1 // Copyright (c) 2012 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.
5 // This class defines tests that implementations of SequencedTaskRunner should
6 // pass in order to be conformant. See task_runner_test_template.h for a
7 // description of how to use the constructs in this file; these work the same.
9 #ifndef BASE_TEST_SEQUENCED_TASK_RUNNER_TEST_TEMPLATE_H_
10 #define BASE_TEST_SEQUENCED_TASK_RUNNER_TEST_TEMPLATE_H_
16 #include "base/basictypes.h"
17 #include "base/bind.h"
18 #include "base/callback.h"
19 #include "base/memory/ref_counted.h"
20 #include "base/sequenced_task_runner.h"
21 #include "base/synchronization/condition_variable.h"
22 #include "base/synchronization/lock.h"
23 #include "base/time/time.h"
24 #include "testing/gtest/include/gtest/gtest.h"
31 enum Type
{ POST
, START
, END
};
32 TaskEvent(int i
, Type type
);
37 // Utility class used in the tests below.
38 class SequencedTaskTracker
: public RefCountedThreadSafe
<SequencedTaskTracker
> {
40 SequencedTaskTracker();
42 // Posts the non-nestable task |task|, and records its post event.
43 void PostWrappedNonNestableTask(
44 const scoped_refptr
<SequencedTaskRunner
>& task_runner
,
47 // Posts the nestable task |task|, and records its post event.
48 void PostWrappedNestableTask(
49 const scoped_refptr
<SequencedTaskRunner
>& task_runner
,
52 // Posts the delayed non-nestable task |task|, and records its post event.
53 void PostWrappedDelayedNonNestableTask(
54 const scoped_refptr
<SequencedTaskRunner
>& task_runner
,
58 // Posts |task_count| non-nestable tasks.
59 void PostNonNestableTasks(
60 const scoped_refptr
<SequencedTaskRunner
>& task_runner
,
63 const std::vector
<TaskEvent
>& GetTaskEvents() const;
65 // Returns after the tracker observes a total of |count| task completions.
66 void WaitForCompletedTasks(int count
);
69 friend class RefCountedThreadSafe
<SequencedTaskTracker
>;
71 ~SequencedTaskTracker();
73 // A task which runs |task|, recording the start and end events.
74 void RunTask(const Closure
& task
, int task_i
);
76 // Records a post event for task |i|. The owner is expected to be holding
77 // |lock_| (unlike |TaskStarted| and |TaskEnded|).
78 void TaskPosted(int i
);
80 // Records a start event for task |i|.
81 void TaskStarted(int i
);
83 // Records a end event for task |i|.
84 void TaskEnded(int i
);
86 // Protects events_, next_post_i_, task_end_count_ and task_end_cv_.
89 // The events as they occurred for each task (protected by lock_).
90 std::vector
<TaskEvent
> events_
;
92 // The ordinal to be used for the next task-posting task (protected by
96 // The number of task end events we've received.
98 ConditionVariable task_end_cv_
;
100 DISALLOW_COPY_AND_ASSIGN(SequencedTaskTracker
);
103 void PrintTo(const TaskEvent
& event
, std::ostream
* os
);
105 // Checks the non-nestable task invariants for all tasks in |events|.
107 // The invariants are:
108 // 1) Events started and ended in the same order that they were posted.
109 // 2) Events for an individual tasks occur in the order {POST, START, END},
110 // and there is only one instance of each event type for a task.
111 // 3) The only events between a task's START and END events are the POSTs of
112 // other tasks. I.e. tasks were run sequentially, not interleaved.
113 ::testing::AssertionResult
CheckNonNestableInvariants(
114 const std::vector
<TaskEvent
>& events
,
117 } // namespace internal
119 template <typename TaskRunnerTestDelegate
>
120 class SequencedTaskRunnerTest
: public testing::Test
{
122 SequencedTaskRunnerTest()
123 : task_tracker_(new internal::SequencedTaskTracker()) {}
125 const scoped_refptr
<internal::SequencedTaskTracker
> task_tracker_
;
126 TaskRunnerTestDelegate delegate_
;
129 TYPED_TEST_CASE_P(SequencedTaskRunnerTest
);
131 // This test posts N non-nestable tasks in sequence, and expects them to run
132 // in FIFO order, with no part of any two tasks' execution
133 // overlapping. I.e. that each task starts only after the previously-posted
135 TYPED_TEST_P(SequencedTaskRunnerTest
, SequentialNonNestable
) {
136 const int kTaskCount
= 1000;
138 this->delegate_
.StartTaskRunner();
139 const scoped_refptr
<SequencedTaskRunner
> task_runner
=
140 this->delegate_
.GetTaskRunner();
142 this->task_tracker_
->PostWrappedNonNestableTask(
143 task_runner
, Bind(&PlatformThread::Sleep
, TimeDelta::FromSeconds(1)));
144 for (int i
= 1; i
< kTaskCount
; ++i
) {
145 this->task_tracker_
->PostWrappedNonNestableTask(task_runner
, Closure());
148 this->delegate_
.StopTaskRunner();
150 EXPECT_TRUE(CheckNonNestableInvariants(this->task_tracker_
->GetTaskEvents(),
154 // This test posts N nestable tasks in sequence. It has the same expectations
155 // as SequentialNonNestable because even though the tasks are nestable, they
156 // will not be run nestedly in this case.
157 TYPED_TEST_P(SequencedTaskRunnerTest
, SequentialNestable
) {
158 const int kTaskCount
= 1000;
160 this->delegate_
.StartTaskRunner();
161 const scoped_refptr
<SequencedTaskRunner
> task_runner
=
162 this->delegate_
.GetTaskRunner();
164 this->task_tracker_
->PostWrappedNestableTask(
166 Bind(&PlatformThread::Sleep
, TimeDelta::FromSeconds(1)));
167 for (int i
= 1; i
< kTaskCount
; ++i
) {
168 this->task_tracker_
->PostWrappedNestableTask(task_runner
, Closure());
171 this->delegate_
.StopTaskRunner();
173 EXPECT_TRUE(CheckNonNestableInvariants(this->task_tracker_
->GetTaskEvents(),
177 // This test posts non-nestable tasks in order of increasing delay, and checks
178 // that that the tasks are run in FIFO order and that there is no execution
179 // overlap whatsoever between any two tasks.
180 TYPED_TEST_P(SequencedTaskRunnerTest
, SequentialDelayedNonNestable
) {
181 const int kTaskCount
= 20;
182 const int kDelayIncrementMs
= 50;
184 this->delegate_
.StartTaskRunner();
185 const scoped_refptr
<SequencedTaskRunner
> task_runner
=
186 this->delegate_
.GetTaskRunner();
188 for (int i
= 0; i
< kTaskCount
; ++i
) {
189 this->task_tracker_
->PostWrappedDelayedNonNestableTask(
192 TimeDelta::FromMilliseconds(kDelayIncrementMs
* i
));
195 this->task_tracker_
->WaitForCompletedTasks(kTaskCount
);
196 this->delegate_
.StopTaskRunner();
198 EXPECT_TRUE(CheckNonNestableInvariants(this->task_tracker_
->GetTaskEvents(),
202 // This test posts a fast, non-nestable task from within each of a number of
203 // slow, non-nestable tasks and checks that they all run in the sequence they
204 // were posted in and that there is no execution overlap whatsoever.
205 TYPED_TEST_P(SequencedTaskRunnerTest
, NonNestablePostFromNonNestableTask
) {
206 const int kParentCount
= 10;
207 const int kChildrenPerParent
= 10;
209 this->delegate_
.StartTaskRunner();
210 const scoped_refptr
<SequencedTaskRunner
> task_runner
=
211 this->delegate_
.GetTaskRunner();
213 for (int i
= 0; i
< kParentCount
; ++i
) {
215 &internal::SequencedTaskTracker::PostNonNestableTasks
,
219 this->task_tracker_
->PostWrappedNonNestableTask(task_runner
, task
);
222 this->delegate_
.StopTaskRunner();
224 EXPECT_TRUE(CheckNonNestableInvariants(
225 this->task_tracker_
->GetTaskEvents(),
226 kParentCount
* (kChildrenPerParent
+ 1)));
229 // This test posts a delayed task, and checks that the task is run later than
230 // the specified time.
231 TYPED_TEST_P(SequencedTaskRunnerTest
, DelayedTaskBasic
) {
232 const int kTaskCount
= 1;
233 const TimeDelta kDelay
= TimeDelta::FromMilliseconds(100);
235 this->delegate_
.StartTaskRunner();
236 const scoped_refptr
<SequencedTaskRunner
> task_runner
=
237 this->delegate_
.GetTaskRunner();
239 Time time_before_run
= Time::Now();
240 this->task_tracker_
->PostWrappedDelayedNonNestableTask(
241 task_runner
, Closure(), kDelay
);
242 this->task_tracker_
->WaitForCompletedTasks(kTaskCount
);
243 this->delegate_
.StopTaskRunner();
244 Time time_after_run
= Time::Now();
246 EXPECT_TRUE(CheckNonNestableInvariants(this->task_tracker_
->GetTaskEvents(),
248 EXPECT_LE(kDelay
, time_after_run
- time_before_run
);
251 // This test posts two tasks with the same delay, and checks that the tasks are
252 // run in the order in which they were posted.
254 // NOTE: This is actually an approximate test since the API only takes a
255 // "delay" parameter, so we are not exactly simulating two tasks that get
256 // posted at the exact same time. It would be nice if the API allowed us to
257 // specify the desired run time.
258 TYPED_TEST_P(SequencedTaskRunnerTest
, DelayedTasksSameDelay
) {
259 const int kTaskCount
= 2;
260 const TimeDelta kDelay
= TimeDelta::FromMilliseconds(100);
262 this->delegate_
.StartTaskRunner();
263 const scoped_refptr
<SequencedTaskRunner
> task_runner
=
264 this->delegate_
.GetTaskRunner();
266 this->task_tracker_
->PostWrappedDelayedNonNestableTask(
267 task_runner
, Closure(), kDelay
);
268 this->task_tracker_
->PostWrappedDelayedNonNestableTask(
269 task_runner
, Closure(), kDelay
);
270 this->task_tracker_
->WaitForCompletedTasks(kTaskCount
);
271 this->delegate_
.StopTaskRunner();
273 EXPECT_TRUE(CheckNonNestableInvariants(this->task_tracker_
->GetTaskEvents(),
277 // This test posts a normal task and a delayed task, and checks that the
278 // delayed task runs after the normal task even if the normal task takes
279 // a long time to run.
280 TYPED_TEST_P(SequencedTaskRunnerTest
, DelayedTaskAfterLongTask
) {
281 const int kTaskCount
= 2;
283 this->delegate_
.StartTaskRunner();
284 const scoped_refptr
<SequencedTaskRunner
> task_runner
=
285 this->delegate_
.GetTaskRunner();
287 this->task_tracker_
->PostWrappedNonNestableTask(
288 task_runner
, base::Bind(&PlatformThread::Sleep
,
289 TimeDelta::FromMilliseconds(50)));
290 this->task_tracker_
->PostWrappedDelayedNonNestableTask(
291 task_runner
, Closure(), TimeDelta::FromMilliseconds(10));
292 this->task_tracker_
->WaitForCompletedTasks(kTaskCount
);
293 this->delegate_
.StopTaskRunner();
295 EXPECT_TRUE(CheckNonNestableInvariants(this->task_tracker_
->GetTaskEvents(),
299 // Test that a pile of normal tasks and a delayed task run in the
300 // time-to-run order.
301 TYPED_TEST_P(SequencedTaskRunnerTest
, DelayedTaskAfterManyLongTasks
) {
302 const int kTaskCount
= 11;
304 this->delegate_
.StartTaskRunner();
305 const scoped_refptr
<SequencedTaskRunner
> task_runner
=
306 this->delegate_
.GetTaskRunner();
308 for (int i
= 0; i
< kTaskCount
- 1; i
++) {
309 this->task_tracker_
->PostWrappedNonNestableTask(
310 task_runner
, base::Bind(&PlatformThread::Sleep
,
311 TimeDelta::FromMilliseconds(50)));
313 this->task_tracker_
->PostWrappedDelayedNonNestableTask(
314 task_runner
, Closure(), TimeDelta::FromMilliseconds(10));
315 this->task_tracker_
->WaitForCompletedTasks(kTaskCount
);
316 this->delegate_
.StopTaskRunner();
318 EXPECT_TRUE(CheckNonNestableInvariants(this->task_tracker_
->GetTaskEvents(),
323 // TODO(francoisk777@gmail.com) Add a test, similiar to the above, which runs
324 // some tasked nestedly (which should be implemented in the test
325 // delegate). Also add, to the the test delegate, a predicate which checks
326 // whether the implementation supports nested tasks.
329 REGISTER_TYPED_TEST_CASE_P(SequencedTaskRunnerTest
,
330 SequentialNonNestable
,
332 SequentialDelayedNonNestable
,
333 NonNestablePostFromNonNestableTask
,
335 DelayedTasksSameDelay
,
336 DelayedTaskAfterLongTask
,
337 DelayedTaskAfterManyLongTasks
);
341 #endif // BASE_TEST_SEQUENCED_TASK_RUNNER_TEST_TEMPLATE_H_