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1 // Copyright 2015 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 #include "mojo/edk/system/waitable_event.h" | |
6 | |
7 #include "base/logging.h" | |
8 #include "base/time/time.h" | |
9 | |
10 using mojo::util::CondVar; | |
11 using mojo::util::Mutex; | |
12 using mojo::util::MutexLocker; | |
13 | |
14 namespace mojo { | |
15 namespace system { | |
16 | |
17 namespace { | |
18 | |
19 // Waits with a timeout on |condition()|. Returns true on timeout, or false if | |
20 // |condition()| ever returns true. |condition()| should have no side effects | |
21 // (and will always be called with |*mutex| held). | |
22 template <typename ConditionFn> | |
23 bool WaitWithTimeoutImpl(Mutex* mutex, | |
24 CondVar* cv, | |
25 ConditionFn condition, | |
26 uint64_t timeout_microseconds) | |
27 MOJO_EXCLUSIVE_LOCKS_REQUIRED(mutex) { | |
28 mutex->AssertHeld(); | |
29 | |
30 if (condition()) | |
31 return false; | |
32 | |
33 // We may get spurious wakeups. | |
34 uint64_t wait_remaining = timeout_microseconds; | |
35 auto start = base::TimeTicks::Now(); | |
36 while (true) { | |
37 if (cv->WaitWithTimeout(mutex, wait_remaining)) | |
38 return true; // Definitely timed out. | |
39 | |
40 // We may have been awoken. | |
41 if (condition()) | |
42 return false; | |
43 | |
44 // Or the wakeup may have been spurious. | |
45 auto now = base::TimeTicks::Now(); | |
46 DCHECK_GE(now, start); | |
47 uint64_t elapsed = static_cast<uint64_t>((now - start).InMicroseconds()); | |
48 // It's possible that we may have timed out anyway. | |
49 if (elapsed >= timeout_microseconds) | |
50 return true; | |
51 | |
52 // Otherwise, recalculate the amount that we have left to wait. | |
53 wait_remaining = timeout_microseconds - elapsed; | |
54 } | |
55 } | |
56 | |
57 } // namespace | |
58 | |
59 // AutoResetWaitableEvent ------------------------------------------------------ | |
60 | |
61 void AutoResetWaitableEvent::Signal() { | |
62 MutexLocker locker(&mutex_); | |
63 signaled_ = true; | |
64 cv_.Signal(); | |
65 } | |
66 | |
67 void AutoResetWaitableEvent::Reset() { | |
68 MutexLocker locker(&mutex_); | |
69 signaled_ = false; | |
70 } | |
71 | |
72 void AutoResetWaitableEvent::Wait() { | |
73 MutexLocker locker(&mutex_); | |
74 while (!signaled_) | |
75 cv_.Wait(&mutex_); | |
76 signaled_ = false; | |
77 } | |
78 | |
79 bool AutoResetWaitableEvent::WaitWithTimeout(uint64_t timeout_microseconds) { | |
80 MutexLocker locker(&mutex_); | |
81 | |
82 if (signaled_) { | |
83 signaled_ = false; | |
84 return false; | |
85 } | |
86 | |
87 // We may get spurious wakeups. | |
88 uint64_t wait_remaining = timeout_microseconds; | |
89 auto start = base::TimeTicks::Now(); | |
90 while (true) { | |
91 if (cv_.WaitWithTimeout(&mutex_, wait_remaining)) | |
92 return true; // Definitely timed out. | |
93 | |
94 // We may have been awoken. | |
95 if (signaled_) | |
96 break; | |
97 | |
98 // Or the wakeup may have been spurious. | |
99 auto now = base::TimeTicks::Now(); | |
100 DCHECK_GE(now, start); | |
101 uint64_t elapsed = static_cast<uint64_t>((now - start).InMicroseconds()); | |
102 // It's possible that we may have timed out anyway. | |
103 if (elapsed >= timeout_microseconds) | |
104 return true; | |
105 | |
106 // Otherwise, recalculate the amount that we have left to wait. | |
107 wait_remaining = timeout_microseconds - elapsed; | |
108 } | |
109 | |
110 signaled_ = false; | |
111 return false; | |
112 } | |
113 | |
114 bool AutoResetWaitableEvent::IsSignaledForTest() { | |
115 MutexLocker locker(&mutex_); | |
116 return signaled_; | |
117 } | |
118 | |
119 // ManualResetWaitableEvent ---------------------------------------------------- | |
120 | |
121 void ManualResetWaitableEvent::Signal() { | |
122 MutexLocker locker(&mutex_); | |
123 signaled_ = true; | |
124 signal_id_++; | |
125 cv_.SignalAll(); | |
126 } | |
127 | |
128 void ManualResetWaitableEvent::Reset() { | |
129 MutexLocker locker(&mutex_); | |
130 signaled_ = false; | |
131 } | |
132 | |
133 void ManualResetWaitableEvent::Wait() { | |
134 MutexLocker locker(&mutex_); | |
135 | |
136 if (signaled_) | |
137 return; | |
138 | |
139 auto last_signal_id = signal_id_; | |
140 do { | |
141 cv_.Wait(&mutex_); | |
142 } while (signal_id_ == last_signal_id); | |
143 } | |
144 | |
145 bool ManualResetWaitableEvent::WaitWithTimeout(uint64_t timeout_microseconds) { | |
146 MutexLocker locker(&mutex_); | |
147 | |
148 auto last_signal_id = signal_id_; | |
149 // Disable thread-safety analysis for the lambda: We could annotate it with | |
150 // |MOJO_EXCLUSIVE_LOCKS_REQUIRED(mutex_)|, but then the analyzer currently | |
151 // isn't able to figure out that |WaitWithTimeoutImpl()| calls it while | |
152 // holding |mutex_|. | |
153 bool rv = WaitWithTimeoutImpl( | |
154 &mutex_, &cv_, [this, last_signal_id]() MOJO_NO_THREAD_SAFETY_ANALYSIS { | |
155 // Also check |signaled_| in case we're already signaled. | |
156 return signaled_ || signal_id_ != last_signal_id; | |
157 }, timeout_microseconds); | |
158 DCHECK(rv || signaled_ || signal_id_ != last_signal_id); | |
159 return rv; | |
160 } | |
161 | |
162 bool ManualResetWaitableEvent::IsSignaledForTest() { | |
163 MutexLocker locker(&mutex_); | |
164 return signaled_; | |
165 } | |
166 | |
167 } // namespace system | |
168 } // namespace mojo | |
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