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1015 lines
33 KiB
C++
1015 lines
33 KiB
C++
// Copyright 2013 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "base/message_loop/message_loop_test.h"
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#include "base/bind.h"
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#include "base/memory/ref_counted.h"
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#include "base/run_loop.h"
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#include "base/synchronization/waitable_event.h"
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#include "base/threading/thread.h"
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namespace base {
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namespace test {
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namespace {
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class Foo : public RefCounted<Foo> {
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public:
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Foo() : test_count_(0) {
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}
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void Test0() {
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++test_count_;
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}
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void Test1ConstRef(const std::string& a) {
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++test_count_;
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result_.append(a);
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}
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void Test1Ptr(std::string* a) {
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++test_count_;
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result_.append(*a);
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}
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void Test1Int(int a) {
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test_count_ += a;
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}
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void Test2Ptr(std::string* a, std::string* b) {
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++test_count_;
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result_.append(*a);
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result_.append(*b);
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}
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void Test2Mixed(const std::string& a, std::string* b) {
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++test_count_;
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result_.append(a);
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result_.append(*b);
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}
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int test_count() const { return test_count_; }
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const std::string& result() const { return result_; }
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private:
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friend class RefCounted<Foo>;
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~Foo() {}
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int test_count_;
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std::string result_;
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DISALLOW_COPY_AND_ASSIGN(Foo);
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};
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// This function runs slowly to simulate a large amount of work being done.
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void SlowFunc(TimeDelta pause, int* quit_counter) {
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PlatformThread::Sleep(pause);
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if (--(*quit_counter) == 0)
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MessageLoop::current()->QuitWhenIdle();
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}
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// This function records the time when Run was called in a Time object, which is
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// useful for building a variety of MessageLoop tests.
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// TODO(sky): remove?
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void RecordRunTimeFunc(Time* run_time, int* quit_counter) {
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*run_time = Time::Now();
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// Cause our Run function to take some time to execute. As a result we can
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// count on subsequent RecordRunTimeFunc()s running at a future time,
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// without worry about the resolution of our system clock being an issue.
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SlowFunc(TimeDelta::FromMilliseconds(10), quit_counter);
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}
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} // namespace
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void RunTest_PostTask(MessagePumpFactory factory) {
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scoped_ptr<MessagePump> pump(factory());
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MessageLoop loop(pump.Pass());
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// Add tests to message loop
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scoped_refptr<Foo> foo(new Foo());
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std::string a("a"), b("b"), c("c"), d("d");
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MessageLoop::current()->PostTask(FROM_HERE, Bind(
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&Foo::Test0, foo.get()));
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MessageLoop::current()->PostTask(FROM_HERE, Bind(
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&Foo::Test1ConstRef, foo.get(), a));
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MessageLoop::current()->PostTask(FROM_HERE, Bind(
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&Foo::Test1Ptr, foo.get(), &b));
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MessageLoop::current()->PostTask(FROM_HERE, Bind(
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&Foo::Test1Int, foo.get(), 100));
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MessageLoop::current()->PostTask(FROM_HERE, Bind(
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&Foo::Test2Ptr, foo.get(), &a, &c));
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MessageLoop::current()->PostTask(FROM_HERE, Bind(
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&Foo::Test2Mixed, foo.get(), a, &d));
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// After all tests, post a message that will shut down the message loop
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MessageLoop::current()->PostTask(FROM_HERE, Bind(
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&MessageLoop::Quit, Unretained(MessageLoop::current())));
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// Now kick things off
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MessageLoop::current()->Run();
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EXPECT_EQ(foo->test_count(), 105);
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EXPECT_EQ(foo->result(), "abacad");
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}
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void RunTest_PostDelayedTask_Basic(MessagePumpFactory factory) {
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scoped_ptr<MessagePump> pump(factory());
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MessageLoop loop(pump.Pass());
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// Test that PostDelayedTask results in a delayed task.
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const TimeDelta kDelay = TimeDelta::FromMilliseconds(100);
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int num_tasks = 1;
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Time run_time;
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loop.PostDelayedTask(
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FROM_HERE, Bind(&RecordRunTimeFunc, &run_time, &num_tasks),
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kDelay);
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Time time_before_run = Time::Now();
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loop.Run();
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Time time_after_run = Time::Now();
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EXPECT_EQ(0, num_tasks);
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EXPECT_LT(kDelay, time_after_run - time_before_run);
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}
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void RunTest_PostDelayedTask_InDelayOrder(MessagePumpFactory factory) {
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scoped_ptr<MessagePump> pump(factory());
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MessageLoop loop(pump.Pass());
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// Test that two tasks with different delays run in the right order.
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int num_tasks = 2;
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Time run_time1, run_time2;
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loop.PostDelayedTask(
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FROM_HERE,
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Bind(&RecordRunTimeFunc, &run_time1, &num_tasks),
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TimeDelta::FromMilliseconds(200));
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// If we get a large pause in execution (due to a context switch) here, this
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// test could fail.
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loop.PostDelayedTask(
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FROM_HERE,
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Bind(&RecordRunTimeFunc, &run_time2, &num_tasks),
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TimeDelta::FromMilliseconds(10));
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loop.Run();
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EXPECT_EQ(0, num_tasks);
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EXPECT_TRUE(run_time2 < run_time1);
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}
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void RunTest_PostDelayedTask_InPostOrder(MessagePumpFactory factory) {
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scoped_ptr<MessagePump> pump(factory());
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MessageLoop loop(pump.Pass());
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// Test that two tasks with the same delay run in the order in which they
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// were posted.
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//
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// NOTE: This is actually an approximate test since the API only takes a
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// "delay" parameter, so we are not exactly simulating two tasks that get
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// posted at the exact same time. It would be nice if the API allowed us to
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// specify the desired run time.
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const TimeDelta kDelay = TimeDelta::FromMilliseconds(100);
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int num_tasks = 2;
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Time run_time1, run_time2;
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loop.PostDelayedTask(
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FROM_HERE,
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Bind(&RecordRunTimeFunc, &run_time1, &num_tasks), kDelay);
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loop.PostDelayedTask(
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FROM_HERE,
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Bind(&RecordRunTimeFunc, &run_time2, &num_tasks), kDelay);
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loop.Run();
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EXPECT_EQ(0, num_tasks);
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EXPECT_TRUE(run_time1 < run_time2);
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}
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void RunTest_PostDelayedTask_InPostOrder_2(MessagePumpFactory factory) {
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scoped_ptr<MessagePump> pump(factory());
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MessageLoop loop(pump.Pass());
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// Test that a delayed task still runs after a normal tasks even if the
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// normal tasks take a long time to run.
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const TimeDelta kPause = TimeDelta::FromMilliseconds(50);
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int num_tasks = 2;
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Time run_time;
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loop.PostTask(FROM_HERE, Bind(&SlowFunc, kPause, &num_tasks));
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loop.PostDelayedTask(
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FROM_HERE,
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Bind(&RecordRunTimeFunc, &run_time, &num_tasks),
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TimeDelta::FromMilliseconds(10));
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Time time_before_run = Time::Now();
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loop.Run();
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Time time_after_run = Time::Now();
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EXPECT_EQ(0, num_tasks);
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EXPECT_LT(kPause, time_after_run - time_before_run);
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}
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void RunTest_PostDelayedTask_InPostOrder_3(MessagePumpFactory factory) {
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scoped_ptr<MessagePump> pump(factory());
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MessageLoop loop(pump.Pass());
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// Test that a delayed task still runs after a pile of normal tasks. The key
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// difference between this test and the previous one is that here we return
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// the MessageLoop a lot so we give the MessageLoop plenty of opportunities
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// to maybe run the delayed task. It should know not to do so until the
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// delayed task's delay has passed.
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int num_tasks = 11;
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Time run_time1, run_time2;
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// Clutter the ML with tasks.
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for (int i = 1; i < num_tasks; ++i)
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loop.PostTask(FROM_HERE,
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Bind(&RecordRunTimeFunc, &run_time1, &num_tasks));
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loop.PostDelayedTask(
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FROM_HERE, Bind(&RecordRunTimeFunc, &run_time2, &num_tasks),
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TimeDelta::FromMilliseconds(1));
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loop.Run();
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EXPECT_EQ(0, num_tasks);
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EXPECT_TRUE(run_time2 > run_time1);
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}
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void RunTest_PostDelayedTask_SharedTimer(MessagePumpFactory factory) {
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scoped_ptr<MessagePump> pump(factory());
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MessageLoop loop(pump.Pass());
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// Test that the interval of the timer, used to run the next delayed task, is
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// set to a value corresponding to when the next delayed task should run.
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// By setting num_tasks to 1, we ensure that the first task to run causes the
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// run loop to exit.
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int num_tasks = 1;
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Time run_time1, run_time2;
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loop.PostDelayedTask(
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FROM_HERE,
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Bind(&RecordRunTimeFunc, &run_time1, &num_tasks),
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TimeDelta::FromSeconds(1000));
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loop.PostDelayedTask(
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FROM_HERE,
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Bind(&RecordRunTimeFunc, &run_time2, &num_tasks),
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TimeDelta::FromMilliseconds(10));
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Time start_time = Time::Now();
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loop.Run();
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EXPECT_EQ(0, num_tasks);
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// Ensure that we ran in far less time than the slower timer.
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TimeDelta total_time = Time::Now() - start_time;
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EXPECT_GT(5000, total_time.InMilliseconds());
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// In case both timers somehow run at nearly the same time, sleep a little
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// and then run all pending to force them both to have run. This is just
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// encouraging flakiness if there is any.
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PlatformThread::Sleep(TimeDelta::FromMilliseconds(100));
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RunLoop().RunUntilIdle();
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EXPECT_TRUE(run_time1.is_null());
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EXPECT_FALSE(run_time2.is_null());
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}
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// This is used to inject a test point for recording the destructor calls for
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// Closure objects send to MessageLoop::PostTask(). It is awkward usage since we
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// are trying to hook the actual destruction, which is not a common operation.
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class RecordDeletionProbe : public RefCounted<RecordDeletionProbe> {
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public:
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RecordDeletionProbe(RecordDeletionProbe* post_on_delete, bool* was_deleted)
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: post_on_delete_(post_on_delete), was_deleted_(was_deleted) {
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}
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void Run() {}
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private:
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friend class RefCounted<RecordDeletionProbe>;
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~RecordDeletionProbe() {
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*was_deleted_ = true;
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if (post_on_delete_.get())
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MessageLoop::current()->PostTask(
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FROM_HERE, Bind(&RecordDeletionProbe::Run, post_on_delete_.get()));
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}
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scoped_refptr<RecordDeletionProbe> post_on_delete_;
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bool* was_deleted_;
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};
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void RunTest_EnsureDeletion(MessagePumpFactory factory) {
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bool a_was_deleted = false;
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bool b_was_deleted = false;
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{
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scoped_ptr<MessagePump> pump(factory());
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MessageLoop loop(pump.Pass());
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loop.PostTask(
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FROM_HERE, Bind(&RecordDeletionProbe::Run,
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new RecordDeletionProbe(NULL, &a_was_deleted)));
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// TODO(ajwong): Do we really need 1000ms here?
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loop.PostDelayedTask(
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FROM_HERE, Bind(&RecordDeletionProbe::Run,
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new RecordDeletionProbe(NULL, &b_was_deleted)),
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TimeDelta::FromMilliseconds(1000));
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}
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EXPECT_TRUE(a_was_deleted);
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EXPECT_TRUE(b_was_deleted);
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}
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void RunTest_EnsureDeletion_Chain(MessagePumpFactory factory) {
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bool a_was_deleted = false;
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bool b_was_deleted = false;
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bool c_was_deleted = false;
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{
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scoped_ptr<MessagePump> pump(factory());
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MessageLoop loop(pump.Pass());
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// The scoped_refptr for each of the below is held either by the chained
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// RecordDeletionProbe, or the bound RecordDeletionProbe::Run() callback.
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RecordDeletionProbe* a = new RecordDeletionProbe(NULL, &a_was_deleted);
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RecordDeletionProbe* b = new RecordDeletionProbe(a, &b_was_deleted);
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RecordDeletionProbe* c = new RecordDeletionProbe(b, &c_was_deleted);
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loop.PostTask(FROM_HERE, Bind(&RecordDeletionProbe::Run, c));
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}
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EXPECT_TRUE(a_was_deleted);
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EXPECT_TRUE(b_was_deleted);
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EXPECT_TRUE(c_was_deleted);
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}
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void NestingFunc(int* depth) {
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if (*depth > 0) {
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*depth -= 1;
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MessageLoop::current()->PostTask(FROM_HERE,
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Bind(&NestingFunc, depth));
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MessageLoop::current()->SetNestableTasksAllowed(true);
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MessageLoop::current()->Run();
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}
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MessageLoop::current()->QuitWhenIdle();
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}
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void RunTest_Nesting(MessagePumpFactory factory) {
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scoped_ptr<MessagePump> pump(factory());
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MessageLoop loop(pump.Pass());
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int depth = 100;
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MessageLoop::current()->PostTask(FROM_HERE,
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Bind(&NestingFunc, &depth));
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MessageLoop::current()->Run();
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EXPECT_EQ(depth, 0);
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}
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enum TaskType {
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MESSAGEBOX,
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ENDDIALOG,
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RECURSIVE,
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TIMEDMESSAGELOOP,
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QUITMESSAGELOOP,
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ORDERED,
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PUMPS,
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SLEEP,
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RUNS,
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};
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struct TaskItem {
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TaskItem(TaskType t, int c, bool s)
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: type(t),
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cookie(c),
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start(s) {
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}
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TaskType type;
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int cookie;
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bool start;
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bool operator == (const TaskItem& other) const {
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return type == other.type && cookie == other.cookie && start == other.start;
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}
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};
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std::ostream& operator <<(std::ostream& os, TaskType type) {
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switch (type) {
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case MESSAGEBOX: os << "MESSAGEBOX"; break;
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case ENDDIALOG: os << "ENDDIALOG"; break;
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case RECURSIVE: os << "RECURSIVE"; break;
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case TIMEDMESSAGELOOP: os << "TIMEDMESSAGELOOP"; break;
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case QUITMESSAGELOOP: os << "QUITMESSAGELOOP"; break;
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case ORDERED: os << "ORDERED"; break;
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case PUMPS: os << "PUMPS"; break;
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case SLEEP: os << "SLEEP"; break;
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default:
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NOTREACHED();
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os << "Unknown TaskType";
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break;
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}
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return os;
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}
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std::ostream& operator <<(std::ostream& os, const TaskItem& item) {
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if (item.start)
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return os << item.type << " " << item.cookie << " starts";
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else
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return os << item.type << " " << item.cookie << " ends";
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}
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class TaskList {
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public:
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void RecordStart(TaskType type, int cookie) {
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TaskItem item(type, cookie, true);
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DVLOG(1) << item;
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task_list_.push_back(item);
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}
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void RecordEnd(TaskType type, int cookie) {
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TaskItem item(type, cookie, false);
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DVLOG(1) << item;
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task_list_.push_back(item);
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}
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size_t Size() {
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return task_list_.size();
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}
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TaskItem Get(int n) {
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return task_list_[n];
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}
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private:
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std::vector<TaskItem> task_list_;
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};
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void RecursiveFunc(TaskList* order, int cookie, int depth,
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bool is_reentrant) {
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order->RecordStart(RECURSIVE, cookie);
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if (depth > 0) {
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if (is_reentrant)
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MessageLoop::current()->SetNestableTasksAllowed(true);
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MessageLoop::current()->PostTask(
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FROM_HERE,
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Bind(&RecursiveFunc, order, cookie, depth - 1, is_reentrant));
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}
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order->RecordEnd(RECURSIVE, cookie);
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}
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void QuitFunc(TaskList* order, int cookie) {
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order->RecordStart(QUITMESSAGELOOP, cookie);
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MessageLoop::current()->QuitWhenIdle();
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order->RecordEnd(QUITMESSAGELOOP, cookie);
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}
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void RunTest_RecursiveDenial1(MessagePumpFactory factory) {
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scoped_ptr<MessagePump> pump(factory());
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MessageLoop loop(pump.Pass());
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EXPECT_TRUE(MessageLoop::current()->NestableTasksAllowed());
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TaskList order;
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MessageLoop::current()->PostTask(
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FROM_HERE,
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Bind(&RecursiveFunc, &order, 1, 2, false));
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MessageLoop::current()->PostTask(
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FROM_HERE,
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Bind(&RecursiveFunc, &order, 2, 2, false));
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MessageLoop::current()->PostTask(
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FROM_HERE,
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Bind(&QuitFunc, &order, 3));
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MessageLoop::current()->Run();
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// FIFO order.
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ASSERT_EQ(14U, order.Size());
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EXPECT_EQ(order.Get(0), TaskItem(RECURSIVE, 1, true));
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EXPECT_EQ(order.Get(1), TaskItem(RECURSIVE, 1, false));
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EXPECT_EQ(order.Get(2), TaskItem(RECURSIVE, 2, true));
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EXPECT_EQ(order.Get(3), TaskItem(RECURSIVE, 2, false));
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EXPECT_EQ(order.Get(4), TaskItem(QUITMESSAGELOOP, 3, true));
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EXPECT_EQ(order.Get(5), TaskItem(QUITMESSAGELOOP, 3, false));
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EXPECT_EQ(order.Get(6), TaskItem(RECURSIVE, 1, true));
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EXPECT_EQ(order.Get(7), TaskItem(RECURSIVE, 1, false));
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EXPECT_EQ(order.Get(8), TaskItem(RECURSIVE, 2, true));
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EXPECT_EQ(order.Get(9), TaskItem(RECURSIVE, 2, false));
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EXPECT_EQ(order.Get(10), TaskItem(RECURSIVE, 1, true));
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EXPECT_EQ(order.Get(11), TaskItem(RECURSIVE, 1, false));
|
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EXPECT_EQ(order.Get(12), TaskItem(RECURSIVE, 2, true));
|
|
EXPECT_EQ(order.Get(13), TaskItem(RECURSIVE, 2, false));
|
|
}
|
|
|
|
void RecursiveSlowFunc(TaskList* order, int cookie, int depth,
|
|
bool is_reentrant) {
|
|
RecursiveFunc(order, cookie, depth, is_reentrant);
|
|
PlatformThread::Sleep(TimeDelta::FromMilliseconds(10));
|
|
}
|
|
|
|
void OrderedFunc(TaskList* order, int cookie) {
|
|
order->RecordStart(ORDERED, cookie);
|
|
order->RecordEnd(ORDERED, cookie);
|
|
}
|
|
|
|
void RunTest_RecursiveDenial3(MessagePumpFactory factory) {
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
EXPECT_TRUE(MessageLoop::current()->NestableTasksAllowed());
|
|
TaskList order;
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&RecursiveSlowFunc, &order, 1, 2, false));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&RecursiveSlowFunc, &order, 2, 2, false));
|
|
MessageLoop::current()->PostDelayedTask(
|
|
FROM_HERE,
|
|
Bind(&OrderedFunc, &order, 3),
|
|
TimeDelta::FromMilliseconds(5));
|
|
MessageLoop::current()->PostDelayedTask(
|
|
FROM_HERE,
|
|
Bind(&QuitFunc, &order, 4),
|
|
TimeDelta::FromMilliseconds(5));
|
|
|
|
MessageLoop::current()->Run();
|
|
|
|
// FIFO order.
|
|
ASSERT_EQ(16U, order.Size());
|
|
EXPECT_EQ(order.Get(0), TaskItem(RECURSIVE, 1, true));
|
|
EXPECT_EQ(order.Get(1), TaskItem(RECURSIVE, 1, false));
|
|
EXPECT_EQ(order.Get(2), TaskItem(RECURSIVE, 2, true));
|
|
EXPECT_EQ(order.Get(3), TaskItem(RECURSIVE, 2, false));
|
|
EXPECT_EQ(order.Get(4), TaskItem(RECURSIVE, 1, true));
|
|
EXPECT_EQ(order.Get(5), TaskItem(RECURSIVE, 1, false));
|
|
EXPECT_EQ(order.Get(6), TaskItem(ORDERED, 3, true));
|
|
EXPECT_EQ(order.Get(7), TaskItem(ORDERED, 3, false));
|
|
EXPECT_EQ(order.Get(8), TaskItem(RECURSIVE, 2, true));
|
|
EXPECT_EQ(order.Get(9), TaskItem(RECURSIVE, 2, false));
|
|
EXPECT_EQ(order.Get(10), TaskItem(QUITMESSAGELOOP, 4, true));
|
|
EXPECT_EQ(order.Get(11), TaskItem(QUITMESSAGELOOP, 4, false));
|
|
EXPECT_EQ(order.Get(12), TaskItem(RECURSIVE, 1, true));
|
|
EXPECT_EQ(order.Get(13), TaskItem(RECURSIVE, 1, false));
|
|
EXPECT_EQ(order.Get(14), TaskItem(RECURSIVE, 2, true));
|
|
EXPECT_EQ(order.Get(15), TaskItem(RECURSIVE, 2, false));
|
|
}
|
|
|
|
void RunTest_RecursiveSupport1(MessagePumpFactory factory) {
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
TaskList order;
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&RecursiveFunc, &order, 1, 2, true));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&RecursiveFunc, &order, 2, 2, true));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&QuitFunc, &order, 3));
|
|
|
|
MessageLoop::current()->Run();
|
|
|
|
// FIFO order.
|
|
ASSERT_EQ(14U, order.Size());
|
|
EXPECT_EQ(order.Get(0), TaskItem(RECURSIVE, 1, true));
|
|
EXPECT_EQ(order.Get(1), TaskItem(RECURSIVE, 1, false));
|
|
EXPECT_EQ(order.Get(2), TaskItem(RECURSIVE, 2, true));
|
|
EXPECT_EQ(order.Get(3), TaskItem(RECURSIVE, 2, false));
|
|
EXPECT_EQ(order.Get(4), TaskItem(QUITMESSAGELOOP, 3, true));
|
|
EXPECT_EQ(order.Get(5), TaskItem(QUITMESSAGELOOP, 3, false));
|
|
EXPECT_EQ(order.Get(6), TaskItem(RECURSIVE, 1, true));
|
|
EXPECT_EQ(order.Get(7), TaskItem(RECURSIVE, 1, false));
|
|
EXPECT_EQ(order.Get(8), TaskItem(RECURSIVE, 2, true));
|
|
EXPECT_EQ(order.Get(9), TaskItem(RECURSIVE, 2, false));
|
|
EXPECT_EQ(order.Get(10), TaskItem(RECURSIVE, 1, true));
|
|
EXPECT_EQ(order.Get(11), TaskItem(RECURSIVE, 1, false));
|
|
EXPECT_EQ(order.Get(12), TaskItem(RECURSIVE, 2, true));
|
|
EXPECT_EQ(order.Get(13), TaskItem(RECURSIVE, 2, false));
|
|
}
|
|
|
|
// Tests that non nestable tasks run in FIFO if there are no nested loops.
|
|
void RunTest_NonNestableWithNoNesting(MessagePumpFactory factory) {
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
TaskList order;
|
|
|
|
MessageLoop::current()->PostNonNestableTask(
|
|
FROM_HERE,
|
|
Bind(&OrderedFunc, &order, 1));
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&OrderedFunc, &order, 2));
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&QuitFunc, &order, 3));
|
|
MessageLoop::current()->Run();
|
|
|
|
// FIFO order.
|
|
ASSERT_EQ(6U, order.Size());
|
|
EXPECT_EQ(order.Get(0), TaskItem(ORDERED, 1, true));
|
|
EXPECT_EQ(order.Get(1), TaskItem(ORDERED, 1, false));
|
|
EXPECT_EQ(order.Get(2), TaskItem(ORDERED, 2, true));
|
|
EXPECT_EQ(order.Get(3), TaskItem(ORDERED, 2, false));
|
|
EXPECT_EQ(order.Get(4), TaskItem(QUITMESSAGELOOP, 3, true));
|
|
EXPECT_EQ(order.Get(5), TaskItem(QUITMESSAGELOOP, 3, false));
|
|
}
|
|
|
|
void FuncThatPumps(TaskList* order, int cookie) {
|
|
order->RecordStart(PUMPS, cookie);
|
|
{
|
|
MessageLoop::ScopedNestableTaskAllower allow(MessageLoop::current());
|
|
RunLoop().RunUntilIdle();
|
|
}
|
|
order->RecordEnd(PUMPS, cookie);
|
|
}
|
|
|
|
void SleepFunc(TaskList* order, int cookie, TimeDelta delay) {
|
|
order->RecordStart(SLEEP, cookie);
|
|
PlatformThread::Sleep(delay);
|
|
order->RecordEnd(SLEEP, cookie);
|
|
}
|
|
|
|
// Tests that non nestable tasks don't run when there's code in the call stack.
|
|
void RunTest_NonNestableInNestedLoop(MessagePumpFactory factory,
|
|
bool use_delayed) {
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
TaskList order;
|
|
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE,
|
|
Bind(&FuncThatPumps, &order, 1));
|
|
if (use_delayed) {
|
|
MessageLoop::current()->PostNonNestableDelayedTask(
|
|
FROM_HERE,
|
|
Bind(&OrderedFunc, &order, 2),
|
|
TimeDelta::FromMilliseconds(1));
|
|
} else {
|
|
MessageLoop::current()->PostNonNestableTask(
|
|
FROM_HERE,
|
|
Bind(&OrderedFunc, &order, 2));
|
|
}
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&OrderedFunc, &order, 3));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE,
|
|
Bind(&SleepFunc, &order, 4, TimeDelta::FromMilliseconds(50)));
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&OrderedFunc, &order, 5));
|
|
if (use_delayed) {
|
|
MessageLoop::current()->PostNonNestableDelayedTask(
|
|
FROM_HERE,
|
|
Bind(&QuitFunc, &order, 6),
|
|
TimeDelta::FromMilliseconds(2));
|
|
} else {
|
|
MessageLoop::current()->PostNonNestableTask(
|
|
FROM_HERE,
|
|
Bind(&QuitFunc, &order, 6));
|
|
}
|
|
|
|
MessageLoop::current()->Run();
|
|
|
|
// FIFO order.
|
|
ASSERT_EQ(12U, order.Size());
|
|
EXPECT_EQ(order.Get(0), TaskItem(PUMPS, 1, true));
|
|
EXPECT_EQ(order.Get(1), TaskItem(ORDERED, 3, true));
|
|
EXPECT_EQ(order.Get(2), TaskItem(ORDERED, 3, false));
|
|
EXPECT_EQ(order.Get(3), TaskItem(SLEEP, 4, true));
|
|
EXPECT_EQ(order.Get(4), TaskItem(SLEEP, 4, false));
|
|
EXPECT_EQ(order.Get(5), TaskItem(ORDERED, 5, true));
|
|
EXPECT_EQ(order.Get(6), TaskItem(ORDERED, 5, false));
|
|
EXPECT_EQ(order.Get(7), TaskItem(PUMPS, 1, false));
|
|
EXPECT_EQ(order.Get(8), TaskItem(ORDERED, 2, true));
|
|
EXPECT_EQ(order.Get(9), TaskItem(ORDERED, 2, false));
|
|
EXPECT_EQ(order.Get(10), TaskItem(QUITMESSAGELOOP, 6, true));
|
|
EXPECT_EQ(order.Get(11), TaskItem(QUITMESSAGELOOP, 6, false));
|
|
}
|
|
|
|
void FuncThatRuns(TaskList* order, int cookie, RunLoop* run_loop) {
|
|
order->RecordStart(RUNS, cookie);
|
|
{
|
|
MessageLoop::ScopedNestableTaskAllower allow(MessageLoop::current());
|
|
run_loop->Run();
|
|
}
|
|
order->RecordEnd(RUNS, cookie);
|
|
}
|
|
|
|
void FuncThatQuitsNow() {
|
|
MessageLoop::current()->QuitNow();
|
|
}
|
|
// Tests RunLoopQuit only quits the corresponding MessageLoop::Run.
|
|
void RunTest_QuitNow(MessagePumpFactory factory) {
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
TaskList order;
|
|
|
|
RunLoop run_loop;
|
|
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&FuncThatRuns, &order, 1, Unretained(&run_loop)));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 2));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&FuncThatQuitsNow));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 3));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&FuncThatQuitsNow));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 4)); // never runs
|
|
|
|
MessageLoop::current()->Run();
|
|
|
|
ASSERT_EQ(6U, order.Size());
|
|
int task_index = 0;
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 2, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 2, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 3, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 3, false));
|
|
EXPECT_EQ(static_cast<size_t>(task_index), order.Size());
|
|
}
|
|
|
|
// Tests RunLoopQuit only quits the corresponding MessageLoop::Run.
|
|
void RunTest_RunLoopQuitTop(MessagePumpFactory factory) {
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
TaskList order;
|
|
|
|
RunLoop outer_run_loop;
|
|
RunLoop nested_run_loop;
|
|
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&FuncThatRuns, &order, 1, Unretained(&nested_run_loop)));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, outer_run_loop.QuitClosure());
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 2));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, nested_run_loop.QuitClosure());
|
|
|
|
outer_run_loop.Run();
|
|
|
|
ASSERT_EQ(4U, order.Size());
|
|
int task_index = 0;
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 2, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 2, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, false));
|
|
EXPECT_EQ(static_cast<size_t>(task_index), order.Size());
|
|
}
|
|
|
|
// Tests RunLoopQuit only quits the corresponding MessageLoop::Run.
|
|
void RunTest_RunLoopQuitNested(MessagePumpFactory factory) {
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
TaskList order;
|
|
|
|
RunLoop outer_run_loop;
|
|
RunLoop nested_run_loop;
|
|
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&FuncThatRuns, &order, 1, Unretained(&nested_run_loop)));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, nested_run_loop.QuitClosure());
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 2));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, outer_run_loop.QuitClosure());
|
|
|
|
outer_run_loop.Run();
|
|
|
|
ASSERT_EQ(4U, order.Size());
|
|
int task_index = 0;
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 2, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 2, false));
|
|
EXPECT_EQ(static_cast<size_t>(task_index), order.Size());
|
|
}
|
|
|
|
// Tests RunLoopQuit only quits the corresponding MessageLoop::Run.
|
|
void RunTest_RunLoopQuitBogus(MessagePumpFactory factory) {
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
TaskList order;
|
|
|
|
RunLoop outer_run_loop;
|
|
RunLoop nested_run_loop;
|
|
RunLoop bogus_run_loop;
|
|
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&FuncThatRuns, &order, 1, Unretained(&nested_run_loop)));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, bogus_run_loop.QuitClosure());
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 2));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, outer_run_loop.QuitClosure());
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, nested_run_loop.QuitClosure());
|
|
|
|
outer_run_loop.Run();
|
|
|
|
ASSERT_EQ(4U, order.Size());
|
|
int task_index = 0;
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 2, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 2, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, false));
|
|
EXPECT_EQ(static_cast<size_t>(task_index), order.Size());
|
|
}
|
|
|
|
// Tests RunLoopQuit only quits the corresponding MessageLoop::Run.
|
|
void RunTest_RunLoopQuitDeep(MessagePumpFactory factory) {
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
TaskList order;
|
|
|
|
RunLoop outer_run_loop;
|
|
RunLoop nested_loop1;
|
|
RunLoop nested_loop2;
|
|
RunLoop nested_loop3;
|
|
RunLoop nested_loop4;
|
|
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&FuncThatRuns, &order, 1, Unretained(&nested_loop1)));
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&FuncThatRuns, &order, 2, Unretained(&nested_loop2)));
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&FuncThatRuns, &order, 3, Unretained(&nested_loop3)));
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&FuncThatRuns, &order, 4, Unretained(&nested_loop4)));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 5));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, outer_run_loop.QuitClosure());
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 6));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, nested_loop1.QuitClosure());
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 7));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, nested_loop2.QuitClosure());
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 8));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, nested_loop3.QuitClosure());
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 9));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, nested_loop4.QuitClosure());
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 10));
|
|
|
|
outer_run_loop.Run();
|
|
|
|
ASSERT_EQ(18U, order.Size());
|
|
int task_index = 0;
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 2, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 3, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 4, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 5, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 5, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 6, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 6, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 7, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 7, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 8, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 8, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 9, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 9, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 4, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 3, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 2, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, false));
|
|
EXPECT_EQ(static_cast<size_t>(task_index), order.Size());
|
|
}
|
|
|
|
// Tests RunLoopQuit works before RunWithID.
|
|
void RunTest_RunLoopQuitOrderBefore(MessagePumpFactory factory) {
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
TaskList order;
|
|
|
|
RunLoop run_loop;
|
|
|
|
run_loop.Quit();
|
|
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 1)); // never runs
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&FuncThatQuitsNow)); // never runs
|
|
|
|
run_loop.Run();
|
|
|
|
ASSERT_EQ(0U, order.Size());
|
|
}
|
|
|
|
// Tests RunLoopQuit works during RunWithID.
|
|
void RunTest_RunLoopQuitOrderDuring(MessagePumpFactory factory) {
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
TaskList order;
|
|
|
|
RunLoop run_loop;
|
|
|
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MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 1));
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|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, run_loop.QuitClosure());
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|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 2)); // never runs
|
|
MessageLoop::current()->PostTask(
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|
FROM_HERE, Bind(&FuncThatQuitsNow)); // never runs
|
|
|
|
run_loop.Run();
|
|
|
|
ASSERT_EQ(2U, order.Size());
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|
int task_index = 0;
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|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 1, true));
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|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 1, false));
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|
EXPECT_EQ(static_cast<size_t>(task_index), order.Size());
|
|
}
|
|
|
|
// Tests RunLoopQuit works after RunWithID.
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|
void RunTest_RunLoopQuitOrderAfter(MessagePumpFactory factory) {
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|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
|
|
TaskList order;
|
|
|
|
RunLoop run_loop;
|
|
|
|
MessageLoop::current()->PostTask(FROM_HERE,
|
|
Bind(&FuncThatRuns, &order, 1, Unretained(&run_loop)));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 2));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&FuncThatQuitsNow));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 3));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, run_loop.QuitClosure()); // has no affect
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&OrderedFunc, &order, 4));
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE, Bind(&FuncThatQuitsNow));
|
|
|
|
RunLoop outer_run_loop;
|
|
outer_run_loop.Run();
|
|
|
|
ASSERT_EQ(8U, order.Size());
|
|
int task_index = 0;
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 2, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 2, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(RUNS, 1, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 3, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 3, false));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 4, true));
|
|
EXPECT_EQ(order.Get(task_index++), TaskItem(ORDERED, 4, false));
|
|
EXPECT_EQ(static_cast<size_t>(task_index), order.Size());
|
|
}
|
|
|
|
void PostNTasksThenQuit(int posts_remaining) {
|
|
if (posts_remaining > 1) {
|
|
MessageLoop::current()->PostTask(
|
|
FROM_HERE,
|
|
Bind(&PostNTasksThenQuit, posts_remaining - 1));
|
|
} else {
|
|
MessageLoop::current()->QuitWhenIdle();
|
|
}
|
|
}
|
|
|
|
// There was a bug in the MessagePumpGLib where posting tasks recursively
|
|
// caused the message loop to hang, due to the buffer of the internal pipe
|
|
// becoming full. Test all MessageLoop types to ensure this issue does not
|
|
// exist in other MessagePumps.
|
|
//
|
|
// On Linux, the pipe buffer size is 64KiB by default. The bug caused one
|
|
// byte accumulated in the pipe per two posts, so we should repeat 128K
|
|
// times to reproduce the bug.
|
|
void RunTest_RecursivePosts(MessagePumpFactory factory) {
|
|
const int kNumTimes = 1 << 17;
|
|
scoped_ptr<MessagePump> pump(factory());
|
|
MessageLoop loop(pump.Pass());
|
|
loop.PostTask(FROM_HERE, Bind(&PostNTasksThenQuit, kNumTimes));
|
|
loop.Run();
|
|
}
|
|
|
|
} // namespace test
|
|
} // namespace base
|