| Index: content/renderer/scheduler/task_queue_manager.cc
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| diff --git a/content/renderer/scheduler/task_queue_manager.cc b/content/renderer/scheduler/task_queue_manager.cc
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| deleted file mode 100644
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| index 60ae5656c1faf16e8baad3fe1e86b5145783fc07..0000000000000000000000000000000000000000
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| --- a/content/renderer/scheduler/task_queue_manager.cc
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| +++ /dev/null
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| @@ -1,707 +0,0 @@
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| -// Copyright 2014 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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| -
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| -#include "content/renderer/scheduler/task_queue_manager.h"
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| -
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| -#include <queue>
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| -#include <set>
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| -
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| -#include "base/bind.h"
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| -#include "base/trace_event/trace_event.h"
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| -#include "base/trace_event/trace_event_argument.h"
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| -#include "cc/test/test_now_source.h"
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| -#include "content/renderer/scheduler/nestable_single_thread_task_runner.h"
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| -#include "content/renderer/scheduler/task_queue_selector.h"
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| -
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| -namespace {
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| -const int64_t kMaxTimeTicks = std::numeric_limits<int64>::max();
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| -}
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| -
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| -namespace content {
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| -namespace internal {
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| -
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| -// Now() is somewhat expensive so it makes sense not to call Now() unless we
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| -// really need to.
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| -class LazyNow {
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| - public:
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| -  explicit LazyNow(base::TimeTicks now)
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| -      : task_queue_manager_(nullptr), now_(now) {
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| -    DCHECK(!now.is_null());
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| -  }
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| -
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| -  explicit LazyNow(TaskQueueManager* task_queue_manager)
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| -      : task_queue_manager_(task_queue_manager) {}
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| -
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| -  base::TimeTicks Now() {
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| -    if (now_.is_null())
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| -      now_ = task_queue_manager_->Now();
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| -    return now_;
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| -  }
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| -
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| - private:
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| -  TaskQueueManager* task_queue_manager_;  // NOT OWNED
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| -  base::TimeTicks now_;
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| -};
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| -
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| -class TaskQueue : public base::SingleThreadTaskRunner {
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| - public:
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| -  TaskQueue(TaskQueueManager* task_queue_manager);
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| -
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| -  // base::SingleThreadTaskRunner implementation.
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| -  bool RunsTasksOnCurrentThread() const override;
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| -  bool PostDelayedTask(const tracked_objects::Location& from_here,
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| -                       const base::Closure& task,
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| -                       base::TimeDelta delay) override {
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| -    return PostDelayedTaskImpl(from_here, task, delay, TaskType::NORMAL);
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| -  }
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| -
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| -  bool PostNonNestableDelayedTask(const tracked_objects::Location& from_here,
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| -                                  const base::Closure& task,
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| -                                  base::TimeDelta delay) override {
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| -    return PostDelayedTaskImpl(from_here, task, delay, TaskType::NON_NESTABLE);
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| -  }
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| -
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| -  bool IsQueueEmpty() const;
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| -
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| -  void SetPumpPolicy(TaskQueueManager::PumpPolicy pump_policy);
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| -  void PumpQueue();
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| -
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| -  bool NextPendingDelayedTaskRunTime(
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| -      base::TimeTicks* next_pending_delayed_task);
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| -
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| -  bool UpdateWorkQueue(LazyNow* lazy_now,
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| -                       const base::PendingTask* previous_task);
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| -  base::PendingTask TakeTaskFromWorkQueue();
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| -
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| -  void WillDeleteTaskQueueManager();
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| -
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| -  base::TaskQueue& work_queue() { return work_queue_; }
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| -
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| -  void set_name(const char* name) { name_ = name; }
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| -
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| -  void AsValueInto(base::trace_event::TracedValue* state) const;
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| -
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| - private:
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| -  enum class TaskType {
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| -    NORMAL,
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| -    NON_NESTABLE,
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| -  };
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| -
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| -  ~TaskQueue() override;
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| -
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| -  bool PostDelayedTaskImpl(const tracked_objects::Location& from_here,
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| -                           const base::Closure& task,
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| -                           base::TimeDelta delay,
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| -                           TaskType task_type);
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| -
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| -  // Delayed task posted to the underlying run loop, which locks |lock_| and
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| -  // calls MoveReadyDelayedTasksToIncomingQueueLocked to process dealyed tasks
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| -  // that need to be run now.
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| -  void MoveReadyDelayedTasksToIncomingQueue();
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| -
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| -  // Enqueues any delayed tasks which should be run now on the incoming_queue_
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| -  // and calls ScheduleDelayedWorkLocked to ensure future tasks are scheduled.
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| -  // Must be called with |lock_| locked.
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| -  void MoveReadyDelayedTasksToIncomingQueueLocked(LazyNow* lazy_now);
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| -
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| -  // Posts MoveReadyDelayedTasksToIncomingQueue if there isn't already a task
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| -  // posted on the underlying runloop for the next task's scheduled run time.
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| -  void ScheduleDelayedWorkLocked(LazyNow* lazy_now);
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| -
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| -  void PumpQueueLocked();
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| -  bool TaskIsOlderThanQueuedTasks(const base::PendingTask* task);
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| -  bool ShouldAutoPumpQueueLocked(const base::PendingTask* previous_task);
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| -  void EnqueueTaskLocked(const base::PendingTask& pending_task);
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| -
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| -  void TraceQueueSize(bool is_locked) const;
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| -  static const char* PumpPolicyToString(
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| -      TaskQueueManager::PumpPolicy pump_policy);
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| -  static void QueueAsValueInto(const base::TaskQueue& queue,
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| -                               base::trace_event::TracedValue* state);
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| -  static void QueueAsValueInto(const base::DelayedTaskQueue& queue,
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| -                               base::trace_event::TracedValue* state);
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| -  static void TaskAsValueInto(const base::PendingTask& task,
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| -                              base::trace_event::TracedValue* state);
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| -
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| -  // This lock protects all members except the work queue and the
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| -  // main_thread_checker_.
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| -  mutable base::Lock lock_;
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| -  base::PlatformThreadId thread_id_;
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| -  TaskQueueManager* task_queue_manager_;
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| -  base::TaskQueue incoming_queue_;
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| -  TaskQueueManager::PumpPolicy pump_policy_;
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| -  const char* name_;
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| -  base::DelayedTaskQueue delayed_task_queue_;
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| -  std::set<base::TimeTicks> in_flight_kick_delayed_tasks_;
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| -
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| -  base::ThreadChecker main_thread_checker_;
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| -  base::TaskQueue work_queue_;
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| -
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| -  DISALLOW_COPY_AND_ASSIGN(TaskQueue);
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| -};
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| -
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| -TaskQueue::TaskQueue(TaskQueueManager* task_queue_manager)
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| -    : thread_id_(base::PlatformThread::CurrentId()),
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| -      task_queue_manager_(task_queue_manager),
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| -      pump_policy_(TaskQueueManager::PumpPolicy::AUTO),
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| -      name_(nullptr) {
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| -}
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| -
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| -TaskQueue::~TaskQueue() {
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| -}
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| -
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| -void TaskQueue::WillDeleteTaskQueueManager() {
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| -  base::AutoLock lock(lock_);
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| -  task_queue_manager_ = nullptr;
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| -  // TODO(scheduler-dev): Should we also clear the other queues here too?
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| -  delayed_task_queue_ = base::DelayedTaskQueue();
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| -}
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| -
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| -bool TaskQueue::RunsTasksOnCurrentThread() const {
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| -  base::AutoLock lock(lock_);
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| -  return base::PlatformThread::CurrentId() == thread_id_;
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| -}
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| -
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| -bool TaskQueue::PostDelayedTaskImpl(const tracked_objects::Location& from_here,
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| -                                    const base::Closure& task,
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| -                                    base::TimeDelta delay,
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| -                                    TaskType task_type) {
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| -  base::AutoLock lock(lock_);
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| -  if (!task_queue_manager_)
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| -    return false;
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| -
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| -  base::PendingTask pending_task(from_here, task, base::TimeTicks(),
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| -                                 task_type != TaskType::NON_NESTABLE);
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| -  task_queue_manager_->DidQueueTask(&pending_task);
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| -
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| -  if (delay > base::TimeDelta()) {
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| -    base::TimeTicks now = task_queue_manager_->Now();
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| -    pending_task.delayed_run_time = now + delay;
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| -    delayed_task_queue_.push(pending_task);
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| -    TraceQueueSize(true);
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| -    // If we changed the topmost task, then it is time to reschedule.
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| -    if (delayed_task_queue_.top().task.Equals(pending_task.task)) {
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| -      LazyNow lazy_now(now);
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| -      ScheduleDelayedWorkLocked(&lazy_now);
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| -    }
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| -    return true;
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| -  }
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| -  EnqueueTaskLocked(pending_task);
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| -  return true;
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| -}
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| -
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| -void TaskQueue::MoveReadyDelayedTasksToIncomingQueue() {
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| -  DCHECK(main_thread_checker_.CalledOnValidThread());
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| -  base::AutoLock lock(lock_);
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| -  if (!task_queue_manager_)
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| -    return;
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| -
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| -  LazyNow lazy_now(task_queue_manager_);
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| -  MoveReadyDelayedTasksToIncomingQueueLocked(&lazy_now);
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| -}
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| -
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| -void TaskQueue::MoveReadyDelayedTasksToIncomingQueueLocked(LazyNow* lazy_now) {
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| -  lock_.AssertAcquired();
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| -  // Enqueue all delayed tasks that should be running now.
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| -  while (!delayed_task_queue_.empty() &&
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| -         delayed_task_queue_.top().delayed_run_time <= lazy_now->Now()) {
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| -    in_flight_kick_delayed_tasks_.erase(
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| -        delayed_task_queue_.top().delayed_run_time);
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| -    EnqueueTaskLocked(delayed_task_queue_.top());
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| -    delayed_task_queue_.pop();
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| -  }
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| -  TraceQueueSize(true);
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| -  ScheduleDelayedWorkLocked(lazy_now);
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| -}
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| -
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| -void TaskQueue::ScheduleDelayedWorkLocked(LazyNow* lazy_now) {
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| -  lock_.AssertAcquired();
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| -  // Any remaining tasks are in the future, so queue a task to kick them.
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| -  if (!delayed_task_queue_.empty()) {
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| -    base::TimeTicks next_run_time = delayed_task_queue_.top().delayed_run_time;
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| -    DCHECK_GT(next_run_time, lazy_now->Now());
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| -    // Make sure we don't have more than one
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| -    // MoveReadyDelayedTasksToIncomingQueue posted for a particular scheduled
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| -    // run time (note it's fine to have multiple ones in flight for distinct
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| -    // run times).
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| -    if (in_flight_kick_delayed_tasks_.find(next_run_time) ==
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| -        in_flight_kick_delayed_tasks_.end()) {
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| -      in_flight_kick_delayed_tasks_.insert(next_run_time);
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| -      base::TimeDelta delay = next_run_time - lazy_now->Now();
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| -      task_queue_manager_->PostDelayedTask(
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| -          FROM_HERE,
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| -          Bind(&TaskQueue::MoveReadyDelayedTasksToIncomingQueue, this), delay);
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| -    }
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| -  }
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| -}
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| -
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| -bool TaskQueue::IsQueueEmpty() const {
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| -  if (!work_queue_.empty())
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| -    return false;
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| -
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| -  {
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| -    base::AutoLock lock(lock_);
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| -    return incoming_queue_.empty();
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| -  }
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| -}
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| -
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| -bool TaskQueue::TaskIsOlderThanQueuedTasks(const base::PendingTask* task) {
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| -  lock_.AssertAcquired();
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| -  // A null task is passed when UpdateQueue is called before any task is run.
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| -  // In this case we don't want to pump an after_wakeup queue, so return true
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| -  // here.
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| -  if (!task)
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| -    return true;
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| -
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| -  // Return false if there are no task in the incoming queue.
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| -  if (incoming_queue_.empty())
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| -    return false;
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| -
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| -  base::PendingTask oldest_queued_task = incoming_queue_.front();
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| -  DCHECK(oldest_queued_task.delayed_run_time.is_null());
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| -  DCHECK(task->delayed_run_time.is_null());
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| -
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| -  // Note: the comparison is correct due to the fact that the PendingTask
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| -  // operator inverts its comparison operation in order to work well in a heap
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| -  // based priority queue.
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| -  return oldest_queued_task < *task;
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| -}
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| -
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| -bool TaskQueue::ShouldAutoPumpQueueLocked(
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| -    const base::PendingTask* previous_task) {
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| -  lock_.AssertAcquired();
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| -  if (pump_policy_ == TaskQueueManager::PumpPolicy::MANUAL)
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| -    return false;
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| -  if (pump_policy_ == TaskQueueManager::PumpPolicy::AFTER_WAKEUP &&
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| -      TaskIsOlderThanQueuedTasks(previous_task))
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| -    return false;
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| -  if (incoming_queue_.empty())
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| -    return false;
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| -  return true;
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| -}
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| -
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| -bool TaskQueue::NextPendingDelayedTaskRunTime(
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| -    base::TimeTicks* next_pending_delayed_task) {
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| -  base::AutoLock lock(lock_);
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| -  if (delayed_task_queue_.empty())
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| -    return false;
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| -  *next_pending_delayed_task = delayed_task_queue_.top().delayed_run_time;
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| -  return true;
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| -}
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| -
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| -bool TaskQueue::UpdateWorkQueue(LazyNow* lazy_now,
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| -                                const base::PendingTask* previous_task) {
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| -  if (!work_queue_.empty())
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| -    return true;
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| -
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| -  {
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| -    base::AutoLock lock(lock_);
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| -    MoveReadyDelayedTasksToIncomingQueueLocked(lazy_now);
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| -    if (!ShouldAutoPumpQueueLocked(previous_task))
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| -      return false;
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| -    MoveReadyDelayedTasksToIncomingQueueLocked(lazy_now);
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| -    work_queue_.Swap(&incoming_queue_);
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| -    TraceQueueSize(true);
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| -    return true;
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| -  }
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| -}
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| -
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| -base::PendingTask TaskQueue::TakeTaskFromWorkQueue() {
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| -  base::PendingTask pending_task = work_queue_.front();
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| -  work_queue_.pop();
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| -  TraceQueueSize(false);
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| -  return pending_task;
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| -}
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| -
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| -void TaskQueue::TraceQueueSize(bool is_locked) const {
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| -  bool is_tracing;
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| -  TRACE_EVENT_CATEGORY_GROUP_ENABLED(
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| -      TRACE_DISABLED_BY_DEFAULT("renderer.scheduler"), &is_tracing);
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| -  if (!is_tracing || !name_)
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| -    return;
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| -  if (!is_locked)
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| -    lock_.Acquire();
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| -  else
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| -    lock_.AssertAcquired();
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| -  TRACE_COUNTER1(
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| -      TRACE_DISABLED_BY_DEFAULT("renderer.scheduler"), name_,
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| -      incoming_queue_.size() + work_queue_.size() + delayed_task_queue_.size());
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| -  if (!is_locked)
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| -    lock_.Release();
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| -}
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| -
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| -void TaskQueue::EnqueueTaskLocked(const base::PendingTask& pending_task) {
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| -  lock_.AssertAcquired();
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| -  if (!task_queue_manager_)
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| -    return;
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| -  if (pump_policy_ == TaskQueueManager::PumpPolicy::AUTO &&
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| -      incoming_queue_.empty())
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| -    task_queue_manager_->MaybePostDoWorkOnMainRunner();
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| -  incoming_queue_.push(pending_task);
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| -
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| -  if (!pending_task.delayed_run_time.is_null()) {
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| -    // Clear the delayed run time because we've already applied the delay
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| -    // before getting here.
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| -    incoming_queue_.back().delayed_run_time = base::TimeTicks();
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| -  }
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| -  TraceQueueSize(true);
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| -}
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| -
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| -void TaskQueue::SetPumpPolicy(TaskQueueManager::PumpPolicy pump_policy) {
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| -  base::AutoLock lock(lock_);
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| -  if (pump_policy == TaskQueueManager::PumpPolicy::AUTO &&
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| -      pump_policy_ != TaskQueueManager::PumpPolicy::AUTO) {
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| -    PumpQueueLocked();
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| -  }
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| -  pump_policy_ = pump_policy;
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| -}
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| -
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| -void TaskQueue::PumpQueueLocked() {
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| -  lock_.AssertAcquired();
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| -  if (task_queue_manager_) {
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| -    LazyNow lazy_now(task_queue_manager_);
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| -    MoveReadyDelayedTasksToIncomingQueueLocked(&lazy_now);
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| -  }
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| -  while (!incoming_queue_.empty()) {
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| -    work_queue_.push(incoming_queue_.front());
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| -    incoming_queue_.pop();
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| -  }
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| -  if (!work_queue_.empty())
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| -    task_queue_manager_->MaybePostDoWorkOnMainRunner();
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| -}
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| -
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| -void TaskQueue::PumpQueue() {
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| -  base::AutoLock lock(lock_);
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| -  PumpQueueLocked();
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| -}
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| -
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| -void TaskQueue::AsValueInto(base::trace_event::TracedValue* state) const {
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| -  base::AutoLock lock(lock_);
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| -  state->BeginDictionary();
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| -  if (name_)
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| -    state->SetString("name", name_);
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| -  state->SetString("pump_policy", PumpPolicyToString(pump_policy_));
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| -  state->BeginArray("incoming_queue");
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| -  QueueAsValueInto(incoming_queue_, state);
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| -  state->EndArray();
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| -  state->BeginArray("work_queue");
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| -  QueueAsValueInto(work_queue_, state);
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| -  state->EndArray();
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| -  state->BeginArray("delayed_task_queue");
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| -  QueueAsValueInto(delayed_task_queue_, state);
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| -  state->EndArray();
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| -  state->EndDictionary();
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| -}
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| -
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| -// static
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| -const char* TaskQueue::PumpPolicyToString(
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| -    TaskQueueManager::PumpPolicy pump_policy) {
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| -  switch (pump_policy) {
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| -    case TaskQueueManager::PumpPolicy::AUTO:
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| -      return "auto";
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| -    case TaskQueueManager::PumpPolicy::AFTER_WAKEUP:
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| -      return "after_wakeup";
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| -    case TaskQueueManager::PumpPolicy::MANUAL:
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| -      return "manual";
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| -    default:
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| -      NOTREACHED();
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| -      return nullptr;
 | 
| -  }
 | 
| -}
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| -
 | 
| -// static
 | 
| -void TaskQueue::QueueAsValueInto(const base::TaskQueue& queue,
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| -                                 base::trace_event::TracedValue* state) {
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| -  base::TaskQueue queue_copy(queue);
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| -  while (!queue_copy.empty()) {
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| -    TaskAsValueInto(queue_copy.front(), state);
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| -    queue_copy.pop();
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| -  }
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| -}
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| -
 | 
| -// static
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| -void TaskQueue::QueueAsValueInto(const base::DelayedTaskQueue& queue,
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| -                                 base::trace_event::TracedValue* state) {
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| -  base::DelayedTaskQueue queue_copy(queue);
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| -  while (!queue_copy.empty()) {
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| -    TaskAsValueInto(queue_copy.top(), state);
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| -    queue_copy.pop();
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| -  }
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| -}
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| -
 | 
| -// static
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| -void TaskQueue::TaskAsValueInto(const base::PendingTask& task,
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| -                                base::trace_event::TracedValue* state) {
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| -  state->BeginDictionary();
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| -  state->SetString("posted_from", task.posted_from.ToString());
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| -  state->SetInteger("sequence_num", task.sequence_num);
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| -  state->SetBoolean("nestable", task.nestable);
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| -  state->SetBoolean("is_high_res", task.is_high_res);
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| -  state->SetDouble(
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| -      "delayed_run_time",
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| -      (task.delayed_run_time - base::TimeTicks()).InMicroseconds() / 1000.0L);
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| -  state->EndDictionary();
 | 
| -}
 | 
| -
 | 
| -}  // namespace internal
 | 
| -
 | 
| -TaskQueueManager::TaskQueueManager(
 | 
| -    size_t task_queue_count,
 | 
| -    scoped_refptr<NestableSingleThreadTaskRunner> main_task_runner,
 | 
| -    TaskQueueSelector* selector)
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| -    : main_task_runner_(main_task_runner),
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| -      selector_(selector),
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| -      pending_dowork_count_(0),
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| -      work_batch_size_(1),
 | 
| -      time_source_(nullptr),
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| -      weak_factory_(this) {
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| -  DCHECK(main_task_runner->RunsTasksOnCurrentThread());
 | 
| -  TRACE_EVENT_OBJECT_CREATED_WITH_ID(
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| -      TRACE_DISABLED_BY_DEFAULT("renderer.scheduler"), "TaskQueueManager",
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| -      this);
 | 
| -
 | 
| -  task_queue_manager_weak_ptr_ = weak_factory_.GetWeakPtr();
 | 
| -  for (size_t i = 0; i < task_queue_count; i++) {
 | 
| -    scoped_refptr<internal::TaskQueue> queue(
 | 
| -        make_scoped_refptr(new internal::TaskQueue(this)));
 | 
| -    queues_.push_back(queue);
 | 
| -  }
 | 
| -
 | 
| -  std::vector<const base::TaskQueue*> work_queues;
 | 
| -  for (const auto& queue: queues_)
 | 
| -    work_queues.push_back(&queue->work_queue());
 | 
| -  selector_->RegisterWorkQueues(work_queues);
 | 
| -}
 | 
| -
 | 
| -TaskQueueManager::~TaskQueueManager() {
 | 
| -  TRACE_EVENT_OBJECT_DELETED_WITH_ID(
 | 
| -      TRACE_DISABLED_BY_DEFAULT("renderer.scheduler"), "TaskQueueManager",
 | 
| -      this);
 | 
| -  for (auto& queue : queues_)
 | 
| -    queue->WillDeleteTaskQueueManager();
 | 
| -}
 | 
| -
 | 
| -internal::TaskQueue* TaskQueueManager::Queue(size_t queue_index) const {
 | 
| -  DCHECK_LT(queue_index, queues_.size());
 | 
| -  return queues_[queue_index].get();
 | 
| -}
 | 
| -
 | 
| -scoped_refptr<base::SingleThreadTaskRunner>
 | 
| -TaskQueueManager::TaskRunnerForQueue(size_t queue_index) const {
 | 
| -  return Queue(queue_index);
 | 
| -}
 | 
| -
 | 
| -bool TaskQueueManager::IsQueueEmpty(size_t queue_index) const {
 | 
| -  internal::TaskQueue* queue = Queue(queue_index);
 | 
| -  return queue->IsQueueEmpty();
 | 
| -}
 | 
| -
 | 
| -base::TimeTicks TaskQueueManager::NextPendingDelayedTaskRunTime() {
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -  bool found_pending_task = false;
 | 
| -  base::TimeTicks next_pending_delayed_task(
 | 
| -      base::TimeTicks::FromInternalValue(kMaxTimeTicks));
 | 
| -  for (auto& queue : queues_) {
 | 
| -    base::TimeTicks queues_next_pending_delayed_task;
 | 
| -    if (queue->NextPendingDelayedTaskRunTime(
 | 
| -            &queues_next_pending_delayed_task)) {
 | 
| -      found_pending_task = true;
 | 
| -      next_pending_delayed_task =
 | 
| -          std::min(next_pending_delayed_task, queues_next_pending_delayed_task);
 | 
| -    }
 | 
| -  }
 | 
| -
 | 
| -  if (!found_pending_task)
 | 
| -    return base::TimeTicks();
 | 
| -
 | 
| -  DCHECK_NE(next_pending_delayed_task,
 | 
| -            base::TimeTicks::FromInternalValue(kMaxTimeTicks));
 | 
| -  return next_pending_delayed_task;
 | 
| -}
 | 
| -
 | 
| -void TaskQueueManager::SetPumpPolicy(size_t queue_index,
 | 
| -                                     PumpPolicy pump_policy) {
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -  internal::TaskQueue* queue = Queue(queue_index);
 | 
| -  queue->SetPumpPolicy(pump_policy);
 | 
| -}
 | 
| -
 | 
| -void TaskQueueManager::PumpQueue(size_t queue_index) {
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -  internal::TaskQueue* queue = Queue(queue_index);
 | 
| -  queue->PumpQueue();
 | 
| -}
 | 
| -
 | 
| -bool TaskQueueManager::UpdateWorkQueues(
 | 
| -    const base::PendingTask* previous_task) {
 | 
| -  // TODO(skyostil): This is not efficient when the number of queues grows very
 | 
| -  // large due to the number of locks taken. Consider optimizing when we get
 | 
| -  // there.
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -  internal::LazyNow lazy_now(this);
 | 
| -  bool has_work = false;
 | 
| -  for (auto& queue : queues_) {
 | 
| -    has_work |= queue->UpdateWorkQueue(&lazy_now, previous_task);
 | 
| -    if (!queue->work_queue().empty()) {
 | 
| -      // Currently we should not be getting tasks with delayed run times in any
 | 
| -      // of the work queues.
 | 
| -      DCHECK(queue->work_queue().front().delayed_run_time.is_null());
 | 
| -    }
 | 
| -  }
 | 
| -  return has_work;
 | 
| -}
 | 
| -
 | 
| -void TaskQueueManager::MaybePostDoWorkOnMainRunner() {
 | 
| -  bool on_main_thread = main_task_runner_->BelongsToCurrentThread();
 | 
| -  if (on_main_thread) {
 | 
| -    // We only want one pending DoWork posted from the main thread, or we risk
 | 
| -    // an explosion of pending DoWorks which could starve out everything else.
 | 
| -    if (pending_dowork_count_ > 0) {
 | 
| -      return;
 | 
| -    }
 | 
| -    pending_dowork_count_++;
 | 
| -  }
 | 
| -
 | 
| -  main_task_runner_->PostTask(
 | 
| -      FROM_HERE, Bind(&TaskQueueManager::DoWork, task_queue_manager_weak_ptr_,
 | 
| -                      on_main_thread));
 | 
| -}
 | 
| -
 | 
| -void TaskQueueManager::DoWork(bool posted_from_main_thread) {
 | 
| -  if (posted_from_main_thread) {
 | 
| -    pending_dowork_count_--;
 | 
| -    DCHECK_GE(pending_dowork_count_, 0);
 | 
| -  }
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -
 | 
| -  // Pass nullptr to UpdateWorkQueues here to prevent waking up a
 | 
| -  // pump-after-wakeup queue.
 | 
| -  if (!UpdateWorkQueues(nullptr))
 | 
| -    return;
 | 
| -
 | 
| -  base::PendingTask previous_task((tracked_objects::Location()),
 | 
| -                                  (base::Closure()));
 | 
| -  for (int i = 0; i < work_batch_size_; i++) {
 | 
| -    size_t queue_index;
 | 
| -    if (!SelectWorkQueueToService(&queue_index))
 | 
| -      return;
 | 
| -    // Note that this function won't post another call to DoWork if one is
 | 
| -    // already pending, so it is safe to call it in a loop.
 | 
| -    MaybePostDoWorkOnMainRunner();
 | 
| -    ProcessTaskFromWorkQueue(queue_index, i > 0, &previous_task);
 | 
| -
 | 
| -    if (!UpdateWorkQueues(&previous_task))
 | 
| -      return;
 | 
| -  }
 | 
| -}
 | 
| -
 | 
| -bool TaskQueueManager::SelectWorkQueueToService(size_t* out_queue_index) {
 | 
| -  bool should_run = selector_->SelectWorkQueueToService(out_queue_index);
 | 
| -  TRACE_EVENT_OBJECT_SNAPSHOT_WITH_ID(
 | 
| -      TRACE_DISABLED_BY_DEFAULT("renderer.scheduler"), "TaskQueueManager", this,
 | 
| -      AsValueWithSelectorResult(should_run, *out_queue_index));
 | 
| -  return should_run;
 | 
| -}
 | 
| -
 | 
| -void TaskQueueManager::DidQueueTask(base::PendingTask* pending_task) {
 | 
| -  pending_task->sequence_num = task_sequence_num_.GetNext();
 | 
| -  task_annotator_.DidQueueTask("TaskQueueManager::PostTask", *pending_task);
 | 
| -}
 | 
| -
 | 
| -void TaskQueueManager::ProcessTaskFromWorkQueue(
 | 
| -    size_t queue_index,
 | 
| -    bool has_previous_task,
 | 
| -    base::PendingTask* previous_task) {
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -  internal::TaskQueue* queue = Queue(queue_index);
 | 
| -  base::PendingTask pending_task = queue->TakeTaskFromWorkQueue();
 | 
| -  if (!pending_task.nestable && main_task_runner_->IsNested()) {
 | 
| -    // Defer non-nestable work to the main task runner.  NOTE these tasks can be
 | 
| -    // arbitrarily delayed so the additional delay should not be a problem.
 | 
| -    main_task_runner_->PostNonNestableTask(pending_task.posted_from,
 | 
| -                                           pending_task.task);
 | 
| -  } else {
 | 
| -    // Suppress "will" task observer notifications for the first and "did"
 | 
| -    // notifications for the last task in the batch to avoid duplicate
 | 
| -    // notifications.
 | 
| -    if (has_previous_task) {
 | 
| -      FOR_EACH_OBSERVER(base::MessageLoop::TaskObserver, task_observers_,
 | 
| -                        DidProcessTask(*previous_task));
 | 
| -      FOR_EACH_OBSERVER(base::MessageLoop::TaskObserver, task_observers_,
 | 
| -                        WillProcessTask(pending_task));
 | 
| -    }
 | 
| -    task_annotator_.RunTask("TaskQueueManager::PostTask",
 | 
| -                            "TaskQueueManager::RunTask", pending_task);
 | 
| -    pending_task.task.Reset();
 | 
| -    *previous_task = pending_task;
 | 
| -  }
 | 
| -}
 | 
| -
 | 
| -bool TaskQueueManager::RunsTasksOnCurrentThread() const {
 | 
| -  return main_task_runner_->RunsTasksOnCurrentThread();
 | 
| -}
 | 
| -
 | 
| -bool TaskQueueManager::PostDelayedTask(
 | 
| -    const tracked_objects::Location& from_here,
 | 
| -    const base::Closure& task,
 | 
| -    base::TimeDelta delay) {
 | 
| -  DCHECK(delay > base::TimeDelta());
 | 
| -  return main_task_runner_->PostDelayedTask(from_here, task, delay);
 | 
| -}
 | 
| -
 | 
| -void TaskQueueManager::SetQueueName(size_t queue_index, const char* name) {
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -  internal::TaskQueue* queue = Queue(queue_index);
 | 
| -  queue->set_name(name);
 | 
| -}
 | 
| -
 | 
| -void TaskQueueManager::SetWorkBatchSize(int work_batch_size) {
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -  DCHECK_GE(work_batch_size, 1);
 | 
| -  work_batch_size_ = work_batch_size;
 | 
| -}
 | 
| -
 | 
| -void TaskQueueManager::AddTaskObserver(
 | 
| -    base::MessageLoop::TaskObserver* task_observer) {
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -  base::MessageLoop::current()->AddTaskObserver(task_observer);
 | 
| -  task_observers_.AddObserver(task_observer);
 | 
| -}
 | 
| -
 | 
| -void TaskQueueManager::RemoveTaskObserver(
 | 
| -    base::MessageLoop::TaskObserver* task_observer) {
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -  base::MessageLoop::current()->RemoveTaskObserver(task_observer);
 | 
| -  task_observers_.RemoveObserver(task_observer);
 | 
| -}
 | 
| -
 | 
| -void TaskQueueManager::SetTimeSourceForTesting(
 | 
| -    scoped_refptr<cc::TestNowSource> time_source) {
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -  time_source_ = time_source;
 | 
| -}
 | 
| -
 | 
| -base::TimeTicks TaskQueueManager::Now() const {
 | 
| -  return UNLIKELY(time_source_) ? time_source_->Now() : base::TimeTicks::Now();
 | 
| -}
 | 
| -
 | 
| -scoped_refptr<base::trace_event::ConvertableToTraceFormat>
 | 
| -TaskQueueManager::AsValueWithSelectorResult(bool should_run,
 | 
| -                                            size_t selected_queue) const {
 | 
| -  DCHECK(main_thread_checker_.CalledOnValidThread());
 | 
| -  scoped_refptr<base::trace_event::TracedValue> state =
 | 
| -      new base::trace_event::TracedValue();
 | 
| -  state->BeginArray("queues");
 | 
| -  for (auto& queue : queues_)
 | 
| -    queue->AsValueInto(state.get());
 | 
| -  state->EndArray();
 | 
| -  state->BeginDictionary("selector");
 | 
| -  selector_->AsValueInto(state.get());
 | 
| -  state->EndDictionary();
 | 
| -  if (should_run)
 | 
| -    state->SetInteger("selected_queue", selected_queue);
 | 
| -  return state;
 | 
| -}
 | 
| -
 | 
| -}  // namespace content
 | 
| 
 |