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Valerie Haud251afb2019-03-29 14:19:02 -07001/*
2 * Copyright 2019 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
Ady Abrahamb0dbdaa2020-01-06 16:19:42 -080017// TODO(b/129481165): remove the #pragma below and fix conversion issues
18#pragma clang diagnostic push
19#pragma clang diagnostic ignored "-Wconversion"
20
Valerie Haud251afb2019-03-29 14:19:02 -070021#undef LOG_TAG
22#define LOG_TAG "CompositionTest"
23
24#include <compositionengine/Display.h>
25#include <compositionengine/mock/DisplaySurface.h>
26#include <gmock/gmock.h>
27#include <gtest/gtest.h>
28#include <gui/SurfaceComposerClient.h>
29#include <log/log.h>
30#include <utils/String8.h>
31
32#include "TestableScheduler.h"
33#include "TestableSurfaceFlinger.h"
34#include "mock/MockDispSync.h"
35#include "mock/MockEventControlThread.h"
36#include "mock/MockEventThread.h"
37#include "mock/MockMessageQueue.h"
38
39namespace android {
40
41using testing::_;
42using testing::Return;
43
44using FakeHwcDisplayInjector = TestableSurfaceFlinger::FakeHwcDisplayInjector;
45
46class TransactionApplicationTest : public testing::Test {
47public:
48 TransactionApplicationTest() {
49 const ::testing::TestInfo* const test_info =
50 ::testing::UnitTest::GetInstance()->current_test_info();
51 ALOGD("**** Setting up for %s.%s\n", test_info->test_case_name(), test_info->name());
52
53 mFlinger.mutableEventQueue().reset(mMessageQueue);
54 setupScheduler();
55 }
56
57 ~TransactionApplicationTest() {
58 const ::testing::TestInfo* const test_info =
59 ::testing::UnitTest::GetInstance()->current_test_info();
60 ALOGD("**** Tearing down after %s.%s\n", test_info->test_case_name(), test_info->name());
61 }
62
63 void setupScheduler() {
64 auto eventThread = std::make_unique<mock::EventThread>();
65 auto sfEventThread = std::make_unique<mock::EventThread>();
66
67 EXPECT_CALL(*eventThread, registerDisplayEventConnection(_));
68 EXPECT_CALL(*eventThread, createEventConnection(_, _))
69 .WillOnce(Return(
70 new EventThreadConnection(eventThread.get(), ResyncCallback(),
71 ISurfaceComposer::eConfigChangedSuppress)));
72
73 EXPECT_CALL(*sfEventThread, registerDisplayEventConnection(_));
74 EXPECT_CALL(*sfEventThread, createEventConnection(_, _))
75 .WillOnce(Return(
76 new EventThreadConnection(sfEventThread.get(), ResyncCallback(),
77 ISurfaceComposer::eConfigChangedSuppress)));
78
79 EXPECT_CALL(*mPrimaryDispSync, computeNextRefresh(0)).WillRepeatedly(Return(0));
80 EXPECT_CALL(*mPrimaryDispSync, getPeriod())
81 .WillRepeatedly(Return(FakeHwcDisplayInjector::DEFAULT_REFRESH_RATE));
82
83 mFlinger.setupScheduler(std::unique_ptr<mock::DispSync>(mPrimaryDispSync),
84 std::make_unique<mock::EventControlThread>(),
85 std::move(eventThread), std::move(sfEventThread));
86 }
87
88 TestableScheduler* mScheduler;
89 TestableSurfaceFlinger mFlinger;
90
91 std::unique_ptr<mock::EventThread> mEventThread = std::make_unique<mock::EventThread>();
92 mock::EventControlThread* mEventControlThread = new mock::EventControlThread();
93
94 mock::MessageQueue* mMessageQueue = new mock::MessageQueue();
95 mock::DispSync* mPrimaryDispSync = new mock::DispSync();
96
97 struct TransactionInfo {
98 Vector<ComposerState> states;
99 Vector<DisplayState> displays;
100 uint32_t flags = 0;
101 sp<IBinder> applyToken = IInterface::asBinder(TransactionCompletedListener::getIInstance());
102 InputWindowCommands inputWindowCommands;
103 int64_t desiredPresentTime = -1;
104 client_cache_t uncacheBuffer;
105 };
106
107 void checkEqual(TransactionInfo info, SurfaceFlinger::TransactionState state) {
108 EXPECT_EQ(0, info.states.size());
109 EXPECT_EQ(0, state.states.size());
110
111 EXPECT_EQ(0, info.displays.size());
112 EXPECT_EQ(0, state.displays.size());
113 EXPECT_EQ(info.flags, state.flags);
114 EXPECT_EQ(info.desiredPresentTime, state.desiredPresentTime);
115 }
116
117 void setupSingle(TransactionInfo& transaction, uint32_t flags, bool syncInputWindows,
118 int64_t desiredPresentTime) {
119 mTransactionNumber++;
120 transaction.flags |= flags; // ISurfaceComposer::eSynchronous;
121 transaction.inputWindowCommands.syncInputWindows = syncInputWindows;
122 transaction.desiredPresentTime = desiredPresentTime;
123 }
124
125 void NotPlacedOnTransactionQueue(uint32_t flags, bool syncInputWindows) {
126 ASSERT_EQ(0, mFlinger.getTransactionQueue().size());
127 // called in SurfaceFlinger::signalTransaction
128 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
129 EXPECT_CALL(*mPrimaryDispSync, expectedPresentTime()).WillOnce(Return(systemTime()));
130 TransactionInfo transaction;
131 setupSingle(transaction, flags, syncInputWindows,
132 /*desiredPresentTime*/ -1);
133 nsecs_t applicationTime = systemTime();
134 mFlinger.setTransactionState(transaction.states, transaction.displays, transaction.flags,
135 transaction.applyToken, transaction.inputWindowCommands,
136 transaction.desiredPresentTime, transaction.uncacheBuffer,
137 mHasListenerCallbacks, mCallbacks);
138
139 // This transaction should not have been placed on the transaction queue.
140 // If transaction is synchronous or syncs input windows, SF
141 // applyTransactionState should time out (5s) wating for SF to commit
142 // the transaction or to receive a signal that syncInputWindows has
143 // completed. If this is animation, it should not time out waiting.
144 nsecs_t returnedTime = systemTime();
145 if (flags & ISurfaceComposer::eSynchronous || syncInputWindows) {
146 EXPECT_GE(returnedTime, applicationTime + s2ns(5));
147 } else {
148 EXPECT_LE(returnedTime, applicationTime + s2ns(5));
149 }
150 auto transactionQueue = mFlinger.getTransactionQueue();
151 EXPECT_EQ(0, transactionQueue.size());
152 }
153
154 void PlaceOnTransactionQueue(uint32_t flags, bool syncInputWindows) {
155 ASSERT_EQ(0, mFlinger.getTransactionQueue().size());
156 // called in SurfaceFlinger::signalTransaction
157 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
158
159 // first check will see desired present time has not passed,
160 // but afterwards it will look like the desired present time has passed
161 nsecs_t time = systemTime();
162 EXPECT_CALL(*mPrimaryDispSync, expectedPresentTime())
163 .WillOnce(Return(time + nsecs_t(5 * 1e8)));
164 TransactionInfo transaction;
165 setupSingle(transaction, flags, syncInputWindows,
166 /*desiredPresentTime*/ time + s2ns(1));
167 nsecs_t applicationSentTime = systemTime();
168 mFlinger.setTransactionState(transaction.states, transaction.displays, transaction.flags,
169 transaction.applyToken, transaction.inputWindowCommands,
170 transaction.desiredPresentTime, transaction.uncacheBuffer,
171 mHasListenerCallbacks, mCallbacks);
172
173 nsecs_t returnedTime = systemTime();
174 EXPECT_LE(returnedTime, applicationSentTime + s2ns(5));
175 // This transaction should have been placed on the transaction queue
176 auto transactionQueue = mFlinger.getTransactionQueue();
177 EXPECT_EQ(1, transactionQueue.size());
178 }
179
180 void BlockedByPriorTransaction(uint32_t flags, bool syncInputWindows) {
181 ASSERT_EQ(0, mFlinger.getTransactionQueue().size());
182 // called in SurfaceFlinger::signalTransaction
183 nsecs_t time = systemTime();
184 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
185 EXPECT_CALL(*mPrimaryDispSync, expectedPresentTime())
186 .WillOnce(Return(time + nsecs_t(5 * 1e8)));
187 // transaction that should go on the pending thread
188 TransactionInfo transactionA;
189 setupSingle(transactionA, /*flags*/ 0, /*syncInputWindows*/ false,
190 /*desiredPresentTime*/ time + s2ns(1));
191
192 // transaction that would not have gone on the pending thread if not
193 // blocked
194 TransactionInfo transactionB;
195 setupSingle(transactionB, flags, syncInputWindows,
196 /*desiredPresentTime*/ -1);
197
198 nsecs_t applicationSentTime = systemTime();
199 mFlinger.setTransactionState(transactionA.states, transactionA.displays, transactionA.flags,
200 transactionA.applyToken, transactionA.inputWindowCommands,
201 transactionA.desiredPresentTime, transactionA.uncacheBuffer,
202 mHasListenerCallbacks, mCallbacks);
203
204 // This thread should not have been blocked by the above transaction
205 // (5s is the timeout period that applyTransactionState waits for SF to
206 // commit the transaction)
207 EXPECT_LE(systemTime(), applicationSentTime + s2ns(5));
208
209 applicationSentTime = systemTime();
210 mFlinger.setTransactionState(transactionB.states, transactionB.displays, transactionB.flags,
211 transactionB.applyToken, transactionB.inputWindowCommands,
212 transactionB.desiredPresentTime, transactionB.uncacheBuffer,
213 mHasListenerCallbacks, mCallbacks);
214
215 // this thread should have been blocked by the above transaction
216 // if this is an animation, this thread should be blocked for 5s
217 // in setTransactionState waiting for transactionA to flush. Otherwise,
218 // the transaction should be placed on the pending queue
219 if (flags & ISurfaceComposer::eAnimation) {
220 EXPECT_GE(systemTime(), applicationSentTime + s2ns(5));
221 } else {
222 EXPECT_LE(systemTime(), applicationSentTime + s2ns(5));
223 }
224
225 // check that there is one binder on the pending queue.
226 auto transactionQueue = mFlinger.getTransactionQueue();
227 EXPECT_EQ(1, transactionQueue.size());
228
229 auto& [applyToken, transactionStates] = *(transactionQueue.begin());
230 EXPECT_EQ(2, transactionStates.size());
231
232 auto& transactionStateA = transactionStates.front();
233 transactionStates.pop();
234 checkEqual(transactionA, transactionStateA);
235 auto& transactionStateB = transactionStates.front();
236 checkEqual(transactionB, transactionStateB);
237 }
238
239 bool mHasListenerCallbacks = false;
240 std::vector<ListenerCallbacks> mCallbacks;
241 int mTransactionNumber = 0;
242};
243
244TEST_F(TransactionApplicationTest, Flush_RemovesFromQueue) {
245 ASSERT_EQ(0, mFlinger.getTransactionQueue().size());
246 // called in SurfaceFlinger::signalTransaction
247 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
248
249 // nsecs_t time = systemTime();
250 EXPECT_CALL(*mPrimaryDispSync, expectedPresentTime())
251 .WillOnce(Return(nsecs_t(5 * 1e8)))
252 .WillOnce(Return(s2ns(2)));
253 TransactionInfo transactionA; // transaction to go on pending queue
254 setupSingle(transactionA, /*flags*/ 0, /*syncInputWindows*/ false,
255 /*desiredPresentTime*/ s2ns(1));
256 mFlinger.setTransactionState(transactionA.states, transactionA.displays, transactionA.flags,
257 transactionA.applyToken, transactionA.inputWindowCommands,
258 transactionA.desiredPresentTime, transactionA.uncacheBuffer,
259 mHasListenerCallbacks, mCallbacks);
260
261 auto& transactionQueue = mFlinger.getTransactionQueue();
262 ASSERT_EQ(1, transactionQueue.size());
263
264 auto& [applyToken, transactionStates] = *(transactionQueue.begin());
265 ASSERT_EQ(1, transactionStates.size());
266
267 auto& transactionState = transactionStates.front();
268 checkEqual(transactionA, transactionState);
269
270 // because flushing uses the cached expected present time, we send an empty
271 // transaction here (sending a null applyToken to fake it as from a
272 // different process) to re-query and reset the cached expected present time
273 TransactionInfo empty;
274 empty.applyToken = sp<IBinder>();
275 mFlinger.setTransactionState(empty.states, empty.displays, empty.flags, empty.applyToken,
276 empty.inputWindowCommands, empty.desiredPresentTime,
277 empty.uncacheBuffer, mHasListenerCallbacks, mCallbacks);
278
279 // flush transaction queue should flush as desiredPresentTime has
280 // passed
281 mFlinger.flushTransactionQueues();
282
283 EXPECT_EQ(0, transactionQueue.size());
284}
285
286TEST_F(TransactionApplicationTest, NotPlacedOnTransactionQueue_Synchronous) {
287 NotPlacedOnTransactionQueue(ISurfaceComposer::eSynchronous, /*syncInputWindows*/ false);
288}
289
290TEST_F(TransactionApplicationTest, NotPlacedOnTransactionQueue_Animation) {
291 NotPlacedOnTransactionQueue(ISurfaceComposer::eAnimation, /*syncInputWindows*/ false);
292}
293
294TEST_F(TransactionApplicationTest, NotPlacedOnTransactionQueue_SyncInputWindows) {
295 NotPlacedOnTransactionQueue(/*flags*/ 0, /*syncInputWindows*/ true);
296}
297
298TEST_F(TransactionApplicationTest, PlaceOnTransactionQueue_Synchronous) {
299 PlaceOnTransactionQueue(ISurfaceComposer::eSynchronous, /*syncInputWindows*/ false);
300}
301
302TEST_F(TransactionApplicationTest, PlaceOnTransactionQueue_Animation) {
303 PlaceOnTransactionQueue(ISurfaceComposer::eAnimation, /*syncInputWindows*/ false);
304}
305
306TEST_F(TransactionApplicationTest, PlaceOnTransactionQueue_SyncInputWindows) {
307 PlaceOnTransactionQueue(/*flags*/ 0, /*syncInputWindows*/ true);
308}
309
310TEST_F(TransactionApplicationTest, BlockWithPriorTransaction_Synchronous) {
311 BlockedByPriorTransaction(ISurfaceComposer::eSynchronous, /*syncInputWindows*/ false);
312}
313
314TEST_F(TransactionApplicationTest, BlockWithPriorTransaction_Animation) {
315 BlockedByPriorTransaction(ISurfaceComposer::eSynchronous, /*syncInputWindows*/ false);
316}
317
318TEST_F(TransactionApplicationTest, BlockWithPriorTransaction_SyncInputWindows) {
319 BlockedByPriorTransaction(/*flags*/ 0, /*syncInputWindows*/ true);
320}
321
Valerie Hau09e60052019-12-15 14:51:15 -0800322TEST_F(TransactionApplicationTest, FromHandle) {
323 sp<IBinder> badHandle;
324 auto ret = mFlinger.fromHandle(badHandle);
Alec Mouri9a02eda2020-04-21 17:39:34 -0700325 EXPECT_EQ(nullptr, ret.promote().get());
Valerie Hau09e60052019-12-15 14:51:15 -0800326}
Valerie Haud251afb2019-03-29 14:19:02 -0700327} // namespace android
Ady Abrahamb0dbdaa2020-01-06 16:19:42 -0800328
329// TODO(b/129481165): remove the #pragma below and fix conversion issues
330#pragma clang diagnostic pop // ignored "-Wconversion"