| Index: base/task_scheduler/delayed_task_manager_unittest.cc
|
| diff --git a/base/task_scheduler/delayed_task_manager_unittest.cc b/base/task_scheduler/delayed_task_manager_unittest.cc
|
| new file mode 100644
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| index 0000000000000000000000000000000000000000..024f1ed186ccf610763b85fd180d6e11e61573ef
|
| --- /dev/null
|
| +++ b/base/task_scheduler/delayed_task_manager_unittest.cc
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| @@ -0,0 +1,222 @@
|
| +// Copyright 2016 The Chromium Authors. All rights reserved.
|
| +// Use of this source code is governed by a BSD-style license that can be
|
| +// found in the LICENSE file.
|
| +
|
| +#include "base/task_scheduler/delayed_task_manager.h"
|
| +
|
| +#include <memory>
|
| +#include <utility>
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| +
|
| +#include "base/bind.h"
|
| +#include "base/bind_helpers.h"
|
| +#include "base/memory/ref_counted.h"
|
| +#include "base/task_scheduler/priority_queue.h"
|
| +#include "base/task_scheduler/scheduler_lock.h"
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| +#include "base/task_scheduler/sequence.h"
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| +#include "base/task_scheduler/task.h"
|
| +#include "base/time/time.h"
|
| +#include "testing/gmock/include/gmock/gmock.h"
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| +#include "testing/gtest/include/gtest/gtest.h"
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| +
|
| +namespace base {
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| +namespace internal {
|
| +namespace {
|
| +
|
| +class TestDelayedTaskManager : public DelayedTaskManager {
|
| + public:
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| + TestDelayedTaskManager()
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| + : DelayedTaskManager(
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| + Bind(&TestDelayedTaskManager::OnDelayedRunTimeUpdated,
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| + Unretained(this))) {}
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| +
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| + void SetCurrentTime(TimeTicks now) { now_ = now; }
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| +
|
| + // DelayedTaskManager:
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| + TimeTicks Now() const override { return now_; }
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| +
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| + MOCK_METHOD0(OnDelayedRunTimeUpdated, void());
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| +
|
| + private:
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| + TimeTicks now_ = TimeTicks::Now();
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| +
|
| + DISALLOW_COPY_AND_ASSIGN(TestDelayedTaskManager);
|
| +};
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| +
|
| +// Verify that GetDelayedRunTime() returns a null TimeTicks when there are
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| +// no pending delayed tasks.
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| +TEST(TaskSchedulerDelayedTaskManagerTest,
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| + GetDelayedRunTimeNoPendingDelayedTasks) {
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| + TestDelayedTaskManager manager;
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| + EXPECT_EQ(TimeTicks(), manager.GetDelayedRunTime());
|
| +}
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| +
|
| +// Verify that a delayed task isn't posted before it is ripe for execution.
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| +TEST(TaskSchedulerDelayedTaskManagerTest, PostReadyTaskBeforeDelayedRunTime) {
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| + testing::StrictMock<TestDelayedTaskManager> manager;
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| +
|
| + std::unique_ptr<Task> task(
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| + new Task(FROM_HERE, Bind(&DoNothing), TaskTraits()));
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| + task->delayed_run_time = manager.Now() + TimeDelta::FromSeconds(1);
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| + const Task* task_raw = task.get();
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| + scoped_refptr<Sequence> sequence(new Sequence);
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| + PriorityQueue priority_queue(Bind(&DoNothing));
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| +
|
| + // Add |task| to the DelayedTaskManager.
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| + EXPECT_CALL(manager, OnDelayedRunTimeUpdated());
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| + manager.AddDelayedTask(std::move(task), sequence, &priority_queue);
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| + testing::Mock::VerifyAndClear(&manager);
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| + EXPECT_EQ(task_raw->delayed_run_time, manager.GetDelayedRunTime());
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| +
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| + // Ask the DelayedTaskManager to post tasks that are ripe for execution.
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| + manager.PostReadyTasks();
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| +
|
| + // The delayed run time shouldn't have changed.
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| + EXPECT_EQ(task_raw->delayed_run_time, manager.GetDelayedRunTime());
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| +
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| + // |sequence| and |priority_queue| should be empty.
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| + EXPECT_EQ(nullptr, sequence->PeekTask());
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| + EXPECT_TRUE(priority_queue.BeginTransaction()->Peek().is_null());
|
| +}
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| +
|
| +// Verify that a delayed task is posted when PostReadyTasks() is called with the
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| +// current time equal to the task's delayed run time.
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| +TEST(TaskSchedulerDelayedTaskManagerTest, PostReadyTasksAtDelayedRunTime) {
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| + testing::StrictMock<TestDelayedTaskManager> manager;
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| +
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| + std::unique_ptr<Task> task(
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| + new Task(FROM_HERE, Bind(&DoNothing), TaskTraits()));
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| + task->delayed_run_time = manager.Now() + TimeDelta::FromSeconds(1);
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| + const Task* task_raw = task.get();
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| + scoped_refptr<Sequence> sequence(new Sequence);
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| + PriorityQueue priority_queue(Bind(&DoNothing));
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| +
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| + // Add |task| to the DelayedTaskManager.
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| + EXPECT_CALL(manager, OnDelayedRunTimeUpdated());
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| + manager.AddDelayedTask(std::move(task), sequence, &priority_queue);
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| + testing::Mock::VerifyAndClear(&manager);
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| + EXPECT_EQ(task_raw->delayed_run_time, manager.GetDelayedRunTime());
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| +
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| + // Fast-forward time to |task_raw|'s delayed run time.
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| + manager.SetCurrentTime(task_raw->delayed_run_time);
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| +
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| + // Ask the DelayedTaskManager to post tasks that are ripe for execution.
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| + manager.PostReadyTasks();
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| + EXPECT_EQ(TimeTicks(), manager.GetDelayedRunTime());
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| +
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| + // Expect to find |task_raw| in |sequence| and |sequence| in |priority_queue|.
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| + EXPECT_EQ(task_raw, sequence->PeekTask());
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| + EXPECT_EQ(sequence, priority_queue.BeginTransaction()->Peek().sequence);
|
| +}
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| +
|
| +// Verify that a delayed task is posted when PostReadyTasks() is called with the
|
| +// current time greater than the task's delayed run time.
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| +TEST(TaskSchedulerDelayedTaskManagerTest, PostReadyTasksAfterDelayedRunTime) {
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| + testing::StrictMock<TestDelayedTaskManager> manager;
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| +
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| + std::unique_ptr<Task> task(
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| + new Task(FROM_HERE, Bind(&DoNothing), TaskTraits()));
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| + task->delayed_run_time = manager.Now() + TimeDelta::FromSeconds(1);
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| + const Task* task_raw = task.get();
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| + scoped_refptr<Sequence> sequence(new Sequence);
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| + PriorityQueue priority_queue(Bind(&DoNothing));
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| +
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| + // Add |task| to the DelayedTaskManager.
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| + EXPECT_CALL(manager, OnDelayedRunTimeUpdated());
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| + manager.AddDelayedTask(std::move(task), sequence, &priority_queue);
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| + testing::Mock::VerifyAndClear(&manager);
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| + EXPECT_EQ(task_raw->delayed_run_time, manager.GetDelayedRunTime());
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| +
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| + // Fast-forward time after |task_raw|'s delayed run time.
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| + manager.SetCurrentTime(task_raw->delayed_run_time +
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| + TimeDelta::FromSeconds(10));
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| +
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| + // Ask the DelayedTaskManager to post tasks that are ripe for execution.
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| + manager.PostReadyTasks();
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| + EXPECT_EQ(TimeTicks(), manager.GetDelayedRunTime());
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| +
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| + // Expect to find |task_raw| in |sequence| and |sequence| in |priority_queue|.
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| + EXPECT_EQ(task_raw, sequence->PeekTask());
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| + EXPECT_EQ(sequence, priority_queue.BeginTransaction()->Peek().sequence);
|
| +}
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| +
|
| +// Verify that when multiple tasks are added to a DelayedTaskManager, they are
|
| +// posted when they become ripe for execution.
|
| +TEST(TaskSchedulerDelayedTaskManagerTest, AddAndPostReadyTasks) {
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| + testing::StrictMock<TestDelayedTaskManager> manager;
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| +
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| + scoped_refptr<Sequence> sequence(new Sequence);
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| + PriorityQueue priority_queue(Bind(&DoNothing));
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| +
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| + std::unique_ptr<Task> task_a(
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| + new Task(FROM_HERE, Bind(&DoNothing), TaskTraits()));
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| + task_a->delayed_run_time = manager.Now() + TimeDelta::FromSeconds(2);
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| + const Task* task_a_raw = task_a.get();
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| +
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| + std::unique_ptr<Task> task_b(
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| + new Task(FROM_HERE, Bind(&DoNothing), TaskTraits()));
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| + task_b->delayed_run_time = manager.Now() + TimeDelta::FromSeconds(2);
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| + const Task* task_b_raw = task_b.get();
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| +
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| + std::unique_ptr<Task> task_c(
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| + new Task(FROM_HERE, Bind(&DoNothing), TaskTraits()));
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| + task_c->delayed_run_time = manager.Now() + TimeDelta::FromSeconds(1);
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| + const Task* task_c_raw = task_c.get();
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| +
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| + // Add |task_a| to the DelayedTaskManager. The delayed run time should be
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| + // updated to |task_a|'s delayed run time.
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| + EXPECT_CALL(manager, OnDelayedRunTimeUpdated());
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| + manager.AddDelayedTask(std::move(task_a), sequence, &priority_queue);
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| + testing::Mock::VerifyAndClear(&manager);
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| + EXPECT_EQ(task_a_raw->delayed_run_time, manager.GetDelayedRunTime());
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| +
|
| + // Add |task_b| to the DelayedTaskManager. The delayed run time shouldn't
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| + // change.
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| + manager.AddDelayedTask(std::move(task_b), sequence, &priority_queue);
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| + testing::Mock::VerifyAndClear(&manager);
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| + EXPECT_EQ(task_a_raw->delayed_run_time, manager.GetDelayedRunTime());
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| +
|
| + // Add |task_c| to the DelayedTaskManager. The delayed run time should be
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| + // updated to |task_c|'s delayed run time.
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| + EXPECT_CALL(manager, OnDelayedRunTimeUpdated());
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| + manager.AddDelayedTask(std::move(task_c), sequence, &priority_queue);
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| + testing::Mock::VerifyAndClear(&manager);
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| + EXPECT_EQ(task_c_raw->delayed_run_time, manager.GetDelayedRunTime());
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| +
|
| + // Fast-forward time to |task_c_raw|'s delayed run time.
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| + manager.SetCurrentTime(task_c_raw->delayed_run_time);
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| +
|
| + // Ask the DelayedTaskManager to post tasks that are ripe for execution.
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| + // |sequence| should be added to |priority_queue|, |task_c_raw| should be
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| + // added to |sequence| and the delayed run time should become
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| + // |task_a_raw|'s delayed run time.
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| + manager.PostReadyTasks();
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| + EXPECT_EQ(sequence, priority_queue.BeginTransaction()->Peek().sequence);
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| + priority_queue.BeginTransaction()->Pop();
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| + EXPECT_TRUE(priority_queue.BeginTransaction()->Peek().is_null());
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| + EXPECT_EQ(task_c_raw, sequence->PeekTask());
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| + sequence->PopTask();
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| + EXPECT_FALSE(sequence->PeekTask());
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| + EXPECT_EQ(task_a_raw->delayed_run_time, manager.GetDelayedRunTime());
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| +
|
| + // Fast-forward time to |task_a_raw|'s delayed run time.
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| + manager.SetCurrentTime(task_a_raw->delayed_run_time);
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| +
|
| + // Ask the DelayedTaskManager to post tasks that are ripe for execution.
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| + // |sequence| should be added to |priority_queue|, |task_a_raw| and
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| + // |task_b_raw| should be added to |sequence| and the delayed run time
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| + // should become a null TimeTicks.
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| + manager.PostReadyTasks();
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| + EXPECT_EQ(sequence, priority_queue.BeginTransaction()->Peek().sequence);
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| + priority_queue.BeginTransaction()->Pop();
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| + EXPECT_TRUE(priority_queue.BeginTransaction()->Peek().is_null());
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| + EXPECT_EQ(task_a_raw, sequence->PeekTask());
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| + sequence->PopTask();
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| + EXPECT_EQ(task_b_raw, sequence->PeekTask());
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| + sequence->PopTask();
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| + EXPECT_FALSE(sequence->PeekTask());
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| + EXPECT_EQ(TimeTicks(), manager.GetDelayedRunTime());
|
| +}
|
| +
|
| +} // namespace
|
| +} // namespace internal
|
| +} // namespace base
|
|
|