1 // Copyright (c) 2012 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
8 #include "base/bind_helpers.h"
9 #include "base/compiler_specific.h"
10 #include "base/logging.h"
11 #include "base/memory/ref_counted.h"
12 #include "base/message_loop.h"
13 #include "base/pending_task.h"
14 #include "base/posix/eintr_wrapper.h"
15 #include "base/run_loop.h"
16 #include "base/thread_task_runner_handle.h"
17 #include "base/threading/platform_thread.h"
18 #include "base/threading/thread.h"
19 #include "testing/gtest/include/gtest/gtest.h"
22 #include "base/message_pump_win.h"
23 #include "base/win/scoped_handle.h"
28 // TODO(darin): Platform-specific MessageLoop tests should be grouped together
29 // to avoid chopping this file up with so many #ifdefs.
33 class Foo
: public RefCounted
<Foo
> {
35 Foo() : test_count_(0) {
42 void Test1ConstRef(const std::string
& a
) {
47 void Test1Ptr(std::string
* a
) {
52 void Test1Int(int a
) {
56 void Test2Ptr(std::string
* a
, std::string
* b
) {
62 void Test2Mixed(const std::string
& a
, std::string
* b
) {
68 int test_count() const { return test_count_
; }
69 const std::string
& result() const { return result_
; }
72 friend class RefCounted
<Foo
>;
80 void RunTest_PostTask(MessageLoop::Type message_loop_type
) {
81 MessageLoop
loop(message_loop_type
);
83 // Add tests to message loop
84 scoped_refptr
<Foo
> foo(new Foo());
85 std::string
a("a"), b("b"), c("c"), d("d");
86 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
87 &Foo::Test0
, foo
.get()));
88 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
89 &Foo::Test1ConstRef
, foo
.get(), a
));
90 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
91 &Foo::Test1Ptr
, foo
.get(), &b
));
92 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
93 &Foo::Test1Int
, foo
.get(), 100));
94 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
95 &Foo::Test2Ptr
, foo
.get(), &a
, &c
));
96 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
97 &Foo::Test2Mixed
, foo
.get(), a
, &d
));
99 // After all tests, post a message that will shut down the message loop
100 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
101 &MessageLoop::Quit
, Unretained(MessageLoop::current())));
103 // Now kick things off
104 MessageLoop::current()->Run();
106 EXPECT_EQ(foo
->test_count(), 105);
107 EXPECT_EQ(foo
->result(), "abacad");
110 void RunTest_PostTask_SEH(MessageLoop::Type message_loop_type
) {
111 MessageLoop
loop(message_loop_type
);
113 // Add tests to message loop
114 scoped_refptr
<Foo
> foo(new Foo());
115 std::string
a("a"), b("b"), c("c"), d("d");
116 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
117 &Foo::Test0
, foo
.get()));
118 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
119 &Foo::Test1ConstRef
, foo
.get(), a
));
120 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
121 &Foo::Test1Ptr
, foo
.get(), &b
));
122 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
123 &Foo::Test1Int
, foo
.get(), 100));
124 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
125 &Foo::Test2Ptr
, foo
.get(), &a
, &c
));
126 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
127 &Foo::Test2Mixed
, foo
.get(), a
, &d
));
129 // After all tests, post a message that will shut down the message loop
130 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
131 &MessageLoop::Quit
, Unretained(MessageLoop::current())));
133 // Now kick things off with the SEH block active.
134 MessageLoop::current()->set_exception_restoration(true);
135 MessageLoop::current()->Run();
136 MessageLoop::current()->set_exception_restoration(false);
138 EXPECT_EQ(foo
->test_count(), 105);
139 EXPECT_EQ(foo
->result(), "abacad");
142 // This function runs slowly to simulate a large amount of work being done.
143 static void SlowFunc(TimeDelta pause
, int* quit_counter
) {
144 PlatformThread::Sleep(pause
);
145 if (--(*quit_counter
) == 0)
146 MessageLoop::current()->QuitWhenIdle();
149 // This function records the time when Run was called in a Time object, which is
150 // useful for building a variety of MessageLoop tests.
151 static void RecordRunTimeFunc(Time
* run_time
, int* quit_counter
) {
152 *run_time
= Time::Now();
154 // Cause our Run function to take some time to execute. As a result we can
155 // count on subsequent RecordRunTimeFunc()s running at a future time,
156 // without worry about the resolution of our system clock being an issue.
157 SlowFunc(TimeDelta::FromMilliseconds(10), quit_counter
);
160 void RunTest_PostDelayedTask_Basic(MessageLoop::Type message_loop_type
) {
161 MessageLoop
loop(message_loop_type
);
163 // Test that PostDelayedTask results in a delayed task.
165 const TimeDelta kDelay
= TimeDelta::FromMilliseconds(100);
170 loop
.PostDelayedTask(
171 FROM_HERE
, Bind(&RecordRunTimeFunc
, &run_time
, &num_tasks
),
174 Time time_before_run
= Time::Now();
176 Time time_after_run
= Time::Now();
178 EXPECT_EQ(0, num_tasks
);
179 EXPECT_LT(kDelay
, time_after_run
- time_before_run
);
182 void RunTest_PostDelayedTask_InDelayOrder(
183 MessageLoop::Type message_loop_type
) {
184 MessageLoop
loop(message_loop_type
);
186 // Test that two tasks with different delays run in the right order.
188 Time run_time1
, run_time2
;
190 loop
.PostDelayedTask(
192 Bind(&RecordRunTimeFunc
, &run_time1
, &num_tasks
),
193 TimeDelta::FromMilliseconds(200));
194 // If we get a large pause in execution (due to a context switch) here, this
196 loop
.PostDelayedTask(
198 Bind(&RecordRunTimeFunc
, &run_time2
, &num_tasks
),
199 TimeDelta::FromMilliseconds(10));
202 EXPECT_EQ(0, num_tasks
);
204 EXPECT_TRUE(run_time2
< run_time1
);
207 void RunTest_PostDelayedTask_InPostOrder(
208 MessageLoop::Type message_loop_type
) {
209 MessageLoop
loop(message_loop_type
);
211 // Test that two tasks with the same delay run in the order in which they
214 // NOTE: This is actually an approximate test since the API only takes a
215 // "delay" parameter, so we are not exactly simulating two tasks that get
216 // posted at the exact same time. It would be nice if the API allowed us to
217 // specify the desired run time.
219 const TimeDelta kDelay
= TimeDelta::FromMilliseconds(100);
222 Time run_time1
, run_time2
;
224 loop
.PostDelayedTask(
226 Bind(&RecordRunTimeFunc
, &run_time1
, &num_tasks
), kDelay
);
227 loop
.PostDelayedTask(
229 Bind(&RecordRunTimeFunc
, &run_time2
, &num_tasks
), kDelay
);
232 EXPECT_EQ(0, num_tasks
);
234 EXPECT_TRUE(run_time1
< run_time2
);
237 void RunTest_PostDelayedTask_InPostOrder_2(
238 MessageLoop::Type message_loop_type
) {
239 MessageLoop
loop(message_loop_type
);
241 // Test that a delayed task still runs after a normal tasks even if the
242 // normal tasks take a long time to run.
244 const TimeDelta kPause
= TimeDelta::FromMilliseconds(50);
249 loop
.PostTask(FROM_HERE
, Bind(&SlowFunc
, kPause
, &num_tasks
));
250 loop
.PostDelayedTask(
252 Bind(&RecordRunTimeFunc
, &run_time
, &num_tasks
),
253 TimeDelta::FromMilliseconds(10));
255 Time time_before_run
= Time::Now();
257 Time time_after_run
= Time::Now();
259 EXPECT_EQ(0, num_tasks
);
261 EXPECT_LT(kPause
, time_after_run
- time_before_run
);
264 void RunTest_PostDelayedTask_InPostOrder_3(
265 MessageLoop::Type message_loop_type
) {
266 MessageLoop
loop(message_loop_type
);
268 // Test that a delayed task still runs after a pile of normal tasks. The key
269 // difference between this test and the previous one is that here we return
270 // the MessageLoop a lot so we give the MessageLoop plenty of opportunities
271 // to maybe run the delayed task. It should know not to do so until the
272 // delayed task's delay has passed.
275 Time run_time1
, run_time2
;
277 // Clutter the ML with tasks.
278 for (int i
= 1; i
< num_tasks
; ++i
)
279 loop
.PostTask(FROM_HERE
,
280 Bind(&RecordRunTimeFunc
, &run_time1
, &num_tasks
));
282 loop
.PostDelayedTask(
283 FROM_HERE
, Bind(&RecordRunTimeFunc
, &run_time2
, &num_tasks
),
284 TimeDelta::FromMilliseconds(1));
287 EXPECT_EQ(0, num_tasks
);
289 EXPECT_TRUE(run_time2
> run_time1
);
292 void RunTest_PostDelayedTask_SharedTimer(
293 MessageLoop::Type message_loop_type
) {
294 MessageLoop
loop(message_loop_type
);
296 // Test that the interval of the timer, used to run the next delayed task, is
297 // set to a value corresponding to when the next delayed task should run.
299 // By setting num_tasks to 1, we ensure that the first task to run causes the
302 Time run_time1
, run_time2
;
304 loop
.PostDelayedTask(
306 Bind(&RecordRunTimeFunc
, &run_time1
, &num_tasks
),
307 TimeDelta::FromSeconds(1000));
308 loop
.PostDelayedTask(
310 Bind(&RecordRunTimeFunc
, &run_time2
, &num_tasks
),
311 TimeDelta::FromMilliseconds(10));
313 Time start_time
= Time::Now();
316 EXPECT_EQ(0, num_tasks
);
318 // Ensure that we ran in far less time than the slower timer.
319 TimeDelta total_time
= Time::Now() - start_time
;
320 EXPECT_GT(5000, total_time
.InMilliseconds());
322 // In case both timers somehow run at nearly the same time, sleep a little
323 // and then run all pending to force them both to have run. This is just
324 // encouraging flakiness if there is any.
325 PlatformThread::Sleep(TimeDelta::FromMilliseconds(100));
326 RunLoop().RunUntilIdle();
328 EXPECT_TRUE(run_time1
.is_null());
329 EXPECT_FALSE(run_time2
.is_null());
335 MessageLoop::current()->SetNestableTasksAllowed(true);
337 while (GetMessage(&msg
, NULL
, 0, 0)) {
338 TranslateMessage(&msg
);
339 DispatchMessage(&msg
);
341 MessageLoop::current()->QuitWhenIdle();
344 void RunTest_PostDelayedTask_SharedTimer_SubPump() {
345 MessageLoop
loop(MessageLoop::TYPE_UI
);
347 // Test that the interval of the timer, used to run the next delayed task, is
348 // set to a value corresponding to when the next delayed task should run.
350 // By setting num_tasks to 1, we ensure that the first task to run causes the
355 loop
.PostTask(FROM_HERE
, Bind(&SubPumpFunc
));
357 // This very delayed task should never run.
358 loop
.PostDelayedTask(
360 Bind(&RecordRunTimeFunc
, &run_time
, &num_tasks
),
361 TimeDelta::FromSeconds(1000));
363 // This slightly delayed task should run from within SubPumpFunc).
364 loop
.PostDelayedTask(
366 Bind(&PostQuitMessage
, 0),
367 TimeDelta::FromMilliseconds(10));
369 Time start_time
= Time::Now();
372 EXPECT_EQ(1, num_tasks
);
374 // Ensure that we ran in far less time than the slower timer.
375 TimeDelta total_time
= Time::Now() - start_time
;
376 EXPECT_GT(5000, total_time
.InMilliseconds());
378 // In case both timers somehow run at nearly the same time, sleep a little
379 // and then run all pending to force them both to have run. This is just
380 // encouraging flakiness if there is any.
381 PlatformThread::Sleep(TimeDelta::FromMilliseconds(100));
382 RunLoop().RunUntilIdle();
384 EXPECT_TRUE(run_time
.is_null());
387 #endif // defined(OS_WIN)
389 // This is used to inject a test point for recording the destructor calls for
390 // Closure objects send to MessageLoop::PostTask(). It is awkward usage since we
391 // are trying to hook the actual destruction, which is not a common operation.
392 class RecordDeletionProbe
: public RefCounted
<RecordDeletionProbe
> {
394 RecordDeletionProbe(RecordDeletionProbe
* post_on_delete
, bool* was_deleted
)
395 : post_on_delete_(post_on_delete
), was_deleted_(was_deleted
) {
400 friend class RefCounted
<RecordDeletionProbe
>;
402 ~RecordDeletionProbe() {
403 *was_deleted_
= true;
405 MessageLoop::current()->PostTask(
407 Bind(&RecordDeletionProbe::Run
, post_on_delete_
.get()));
410 scoped_refptr
<RecordDeletionProbe
> post_on_delete_
;
414 void RunTest_EnsureDeletion(MessageLoop::Type message_loop_type
) {
415 bool a_was_deleted
= false;
416 bool b_was_deleted
= false;
418 MessageLoop
loop(message_loop_type
);
420 FROM_HERE
, Bind(&RecordDeletionProbe::Run
,
421 new RecordDeletionProbe(NULL
, &a_was_deleted
)));
422 // TODO(ajwong): Do we really need 1000ms here?
423 loop
.PostDelayedTask(
424 FROM_HERE
, Bind(&RecordDeletionProbe::Run
,
425 new RecordDeletionProbe(NULL
, &b_was_deleted
)),
426 TimeDelta::FromMilliseconds(1000));
428 EXPECT_TRUE(a_was_deleted
);
429 EXPECT_TRUE(b_was_deleted
);
432 void RunTest_EnsureDeletion_Chain(MessageLoop::Type message_loop_type
) {
433 bool a_was_deleted
= false;
434 bool b_was_deleted
= false;
435 bool c_was_deleted
= false;
437 MessageLoop
loop(message_loop_type
);
438 // The scoped_refptr for each of the below is held either by the chained
439 // RecordDeletionProbe, or the bound RecordDeletionProbe::Run() callback.
440 RecordDeletionProbe
* a
= new RecordDeletionProbe(NULL
, &a_was_deleted
);
441 RecordDeletionProbe
* b
= new RecordDeletionProbe(a
, &b_was_deleted
);
442 RecordDeletionProbe
* c
= new RecordDeletionProbe(b
, &c_was_deleted
);
443 loop
.PostTask(FROM_HERE
, Bind(&RecordDeletionProbe::Run
, c
));
445 EXPECT_TRUE(a_was_deleted
);
446 EXPECT_TRUE(b_was_deleted
);
447 EXPECT_TRUE(c_was_deleted
);
450 void NestingFunc(int* depth
) {
453 MessageLoop::current()->PostTask(FROM_HERE
,
454 Bind(&NestingFunc
, depth
));
456 MessageLoop::current()->SetNestableTasksAllowed(true);
457 MessageLoop::current()->Run();
459 MessageLoop::current()->QuitWhenIdle();
464 LONG WINAPI
BadExceptionHandler(EXCEPTION_POINTERS
*ex_info
) {
465 ADD_FAILURE() << "bad exception handler";
466 ::ExitProcess(ex_info
->ExceptionRecord
->ExceptionCode
);
467 return EXCEPTION_EXECUTE_HANDLER
;
470 // This task throws an SEH exception: initially write to an invalid address.
471 // If the right SEH filter is installed, it will fix the error.
472 class Crasher
: public RefCounted
<Crasher
> {
474 // Ctor. If trash_SEH_handler is true, the task will override the unhandled
475 // exception handler with one sure to crash this test.
476 explicit Crasher(bool trash_SEH_handler
)
477 : trash_SEH_handler_(trash_SEH_handler
) {
481 PlatformThread::Sleep(TimeDelta::FromMilliseconds(1));
482 if (trash_SEH_handler_
)
483 ::SetUnhandledExceptionFilter(&BadExceptionHandler
);
484 // Generate a SEH fault. We do it in asm to make sure we know how to undo
490 mov eax
, dword ptr
[Crasher::bad_array_
]
491 mov byte ptr
[eax
], 66
494 #elif defined(_M_X64)
499 #error "needs architecture support"
502 MessageLoop::current()->QuitWhenIdle();
504 // Points the bad array to a valid memory location.
505 static void FixError() {
506 bad_array_
= &valid_store_
;
510 bool trash_SEH_handler_
;
511 static volatile char* bad_array_
;
512 static char valid_store_
;
515 volatile char* Crasher::bad_array_
= 0;
516 char Crasher::valid_store_
= 0;
518 // This SEH filter fixes the problem and retries execution. Fixing requires
519 // that the last instruction: mov eax, [Crasher::bad_array_] to be retried
520 // so we move the instruction pointer 5 bytes back.
521 LONG WINAPI
HandleCrasherException(EXCEPTION_POINTERS
*ex_info
) {
522 if (ex_info
->ExceptionRecord
->ExceptionCode
!= EXCEPTION_ACCESS_VIOLATION
)
523 return EXCEPTION_EXECUTE_HANDLER
;
529 ex_info
->ContextRecord
->Eip
-= 5;
531 #elif defined(_M_X64)
533 ex_info
->ContextRecord
->Rip
-= 5;
537 return EXCEPTION_CONTINUE_EXECUTION
;
540 void RunTest_Crasher(MessageLoop::Type message_loop_type
) {
541 MessageLoop
loop(message_loop_type
);
543 if (::IsDebuggerPresent())
546 LPTOP_LEVEL_EXCEPTION_FILTER old_SEH_filter
=
547 ::SetUnhandledExceptionFilter(&HandleCrasherException
);
549 MessageLoop::current()->PostTask(
551 Bind(&Crasher::Run
, new Crasher(false)));
552 MessageLoop::current()->set_exception_restoration(true);
553 MessageLoop::current()->Run();
554 MessageLoop::current()->set_exception_restoration(false);
556 ::SetUnhandledExceptionFilter(old_SEH_filter
);
559 void RunTest_CrasherNasty(MessageLoop::Type message_loop_type
) {
560 MessageLoop
loop(message_loop_type
);
562 if (::IsDebuggerPresent())
565 LPTOP_LEVEL_EXCEPTION_FILTER old_SEH_filter
=
566 ::SetUnhandledExceptionFilter(&HandleCrasherException
);
568 MessageLoop::current()->PostTask(
570 Bind(&Crasher::Run
, new Crasher(true)));
571 MessageLoop::current()->set_exception_restoration(true);
572 MessageLoop::current()->Run();
573 MessageLoop::current()->set_exception_restoration(false);
575 ::SetUnhandledExceptionFilter(old_SEH_filter
);
578 #endif // defined(OS_WIN)
580 void RunTest_Nesting(MessageLoop::Type message_loop_type
) {
581 MessageLoop
loop(message_loop_type
);
584 MessageLoop::current()->PostTask(FROM_HERE
,
585 Bind(&NestingFunc
, &depth
));
586 MessageLoop::current()->Run();
590 const wchar_t* const kMessageBoxTitle
= L
"MessageLoop Unit Test";
604 // Saves the order in which the tasks executed.
606 TaskItem(TaskType t
, int c
, bool s
)
616 bool operator == (const TaskItem
& other
) const {
617 return type
== other
.type
&& cookie
== other
.cookie
&& start
== other
.start
;
621 std::ostream
& operator <<(std::ostream
& os
, TaskType type
) {
623 case MESSAGEBOX
: os
<< "MESSAGEBOX"; break;
624 case ENDDIALOG
: os
<< "ENDDIALOG"; break;
625 case RECURSIVE
: os
<< "RECURSIVE"; break;
626 case TIMEDMESSAGELOOP
: os
<< "TIMEDMESSAGELOOP"; break;
627 case QUITMESSAGELOOP
: os
<< "QUITMESSAGELOOP"; break;
628 case ORDERED
: os
<< "ORDERED"; break;
629 case PUMPS
: os
<< "PUMPS"; break;
630 case SLEEP
: os
<< "SLEEP"; break;
633 os
<< "Unknown TaskType";
639 std::ostream
& operator <<(std::ostream
& os
, const TaskItem
& item
) {
641 return os
<< item
.type
<< " " << item
.cookie
<< " starts";
643 return os
<< item
.type
<< " " << item
.cookie
<< " ends";
648 void RecordStart(TaskType type
, int cookie
) {
649 TaskItem
item(type
, cookie
, true);
651 task_list_
.push_back(item
);
654 void RecordEnd(TaskType type
, int cookie
) {
655 TaskItem
item(type
, cookie
, false);
657 task_list_
.push_back(item
);
661 return task_list_
.size();
664 TaskItem
Get(int n
) {
665 return task_list_
[n
];
669 std::vector
<TaskItem
> task_list_
;
672 // Saves the order the tasks ran.
673 void OrderedFunc(TaskList
* order
, int cookie
) {
674 order
->RecordStart(ORDERED
, cookie
);
675 order
->RecordEnd(ORDERED
, cookie
);
680 // MessageLoop implicitly start a "modal message loop". Modal dialog boxes,
681 // common controls (like OpenFile) and StartDoc printing function can cause
682 // implicit message loops.
683 void MessageBoxFunc(TaskList
* order
, int cookie
, bool is_reentrant
) {
684 order
->RecordStart(MESSAGEBOX
, cookie
);
686 MessageLoop::current()->SetNestableTasksAllowed(true);
687 MessageBox(NULL
, L
"Please wait...", kMessageBoxTitle
, MB_OK
);
688 order
->RecordEnd(MESSAGEBOX
, cookie
);
691 // Will end the MessageBox.
692 void EndDialogFunc(TaskList
* order
, int cookie
) {
693 order
->RecordStart(ENDDIALOG
, cookie
);
694 HWND window
= GetActiveWindow();
695 if (window
!= NULL
) {
696 EXPECT_NE(EndDialog(window
, IDCONTINUE
), 0);
697 // Cheap way to signal that the window wasn't found if RunEnd() isn't
699 order
->RecordEnd(ENDDIALOG
, cookie
);
703 #endif // defined(OS_WIN)
705 void RecursiveFunc(TaskList
* order
, int cookie
, int depth
,
707 order
->RecordStart(RECURSIVE
, cookie
);
710 MessageLoop::current()->SetNestableTasksAllowed(true);
711 MessageLoop::current()->PostTask(
713 Bind(&RecursiveFunc
, order
, cookie
, depth
- 1, is_reentrant
));
715 order
->RecordEnd(RECURSIVE
, cookie
);
718 void RecursiveSlowFunc(TaskList
* order
, int cookie
, int depth
,
720 RecursiveFunc(order
, cookie
, depth
, is_reentrant
);
721 PlatformThread::Sleep(TimeDelta::FromMilliseconds(10));
724 void QuitFunc(TaskList
* order
, int cookie
) {
725 order
->RecordStart(QUITMESSAGELOOP
, cookie
);
726 MessageLoop::current()->QuitWhenIdle();
727 order
->RecordEnd(QUITMESSAGELOOP
, cookie
);
730 void SleepFunc(TaskList
* order
, int cookie
, TimeDelta delay
) {
731 order
->RecordStart(SLEEP
, cookie
);
732 PlatformThread::Sleep(delay
);
733 order
->RecordEnd(SLEEP
, cookie
);
737 void RecursiveFuncWin(MessageLoop
* target
,
742 target
->PostTask(FROM_HERE
,
743 Bind(&RecursiveFunc
, order
, 1, 2, is_reentrant
));
744 target
->PostTask(FROM_HERE
,
745 Bind(&MessageBoxFunc
, order
, 2, is_reentrant
));
746 target
->PostTask(FROM_HERE
,
747 Bind(&RecursiveFunc
, order
, 3, 2, is_reentrant
));
748 // The trick here is that for recursive task processing, this task will be
749 // ran _inside_ the MessageBox message loop, dismissing the MessageBox
751 // For non-recursive task processing, this will be executed _after_ the
752 // MessageBox will have been dismissed by the code below, where
753 // expect_window_ is true.
754 target
->PostTask(FROM_HERE
,
755 Bind(&EndDialogFunc
, order
, 4));
756 target
->PostTask(FROM_HERE
,
757 Bind(&QuitFunc
, order
, 5));
759 // Enforce that every tasks are sent before starting to run the main thread
761 ASSERT_TRUE(SetEvent(event
));
763 // Poll for the MessageBox. Don't do this at home! At the speed we do it,
764 // you will never realize one MessageBox was shown.
765 for (; expect_window
;) {
766 HWND window
= FindWindow(L
"#32770", kMessageBoxTitle
);
770 HWND button
= FindWindowEx(window
, NULL
, L
"Button", NULL
);
771 if (button
!= NULL
) {
772 EXPECT_EQ(0, SendMessage(button
, WM_LBUTTONDOWN
, 0, 0));
773 EXPECT_EQ(0, SendMessage(button
, WM_LBUTTONUP
, 0, 0));
782 #endif // defined(OS_WIN)
784 void RunTest_RecursiveDenial1(MessageLoop::Type message_loop_type
) {
785 MessageLoop
loop(message_loop_type
);
787 EXPECT_TRUE(MessageLoop::current()->NestableTasksAllowed());
789 MessageLoop::current()->PostTask(
791 Bind(&RecursiveFunc
, &order
, 1, 2, false));
792 MessageLoop::current()->PostTask(
794 Bind(&RecursiveFunc
, &order
, 2, 2, false));
795 MessageLoop::current()->PostTask(
797 Bind(&QuitFunc
, &order
, 3));
799 MessageLoop::current()->Run();
802 ASSERT_EQ(14U, order
.Size());
803 EXPECT_EQ(order
.Get(0), TaskItem(RECURSIVE
, 1, true));
804 EXPECT_EQ(order
.Get(1), TaskItem(RECURSIVE
, 1, false));
805 EXPECT_EQ(order
.Get(2), TaskItem(RECURSIVE
, 2, true));
806 EXPECT_EQ(order
.Get(3), TaskItem(RECURSIVE
, 2, false));
807 EXPECT_EQ(order
.Get(4), TaskItem(QUITMESSAGELOOP
, 3, true));
808 EXPECT_EQ(order
.Get(5), TaskItem(QUITMESSAGELOOP
, 3, false));
809 EXPECT_EQ(order
.Get(6), TaskItem(RECURSIVE
, 1, true));
810 EXPECT_EQ(order
.Get(7), TaskItem(RECURSIVE
, 1, false));
811 EXPECT_EQ(order
.Get(8), TaskItem(RECURSIVE
, 2, true));
812 EXPECT_EQ(order
.Get(9), TaskItem(RECURSIVE
, 2, false));
813 EXPECT_EQ(order
.Get(10), TaskItem(RECURSIVE
, 1, true));
814 EXPECT_EQ(order
.Get(11), TaskItem(RECURSIVE
, 1, false));
815 EXPECT_EQ(order
.Get(12), TaskItem(RECURSIVE
, 2, true));
816 EXPECT_EQ(order
.Get(13), TaskItem(RECURSIVE
, 2, false));
819 void RunTest_RecursiveDenial3(MessageLoop::Type message_loop_type
) {
820 MessageLoop
loop(message_loop_type
);
822 EXPECT_TRUE(MessageLoop::current()->NestableTasksAllowed());
824 MessageLoop::current()->PostTask(
825 FROM_HERE
, Bind(&RecursiveSlowFunc
, &order
, 1, 2, false));
826 MessageLoop::current()->PostTask(
827 FROM_HERE
, Bind(&RecursiveSlowFunc
, &order
, 2, 2, false));
828 MessageLoop::current()->PostDelayedTask(
830 Bind(&OrderedFunc
, &order
, 3),
831 TimeDelta::FromMilliseconds(5));
832 MessageLoop::current()->PostDelayedTask(
834 Bind(&QuitFunc
, &order
, 4),
835 TimeDelta::FromMilliseconds(5));
837 MessageLoop::current()->Run();
840 ASSERT_EQ(16U, order
.Size());
841 EXPECT_EQ(order
.Get(0), TaskItem(RECURSIVE
, 1, true));
842 EXPECT_EQ(order
.Get(1), TaskItem(RECURSIVE
, 1, false));
843 EXPECT_EQ(order
.Get(2), TaskItem(RECURSIVE
, 2, true));
844 EXPECT_EQ(order
.Get(3), TaskItem(RECURSIVE
, 2, false));
845 EXPECT_EQ(order
.Get(4), TaskItem(RECURSIVE
, 1, true));
846 EXPECT_EQ(order
.Get(5), TaskItem(RECURSIVE
, 1, false));
847 EXPECT_EQ(order
.Get(6), TaskItem(ORDERED
, 3, true));
848 EXPECT_EQ(order
.Get(7), TaskItem(ORDERED
, 3, false));
849 EXPECT_EQ(order
.Get(8), TaskItem(RECURSIVE
, 2, true));
850 EXPECT_EQ(order
.Get(9), TaskItem(RECURSIVE
, 2, false));
851 EXPECT_EQ(order
.Get(10), TaskItem(QUITMESSAGELOOP
, 4, true));
852 EXPECT_EQ(order
.Get(11), TaskItem(QUITMESSAGELOOP
, 4, false));
853 EXPECT_EQ(order
.Get(12), TaskItem(RECURSIVE
, 1, true));
854 EXPECT_EQ(order
.Get(13), TaskItem(RECURSIVE
, 1, false));
855 EXPECT_EQ(order
.Get(14), TaskItem(RECURSIVE
, 2, true));
856 EXPECT_EQ(order
.Get(15), TaskItem(RECURSIVE
, 2, false));
859 void RunTest_RecursiveSupport1(MessageLoop::Type message_loop_type
) {
860 MessageLoop
loop(message_loop_type
);
863 MessageLoop::current()->PostTask(
864 FROM_HERE
, Bind(&RecursiveFunc
, &order
, 1, 2, true));
865 MessageLoop::current()->PostTask(
866 FROM_HERE
, Bind(&RecursiveFunc
, &order
, 2, 2, true));
867 MessageLoop::current()->PostTask(
868 FROM_HERE
, Bind(&QuitFunc
, &order
, 3));
870 MessageLoop::current()->Run();
873 ASSERT_EQ(14U, order
.Size());
874 EXPECT_EQ(order
.Get(0), TaskItem(RECURSIVE
, 1, true));
875 EXPECT_EQ(order
.Get(1), TaskItem(RECURSIVE
, 1, false));
876 EXPECT_EQ(order
.Get(2), TaskItem(RECURSIVE
, 2, true));
877 EXPECT_EQ(order
.Get(3), TaskItem(RECURSIVE
, 2, false));
878 EXPECT_EQ(order
.Get(4), TaskItem(QUITMESSAGELOOP
, 3, true));
879 EXPECT_EQ(order
.Get(5), TaskItem(QUITMESSAGELOOP
, 3, false));
880 EXPECT_EQ(order
.Get(6), TaskItem(RECURSIVE
, 1, true));
881 EXPECT_EQ(order
.Get(7), TaskItem(RECURSIVE
, 1, false));
882 EXPECT_EQ(order
.Get(8), TaskItem(RECURSIVE
, 2, true));
883 EXPECT_EQ(order
.Get(9), TaskItem(RECURSIVE
, 2, false));
884 EXPECT_EQ(order
.Get(10), TaskItem(RECURSIVE
, 1, true));
885 EXPECT_EQ(order
.Get(11), TaskItem(RECURSIVE
, 1, false));
886 EXPECT_EQ(order
.Get(12), TaskItem(RECURSIVE
, 2, true));
887 EXPECT_EQ(order
.Get(13), TaskItem(RECURSIVE
, 2, false));
891 // TODO(darin): These tests need to be ported since they test critical
892 // message loop functionality.
894 // A side effect of this test is the generation a beep. Sorry.
895 void RunTest_RecursiveDenial2(MessageLoop::Type message_loop_type
) {
896 MessageLoop
loop(message_loop_type
);
898 Thread
worker("RecursiveDenial2_worker");
899 Thread::Options options
;
900 options
.message_loop_type
= message_loop_type
;
901 ASSERT_EQ(true, worker
.StartWithOptions(options
));
903 win::ScopedHandle
event(CreateEvent(NULL
, FALSE
, FALSE
, NULL
));
904 worker
.message_loop()->PostTask(FROM_HERE
,
905 Bind(&RecursiveFuncWin
,
906 MessageLoop::current(),
911 // Let the other thread execute.
912 WaitForSingleObject(event
, INFINITE
);
913 MessageLoop::current()->Run();
915 ASSERT_EQ(order
.Size(), 17);
916 EXPECT_EQ(order
.Get(0), TaskItem(RECURSIVE
, 1, true));
917 EXPECT_EQ(order
.Get(1), TaskItem(RECURSIVE
, 1, false));
918 EXPECT_EQ(order
.Get(2), TaskItem(MESSAGEBOX
, 2, true));
919 EXPECT_EQ(order
.Get(3), TaskItem(MESSAGEBOX
, 2, false));
920 EXPECT_EQ(order
.Get(4), TaskItem(RECURSIVE
, 3, true));
921 EXPECT_EQ(order
.Get(5), TaskItem(RECURSIVE
, 3, false));
922 // When EndDialogFunc is processed, the window is already dismissed, hence no
924 EXPECT_EQ(order
.Get(6), TaskItem(ENDDIALOG
, 4, true));
925 EXPECT_EQ(order
.Get(7), TaskItem(QUITMESSAGELOOP
, 5, true));
926 EXPECT_EQ(order
.Get(8), TaskItem(QUITMESSAGELOOP
, 5, false));
927 EXPECT_EQ(order
.Get(9), TaskItem(RECURSIVE
, 1, true));
928 EXPECT_EQ(order
.Get(10), TaskItem(RECURSIVE
, 1, false));
929 EXPECT_EQ(order
.Get(11), TaskItem(RECURSIVE
, 3, true));
930 EXPECT_EQ(order
.Get(12), TaskItem(RECURSIVE
, 3, false));
931 EXPECT_EQ(order
.Get(13), TaskItem(RECURSIVE
, 1, true));
932 EXPECT_EQ(order
.Get(14), TaskItem(RECURSIVE
, 1, false));
933 EXPECT_EQ(order
.Get(15), TaskItem(RECURSIVE
, 3, true));
934 EXPECT_EQ(order
.Get(16), TaskItem(RECURSIVE
, 3, false));
937 // A side effect of this test is the generation a beep. Sorry. This test also
938 // needs to process windows messages on the current thread.
939 void RunTest_RecursiveSupport2(MessageLoop::Type message_loop_type
) {
940 MessageLoop
loop(message_loop_type
);
942 Thread
worker("RecursiveSupport2_worker");
943 Thread::Options options
;
944 options
.message_loop_type
= message_loop_type
;
945 ASSERT_EQ(true, worker
.StartWithOptions(options
));
947 win::ScopedHandle
event(CreateEvent(NULL
, FALSE
, FALSE
, NULL
));
948 worker
.message_loop()->PostTask(FROM_HERE
,
949 Bind(&RecursiveFuncWin
,
950 MessageLoop::current(),
955 // Let the other thread execute.
956 WaitForSingleObject(event
, INFINITE
);
957 MessageLoop::current()->Run();
959 ASSERT_EQ(order
.Size(), 18);
960 EXPECT_EQ(order
.Get(0), TaskItem(RECURSIVE
, 1, true));
961 EXPECT_EQ(order
.Get(1), TaskItem(RECURSIVE
, 1, false));
962 EXPECT_EQ(order
.Get(2), TaskItem(MESSAGEBOX
, 2, true));
963 // Note that this executes in the MessageBox modal loop.
964 EXPECT_EQ(order
.Get(3), TaskItem(RECURSIVE
, 3, true));
965 EXPECT_EQ(order
.Get(4), TaskItem(RECURSIVE
, 3, false));
966 EXPECT_EQ(order
.Get(5), TaskItem(ENDDIALOG
, 4, true));
967 EXPECT_EQ(order
.Get(6), TaskItem(ENDDIALOG
, 4, false));
968 EXPECT_EQ(order
.Get(7), TaskItem(MESSAGEBOX
, 2, false));
969 /* The order can subtly change here. The reason is that when RecursiveFunc(1)
970 is called in the main thread, if it is faster than getting to the
971 PostTask(FROM_HERE, Bind(&QuitFunc) execution, the order of task
972 execution can change. We don't care anyway that the order isn't correct.
973 EXPECT_EQ(order.Get(8), TaskItem(QUITMESSAGELOOP, 5, true));
974 EXPECT_EQ(order.Get(9), TaskItem(QUITMESSAGELOOP, 5, false));
975 EXPECT_EQ(order.Get(10), TaskItem(RECURSIVE, 1, true));
976 EXPECT_EQ(order.Get(11), TaskItem(RECURSIVE, 1, false));
978 EXPECT_EQ(order
.Get(12), TaskItem(RECURSIVE
, 3, true));
979 EXPECT_EQ(order
.Get(13), TaskItem(RECURSIVE
, 3, false));
980 EXPECT_EQ(order
.Get(14), TaskItem(RECURSIVE
, 1, true));
981 EXPECT_EQ(order
.Get(15), TaskItem(RECURSIVE
, 1, false));
982 EXPECT_EQ(order
.Get(16), TaskItem(RECURSIVE
, 3, true));
983 EXPECT_EQ(order
.Get(17), TaskItem(RECURSIVE
, 3, false));
986 #endif // defined(OS_WIN)
988 void FuncThatPumps(TaskList
* order
, int cookie
) {
989 order
->RecordStart(PUMPS
, cookie
);
991 MessageLoop::ScopedNestableTaskAllower
allow(MessageLoop::current());
992 RunLoop().RunUntilIdle();
994 order
->RecordEnd(PUMPS
, cookie
);
997 void FuncThatRuns(TaskList
* order
, int cookie
, RunLoop
* run_loop
) {
998 order
->RecordStart(RUNS
, cookie
);
1000 MessageLoop::ScopedNestableTaskAllower
allow(MessageLoop::current());
1003 order
->RecordEnd(RUNS
, cookie
);
1006 void FuncThatQuitsNow() {
1007 MessageLoop::current()->QuitNow();
1010 // Tests that non nestable tasks run in FIFO if there are no nested loops.
1011 void RunTest_NonNestableWithNoNesting(
1012 MessageLoop::Type message_loop_type
) {
1013 MessageLoop
loop(message_loop_type
);
1017 MessageLoop::current()->PostNonNestableTask(
1019 Bind(&OrderedFunc
, &order
, 1));
1020 MessageLoop::current()->PostTask(FROM_HERE
,
1021 Bind(&OrderedFunc
, &order
, 2));
1022 MessageLoop::current()->PostTask(FROM_HERE
,
1023 Bind(&QuitFunc
, &order
, 3));
1024 MessageLoop::current()->Run();
1027 ASSERT_EQ(6U, order
.Size());
1028 EXPECT_EQ(order
.Get(0), TaskItem(ORDERED
, 1, true));
1029 EXPECT_EQ(order
.Get(1), TaskItem(ORDERED
, 1, false));
1030 EXPECT_EQ(order
.Get(2), TaskItem(ORDERED
, 2, true));
1031 EXPECT_EQ(order
.Get(3), TaskItem(ORDERED
, 2, false));
1032 EXPECT_EQ(order
.Get(4), TaskItem(QUITMESSAGELOOP
, 3, true));
1033 EXPECT_EQ(order
.Get(5), TaskItem(QUITMESSAGELOOP
, 3, false));
1036 // Tests that non nestable tasks don't run when there's code in the call stack.
1037 void RunTest_NonNestableInNestedLoop(MessageLoop::Type message_loop_type
,
1039 MessageLoop
loop(message_loop_type
);
1043 MessageLoop::current()->PostTask(
1045 Bind(&FuncThatPumps
, &order
, 1));
1047 MessageLoop::current()->PostNonNestableDelayedTask(
1049 Bind(&OrderedFunc
, &order
, 2),
1050 TimeDelta::FromMilliseconds(1));
1052 MessageLoop::current()->PostNonNestableTask(
1054 Bind(&OrderedFunc
, &order
, 2));
1056 MessageLoop::current()->PostTask(FROM_HERE
,
1057 Bind(&OrderedFunc
, &order
, 3));
1058 MessageLoop::current()->PostTask(
1060 Bind(&SleepFunc
, &order
, 4, TimeDelta::FromMilliseconds(50)));
1061 MessageLoop::current()->PostTask(FROM_HERE
,
1062 Bind(&OrderedFunc
, &order
, 5));
1064 MessageLoop::current()->PostNonNestableDelayedTask(
1066 Bind(&QuitFunc
, &order
, 6),
1067 TimeDelta::FromMilliseconds(2));
1069 MessageLoop::current()->PostNonNestableTask(
1071 Bind(&QuitFunc
, &order
, 6));
1074 MessageLoop::current()->Run();
1077 ASSERT_EQ(12U, order
.Size());
1078 EXPECT_EQ(order
.Get(0), TaskItem(PUMPS
, 1, true));
1079 EXPECT_EQ(order
.Get(1), TaskItem(ORDERED
, 3, true));
1080 EXPECT_EQ(order
.Get(2), TaskItem(ORDERED
, 3, false));
1081 EXPECT_EQ(order
.Get(3), TaskItem(SLEEP
, 4, true));
1082 EXPECT_EQ(order
.Get(4), TaskItem(SLEEP
, 4, false));
1083 EXPECT_EQ(order
.Get(5), TaskItem(ORDERED
, 5, true));
1084 EXPECT_EQ(order
.Get(6), TaskItem(ORDERED
, 5, false));
1085 EXPECT_EQ(order
.Get(7), TaskItem(PUMPS
, 1, false));
1086 EXPECT_EQ(order
.Get(8), TaskItem(ORDERED
, 2, true));
1087 EXPECT_EQ(order
.Get(9), TaskItem(ORDERED
, 2, false));
1088 EXPECT_EQ(order
.Get(10), TaskItem(QUITMESSAGELOOP
, 6, true));
1089 EXPECT_EQ(order
.Get(11), TaskItem(QUITMESSAGELOOP
, 6, false));
1092 // Tests RunLoopQuit only quits the corresponding MessageLoop::Run.
1093 void RunTest_QuitNow(MessageLoop::Type message_loop_type
) {
1094 MessageLoop
loop(message_loop_type
);
1100 MessageLoop::current()->PostTask(FROM_HERE
,
1101 Bind(&FuncThatRuns
, &order
, 1, Unretained(&run_loop
)));
1102 MessageLoop::current()->PostTask(
1103 FROM_HERE
, Bind(&OrderedFunc
, &order
, 2));
1104 MessageLoop::current()->PostTask(
1105 FROM_HERE
, Bind(&FuncThatQuitsNow
));
1106 MessageLoop::current()->PostTask(
1107 FROM_HERE
, Bind(&OrderedFunc
, &order
, 3));
1108 MessageLoop::current()->PostTask(
1109 FROM_HERE
, Bind(&FuncThatQuitsNow
));
1110 MessageLoop::current()->PostTask(
1111 FROM_HERE
, Bind(&OrderedFunc
, &order
, 4)); // never runs
1113 MessageLoop::current()->Run();
1115 ASSERT_EQ(6U, order
.Size());
1117 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, true));
1118 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 2, true));
1119 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 2, false));
1120 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, false));
1121 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 3, true));
1122 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 3, false));
1123 EXPECT_EQ(static_cast<size_t>(task_index
), order
.Size());
1126 // Tests RunLoopQuit works before RunWithID.
1127 void RunTest_RunLoopQuitOrderBefore(MessageLoop::Type message_loop_type
) {
1128 MessageLoop
loop(message_loop_type
);
1136 MessageLoop::current()->PostTask(
1137 FROM_HERE
, Bind(&OrderedFunc
, &order
, 1)); // never runs
1138 MessageLoop::current()->PostTask(
1139 FROM_HERE
, Bind(&FuncThatQuitsNow
)); // never runs
1143 ASSERT_EQ(0U, order
.Size());
1146 // Tests RunLoopQuit works during RunWithID.
1147 void RunTest_RunLoopQuitOrderDuring(MessageLoop::Type message_loop_type
) {
1148 MessageLoop
loop(message_loop_type
);
1154 MessageLoop::current()->PostTask(
1155 FROM_HERE
, Bind(&OrderedFunc
, &order
, 1));
1156 MessageLoop::current()->PostTask(
1157 FROM_HERE
, run_loop
.QuitClosure());
1158 MessageLoop::current()->PostTask(
1159 FROM_HERE
, Bind(&OrderedFunc
, &order
, 2)); // never runs
1160 MessageLoop::current()->PostTask(
1161 FROM_HERE
, Bind(&FuncThatQuitsNow
)); // never runs
1165 ASSERT_EQ(2U, order
.Size());
1167 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 1, true));
1168 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 1, false));
1169 EXPECT_EQ(static_cast<size_t>(task_index
), order
.Size());
1172 // Tests RunLoopQuit works after RunWithID.
1173 void RunTest_RunLoopQuitOrderAfter(MessageLoop::Type message_loop_type
) {
1174 MessageLoop
loop(message_loop_type
);
1180 MessageLoop::current()->PostTask(FROM_HERE
,
1181 Bind(&FuncThatRuns
, &order
, 1, Unretained(&run_loop
)));
1182 MessageLoop::current()->PostTask(
1183 FROM_HERE
, Bind(&OrderedFunc
, &order
, 2));
1184 MessageLoop::current()->PostTask(
1185 FROM_HERE
, Bind(&FuncThatQuitsNow
));
1186 MessageLoop::current()->PostTask(
1187 FROM_HERE
, Bind(&OrderedFunc
, &order
, 3));
1188 MessageLoop::current()->PostTask(
1189 FROM_HERE
, run_loop
.QuitClosure()); // has no affect
1190 MessageLoop::current()->PostTask(
1191 FROM_HERE
, Bind(&OrderedFunc
, &order
, 4));
1192 MessageLoop::current()->PostTask(
1193 FROM_HERE
, Bind(&FuncThatQuitsNow
));
1195 RunLoop outer_run_loop
;
1196 outer_run_loop
.Run();
1198 ASSERT_EQ(8U, order
.Size());
1200 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, true));
1201 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 2, true));
1202 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 2, false));
1203 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, false));
1204 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 3, true));
1205 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 3, false));
1206 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 4, true));
1207 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 4, false));
1208 EXPECT_EQ(static_cast<size_t>(task_index
), order
.Size());
1211 // Tests RunLoopQuit only quits the corresponding MessageLoop::Run.
1212 void RunTest_RunLoopQuitTop(MessageLoop::Type message_loop_type
) {
1213 MessageLoop
loop(message_loop_type
);
1217 RunLoop outer_run_loop
;
1218 RunLoop nested_run_loop
;
1220 MessageLoop::current()->PostTask(FROM_HERE
,
1221 Bind(&FuncThatRuns
, &order
, 1, Unretained(&nested_run_loop
)));
1222 MessageLoop::current()->PostTask(
1223 FROM_HERE
, outer_run_loop
.QuitClosure());
1224 MessageLoop::current()->PostTask(
1225 FROM_HERE
, Bind(&OrderedFunc
, &order
, 2));
1226 MessageLoop::current()->PostTask(
1227 FROM_HERE
, nested_run_loop
.QuitClosure());
1229 outer_run_loop
.Run();
1231 ASSERT_EQ(4U, order
.Size());
1233 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, true));
1234 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 2, true));
1235 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 2, false));
1236 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, false));
1237 EXPECT_EQ(static_cast<size_t>(task_index
), order
.Size());
1240 // Tests RunLoopQuit only quits the corresponding MessageLoop::Run.
1241 void RunTest_RunLoopQuitNested(MessageLoop::Type message_loop_type
) {
1242 MessageLoop
loop(message_loop_type
);
1246 RunLoop outer_run_loop
;
1247 RunLoop nested_run_loop
;
1249 MessageLoop::current()->PostTask(FROM_HERE
,
1250 Bind(&FuncThatRuns
, &order
, 1, Unretained(&nested_run_loop
)));
1251 MessageLoop::current()->PostTask(
1252 FROM_HERE
, nested_run_loop
.QuitClosure());
1253 MessageLoop::current()->PostTask(
1254 FROM_HERE
, Bind(&OrderedFunc
, &order
, 2));
1255 MessageLoop::current()->PostTask(
1256 FROM_HERE
, outer_run_loop
.QuitClosure());
1258 outer_run_loop
.Run();
1260 ASSERT_EQ(4U, order
.Size());
1262 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, true));
1263 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, false));
1264 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 2, true));
1265 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 2, false));
1266 EXPECT_EQ(static_cast<size_t>(task_index
), order
.Size());
1269 // Tests RunLoopQuit only quits the corresponding MessageLoop::Run.
1270 void RunTest_RunLoopQuitBogus(MessageLoop::Type message_loop_type
) {
1271 MessageLoop
loop(message_loop_type
);
1275 RunLoop outer_run_loop
;
1276 RunLoop nested_run_loop
;
1277 RunLoop bogus_run_loop
;
1279 MessageLoop::current()->PostTask(FROM_HERE
,
1280 Bind(&FuncThatRuns
, &order
, 1, Unretained(&nested_run_loop
)));
1281 MessageLoop::current()->PostTask(
1282 FROM_HERE
, bogus_run_loop
.QuitClosure());
1283 MessageLoop::current()->PostTask(
1284 FROM_HERE
, Bind(&OrderedFunc
, &order
, 2));
1285 MessageLoop::current()->PostTask(
1286 FROM_HERE
, outer_run_loop
.QuitClosure());
1287 MessageLoop::current()->PostTask(
1288 FROM_HERE
, nested_run_loop
.QuitClosure());
1290 outer_run_loop
.Run();
1292 ASSERT_EQ(4U, order
.Size());
1294 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, true));
1295 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 2, true));
1296 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 2, false));
1297 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, false));
1298 EXPECT_EQ(static_cast<size_t>(task_index
), order
.Size());
1301 // Tests RunLoopQuit only quits the corresponding MessageLoop::Run.
1302 void RunTest_RunLoopQuitDeep(MessageLoop::Type message_loop_type
) {
1303 MessageLoop
loop(message_loop_type
);
1307 RunLoop outer_run_loop
;
1308 RunLoop nested_loop1
;
1309 RunLoop nested_loop2
;
1310 RunLoop nested_loop3
;
1311 RunLoop nested_loop4
;
1313 MessageLoop::current()->PostTask(FROM_HERE
,
1314 Bind(&FuncThatRuns
, &order
, 1, Unretained(&nested_loop1
)));
1315 MessageLoop::current()->PostTask(FROM_HERE
,
1316 Bind(&FuncThatRuns
, &order
, 2, Unretained(&nested_loop2
)));
1317 MessageLoop::current()->PostTask(FROM_HERE
,
1318 Bind(&FuncThatRuns
, &order
, 3, Unretained(&nested_loop3
)));
1319 MessageLoop::current()->PostTask(FROM_HERE
,
1320 Bind(&FuncThatRuns
, &order
, 4, Unretained(&nested_loop4
)));
1321 MessageLoop::current()->PostTask(
1322 FROM_HERE
, Bind(&OrderedFunc
, &order
, 5));
1323 MessageLoop::current()->PostTask(
1324 FROM_HERE
, outer_run_loop
.QuitClosure());
1325 MessageLoop::current()->PostTask(
1326 FROM_HERE
, Bind(&OrderedFunc
, &order
, 6));
1327 MessageLoop::current()->PostTask(
1328 FROM_HERE
, nested_loop1
.QuitClosure());
1329 MessageLoop::current()->PostTask(
1330 FROM_HERE
, Bind(&OrderedFunc
, &order
, 7));
1331 MessageLoop::current()->PostTask(
1332 FROM_HERE
, nested_loop2
.QuitClosure());
1333 MessageLoop::current()->PostTask(
1334 FROM_HERE
, Bind(&OrderedFunc
, &order
, 8));
1335 MessageLoop::current()->PostTask(
1336 FROM_HERE
, nested_loop3
.QuitClosure());
1337 MessageLoop::current()->PostTask(
1338 FROM_HERE
, Bind(&OrderedFunc
, &order
, 9));
1339 MessageLoop::current()->PostTask(
1340 FROM_HERE
, nested_loop4
.QuitClosure());
1341 MessageLoop::current()->PostTask(
1342 FROM_HERE
, Bind(&OrderedFunc
, &order
, 10));
1344 outer_run_loop
.Run();
1346 ASSERT_EQ(18U, order
.Size());
1348 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, true));
1349 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 2, true));
1350 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 3, true));
1351 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 4, true));
1352 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 5, true));
1353 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 5, false));
1354 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 6, true));
1355 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 6, false));
1356 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 7, true));
1357 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 7, false));
1358 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 8, true));
1359 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 8, false));
1360 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 9, true));
1361 EXPECT_EQ(order
.Get(task_index
++), TaskItem(ORDERED
, 9, false));
1362 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 4, false));
1363 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 3, false));
1364 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 2, false));
1365 EXPECT_EQ(order
.Get(task_index
++), TaskItem(RUNS
, 1, false));
1366 EXPECT_EQ(static_cast<size_t>(task_index
), order
.Size());
1369 void PostNTasksThenQuit(int posts_remaining
) {
1370 if (posts_remaining
> 1) {
1371 MessageLoop::current()->PostTask(
1373 Bind(&PostNTasksThenQuit
, posts_remaining
- 1));
1375 MessageLoop::current()->QuitWhenIdle();
1379 void RunTest_RecursivePosts(MessageLoop::Type message_loop_type
,
1381 MessageLoop
loop(message_loop_type
);
1382 loop
.PostTask(FROM_HERE
, Bind(&PostNTasksThenQuit
, num_times
));
1388 class DispatcherImpl
: public MessageLoopForUI::Dispatcher
{
1390 DispatcherImpl() : dispatch_count_(0) {}
1392 virtual bool Dispatch(const NativeEvent
& msg
) OVERRIDE
{
1393 ::TranslateMessage(&msg
);
1394 ::DispatchMessage(&msg
);
1395 // Do not count WM_TIMER since it is not what we post and it will cause
1397 if (msg
.message
!= WM_TIMER
)
1399 // We treat WM_LBUTTONUP as the last message.
1400 return msg
.message
!= WM_LBUTTONUP
;
1403 int dispatch_count_
;
1406 void MouseDownUp() {
1407 PostMessage(NULL
, WM_LBUTTONDOWN
, 0, 0);
1408 PostMessage(NULL
, WM_LBUTTONUP
, 'A', 0);
1411 void RunTest_Dispatcher(MessageLoop::Type message_loop_type
) {
1412 MessageLoop
loop(message_loop_type
);
1414 MessageLoop::current()->PostDelayedTask(
1417 TimeDelta::FromMilliseconds(100));
1418 DispatcherImpl dispatcher
;
1419 RunLoop
run_loop(&dispatcher
);
1421 ASSERT_EQ(2, dispatcher
.dispatch_count_
);
1424 LRESULT CALLBACK
MsgFilterProc(int code
, WPARAM wparam
, LPARAM lparam
) {
1425 if (code
== MessagePumpForUI::kMessageFilterCode
) {
1426 MSG
* msg
= reinterpret_cast<MSG
*>(lparam
);
1427 if (msg
->message
== WM_LBUTTONDOWN
)
1433 void RunTest_DispatcherWithMessageHook(MessageLoop::Type message_loop_type
) {
1434 MessageLoop
loop(message_loop_type
);
1436 MessageLoop::current()->PostDelayedTask(
1439 TimeDelta::FromMilliseconds(100));
1440 HHOOK msg_hook
= SetWindowsHookEx(WH_MSGFILTER
,
1443 GetCurrentThreadId());
1444 DispatcherImpl dispatcher
;
1445 RunLoop
run_loop(&dispatcher
);
1447 ASSERT_EQ(1, dispatcher
.dispatch_count_
);
1448 UnhookWindowsHookEx(msg_hook
);
1451 class TestIOHandler
: public MessageLoopForIO::IOHandler
{
1453 TestIOHandler(const wchar_t* name
, HANDLE signal
, bool wait
);
1455 virtual void OnIOCompleted(MessageLoopForIO::IOContext
* context
,
1456 DWORD bytes_transfered
, DWORD error
);
1460 OVERLAPPED
* context() { return &context_
.overlapped
; }
1461 DWORD
size() { return sizeof(buffer_
); }
1465 MessageLoopForIO::IOContext context_
;
1467 win::ScopedHandle file_
;
1471 TestIOHandler::TestIOHandler(const wchar_t* name
, HANDLE signal
, bool wait
)
1472 : signal_(signal
), wait_(wait
) {
1473 memset(buffer_
, 0, sizeof(buffer_
));
1474 memset(&context_
, 0, sizeof(context_
));
1475 context_
.handler
= this;
1477 file_
.Set(CreateFile(name
, GENERIC_READ
, 0, NULL
, OPEN_EXISTING
,
1478 FILE_FLAG_OVERLAPPED
, NULL
));
1479 EXPECT_TRUE(file_
.IsValid());
1482 void TestIOHandler::Init() {
1483 MessageLoopForIO::current()->RegisterIOHandler(file_
, this);
1486 EXPECT_FALSE(ReadFile(file_
, buffer_
, size(), &read
, context()));
1487 EXPECT_EQ(ERROR_IO_PENDING
, GetLastError());
1492 void TestIOHandler::OnIOCompleted(MessageLoopForIO::IOContext
* context
,
1493 DWORD bytes_transfered
, DWORD error
) {
1494 ASSERT_TRUE(context
== &context_
);
1495 ASSERT_TRUE(SetEvent(signal_
));
1498 void TestIOHandler::WaitForIO() {
1499 EXPECT_TRUE(MessageLoopForIO::current()->WaitForIOCompletion(300, this));
1500 EXPECT_TRUE(MessageLoopForIO::current()->WaitForIOCompletion(400, this));
1503 void RunTest_IOHandler() {
1504 win::ScopedHandle
callback_called(CreateEvent(NULL
, TRUE
, FALSE
, NULL
));
1505 ASSERT_TRUE(callback_called
.IsValid());
1507 const wchar_t* kPipeName
= L
"\\\\.\\pipe\\iohandler_pipe";
1508 win::ScopedHandle
server(
1509 CreateNamedPipe(kPipeName
, PIPE_ACCESS_OUTBOUND
, 0, 1, 0, 0, 0, NULL
));
1510 ASSERT_TRUE(server
.IsValid());
1512 Thread
thread("IOHandler test");
1513 Thread::Options options
;
1514 options
.message_loop_type
= MessageLoop::TYPE_IO
;
1515 ASSERT_TRUE(thread
.StartWithOptions(options
));
1517 MessageLoop
* thread_loop
= thread
.message_loop();
1518 ASSERT_TRUE(NULL
!= thread_loop
);
1520 TestIOHandler
handler(kPipeName
, callback_called
, false);
1521 thread_loop
->PostTask(FROM_HERE
, Bind(&TestIOHandler::Init
,
1522 Unretained(&handler
)));
1523 // Make sure the thread runs and sleeps for lack of work.
1524 PlatformThread::Sleep(TimeDelta::FromMilliseconds(100));
1526 const char buffer
[] = "Hello there!";
1528 EXPECT_TRUE(WriteFile(server
, buffer
, sizeof(buffer
), &written
, NULL
));
1530 DWORD result
= WaitForSingleObject(callback_called
, 1000);
1531 EXPECT_EQ(WAIT_OBJECT_0
, result
);
1536 void RunTest_WaitForIO() {
1537 win::ScopedHandle
callback1_called(
1538 CreateEvent(NULL
, TRUE
, FALSE
, NULL
));
1539 win::ScopedHandle
callback2_called(
1540 CreateEvent(NULL
, TRUE
, FALSE
, NULL
));
1541 ASSERT_TRUE(callback1_called
.IsValid());
1542 ASSERT_TRUE(callback2_called
.IsValid());
1544 const wchar_t* kPipeName1
= L
"\\\\.\\pipe\\iohandler_pipe1";
1545 const wchar_t* kPipeName2
= L
"\\\\.\\pipe\\iohandler_pipe2";
1546 win::ScopedHandle
server1(
1547 CreateNamedPipe(kPipeName1
, PIPE_ACCESS_OUTBOUND
, 0, 1, 0, 0, 0, NULL
));
1548 win::ScopedHandle
server2(
1549 CreateNamedPipe(kPipeName2
, PIPE_ACCESS_OUTBOUND
, 0, 1, 0, 0, 0, NULL
));
1550 ASSERT_TRUE(server1
.IsValid());
1551 ASSERT_TRUE(server2
.IsValid());
1553 Thread
thread("IOHandler test");
1554 Thread::Options options
;
1555 options
.message_loop_type
= MessageLoop::TYPE_IO
;
1556 ASSERT_TRUE(thread
.StartWithOptions(options
));
1558 MessageLoop
* thread_loop
= thread
.message_loop();
1559 ASSERT_TRUE(NULL
!= thread_loop
);
1561 TestIOHandler
handler1(kPipeName1
, callback1_called
, false);
1562 TestIOHandler
handler2(kPipeName2
, callback2_called
, true);
1563 thread_loop
->PostTask(FROM_HERE
, Bind(&TestIOHandler::Init
,
1564 Unretained(&handler1
)));
1565 // TODO(ajwong): Do we really need such long Sleeps in ths function?
1566 // Make sure the thread runs and sleeps for lack of work.
1567 TimeDelta delay
= TimeDelta::FromMilliseconds(100);
1568 PlatformThread::Sleep(delay
);
1569 thread_loop
->PostTask(FROM_HERE
, Bind(&TestIOHandler::Init
,
1570 Unretained(&handler2
)));
1571 PlatformThread::Sleep(delay
);
1573 // At this time handler1 is waiting to be called, and the thread is waiting
1574 // on the Init method of handler2, filtering only handler2 callbacks.
1576 const char buffer
[] = "Hello there!";
1578 EXPECT_TRUE(WriteFile(server1
, buffer
, sizeof(buffer
), &written
, NULL
));
1579 PlatformThread::Sleep(2 * delay
);
1580 EXPECT_EQ(WAIT_TIMEOUT
, WaitForSingleObject(callback1_called
, 0)) <<
1581 "handler1 has not been called";
1583 EXPECT_TRUE(WriteFile(server2
, buffer
, sizeof(buffer
), &written
, NULL
));
1585 HANDLE objects
[2] = { callback1_called
.Get(), callback2_called
.Get() };
1586 DWORD result
= WaitForMultipleObjects(2, objects
, TRUE
, 1000);
1587 EXPECT_EQ(WAIT_OBJECT_0
, result
);
1592 #endif // defined(OS_WIN)
1596 //-----------------------------------------------------------------------------
1597 // Each test is run against each type of MessageLoop. That way we are sure
1598 // that message loops work properly in all configurations. Of course, in some
1599 // cases, a unit test may only be for a particular type of loop.
1601 TEST(MessageLoopTest
, PostTask
) {
1602 RunTest_PostTask(MessageLoop::TYPE_DEFAULT
);
1603 RunTest_PostTask(MessageLoop::TYPE_UI
);
1604 RunTest_PostTask(MessageLoop::TYPE_IO
);
1607 TEST(MessageLoopTest
, PostTask_SEH
) {
1608 RunTest_PostTask_SEH(MessageLoop::TYPE_DEFAULT
);
1609 RunTest_PostTask_SEH(MessageLoop::TYPE_UI
);
1610 RunTest_PostTask_SEH(MessageLoop::TYPE_IO
);
1613 TEST(MessageLoopTest
, PostDelayedTask_Basic
) {
1614 RunTest_PostDelayedTask_Basic(MessageLoop::TYPE_DEFAULT
);
1615 RunTest_PostDelayedTask_Basic(MessageLoop::TYPE_UI
);
1616 RunTest_PostDelayedTask_Basic(MessageLoop::TYPE_IO
);
1619 TEST(MessageLoopTest
, PostDelayedTask_InDelayOrder
) {
1620 RunTest_PostDelayedTask_InDelayOrder(MessageLoop::TYPE_DEFAULT
);
1621 RunTest_PostDelayedTask_InDelayOrder(MessageLoop::TYPE_UI
);
1622 RunTest_PostDelayedTask_InDelayOrder(MessageLoop::TYPE_IO
);
1625 TEST(MessageLoopTest
, PostDelayedTask_InPostOrder
) {
1626 RunTest_PostDelayedTask_InPostOrder(MessageLoop::TYPE_DEFAULT
);
1627 RunTest_PostDelayedTask_InPostOrder(MessageLoop::TYPE_UI
);
1628 RunTest_PostDelayedTask_InPostOrder(MessageLoop::TYPE_IO
);
1631 TEST(MessageLoopTest
, PostDelayedTask_InPostOrder_2
) {
1632 RunTest_PostDelayedTask_InPostOrder_2(MessageLoop::TYPE_DEFAULT
);
1633 RunTest_PostDelayedTask_InPostOrder_2(MessageLoop::TYPE_UI
);
1634 RunTest_PostDelayedTask_InPostOrder_2(MessageLoop::TYPE_IO
);
1637 TEST(MessageLoopTest
, PostDelayedTask_InPostOrder_3
) {
1638 RunTest_PostDelayedTask_InPostOrder_3(MessageLoop::TYPE_DEFAULT
);
1639 RunTest_PostDelayedTask_InPostOrder_3(MessageLoop::TYPE_UI
);
1640 RunTest_PostDelayedTask_InPostOrder_3(MessageLoop::TYPE_IO
);
1643 TEST(MessageLoopTest
, PostDelayedTask_SharedTimer
) {
1644 RunTest_PostDelayedTask_SharedTimer(MessageLoop::TYPE_DEFAULT
);
1645 RunTest_PostDelayedTask_SharedTimer(MessageLoop::TYPE_UI
);
1646 RunTest_PostDelayedTask_SharedTimer(MessageLoop::TYPE_IO
);
1650 TEST(MessageLoopTest
, PostDelayedTask_SharedTimer_SubPump
) {
1651 RunTest_PostDelayedTask_SharedTimer_SubPump();
1655 // TODO(darin): MessageLoop does not support deleting all tasks in the
1657 // Fails, http://crbug.com/50272.
1658 TEST(MessageLoopTest
, DISABLED_EnsureDeletion
) {
1659 RunTest_EnsureDeletion(MessageLoop::TYPE_DEFAULT
);
1660 RunTest_EnsureDeletion(MessageLoop::TYPE_UI
);
1661 RunTest_EnsureDeletion(MessageLoop::TYPE_IO
);
1664 // TODO(darin): MessageLoop does not support deleting all tasks in the
1666 // Fails, http://crbug.com/50272.
1667 TEST(MessageLoopTest
, DISABLED_EnsureDeletion_Chain
) {
1668 RunTest_EnsureDeletion_Chain(MessageLoop::TYPE_DEFAULT
);
1669 RunTest_EnsureDeletion_Chain(MessageLoop::TYPE_UI
);
1670 RunTest_EnsureDeletion_Chain(MessageLoop::TYPE_IO
);
1674 TEST(MessageLoopTest
, Crasher
) {
1675 RunTest_Crasher(MessageLoop::TYPE_DEFAULT
);
1676 RunTest_Crasher(MessageLoop::TYPE_UI
);
1677 RunTest_Crasher(MessageLoop::TYPE_IO
);
1680 TEST(MessageLoopTest
, CrasherNasty
) {
1681 RunTest_CrasherNasty(MessageLoop::TYPE_DEFAULT
);
1682 RunTest_CrasherNasty(MessageLoop::TYPE_UI
);
1683 RunTest_CrasherNasty(MessageLoop::TYPE_IO
);
1685 #endif // defined(OS_WIN)
1687 TEST(MessageLoopTest
, Nesting
) {
1688 RunTest_Nesting(MessageLoop::TYPE_DEFAULT
);
1689 RunTest_Nesting(MessageLoop::TYPE_UI
);
1690 RunTest_Nesting(MessageLoop::TYPE_IO
);
1693 TEST(MessageLoopTest
, RecursiveDenial1
) {
1694 RunTest_RecursiveDenial1(MessageLoop::TYPE_DEFAULT
);
1695 RunTest_RecursiveDenial1(MessageLoop::TYPE_UI
);
1696 RunTest_RecursiveDenial1(MessageLoop::TYPE_IO
);
1699 TEST(MessageLoopTest
, RecursiveDenial3
) {
1700 RunTest_RecursiveDenial3(MessageLoop::TYPE_DEFAULT
);
1701 RunTest_RecursiveDenial3(MessageLoop::TYPE_UI
);
1702 RunTest_RecursiveDenial3(MessageLoop::TYPE_IO
);
1705 TEST(MessageLoopTest
, RecursiveSupport1
) {
1706 RunTest_RecursiveSupport1(MessageLoop::TYPE_DEFAULT
);
1707 RunTest_RecursiveSupport1(MessageLoop::TYPE_UI
);
1708 RunTest_RecursiveSupport1(MessageLoop::TYPE_IO
);
1712 // This test occasionally hangs http://crbug.com/44567
1713 TEST(MessageLoopTest
, DISABLED_RecursiveDenial2
) {
1714 RunTest_RecursiveDenial2(MessageLoop::TYPE_DEFAULT
);
1715 RunTest_RecursiveDenial2(MessageLoop::TYPE_UI
);
1716 RunTest_RecursiveDenial2(MessageLoop::TYPE_IO
);
1719 TEST(MessageLoopTest
, RecursiveSupport2
) {
1720 // This test requires a UI loop
1721 RunTest_RecursiveSupport2(MessageLoop::TYPE_UI
);
1723 #endif // defined(OS_WIN)
1725 TEST(MessageLoopTest
, NonNestableWithNoNesting
) {
1726 RunTest_NonNestableWithNoNesting(MessageLoop::TYPE_DEFAULT
);
1727 RunTest_NonNestableWithNoNesting(MessageLoop::TYPE_UI
);
1728 RunTest_NonNestableWithNoNesting(MessageLoop::TYPE_IO
);
1731 TEST(MessageLoopTest
, NonNestableInNestedLoop
) {
1732 RunTest_NonNestableInNestedLoop(MessageLoop::TYPE_DEFAULT
, false);
1733 RunTest_NonNestableInNestedLoop(MessageLoop::TYPE_UI
, false);
1734 RunTest_NonNestableInNestedLoop(MessageLoop::TYPE_IO
, false);
1737 TEST(MessageLoopTest
, NonNestableDelayedInNestedLoop
) {
1738 RunTest_NonNestableInNestedLoop(MessageLoop::TYPE_DEFAULT
, true);
1739 RunTest_NonNestableInNestedLoop(MessageLoop::TYPE_UI
, true);
1740 RunTest_NonNestableInNestedLoop(MessageLoop::TYPE_IO
, true);
1743 TEST(MessageLoopTest
, QuitNow
) {
1744 RunTest_QuitNow(MessageLoop::TYPE_DEFAULT
);
1745 RunTest_QuitNow(MessageLoop::TYPE_UI
);
1746 RunTest_QuitNow(MessageLoop::TYPE_IO
);
1749 TEST(MessageLoopTest
, RunLoopQuitTop
) {
1750 RunTest_RunLoopQuitTop(MessageLoop::TYPE_DEFAULT
);
1751 RunTest_RunLoopQuitTop(MessageLoop::TYPE_UI
);
1752 RunTest_RunLoopQuitTop(MessageLoop::TYPE_IO
);
1755 TEST(MessageLoopTest
, RunLoopQuitNested
) {
1756 RunTest_RunLoopQuitNested(MessageLoop::TYPE_DEFAULT
);
1757 RunTest_RunLoopQuitNested(MessageLoop::TYPE_UI
);
1758 RunTest_RunLoopQuitNested(MessageLoop::TYPE_IO
);
1761 TEST(MessageLoopTest
, RunLoopQuitBogus
) {
1762 RunTest_RunLoopQuitBogus(MessageLoop::TYPE_DEFAULT
);
1763 RunTest_RunLoopQuitBogus(MessageLoop::TYPE_UI
);
1764 RunTest_RunLoopQuitBogus(MessageLoop::TYPE_IO
);
1767 TEST(MessageLoopTest
, RunLoopQuitDeep
) {
1768 RunTest_RunLoopQuitDeep(MessageLoop::TYPE_DEFAULT
);
1769 RunTest_RunLoopQuitDeep(MessageLoop::TYPE_UI
);
1770 RunTest_RunLoopQuitDeep(MessageLoop::TYPE_IO
);
1773 TEST(MessageLoopTest
, RunLoopQuitOrderBefore
) {
1774 RunTest_RunLoopQuitOrderBefore(MessageLoop::TYPE_DEFAULT
);
1775 RunTest_RunLoopQuitOrderBefore(MessageLoop::TYPE_UI
);
1776 RunTest_RunLoopQuitOrderBefore(MessageLoop::TYPE_IO
);
1779 TEST(MessageLoopTest
, RunLoopQuitOrderDuring
) {
1780 RunTest_RunLoopQuitOrderDuring(MessageLoop::TYPE_DEFAULT
);
1781 RunTest_RunLoopQuitOrderDuring(MessageLoop::TYPE_UI
);
1782 RunTest_RunLoopQuitOrderDuring(MessageLoop::TYPE_IO
);
1785 TEST(MessageLoopTest
, RunLoopQuitOrderAfter
) {
1786 RunTest_RunLoopQuitOrderAfter(MessageLoop::TYPE_DEFAULT
);
1787 RunTest_RunLoopQuitOrderAfter(MessageLoop::TYPE_UI
);
1788 RunTest_RunLoopQuitOrderAfter(MessageLoop::TYPE_IO
);
1791 class DummyTaskObserver
: public MessageLoop::TaskObserver
{
1793 explicit DummyTaskObserver(int num_tasks
)
1794 : num_tasks_started_(0),
1795 num_tasks_processed_(0),
1796 num_tasks_(num_tasks
) {}
1798 virtual ~DummyTaskObserver() {}
1800 virtual void WillProcessTask(const PendingTask
& pending_task
) OVERRIDE
{
1801 num_tasks_started_
++;
1802 EXPECT_TRUE(pending_task
.time_posted
!= TimeTicks());
1803 EXPECT_LE(num_tasks_started_
, num_tasks_
);
1804 EXPECT_EQ(num_tasks_started_
, num_tasks_processed_
+ 1);
1807 virtual void DidProcessTask(const PendingTask
& pending_task
) OVERRIDE
{
1808 num_tasks_processed_
++;
1809 EXPECT_TRUE(pending_task
.time_posted
!= TimeTicks());
1810 EXPECT_LE(num_tasks_started_
, num_tasks_
);
1811 EXPECT_EQ(num_tasks_started_
, num_tasks_processed_
);
1814 int num_tasks_started() const { return num_tasks_started_
; }
1815 int num_tasks_processed() const { return num_tasks_processed_
; }
1818 int num_tasks_started_
;
1819 int num_tasks_processed_
;
1820 const int num_tasks_
;
1822 DISALLOW_COPY_AND_ASSIGN(DummyTaskObserver
);
1825 TEST(MessageLoopTest
, TaskObserver
) {
1826 const int kNumPosts
= 6;
1827 DummyTaskObserver
observer(kNumPosts
);
1830 loop
.AddTaskObserver(&observer
);
1831 loop
.PostTask(FROM_HERE
, Bind(&PostNTasksThenQuit
, kNumPosts
));
1833 loop
.RemoveTaskObserver(&observer
);
1835 EXPECT_EQ(kNumPosts
, observer
.num_tasks_started());
1836 EXPECT_EQ(kNumPosts
, observer
.num_tasks_processed());
1840 TEST(MessageLoopTest
, Dispatcher
) {
1841 // This test requires a UI loop
1842 RunTest_Dispatcher(MessageLoop::TYPE_UI
);
1845 TEST(MessageLoopTest
, DispatcherWithMessageHook
) {
1846 // This test requires a UI loop
1847 RunTest_DispatcherWithMessageHook(MessageLoop::TYPE_UI
);
1850 TEST(MessageLoopTest
, IOHandler
) {
1851 RunTest_IOHandler();
1854 TEST(MessageLoopTest
, WaitForIO
) {
1855 RunTest_WaitForIO();
1858 TEST(MessageLoopTest
, HighResolutionTimer
) {
1861 const TimeDelta kFastTimer
= TimeDelta::FromMilliseconds(5);
1862 const TimeDelta kSlowTimer
= TimeDelta::FromMilliseconds(100);
1864 EXPECT_FALSE(loop
.high_resolution_timers_enabled());
1866 // Post a fast task to enable the high resolution timers.
1867 loop
.PostDelayedTask(FROM_HERE
, Bind(&PostNTasksThenQuit
, 1),
1870 EXPECT_TRUE(loop
.high_resolution_timers_enabled());
1872 // Post a slow task and verify high resolution timers
1873 // are still enabled.
1874 loop
.PostDelayedTask(FROM_HERE
, Bind(&PostNTasksThenQuit
, 1),
1877 EXPECT_TRUE(loop
.high_resolution_timers_enabled());
1879 // Wait for a while so that high-resolution mode elapses.
1880 PlatformThread::Sleep(TimeDelta::FromMilliseconds(
1881 MessageLoop::kHighResolutionTimerModeLeaseTimeMs
));
1883 // Post a slow task to disable the high resolution timers.
1884 loop
.PostDelayedTask(FROM_HERE
, Bind(&PostNTasksThenQuit
, 1),
1887 EXPECT_FALSE(loop
.high_resolution_timers_enabled());
1890 #endif // defined(OS_WIN)
1892 #if defined(OS_POSIX) && !defined(OS_NACL)
1896 class QuitDelegate
: public MessageLoopForIO::Watcher
{
1898 virtual void OnFileCanWriteWithoutBlocking(int fd
) OVERRIDE
{
1899 MessageLoop::current()->QuitWhenIdle();
1901 virtual void OnFileCanReadWithoutBlocking(int fd
) OVERRIDE
{
1902 MessageLoop::current()->QuitWhenIdle();
1906 TEST(MessageLoopTest
, FileDescriptorWatcherOutlivesMessageLoop
) {
1907 // Simulate a MessageLoop that dies before an FileDescriptorWatcher.
1908 // This could happen when people use the Singleton pattern or atexit.
1910 // Create a file descriptor. Doesn't need to be readable or writable,
1911 // as we don't need to actually get any notifications.
1912 // pipe() is just the easiest way to do it.
1914 int err
= pipe(pipefds
);
1916 int fd
= pipefds
[1];
1918 // Arrange for controller to live longer than message loop.
1919 MessageLoopForIO::FileDescriptorWatcher controller
;
1921 MessageLoopForIO message_loop
;
1923 QuitDelegate delegate
;
1924 message_loop
.WatchFileDescriptor(fd
,
1925 true, MessageLoopForIO::WATCH_WRITE
, &controller
, &delegate
);
1926 // and don't run the message loop, just destroy it.
1929 if (HANDLE_EINTR(close(pipefds
[0])) < 0)
1930 PLOG(ERROR
) << "close";
1931 if (HANDLE_EINTR(close(pipefds
[1])) < 0)
1932 PLOG(ERROR
) << "close";
1935 TEST(MessageLoopTest
, FileDescriptorWatcherDoubleStop
) {
1936 // Verify that it's ok to call StopWatchingFileDescriptor().
1937 // (Errors only showed up in valgrind.)
1939 int err
= pipe(pipefds
);
1941 int fd
= pipefds
[1];
1943 // Arrange for message loop to live longer than controller.
1944 MessageLoopForIO message_loop
;
1946 MessageLoopForIO::FileDescriptorWatcher controller
;
1948 QuitDelegate delegate
;
1949 message_loop
.WatchFileDescriptor(fd
,
1950 true, MessageLoopForIO::WATCH_WRITE
, &controller
, &delegate
);
1951 controller
.StopWatchingFileDescriptor();
1954 if (HANDLE_EINTR(close(pipefds
[0])) < 0)
1955 PLOG(ERROR
) << "close";
1956 if (HANDLE_EINTR(close(pipefds
[1])) < 0)
1957 PLOG(ERROR
) << "close";
1962 #endif // defined(OS_POSIX) && !defined(OS_NACL)
1965 // Inject a test point for recording the destructor calls for Closure objects
1966 // send to MessageLoop::PostTask(). It is awkward usage since we are trying to
1967 // hook the actual destruction, which is not a common operation.
1968 class DestructionObserverProbe
:
1969 public RefCounted
<DestructionObserverProbe
> {
1971 DestructionObserverProbe(bool* task_destroyed
,
1972 bool* destruction_observer_called
)
1973 : task_destroyed_(task_destroyed
),
1974 destruction_observer_called_(destruction_observer_called
) {
1976 virtual void Run() {
1977 // This task should never run.
1981 friend class RefCounted
<DestructionObserverProbe
>;
1983 virtual ~DestructionObserverProbe() {
1984 EXPECT_FALSE(*destruction_observer_called_
);
1985 *task_destroyed_
= true;
1988 bool* task_destroyed_
;
1989 bool* destruction_observer_called_
;
1992 class MLDestructionObserver
: public MessageLoop::DestructionObserver
{
1994 MLDestructionObserver(bool* task_destroyed
, bool* destruction_observer_called
)
1995 : task_destroyed_(task_destroyed
),
1996 destruction_observer_called_(destruction_observer_called
),
1997 task_destroyed_before_message_loop_(false) {
1999 virtual void WillDestroyCurrentMessageLoop() OVERRIDE
{
2000 task_destroyed_before_message_loop_
= *task_destroyed_
;
2001 *destruction_observer_called_
= true;
2003 bool task_destroyed_before_message_loop() const {
2004 return task_destroyed_before_message_loop_
;
2007 bool* task_destroyed_
;
2008 bool* destruction_observer_called_
;
2009 bool task_destroyed_before_message_loop_
;
2014 TEST(MessageLoopTest
, DestructionObserverTest
) {
2015 // Verify that the destruction observer gets called at the very end (after
2016 // all the pending tasks have been destroyed).
2017 MessageLoop
* loop
= new MessageLoop
;
2018 const TimeDelta kDelay
= TimeDelta::FromMilliseconds(100);
2020 bool task_destroyed
= false;
2021 bool destruction_observer_called
= false;
2023 MLDestructionObserver
observer(&task_destroyed
, &destruction_observer_called
);
2024 loop
->AddDestructionObserver(&observer
);
2025 loop
->PostDelayedTask(
2027 Bind(&DestructionObserverProbe::Run
,
2028 new DestructionObserverProbe(&task_destroyed
,
2029 &destruction_observer_called
)),
2032 EXPECT_TRUE(observer
.task_destroyed_before_message_loop());
2033 // The task should have been destroyed when we deleted the loop.
2034 EXPECT_TRUE(task_destroyed
);
2035 EXPECT_TRUE(destruction_observer_called
);
2039 // Verify that MessageLoop sets ThreadMainTaskRunner::current() and it
2040 // posts tasks on that message loop.
2041 TEST(MessageLoopTest
, ThreadMainTaskRunner
) {
2044 scoped_refptr
<Foo
> foo(new Foo());
2046 ThreadTaskRunnerHandle::Get()->PostTask(FROM_HERE
, Bind(
2047 &Foo::Test1ConstRef
, foo
.get(), a
));
2050 MessageLoop::current()->PostTask(FROM_HERE
, Bind(
2051 &MessageLoop::Quit
, Unretained(MessageLoop::current())));
2053 // Now kick things off
2054 MessageLoop::current()->Run();
2056 EXPECT_EQ(foo
->test_count(), 1);
2057 EXPECT_EQ(foo
->result(), "a");
2060 TEST(MessageLoopTest
, IsType
) {
2061 MessageLoop
loop(MessageLoop::TYPE_UI
);
2062 EXPECT_TRUE(loop
.IsType(MessageLoop::TYPE_UI
));
2063 EXPECT_FALSE(loop
.IsType(MessageLoop::TYPE_IO
));
2064 EXPECT_FALSE(loop
.IsType(MessageLoop::TYPE_DEFAULT
));
2067 TEST(MessageLoopTest
, RecursivePosts
) {
2068 // There was a bug in the MessagePumpGLib where posting tasks recursively
2069 // caused the message loop to hang, due to the buffer of the internal pipe
2070 // becoming full. Test all MessageLoop types to ensure this issue does not
2071 // exist in other MessagePumps.
2073 // On Linux, the pipe buffer size is 64KiB by default. The bug caused one
2074 // byte accumulated in the pipe per two posts, so we should repeat 128K
2075 // times to reproduce the bug.
2076 const int kNumTimes
= 1 << 17;
2077 RunTest_RecursivePosts(MessageLoop::TYPE_DEFAULT
, kNumTimes
);
2078 RunTest_RecursivePosts(MessageLoop::TYPE_UI
, kNumTimes
);
2079 RunTest_RecursivePosts(MessageLoop::TYPE_IO
, kNumTimes
);