blob: c3e79b72cc6654c1a8fee81831af17e31f3c7d59 [file] [log] [blame]
Danil Chapovalov348b08a2019-01-17 13:07:25 +01001/*
2 * Copyright 2019 The WebRTC Project Authors. All rights reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10#ifndef API_TASK_QUEUE_TASK_QUEUE_BASE_H_
11#define API_TASK_QUEUE_TASK_QUEUE_BASE_H_
12
13#include <memory>
Henrik Boströmcf9899c2022-01-20 09:46:16 +010014#include <utility>
Danil Chapovalov348b08a2019-01-17 13:07:25 +010015
16#include "api/task_queue/queued_task.h"
Mirko Bonadeid4002a72019-11-12 20:11:48 +010017#include "rtc_base/system/rtc_export.h"
Danil Chapovalov4423c362019-03-06 18:41:39 +010018#include "rtc_base/thread_annotations.h"
Danil Chapovalovd00405f2019-02-25 15:06:13 +010019
Danil Chapovalov348b08a2019-01-17 13:07:25 +010020namespace webrtc {
21
22// Asynchronously executes tasks in a way that guarantees that they're executed
23// in FIFO order and that tasks never overlap. Tasks may always execute on the
24// same worker thread and they may not. To DCHECK that tasks are executing on a
25// known task queue, use IsCurrent().
Mirko Bonadeid4002a72019-11-12 20:11:48 +010026class RTC_LOCKABLE RTC_EXPORT TaskQueueBase {
Danil Chapovalov348b08a2019-01-17 13:07:25 +010027 public:
Henrik Boström27e8a092022-01-24 17:12:35 +010028 enum class DelayPrecision {
29 // This may include up to a 17 ms leeway in addition to OS timer precision.
30 // See PostDelayedTask() for more information.
31 kLow,
32 // This does not have the additional delay that kLow has, but it is still
33 // limited by OS timer precision. See PostDelayedHighPrecisionTask() for
34 // more information.
35 kHigh,
36 };
37
Danil Chapovalov348b08a2019-01-17 13:07:25 +010038 // Starts destruction of the task queue.
39 // On return ensures no task are running and no new tasks are able to start
40 // on the task queue.
Danil Chapovalov6cdb67f2021-01-18 17:02:55 +010041 // Responsible for deallocation. Deallocation may happen synchronously during
Danil Chapovalov348b08a2019-01-17 13:07:25 +010042 // Delete or asynchronously after Delete returns.
43 // Code not running on the TaskQueue should not make any assumption when
44 // TaskQueue is deallocated and thus should not call any methods after Delete.
45 // Code running on the TaskQueue should not call Delete, but can assume
46 // TaskQueue still exists and may call other methods, e.g. PostTask.
Danil Chapovalov6cdb67f2021-01-18 17:02:55 +010047 // Should be called on the same task queue or thread that this task queue
48 // was created on.
Danil Chapovalovd00405f2019-02-25 15:06:13 +010049 virtual void Delete() = 0;
Danil Chapovalov348b08a2019-01-17 13:07:25 +010050
51 // Schedules a task to execute. Tasks are executed in FIFO order.
Artem Titovcfea2182021-08-10 01:22:31 +020052 // If `task->Run()` returns true, task is deleted on the task queue
Danil Chapovalov348b08a2019-01-17 13:07:25 +010053 // before next QueuedTask starts executing.
54 // When a TaskQueue is deleted, pending tasks will not be executed but they
55 // will be deleted. The deletion of tasks may happen synchronously on the
56 // TaskQueue or it may happen asynchronously after TaskQueue is deleted.
57 // This may vary from one implementation to the next so assumptions about
58 // lifetimes of pending tasks should not be made.
Danil Chapovalov6cdb67f2021-01-18 17:02:55 +010059 // May be called on any thread or task queue, including this task queue.
Danil Chapovalovd00405f2019-02-25 15:06:13 +010060 virtual void PostTask(std::unique_ptr<QueuedTask> task) = 0;
Danil Chapovalov348b08a2019-01-17 13:07:25 +010061
Henrik Boströmcf9899c2022-01-20 09:46:16 +010062 // Prefer PostDelayedTask() over PostDelayedHighPrecisionTask() whenever
63 // possible.
64 //
Danil Chapovalov348b08a2019-01-17 13:07:25 +010065 // Schedules a task to execute a specified number of milliseconds from when
Henrik Boströmcf9899c2022-01-20 09:46:16 +010066 // the call is made, using "low" precision. All scheduling is affected by
67 // OS-specific leeway and current workloads which means that in terms of
68 // precision there are no hard guarantees, but in addition to the OS induced
69 // leeway, "low" precision adds up to a 17 ms additional leeway. The purpose
70 // of this leeway is to achieve more efficient CPU scheduling and reduce Idle
71 // Wake Up frequency.
72 //
73 // The task may execute with [-1, 17 + OS induced leeway) ms additional delay.
74 //
75 // Avoid making assumptions about the precision of the OS scheduler. On macOS,
76 // the OS induced leeway may be 10% of sleep interval. On Windows, 1 ms
77 // precision timers may be used but there are cases, such as when running on
78 // battery, when the timer precision can be as poor as 15 ms.
79 //
80 // "Low" precision is not implemented everywhere yet. Where not yet
81 // implemented, PostDelayedTask() has "high" precision. See
82 // https://crbug.com/webrtc/13583 for more information.
83 //
Danil Chapovalov6cdb67f2021-01-18 17:02:55 +010084 // May be called on any thread or task queue, including this task queue.
Danil Chapovalovd00405f2019-02-25 15:06:13 +010085 virtual void PostDelayedTask(std::unique_ptr<QueuedTask> task,
86 uint32_t milliseconds) = 0;
Danil Chapovalov348b08a2019-01-17 13:07:25 +010087
Henrik Boströmcf9899c2022-01-20 09:46:16 +010088 // Prefer PostDelayedTask() over PostDelayedHighPrecisionTask() whenever
89 // possible.
90 //
91 // Schedules a task to execute a specified number of milliseconds from when
92 // the call is made, using "high" precision. All scheduling is affected by
93 // OS-specific leeway and current workloads which means that in terms of
94 // precision there are no hard guarantees.
95 //
96 // The task may execute with [-1, OS induced leeway] ms additional delay.
97 //
98 // Avoid making assumptions about the precision of the OS scheduler. On macOS,
99 // the OS induced leeway may be 10% of sleep interval. On Windows, 1 ms
100 // precision timers may be used but there are cases, such as when running on
101 // battery, when the timer precision can be as poor as 15 ms.
102 //
103 // May be called on any thread or task queue, including this task queue.
104 virtual void PostDelayedHighPrecisionTask(std::unique_ptr<QueuedTask> task,
105 uint32_t milliseconds) {
106 // Remove default implementation when dependencies have implemented this
107 // method.
108 PostDelayedTask(std::move(task), milliseconds);
109 }
110
Henrik Boström27e8a092022-01-24 17:12:35 +0100111 // As specified by |precision|, calls either PostDelayedTask() or
112 // PostDelayedHighPrecisionTask().
113 void PostDelayedTaskWithPrecision(DelayPrecision precision,
114 std::unique_ptr<QueuedTask> task,
115 uint32_t milliseconds) {
116 switch (precision) {
117 case DelayPrecision::kLow:
118 PostDelayedTask(std::move(task), milliseconds);
119 break;
120 case DelayPrecision::kHigh:
121 PostDelayedHighPrecisionTask(std::move(task), milliseconds);
122 break;
123 }
124 }
125
Danil Chapovalovd00405f2019-02-25 15:06:13 +0100126 // Returns the task queue that is running the current thread.
127 // Returns nullptr if this thread is not associated with any task queue.
Danil Chapovalov6cdb67f2021-01-18 17:02:55 +0100128 // May be called on any thread or task queue, including this task queue.
Danil Chapovalov348b08a2019-01-17 13:07:25 +0100129 static TaskQueueBase* Current();
130 bool IsCurrent() const { return Current() == this; }
131
132 protected:
Evan Shrubsole5b8dc1d2022-05-19 12:59:04 +0200133 class RTC_EXPORT CurrentTaskQueueSetter {
Danil Chapovalov348b08a2019-01-17 13:07:25 +0100134 public:
135 explicit CurrentTaskQueueSetter(TaskQueueBase* task_queue);
136 CurrentTaskQueueSetter(const CurrentTaskQueueSetter&) = delete;
137 CurrentTaskQueueSetter& operator=(const CurrentTaskQueueSetter&) = delete;
138 ~CurrentTaskQueueSetter();
139
140 private:
141 TaskQueueBase* const previous_;
142 };
143
144 // Users of the TaskQueue should call Delete instead of directly deleting
145 // this object.
Danil Chapovalovd00405f2019-02-25 15:06:13 +0100146 virtual ~TaskQueueBase() = default;
Danil Chapovalov348b08a2019-01-17 13:07:25 +0100147};
148
149struct TaskQueueDeleter {
150 void operator()(TaskQueueBase* task_queue) const { task_queue->Delete(); }
151};
152
153} // namespace webrtc
154
155#endif // API_TASK_QUEUE_TASK_QUEUE_BASE_H_