle* graphicBufferHandle() {
Peiyong Lin566a3b42018-01-09 18:22:43 -0800236 return mGraphicBuffer == nullptr ? nullptr : mGraphicBuffer->handle;
Chia-I Wuf1405182017-11-27 11:29:21 -0800237 }
238
Peiyong Lin833074a2018-08-28 11:53:54 -0700239 const renderengine::Image& image() const { return *mImage; }
Chia-I Wu6748db42017-12-01 10:53:53 -0800240
Chia-I Wuf1405182017-11-27 11:29:21 -0800241 private:
242 // Only allow instantiation using ref counting.
Chia-I Wu6748db42017-12-01 10:53:53 -0800243 friend class LightRefBase<Image>;
Lloyd Pique144e1162017-12-20 16:44:52 -0800244 virtual ~Image();
Chia-I Wuf1405182017-11-27 11:29:21 -0800245
246 // mGraphicBuffer is the buffer that was used to create this image.
247 sp<GraphicBuffer> mGraphicBuffer;
248
Chia-I Wu6748db42017-12-01 10:53:53 -0800249 // mImage is the image created from mGraphicBuffer.
Peiyong Lin833074a2018-08-28 11:53:54 -0700250 std::unique_ptr<renderengine::Image> mImage;
Chia-I Wu6748db42017-12-01 10:53:53 -0800251 bool mCreated;
252 int32_t mCropWidth;
253 int32_t mCropHeight;
Chia-I Wuf1405182017-11-27 11:29:21 -0800254 };
255
256 // freeBufferLocked frees up the given buffer slot. If the slot has been
Chia-I Wu221b5922017-12-14 13:59:16 -0800257 // initialized this will release the reference to the GraphicBuffer in
Peiyong Lin833074a2018-08-28 11:53:54 -0700258 // that slot and destroy the renderengine::Image in that slot. Otherwise it has no
Chia-I Wu221b5922017-12-14 13:59:16 -0800259 // effect.
Chia-I Wuf1405182017-11-27 11:29:21 -0800260 //
261 // This method must be called with mMutex locked.
262 virtual void freeBufferLocked(int slotIndex);
263
Chia-I Wuc75c44d2017-11-27 14:32:57 -0800264 // IConsumerListener interface
265 void onDisconnect() override;
Chia-I Wufd257f82017-11-27 14:51:06 -0800266 void onSidebandStreamChanged() override;
Chia-I Wuc75c44d2017-11-27 14:32:57 -0800267 void addAndGetFrameTimestamps(const NewFrameEventsEntry* newTimestamps,
268 FrameEventHistoryDelta* outDelta) override;
269
Chia-I Wuf1405182017-11-27 11:29:21 -0800270 // computeCurrentTransformMatrixLocked computes the transform matrix for the
271 // current texture. It uses mCurrentTransform and the current GraphicBuffer
272 // to compute this matrix and stores it in mCurrentTransformMatrix.
Peiyong Lin566a3b42018-01-09 18:22:43 -0800273 // mCurrentTextureImage must not be nullptr.
Chia-I Wuf1405182017-11-27 11:29:21 -0800274 void computeCurrentTransformMatrixLocked();
275
Chia-I Wu3498e3c2017-12-01 10:19:38 -0800276 // doFenceWaitLocked inserts a wait command into the RenderEngine command
277 // stream to ensure that it is safe for future RenderEngine commands to
Chia-I Wuf1405182017-11-27 11:29:21 -0800278 // access the current texture buffer.
Chia-I Wu3498e3c2017-12-01 10:19:38 -0800279 status_t doFenceWaitLocked() const;
Chia-I Wuf1405182017-11-27 11:29:21 -0800280
281 // syncForReleaseLocked performs the synchronization needed to release the
Chia-I Wu3498e3c2017-12-01 10:19:38 -0800282 // current slot from RenderEngine. If needed it will set the current
283 // slot's fence to guard against a producer accessing the buffer before
284 // the outstanding accesses have completed.
285 status_t syncForReleaseLocked();
Chia-I Wuf1405182017-11-27 11:29:21 -0800286
Chia-I Wuf1405182017-11-27 11:29:21 -0800287 // The default consumer usage flags that BufferLayerConsumer always sets on its
288 // BufferQueue instance; these will be OR:d with any additional flags passed
289 // from the BufferLayerConsumer user. In particular, BufferLayerConsumer will always
290 // consume buffers as hardware textures.
291 static const uint64_t DEFAULT_USAGE_FLAGS = GraphicBuffer::USAGE_HW_TEXTURE;
292
Chia-I Wu6748db42017-12-01 10:53:53 -0800293 // mCurrentTextureImage is the Image/buffer of the current texture. It's
Chia-I Wuf1405182017-11-27 11:29:21 -0800294 // possible that this buffer is not associated with any buffer slot, so we
295 // must track it separately in order to support the getCurrentBuffer method.
Chia-I Wu6748db42017-12-01 10:53:53 -0800296 sp<Image> mCurrentTextureImage;
Chia-I Wuf1405182017-11-27 11:29:21 -0800297
298 // mCurrentCrop is the crop rectangle that applies to the current texture.
299 // It gets set each time updateTexImage is called.
300 Rect mCurrentCrop;
301
302 // mCurrentTransform is the transform identifier for the current texture. It
303 // gets set each time updateTexImage is called.
304 uint32_t mCurrentTransform;
305
306 // mCurrentScalingMode is the scaling mode for the current texture. It gets
307 // set each time updateTexImage is called.
308 uint32_t mCurrentScalingMode;
309
310 // mCurrentFence is the fence received from BufferQueue in updateTexImage.
311 sp<Fence> mCurrentFence;
312
313 // The FenceTime wrapper around mCurrentFence.
314 std::shared_ptr<FenceTime> mCurrentFenceTime{FenceTime::NO_FENCE};
315
316 // mCurrentTransformMatrix is the transform matrix for the current texture.
317 // It gets computed by computeTransformMatrix each time updateTexImage is
318 // called.
319 float mCurrentTransformMatrix[16];
320
321 // mCurrentTimestamp is the timestamp for the current texture. It
322 // gets set each time updateTexImage is called.
323 int64_t mCurrentTimestamp;
324
325 // mCurrentDataSpace is the dataspace for the current texture. It
326 // gets set each time updateTexImage is called.
Peiyong Lin34beb7a2018-03-28 11:57:12 -0700327 ui::Dataspace mCurrentDataSpace;
Chia-I Wuf1405182017-11-27 11:29:21 -0800328
Courtney Goeltzenleuchter9bad0d72017-12-19 12:34:34 -0700329 // mCurrentHdrMetadata is the HDR metadata for the current texture. It
330 // gets set each time updateTexImage is called.
331 HdrMetadata mCurrentHdrMetadata;
332
Chia-I Wuf1405182017-11-27 11:29:21 -0800333 // mCurrentFrameNumber is the frame counter for the current texture.
334 // It gets set each time updateTexImage is called.
335 uint64_t mCurrentFrameNumber;
336
Chia-I Wu67dcc692017-11-27 14:51:06 -0800337 // Indicates this buffer must be transformed by the inverse transform of the screen
338 // it is displayed onto. This is applied after BufferLayerConsumer::mCurrentTransform.
339 // This must be set/read from SurfaceFlinger's main thread.
340 bool mCurrentTransformToDisplayInverse;
341
342 // The portion of this surface that has changed since the previous frame
343 Region mCurrentSurfaceDamage;
344
Chia-I Wu5c6e4632018-01-11 08:54:38 -0800345 int mCurrentApi;
346
Chia-I Wuf1405182017-11-27 11:29:21 -0800347 uint32_t mDefaultWidth, mDefaultHeight;
348
349 // mFilteringEnabled indicates whether the transform matrix is computed for
350 // use with bilinear filtering. It defaults to true and is changed by
351 // setFilteringEnabled().
352 bool mFilteringEnabled;
353
Peiyong Lin833074a2018-08-28 11:53:54 -0700354 renderengine::RenderEngine& mRE;
Chia-I Wu9f2db772017-11-30 21:06:50 -0800355
Chia-I Wu221b5922017-12-14 13:59:16 -0800356 // mTexName is the name of the RenderEngine texture to which streamed
357 // images will be bound when bindTexImage is called. It is set at
358 // construction time.
Chia-I Wuc91077c2017-11-27 13:32:04 -0800359 const uint32_t mTexName;
Chia-I Wuf1405182017-11-27 11:29:21 -0800360
Chia-I Wuc75c44d2017-11-27 14:32:57 -0800361 // The layer for this BufferLayerConsumer
362 const wp<Layer> mLayer;
363
Chia-I Wufd257f82017-11-27 14:51:06 -0800364 wp<ContentsChangedListener> mContentsChangedListener;
365
Chia-I Wu6748db42017-12-01 10:53:53 -0800366 // mImages stores the buffers that have been allocated by the BufferQueue
Chia-I Wuf1405182017-11-27 11:29:21 -0800367 // for each buffer slot. It is initialized to null pointers, and gets
368 // filled in with the result of BufferQueue::acquire when the
369 // client dequeues a buffer from a
370 // slot that has not yet been used. The buffer allocated to a slot will also
371 // be replaced if the requested buffer usage or geometry differs from that
372 // of the buffer allocated to a slot.
Chia-I Wu6748db42017-12-01 10:53:53 -0800373 sp<Image> mImages[BufferQueueDefs::NUM_BUFFER_SLOTS];
Chia-I Wuf1405182017-11-27 11:29:21 -0800374
375 // mCurrentTexture is the buffer slot index of the buffer that is currently
Chia-I Wu221b5922017-12-14 13:59:16 -0800376 // bound to the RenderEngine texture. It is initialized to INVALID_BUFFER_SLOT,
Chia-I Wuf1405182017-11-27 11:29:21 -0800377 // indicating that no buffer slot is currently bound to the texture. Note,
378 // however, that a value of INVALID_BUFFER_SLOT does not necessarily mean
379 // that no buffer is bound to the texture. A call to setBufferCount will
380 // reset mCurrentTexture to INVALID_BUFFER_SLOT.
381 int mCurrentTexture;
Chia-I Wuda5c7302017-11-27 14:51:06 -0800382
383 // A release that is pending on the receipt of a new release fence from
384 // presentDisplay
385 PendingRelease mPendingRelease;
Chia-I Wuf1405182017-11-27 11:29:21 -0800386};
387
388// ----------------------------------------------------------------------------
389}; // namespace android
390
391#endif // ANDROID_BUFFERLAYERCONSUMER_H