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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
Peiyong Lind8460c82020-07-28 16:04:22 -070017#include "MockConsumer.h"
Dan Stozac6f30bd2015-06-08 09:32:50 -070018
Jamie Gennis134f0422011-03-08 12:18:54 -080019#include <gtest/gtest.h>
Jamie Gennis7a4d0df2011-03-09 17:05:02 -080020
Sundong Ahnf33c9f12020-04-23 21:31:20 +090021#include <SurfaceFlingerProperties.h>
Huihong Luo6fac5232021-11-22 16:05:23 -080022#include <android/gui/IDisplayEventConnection.h>
Huihong Luoaa7fc2e2022-02-15 10:43:00 -080023#include <android/gui/ISurfaceComposer.h>
Courtney Goeltzenleuchter6a570b62017-03-13 14:30:00 -060024#include <android/hardware/configstore/1.0/ISurfaceFlingerConfigs.h>
Brian Anderson3da8d272016-07-28 16:20:47 -070025#include <binder/ProcessState.h>
Courtney Goeltzenleuchter6a570b62017-03-13 14:30:00 -060026#include <configstore/Utils.h>
Huihong Luo3bdef862022-03-03 11:57:19 -080027#include <gui/AidlStatusUtil.h>
Courtney Goeltzenleuchter1eb1b272017-02-02 16:51:06 -070028#include <gui/BufferItemConsumer.h>
Yin-Chia Yeh1f2af5c2017-05-11 16:54:04 -070029#include <gui/IProducerListener.h>
Mathias Agopian90ac7992012-02-25 18:48:35 -080030#include <gui/ISurfaceComposer.h>
31#include <gui/Surface.h>
32#include <gui/SurfaceComposerClient.h>
chaviwe7b9f272020-08-18 16:08:59 -070033#include <gui/SyncScreenCaptureListener.h>
Sundong Ahnf33c9f12020-04-23 21:31:20 +090034#include <inttypes.h>
Brian Anderson3da8d272016-07-28 16:20:47 -070035#include <private/gui/ComposerService.h>
Huihong Luof5029222021-12-16 14:33:46 -080036#include <private/gui/ComposerServiceAIDL.h>
Andy Yu2ae6b6b2021-11-18 14:51:06 -080037#include <sys/types.h>
Yiwei Zhang74c9cc32020-06-20 03:35:17 -070038#include <ui/BufferQueueDefs.h>
Marin Shalamanov228f46b2021-01-28 21:11:45 +010039#include <ui/DisplayMode.h>
Dan Stozac1879002014-05-22 15:59:05 -070040#include <ui/Rect.h>
Andy Yu2ae6b6b2021-11-18 14:51:06 -080041#include <utils/Errors.h>
Jamie Gennis134f0422011-03-08 12:18:54 -080042#include <utils/String8.h>
43
Brian Anderson3da8d272016-07-28 16:20:47 -070044#include <limits>
Kalle Raita643f0942016-12-07 09:20:14 -080045#include <thread>
46
Jamie Gennis134f0422011-03-08 12:18:54 -080047namespace android {
48
Kalle Raita643f0942016-12-07 09:20:14 -080049using namespace std::chrono_literals;
Courtney Goeltzenleuchter6a570b62017-03-13 14:30:00 -060050// retrieve wide-color and hdr settings from configstore
51using namespace android::hardware::configstore;
52using namespace android::hardware::configstore::V1_0;
Leon Scroggins IIIe7c51c62022-02-01 15:53:54 -050053using aidl::android::hardware::graphics::common::DisplayDecorationSupport;
Huihong Luo6fac5232021-11-22 16:05:23 -080054using gui::IDisplayEventConnection;
Huihong Luoecc1f902021-11-20 11:55:05 -080055using gui::IRegionSamplingListener;
Peiyong Lin9f034472018-03-28 15:29:00 -070056using ui::ColorMode;
Courtney Goeltzenleuchter6a570b62017-03-13 14:30:00 -060057
Robert Carr4cdc58f2017-08-23 14:22:20 -070058using Transaction = SurfaceComposerClient::Transaction;
59
Sundong Ahnf33c9f12020-04-23 21:31:20 +090060static bool hasWideColorDisplay = android::sysprop::has_wide_color_display(false);
Kalle Raita643f0942016-12-07 09:20:14 -080061
Sundong Ahnf33c9f12020-04-23 21:31:20 +090062static bool hasHdrDisplay = android::sysprop::has_HDR_display(false);
Courtney Goeltzenleuchter9bad0d72017-12-19 12:34:34 -070063
Brian Anderson3da8d272016-07-28 16:20:47 -070064class FakeSurfaceComposer;
65class FakeProducerFrameEventHistory;
66
67static constexpr uint64_t NO_FRAME_INDEX = std::numeric_limits<uint64_t>::max();
68
Peiyong Lind8460c82020-07-28 16:04:22 -070069class FakeSurfaceListener : public SurfaceListener {
Shuzhen Wang067fcd32019-08-14 10:41:12 -070070public:
Peiyong Lind8460c82020-07-28 16:04:22 -070071 FakeSurfaceListener(bool enableReleasedCb = false)
72 : mEnableReleaseCb(enableReleasedCb), mBuffersReleased(0) {}
73 virtual ~FakeSurfaceListener() = default;
Shuzhen Wang067fcd32019-08-14 10:41:12 -070074
75 virtual void onBufferReleased() {
76 mBuffersReleased++;
77 }
78 virtual bool needsReleaseNotify() {
79 return mEnableReleaseCb;
80 }
81 virtual void onBuffersDiscarded(const std::vector<sp<GraphicBuffer>>& buffers) {
82 mDiscardedBuffers.insert(mDiscardedBuffers.end(), buffers.begin(), buffers.end());
83 }
84
85 int getReleaseNotifyCount() const {
86 return mBuffersReleased;
87 }
88 const std::vector<sp<GraphicBuffer>>& getDiscardedBuffers() const {
89 return mDiscardedBuffers;
90 }
91private:
92 // No need to use lock given the test triggers the listener in the same
93 // thread context.
94 bool mEnableReleaseCb;
95 int32_t mBuffersReleased;
96 std::vector<sp<GraphicBuffer>> mDiscardedBuffers;
97};
98
Jamie Gennis134f0422011-03-08 12:18:54 -080099class SurfaceTest : public ::testing::Test {
100protected:
Mathias Agopian7c1a4872013-03-20 15:56:04 -0700101 SurfaceTest() {
102 ProcessState::self()->startThreadPool();
103 }
104
Jamie Gennis134f0422011-03-08 12:18:54 -0800105 virtual void SetUp() {
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800106 mComposerClient = new SurfaceComposerClient;
Jamie Gennis134f0422011-03-08 12:18:54 -0800107 ASSERT_EQ(NO_ERROR, mComposerClient->initCheck());
108
Brian Andersond0010582017-03-07 13:20:31 -0800109 // TODO(brianderson): The following sometimes fails and is a source of
110 // test flakiness.
Jamie Gennisfc850122011-04-25 16:40:05 -0700111 mSurfaceControl = mComposerClient->createSurface(
Jeff Brown9d4e3d22012-08-24 20:00:51 -0700112 String8("Test Surface"), 32, 32, PIXEL_FORMAT_RGBA_8888, 0);
arthurhungdba591c2021-02-08 17:28:49 +0800113 SurfaceComposerClient::Transaction().apply(true);
Jamie Gennis134f0422011-03-08 12:18:54 -0800114
Yi Konga03e0442018-07-17 11:16:57 -0700115 ASSERT_TRUE(mSurfaceControl != nullptr);
Jamie Gennis134f0422011-03-08 12:18:54 -0800116 ASSERT_TRUE(mSurfaceControl->isValid());
117
Robert Carr4cdc58f2017-08-23 14:22:20 -0700118 Transaction t;
arthurhungdba591c2021-02-08 17:28:49 +0800119 ASSERT_EQ(NO_ERROR, t.setLayer(mSurfaceControl, 0x7fffffff).show(mSurfaceControl).apply());
Jamie Gennis134f0422011-03-08 12:18:54 -0800120
121 mSurface = mSurfaceControl->getSurface();
Yi Konga03e0442018-07-17 11:16:57 -0700122 ASSERT_TRUE(mSurface != nullptr);
Jamie Gennis134f0422011-03-08 12:18:54 -0800123 }
124
125 virtual void TearDown() {
126 mComposerClient->dispose();
127 }
128
Shuzhen Wang067fcd32019-08-14 10:41:12 -0700129 void testSurfaceListener(bool hasSurfaceListener, bool enableReleasedCb,
130 int32_t extraDiscardedBuffers) {
131 sp<IGraphicBufferProducer> producer;
132 sp<IGraphicBufferConsumer> consumer;
133 BufferQueue::createBufferQueue(&producer, &consumer);
134
Peiyong Lind8460c82020-07-28 16:04:22 -0700135 sp<MockConsumer> mockConsumer(new MockConsumer);
136 consumer->consumerConnect(mockConsumer, false);
Shuzhen Wang067fcd32019-08-14 10:41:12 -0700137 consumer->setConsumerName(String8("TestConsumer"));
138
139 sp<Surface> surface = new Surface(producer);
140 sp<ANativeWindow> window(surface);
Peiyong Lind8460c82020-07-28 16:04:22 -0700141 sp<FakeSurfaceListener> listener;
Shuzhen Wang067fcd32019-08-14 10:41:12 -0700142 if (hasSurfaceListener) {
Peiyong Lind8460c82020-07-28 16:04:22 -0700143 listener = new FakeSurfaceListener(enableReleasedCb);
Shuzhen Wang067fcd32019-08-14 10:41:12 -0700144 }
145 ASSERT_EQ(OK, surface->connect(
146 NATIVE_WINDOW_API_CPU,
147 /*reportBufferRemoval*/true,
148 /*listener*/listener));
149 const int BUFFER_COUNT = 4 + extraDiscardedBuffers;
150 ASSERT_EQ(NO_ERROR, native_window_set_buffer_count(window.get(), BUFFER_COUNT));
151
152 ANativeWindowBuffer* buffers[BUFFER_COUNT];
153 // Dequeue first to allocate a number of buffers
154 for (int i = 0; i < BUFFER_COUNT; i++) {
155 ASSERT_EQ(NO_ERROR, native_window_dequeue_buffer_and_wait(window.get(), &buffers[i]));
156 }
157 for (int i = 0; i < BUFFER_COUNT; i++) {
158 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffers[i], -1));
159 }
160
161 ANativeWindowBuffer* buffer;
162 // Fill BUFFER_COUNT-1 buffers
163 for (int i = 0; i < BUFFER_COUNT-1; i++) {
164 ASSERT_EQ(NO_ERROR, native_window_dequeue_buffer_and_wait(window.get(), &buffer));
165 ASSERT_EQ(NO_ERROR, window->queueBuffer(window.get(), buffer, -1));
166 }
167
168 // Dequeue 1 buffer
169 ASSERT_EQ(NO_ERROR, native_window_dequeue_buffer_and_wait(window.get(), &buffer));
170
171 // Acquire and free 1+extraDiscardedBuffers buffer, check onBufferReleased is called.
172 std::vector<BufferItem> releasedItems;
173 releasedItems.resize(1+extraDiscardedBuffers);
174 for (int i = 0; i < releasedItems.size(); i++) {
175 ASSERT_EQ(NO_ERROR, consumer->acquireBuffer(&releasedItems[i], 0));
176 ASSERT_EQ(NO_ERROR, consumer->releaseBuffer(releasedItems[i].mSlot,
177 releasedItems[i].mFrameNumber, EGL_NO_DISPLAY, EGL_NO_SYNC_KHR,
178 Fence::NO_FENCE));
179 }
180 int32_t expectedReleaseCb = (enableReleasedCb ? releasedItems.size() : 0);
181 if (hasSurfaceListener) {
182 ASSERT_EQ(expectedReleaseCb, listener->getReleaseNotifyCount());
183 }
184
185 // Acquire 1 buffer, leaving 1+extraDiscardedBuffers filled buffer in queue
186 BufferItem item;
187 ASSERT_EQ(NO_ERROR, consumer->acquireBuffer(&item, 0));
188
189 // Discard free buffers
190 ASSERT_EQ(NO_ERROR, consumer->discardFreeBuffers());
191
192 if (hasSurfaceListener) {
193 ASSERT_EQ(expectedReleaseCb, listener->getReleaseNotifyCount());
194
195 // Check onBufferDiscarded is called with correct buffer
196 auto discardedBuffers = listener->getDiscardedBuffers();
197 ASSERT_EQ(discardedBuffers.size(), releasedItems.size());
198 for (int i = 0; i < releasedItems.size(); i++) {
199 ASSERT_EQ(discardedBuffers[i], releasedItems[i].mGraphicBuffer);
200 }
201
202 ASSERT_EQ(expectedReleaseCb, listener->getReleaseNotifyCount());
203 }
204
205 // Disconnect the surface
206 ASSERT_EQ(NO_ERROR, surface->disconnect(NATIVE_WINDOW_API_CPU));
207 }
208
chaviw8ffc7b82020-08-18 11:25:37 -0700209 static status_t captureDisplay(DisplayCaptureArgs& captureArgs,
210 ScreenCaptureResults& captureResults) {
Huihong Luof5029222021-12-16 14:33:46 -0800211 const auto sf = ComposerServiceAIDL::getComposerService();
chaviw8ffc7b82020-08-18 11:25:37 -0700212 SurfaceComposerClient::Transaction().apply(true);
213
214 const sp<SyncScreenCaptureListener> captureListener = new SyncScreenCaptureListener();
Huihong Luof5029222021-12-16 14:33:46 -0800215 binder::Status status = sf->captureDisplay(captureArgs, captureListener);
Huihong Luo3bdef862022-03-03 11:57:19 -0800216 status_t err = gui::aidl_utils::statusTFromBinderStatus(status);
217 if (err != NO_ERROR) {
218 return err;
chaviw8ffc7b82020-08-18 11:25:37 -0700219 }
220 captureResults = captureListener->waitForResults();
Patrick Williamsfdb57bb2022-08-09 22:48:18 +0000221 return fenceStatus(captureResults.fenceResult);
chaviw8ffc7b82020-08-18 11:25:37 -0700222 }
223
Jamie Gennis134f0422011-03-08 12:18:54 -0800224 sp<Surface> mSurface;
225 sp<SurfaceComposerClient> mComposerClient;
226 sp<SurfaceControl> mSurfaceControl;
227};
228
Robert Carr740eaf02018-03-27 12:59:18 -0700229TEST_F(SurfaceTest, CreateSurfaceReturnsErrorBadClient) {
230 mComposerClient->dispose();
231 ASSERT_EQ(NO_INIT, mComposerClient->initCheck());
232
233 sp<SurfaceControl> sc;
234 status_t err = mComposerClient->createSurfaceChecked(
235 String8("Test Surface"), 32, 32, PIXEL_FORMAT_RGBA_8888, &sc, 0);
236 ASSERT_EQ(NO_INIT, err);
237}
238
Jamie Gennis134f0422011-03-08 12:18:54 -0800239TEST_F(SurfaceTest, QueuesToWindowComposerIsTrueWhenVisible) {
240 sp<ANativeWindow> anw(mSurface);
241 int result = -123;
242 int err = anw->query(anw.get(), NATIVE_WINDOW_QUEUES_TO_WINDOW_COMPOSER,
243 &result);
244 EXPECT_EQ(NO_ERROR, err);
245 EXPECT_EQ(1, result);
246}
247
248TEST_F(SurfaceTest, QueuesToWindowComposerIsTrueWhenPurgatorized) {
249 mSurfaceControl.clear();
Kalle Raita643f0942016-12-07 09:20:14 -0800250 // Wait for the async clean-up to complete.
251 std::this_thread::sleep_for(50ms);
Jamie Gennis134f0422011-03-08 12:18:54 -0800252
253 sp<ANativeWindow> anw(mSurface);
254 int result = -123;
255 int err = anw->query(anw.get(), NATIVE_WINDOW_QUEUES_TO_WINDOW_COMPOSER,
256 &result);
257 EXPECT_EQ(NO_ERROR, err);
258 EXPECT_EQ(1, result);
259}
260
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800261// This test probably doesn't belong here.
Robert Carr108b2c72019-04-02 16:32:58 -0700262TEST_F(SurfaceTest, ScreenshotsOfProtectedBuffersDontSucceed) {
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800263 sp<ANativeWindow> anw(mSurface);
264
265 // Verify the screenshot works with no protected buffers.
Huihong Luo31b5ac22022-08-15 20:38:10 -0700266 const auto ids = SurfaceComposerClient::getPhysicalDisplayIds();
267 ASSERT_FALSE(ids.empty());
268 // display 0 is picked for now, can extend to support all displays if needed
269 const sp<IBinder> display = SurfaceComposerClient::getPhysicalDisplayToken(ids.front());
Dominik Laskowskidcb38bb2019-01-25 02:35:50 -0800270 ASSERT_FALSE(display == nullptr);
271
chaviwd2432892020-07-24 17:42:39 -0700272 DisplayCaptureArgs captureArgs;
273 captureArgs.displayToken = display;
274 captureArgs.width = 64;
275 captureArgs.height = 64;
276
277 ScreenCaptureResults captureResults;
chaviw8ffc7b82020-08-18 11:25:37 -0700278 ASSERT_EQ(NO_ERROR, captureDisplay(captureArgs, captureResults));
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800279
Pablo Ceballos583b1b32015-09-03 18:23:52 -0700280 ASSERT_EQ(NO_ERROR, native_window_api_connect(anw.get(),
281 NATIVE_WINDOW_API_CPU));
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800282 // Set the PROTECTED usage bit and verify that the screenshot fails. Note
283 // that we need to dequeue a buffer in order for it to actually get
284 // allocated in SurfaceFlinger.
285 ASSERT_EQ(NO_ERROR, native_window_set_usage(anw.get(),
286 GRALLOC_USAGE_PROTECTED));
287 ASSERT_EQ(NO_ERROR, native_window_set_buffer_count(anw.get(), 3));
Yi Konga03e0442018-07-17 11:16:57 -0700288 ANativeWindowBuffer* buf = nullptr;
Mathias Agopian9303eee2011-07-01 15:27:27 -0700289
Jamie Gennisd8e812c2012-06-13 16:32:25 -0700290 status_t err = native_window_dequeue_buffer_and_wait(anw.get(), &buf);
Mathias Agopian9303eee2011-07-01 15:27:27 -0700291 if (err) {
292 // we could fail if GRALLOC_USAGE_PROTECTED is not supported.
293 // that's okay as long as this is the reason for the failure.
294 // try again without the GRALLOC_USAGE_PROTECTED bit.
295 ASSERT_EQ(NO_ERROR, native_window_set_usage(anw.get(), 0));
Jamie Gennisd8e812c2012-06-13 16:32:25 -0700296 ASSERT_EQ(NO_ERROR, native_window_dequeue_buffer_and_wait(anw.get(),
297 &buf));
Mathias Agopian9303eee2011-07-01 15:27:27 -0700298 return;
299 }
Jamie Gennisd8e812c2012-06-13 16:32:25 -0700300 ASSERT_EQ(NO_ERROR, anw->cancelBuffer(anw.get(), buf, -1));
Mathias Agopian9303eee2011-07-01 15:27:27 -0700301
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800302 for (int i = 0; i < 4; i++) {
303 // Loop to make sure SurfaceFlinger has retired a protected buffer.
Jamie Gennisd8e812c2012-06-13 16:32:25 -0700304 ASSERT_EQ(NO_ERROR, native_window_dequeue_buffer_and_wait(anw.get(),
305 &buf));
306 ASSERT_EQ(NO_ERROR, anw->queueBuffer(anw.get(), buf, -1));
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800307 }
chaviw8ffc7b82020-08-18 11:25:37 -0700308 ASSERT_EQ(NO_ERROR, captureDisplay(captureArgs, captureResults));
Jamie Gennis7a4d0df2011-03-09 17:05:02 -0800309}
310
Jamie Gennis391bbe22011-03-14 15:00:06 -0700311TEST_F(SurfaceTest, ConcreteTypeIsSurface) {
312 sp<ANativeWindow> anw(mSurface);
313 int result = -123;
314 int err = anw->query(anw.get(), NATIVE_WINDOW_CONCRETE_TYPE, &result);
315 EXPECT_EQ(NO_ERROR, err);
316 EXPECT_EQ(NATIVE_WINDOW_SURFACE, result);
317}
318
Craig Donner6ebc46a2016-10-21 15:23:44 -0700319TEST_F(SurfaceTest, LayerCountIsOne) {
320 sp<ANativeWindow> anw(mSurface);
321 int result = -123;
322 int err = anw->query(anw.get(), NATIVE_WINDOW_LAYER_COUNT, &result);
323 EXPECT_EQ(NO_ERROR, err);
324 EXPECT_EQ(1, result);
325}
326
Eino-Ville Talvalaf7c60872013-07-30 14:05:02 -0700327TEST_F(SurfaceTest, QueryConsumerUsage) {
328 const int TEST_USAGE_FLAGS =
329 GRALLOC_USAGE_SW_READ_OFTEN | GRALLOC_USAGE_HW_RENDER;
Dan Stoza5603a2f2014-04-07 13:41:37 -0700330 sp<IGraphicBufferProducer> producer;
331 sp<IGraphicBufferConsumer> consumer;
332 BufferQueue::createBufferQueue(&producer, &consumer);
333 sp<BufferItemConsumer> c = new BufferItemConsumer(consumer,
Eino-Ville Talvalaf7c60872013-07-30 14:05:02 -0700334 TEST_USAGE_FLAGS);
Dan Stoza5603a2f2014-04-07 13:41:37 -0700335 sp<Surface> s = new Surface(producer);
Eino-Ville Talvalaf7c60872013-07-30 14:05:02 -0700336
337 sp<ANativeWindow> anw(s);
338
339 int flags = -1;
340 int err = anw->query(anw.get(), NATIVE_WINDOW_CONSUMER_USAGE_BITS, &flags);
341
342 ASSERT_EQ(NO_ERROR, err);
343 ASSERT_EQ(TEST_USAGE_FLAGS, flags);
344}
345
Eino-Ville Talvala5b75a512015-02-19 16:10:43 -0800346TEST_F(SurfaceTest, QueryDefaultBuffersDataSpace) {
Peiyong Lin14724e62018-12-05 07:27:30 -0800347 const android_dataspace TEST_DATASPACE = HAL_DATASPACE_V0_SRGB;
Eino-Ville Talvala5b75a512015-02-19 16:10:43 -0800348 sp<IGraphicBufferProducer> producer;
349 sp<IGraphicBufferConsumer> consumer;
350 BufferQueue::createBufferQueue(&producer, &consumer);
351 sp<CpuConsumer> cpuConsumer = new CpuConsumer(consumer, 1);
352
353 cpuConsumer->setDefaultBufferDataSpace(TEST_DATASPACE);
354
355 sp<Surface> s = new Surface(producer);
356
357 sp<ANativeWindow> anw(s);
358
359 android_dataspace dataSpace;
360
361 int err = anw->query(anw.get(), NATIVE_WINDOW_DEFAULT_DATASPACE,
362 reinterpret_cast<int*>(&dataSpace));
363
364 ASSERT_EQ(NO_ERROR, err);
365 ASSERT_EQ(TEST_DATASPACE, dataSpace);
366}
367
Dan Stoza812ed062015-06-02 15:45:22 -0700368TEST_F(SurfaceTest, SettingGenerationNumber) {
369 sp<IGraphicBufferProducer> producer;
370 sp<IGraphicBufferConsumer> consumer;
371 BufferQueue::createBufferQueue(&producer, &consumer);
372 sp<CpuConsumer> cpuConsumer = new CpuConsumer(consumer, 1);
373 sp<Surface> surface = new Surface(producer);
374 sp<ANativeWindow> window(surface);
375
376 // Allocate a buffer with a generation number of 0
377 ANativeWindowBuffer* buffer;
378 int fenceFd;
Pablo Ceballos583b1b32015-09-03 18:23:52 -0700379 ASSERT_EQ(NO_ERROR, native_window_api_connect(window.get(),
380 NATIVE_WINDOW_API_CPU));
Dan Stoza812ed062015-06-02 15:45:22 -0700381 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fenceFd));
382 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffer, fenceFd));
383
384 // Detach the buffer and check its generation number
385 sp<GraphicBuffer> graphicBuffer;
386 sp<Fence> fence;
387 ASSERT_EQ(NO_ERROR, surface->detachNextBuffer(&graphicBuffer, &fence));
388 ASSERT_EQ(0U, graphicBuffer->getGenerationNumber());
389
390 ASSERT_EQ(NO_ERROR, surface->setGenerationNumber(1));
391 buffer = static_cast<ANativeWindowBuffer*>(graphicBuffer.get());
392
393 // This should change the generation number of the GraphicBuffer
394 ASSERT_EQ(NO_ERROR, surface->attachBuffer(buffer));
395
396 // Check that the new generation number sticks with the buffer
397 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffer, -1));
398 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fenceFd));
399 graphicBuffer = static_cast<GraphicBuffer*>(buffer);
400 ASSERT_EQ(1U, graphicBuffer->getGenerationNumber());
401}
402
Dan Stozac6f30bd2015-06-08 09:32:50 -0700403TEST_F(SurfaceTest, GetConsumerName) {
404 sp<IGraphicBufferProducer> producer;
405 sp<IGraphicBufferConsumer> consumer;
406 BufferQueue::createBufferQueue(&producer, &consumer);
407
Peiyong Lind8460c82020-07-28 16:04:22 -0700408 sp<MockConsumer> mockConsumer(new MockConsumer);
409 consumer->consumerConnect(mockConsumer, false);
Dan Stozac6f30bd2015-06-08 09:32:50 -0700410 consumer->setConsumerName(String8("TestConsumer"));
411
412 sp<Surface> surface = new Surface(producer);
413 sp<ANativeWindow> window(surface);
414 native_window_api_connect(window.get(), NATIVE_WINDOW_API_CPU);
415
416 EXPECT_STREQ("TestConsumer", surface->getConsumerName().string());
417}
418
Courtney Goeltzenleuchter1eb1b272017-02-02 16:51:06 -0700419TEST_F(SurfaceTest, GetWideColorSupport) {
420 sp<IGraphicBufferProducer> producer;
421 sp<IGraphicBufferConsumer> consumer;
422 BufferQueue::createBufferQueue(&producer, &consumer);
423
Peiyong Lind8460c82020-07-28 16:04:22 -0700424 sp<MockConsumer> mockConsumer(new MockConsumer);
425 consumer->consumerConnect(mockConsumer, false);
Courtney Goeltzenleuchter1eb1b272017-02-02 16:51:06 -0700426 consumer->setConsumerName(String8("TestConsumer"));
427
428 sp<Surface> surface = new Surface(producer);
429 sp<ANativeWindow> window(surface);
430 native_window_api_connect(window.get(), NATIVE_WINDOW_API_CPU);
431
432 bool supported;
433 surface->getWideColorSupport(&supported);
434
Courtney Goeltzenleuchter6a570b62017-03-13 14:30:00 -0600435 // NOTE: This test assumes that device that supports
436 // wide-color (as indicated by BoardConfig) must also
437 // have a wide-color primary display.
438 // That assumption allows this test to cover devices
439 // that advertised a wide-color color mode without
440 // actually supporting wide-color to pass this test
441 // as well as the case of a device that does support
442 // wide-color (via BoardConfig) and has a wide-color
443 // primary display.
444 // NOT covered at this time is a device that supports
445 // wide color in the BoardConfig but does not support
446 // a wide-color color mode on the primary display.
447 ASSERT_EQ(hasWideColorDisplay, supported);
Courtney Goeltzenleuchter1eb1b272017-02-02 16:51:06 -0700448}
449
Courtney Goeltzenleuchter9bad0d72017-12-19 12:34:34 -0700450TEST_F(SurfaceTest, GetHdrSupport) {
451 sp<IGraphicBufferProducer> producer;
452 sp<IGraphicBufferConsumer> consumer;
453 BufferQueue::createBufferQueue(&producer, &consumer);
454
Peiyong Lind8460c82020-07-28 16:04:22 -0700455 sp<MockConsumer> mockConsumer(new MockConsumer);
456 consumer->consumerConnect(mockConsumer, false);
Courtney Goeltzenleuchter9bad0d72017-12-19 12:34:34 -0700457 consumer->setConsumerName(String8("TestConsumer"));
458
459 sp<Surface> surface = new Surface(producer);
460 sp<ANativeWindow> window(surface);
461 native_window_api_connect(window.get(), NATIVE_WINDOW_API_CPU);
462
463 bool supported;
464 status_t result = surface->getHdrSupport(&supported);
465 ASSERT_EQ(NO_ERROR, result);
466
467 // NOTE: This is not a CTS test.
468 // This test verifies that when the BoardConfig TARGET_HAS_HDR_DISPLAY
469 // is TRUE, getHdrSupport is also true.
470 // TODO: Add check for an HDR color mode on the primary display.
471 ASSERT_EQ(hasHdrDisplay, supported);
472}
473
474TEST_F(SurfaceTest, SetHdrMetadata) {
475 sp<IGraphicBufferProducer> producer;
476 sp<IGraphicBufferConsumer> consumer;
477 BufferQueue::createBufferQueue(&producer, &consumer);
478
Peiyong Lind8460c82020-07-28 16:04:22 -0700479 sp<MockConsumer> mockConsumer(new MockConsumer);
480 consumer->consumerConnect(mockConsumer, false);
Courtney Goeltzenleuchter9bad0d72017-12-19 12:34:34 -0700481 consumer->setConsumerName(String8("TestConsumer"));
482
483 sp<Surface> surface = new Surface(producer);
484 sp<ANativeWindow> window(surface);
485 native_window_api_connect(window.get(), NATIVE_WINDOW_API_CPU);
486
487 bool supported;
488 status_t result = surface->getHdrSupport(&supported);
489 ASSERT_EQ(NO_ERROR, result);
490
491 if (!hasHdrDisplay || !supported) {
492 return;
493 }
494 const android_smpte2086_metadata smpte2086 = {
495 {0.680, 0.320},
496 {0.265, 0.690},
497 {0.150, 0.060},
498 {0.3127, 0.3290},
499 100.0,
500 0.1,
501 };
502 const android_cta861_3_metadata cta861_3 = {
503 78.0,
504 62.0,
505 };
Valerie Haua82679d2018-11-21 09:31:43 -0800506
507 std::vector<uint8_t> hdr10plus;
508 hdr10plus.push_back(0xff);
509
Courtney Goeltzenleuchter9bad0d72017-12-19 12:34:34 -0700510 int error = native_window_set_buffers_smpte2086_metadata(window.get(), &smpte2086);
511 ASSERT_EQ(error, NO_ERROR);
512 error = native_window_set_buffers_cta861_3_metadata(window.get(), &cta861_3);
513 ASSERT_EQ(error, NO_ERROR);
Valerie Haua82679d2018-11-21 09:31:43 -0800514 error = native_window_set_buffers_hdr10_plus_metadata(window.get(), hdr10plus.size(),
515 hdr10plus.data());
516 ASSERT_EQ(error, NO_ERROR);
Courtney Goeltzenleuchter9bad0d72017-12-19 12:34:34 -0700517}
518
Pablo Ceballos789a0c82016-02-05 13:39:27 -0800519TEST_F(SurfaceTest, DynamicSetBufferCount) {
520 sp<IGraphicBufferProducer> producer;
521 sp<IGraphicBufferConsumer> consumer;
522 BufferQueue::createBufferQueue(&producer, &consumer);
523
Peiyong Lind8460c82020-07-28 16:04:22 -0700524 sp<MockConsumer> mockConsumer(new MockConsumer);
525 consumer->consumerConnect(mockConsumer, false);
Pablo Ceballos789a0c82016-02-05 13:39:27 -0800526 consumer->setConsumerName(String8("TestConsumer"));
527
528 sp<Surface> surface = new Surface(producer);
529 sp<ANativeWindow> window(surface);
530
531 ASSERT_EQ(NO_ERROR, native_window_api_connect(window.get(),
532 NATIVE_WINDOW_API_CPU));
533 native_window_set_buffer_count(window.get(), 4);
534
535 int fence;
536 ANativeWindowBuffer* buffer;
537 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fence));
538 native_window_set_buffer_count(window.get(), 3);
539 ASSERT_EQ(NO_ERROR, window->queueBuffer(window.get(), buffer, fence));
540 native_window_set_buffer_count(window.get(), 2);
541 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fence));
542 ASSERT_EQ(NO_ERROR, window->queueBuffer(window.get(), buffer, fence));
543}
544
Yin-Chia Yeh1f2af5c2017-05-11 16:54:04 -0700545TEST_F(SurfaceTest, GetAndFlushRemovedBuffers) {
546 sp<IGraphicBufferProducer> producer;
547 sp<IGraphicBufferConsumer> consumer;
548 BufferQueue::createBufferQueue(&producer, &consumer);
549
Peiyong Lind8460c82020-07-28 16:04:22 -0700550 sp<MockConsumer> mockConsumer(new MockConsumer);
551 consumer->consumerConnect(mockConsumer, false);
Yin-Chia Yeh1f2af5c2017-05-11 16:54:04 -0700552 consumer->setConsumerName(String8("TestConsumer"));
553
554 sp<Surface> surface = new Surface(producer);
555 sp<ANativeWindow> window(surface);
Peiyong Lind8460c82020-07-28 16:04:22 -0700556 sp<StubProducerListener> listener = new StubProducerListener();
Yin-Chia Yeh1f2af5c2017-05-11 16:54:04 -0700557 ASSERT_EQ(OK, surface->connect(
558 NATIVE_WINDOW_API_CPU,
559 /*listener*/listener,
560 /*reportBufferRemoval*/true));
561 const int BUFFER_COUNT = 4;
562 ASSERT_EQ(NO_ERROR, native_window_set_buffer_count(window.get(), BUFFER_COUNT));
563
564 sp<GraphicBuffer> detachedBuffer;
565 sp<Fence> outFence;
566 int fences[BUFFER_COUNT];
567 ANativeWindowBuffer* buffers[BUFFER_COUNT];
568 // Allocate buffers because detachNextBuffer requires allocated buffers
569 for (int i = 0; i < BUFFER_COUNT; i++) {
570 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffers[i], &fences[i]));
571 }
572 for (int i = 0; i < BUFFER_COUNT; i++) {
573 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffers[i], fences[i]));
574 }
575
576 // Test detached buffer is correctly reported
577 ASSERT_EQ(NO_ERROR, surface->detachNextBuffer(&detachedBuffer, &outFence));
578 std::vector<sp<GraphicBuffer>> removedBuffers;
579 ASSERT_EQ(OK, surface->getAndFlushRemovedBuffers(&removedBuffers));
580 ASSERT_EQ(1u, removedBuffers.size());
581 ASSERT_EQ(detachedBuffer->handle, removedBuffers.at(0)->handle);
582 // Test the list is flushed one getAndFlushRemovedBuffers returns
583 ASSERT_EQ(OK, surface->getAndFlushRemovedBuffers(&removedBuffers));
584 ASSERT_EQ(0u, removedBuffers.size());
585
586
587 // Test removed buffer list is cleanup after next dequeueBuffer call
588 ASSERT_EQ(NO_ERROR, surface->detachNextBuffer(&detachedBuffer, &outFence));
589 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffers[0], &fences[0]));
590 ASSERT_EQ(OK, surface->getAndFlushRemovedBuffers(&removedBuffers));
591 ASSERT_EQ(0u, removedBuffers.size());
592 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffers[0], fences[0]));
593
594 // Test removed buffer list is cleanup after next detachNextBuffer call
595 ASSERT_EQ(NO_ERROR, surface->detachNextBuffer(&detachedBuffer, &outFence));
596 ASSERT_EQ(NO_ERROR, surface->detachNextBuffer(&detachedBuffer, &outFence));
597 ASSERT_EQ(OK, surface->getAndFlushRemovedBuffers(&removedBuffers));
598 ASSERT_EQ(1u, removedBuffers.size());
599 ASSERT_EQ(detachedBuffer->handle, removedBuffers.at(0)->handle);
600
601 // Re-allocate buffers since all buffers are detached up to now
602 for (int i = 0; i < BUFFER_COUNT; i++) {
603 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffers[i], &fences[i]));
604 }
605 for (int i = 0; i < BUFFER_COUNT; i++) {
606 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffers[i], fences[i]));
607 }
608
609 ASSERT_EQ(NO_ERROR, surface->detachNextBuffer(&detachedBuffer, &outFence));
610 ASSERT_EQ(NO_ERROR, surface->attachBuffer(detachedBuffer.get()));
611 ASSERT_EQ(OK, surface->getAndFlushRemovedBuffers(&removedBuffers));
612 // Depends on which slot GraphicBufferProducer impl pick, the attach call might
613 // get 0 or 1 buffer removed.
614 ASSERT_LE(removedBuffers.size(), 1u);
615}
Brian Anderson3da8d272016-07-28 16:20:47 -0700616
Shuzhen Wang067fcd32019-08-14 10:41:12 -0700617TEST_F(SurfaceTest, SurfaceListenerTest) {
618 // Test discarding 1 free buffers with no listener
619 testSurfaceListener(/*hasListener*/false, /*enableReleaseCb*/false, /*extraDiscardedBuffers*/0);
620 // Test discarding 2 free buffers with no listener
621 testSurfaceListener(/*hasListener*/false, /*enableReleaseCb*/false, /*extraDiscardedBuffers*/1);
622 // Test discarding 1 free buffers with a listener, disabling onBufferReleased
623 testSurfaceListener(/*hasListener*/true, /*enableReleasedCb*/false, /*extraDiscardedBuffers*/0);
624 // Test discarding 2 free buffers with a listener, disabling onBufferReleased
625 testSurfaceListener(/*hasListener*/true, /*enableReleasedCb*/false, /*extraDiscardedBuffers*/1);
626 // Test discarding 1 free buffers with a listener, enabling onBufferReleased
627 testSurfaceListener(/*hasListener*/true, /*enableReleasedCb*/true, /*extraDiscardedBuffers*/0);
628 // Test discarding 3 free buffers with a listener, enabling onBufferReleased
629 testSurfaceListener(/*hasListener*/true, /*enableReleasedCb*/true, /*extraDiscardedBuffers*/2);
630}
631
Dan Stoza932f0082017-05-31 13:50:16 -0700632TEST_F(SurfaceTest, TestGetLastDequeueStartTime) {
633 sp<ANativeWindow> anw(mSurface);
634 ASSERT_EQ(NO_ERROR, native_window_api_connect(anw.get(), NATIVE_WINDOW_API_CPU));
635
636 ANativeWindowBuffer* buffer = nullptr;
637 int32_t fenceFd = -1;
638
639 nsecs_t before = systemTime(CLOCK_MONOTONIC);
640 anw->dequeueBuffer(anw.get(), &buffer, &fenceFd);
641 nsecs_t after = systemTime(CLOCK_MONOTONIC);
642
Alec Mouria1619662019-08-21 19:30:48 -0700643 nsecs_t lastDequeueTime = ANativeWindow_getLastDequeueStartTime(anw.get());
Dan Stoza932f0082017-05-31 13:50:16 -0700644 ASSERT_LE(before, lastDequeueTime);
645 ASSERT_GE(after, lastDequeueTime);
646}
647
Brian Anderson3da8d272016-07-28 16:20:47 -0700648class FakeConsumer : public BnConsumerListener {
649public:
650 void onFrameAvailable(const BufferItem& /*item*/) override {}
651 void onBuffersReleased() override {}
652 void onSidebandStreamChanged() override {}
653
654 void addAndGetFrameTimestamps(
655 const NewFrameEventsEntry* newTimestamps,
656 FrameEventHistoryDelta* outDelta) override {
657 if (newTimestamps) {
658 if (mGetFrameTimestampsEnabled) {
659 EXPECT_GT(mNewFrameEntryOverride.frameNumber, 0u) <<
660 "Test should set mNewFrameEntryOverride before queuing "
661 "a frame.";
662 EXPECT_EQ(newTimestamps->frameNumber,
663 mNewFrameEntryOverride.frameNumber) <<
664 "Test attempting to add NewFrameEntryOverride with "
665 "incorrect frame number.";
666 mFrameEventHistory.addQueue(mNewFrameEntryOverride);
667 mNewFrameEntryOverride.frameNumber = 0;
668 }
669 mAddFrameTimestampsCount++;
670 mLastAddedFrameNumber = newTimestamps->frameNumber;
671 }
672 if (outDelta) {
673 mFrameEventHistory.getAndResetDelta(outDelta);
674 mGetFrameTimestampsCount++;
675 }
676 mAddAndGetFrameTimestampsCallCount++;
677 }
678
679 bool mGetFrameTimestampsEnabled = false;
680
681 ConsumerFrameEventHistory mFrameEventHistory;
682 int mAddAndGetFrameTimestampsCallCount = 0;
683 int mAddFrameTimestampsCount = 0;
684 int mGetFrameTimestampsCount = 0;
685 uint64_t mLastAddedFrameNumber = NO_FRAME_INDEX;
686
687 NewFrameEventsEntry mNewFrameEntryOverride = { 0, 0, 0, nullptr };
688};
689
Pablo Gamito6ee484d2020-07-30 14:26:28 +0000690class FakeSurfaceComposer : public ISurfaceComposer {
Brian Anderson3da8d272016-07-28 16:20:47 -0700691public:
692 ~FakeSurfaceComposer() override {}
693
Brian Anderson6b376712017-04-04 10:51:39 -0700694 void setSupportsPresent(bool supportsPresent) {
695 mSupportsPresent = supportsPresent;
696 }
697
Siarhei Vishniakoufc434ac2021-01-13 10:28:00 -1000698 status_t setTransactionState(const FrameTimelineInfo& /*frameTimelineInfo*/,
Ady Abraham22c7b5c2020-09-22 19:33:40 -0700699 const Vector<ComposerState>& /*state*/,
Pablo Gamito7eb7ee72020-08-05 10:57:05 +0000700 const Vector<DisplayState>& /*displays*/, uint32_t /*flags*/,
701 const sp<IBinder>& /*applyToken*/,
702 const InputWindowCommands& /*inputWindowCommands*/,
Ady Abrahamf0c56492020-12-17 18:04:15 -0800703 int64_t /*desiredPresentTime*/, bool /*isAutoTimestamp*/,
Pablo Gamito7eb7ee72020-08-05 10:57:05 +0000704 const client_cache_t& /*cachedBuffer*/,
705 bool /*hasListenerCallbacks*/,
706 const std::vector<ListenerCallbacks>& /*listenerCallbacks*/,
707 uint64_t /*transactionId*/) override {
chaviw308ddba2020-08-11 16:23:51 -0700708 return NO_ERROR;
Marissa Wall3dad52d2019-03-22 14:03:19 -0700709 }
Marissa Wall17b4e452018-12-26 16:32:34 -0800710
Brian Anderson3da8d272016-07-28 16:20:47 -0700711protected:
712 IBinder* onAsBinder() override { return nullptr; }
713
714private:
715 bool mSupportsPresent{true};
Brian Anderson3da8d272016-07-28 16:20:47 -0700716};
717
Huihong Luoaa7fc2e2022-02-15 10:43:00 -0800718class FakeSurfaceComposerAIDL : public gui::ISurfaceComposer {
719public:
720 ~FakeSurfaceComposerAIDL() override {}
721
722 void setSupportsPresent(bool supportsPresent) { mSupportsPresent = supportsPresent; }
723
Huihong Luo1b0c49f2022-03-15 19:18:21 -0700724 binder::Status bootFinished() override { return binder::Status::ok(); }
725
726 binder::Status createDisplayEventConnection(
727 VsyncSource /*vsyncSource*/, EventRegistration /*eventRegistration*/,
728 sp<gui::IDisplayEventConnection>* outConnection) override {
729 *outConnection = nullptr;
730 return binder::Status::ok();
731 }
732
Huihong Luod3d8f8e2022-03-08 14:48:46 -0800733 binder::Status createConnection(sp<gui::ISurfaceComposerClient>* outClient) override {
734 *outClient = nullptr;
735 return binder::Status::ok();
736 }
737
Huihong Luoaa7fc2e2022-02-15 10:43:00 -0800738 binder::Status createDisplay(const std::string& /*displayName*/, bool /*secure*/,
739 sp<IBinder>* /*outDisplay*/) override {
740 return binder::Status::ok();
741 }
742
743 binder::Status destroyDisplay(const sp<IBinder>& /*display*/) override {
744 return binder::Status::ok();
745 }
746
747 binder::Status getPhysicalDisplayIds(std::vector<int64_t>* /*outDisplayIds*/) override {
748 return binder::Status::ok();
749 }
750
Huihong Luoaa7fc2e2022-02-15 10:43:00 -0800751 binder::Status getPhysicalDisplayToken(int64_t /*displayId*/,
752 sp<IBinder>* /*outDisplay*/) override {
753 return binder::Status::ok();
754 }
755
756 binder::Status setPowerMode(const sp<IBinder>& /*display*/, int /*mode*/) override {
757 return binder::Status::ok();
758 }
759
Huihong Luo0a81aa32022-02-22 16:02:36 -0800760 binder::Status getSupportedFrameTimestamps(std::vector<FrameEvent>* outSupported) override {
761 *outSupported = {FrameEvent::REQUESTED_PRESENT,
762 FrameEvent::ACQUIRE,
763 FrameEvent::LATCH,
764 FrameEvent::FIRST_REFRESH_START,
765 FrameEvent::LAST_REFRESH_START,
766 FrameEvent::GPU_COMPOSITION_DONE,
767 FrameEvent::DEQUEUE_READY,
768 FrameEvent::RELEASE};
769 if (mSupportsPresent) {
770 outSupported->push_back(FrameEvent::DISPLAY_PRESENT);
771 }
772 return binder::Status::ok();
773 }
774
Huihong Luoaa7fc2e2022-02-15 10:43:00 -0800775 binder::Status getDisplayStats(const sp<IBinder>& /*display*/,
776 gui::DisplayStatInfo* /*outStatInfo*/) override {
777 return binder::Status::ok();
778 }
779
780 binder::Status getDisplayState(const sp<IBinder>& /*display*/,
781 gui::DisplayState* /*outState*/) override {
782 return binder::Status::ok();
783 }
784
Huihong Luoa79ddf42022-02-17 00:01:38 -0800785 binder::Status getStaticDisplayInfo(const sp<IBinder>& /*display*/,
786 gui::StaticDisplayInfo* /*outInfo*/) override {
787 return binder::Status::ok();
788 }
789
Huihong Luo38603fd2022-02-21 14:32:54 -0800790 binder::Status getDynamicDisplayInfo(const sp<IBinder>& /*display*/,
791 gui::DynamicDisplayInfo* /*outInfo*/) override {
792 return binder::Status::ok();
793 }
794
Huihong Luoca3d9a42022-02-22 11:07:34 -0800795 binder::Status getDisplayNativePrimaries(const sp<IBinder>& /*display*/,
796 gui::DisplayPrimaries* /*outPrimaries*/) override {
797 return binder::Status::ok();
798 }
799
800 binder::Status setActiveColorMode(const sp<IBinder>& /*display*/, int /*colorMode*/) override {
801 return binder::Status::ok();
802 }
803
804 binder::Status setBootDisplayMode(const sp<IBinder>& /*display*/,
805 int /*displayModeId*/) override {
806 return binder::Status::ok();
807 }
808
Huihong Luoaa7fc2e2022-02-15 10:43:00 -0800809 binder::Status clearBootDisplayMode(const sp<IBinder>& /*display*/) override {
810 return binder::Status::ok();
811 }
812
813 binder::Status getBootDisplayModeSupport(bool* /*outMode*/) override {
814 return binder::Status::ok();
815 }
816
817 binder::Status setAutoLowLatencyMode(const sp<IBinder>& /*display*/, bool /*on*/) override {
818 return binder::Status::ok();
819 }
820
821 binder::Status setGameContentType(const sp<IBinder>& /*display*/, bool /*on*/) override {
822 return binder::Status::ok();
823 }
824
825 binder::Status captureDisplay(const DisplayCaptureArgs&,
826 const sp<IScreenCaptureListener>&) override {
827 return binder::Status::ok();
828 }
829
830 binder::Status captureDisplayById(int64_t, const sp<IScreenCaptureListener>&) override {
831 return binder::Status::ok();
832 }
833
834 binder::Status captureLayers(const LayerCaptureArgs&,
835 const sp<IScreenCaptureListener>&) override {
836 return binder::Status::ok();
837 }
838
Huihong Luo4ed1c912022-02-22 14:30:01 -0800839 binder::Status clearAnimationFrameStats() override { return binder::Status::ok(); }
840
841 binder::Status getAnimationFrameStats(gui::FrameStats* /*outStats*/) override {
842 return binder::Status::ok();
843 }
844
Huihong Luo05539a12022-02-23 10:29:40 -0800845 binder::Status overrideHdrTypes(const sp<IBinder>& /*display*/,
846 const std::vector<int32_t>& /*hdrTypes*/) override {
847 return binder::Status::ok();
848 }
849
850 binder::Status onPullAtom(int32_t /*atomId*/, gui::PullAtomData* /*outPullData*/) override {
851 return binder::Status::ok();
852 }
853
Huihong Luo05539a12022-02-23 10:29:40 -0800854 binder::Status getLayerDebugInfo(std::vector<gui::LayerDebugInfo>* /*outLayers*/) override {
855 return binder::Status::ok();
856 }
857
858 binder::Status getColorManagement(bool* /*outGetColorManagement*/) override {
859 return binder::Status::ok();
860 }
861
862 binder::Status getCompositionPreference(gui::CompositionPreference* /*outPref*/) override {
863 return binder::Status::ok();
864 }
865
866 binder::Status getDisplayedContentSamplingAttributes(
867 const sp<IBinder>& /*display*/, gui::ContentSamplingAttributes* /*outAttrs*/) override {
868 return binder::Status::ok();
869 }
870
871 binder::Status setDisplayContentSamplingEnabled(const sp<IBinder>& /*display*/, bool /*enable*/,
872 int8_t /*componentMask*/,
873 int64_t /*maxFrames*/) override {
874 return binder::Status::ok();
875 }
876
877 binder::Status getProtectedContentSupport(bool* /*outSupporte*/) override {
878 return binder::Status::ok();
879 }
880
Huihong Luo3bdef862022-03-03 11:57:19 -0800881 binder::Status getDisplayedContentSample(const sp<IBinder>& /*display*/, int64_t /*maxFrames*/,
882 int64_t /*timestamp*/,
883 gui::DisplayedFrameStats* /*outStats*/) override {
884 return binder::Status::ok();
885 }
886
Huihong Luoaa7fc2e2022-02-15 10:43:00 -0800887 binder::Status isWideColorDisplay(const sp<IBinder>& /*token*/,
888 bool* /*outIsWideColorDisplay*/) override {
889 return binder::Status::ok();
890 }
891
Huihong Luo02186fb2022-02-23 14:21:54 -0800892 binder::Status addRegionSamplingListener(
893 const gui::ARect& /*samplingArea*/, const sp<IBinder>& /*stopLayerHandle*/,
894 const sp<gui::IRegionSamplingListener>& /*listener*/) override {
895 return binder::Status::ok();
896 }
897
898 binder::Status removeRegionSamplingListener(
899 const sp<gui::IRegionSamplingListener>& /*listener*/) override {
900 return binder::Status::ok();
901 }
902
903 binder::Status addFpsListener(int32_t /*taskId*/,
904 const sp<gui::IFpsListener>& /*listener*/) override {
905 return binder::Status::ok();
906 }
907
908 binder::Status removeFpsListener(const sp<gui::IFpsListener>& /*listener*/) override {
909 return binder::Status::ok();
910 }
911
912 binder::Status addTunnelModeEnabledListener(
913 const sp<gui::ITunnelModeEnabledListener>& /*listener*/) override {
914 return binder::Status::ok();
915 }
916
917 binder::Status removeTunnelModeEnabledListener(
918 const sp<gui::ITunnelModeEnabledListener>& /*listener*/) override {
919 return binder::Status::ok();
920 }
921
922 binder::Status setDesiredDisplayModeSpecs(const sp<IBinder>& /*displayToken*/,
923 int32_t /*defaultMode*/, bool /*allowGroupSwitching*/,
924 float /*primaryRefreshRateMin*/,
925 float /*primaryRefreshRateMax*/,
926 float /*appRequestRefreshRateMin*/,
927 float /*appRequestRefreshRateMax*/) override {
928 return binder::Status::ok();
929 }
930
931 binder::Status getDesiredDisplayModeSpecs(const sp<IBinder>& /*displayToken*/,
932 gui::DisplayModeSpecs* /*outSpecs*/) override {
933 return binder::Status::ok();
934 }
935
Huihong Luoaa7fc2e2022-02-15 10:43:00 -0800936 binder::Status getDisplayBrightnessSupport(const sp<IBinder>& /*displayToken*/,
937 bool* /*outSupport*/) override {
938 return binder::Status::ok();
939 }
940
941 binder::Status setDisplayBrightness(const sp<IBinder>& /*displayToken*/,
942 const gui::DisplayBrightness& /*brightness*/) override {
943 return binder::Status::ok();
944 }
945
946 binder::Status addHdrLayerInfoListener(
947 const sp<IBinder>& /*displayToken*/,
948 const sp<gui::IHdrLayerInfoListener>& /*listener*/) override {
949 return binder::Status::ok();
950 }
951
952 binder::Status removeHdrLayerInfoListener(
953 const sp<IBinder>& /*displayToken*/,
954 const sp<gui::IHdrLayerInfoListener>& /*listener*/) override {
955 return binder::Status::ok();
956 }
957
958 binder::Status notifyPowerBoost(int /*boostId*/) override { return binder::Status::ok(); }
959
Huihong Luo3bdef862022-03-03 11:57:19 -0800960 binder::Status setGlobalShadowSettings(const gui::Color& /*ambientColor*/,
961 const gui::Color& /*spotColor*/, float /*lightPosY*/,
962 float /*lightPosZ*/, float /*lightRadius*/) override {
963 return binder::Status::ok();
964 }
965
966 binder::Status getDisplayDecorationSupport(
967 const sp<IBinder>& /*displayToken*/,
968 std::optional<gui::DisplayDecorationSupport>* /*outSupport*/) override {
969 return binder::Status::ok();
970 }
971
972 binder::Status setOverrideFrameRate(int32_t /*uid*/, float /*frameRate*/) override {
973 return binder::Status::ok();
974 }
975
Huihong Luo02186fb2022-02-23 14:21:54 -0800976 binder::Status getGpuContextPriority(int32_t* /*outPriority*/) override {
977 return binder::Status::ok();
978 }
979
980 binder::Status getMaxAcquiredBufferCount(int32_t* /*buffers*/) override {
981 return binder::Status::ok();
982 }
983
984 binder::Status addWindowInfosListener(
985 const sp<gui::IWindowInfosListener>& /*windowInfosListener*/) override {
986 return binder::Status::ok();
987 }
988
989 binder::Status removeWindowInfosListener(
990 const sp<gui::IWindowInfosListener>& /*windowInfosListener*/) override {
991 return binder::Status::ok();
992 }
993
Sally Qi0cbd08b2022-08-17 12:12:28 -0700994 binder::Status getOverlaySupport(gui::OverlayProperties* /*properties*/) override {
995 return binder::Status::ok();
996 }
997
Huihong Luoaa7fc2e2022-02-15 10:43:00 -0800998protected:
999 IBinder* onAsBinder() override { return nullptr; }
1000
1001private:
1002 bool mSupportsPresent{true};
1003};
1004
Brian Anderson3da8d272016-07-28 16:20:47 -07001005class FakeProducerFrameEventHistory : public ProducerFrameEventHistory {
1006public:
Chih-Hung Hsiehaaf62162018-12-20 15:45:04 -08001007 explicit FakeProducerFrameEventHistory(FenceToFenceTimeMap* fenceMap) : mFenceMap(fenceMap) {}
Brian Anderson3da8d272016-07-28 16:20:47 -07001008
1009 ~FakeProducerFrameEventHistory() {}
1010
1011 void updateAcquireFence(uint64_t frameNumber,
1012 std::shared_ptr<FenceTime>&& acquire) override {
1013 // Verify the acquire fence being added isn't the one from the consumer.
1014 EXPECT_NE(mConsumerAcquireFence, acquire);
1015 // Override the fence, so we can verify this was called by the
1016 // producer after the frame is queued.
1017 ProducerFrameEventHistory::updateAcquireFence(frameNumber,
1018 std::shared_ptr<FenceTime>(mAcquireFenceOverride));
1019 }
1020
1021 void setAcquireFenceOverride(
1022 const std::shared_ptr<FenceTime>& acquireFenceOverride,
1023 const std::shared_ptr<FenceTime>& consumerAcquireFence) {
1024 mAcquireFenceOverride = acquireFenceOverride;
1025 mConsumerAcquireFence = consumerAcquireFence;
1026 }
1027
1028protected:
1029 std::shared_ptr<FenceTime> createFenceTime(const sp<Fence>& fence)
1030 const override {
1031 return mFenceMap->createFenceTimeForTest(fence);
1032 }
1033
1034 FenceToFenceTimeMap* mFenceMap{nullptr};
1035
1036 std::shared_ptr<FenceTime> mAcquireFenceOverride{FenceTime::NO_FENCE};
1037 std::shared_ptr<FenceTime> mConsumerAcquireFence{FenceTime::NO_FENCE};
1038};
1039
1040
1041class TestSurface : public Surface {
1042public:
Huihong Luo0a81aa32022-02-22 16:02:36 -08001043 TestSurface(const sp<IGraphicBufferProducer>& bufferProducer, FenceToFenceTimeMap* fenceMap)
1044 : Surface(bufferProducer),
1045 mFakeSurfaceComposer(new FakeSurfaceComposer),
1046 mFakeSurfaceComposerAIDL(new FakeSurfaceComposerAIDL) {
Brian Anderson3da8d272016-07-28 16:20:47 -07001047 mFakeFrameEventHistory = new FakeProducerFrameEventHistory(fenceMap);
1048 mFrameEventHistory.reset(mFakeFrameEventHistory);
1049 }
1050
1051 ~TestSurface() override {}
1052
1053 sp<ISurfaceComposer> composerService() const override {
1054 return mFakeSurfaceComposer;
1055 }
1056
Huihong Luo0a81aa32022-02-22 16:02:36 -08001057 sp<gui::ISurfaceComposer> composerServiceAIDL() const override {
1058 return mFakeSurfaceComposerAIDL;
1059 }
1060
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001061 nsecs_t now() const override {
1062 return mNow;
1063 }
1064
1065 void setNow(nsecs_t now) {
1066 mNow = now;
1067 }
1068
Brian Anderson3da8d272016-07-28 16:20:47 -07001069public:
1070 sp<FakeSurfaceComposer> mFakeSurfaceComposer;
Huihong Luo0a81aa32022-02-22 16:02:36 -08001071 sp<FakeSurfaceComposerAIDL> mFakeSurfaceComposerAIDL;
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001072 nsecs_t mNow = 0;
Brian Anderson3da8d272016-07-28 16:20:47 -07001073
1074 // mFrameEventHistory owns the instance of FakeProducerFrameEventHistory,
1075 // but this raw pointer gives access to test functionality.
1076 FakeProducerFrameEventHistory* mFakeFrameEventHistory;
1077};
1078
1079
Brian Andersond0010582017-03-07 13:20:31 -08001080class GetFrameTimestampsTest : public ::testing::Test {
Brian Anderson3da8d272016-07-28 16:20:47 -07001081protected:
1082 struct FenceAndFenceTime {
1083 explicit FenceAndFenceTime(FenceToFenceTimeMap& fenceMap)
Dominik Laskowski5a5e01e2022-07-08 07:52:44 -07001084 : mFenceTime(fenceMap.createFenceTimeForTest(mFence)) {}
1085
1086 sp<Fence> mFence = sp<Fence>::make();
1087 std::shared_ptr<FenceTime> mFenceTime;
Brian Anderson3da8d272016-07-28 16:20:47 -07001088 };
1089
Dominik Laskowski5a5e01e2022-07-08 07:52:44 -07001090 static CompositorTiming makeCompositorTiming(nsecs_t deadline = 1'000'000'000,
1091 nsecs_t interval = 16'666'667,
1092 nsecs_t presentLatency = 50'000'000) {
1093 CompositorTiming timing;
1094 timing.deadline = deadline;
1095 timing.interval = interval;
1096 timing.presentLatency = presentLatency;
1097 return timing;
1098 }
1099
Brian Anderson3da8d272016-07-28 16:20:47 -07001100 struct RefreshEvents {
1101 RefreshEvents(FenceToFenceTimeMap& fenceMap, nsecs_t refreshStart)
Dominik Laskowski5a5e01e2022-07-08 07:52:44 -07001102 : mFenceMap(fenceMap),
1103 kCompositorTiming(
1104 makeCompositorTiming(refreshStart, refreshStart + 1, refreshStart + 2)),
1105 kStartTime(refreshStart + 3),
1106 kGpuCompositionDoneTime(refreshStart + 4),
1107 kPresentTime(refreshStart + 5) {}
Brian Anderson3da8d272016-07-28 16:20:47 -07001108
1109 void signalPostCompositeFences() {
1110 mFenceMap.signalAllForTest(
1111 mGpuCompositionDone.mFence, kGpuCompositionDoneTime);
1112 mFenceMap.signalAllForTest(mPresent.mFence, kPresentTime);
1113 }
1114
1115 FenceToFenceTimeMap& mFenceMap;
1116
Dominik Laskowski5a5e01e2022-07-08 07:52:44 -07001117 FenceAndFenceTime mGpuCompositionDone{mFenceMap};
1118 FenceAndFenceTime mPresent{mFenceMap};
Brian Anderson3da8d272016-07-28 16:20:47 -07001119
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001120 const CompositorTiming kCompositorTiming;
1121
Brian Anderson3da8d272016-07-28 16:20:47 -07001122 const nsecs_t kStartTime;
1123 const nsecs_t kGpuCompositionDoneTime;
1124 const nsecs_t kPresentTime;
1125 };
1126
1127 struct FrameEvents {
1128 FrameEvents(FenceToFenceTimeMap& fenceMap, nsecs_t frameStartTime)
1129 : mFenceMap(fenceMap),
1130 kPostedTime(frameStartTime + 100),
1131 kRequestedPresentTime(frameStartTime + 200),
1132 kProducerAcquireTime(frameStartTime + 300),
1133 kConsumerAcquireTime(frameStartTime + 301),
1134 kLatchTime(frameStartTime + 500),
Brian Andersonf6386862016-10-31 16:34:13 -07001135 kDequeueReadyTime(frameStartTime + 600),
Brian Anderson4e606e32017-03-16 15:34:57 -07001136 kReleaseTime(frameStartTime + 700),
Brian Anderson3da8d272016-07-28 16:20:47 -07001137 mRefreshes {
1138 { mFenceMap, frameStartTime + 410 },
1139 { mFenceMap, frameStartTime + 420 },
1140 { mFenceMap, frameStartTime + 430 } } {}
1141
1142 void signalQueueFences() {
1143 mFenceMap.signalAllForTest(
1144 mAcquireConsumer.mFence, kConsumerAcquireTime);
1145 mFenceMap.signalAllForTest(
1146 mAcquireProducer.mFence, kProducerAcquireTime);
1147 }
1148
1149 void signalRefreshFences() {
1150 for (auto& re : mRefreshes) {
1151 re.signalPostCompositeFences();
1152 }
1153 }
1154
1155 void signalReleaseFences() {
Brian Anderson3da8d272016-07-28 16:20:47 -07001156 mFenceMap.signalAllForTest(mRelease.mFence, kReleaseTime);
1157 }
1158
1159 FenceToFenceTimeMap& mFenceMap;
1160
1161 FenceAndFenceTime mAcquireConsumer { mFenceMap };
1162 FenceAndFenceTime mAcquireProducer { mFenceMap };
Brian Anderson3da8d272016-07-28 16:20:47 -07001163 FenceAndFenceTime mRelease { mFenceMap };
1164
1165 const nsecs_t kPostedTime;
1166 const nsecs_t kRequestedPresentTime;
1167 const nsecs_t kProducerAcquireTime;
1168 const nsecs_t kConsumerAcquireTime;
1169 const nsecs_t kLatchTime;
Brian Andersonf6386862016-10-31 16:34:13 -07001170 const nsecs_t kDequeueReadyTime;
Brian Anderson3da8d272016-07-28 16:20:47 -07001171 const nsecs_t kReleaseTime;
1172
1173 RefreshEvents mRefreshes[3];
1174 };
1175
Brian Andersond0010582017-03-07 13:20:31 -08001176 GetFrameTimestampsTest() {}
Brian Anderson3da8d272016-07-28 16:20:47 -07001177
1178 virtual void SetUp() {
Brian Anderson3da8d272016-07-28 16:20:47 -07001179 BufferQueue::createBufferQueue(&mProducer, &mConsumer);
1180 mFakeConsumer = new FakeConsumer;
1181 mCfeh = &mFakeConsumer->mFrameEventHistory;
1182 mConsumer->consumerConnect(mFakeConsumer, false);
1183 mConsumer->setConsumerName(String8("TestConsumer"));
1184 mSurface = new TestSurface(mProducer, &mFenceMap);
1185 mWindow = mSurface;
1186
1187 ASSERT_EQ(NO_ERROR, native_window_api_connect(mWindow.get(),
1188 NATIVE_WINDOW_API_CPU));
1189 native_window_set_buffer_count(mWindow.get(), 4);
1190 }
1191
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001192 void disableFrameTimestamps() {
1193 mFakeConsumer->mGetFrameTimestampsEnabled = false;
1194 native_window_enable_frame_timestamps(mWindow.get(), 0);
1195 mFrameTimestampsEnabled = false;
1196 }
1197
Brian Anderson3da8d272016-07-28 16:20:47 -07001198 void enableFrameTimestamps() {
1199 mFakeConsumer->mGetFrameTimestampsEnabled = true;
1200 native_window_enable_frame_timestamps(mWindow.get(), 1);
1201 mFrameTimestampsEnabled = true;
1202 }
1203
Brian Anderson1049d1d2016-12-16 17:25:57 -08001204 int getAllFrameTimestamps(uint64_t frameId) {
1205 return native_window_get_frame_timestamps(mWindow.get(), frameId,
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001206 &outRequestedPresentTime, &outAcquireTime, &outLatchTime,
1207 &outFirstRefreshStartTime, &outLastRefreshStartTime,
1208 &outGpuCompositionDoneTime, &outDisplayPresentTime,
Brian Anderson4e606e32017-03-16 15:34:57 -07001209 &outDequeueReadyTime, &outReleaseTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001210 }
1211
Brian Anderson3da8d272016-07-28 16:20:47 -07001212 void resetTimestamps() {
1213 outRequestedPresentTime = -1;
1214 outAcquireTime = -1;
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001215 outLatchTime = -1;
1216 outFirstRefreshStartTime = -1;
1217 outLastRefreshStartTime = -1;
Brian Anderson3da8d272016-07-28 16:20:47 -07001218 outGpuCompositionDoneTime = -1;
1219 outDisplayPresentTime = -1;
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001220 outDequeueReadyTime = -1;
Brian Anderson3da8d272016-07-28 16:20:47 -07001221 outReleaseTime = -1;
1222 }
1223
Brian Anderson1049d1d2016-12-16 17:25:57 -08001224 uint64_t getNextFrameId() {
1225 uint64_t frameId = -1;
1226 int status = native_window_get_next_frame_id(mWindow.get(), &frameId);
1227 EXPECT_EQ(status, NO_ERROR);
1228 return frameId;
1229 }
1230
Brian Anderson3da8d272016-07-28 16:20:47 -07001231 void dequeueAndQueue(uint64_t frameIndex) {
1232 int fence = -1;
1233 ANativeWindowBuffer* buffer = nullptr;
1234 ASSERT_EQ(NO_ERROR,
1235 mWindow->dequeueBuffer(mWindow.get(), &buffer, &fence));
1236
1237 int oldAddFrameTimestampsCount =
1238 mFakeConsumer->mAddFrameTimestampsCount;
1239
1240 FrameEvents* frame = &mFrames[frameIndex];
1241 uint64_t frameNumber = frameIndex + 1;
1242
1243 NewFrameEventsEntry fe;
1244 fe.frameNumber = frameNumber;
1245 fe.postedTime = frame->kPostedTime;
1246 fe.requestedPresentTime = frame->kRequestedPresentTime;
1247 fe.acquireFence = frame->mAcquireConsumer.mFenceTime;
1248 mFakeConsumer->mNewFrameEntryOverride = fe;
1249
1250 mSurface->mFakeFrameEventHistory->setAcquireFenceOverride(
1251 frame->mAcquireProducer.mFenceTime,
1252 frame->mAcquireConsumer.mFenceTime);
1253
1254 ASSERT_EQ(NO_ERROR, mWindow->queueBuffer(mWindow.get(), buffer, fence));
1255
1256 EXPECT_EQ(frameNumber, mFakeConsumer->mLastAddedFrameNumber);
1257
1258 EXPECT_EQ(
1259 oldAddFrameTimestampsCount + (mFrameTimestampsEnabled ? 1 : 0),
1260 mFakeConsumer->mAddFrameTimestampsCount);
1261 }
1262
1263 void addFrameEvents(
1264 bool gpuComposited, uint64_t iOldFrame, int64_t iNewFrame) {
1265 FrameEvents* oldFrame =
1266 (iOldFrame == NO_FRAME_INDEX) ? nullptr : &mFrames[iOldFrame];
1267 FrameEvents* newFrame = &mFrames[iNewFrame];
1268
Courtney Goeltzenleuchter5e921442018-01-19 13:43:43 -08001269 uint64_t nOldFrame = (iOldFrame == NO_FRAME_INDEX) ? 0 : iOldFrame + 1;
Brian Anderson3da8d272016-07-28 16:20:47 -07001270 uint64_t nNewFrame = iNewFrame + 1;
1271
Brian Anderson4e606e32017-03-16 15:34:57 -07001272 // Latch, Composite, and Release the frames in a plausible order.
1273 // Note: The timestamps won't necessarily match the order, but
Brian Anderson3da8d272016-07-28 16:20:47 -07001274 // that's okay for the purposes of this test.
1275 std::shared_ptr<FenceTime> gpuDoneFenceTime = FenceTime::NO_FENCE;
1276
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001277 // Composite the previous frame one more time, which helps verify
1278 // LastRefresh is updated properly.
1279 if (oldFrame != nullptr) {
1280 mCfeh->addPreComposition(nOldFrame,
1281 oldFrame->mRefreshes[2].kStartTime);
1282 gpuDoneFenceTime = gpuComposited ?
1283 oldFrame->mRefreshes[2].mGpuCompositionDone.mFenceTime :
1284 FenceTime::NO_FENCE;
1285 mCfeh->addPostComposition(nOldFrame, gpuDoneFenceTime,
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001286 oldFrame->mRefreshes[2].mPresent.mFenceTime,
1287 oldFrame->mRefreshes[2].kCompositorTiming);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001288 }
1289
1290 // Latch the new frame.
Brian Anderson3da8d272016-07-28 16:20:47 -07001291 mCfeh->addLatch(nNewFrame, newFrame->kLatchTime);
1292
1293 mCfeh->addPreComposition(nNewFrame, newFrame->mRefreshes[0].kStartTime);
1294 gpuDoneFenceTime = gpuComposited ?
1295 newFrame->mRefreshes[0].mGpuCompositionDone.mFenceTime :
1296 FenceTime::NO_FENCE;
1297 // HWC2 releases the previous buffer after a new latch just before
1298 // calling postComposition.
1299 if (oldFrame != nullptr) {
Brian Andersonf6386862016-10-31 16:34:13 -07001300 mCfeh->addRelease(nOldFrame, oldFrame->kDequeueReadyTime,
Brian Anderson3da8d272016-07-28 16:20:47 -07001301 std::shared_ptr<FenceTime>(oldFrame->mRelease.mFenceTime));
1302 }
1303 mCfeh->addPostComposition(nNewFrame, gpuDoneFenceTime,
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001304 newFrame->mRefreshes[0].mPresent.mFenceTime,
1305 newFrame->mRefreshes[0].kCompositorTiming);
Brian Anderson3da8d272016-07-28 16:20:47 -07001306
Brian Anderson3da8d272016-07-28 16:20:47 -07001307 mCfeh->addPreComposition(nNewFrame, newFrame->mRefreshes[1].kStartTime);
1308 gpuDoneFenceTime = gpuComposited ?
1309 newFrame->mRefreshes[1].mGpuCompositionDone.mFenceTime :
1310 FenceTime::NO_FENCE;
1311 mCfeh->addPostComposition(nNewFrame, gpuDoneFenceTime,
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001312 newFrame->mRefreshes[1].mPresent.mFenceTime,
1313 newFrame->mRefreshes[1].kCompositorTiming);
Brian Anderson3da8d272016-07-28 16:20:47 -07001314 }
1315
Brian Anderson3da8d272016-07-28 16:20:47 -07001316 sp<IGraphicBufferProducer> mProducer;
1317 sp<IGraphicBufferConsumer> mConsumer;
1318 sp<FakeConsumer> mFakeConsumer;
1319 ConsumerFrameEventHistory* mCfeh;
1320 sp<TestSurface> mSurface;
1321 sp<ANativeWindow> mWindow;
1322
1323 FenceToFenceTimeMap mFenceMap;
1324
1325 bool mFrameTimestampsEnabled = false;
1326
1327 int64_t outRequestedPresentTime = -1;
1328 int64_t outAcquireTime = -1;
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001329 int64_t outLatchTime = -1;
1330 int64_t outFirstRefreshStartTime = -1;
1331 int64_t outLastRefreshStartTime = -1;
Brian Anderson3da8d272016-07-28 16:20:47 -07001332 int64_t outGpuCompositionDoneTime = -1;
1333 int64_t outDisplayPresentTime = -1;
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001334 int64_t outDequeueReadyTime = -1;
Brian Anderson3da8d272016-07-28 16:20:47 -07001335 int64_t outReleaseTime = -1;
1336
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001337 FrameEvents mFrames[3] {
1338 { mFenceMap, 1000 }, { mFenceMap, 2000 }, { mFenceMap, 3000 } };
Brian Anderson3da8d272016-07-28 16:20:47 -07001339};
1340
1341
1342// This test verifies that the frame timestamps are not retrieved when not
1343// explicitly enabled via native_window_enable_frame_timestamps.
1344// We want to check this to make sure there's no overhead for users
1345// that don't need the timestamp information.
1346TEST_F(GetFrameTimestampsTest, DefaultDisabled) {
1347 int fence;
1348 ANativeWindowBuffer* buffer;
1349
1350 EXPECT_EQ(0, mFakeConsumer->mAddFrameTimestampsCount);
1351 EXPECT_EQ(0, mFakeConsumer->mGetFrameTimestampsCount);
1352
Brian Anderson1049d1d2016-12-16 17:25:57 -08001353 const uint64_t fId = getNextFrameId();
1354
Brian Anderson3da8d272016-07-28 16:20:47 -07001355 // Verify the producer doesn't get frame timestamps piggybacked on dequeue.
1356 ASSERT_EQ(NO_ERROR, mWindow->dequeueBuffer(mWindow.get(), &buffer, &fence));
1357 EXPECT_EQ(0, mFakeConsumer->mAddFrameTimestampsCount);
1358 EXPECT_EQ(0, mFakeConsumer->mGetFrameTimestampsCount);
1359
1360 // Verify the producer doesn't get frame timestamps piggybacked on queue.
1361 // It is okay that frame timestamps are added in the consumer since it is
1362 // still needed for SurfaceFlinger dumps.
1363 ASSERT_EQ(NO_ERROR, mWindow->queueBuffer(mWindow.get(), buffer, fence));
1364 EXPECT_EQ(1, mFakeConsumer->mAddFrameTimestampsCount);
1365 EXPECT_EQ(0, mFakeConsumer->mGetFrameTimestampsCount);
1366
1367 // Verify attempts to get frame timestamps fail.
Brian Anderson1049d1d2016-12-16 17:25:57 -08001368 int result = getAllFrameTimestamps(fId);
Brian Anderson3da8d272016-07-28 16:20:47 -07001369 EXPECT_EQ(INVALID_OPERATION, result);
1370 EXPECT_EQ(0, mFakeConsumer->mGetFrameTimestampsCount);
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001371
1372 // Verify compositor timing query fails.
1373 nsecs_t compositeDeadline = 0;
1374 nsecs_t compositeInterval = 0;
1375 nsecs_t compositeToPresentLatency = 0;
1376 result = native_window_get_compositor_timing(mWindow.get(),
1377 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1378 EXPECT_EQ(INVALID_OPERATION, result);
Brian Anderson3da8d272016-07-28 16:20:47 -07001379}
1380
1381// This test verifies that the frame timestamps are retrieved if explicitly
1382// enabled via native_window_enable_frame_timestamps.
1383TEST_F(GetFrameTimestampsTest, EnabledSimple) {
Dominik Laskowski5a5e01e2022-07-08 07:52:44 -07001384 const CompositorTiming initialCompositorTiming = makeCompositorTiming();
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001385 mCfeh->initializeCompositorTiming(initialCompositorTiming);
1386
Brian Anderson3da8d272016-07-28 16:20:47 -07001387 enableFrameTimestamps();
1388
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001389 // Verify the compositor timing query gets the initial compositor values
1390 // after timststamps are enabled; even before the first frame is queued
1391 // or dequeued.
1392 nsecs_t compositeDeadline = 0;
1393 nsecs_t compositeInterval = 0;
1394 nsecs_t compositeToPresentLatency = 0;
1395 mSurface->setNow(initialCompositorTiming.deadline - 1);
1396 int result = native_window_get_compositor_timing(mWindow.get(),
1397 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1398 EXPECT_EQ(NO_ERROR, result);
1399 EXPECT_EQ(initialCompositorTiming.deadline, compositeDeadline);
1400 EXPECT_EQ(initialCompositorTiming.interval, compositeInterval);
1401 EXPECT_EQ(initialCompositorTiming.presentLatency,
1402 compositeToPresentLatency);
1403
Brian Anderson3da8d272016-07-28 16:20:47 -07001404 int fence;
1405 ANativeWindowBuffer* buffer;
1406
1407 EXPECT_EQ(0, mFakeConsumer->mAddFrameTimestampsCount);
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001408 EXPECT_EQ(1, mFakeConsumer->mGetFrameTimestampsCount);
Brian Anderson3da8d272016-07-28 16:20:47 -07001409
Brian Anderson1049d1d2016-12-16 17:25:57 -08001410 const uint64_t fId1 = getNextFrameId();
1411
Brian Anderson3da8d272016-07-28 16:20:47 -07001412 // Verify getFrameTimestamps is piggybacked on dequeue.
1413 ASSERT_EQ(NO_ERROR, mWindow->dequeueBuffer(mWindow.get(), &buffer, &fence));
1414 EXPECT_EQ(0, mFakeConsumer->mAddFrameTimestampsCount);
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001415 EXPECT_EQ(2, mFakeConsumer->mGetFrameTimestampsCount);
Brian Anderson3da8d272016-07-28 16:20:47 -07001416
1417 NewFrameEventsEntry f1;
1418 f1.frameNumber = 1;
1419 f1.postedTime = mFrames[0].kPostedTime;
1420 f1.requestedPresentTime = mFrames[0].kRequestedPresentTime;
1421 f1.acquireFence = mFrames[0].mAcquireConsumer.mFenceTime;
1422 mSurface->mFakeFrameEventHistory->setAcquireFenceOverride(
1423 mFrames[0].mAcquireProducer.mFenceTime,
1424 mFrames[0].mAcquireConsumer.mFenceTime);
1425 mFakeConsumer->mNewFrameEntryOverride = f1;
1426 mFrames[0].signalQueueFences();
1427
1428 // Verify getFrameTimestamps is piggybacked on queue.
1429 ASSERT_EQ(NO_ERROR, mWindow->queueBuffer(mWindow.get(), buffer, fence));
1430 EXPECT_EQ(1, mFakeConsumer->mAddFrameTimestampsCount);
1431 EXPECT_EQ(1u, mFakeConsumer->mLastAddedFrameNumber);
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001432 EXPECT_EQ(3, mFakeConsumer->mGetFrameTimestampsCount);
Brian Anderson3da8d272016-07-28 16:20:47 -07001433
1434 // Verify queries for timestamps that the producer doesn't know about
1435 // triggers a call to see if the consumer has any new timestamps.
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001436 result = getAllFrameTimestamps(fId1);
Brian Anderson3da8d272016-07-28 16:20:47 -07001437 EXPECT_EQ(NO_ERROR, result);
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001438 EXPECT_EQ(4, mFakeConsumer->mGetFrameTimestampsCount);
Brian Anderson3da8d272016-07-28 16:20:47 -07001439}
1440
Brian Anderson6b376712017-04-04 10:51:39 -07001441TEST_F(GetFrameTimestampsTest, QueryPresentSupported) {
1442 bool displayPresentSupported = true;
1443 mSurface->mFakeSurfaceComposer->setSupportsPresent(displayPresentSupported);
Huihong Luo0a81aa32022-02-22 16:02:36 -08001444 mSurface->mFakeSurfaceComposerAIDL->setSupportsPresent(displayPresentSupported);
Brian Anderson6b376712017-04-04 10:51:39 -07001445
1446 // Verify supported bits are forwarded.
1447 int supportsPresent = -1;
1448 mWindow.get()->query(mWindow.get(),
1449 NATIVE_WINDOW_FRAME_TIMESTAMPS_SUPPORTS_PRESENT, &supportsPresent);
1450 EXPECT_EQ(displayPresentSupported, supportsPresent);
1451}
1452
1453TEST_F(GetFrameTimestampsTest, QueryPresentNotSupported) {
1454 bool displayPresentSupported = false;
1455 mSurface->mFakeSurfaceComposer->setSupportsPresent(displayPresentSupported);
Huihong Luo0a81aa32022-02-22 16:02:36 -08001456 mSurface->mFakeSurfaceComposerAIDL->setSupportsPresent(displayPresentSupported);
Brian Anderson6b376712017-04-04 10:51:39 -07001457
1458 // Verify supported bits are forwarded.
1459 int supportsPresent = -1;
1460 mWindow.get()->query(mWindow.get(),
1461 NATIVE_WINDOW_FRAME_TIMESTAMPS_SUPPORTS_PRESENT, &supportsPresent);
1462 EXPECT_EQ(displayPresentSupported, supportsPresent);
1463}
1464
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001465TEST_F(GetFrameTimestampsTest, SnapToNextTickBasic) {
1466 nsecs_t phase = 4000;
1467 nsecs_t interval = 1000;
1468
1469 // Timestamp in previous interval.
1470 nsecs_t timestamp = 3500;
1471 EXPECT_EQ(4000, ProducerFrameEventHistory::snapToNextTick(
1472 timestamp, phase, interval));
1473
1474 // Timestamp in next interval.
1475 timestamp = 4500;
1476 EXPECT_EQ(5000, ProducerFrameEventHistory::snapToNextTick(
1477 timestamp, phase, interval));
1478
1479 // Timestamp multiple intervals before.
1480 timestamp = 2500;
1481 EXPECT_EQ(3000, ProducerFrameEventHistory::snapToNextTick(
1482 timestamp, phase, interval));
1483
1484 // Timestamp multiple intervals after.
1485 timestamp = 6500;
1486 EXPECT_EQ(7000, ProducerFrameEventHistory::snapToNextTick(
1487 timestamp, phase, interval));
1488
1489 // Timestamp on previous interval.
1490 timestamp = 3000;
1491 EXPECT_EQ(3000, ProducerFrameEventHistory::snapToNextTick(
1492 timestamp, phase, interval));
1493
1494 // Timestamp on next interval.
1495 timestamp = 5000;
1496 EXPECT_EQ(5000, ProducerFrameEventHistory::snapToNextTick(
1497 timestamp, phase, interval));
1498
1499 // Timestamp equal to phase.
1500 timestamp = 4000;
1501 EXPECT_EQ(4000, ProducerFrameEventHistory::snapToNextTick(
1502 timestamp, phase, interval));
1503}
1504
1505// int(big_timestamp / interval) < 0, which can cause a crash or invalid result
1506// if the number of intervals elapsed is internally stored in an int.
1507TEST_F(GetFrameTimestampsTest, SnapToNextTickOverflow) {
1508 nsecs_t phase = 0;
1509 nsecs_t interval = 4000;
1510 nsecs_t big_timestamp = 8635916564000;
1511 int32_t intervals = big_timestamp / interval;
1512
1513 EXPECT_LT(intervals, 0);
1514 EXPECT_EQ(8635916564000, ProducerFrameEventHistory::snapToNextTick(
1515 big_timestamp, phase, interval));
1516 EXPECT_EQ(8635916564000, ProducerFrameEventHistory::snapToNextTick(
1517 big_timestamp, big_timestamp, interval));
1518}
1519
1520// This verifies the compositor timing is updated by refresh events
1521// and piggy backed on a queue, dequeue, and enabling of timestamps..
1522TEST_F(GetFrameTimestampsTest, CompositorTimingUpdatesBasic) {
Dominik Laskowski5a5e01e2022-07-08 07:52:44 -07001523 const CompositorTiming initialCompositorTiming = makeCompositorTiming();
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001524 mCfeh->initializeCompositorTiming(initialCompositorTiming);
1525
1526 enableFrameTimestamps();
1527
1528 // We get the initial values before any frames are submitted.
1529 nsecs_t compositeDeadline = 0;
1530 nsecs_t compositeInterval = 0;
1531 nsecs_t compositeToPresentLatency = 0;
1532 mSurface->setNow(initialCompositorTiming.deadline - 1);
1533 int result = native_window_get_compositor_timing(mWindow.get(),
1534 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1535 EXPECT_EQ(NO_ERROR, result);
1536 EXPECT_EQ(initialCompositorTiming.deadline, compositeDeadline);
1537 EXPECT_EQ(initialCompositorTiming.interval, compositeInterval);
1538 EXPECT_EQ(initialCompositorTiming.presentLatency,
1539 compositeToPresentLatency);
1540
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001541 dequeueAndQueue(0);
1542 addFrameEvents(true, NO_FRAME_INDEX, 0);
1543
1544 // Still get the initial values because the frame events for frame 0
1545 // didn't get a chance to piggyback on a queue or dequeue yet.
1546 result = native_window_get_compositor_timing(mWindow.get(),
1547 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1548 EXPECT_EQ(NO_ERROR, result);
1549 EXPECT_EQ(initialCompositorTiming.deadline, compositeDeadline);
1550 EXPECT_EQ(initialCompositorTiming.interval, compositeInterval);
1551 EXPECT_EQ(initialCompositorTiming.presentLatency,
1552 compositeToPresentLatency);
1553
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001554 dequeueAndQueue(1);
1555 addFrameEvents(true, 0, 1);
1556
1557 // Now expect the composite values associated with frame 1.
1558 mSurface->setNow(mFrames[0].mRefreshes[1].kCompositorTiming.deadline);
1559 result = native_window_get_compositor_timing(mWindow.get(),
1560 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1561 EXPECT_EQ(NO_ERROR, result);
1562 EXPECT_EQ(mFrames[0].mRefreshes[1].kCompositorTiming.deadline,
1563 compositeDeadline);
1564 EXPECT_EQ(mFrames[0].mRefreshes[1].kCompositorTiming.interval,
1565 compositeInterval);
1566 EXPECT_EQ(mFrames[0].mRefreshes[1].kCompositorTiming.presentLatency,
1567 compositeToPresentLatency);
1568
1569 dequeueAndQueue(2);
1570 addFrameEvents(true, 1, 2);
1571
1572 // Now expect the composite values associated with frame 2.
1573 mSurface->setNow(mFrames[1].mRefreshes[1].kCompositorTiming.deadline);
1574 result = native_window_get_compositor_timing(mWindow.get(),
1575 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1576 EXPECT_EQ(NO_ERROR, result);
1577 EXPECT_EQ(mFrames[1].mRefreshes[1].kCompositorTiming.deadline,
1578 compositeDeadline);
1579 EXPECT_EQ(mFrames[1].mRefreshes[1].kCompositorTiming.interval,
1580 compositeInterval);
1581 EXPECT_EQ(mFrames[1].mRefreshes[1].kCompositorTiming.presentLatency,
1582 compositeToPresentLatency);
1583
1584 // Re-enabling frame timestamps should get the latest values.
1585 disableFrameTimestamps();
1586 enableFrameTimestamps();
1587
1588 // Now expect the composite values associated with frame 3.
1589 mSurface->setNow(mFrames[2].mRefreshes[1].kCompositorTiming.deadline);
1590 result = native_window_get_compositor_timing(mWindow.get(),
1591 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1592 EXPECT_EQ(NO_ERROR, result);
1593 EXPECT_EQ(mFrames[2].mRefreshes[1].kCompositorTiming.deadline,
1594 compositeDeadline);
1595 EXPECT_EQ(mFrames[2].mRefreshes[1].kCompositorTiming.interval,
1596 compositeInterval);
1597 EXPECT_EQ(mFrames[2].mRefreshes[1].kCompositorTiming.presentLatency,
1598 compositeToPresentLatency);
1599}
1600
1601// This verifies the compositor deadline properly snaps to the the next
1602// deadline based on the current time.
1603TEST_F(GetFrameTimestampsTest, CompositorTimingDeadlineSnaps) {
Dominik Laskowski5a5e01e2022-07-08 07:52:44 -07001604 const CompositorTiming initialCompositorTiming = makeCompositorTiming();
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001605 mCfeh->initializeCompositorTiming(initialCompositorTiming);
1606
1607 enableFrameTimestamps();
1608
1609 nsecs_t compositeDeadline = 0;
1610 nsecs_t compositeInterval = 0;
1611 nsecs_t compositeToPresentLatency = 0;
1612
1613 // A "now" just before the deadline snaps to the deadline.
1614 mSurface->setNow(initialCompositorTiming.deadline - 1);
1615 int result = native_window_get_compositor_timing(mWindow.get(),
1616 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1617 EXPECT_EQ(NO_ERROR, result);
1618 EXPECT_EQ(initialCompositorTiming.deadline, compositeDeadline);
1619 nsecs_t expectedDeadline = initialCompositorTiming.deadline;
1620 EXPECT_EQ(expectedDeadline, compositeDeadline);
1621
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001622 dequeueAndQueue(0);
1623 addFrameEvents(true, NO_FRAME_INDEX, 0);
1624
1625 // A "now" just after the deadline snaps properly.
1626 mSurface->setNow(initialCompositorTiming.deadline + 1);
1627 result = native_window_get_compositor_timing(mWindow.get(),
1628 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1629 EXPECT_EQ(NO_ERROR, result);
1630 expectedDeadline =
1631 initialCompositorTiming.deadline +initialCompositorTiming.interval;
1632 EXPECT_EQ(expectedDeadline, compositeDeadline);
1633
Brian Anderson0a61b0c2016-12-07 14:55:56 -08001634 dequeueAndQueue(1);
1635 addFrameEvents(true, 0, 1);
1636
1637 // A "now" just after the next interval snaps properly.
1638 mSurface->setNow(
1639 mFrames[0].mRefreshes[1].kCompositorTiming.deadline +
1640 mFrames[0].mRefreshes[1].kCompositorTiming.interval + 1);
1641 result = native_window_get_compositor_timing(mWindow.get(),
1642 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1643 EXPECT_EQ(NO_ERROR, result);
1644 expectedDeadline =
1645 mFrames[0].mRefreshes[1].kCompositorTiming.deadline +
1646 mFrames[0].mRefreshes[1].kCompositorTiming.interval * 2;
1647 EXPECT_EQ(expectedDeadline, compositeDeadline);
1648
1649 dequeueAndQueue(2);
1650 addFrameEvents(true, 1, 2);
1651
1652 // A "now" over 1 interval before the deadline snaps properly.
1653 mSurface->setNow(
1654 mFrames[1].mRefreshes[1].kCompositorTiming.deadline -
1655 mFrames[1].mRefreshes[1].kCompositorTiming.interval - 1);
1656 result = native_window_get_compositor_timing(mWindow.get(),
1657 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1658 EXPECT_EQ(NO_ERROR, result);
1659 expectedDeadline =
1660 mFrames[1].mRefreshes[1].kCompositorTiming.deadline -
1661 mFrames[1].mRefreshes[1].kCompositorTiming.interval;
1662 EXPECT_EQ(expectedDeadline, compositeDeadline);
1663
1664 // Re-enabling frame timestamps should get the latest values.
1665 disableFrameTimestamps();
1666 enableFrameTimestamps();
1667
1668 // A "now" over 2 intervals before the deadline snaps properly.
1669 mSurface->setNow(
1670 mFrames[2].mRefreshes[1].kCompositorTiming.deadline -
1671 mFrames[2].mRefreshes[1].kCompositorTiming.interval * 2 - 1);
1672 result = native_window_get_compositor_timing(mWindow.get(),
1673 &compositeDeadline, &compositeInterval, &compositeToPresentLatency);
1674 EXPECT_EQ(NO_ERROR, result);
1675 expectedDeadline =
1676 mFrames[2].mRefreshes[1].kCompositorTiming.deadline -
1677 mFrames[2].mRefreshes[1].kCompositorTiming.interval * 2;
1678 EXPECT_EQ(expectedDeadline, compositeDeadline);
1679}
1680
Brian Anderson1049d1d2016-12-16 17:25:57 -08001681// This verifies the timestamps recorded in the consumer's
1682// FrameTimestampsHistory are properly retrieved by the producer for the
1683// correct frames.
Brian Anderson3da8d272016-07-28 16:20:47 -07001684TEST_F(GetFrameTimestampsTest, TimestampsAssociatedWithCorrectFrame) {
1685 enableFrameTimestamps();
1686
Brian Anderson1049d1d2016-12-16 17:25:57 -08001687 const uint64_t fId1 = getNextFrameId();
Brian Anderson3da8d272016-07-28 16:20:47 -07001688 dequeueAndQueue(0);
1689 mFrames[0].signalQueueFences();
1690
Brian Anderson1049d1d2016-12-16 17:25:57 -08001691 const uint64_t fId2 = getNextFrameId();
Brian Anderson3da8d272016-07-28 16:20:47 -07001692 dequeueAndQueue(1);
1693 mFrames[1].signalQueueFences();
1694
1695 addFrameEvents(true, NO_FRAME_INDEX, 0);
1696 mFrames[0].signalRefreshFences();
1697 addFrameEvents(true, 0, 1);
1698 mFrames[0].signalReleaseFences();
1699 mFrames[1].signalRefreshFences();
1700
1701 // Verify timestamps are correct for frame 1.
Brian Anderson3da8d272016-07-28 16:20:47 -07001702 resetTimestamps();
Brian Anderson1049d1d2016-12-16 17:25:57 -08001703 int result = getAllFrameTimestamps(fId1);
Brian Anderson3da8d272016-07-28 16:20:47 -07001704 EXPECT_EQ(NO_ERROR, result);
1705 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1706 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001707 EXPECT_EQ(mFrames[0].kLatchTime, outLatchTime);
1708 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outFirstRefreshStartTime);
1709 EXPECT_EQ(mFrames[0].mRefreshes[2].kStartTime, outLastRefreshStartTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001710 EXPECT_EQ(mFrames[0].mRefreshes[0].kGpuCompositionDoneTime,
1711 outGpuCompositionDoneTime);
1712 EXPECT_EQ(mFrames[0].mRefreshes[0].kPresentTime, outDisplayPresentTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001713 EXPECT_EQ(mFrames[0].kDequeueReadyTime, outDequeueReadyTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001714 EXPECT_EQ(mFrames[0].kReleaseTime, outReleaseTime);
1715
1716 // Verify timestamps are correct for frame 2.
Brian Anderson3da8d272016-07-28 16:20:47 -07001717 resetTimestamps();
Brian Anderson1049d1d2016-12-16 17:25:57 -08001718 result = getAllFrameTimestamps(fId2);
Brian Anderson3da8d272016-07-28 16:20:47 -07001719 EXPECT_EQ(NO_ERROR, result);
1720 EXPECT_EQ(mFrames[1].kRequestedPresentTime, outRequestedPresentTime);
1721 EXPECT_EQ(mFrames[1].kProducerAcquireTime, outAcquireTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001722 EXPECT_EQ(mFrames[1].kLatchTime, outLatchTime);
1723 EXPECT_EQ(mFrames[1].mRefreshes[0].kStartTime, outFirstRefreshStartTime);
1724 EXPECT_EQ(mFrames[1].mRefreshes[1].kStartTime, outLastRefreshStartTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001725 EXPECT_EQ(mFrames[1].mRefreshes[0].kGpuCompositionDoneTime,
1726 outGpuCompositionDoneTime);
1727 EXPECT_EQ(mFrames[1].mRefreshes[0].kPresentTime, outDisplayPresentTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001728 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outDequeueReadyTime);
1729 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outReleaseTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001730}
1731
1732// This test verifies the acquire fence recorded by the consumer is not sent
1733// back to the producer and the producer saves its own fence.
1734TEST_F(GetFrameTimestampsTest, QueueTimestampsNoSync) {
1735 enableFrameTimestamps();
Brian Anderson3da8d272016-07-28 16:20:47 -07001736
Brian Anderson3da8d272016-07-28 16:20:47 -07001737 // Dequeue and queue frame 1.
Brian Anderson1049d1d2016-12-16 17:25:57 -08001738 const uint64_t fId1 = getNextFrameId();
Brian Anderson3da8d272016-07-28 16:20:47 -07001739 dequeueAndQueue(0);
1740
1741 // Verify queue-related timestamps for f1 are available immediately in the
1742 // producer without asking the consumer again, even before signaling the
1743 // acquire fence.
1744 resetTimestamps();
1745 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08001746 int result = native_window_get_frame_timestamps(mWindow.get(), fId1,
Brian Anderson3da8d272016-07-28 16:20:47 -07001747 &outRequestedPresentTime, &outAcquireTime, nullptr, nullptr,
Brian Anderson4e606e32017-03-16 15:34:57 -07001748 nullptr, nullptr, nullptr, nullptr, nullptr);
Brian Anderson3da8d272016-07-28 16:20:47 -07001749 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1750 EXPECT_EQ(NO_ERROR, result);
1751 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001752 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outAcquireTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001753
1754 // Signal acquire fences. Verify a sync call still isn't necessary.
1755 mFrames[0].signalQueueFences();
1756
1757 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08001758 result = native_window_get_frame_timestamps(mWindow.get(), fId1,
Brian Anderson3da8d272016-07-28 16:20:47 -07001759 &outRequestedPresentTime, &outAcquireTime, nullptr, nullptr,
Brian Anderson4e606e32017-03-16 15:34:57 -07001760 nullptr, nullptr, nullptr, nullptr, nullptr);
Brian Anderson3da8d272016-07-28 16:20:47 -07001761 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1762 EXPECT_EQ(NO_ERROR, result);
1763 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1764 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
1765
1766 // Dequeue and queue frame 2.
Brian Anderson1049d1d2016-12-16 17:25:57 -08001767 const uint64_t fId2 = getNextFrameId();
Brian Anderson3da8d272016-07-28 16:20:47 -07001768 dequeueAndQueue(1);
1769
1770 // Verify queue-related timestamps for f2 are available immediately in the
1771 // producer without asking the consumer again, even before signaling the
1772 // acquire fence.
1773 resetTimestamps();
1774 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08001775 result = native_window_get_frame_timestamps(mWindow.get(), fId2,
Brian Anderson3da8d272016-07-28 16:20:47 -07001776 &outRequestedPresentTime, &outAcquireTime, nullptr, nullptr,
Brian Anderson4e606e32017-03-16 15:34:57 -07001777 nullptr, nullptr, nullptr, nullptr, nullptr);
Brian Anderson3da8d272016-07-28 16:20:47 -07001778 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1779 EXPECT_EQ(NO_ERROR, result);
1780 EXPECT_EQ(mFrames[1].kRequestedPresentTime, outRequestedPresentTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001781 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outAcquireTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001782
1783 // Signal acquire fences. Verify a sync call still isn't necessary.
1784 mFrames[1].signalQueueFences();
1785
1786 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08001787 result = native_window_get_frame_timestamps(mWindow.get(), fId2,
Brian Anderson3da8d272016-07-28 16:20:47 -07001788 &outRequestedPresentTime, &outAcquireTime, nullptr, nullptr,
Brian Anderson4e606e32017-03-16 15:34:57 -07001789 nullptr, nullptr, nullptr, nullptr, nullptr);
Brian Anderson3da8d272016-07-28 16:20:47 -07001790 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1791 EXPECT_EQ(NO_ERROR, result);
1792 EXPECT_EQ(mFrames[1].kRequestedPresentTime, outRequestedPresentTime);
1793 EXPECT_EQ(mFrames[1].kProducerAcquireTime, outAcquireTime);
1794}
1795
1796TEST_F(GetFrameTimestampsTest, ZeroRequestedTimestampsNoSync) {
1797 enableFrameTimestamps();
Brian Anderson3da8d272016-07-28 16:20:47 -07001798
1799 // Dequeue and queue frame 1.
1800 dequeueAndQueue(0);
1801 mFrames[0].signalQueueFences();
1802
1803 // Dequeue and queue frame 2.
Brian Anderson1049d1d2016-12-16 17:25:57 -08001804 const uint64_t fId2 = getNextFrameId();
Brian Anderson3da8d272016-07-28 16:20:47 -07001805 dequeueAndQueue(1);
1806 mFrames[1].signalQueueFences();
1807
1808 addFrameEvents(true, NO_FRAME_INDEX, 0);
1809 mFrames[0].signalRefreshFences();
1810 addFrameEvents(true, 0, 1);
1811 mFrames[0].signalReleaseFences();
1812 mFrames[1].signalRefreshFences();
1813
1814 // Verify a request for no timestamps doesn't result in a sync call.
Brian Anderson3da8d272016-07-28 16:20:47 -07001815 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08001816 int result = native_window_get_frame_timestamps(mWindow.get(), fId2,
Brian Anderson6b376712017-04-04 10:51:39 -07001817 nullptr, nullptr, nullptr, nullptr, nullptr, nullptr, nullptr,
1818 nullptr, nullptr);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001819 EXPECT_EQ(NO_ERROR, result);
Brian Anderson3da8d272016-07-28 16:20:47 -07001820 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1821}
1822
1823// This test verifies that fences can signal and update timestamps producer
1824// side without an additional sync call to the consumer.
1825TEST_F(GetFrameTimestampsTest, FencesInProducerNoSync) {
1826 enableFrameTimestamps();
Brian Anderson3da8d272016-07-28 16:20:47 -07001827
1828 // Dequeue and queue frame 1.
Brian Anderson1049d1d2016-12-16 17:25:57 -08001829 const uint64_t fId1 = getNextFrameId();
Brian Anderson3da8d272016-07-28 16:20:47 -07001830 dequeueAndQueue(0);
1831 mFrames[0].signalQueueFences();
1832
1833 // Dequeue and queue frame 2.
1834 dequeueAndQueue(1);
1835 mFrames[1].signalQueueFences();
1836
1837 addFrameEvents(true, NO_FRAME_INDEX, 0);
1838 addFrameEvents(true, 0, 1);
1839
1840 // Verify available timestamps are correct for frame 1, before any
1841 // fence has been signaled.
1842 // Note: A sync call is necessary here since the events triggered by
1843 // addFrameEvents didn't get to piggyback on the earlier queues/dequeues.
Brian Anderson3da8d272016-07-28 16:20:47 -07001844 resetTimestamps();
1845 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08001846 int result = getAllFrameTimestamps(fId1);
Brian Anderson3da8d272016-07-28 16:20:47 -07001847 EXPECT_EQ(oldCount + 1, mFakeConsumer->mGetFrameTimestampsCount);
1848 EXPECT_EQ(NO_ERROR, result);
1849 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1850 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001851 EXPECT_EQ(mFrames[0].kLatchTime, outLatchTime);
1852 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outFirstRefreshStartTime);
1853 EXPECT_EQ(mFrames[0].mRefreshes[2].kStartTime, outLastRefreshStartTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001854 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outGpuCompositionDoneTime);
1855 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outDisplayPresentTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001856 EXPECT_EQ(mFrames[0].kDequeueReadyTime, outDequeueReadyTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001857 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outReleaseTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001858
1859 // Verify available timestamps are correct for frame 1 again, before any
1860 // fence has been signaled.
1861 // This time a sync call should not be necessary.
Brian Anderson3da8d272016-07-28 16:20:47 -07001862 resetTimestamps();
1863 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08001864 result = getAllFrameTimestamps(fId1);
Brian Anderson3da8d272016-07-28 16:20:47 -07001865 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1866 EXPECT_EQ(NO_ERROR, result);
1867 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1868 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001869 EXPECT_EQ(mFrames[0].kLatchTime, outLatchTime);
1870 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outFirstRefreshStartTime);
1871 EXPECT_EQ(mFrames[0].mRefreshes[2].kStartTime, outLastRefreshStartTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001872 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outGpuCompositionDoneTime);
1873 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outDisplayPresentTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001874 EXPECT_EQ(mFrames[0].kDequeueReadyTime, outDequeueReadyTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001875 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outReleaseTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001876
1877 // Signal the fences for frame 1.
1878 mFrames[0].signalRefreshFences();
1879 mFrames[0].signalReleaseFences();
1880
1881 // Verify all timestamps are available without a sync call.
Brian Anderson3da8d272016-07-28 16:20:47 -07001882 resetTimestamps();
1883 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08001884 result = getAllFrameTimestamps(fId1);
Brian Anderson3da8d272016-07-28 16:20:47 -07001885 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1886 EXPECT_EQ(NO_ERROR, result);
1887 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1888 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001889 EXPECT_EQ(mFrames[0].kLatchTime, outLatchTime);
1890 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outFirstRefreshStartTime);
1891 EXPECT_EQ(mFrames[0].mRefreshes[2].kStartTime, outLastRefreshStartTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001892 EXPECT_EQ(mFrames[0].mRefreshes[0].kGpuCompositionDoneTime,
1893 outGpuCompositionDoneTime);
1894 EXPECT_EQ(mFrames[0].mRefreshes[0].kPresentTime, outDisplayPresentTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001895 EXPECT_EQ(mFrames[0].kDequeueReadyTime, outDequeueReadyTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001896 EXPECT_EQ(mFrames[0].kReleaseTime, outReleaseTime);
1897}
1898
1899// This test verifies that if the frame wasn't GPU composited but has a refresh
1900// event a sync call isn't made to get the GPU composite done time since it will
1901// never exist.
1902TEST_F(GetFrameTimestampsTest, NoGpuNoSync) {
1903 enableFrameTimestamps();
Brian Anderson3da8d272016-07-28 16:20:47 -07001904
Brian Anderson3da8d272016-07-28 16:20:47 -07001905 // Dequeue and queue frame 1.
Brian Anderson1049d1d2016-12-16 17:25:57 -08001906 const uint64_t fId1 = getNextFrameId();
Brian Anderson3da8d272016-07-28 16:20:47 -07001907 dequeueAndQueue(0);
1908 mFrames[0].signalQueueFences();
1909
1910 // Dequeue and queue frame 2.
1911 dequeueAndQueue(1);
1912 mFrames[1].signalQueueFences();
1913
1914 addFrameEvents(false, NO_FRAME_INDEX, 0);
1915 addFrameEvents(false, 0, 1);
1916
1917 // Verify available timestamps are correct for frame 1, before any
1918 // fence has been signaled.
1919 // Note: A sync call is necessary here since the events triggered by
1920 // addFrameEvents didn't get to piggyback on the earlier queues/dequeues.
1921 resetTimestamps();
1922 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08001923 int result = getAllFrameTimestamps(fId1);
Brian Anderson3da8d272016-07-28 16:20:47 -07001924 EXPECT_EQ(oldCount + 1, mFakeConsumer->mGetFrameTimestampsCount);
1925 EXPECT_EQ(NO_ERROR, result);
1926 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1927 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001928 EXPECT_EQ(mFrames[0].kLatchTime, outLatchTime);
1929 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outFirstRefreshStartTime);
1930 EXPECT_EQ(mFrames[0].mRefreshes[2].kStartTime, outLastRefreshStartTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001931 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_INVALID, outGpuCompositionDoneTime);
1932 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outDisplayPresentTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001933 EXPECT_EQ(mFrames[0].kDequeueReadyTime, outDequeueReadyTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001934 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outReleaseTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001935
1936 // Signal the fences for frame 1.
1937 mFrames[0].signalRefreshFences();
1938 mFrames[0].signalReleaseFences();
1939
1940 // Verify all timestamps, except GPU composition, are available without a
1941 // sync call.
1942 resetTimestamps();
1943 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08001944 result = getAllFrameTimestamps(fId1);
Brian Anderson3da8d272016-07-28 16:20:47 -07001945 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
1946 EXPECT_EQ(NO_ERROR, result);
1947 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1948 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001949 EXPECT_EQ(mFrames[0].kLatchTime, outLatchTime);
1950 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outFirstRefreshStartTime);
1951 EXPECT_EQ(mFrames[0].mRefreshes[2].kStartTime, outLastRefreshStartTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001952 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_INVALID, outGpuCompositionDoneTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001953 EXPECT_EQ(mFrames[0].mRefreshes[0].kPresentTime, outDisplayPresentTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001954 EXPECT_EQ(mFrames[0].kDequeueReadyTime, outDequeueReadyTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001955 EXPECT_EQ(mFrames[0].kReleaseTime, outReleaseTime);
1956}
1957
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001958// This test verifies that if the certain timestamps can't possibly exist for
1959// the most recent frame, then a sync call is not done.
Brian Anderson6b376712017-04-04 10:51:39 -07001960TEST_F(GetFrameTimestampsTest, NoReleaseNoSync) {
Brian Anderson3da8d272016-07-28 16:20:47 -07001961 enableFrameTimestamps();
Brian Anderson3da8d272016-07-28 16:20:47 -07001962
1963 // Dequeue and queue frame 1.
Brian Anderson1049d1d2016-12-16 17:25:57 -08001964 const uint64_t fId1 = getNextFrameId();
Brian Anderson3da8d272016-07-28 16:20:47 -07001965 dequeueAndQueue(0);
1966 mFrames[0].signalQueueFences();
1967
1968 // Dequeue and queue frame 2.
Brian Anderson1049d1d2016-12-16 17:25:57 -08001969 const uint64_t fId2 = getNextFrameId();
Brian Anderson3da8d272016-07-28 16:20:47 -07001970 dequeueAndQueue(1);
1971 mFrames[1].signalQueueFences();
1972
1973 addFrameEvents(false, NO_FRAME_INDEX, 0);
1974 addFrameEvents(false, 0, 1);
1975
1976 // Verify available timestamps are correct for frame 1, before any
1977 // fence has been signaled.
1978 // Note: A sync call is necessary here since the events triggered by
1979 // addFrameEvents didn't get to piggyback on the earlier queues/dequeues.
Brian Anderson3da8d272016-07-28 16:20:47 -07001980 resetTimestamps();
1981 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08001982 int result = getAllFrameTimestamps(fId1);
Brian Anderson3da8d272016-07-28 16:20:47 -07001983 EXPECT_EQ(oldCount + 1, mFakeConsumer->mGetFrameTimestampsCount);
1984 EXPECT_EQ(NO_ERROR, result);
1985 EXPECT_EQ(mFrames[0].kRequestedPresentTime, outRequestedPresentTime);
1986 EXPECT_EQ(mFrames[0].kProducerAcquireTime, outAcquireTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001987 EXPECT_EQ(mFrames[0].kLatchTime, outLatchTime);
1988 EXPECT_EQ(mFrames[0].mRefreshes[0].kStartTime, outFirstRefreshStartTime);
1989 EXPECT_EQ(mFrames[0].mRefreshes[2].kStartTime, outLastRefreshStartTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001990 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_INVALID, outGpuCompositionDoneTime);
1991 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outDisplayPresentTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07001992 EXPECT_EQ(mFrames[0].kDequeueReadyTime, outDequeueReadyTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07001993 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outReleaseTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07001994
1995 mFrames[0].signalRefreshFences();
1996 mFrames[0].signalReleaseFences();
1997 mFrames[1].signalRefreshFences();
1998
Brian Anderson1049d1d2016-12-16 17:25:57 -08001999 // Verify querying for all timestmaps of f2 does not do a sync call. Even
Brian Anderson4e606e32017-03-16 15:34:57 -07002000 // though the lastRefresh, dequeueReady, and release times aren't
Brian Andersonf7fd56a2016-09-02 10:10:04 -07002001 // available, a sync call should not occur because it's not possible for f2
2002 // to encounter the final value for those events until another frame is
2003 // queued.
Brian Anderson3da8d272016-07-28 16:20:47 -07002004 resetTimestamps();
2005 oldCount = mFakeConsumer->mGetFrameTimestampsCount;
Brian Anderson1049d1d2016-12-16 17:25:57 -08002006 result = getAllFrameTimestamps(fId2);
Brian Anderson3da8d272016-07-28 16:20:47 -07002007 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
2008 EXPECT_EQ(NO_ERROR, result);
2009 EXPECT_EQ(mFrames[1].kRequestedPresentTime, outRequestedPresentTime);
2010 EXPECT_EQ(mFrames[1].kProducerAcquireTime, outAcquireTime);
Brian Andersonf7fd56a2016-09-02 10:10:04 -07002011 EXPECT_EQ(mFrames[1].kLatchTime, outLatchTime);
2012 EXPECT_EQ(mFrames[1].mRefreshes[0].kStartTime, outFirstRefreshStartTime);
2013 EXPECT_EQ(mFrames[1].mRefreshes[1].kStartTime, outLastRefreshStartTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07002014 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_INVALID, outGpuCompositionDoneTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07002015 EXPECT_EQ(mFrames[1].mRefreshes[0].kPresentTime, outDisplayPresentTime);
Brian Andersondc96fdf2017-03-20 16:54:25 -07002016 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outDequeueReadyTime);
2017 EXPECT_EQ(NATIVE_WINDOW_TIMESTAMP_PENDING, outReleaseTime);
Brian Anderson3da8d272016-07-28 16:20:47 -07002018}
2019
Brian Anderson6b376712017-04-04 10:51:39 -07002020// This test verifies there are no sync calls for present times
2021// when they aren't supported and that an error is returned.
2022
2023TEST_F(GetFrameTimestampsTest, PresentUnsupportedNoSync) {
2024 enableFrameTimestamps();
2025 mSurface->mFakeSurfaceComposer->setSupportsPresent(false);
Huihong Luo0a81aa32022-02-22 16:02:36 -08002026 mSurface->mFakeSurfaceComposerAIDL->setSupportsPresent(false);
Brian Anderson6b376712017-04-04 10:51:39 -07002027
2028 // Dequeue and queue frame 1.
2029 const uint64_t fId1 = getNextFrameId();
2030 dequeueAndQueue(0);
2031
2032 // Verify a query for the Present times do not trigger a sync call if they
2033 // are not supported.
2034 resetTimestamps();
2035 int oldCount = mFakeConsumer->mGetFrameTimestampsCount;
2036 int result = native_window_get_frame_timestamps(mWindow.get(), fId1,
2037 nullptr, nullptr, nullptr, nullptr, nullptr, nullptr,
2038 &outDisplayPresentTime, nullptr, nullptr);
2039 EXPECT_EQ(oldCount, mFakeConsumer->mGetFrameTimestampsCount);
2040 EXPECT_EQ(BAD_VALUE, result);
2041 EXPECT_EQ(-1, outDisplayPresentTime);
2042}
2043
Yiwei Zhang538cedc2019-06-24 19:35:03 -07002044TEST_F(SurfaceTest, DequeueWithConsumerDrivenSize) {
2045 sp<IGraphicBufferProducer> producer;
2046 sp<IGraphicBufferConsumer> consumer;
2047 BufferQueue::createBufferQueue(&producer, &consumer);
2048
Peiyong Lind8460c82020-07-28 16:04:22 -07002049 sp<MockConsumer> mockConsumer(new MockConsumer);
2050 consumer->consumerConnect(mockConsumer, false);
Yiwei Zhang538cedc2019-06-24 19:35:03 -07002051 consumer->setDefaultBufferSize(10, 10);
2052
2053 sp<Surface> surface = new Surface(producer);
2054 sp<ANativeWindow> window(surface);
2055 native_window_api_connect(window.get(), NATIVE_WINDOW_API_CPU);
2056 native_window_set_buffers_dimensions(window.get(), 0, 0);
2057
2058 int fence;
2059 ANativeWindowBuffer* buffer;
2060
2061 // Buffer size is driven by the consumer
2062 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fence));
2063 EXPECT_EQ(10, buffer->width);
2064 EXPECT_EQ(10, buffer->height);
2065 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffer, fence));
2066
2067 // Buffer size is driven by the consumer
2068 consumer->setDefaultBufferSize(10, 20);
2069 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fence));
2070 EXPECT_EQ(10, buffer->width);
2071 EXPECT_EQ(20, buffer->height);
2072 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffer, fence));
2073
2074 // Transform hint isn't synced to producer before queueBuffer or connect
2075 consumer->setTransformHint(NATIVE_WINDOW_TRANSFORM_ROT_270);
2076 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fence));
2077 EXPECT_EQ(10, buffer->width);
2078 EXPECT_EQ(20, buffer->height);
2079 ASSERT_EQ(NO_ERROR, window->queueBuffer(window.get(), buffer, fence));
2080
2081 // Transform hint is synced to producer but no auto prerotation
2082 consumer->setTransformHint(NATIVE_WINDOW_TRANSFORM_ROT_270);
2083 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fence));
2084 EXPECT_EQ(10, buffer->width);
2085 EXPECT_EQ(20, buffer->height);
2086 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffer, fence));
2087
2088 // Prerotation is driven by the consumer with the transform hint used by producer
2089 native_window_set_auto_prerotation(window.get(), true);
2090 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fence));
2091 EXPECT_EQ(20, buffer->width);
2092 EXPECT_EQ(10, buffer->height);
2093 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffer, fence));
2094
2095 // Turn off auto prerotaton
2096 native_window_set_auto_prerotation(window.get(), false);
2097 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fence));
2098 EXPECT_EQ(10, buffer->width);
2099 EXPECT_EQ(20, buffer->height);
2100 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffer, fence));
2101
2102 // Test auto prerotation bit is disabled after disconnect
2103 native_window_set_auto_prerotation(window.get(), true);
2104 native_window_api_disconnect(window.get(), NATIVE_WINDOW_API_CPU);
2105 native_window_api_connect(window.get(), NATIVE_WINDOW_API_CPU);
2106 consumer->setTransformHint(NATIVE_WINDOW_TRANSFORM_ROT_270);
2107 native_window_set_buffers_dimensions(window.get(), 0, 0);
2108 ASSERT_EQ(NO_ERROR, window->dequeueBuffer(window.get(), &buffer, &fence));
2109 EXPECT_EQ(10, buffer->width);
2110 EXPECT_EQ(20, buffer->height);
2111 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffer, fence));
2112}
2113
Yiwei Zhang74c9cc32020-06-20 03:35:17 -07002114TEST_F(SurfaceTest, DefaultMaxBufferCountSetAndUpdated) {
2115 sp<IGraphicBufferProducer> producer;
2116 sp<IGraphicBufferConsumer> consumer;
2117 BufferQueue::createBufferQueue(&producer, &consumer);
2118
Peiyong Lind8460c82020-07-28 16:04:22 -07002119 sp<MockConsumer> mockConsumer(new MockConsumer);
2120 consumer->consumerConnect(mockConsumer, false);
Yiwei Zhang74c9cc32020-06-20 03:35:17 -07002121
2122 sp<Surface> surface = new Surface(producer);
2123 sp<ANativeWindow> window(surface);
2124
2125 int count = -1;
2126 ASSERT_EQ(NO_ERROR, window->query(window.get(), NATIVE_WINDOW_MAX_BUFFER_COUNT, &count));
2127 EXPECT_EQ(BufferQueueDefs::NUM_BUFFER_SLOTS, count);
2128
2129 consumer->setMaxBufferCount(10);
2130 ASSERT_EQ(NO_ERROR, native_window_api_connect(window.get(), NATIVE_WINDOW_API_CPU));
2131 EXPECT_EQ(NO_ERROR, window->query(window.get(), NATIVE_WINDOW_MAX_BUFFER_COUNT, &count));
2132 EXPECT_EQ(10, count);
2133
2134 ASSERT_EQ(NO_ERROR, native_window_api_disconnect(window.get(), NATIVE_WINDOW_API_CPU));
2135 ASSERT_EQ(NO_ERROR, window->query(window.get(), NATIVE_WINDOW_MAX_BUFFER_COUNT, &count));
2136 EXPECT_EQ(BufferQueueDefs::NUM_BUFFER_SLOTS, count);
2137}
2138
Yin-Chia Yeh78c0ad72020-02-07 14:05:35 -08002139TEST_F(SurfaceTest, BatchOperations) {
2140 const int BUFFER_COUNT = 16;
2141 const int BATCH_SIZE = 8;
2142 sp<IGraphicBufferProducer> producer;
2143 sp<IGraphicBufferConsumer> consumer;
2144 BufferQueue::createBufferQueue(&producer, &consumer);
2145
2146 sp<CpuConsumer> cpuConsumer = new CpuConsumer(consumer, 1);
2147 sp<Surface> surface = new Surface(producer);
2148 sp<ANativeWindow> window(surface);
2149 sp<StubProducerListener> listener = new StubProducerListener();
2150
2151 ASSERT_EQ(OK, surface->connect(NATIVE_WINDOW_API_CPU, /*listener*/listener,
2152 /*reportBufferRemoval*/false));
2153
2154 ASSERT_EQ(NO_ERROR, native_window_set_buffer_count(window.get(), BUFFER_COUNT));
2155
2156 std::vector<Surface::BatchBuffer> buffers(BATCH_SIZE);
2157
2158 // Batch dequeued buffers can be queued individually
2159 ASSERT_EQ(NO_ERROR, surface->dequeueBuffers(&buffers));
2160 for (size_t i = 0; i < BATCH_SIZE; i++) {
2161 ANativeWindowBuffer* buffer = buffers[i].buffer;
2162 int fence = buffers[i].fenceFd;
2163 ASSERT_EQ(NO_ERROR, window->queueBuffer(window.get(), buffer, fence));
2164 }
2165
2166 // Batch dequeued buffers can be canceled individually
2167 ASSERT_EQ(NO_ERROR, surface->dequeueBuffers(&buffers));
2168 for (size_t i = 0; i < BATCH_SIZE; i++) {
2169 ANativeWindowBuffer* buffer = buffers[i].buffer;
2170 int fence = buffers[i].fenceFd;
2171 ASSERT_EQ(NO_ERROR, window->cancelBuffer(window.get(), buffer, fence));
2172 }
2173
2174 // Batch dequeued buffers can be batch cancelled
2175 ASSERT_EQ(NO_ERROR, surface->dequeueBuffers(&buffers));
2176 ASSERT_EQ(NO_ERROR, surface->cancelBuffers(buffers));
2177
2178 // Batch dequeued buffers can be batch queued
2179 ASSERT_EQ(NO_ERROR, surface->dequeueBuffers(&buffers));
2180 std::vector<Surface::BatchQueuedBuffer> queuedBuffers(BATCH_SIZE);
2181 for (size_t i = 0; i < BATCH_SIZE; i++) {
2182 queuedBuffers[i].buffer = buffers[i].buffer;
2183 queuedBuffers[i].fenceFd = buffers[i].fenceFd;
2184 queuedBuffers[i].timestamp = NATIVE_WINDOW_TIMESTAMP_AUTO;
2185 }
2186 ASSERT_EQ(NO_ERROR, surface->queueBuffers(queuedBuffers));
2187
2188 ASSERT_EQ(NO_ERROR, surface->disconnect(NATIVE_WINDOW_API_CPU));
2189}
2190
2191TEST_F(SurfaceTest, BatchIllegalOperations) {
2192 const int BUFFER_COUNT = 16;
2193 const int BATCH_SIZE = 8;
2194 sp<IGraphicBufferProducer> producer;
2195 sp<IGraphicBufferConsumer> consumer;
2196 BufferQueue::createBufferQueue(&producer, &consumer);
2197
2198 sp<CpuConsumer> cpuConsumer = new CpuConsumer(consumer, 1);
2199 sp<Surface> surface = new Surface(producer);
2200 sp<ANativeWindow> window(surface);
2201 sp<StubProducerListener> listener = new StubProducerListener();
2202
2203 ASSERT_EQ(OK, surface->connect(NATIVE_WINDOW_API_CPU, /*listener*/listener,
2204 /*reportBufferRemoval*/false));
2205
2206 ASSERT_EQ(NO_ERROR, native_window_set_buffer_count(window.get(), BUFFER_COUNT));
2207
2208 std::vector<Surface::BatchBuffer> buffers(BATCH_SIZE);
2209 std::vector<Surface::BatchQueuedBuffer> queuedBuffers(BATCH_SIZE);
2210
2211 // Batch operations are invalid in shared buffer mode
2212 surface->setSharedBufferMode(true);
2213 ASSERT_EQ(INVALID_OPERATION, surface->dequeueBuffers(&buffers));
2214 ASSERT_EQ(INVALID_OPERATION, surface->cancelBuffers(buffers));
2215 ASSERT_EQ(INVALID_OPERATION, surface->queueBuffers(queuedBuffers));
2216 surface->setSharedBufferMode(false);
2217
2218 ASSERT_EQ(NO_ERROR, surface->disconnect(NATIVE_WINDOW_API_CPU));
2219}
2220
Dan Stoza932f0082017-05-31 13:50:16 -07002221} // namespace android