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henrike@webrtc.orgf0488722014-05-13 18:00:26 +00001/*
2 * Copyright 2004 The WebRTC Project Authors. All rights reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
Jonas Olssona4d87372019-07-05 19:08:33 +020011#include "rtc_base/thread.h"
12
kwibergbfefb032016-05-01 14:53:46 -070013#include <memory>
14
Danil Chapovalov912b3b82019-11-22 15:52:40 +010015#include "api/task_queue/task_queue_factory.h"
16#include "api/task_queue/task_queue_test.h"
Danil Chapovalov4bcf8092022-07-06 19:42:34 +020017#include "api/units/time_delta.h"
Steve Anton10542f22019-01-11 09:11:00 -080018#include "rtc_base/async_invoker.h"
19#include "rtc_base/async_udp_socket.h"
Mirko Bonadei481e3452021-07-30 13:57:25 +020020#include "rtc_base/checks.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020021#include "rtc_base/event.h"
Danil Chapovalov207f8532022-08-24 12:19:46 +020022#include "rtc_base/fake_clock.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020023#include "rtc_base/gunit.h"
Mirko Bonadeie5f4c6b2021-01-15 10:41:01 +010024#include "rtc_base/internal/default_socket_server.h"
Steve Anton10542f22019-01-11 09:11:00 -080025#include "rtc_base/null_socket_server.h"
26#include "rtc_base/physical_socket_server.h"
27#include "rtc_base/socket_address.h"
Markus Handell4ab7dde2020-07-10 13:23:25 +020028#include "rtc_base/synchronization/mutex.h"
Artem Titove41c4332018-07-25 15:04:28 +020029#include "rtc_base/third_party/sigslot/sigslot.h"
Danil Chapovalov207f8532022-08-24 12:19:46 +020030#include "test/gmock.h"
Sebastian Janssonda7267a2020-03-03 10:48:05 +010031#include "test/testsupport/rtc_expect_death.h"
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000032
33#if defined(WEBRTC_WIN)
34#include <comdef.h> // NOLINT
Markus Handell4ab7dde2020-07-10 13:23:25 +020035
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000036#endif
37
Mirko Bonadeie10b1632018-12-11 18:43:40 +010038namespace rtc {
39namespace {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000040
Danil Chapovalov207f8532022-08-24 12:19:46 +020041using ::testing::ElementsAre;
Danil Chapovalov4bcf8092022-07-06 19:42:34 +020042using ::webrtc::TimeDelta;
Sebastian Jansson73387822020-01-16 11:15:35 +010043
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000044// Generates a sequence of numbers (collaboratively).
45class TestGenerator {
46 public:
47 TestGenerator() : last(0), count(0) {}
48
49 int Next(int prev) {
50 int result = prev + last;
51 last = result;
52 count += 1;
53 return result;
54 }
55
56 int last;
57 int count;
58};
59
60struct TestMessage : public MessageData {
61 explicit TestMessage(int v) : value(v) {}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000062
63 int value;
64};
65
66// Receives on a socket and sends by posting messages.
67class SocketClient : public TestGenerator, public sigslot::has_slots<> {
68 public:
Niels Möllerd0b88792021-08-12 10:32:30 +020069 SocketClient(Socket* socket,
Yves Gerey665174f2018-06-19 15:03:05 +020070 const SocketAddress& addr,
71 Thread* post_thread,
72 MessageHandler* phandler)
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000073 : socket_(AsyncUDPSocket::Create(socket, addr)),
74 post_thread_(post_thread),
75 post_handler_(phandler) {
76 socket_->SignalReadPacket.connect(this, &SocketClient::OnPacket);
77 }
78
Steve Anton9de3aac2017-10-24 10:08:26 -070079 ~SocketClient() override { delete socket_; }
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000080
81 SocketAddress address() const { return socket_->GetLocalAddress(); }
82
Yves Gerey665174f2018-06-19 15:03:05 +020083 void OnPacket(AsyncPacketSocket* socket,
84 const char* buf,
85 size_t size,
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000086 const SocketAddress& remote_addr,
Niels Möllere6933812018-11-05 13:01:41 +010087 const int64_t& packet_time_us) {
Peter Boström0c4e06b2015-10-07 12:23:21 +020088 EXPECT_EQ(size, sizeof(uint32_t));
89 uint32_t prev = reinterpret_cast<const uint32_t*>(buf)[0];
90 uint32_t result = Next(prev);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000091
Taylor Brandstetter5d97a9a2016-06-10 14:17:27 -070092 post_thread_->PostDelayed(RTC_FROM_HERE, 200, post_handler_, 0,
93 new TestMessage(result));
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000094 }
95
96 private:
97 AsyncUDPSocket* socket_;
98 Thread* post_thread_;
99 MessageHandler* post_handler_;
100};
101
102// Receives messages and sends on a socket.
Tomas Gunnarssonabdb4702020-09-05 18:43:36 +0200103class MessageClient : public MessageHandlerAutoCleanup, public TestGenerator {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000104 public:
Yves Gerey665174f2018-06-19 15:03:05 +0200105 MessageClient(Thread* pth, Socket* socket) : socket_(socket) {}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000106
Steve Anton9de3aac2017-10-24 10:08:26 -0700107 ~MessageClient() override { delete socket_; }
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000108
Steve Anton9de3aac2017-10-24 10:08:26 -0700109 void OnMessage(Message* pmsg) override {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000110 TestMessage* msg = static_cast<TestMessage*>(pmsg->pdata);
111 int result = Next(msg->value);
112 EXPECT_GE(socket_->Send(&result, sizeof(result)), 0);
113 delete msg;
114 }
115
116 private:
117 Socket* socket_;
118};
119
deadbeefaea92932017-05-23 12:55:03 -0700120class CustomThread : public rtc::Thread {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000121 public:
tommie7251592017-07-14 14:44:46 -0700122 CustomThread()
123 : Thread(std::unique_ptr<SocketServer>(new rtc::NullSocketServer())) {}
Steve Anton9de3aac2017-10-24 10:08:26 -0700124 ~CustomThread() override { Stop(); }
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000125 bool Start() { return false; }
jiayl@webrtc.orgba737cb2014-09-18 16:45:21 +0000126
Yves Gerey665174f2018-06-19 15:03:05 +0200127 bool WrapCurrent() { return Thread::WrapCurrent(); }
128 void UnwrapCurrent() { Thread::UnwrapCurrent(); }
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000129};
130
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000131// A thread that does nothing when it runs and signals an event
132// when it is destroyed.
133class SignalWhenDestroyedThread : public Thread {
134 public:
135 SignalWhenDestroyedThread(Event* event)
tommie7251592017-07-14 14:44:46 -0700136 : Thread(std::unique_ptr<SocketServer>(new NullSocketServer())),
137 event_(event) {}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000138
Steve Anton9de3aac2017-10-24 10:08:26 -0700139 ~SignalWhenDestroyedThread() override {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000140 Stop();
141 event_->Set();
142 }
143
Steve Anton9de3aac2017-10-24 10:08:26 -0700144 void Run() override {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000145 // Do nothing.
146 }
147
148 private:
149 Event* event_;
150};
151
nissed9b75be2015-11-16 00:54:07 -0800152// A bool wrapped in a mutex, to avoid data races. Using a volatile
153// bool should be sufficient for correct code ("eventual consistency"
154// between caches is sufficient), but we can't tell the compiler about
155// that, and then tsan complains about a data race.
156
157// See also discussion at
158// http://stackoverflow.com/questions/7223164/is-mutex-needed-to-synchronize-a-simple-flag-between-pthreads
159
160// Using std::atomic<bool> or std::atomic_flag in C++11 is probably
161// the right thing to do, but those features are not yet allowed. Or
deadbeefaea92932017-05-23 12:55:03 -0700162// rtc::AtomicInt, if/when that is added. Since the use isn't
nissed9b75be2015-11-16 00:54:07 -0800163// performance critical, use a plain critical section for the time
164// being.
165
166class AtomicBool {
167 public:
168 explicit AtomicBool(bool value = false) : flag_(value) {}
169 AtomicBool& operator=(bool value) {
Markus Handell4ab7dde2020-07-10 13:23:25 +0200170 webrtc::MutexLock scoped_lock(&mutex_);
nissed9b75be2015-11-16 00:54:07 -0800171 flag_ = value;
172 return *this;
173 }
174 bool get() const {
Markus Handell4ab7dde2020-07-10 13:23:25 +0200175 webrtc::MutexLock scoped_lock(&mutex_);
nissed9b75be2015-11-16 00:54:07 -0800176 return flag_;
177 }
178
179 private:
Markus Handell4ab7dde2020-07-10 13:23:25 +0200180 mutable webrtc::Mutex mutex_;
nissed9b75be2015-11-16 00:54:07 -0800181 bool flag_;
182};
183
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000184// Function objects to test Thread::Invoke.
185struct FunctorA {
186 int operator()() { return 42; }
187};
188class FunctorB {
189 public:
nissed9b75be2015-11-16 00:54:07 -0800190 explicit FunctorB(AtomicBool* flag) : flag_(flag) {}
Yves Gerey665174f2018-06-19 15:03:05 +0200191 void operator()() {
192 if (flag_)
193 *flag_ = true;
194 }
195
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000196 private:
nissed9b75be2015-11-16 00:54:07 -0800197 AtomicBool* flag_;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000198};
199struct FunctorC {
200 int operator()() {
201 Thread::Current()->ProcessMessages(50);
202 return 24;
203 }
204};
Cameron Pickettd132ce12018-03-12 16:07:37 -0700205struct FunctorD {
206 public:
207 explicit FunctorD(AtomicBool* flag) : flag_(flag) {}
208 FunctorD(FunctorD&&) = default;
Byoungchan Lee14af7622022-01-12 05:24:58 +0900209
210 FunctorD(const FunctorD&) = delete;
211 FunctorD& operator=(const FunctorD&) = delete;
212
Cameron Pickettd132ce12018-03-12 16:07:37 -0700213 FunctorD& operator=(FunctorD&&) = default;
Yves Gerey665174f2018-06-19 15:03:05 +0200214 void operator()() {
215 if (flag_)
216 *flag_ = true;
217 }
218
Cameron Pickettd132ce12018-03-12 16:07:37 -0700219 private:
220 AtomicBool* flag_;
Cameron Pickettd132ce12018-03-12 16:07:37 -0700221};
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000222
223// See: https://code.google.com/p/webrtc/issues/detail?id=2409
224TEST(ThreadTest, DISABLED_Main) {
225 const SocketAddress addr("127.0.0.1", 0);
226
227 // Create the messaging client on its own thread.
tommie7251592017-07-14 14:44:46 -0700228 auto th1 = Thread::CreateWithSocketServer();
Niels Möllerd0b88792021-08-12 10:32:30 +0200229 Socket* socket = th1->socketserver()->CreateSocket(addr.family(), SOCK_DGRAM);
tommie7251592017-07-14 14:44:46 -0700230 MessageClient msg_client(th1.get(), socket);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000231
232 // Create the socket client on its own thread.
tommie7251592017-07-14 14:44:46 -0700233 auto th2 = Thread::CreateWithSocketServer();
Niels Möllerd0b88792021-08-12 10:32:30 +0200234 Socket* asocket =
235 th2->socketserver()->CreateSocket(addr.family(), SOCK_DGRAM);
tommie7251592017-07-14 14:44:46 -0700236 SocketClient sock_client(asocket, addr, th1.get(), &msg_client);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000237
238 socket->Connect(sock_client.address());
239
tommie7251592017-07-14 14:44:46 -0700240 th1->Start();
241 th2->Start();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000242
243 // Get the messages started.
tommie7251592017-07-14 14:44:46 -0700244 th1->PostDelayed(RTC_FROM_HERE, 100, &msg_client, 0, new TestMessage(1));
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000245
246 // Give the clients a little while to run.
247 // Messages will be processed at 100, 300, 500, 700, 900.
248 Thread* th_main = Thread::Current();
249 th_main->ProcessMessages(1000);
250
251 // Stop the sending client. Give the receiver a bit longer to run, in case
252 // it is running on a machine that is under load (e.g. the build machine).
tommie7251592017-07-14 14:44:46 -0700253 th1->Stop();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000254 th_main->ProcessMessages(200);
tommie7251592017-07-14 14:44:46 -0700255 th2->Stop();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000256
257 // Make sure the results were correct
258 EXPECT_EQ(5, msg_client.count);
259 EXPECT_EQ(34, msg_client.last);
260 EXPECT_EQ(5, sock_client.count);
261 EXPECT_EQ(55, sock_client.last);
262}
263
Tommife041642021-04-07 10:08:28 +0200264TEST(ThreadTest, CountBlockingCalls) {
Niels Möller83830f32022-05-20 09:12:57 +0200265 rtc::AutoThread current;
266
Tommife041642021-04-07 10:08:28 +0200267 // When the test runs, this will print out:
268 // (thread_unittest.cc:262): Blocking TestBody: total=2 (actual=1, could=1)
269 RTC_LOG_THREAD_BLOCK_COUNT();
270#if RTC_DCHECK_IS_ON
Tommife041642021-04-07 10:08:28 +0200271 rtc::Thread::ScopedCountBlockingCalls blocked_calls(
272 [&](uint32_t actual_block, uint32_t could_block) {
273 EXPECT_EQ(1u, actual_block);
274 EXPECT_EQ(1u, could_block);
275 });
276
277 EXPECT_EQ(0u, blocked_calls.GetBlockingCallCount());
278 EXPECT_EQ(0u, blocked_calls.GetCouldBeBlockingCallCount());
279 EXPECT_EQ(0u, blocked_calls.GetTotalBlockedCallCount());
280
281 // Test invoking on the current thread. This should not count as an 'actual'
282 // invoke, but should still count as an invoke that could block since we
283 // that the call to Invoke serves a purpose in some configurations (and should
284 // not be used a general way to call methods on the same thread).
Niels Möller83830f32022-05-20 09:12:57 +0200285 current.Invoke<void>(RTC_FROM_HERE, []() {});
Tommife041642021-04-07 10:08:28 +0200286 EXPECT_EQ(0u, blocked_calls.GetBlockingCallCount());
287 EXPECT_EQ(1u, blocked_calls.GetCouldBeBlockingCallCount());
288 EXPECT_EQ(1u, blocked_calls.GetTotalBlockedCallCount());
289
290 // Create a new thread to invoke on.
291 auto thread = Thread::CreateWithSocketServer();
292 thread->Start();
293 EXPECT_EQ(42, thread->Invoke<int>(RTC_FROM_HERE, []() { return 42; }));
294 EXPECT_EQ(1u, blocked_calls.GetBlockingCallCount());
295 EXPECT_EQ(1u, blocked_calls.GetCouldBeBlockingCallCount());
296 EXPECT_EQ(2u, blocked_calls.GetTotalBlockedCallCount());
297 thread->Stop();
298 RTC_DCHECK_BLOCK_COUNT_NO_MORE_THAN(2);
299#else
300 RTC_DCHECK_BLOCK_COUNT_NO_MORE_THAN(0);
301 RTC_LOG(LS_INFO) << "Test not active in this config";
302#endif
303}
304
Tomas Gunnarsson89f3dd52021-04-14 12:54:10 +0200305#if RTC_DCHECK_IS_ON
306TEST(ThreadTest, CountBlockingCallsOneCallback) {
Niels Möller83830f32022-05-20 09:12:57 +0200307 rtc::AutoThread current;
Tomas Gunnarsson89f3dd52021-04-14 12:54:10 +0200308 bool was_called_back = false;
309 {
310 rtc::Thread::ScopedCountBlockingCalls blocked_calls(
311 [&](uint32_t actual_block, uint32_t could_block) {
312 was_called_back = true;
313 });
Niels Möller83830f32022-05-20 09:12:57 +0200314 current.Invoke<void>(RTC_FROM_HERE, []() {});
Tomas Gunnarsson89f3dd52021-04-14 12:54:10 +0200315 }
316 EXPECT_TRUE(was_called_back);
317}
318
319TEST(ThreadTest, CountBlockingCallsSkipCallback) {
Niels Möller83830f32022-05-20 09:12:57 +0200320 rtc::AutoThread current;
Tomas Gunnarsson89f3dd52021-04-14 12:54:10 +0200321 bool was_called_back = false;
322 {
323 rtc::Thread::ScopedCountBlockingCalls blocked_calls(
324 [&](uint32_t actual_block, uint32_t could_block) {
325 was_called_back = true;
326 });
327 // Changed `blocked_calls` to not issue the callback if there are 1 or
328 // fewer blocking calls (i.e. we set the minimum required number to 2).
329 blocked_calls.set_minimum_call_count_for_callback(2);
Niels Möller83830f32022-05-20 09:12:57 +0200330 current.Invoke<void>(RTC_FROM_HERE, []() {});
Tomas Gunnarsson89f3dd52021-04-14 12:54:10 +0200331 }
332 // We should not have gotten a call back.
333 EXPECT_FALSE(was_called_back);
334}
335#endif
336
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000337// Test that setting thread names doesn't cause a malfunction.
338// There's no easy way to verify the name was set properly at this time.
henrike@webrtc.orgc732a3e2014-10-09 22:08:15 +0000339TEST(ThreadTest, Names) {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000340 // Default name
tommie7251592017-07-14 14:44:46 -0700341 auto thread = Thread::CreateWithSocketServer();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000342 EXPECT_TRUE(thread->Start());
343 thread->Stop();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000344 // Name with no object parameter
tommie7251592017-07-14 14:44:46 -0700345 thread = Thread::CreateWithSocketServer();
deadbeef37f5ecf2017-02-27 14:06:41 -0800346 EXPECT_TRUE(thread->SetName("No object", nullptr));
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000347 EXPECT_TRUE(thread->Start());
348 thread->Stop();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000349 // Really long name
tommie7251592017-07-14 14:44:46 -0700350 thread = Thread::CreateWithSocketServer();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000351 EXPECT_TRUE(thread->SetName("Abcdefghijklmnopqrstuvwxyz1234567890", this));
352 EXPECT_TRUE(thread->Start());
353 thread->Stop();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000354}
355
henrike@webrtc.orge30dab72014-10-09 15:41:40 +0000356TEST(ThreadTest, Wrap) {
357 Thread* current_thread = Thread::Current();
Niels Möller5a8f8602019-06-12 11:30:59 +0200358 ThreadManager::Instance()->SetCurrentThread(nullptr);
359
360 {
361 CustomThread cthread;
362 EXPECT_TRUE(cthread.WrapCurrent());
363 EXPECT_EQ(&cthread, Thread::Current());
364 EXPECT_TRUE(cthread.RunningForTest());
365 EXPECT_FALSE(cthread.IsOwned());
366 cthread.UnwrapCurrent();
367 EXPECT_FALSE(cthread.RunningForTest());
368 }
369 ThreadManager::Instance()->SetCurrentThread(current_thread);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000370}
371
Mirko Bonadei481e3452021-07-30 13:57:25 +0200372#if (!defined(NDEBUG) || RTC_DCHECK_IS_ON)
Artem Titovdfc5f0d2020-07-03 12:09:26 +0200373TEST(ThreadTest, InvokeToThreadAllowedReturnsTrueWithoutPolicies) {
Niels Möller83830f32022-05-20 09:12:57 +0200374 rtc::AutoThread main_thread;
Artem Titovdfc5f0d2020-07-03 12:09:26 +0200375 // Create and start the thread.
376 auto thread1 = Thread::CreateWithSocketServer();
377 auto thread2 = Thread::CreateWithSocketServer();
378
Danil Chapovalov4bcf8092022-07-06 19:42:34 +0200379 thread1->PostTask(
380 [&]() { EXPECT_TRUE(thread1->IsInvokeToThreadAllowed(thread2.get())); });
Niels Möller83830f32022-05-20 09:12:57 +0200381 main_thread.ProcessMessages(100);
Artem Titovdfc5f0d2020-07-03 12:09:26 +0200382}
383
384TEST(ThreadTest, InvokeAllowedWhenThreadsAdded) {
Niels Möller83830f32022-05-20 09:12:57 +0200385 rtc::AutoThread main_thread;
Artem Titovdfc5f0d2020-07-03 12:09:26 +0200386 // Create and start the thread.
387 auto thread1 = Thread::CreateWithSocketServer();
388 auto thread2 = Thread::CreateWithSocketServer();
389 auto thread3 = Thread::CreateWithSocketServer();
390 auto thread4 = Thread::CreateWithSocketServer();
391
392 thread1->AllowInvokesToThread(thread2.get());
393 thread1->AllowInvokesToThread(thread3.get());
394
Danil Chapovalov4bcf8092022-07-06 19:42:34 +0200395 thread1->PostTask([&]() {
Artem Titovdfc5f0d2020-07-03 12:09:26 +0200396 EXPECT_TRUE(thread1->IsInvokeToThreadAllowed(thread2.get()));
397 EXPECT_TRUE(thread1->IsInvokeToThreadAllowed(thread3.get()));
398 EXPECT_FALSE(thread1->IsInvokeToThreadAllowed(thread4.get()));
Danil Chapovalov4bcf8092022-07-06 19:42:34 +0200399 });
Niels Möller83830f32022-05-20 09:12:57 +0200400 main_thread.ProcessMessages(100);
Artem Titovdfc5f0d2020-07-03 12:09:26 +0200401}
402
403TEST(ThreadTest, InvokesDisallowedWhenDisallowAllInvokes) {
Niels Möller83830f32022-05-20 09:12:57 +0200404 rtc::AutoThread main_thread;
Artem Titovdfc5f0d2020-07-03 12:09:26 +0200405 // Create and start the thread.
406 auto thread1 = Thread::CreateWithSocketServer();
407 auto thread2 = Thread::CreateWithSocketServer();
408
409 thread1->DisallowAllInvokes();
410
Danil Chapovalov4bcf8092022-07-06 19:42:34 +0200411 thread1->PostTask(
412 [&]() { EXPECT_FALSE(thread1->IsInvokeToThreadAllowed(thread2.get())); });
Niels Möller83830f32022-05-20 09:12:57 +0200413 main_thread.ProcessMessages(100);
Artem Titovdfc5f0d2020-07-03 12:09:26 +0200414}
Mirko Bonadei481e3452021-07-30 13:57:25 +0200415#endif // (!defined(NDEBUG) || RTC_DCHECK_IS_ON)
Artem Titovdfc5f0d2020-07-03 12:09:26 +0200416
417TEST(ThreadTest, InvokesAllowedByDefault) {
Niels Möller83830f32022-05-20 09:12:57 +0200418 rtc::AutoThread main_thread;
Artem Titovdfc5f0d2020-07-03 12:09:26 +0200419 // Create and start the thread.
420 auto thread1 = Thread::CreateWithSocketServer();
421 auto thread2 = Thread::CreateWithSocketServer();
422
Danil Chapovalov4bcf8092022-07-06 19:42:34 +0200423 thread1->PostTask(
424 [&]() { EXPECT_TRUE(thread1->IsInvokeToThreadAllowed(thread2.get())); });
Niels Möller83830f32022-05-20 09:12:57 +0200425 main_thread.ProcessMessages(100);
Artem Titovdfc5f0d2020-07-03 12:09:26 +0200426}
427
henrike@webrtc.orgc732a3e2014-10-09 22:08:15 +0000428TEST(ThreadTest, Invoke) {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000429 // Create and start the thread.
tommie7251592017-07-14 14:44:46 -0700430 auto thread = Thread::CreateWithSocketServer();
431 thread->Start();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000432 // Try calling functors.
tommie7251592017-07-14 14:44:46 -0700433 EXPECT_EQ(42, thread->Invoke<int>(RTC_FROM_HERE, FunctorA()));
nissed9b75be2015-11-16 00:54:07 -0800434 AtomicBool called;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000435 FunctorB f2(&called);
tommie7251592017-07-14 14:44:46 -0700436 thread->Invoke<void>(RTC_FROM_HERE, f2);
nissed9b75be2015-11-16 00:54:07 -0800437 EXPECT_TRUE(called.get());
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000438 // Try calling bare functions.
439 struct LocalFuncs {
440 static int Func1() { return 999; }
441 static void Func2() {}
442 };
tommie7251592017-07-14 14:44:46 -0700443 EXPECT_EQ(999, thread->Invoke<int>(RTC_FROM_HERE, &LocalFuncs::Func1));
444 thread->Invoke<void>(RTC_FROM_HERE, &LocalFuncs::Func2);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000445}
446
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000447// Verifies that two threads calling Invoke on each other at the same time does
Sebastian Janssonda7267a2020-03-03 10:48:05 +0100448// not deadlock but crash.
449#if RTC_DCHECK_IS_ON && GTEST_HAS_DEATH_TEST && !defined(WEBRTC_ANDROID)
450TEST(ThreadTest, TwoThreadsInvokeDeathTest) {
Mirko Bonadei386b5c32021-07-28 08:55:52 +0200451 GTEST_FLAG_SET(death_test_style, "threadsafe");
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000452 AutoThread thread;
Sebastian Janssonda7267a2020-03-03 10:48:05 +0100453 Thread* main_thread = Thread::Current();
tommie7251592017-07-14 14:44:46 -0700454 auto other_thread = Thread::CreateWithSocketServer();
455 other_thread->Start();
Sebastian Janssonda7267a2020-03-03 10:48:05 +0100456 other_thread->Invoke<void>(RTC_FROM_HERE, [main_thread] {
457 RTC_EXPECT_DEATH(main_thread->Invoke<void>(RTC_FROM_HERE, [] {}), "loop");
458 });
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000459}
460
Sebastian Janssonda7267a2020-03-03 10:48:05 +0100461TEST(ThreadTest, ThreeThreadsInvokeDeathTest) {
Mirko Bonadei386b5c32021-07-28 08:55:52 +0200462 GTEST_FLAG_SET(death_test_style, "threadsafe");
Sebastian Janssonda7267a2020-03-03 10:48:05 +0100463 AutoThread thread;
464 Thread* first = Thread::Current();
465
466 auto second = Thread::Create();
467 second->Start();
468 auto third = Thread::Create();
469 third->Start();
470
471 second->Invoke<void>(RTC_FROM_HERE, [&] {
472 third->Invoke<void>(RTC_FROM_HERE, [&] {
473 RTC_EXPECT_DEATH(first->Invoke<void>(RTC_FROM_HERE, [] {}), "loop");
474 });
475 });
476}
477
478#endif
479
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000480// Verifies that if thread A invokes a call on thread B and thread C is trying
481// to invoke A at the same time, thread A does not handle C's invoke while
482// invoking B.
483TEST(ThreadTest, ThreeThreadsInvoke) {
484 AutoThread thread;
485 Thread* thread_a = Thread::Current();
tommie7251592017-07-14 14:44:46 -0700486 auto thread_b = Thread::CreateWithSocketServer();
487 auto thread_c = Thread::CreateWithSocketServer();
488 thread_b->Start();
489 thread_c->Start();
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000490
pbos@webrtc.orge93cbd12014-10-15 14:54:56 +0000491 class LockedBool {
492 public:
493 explicit LockedBool(bool value) : value_(value) {}
494
495 void Set(bool value) {
Markus Handell4ab7dde2020-07-10 13:23:25 +0200496 webrtc::MutexLock lock(&mutex_);
pbos@webrtc.orge93cbd12014-10-15 14:54:56 +0000497 value_ = value;
498 }
499
500 bool Get() {
Markus Handell4ab7dde2020-07-10 13:23:25 +0200501 webrtc::MutexLock lock(&mutex_);
pbos@webrtc.orge93cbd12014-10-15 14:54:56 +0000502 return value_;
503 }
504
505 private:
Markus Handell4ab7dde2020-07-10 13:23:25 +0200506 webrtc::Mutex mutex_;
507 bool value_ RTC_GUARDED_BY(mutex_);
pbos@webrtc.orge93cbd12014-10-15 14:54:56 +0000508 };
509
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000510 struct LocalFuncs {
pbos@webrtc.orge93cbd12014-10-15 14:54:56 +0000511 static void Set(LockedBool* out) { out->Set(true); }
512 static void InvokeSet(Thread* thread, LockedBool* out) {
Niels Möller1a29a5d2021-01-18 11:35:23 +0100513 thread->Invoke<void>(RTC_FROM_HERE, [out] { Set(out); });
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000514 }
515
Artem Titov96e3b992021-07-26 16:03:14 +0200516 // Set `out` true and call InvokeSet on `thread`.
pbos@webrtc.orge93cbd12014-10-15 14:54:56 +0000517 static void SetAndInvokeSet(LockedBool* out,
518 Thread* thread,
519 LockedBool* out_inner) {
520 out->Set(true);
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000521 InvokeSet(thread, out_inner);
522 }
523
Artem Titov96e3b992021-07-26 16:03:14 +0200524 // Asynchronously invoke SetAndInvokeSet on `thread1` and wait until
525 // `thread1` starts the call.
Niels Möller0694ce72021-05-03 16:03:22 +0200526 static void AsyncInvokeSetAndWait(DEPRECATED_AsyncInvoker* invoker,
deadbeef162cb532017-02-23 17:10:07 -0800527 Thread* thread1,
528 Thread* thread2,
529 LockedBool* out) {
pbos@webrtc.orge93cbd12014-10-15 14:54:56 +0000530 LockedBool async_invoked(false);
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000531
deadbeef162cb532017-02-23 17:10:07 -0800532 invoker->AsyncInvoke<void>(
Niels Möller1a29a5d2021-01-18 11:35:23 +0100533 RTC_FROM_HERE, thread1, [&async_invoked, thread2, out] {
534 SetAndInvokeSet(&async_invoked, thread2, out);
535 });
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000536
pbos@webrtc.orge93cbd12014-10-15 14:54:56 +0000537 EXPECT_TRUE_WAIT(async_invoked.Get(), 2000);
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000538 }
539 };
540
Niels Möller0694ce72021-05-03 16:03:22 +0200541 DEPRECATED_AsyncInvoker invoker;
pbos@webrtc.orge93cbd12014-10-15 14:54:56 +0000542 LockedBool thread_a_called(false);
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000543
544 // Start the sequence A --(invoke)--> B --(async invoke)--> C --(invoke)--> A.
545 // Thread B returns when C receives the call and C should be blocked until A
546 // starts to process messages.
Niels Möller1a29a5d2021-01-18 11:35:23 +0100547 Thread* thread_c_ptr = thread_c.get();
548 thread_b->Invoke<void>(
549 RTC_FROM_HERE, [&invoker, thread_c_ptr, thread_a, &thread_a_called] {
550 LocalFuncs::AsyncInvokeSetAndWait(&invoker, thread_c_ptr, thread_a,
551 &thread_a_called);
552 });
pbos@webrtc.orge93cbd12014-10-15 14:54:56 +0000553 EXPECT_FALSE(thread_a_called.Get());
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000554
pbos@webrtc.orge93cbd12014-10-15 14:54:56 +0000555 EXPECT_TRUE_WAIT(thread_a_called.Get(), 2000);
jiayl@webrtc.org3987b6d2014-09-24 17:14:05 +0000556}
557
Danil Chapovalov207f8532022-08-24 12:19:46 +0200558static void DelayedPostsWithIdenticalTimesAreProcessedInFifoOrder(
559 FakeClock& clock,
560 Thread& q) {
561 std::vector<int> run_order;
562
563 Event done;
Sebastian Jansson73387822020-01-16 11:15:35 +0100564 int64_t now = TimeMillis();
Danil Chapovalov207f8532022-08-24 12:19:46 +0200565 q.PostDelayedTask([&] { run_order.push_back(3); }, TimeDelta::Millis(3));
566 q.PostDelayedTask([&] { run_order.push_back(0); }, TimeDelta::Millis(1));
567 q.PostDelayedTask([&] { run_order.push_back(1); }, TimeDelta::Millis(2));
568 q.PostDelayedTask([&] { run_order.push_back(4); }, TimeDelta::Millis(3));
569 q.PostDelayedTask([&] { run_order.push_back(2); }, TimeDelta::Millis(2));
570 q.PostDelayedTask([&] { done.Set(); }, TimeDelta::Millis(4));
571 // Validate time was frozen while tasks were posted.
572 RTC_DCHECK_EQ(TimeMillis(), now);
Sebastian Jansson73387822020-01-16 11:15:35 +0100573
Danil Chapovalov207f8532022-08-24 12:19:46 +0200574 // Change time to make all tasks ready to run and wait for them.
575 clock.AdvanceTime(TimeDelta::Millis(4));
576 ASSERT_TRUE(done.Wait(TimeDelta::Seconds(1)));
Sebastian Jansson73387822020-01-16 11:15:35 +0100577
Danil Chapovalov207f8532022-08-24 12:19:46 +0200578 EXPECT_THAT(run_order, ElementsAre(0, 1, 2, 3, 4));
Sebastian Jansson73387822020-01-16 11:15:35 +0100579}
580
Danil Chapovalov71cf2d02022-08-26 11:49:14 +0200581TEST(ThreadTest, DelayedPostsWithIdenticalTimesAreProcessedInFifoOrder) {
Danil Chapovalov207f8532022-08-24 12:19:46 +0200582 ScopedBaseFakeClock clock;
Mirko Bonadeie5f4c6b2021-01-15 10:41:01 +0100583 Thread q(CreateDefaultSocketServer(), true);
Danil Chapovalov207f8532022-08-24 12:19:46 +0200584 q.Start();
585 DelayedPostsWithIdenticalTimesAreProcessedInFifoOrder(clock, q);
Sebastian Jansson73387822020-01-16 11:15:35 +0100586
587 NullSocketServer nullss;
588 Thread q_nullss(&nullss, true);
Danil Chapovalov207f8532022-08-24 12:19:46 +0200589 q_nullss.Start();
590 DelayedPostsWithIdenticalTimesAreProcessedInFifoOrder(clock, q_nullss);
Sebastian Jansson73387822020-01-16 11:15:35 +0100591}
592
Sebastian Jansson73387822020-01-16 11:15:35 +0100593// Ensure that ProcessAllMessageQueues does its essential function; process
594// all messages (both delayed and non delayed) up until the current time, on
595// all registered message queues.
596TEST(ThreadManager, ProcessAllMessageQueues) {
Niels Möller83830f32022-05-20 09:12:57 +0200597 rtc::AutoThread main_thread;
Sebastian Jansson73387822020-01-16 11:15:35 +0100598 Event entered_process_all_message_queues(true, false);
599 auto a = Thread::CreateWithSocketServer();
600 auto b = Thread::CreateWithSocketServer();
601 a->Start();
602 b->Start();
603
Niels Möller7a669002022-06-27 09:47:02 +0200604 std::atomic<int> messages_processed(0);
Sebastian Jansson73387822020-01-16 11:15:35 +0100605 auto incrementer = [&messages_processed,
606 &entered_process_all_message_queues] {
607 // Wait for event as a means to ensure Increment doesn't occur outside
608 // of ProcessAllMessageQueues. The event is set by a message posted to
609 // the main thread, which is guaranteed to be handled inside
610 // ProcessAllMessageQueues.
611 entered_process_all_message_queues.Wait(Event::kForever);
Niels Möller7a669002022-06-27 09:47:02 +0200612 messages_processed.fetch_add(1);
Sebastian Jansson73387822020-01-16 11:15:35 +0100613 };
614 auto event_signaler = [&entered_process_all_message_queues] {
615 entered_process_all_message_queues.Set();
616 };
617
618 // Post messages (both delayed and non delayed) to both threads.
Danil Chapovalov4bcf8092022-07-06 19:42:34 +0200619 a->PostTask(incrementer);
620 b->PostTask(incrementer);
621 a->PostDelayedTask(incrementer, TimeDelta::Zero());
622 b->PostDelayedTask(incrementer, TimeDelta::Zero());
623 main_thread.PostTask(event_signaler);
Sebastian Jansson73387822020-01-16 11:15:35 +0100624
625 ThreadManager::ProcessAllMessageQueuesForTesting();
Niels Möller7a669002022-06-27 09:47:02 +0200626 EXPECT_EQ(4, messages_processed.load(std::memory_order_acquire));
Sebastian Jansson73387822020-01-16 11:15:35 +0100627}
628
629// Test that ProcessAllMessageQueues doesn't hang if a thread is quitting.
630TEST(ThreadManager, ProcessAllMessageQueuesWithQuittingThread) {
631 auto t = Thread::CreateWithSocketServer();
632 t->Start();
633 t->Quit();
634 ThreadManager::ProcessAllMessageQueuesForTesting();
635}
636
637// Test that ProcessAllMessageQueues doesn't hang if a queue clears its
638// messages.
639TEST(ThreadManager, ProcessAllMessageQueuesWithClearedQueue) {
Niels Möller83830f32022-05-20 09:12:57 +0200640 rtc::AutoThread main_thread;
Sebastian Jansson73387822020-01-16 11:15:35 +0100641 Event entered_process_all_message_queues(true, false);
642 auto t = Thread::CreateWithSocketServer();
643 t->Start();
644
645 auto clearer = [&entered_process_all_message_queues] {
646 // Wait for event as a means to ensure Clear doesn't occur outside of
647 // ProcessAllMessageQueues. The event is set by a message posted to the
648 // main thread, which is guaranteed to be handled inside
649 // ProcessAllMessageQueues.
650 entered_process_all_message_queues.Wait(Event::kForever);
651 rtc::Thread::Current()->Clear(nullptr);
652 };
653 auto event_signaler = [&entered_process_all_message_queues] {
654 entered_process_all_message_queues.Set();
655 };
656
657 // Post messages (both delayed and non delayed) to both threads.
Henrik Boström2deee4b2022-01-20 11:58:05 +0100658 t->PostTask(clearer);
Niels Möller83830f32022-05-20 09:12:57 +0200659 main_thread.PostTask(event_signaler);
Sebastian Jansson73387822020-01-16 11:15:35 +0100660 ThreadManager::ProcessAllMessageQueuesForTesting();
661}
662
Tomas Gunnarssonabdb4702020-09-05 18:43:36 +0200663class RefCountedHandler : public MessageHandlerAutoCleanup,
664 public rtc::RefCountInterface {
Sebastian Jansson73387822020-01-16 11:15:35 +0100665 public:
666 void OnMessage(Message* msg) override {}
667};
668
Tomas Gunnarssonabdb4702020-09-05 18:43:36 +0200669class EmptyHandler : public MessageHandlerAutoCleanup {
Sebastian Jansson73387822020-01-16 11:15:35 +0100670 public:
671 void OnMessage(Message* msg) override {}
672};
673
674TEST(ThreadManager, ClearReentrant) {
675 std::unique_ptr<Thread> t(Thread::Create());
676 EmptyHandler handler;
677 RefCountedHandler* inner_handler(
678 new rtc::RefCountedObject<RefCountedHandler>());
679 // When the empty handler is destroyed, it will clear messages queued for
680 // itself. The message to be cleared itself wraps a MessageHandler object
681 // (RefCountedHandler) so this will cause the message queue to be cleared
682 // again in a re-entrant fashion, which previously triggered a DCHECK.
683 // The inner handler will be removed in a re-entrant fashion from the
684 // message queue of the thread while the outer handler is removed, verifying
685 // that the iterator is not invalidated in "MessageQueue::Clear".
686 t->Post(RTC_FROM_HERE, inner_handler, 0);
687 t->Post(RTC_FROM_HERE, &handler, 0,
688 new ScopedRefMessageData<RefCountedHandler>(inner_handler));
689}
690
Tommi9ebe6d72021-11-16 16:07:34 +0100691class DEPRECATED_AsyncInvokeTest : public ::testing::Test {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000692 public:
693 void IntCallback(int value) {
694 EXPECT_EQ(expected_thread_, Thread::Current());
695 int_value_ = value;
696 }
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000697 void SetExpectedThreadForIntCallback(Thread* thread) {
698 expected_thread_ = thread;
699 }
700
701 protected:
702 enum { kWaitTimeout = 1000 };
Tommi9ebe6d72021-11-16 16:07:34 +0100703 DEPRECATED_AsyncInvokeTest() : int_value_(0), expected_thread_(nullptr) {}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000704
Niels Möller83830f32022-05-20 09:12:57 +0200705 rtc::AutoThread main_thread_;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000706 int int_value_;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000707 Thread* expected_thread_;
708};
709
Tommi9ebe6d72021-11-16 16:07:34 +0100710TEST_F(DEPRECATED_AsyncInvokeTest, FireAndForget) {
Niels Möller0694ce72021-05-03 16:03:22 +0200711 DEPRECATED_AsyncInvoker invoker;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000712 // Create and start the thread.
tommie7251592017-07-14 14:44:46 -0700713 auto thread = Thread::CreateWithSocketServer();
714 thread->Start();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000715 // Try calling functor.
nissed9b75be2015-11-16 00:54:07 -0800716 AtomicBool called;
tommie7251592017-07-14 14:44:46 -0700717 invoker.AsyncInvoke<void>(RTC_FROM_HERE, thread.get(), FunctorB(&called));
nissed9b75be2015-11-16 00:54:07 -0800718 EXPECT_TRUE_WAIT(called.get(), kWaitTimeout);
tommie7251592017-07-14 14:44:46 -0700719 thread->Stop();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000720}
721
Tommi9ebe6d72021-11-16 16:07:34 +0100722TEST_F(DEPRECATED_AsyncInvokeTest, NonCopyableFunctor) {
Niels Möller0694ce72021-05-03 16:03:22 +0200723 DEPRECATED_AsyncInvoker invoker;
Cameron Pickettd132ce12018-03-12 16:07:37 -0700724 // Create and start the thread.
725 auto thread = Thread::CreateWithSocketServer();
726 thread->Start();
727 // Try calling functor.
728 AtomicBool called;
729 invoker.AsyncInvoke<void>(RTC_FROM_HERE, thread.get(), FunctorD(&called));
730 EXPECT_TRUE_WAIT(called.get(), kWaitTimeout);
731 thread->Stop();
732}
733
Tommi9ebe6d72021-11-16 16:07:34 +0100734TEST_F(DEPRECATED_AsyncInvokeTest, KillInvokerDuringExecute) {
deadbeef162cb532017-02-23 17:10:07 -0800735 // Use these events to get in a state where the functor is in the middle of
736 // executing, and then to wait for it to finish, ensuring the "EXPECT_FALSE"
737 // is run.
Niels Möllerc572ff32018-11-07 08:43:50 +0100738 Event functor_started;
739 Event functor_continue;
740 Event functor_finished;
deadbeef162cb532017-02-23 17:10:07 -0800741
tommie7251592017-07-14 14:44:46 -0700742 auto thread = Thread::CreateWithSocketServer();
743 thread->Start();
deadbeef162cb532017-02-23 17:10:07 -0800744 volatile bool invoker_destroyed = false;
745 {
deadbeef3af63b02017-08-08 17:59:47 -0700746 auto functor = [&functor_started, &functor_continue, &functor_finished,
747 &invoker_destroyed] {
748 functor_started.Set();
749 functor_continue.Wait(Event::kForever);
750 rtc::Thread::Current()->SleepMs(kWaitTimeout);
751 EXPECT_FALSE(invoker_destroyed);
752 functor_finished.Set();
753 };
Niels Möller0694ce72021-05-03 16:03:22 +0200754 DEPRECATED_AsyncInvoker invoker;
deadbeef3af63b02017-08-08 17:59:47 -0700755 invoker.AsyncInvoke<void>(RTC_FROM_HERE, thread.get(), functor);
deadbeef162cb532017-02-23 17:10:07 -0800756 functor_started.Wait(Event::kForever);
deadbeefaea92932017-05-23 12:55:03 -0700757
deadbeef3af63b02017-08-08 17:59:47 -0700758 // Destroy the invoker while the functor is still executing (doing
759 // SleepMs).
deadbeefaea92932017-05-23 12:55:03 -0700760 functor_continue.Set();
deadbeef162cb532017-02-23 17:10:07 -0800761 }
762
763 // If the destructor DIDN'T wait for the functor to finish executing, it will
764 // hit the EXPECT_FALSE(invoker_destroyed) after it finishes sleeping for a
765 // second.
766 invoker_destroyed = true;
767 functor_finished.Wait(Event::kForever);
768}
769
deadbeef3af63b02017-08-08 17:59:47 -0700770// Variant of the above test where the async-invoked task calls AsyncInvoke
Tommi9ebe6d72021-11-16 16:07:34 +0100771// *again*, for the thread on which the invoker is currently being destroyed.
772// This shouldn't deadlock or crash. The second invocation should be ignored.
773TEST_F(DEPRECATED_AsyncInvokeTest,
774 KillInvokerDuringExecuteWithReentrantInvoke) {
Niels Möllerc572ff32018-11-07 08:43:50 +0100775 Event functor_started;
deadbeef3af63b02017-08-08 17:59:47 -0700776 // Flag used to verify that the recursively invoked task never actually runs.
777 bool reentrant_functor_run = false;
778
779 Thread* main = Thread::Current();
Mirko Bonadei317a1f02019-09-17 17:06:18 +0200780 Thread thread(std::make_unique<NullSocketServer>());
deadbeef3af63b02017-08-08 17:59:47 -0700781 thread.Start();
782 {
Niels Möller0694ce72021-05-03 16:03:22 +0200783 DEPRECATED_AsyncInvoker invoker;
deadbeef3af63b02017-08-08 17:59:47 -0700784 auto reentrant_functor = [&reentrant_functor_run] {
785 reentrant_functor_run = true;
786 };
787 auto functor = [&functor_started, &invoker, main, reentrant_functor] {
788 functor_started.Set();
789 Thread::Current()->SleepMs(kWaitTimeout);
790 invoker.AsyncInvoke<void>(RTC_FROM_HERE, main, reentrant_functor);
791 };
Artem Titov96e3b992021-07-26 16:03:14 +0200792 // This queues a task on `thread` to sleep for `kWaitTimeout` then queue a
793 // task on `main`. But this second queued task should never run, since the
deadbeef3af63b02017-08-08 17:59:47 -0700794 // destructor will be entered before it's even invoked.
795 invoker.AsyncInvoke<void>(RTC_FROM_HERE, &thread, functor);
796 functor_started.Wait(Event::kForever);
797 }
798 EXPECT_FALSE(reentrant_functor_run);
799}
800
Henrik Boströmba4dcc32019-02-28 09:34:06 +0100801void WaitAndSetEvent(Event* wait_event, Event* set_event) {
802 wait_event->Wait(Event::kForever);
803 set_event->Set();
804}
805
806// A functor that keeps track of the number of copies and moves.
807class LifeCycleFunctor {
808 public:
809 struct Stats {
810 size_t copy_count = 0;
811 size_t move_count = 0;
812 };
813
814 LifeCycleFunctor(Stats* stats, Event* event) : stats_(stats), event_(event) {}
815 LifeCycleFunctor(const LifeCycleFunctor& other) { *this = other; }
816 LifeCycleFunctor(LifeCycleFunctor&& other) { *this = std::move(other); }
817
818 LifeCycleFunctor& operator=(const LifeCycleFunctor& other) {
819 stats_ = other.stats_;
820 event_ = other.event_;
821 ++stats_->copy_count;
822 return *this;
823 }
824
825 LifeCycleFunctor& operator=(LifeCycleFunctor&& other) {
826 stats_ = other.stats_;
827 event_ = other.event_;
828 ++stats_->move_count;
829 return *this;
830 }
831
832 void operator()() { event_->Set(); }
833
834 private:
835 Stats* stats_;
836 Event* event_;
837};
838
839// A functor that verifies the thread it was destroyed on.
840class DestructionFunctor {
841 public:
842 DestructionFunctor(Thread* thread, bool* thread_was_current, Event* event)
843 : thread_(thread),
844 thread_was_current_(thread_was_current),
845 event_(event) {}
846 ~DestructionFunctor() {
847 // Only signal the event if this was the functor that was invoked to avoid
848 // the event being signaled due to the destruction of temporary/moved
849 // versions of this object.
850 if (was_invoked_) {
851 *thread_was_current_ = thread_->IsCurrent();
852 event_->Set();
853 }
854 }
855
856 void operator()() { was_invoked_ = true; }
857
858 private:
859 Thread* thread_;
860 bool* thread_was_current_;
861 Event* event_;
862 bool was_invoked_ = false;
863};
864
Henrik Boströmba4dcc32019-02-28 09:34:06 +0100865TEST(ThreadPostTaskTest, InvokesWithLambda) {
866 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
867 background_thread->Start();
868
869 Event event;
Henrik Boström595f6882022-01-24 09:57:03 +0100870 background_thread->PostTask([&event] { event.Set(); });
Henrik Boströmba4dcc32019-02-28 09:34:06 +0100871 event.Wait(Event::kForever);
872}
873
874TEST(ThreadPostTaskTest, InvokesWithCopiedFunctor) {
875 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
876 background_thread->Start();
877
878 LifeCycleFunctor::Stats stats;
879 Event event;
880 LifeCycleFunctor functor(&stats, &event);
Henrik Boström595f6882022-01-24 09:57:03 +0100881 background_thread->PostTask(functor);
Henrik Boströmba4dcc32019-02-28 09:34:06 +0100882 event.Wait(Event::kForever);
883
884 EXPECT_EQ(1u, stats.copy_count);
885 EXPECT_EQ(0u, stats.move_count);
886}
887
888TEST(ThreadPostTaskTest, InvokesWithMovedFunctor) {
889 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
890 background_thread->Start();
891
892 LifeCycleFunctor::Stats stats;
893 Event event;
894 LifeCycleFunctor functor(&stats, &event);
Henrik Boström595f6882022-01-24 09:57:03 +0100895 background_thread->PostTask(std::move(functor));
Henrik Boströmba4dcc32019-02-28 09:34:06 +0100896 event.Wait(Event::kForever);
897
898 EXPECT_EQ(0u, stats.copy_count);
899 EXPECT_EQ(1u, stats.move_count);
900}
901
902TEST(ThreadPostTaskTest, InvokesWithReferencedFunctorShouldCopy) {
903 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
904 background_thread->Start();
905
906 LifeCycleFunctor::Stats stats;
907 Event event;
908 LifeCycleFunctor functor(&stats, &event);
909 LifeCycleFunctor& functor_ref = functor;
Henrik Boström595f6882022-01-24 09:57:03 +0100910 background_thread->PostTask(functor_ref);
Henrik Boströmba4dcc32019-02-28 09:34:06 +0100911 event.Wait(Event::kForever);
912
913 EXPECT_EQ(1u, stats.copy_count);
914 EXPECT_EQ(0u, stats.move_count);
915}
916
917TEST(ThreadPostTaskTest, InvokesWithCopiedFunctorDestroyedOnTargetThread) {
918 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
919 background_thread->Start();
920
921 Event event;
922 bool was_invoked_on_background_thread = false;
923 DestructionFunctor functor(background_thread.get(),
924 &was_invoked_on_background_thread, &event);
Henrik Boström595f6882022-01-24 09:57:03 +0100925 background_thread->PostTask(functor);
Henrik Boströmba4dcc32019-02-28 09:34:06 +0100926 event.Wait(Event::kForever);
927
928 EXPECT_TRUE(was_invoked_on_background_thread);
929}
930
931TEST(ThreadPostTaskTest, InvokesWithMovedFunctorDestroyedOnTargetThread) {
932 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
933 background_thread->Start();
934
935 Event event;
936 bool was_invoked_on_background_thread = false;
937 DestructionFunctor functor(background_thread.get(),
938 &was_invoked_on_background_thread, &event);
Henrik Boström595f6882022-01-24 09:57:03 +0100939 background_thread->PostTask(std::move(functor));
Henrik Boströmba4dcc32019-02-28 09:34:06 +0100940 event.Wait(Event::kForever);
941
942 EXPECT_TRUE(was_invoked_on_background_thread);
943}
944
945TEST(ThreadPostTaskTest,
946 InvokesWithReferencedFunctorShouldCopyAndDestroyedOnTargetThread) {
947 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
948 background_thread->Start();
949
950 Event event;
951 bool was_invoked_on_background_thread = false;
952 DestructionFunctor functor(background_thread.get(),
953 &was_invoked_on_background_thread, &event);
954 DestructionFunctor& functor_ref = functor;
Henrik Boström595f6882022-01-24 09:57:03 +0100955 background_thread->PostTask(functor_ref);
Henrik Boströmba4dcc32019-02-28 09:34:06 +0100956 event.Wait(Event::kForever);
957
958 EXPECT_TRUE(was_invoked_on_background_thread);
959}
960
961TEST(ThreadPostTaskTest, InvokesOnBackgroundThread) {
962 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
963 background_thread->Start();
964
965 Event event;
966 bool was_invoked_on_background_thread = false;
Niels Möller1a29a5d2021-01-18 11:35:23 +0100967 Thread* background_thread_ptr = background_thread.get();
Henrik Boström595f6882022-01-24 09:57:03 +0100968 background_thread->PostTask(
Niels Möller1a29a5d2021-01-18 11:35:23 +0100969 [background_thread_ptr, &was_invoked_on_background_thread, &event] {
970 was_invoked_on_background_thread = background_thread_ptr->IsCurrent();
971 event.Set();
972 });
Henrik Boströmba4dcc32019-02-28 09:34:06 +0100973 event.Wait(Event::kForever);
974
975 EXPECT_TRUE(was_invoked_on_background_thread);
976}
977
978TEST(ThreadPostTaskTest, InvokesAsynchronously) {
979 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
980 background_thread->Start();
981
982 // The first event ensures that SendSingleMessage() is not blocking this
983 // thread. The second event ensures that the message is processed.
984 Event event_set_by_test_thread;
985 Event event_set_by_background_thread;
Henrik Boström595f6882022-01-24 09:57:03 +0100986 background_thread->PostTask(
Henrik Boström2deee4b2022-01-20 11:58:05 +0100987 [&event_set_by_test_thread, &event_set_by_background_thread] {
988 WaitAndSetEvent(&event_set_by_test_thread,
989 &event_set_by_background_thread);
990 });
Henrik Boströmba4dcc32019-02-28 09:34:06 +0100991 event_set_by_test_thread.Set();
992 event_set_by_background_thread.Wait(Event::kForever);
993}
994
995TEST(ThreadPostTaskTest, InvokesInPostedOrder) {
996 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
997 background_thread->Start();
998
999 Event first;
1000 Event second;
1001 Event third;
1002 Event fourth;
1003
Henrik Boström595f6882022-01-24 09:57:03 +01001004 background_thread->PostTask(
1005 [&first, &second] { WaitAndSetEvent(&first, &second); });
1006 background_thread->PostTask(
1007 [&second, &third] { WaitAndSetEvent(&second, &third); });
1008 background_thread->PostTask(
1009 [&third, &fourth] { WaitAndSetEvent(&third, &fourth); });
Henrik Boströmba4dcc32019-02-28 09:34:06 +01001010
1011 // All tasks have been posted before the first one is unblocked.
1012 first.Set();
1013 // Only if the chain is invoked in posted order will the last event be set.
1014 fourth.Wait(Event::kForever);
1015}
1016
Steve Antonbcc1a762019-12-11 11:21:53 -08001017TEST(ThreadPostDelayedTaskTest, InvokesAsynchronously) {
1018 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
1019 background_thread->Start();
1020
1021 // The first event ensures that SendSingleMessage() is not blocking this
1022 // thread. The second event ensures that the message is processed.
1023 Event event_set_by_test_thread;
1024 Event event_set_by_background_thread;
Henrik Boström595f6882022-01-24 09:57:03 +01001025 background_thread->PostDelayedTask(
Niels Möller1a29a5d2021-01-18 11:35:23 +01001026 [&event_set_by_test_thread, &event_set_by_background_thread] {
1027 WaitAndSetEvent(&event_set_by_test_thread,
1028 &event_set_by_background_thread);
1029 },
Danil Chapovalov4bcf8092022-07-06 19:42:34 +02001030 TimeDelta::Millis(10));
Steve Antonbcc1a762019-12-11 11:21:53 -08001031 event_set_by_test_thread.Set();
1032 event_set_by_background_thread.Wait(Event::kForever);
1033}
1034
1035TEST(ThreadPostDelayedTaskTest, InvokesInDelayOrder) {
Steve Anton094396f2019-12-16 00:56:02 -08001036 ScopedFakeClock clock;
Steve Antonbcc1a762019-12-11 11:21:53 -08001037 std::unique_ptr<rtc::Thread> background_thread(rtc::Thread::Create());
1038 background_thread->Start();
1039
1040 Event first;
1041 Event second;
1042 Event third;
1043 Event fourth;
1044
Henrik Boström595f6882022-01-24 09:57:03 +01001045 background_thread->PostDelayedTask(
1046 [&third, &fourth] { WaitAndSetEvent(&third, &fourth); },
Danil Chapovalov4bcf8092022-07-06 19:42:34 +02001047 TimeDelta::Millis(11));
Henrik Boström595f6882022-01-24 09:57:03 +01001048 background_thread->PostDelayedTask(
1049 [&first, &second] { WaitAndSetEvent(&first, &second); },
Danil Chapovalov4bcf8092022-07-06 19:42:34 +02001050 TimeDelta::Millis(9));
Henrik Boström595f6882022-01-24 09:57:03 +01001051 background_thread->PostDelayedTask(
1052 [&second, &third] { WaitAndSetEvent(&second, &third); },
Danil Chapovalov4bcf8092022-07-06 19:42:34 +02001053 TimeDelta::Millis(10));
Steve Antonbcc1a762019-12-11 11:21:53 -08001054
1055 // All tasks have been posted before the first one is unblocked.
1056 first.Set();
Steve Anton094396f2019-12-16 00:56:02 -08001057 // Only if the chain is invoked in delay order will the last event be set.
Danil Chapovalov4bcf8092022-07-06 19:42:34 +02001058 clock.AdvanceTime(TimeDelta::Millis(11));
Markus Handell2cfc1af2022-08-19 08:16:48 +00001059 EXPECT_TRUE(fourth.Wait(TimeDelta::Zero()));
Steve Antonbcc1a762019-12-11 11:21:53 -08001060}
1061
Tommi6866dc72020-05-15 10:11:56 +02001062TEST(ThreadPostDelayedTaskTest, IsCurrentTaskQueue) {
1063 auto current_tq = webrtc::TaskQueueBase::Current();
1064 {
1065 std::unique_ptr<rtc::Thread> thread(rtc::Thread::Create());
1066 thread->WrapCurrent();
1067 EXPECT_EQ(webrtc::TaskQueueBase::Current(),
1068 static_cast<webrtc::TaskQueueBase*>(thread.get()));
1069 thread->UnwrapCurrent();
1070 }
1071 EXPECT_EQ(webrtc::TaskQueueBase::Current(), current_tq);
1072}
1073
Danil Chapovalov912b3b82019-11-22 15:52:40 +01001074class ThreadFactory : public webrtc::TaskQueueFactory {
1075 public:
1076 std::unique_ptr<webrtc::TaskQueueBase, webrtc::TaskQueueDeleter>
1077 CreateTaskQueue(absl::string_view /* name */,
1078 Priority /*priority*/) const override {
1079 std::unique_ptr<Thread> thread = Thread::Create();
1080 thread->Start();
1081 return std::unique_ptr<webrtc::TaskQueueBase, webrtc::TaskQueueDeleter>(
1082 thread.release());
1083 }
1084};
1085
1086using ::webrtc::TaskQueueTest;
1087
1088INSTANTIATE_TEST_SUITE_P(RtcThread,
1089 TaskQueueTest,
Ali Tofighe7e3d592022-08-25 10:09:48 +00001090 ::testing::Values(std::make_unique<ThreadFactory>));
Danil Chapovalov912b3b82019-11-22 15:52:40 +01001091
Mirko Bonadeie10b1632018-12-11 18:43:40 +01001092} // namespace
1093} // namespace rtc