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Elliott Hughes8daa0922011-09-11 13:46:25 -07001/*
2 * Copyright (C) 2011 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
Brian Carlstromfc0e3212013-07-17 14:40:12 -070017#ifndef ART_RUNTIME_BASE_MUTEX_H_
18#define ART_RUNTIME_BASE_MUTEX_H_
Elliott Hughes8daa0922011-09-11 13:46:25 -070019
20#include <pthread.h>
Brian Carlstromcd74c4b2012-01-23 13:21:00 -080021#include <stdint.h>
Elliott Hughesffb465f2012-03-01 18:46:05 -080022
23#include <iosfwd>
Elliott Hughes8daa0922011-09-11 13:46:25 -070024#include <string>
25
Ian Rogersef7d42f2014-01-06 12:55:46 -080026#include "atomic.h"
Elliott Hughes07ed66b2012-12-12 18:34:25 -080027#include "base/logging.h"
Elliott Hughes76160052012-12-12 16:31:20 -080028#include "base/macros.h"
Ian Rogers00f7d0e2012-07-19 15:28:27 -070029#include "globals.h"
Ian Rogers81d425b2012-09-27 16:03:43 -070030
Ian Rogersab470162012-09-29 23:06:53 -070031#if defined(__APPLE__)
Ian Rogers81d425b2012-09-27 16:03:43 -070032#define ART_USE_FUTEXES 0
Ian Rogersab470162012-09-29 23:06:53 -070033#else
Chris Dearmanc0141782013-11-14 17:29:21 -080034#define ART_USE_FUTEXES 1
Ian Rogersab470162012-09-29 23:06:53 -070035#endif
Elliott Hughes8daa0922011-09-11 13:46:25 -070036
Ian Rogers66aee5c2012-08-15 17:17:47 -070037// Currently Darwin doesn't support locks with timeouts.
38#if !defined(__APPLE__)
39#define HAVE_TIMED_RWLOCK 1
40#else
41#define HAVE_TIMED_RWLOCK 0
42#endif
43
Elliott Hughes8daa0922011-09-11 13:46:25 -070044namespace art {
45
Ian Rogers719d1a32014-03-06 12:13:39 -080046class LOCKABLE ReaderWriterMutex;
Ian Rogers56edc432013-01-18 16:51:51 -080047class ScopedContentionRecorder;
Ian Rogers50b35e22012-10-04 10:09:15 -070048class Thread;
49
Ian Rogers719d1a32014-03-06 12:13:39 -080050// LockLevel is used to impose a lock hierarchy [1] where acquisition of a Mutex at a higher or
51// equal level to a lock a thread holds is invalid. The lock hierarchy achieves a cycle free
52// partial ordering and thereby cause deadlock situations to fail checks.
53//
54// [1] http://www.drdobbs.com/parallel/use-lock-hierarchies-to-avoid-deadlock/204801163
55enum LockLevel {
56 kLoggingLock = 0,
57 kUnexpectedSignalLock,
58 kThreadSuspendCountLock,
59 kAbortLock,
60 kJdwpSocketLock,
61 kRosAllocGlobalLock,
62 kRosAllocBracketLock,
63 kRosAllocBulkFreeLock,
64 kAllocSpaceLock,
65 kDexFileMethodInlinerLock,
66 kDexFileToMethodInlinerMapLock,
67 kMarkSweepMarkStackLock,
68 kTransactionLogLock,
69 kInternTableLock,
70 kMonitorPoolLock,
71 kDefaultMutexLevel,
72 kMarkSweepLargeObjectLock,
73 kPinTableLock,
74 kLoadLibraryLock,
75 kJdwpObjectRegistryLock,
76 kClassLinkerClassesLock,
77 kBreakpointLock,
78 kMonitorLock,
Mathieu Chartier440e4ce2014-03-31 16:36:35 -070079 kMonitorListLock,
Ian Rogers719d1a32014-03-06 12:13:39 -080080 kThreadListLock,
81 kBreakpointInvokeLock,
82 kDeoptimizationLock,
83 kTraceLock,
84 kProfilerLock,
85 kJdwpEventListLock,
86 kJdwpAttachLock,
87 kJdwpStartLock,
88 kRuntimeShutdownLock,
89 kHeapBitmapLock,
90 kMutatorLock,
91 kZygoteCreationLock,
92
93 kLockLevelCount // Must come last.
94};
95std::ostream& operator<<(std::ostream& os, const LockLevel& rhs);
96
Brian Carlstrom2e250c82013-08-14 18:08:52 -070097const bool kDebugLocking = kIsDebugBuild;
Ian Rogers25fd14b2012-09-05 10:56:38 -070098
Hiroshi Yamauchi1afde132013-08-06 17:09:30 -070099// Record Log contention information, dumpable via SIGQUIT.
100#ifdef ART_USE_FUTEXES
Jeff Hao08f2e7b2013-09-09 16:44:02 -0700101// To enable lock contention logging, set this to true.
102const bool kLogLockContentions = false;
Hiroshi Yamauchi1afde132013-08-06 17:09:30 -0700103#else
104// Keep this false as lock contention logging is supported only with
105// futex.
106const bool kLogLockContentions = false;
107#endif
Ian Rogersd9c4fc92013-10-01 19:45:43 -0700108const size_t kContentionLogSize = 4;
Hiroshi Yamauchi1afde132013-08-06 17:09:30 -0700109const size_t kContentionLogDataSize = kLogLockContentions ? 1 : 0;
110const size_t kAllMutexDataSize = kLogLockContentions ? 1 : 0;
111
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700112// Base class for all Mutex implementations
113class BaseMutex {
114 public:
Ian Rogersbab74962013-04-19 10:04:10 -0700115 const char* GetName() const {
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700116 return name_;
117 }
118
119 virtual bool IsMutex() const { return false; }
120 virtual bool IsReaderWriterMutex() const { return false; }
121
Ian Rogers56edc432013-01-18 16:51:51 -0800122 virtual void Dump(std::ostream& os) const = 0;
123
124 static void DumpAll(std::ostream& os);
125
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700126 protected:
127 friend class ConditionVariable;
128
Ian Rogers81d425b2012-09-27 16:03:43 -0700129 BaseMutex(const char* name, LockLevel level);
Ian Rogers56edc432013-01-18 16:51:51 -0800130 virtual ~BaseMutex();
Ian Rogers81d425b2012-09-27 16:03:43 -0700131 void RegisterAsLocked(Thread* self);
132 void RegisterAsUnlocked(Thread* self);
133 void CheckSafeToWait(Thread* self);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700134
Ian Rogers56edc432013-01-18 16:51:51 -0800135 friend class ScopedContentionRecorder;
136
Hiroshi Yamauchi1afde132013-08-06 17:09:30 -0700137 void RecordContention(uint64_t blocked_tid, uint64_t owner_tid, uint64_t nano_time_blocked);
Ian Rogers56edc432013-01-18 16:51:51 -0800138 void DumpContention(std::ostream& os) const;
139
Ian Rogers81d425b2012-09-27 16:03:43 -0700140 const LockLevel level_; // Support for lock hierarchy.
Ian Rogersbab74962013-04-19 10:04:10 -0700141 const char* const name_;
Hiroshi Yamauchi1afde132013-08-06 17:09:30 -0700142
Ian Rogers56edc432013-01-18 16:51:51 -0800143 // A log entry that records contention but makes no guarantee that either tid will be held live.
144 struct ContentionLogEntry {
145 ContentionLogEntry() : blocked_tid(0), owner_tid(0) {}
146 uint64_t blocked_tid;
147 uint64_t owner_tid;
148 AtomicInteger count;
149 };
Hiroshi Yamauchi1afde132013-08-06 17:09:30 -0700150 struct ContentionLogData {
151 ContentionLogEntry contention_log[kContentionLogSize];
152 // The next entry in the contention log to be updated. Value ranges from 0 to
153 // kContentionLogSize - 1.
154 AtomicInteger cur_content_log_entry;
155 // Number of times the Mutex has been contended.
156 AtomicInteger contention_count;
157 // Sum of time waited by all contenders in ns.
158 volatile uint64_t wait_time;
159 void AddToWaitTime(uint64_t value);
160 ContentionLogData() : wait_time(0) {}
161 };
162 ContentionLogData contetion_log_data_[kContentionLogDataSize];
163
164 public:
165 bool HasEverContended() const {
166 if (kLogLockContentions) {
167 return contetion_log_data_->contention_count > 0;
168 }
169 return false;
170 }
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700171};
172
173// A Mutex is used to achieve mutual exclusion between threads. A Mutex can be used to gain
174// exclusive access to what it guards. A Mutex can be in one of two states:
175// - Free - not owned by any thread,
176// - Exclusive - owned by a single thread.
177//
178// The effect of locking and unlocking operations on the state is:
179// State | ExclusiveLock | ExclusiveUnlock
180// -------------------------------------------
181// Free | Exclusive | error
182// Exclusive | Block* | Free
183// * Mutex is not reentrant and so an attempt to ExclusiveLock on the same thread will result in
184// an error. Being non-reentrant simplifies Waiting on ConditionVariables.
Ian Rogers01ae5802012-09-28 16:14:01 -0700185std::ostream& operator<<(std::ostream& os, const Mutex& mu);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700186class LOCKABLE Mutex : public BaseMutex {
187 public:
Ian Rogers81d425b2012-09-27 16:03:43 -0700188 explicit Mutex(const char* name, LockLevel level = kDefaultMutexLevel, bool recursive = false);
Elliott Hughes8daa0922011-09-11 13:46:25 -0700189 ~Mutex();
190
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700191 virtual bool IsMutex() const { return true; }
Elliott Hughes8daa0922011-09-11 13:46:25 -0700192
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700193 // Block until mutex is free then acquire exclusive access.
Ian Rogers81d425b2012-09-27 16:03:43 -0700194 void ExclusiveLock(Thread* self) EXCLUSIVE_LOCK_FUNCTION();
195 void Lock(Thread* self) EXCLUSIVE_LOCK_FUNCTION() { ExclusiveLock(self); }
Elliott Hughes8daa0922011-09-11 13:46:25 -0700196
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700197 // Returns true if acquires exclusive access, false otherwise.
Ian Rogers81d425b2012-09-27 16:03:43 -0700198 bool ExclusiveTryLock(Thread* self) EXCLUSIVE_TRYLOCK_FUNCTION(true);
199 bool TryLock(Thread* self) EXCLUSIVE_TRYLOCK_FUNCTION(true) { return ExclusiveTryLock(self); }
Elliott Hughes8daa0922011-09-11 13:46:25 -0700200
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700201 // Release exclusive access.
Ian Rogers81d425b2012-09-27 16:03:43 -0700202 void ExclusiveUnlock(Thread* self) UNLOCK_FUNCTION();
203 void Unlock(Thread* self) UNLOCK_FUNCTION() { ExclusiveUnlock(self); }
Elliott Hughes8daa0922011-09-11 13:46:25 -0700204
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700205 // Is the current thread the exclusive holder of the Mutex.
Ian Rogers81d425b2012-09-27 16:03:43 -0700206 bool IsExclusiveHeld(const Thread* self) const;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700207
208 // Assert that the Mutex is exclusively held by the current thread.
Ian Rogers81d425b2012-09-27 16:03:43 -0700209 void AssertExclusiveHeld(const Thread* self) {
Anwar Ghuloum3c539ff2013-06-20 08:58:23 -0700210 if (kDebugLocking && (gAborting == 0)) {
Ian Rogers01ae5802012-09-28 16:14:01 -0700211 CHECK(IsExclusiveHeld(self)) << *this;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700212 }
213 }
Ian Rogers81d425b2012-09-27 16:03:43 -0700214 void AssertHeld(const Thread* self) { AssertExclusiveHeld(self); }
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700215
216 // Assert that the Mutex is not held by the current thread.
Ian Rogers81d425b2012-09-27 16:03:43 -0700217 void AssertNotHeldExclusive(const Thread* self) {
Anwar Ghuloum3c539ff2013-06-20 08:58:23 -0700218 if (kDebugLocking && (gAborting == 0)) {
Ian Rogers01ae5802012-09-28 16:14:01 -0700219 CHECK(!IsExclusiveHeld(self)) << *this;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700220 }
221 }
Ian Rogers81d425b2012-09-27 16:03:43 -0700222 void AssertNotHeld(const Thread* self) { AssertNotHeldExclusive(self); }
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700223
224 // Id associated with exclusive owner.
225 uint64_t GetExclusiveOwnerTid() const;
226
227 // Returns how many times this Mutex has been locked, it is better to use AssertHeld/NotHeld.
228 unsigned int GetDepth() const {
229 return recursion_count_;
230 }
Elliott Hughesaccd83d2011-10-17 14:25:58 -0700231
Ian Rogers56edc432013-01-18 16:51:51 -0800232 virtual void Dump(std::ostream& os) const;
Ian Rogers01ae5802012-09-28 16:14:01 -0700233
Elliott Hughesaccd83d2011-10-17 14:25:58 -0700234 private:
Ian Rogersc604d732012-10-14 16:09:54 -0700235#if ART_USE_FUTEXES
236 // 0 is unheld, 1 is held.
237 volatile int32_t state_;
238 // Exclusive owner.
239 volatile uint64_t exclusive_owner_;
240 // Number of waiting contenders.
Ian Rogersb122a4b2013-11-19 18:00:50 -0800241 AtomicInteger num_contenders_;
Ian Rogersc604d732012-10-14 16:09:54 -0700242#else
Elliott Hughes8daa0922011-09-11 13:46:25 -0700243 pthread_mutex_t mutex_;
Ian Rogersc604d732012-10-14 16:09:54 -0700244#endif
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700245 const bool recursive_; // Can the lock be recursively held?
246 unsigned int recursion_count_;
Elliott Hughesf1498432012-03-28 19:34:27 -0700247 friend class ConditionVariable;
Elliott Hughes8daa0922011-09-11 13:46:25 -0700248 DISALLOW_COPY_AND_ASSIGN(Mutex);
249};
250
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700251// A ReaderWriterMutex is used to achieve mutual exclusion between threads, similar to a Mutex.
252// Unlike a Mutex a ReaderWriterMutex can be used to gain exclusive (writer) or shared (reader)
253// access to what it guards. A flaw in relation to a Mutex is that it cannot be used with a
254// condition variable. A ReaderWriterMutex can be in one of three states:
255// - Free - not owned by any thread,
256// - Exclusive - owned by a single thread,
257// - Shared(n) - shared amongst n threads.
258//
259// The effect of locking and unlocking operations on the state is:
260//
261// State | ExclusiveLock | ExclusiveUnlock | SharedLock | SharedUnlock
262// ----------------------------------------------------------------------------
263// Free | Exclusive | error | SharedLock(1) | error
264// Exclusive | Block | Free | Block | error
265// Shared(n) | Block | error | SharedLock(n+1)* | Shared(n-1) or Free
266// * for large values of n the SharedLock may block.
Ian Rogers01ae5802012-09-28 16:14:01 -0700267std::ostream& operator<<(std::ostream& os, const ReaderWriterMutex& mu);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700268class LOCKABLE ReaderWriterMutex : public BaseMutex {
Elliott Hughes8daa0922011-09-11 13:46:25 -0700269 public:
Ian Rogers81d425b2012-09-27 16:03:43 -0700270 explicit ReaderWriterMutex(const char* name, LockLevel level = kDefaultMutexLevel);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700271 ~ReaderWriterMutex();
272
273 virtual bool IsReaderWriterMutex() const { return true; }
274
275 // Block until ReaderWriterMutex is free then acquire exclusive access.
Ian Rogers81d425b2012-09-27 16:03:43 -0700276 void ExclusiveLock(Thread* self) EXCLUSIVE_LOCK_FUNCTION();
277 void WriterLock(Thread* self) EXCLUSIVE_LOCK_FUNCTION() { ExclusiveLock(self); }
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700278
279 // Release exclusive access.
Ian Rogers81d425b2012-09-27 16:03:43 -0700280 void ExclusiveUnlock(Thread* self) UNLOCK_FUNCTION();
281 void WriterUnlock(Thread* self) UNLOCK_FUNCTION() { ExclusiveUnlock(self); }
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700282
283 // Block until ReaderWriterMutex is free and acquire exclusive access. Returns true on success
284 // or false if timeout is reached.
Ian Rogers66aee5c2012-08-15 17:17:47 -0700285#if HAVE_TIMED_RWLOCK
Ian Rogersc604d732012-10-14 16:09:54 -0700286 bool ExclusiveLockWithTimeout(Thread* self, int64_t ms, int32_t ns)
Ian Rogers81d425b2012-09-27 16:03:43 -0700287 EXCLUSIVE_TRYLOCK_FUNCTION(true);
Ian Rogers66aee5c2012-08-15 17:17:47 -0700288#endif
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700289
290 // Block until ReaderWriterMutex is shared or free then acquire a share on the access.
Ian Rogers1ffa32f2013-02-05 18:29:08 -0800291 void SharedLock(Thread* self) SHARED_LOCK_FUNCTION() ALWAYS_INLINE;
Ian Rogers81d425b2012-09-27 16:03:43 -0700292 void ReaderLock(Thread* self) SHARED_LOCK_FUNCTION() { SharedLock(self); }
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700293
294 // Try to acquire share of ReaderWriterMutex.
Ian Rogers81d425b2012-09-27 16:03:43 -0700295 bool SharedTryLock(Thread* self) EXCLUSIVE_TRYLOCK_FUNCTION(true);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700296
297 // Release a share of the access.
Ian Rogers1ffa32f2013-02-05 18:29:08 -0800298 void SharedUnlock(Thread* self) UNLOCK_FUNCTION() ALWAYS_INLINE;
Ian Rogers81d425b2012-09-27 16:03:43 -0700299 void ReaderUnlock(Thread* self) UNLOCK_FUNCTION() { SharedUnlock(self); }
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700300
301 // Is the current thread the exclusive holder of the ReaderWriterMutex.
Ian Rogers81d425b2012-09-27 16:03:43 -0700302 bool IsExclusiveHeld(const Thread* self) const;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700303
304 // Assert the current thread has exclusive access to the ReaderWriterMutex.
Ian Rogers81d425b2012-09-27 16:03:43 -0700305 void AssertExclusiveHeld(const Thread* self) {
Sebastien Hertz702a85b2013-08-05 16:37:51 +0200306 if (kDebugLocking && (gAborting == 0)) {
Ian Rogers01ae5802012-09-28 16:14:01 -0700307 CHECK(IsExclusiveHeld(self)) << *this;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700308 }
309 }
Ian Rogers81d425b2012-09-27 16:03:43 -0700310 void AssertWriterHeld(const Thread* self) { AssertExclusiveHeld(self); }
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700311
312 // Assert the current thread doesn't have exclusive access to the ReaderWriterMutex.
Ian Rogers81d425b2012-09-27 16:03:43 -0700313 void AssertNotExclusiveHeld(const Thread* self) {
Sebastien Hertz702a85b2013-08-05 16:37:51 +0200314 if (kDebugLocking && (gAborting == 0)) {
Ian Rogerse3359f72013-06-11 15:14:11 -0700315 CHECK(!IsExclusiveHeld(self)) << *this;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700316 }
317 }
Ian Rogers81d425b2012-09-27 16:03:43 -0700318 void AssertNotWriterHeld(const Thread* self) { AssertNotExclusiveHeld(self); }
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700319
320 // Is the current thread a shared holder of the ReaderWriterMutex.
Ian Rogers81d425b2012-09-27 16:03:43 -0700321 bool IsSharedHeld(const Thread* self) const;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700322
323 // Assert the current thread has shared access to the ReaderWriterMutex.
Ian Rogers81d425b2012-09-27 16:03:43 -0700324 void AssertSharedHeld(const Thread* self) {
Sebastien Hertz702a85b2013-08-05 16:37:51 +0200325 if (kDebugLocking && (gAborting == 0)) {
Ian Rogers23055dc2013-04-18 16:29:16 -0700326 // TODO: we can only assert this well when self != NULL.
327 CHECK(IsSharedHeld(self) || self == NULL) << *this;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700328 }
329 }
Ian Rogers81d425b2012-09-27 16:03:43 -0700330 void AssertReaderHeld(const Thread* self) { AssertSharedHeld(self); }
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700331
332 // Assert the current thread doesn't hold this ReaderWriterMutex either in shared or exclusive
333 // mode.
Ian Rogers81d425b2012-09-27 16:03:43 -0700334 void AssertNotHeld(const Thread* self) {
Anwar Ghuloum3c539ff2013-06-20 08:58:23 -0700335 if (kDebugLocking && (gAborting == 0)) {
Ian Rogers01ae5802012-09-28 16:14:01 -0700336 CHECK(!IsSharedHeld(self)) << *this;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700337 }
Elliott Hughes8daa0922011-09-11 13:46:25 -0700338 }
339
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700340 // Id associated with exclusive owner.
341 uint64_t GetExclusiveOwnerTid() const;
Elliott Hughes8daa0922011-09-11 13:46:25 -0700342
Ian Rogers56edc432013-01-18 16:51:51 -0800343 virtual void Dump(std::ostream& os) const;
Ian Rogers01ae5802012-09-28 16:14:01 -0700344
Ian Rogers81d425b2012-09-27 16:03:43 -0700345 private:
346#if ART_USE_FUTEXES
347 // -1 implies held exclusive, +ve shared held by state_ many owners.
348 volatile int32_t state_;
349 // Exclusive owner.
350 volatile uint64_t exclusive_owner_;
351 // Pending readers.
352 volatile int32_t num_pending_readers_;
353 // Pending writers.
Ian Rogersb122a4b2013-11-19 18:00:50 -0800354 AtomicInteger num_pending_writers_;
Ian Rogers81d425b2012-09-27 16:03:43 -0700355#else
356 pthread_rwlock_t rwlock_;
357#endif
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700358 DISALLOW_COPY_AND_ASSIGN(ReaderWriterMutex);
359};
360
361// ConditionVariables allow threads to queue and sleep. Threads may then be resumed individually
362// (Signal) or all at once (Broadcast).
Elliott Hughes5f791332011-09-15 17:45:30 -0700363class ConditionVariable {
364 public:
Ian Rogers23055dc2013-04-18 16:29:16 -0700365 explicit ConditionVariable(const char* name, Mutex& mutex);
Elliott Hughes5f791332011-09-15 17:45:30 -0700366 ~ConditionVariable();
367
Ian Rogersc604d732012-10-14 16:09:54 -0700368 void Broadcast(Thread* self);
369 void Signal(Thread* self);
370 // TODO: No thread safety analysis on Wait and TimedWait as they call mutex operations via their
371 // pointer copy, thereby defeating annotalysis.
372 void Wait(Thread* self) NO_THREAD_SAFETY_ANALYSIS;
373 void TimedWait(Thread* self, int64_t ms, int32_t ns) NO_THREAD_SAFETY_ANALYSIS;
Ian Rogers1d54e732013-05-02 21:10:01 -0700374 // Variant of Wait that should be used with caution. Doesn't validate that no mutexes are held
375 // when waiting.
376 // TODO: remove this.
377 void WaitHoldingLocks(Thread* self) NO_THREAD_SAFETY_ANALYSIS;
Elliott Hughes5f791332011-09-15 17:45:30 -0700378
379 private:
Ian Rogers23055dc2013-04-18 16:29:16 -0700380 const char* const name_;
Ian Rogersc604d732012-10-14 16:09:54 -0700381 // The Mutex being used by waiters. It is an error to mix condition variables between different
382 // Mutexes.
383 Mutex& guard_;
384#if ART_USE_FUTEXES
385 // A counter that is modified by signals and broadcasts. This ensures that when a waiter gives up
Ian Rogersd45f2012012-11-28 11:46:23 -0800386 // their Mutex and another thread takes it and signals, the waiting thread observes that sequence_
387 // changed and doesn't enter the wait. Modified while holding guard_, but is read by futex wait
388 // without guard_ held.
Ian Rogersb122a4b2013-11-19 18:00:50 -0800389 AtomicInteger sequence_;
Ian Rogersc604d732012-10-14 16:09:54 -0700390 // Number of threads that have come into to wait, not the length of the waiters on the futex as
Ian Rogers5bd97c42012-11-27 02:38:26 -0800391 // waiters may have been requeued onto guard_. Guarded by guard_.
Ian Rogersc604d732012-10-14 16:09:54 -0700392 volatile int32_t num_waiters_;
Ian Rogersc604d732012-10-14 16:09:54 -0700393#else
394 pthread_cond_t cond_;
395#endif
Elliott Hughes5f791332011-09-15 17:45:30 -0700396 DISALLOW_COPY_AND_ASSIGN(ConditionVariable);
397};
398
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700399// Scoped locker/unlocker for a regular Mutex that acquires mu upon construction and releases it
400// upon destruction.
401class SCOPED_LOCKABLE MutexLock {
402 public:
Ian Rogers81d425b2012-09-27 16:03:43 -0700403 explicit MutexLock(Thread* self, Mutex& mu) EXCLUSIVE_LOCK_FUNCTION(mu) : self_(self), mu_(mu) {
404 mu_.ExclusiveLock(self_);
405 }
406
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700407 ~MutexLock() UNLOCK_FUNCTION() {
Ian Rogers81d425b2012-09-27 16:03:43 -0700408 mu_.ExclusiveUnlock(self_);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700409 }
410
411 private:
Ian Rogers81d425b2012-09-27 16:03:43 -0700412 Thread* const self_;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700413 Mutex& mu_;
414 DISALLOW_COPY_AND_ASSIGN(MutexLock);
415};
416// Catch bug where variable name is omitted. "MutexLock (lock);" instead of "MutexLock mu(lock)".
417#define MutexLock(x) COMPILE_ASSERT(0, mutex_lock_declaration_missing_variable_name)
418
419// Scoped locker/unlocker for a ReaderWriterMutex that acquires read access to mu upon
420// construction and releases it upon destruction.
421class SCOPED_LOCKABLE ReaderMutexLock {
422 public:
Ian Rogers81d425b2012-09-27 16:03:43 -0700423 explicit ReaderMutexLock(Thread* self, ReaderWriterMutex& mu) EXCLUSIVE_LOCK_FUNCTION(mu) :
424 self_(self), mu_(mu) {
425 mu_.SharedLock(self_);
426 }
427
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700428 ~ReaderMutexLock() UNLOCK_FUNCTION() {
Ian Rogers81d425b2012-09-27 16:03:43 -0700429 mu_.SharedUnlock(self_);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700430 }
431
432 private:
Ian Rogers81d425b2012-09-27 16:03:43 -0700433 Thread* const self_;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700434 ReaderWriterMutex& mu_;
435 DISALLOW_COPY_AND_ASSIGN(ReaderMutexLock);
436};
437// Catch bug where variable name is omitted. "ReaderMutexLock (lock);" instead of
438// "ReaderMutexLock mu(lock)".
439#define ReaderMutexLock(x) COMPILE_ASSERT(0, reader_mutex_lock_declaration_missing_variable_name)
440
441// Scoped locker/unlocker for a ReaderWriterMutex that acquires write access to mu upon
442// construction and releases it upon destruction.
443class SCOPED_LOCKABLE WriterMutexLock {
444 public:
Ian Rogers81d425b2012-09-27 16:03:43 -0700445 explicit WriterMutexLock(Thread* self, ReaderWriterMutex& mu) EXCLUSIVE_LOCK_FUNCTION(mu) :
446 self_(self), mu_(mu) {
447 mu_.ExclusiveLock(self_);
448 }
449
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700450 ~WriterMutexLock() UNLOCK_FUNCTION() {
Ian Rogers81d425b2012-09-27 16:03:43 -0700451 mu_.ExclusiveUnlock(self_);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700452 }
453
454 private:
Ian Rogers50b35e22012-10-04 10:09:15 -0700455 Thread* const self_;
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700456 ReaderWriterMutex& mu_;
457 DISALLOW_COPY_AND_ASSIGN(WriterMutexLock);
458};
459// Catch bug where variable name is omitted. "WriterMutexLock (lock);" instead of
460// "WriterMutexLock mu(lock)".
461#define WriterMutexLock(x) COMPILE_ASSERT(0, writer_mutex_lock_declaration_missing_variable_name)
462
Ian Rogers719d1a32014-03-06 12:13:39 -0800463// Global mutexes corresponding to the levels above.
464class Locks {
465 public:
466 static void Init();
467
468 // The mutator_lock_ is used to allow mutators to execute in a shared (reader) mode or to block
469 // mutators by having an exclusive (writer) owner. In normal execution each mutator thread holds
470 // a share on the mutator_lock_. The garbage collector may also execute with shared access but
471 // at times requires exclusive access to the heap (not to be confused with the heap meta-data
472 // guarded by the heap_lock_ below). When the garbage collector requires exclusive access it asks
473 // the mutators to suspend themselves which also involves usage of the thread_suspend_count_lock_
474 // to cover weaknesses in using ReaderWriterMutexes with ConditionVariables. We use a condition
475 // variable to wait upon in the suspension logic as releasing and then re-acquiring a share on
476 // the mutator lock doesn't necessarily allow the exclusive user (e.g the garbage collector)
477 // chance to acquire the lock.
478 //
479 // Thread suspension:
480 // Shared users | Exclusive user
481 // (holding mutator lock and in kRunnable state) | .. running ..
482 // .. running .. | Request thread suspension by:
483 // .. running .. | - acquiring thread_suspend_count_lock_
484 // .. running .. | - incrementing Thread::suspend_count_ on
485 // .. running .. | all mutator threads
486 // .. running .. | - releasing thread_suspend_count_lock_
487 // .. running .. | Block trying to acquire exclusive mutator lock
488 // Poll Thread::suspend_count_ and enter full | .. blocked ..
489 // suspend code. | .. blocked ..
490 // Change state to kSuspended | .. blocked ..
491 // x: Release share on mutator_lock_ | Carry out exclusive access
492 // Acquire thread_suspend_count_lock_ | .. exclusive ..
493 // while Thread::suspend_count_ > 0 | .. exclusive ..
494 // - wait on Thread::resume_cond_ | .. exclusive ..
495 // (releases thread_suspend_count_lock_) | .. exclusive ..
496 // .. waiting .. | Release mutator_lock_
497 // .. waiting .. | Request thread resumption by:
498 // .. waiting .. | - acquiring thread_suspend_count_lock_
499 // .. waiting .. | - decrementing Thread::suspend_count_ on
500 // .. waiting .. | all mutator threads
501 // .. waiting .. | - notifying on Thread::resume_cond_
502 // - re-acquire thread_suspend_count_lock_ | - releasing thread_suspend_count_lock_
503 // Release thread_suspend_count_lock_ | .. running ..
504 // Acquire share on mutator_lock_ | .. running ..
505 // - This could block but the thread still | .. running ..
506 // has a state of kSuspended and so this | .. running ..
507 // isn't an issue. | .. running ..
508 // Acquire thread_suspend_count_lock_ | .. running ..
509 // - we poll here as we're transitioning into | .. running ..
510 // kRunnable and an individual thread suspend | .. running ..
511 // request (e.g for debugging) won't try | .. running ..
512 // to acquire the mutator lock (which would | .. running ..
513 // block as we hold the mutator lock). This | .. running ..
514 // poll ensures that if the suspender thought | .. running ..
515 // we were suspended by incrementing our | .. running ..
516 // Thread::suspend_count_ and then reading | .. running ..
517 // our state we go back to waiting on | .. running ..
518 // Thread::resume_cond_. | .. running ..
519 // can_go_runnable = Thread::suspend_count_ == 0 | .. running ..
520 // Release thread_suspend_count_lock_ | .. running ..
521 // if can_go_runnable | .. running ..
522 // Change state to kRunnable | .. running ..
523 // else | .. running ..
524 // Goto x | .. running ..
525 // .. running .. | .. running ..
526 static ReaderWriterMutex* mutator_lock_;
527
528 // Allow reader-writer mutual exclusion on the mark and live bitmaps of the heap.
529 static ReaderWriterMutex* heap_bitmap_lock_ ACQUIRED_AFTER(mutator_lock_);
530
531 // Guards shutdown of the runtime.
532 static Mutex* runtime_shutdown_lock_ ACQUIRED_AFTER(heap_bitmap_lock_);
533
534 // The thread_list_lock_ guards ThreadList::list_. It is also commonly held to stop threads
535 // attaching and detaching.
536 static Mutex* thread_list_lock_ ACQUIRED_AFTER(runtime_shutdown_lock_);
537
538 // Guards breakpoints.
539 static Mutex* breakpoint_lock_ ACQUIRED_AFTER(thread_list_lock_);
540
Ian Rogers719d1a32014-03-06 12:13:39 -0800541 // Guards trace requests.
Sebastien Hertz4d25df32014-03-21 17:44:46 +0100542 static Mutex* trace_lock_ ACQUIRED_AFTER(breakpoint_lock_);
Ian Rogers719d1a32014-03-06 12:13:39 -0800543
544 // Guards profile objects.
545 static Mutex* profiler_lock_ ACQUIRED_AFTER(trace_lock_);
546
547 // Guards lists of classes within the class linker.
548 static ReaderWriterMutex* classlinker_classes_lock_ ACQUIRED_AFTER(profiler_lock_);
549
550 // When declaring any Mutex add DEFAULT_MUTEX_ACQUIRED_AFTER to use annotalysis to check the code
551 // doesn't try to hold a higher level Mutex.
552 #define DEFAULT_MUTEX_ACQUIRED_AFTER ACQUIRED_AFTER(Locks::classlinker_classes_lock_)
553
554 // Guards intern table.
555 static Mutex* intern_table_lock_ ACQUIRED_AFTER(classlinker_classes_lock_);
556
557 // Have an exclusive aborting thread.
558 static Mutex* abort_lock_ ACQUIRED_AFTER(classlinker_classes_lock_);
559
560 // Allow mutual exclusion when manipulating Thread::suspend_count_.
561 // TODO: Does the trade-off of a per-thread lock make sense?
562 static Mutex* thread_suspend_count_lock_ ACQUIRED_AFTER(abort_lock_);
563
564 // One unexpected signal at a time lock.
565 static Mutex* unexpected_signal_lock_ ACQUIRED_AFTER(thread_suspend_count_lock_);
566
567 // Have an exclusive logging thread.
568 static Mutex* logging_lock_ ACQUIRED_AFTER(unexpected_signal_lock_);
569};
570
Elliott Hughes8daa0922011-09-11 13:46:25 -0700571} // namespace art
572
Brian Carlstromfc0e3212013-07-17 14:40:12 -0700573#endif // ART_RUNTIME_BASE_MUTEX_H_