289 lines
10 KiB
C++
289 lines
10 KiB
C++
/*
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* Copyright (C) 2008 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef ART_RUNTIME_MONITOR_H_
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#define ART_RUNTIME_MONITOR_H_
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#include <pthread.h>
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#include <stdint.h>
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#include <iosfwd>
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#include <list>
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#include <vector>
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#include "atomic.h"
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#include "base/allocator.h"
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#include "base/mutex.h"
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#include "gc_root.h"
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#include "object_callbacks.h"
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#include "read_barrier_option.h"
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#include "thread_state.h"
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namespace art {
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class LockWord;
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template<class T> class Handle;
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class Thread;
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class StackVisitor;
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typedef uint32_t MonitorId;
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namespace mirror {
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class ArtMethod;
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class Object;
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} // namespace mirror
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class Monitor {
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public:
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// The default number of spins that are done before thread suspension is used to forcibly inflate
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// a lock word. See Runtime::max_spins_before_thin_lock_inflation_.
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constexpr static size_t kDefaultMaxSpinsBeforeThinLockInflation = 50;
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~Monitor();
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static bool IsSensitiveThread();
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static void Init(uint32_t lock_profiling_threshold, bool (*is_sensitive_thread_hook)());
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// Return the thread id of the lock owner or 0 when there is no owner.
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static uint32_t GetLockOwnerThreadId(mirror::Object* obj)
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NO_THREAD_SAFETY_ANALYSIS; // TODO: Reading lock owner without holding lock is racy.
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static mirror::Object* MonitorEnter(Thread* thread, mirror::Object* obj)
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EXCLUSIVE_LOCK_FUNCTION(obj)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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static bool MonitorExit(Thread* thread, mirror::Object* obj)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_)
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UNLOCK_FUNCTION(obj);
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static void Notify(Thread* self, mirror::Object* obj)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
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DoNotify(self, obj, false);
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}
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static void NotifyAll(Thread* self, mirror::Object* obj)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
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DoNotify(self, obj, true);
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}
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static void Wait(Thread* self, mirror::Object* obj, int64_t ms, int32_t ns,
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bool interruptShouldThrow, ThreadState why)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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static void DescribeWait(std::ostream& os, const Thread* thread)
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LOCKS_EXCLUDED(Locks::thread_suspend_count_lock_)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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// Used to implement JDWP's ThreadReference.CurrentContendedMonitor.
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static mirror::Object* GetContendedMonitor(Thread* thread)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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// Calls 'callback' once for each lock held in the single stack frame represented by
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// the current state of 'stack_visitor'.
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// The abort_on_failure flag allows to not die when the state of the runtime is unorderly. This
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// is necessary when we have already aborted but want to dump the stack as much as we can.
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static void VisitLocks(StackVisitor* stack_visitor, void (*callback)(mirror::Object*, void*),
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void* callback_context, bool abort_on_failure = true)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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static bool IsValidLockWord(LockWord lock_word);
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template<ReadBarrierOption kReadBarrierOption = kWithReadBarrier>
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mirror::Object* GetObject() SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
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return obj_.Read<kReadBarrierOption>();
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}
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void SetObject(mirror::Object* object);
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Thread* GetOwner() const NO_THREAD_SAFETY_ANALYSIS {
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return owner_;
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}
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int32_t GetHashCode();
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bool IsLocked() SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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bool HasHashCode() const {
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return hash_code_.LoadRelaxed() != 0;
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}
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MonitorId GetMonitorId() const {
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return monitor_id_;
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}
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// Inflate the lock on obj. May fail to inflate for spurious reasons, always re-check.
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static void InflateThinLocked(Thread* self, Handle<mirror::Object> obj, LockWord lock_word,
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uint32_t hash_code) NO_THREAD_SAFETY_ANALYSIS;
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static bool Deflate(Thread* self, mirror::Object* obj)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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private:
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explicit Monitor(Thread* self, Thread* owner, mirror::Object* obj, int32_t hash_code)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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explicit Monitor(Thread* self, Thread* owner, mirror::Object* obj, int32_t hash_code,
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MonitorId id) SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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// Install the monitor into its object, may fail if another thread installs a different monitor
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// first.
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bool Install(Thread* self)
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LOCKS_EXCLUDED(monitor_lock_)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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void AppendToWaitSet(Thread* thread) EXCLUSIVE_LOCKS_REQUIRED(monitor_lock_);
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void RemoveFromWaitSet(Thread* thread) EXCLUSIVE_LOCKS_REQUIRED(monitor_lock_);
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/*
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* Changes the shape of a monitor from thin to fat, preserving the internal lock state. The
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* calling thread must own the lock or the owner must be suspended. There's a race with other
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* threads inflating the lock, installing hash codes and spurious failures. The caller should
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* re-read the lock word following the call.
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*/
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static void Inflate(Thread* self, Thread* owner, mirror::Object* obj, int32_t hash_code)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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void LogContentionEvent(Thread* self, uint32_t wait_ms, uint32_t sample_percent,
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const char* owner_filename, uint32_t owner_line_number)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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static void FailedUnlock(mirror::Object* obj, Thread* expected_owner, Thread* found_owner, Monitor* mon)
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LOCKS_EXCLUDED(Locks::thread_list_lock_)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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void Lock(Thread* self)
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LOCKS_EXCLUDED(monitor_lock_)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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bool Unlock(Thread* thread)
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LOCKS_EXCLUDED(monitor_lock_)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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static void DoNotify(Thread* self, mirror::Object* obj, bool notify_all)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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void Notify(Thread* self)
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LOCKS_EXCLUDED(monitor_lock_)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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void NotifyAll(Thread* self)
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LOCKS_EXCLUDED(monitor_lock_)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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void Wait(Thread* self, int64_t msec, int32_t nsec, bool interruptShouldThrow, ThreadState why)
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LOCKS_EXCLUDED(monitor_lock_)
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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// Translates the provided method and pc into its declaring class' source file and line number.
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void TranslateLocation(mirror::ArtMethod* method, uint32_t pc,
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const char** source_file, uint32_t* line_number) const
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SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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uint32_t GetOwnerThreadId();
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static bool (*is_sensitive_thread_hook_)();
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static uint32_t lock_profiling_threshold_;
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Mutex monitor_lock_ DEFAULT_MUTEX_ACQUIRED_AFTER;
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ConditionVariable monitor_contenders_ GUARDED_BY(monitor_lock_);
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// Number of people waiting on the condition.
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size_t num_waiters_ GUARDED_BY(monitor_lock_);
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// Which thread currently owns the lock?
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Thread* volatile owner_ GUARDED_BY(monitor_lock_);
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// Owner's recursive lock depth.
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int lock_count_ GUARDED_BY(monitor_lock_);
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// What object are we part of. This is a weak root. Do not access
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// this directly, use GetObject() to read it so it will be guarded
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// by a read barrier.
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GcRoot<mirror::Object> obj_;
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// Threads currently waiting on this monitor.
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Thread* wait_set_ GUARDED_BY(monitor_lock_);
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// Stored object hash code, generated lazily by GetHashCode.
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AtomicInteger hash_code_;
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// Method and dex pc where the lock owner acquired the lock, used when lock
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// sampling is enabled. locking_method_ may be null if the lock is currently
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// unlocked, or if the lock is acquired by the system when the stack is empty.
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mirror::ArtMethod* locking_method_ GUARDED_BY(monitor_lock_);
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uint32_t locking_dex_pc_ GUARDED_BY(monitor_lock_);
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// The denser encoded version of this monitor as stored in the lock word.
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MonitorId monitor_id_;
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#ifdef __LP64__
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// Free list for monitor pool.
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Monitor* next_free_ GUARDED_BY(Locks::allocated_monitor_ids_lock_);
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#endif
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friend class MonitorInfo;
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friend class MonitorList;
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friend class MonitorPool;
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friend class mirror::Object;
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DISALLOW_COPY_AND_ASSIGN(Monitor);
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};
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class MonitorList {
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public:
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MonitorList();
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~MonitorList();
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void Add(Monitor* m);
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void SweepMonitorList(IsMarkedCallback* callback, void* arg)
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LOCKS_EXCLUDED(monitor_list_lock_) SHARED_LOCKS_REQUIRED(Locks::mutator_lock_);
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void DisallowNewMonitors() LOCKS_EXCLUDED(monitor_list_lock_);
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void AllowNewMonitors() LOCKS_EXCLUDED(monitor_list_lock_);
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// Returns how many monitors were deflated.
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size_t DeflateMonitors() LOCKS_EXCLUDED(monitor_list_lock_)
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EXCLUSIVE_LOCKS_REQUIRED(Locks::mutator_lock_);
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typedef std::list<Monitor*, TrackingAllocator<Monitor*, kAllocatorTagMonitorList>> Monitors;
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private:
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// During sweeping we may free an object and on a separate thread have an object created using
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// the newly freed memory. That object may then have its lock-word inflated and a monitor created.
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// If we allow new monitor registration during sweeping this monitor may be incorrectly freed as
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// the object wasn't marked when sweeping began.
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bool allow_new_monitors_ GUARDED_BY(monitor_list_lock_);
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Mutex monitor_list_lock_ DEFAULT_MUTEX_ACQUIRED_AFTER;
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ConditionVariable monitor_add_condition_ GUARDED_BY(monitor_list_lock_);
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Monitors list_ GUARDED_BY(monitor_list_lock_);
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friend class Monitor;
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DISALLOW_COPY_AND_ASSIGN(MonitorList);
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};
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// Collects information about the current state of an object's monitor.
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// This is very unsafe, and must only be called when all threads are suspended.
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// For use only by the JDWP implementation.
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class MonitorInfo {
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public:
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explicit MonitorInfo(mirror::Object* o) EXCLUSIVE_LOCKS_REQUIRED(Locks::mutator_lock_);
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Thread* owner_;
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size_t entry_count_;
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std::vector<Thread*> waiters_;
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private:
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DISALLOW_COPY_AND_ASSIGN(MonitorInfo);
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};
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} // namespace art
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#endif // ART_RUNTIME_MONITOR_H_
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