author | stefank |
Fri, 13 Feb 2015 14:37:35 +0100 | |
changeset 29081 | c61eb4914428 |
parent 28940 | c314cf1db3fa |
child 30152 | 5fe1c8494b49 |
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/systemDictionary.hpp" |
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#include "gc_implementation/shared/gcHeapSummary.hpp" |
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#include "gc_implementation/shared/gcTrace.hpp" |
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#include "gc_implementation/shared/gcTraceTime.hpp" |
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#include "gc_implementation/shared/gcWhen.hpp" |
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#include "gc_implementation/shared/vmGCOperations.hpp" |
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#include "gc_interface/allocTracer.hpp" |
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#include "gc_interface/collectedHeap.hpp" |
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#include "gc_interface/collectedHeap.inline.hpp" |
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#include "memory/barrierSet.inline.hpp" |
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#include "memory/metaspace.hpp" |
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#include "oops/oop.inline.hpp" |
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#include "oops/instanceMirrorKlass.hpp" |
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#include "runtime/init.hpp" |
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#include "runtime/thread.inline.hpp" |
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#include "services/heapDumper.hpp" |
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#ifdef ASSERT |
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int CollectedHeap::_fire_out_of_memory_count = 0; |
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#endif |
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size_t CollectedHeap::_filler_array_max_size = 0; |
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template <> |
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void EventLogBase<GCMessage>::print(outputStream* st, GCMessage& m) { |
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st->print_cr("GC heap %s", m.is_before ? "before" : "after"); |
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st->print_raw(m); |
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} |
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void GCHeapLog::log_heap(bool before) { |
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if (!should_log()) { |
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return; |
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} |
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double timestamp = fetch_timestamp(); |
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MutexLockerEx ml(&_mutex, Mutex::_no_safepoint_check_flag); |
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int index = compute_log_index(); |
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_records[index].thread = NULL; // Its the GC thread so it's not that interesting. |
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_records[index].timestamp = timestamp; |
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_records[index].data.is_before = before; |
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stringStream st(_records[index].data.buffer(), _records[index].data.size()); |
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if (before) { |
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Universe::print_heap_before_gc(&st, true); |
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} else { |
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Universe::print_heap_after_gc(&st, true); |
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} |
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} |
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VirtualSpaceSummary CollectedHeap::create_heap_space_summary() { |
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size_t capacity_in_words = capacity() / HeapWordSize; |
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return VirtualSpaceSummary( |
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reserved_region().start(), reserved_region().start() + capacity_in_words, reserved_region().end()); |
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} |
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GCHeapSummary CollectedHeap::create_heap_summary() { |
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VirtualSpaceSummary heap_space = create_heap_space_summary(); |
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return GCHeapSummary(heap_space, used()); |
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} |
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MetaspaceSummary CollectedHeap::create_metaspace_summary() { |
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const MetaspaceSizes meta_space( |
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MetaspaceAux::committed_bytes(), |
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MetaspaceAux::used_bytes(), |
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MetaspaceAux::reserved_bytes()); |
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const MetaspaceSizes data_space( |
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MetaspaceAux::committed_bytes(Metaspace::NonClassType), |
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MetaspaceAux::used_bytes(Metaspace::NonClassType), |
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MetaspaceAux::reserved_bytes(Metaspace::NonClassType)); |
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const MetaspaceSizes class_space( |
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MetaspaceAux::committed_bytes(Metaspace::ClassType), |
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MetaspaceAux::used_bytes(Metaspace::ClassType), |
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MetaspaceAux::reserved_bytes(Metaspace::ClassType)); |
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const MetaspaceChunkFreeListSummary& ms_chunk_free_list_summary = |
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MetaspaceAux::chunk_free_list_summary(Metaspace::NonClassType); |
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const MetaspaceChunkFreeListSummary& class_chunk_free_list_summary = |
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MetaspaceAux::chunk_free_list_summary(Metaspace::ClassType); |
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return MetaspaceSummary(MetaspaceGC::capacity_until_GC(), meta_space, data_space, class_space, |
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ms_chunk_free_list_summary, class_chunk_free_list_summary); |
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} |
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void CollectedHeap::print_heap_before_gc() { |
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if (PrintHeapAtGC) { |
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Universe::print_heap_before_gc(); |
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} |
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if (_gc_heap_log != NULL) { |
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_gc_heap_log->log_heap_before(); |
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} |
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} |
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void CollectedHeap::print_heap_after_gc() { |
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if (PrintHeapAtGC) { |
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Universe::print_heap_after_gc(); |
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} |
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if (_gc_heap_log != NULL) { |
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_gc_heap_log->log_heap_after(); |
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} |
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} |
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void CollectedHeap::print_on_error(outputStream* st) const { |
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st->print_cr("Heap:"); |
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print_extended_on(st); |
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st->cr(); |
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_barrier_set->print_on(st); |
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} |
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void CollectedHeap::register_nmethod(nmethod* nm) { |
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assert_locked_or_safepoint(CodeCache_lock); |
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} |
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void CollectedHeap::unregister_nmethod(nmethod* nm) { |
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assert_locked_or_safepoint(CodeCache_lock); |
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} |
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void CollectedHeap::trace_heap(GCWhen::Type when, const GCTracer* gc_tracer) { |
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const GCHeapSummary& heap_summary = create_heap_summary(); |
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gc_tracer->report_gc_heap_summary(when, heap_summary); |
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const MetaspaceSummary& metaspace_summary = create_metaspace_summary(); |
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gc_tracer->report_metaspace_summary(when, metaspace_summary); |
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} |
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void CollectedHeap::trace_heap_before_gc(const GCTracer* gc_tracer) { |
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trace_heap(GCWhen::BeforeGC, gc_tracer); |
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} |
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void CollectedHeap::trace_heap_after_gc(const GCTracer* gc_tracer) { |
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trace_heap(GCWhen::AfterGC, gc_tracer); |
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} |
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// Memory state functions. |
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CollectedHeap::CollectedHeap() : _n_par_threads(0) |
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{ |
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const size_t max_len = size_t(arrayOopDesc::max_array_length(T_INT)); |
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const size_t elements_per_word = HeapWordSize / sizeof(jint); |
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_filler_array_max_size = align_object_size(filler_array_hdr_size() + |
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max_len / elements_per_word); |
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_barrier_set = NULL; |
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_is_gc_active = false; |
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_total_collections = _total_full_collections = 0; |
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_gc_cause = _gc_lastcause = GCCause::_no_gc; |
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NOT_PRODUCT(_promotion_failure_alot_count = 0;) |
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NOT_PRODUCT(_promotion_failure_alot_gc_number = 0;) |
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if (UsePerfData) { |
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EXCEPTION_MARK; |
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// create the gc cause jvmstat counters |
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_perf_gc_cause = PerfDataManager::create_string_variable(SUN_GC, "cause", |
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80, GCCause::to_string(_gc_cause), CHECK); |
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_perf_gc_lastcause = |
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PerfDataManager::create_string_variable(SUN_GC, "lastCause", |
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80, GCCause::to_string(_gc_lastcause), CHECK); |
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} |
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_defer_initial_card_mark = false; // strengthened by subclass in pre_initialize() below. |
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// Create the ring log |
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if (LogEvents) { |
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_gc_heap_log = new GCHeapLog(); |
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} else { |
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_gc_heap_log = NULL; |
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} |
1 | 195 |
} |
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// This interface assumes that it's being called by the |
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// vm thread. It collects the heap assuming that the |
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// heap lock is already held and that we are executing in |
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// the context of the vm thread. |
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void CollectedHeap::collect_as_vm_thread(GCCause::Cause cause) { |
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assert(Thread::current()->is_VM_thread(), "Precondition#1"); |
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assert(Heap_lock->is_locked(), "Precondition#2"); |
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GCCauseSetter gcs(this, cause); |
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switch (cause) { |
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case GCCause::_heap_inspection: |
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|
207 |
case GCCause::_heap_dump: |
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208 |
case GCCause::_metadata_GC_threshold : { |
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209 |
HandleMark hm; |
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210 |
do_full_collection(false); // don't clear all soft refs |
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|
211 |
break; |
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|
212 |
} |
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|
213 |
case GCCause::_last_ditch_collection: { |
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|
214 |
HandleMark hm; |
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|
215 |
do_full_collection(true); // do clear all soft refs |
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|
216 |
break; |
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|
217 |
} |
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218 |
default: |
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219 |
ShouldNotReachHere(); // Unexpected use of this function |
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220 |
} |
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221 |
} |
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222 |
|
4637 | 223 |
void CollectedHeap::pre_initialize() { |
224 |
// Used for ReduceInitialCardMarks (when COMPILER2 is used); |
|
225 |
// otherwise remains unused. |
|
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226 |
#ifdef COMPILER2 |
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227 |
_defer_initial_card_mark = ReduceInitialCardMarks && can_elide_tlab_store_barriers() |
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228 |
&& (DeferInitialCardMark || card_mark_must_follow_store()); |
4637 | 229 |
#else |
230 |
assert(_defer_initial_card_mark == false, "Who would set it?"); |
|
231 |
#endif |
|
232 |
} |
|
1 | 233 |
|
234 |
#ifndef PRODUCT |
|
235 |
void CollectedHeap::check_for_bad_heap_word_value(HeapWord* addr, size_t size) { |
|
236 |
if (CheckMemoryInitialization && ZapUnusedHeapArea) { |
|
237 |
for (size_t slot = 0; slot < size; slot += 1) { |
|
238 |
assert((*(intptr_t*) (addr + slot)) != ((intptr_t) badHeapWordVal), |
|
239 |
"Found badHeapWordValue in post-allocation check"); |
|
240 |
} |
|
241 |
} |
|
242 |
} |
|
243 |
||
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244 |
void CollectedHeap::check_for_non_bad_heap_word_value(HeapWord* addr, size_t size) { |
1 | 245 |
if (CheckMemoryInitialization && ZapUnusedHeapArea) { |
246 |
for (size_t slot = 0; slot < size; slot += 1) { |
|
247 |
assert((*(intptr_t*) (addr + slot)) == ((intptr_t) badHeapWordVal), |
|
248 |
"Found non badHeapWordValue in pre-allocation check"); |
|
249 |
} |
|
250 |
} |
|
251 |
} |
|
252 |
#endif // PRODUCT |
|
253 |
||
254 |
#ifdef ASSERT |
|
255 |
void CollectedHeap::check_for_valid_allocation_state() { |
|
256 |
Thread *thread = Thread::current(); |
|
257 |
// How to choose between a pending exception and a potential |
|
258 |
// OutOfMemoryError? Don't allow pending exceptions. |
|
259 |
// This is a VM policy failure, so how do we exhaustively test it? |
|
260 |
assert(!thread->has_pending_exception(), |
|
261 |
"shouldn't be allocating with pending exception"); |
|
262 |
if (StrictSafepointChecks) { |
|
263 |
assert(thread->allow_allocation(), |
|
264 |
"Allocation done by thread for which allocation is blocked " |
|
265 |
"by No_Allocation_Verifier!"); |
|
266 |
// Allocation of an oop can always invoke a safepoint, |
|
267 |
// hence, the true argument |
|
268 |
thread->check_for_valid_safepoint_state(true); |
|
269 |
} |
|
270 |
} |
|
271 |
#endif |
|
272 |
||
18025 | 273 |
HeapWord* CollectedHeap::allocate_from_tlab_slow(KlassHandle klass, Thread* thread, size_t size) { |
1 | 274 |
|
275 |
// Retain tlab and allocate object in shared space if |
|
276 |
// the amount free in the tlab is too large to discard. |
|
277 |
if (thread->tlab().free() > thread->tlab().refill_waste_limit()) { |
|
278 |
thread->tlab().record_slow_allocation(size); |
|
279 |
return NULL; |
|
280 |
} |
|
281 |
||
282 |
// Discard tlab and allocate a new one. |
|
283 |
// To minimize fragmentation, the last TLAB may be smaller than the rest. |
|
284 |
size_t new_tlab_size = thread->tlab().compute_size(size); |
|
285 |
||
286 |
thread->tlab().clear_before_allocation(); |
|
287 |
||
288 |
if (new_tlab_size == 0) { |
|
289 |
return NULL; |
|
290 |
} |
|
291 |
||
292 |
// Allocate a new TLAB... |
|
293 |
HeapWord* obj = Universe::heap()->allocate_new_tlab(new_tlab_size); |
|
294 |
if (obj == NULL) { |
|
295 |
return NULL; |
|
296 |
} |
|
18025 | 297 |
|
298 |
AllocTracer::send_allocation_in_new_tlab_event(klass, new_tlab_size * HeapWordSize, size * HeapWordSize); |
|
299 |
||
1 | 300 |
if (ZeroTLAB) { |
301 |
// ..and clear it. |
|
302 |
Copy::zero_to_words(obj, new_tlab_size); |
|
303 |
} else { |
|
10501 | 304 |
// ...and zap just allocated object. |
305 |
#ifdef ASSERT |
|
306 |
// Skip mangling the space corresponding to the object header to |
|
307 |
// ensure that the returned space is not considered parsable by |
|
308 |
// any concurrent GC thread. |
|
309 |
size_t hdr_size = oopDesc::header_size(); |
|
310 |
Copy::fill_to_words(obj + hdr_size, new_tlab_size - hdr_size, badHeapWordVal); |
|
311 |
#endif // ASSERT |
|
1 | 312 |
} |
313 |
thread->tlab().fill(obj, obj + size, new_tlab_size); |
|
314 |
return obj; |
|
315 |
} |
|
316 |
||
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317 |
void CollectedHeap::flush_deferred_store_barrier(JavaThread* thread) { |
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|
318 |
MemRegion deferred = thread->deferred_card_mark(); |
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|
319 |
if (!deferred.is_empty()) { |
4637 | 320 |
assert(_defer_initial_card_mark, "Otherwise should be empty"); |
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|
321 |
{ |
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|
322 |
// Verify that the storage points to a parsable object in heap |
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|
323 |
DEBUG_ONLY(oop old_obj = oop(deferred.start());) |
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|
324 |
assert(is_in(old_obj), "Not in allocated heap"); |
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|
325 |
assert(!can_elide_initializing_store_barrier(old_obj), |
4637 | 326 |
"Else should have been filtered in new_store_pre_barrier()"); |
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|
327 |
assert(old_obj->is_oop(true), "Not an oop"); |
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|
328 |
assert(deferred.word_size() == (size_t)(old_obj->size()), |
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|
329 |
"Mismatch: multiple objects?"); |
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|
330 |
} |
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|
331 |
BarrierSet* bs = barrier_set(); |
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|
332 |
assert(bs->has_write_region_opt(), "No write_region() on BarrierSet"); |
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|
333 |
bs->write_region(deferred); |
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|
334 |
// "Clear" the deferred_card_mark field |
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|
335 |
thread->set_deferred_card_mark(MemRegion()); |
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|
336 |
} |
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|
337 |
assert(thread->deferred_card_mark().is_empty(), "invariant"); |
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|
338 |
} |
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|
339 |
|
22552 | 340 |
size_t CollectedHeap::max_tlab_size() const { |
341 |
// TLABs can't be bigger than we can fill with a int[Integer.MAX_VALUE]. |
|
342 |
// This restriction could be removed by enabling filling with multiple arrays. |
|
343 |
// If we compute that the reasonable way as |
|
344 |
// header_size + ((sizeof(jint) * max_jint) / HeapWordSize) |
|
345 |
// we'll overflow on the multiply, so we do the divide first. |
|
346 |
// We actually lose a little by dividing first, |
|
347 |
// but that just makes the TLAB somewhat smaller than the biggest array, |
|
348 |
// which is fine, since we'll be able to fill that. |
|
349 |
size_t max_int_size = typeArrayOopDesc::header_size(T_INT) + |
|
350 |
sizeof(jint) * |
|
351 |
((juint) max_jint / (size_t) HeapWordSize); |
|
352 |
return align_size_down(max_int_size, MinObjAlignment); |
|
353 |
} |
|
354 |
||
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|
355 |
// Helper for ReduceInitialCardMarks. For performance, |
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|
356 |
// compiled code may elide card-marks for initializing stores |
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|
357 |
// to a newly allocated object along the fast-path. We |
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|
358 |
// compensate for such elided card-marks as follows: |
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|
359 |
// (a) Generational, non-concurrent collectors, such as |
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|
360 |
// GenCollectedHeap(ParNew,DefNew,Tenured) and |
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|
361 |
// ParallelScavengeHeap(ParallelGC, ParallelOldGC) |
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|
362 |
// need the card-mark if and only if the region is |
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|
363 |
// in the old gen, and do not care if the card-mark |
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|
364 |
// succeeds or precedes the initializing stores themselves, |
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|
365 |
// so long as the card-mark is completed before the next |
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|
366 |
// scavenge. For all these cases, we can do a card mark |
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|
367 |
// at the point at which we do a slow path allocation |
4637 | 368 |
// in the old gen, i.e. in this call. |
4030
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|
369 |
// (b) GenCollectedHeap(ConcurrentMarkSweepGeneration) requires |
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|
370 |
// in addition that the card-mark for an old gen allocated |
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|
371 |
// object strictly follow any associated initializing stores. |
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|
372 |
// In these cases, the memRegion remembered below is |
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|
373 |
// used to card-mark the entire region either just before the next |
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|
374 |
// slow-path allocation by this thread or just before the next scavenge or |
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|
375 |
// CMS-associated safepoint, whichever of these events happens first. |
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|
376 |
// (The implicit assumption is that the object has been fully |
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|
377 |
// initialized by this point, a fact that we assert when doing the |
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|
378 |
// card-mark.) |
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|
379 |
// (c) G1CollectedHeap(G1) uses two kinds of write barriers. When a |
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|
380 |
// G1 concurrent marking is in progress an SATB (pre-write-)barrier is |
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|
381 |
// is used to remember the pre-value of any store. Initializing |
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|
382 |
// stores will not need this barrier, so we need not worry about |
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|
383 |
// compensating for the missing pre-barrier here. Turning now |
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|
384 |
// to the post-barrier, we note that G1 needs a RS update barrier |
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|
385 |
// which simply enqueues a (sequence of) dirty cards which may |
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|
386 |
// optionally be refined by the concurrent update threads. Note |
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|
387 |
// that this barrier need only be applied to a non-young write, |
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|
388 |
// but, like in CMS, because of the presence of concurrent refinement |
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|
389 |
// (much like CMS' precleaning), must strictly follow the oop-store. |
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|
390 |
// Thus, using the same protocol for maintaining the intended |
4637 | 391 |
// invariants turns out, serendepitously, to be the same for both |
392 |
// G1 and CMS. |
|
4030
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|
393 |
// |
4637 | 394 |
// For any future collector, this code should be reexamined with |
395 |
// that specific collector in mind, and the documentation above suitably |
|
396 |
// extended and updated. |
|
397 |
oop CollectedHeap::new_store_pre_barrier(JavaThread* thread, oop new_obj) { |
|
4030
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|
398 |
// If a previous card-mark was deferred, flush it now. |
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|
399 |
flush_deferred_store_barrier(thread); |
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|
400 |
if (can_elide_initializing_store_barrier(new_obj)) { |
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|
401 |
// The deferred_card_mark region should be empty |
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|
402 |
// following the flush above. |
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|
403 |
assert(thread->deferred_card_mark().is_empty(), "Error"); |
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|
404 |
} else { |
4637 | 405 |
MemRegion mr((HeapWord*)new_obj, new_obj->size()); |
406 |
assert(!mr.is_empty(), "Error"); |
|
407 |
if (_defer_initial_card_mark) { |
|
408 |
// Defer the card mark |
|
409 |
thread->set_deferred_card_mark(mr); |
|
410 |
} else { |
|
411 |
// Do the card mark |
|
412 |
BarrierSet* bs = barrier_set(); |
|
413 |
assert(bs->has_write_region_opt(), "No write_region() on BarrierSet"); |
|
414 |
bs->write_region(mr); |
|
415 |
} |
|
4030
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|
416 |
} |
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|
417 |
return new_obj; |
4c471254865e
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diff
changeset
|
418 |
} |
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diff
changeset
|
419 |
|
1668
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changeset
|
420 |
size_t CollectedHeap::filler_array_hdr_size() { |
5694
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|
421 |
return size_t(align_object_offset(arrayOopDesc::header_size(T_INT))); // align to Long |
1668
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|
422 |
} |
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changeset
|
423 |
|
8ec481b8f514
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changeset
|
424 |
size_t CollectedHeap::filler_array_min_size() { |
5694
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changeset
|
425 |
return align_object_size(filler_array_hdr_size()); // align to MinObjAlignment |
1668
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|
426 |
} |
8ec481b8f514
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changeset
|
427 |
|
8ec481b8f514
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|
428 |
#ifdef ASSERT |
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|
429 |
void CollectedHeap::fill_args_check(HeapWord* start, size_t words) |
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|
430 |
{ |
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changeset
|
431 |
assert(words >= min_fill_size(), "too small to fill"); |
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|
432 |
assert(words % MinObjAlignment == 0, "unaligned size"); |
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|
433 |
assert(Universe::heap()->is_in_reserved(start), "not in heap"); |
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changeset
|
434 |
assert(Universe::heap()->is_in_reserved(start + words - 1), "not in heap"); |
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diff
changeset
|
435 |
} |
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changeset
|
436 |
|
4636
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|
437 |
void CollectedHeap::zap_filler_array(HeapWord* start, size_t words, bool zap) |
1668
8ec481b8f514
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|
438 |
{ |
4636
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changeset
|
439 |
if (ZapFillerObjects && zap) { |
1668
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|
440 |
Copy::fill_to_words(start + filler_array_hdr_size(), |
8ec481b8f514
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diff
changeset
|
441 |
words - filler_array_hdr_size(), 0XDEAFBABE); |
8ec481b8f514
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parents:
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diff
changeset
|
442 |
} |
8ec481b8f514
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diff
changeset
|
443 |
} |
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diff
changeset
|
444 |
#endif // ASSERT |
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changeset
|
445 |
|
8ec481b8f514
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changeset
|
446 |
void |
4636
90e004691873
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parents:
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diff
changeset
|
447 |
CollectedHeap::fill_with_array(HeapWord* start, size_t words, bool zap) |
1668
8ec481b8f514
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changeset
|
448 |
{ |
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changeset
|
449 |
assert(words >= filler_array_min_size(), "too small for an array"); |
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changeset
|
450 |
assert(words <= filler_array_max_size(), "too big for a single object"); |
8ec481b8f514
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diff
changeset
|
451 |
|
8ec481b8f514
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changeset
|
452 |
const size_t payload_size = words - filler_array_hdr_size(); |
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changeset
|
453 |
const size_t len = payload_size * HeapWordSize / sizeof(jint); |
12229
c34a85c8f5aa
7103665: HeapWord*ParallelScavengeHeap::failed_mem_allocate(unsigned long,bool)+0x97
brutisso
parents:
11788
diff
changeset
|
454 |
assert((int)len >= 0, err_msg("size too large " SIZE_FORMAT " becomes %d", words, (int)len)); |
1668
8ec481b8f514
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diff
changeset
|
455 |
|
8ec481b8f514
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diff
changeset
|
456 |
// Set the length first for concurrent GC. |
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diff
changeset
|
457 |
((arrayOop)start)->set_length((int)len); |
12236
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12229
diff
changeset
|
458 |
post_allocation_setup_common(Universe::intArrayKlassObj(), start); |
4636
90e004691873
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parents:
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diff
changeset
|
459 |
DEBUG_ONLY(zap_filler_array(start, words, zap);) |
1668
8ec481b8f514
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changeset
|
460 |
} |
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diff
changeset
|
461 |
|
8ec481b8f514
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changeset
|
462 |
void |
4636
90e004691873
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parents:
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diff
changeset
|
463 |
CollectedHeap::fill_with_object_impl(HeapWord* start, size_t words, bool zap) |
1668
8ec481b8f514
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parents:
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diff
changeset
|
464 |
{ |
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diff
changeset
|
465 |
assert(words <= filler_array_max_size(), "too big for a single object"); |
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parents:
1388
diff
changeset
|
466 |
|
8ec481b8f514
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diff
changeset
|
467 |
if (words >= filler_array_min_size()) { |
4636
90e004691873
6902115: G1:assert(ignore_max_completed||thread->is_Java_thread()||SafepointSynchronize::is_at_safepoint())
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parents:
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diff
changeset
|
468 |
fill_with_array(start, words, zap); |
1668
8ec481b8f514
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diff
changeset
|
469 |
} else if (words > 0) { |
8ec481b8f514
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parents:
1388
diff
changeset
|
470 |
assert(words == min_fill_size(), "unaligned size"); |
12236
51d6463cfd9d
7156764: Remove unused size parameter from some CollectedHeap methods
brutisso
parents:
12229
diff
changeset
|
471 |
post_allocation_setup_common(SystemDictionary::Object_klass(), start); |
1668
8ec481b8f514
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parents:
1388
diff
changeset
|
472 |
} |
8ec481b8f514
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parents:
1388
diff
changeset
|
473 |
} |
8ec481b8f514
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parents:
1388
diff
changeset
|
474 |
|
4636
90e004691873
6902115: G1:assert(ignore_max_completed||thread->is_Java_thread()||SafepointSynchronize::is_at_safepoint())
johnc
parents:
4571
diff
changeset
|
475 |
void CollectedHeap::fill_with_object(HeapWord* start, size_t words, bool zap) |
1668
8ec481b8f514
6578152: fill_region_with_object has usability and safety issues
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parents:
1388
diff
changeset
|
476 |
{ |
8ec481b8f514
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1388
diff
changeset
|
477 |
DEBUG_ONLY(fill_args_check(start, words);) |
8ec481b8f514
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parents:
1388
diff
changeset
|
478 |
HandleMark hm; // Free handles before leaving. |
4636
90e004691873
6902115: G1:assert(ignore_max_completed||thread->is_Java_thread()||SafepointSynchronize::is_at_safepoint())
johnc
parents:
4571
diff
changeset
|
479 |
fill_with_object_impl(start, words, zap); |
1668
8ec481b8f514
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parents:
1388
diff
changeset
|
480 |
} |
8ec481b8f514
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diff
changeset
|
481 |
|
4636
90e004691873
6902115: G1:assert(ignore_max_completed||thread->is_Java_thread()||SafepointSynchronize::is_at_safepoint())
johnc
parents:
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diff
changeset
|
482 |
void CollectedHeap::fill_with_objects(HeapWord* start, size_t words, bool zap) |
1668
8ec481b8f514
6578152: fill_region_with_object has usability and safety issues
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parents:
1388
diff
changeset
|
483 |
{ |
8ec481b8f514
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diff
changeset
|
484 |
DEBUG_ONLY(fill_args_check(start, words);) |
8ec481b8f514
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1388
diff
changeset
|
485 |
HandleMark hm; // Free handles before leaving. |
8ec481b8f514
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parents:
1388
diff
changeset
|
486 |
|
5544
de5f430a289c
6953952: collectedHeap.cpp should use #ifdef _LP64 not LP64
ysr
parents:
5543
diff
changeset
|
487 |
#ifdef _LP64 |
1668
8ec481b8f514
6578152: fill_region_with_object has usability and safety issues
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parents:
1388
diff
changeset
|
488 |
// A single array can fill ~8G, so multiple objects are needed only in 64-bit. |
8ec481b8f514
6578152: fill_region_with_object has usability and safety issues
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parents:
1388
diff
changeset
|
489 |
// First fill with arrays, ensuring that any remaining space is big enough to |
8ec481b8f514
6578152: fill_region_with_object has usability and safety issues
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changeset
|
490 |
// fill. The remainder is filled with a single object. |
8ec481b8f514
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diff
changeset
|
491 |
const size_t min = min_fill_size(); |
8ec481b8f514
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changeset
|
492 |
const size_t max = filler_array_max_size(); |
8ec481b8f514
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parents:
1388
diff
changeset
|
493 |
while (words > max) { |
8ec481b8f514
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parents:
1388
diff
changeset
|
494 |
const size_t cur = words - max >= min ? max : max - min; |
4636
90e004691873
6902115: G1:assert(ignore_max_completed||thread->is_Java_thread()||SafepointSynchronize::is_at_safepoint())
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parents:
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diff
changeset
|
495 |
fill_with_array(start, cur, zap); |
1668
8ec481b8f514
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parents:
1388
diff
changeset
|
496 |
start += cur; |
8ec481b8f514
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parents:
1388
diff
changeset
|
497 |
words -= cur; |
8ec481b8f514
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diff
changeset
|
498 |
} |
8ec481b8f514
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changeset
|
499 |
#endif |
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1388
diff
changeset
|
500 |
|
4636
90e004691873
6902115: G1:assert(ignore_max_completed||thread->is_Java_thread()||SafepointSynchronize::is_at_safepoint())
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parents:
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diff
changeset
|
501 |
fill_with_object_impl(start, words, zap); |
1668
8ec481b8f514
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parents:
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changeset
|
502 |
} |
8ec481b8f514
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changeset
|
503 |
|
21561
c619b1cb4554
8016309: assert(eden_size > 0 && survivor_size > 0) failed: just checking
jwilhelm
parents:
20406
diff
changeset
|
504 |
void CollectedHeap::post_initialize() { |
c619b1cb4554
8016309: assert(eden_size > 0 && survivor_size > 0) failed: just checking
jwilhelm
parents:
20406
diff
changeset
|
505 |
collector_policy()->post_heap_initialize(); |
c619b1cb4554
8016309: assert(eden_size > 0 && survivor_size > 0) failed: just checking
jwilhelm
parents:
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diff
changeset
|
506 |
} |
c619b1cb4554
8016309: assert(eden_size > 0 && survivor_size > 0) failed: just checking
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parents:
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diff
changeset
|
507 |
|
1 | 508 |
HeapWord* CollectedHeap::allocate_new_tlab(size_t size) { |
509 |
guarantee(false, "thread-local allocation buffers not supported"); |
|
510 |
return NULL; |
|
511 |
} |
|
512 |
||
513 |
void CollectedHeap::ensure_parsability(bool retire_tlabs) { |
|
514 |
// The second disjunct in the assertion below makes a concession |
|
515 |
// for the start-up verification done while the VM is being |
|
516 |
// created. Callers be careful that you know that mutators |
|
517 |
// aren't going to interfere -- for instance, this is permissible |
|
518 |
// if we are still single-threaded and have either not yet |
|
519 |
// started allocating (nothing much to verify) or we have |
|
520 |
// started allocating but are now a full-fledged JavaThread |
|
521 |
// (and have thus made our TLAB's) available for filling. |
|
522 |
assert(SafepointSynchronize::is_at_safepoint() || |
|
523 |
!is_init_completed(), |
|
524 |
"Should only be called at a safepoint or at start-up" |
|
525 |
" otherwise concurrent mutator activity may make heap " |
|
526 |
" unparsable again"); |
|
4637 | 527 |
const bool use_tlab = UseTLAB; |
528 |
const bool deferred = _defer_initial_card_mark; |
|
529 |
// The main thread starts allocating via a TLAB even before it |
|
530 |
// has added itself to the threads list at vm boot-up. |
|
531 |
assert(!use_tlab || Threads::first() != NULL, |
|
532 |
"Attempt to fill tlabs before main thread has been added" |
|
533 |
" to threads list is doomed to failure!"); |
|
534 |
for (JavaThread *thread = Threads::first(); thread; thread = thread->next()) { |
|
535 |
if (use_tlab) thread->tlab().make_parsable(retire_tlabs); |
|
536 |
#ifdef COMPILER2 |
|
537 |
// The deferred store barriers must all have been flushed to the |
|
538 |
// card-table (or other remembered set structure) before GC starts |
|
539 |
// processing the card-table (or other remembered set). |
|
540 |
if (deferred) flush_deferred_store_barrier(thread); |
|
541 |
#else |
|
542 |
assert(!deferred, "Should be false"); |
|
543 |
assert(thread->deferred_card_mark().is_empty(), "Should be empty"); |
|
544 |
#endif |
|
1 | 545 |
} |
546 |
} |
|
547 |
||
548 |
void CollectedHeap::accumulate_statistics_all_tlabs() { |
|
549 |
if (UseTLAB) { |
|
550 |
assert(SafepointSynchronize::is_at_safepoint() || |
|
551 |
!is_init_completed(), |
|
552 |
"should only accumulate statistics on tlabs at safepoint"); |
|
553 |
||
554 |
ThreadLocalAllocBuffer::accumulate_statistics_before_gc(); |
|
555 |
} |
|
556 |
} |
|
557 |
||
558 |
void CollectedHeap::resize_all_tlabs() { |
|
559 |
if (UseTLAB) { |
|
560 |
assert(SafepointSynchronize::is_at_safepoint() || |
|
561 |
!is_init_completed(), |
|
562 |
"should only resize tlabs at safepoint"); |
|
563 |
||
564 |
ThreadLocalAllocBuffer::resize_all_tlabs(); |
|
565 |
} |
|
566 |
} |
|
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567 |
|
18025 | 568 |
void CollectedHeap::pre_full_gc_dump(GCTimer* timer) { |
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569 |
if (HeapDumpBeforeFullGC) { |
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570 |
GCTraceTime tt("Heap Dump (before full gc): ", PrintGCDetails, false, timer, GCId::create()); |
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571 |
// We are doing a "major" collection and a heap dump before |
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572 |
// major collection has been requested. |
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573 |
HeapDumper::dump_heap(); |
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|
574 |
} |
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575 |
if (PrintClassHistogramBeforeFullGC) { |
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576 |
GCTraceTime tt("Class Histogram (before full gc): ", PrintGCDetails, true, timer, GCId::create()); |
18025 | 577 |
VM_GC_HeapInspection inspector(gclog_or_tty, false /* ! full gc */); |
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578 |
inspector.doit(); |
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|
579 |
} |
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|
580 |
} |
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|
581 |
|
18025 | 582 |
void CollectedHeap::post_full_gc_dump(GCTimer* timer) { |
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|
583 |
if (HeapDumpAfterFullGC) { |
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|
584 |
GCTraceTime tt("Heap Dump (after full gc): ", PrintGCDetails, false, timer, GCId::create()); |
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|
585 |
HeapDumper::dump_heap(); |
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|
586 |
} |
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|
587 |
if (PrintClassHistogramAfterFullGC) { |
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|
588 |
GCTraceTime tt("Class Histogram (after full gc): ", PrintGCDetails, true, timer, GCId::create()); |
18025 | 589 |
VM_GC_HeapInspection inspector(gclog_or_tty, false /* ! full gc */); |
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|
590 |
inspector.doit(); |
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|
591 |
} |
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|
592 |
} |
10742 | 593 |
|
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|
594 |
void CollectedHeap::initialize_reserved_region(HeapWord *start, HeapWord *end) { |
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|
595 |
// It is important to do this in a way such that concurrent readers can't |
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|
596 |
// temporarily think something is in the heap. (Seen this happen in asserts.) |
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|
597 |
_reserved.set_word_size(0); |
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|
598 |
_reserved.set_start(start); |
26315213bab8
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changeset
|
599 |
_reserved.set_end(end); |
26315213bab8
8055091: CollectedHeap::_reserved usage should be cleaned up
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diff
changeset
|
600 |
} |
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changeset
|
601 |
|
11247 | 602 |
/////////////// Unit tests /////////////// |
603 |
||
604 |
#ifndef PRODUCT |
|
605 |
void CollectedHeap::test_is_in() { |
|
606 |
CollectedHeap* heap = Universe::heap(); |
|
607 |
||
11414
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stefank
parents:
11247
diff
changeset
|
608 |
uintptr_t epsilon = (uintptr_t) MinObjAlignment; |
5179aa58e6e9
7125503: Compiling collectedHeap.cpp fails with -Werror=int-to-pointer-cast with g++ 4.6.1
stefank
parents:
11247
diff
changeset
|
609 |
uintptr_t heap_start = (uintptr_t) heap->_reserved.start(); |
5179aa58e6e9
7125503: Compiling collectedHeap.cpp fails with -Werror=int-to-pointer-cast with g++ 4.6.1
stefank
parents:
11247
diff
changeset
|
610 |
uintptr_t heap_end = (uintptr_t) heap->_reserved.end(); |
5179aa58e6e9
7125503: Compiling collectedHeap.cpp fails with -Werror=int-to-pointer-cast with g++ 4.6.1
stefank
parents:
11247
diff
changeset
|
611 |
|
11247 | 612 |
// Test that NULL is not in the heap. |
613 |
assert(!heap->is_in(NULL), "NULL is unexpectedly in the heap"); |
|
614 |
||
615 |
// Test that a pointer to before the heap start is reported as outside the heap. |
|
11414
5179aa58e6e9
7125503: Compiling collectedHeap.cpp fails with -Werror=int-to-pointer-cast with g++ 4.6.1
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11247
diff
changeset
|
616 |
assert(heap_start >= ((uintptr_t)NULL + epsilon), "sanity"); |
5179aa58e6e9
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stefank
parents:
11247
diff
changeset
|
617 |
void* before_heap = (void*)(heap_start - epsilon); |
11247 | 618 |
assert(!heap->is_in(before_heap), |
24424
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8037816: Fix for 8036122 breaks build with Xcode5/clang
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parents:
23873
diff
changeset
|
619 |
err_msg("before_heap: " PTR_FORMAT " is unexpectedly in the heap", p2i(before_heap))); |
11247 | 620 |
|
621 |
// Test that a pointer to after the heap end is reported as outside the heap. |
|
11414
5179aa58e6e9
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stefank
parents:
11247
diff
changeset
|
622 |
assert(heap_end <= ((uintptr_t)-1 - epsilon), "sanity"); |
5179aa58e6e9
7125503: Compiling collectedHeap.cpp fails with -Werror=int-to-pointer-cast with g++ 4.6.1
stefank
parents:
11247
diff
changeset
|
623 |
void* after_heap = (void*)(heap_end + epsilon); |
11247 | 624 |
assert(!heap->is_in(after_heap), |
24424
2658d7834c6e
8037816: Fix for 8036122 breaks build with Xcode5/clang
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parents:
23873
diff
changeset
|
625 |
err_msg("after_heap: " PTR_FORMAT " is unexpectedly in the heap", p2i(after_heap))); |
11247 | 626 |
} |
627 |
#endif |