hotspot/src/share/vm/memory/gcLocker.cpp
author apetrusenko
Tue, 01 Apr 2008 15:13:47 +0400
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child 670 ddf3e9583f2f
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6539517: CR 6186200 should be extended to perm gen allocation to prevent spurious OOM's from perm gen Reviewed-by: ysr, jmasa
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/*
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 * Copyright 1997-2007 Sun Microsystems, Inc.  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 Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
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 * CA 95054 USA or visit www.sun.com if you need additional information or
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 * have any questions.
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 *
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 */
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# include "incls/_precompiled.incl"
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# include "incls/_gcLocker.cpp.incl"
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volatile jint GC_locker::_jni_lock_count = 0;
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volatile jint GC_locker::_lock_count     = 0;
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volatile bool GC_locker::_needs_gc       = false;
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volatile bool GC_locker::_doing_gc       = false;
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void GC_locker::stall_until_clear() {
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  assert(!JavaThread::current()->in_critical(), "Would deadlock");
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  if (PrintJNIGCStalls && PrintGCDetails) {
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    ResourceMark rm; // JavaThread::name() allocates to convert to UTF8
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    gclog_or_tty->print_cr(
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      "Allocation failed. Thread \"%s\" is stalled by JNI critical section.",
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      JavaThread::current()->name());
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  }
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  MutexLocker   ml(JNICritical_lock);
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  // Wait for _needs_gc  to be cleared
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  while (GC_locker::needs_gc()) {
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    JNICritical_lock->wait();
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  }
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}
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void GC_locker::jni_lock_slow() {
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  MutexLocker mu(JNICritical_lock);
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  // Block entering threads if we know at least one thread is in a
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  // JNI critical region and we need a GC.
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  // We check that at least one thread is in a critical region before
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  // blocking because blocked threads are woken up by a thread exiting
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  // a JNI critical region.
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  while ((is_jni_active() && needs_gc()) || _doing_gc) {
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    JNICritical_lock->wait();
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  }
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  jni_lock();
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}
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void GC_locker::jni_unlock_slow() {
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  MutexLocker mu(JNICritical_lock);
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  jni_unlock();
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  if (needs_gc() && !is_jni_active()) {
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    // We're the last thread out. Cause a GC to occur.
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    // GC will also check is_active, so this check is not
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    // strictly needed. It's added here to make it clear that
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    // the GC will NOT be performed if any other caller
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    // of GC_locker::lock() still needs GC locked.
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    if (!is_active()) {
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      _doing_gc = true;
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      {
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        // Must give up the lock while at a safepoint
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        MutexUnlocker munlock(JNICritical_lock);
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        Universe::heap()->collect(GCCause::_gc_locker);
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      }
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      _doing_gc = false;
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    }
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    clear_needs_gc();
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    JNICritical_lock->notify_all();
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  }
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}
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// Implementation of No_GC_Verifier
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#ifdef ASSERT
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No_GC_Verifier::No_GC_Verifier(bool verifygc) {
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  _verifygc = verifygc;
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  if (_verifygc) {
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    CollectedHeap* h = Universe::heap();
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    assert(!h->is_gc_active(), "GC active during No_GC_Verifier");
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    _old_invocations = h->total_collections();
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  }
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}
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No_GC_Verifier::~No_GC_Verifier() {
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  if (_verifygc) {
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    CollectedHeap* h = Universe::heap();
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    assert(!h->is_gc_active(), "GC active during No_GC_Verifier");
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    if (_old_invocations != h->total_collections()) {
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      fatal("collection in a No_GC_Verifier secured function");
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    }
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  }
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}
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Pause_No_GC_Verifier::Pause_No_GC_Verifier(No_GC_Verifier * ngcv) {
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  _ngcv = ngcv;
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  if (_ngcv->_verifygc) {
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    // if we were verifying, then make sure that nothing is
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    // wrong before we "pause" verification
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    CollectedHeap* h = Universe::heap();
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    assert(!h->is_gc_active(), "GC active during No_GC_Verifier");
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    if (_ngcv->_old_invocations != h->total_collections()) {
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      fatal("collection in a No_GC_Verifier secured function");
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    }
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  }
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}
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Pause_No_GC_Verifier::~Pause_No_GC_Verifier() {
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  if (_ngcv->_verifygc) {
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    // if we were verifying before, then reenable verification
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    CollectedHeap* h = Universe::heap();
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    assert(!h->is_gc_active(), "GC active during No_GC_Verifier");
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    _ngcv->_old_invocations = h->total_collections();
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  }
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}
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// JRT_LEAF rules:
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// A JRT_LEAF method may not interfere with safepointing by
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//   1) acquiring or blocking on a Mutex or JavaLock - checked
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//   2) allocating heap memory - checked
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//   3) executing a VM operation - checked
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//   4) executing a system call (including malloc) that could block or grab a lock
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//   5) invoking GC
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//   6) reaching a safepoint
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//   7) running too long
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// Nor may any method it calls.
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JRT_Leaf_Verifier::JRT_Leaf_Verifier()
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  : No_Safepoint_Verifier(true, JRT_Leaf_Verifier::should_verify_GC())
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{
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}
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JRT_Leaf_Verifier::~JRT_Leaf_Verifier()
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{
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}
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bool JRT_Leaf_Verifier::should_verify_GC() {
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  switch (JavaThread::current()->thread_state()) {
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  case _thread_in_Java:
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    // is in a leaf routine, there must be no safepoint.
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    return true;
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  case _thread_in_native:
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    // A native thread is not subject to safepoints.
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    // Even while it is in a leaf routine, GC is ok
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    return false;
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  default:
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    // Leaf routines cannot be called from other contexts.
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    ShouldNotReachHere();
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    return false;
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  }
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}
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#endif