author | jprovino |
Tue, 02 Aug 2016 16:39:33 -0400 | |
changeset 40328 | a2851f5f1cf6 |
parent 39979 | b17e445924da |
child 40655 | 9f644073d3a0 |
permissions | -rw-r--r-- |
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/* |
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* Copyright (c) 2001, 2015, 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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#include "precompiled.hpp" |
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#include "classfile/javaClasses.hpp" |
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#include "classfile/symbolTable.hpp" |
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#include "classfile/systemDictionary.hpp" |
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#include "classfile/vmSymbols.hpp" |
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#include "code/codeCache.hpp" |
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#include "code/icBuffer.hpp" |
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#include "gc/g1/g1MarkSweep.hpp" |
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#include "gc/g1/g1RootProcessor.hpp" |
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#include "gc/g1/g1StringDedup.hpp" |
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#include "gc/serial/markSweep.inline.hpp" |
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#include "gc/shared/gcHeapSummary.hpp" |
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#include "gc/shared/gcLocker.hpp" |
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#include "gc/shared/gcTimer.hpp" |
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#include "gc/shared/gcTrace.hpp" |
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#include "gc/shared/gcTraceTime.inline.hpp" |
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#include "gc/shared/genCollectedHeap.hpp" |
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#include "gc/shared/modRefBarrierSet.hpp" |
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#include "gc/shared/referencePolicy.hpp" |
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#include "gc/shared/space.hpp" |
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#include "oops/instanceRefKlass.hpp" |
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#include "oops/oop.inline.hpp" |
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#include "prims/jvmtiExport.hpp" |
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#include "runtime/atomic.inline.hpp" |
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#include "runtime/biasedLocking.hpp" |
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#include "runtime/fprofiler.hpp" |
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#include "runtime/synchronizer.hpp" |
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#include "runtime/thread.hpp" |
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#include "runtime/vmThread.hpp" |
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#include "utilities/copy.hpp" |
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#include "utilities/events.hpp" |
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class HeapRegion; |
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bool G1MarkSweep::_archive_check_enabled = false; |
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G1ArchiveRegionMap G1MarkSweep::_archive_region_map; |
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void G1MarkSweep::invoke_at_safepoint(ReferenceProcessor* rp, |
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bool clear_all_softrefs) { |
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assert(SafepointSynchronize::is_at_safepoint(), "must be at a safepoint"); |
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#ifdef ASSERT |
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if (G1CollectedHeap::heap()->collector_policy()->should_clear_all_soft_refs()) { |
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assert(clear_all_softrefs, "Policy should have been checked earler"); |
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} |
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#endif |
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// hook up weak ref data so it can be used during Mark-Sweep |
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assert(GenMarkSweep::ref_processor() == NULL, "no stomping"); |
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assert(rp != NULL, "should be non-NULL"); |
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assert(rp == G1CollectedHeap::heap()->ref_processor_stw(), "Precondition"); |
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GenMarkSweep::set_ref_processor(rp); |
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rp->setup_policy(clear_all_softrefs); |
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// When collecting the permanent generation Method*s may be moving, |
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// so we either have to flush all bcp data or convert it into bci. |
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CodeCache::gc_prologue(); |
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bool marked_for_unloading = false; |
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allocate_stacks(); |
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// We should save the marks of the currently locked biased monitors. |
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// The marking doesn't preserve the marks of biased objects. |
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BiasedLocking::preserve_marks(); |
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mark_sweep_phase1(marked_for_unloading, clear_all_softrefs); |
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mark_sweep_phase2(); |
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#if defined(COMPILER2) || INCLUDE_JVMCI |
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// Don't add any more derived pointers during phase3 |
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DerivedPointerTable::set_active(false); |
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#endif |
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mark_sweep_phase3(); |
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mark_sweep_phase4(); |
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GenMarkSweep::restore_marks(); |
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BiasedLocking::restore_marks(); |
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GenMarkSweep::deallocate_stacks(); |
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CodeCache::gc_epilogue(); |
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JvmtiExport::gc_epilogue(); |
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// refs processing: clean slate |
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GenMarkSweep::set_ref_processor(NULL); |
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} |
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void G1MarkSweep::allocate_stacks() { |
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GenMarkSweep::_preserved_count_max = 0; |
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GenMarkSweep::_preserved_marks = NULL; |
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GenMarkSweep::_preserved_count = 0; |
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} |
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void G1MarkSweep::mark_sweep_phase1(bool& marked_for_unloading, |
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bool clear_all_softrefs) { |
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// Recursively traverse all live objects and mark them |
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GCTraceTime(Info, gc, phases) tm("Phase 1: Mark live objects", gc_timer()); |
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G1CollectedHeap* g1h = G1CollectedHeap::heap(); |
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// Need cleared claim bits for the roots processing |
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ClassLoaderDataGraph::clear_claimed_marks(); |
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MarkingCodeBlobClosure follow_code_closure(&GenMarkSweep::follow_root_closure, !CodeBlobToOopClosure::FixRelocations); |
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{ |
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G1RootProcessor root_processor(g1h, 1); |
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root_processor.process_strong_roots(&GenMarkSweep::follow_root_closure, |
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&GenMarkSweep::follow_cld_closure, |
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&follow_code_closure); |
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} |
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{ |
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GCTraceTime(Debug, gc, phases) trace("Reference Processing", gc_timer()); |
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// Process reference objects found during marking |
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ReferenceProcessor* rp = GenMarkSweep::ref_processor(); |
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assert(rp == g1h->ref_processor_stw(), "Sanity"); |
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rp->setup_policy(clear_all_softrefs); |
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const ReferenceProcessorStats& stats = |
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rp->process_discovered_references(&GenMarkSweep::is_alive, |
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&GenMarkSweep::keep_alive, |
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&GenMarkSweep::follow_stack_closure, |
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NULL, |
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gc_timer()); |
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gc_tracer()->report_gc_reference_stats(stats); |
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} |
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// This is the point where the entire marking should have completed. |
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assert(GenMarkSweep::_marking_stack.is_empty(), "Marking should have completed"); |
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{ |
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GCTraceTime(Debug, gc, phases) trace("Class Unloading", gc_timer()); |
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// Unload classes and purge the SystemDictionary. |
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bool purged_class = SystemDictionary::do_unloading(&GenMarkSweep::is_alive); |
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// Unload nmethods. |
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CodeCache::do_unloading(&GenMarkSweep::is_alive, purged_class); |
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// Prune dead klasses from subklass/sibling/implementor lists. |
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Klass::clean_weak_klass_links(&GenMarkSweep::is_alive); |
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} |
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{ |
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GCTraceTime(Debug, gc, phases) trace("Scrub String and Symbol Tables", gc_timer()); |
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// Delete entries for dead interned string and clean up unreferenced symbols in symbol table. |
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g1h->unlink_string_and_symbol_table(&GenMarkSweep::is_alive); |
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} |
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if (G1StringDedup::is_enabled()) { |
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GCTraceTime(Debug, gc, phases) trace("String Deduplication Unlink", gc_timer()); |
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G1StringDedup::unlink(&GenMarkSweep::is_alive); |
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} |
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if (VerifyDuringGC) { |
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HandleMark hm; // handle scope |
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#if defined(COMPILER2) || INCLUDE_JVMCI |
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DerivedPointerTableDeactivate dpt_deact; |
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#endif |
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g1h->prepare_for_verify(); |
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// Note: we can verify only the heap here. When an object is |
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// marked, the previous value of the mark word (including |
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// identity hash values, ages, etc) is preserved, and the mark |
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// word is set to markOop::marked_value - effectively removing |
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// any hash values from the mark word. These hash values are |
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// used when verifying the dictionaries and so removing them |
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// from the mark word can make verification of the dictionaries |
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// fail. At the end of the GC, the original mark word values |
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// (including hash values) are restored to the appropriate |
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// objects. |
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GCTraceTime(Info, gc, verify)("During GC (full)"); |
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g1h->verify(VerifyOption_G1UseMarkWord); |
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} |
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gc_tracer()->report_object_count_after_gc(&GenMarkSweep::is_alive); |
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} |
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void G1MarkSweep::mark_sweep_phase2() { |
209 |
// Now all live objects are marked, compute the new object addresses. |
|
210 |
||
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// It is not required that we traverse spaces in the same order in |
|
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// phase2, phase3 and phase4, but the ValidateMarkSweep live oops |
|
213 |
// tracking expects us to do so. See comment under phase4. |
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||
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GCTraceTime(Info, gc, phases) tm("Phase 2: Compute new object addresses", gc_timer()); |
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|
26839 | 217 |
prepare_compaction(); |
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} |
219 |
||
220 |
class G1AdjustPointersClosure: public HeapRegionClosure { |
|
221 |
public: |
|
222 |
bool doHeapRegion(HeapRegion* r) { |
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if (r->is_humongous()) { |
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if (r->is_starts_humongous()) { |
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// We must adjust the pointers on the single H object. |
226 |
oop obj = oop(r->bottom()); |
|
227 |
// point all the oops to the new location |
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MarkSweep::adjust_pointers(obj); |
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} |
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} else if (!r->is_pinned()) { |
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// This really ought to be "as_CompactibleSpace"... |
232 |
r->adjust_pointers(); |
|
233 |
} |
|
234 |
return false; |
|
235 |
} |
|
236 |
}; |
|
237 |
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238 |
void G1MarkSweep::mark_sweep_phase3() { |
|
239 |
G1CollectedHeap* g1h = G1CollectedHeap::heap(); |
|
240 |
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241 |
// Adjust the pointers to reflect the new locations |
|
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GCTraceTime(Info, gc, phases) tm("Phase 3: Adjust pointers", gc_timer()); |
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// Need cleared claim bits for the roots processing |
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ClassLoaderDataGraph::clear_claimed_marks(); |
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CodeBlobToOopClosure adjust_code_closure(&GenMarkSweep::adjust_pointer_closure, CodeBlobToOopClosure::FixRelocations); |
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{ |
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G1RootProcessor root_processor(g1h, 1); |
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root_processor.process_all_roots(&GenMarkSweep::adjust_pointer_closure, |
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&GenMarkSweep::adjust_cld_closure, |
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&adjust_code_closure); |
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} |
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assert(GenMarkSweep::ref_processor() == g1h->ref_processor_stw(), "Sanity"); |
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g1h->ref_processor_stw()->weak_oops_do(&GenMarkSweep::adjust_pointer_closure); |
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|
258 |
// Now adjust pointers in remaining weak roots. (All of which should |
|
259 |
// have been cleared if they pointed to non-surviving objects.) |
|
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JNIHandles::weak_oops_do(&GenMarkSweep::adjust_pointer_closure); |
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|
23472 | 262 |
if (G1StringDedup::is_enabled()) { |
263 |
G1StringDedup::oops_do(&GenMarkSweep::adjust_pointer_closure); |
|
264 |
} |
|
265 |
||
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GenMarkSweep::adjust_marks(); |
267 |
||
268 |
G1AdjustPointersClosure blk; |
|
269 |
g1h->heap_region_iterate(&blk); |
|
270 |
} |
|
271 |
||
272 |
class G1SpaceCompactClosure: public HeapRegionClosure { |
|
273 |
public: |
|
274 |
G1SpaceCompactClosure() {} |
|
275 |
||
276 |
bool doHeapRegion(HeapRegion* hr) { |
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if (hr->is_humongous()) { |
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if (hr->is_starts_humongous()) { |
1374 | 279 |
oop obj = oop(hr->bottom()); |
280 |
if (obj->is_gc_marked()) { |
|
281 |
obj->init_mark(); |
|
282 |
} else { |
|
283 |
assert(hr->is_empty(), "Should have been cleared in phase 2."); |
|
284 |
} |
|
285 |
} |
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hr->reset_during_compaction(); |
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} else if (!hr->is_pinned()) { |
1374 | 288 |
hr->compact(); |
289 |
} |
|
290 |
return false; |
|
291 |
} |
|
292 |
}; |
|
293 |
||
294 |
void G1MarkSweep::mark_sweep_phase4() { |
|
295 |
// All pointers are now adjusted, move objects accordingly |
|
296 |
||
297 |
// The ValidateMarkSweep live oops tracking expects us to traverse spaces |
|
298 |
// in the same order in phase2, phase3 and phase4. We don't quite do that |
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// here (code and comment not fixed for perm removal), so we tell the validate code |
1374 | 300 |
// to use a higher index (saved from phase2) when verifying perm_gen. |
301 |
G1CollectedHeap* g1h = G1CollectedHeap::heap(); |
|
302 |
||
37146 | 303 |
GCTraceTime(Info, gc, phases) tm("Phase 4: Move objects", gc_timer()); |
1374 | 304 |
|
305 |
G1SpaceCompactClosure blk; |
|
306 |
g1h->heap_region_iterate(&blk); |
|
307 |
||
308 |
} |
|
26839 | 309 |
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void G1MarkSweep::enable_archive_object_check() { |
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assert(!_archive_check_enabled, "archive range check already enabled"); |
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_archive_check_enabled = true; |
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size_t length = Universe::heap()->max_capacity(); |
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_archive_region_map.initialize((HeapWord*)Universe::heap()->base(), |
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(HeapWord*)Universe::heap()->base() + length, |
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316 |
HeapRegion::GrainBytes); |
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317 |
} |
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318 |
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void G1MarkSweep::set_range_archive(MemRegion range, bool is_archive) { |
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assert(_archive_check_enabled, "archive range check not enabled"); |
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321 |
_archive_region_map.set_by_address(range, is_archive); |
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322 |
} |
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323 |
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324 |
bool G1MarkSweep::in_archive_range(oop object) { |
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// This is the out-of-line part of is_archive_object test, done separately |
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// to avoid additional performance impact when the check is not enabled. |
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return _archive_region_map.get_by_address((HeapWord*)object); |
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328 |
} |
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329 |
|
26839 | 330 |
void G1MarkSweep::prepare_compaction_work(G1PrepareCompactClosure* blk) { |
331 |
G1CollectedHeap* g1h = G1CollectedHeap::heap(); |
|
332 |
g1h->heap_region_iterate(blk); |
|
333 |
blk->update_sets(); |
|
334 |
} |
|
335 |
||
336 |
void G1PrepareCompactClosure::free_humongous_region(HeapRegion* hr) { |
|
337 |
HeapWord* end = hr->end(); |
|
338 |
FreeRegionList dummy_free_list("Dummy Free List for G1MarkSweep"); |
|
339 |
||
340 |
hr->set_containing_set(NULL); |
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341 |
_humongous_regions_removed++; |
26839 | 342 |
|
39979 | 343 |
_g1h->free_humongous_region(hr, &dummy_free_list, false /* skip_remset */); |
26839 | 344 |
prepare_for_compaction(hr, end); |
345 |
dummy_free_list.remove_all(); |
|
346 |
} |
|
347 |
||
348 |
void G1PrepareCompactClosure::prepare_for_compaction(HeapRegion* hr, HeapWord* end) { |
|
349 |
// If this is the first live region that we came across which we can compact, |
|
350 |
// initialize the CompactPoint. |
|
351 |
if (!is_cp_initialized()) { |
|
352 |
_cp.space = hr; |
|
353 |
_cp.threshold = hr->initialize_threshold(); |
|
354 |
} |
|
355 |
prepare_for_compaction_work(&_cp, hr, end); |
|
356 |
} |
|
357 |
||
358 |
void G1PrepareCompactClosure::prepare_for_compaction_work(CompactPoint* cp, |
|
359 |
HeapRegion* hr, |
|
360 |
HeapWord* end) { |
|
361 |
hr->prepare_for_compaction(cp); |
|
362 |
// Also clear the part of the card table that will be unused after |
|
363 |
// compaction. |
|
364 |
_mrbs->clear(MemRegion(hr->compaction_top(), end)); |
|
365 |
} |
|
366 |
||
367 |
void G1PrepareCompactClosure::update_sets() { |
|
368 |
// We'll recalculate total used bytes and recreate the free list |
|
369 |
// at the end of the GC, so no point in updating those values here. |
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|
370 |
_g1h->remove_from_old_sets(0, _humongous_regions_removed); |
26839 | 371 |
} |
372 |
||
373 |
bool G1PrepareCompactClosure::doHeapRegion(HeapRegion* hr) { |
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if (hr->is_humongous()) { |
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375 |
oop obj = oop(hr->humongous_start_region()->bottom()); |
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376 |
if (hr->is_starts_humongous() && obj->is_gc_marked()) { |
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obj->forward_to(obj); |
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|
378 |
} |
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379 |
if (!obj->is_gc_marked()) { |
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|
380 |
free_humongous_region(hr); |
26839 | 381 |
} |
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382 |
} else if (!hr->is_pinned()) { |
26839 | 383 |
prepare_for_compaction(hr, hr->end()); |
384 |
} |
|
385 |
return false; |
|
386 |
} |