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Jamie Gennis134f0422011-03-08 12:18:54 -08001/*
2 * Copyright (C) 2011 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
Dan Stozac6f30bd2015-06-08 09:32:50 -070017#include "DummyConsumer.h"
18
Jamie Gennis134f0422011-03-08 12:18:54 -080019#include <gtest/gtest.h>
Jamie Gennis7a4d0df2011-03-09 17:05:02 -080020
21#include <binder/IMemory.h>
Brian Anderson3da8d272016-07-28 16:20:47 -070022#include <binder/ProcessState.h>
23#include <gui/IDisplayEventConnection.h>
Mathias Agopian90ac7992012-02-25 18:48:35 -080024#include <gui/ISurfaceComposer.h>
25#include <gui/Surface.h>
26#include <gui/SurfaceComposerClient.h>
Eino-Ville Talvalaf7c60872013-07-30 14:05:02 -070027#include <gui/BufferItemConsumer.h>
Brian Anderson3da8d272016-07-28 16:20:47 -070028#include <private/gui/ComposerService.h>
Dan Stozac1879002014-05-22 15:59:05 -070029#include <ui/Rect.h>
Jamie Gennis134f0422011-03-08 12:18:54 -080030#include <utils/String8.h>
31
Brian Anderson3da8d272016-07-28 16:20:47 -070032#include <limits>
Kalle Raita643f0942016-12-07 09:20:14 -080033#include <thread>
34
Jamie Gennis134f0422011-03-08 12:18:54 -080035namespace android {
36
Kalle Raita643f0942016-12-07 09:20:14 -080037using namespace std::chrono_literals;
38
Brian Anderson3da8d272016-07-28 16:20:47 -070039class FakeSurfaceComposer;
40class FakeProducerFrameEventHistory;
41
42static constexpr uint64_t NO_FRAME_INDEX = std::numeric_limits<uint64_t>::max();
43
Jamie Gennis134f0422011-03-08 12:18:54 -080044class SurfaceTest : public ::testing::Test {
45protected:
Mathias Agopian7c1a4872013-03-20 15:56:04 -070046
47 SurfaceTest() {
48 ProcessState::self()->startThreadPool();
49 }
50
Jamie Gennis134f0422011-03-08 12:18:54 -080051 virtual void SetUp() {
Jamie Gennis7a4d0df2011-03-09 17:05:02 -080052 mComposerClient = new SurfaceComposerClient;
Jamie Gennis134f0422011-03-08 12:18:54 -080053 ASSERT_EQ(NO_ERROR, mComposerClient->initCheck());
54
Jamie Gennisfc850122011-04-25 16:40:05 -070055 mSurfaceControl = mComposerClient->createSurface(
Jeff Brown9d4e3d22012-08-24 20:00:51 -070056 String8("Test Surface"), 32, 32, PIXEL_FORMAT_RGBA_8888, 0);
Jamie Gennis134f0422011-03-08 12:18:54 -080057
58 ASSERT_TRUE(mSurfaceControl != NULL);
59 ASSERT_TRUE(mSurfaceControl->isValid());
60
Mathias Agopian698c0872011-06-28 19:09:31 -070061 SurfaceComposerClient::openGlobalTransaction();
Mathias Agopian9303eee2011-07-01 15:27:27 -070062 ASSERT_EQ(NO_ERROR, mSurfaceControl->setLayer(0x7fffffff));
Jamie Gennis134f0422011-03-08 12:18:54 -080063 ASSERT_EQ(NO_ERROR, mSurfaceControl->show());
Mathias Agopian698c0872011-06-28 19:09:31 -070064 SurfaceComposerClient::closeGlobalTransaction();
Jamie Gennis134f0422011-03-08 12:18:54 -080065
66 mSurface = mSurfaceControl->getSurface();
67 ASSERT_TRUE(mSurface != NULL);
68 }
69
70 virtual void TearDown() {
71 mComposerClient->dispose();
72 }
73
74 sp<Surface> mSurface;
75 sp<SurfaceComposerClient> mComposerClient;
76 sp<SurfaceControl> mSurfaceControl;
77};
78
79TEST_F(SurfaceTest, QueuesToWindowComposerIsTrueWhenVisible) {
80 sp<ANativeWindow> anw(mSurface);
81 int result = -123;
82 int err = anw->query(anw.get(), NATIVE_WINDOW_QUEUES_TO_WINDOW_COMPOSER,
83 &result);
84 EXPECT_EQ(NO_ERROR, err);
85 EXPECT_EQ(1, result);
86}
87
88TEST_F(SurfaceTest, QueuesToWindowComposerIsTrueWhenPurgatorized) {
89 mSurfaceControl.clear();
Kalle Raita643f0942016-12-07 09:20:14 -080090 // Wait for the async clean-up to complete.
91 std::this_thread::sleep_for(50ms);
Jamie Gennis134f0422011-03-08 12:18:54 -080092
93 sp<ANativeWindow> anw(mSurface);
94 int result = -123;
95 int err = anw->query(anw.get(), NATIVE_WINDOW_QUEUES_TO_WINDOW_COMPOSER,
96 &result);
97 EXPECT_EQ(NO_ERROR, err);
98 EXPECT_EQ(1, result);
99}
100
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800101// This test probably doesn't belong here.
Jamie Gennisc901ca02011-10-11 16:02:31 -0700102TEST_F(SurfaceTest, ScreenshotsOfProtectedBuffersSucceed) {
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800103 sp<ANativeWindow> anw(mSurface);
104
105 // Verify the screenshot works with no protected buffers.
Dan Stoza5603a2f2014-04-07 13:41:37 -0700106 sp<IGraphicBufferProducer> producer;
107 sp<IGraphicBufferConsumer> consumer;
108 BufferQueue::createBufferQueue(&producer, &consumer);
109 sp<CpuConsumer> cpuConsumer = new CpuConsumer(consumer, 1);
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800110 sp<ISurfaceComposer> sf(ComposerService::getComposerService());
Brian Anderson3da8d272016-07-28 16:20:47 -0700111 sp<IBinder> display(sf->getBuiltInDisplay(
112 ISurfaceComposer::eDisplayIdMain));
Dan Stozac1879002014-05-22 15:59:05 -0700113 ASSERT_EQ(NO_ERROR, sf->captureScreen(display, producer, Rect(),
Dan Stoza8d759962014-02-19 18:35:30 -0800114 64, 64, 0, 0x7fffffff, false));
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800115
Pablo Ceballos583b1b32015-09-03 18:23:52 -0700116 ASSERT_EQ(NO_ERROR, native_window_api_connect(anw.get(),
117 NATIVE_WINDOW_API_CPU));
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800118 // Set the PROTECTED usage bit and verify that the screenshot fails. Note
119 // that we need to dequeue a buffer in order for it to actually get
120 // allocated in SurfaceFlinger.
121 ASSERT_EQ(NO_ERROR, native_window_set_usage(anw.get(),
122 GRALLOC_USAGE_PROTECTED));
123 ASSERT_EQ(NO_ERROR, native_window_set_buffer_count(anw.get(), 3));
Iliyan Malchev697526b2011-05-01 11:33:26 -0700124 ANativeWindowBuffer* buf = 0;
Mathias Agopian9303eee2011-07-01 15:27:27 -0700125
Jamie Gennisd8e812c2012-06-13 16:32:25 -0700126 status_t err = native_window_dequeue_buffer_and_wait(anw.get(), &buf);
Mathias Agopian9303eee2011-07-01 15:27:27 -0700127 if (err) {
128 // we could fail if GRALLOC_USAGE_PROTECTED is not supported.
129 // that's okay as long as this is the reason for the failure.
130 // try again without the GRALLOC_USAGE_PROTECTED bit.
131 ASSERT_EQ(NO_ERROR, native_window_set_usage(anw.get(), 0));
Jamie Gennisd8e812c2012-06-13 16:32:25 -0700132 ASSERT_EQ(NO_ERROR, native_window_dequeue_buffer_and_wait(anw.get(),
133 &buf));
Mathias Agopian9303eee2011-07-01 15:27:27 -0700134 return;
135 }
Jamie Gennisd8e812c2012-06-13 16:32:25 -0700136 ASSERT_EQ(NO_ERROR, anw->cancelBuffer(anw.get(), buf, -1));
Mathias Agopian9303eee2011-07-01 15:27:27 -0700137
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800138 for (int i = 0; i < 4; i++) {
139 // Loop to make sure SurfaceFlinger has retired a protected buffer.
Jamie Gennisd8e812c2012-06-13 16:32:25 -0700140 ASSERT_EQ(NO_ERROR, native_window_dequeue_buffer_and_wait(anw.get(),
141 &buf));
142 ASSERT_EQ(NO_ERROR, anw->queueBuffer(anw.get(), buf, -1));
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800143 }
Dan Stozac1879002014-05-22 15:59:05 -0700144 ASSERT_EQ(NO_ERROR, sf->captureScreen(display, producer, Rect(),
Dan Stoza8d759962014-02-19 18:35:30 -0800145 64, 64, 0, 0x7fffffff, false));
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800146}
147
Jamie Gennis391bbe22011-03-14 15:00:06 -0700148TEST_F(SurfaceTest, ConcreteTypeIsSurface) {
149 sp<ANativeWindow> anw(mSurface);
150 int result = -123;
151 int err = anw->query(anw.get(), NATIVE_WINDOW_CONCRETE_TYPE, &result);
152 EXPECT_EQ(NO_ERROR, err);
153 EXPECT_EQ(NATIVE_WINDOW_SURFACE, result);
154}
155
Craig Donner6ebc46a2016-10-21 15:23:44 -0700156TEST_F(SurfaceTest, LayerCountIsOne) {
157 sp<ANativeWindow> anw(mSurface);
158 int result = -123;
159 int err = anw->query(anw.get(), NATIVE_WINDOW_LAYER_COUNT, &result);
160 EXPECT_EQ(NO_ERROR, err);
161 EXPECT_EQ(1, result);
162}
163
Eino-Ville Talvalaf7c60872013-07-30 14:05:02 -0700164TEST_F(SurfaceTest, QueryConsumerUsage) {
165 const int TEST_USAGE_FLAGS =
166 GRALLOC_USAGE_SW_READ_OFTEN | GRALLOC_USAGE_HW_RENDER;
Dan Stoza5603a2f2014-04-07 13:41:37 -0700167 sp<IGraphicBufferProducer> producer;
168 sp<IGraphicBufferConsumer> consumer;
169 BufferQueue::createBufferQueue(&producer, &consumer);
170 sp<BufferItemConsumer> c = new BufferItemConsumer(consumer,
Eino-Ville Talvalaf7c60872013-07-30 14:05:02 -0700171 TEST_USAGE_FLAGS);
Dan Stoza5603a2f2014-04-07 13:41:37 -0700172 sp<Surface> s = new Surface(producer);
Eino-Ville Talvalaf7c60872013-07-30 14:05:02 -0700173
174 sp<ANativeWindow> anw(s);
175
176 int flags = -1;
177 int err = anw->query(anw.get(), NATIVE_WINDOW_CONSUMER_USAGE_BITS, &flags);
178
179 ASSERT_EQ(NO_ERROR, err);
180 ASSERT_EQ(TEST_USAGE_FLAGS, flags);
181}
182
Eino-Ville Talvala5b75a512015-02-19 16:10:43 -0800183TEST_F(SurfaceTest, QueryDefaultBuffersDataSpace) {
184 const android_dataspace TEST_DATASPACE = HAL_DATASPACE_SRGB;
185 sp<IGraphicBufferProducer> producer;
186 sp<IGraphicBufferConsumer> consumer;
187 BufferQueue::createBufferQueue(&producer, &consumer);
188 sp<CpuConsumer> cpuConsumer = new CpuConsumer(consumer, 1);
189
190 cpuConsumer->setDefaultBufferDataSpace(TEST_DATASPACE);
191
192 sp<Surface> s = new Surface(producer);
193
194 sp<ANativeWindow> anw(s);
195
196 android_dataspace dataSpace;
197
198 int err = anw->query(anw.get(), NATIVE_WINDOW_DEFAULT_DATASPACE,
199 reinterpret_cast<int*>(&dataSpace));
200
201 ASSERT_EQ(NO_ERROR, err);
202 ASSERT_EQ(TEST_DATASPACE, dataSpace);
203}
204
Dan Stoza812ed062015-06-02 15:45:22 -0700205TEST_F(SurfaceTest, SettingGenerationNumber) {
206 sp<IGraphicBufferProducer> producer;
207 sp<IGraphicBufferConsumer> consumer;
208 BufferQueue::createBufferQueue(&producer, &consumer);
209 sp<CpuConsumer> cpuConsumer = new CpuConsumer(consumer, 1);
210 sp<Surface> surface = new Surface(producer);
211 sp<ANativeWindow> window(surface);
212
213 // Allocate a buffer with a generation number of 0
214 ANativeWindowBuffer* buffer;
215 int fenceFd;
Pablo Ceballos583b1b32015-09-03 18:23:52 -0700216 ASSERT_EQ(NO_ERROR, native_window_api_connect(window.get(),
217 NATIVE_WINDOW_API_CPU));
Dan Stoza812ed062015-06-02 15:45:22 -0700218 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fenceFd));
219 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffer, fenceFd));
220
221 // Detach the buffer and check its generation number
222 sp<GraphicBuffer> graphicBuffer;
223 sp<Fence> fence;
224 ASSERT_EQ(NO_ERROR, surface->detachNextBuffer(&graphicBuffer, &fence));
225 ASSERT_EQ(0U, graphicBuffer->getGenerationNumber());
226
227 ASSERT_EQ(NO_ERROR, surface->setGenerationNumber(1));
228 buffer = static_cast<ANativeWindowBuffer*>(graphicBuffer.get());
229
230 // This should change the generation number of the GraphicBuffer
231 ASSERT_EQ(NO_ERROR, surface->attachBuffer(buffer));
232
233 // Check that the new generation number sticks with the buffer
234 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffer, -1));
235 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fenceFd));
236 graphicBuffer = static_cast<GraphicBuffer*>(buffer);
237 ASSERT_EQ(1U, graphicBuffer->getGenerationNumber());
238}
239
Dan Stozac6f30bd2015-06-08 09:32:50 -0700240TEST_F(SurfaceTest, GetConsumerName) {
241 sp<IGraphicBufferProducer> producer;
242 sp<IGraphicBufferConsumer> consumer;
243 BufferQueue::createBufferQueue(&producer, &consumer);
244
245 sp<DummyConsumer> dummyConsumer(new DummyConsumer);
246 consumer->consumerConnect(dummyConsumer, false);
247 consumer->setConsumerName(String8("TestConsumer"));
248
249 sp<Surface> surface = new Surface(producer);
250 sp<ANativeWindow> window(surface);
251 native_window_api_connect(window.get(), NATIVE_WINDOW_API_CPU);
252
253 EXPECT_STREQ("TestConsumer", surface->getConsumerName().string());
254}
255
Pablo Ceballos789a0c82016-02-05 13:39:27 -0800256TEST_F(SurfaceTest, DynamicSetBufferCount) {
257 sp<IGraphicBufferProducer> producer;
258 sp<IGraphicBufferConsumer> consumer;
259 BufferQueue::createBufferQueue(&producer, &consumer);
260
261 sp<DummyConsumer> dummyConsumer(new DummyConsumer);
262 consumer->consumerConnect(dummyConsumer, false);
263 consumer->setConsumerName(String8("TestConsumer"));
264
265 sp<Surface> surface = new Surface(producer);
266 sp<ANativeWindow> window(surface);
267
268 ASSERT_EQ(NO_ERROR, native_window_api_connect(window.get(),
269 NATIVE_WINDOW_API_CPU));
270 native_window_set_buffer_count(window.get(), 4);
271
272 int fence;
273 ANativeWindowBuffer* buffer;
274 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fence));
275 native_window_set_buffer_count(window.get(), 3);
276 ASSERT_EQ(NO_ERROR, window->queueBuffer(window.get(), buffer, fence));
277 native_window_set_buffer_count(window.get(), 2);
278 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fence));
279 ASSERT_EQ(NO_ERROR, window->queueBuffer(window.get(), buffer, fence));
280}
281
Brian Anderson3da8d272016-07-28 16:20:47 -0700282
283class FakeConsumer : public BnConsumerListener {
284public:
285 void onFrameAvailable(const BufferItem& /*item*/) override {}
286 void onBuffersReleased() override {}
287 void onSidebandStreamChanged() override {}
288
289 void addAndGetFrameTimestamps(
290 const NewFrameEventsEntry* newTimestamps,
291 FrameEventHistoryDelta* outDelta) override {
292 if (newTimestamps) {
293 if (mGetFrameTimestampsEnabled) {
294 EXPECT_GT(mNewFrameEntryOverride.frameNumber, 0u) <<
295 "Test should set mNewFrameEntryOverride before queuing "
296 "a frame.";
297 EXPECT_EQ(newTimestamps->frameNumber,
298 mNewFrameEntryOverride.frameNumber) <<
299 "Test attempting to add NewFrameEntryOverride with "
300 "incorrect frame number.";
301 mFrameEventHistory.addQueue(mNewFrameEntryOverride);
302 mNewFrameEntryOverride.frameNumber = 0;
303 }
304 mAddFrameTimestampsCount++;
305 mLastAddedFrameNumber = newTimestamps->frameNumber;
306 }
307 if (outDelta) {
308 mFrameEventHistory.getAndResetDelta(outDelta);
309 mGetFrameTimestampsCount++;
310 }
311 mAddAndGetFrameTimestampsCallCount++;
312 }
313
314 bool mGetFrameTimestampsEnabled = false;
315
316 ConsumerFrameEventHistory mFrameEventHistory;
317 int mAddAndGetFrameTimestampsCallCount = 0;
318 int mAddFrameTimestampsCount = 0;
319 int mGetFrameTimestampsCount = 0;
320 uint64_t mLastAddedFrameNumber = NO_FRAME_INDEX;
321
322 NewFrameEventsEntry mNewFrameEntryOverride = { 0, 0, 0, nullptr };
323};
324
325
326class FakeSurfaceComposer : public ISurfaceComposer{
327public:
328 ~FakeSurfaceComposer() override {}
329
330 void setSupportedTimestamps(bool supportsPresent, bool supportsRetire) {
331 mSupportsPresent = supportsPresent;
332 mSupportsRetire = supportsRetire;
333 }
334
335 sp<ISurfaceComposerClient> createConnection() override { return nullptr; }
336 sp<IGraphicBufferAlloc> createGraphicBufferAlloc() override {
337 return nullptr;
338 }
339 sp<IDisplayEventConnection> createDisplayEventConnection() override {
340 return nullptr;
341 }
342 sp<IBinder> createDisplay(const String8& /*displayName*/,
343 bool /*secure*/) override { return nullptr; }
344 void destroyDisplay(const sp<IBinder>& /*display */) override {}
345 sp<IBinder> getBuiltInDisplay(int32_t /*id*/) override { return nullptr; }
346 void setTransactionState(const Vector<ComposerState>& /*state*/,
347 const Vector<DisplayState>& /*displays*/, uint32_t /*flags*/)
348 override {}
349 void bootFinished() override {}
350 bool authenticateSurfaceTexture(
351 const sp<IGraphicBufferProducer>& /*surface*/) const override {
352 return false;
353 }
354
355 status_t getSupportedFrameTimestamps(std::vector<FrameEvent>* outSupported)
356 const override {
357 *outSupported = {
358 FrameEvent::REQUESTED_PRESENT,
359 FrameEvent::ACQUIRE,
360 FrameEvent::FIRST_REFRESH_START,
361 FrameEvent::GL_COMPOSITION_DONE,
362 FrameEvent::RELEASE
363 };
364 if (mSupportsPresent) {
365 outSupported->push_back(
366 FrameEvent::DISPLAY_PRESENT);
367 }
368 if (mSupportsRetire) {
369 outSupported->push_back(
370 FrameEvent::DISPLAY_RETIRE);
371 }
372 return NO_ERROR;
373 }
374
375 void setPowerMode(const sp<IBinder>& /*display*/, int /*mode*/) override {}
376 status_t getDisplayConfigs(const sp<IBinder>& /*display*/,
377 Vector<DisplayInfo>* /*configs*/) override { return NO_ERROR; }
378 status_t getDisplayStats(const sp<IBinder>& /*display*/,
379 DisplayStatInfo* /*stats*/) override { return NO_ERROR; }
380 int getActiveConfig(const sp<IBinder>& /*display*/) override { return 0; }
381 status_t setActiveConfig(const sp<IBinder>& /*display*/, int /*id*/)
382 override {
383 return NO_ERROR;
384 }
385 status_t getDisplayColorModes(const sp<IBinder>& /*display*/,
386 Vector<android_color_mode_t>* /*outColorModes*/) override {
387 return NO_ERROR;
388 }
389 android_color_mode_t getActiveColorMode(const sp<IBinder>& /*display*/)
390 override {
391 return HAL_COLOR_MODE_NATIVE;
392 }
393 status_t setActiveColorMode(const sp<IBinder>& /*display*/,
394 android_color_mode_t /*colorMode*/) override { return NO_ERROR; }
395 status_t captureScreen(const sp<IBinder>& /*display*/,
396 const sp<IGraphicBufferProducer>& /*producer*/,
397 Rect /*sourceCrop*/, uint32_t /*reqWidth*/, uint32_t /*reqHeight*/,
398 uint32_t /*minLayerZ*/, uint32_t /*maxLayerZ*/,
399 bool /*useIdentityTransform*/,
400 Rotation /*rotation*/) override { return NO_ERROR; }
401 status_t clearAnimationFrameStats() override { return NO_ERROR; }
402 status_t getAnimationFrameStats(FrameStats* /*outStats*/) const override {
403 return NO_ERROR;
404 }
405 status_t getHdrCapabilities(const sp<IBinder>& /*display*/,
406 HdrCapabilities* /*outCapabilities*/) const override {
407 return NO_ERROR;
408 }
409 status_t enableVSyncInjections(bool /*enable*/) override {
410 return NO_ERROR;
411 }
412 status_t injectVSync(nsecs_t /*when*/) override { return NO_ERROR; }
413
414protected:
415 IBinder* onAsBinder() override { return nullptr; }
416
417private:
418 bool mSupportsPresent{true};
419 bool mSupportsRetire{true};
420};
421
422class FakeProducerFrameEventHistory : public ProducerFrameEventHistory {
423public:
424 FakeProducerFrameEventHistory(FenceToFenceTimeMap* fenceMap)
425 : mFenceMap(fenceMap) {}
426
427 ~FakeProducerFrameEventHistory() {}
428
429 void updateAcquireFence(uint64_t frameNumber,
430 std::shared_ptr<FenceTime>&& acquire) override {
431 // Verify the acquire fence being added isn't the one from the consumer.
432 EXPECT_NE(mConsumerAcquireFence, acquire);
433 // Override the fence, so we can verify this was called by the
434 // producer after the frame is queued.
435 ProducerFrameEventHistory::updateAcquireFence(frameNumber,
436 std::shared_ptr<FenceTime>(mAcquireFenceOverride));
437 }
438
439 void setAcquireFenceOverride(
440 const std::shared_ptr<FenceTime>& acquireFenceOverride,
441 const std::shared_ptr<FenceTime>& consumerAcquireFence) {
442 mAcquireFenceOverride = acquireFenceOverride;
443 mConsumerAcquireFence = consumerAcquireFence;
444 }
445
446protected:
447 std::shared_ptr<FenceTime> createFenceTime(const sp<Fence>& fence)
448 const override {
449 return mFenceMap->createFenceTimeForTest(fence);
450 }
451
452 FenceToFenceTimeMap* mFenceMap{nullptr};
453
454 std::shared_ptr<FenceTime> mAcquireFenceOverride{FenceTime::NO_FENCE};
455 std::shared_ptr<FenceTime> mConsumerAcquireFence{FenceTime::NO_FENCE};
456};
457
458
459class TestSurface : public Surface {
460public:
461 TestSurface(const sp<IGraphicBufferProducer>& bufferProducer,
462 FenceToFenceTimeMap* fenceMap)
463 : Surface(bufferProducer),
464 mFakeSurfaceComposer(new FakeSurfaceComposer) {
465 mFakeFrameEventHistory = new FakeProducerFrameEventHistory(fenceMap);
466 mFrameEventHistory.reset(mFakeFrameEventHistory);
467 }
468
469 ~TestSurface() override {}
470
471 sp<ISurfaceComposer> composerService() const override {
472 return mFakeSurfaceComposer;
473 }
474
475public:
476 sp<FakeSurfaceComposer> mFakeSurfaceComposer;
477
478 // mFrameEventHistory owns the instance of FakeProducerFrameEventHistory,
479 // but this raw pointer gives access to test functionality.
480 FakeProducerFrameEventHistory* mFakeFrameEventHistory;
481};
482
483
484class GetFrameTimestampsTest : public SurfaceTest {
485protected:
486 struct FenceAndFenceTime {
487 explicit FenceAndFenceTime(FenceToFenceTimeMap& fenceMap)
488 : mFence(new Fence),
489 mFenceTime(fenceMap.createFenceTimeForTest(mFence)) {}
490 sp<Fence> mFence { nullptr };
491 std::shared_ptr<FenceTime> mFenceTime { nullptr };
492 };
493
494 struct RefreshEvents {
495 RefreshEvents(FenceToFenceTimeMap& fenceMap, nsecs_t refreshStart)
496 : mFenceMap(fenceMap),
497 kStartTime(refreshStart + 1),
498 kGpuCompositionDoneTime(refreshStart + 2),
499 kPresentTime(refreshStart + 3) {}
500
501 void signalPostCompositeFences() {
502 mFenceMap.signalAllForTest(
503 mGpuCompositionDone.mFence, kGpuCompositionDoneTime);
504 mFenceMap.signalAllForTest(mPresent.mFence, kPresentTime);
505 }
506
507 FenceToFenceTimeMap& mFenceMap;
508
509 FenceAndFenceTime mGpuCompositionDone { mFenceMap };
510 FenceAndFenceTime mPresent { mFenceMap };
511
512 const nsecs_t kStartTime;
513 const nsecs_t kGpuCompositionDoneTime;
514 const nsecs_t kPresentTime;
515 };
516
517 struct FrameEvents {
518 FrameEvents(FenceToFenceTimeMap& fenceMap, nsecs_t frameStartTime)
519 : mFenceMap(fenceMap),
520 kPostedTime(frameStartTime + 100),
521 kRequestedPresentTime(frameStartTime + 200),
522 kProducerAcquireTime(frameStartTime + 300),
523 kConsumerAcquireTime(frameStartTime + 301),
524 kLatchTime(frameStartTime + 500),
525 kRetireTime(frameStartTime + 600),
526 kReleaseTime(frameStartTime + 700),
527 mRefreshes {
528 { mFenceMap, frameStartTime + 410 },
529 { mFenceMap, frameStartTime + 420 },
530 { mFenceMap, frameStartTime + 430 } } {}
531
532 void signalQueueFences() {
533 mFenceMap.signalAllForTest(
534 mAcquireConsumer.mFence, kConsumerAcquireTime);
535 mFenceMap.signalAllForTest(
536 mAcquireProducer.mFence, kProducerAcquireTime);
537 }
538
539 void signalRefreshFences() {
540 for (auto& re : mRefreshes) {
541 re.signalPostCompositeFences();
542 }
543 }
544
545 void signalReleaseFences() {
546 mFenceMap.signalAllForTest(mRetire.mFence, kRetireTime);
547 mFenceMap.signalAllForTest(mRelease.mFence, kReleaseTime);
548 }
549
550 FenceToFenceTimeMap& mFenceMap;
551
552 FenceAndFenceTime mAcquireConsumer { mFenceMap };
553 FenceAndFenceTime mAcquireProducer { mFenceMap };
554 FenceAndFenceTime mRetire { mFenceMap };
555 FenceAndFenceTime mRelease { mFenceMap };
556
557 const nsecs_t kPostedTime;
558 const nsecs_t kRequestedPresentTime;
559 const nsecs_t kProducerAcquireTime;
560 const nsecs_t kConsumerAcquireTime;
561 const nsecs_t kLatchTime;
562 const nsecs_t kRetireTime;
563 const nsecs_t kReleaseTime;
564
565 RefreshEvents mRefreshes[3];
566 };
567
568 GetFrameTimestampsTest() : SurfaceTest() {}
569
570 virtual void SetUp() {
571 SurfaceTest::SetUp();
572
573 BufferQueue::createBufferQueue(&mProducer, &mConsumer);
574 mFakeConsumer = new FakeConsumer;
575 mCfeh = &mFakeConsumer->mFrameEventHistory;
576 mConsumer->consumerConnect(mFakeConsumer, false);
577 mConsumer->setConsumerName(String8("TestConsumer"));
578 mSurface = new TestSurface(mProducer, &mFenceMap);
579 mWindow = mSurface;
580
581 ASSERT_EQ(NO_ERROR, native_window_api_connect(mWindow.get(),
582 NATIVE_WINDOW_API_CPU));
583 native_window_set_buffer_count(mWindow.get(), 4);
584 }
585
586 void enableFrameTimestamps() {
587 mFakeConsumer->mGetFrameTimestampsEnabled = true;
588 native_window_enable_frame_timestamps(mWindow.get(), 1);
589 mFrameTimestampsEnabled = true;
590 }
591
592 void resetTimestamps() {
593 outRequestedPresentTime = -1;
594 outAcquireTime = -1;
595 outRefreshStartTime = -1;
596 outGpuCompositionDoneTime = -1;
597 outDisplayPresentTime = -1;
598 outDisplayRetireTime = -1;
599 outReleaseTime = -1;
600 }
601
602 void dequeueAndQueue(uint64_t frameIndex) {
603 int fence = -1;
604 ANativeWindowBuffer* buffer = nullptr;
605 ASSERT_EQ(NO_ERROR,
606 mWindow->dequeueBuffer(mWindow.get(), &buffer, &fence));
607
608 int oldAddFrameTimestampsCount =
609 mFakeConsumer->mAddFrameTimestampsCount;
610
611 FrameEvents* frame = &mFrames[frameIndex];
612 uint64_t frameNumber = frameIndex + 1;
613
614 NewFrameEventsEntry fe;
615 fe.frameNumber = frameNumber;
616 fe.postedTime = frame->kPostedTime;
617 fe.requestedPresentTime = frame->kRequestedPresentTime;
618 fe.acquireFence = frame->mAcquireConsumer.mFenceTime;
619 mFakeConsumer->mNewFrameEntryOverride = fe;
620
621 mSurface->mFakeFrameEventHistory->setAcquireFenceOverride(
622 frame->mAcquireProducer.mFenceTime,
623 frame->mAcquireConsumer.mFenceTime);
624
625 ASSERT_EQ(NO_ERROR, mWindow->queueBuffer(mWindow.get(), buffer, fence));
626
627 EXPECT_EQ(frameNumber, mFakeConsumer->mLastAddedFrameNumber);
628
629 EXPECT_EQ(
630 oldAddFrameTimestampsCount + (mFrameTimestampsEnabled ? 1 : 0),
631 mFakeConsumer->mAddFrameTimestampsCount);
632 }
633
634 void addFrameEvents(
635 bool gpuComposited, uint64_t iOldFrame, int64_t iNewFrame) {
636 FrameEvents* oldFrame =
637 (iOldFrame == NO_FRAME_INDEX) ? nullptr : &mFrames[iOldFrame];
638 FrameEvents* newFrame = &mFrames[iNewFrame];
639
640 uint64_t nOldFrame = iOldFrame + 1;
641 uint64_t nNewFrame = iNewFrame + 1;
642
643 // Latch, Composite, Retire, and Release the frames in a plausible
644 // order. Note: The timestamps won't necessarily match the order, but
645 // that's okay for the purposes of this test.
646 std::shared_ptr<FenceTime> gpuDoneFenceTime = FenceTime::NO_FENCE;
647
648 mCfeh->addLatch(nNewFrame, newFrame->kLatchTime);
649
650 mCfeh->addPreComposition(nNewFrame, newFrame->mRefreshes[0].kStartTime);
651 gpuDoneFenceTime = gpuComposited ?
652 newFrame->mRefreshes[0].mGpuCompositionDone.mFenceTime :
653 FenceTime::NO_FENCE;
654 // HWC2 releases the previous buffer after a new latch just before
655 // calling postComposition.
656 if (oldFrame != nullptr) {
657 mCfeh->addRelease(nOldFrame,
658 std::shared_ptr<FenceTime>(oldFrame->mRelease.mFenceTime));
659 }
660 mCfeh->addPostComposition(nNewFrame, gpuDoneFenceTime,
661 newFrame->mRefreshes[0].mPresent.mFenceTime);
662
663 // Retire the previous buffer just after compositing the new buffer.
664 if (oldFrame != nullptr) {
665 mCfeh->addRetire(nOldFrame, oldFrame->mRetire.mFenceTime);
666 }
667
668 mCfeh->addPreComposition(nNewFrame, newFrame->mRefreshes[1].kStartTime);
669 gpuDoneFenceTime = gpuComposited ?
670 newFrame->mRefreshes[1].mGpuCompositionDone.mFenceTime :
671 FenceTime::NO_FENCE;
672 mCfeh->addPostComposition(nNewFrame, gpuDoneFenceTime,
673 newFrame->mRefreshes[1].mPresent.mFenceTime);
674 mCfeh->addPreComposition(nNewFrame, newFrame->mRefreshes[2].kStartTime);
675 gpuDoneFenceTime = gpuComposited ?
676 newFrame->mRefreshes[2].mGpuCompositionDone.mFenceTime :
677 FenceTime::NO_FENCE;
678 mCfeh->addPostComposition(nNewFrame, gpuDoneFenceTime,
679 newFrame->mRefreshes[2].mPresent.mFenceTime);
680 }
681
682 void QueryPresentRetireSupported(
683 bool displayPresentSupported, bool displayRetireSupported);
684 void PresentOrRetireUnsupportedNoSyncTest(
685 bool displayPresentSupported, bool displayRetireSupported);
686
687 sp<IGraphicBufferProducer> mProducer;
688 sp<IGraphicBufferConsumer> mConsumer;
689 sp<FakeConsumer> mFakeConsumer;
690 ConsumerFrameEventHistory* mCfeh;
691 sp<TestSurface> mSurface;
692 sp<ANativeWindow> mWindow;
693
694 FenceToFenceTimeMap mFenceMap;
695
696 bool mFrameTimestampsEnabled = false;
697
698 int64_t outRequestedPresentTime = -1;
699 int64_t outAcquireTime = -1;
700 int64_t outRefreshStartTime = -1;
701 int64_t outGpuCompositionDoneTime = -1;
702 int64_t outDisplayPresentTime = -1;
703 int64_t outDisplayRetireTime = -1;
704 int64_t outReleaseTime = -1;
705
706 FrameEvents mFrames[2] { { mFenceMap, 1000 }, { mFenceMap, 2000 } };
707};
708
709
710// This test verifies that the frame timestamps are not retrieved when not
711// explicitly enabled via native_window_enable_frame_timestamps.
712// We want to check this to make sure there's no overhead for users
713// that don't need the timestamp information.
714TEST_F(GetFrameTimestampsTest, DefaultDisabled) {
715 int fence;
716 ANativeWindowBuffer* buffer;
717
718 EXPECT_EQ(0, mFakeConsumer->mAddFrameTimestampsCount);
719 EXPECT_EQ(0, mFakeConsumer->mGetFrameTimestampsCount);
720
721 // Verify the producer doesn't get frame timestamps piggybacked on dequeue.
722 ASSERT_EQ(NO_ERROR, mWindow->dequeueBuffer(mWindow.get(), &buffer, &fence));
723 EXPECT_EQ(0, mFakeConsumer->mAddFrameTimestampsCount);
724 EXPECT_EQ(0, mFakeConsumer->mGetFrameTimestampsCount);
725
726 // Verify the producer doesn't get frame timestamps piggybacked on queue.
727 // It is okay that frame timestamps are added in the consumer since it is
728 // still needed for SurfaceFlinger dumps.
729 ASSERT_EQ(NO_ERROR, mWindow->queueBuffer(mWindow.get(), buffer, fence));
730 EXPECT_EQ(1, mFakeConsumer->mAddFrameTimestampsCount);
731 EXPECT_EQ(0, mFakeConsumer->mGetFrameTimestampsCount);
732
733 // Verify attempts to get frame timestamps fail.
734 const uint32_t framesAgo = 0;
735 int result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
736 &outRequestedPresentTime, &outAcquireTime, &outRefreshStartTime,
737 &outGpuCompositionDoneTime, &outDisplayPresentTime,
738 &outDisplayRetireTime, &outReleaseTime);
739 EXPECT_EQ(INVALID_OPERATION, result);
740 EXPECT_EQ(0, mFakeConsumer->mGetFrameTimestampsCount);
741}
742
743// This test verifies that the frame timestamps are retrieved if explicitly
744// enabled via native_window_enable_frame_timestamps.
745TEST_F(GetFrameTimestampsTest, EnabledSimple) {
746 enableFrameTimestamps();
747
748 int fence;
749 ANativeWindowBuffer* buffer;
750
751 EXPECT_EQ(0, mFakeConsumer->mAddFrameTimestampsCount);
752 EXPECT_EQ(0, mFakeConsumer->mGetFrameTimestampsCount);
753
754 // Verify getFrameTimestamps is piggybacked on dequeue.
755 ASSERT_EQ(NO_ERROR, mWindow->dequeueBuffer(mWindow.get(), &buffer, &fence));
756 EXPECT_EQ(0, mFakeConsumer->mAddFrameTimestampsCount);
757 EXPECT_EQ(1, mFakeConsumer->mGetFrameTimestampsCount);
758
759 NewFrameEventsEntry f1;
760 f1.frameNumber = 1;
761 f1.postedTime = mFrames[0].kPostedTime;
762 f1.requestedPresentTime = mFrames[0].kRequestedPresentTime;
763 f1.acquireFence = mFrames[0].mAcquireConsumer.mFenceTime;
764 mSurface->mFakeFrameEventHistory->setAcquireFenceOverride(
765 mFrames[0].mAcquireProducer.mFenceTime,
766 mFrames[0].mAcquireConsumer.mFenceTime);
767 mFakeConsumer->mNewFrameEntryOverride = f1;
768 mFrames[0].signalQueueFences();
769
770 // Verify getFrameTimestamps is piggybacked on queue.
771 ASSERT_EQ(NO_ERROR, mWindow->queueBuffer(mWindow.get(), buffer, fence));
772 EXPECT_EQ(1, mFakeConsumer->mAddFrameTimestampsCount);
773 EXPECT_EQ(1u, mFakeConsumer->mLastAddedFrameNumber);
774 EXPECT_EQ(2, mFakeConsumer->mGetFrameTimestampsCount);
775
776 // Verify queries for timestamps that the producer doesn't know about
777 // triggers a call to see if the consumer has any new timestamps.
778 const uint32_t framesAgo = 0;
779 int result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
780 &outRequestedPresentTime, &outAcquireTime, &outRefreshStartTime,
781 &outGpuCompositionDoneTime, &outDisplayPresentTime,
782 &outDisplayRetireTime, &outReleaseTime);
783 EXPECT_EQ(NO_ERROR, result);
784 EXPECT_EQ(3, mFakeConsumer->mGetFrameTimestampsCount);
785}
786
787void GetFrameTimestampsTest::QueryPresentRetireSupported(
788 bool displayPresentSupported, bool displayRetireSupported) {
789 mSurface->mFakeSurfaceComposer->setSupportedTimestamps(
790 displayPresentSupported, displayRetireSupported);
791
792 // Verify supported bits are forwarded.
793 int supportsPresent = -1;
794 mWindow.get()->query(mWindow.get(),
795 NATIVE_WINDOW_FRAME_TIMESTAMPS_SUPPORTS_PRESENT, &supportsPresent);
796 EXPECT_EQ(displayPresentSupported, supportsPresent);
797
798 int supportsRetire = -1;
799 mWindow.get()->query(mWindow.get(),
800 NATIVE_WINDOW_FRAME_TIMESTAMPS_SUPPORTS_RETIRE, &supportsRetire);
801 EXPECT_EQ(displayRetireSupported, supportsRetire);
802}
803
804TEST_F(GetFrameTimestampsTest, QueryPresentSupported) {
805 QueryPresentRetireSupported(true, false);
806}
807
808TEST_F(GetFrameTimestampsTest, QueryRetireSupported) {
809 QueryPresentRetireSupported(false, true);
810}
811
812// This test verifies that:
813// 1) The timestamps recorded in the consumer's FrameTimestampsHistory are
814// properly retrieved by the producer for the correct frames.
815// 2) When framesAgo is 0, it is querying for the most recently queued frame.
816TEST_F(GetFrameTimestampsTest, TimestampsAssociatedWithCorrectFrame) {
817 enableFrameTimestamps();
818
819 dequeueAndQueue(0);
820 mFrames[0].signalQueueFences();
821
822 dequeueAndQueue(1);
823 mFrames[1].signalQueueFences();
824
825 addFrameEvents(true, NO_FRAME_INDEX, 0);
826 mFrames[0].signalRefreshFences();
827 addFrameEvents(true, 0, 1);
828 mFrames[0].signalReleaseFences();
829 mFrames[1].signalRefreshFences();
830
831 // Verify timestamps are correct for frame 1.
832 uint32_t framesAgo = 1;
833 resetTimestamps();
834 int result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
835 &outRequestedPresentTime, &outAcquireTime, &outRefreshStartTime,
836 &outGpuCompositionDoneTime, &outDisplayPresentTime,
837 &outDisplayRetireTime, &outReleaseTime);
838 EXPECT_EQ(NO_ERROR, result);
839 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
840 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
841 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outRefreshStartTime);
842 EXPECT_EQ(mFrames[0].mRefreshes[0].kGpuCompositionDoneTime,
843 outGpuCompositionDoneTime);
844 EXPECT_EQ(mFrames[0].mRefreshes[0].kPresentTime, outDisplayPresentTime);
845 EXPECT_EQ(mFrames[0].kRetireTime, outDisplayRetireTime);
846 EXPECT_EQ(mFrames[0].kReleaseTime, outReleaseTime);
847
848 // Verify timestamps are correct for frame 2.
849 framesAgo = 0;
850 resetTimestamps();
851 result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
852 &outRequestedPresentTime, &outAcquireTime, &outRefreshStartTime,
853 &outGpuCompositionDoneTime, &outDisplayPresentTime,
854 &outDisplayRetireTime, &outReleaseTime);
855 EXPECT_EQ(NO_ERROR, result);
856 EXPECT_EQ(mFrames[1].kRequestedPresentTime, outRequestedPresentTime);
857 EXPECT_EQ(mFrames[1].kProducerAcquireTime, outAcquireTime);
858 EXPECT_EQ(mFrames[1].mRefreshes[0].kStartTime, outRefreshStartTime);
859 EXPECT_EQ(mFrames[1].mRefreshes[0].kGpuCompositionDoneTime,
860 outGpuCompositionDoneTime);
861 EXPECT_EQ(mFrames[1].mRefreshes[0].kPresentTime, outDisplayPresentTime);
862 EXPECT_EQ(0, outDisplayRetireTime);
863 EXPECT_EQ(0, outReleaseTime);
864}
865
866// This test verifies the acquire fence recorded by the consumer is not sent
867// back to the producer and the producer saves its own fence.
868TEST_F(GetFrameTimestampsTest, QueueTimestampsNoSync) {
869 enableFrameTimestamps();
870 mSurface->mFakeSurfaceComposer->setSupportedTimestamps(true, true);
871
872 const uint32_t framesAgo = 0;
873
874 // Dequeue and queue frame 1.
875 dequeueAndQueue(0);
876
877 // Verify queue-related timestamps for f1 are available immediately in the
878 // producer without asking the consumer again, even before signaling the
879 // acquire fence.
880 resetTimestamps();
881 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
882 int result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
883 &outRequestedPresentTime, &outAcquireTime, nullptr, nullptr,
884 nullptr, nullptr, nullptr);
885 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
886 EXPECT_EQ(NO_ERROR, result);
887 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
888 EXPECT_EQ(0, outAcquireTime);
889
890 // Signal acquire fences. Verify a sync call still isn't necessary.
891 mFrames[0].signalQueueFences();
892
893 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
894 result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
895 &outRequestedPresentTime, &outAcquireTime, nullptr, nullptr,
896 nullptr, nullptr, nullptr);
897 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
898 EXPECT_EQ(NO_ERROR, result);
899 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
900 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
901
902 // Dequeue and queue frame 2.
903 dequeueAndQueue(1);
904
905 // Verify queue-related timestamps for f2 are available immediately in the
906 // producer without asking the consumer again, even before signaling the
907 // acquire fence.
908 resetTimestamps();
909 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
910 result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
911 &outRequestedPresentTime, &outAcquireTime, nullptr, nullptr,
912 nullptr, nullptr, nullptr);
913 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
914 EXPECT_EQ(NO_ERROR, result);
915 EXPECT_EQ(mFrames[1].kRequestedPresentTime, outRequestedPresentTime);
916 EXPECT_EQ(0, outAcquireTime);
917
918 // Signal acquire fences. Verify a sync call still isn't necessary.
919 mFrames[1].signalQueueFences();
920
921 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
922 result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
923 &outRequestedPresentTime, &outAcquireTime, nullptr, nullptr,
924 nullptr, nullptr, nullptr);
925 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
926 EXPECT_EQ(NO_ERROR, result);
927 EXPECT_EQ(mFrames[1].kRequestedPresentTime, outRequestedPresentTime);
928 EXPECT_EQ(mFrames[1].kProducerAcquireTime, outAcquireTime);
929}
930
931TEST_F(GetFrameTimestampsTest, ZeroRequestedTimestampsNoSync) {
932 enableFrameTimestamps();
933 mSurface->mFakeSurfaceComposer->setSupportedTimestamps(true, true);
934
935 // Dequeue and queue frame 1.
936 dequeueAndQueue(0);
937 mFrames[0].signalQueueFences();
938
939 // Dequeue and queue frame 2.
940 dequeueAndQueue(1);
941 mFrames[1].signalQueueFences();
942
943 addFrameEvents(true, NO_FRAME_INDEX, 0);
944 mFrames[0].signalRefreshFences();
945 addFrameEvents(true, 0, 1);
946 mFrames[0].signalReleaseFences();
947 mFrames[1].signalRefreshFences();
948
949 // Verify a request for no timestamps doesn't result in a sync call.
950 const uint32_t framesAgo = 0;
951 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
952 int result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
953 nullptr, nullptr, nullptr, nullptr, nullptr, nullptr, nullptr);
954 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
955}
956
957// This test verifies that fences can signal and update timestamps producer
958// side without an additional sync call to the consumer.
959TEST_F(GetFrameTimestampsTest, FencesInProducerNoSync) {
960 enableFrameTimestamps();
961 mSurface->mFakeSurfaceComposer->setSupportedTimestamps(true, true);
962
963 // Dequeue and queue frame 1.
964 dequeueAndQueue(0);
965 mFrames[0].signalQueueFences();
966
967 // Dequeue and queue frame 2.
968 dequeueAndQueue(1);
969 mFrames[1].signalQueueFences();
970
971 addFrameEvents(true, NO_FRAME_INDEX, 0);
972 addFrameEvents(true, 0, 1);
973
974 // Verify available timestamps are correct for frame 1, before any
975 // fence has been signaled.
976 // Note: A sync call is necessary here since the events triggered by
977 // addFrameEvents didn't get to piggyback on the earlier queues/dequeues.
978 uint32_t framesAgo = 1;
979 resetTimestamps();
980 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
981 int result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
982 &outRequestedPresentTime, &outAcquireTime, &outRefreshStartTime,
983 &outGpuCompositionDoneTime, &outDisplayPresentTime,
984 &outDisplayRetireTime, &outReleaseTime);
985 EXPECT_EQ(oldCount + 1, mFakeConsumer->mGetFrameTimestampsCount);
986 EXPECT_EQ(NO_ERROR, result);
987 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
988 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
989 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outRefreshStartTime);
990 EXPECT_EQ(0, outGpuCompositionDoneTime);
991 EXPECT_EQ(0, outDisplayPresentTime);
992 EXPECT_EQ(0, outDisplayRetireTime);
993 EXPECT_EQ(0, outReleaseTime);
994
995 // Verify available timestamps are correct for frame 1 again, before any
996 // fence has been signaled.
997 // This time a sync call should not be necessary.
998 framesAgo = 1;
999 resetTimestamps();
1000 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
1001 result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
1002 &outRequestedPresentTime, &outAcquireTime, &outRefreshStartTime,
1003 &outGpuCompositionDoneTime, &outDisplayPresentTime,
1004 &outDisplayRetireTime, &outReleaseTime);
1005 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1006 EXPECT_EQ(NO_ERROR, result);
1007 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1008 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
1009 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outRefreshStartTime);
1010 EXPECT_EQ(0, outGpuCompositionDoneTime);
1011 EXPECT_EQ(0, outDisplayPresentTime);
1012 EXPECT_EQ(0, outDisplayRetireTime);
1013 EXPECT_EQ(0, outReleaseTime);
1014
1015 // Signal the fences for frame 1.
1016 mFrames[0].signalRefreshFences();
1017 mFrames[0].signalReleaseFences();
1018
1019 // Verify all timestamps are available without a sync call.
1020 framesAgo = 1;
1021 resetTimestamps();
1022 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
1023 result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
1024 &outRequestedPresentTime, &outAcquireTime, &outRefreshStartTime,
1025 &outGpuCompositionDoneTime, &outDisplayPresentTime,
1026 &outDisplayRetireTime, &outReleaseTime);
1027 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1028 EXPECT_EQ(NO_ERROR, result);
1029 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1030 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
1031 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outRefreshStartTime);
1032 EXPECT_EQ(mFrames[0].mRefreshes[0].kGpuCompositionDoneTime,
1033 outGpuCompositionDoneTime);
1034 EXPECT_EQ(mFrames[0].mRefreshes[0].kPresentTime, outDisplayPresentTime);
1035 EXPECT_EQ(mFrames[0].kRetireTime, outDisplayRetireTime);
1036 EXPECT_EQ(mFrames[0].kReleaseTime, outReleaseTime);
1037}
1038
1039// This test verifies that if the frame wasn't GPU composited but has a refresh
1040// event a sync call isn't made to get the GPU composite done time since it will
1041// never exist.
1042TEST_F(GetFrameTimestampsTest, NoGpuNoSync) {
1043 enableFrameTimestamps();
1044 mSurface->mFakeSurfaceComposer->setSupportedTimestamps(true, true);
1045
1046 const uint32_t framesAgo = 1;
1047
1048 // Dequeue and queue frame 1.
1049 dequeueAndQueue(0);
1050 mFrames[0].signalQueueFences();
1051
1052 // Dequeue and queue frame 2.
1053 dequeueAndQueue(1);
1054 mFrames[1].signalQueueFences();
1055
1056 addFrameEvents(false, NO_FRAME_INDEX, 0);
1057 addFrameEvents(false, 0, 1);
1058
1059 // Verify available timestamps are correct for frame 1, before any
1060 // fence has been signaled.
1061 // Note: A sync call is necessary here since the events triggered by
1062 // addFrameEvents didn't get to piggyback on the earlier queues/dequeues.
1063 resetTimestamps();
1064 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
1065 int result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
1066 &outRequestedPresentTime, &outAcquireTime, &outRefreshStartTime,
1067 &outGpuCompositionDoneTime, &outDisplayPresentTime,
1068 &outDisplayRetireTime, &outReleaseTime);
1069 EXPECT_EQ(oldCount + 1, mFakeConsumer->mGetFrameTimestampsCount);
1070 EXPECT_EQ(NO_ERROR, result);
1071 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1072 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
1073 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outRefreshStartTime);
1074 EXPECT_EQ(0, outGpuCompositionDoneTime);
1075 EXPECT_EQ(0, outDisplayPresentTime);
1076 EXPECT_EQ(0, outDisplayRetireTime);
1077 EXPECT_EQ(0, outReleaseTime);
1078
1079 // Signal the fences for frame 1.
1080 mFrames[0].signalRefreshFences();
1081 mFrames[0].signalReleaseFences();
1082
1083 // Verify all timestamps, except GPU composition, are available without a
1084 // sync call.
1085 resetTimestamps();
1086 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
1087 result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
1088 &outRequestedPresentTime, &outAcquireTime, &outRefreshStartTime,
1089 &outGpuCompositionDoneTime, &outDisplayPresentTime,
1090 &outDisplayRetireTime, &outReleaseTime);
1091 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1092 EXPECT_EQ(NO_ERROR, result);
1093 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1094 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
1095 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outRefreshStartTime);
1096 EXPECT_EQ(0, outGpuCompositionDoneTime);
1097 EXPECT_EQ(mFrames[0].mRefreshes[0].kPresentTime, outDisplayPresentTime);
1098 EXPECT_EQ(mFrames[0].kRetireTime, outDisplayRetireTime);
1099 EXPECT_EQ(mFrames[0].kReleaseTime, outReleaseTime);
1100}
1101
1102// This test verifies that if the retire/release info can't possibly exist,
1103// a sync call is not done.
1104TEST_F(GetFrameTimestampsTest, NoRetireOrReleaseNoSync) {
1105 enableFrameTimestamps();
1106 mSurface->mFakeSurfaceComposer->setSupportedTimestamps(true, true);
1107
1108 // Dequeue and queue frame 1.
1109 dequeueAndQueue(0);
1110 mFrames[0].signalQueueFences();
1111
1112 // Dequeue and queue frame 2.
1113 dequeueAndQueue(1);
1114 mFrames[1].signalQueueFences();
1115
1116 addFrameEvents(false, NO_FRAME_INDEX, 0);
1117 addFrameEvents(false, 0, 1);
1118
1119 // Verify available timestamps are correct for frame 1, before any
1120 // fence has been signaled.
1121 // Note: A sync call is necessary here since the events triggered by
1122 // addFrameEvents didn't get to piggyback on the earlier queues/dequeues.
1123 uint32_t framesAgo = 1;
1124 resetTimestamps();
1125 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
1126 int result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
1127 &outRequestedPresentTime, &outAcquireTime, &outRefreshStartTime,
1128 &outGpuCompositionDoneTime, &outDisplayPresentTime,
1129 &outDisplayRetireTime, &outReleaseTime);
1130 EXPECT_EQ(oldCount + 1, mFakeConsumer->mGetFrameTimestampsCount);
1131 EXPECT_EQ(NO_ERROR, result);
1132 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1133 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
1134 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outRefreshStartTime);
1135 EXPECT_EQ(0, outGpuCompositionDoneTime);
1136 EXPECT_EQ(0, outDisplayPresentTime);
1137 EXPECT_EQ(0, outDisplayRetireTime);
1138 EXPECT_EQ(0, outReleaseTime);
1139
1140 mFrames[0].signalRefreshFences();
1141 mFrames[0].signalReleaseFences();
1142 mFrames[1].signalRefreshFences();
1143
1144 // Verify querying for all timestmaps of f2 does not do a sync call.
1145 // Even though the retire and release times aren't available, a sync call
1146 // should not occur because it's not possible for it to be retired or
1147 // released until another frame is queued.
1148 framesAgo = 0;
1149 resetTimestamps();
1150 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
1151 result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
1152 &outRequestedPresentTime, &outAcquireTime, &outRefreshStartTime,
1153 &outGpuCompositionDoneTime, &outDisplayPresentTime,
1154 &outDisplayRetireTime, &outReleaseTime);
1155 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1156 EXPECT_EQ(NO_ERROR, result);
1157 EXPECT_EQ(mFrames[1].kRequestedPresentTime, outRequestedPresentTime);
1158 EXPECT_EQ(mFrames[1].kProducerAcquireTime, outAcquireTime);
1159 EXPECT_EQ(mFrames[1].mRefreshes[0].kStartTime, outRefreshStartTime);
1160 EXPECT_EQ(0, outGpuCompositionDoneTime);
1161 EXPECT_EQ(mFrames[1].mRefreshes[0].kPresentTime, outDisplayPresentTime);
1162 EXPECT_EQ(0, outDisplayRetireTime);
1163 EXPECT_EQ(0, outReleaseTime);
1164}
1165
1166// This test verifies there are no sync calls for present or retire times
1167// when they aren't supported and that an error is returned.
1168void GetFrameTimestampsTest::PresentOrRetireUnsupportedNoSyncTest(
1169 bool displayPresentSupported, bool displayRetireSupported) {
1170
1171 enableFrameTimestamps();
1172 mSurface->mFakeSurfaceComposer->setSupportedTimestamps(
1173 displayPresentSupported, displayRetireSupported);
1174
1175 // Dequeue and queue frame 1.
1176 dequeueAndQueue(0);
1177
1178 // Verify a query for the Present and Retire times do not trigger
1179 // a sync call if they are not supported.
1180 const uint32_t framesAgo = 0;
1181 resetTimestamps();
1182 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
1183 int result = native_window_get_frame_timestamps(mWindow.get(), framesAgo,
1184 nullptr, nullptr, nullptr, nullptr,
1185 displayPresentSupported ? nullptr : &outDisplayPresentTime,
1186 displayRetireSupported ? nullptr : &outDisplayRetireTime,
1187 nullptr);
1188 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1189 EXPECT_EQ(BAD_VALUE, result);
1190 EXPECT_EQ(-1, outDisplayRetireTime);
1191 EXPECT_EQ(-1, outDisplayPresentTime);
1192}
1193
1194TEST_F(GetFrameTimestampsTest, PresentUnsupportedNoSync) {
1195 PresentOrRetireUnsupportedNoSyncTest(false, true);
1196}
1197
1198TEST_F(GetFrameTimestampsTest, RetireUnsupportedNoSync) {
1199 PresentOrRetireUnsupportedNoSyncTest(true, false);
1200}
1201
Jamie Gennis134f0422011-03-08 12:18:54 -08001202}