annotate src/share/vm/gc_interface/collectedHeap.hpp @ 5972:9a9bb0010c91

7156764: Remove unused size parameter from some CollectedHeap methods Summary: Some minor cleanups Reviewed-by: tonyp, jwilhelm
author brutisso
date Tue, 27 Mar 2012 10:29:59 +0200
parents cc74fa5a91a9
children b632e80fc9dc
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1 /*
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2 * Copyright (c) 2001, 2012, Oracle and/or its affiliates. All rights reserved.
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3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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4 *
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5 * This code is free software; you can redistribute it and/or modify it
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6 * under the terms of the GNU General Public License version 2 only, as
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7 * published by the Free Software Foundation.
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8 *
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9 * This code is distributed in the hope that it will be useful, but WITHOUT
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10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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12 * version 2 for more details (a copy is included in the LICENSE file that
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13 * accompanied this code).
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14 *
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15 * You should have received a copy of the GNU General Public License version
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16 * 2 along with this work; if not, write to the Free Software Foundation,
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17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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18 *
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19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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20 * or visit www.oracle.com if you need additional information or have any
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21 * questions.
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22 *
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23 */
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24
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25 #ifndef SHARE_VM_GC_INTERFACE_COLLECTEDHEAP_HPP
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26 #define SHARE_VM_GC_INTERFACE_COLLECTEDHEAP_HPP
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27
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28 #include "gc_interface/gcCause.hpp"
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29 #include "memory/allocation.hpp"
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30 #include "memory/barrierSet.hpp"
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31 #include "runtime/handles.hpp"
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32 #include "runtime/perfData.hpp"
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33 #include "runtime/safepoint.hpp"
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34 #include "utilities/events.hpp"
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35
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36 // A "CollectedHeap" is an implementation of a java heap for HotSpot. This
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37 // is an abstract class: there may be many different kinds of heaps. This
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38 // class defines the functions that a heap must implement, and contains
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39 // infrastructure common to all heaps.
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40
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41 class BarrierSet;
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42 class ThreadClosure;
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43 class AdaptiveSizePolicy;
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44 class Thread;
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45 class CollectorPolicy;
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46
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47 class GCMessage : public FormatBuffer<1024> {
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48 public:
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49 bool is_before;
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50
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51 public:
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52 GCMessage() {}
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53 };
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54
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55 class GCHeapLog : public EventLogBase<GCMessage> {
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56 private:
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57 void log_heap(bool before);
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58
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59 public:
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60 GCHeapLog() : EventLogBase<GCMessage>("GC Heap History") {}
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61
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62 void log_heap_before() {
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63 log_heap(true);
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64 }
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65 void log_heap_after() {
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66 log_heap(false);
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67 }
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68 };
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69
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70 //
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71 // CollectedHeap
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72 // SharedHeap
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73 // GenCollectedHeap
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74 // G1CollectedHeap
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75 // ParallelScavengeHeap
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76 //
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77 class CollectedHeap : public CHeapObj {
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78 friend class VMStructs;
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79 friend class IsGCActiveMark; // Block structured external access to _is_gc_active
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80 friend class constantPoolCacheKlass; // allocate() method inserts is_conc_safe
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81
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82 #ifdef ASSERT
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83 static int _fire_out_of_memory_count;
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84 #endif
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85
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86 // Used for filler objects (static, but initialized in ctor).
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87 static size_t _filler_array_max_size;
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88
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89 GCHeapLog* _gc_heap_log;
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90
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91 // Used in support of ReduceInitialCardMarks; only consulted if COMPILER2 is being used
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92 bool _defer_initial_card_mark;
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93
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94 protected:
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95 MemRegion _reserved;
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96 BarrierSet* _barrier_set;
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97 bool _is_gc_active;
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98 uint _n_par_threads;
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99
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100 unsigned int _total_collections; // ... started
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101 unsigned int _total_full_collections; // ... started
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102 NOT_PRODUCT(volatile size_t _promotion_failure_alot_count;)
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103 NOT_PRODUCT(volatile size_t _promotion_failure_alot_gc_number;)
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104
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105 // Reason for current garbage collection. Should be set to
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106 // a value reflecting no collection between collections.
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107 GCCause::Cause _gc_cause;
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108 GCCause::Cause _gc_lastcause;
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109 PerfStringVariable* _perf_gc_cause;
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110 PerfStringVariable* _perf_gc_lastcause;
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111
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112 // Constructor
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113 CollectedHeap();
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114
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115 // Do common initializations that must follow instance construction,
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116 // for example, those needing virtual calls.
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117 // This code could perhaps be moved into initialize() but would
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118 // be slightly more awkward because we want the latter to be a
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119 // pure virtual.
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120 void pre_initialize();
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121
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122 // Create a new tlab. All TLAB allocations must go through this.
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123 virtual HeapWord* allocate_new_tlab(size_t size);
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124
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125 // Accumulate statistics on all tlabs.
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126 virtual void accumulate_statistics_all_tlabs();
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127
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128 // Reinitialize tlabs before resuming mutators.
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129 virtual void resize_all_tlabs();
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130
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131 // Allocate from the current thread's TLAB, with broken-out slow path.
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132 inline static HeapWord* allocate_from_tlab(Thread* thread, size_t size);
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133 static HeapWord* allocate_from_tlab_slow(Thread* thread, size_t size);
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134
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135 // Allocate an uninitialized block of the given size, or returns NULL if
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136 // this is impossible.
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137 inline static HeapWord* common_mem_allocate_noinit(size_t size, TRAPS);
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138
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139 // Like allocate_init, but the block returned by a successful allocation
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140 // is guaranteed initialized to zeros.
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141 inline static HeapWord* common_mem_allocate_init(size_t size, TRAPS);
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142
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143 // Same as common_mem version, except memory is allocated in the permanent area
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144 // If there is no permanent area, revert to common_mem_allocate_noinit
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145 inline static HeapWord* common_permanent_mem_allocate_noinit(size_t size, TRAPS);
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146
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147 // Same as common_mem version, except memory is allocated in the permanent area
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148 // If there is no permanent area, revert to common_mem_allocate_init
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149 inline static HeapWord* common_permanent_mem_allocate_init(size_t size, TRAPS);
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150
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151 // Helper functions for (VM) allocation.
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152 inline static void post_allocation_setup_common(KlassHandle klass, HeapWord* obj);
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153 inline static void post_allocation_setup_no_klass_install(KlassHandle klass,
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154 HeapWord* objPtr);
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155
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156 inline static void post_allocation_setup_obj(KlassHandle klass, HeapWord* obj);
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157
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158 inline static void post_allocation_setup_array(KlassHandle klass,
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159 HeapWord* obj, int length);
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160
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161 // Clears an allocated object.
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162 inline static void init_obj(HeapWord* obj, size_t size);
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163
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164 // Filler object utilities.
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165 static inline size_t filler_array_hdr_size();
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166 static inline size_t filler_array_min_size();
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167
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168 DEBUG_ONLY(static void fill_args_check(HeapWord* start, size_t words);)
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169 DEBUG_ONLY(static void zap_filler_array(HeapWord* start, size_t words, bool zap = true);)
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170
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171 // Fill with a single array; caller must ensure filler_array_min_size() <=
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172 // words <= filler_array_max_size().
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173 static inline void fill_with_array(HeapWord* start, size_t words, bool zap = true);
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174
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175 // Fill with a single object (either an int array or a java.lang.Object).
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176 static inline void fill_with_object_impl(HeapWord* start, size_t words, bool zap = true);
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177
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178 // Verification functions
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179 virtual void check_for_bad_heap_word_value(HeapWord* addr, size_t size)
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180 PRODUCT_RETURN;
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181 virtual void check_for_non_bad_heap_word_value(HeapWord* addr, size_t size)
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182 PRODUCT_RETURN;
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183 debug_only(static void check_for_valid_allocation_state();)
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184
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185 public:
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186 enum Name {
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187 Abstract,
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188 SharedHeap,
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189 GenCollectedHeap,
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190 ParallelScavengeHeap,
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191 G1CollectedHeap
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192 };
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193
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194 static inline size_t filler_array_max_size() {
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195 return _filler_array_max_size;
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196 }
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197
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198 virtual CollectedHeap::Name kind() const { return CollectedHeap::Abstract; }
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199
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200 /**
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201 * Returns JNI error code JNI_ENOMEM if memory could not be allocated,
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202 * and JNI_OK on success.
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203 */
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204 virtual jint initialize() = 0;
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205
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206 // In many heaps, there will be a need to perform some initialization activities
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207 // after the Universe is fully formed, but before general heap allocation is allowed.
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208 // This is the correct place to place such initialization methods.
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209 virtual void post_initialize() = 0;
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210
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211 MemRegion reserved_region() const { return _reserved; }
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212 address base() const { return (address)reserved_region().start(); }
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213
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214 // Future cleanup here. The following functions should specify bytes or
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215 // heapwords as part of their signature.
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216 virtual size_t capacity() const = 0;
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217 virtual size_t used() const = 0;
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218
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219 // Return "true" if the part of the heap that allocates Java
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220 // objects has reached the maximal committed limit that it can
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221 // reach, without a garbage collection.
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222 virtual bool is_maximal_no_gc() const = 0;
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223
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224 virtual size_t permanent_capacity() const = 0;
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225 virtual size_t permanent_used() const = 0;
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226
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227 // Support for java.lang.Runtime.maxMemory(): return the maximum amount of
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228 // memory that the vm could make available for storing 'normal' java objects.
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229 // This is based on the reserved address space, but should not include space
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230 // that the vm uses internally for bookkeeping or temporary storage (e.g.,
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231 // perm gen space or, in the case of the young gen, one of the survivor
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232 // spaces).
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233 virtual size_t max_capacity() const = 0;
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234
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235 // Returns "TRUE" if "p" points into the reserved area of the heap.
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236 bool is_in_reserved(const void* p) const {
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237 return _reserved.contains(p);
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238 }
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239
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240 bool is_in_reserved_or_null(const void* p) const {
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241 return p == NULL || is_in_reserved(p);
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242 }
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243
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244 // Returns "TRUE" iff "p" points into the committed areas of the heap.
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245 // Since this method can be expensive in general, we restrict its
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246 // use to assertion checking only.
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247 virtual bool is_in(const void* p) const = 0;
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248
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249 bool is_in_or_null(const void* p) const {
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250 return p == NULL || is_in(p);
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251 }
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252
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253 // Let's define some terms: a "closed" subset of a heap is one that
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254 //
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255 // 1) contains all currently-allocated objects, and
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256 //
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257 // 2) is closed under reference: no object in the closed subset
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258 // references one outside the closed subset.
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259 //
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260 // Membership in a heap's closed subset is useful for assertions.
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261 // Clearly, the entire heap is a closed subset, so the default
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262 // implementation is to use "is_in_reserved". But this may not be too
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263 // liberal to perform useful checking. Also, the "is_in" predicate
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264 // defines a closed subset, but may be too expensive, since "is_in"
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265 // verifies that its argument points to an object head. The
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266 // "closed_subset" method allows a heap to define an intermediate
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267 // predicate, allowing more precise checking than "is_in_reserved" at
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268 // lower cost than "is_in."
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269
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270 // One important case is a heap composed of disjoint contiguous spaces,
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271 // such as the Garbage-First collector. Such heaps have a convenient
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272 // closed subset consisting of the allocated portions of those
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273 // contiguous spaces.
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274
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275 // Return "TRUE" iff the given pointer points into the heap's defined
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276 // closed subset (which defaults to the entire heap).
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277 virtual bool is_in_closed_subset(const void* p) const {
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278 return is_in_reserved(p);
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279 }
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280
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281 bool is_in_closed_subset_or_null(const void* p) const {
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282 return p == NULL || is_in_closed_subset(p);
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283 }
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284
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285 // XXX is_permanent() and is_in_permanent() should be better named
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286 // to distinguish one from the other.
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287
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288 // Returns "TRUE" if "p" is allocated as "permanent" data.
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289 // If the heap does not use "permanent" data, returns the same
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290 // value is_in_reserved() would return.
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291 // NOTE: this actually returns true if "p" is in reserved space
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292 // for the space not that it is actually allocated (i.e. in committed
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293 // space). If you need the more conservative answer use is_permanent().
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294 virtual bool is_in_permanent(const void *p) const = 0;
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295
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296
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297 #ifdef ASSERT
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298 // Returns true if "p" is in the part of the
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299 // heap being collected.
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300 virtual bool is_in_partial_collection(const void *p) = 0;
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301 #endif
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302
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303 bool is_in_permanent_or_null(const void *p) const {
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304 return p == NULL || is_in_permanent(p);
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305 }
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306
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307 // Returns "TRUE" if "p" is in the committed area of "permanent" data.
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308 // If the heap does not use "permanent" data, returns the same
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309 // value is_in() would return.
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310 virtual bool is_permanent(const void *p) const = 0;
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311
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312 bool is_permanent_or_null(const void *p) const {
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313 return p == NULL || is_permanent(p);
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314 }
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315
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316 // An object is scavengable if its location may move during a scavenge.
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317 // (A scavenge is a GC which is not a full GC.)
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318 virtual bool is_scavengable(const void *p) = 0;
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319
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320 // Returns "TRUE" if "p" is a method oop in the
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321 // current heap, with high probability. This predicate
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322 // is not stable, in general.
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323 bool is_valid_method(oop p) const;
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324
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325 void set_gc_cause(GCCause::Cause v) {
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326 if (UsePerfData) {
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327 _gc_lastcause = _gc_cause;
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328 _perf_gc_lastcause->set_value(GCCause::to_string(_gc_lastcause));
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329 _perf_gc_cause->set_value(GCCause::to_string(v));
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330 }
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331 _gc_cause = v;
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332 }
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333 GCCause::Cause gc_cause() { return _gc_cause; }
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334
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335 // Number of threads currently working on GC tasks.
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336 uint n_par_threads() { return _n_par_threads; }
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337
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338 // May be overridden to set additional parallelism.
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339 virtual void set_par_threads(uint t) { _n_par_threads = t; };
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340
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341 // Preload classes into the shared portion of the heap, and then dump
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342 // that data to a file so that it can be loaded directly by another
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343 // VM (then terminate).
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344 virtual void preload_and_dump(TRAPS) { ShouldNotReachHere(); }
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345
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346 // Allocate and initialize instances of Class
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347 static oop Class_obj_allocate(KlassHandle klass, int size, KlassHandle real_klass, TRAPS);
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348
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349 // General obj/array allocation facilities.
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350 inline static oop obj_allocate(KlassHandle klass, int size, TRAPS);
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351 inline static oop array_allocate(KlassHandle klass, int size, int length, TRAPS);
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352 inline static oop array_allocate_nozero(KlassHandle klass, int size, int length, TRAPS);
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353
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354 // Special obj/array allocation facilities.
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355 // Some heaps may want to manage "permanent" data uniquely. These default
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356 // to the general routines if the heap does not support such handling.
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357 inline static oop permanent_obj_allocate(KlassHandle klass, int size, TRAPS);
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358 // permanent_obj_allocate_no_klass_install() does not do the installation of
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359 // the klass pointer in the newly created object (as permanent_obj_allocate()
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360 // above does). This allows for a delay in the installation of the klass
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361 // pointer that is needed during the create of klassKlass's. The
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362 // method post_allocation_install_obj_klass() is used to install the
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363 // klass pointer.
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364 inline static oop permanent_obj_allocate_no_klass_install(KlassHandle klass,
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365 int size,
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366 TRAPS);
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367 inline static void post_allocation_install_obj_klass(KlassHandle klass, oop obj);
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368 inline static oop permanent_array_allocate(KlassHandle klass, int size, int length, TRAPS);
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369
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370 // Raw memory allocation facilities
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371 // The obj and array allocate methods are covers for these methods.
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372 // The permanent allocation method should default to mem_allocate if
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373 // permanent memory isn't supported. mem_allocate() should never be
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374 // called to allocate TLABs, only individual objects.
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375 virtual HeapWord* mem_allocate(size_t size,
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376 bool* gc_overhead_limit_was_exceeded) = 0;
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377 virtual HeapWord* permanent_mem_allocate(size_t size) = 0;
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378
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379 // Utilities for turning raw memory into filler objects.
7d7a7c599c17 6578152: fill_region_with_object has usability and safety issues
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380 //
7d7a7c599c17 6578152: fill_region_with_object has usability and safety issues
jcoomes
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381 // min_fill_size() is the smallest region that can be filled.
7d7a7c599c17 6578152: fill_region_with_object has usability and safety issues
jcoomes
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diff changeset
382 // fill_with_objects() can fill arbitrary-sized regions of the heap using
7d7a7c599c17 6578152: fill_region_with_object has usability and safety issues
jcoomes
parents: 356
diff changeset
383 // multiple objects. fill_with_object() is for regions known to be smaller
7d7a7c599c17 6578152: fill_region_with_object has usability and safety issues
jcoomes
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diff changeset
384 // than the largest array of integers; it uses a single object to fill the
7d7a7c599c17 6578152: fill_region_with_object has usability and safety issues
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385 // region and has slightly less overhead.
7d7a7c599c17 6578152: fill_region_with_object has usability and safety issues
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386 static size_t min_fill_size() {
7d7a7c599c17 6578152: fill_region_with_object has usability and safety issues
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387 return size_t(align_object_size(oopDesc::header_size()));
7d7a7c599c17 6578152: fill_region_with_object has usability and safety issues
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388 }
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389
1165
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390 static void fill_with_objects(HeapWord* start, size_t words, bool zap = true);
481
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391
1165
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392 static void fill_with_object(HeapWord* start, size_t words, bool zap = true);
2dd52dea6d28 6902115: G1:assert(ignore_max_completed||thread->is_Java_thread()||SafepointSynchronize::is_at_safepoint())
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393 static void fill_with_object(MemRegion region, bool zap = true) {
2dd52dea6d28 6902115: G1:assert(ignore_max_completed||thread->is_Java_thread()||SafepointSynchronize::is_at_safepoint())
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394 fill_with_object(region.start(), region.word_size(), zap);
481
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395 }
1165
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396 static void fill_with_object(HeapWord* start, HeapWord* end, bool zap = true) {
2dd52dea6d28 6902115: G1:assert(ignore_max_completed||thread->is_Java_thread()||SafepointSynchronize::is_at_safepoint())
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397 fill_with_object(start, pointer_delta(end, start), zap);
481
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398 }
7d7a7c599c17 6578152: fill_region_with_object has usability and safety issues
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diff changeset
399
0
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400 // Some heaps may offer a contiguous region for shared non-blocking
a61af66fc99e Initial load
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401 // allocation, via inlined code (by exporting the address of the top and
a61af66fc99e Initial load
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402 // end fields defining the extent of the contiguous allocation region.)
a61af66fc99e Initial load
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403
a61af66fc99e Initial load
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404 // This function returns "true" iff the heap supports this kind of
a61af66fc99e Initial load
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405 // allocation. (Default is "no".)
a61af66fc99e Initial load
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406 virtual bool supports_inline_contig_alloc() const {
a61af66fc99e Initial load
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407 return false;
a61af66fc99e Initial load
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408 }
a61af66fc99e Initial load
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409 // These functions return the addresses of the fields that define the
a61af66fc99e Initial load
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410 // boundaries of the contiguous allocation area. (These fields should be
a61af66fc99e Initial load
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diff changeset
411 // physically near to one another.)
a61af66fc99e Initial load
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412 virtual HeapWord** top_addr() const {
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413 guarantee(false, "inline contiguous allocation not supported");
a61af66fc99e Initial load
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414 return NULL;
a61af66fc99e Initial load
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415 }
a61af66fc99e Initial load
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416 virtual HeapWord** end_addr() const {
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417 guarantee(false, "inline contiguous allocation not supported");
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418 return NULL;
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419 }
a61af66fc99e Initial load
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420
a61af66fc99e Initial load
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421 // Some heaps may be in an unparseable state at certain times between
a61af66fc99e Initial load
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422 // collections. This may be necessary for efficient implementation of
a61af66fc99e Initial load
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diff changeset
423 // certain allocation-related activities. Calling this function before
a61af66fc99e Initial load
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424 // attempting to parse a heap ensures that the heap is in a parsable
a61af66fc99e Initial load
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425 // state (provided other concurrent activity does not introduce
a61af66fc99e Initial load
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diff changeset
426 // unparsability). It is normally expected, therefore, that this
a61af66fc99e Initial load
duke
parents:
diff changeset
427 // method is invoked with the world stopped.
a61af66fc99e Initial load
duke
parents:
diff changeset
428 // NOTE: if you override this method, make sure you call
a61af66fc99e Initial load
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429 // super::ensure_parsability so that the non-generational
a61af66fc99e Initial load
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430 // part of the work gets done. See implementation of
a61af66fc99e Initial load
duke
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431 // CollectedHeap::ensure_parsability and, for instance,
a61af66fc99e Initial load
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432 // that of GenCollectedHeap::ensure_parsability().
a61af66fc99e Initial load
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433 // The argument "retire_tlabs" controls whether existing TLABs
a61af66fc99e Initial load
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434 // are merely filled or also retired, thus preventing further
a61af66fc99e Initial load
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diff changeset
435 // allocation from them and necessitating allocation of new TLABs.
a61af66fc99e Initial load
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436 virtual void ensure_parsability(bool retire_tlabs);
a61af66fc99e Initial load
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437
a61af66fc99e Initial load
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438 // Return an estimate of the maximum allocation that could be performed
a61af66fc99e Initial load
duke
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439 // without triggering any collection or expansion activity. In a
a61af66fc99e Initial load
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parents:
diff changeset
440 // generational collector, for example, this is probably the largest
a61af66fc99e Initial load
duke
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diff changeset
441 // allocation that could be supported (without expansion) in the youngest
a61af66fc99e Initial load
duke
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diff changeset
442 // generation. It is "unsafe" because no locks are taken; the result
a61af66fc99e Initial load
duke
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443 // should be treated as an approximation, not a guarantee, for use in
a61af66fc99e Initial load
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444 // heuristic resizing decisions.
a61af66fc99e Initial load
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445 virtual size_t unsafe_max_alloc() = 0;
a61af66fc99e Initial load
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446
a61af66fc99e Initial load
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447 // Section on thread-local allocation buffers (TLABs)
a61af66fc99e Initial load
duke
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448 // If the heap supports thread-local allocation buffers, it should override
a61af66fc99e Initial load
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449 // the following methods:
a61af66fc99e Initial load
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450 // Returns "true" iff the heap supports thread-local allocation buffers.
a61af66fc99e Initial load
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451 // The default is "no".
a61af66fc99e Initial load
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452 virtual bool supports_tlab_allocation() const {
a61af66fc99e Initial load
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453 return false;
a61af66fc99e Initial load
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454 }
a61af66fc99e Initial load
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455 // The amount of space available for thread-local allocation buffers.
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456 virtual size_t tlab_capacity(Thread *thr) const {
a61af66fc99e Initial load
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457 guarantee(false, "thread-local allocation buffers not supported");
a61af66fc99e Initial load
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458 return 0;
a61af66fc99e Initial load
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459 }
a61af66fc99e Initial load
duke
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460 // An estimate of the maximum allocation that could be performed
a61af66fc99e Initial load
duke
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461 // for thread-local allocation buffers without triggering any
a61af66fc99e Initial load
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diff changeset
462 // collection or expansion activity.
a61af66fc99e Initial load
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463 virtual size_t unsafe_max_tlab_alloc(Thread *thr) const {
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464 guarantee(false, "thread-local allocation buffers not supported");
a61af66fc99e Initial load
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465 return 0;
a61af66fc99e Initial load
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466 }
1027
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
parents: 993
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467
0
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468 // Can a compiler initialize a new object without store barriers?
a61af66fc99e Initial load
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469 // This permission only extends from the creation of a new object
1027
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470 // via a TLAB up to the first subsequent safepoint. If such permission
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
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471 // is granted for this heap type, the compiler promises to call
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
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472 // defer_store_barrier() below on any slow path allocation of
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
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473 // a new object for which such initializing store barriers will
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
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474 // have been elided.
342
37f87013dfd8 6711316: Open source the Garbage-First garbage collector
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475 virtual bool can_elide_tlab_store_barriers() const = 0;
37f87013dfd8 6711316: Open source the Garbage-First garbage collector
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476
0
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477 // If a compiler is eliding store barriers for TLAB-allocated objects,
a61af66fc99e Initial load
duke
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478 // there is probably a corresponding slow path which can produce
a61af66fc99e Initial load
duke
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diff changeset
479 // an object allocated anywhere. The compiler's runtime support
a61af66fc99e Initial load
duke
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480 // promises to call this function on such a slow-path-allocated
a61af66fc99e Initial load
duke
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481 // object before performing initializations that have elided
1027
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
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482 // store barriers. Returns new_obj, or maybe a safer copy thereof.
1166
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483 virtual oop new_store_pre_barrier(JavaThread* thread, oop new_obj);
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39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
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484
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
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485 // Answers whether an initializing store to a new object currently
1166
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
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486 // allocated at the given address doesn't need a store
1027
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
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487 // barrier. Returns "true" if it doesn't need an initializing
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
parents: 993
diff changeset
488 // store barrier; answers "false" if it does.
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
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489 virtual bool can_elide_initializing_store_barrier(oop new_obj) = 0;
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
parents: 993
diff changeset
490
1166
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
parents: 1165
diff changeset
491 // If a compiler is eliding store barriers for TLAB-allocated objects,
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
parents: 1165
diff changeset
492 // we will be informed of a slow-path allocation by a call
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
parents: 1165
diff changeset
493 // to new_store_pre_barrier() above. Such a call precedes the
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
parents: 1165
diff changeset
494 // initialization of the object itself, and no post-store-barriers will
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
parents: 1165
diff changeset
495 // be issued. Some heap types require that the barrier strictly follows
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
parents: 1165
diff changeset
496 // the initializing stores. (This is currently implemented by deferring the
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
parents: 1165
diff changeset
497 // barrier until the next slow-path allocation or gc-related safepoint.)
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
parents: 1165
diff changeset
498 // This interface answers whether a particular heap type needs the card
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
parents: 1165
diff changeset
499 // mark to be thus strictly sequenced after the stores.
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
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diff changeset
500 virtual bool card_mark_must_follow_store() const = 0;
7b0e9cba0307 6896647: card marks can be deferred too long
ysr
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diff changeset
501
1027
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
parents: 993
diff changeset
502 // If the CollectedHeap was asked to defer a store barrier above,
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
parents: 993
diff changeset
503 // this informs it to flush such a deferred store barrier to the
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
parents: 993
diff changeset
504 // remembered set.
39b01ab7035a 6888898: CMS: ReduceInitialCardMarks unsafe in the presence of cms precleaning
ysr
parents: 993
diff changeset
505 virtual void flush_deferred_store_barrier(JavaThread* thread);
0
a61af66fc99e Initial load
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parents:
diff changeset
506
a61af66fc99e Initial load
duke
parents:
diff changeset
507 // Can a compiler elide a store barrier when it writes
a61af66fc99e Initial load
duke
parents:
diff changeset
508 // a permanent oop into the heap? Applies when the compiler
a61af66fc99e Initial load
duke
parents:
diff changeset
509 // is storing x to the heap, where x->is_perm() is true.
342
37f87013dfd8 6711316: Open source the Garbage-First garbage collector
ysr
parents: 113
diff changeset
510 virtual bool can_elide_permanent_oop_store_barriers() const = 0;
0
a61af66fc99e Initial load
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diff changeset
511
a61af66fc99e Initial load
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parents:
diff changeset
512 // Does this heap support heap inspection (+PrintClassHistogram?)
342
37f87013dfd8 6711316: Open source the Garbage-First garbage collector
ysr
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diff changeset
513 virtual bool supports_heap_inspection() const = 0;
0
a61af66fc99e Initial load
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parents:
diff changeset
514
a61af66fc99e Initial load
duke
parents:
diff changeset
515 // Perform a collection of the heap; intended for use in implementing
a61af66fc99e Initial load
duke
parents:
diff changeset
516 // "System.gc". This probably implies as full a collection as the
a61af66fc99e Initial load
duke
parents:
diff changeset
517 // "CollectedHeap" supports.
a61af66fc99e Initial load
duke
parents:
diff changeset
518 virtual void collect(GCCause::Cause cause) = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
519
a61af66fc99e Initial load
duke
parents:
diff changeset
520 // This interface assumes that it's being called by the
a61af66fc99e Initial load
duke
parents:
diff changeset
521 // vm thread. It collects the heap assuming that the
a61af66fc99e Initial load
duke
parents:
diff changeset
522 // heap lock is already held and that we are executing in
a61af66fc99e Initial load
duke
parents:
diff changeset
523 // the context of the vm thread.
a61af66fc99e Initial load
duke
parents:
diff changeset
524 virtual void collect_as_vm_thread(GCCause::Cause cause) = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
525
a61af66fc99e Initial load
duke
parents:
diff changeset
526 // Returns the barrier set for this heap
a61af66fc99e Initial load
duke
parents:
diff changeset
527 BarrierSet* barrier_set() { return _barrier_set; }
a61af66fc99e Initial load
duke
parents:
diff changeset
528
a61af66fc99e Initial load
duke
parents:
diff changeset
529 // Returns "true" iff there is a stop-world GC in progress. (I assume
a61af66fc99e Initial load
duke
parents:
diff changeset
530 // that it should answer "false" for the concurrent part of a concurrent
a61af66fc99e Initial load
duke
parents:
diff changeset
531 // collector -- dld).
a61af66fc99e Initial load
duke
parents:
diff changeset
532 bool is_gc_active() const { return _is_gc_active; }
a61af66fc99e Initial load
duke
parents:
diff changeset
533
a61af66fc99e Initial load
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parents:
diff changeset
534 // Total number of GC collections (started)
a61af66fc99e Initial load
duke
parents:
diff changeset
535 unsigned int total_collections() const { return _total_collections; }
a61af66fc99e Initial load
duke
parents:
diff changeset
536 unsigned int total_full_collections() const { return _total_full_collections;}
a61af66fc99e Initial load
duke
parents:
diff changeset
537
a61af66fc99e Initial load
duke
parents:
diff changeset
538 // Increment total number of GC collections (started)
a61af66fc99e Initial load
duke
parents:
diff changeset
539 // Should be protected but used by PSMarkSweep - cleanup for 1.4.2
a61af66fc99e Initial load
duke
parents:
diff changeset
540 void increment_total_collections(bool full = false) {
a61af66fc99e Initial load
duke
parents:
diff changeset
541 _total_collections++;
a61af66fc99e Initial load
duke
parents:
diff changeset
542 if (full) {
a61af66fc99e Initial load
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parents:
diff changeset
543 increment_total_full_collections();
a61af66fc99e Initial load
duke
parents:
diff changeset
544 }
a61af66fc99e Initial load
duke
parents:
diff changeset
545 }
a61af66fc99e Initial load
duke
parents:
diff changeset
546
a61af66fc99e Initial load
duke
parents:
diff changeset
547 void increment_total_full_collections() { _total_full_collections++; }
a61af66fc99e Initial load
duke
parents:
diff changeset
548
a61af66fc99e Initial load
duke
parents:
diff changeset
549 // Return the AdaptiveSizePolicy for the heap.
a61af66fc99e Initial load
duke
parents:
diff changeset
550 virtual AdaptiveSizePolicy* size_policy() = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
551
1387
0bfd3fb24150 6858496: Clear all SoftReferences before an out-of-memory due to GC overhead limit.
jmasa
parents: 1166
diff changeset
552 // Return the CollectorPolicy for the heap
0bfd3fb24150 6858496: Clear all SoftReferences before an out-of-memory due to GC overhead limit.
jmasa
parents: 1166
diff changeset
553 virtual CollectorPolicy* collector_policy() const = 0;
0bfd3fb24150 6858496: Clear all SoftReferences before an out-of-memory due to GC overhead limit.
jmasa
parents: 1166
diff changeset
554
0
a61af66fc99e Initial load
duke
parents:
diff changeset
555 // Iterate over all the ref-containing fields of all objects, calling
a61af66fc99e Initial load
duke
parents:
diff changeset
556 // "cl.do_oop" on each. This includes objects in permanent memory.
a61af66fc99e Initial load
duke
parents:
diff changeset
557 virtual void oop_iterate(OopClosure* cl) = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
558
a61af66fc99e Initial load
duke
parents:
diff changeset
559 // Iterate over all objects, calling "cl.do_object" on each.
a61af66fc99e Initial load
duke
parents:
diff changeset
560 // This includes objects in permanent memory.
a61af66fc99e Initial load
duke
parents:
diff changeset
561 virtual void object_iterate(ObjectClosure* cl) = 0;
a61af66fc99e Initial load
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parents:
diff changeset
562
517
e9be0e04635a 6689653: JMapPerm fails with UseConcMarkSweepIncGC and compressed oops off
jmasa
parents: 481
diff changeset
563 // Similar to object_iterate() except iterates only
e9be0e04635a 6689653: JMapPerm fails with UseConcMarkSweepIncGC and compressed oops off
jmasa
parents: 481
diff changeset
564 // over live objects.
e9be0e04635a 6689653: JMapPerm fails with UseConcMarkSweepIncGC and compressed oops off
jmasa
parents: 481
diff changeset
565 virtual void safe_object_iterate(ObjectClosure* cl) = 0;
e9be0e04635a 6689653: JMapPerm fails with UseConcMarkSweepIncGC and compressed oops off
jmasa
parents: 481
diff changeset
566
0
a61af66fc99e Initial load
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parents:
diff changeset
567 // Behaves the same as oop_iterate, except only traverses
a61af66fc99e Initial load
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568 // interior pointers contained in permanent memory. If there
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parents:
diff changeset
569 // is no permanent memory, does nothing.
a61af66fc99e Initial load
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parents:
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570 virtual void permanent_oop_iterate(OopClosure* cl) = 0;
a61af66fc99e Initial load
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571
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parents:
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572 // Behaves the same as object_iterate, except only traverses
a61af66fc99e Initial load
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parents:
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573 // object contained in permanent memory. If there is no
a61af66fc99e Initial load
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parents:
diff changeset
574 // permanent memory, does nothing.
a61af66fc99e Initial load
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parents:
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575 virtual void permanent_object_iterate(ObjectClosure* cl) = 0;
a61af66fc99e Initial load
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parents:
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576
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parents:
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577 // NOTE! There is no requirement that a collector implement these
a61af66fc99e Initial load
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parents:
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578 // functions.
a61af66fc99e Initial load
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parents:
diff changeset
579 //
a61af66fc99e Initial load
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parents:
diff changeset
580 // A CollectedHeap is divided into a dense sequence of "blocks"; that is,
a61af66fc99e Initial load
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parents:
diff changeset
581 // each address in the (reserved) heap is a member of exactly
a61af66fc99e Initial load
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parents:
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582 // one block. The defining characteristic of a block is that it is
a61af66fc99e Initial load
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parents:
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583 // possible to find its size, and thus to progress forward to the next
a61af66fc99e Initial load
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parents:
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584 // block. (Blocks may be of different sizes.) Thus, blocks may
a61af66fc99e Initial load
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parents:
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585 // represent Java objects, or they might be free blocks in a
a61af66fc99e Initial load
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parents:
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586 // free-list-based heap (or subheap), as long as the two kinds are
a61af66fc99e Initial load
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parents:
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587 // distinguishable and the size of each is determinable.
a61af66fc99e Initial load
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parents:
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588
a61af66fc99e Initial load
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parents:
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589 // Returns the address of the start of the "block" that contains the
a61af66fc99e Initial load
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parents:
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590 // address "addr". We say "blocks" instead of "object" since some heaps
a61af66fc99e Initial load
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parents:
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591 // may not pack objects densely; a chunk may either be an object or a
a61af66fc99e Initial load
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parents:
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592 // non-object.
a61af66fc99e Initial load
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parents:
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593 virtual HeapWord* block_start(const void* addr) const = 0;
a61af66fc99e Initial load
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594
a61af66fc99e Initial load
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parents:
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595 // Requires "addr" to be the start of a chunk, and returns its size.
a61af66fc99e Initial load
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parents:
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596 // "addr + size" is required to be the start of a new chunk, or the end
a61af66fc99e Initial load
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597 // of the active area of the heap.
a61af66fc99e Initial load
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parents:
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598 virtual size_t block_size(const HeapWord* addr) const = 0;
a61af66fc99e Initial load
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599
a61af66fc99e Initial load
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parents:
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600 // Requires "addr" to be the start of a block, and returns "TRUE" iff
a61af66fc99e Initial load
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601 // the block is an object.
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602 virtual bool block_is_obj(const HeapWord* addr) const = 0;
a61af66fc99e Initial load
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603
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parents:
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604 // Returns the longest time (in ms) that has elapsed since the last
a61af66fc99e Initial load
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parents:
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605 // time that any part of the heap was examined by a garbage collection.
a61af66fc99e Initial load
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parents:
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606 virtual jlong millis_since_last_gc() = 0;
a61af66fc99e Initial load
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607
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parents:
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608 // Perform any cleanup actions necessary before allowing a verification.
a61af66fc99e Initial load
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609 virtual void prepare_for_verify() = 0;
a61af66fc99e Initial load
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610
615
c6c601a0f2d6 6797870: Add -XX:+{HeapDump,PrintClassHistogram}{Before,After}FullGC
ysr
parents: 542
diff changeset
611 // Generate any dumps preceding or following a full gc
c6c601a0f2d6 6797870: Add -XX:+{HeapDump,PrintClassHistogram}{Before,After}FullGC
ysr
parents: 542
diff changeset
612 void pre_full_gc_dump();
c6c601a0f2d6 6797870: Add -XX:+{HeapDump,PrintClassHistogram}{Before,After}FullGC
ysr
parents: 542
diff changeset
613 void post_full_gc_dump();
c6c601a0f2d6 6797870: Add -XX:+{HeapDump,PrintClassHistogram}{Before,After}FullGC
ysr
parents: 542
diff changeset
614
4073
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
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diff changeset
615 // Print heap information on the given outputStream.
0
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616 virtual void print_on(outputStream* st) const = 0;
4073
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
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diff changeset
617 // The default behavior is to call print_on() on tty.
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
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618 virtual void print() const {
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
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diff changeset
619 print_on(tty);
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
620 }
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
621 // Print more detailed heap information on the given
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
622 // outputStream. The default behaviour is to call print_on(). It is
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
623 // up to each subclass to override it and add any additional output
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
624 // it needs.
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
625 virtual void print_extended_on(outputStream* st) const {
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
626 print_on(st);
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
627 }
0
a61af66fc99e Initial load
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parents:
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628
a61af66fc99e Initial load
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parents:
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629 // Print all GC threads (other than the VM thread)
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parents:
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630 // used by this heap.
a61af66fc99e Initial load
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parents:
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631 virtual void print_gc_threads_on(outputStream* st) const = 0;
4073
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
632 // The default behavior is to call print_gc_threads_on() on tty.
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
633 void print_gc_threads() {
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
634 print_gc_threads_on(tty);
53074c2c4600 7099849: G1: include heap region information in hs_err files
tonyp
parents: 4009
diff changeset
635 }
0
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parents:
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636 // Iterator for all GC threads (other than VM thread)
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parents:
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637 virtual void gc_threads_do(ThreadClosure* tc) const = 0;
a61af66fc99e Initial load
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638
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parents:
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639 // Print any relevant tracing info that flags imply.
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parents:
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640 // Default implementation does nothing.
a61af66fc99e Initial load
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parents:
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641 virtual void print_tracing_info() const = 0;
a61af66fc99e Initial load
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parents:
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642
4872
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
643 // If PrintHeapAtGC is set call the appropriate routi
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
644 void print_heap_before_gc() {
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
645 if (PrintHeapAtGC) {
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
646 Universe::print_heap_before_gc();
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
647 }
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
648 if (_gc_heap_log != NULL) {
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
649 _gc_heap_log->log_heap_before();
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
650 }
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
651 }
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
652 void print_heap_after_gc() {
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
653 if (PrintHeapAtGC) {
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
654 Universe::print_heap_after_gc();
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
655 }
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
656 if (_gc_heap_log != NULL) {
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
657 _gc_heap_log->log_heap_after();
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
658 }
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
659 }
aa3d708d67c4 7141200: log some interesting information in ring buffers for crashes
never
parents: 4728
diff changeset
660
0
a61af66fc99e Initial load
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parents:
diff changeset
661 // Heap verification
3772
6747fd0512e0 7004681: G1: Extend marking verification to Full GCs
johnc
parents: 3377
diff changeset
662 virtual void verify(bool allow_dirty, bool silent, VerifyOption option) = 0;
0
a61af66fc99e Initial load
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663
a61af66fc99e Initial load
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diff changeset
664 // Non product verification and debugging.
a61af66fc99e Initial load
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parents:
diff changeset
665 #ifndef PRODUCT
a61af66fc99e Initial load
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parents:
diff changeset
666 // Support for PromotionFailureALot. Return true if it's time to cause a
a61af66fc99e Initial load
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667 // promotion failure. The no-argument version uses
a61af66fc99e Initial load
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parents:
diff changeset
668 // this->_promotion_failure_alot_count as the counter.
a61af66fc99e Initial load
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parents:
diff changeset
669 inline bool promotion_should_fail(volatile size_t* count);
a61af66fc99e Initial load
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670 inline bool promotion_should_fail();
a61af66fc99e Initial load
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671
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parents:
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672 // Reset the PromotionFailureALot counters. Should be called at the end of a
a61af66fc99e Initial load
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parents:
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673 // GC in which promotion failure ocurred.
a61af66fc99e Initial load
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parents:
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674 inline void reset_promotion_should_fail(volatile size_t* count);
a61af66fc99e Initial load
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675 inline void reset_promotion_should_fail();
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676 #endif // #ifndef PRODUCT
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677
a61af66fc99e Initial load
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678 #ifdef ASSERT
a61af66fc99e Initial load
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diff changeset
679 static int fired_fake_oom() {
a61af66fc99e Initial load
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680 return (CIFireOOMAt > 1 && _fire_out_of_memory_count >= CIFireOOMAt);
a61af66fc99e Initial load
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681 }
a61af66fc99e Initial load
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diff changeset
682 #endif
1833
8b10f48633dc 6984287: Regularize how GC parallel workers are specified.
jmasa
parents: 1552
diff changeset
683
8b10f48633dc 6984287: Regularize how GC parallel workers are specified.
jmasa
parents: 1552
diff changeset
684 public:
8b10f48633dc 6984287: Regularize how GC parallel workers are specified.
jmasa
parents: 1552
diff changeset
685 // This is a convenience method that is used in cases where
8b10f48633dc 6984287: Regularize how GC parallel workers are specified.
jmasa
parents: 1552
diff changeset
686 // the actual number of GC worker threads is not pertinent but
8b10f48633dc 6984287: Regularize how GC parallel workers are specified.
jmasa
parents: 1552
diff changeset
687 // only whether there more than 0. Use of this method helps
8b10f48633dc 6984287: Regularize how GC parallel workers are specified.
jmasa
parents: 1552
diff changeset
688 // reduce the occurrence of ParallelGCThreads to uses where the
8b10f48633dc 6984287: Regularize how GC parallel workers are specified.
jmasa
parents: 1552
diff changeset
689 // actual number may be germane.
8b10f48633dc 6984287: Regularize how GC parallel workers are specified.
jmasa
parents: 1552
diff changeset
690 static bool use_parallel_gc_threads() { return ParallelGCThreads > 0; }
4708
3c648b9ad052 7121373: Clean up CollectedHeap::is_in
stefank
parents: 4073
diff changeset
691
3c648b9ad052 7121373: Clean up CollectedHeap::is_in
stefank
parents: 4073
diff changeset
692 /////////////// Unit tests ///////////////
3c648b9ad052 7121373: Clean up CollectedHeap::is_in
stefank
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diff changeset
693
3c648b9ad052 7121373: Clean up CollectedHeap::is_in
stefank
parents: 4073
diff changeset
694 NOT_PRODUCT(static void test_is_in();)
0
a61af66fc99e Initial load
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parents:
diff changeset
695 };
a61af66fc99e Initial load
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parents:
diff changeset
696
a61af66fc99e Initial load
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parents:
diff changeset
697 // Class to set and reset the GC cause for a CollectedHeap.
a61af66fc99e Initial load
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parents:
diff changeset
698
a61af66fc99e Initial load
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parents:
diff changeset
699 class GCCauseSetter : StackObj {
a61af66fc99e Initial load
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700 CollectedHeap* _heap;
a61af66fc99e Initial load
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parents:
diff changeset
701 GCCause::Cause _previous_cause;
a61af66fc99e Initial load
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parents:
diff changeset
702 public:
a61af66fc99e Initial load
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parents:
diff changeset
703 GCCauseSetter(CollectedHeap* heap, GCCause::Cause cause) {
a61af66fc99e Initial load
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parents:
diff changeset
704 assert(SafepointSynchronize::is_at_safepoint(),
a61af66fc99e Initial load
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parents:
diff changeset
705 "This method manipulates heap state without locking");
a61af66fc99e Initial load
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parents:
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706 _heap = heap;
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parents:
diff changeset
707 _previous_cause = _heap->gc_cause();
a61af66fc99e Initial load
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parents:
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708 _heap->set_gc_cause(cause);
a61af66fc99e Initial load
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parents:
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709 }
a61af66fc99e Initial load
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parents:
diff changeset
710
a61af66fc99e Initial load
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parents:
diff changeset
711 ~GCCauseSetter() {
a61af66fc99e Initial load
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parents:
diff changeset
712 assert(SafepointSynchronize::is_at_safepoint(),
a61af66fc99e Initial load
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parents:
diff changeset
713 "This method manipulates heap state without locking");
a61af66fc99e Initial load
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parents:
diff changeset
714 _heap->set_gc_cause(_previous_cause);
a61af66fc99e Initial load
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parents:
diff changeset
715 }
a61af66fc99e Initial load
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parents:
diff changeset
716 };
1972
f95d63e2154a 6989984: Use standard include model for Hospot
stefank
parents: 1833
diff changeset
717
f95d63e2154a 6989984: Use standard include model for Hospot
stefank
parents: 1833
diff changeset
718 #endif // SHARE_VM_GC_INTERFACE_COLLECTEDHEAP_HPP