1 /*
2  * Copyright (C) 2018 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 // TODO(b/129481165): remove the #pragma below and fix conversion issues
18 #pragma clang diagnostic push
19 #pragma clang diagnostic ignored "-Wextra"
20 
21 #undef LOG_TAG
22 #define LOG_TAG "LibSurfaceFlingerUnittests"
23 
24 #include <gmock/gmock.h>
25 #include <gtest/gtest.h>
26 #include <log/log.h>
27 #include <utils/Errors.h>
28 
29 #include "AsyncCallRecorder.h"
30 #include "DisplayHardware/DisplayMode.h"
31 #include "Scheduler/EventThread.h"
32 
33 using namespace std::chrono_literals;
34 using namespace std::placeholders;
35 
36 using namespace android::flag_operators;
37 using testing::_;
38 using testing::Invoke;
39 
40 namespace android {
41 
42 namespace {
43 
44 constexpr PhysicalDisplayId INTERNAL_DISPLAY_ID(111);
45 constexpr PhysicalDisplayId EXTERNAL_DISPLAY_ID(222);
46 constexpr PhysicalDisplayId DISPLAY_ID_64BIT(0xabcd12349876fedcULL);
47 constexpr std::chrono::duration VSYNC_PERIOD(16ms);
48 class MockVSyncSource : public VSyncSource {
49 public:
getName() const50     const char* getName() const override { return "test"; }
51 
52     MOCK_METHOD1(setVSyncEnabled, void(bool));
53     MOCK_METHOD1(setCallback, void(VSyncSource::Callback*));
54     MOCK_METHOD2(setDuration,
55                  void(std::chrono::nanoseconds workDuration,
56                       std::chrono::nanoseconds readyDuration));
57     MOCK_METHOD1(pauseVsyncCallback, void(bool));
58     MOCK_CONST_METHOD1(dump, void(std::string&));
59 };
60 
61 } // namespace
62 
63 class EventThreadTest : public testing::Test {
64 protected:
65     class MockEventThreadConnection : public EventThreadConnection {
66     public:
MockEventThreadConnection(impl::EventThread * eventThread,uid_t callingUid,ResyncCallback && resyncCallback,ISurfaceComposer::EventRegistrationFlags eventRegistration)67         MockEventThreadConnection(impl::EventThread* eventThread, uid_t callingUid,
68                                   ResyncCallback&& resyncCallback,
69                                   ISurfaceComposer::EventRegistrationFlags eventRegistration)
70               : EventThreadConnection(eventThread, callingUid, std::move(resyncCallback),
71                                       eventRegistration) {}
72         MOCK_METHOD1(postEvent, status_t(const DisplayEventReceiver::Event& event));
73     };
74 
75     using ConnectionEventRecorder =
76             AsyncCallRecorderWithCannedReturn<status_t (*)(const DisplayEventReceiver::Event&)>;
77 
78     EventThreadTest();
79     ~EventThreadTest() override;
80 
81     void createThread(std::unique_ptr<VSyncSource>);
82     sp<MockEventThreadConnection> createConnection(
83             ConnectionEventRecorder& recorder,
84             ISurfaceComposer::EventRegistrationFlags eventRegistration = {},
85             uid_t ownerUid = mConnectionUid);
86 
87     void expectVSyncSetEnabledCallReceived(bool expectedState);
88     void expectVSyncSetDurationCallReceived(std::chrono::nanoseconds expectedDuration,
89                                             std::chrono::nanoseconds expectedReadyDuration);
90     VSyncSource::Callback* expectVSyncSetCallbackCallReceived();
91     void expectInterceptCallReceived(nsecs_t expectedTimestamp);
92     void expectVsyncEventReceivedByConnection(const char* name,
93                                               ConnectionEventRecorder& connectionEventRecorder,
94                                               nsecs_t expectedTimestamp, unsigned expectedCount);
95     void expectVsyncEventReceivedByConnection(nsecs_t expectedTimestamp, unsigned expectedCount);
96     void expectHotplugEventReceivedByConnection(PhysicalDisplayId expectedDisplayId,
97                                                 bool expectedConnected);
98     void expectConfigChangedEventReceivedByConnection(PhysicalDisplayId expectedDisplayId,
99                                                       int32_t expectedConfigId,
100                                                       nsecs_t expectedVsyncPeriod);
101     void expectThrottleVsyncReceived(nsecs_t expectedTimestamp, uid_t);
102     void expectUidFrameRateMappingEventReceivedByConnection(PhysicalDisplayId expectedDisplayId,
103                                                             std::vector<FrameRateOverride>);
104 
105     AsyncCallRecorder<void (*)(bool)> mVSyncSetEnabledCallRecorder;
106     AsyncCallRecorder<void (*)(VSyncSource::Callback*)> mVSyncSetCallbackCallRecorder;
107     AsyncCallRecorder<void (*)(std::chrono::nanoseconds, std::chrono::nanoseconds)>
108             mVSyncSetDurationCallRecorder;
109     AsyncCallRecorder<void (*)()> mResyncCallRecorder;
110     AsyncCallRecorder<void (*)(nsecs_t)> mInterceptVSyncCallRecorder;
111     AsyncCallRecorder<void (*)(nsecs_t, uid_t)> mThrottleVsyncCallRecorder;
112     ConnectionEventRecorder mConnectionEventCallRecorder{0};
113     ConnectionEventRecorder mThrottledConnectionEventCallRecorder{0};
114 
115     MockVSyncSource* mVSyncSource;
116     VSyncSource::Callback* mCallback = nullptr;
117     std::unique_ptr<impl::EventThread> mThread;
118     sp<MockEventThreadConnection> mConnection;
119     sp<MockEventThreadConnection> mThrottledConnection;
120 
121     static constexpr uid_t mConnectionUid = 443;
122     static constexpr uid_t mThrottledConnectionUid = 177;
123 };
124 
EventThreadTest()125 EventThreadTest::EventThreadTest() {
126     const ::testing::TestInfo* const test_info =
127             ::testing::UnitTest::GetInstance()->current_test_info();
128     ALOGD("**** Setting up for %s.%s\n", test_info->test_case_name(), test_info->name());
129 
130     auto vsyncSource = std::make_unique<MockVSyncSource>();
131     mVSyncSource = vsyncSource.get();
132 
133     EXPECT_CALL(*mVSyncSource, setVSyncEnabled(_))
134             .WillRepeatedly(Invoke(mVSyncSetEnabledCallRecorder.getInvocable()));
135 
136     EXPECT_CALL(*mVSyncSource, setCallback(_))
137             .WillRepeatedly(Invoke(mVSyncSetCallbackCallRecorder.getInvocable()));
138 
139     EXPECT_CALL(*mVSyncSource, setDuration(_, _))
140             .WillRepeatedly(Invoke(mVSyncSetDurationCallRecorder.getInvocable()));
141 
142     createThread(std::move(vsyncSource));
143     mConnection = createConnection(mConnectionEventCallRecorder,
144                                    ISurfaceComposer::EventRegistration::modeChanged |
145                                            ISurfaceComposer::EventRegistration::frameRateOverride);
146     mThrottledConnection = createConnection(mThrottledConnectionEventCallRecorder,
147                                             ISurfaceComposer::EventRegistration::modeChanged,
148                                             mThrottledConnectionUid);
149 
150     // A display must be connected for VSYNC events to be delivered.
151     mThread->onHotplugReceived(INTERNAL_DISPLAY_ID, true);
152     expectHotplugEventReceivedByConnection(INTERNAL_DISPLAY_ID, true);
153 }
154 
~EventThreadTest()155 EventThreadTest::~EventThreadTest() {
156     const ::testing::TestInfo* const test_info =
157             ::testing::UnitTest::GetInstance()->current_test_info();
158     ALOGD("**** Tearing down after %s.%s\n", test_info->test_case_name(), test_info->name());
159 
160     // EventThread should unregister itself as VSyncSource callback.
161     EXPECT_TRUE(!mVSyncSetCallbackCallRecorder.waitForUnexpectedCall().has_value());
162 }
163 
createThread(std::unique_ptr<VSyncSource> source)164 void EventThreadTest::createThread(std::unique_ptr<VSyncSource> source) {
165     const auto throttleVsync = [&](nsecs_t expectedVsyncTimestamp, uid_t uid) {
166         mThrottleVsyncCallRecorder.getInvocable()(expectedVsyncTimestamp, uid);
167         return (uid == mThrottledConnectionUid);
168     };
169     const auto getVsyncPeriod = [](uid_t uid) {
170         return VSYNC_PERIOD.count();
171     };
172 
173     mThread = std::make_unique<impl::EventThread>(std::move(source),
174                                                   /*tokenManager=*/nullptr,
175                                                   mInterceptVSyncCallRecorder.getInvocable(),
176                                                   throttleVsync, getVsyncPeriod);
177 
178     // EventThread should register itself as VSyncSource callback.
179     mCallback = expectVSyncSetCallbackCallReceived();
180     ASSERT_TRUE(mCallback);
181 }
182 
createConnection(ConnectionEventRecorder & recorder,ISurfaceComposer::EventRegistrationFlags eventRegistration,uid_t ownerUid)183 sp<EventThreadTest::MockEventThreadConnection> EventThreadTest::createConnection(
184         ConnectionEventRecorder& recorder,
185         ISurfaceComposer::EventRegistrationFlags eventRegistration, uid_t ownerUid) {
186     sp<MockEventThreadConnection> connection =
187             new MockEventThreadConnection(mThread.get(), ownerUid,
188                                           mResyncCallRecorder.getInvocable(), eventRegistration);
189     EXPECT_CALL(*connection, postEvent(_)).WillRepeatedly(Invoke(recorder.getInvocable()));
190     return connection;
191 }
192 
expectVSyncSetEnabledCallReceived(bool expectedState)193 void EventThreadTest::expectVSyncSetEnabledCallReceived(bool expectedState) {
194     auto args = mVSyncSetEnabledCallRecorder.waitForCall();
195     ASSERT_TRUE(args.has_value());
196     EXPECT_EQ(expectedState, std::get<0>(args.value()));
197 }
198 
expectVSyncSetDurationCallReceived(std::chrono::nanoseconds expectedDuration,std::chrono::nanoseconds expectedReadyDuration)199 void EventThreadTest::expectVSyncSetDurationCallReceived(
200         std::chrono::nanoseconds expectedDuration, std::chrono::nanoseconds expectedReadyDuration) {
201     auto args = mVSyncSetDurationCallRecorder.waitForCall();
202     ASSERT_TRUE(args.has_value());
203     EXPECT_EQ(expectedDuration, std::get<0>(args.value()));
204     EXPECT_EQ(expectedReadyDuration, std::get<1>(args.value()));
205 }
206 
expectVSyncSetCallbackCallReceived()207 VSyncSource::Callback* EventThreadTest::expectVSyncSetCallbackCallReceived() {
208     auto callbackSet = mVSyncSetCallbackCallRecorder.waitForCall();
209     return callbackSet.has_value() ? std::get<0>(callbackSet.value()) : nullptr;
210 }
211 
expectInterceptCallReceived(nsecs_t expectedTimestamp)212 void EventThreadTest::expectInterceptCallReceived(nsecs_t expectedTimestamp) {
213     auto args = mInterceptVSyncCallRecorder.waitForCall();
214     ASSERT_TRUE(args.has_value());
215     EXPECT_EQ(expectedTimestamp, std::get<0>(args.value()));
216 }
217 
expectThrottleVsyncReceived(nsecs_t expectedTimestamp,uid_t uid)218 void EventThreadTest::expectThrottleVsyncReceived(nsecs_t expectedTimestamp, uid_t uid) {
219     auto args = mThrottleVsyncCallRecorder.waitForCall();
220     ASSERT_TRUE(args.has_value());
221     EXPECT_EQ(expectedTimestamp, std::get<0>(args.value()));
222     EXPECT_EQ(uid, std::get<1>(args.value()));
223 }
224 
expectVsyncEventReceivedByConnection(const char * name,ConnectionEventRecorder & connectionEventRecorder,nsecs_t expectedTimestamp,unsigned expectedCount)225 void EventThreadTest::expectVsyncEventReceivedByConnection(
226         const char* name, ConnectionEventRecorder& connectionEventRecorder,
227         nsecs_t expectedTimestamp, unsigned expectedCount) {
228     auto args = connectionEventRecorder.waitForCall();
229     ASSERT_TRUE(args.has_value()) << name << " did not receive an event for timestamp "
230                                   << expectedTimestamp;
231     const auto& event = std::get<0>(args.value());
232     EXPECT_EQ(DisplayEventReceiver::DISPLAY_EVENT_VSYNC, event.header.type)
233             << name << " did not get the correct event for timestamp " << expectedTimestamp;
234     EXPECT_EQ(expectedTimestamp, event.header.timestamp)
235             << name << " did not get the expected timestamp for timestamp " << expectedTimestamp;
236     EXPECT_EQ(expectedCount, event.vsync.count)
237             << name << " did not get the expected count for timestamp " << expectedTimestamp;
238 }
239 
expectVsyncEventReceivedByConnection(nsecs_t expectedTimestamp,unsigned expectedCount)240 void EventThreadTest::expectVsyncEventReceivedByConnection(nsecs_t expectedTimestamp,
241                                                            unsigned expectedCount) {
242     expectVsyncEventReceivedByConnection("mConnectionEventCallRecorder",
243                                          mConnectionEventCallRecorder, expectedTimestamp,
244                                          expectedCount);
245 }
246 
expectHotplugEventReceivedByConnection(PhysicalDisplayId expectedDisplayId,bool expectedConnected)247 void EventThreadTest::expectHotplugEventReceivedByConnection(PhysicalDisplayId expectedDisplayId,
248                                                              bool expectedConnected) {
249     auto args = mConnectionEventCallRecorder.waitForCall();
250     ASSERT_TRUE(args.has_value());
251     const auto& event = std::get<0>(args.value());
252     EXPECT_EQ(DisplayEventReceiver::DISPLAY_EVENT_HOTPLUG, event.header.type);
253     EXPECT_EQ(expectedDisplayId, event.header.displayId);
254     EXPECT_EQ(expectedConnected, event.hotplug.connected);
255 }
256 
expectConfigChangedEventReceivedByConnection(PhysicalDisplayId expectedDisplayId,int32_t expectedConfigId,nsecs_t expectedVsyncPeriod)257 void EventThreadTest::expectConfigChangedEventReceivedByConnection(
258         PhysicalDisplayId expectedDisplayId, int32_t expectedConfigId,
259         nsecs_t expectedVsyncPeriod) {
260     auto args = mConnectionEventCallRecorder.waitForCall();
261     ASSERT_TRUE(args.has_value());
262     const auto& event = std::get<0>(args.value());
263     EXPECT_EQ(DisplayEventReceiver::DISPLAY_EVENT_MODE_CHANGE, event.header.type);
264     EXPECT_EQ(expectedDisplayId, event.header.displayId);
265     EXPECT_EQ(expectedConfigId, event.modeChange.modeId);
266     EXPECT_EQ(expectedVsyncPeriod, event.modeChange.vsyncPeriod);
267 }
268 
expectUidFrameRateMappingEventReceivedByConnection(PhysicalDisplayId expectedDisplayId,std::vector<FrameRateOverride> expectedOverrides)269 void EventThreadTest::expectUidFrameRateMappingEventReceivedByConnection(
270         PhysicalDisplayId expectedDisplayId, std::vector<FrameRateOverride> expectedOverrides) {
271     for (const auto [uid, frameRateHz] : expectedOverrides) {
272         auto args = mConnectionEventCallRecorder.waitForCall();
273         ASSERT_TRUE(args.has_value());
274         const auto& event = std::get<0>(args.value());
275         EXPECT_EQ(DisplayEventReceiver::DISPLAY_EVENT_FRAME_RATE_OVERRIDE, event.header.type);
276         EXPECT_EQ(expectedDisplayId, event.header.displayId);
277         EXPECT_EQ(uid, event.frameRateOverride.uid);
278         EXPECT_EQ(frameRateHz, event.frameRateOverride.frameRateHz);
279     }
280 
281     auto args = mConnectionEventCallRecorder.waitForCall();
282     ASSERT_TRUE(args.has_value());
283     const auto& event = std::get<0>(args.value());
284     EXPECT_EQ(DisplayEventReceiver::DISPLAY_EVENT_FRAME_RATE_OVERRIDE_FLUSH, event.header.type);
285     EXPECT_EQ(expectedDisplayId, event.header.displayId);
286 }
287 
288 namespace {
289 
290 /* ------------------------------------------------------------------------
291  * Test cases
292  */
293 
TEST_F(EventThreadTest,canCreateAndDestroyThreadWithNoEventsSent)294 TEST_F(EventThreadTest, canCreateAndDestroyThreadWithNoEventsSent) {
295     EXPECT_FALSE(mVSyncSetEnabledCallRecorder.waitForUnexpectedCall().has_value());
296     EXPECT_FALSE(mVSyncSetCallbackCallRecorder.waitForCall(0us).has_value());
297     EXPECT_FALSE(mVSyncSetDurationCallRecorder.waitForCall(0us).has_value());
298     EXPECT_FALSE(mResyncCallRecorder.waitForCall(0us).has_value());
299     EXPECT_FALSE(mInterceptVSyncCallRecorder.waitForCall(0us).has_value());
300     EXPECT_FALSE(mConnectionEventCallRecorder.waitForCall(0us).has_value());
301 }
302 
TEST_F(EventThreadTest,vsyncRequestIsIgnoredIfDisplayIsDisconnected)303 TEST_F(EventThreadTest, vsyncRequestIsIgnoredIfDisplayIsDisconnected) {
304     mThread->onHotplugReceived(INTERNAL_DISPLAY_ID, false);
305     expectHotplugEventReceivedByConnection(INTERNAL_DISPLAY_ID, false);
306 
307     // Signal that we want the next vsync event to be posted to the connection.
308     mThread->requestNextVsync(mConnection);
309 
310     // EventThread should not enable vsync callbacks.
311     EXPECT_FALSE(mVSyncSetEnabledCallRecorder.waitForUnexpectedCall().has_value());
312 }
313 
TEST_F(EventThreadTest,requestNextVsyncPostsASingleVSyncEventToTheConnection)314 TEST_F(EventThreadTest, requestNextVsyncPostsASingleVSyncEventToTheConnection) {
315     // Signal that we want the next vsync event to be posted to the connection
316     mThread->requestNextVsync(mConnection);
317 
318     // EventThread should immediately request a resync.
319     EXPECT_TRUE(mResyncCallRecorder.waitForCall().has_value());
320 
321     // EventThread should enable vsync callbacks.
322     expectVSyncSetEnabledCallReceived(true);
323 
324     // Use the received callback to signal a first vsync event.
325     // The interceptor should receive the event, as well as the connection.
326     mCallback->onVSyncEvent(123, 456, 789);
327     expectInterceptCallReceived(123);
328     expectThrottleVsyncReceived(456, mConnectionUid);
329     expectVsyncEventReceivedByConnection(123, 1u);
330 
331     // Use the received callback to signal a second vsync event.
332     // The interceptor should receive the event, but the connection should
333     // not as it was only interested in the first.
334     mCallback->onVSyncEvent(456, 123, 0);
335     expectInterceptCallReceived(456);
336     EXPECT_FALSE(mThrottleVsyncCallRecorder.waitForUnexpectedCall().has_value());
337     EXPECT_FALSE(mConnectionEventCallRecorder.waitForUnexpectedCall().has_value());
338 
339     // EventThread should also detect that at this point that it does not need
340     // any more vsync events, and should disable their generation.
341     expectVSyncSetEnabledCallReceived(false);
342 }
343 
TEST_F(EventThreadTest,setVsyncRateZeroPostsNoVSyncEventsToThatConnection)344 TEST_F(EventThreadTest, setVsyncRateZeroPostsNoVSyncEventsToThatConnection) {
345     // Create a first connection, register it, and request a vsync rate of zero.
346     ConnectionEventRecorder firstConnectionEventRecorder{0};
347     sp<MockEventThreadConnection> firstConnection = createConnection(firstConnectionEventRecorder);
348     mThread->setVsyncRate(0, firstConnection);
349 
350     // By itself, this should not enable vsync events
351     EXPECT_FALSE(mVSyncSetEnabledCallRecorder.waitForUnexpectedCall().has_value());
352     EXPECT_FALSE(mVSyncSetCallbackCallRecorder.waitForCall(0us).has_value());
353 
354     // However if there is another connection which wants events at a nonzero rate.....
355     ConnectionEventRecorder secondConnectionEventRecorder{0};
356     sp<MockEventThreadConnection> secondConnection =
357             createConnection(secondConnectionEventRecorder);
358     mThread->setVsyncRate(1, secondConnection);
359 
360     // EventThread should enable vsync callbacks.
361     expectVSyncSetEnabledCallReceived(true);
362 
363     // Send a vsync event. EventThread should then make a call to the
364     // interceptor, and the second connection. The first connection should not
365     // get the event.
366     mCallback->onVSyncEvent(123, 456, 0);
367     expectInterceptCallReceived(123);
368     EXPECT_FALSE(firstConnectionEventRecorder.waitForUnexpectedCall().has_value());
369     expectVsyncEventReceivedByConnection("secondConnection", secondConnectionEventRecorder, 123,
370                                          1u);
371 }
372 
TEST_F(EventThreadTest,setVsyncRateOnePostsAllEventsToThatConnection)373 TEST_F(EventThreadTest, setVsyncRateOnePostsAllEventsToThatConnection) {
374     mThread->setVsyncRate(1, mConnection);
375 
376     // EventThread should enable vsync callbacks.
377     expectVSyncSetEnabledCallReceived(true);
378 
379     // Send a vsync event. EventThread should then make a call to the
380     // interceptor, and the connection.
381     mCallback->onVSyncEvent(123, 456, 789);
382     expectInterceptCallReceived(123);
383     expectThrottleVsyncReceived(456, mConnectionUid);
384     expectVsyncEventReceivedByConnection(123, 1u);
385 
386     // A second event should go to the same places.
387     mCallback->onVSyncEvent(456, 123, 0);
388     expectInterceptCallReceived(456);
389     expectThrottleVsyncReceived(123, mConnectionUid);
390     expectVsyncEventReceivedByConnection(456, 2u);
391 
392     // A third event should go to the same places.
393     mCallback->onVSyncEvent(789, 777, 111);
394     expectInterceptCallReceived(789);
395     expectThrottleVsyncReceived(777, mConnectionUid);
396     expectVsyncEventReceivedByConnection(789, 3u);
397 }
398 
TEST_F(EventThreadTest,setVsyncRateTwoPostsEveryOtherEventToThatConnection)399 TEST_F(EventThreadTest, setVsyncRateTwoPostsEveryOtherEventToThatConnection) {
400     mThread->setVsyncRate(2, mConnection);
401 
402     // EventThread should enable vsync callbacks.
403     expectVSyncSetEnabledCallReceived(true);
404 
405     // The first event will be seen by the interceptor, and not the connection.
406     mCallback->onVSyncEvent(123, 456, 789);
407     expectInterceptCallReceived(123);
408     EXPECT_FALSE(mConnectionEventCallRecorder.waitForUnexpectedCall().has_value());
409     EXPECT_FALSE(mThrottleVsyncCallRecorder.waitForUnexpectedCall().has_value());
410 
411     // The second event will be seen by the interceptor and the connection.
412     mCallback->onVSyncEvent(456, 123, 0);
413     expectInterceptCallReceived(456);
414     expectVsyncEventReceivedByConnection(456, 2u);
415     EXPECT_FALSE(mThrottleVsyncCallRecorder.waitForUnexpectedCall().has_value());
416 
417     // The third event will be seen by the interceptor, and not the connection.
418     mCallback->onVSyncEvent(789, 777, 744);
419     expectInterceptCallReceived(789);
420     EXPECT_FALSE(mConnectionEventCallRecorder.waitForUnexpectedCall().has_value());
421     EXPECT_FALSE(mThrottleVsyncCallRecorder.waitForUnexpectedCall().has_value());
422 
423     // The fourth event will be seen by the interceptor and the connection.
424     mCallback->onVSyncEvent(101112, 7847, 86);
425     expectInterceptCallReceived(101112);
426     expectVsyncEventReceivedByConnection(101112, 4u);
427 }
428 
TEST_F(EventThreadTest,connectionsRemovedIfInstanceDestroyed)429 TEST_F(EventThreadTest, connectionsRemovedIfInstanceDestroyed) {
430     mThread->setVsyncRate(1, mConnection);
431 
432     // EventThread should enable vsync callbacks.
433     expectVSyncSetEnabledCallReceived(true);
434 
435     // Destroy the only (strong) reference to the connection.
436     mConnection = nullptr;
437 
438     // The first event will be seen by the interceptor, and not the connection.
439     mCallback->onVSyncEvent(123, 456, 789);
440     expectInterceptCallReceived(123);
441     EXPECT_FALSE(mConnectionEventCallRecorder.waitForUnexpectedCall().has_value());
442 
443     // EventThread should disable vsync callbacks
444     expectVSyncSetEnabledCallReceived(false);
445 }
446 
TEST_F(EventThreadTest,connectionsRemovedIfEventDeliveryError)447 TEST_F(EventThreadTest, connectionsRemovedIfEventDeliveryError) {
448     ConnectionEventRecorder errorConnectionEventRecorder{NO_MEMORY};
449     sp<MockEventThreadConnection> errorConnection = createConnection(errorConnectionEventRecorder);
450     mThread->setVsyncRate(1, errorConnection);
451 
452     // EventThread should enable vsync callbacks.
453     expectVSyncSetEnabledCallReceived(true);
454 
455     // The first event will be seen by the interceptor, and by the connection,
456     // which then returns an error.
457     mCallback->onVSyncEvent(123, 456, 789);
458     expectInterceptCallReceived(123);
459     expectVsyncEventReceivedByConnection("errorConnection", errorConnectionEventRecorder, 123, 1u);
460 
461     // A subsequent event will be seen by the interceptor and not by the
462     // connection.
463     mCallback->onVSyncEvent(456, 123, 0);
464     expectInterceptCallReceived(456);
465     EXPECT_FALSE(errorConnectionEventRecorder.waitForUnexpectedCall().has_value());
466 
467     // EventThread should disable vsync callbacks with the second event
468     expectVSyncSetEnabledCallReceived(false);
469 }
470 
TEST_F(EventThreadTest,tracksEventConnections)471 TEST_F(EventThreadTest, tracksEventConnections) {
472     EXPECT_EQ(2, mThread->getEventThreadConnectionCount());
473     ConnectionEventRecorder errorConnectionEventRecorder{NO_MEMORY};
474     sp<MockEventThreadConnection> errorConnection = createConnection(errorConnectionEventRecorder);
475     mThread->setVsyncRate(1, errorConnection);
476     EXPECT_EQ(3, mThread->getEventThreadConnectionCount());
477     ConnectionEventRecorder secondConnectionEventRecorder{0};
478     sp<MockEventThreadConnection> secondConnection =
479             createConnection(secondConnectionEventRecorder);
480     mThread->setVsyncRate(1, secondConnection);
481     EXPECT_EQ(4, mThread->getEventThreadConnectionCount());
482 
483     // EventThread should enable vsync callbacks.
484     expectVSyncSetEnabledCallReceived(true);
485 
486     // The first event will be seen by the interceptor, and by the connection,
487     // which then returns an error.
488     mCallback->onVSyncEvent(123, 456, 789);
489     expectInterceptCallReceived(123);
490     expectVsyncEventReceivedByConnection("errorConnection", errorConnectionEventRecorder, 123, 1u);
491     expectVsyncEventReceivedByConnection("successConnection", secondConnectionEventRecorder, 123,
492                                          1u);
493     EXPECT_EQ(3, mThread->getEventThreadConnectionCount());
494 }
495 
TEST_F(EventThreadTest,eventsDroppedIfNonfatalEventDeliveryError)496 TEST_F(EventThreadTest, eventsDroppedIfNonfatalEventDeliveryError) {
497     ConnectionEventRecorder errorConnectionEventRecorder{WOULD_BLOCK};
498     sp<MockEventThreadConnection> errorConnection = createConnection(errorConnectionEventRecorder);
499     mThread->setVsyncRate(1, errorConnection);
500 
501     // EventThread should enable vsync callbacks.
502     expectVSyncSetEnabledCallReceived(true);
503 
504     // The first event will be seen by the interceptor, and by the connection,
505     // which then returns an non-fatal error.
506     mCallback->onVSyncEvent(123, 456, 789);
507     expectInterceptCallReceived(123);
508     expectVsyncEventReceivedByConnection("errorConnection", errorConnectionEventRecorder, 123, 1u);
509 
510     // A subsequent event will be seen by the interceptor, and by the connection,
511     // which still then returns an non-fatal error.
512     mCallback->onVSyncEvent(456, 123, 0);
513     expectInterceptCallReceived(456);
514     expectVsyncEventReceivedByConnection("errorConnection", errorConnectionEventRecorder, 456, 2u);
515 
516     // EventThread will not disable vsync callbacks as the errors are non-fatal.
517     EXPECT_FALSE(mVSyncSetEnabledCallRecorder.waitForUnexpectedCall().has_value());
518 }
519 
TEST_F(EventThreadTest,setPhaseOffsetForwardsToVSyncSource)520 TEST_F(EventThreadTest, setPhaseOffsetForwardsToVSyncSource) {
521     mThread->setDuration(321ns, 456ns);
522     expectVSyncSetDurationCallReceived(321ns, 456ns);
523 }
524 
TEST_F(EventThreadTest,postHotplugInternalDisconnect)525 TEST_F(EventThreadTest, postHotplugInternalDisconnect) {
526     mThread->onHotplugReceived(INTERNAL_DISPLAY_ID, false);
527     expectHotplugEventReceivedByConnection(INTERNAL_DISPLAY_ID, false);
528 }
529 
TEST_F(EventThreadTest,postHotplugInternalConnect)530 TEST_F(EventThreadTest, postHotplugInternalConnect) {
531     mThread->onHotplugReceived(INTERNAL_DISPLAY_ID, true);
532     expectHotplugEventReceivedByConnection(INTERNAL_DISPLAY_ID, true);
533 }
534 
TEST_F(EventThreadTest,postHotplugExternalDisconnect)535 TEST_F(EventThreadTest, postHotplugExternalDisconnect) {
536     mThread->onHotplugReceived(EXTERNAL_DISPLAY_ID, false);
537     expectHotplugEventReceivedByConnection(EXTERNAL_DISPLAY_ID, false);
538 }
539 
TEST_F(EventThreadTest,postHotplugExternalConnect)540 TEST_F(EventThreadTest, postHotplugExternalConnect) {
541     mThread->onHotplugReceived(EXTERNAL_DISPLAY_ID, true);
542     expectHotplugEventReceivedByConnection(EXTERNAL_DISPLAY_ID, true);
543 }
544 
TEST_F(EventThreadTest,postConfigChangedPrimary)545 TEST_F(EventThreadTest, postConfigChangedPrimary) {
546     const auto mode = DisplayMode::Builder(hal::HWConfigId(0))
547                               .setPhysicalDisplayId(INTERNAL_DISPLAY_ID)
548                               .setId(DisplayModeId(7))
549                               .setVsyncPeriod(16666666)
550                               .build();
551 
552     mThread->onModeChanged(mode);
553     expectConfigChangedEventReceivedByConnection(INTERNAL_DISPLAY_ID, 7, 16666666);
554 }
555 
TEST_F(EventThreadTest,postConfigChangedExternal)556 TEST_F(EventThreadTest, postConfigChangedExternal) {
557     const auto mode = DisplayMode::Builder(hal::HWConfigId(0))
558                               .setPhysicalDisplayId(EXTERNAL_DISPLAY_ID)
559                               .setId(DisplayModeId(5))
560                               .setVsyncPeriod(16666666)
561                               .build();
562 
563     mThread->onModeChanged(mode);
564     expectConfigChangedEventReceivedByConnection(EXTERNAL_DISPLAY_ID, 5, 16666666);
565 }
566 
TEST_F(EventThreadTest,postConfigChangedPrimary64bit)567 TEST_F(EventThreadTest, postConfigChangedPrimary64bit) {
568     const auto mode = DisplayMode::Builder(hal::HWConfigId(0))
569                               .setPhysicalDisplayId(DISPLAY_ID_64BIT)
570                               .setId(DisplayModeId(7))
571                               .setVsyncPeriod(16666666)
572                               .build();
573     mThread->onModeChanged(mode);
574     expectConfigChangedEventReceivedByConnection(DISPLAY_ID_64BIT, 7, 16666666);
575 }
576 
TEST_F(EventThreadTest,suppressConfigChanged)577 TEST_F(EventThreadTest, suppressConfigChanged) {
578     ConnectionEventRecorder suppressConnectionEventRecorder{0};
579     sp<MockEventThreadConnection> suppressConnection =
580             createConnection(suppressConnectionEventRecorder);
581 
582     const auto mode = DisplayMode::Builder(hal::HWConfigId(0))
583                               .setPhysicalDisplayId(INTERNAL_DISPLAY_ID)
584                               .setId(DisplayModeId(9))
585                               .setVsyncPeriod(16666666)
586                               .build();
587 
588     mThread->onModeChanged(mode);
589     expectConfigChangedEventReceivedByConnection(INTERNAL_DISPLAY_ID, 9, 16666666);
590 
591     auto args = suppressConnectionEventRecorder.waitForCall();
592     ASSERT_FALSE(args.has_value());
593 }
594 
TEST_F(EventThreadTest,postUidFrameRateMapping)595 TEST_F(EventThreadTest, postUidFrameRateMapping) {
596     const std::vector<FrameRateOverride> overrides = {
597             {.uid = 1, .frameRateHz = 20},
598             {.uid = 3, .frameRateHz = 40},
599             {.uid = 5, .frameRateHz = 60},
600     };
601 
602     mThread->onFrameRateOverridesChanged(INTERNAL_DISPLAY_ID, overrides);
603     expectUidFrameRateMappingEventReceivedByConnection(INTERNAL_DISPLAY_ID, overrides);
604 }
605 
TEST_F(EventThreadTest,suppressUidFrameRateMapping)606 TEST_F(EventThreadTest, suppressUidFrameRateMapping) {
607     const std::vector<FrameRateOverride> overrides = {
608             {.uid = 1, .frameRateHz = 20},
609             {.uid = 3, .frameRateHz = 40},
610             {.uid = 5, .frameRateHz = 60},
611     };
612 
613     ConnectionEventRecorder suppressConnectionEventRecorder{0};
614     sp<MockEventThreadConnection> suppressConnection =
615             createConnection(suppressConnectionEventRecorder);
616 
617     mThread->onFrameRateOverridesChanged(INTERNAL_DISPLAY_ID, overrides);
618     expectUidFrameRateMappingEventReceivedByConnection(INTERNAL_DISPLAY_ID, overrides);
619 
620     auto args = suppressConnectionEventRecorder.waitForCall();
621     ASSERT_FALSE(args.has_value());
622 }
623 
TEST_F(EventThreadTest,requestNextVsyncWithThrottleVsyncDoesntPostVSync)624 TEST_F(EventThreadTest, requestNextVsyncWithThrottleVsyncDoesntPostVSync) {
625     // Signal that we want the next vsync event to be posted to the throttled connection
626     mThread->requestNextVsync(mThrottledConnection);
627 
628     // EventThread should immediately request a resync.
629     EXPECT_TRUE(mResyncCallRecorder.waitForCall().has_value());
630 
631     // EventThread should enable vsync callbacks.
632     expectVSyncSetEnabledCallReceived(true);
633 
634     // Use the received callback to signal a first vsync event.
635     // The interceptor should receive the event, but not the connection.
636     mCallback->onVSyncEvent(123, 456, 789);
637     expectInterceptCallReceived(123);
638     expectThrottleVsyncReceived(456, mThrottledConnectionUid);
639     mThrottledConnectionEventCallRecorder.waitForUnexpectedCall();
640 
641     // Use the received callback to signal a second vsync event.
642     // The interceptor should receive the event, but the connection should
643     // not as it was only interested in the first.
644     mCallback->onVSyncEvent(456, 123, 0);
645     expectInterceptCallReceived(456);
646     expectThrottleVsyncReceived(123, mThrottledConnectionUid);
647     EXPECT_FALSE(mConnectionEventCallRecorder.waitForUnexpectedCall().has_value());
648 
649     // EventThread should not change the vsync state as it didn't send the event
650     // yet
651     EXPECT_FALSE(mVSyncSetEnabledCallRecorder.waitForUnexpectedCall().has_value());
652 }
653 
654 } // namespace
655 } // namespace android
656 
657 // TODO(b/129481165): remove the #pragma below and fix conversion issues
658 #pragma clang diagnostic pop // ignored "-Wextra"
659