author | erikj |
Tue, 12 Sep 2017 19:03:39 +0200 | |
changeset 47216 | 71c04702a3d5 |
parent 46342 | hotspot/src/share/vm/runtime/objectMonitor.hpp@c871e0f8b02a |
child 47634 | 6a0c42c40cd1 |
permissions | -rw-r--r-- |
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/* |
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* Copyright (c) 1998, 2016, Oracle and/or its affiliates. All rights reserved. |
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
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* |
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* This code is free software; you can redistribute it and/or modify it |
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* under the terms of the GNU General Public License version 2 only, as |
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* published by the Free Software Foundation. |
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* |
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* This code is distributed in the hope that it will be useful, but WITHOUT |
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
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* version 2 for more details (a copy is included in the LICENSE file that |
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* accompanied this code). |
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* |
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* You should have received a copy of the GNU General Public License version |
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* 2 along with this work; if not, write to the Free Software Foundation, |
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
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* |
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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* or visit www.oracle.com if you need additional information or have any |
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* questions. |
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* |
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*/ |
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#ifndef SHARE_VM_RUNTIME_OBJECTMONITOR_HPP |
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#define SHARE_VM_RUNTIME_OBJECTMONITOR_HPP |
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#include "memory/padded.hpp" |
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#include "runtime/os.hpp" |
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#include "runtime/park.hpp" |
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#include "runtime/perfData.hpp" |
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// ObjectWaiter serves as a "proxy" or surrogate thread. |
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// TODO-FIXME: Eliminate ObjectWaiter and use the thread-specific |
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// ParkEvent instead. Beware, however, that the JVMTI code |
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// knows about ObjectWaiters, so we'll have to reconcile that code. |
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// See next_waiter(), first_waiter(), etc. |
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class ObjectWaiter : public StackObj { |
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public: |
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enum TStates { TS_UNDEF, TS_READY, TS_RUN, TS_WAIT, TS_ENTER, TS_CXQ }; |
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enum Sorted { PREPEND, APPEND, SORTED }; |
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ObjectWaiter * volatile _next; |
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ObjectWaiter * volatile _prev; |
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Thread* _thread; |
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jlong _notifier_tid; |
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ParkEvent * _event; |
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volatile int _notified; |
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volatile TStates TState; |
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Sorted _Sorted; // List placement disposition |
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bool _active; // Contention monitoring is enabled |
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public: |
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ObjectWaiter(Thread* thread); |
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void wait_reenter_begin(ObjectMonitor *mon); |
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void wait_reenter_end(ObjectMonitor *mon); |
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}; |
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// forward declaration to avoid include tracing.hpp |
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class EventJavaMonitorWait; |
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// The ObjectMonitor class implements the heavyweight version of a |
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// JavaMonitor. The lightweight BasicLock/stack lock version has been |
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// inflated into an ObjectMonitor. This inflation is typically due to |
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// contention or use of Object.wait(). |
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// |
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// WARNING: This is a very sensitive and fragile class. DO NOT make any |
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// changes unless you are fully aware of the underlying semantics. |
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// |
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// Class JvmtiRawMonitor currently inherits from ObjectMonitor so |
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// changes in this class must be careful to not break JvmtiRawMonitor. |
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// These two subsystems should be separated. |
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// |
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// ObjectMonitor Layout Overview/Highlights/Restrictions: |
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// |
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// - The _header field must be at offset 0 because the displaced header |
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// from markOop is stored there. We do not want markOop.hpp to include |
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// ObjectMonitor.hpp to avoid exposing ObjectMonitor everywhere. This |
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// means that ObjectMonitor cannot inherit from any other class nor can |
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// it use any virtual member functions. This restriction is critical to |
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// the proper functioning of the VM. |
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// - The _header and _owner fields should be separated by enough space |
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// to avoid false sharing due to parallel access by different threads. |
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// This is an advisory recommendation. |
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// - The general layout of the fields in ObjectMonitor is: |
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// _header |
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// <lightly_used_fields> |
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// <optional padding> |
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// _owner |
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// <remaining_fields> |
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// - The VM assumes write ordering and machine word alignment with |
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// respect to the _owner field and the <remaining_fields> that can |
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// be read in parallel by other threads. |
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// - Generally fields that are accessed closely together in time should |
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// be placed proximally in space to promote data cache locality. That |
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// is, temporal locality should condition spatial locality. |
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// - We have to balance avoiding false sharing with excessive invalidation |
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// from coherence traffic. As such, we try to cluster fields that tend |
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// to be _written_ at approximately the same time onto the same data |
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// cache line. |
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// - We also have to balance the natural tension between minimizing |
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// single threaded capacity misses with excessive multi-threaded |
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// coherency misses. There is no single optimal layout for both |
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// single-threaded and multi-threaded environments. |
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// |
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// - See ObjectMonitor::sanity_checks() for how critical restrictions are |
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// enforced and advisory recommendations are reported. |
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// - Adjacent ObjectMonitors should be separated by enough space to avoid |
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// false sharing. This is handled by the ObjectMonitor allocation code |
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// in synchronizer.cpp. Also see ObjectSynchronizer::sanity_checks(). |
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// |
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// Futures notes: |
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// - Separating _owner from the <remaining_fields> by enough space to |
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// avoid false sharing might be profitable. Given |
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// http://blogs.oracle.com/dave/entry/cas_and_cache_trivia_invalidate |
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// we know that the CAS in monitorenter will invalidate the line |
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// underlying _owner. We want to avoid an L1 data cache miss on that |
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// same line for monitorexit. Putting these <remaining_fields>: |
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// _recursions, _EntryList, _cxq, and _succ, all of which may be |
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// fetched in the inflated unlock path, on a different cache line |
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// would make them immune to CAS-based invalidation from the _owner |
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// field. |
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// |
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// - The _recursions field should be of type int, or int32_t but not |
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// intptr_t. There's no reason to use a 64-bit type for this field |
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// in a 64-bit JVM. |
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class ObjectMonitor { |
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public: |
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enum { |
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OM_OK, // no error |
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OM_SYSTEM_ERROR, // operating system error |
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OM_ILLEGAL_MONITOR_STATE, // IllegalMonitorStateException |
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OM_INTERRUPTED, // Thread.interrupt() |
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OM_TIMED_OUT // Object.wait() timed out |
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}; |
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private: |
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friend class ObjectSynchronizer; |
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friend class ObjectWaiter; |
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friend class VMStructs; |
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volatile markOop _header; // displaced object header word - mark |
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void* volatile _object; // backward object pointer - strong root |
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public: |
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ObjectMonitor * FreeNext; // Free list linkage |
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private: |
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DEFINE_PAD_MINUS_SIZE(0, DEFAULT_CACHE_LINE_SIZE, |
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sizeof(volatile markOop) + sizeof(void * volatile) + |
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sizeof(ObjectMonitor *)); |
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protected: // protected for JvmtiRawMonitor |
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void * volatile _owner; // pointer to owning thread OR BasicLock |
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volatile jlong _previous_owner_tid; // thread id of the previous owner of the monitor |
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volatile intptr_t _recursions; // recursion count, 0 for first entry |
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ObjectWaiter * volatile _EntryList; // Threads blocked on entry or reentry. |
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// The list is actually composed of WaitNodes, |
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// acting as proxies for Threads. |
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private: |
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ObjectWaiter * volatile _cxq; // LL of recently-arrived threads blocked on entry. |
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Thread * volatile _succ; // Heir presumptive thread - used for futile wakeup throttling |
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Thread * volatile _Responsible; |
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|
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volatile int _Spinner; // for exit->spinner handoff optimization |
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volatile int _SpinDuration; |
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volatile jint _count; // reference count to prevent reclamation/deflation |
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// at stop-the-world time. See deflate_idle_monitors(). |
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// _count is approximately |_WaitSet| + |_EntryList| |
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protected: |
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ObjectWaiter * volatile _WaitSet; // LL of threads wait()ing on the monitor |
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171 |
volatile jint _waiters; // number of waiting threads |
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172 |
private: |
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173 |
volatile int _WaitSetLock; // protects Wait Queue - simple spinlock |
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174 |
|
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175 |
public: |
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176 |
static void Initialize(); |
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177 |
|
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// Only perform a PerfData operation if the PerfData object has been |
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179 |
// allocated and if the PerfDataManager has not freed the PerfData |
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180 |
// objects which can happen at normal VM shutdown. |
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181 |
// |
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182 |
#define OM_PERFDATA_OP(f, op_str) \ |
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183 |
do { \ |
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184 |
if (ObjectMonitor::_sync_ ## f != NULL && \ |
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185 |
PerfDataManager::has_PerfData()) { \ |
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186 |
ObjectMonitor::_sync_ ## f->op_str; \ |
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187 |
} \ |
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188 |
} while (0) |
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189 |
|
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static PerfCounter * _sync_ContendedLockAttempts; |
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191 |
static PerfCounter * _sync_FutileWakeups; |
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192 |
static PerfCounter * _sync_Parks; |
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static PerfCounter * _sync_EmptyNotifications; |
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static PerfCounter * _sync_Notifications; |
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static PerfCounter * _sync_SlowEnter; |
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static PerfCounter * _sync_SlowExit; |
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static PerfCounter * _sync_SlowNotify; |
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static PerfCounter * _sync_SlowNotifyAll; |
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199 |
static PerfCounter * _sync_FailedSpins; |
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200 |
static PerfCounter * _sync_SuccessfulSpins; |
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201 |
static PerfCounter * _sync_PrivateA; |
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202 |
static PerfCounter * _sync_PrivateB; |
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203 |
static PerfCounter * _sync_MonInCirculation; |
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204 |
static PerfCounter * _sync_MonScavenged; |
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205 |
static PerfCounter * _sync_Inflations; |
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206 |
static PerfCounter * _sync_Deflations; |
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207 |
static PerfLongVariable * _sync_MonExtant; |
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208 |
|
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209 |
static int Knob_ExitRelease; |
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210 |
static int Knob_Verbose; |
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211 |
static int Knob_VerifyInUse; |
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static int Knob_VerifyMatch; |
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static int Knob_SpinLimit; |
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214 |
|
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215 |
void* operator new (size_t size) throw() { |
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return AllocateHeap(size, mtInternal); |
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217 |
} |
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void* operator new[] (size_t size) throw() { |
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return operator new (size); |
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220 |
} |
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221 |
void operator delete(void* p) { |
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222 |
FreeHeap(p); |
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223 |
} |
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224 |
void operator delete[] (void *p) { |
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225 |
operator delete(p); |
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226 |
} |
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227 |
|
1 | 228 |
// TODO-FIXME: the "offset" routines should return a type of off_t instead of int ... |
229 |
// ByteSize would also be an appropriate type. |
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static int header_offset_in_bytes() { return offset_of(ObjectMonitor, _header); } |
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231 |
static int object_offset_in_bytes() { return offset_of(ObjectMonitor, _object); } |
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232 |
static int owner_offset_in_bytes() { return offset_of(ObjectMonitor, _owner); } |
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233 |
static int count_offset_in_bytes() { return offset_of(ObjectMonitor, _count); } |
1 | 234 |
static int recursions_offset_in_bytes() { return offset_of(ObjectMonitor, _recursions); } |
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static int cxq_offset_in_bytes() { return offset_of(ObjectMonitor, _cxq); } |
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236 |
static int succ_offset_in_bytes() { return offset_of(ObjectMonitor, _succ); } |
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237 |
static int EntryList_offset_in_bytes() { return offset_of(ObjectMonitor, _EntryList); } |
1 | 238 |
|
27608 | 239 |
// ObjectMonitor references can be ORed with markOopDesc::monitor_value |
240 |
// as part of the ObjectMonitor tagging mechanism. When we combine an |
|
241 |
// ObjectMonitor reference with an offset, we need to remove the tag |
|
242 |
// value in order to generate the proper address. |
|
243 |
// |
|
244 |
// We can either adjust the ObjectMonitor reference and then add the |
|
245 |
// offset or we can adjust the offset that is added to the ObjectMonitor |
|
246 |
// reference. The latter avoids an AGI (Address Generation Interlock) |
|
247 |
// stall so the helper macro adjusts the offset value that is returned |
|
248 |
// to the ObjectMonitor reference manipulation code: |
|
249 |
// |
|
250 |
#define OM_OFFSET_NO_MONITOR_VALUE_TAG(f) \ |
|
251 |
((ObjectMonitor::f ## _offset_in_bytes()) - markOopDesc::monitor_value) |
|
252 |
||
1 | 253 |
markOop header() const; |
254 |
void set_header(markOop hdr); |
|
255 |
||
6975 | 256 |
intptr_t is_busy() const { |
257 |
// TODO-FIXME: merge _count and _waiters. |
|
258 |
// TODO-FIXME: assert _owner == null implies _recursions = 0 |
|
259 |
// TODO-FIXME: assert _WaitSet != null implies _count > 0 |
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260 |
return _count|_waiters|intptr_t(_owner)|intptr_t(_cxq)|intptr_t(_EntryList); |
6975 | 261 |
} |
262 |
||
1 | 263 |
intptr_t is_entered(Thread* current) const; |
264 |
||
265 |
void* owner() const; |
|
266 |
void set_owner(void* owner); |
|
267 |
||
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268 |
jint waiters() const; |
1 | 269 |
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270 |
jint count() const; |
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271 |
void set_count(jint count); |
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272 |
jint contentions() const; |
6975 | 273 |
intptr_t recursions() const { return _recursions; } |
1 | 274 |
|
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275 |
// JVM/TI GetObjectMonitorUsage() needs this: |
6975 | 276 |
ObjectWaiter* first_waiter() { return _WaitSet; } |
277 |
ObjectWaiter* next_waiter(ObjectWaiter* o) { return o->_next; } |
|
278 |
Thread* thread_of_waiter(ObjectWaiter* o) { return o->_thread; } |
|
279 |
||
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280 |
protected: |
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281 |
// We don't typically expect or want the ctors or dtors to run. |
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282 |
// normal ObjectMonitors are type-stable and immortal. |
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283 |
ObjectMonitor() { ::memset((void *)this, 0, sizeof(*this)); } |
1 | 284 |
|
6975 | 285 |
~ObjectMonitor() { |
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286 |
// TODO: Add asserts ... |
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287 |
// _cxq == 0 _succ == NULL _owner == NULL _waiters == 0 |
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288 |
// _count == 0 _EntryList == NULL etc |
6975 | 289 |
} |
290 |
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291 |
private: |
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292 |
void Recycle() { |
6975 | 293 |
// TODO: add stronger asserts ... |
294 |
// _cxq == 0 _succ == NULL _owner == NULL _waiters == 0 |
|
295 |
// _count == 0 EntryList == NULL |
|
296 |
// _recursions == 0 _WaitSet == NULL |
|
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297 |
assert(((is_busy()|_recursions) == 0), "freeing inuse monitor"); |
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298 |
_succ = NULL; |
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299 |
_EntryList = NULL; |
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300 |
_cxq = NULL; |
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301 |
_WaitSet = NULL; |
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302 |
_recursions = 0; |
6975 | 303 |
} |
304 |
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305 |
public: |
1 | 306 |
|
307 |
void* object() const; |
|
308 |
void* object_addr(); |
|
309 |
void set_object(void* obj); |
|
310 |
||
311 |
bool check(TRAPS); // true if the thread owns the monitor. |
|
312 |
void check_slow(TRAPS); |
|
313 |
void clear(); |
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314 |
static void sanity_checks(); // public for -XX:+ExecuteInternalVMTests |
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315 |
// in PRODUCT for -XX:SyncKnobs=Verbose=1 |
1 | 316 |
|
317 |
void enter(TRAPS); |
|
18025 | 318 |
void exit(bool not_suspended, TRAPS); |
1 | 319 |
void wait(jlong millis, bool interruptable, TRAPS); |
320 |
void notify(TRAPS); |
|
321 |
void notifyAll(TRAPS); |
|
322 |
||
323 |
// Use the following at your own risk |
|
324 |
intptr_t complete_exit(TRAPS); |
|
325 |
void reenter(intptr_t recursions, TRAPS); |
|
326 |
||
327 |
private: |
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328 |
void AddWaiter(ObjectWaiter * waiter); |
6975 | 329 |
static void DeferredInitialize(); |
31856 | 330 |
void INotify(Thread * Self); |
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331 |
ObjectWaiter * DequeueWaiter(); |
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332 |
void DequeueSpecificWaiter(ObjectWaiter * waiter); |
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333 |
void EnterI(TRAPS); |
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334 |
void ReenterI(Thread * Self, ObjectWaiter * SelfNode); |
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335 |
void UnlinkAfterAcquire(Thread * Self, ObjectWaiter * SelfNode); |
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336 |
int TryLock(Thread * Self); |
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int NotRunnable(Thread * Self, Thread * Owner); |
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int TrySpin(Thread * Self); |
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void ExitEpilog(Thread * Self, ObjectWaiter * Wakee); |
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bool ExitSuspendEquivalent(JavaThread * Self); |
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void post_monitor_wait_event(EventJavaMonitorWait * event, |
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jlong notifier_tid, |
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jlong timeout, |
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bool timedout); |
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}; |
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#undef TEVENT |
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#define TEVENT(nom) { if (SyncVerbose) FEVENT(nom); } |
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#define FEVENT(nom) \ |
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{ \ |
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static volatile int ctr = 0; \ |
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int v = ++ctr; \ |
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if ((v & (v - 1)) == 0) { \ |
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tty->print_cr("INFO: " #nom " : %d", v); \ |
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tty->flush(); \ |
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} \ |
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} |
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#undef TEVENT |
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#define TEVENT(nom) {;} |
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#endif // SHARE_VM_RUNTIME_OBJECTMONITOR_HPP |