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1 // Copyright 2014 The Chromium Authors. All rights reserved. | |
2 // Use of this source code is governed by a BSD-style license that can be | |
3 // found in the LICENSE file. | |
4 | |
5 #ifndef BASE_TASK_TASK_QUEUE_MANAGER_H_ | |
6 #define BASE_TASK_TASK_QUEUE_MANAGER_H_ | |
7 | |
8 #include "base/atomic_sequence_num.h" | |
9 #include "base/debug/task_annotator.h" | |
10 #include "base/macros.h" | |
11 #include "base/memory/scoped_vector.h" | |
12 #include "base/memory/weak_ptr.h" | |
13 #include "base/pending_task.h" | |
14 #include "base/single_thread_task_runner.h" | |
15 #include "base/synchronization/lock.h" | |
16 #include "base/threading/thread_checker.h" | |
17 | |
18 namespace base { | |
19 class TaskQueueScheduler; | |
20 | |
21 // The task queue manager provides N task queues and a scheduling interface for | |
22 // choosing which task queue to service next. Each task queue consists of two | |
23 // sub queues: | |
24 // | |
25 // 1. Incoming task queue. Tasks that are posted get immediately appended here. | |
26 // When a task is appended into an empty incoming queue, the task manager | |
27 // work function (DoWork) is scheduled to run on the main task runner. | |
28 // | |
29 // 2. Work queue. If a work queue is empty when DoWork() is entered, tasks from | |
30 // the incoming task queue (if any) are moved here. The work queues are | |
31 // registered with the scheduler as input to the scheduling decision. | |
32 // | |
33 class BASE_EXPORT TaskQueueManager { | |
34 public: | |
35 // Create a task queue manager with |task_queue_count| task queues. | |
36 // |main_task_runner| identifies the thread on which where the tasks are | |
37 // eventually run. |scheduler| is used to choose which task queue to service. | |
38 // It should outlive this class. | |
39 TaskQueueManager(size_t task_queue_count, | |
40 scoped_refptr<SingleThreadTaskRunner> main_task_runner, | |
41 TaskQueueScheduler* scheduler); | |
42 ~TaskQueueManager(); | |
43 | |
44 // Returns the task runner which targets the queue selected by |queue_index|. | |
45 scoped_refptr<SingleThreadTaskRunner> TaskRunnerForQueue(size_t queue_index); | |
46 | |
47 // If |auto_pump| is false, tasks posted to the given incoming queue will not | |
48 // be automatically scheduled for execution or transferred to the work queue. | |
49 // Instead, the scheduler should call PumpQueue() when necessary to bring in | |
50 // new tasks for execution. | |
51 void SetAutoPump(size_t queue_index, bool auto_pump); | |
alexclarke
2014/10/15 09:48:59
I suspect this method will only ever get called on
Sami
2014/10/15 12:05:24
I'm thinking it might be useful to keep it togglea
| |
52 | |
53 // If the work queue is empty, reloads new tasks from the incoming queue. | |
54 // After this, this function ensures any tasks in the work queue are | |
55 // scheduled for execution. | |
56 void PumpQueue(size_t queue_index); | |
petrcermak
2014/10/15 10:05:40
Shouldn't this method reload tasks whenever the in
Sami
2014/10/15 12:05:24
I think you're right. I had this this way because
| |
57 | |
58 // Returns true if there are any tasks in either the work or incoming task | |
59 // queue identified by |queue_index|. | |
60 bool PollQueue(size_t queue_index); | |
alexclarke
2014/10/15 09:48:59
How about IsQueueEmpty()?
Sami
2014/10/15 12:05:24
I prefer poll since it conveys that this operation
| |
61 | |
62 private: | |
63 class TaskRunner : public SingleThreadTaskRunner { | |
64 public: | |
65 TaskRunner(TaskQueueManager* task_queue_manager, size_t queue_index); | |
66 | |
67 // SingleThreadTaskRunner implementation. | |
68 virtual bool RunsTasksOnCurrentThread() const override; | |
69 virtual bool PostDelayedTask(const tracked_objects::Location& from_here, | |
70 const Closure& task, | |
71 TimeDelta delay) override; | |
72 virtual bool PostNonNestableDelayedTask( | |
73 const tracked_objects::Location& from_here, | |
74 const Closure& task, | |
75 TimeDelta delay) override; | |
76 | |
77 private: | |
78 virtual ~TaskRunner(); | |
79 | |
80 TaskQueueManager* task_queue_manager_; | |
81 const size_t queue_index_; | |
82 }; | |
83 friend class TaskRunner; | |
84 | |
85 // Adds a task at the end of the incoming task queue for |queue_index| and | |
86 // schedules a call to DoWork() if the incoming queue was empty and automatic | |
87 // pumping is enabled. Can be called on an arbitrary thread. | |
88 void EnqueueTask(size_t queue_index, const PendingTask& pending_task); | |
89 | |
90 // Post a task to call DoWork() on the main task runner. | |
91 void ScheduleWork(); | |
92 | |
93 // Use the scheduler to choose a pending task and run it. | |
94 void DoWork(); | |
95 | |
96 // Reloads the work queue identified by |queue_index| and returns true if | |
97 // it ended up having tasks. The work queue must be empty when this function | |
98 // is called. | |
99 bool ReloadWorkQueue(size_t queue_index); | |
100 | |
101 // Returns true if any work queue is non-empty. | |
102 bool ReloadWorkQueues(); | |
103 | |
104 // Runs a single task from the work queue designated by |queue_index|. The | |
105 // queue must not be empty. | |
106 void RunTaskFromWorkQueue(size_t queue_index); | |
107 | |
108 bool RunsTasksOnCurrentThread() const; | |
109 bool PostDelayedTask(size_t queue_index, | |
110 const tracked_objects::Location& from_here, | |
111 const Closure& task, | |
112 TimeDelta delay); | |
113 bool PostNonNestableDelayedTask(size_t queue_index, | |
114 const tracked_objects::Location& from_here, | |
115 const Closure& task, | |
116 TimeDelta delay); | |
117 | |
118 struct InternalTaskQueue { | |
119 InternalTaskQueue(size_t index); | |
120 ~InternalTaskQueue(); | |
121 | |
122 const size_t index; | |
alexclarke
2014/10/15 09:48:59
The only reason for this appears to be because of
Sami
2014/10/15 12:05:24
Heh, well spotted :) Removed.
| |
123 scoped_refptr<TaskRunner> task_runner; | |
124 | |
125 Lock incoming_queue_lock; | |
126 TaskQueue incoming_queue; | |
127 | |
128 bool auto_pump; | |
129 TaskQueue work_queue; | |
130 }; | |
131 | |
132 ScopedVector<InternalTaskQueue> queues_; | |
133 AtomicSequenceNumber task_sequence_num_; | |
134 debug::TaskAnnotator task_annotator_; | |
135 | |
136 base::ThreadChecker main_thread_checker_; | |
137 scoped_refptr<base::SingleThreadTaskRunner> main_task_runner_; | |
138 TaskQueueScheduler* scheduler_; | |
139 | |
140 base::WeakPtrFactory<TaskQueueManager> weak_factory_; | |
141 | |
142 DISALLOW_COPY_AND_ASSIGN(TaskQueueManager); | |
143 }; | |
144 | |
145 } // namespace content | |
146 | |
147 #endif // BASE_TASK_TASK_QUEUE_MANAGER_H_ | |
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