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 #include <inttypes.h>
18
19 #define LOG_TAG "ConsumerBase"
20 #define ATRACE_TAG ATRACE_TAG_GRAPHICS
21 //#define LOG_NDEBUG 0
22
23 #define EGL_EGLEXT_PROTOTYPES
24
25 #include <EGL/egl.h>
26 #include <EGL/eglext.h>
27
28 #include <hardware/hardware.h>
29
30 #include <cutils/atomic.h>
31
32 #include <gui/BufferItem.h>
33 #include <gui/ISurfaceComposer.h>
34 #include <gui/SurfaceComposerClient.h>
35 #include <gui/ConsumerBase.h>
36
37 #include <private/gui/ComposerService.h>
38
39 #include <utils/Log.h>
40 #include <utils/String8.h>
41 #include <utils/Trace.h>
42
43 // Macros for including the ConsumerBase name in log messages
44 #define CB_LOGV(x, ...) ALOGV("[%s] " x, mName.string(), ##__VA_ARGS__)
45 //#define CB_LOGD(x, ...) ALOGD("[%s] " x, mName.string(), ##__VA_ARGS__)
46 //#define CB_LOGI(x, ...) ALOGI("[%s] " x, mName.string(), ##__VA_ARGS__)
47 //#define CB_LOGW(x, ...) ALOGW("[%s] " x, mName.string(), ##__VA_ARGS__)
48 #define CB_LOGE(x, ...) ALOGE("[%s] " x, mName.string(), ##__VA_ARGS__)
49
50 namespace android {
51
52 // Get an ID that's unique within this process.
createProcessUniqueId()53 static int32_t createProcessUniqueId() {
54 static volatile int32_t globalCounter = 0;
55 return android_atomic_inc(&globalCounter);
56 }
57
ConsumerBase(const sp<IGraphicBufferConsumer> & bufferQueue,bool controlledByApp)58 ConsumerBase::ConsumerBase(const sp<IGraphicBufferConsumer>& bufferQueue, bool controlledByApp) :
59 mAbandoned(false),
60 mConsumer(bufferQueue),
61 mPrevFinalReleaseFence(Fence::NO_FENCE) {
62 // Choose a name using the PID and a process-unique ID.
63 mName = String8::format("unnamed-%d-%d", getpid(), createProcessUniqueId());
64
65 // Note that we can't create an sp<...>(this) in a ctor that will not keep a
66 // reference once the ctor ends, as that would cause the refcount of 'this'
67 // dropping to 0 at the end of the ctor. Since all we need is a wp<...>
68 // that's what we create.
69 wp<ConsumerListener> listener = static_cast<ConsumerListener*>(this);
70 sp<IConsumerListener> proxy = new BufferQueue::ProxyConsumerListener(listener);
71
72 status_t err = mConsumer->consumerConnect(proxy, controlledByApp);
73 if (err != NO_ERROR) {
74 CB_LOGE("ConsumerBase: error connecting to BufferQueue: %s (%d)",
75 strerror(-err), err);
76 } else {
77 mConsumer->setConsumerName(mName);
78 }
79 }
80
~ConsumerBase()81 ConsumerBase::~ConsumerBase() {
82 CB_LOGV("~ConsumerBase");
83 Mutex::Autolock lock(mMutex);
84
85 // Verify that abandon() has been called before we get here. This should
86 // be done by ConsumerBase::onLastStrongRef(), but it's possible for a
87 // derived class to override that method and not call
88 // ConsumerBase::onLastStrongRef().
89 LOG_ALWAYS_FATAL_IF(!mAbandoned, "[%s] ~ConsumerBase was called, but the "
90 "consumer is not abandoned!", mName.string());
91 }
92
onLastStrongRef(const void * id)93 void ConsumerBase::onLastStrongRef(const void* id __attribute__((unused))) {
94 abandon();
95 }
96
freeBufferLocked(int slotIndex)97 void ConsumerBase::freeBufferLocked(int slotIndex) {
98 CB_LOGV("freeBufferLocked: slotIndex=%d", slotIndex);
99 mSlots[slotIndex].mGraphicBuffer = 0;
100 mSlots[slotIndex].mFence = Fence::NO_FENCE;
101 mSlots[slotIndex].mFrameNumber = 0;
102 }
103
onFrameAvailable(const BufferItem & item)104 void ConsumerBase::onFrameAvailable(const BufferItem& item) {
105 CB_LOGV("onFrameAvailable");
106
107 sp<FrameAvailableListener> listener;
108 { // scope for the lock
109 Mutex::Autolock lock(mFrameAvailableMutex);
110 listener = mFrameAvailableListener.promote();
111 }
112
113 if (listener != NULL) {
114 CB_LOGV("actually calling onFrameAvailable");
115 listener->onFrameAvailable(item);
116 }
117 }
118
onFrameReplaced(const BufferItem & item)119 void ConsumerBase::onFrameReplaced(const BufferItem &item) {
120 CB_LOGV("onFrameReplaced");
121
122 sp<FrameAvailableListener> listener;
123 {
124 Mutex::Autolock lock(mFrameAvailableMutex);
125 listener = mFrameAvailableListener.promote();
126 }
127
128 if (listener != NULL) {
129 CB_LOGV("actually calling onFrameReplaced");
130 listener->onFrameReplaced(item);
131 }
132 }
133
onBuffersReleased()134 void ConsumerBase::onBuffersReleased() {
135 Mutex::Autolock lock(mMutex);
136
137 CB_LOGV("onBuffersReleased");
138
139 if (mAbandoned) {
140 // Nothing to do if we're already abandoned.
141 return;
142 }
143
144 uint64_t mask = 0;
145 mConsumer->getReleasedBuffers(&mask);
146 for (int i = 0; i < BufferQueue::NUM_BUFFER_SLOTS; i++) {
147 if (mask & (1ULL << i)) {
148 freeBufferLocked(i);
149 }
150 }
151 }
152
onSidebandStreamChanged()153 void ConsumerBase::onSidebandStreamChanged() {
154 }
155
abandon()156 void ConsumerBase::abandon() {
157 CB_LOGV("abandon");
158 Mutex::Autolock lock(mMutex);
159
160 if (!mAbandoned) {
161 abandonLocked();
162 mAbandoned = true;
163 }
164 }
165
abandonLocked()166 void ConsumerBase::abandonLocked() {
167 CB_LOGV("abandonLocked");
168 if (mAbandoned) {
169 CB_LOGE("abandonLocked: ConsumerBase is abandoned!");
170 return;
171 }
172 for (int i =0; i < BufferQueue::NUM_BUFFER_SLOTS; i++) {
173 freeBufferLocked(i);
174 }
175 // disconnect from the BufferQueue
176 mConsumer->consumerDisconnect();
177 mConsumer.clear();
178 }
179
isAbandoned()180 bool ConsumerBase::isAbandoned() {
181 Mutex::Autolock _l(mMutex);
182 return mAbandoned;
183 }
184
setFrameAvailableListener(const wp<FrameAvailableListener> & listener)185 void ConsumerBase::setFrameAvailableListener(
186 const wp<FrameAvailableListener>& listener) {
187 CB_LOGV("setFrameAvailableListener");
188 Mutex::Autolock lock(mFrameAvailableMutex);
189 mFrameAvailableListener = listener;
190 }
191
detachBuffer(int slot)192 status_t ConsumerBase::detachBuffer(int slot) {
193 CB_LOGV("detachBuffer");
194 Mutex::Autolock lock(mMutex);
195
196 if (mAbandoned) {
197 CB_LOGE("detachBuffer: ConsumerBase is abandoned!");
198 return NO_INIT;
199 }
200
201 status_t result = mConsumer->detachBuffer(slot);
202 if (result != NO_ERROR) {
203 CB_LOGE("Failed to detach buffer: %d", result);
204 return result;
205 }
206
207 freeBufferLocked(slot);
208
209 return result;
210 }
211
setDefaultBufferSize(uint32_t width,uint32_t height)212 status_t ConsumerBase::setDefaultBufferSize(uint32_t width, uint32_t height) {
213 Mutex::Autolock _l(mMutex);
214 if (mAbandoned) {
215 CB_LOGE("setDefaultBufferSize: ConsumerBase is abandoned!");
216 return NO_INIT;
217 }
218 return mConsumer->setDefaultBufferSize(width, height);
219 }
220
setDefaultBufferFormat(PixelFormat defaultFormat)221 status_t ConsumerBase::setDefaultBufferFormat(PixelFormat defaultFormat) {
222 Mutex::Autolock _l(mMutex);
223 if (mAbandoned) {
224 CB_LOGE("setDefaultBufferFormat: ConsumerBase is abandoned!");
225 return NO_INIT;
226 }
227 return mConsumer->setDefaultBufferFormat(defaultFormat);
228 }
229
setDefaultBufferDataSpace(android_dataspace defaultDataSpace)230 status_t ConsumerBase::setDefaultBufferDataSpace(
231 android_dataspace defaultDataSpace) {
232 Mutex::Autolock _l(mMutex);
233 if (mAbandoned) {
234 CB_LOGE("setDefaultBufferDataSpace: ConsumerBase is abandoned!");
235 return NO_INIT;
236 }
237 return mConsumer->setDefaultBufferDataSpace(defaultDataSpace);
238 }
239
getOccupancyHistory(bool forceFlush,std::vector<OccupancyTracker::Segment> * outHistory)240 status_t ConsumerBase::getOccupancyHistory(bool forceFlush,
241 std::vector<OccupancyTracker::Segment>* outHistory) {
242 Mutex::Autolock _l(mMutex);
243 if (mAbandoned) {
244 CB_LOGE("getOccupancyHistory: ConsumerBase is abandoned!");
245 return NO_INIT;
246 }
247 return mConsumer->getOccupancyHistory(forceFlush, outHistory);
248 }
249
discardFreeBuffers()250 status_t ConsumerBase::discardFreeBuffers() {
251 Mutex::Autolock _l(mMutex);
252 if (mAbandoned) {
253 CB_LOGE("discardFreeBuffers: ConsumerBase is abandoned!");
254 return NO_INIT;
255 }
256 status_t err = mConsumer->discardFreeBuffers();
257 if (err != OK) {
258 return err;
259 }
260 uint64_t mask;
261 mConsumer->getReleasedBuffers(&mask);
262 for (int i = 0; i < BufferQueue::NUM_BUFFER_SLOTS; i++) {
263 if (mask & (1ULL << i)) {
264 freeBufferLocked(i);
265 }
266 }
267 return OK;
268 }
269
dumpState(String8 & result) const270 void ConsumerBase::dumpState(String8& result) const {
271 dumpState(result, "");
272 }
273
dumpState(String8 & result,const char * prefix) const274 void ConsumerBase::dumpState(String8& result, const char* prefix) const {
275 Mutex::Autolock _l(mMutex);
276 dumpLocked(result, prefix);
277 }
278
dumpLocked(String8 & result,const char * prefix) const279 void ConsumerBase::dumpLocked(String8& result, const char* prefix) const {
280 result.appendFormat("%smAbandoned=%d\n", prefix, int(mAbandoned));
281
282 if (!mAbandoned) {
283 String8 consumerState;
284 mConsumer->dumpState(String8(prefix), &consumerState);
285 result.append(consumerState);
286 }
287 }
288
acquireBufferLocked(BufferItem * item,nsecs_t presentWhen,uint64_t maxFrameNumber)289 status_t ConsumerBase::acquireBufferLocked(BufferItem *item,
290 nsecs_t presentWhen, uint64_t maxFrameNumber) {
291 if (mAbandoned) {
292 CB_LOGE("acquireBufferLocked: ConsumerBase is abandoned!");
293 return NO_INIT;
294 }
295
296 status_t err = mConsumer->acquireBuffer(item, presentWhen, maxFrameNumber);
297 if (err != NO_ERROR) {
298 return err;
299 }
300
301 if (item->mGraphicBuffer != NULL) {
302 if (mSlots[item->mSlot].mGraphicBuffer != NULL) {
303 freeBufferLocked(item->mSlot);
304 }
305 mSlots[item->mSlot].mGraphicBuffer = item->mGraphicBuffer;
306 }
307
308 mSlots[item->mSlot].mFrameNumber = item->mFrameNumber;
309 mSlots[item->mSlot].mFence = item->mFence;
310
311 CB_LOGV("acquireBufferLocked: -> slot=%d/%" PRIu64,
312 item->mSlot, item->mFrameNumber);
313
314 return OK;
315 }
316
addReleaseFence(int slot,const sp<GraphicBuffer> graphicBuffer,const sp<Fence> & fence)317 status_t ConsumerBase::addReleaseFence(int slot,
318 const sp<GraphicBuffer> graphicBuffer, const sp<Fence>& fence) {
319 Mutex::Autolock lock(mMutex);
320 return addReleaseFenceLocked(slot, graphicBuffer, fence);
321 }
322
addReleaseFenceLocked(int slot,const sp<GraphicBuffer> graphicBuffer,const sp<Fence> & fence)323 status_t ConsumerBase::addReleaseFenceLocked(int slot,
324 const sp<GraphicBuffer> graphicBuffer, const sp<Fence>& fence) {
325 CB_LOGV("addReleaseFenceLocked: slot=%d", slot);
326
327 // If consumer no longer tracks this graphicBuffer, we can safely
328 // drop this fence, as it will never be received by the producer.
329 if (!stillTracking(slot, graphicBuffer)) {
330 return OK;
331 }
332
333 if (!mSlots[slot].mFence.get()) {
334 mSlots[slot].mFence = fence;
335 return OK;
336 }
337
338 auto status = mSlots[slot].mFence->getStatus();
339
340 if (status == Fence::Status::Invalid) {
341 CB_LOGE("fence has invalid state");
342 return BAD_VALUE;
343 }
344
345 if (status == Fence::Status::Signaled) {
346 mSlots[slot].mFence = fence;
347 } else { // status == Fence::Status::Unsignaled
348 char fenceName[32] = {};
349 snprintf(fenceName, 32, "%.28s:%d", mName.string(), slot);
350 sp<Fence> mergedFence = Fence::merge(
351 fenceName, mSlots[slot].mFence, fence);
352 if (!mergedFence.get()) {
353 CB_LOGE("failed to merge release fences");
354 // synchronization is broken, the best we can do is hope fences
355 // signal in order so the new fence will act like a union
356 mSlots[slot].mFence = fence;
357 return BAD_VALUE;
358 }
359 mSlots[slot].mFence = mergedFence;
360 }
361
362 return OK;
363 }
364
releaseBufferLocked(int slot,const sp<GraphicBuffer> graphicBuffer,EGLDisplay display,EGLSyncKHR eglFence)365 status_t ConsumerBase::releaseBufferLocked(
366 int slot, const sp<GraphicBuffer> graphicBuffer,
367 EGLDisplay display, EGLSyncKHR eglFence) {
368 if (mAbandoned) {
369 CB_LOGE("releaseBufferLocked: ConsumerBase is abandoned!");
370 return NO_INIT;
371 }
372 // If consumer no longer tracks this graphicBuffer (we received a new
373 // buffer on the same slot), the buffer producer is definitely no longer
374 // tracking it.
375 if (!stillTracking(slot, graphicBuffer)) {
376 return OK;
377 }
378
379 CB_LOGV("releaseBufferLocked: slot=%d/%" PRIu64,
380 slot, mSlots[slot].mFrameNumber);
381 status_t err = mConsumer->releaseBuffer(slot, mSlots[slot].mFrameNumber,
382 display, eglFence, mSlots[slot].mFence);
383 if (err == IGraphicBufferConsumer::STALE_BUFFER_SLOT) {
384 freeBufferLocked(slot);
385 }
386
387 mPrevFinalReleaseFence = mSlots[slot].mFence;
388 mSlots[slot].mFence = Fence::NO_FENCE;
389
390 return err;
391 }
392
stillTracking(int slot,const sp<GraphicBuffer> graphicBuffer)393 bool ConsumerBase::stillTracking(int slot,
394 const sp<GraphicBuffer> graphicBuffer) {
395 if (slot < 0 || slot >= BufferQueue::NUM_BUFFER_SLOTS) {
396 return false;
397 }
398 return (mSlots[slot].mGraphicBuffer != NULL &&
399 mSlots[slot].mGraphicBuffer->handle == graphicBuffer->handle);
400 }
401
402 } // namespace android
403