author | stefank |
Fri, 24 Nov 2017 15:48:01 +0100 | |
changeset 48116 | 8a5e8cd321d9 |
parent 47819 | ee36a8e36561 |
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permissions | -rw-r--r-- |
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/* |
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* Copyright (c) 2001, 2017, Oracle and/or its affiliates. All rights reserved. |
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
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* |
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* This code is free software; you can redistribute it and/or modify it |
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* under the terms of the GNU General Public License version 2 only, as |
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* published by the Free Software Foundation. |
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* |
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* This code is distributed in the hope that it will be useful, but WITHOUT |
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
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* version 2 for more details (a copy is included in the LICENSE file that |
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* accompanied this code). |
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* |
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* You should have received a copy of the GNU General Public License version |
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* 2 along with this work; if not, write to the Free Software Foundation, |
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
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* |
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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* or visit www.oracle.com if you need additional information or have any |
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* questions. |
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* |
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*/ |
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#ifndef SHARE_VM_GC_SHARED_COLLECTEDHEAP_HPP |
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#define SHARE_VM_GC_SHARED_COLLECTEDHEAP_HPP |
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#include "gc/shared/gcCause.hpp" |
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#include "gc/shared/gcWhen.hpp" |
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#include "memory/allocation.hpp" |
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#include "runtime/handles.hpp" |
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#include "runtime/perfData.hpp" |
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#include "runtime/safepoint.hpp" |
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#include "utilities/debug.hpp" |
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#include "utilities/events.hpp" |
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#include "utilities/formatBuffer.hpp" |
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// A "CollectedHeap" is an implementation of a java heap for HotSpot. This |
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// is an abstract class: there may be many different kinds of heaps. This |
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// class defines the functions that a heap must implement, and contains |
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// infrastructure common to all heaps. |
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class AdaptiveSizePolicy; |
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class BarrierSet; |
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class CollectorPolicy; |
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class GCHeapSummary; |
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class GCTimer; |
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class GCTracer; |
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class MetaspaceSummary; |
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class Thread; |
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class ThreadClosure; |
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class VirtualSpaceSummary; |
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class WorkGang; |
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class nmethod; |
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class GCMessage : public FormatBuffer<1024> { |
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public: |
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bool is_before; |
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public: |
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GCMessage() {} |
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}; |
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class CollectedHeap; |
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class GCHeapLog : public EventLogBase<GCMessage> { |
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private: |
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void log_heap(CollectedHeap* heap, bool before); |
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public: |
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GCHeapLog() : EventLogBase<GCMessage>("GC Heap History") {} |
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void log_heap_before(CollectedHeap* heap) { |
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log_heap(heap, true); |
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} |
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void log_heap_after(CollectedHeap* heap) { |
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log_heap(heap, false); |
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} |
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}; |
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// |
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// CollectedHeap |
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// GenCollectedHeap |
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// SerialHeap |
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// CMSHeap |
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// G1CollectedHeap |
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// ParallelScavengeHeap |
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// |
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class CollectedHeap : public CHeapObj<mtInternal> { |
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friend class VMStructs; |
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friend class JVMCIVMStructs; |
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friend class IsGCActiveMark; // Block structured external access to _is_gc_active |
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private: |
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#ifdef ASSERT |
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static int _fire_out_of_memory_count; |
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#endif |
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GCHeapLog* _gc_heap_log; |
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// Used in support of ReduceInitialCardMarks; only consulted if COMPILER2 |
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// or INCLUDE_JVMCI is being used |
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bool _defer_initial_card_mark; |
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MemRegion _reserved; |
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protected: |
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BarrierSet* _barrier_set; |
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bool _is_gc_active; |
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// Used for filler objects (static, but initialized in ctor). |
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static size_t _filler_array_max_size; |
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unsigned int _total_collections; // ... started |
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unsigned int _total_full_collections; // ... started |
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NOT_PRODUCT(volatile size_t _promotion_failure_alot_count;) |
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NOT_PRODUCT(volatile size_t _promotion_failure_alot_gc_number;) |
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// Reason for current garbage collection. Should be set to |
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// a value reflecting no collection between collections. |
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GCCause::Cause _gc_cause; |
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GCCause::Cause _gc_lastcause; |
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PerfStringVariable* _perf_gc_cause; |
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PerfStringVariable* _perf_gc_lastcause; |
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// Constructor |
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CollectedHeap(); |
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// Do common initializations that must follow instance construction, |
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// for example, those needing virtual calls. |
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// This code could perhaps be moved into initialize() but would |
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// be slightly more awkward because we want the latter to be a |
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// pure virtual. |
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void pre_initialize(); |
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// Create a new tlab. All TLAB allocations must go through this. |
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virtual HeapWord* allocate_new_tlab(size_t size); |
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// Accumulate statistics on all tlabs. |
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virtual void accumulate_statistics_all_tlabs(); |
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// Reinitialize tlabs before resuming mutators. |
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virtual void resize_all_tlabs(); |
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// Allocate from the current thread's TLAB, with broken-out slow path. |
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inline static HeapWord* allocate_from_tlab(Klass* klass, Thread* thread, size_t size); |
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static HeapWord* allocate_from_tlab_slow(Klass* klass, Thread* thread, size_t size); |
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// Allocate an uninitialized block of the given size, or returns NULL if |
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// this is impossible. |
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inline static HeapWord* common_mem_allocate_noinit(Klass* klass, size_t size, TRAPS); |
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// Like allocate_init, but the block returned by a successful allocation |
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// is guaranteed initialized to zeros. |
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inline static HeapWord* common_mem_allocate_init(Klass* klass, size_t size, TRAPS); |
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// Helper functions for (VM) allocation. |
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inline static void post_allocation_setup_common(Klass* klass, HeapWord* obj); |
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inline static void post_allocation_setup_no_klass_install(Klass* klass, |
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HeapWord* objPtr); |
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inline static void post_allocation_setup_obj(Klass* klass, HeapWord* obj, int size); |
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inline static void post_allocation_setup_array(Klass* klass, |
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HeapWord* obj, int length); |
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inline static void post_allocation_setup_class(Klass* klass, HeapWord* obj, int size); |
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// Clears an allocated object. |
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inline static void init_obj(HeapWord* obj, size_t size); |
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// Filler object utilities. |
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static inline size_t filler_array_hdr_size(); |
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static inline size_t filler_array_min_size(); |
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DEBUG_ONLY(static void fill_args_check(HeapWord* start, size_t words);) |
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DEBUG_ONLY(static void zap_filler_array(HeapWord* start, size_t words, bool zap = true);) |
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// Fill with a single array; caller must ensure filler_array_min_size() <= |
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// words <= filler_array_max_size(). |
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static inline void fill_with_array(HeapWord* start, size_t words, bool zap = true); |
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// Fill with a single object (either an int array or a java.lang.Object). |
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static inline void fill_with_object_impl(HeapWord* start, size_t words, bool zap = true); |
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virtual void trace_heap(GCWhen::Type when, const GCTracer* tracer); |
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// Verification functions |
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virtual void check_for_bad_heap_word_value(HeapWord* addr, size_t size) |
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PRODUCT_RETURN; |
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virtual void check_for_non_bad_heap_word_value(HeapWord* addr, size_t size) |
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PRODUCT_RETURN; |
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debug_only(static void check_for_valid_allocation_state();) |
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public: |
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enum Name { |
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SerialHeap, |
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ParallelScavengeHeap, |
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G1CollectedHeap, |
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CMSHeap |
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}; |
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static inline size_t filler_array_max_size() { |
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return _filler_array_max_size; |
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} |
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virtual Name kind() const = 0; |
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virtual const char* name() const = 0; |
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/** |
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* Returns JNI error code JNI_ENOMEM if memory could not be allocated, |
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* and JNI_OK on success. |
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*/ |
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virtual jint initialize() = 0; |
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// In many heaps, there will be a need to perform some initialization activities |
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// after the Universe is fully formed, but before general heap allocation is allowed. |
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// This is the correct place to place such initialization methods. |
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virtual void post_initialize() = 0; |
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// Stop any onging concurrent work and prepare for exit. |
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virtual void stop() {} |
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// Stop and resume concurrent GC threads interfering with safepoint operations |
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virtual void safepoint_synchronize_begin() {} |
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virtual void safepoint_synchronize_end() {} |
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228 |
|
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void initialize_reserved_region(HeapWord *start, HeapWord *end); |
1 | 230 |
MemRegion reserved_region() const { return _reserved; } |
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address base() const { return (address)reserved_region().start(); } |
1 | 232 |
|
233 |
virtual size_t capacity() const = 0; |
|
234 |
virtual size_t used() const = 0; |
|
235 |
||
236 |
// Return "true" if the part of the heap that allocates Java |
|
237 |
// objects has reached the maximal committed limit that it can |
|
238 |
// reach, without a garbage collection. |
|
239 |
virtual bool is_maximal_no_gc() const = 0; |
|
240 |
||
241 |
// Support for java.lang.Runtime.maxMemory(): return the maximum amount of |
|
242 |
// memory that the vm could make available for storing 'normal' java objects. |
|
243 |
// This is based on the reserved address space, but should not include space |
|
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// that the vm uses internally for bookkeeping or temporary storage |
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// (e.g., in the case of the young gen, one of the survivor |
1 | 246 |
// spaces). |
247 |
virtual size_t max_capacity() const = 0; |
|
248 |
||
249 |
// Returns "TRUE" if "p" points into the reserved area of the heap. |
|
250 |
bool is_in_reserved(const void* p) const { |
|
251 |
return _reserved.contains(p); |
|
252 |
} |
|
253 |
||
254 |
bool is_in_reserved_or_null(const void* p) const { |
|
255 |
return p == NULL || is_in_reserved(p); |
|
256 |
} |
|
257 |
||
11247 | 258 |
// Returns "TRUE" iff "p" points into the committed areas of the heap. |
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259 |
// This method can be expensive so avoid using it in performance critical |
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260 |
// code. |
1 | 261 |
virtual bool is_in(const void* p) const = 0; |
262 |
||
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|
263 |
DEBUG_ONLY(bool is_in_or_null(const void* p) const { return p == NULL || is_in(p); }) |
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264 |
|
1 | 265 |
// Let's define some terms: a "closed" subset of a heap is one that |
266 |
// |
|
267 |
// 1) contains all currently-allocated objects, and |
|
268 |
// |
|
269 |
// 2) is closed under reference: no object in the closed subset |
|
270 |
// references one outside the closed subset. |
|
271 |
// |
|
272 |
// Membership in a heap's closed subset is useful for assertions. |
|
273 |
// Clearly, the entire heap is a closed subset, so the default |
|
274 |
// implementation is to use "is_in_reserved". But this may not be too |
|
275 |
// liberal to perform useful checking. Also, the "is_in" predicate |
|
276 |
// defines a closed subset, but may be too expensive, since "is_in" |
|
277 |
// verifies that its argument points to an object head. The |
|
278 |
// "closed_subset" method allows a heap to define an intermediate |
|
279 |
// predicate, allowing more precise checking than "is_in_reserved" at |
|
280 |
// lower cost than "is_in." |
|
281 |
||
282 |
// One important case is a heap composed of disjoint contiguous spaces, |
|
283 |
// such as the Garbage-First collector. Such heaps have a convenient |
|
284 |
// closed subset consisting of the allocated portions of those |
|
285 |
// contiguous spaces. |
|
286 |
||
287 |
// Return "TRUE" iff the given pointer points into the heap's defined |
|
288 |
// closed subset (which defaults to the entire heap). |
|
289 |
virtual bool is_in_closed_subset(const void* p) const { |
|
290 |
return is_in_reserved(p); |
|
291 |
} |
|
292 |
||
293 |
bool is_in_closed_subset_or_null(const void* p) const { |
|
294 |
return p == NULL || is_in_closed_subset(p); |
|
295 |
} |
|
296 |
||
297 |
void set_gc_cause(GCCause::Cause v) { |
|
298 |
if (UsePerfData) { |
|
299 |
_gc_lastcause = _gc_cause; |
|
300 |
_perf_gc_lastcause->set_value(GCCause::to_string(_gc_lastcause)); |
|
301 |
_perf_gc_cause->set_value(GCCause::to_string(v)); |
|
302 |
} |
|
303 |
_gc_cause = v; |
|
304 |
} |
|
305 |
GCCause::Cause gc_cause() { return _gc_cause; } |
|
306 |
||
307 |
// General obj/array allocation facilities. |
|
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inline static oop obj_allocate(Klass* klass, int size, TRAPS); |
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inline static oop array_allocate(Klass* klass, int size, int length, TRAPS); |
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inline static oop array_allocate_nozero(Klass* klass, int size, int length, TRAPS); |
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311 |
inline static oop class_allocate(Klass* klass, int size, TRAPS); |
1 | 312 |
|
313 |
// Raw memory allocation facilities |
|
314 |
// The obj and array allocate methods are covers for these methods. |
|
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315 |
// mem_allocate() should never be |
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|
316 |
// called to allocate TLABs, only individual objects. |
1 | 317 |
virtual HeapWord* mem_allocate(size_t size, |
318 |
bool* gc_overhead_limit_was_exceeded) = 0; |
|
319 |
||
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320 |
// Utilities for turning raw memory into filler objects. |
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|
321 |
// |
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322 |
// min_fill_size() is the smallest region that can be filled. |
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|
323 |
// fill_with_objects() can fill arbitrary-sized regions of the heap using |
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|
324 |
// multiple objects. fill_with_object() is for regions known to be smaller |
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|
325 |
// than the largest array of integers; it uses a single object to fill the |
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|
326 |
// region and has slightly less overhead. |
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|
327 |
static size_t min_fill_size() { |
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|
328 |
return size_t(align_object_size(oopDesc::header_size())); |
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|
329 |
} |
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|
330 |
|
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|
331 |
static void fill_with_objects(HeapWord* start, size_t words, bool zap = true); |
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|
332 |
|
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|
333 |
static void fill_with_object(HeapWord* start, size_t words, bool zap = true); |
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|
334 |
static void fill_with_object(MemRegion region, bool zap = true) { |
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|
335 |
fill_with_object(region.start(), region.word_size(), zap); |
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|
336 |
} |
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|
337 |
static void fill_with_object(HeapWord* start, HeapWord* end, bool zap = true) { |
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|
338 |
fill_with_object(start, pointer_delta(end, start), zap); |
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|
339 |
} |
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|
340 |
|
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|
341 |
// Return the address "addr" aligned by "alignment_in_bytes" if such |
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|
342 |
// an address is below "end". Return NULL otherwise. |
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|
343 |
inline static HeapWord* align_allocation_or_fail(HeapWord* addr, |
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|
344 |
HeapWord* end, |
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|
345 |
unsigned short alignment_in_bytes); |
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|
346 |
|
1 | 347 |
// Some heaps may offer a contiguous region for shared non-blocking |
348 |
// allocation, via inlined code (by exporting the address of the top and |
|
349 |
// end fields defining the extent of the contiguous allocation region.) |
|
350 |
||
351 |
// This function returns "true" iff the heap supports this kind of |
|
352 |
// allocation. (Default is "no".) |
|
353 |
virtual bool supports_inline_contig_alloc() const { |
|
354 |
return false; |
|
355 |
} |
|
356 |
// These functions return the addresses of the fields that define the |
|
357 |
// boundaries of the contiguous allocation area. (These fields should be |
|
358 |
// physically near to one another.) |
|
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|
359 |
virtual HeapWord* volatile* top_addr() const { |
1 | 360 |
guarantee(false, "inline contiguous allocation not supported"); |
361 |
return NULL; |
|
362 |
} |
|
363 |
virtual HeapWord** end_addr() const { |
|
364 |
guarantee(false, "inline contiguous allocation not supported"); |
|
365 |
return NULL; |
|
366 |
} |
|
367 |
||
368 |
// Some heaps may be in an unparseable state at certain times between |
|
369 |
// collections. This may be necessary for efficient implementation of |
|
370 |
// certain allocation-related activities. Calling this function before |
|
371 |
// attempting to parse a heap ensures that the heap is in a parsable |
|
372 |
// state (provided other concurrent activity does not introduce |
|
373 |
// unparsability). It is normally expected, therefore, that this |
|
374 |
// method is invoked with the world stopped. |
|
375 |
// NOTE: if you override this method, make sure you call |
|
376 |
// super::ensure_parsability so that the non-generational |
|
377 |
// part of the work gets done. See implementation of |
|
378 |
// CollectedHeap::ensure_parsability and, for instance, |
|
379 |
// that of GenCollectedHeap::ensure_parsability(). |
|
380 |
// The argument "retire_tlabs" controls whether existing TLABs |
|
381 |
// are merely filled or also retired, thus preventing further |
|
382 |
// allocation from them and necessitating allocation of new TLABs. |
|
383 |
virtual void ensure_parsability(bool retire_tlabs); |
|
384 |
||
385 |
// Section on thread-local allocation buffers (TLABs) |
|
386 |
// If the heap supports thread-local allocation buffers, it should override |
|
387 |
// the following methods: |
|
388 |
// Returns "true" iff the heap supports thread-local allocation buffers. |
|
389 |
// The default is "no". |
|
22552 | 390 |
virtual bool supports_tlab_allocation() const = 0; |
391 |
||
1 | 392 |
// The amount of space available for thread-local allocation buffers. |
22552 | 393 |
virtual size_t tlab_capacity(Thread *thr) const = 0; |
394 |
||
395 |
// The amount of used space for thread-local allocation buffers for the given thread. |
|
396 |
virtual size_t tlab_used(Thread *thr) const = 0; |
|
397 |
||
398 |
virtual size_t max_tlab_size() const; |
|
399 |
||
1 | 400 |
// An estimate of the maximum allocation that could be performed |
401 |
// for thread-local allocation buffers without triggering any |
|
402 |
// collection or expansion activity. |
|
403 |
virtual size_t unsafe_max_tlab_alloc(Thread *thr) const { |
|
404 |
guarantee(false, "thread-local allocation buffers not supported"); |
|
405 |
return 0; |
|
406 |
} |
|
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|
407 |
|
1 | 408 |
// Can a compiler initialize a new object without store barriers? |
409 |
// This permission only extends from the creation of a new object |
|
4030
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|
410 |
// via a TLAB up to the first subsequent safepoint. If such permission |
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|
411 |
// is granted for this heap type, the compiler promises to call |
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|
412 |
// defer_store_barrier() below on any slow path allocation of |
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|
413 |
// a new object for which such initializing store barriers will |
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|
414 |
// have been elided. |
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|
415 |
virtual bool can_elide_tlab_store_barriers() const = 0; |
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|
416 |
|
1 | 417 |
// If a compiler is eliding store barriers for TLAB-allocated objects, |
418 |
// there is probably a corresponding slow path which can produce |
|
419 |
// an object allocated anywhere. The compiler's runtime support |
|
420 |
// promises to call this function on such a slow-path-allocated |
|
421 |
// object before performing initializations that have elided |
|
4030
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|
422 |
// store barriers. Returns new_obj, or maybe a safer copy thereof. |
4637 | 423 |
virtual oop new_store_pre_barrier(JavaThread* thread, oop new_obj); |
4030
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|
424 |
|
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|
425 |
// Answers whether an initializing store to a new object currently |
4637 | 426 |
// allocated at the given address doesn't need a store |
4030
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|
427 |
// barrier. Returns "true" if it doesn't need an initializing |
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|
428 |
// store barrier; answers "false" if it does. |
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|
429 |
virtual bool can_elide_initializing_store_barrier(oop new_obj) = 0; |
4c471254865e
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|
430 |
|
4637 | 431 |
// If a compiler is eliding store barriers for TLAB-allocated objects, |
432 |
// we will be informed of a slow-path allocation by a call |
|
433 |
// to new_store_pre_barrier() above. Such a call precedes the |
|
434 |
// initialization of the object itself, and no post-store-barriers will |
|
435 |
// be issued. Some heap types require that the barrier strictly follows |
|
436 |
// the initializing stores. (This is currently implemented by deferring the |
|
437 |
// barrier until the next slow-path allocation or gc-related safepoint.) |
|
438 |
// This interface answers whether a particular heap type needs the card |
|
439 |
// mark to be thus strictly sequenced after the stores. |
|
440 |
virtual bool card_mark_must_follow_store() const = 0; |
|
441 |
||
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|
442 |
// If the CollectedHeap was asked to defer a store barrier above, |
4c471254865e
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|
443 |
// this informs it to flush such a deferred store barrier to the |
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|
444 |
// remembered set. |
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|
445 |
virtual void flush_deferred_store_barrier(JavaThread* thread); |
1 | 446 |
|
447 |
// Perform a collection of the heap; intended for use in implementing |
|
448 |
// "System.gc". This probably implies as full a collection as the |
|
449 |
// "CollectedHeap" supports. |
|
450 |
virtual void collect(GCCause::Cause cause) = 0; |
|
451 |
||
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|
452 |
// Perform a full collection |
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|
453 |
virtual void do_full_collection(bool clear_all_soft_refs) = 0; |
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|
454 |
|
1 | 455 |
// This interface assumes that it's being called by the |
456 |
// vm thread. It collects the heap assuming that the |
|
457 |
// heap lock is already held and that we are executing in |
|
458 |
// the context of the vm thread. |
|
13728
882756847a04
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
13195
diff
changeset
|
459 |
virtual void collect_as_vm_thread(GCCause::Cause cause); |
882756847a04
6964458: Reimplement class meta-data storage to use native memory
coleenp
parents:
13195
diff
changeset
|
460 |
|
1 | 461 |
// Returns the barrier set for this heap |
462 |
BarrierSet* barrier_set() { return _barrier_set; } |
|
30152 | 463 |
void set_barrier_set(BarrierSet* barrier_set); |
1 | 464 |
|
465 |
// Returns "true" iff there is a stop-world GC in progress. (I assume |
|
466 |
// that it should answer "false" for the concurrent part of a concurrent |
|
467 |
// collector -- dld). |
|
468 |
bool is_gc_active() const { return _is_gc_active; } |
|
469 |
||
470 |
// Total number of GC collections (started) |
|
471 |
unsigned int total_collections() const { return _total_collections; } |
|
472 |
unsigned int total_full_collections() const { return _total_full_collections;} |
|
473 |
||
474 |
// Increment total number of GC collections (started) |
|
475 |
// Should be protected but used by PSMarkSweep - cleanup for 1.4.2 |
|
476 |
void increment_total_collections(bool full = false) { |
|
477 |
_total_collections++; |
|
478 |
if (full) { |
|
479 |
increment_total_full_collections(); |
|
480 |
} |
|
481 |
} |
|
482 |
||
483 |
void increment_total_full_collections() { _total_full_collections++; } |
|
484 |
||
5343
95a5c4b89273
6858496: Clear all SoftReferences before an out-of-memory due to GC overhead limit.
jmasa
parents:
4637
diff
changeset
|
485 |
// Return the CollectorPolicy for the heap |
95a5c4b89273
6858496: Clear all SoftReferences before an out-of-memory due to GC overhead limit.
jmasa
parents:
4637
diff
changeset
|
486 |
virtual CollectorPolicy* collector_policy() const = 0; |
95a5c4b89273
6858496: Clear all SoftReferences before an out-of-memory due to GC overhead limit.
jmasa
parents:
4637
diff
changeset
|
487 |
|
1 | 488 |
// Iterate over all objects, calling "cl.do_object" on each. |
489 |
virtual void object_iterate(ObjectClosure* cl) = 0; |
|
490 |
||
1893
c82e388e17c5
6689653: JMapPerm fails with UseConcMarkSweepIncGC and compressed oops off
jmasa
parents:
1668
diff
changeset
|
491 |
// Similar to object_iterate() except iterates only |
c82e388e17c5
6689653: JMapPerm fails with UseConcMarkSweepIncGC and compressed oops off
jmasa
parents:
1668
diff
changeset
|
492 |
// over live objects. |
c82e388e17c5
6689653: JMapPerm fails with UseConcMarkSweepIncGC and compressed oops off
jmasa
parents:
1668
diff
changeset
|
493 |
virtual void safe_object_iterate(ObjectClosure* cl) = 0; |
c82e388e17c5
6689653: JMapPerm fails with UseConcMarkSweepIncGC and compressed oops off
jmasa
parents:
1668
diff
changeset
|
494 |
|
1 | 495 |
// NOTE! There is no requirement that a collector implement these |
496 |
// functions. |
|
497 |
// |
|
498 |
// A CollectedHeap is divided into a dense sequence of "blocks"; that is, |
|
499 |
// each address in the (reserved) heap is a member of exactly |
|
500 |
// one block. The defining characteristic of a block is that it is |
|
501 |
// possible to find its size, and thus to progress forward to the next |
|
502 |
// block. (Blocks may be of different sizes.) Thus, blocks may |
|
503 |
// represent Java objects, or they might be free blocks in a |
|
504 |
// free-list-based heap (or subheap), as long as the two kinds are |
|
505 |
// distinguishable and the size of each is determinable. |
|
506 |
||
507 |
// Returns the address of the start of the "block" that contains the |
|
508 |
// address "addr". We say "blocks" instead of "object" since some heaps |
|
509 |
// may not pack objects densely; a chunk may either be an object or a |
|
510 |
// non-object. |
|
511 |
virtual HeapWord* block_start(const void* addr) const = 0; |
|
512 |
||
513 |
// Requires "addr" to be the start of a chunk, and returns its size. |
|
514 |
// "addr + size" is required to be the start of a new chunk, or the end |
|
515 |
// of the active area of the heap. |
|
516 |
virtual size_t block_size(const HeapWord* addr) const = 0; |
|
517 |
||
518 |
// Requires "addr" to be the start of a block, and returns "TRUE" iff |
|
519 |
// the block is an object. |
|
520 |
virtual bool block_is_obj(const HeapWord* addr) const = 0; |
|
521 |
||
522 |
// Returns the longest time (in ms) that has elapsed since the last |
|
523 |
// time that any part of the heap was examined by a garbage collection. |
|
524 |
virtual jlong millis_since_last_gc() = 0; |
|
525 |
||
526 |
// Perform any cleanup actions necessary before allowing a verification. |
|
527 |
virtual void prepare_for_verify() = 0; |
|
528 |
||
2141
e9a644aaff87
6797870: Add -XX:+{HeapDump,PrintClassHistogram}{Before,After}FullGC
ysr
parents:
2006
diff
changeset
|
529 |
// Generate any dumps preceding or following a full gc |
35061 | 530 |
private: |
35915
5808cd93abfc
8148755: -XX:+HeapDumpAfterFullGC creates heap dump both before and after Full GC
redestad
parents:
35135
diff
changeset
|
531 |
void full_gc_dump(GCTimer* timer, bool before); |
35061 | 532 |
public: |
18025 | 533 |
void pre_full_gc_dump(GCTimer* timer); |
534 |
void post_full_gc_dump(GCTimer* timer); |
|
535 |
||
536 |
VirtualSpaceSummary create_heap_space_summary(); |
|
537 |
GCHeapSummary create_heap_summary(); |
|
538 |
||
539 |
MetaspaceSummary create_metaspace_summary(); |
|
2141
e9a644aaff87
6797870: Add -XX:+{HeapDump,PrintClassHistogram}{Before,After}FullGC
ysr
parents:
2006
diff
changeset
|
540 |
|
10997
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
541 |
// Print heap information on the given outputStream. |
1 | 542 |
virtual void print_on(outputStream* st) const = 0; |
10997
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
543 |
// The default behavior is to call print_on() on tty. |
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
544 |
virtual void print() const { |
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
545 |
print_on(tty); |
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
546 |
} |
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
547 |
// Print more detailed heap information on the given |
18025 | 548 |
// outputStream. The default behavior is to call print_on(). It is |
10997
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
549 |
// up to each subclass to override it and add any additional output |
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
550 |
// it needs. |
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
551 |
virtual void print_extended_on(outputStream* st) const { |
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
552 |
print_on(st); |
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
553 |
} |
1 | 554 |
|
29081
c61eb4914428
8072911: Remove includes of oop.inline.hpp from .hpp files
stefank
parents:
28940
diff
changeset
|
555 |
virtual void print_on_error(outputStream* st) const; |
16685
41c34debcde0
8011872: Include Bit Map addresses in the hs_err files
stefank
parents:
14579
diff
changeset
|
556 |
|
1 | 557 |
// Print all GC threads (other than the VM thread) |
558 |
// used by this heap. |
|
559 |
virtual void print_gc_threads_on(outputStream* st) const = 0; |
|
10997
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
560 |
// The default behavior is to call print_gc_threads_on() on tty. |
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
561 |
void print_gc_threads() { |
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
562 |
print_gc_threads_on(tty); |
0be4b3be7197
7099849: G1: include heap region information in hs_err files
tonyp
parents:
10742
diff
changeset
|
563 |
} |
1 | 564 |
// Iterator for all GC threads (other than VM thread) |
565 |
virtual void gc_threads_do(ThreadClosure* tc) const = 0; |
|
566 |
||
567 |
// Print any relevant tracing info that flags imply. |
|
568 |
// Default implementation does nothing. |
|
569 |
virtual void print_tracing_info() const = 0; |
|
570 |
||
18025 | 571 |
void print_heap_before_gc(); |
572 |
void print_heap_after_gc(); |
|
573 |
||
47624
b055cb5170f5
8185141: Generalize scavengeable nmethod root handling
eosterlund
parents:
47622
diff
changeset
|
574 |
// An object is scavengable if its location may move during a scavenge. |
b055cb5170f5
8185141: Generalize scavengeable nmethod root handling
eosterlund
parents:
47622
diff
changeset
|
575 |
// (A scavenge is a GC which is not a full GC.) |
b055cb5170f5
8185141: Generalize scavengeable nmethod root handling
eosterlund
parents:
47622
diff
changeset
|
576 |
virtual bool is_scavengable(oop obj) = 0; |
19339 | 577 |
// Registering and unregistering an nmethod (compiled code) with the heap. |
578 |
// Override with specific mechanism for each specialized heap type. |
|
47624
b055cb5170f5
8185141: Generalize scavengeable nmethod root handling
eosterlund
parents:
47622
diff
changeset
|
579 |
virtual void register_nmethod(nmethod* nm) {} |
b055cb5170f5
8185141: Generalize scavengeable nmethod root handling
eosterlund
parents:
47622
diff
changeset
|
580 |
virtual void unregister_nmethod(nmethod* nm) {} |
b055cb5170f5
8185141: Generalize scavengeable nmethod root handling
eosterlund
parents:
47622
diff
changeset
|
581 |
virtual void verify_nmethod(nmethod* nmethod) {} |
19339 | 582 |
|
28940
c314cf1db3fa
8066566: Refactor ParNewGeneration to contain ParNewTracer
mlarsson
parents:
27623
diff
changeset
|
583 |
void trace_heap_before_gc(const GCTracer* gc_tracer); |
c314cf1db3fa
8066566: Refactor ParNewGeneration to contain ParNewTracer
mlarsson
parents:
27623
diff
changeset
|
584 |
void trace_heap_after_gc(const GCTracer* gc_tracer); |
11636
3c07b54482a5
7141200: log some interesting information in ring buffers for crashes
never
parents:
11396
diff
changeset
|
585 |
|
1 | 586 |
// Heap verification |
35061 | 587 |
virtual void verify(VerifyOption option) = 0; |
1 | 588 |
|
46384
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
589 |
// Return true if concurrent phase control (via |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
590 |
// request_concurrent_phase_control) is supported by this collector. |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
591 |
// The default implementation returns false. |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
592 |
virtual bool supports_concurrent_phase_control() const; |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
593 |
|
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
594 |
// Return a NULL terminated array of concurrent phase names provided |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
595 |
// by this collector. Supports Whitebox testing. These are the |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
596 |
// names recognized by request_concurrent_phase(). The default |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
597 |
// implementation returns an array of one NULL element. |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
598 |
virtual const char* const* concurrent_phases() const; |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
599 |
|
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
600 |
// Request the collector enter the indicated concurrent phase, and |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
601 |
// wait until it does so. Supports WhiteBox testing. Only one |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
602 |
// request may be active at a time. Phases are designated by name; |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
603 |
// the set of names and their meaning is GC-specific. Once the |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
604 |
// requested phase has been reached, the collector will attempt to |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
605 |
// avoid transitioning to a new phase until a new request is made. |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
606 |
// [Note: A collector might not be able to remain in a given phase. |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
607 |
// For example, a full collection might cancel an in-progress |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
608 |
// concurrent collection.] |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
609 |
// |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
610 |
// Returns true when the phase is reached. Returns false for an |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
611 |
// unknown phase. The default implementation returns false. |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
612 |
virtual bool request_concurrent_phase(const char* phase); |
dacebddcdea0
8169517: WhiteBox should provide concurrent GC phase control
kbarrett
parents:
46329
diff
changeset
|
613 |
|
46702 | 614 |
// Provides a thread pool to SafepointSynchronize to use |
615 |
// for parallel safepoint cleanup. |
|
616 |
// GCs that use a GC worker thread pool may want to share |
|
617 |
// it for use during safepoint cleanup. This is only possible |
|
618 |
// if the GC can pause and resume concurrent work (e.g. G1 |
|
619 |
// concurrent marking) for an intermittent non-GC safepoint. |
|
620 |
// If this method returns NULL, SafepointSynchronize will |
|
621 |
// perform cleanup tasks serially in the VMThread. |
|
622 |
virtual WorkGang* get_safepoint_workers() { return NULL; } |
|
623 |
||
1 | 624 |
// Non product verification and debugging. |
625 |
#ifndef PRODUCT |
|
626 |
// Support for PromotionFailureALot. Return true if it's time to cause a |
|
627 |
// promotion failure. The no-argument version uses |
|
628 |
// this->_promotion_failure_alot_count as the counter. |
|
629 |
inline bool promotion_should_fail(volatile size_t* count); |
|
630 |
inline bool promotion_should_fail(); |
|
631 |
||
632 |
// Reset the PromotionFailureALot counters. Should be called at the end of a |
|
18025 | 633 |
// GC in which promotion failure occurred. |
1 | 634 |
inline void reset_promotion_should_fail(volatile size_t* count); |
635 |
inline void reset_promotion_should_fail(); |
|
636 |
#endif // #ifndef PRODUCT |
|
637 |
||
638 |
#ifdef ASSERT |
|
639 |
static int fired_fake_oom() { |
|
640 |
return (CIFireOOMAt > 1 && _fire_out_of_memory_count >= CIFireOOMAt); |
|
641 |
} |
|
642 |
#endif |
|
6759
67b1a69ef5aa
6984287: Regularize how GC parallel workers are specified.
jmasa
parents:
5547
diff
changeset
|
643 |
|
67b1a69ef5aa
6984287: Regularize how GC parallel workers are specified.
jmasa
parents:
5547
diff
changeset
|
644 |
public: |
26842
5081db39f634
8057824: methods to copy allocation context statistics
jcoomes
parents:
26829
diff
changeset
|
645 |
// Copy the current allocation context statistics for the specified contexts. |
5081db39f634
8057824: methods to copy allocation context statistics
jcoomes
parents:
26829
diff
changeset
|
646 |
// For each context in contexts, set the corresponding entries in the totals |
5081db39f634
8057824: methods to copy allocation context statistics
jcoomes
parents:
26829
diff
changeset
|
647 |
// and accuracy arrays to the current values held by the statistics. Each |
5081db39f634
8057824: methods to copy allocation context statistics
jcoomes
parents:
26829
diff
changeset
|
648 |
// array should be of length len. |
27623
3f190bd7182f
8061234: ResourceContext.requestAccurateUpdate() is unreliable
sjohanss
parents:
26842
diff
changeset
|
649 |
// Returns true if there are more stats available. |
3f190bd7182f
8061234: ResourceContext.requestAccurateUpdate() is unreliable
sjohanss
parents:
26842
diff
changeset
|
650 |
virtual bool copy_allocation_context_stats(const jint* contexts, |
26842
5081db39f634
8057824: methods to copy allocation context statistics
jcoomes
parents:
26829
diff
changeset
|
651 |
jlong* totals, |
5081db39f634
8057824: methods to copy allocation context statistics
jcoomes
parents:
26829
diff
changeset
|
652 |
jbyte* accuracy, |
27623
3f190bd7182f
8061234: ResourceContext.requestAccurateUpdate() is unreliable
sjohanss
parents:
26842
diff
changeset
|
653 |
jint len) { |
3f190bd7182f
8061234: ResourceContext.requestAccurateUpdate() is unreliable
sjohanss
parents:
26842
diff
changeset
|
654 |
return false; |
3f190bd7182f
8061234: ResourceContext.requestAccurateUpdate() is unreliable
sjohanss
parents:
26842
diff
changeset
|
655 |
} |
26842
5081db39f634
8057824: methods to copy allocation context statistics
jcoomes
parents:
26829
diff
changeset
|
656 |
|
1 | 657 |
}; |
658 |
||
659 |
// Class to set and reset the GC cause for a CollectedHeap. |
|
660 |
||
661 |
class GCCauseSetter : StackObj { |
|
662 |
CollectedHeap* _heap; |
|
663 |
GCCause::Cause _previous_cause; |
|
664 |
public: |
|
665 |
GCCauseSetter(CollectedHeap* heap, GCCause::Cause cause) { |
|
666 |
assert(SafepointSynchronize::is_at_safepoint(), |
|
667 |
"This method manipulates heap state without locking"); |
|
668 |
_heap = heap; |
|
669 |
_previous_cause = _heap->gc_cause(); |
|
670 |
_heap->set_gc_cause(cause); |
|
671 |
} |
|
672 |
||
673 |
~GCCauseSetter() { |
|
674 |
assert(SafepointSynchronize::is_at_safepoint(), |
|
675 |
"This method manipulates heap state without locking"); |
|
676 |
_heap->set_gc_cause(_previous_cause); |
|
677 |
} |
|
678 |
}; |
|
7397 | 679 |
|
30764 | 680 |
#endif // SHARE_VM_GC_SHARED_COLLECTEDHEAP_HPP |