summaryrefslogtreecommitdiffstats
path: root/xpcom/threads/Monitor.h
blob: 7bb91f9ad769aa0824fb4411e6fb961bd9fc69bf (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
/* vim: set ts=8 sts=2 et sw=2 tw=80: */
/* This Source Code Form is subject to the terms of the Mozilla Public
 * License, v. 2.0. If a copy of the MPL was not distributed with this
 * file, You can obtain one at http://mozilla.org/MPL/2.0/. */

#ifndef mozilla_Monitor_h
#define mozilla_Monitor_h

#include "mozilla/CondVar.h"
#include "mozilla/Mutex.h"

namespace mozilla {

/**
 * Monitor provides a *non*-reentrant monitor: *not* a Java-style
 * monitor.  If your code needs support for reentrancy, use
 * ReentrantMonitor instead.  (Rarely should reentrancy be needed.)
 *
 * Instead of directly calling Monitor methods, it's safer and simpler
 * to instead use the RAII wrappers MonitorAutoLock and
 * MonitorAutoUnlock.
 */
class MOZ_CAPABILITY("monitor") Monitor {
 public:
  explicit Monitor(const char* aName)
      : mMutex(aName), mCondVar(mMutex, "[Monitor.mCondVar]") {}

  ~Monitor() = default;

  void Lock() MOZ_CAPABILITY_ACQUIRE() { mMutex.Lock(); }
  [[nodiscard]] bool TryLock() MOZ_TRY_ACQUIRE(true) {
    return mMutex.TryLock();
  }
  void Unlock() MOZ_CAPABILITY_RELEASE() { mMutex.Unlock(); }

  void Wait() MOZ_REQUIRES(this) { mCondVar.Wait(); }
  CVStatus Wait(TimeDuration aDuration) MOZ_REQUIRES(this) {
    return mCondVar.Wait(aDuration);
  }

  void Notify() { mCondVar.Notify(); }
  void NotifyAll() { mCondVar.NotifyAll(); }

  void AssertCurrentThreadOwns() const MOZ_ASSERT_CAPABILITY(this) {
    mMutex.AssertCurrentThreadOwns();
  }
  void AssertNotCurrentThreadOwns() const MOZ_ASSERT_CAPABILITY(!this) {
    mMutex.AssertNotCurrentThreadOwns();
  }

 private:
  Monitor() = delete;
  Monitor(const Monitor&) = delete;
  Monitor& operator=(const Monitor&) = delete;

  Mutex mMutex;
  CondVar mCondVar;
};

/**
 * MonitorSingleWriter
 *
 * Monitor where a single writer exists, so that reads from the same thread
 * will not generate data races or consistency issues.
 *
 * When possible, use MonitorAutoLock/MonitorAutoUnlock to lock/unlock this
 * monitor within a scope, instead of calling Lock/Unlock directly.
 *
 * This requires an object implementing Mutex's SingleWriterLockOwner, so
 * we can do correct-thread checks.
 */

class MonitorSingleWriter : public Monitor {
 public:
  // aOwner should be the object that contains the mutex, typically.  We
  // will use that object (which must have a lifetime the same or greater
  // than this object) to verify that we're running on the correct thread,
  // typically only in DEBUG builds
  explicit MonitorSingleWriter(const char* aName, SingleWriterLockOwner* aOwner)
      : Monitor(aName)
#ifdef DEBUG
        ,
        mOwner(aOwner)
#endif
  {
    MOZ_COUNT_CTOR(MonitorSingleWriter);
    MOZ_ASSERT(mOwner);
  }

  MOZ_COUNTED_DTOR(MonitorSingleWriter)

  void AssertOnWritingThread() const MOZ_ASSERT_CAPABILITY(this) {
    MOZ_ASSERT(mOwner->OnWritingThread());
  }
  void AssertOnWritingThreadOrHeld() const MOZ_ASSERT_CAPABILITY(this) {
#ifdef DEBUG
    if (!mOwner->OnWritingThread()) {
      AssertCurrentThreadOwns();
    }
#endif
  }

 private:
#ifdef DEBUG
  SingleWriterLockOwner* mOwner MOZ_UNSAFE_REF(
      "This is normally the object that contains the MonitorSingleWriter, so "
      "we don't want to hold a reference to ourselves");
#endif

  MonitorSingleWriter() = delete;
  MonitorSingleWriter(const MonitorSingleWriter&) = delete;
  MonitorSingleWriter& operator=(const MonitorSingleWriter&) = delete;
};

/**
 * Lock the monitor for the lexical scope instances of this class are
 * bound to (except for MonitorAutoUnlock in nested scopes).
 *
 * The monitor must be unlocked when instances of this class are
 * created.
 */
namespace detail {
template <typename T>
class MOZ_SCOPED_CAPABILITY MOZ_STACK_CLASS BaseMonitorAutoLock {
 public:
  explicit BaseMonitorAutoLock(T& aMonitor) MOZ_CAPABILITY_ACQUIRE(aMonitor)
      : mMonitor(&aMonitor) {
    mMonitor->Lock();
  }

  ~BaseMonitorAutoLock() MOZ_CAPABILITY_RELEASE() { mMonitor->Unlock(); }
  // It's very hard to mess up MonitorAutoLock lock(mMonitor); ... lock.Wait().
  // The only way you can fail to hold the lock when you call lock.Wait() is to
  // use MonitorAutoUnlock.   For now we'll ignore that case.
  void Wait() {
    mMonitor->AssertCurrentThreadOwns();
    mMonitor->Wait();
  }
  CVStatus Wait(TimeDuration aDuration) {
    mMonitor->AssertCurrentThreadOwns();
    return mMonitor->Wait(aDuration);
  }

  void Notify() { mMonitor->Notify(); }
  void NotifyAll() { mMonitor->NotifyAll(); }

  // Assert that aLock is the monitor passed to the constructor and that the
  // current thread owns the monitor.  In coding patterns such as:
  //
  // void LockedMethod(const BaseAutoLock<T>& aProofOfLock)
  // {
  //   aProofOfLock.AssertOwns(mMonitor);
  //   ...
  // }
  //
  // Without this assertion, it could be that mMonitor is not actually
  // locked. It's possible to have code like:
  //
  // BaseAutoLock lock(someMonitor);
  // ...
  // BaseAutoUnlock unlock(someMonitor);
  // ...
  // LockedMethod(lock);
  //
  // and in such a case, simply asserting that the monitor pointers match is not
  // sufficient; monitor ownership must be asserted as well.
  //
  // Note that if you are going to use the coding pattern presented above, you
  // should use this method in preference to using AssertCurrentThreadOwns on
  // the mutex you expected to be held, since this method provides stronger
  // guarantees.
  void AssertOwns(const T& aMonitor) const MOZ_ASSERT_CAPABILITY(aMonitor) {
    MOZ_ASSERT(&aMonitor == mMonitor);
    mMonitor->AssertCurrentThreadOwns();
  }

 private:
  BaseMonitorAutoLock() = delete;
  BaseMonitorAutoLock(const BaseMonitorAutoLock&) = delete;
  BaseMonitorAutoLock& operator=(const BaseMonitorAutoLock&) = delete;
  static void* operator new(size_t) noexcept(true);

  friend class MonitorAutoUnlock;

 protected:
  T* mMonitor;
};
}  // namespace detail
typedef detail::BaseMonitorAutoLock<Monitor> MonitorAutoLock;
typedef detail::BaseMonitorAutoLock<MonitorSingleWriter>
    MonitorSingleWriterAutoLock;

// clang-format off
// Use if we've done AssertOnWritingThread(), and then later need to take the
// lock to write to a protected member. Instead of
//    MutexSingleWriterAutoLock lock(mutex)
// use
//    MutexSingleWriterAutoLockOnThread(lock, mutex)
// clang-format on
#define MonitorSingleWriterAutoLockOnThread(lock, monitor) \
  MOZ_PUSH_IGNORE_THREAD_SAFETY                            \
  MonitorSingleWriterAutoLock lock(monitor);               \
  MOZ_POP_THREAD_SAFETY

/**
 * Unlock the monitor for the lexical scope instances of this class
 * are bound to (except for MonitorAutoLock in nested scopes).
 *
 * The monitor must be locked by the current thread when instances of
 * this class are created.
 */
namespace detail {
template <typename T>
class MOZ_STACK_CLASS MOZ_SCOPED_CAPABILITY BaseMonitorAutoUnlock {
 public:
  explicit BaseMonitorAutoUnlock(T& aMonitor)
      MOZ_SCOPED_UNLOCK_RELEASE(aMonitor)
      : mMonitor(&aMonitor) {
    mMonitor->Unlock();
  }

  ~BaseMonitorAutoUnlock() MOZ_SCOPED_UNLOCK_REACQUIRE() { mMonitor->Lock(); }

 private:
  BaseMonitorAutoUnlock() = delete;
  BaseMonitorAutoUnlock(const BaseMonitorAutoUnlock&) = delete;
  BaseMonitorAutoUnlock& operator=(const BaseMonitorAutoUnlock&) = delete;
  static void* operator new(size_t) noexcept(true);

  T* mMonitor;
};
}  // namespace detail
typedef detail::BaseMonitorAutoUnlock<Monitor> MonitorAutoUnlock;
typedef detail::BaseMonitorAutoUnlock<MonitorSingleWriter>
    MonitorSingleWriterAutoUnlock;

/**
 * Lock the monitor for the lexical scope instances of this class are
 * bound to (except for MonitorAutoUnlock in nested scopes).
 *
 * The monitor must be unlocked when instances of this class are
 * created.
 */
class MOZ_SCOPED_CAPABILITY MOZ_STACK_CLASS ReleasableMonitorAutoLock {
 public:
  explicit ReleasableMonitorAutoLock(Monitor& aMonitor)
      MOZ_CAPABILITY_ACQUIRE(aMonitor)
      : mMonitor(&aMonitor) {
    mMonitor->Lock();
    mLocked = true;
  }

  ~ReleasableMonitorAutoLock() MOZ_CAPABILITY_RELEASE() {
    if (mLocked) {
      mMonitor->Unlock();
    }
  }

  // See BaseMonitorAutoLock::Wait
  void Wait() {
    mMonitor->AssertCurrentThreadOwns();  // someone could have called Unlock()
    mMonitor->Wait();
  }
  CVStatus Wait(TimeDuration aDuration) {
    mMonitor->AssertCurrentThreadOwns();
    return mMonitor->Wait(aDuration);
  }

  void Notify() {
    MOZ_ASSERT(mLocked);
    mMonitor->Notify();
  }
  void NotifyAll() {
    MOZ_ASSERT(mLocked);
    mMonitor->NotifyAll();
  }

  // Allow dropping the lock prematurely; for example to support something like:
  // clang-format off
  // MonitorAutoLock lock(mMonitor);
  // ...
  // if (foo) {
  //   lock.Unlock();
  //   MethodThatCantBeCalledWithLock()
  //   return;
  // }
  // clang-format on
  void Unlock() MOZ_CAPABILITY_RELEASE() {
    MOZ_ASSERT(mLocked);
    mMonitor->Unlock();
    mLocked = false;
  }
  void Lock() MOZ_CAPABILITY_ACQUIRE() {
    MOZ_ASSERT(!mLocked);
    mMonitor->Lock();
    mLocked = true;
  }
  void AssertCurrentThreadOwns() const MOZ_ASSERT_CAPABILITY() {
    mMonitor->AssertCurrentThreadOwns();
  }

 private:
  bool mLocked;
  Monitor* mMonitor;

  ReleasableMonitorAutoLock() = delete;
  ReleasableMonitorAutoLock(const ReleasableMonitorAutoLock&) = delete;
  ReleasableMonitorAutoLock& operator=(const ReleasableMonitorAutoLock&) =
      delete;
  static void* operator new(size_t) noexcept(true);
};

}  // namespace mozilla

#endif  // mozilla_Monitor_h