annotate src/share/vm/gc_implementation/parallelScavenge/psMarkSweepDecorator.cpp @ 6725:da91efe96a93

6964458: Reimplement class meta-data storage to use native memory Summary: Remove PermGen, allocate meta-data in metaspace linked to class loaders, rewrite GC walking, rewrite and rename metadata to be C++ classes Reviewed-by: jmasa, stefank, never, coleenp, kvn, brutisso, mgerdin, dholmes, jrose, twisti, roland Contributed-by: jmasa <jon.masamitsu@oracle.com>, stefank <stefan.karlsson@oracle.com>, mgerdin <mikael.gerdin@oracle.com>, never <tom.rodriguez@oracle.com>
author coleenp
date Sat, 01 Sep 2012 13:25:18 -0400
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children b735136e0d82
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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 #include "precompiled.hpp"
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26 #include "classfile/systemDictionary.hpp"
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27 #include "gc_implementation/parallelScavenge/objectStartArray.hpp"
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28 #include "gc_implementation/parallelScavenge/parallelScavengeHeap.hpp"
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29 #include "gc_implementation/parallelScavenge/psMarkSweep.hpp"
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30 #include "gc_implementation/parallelScavenge/psMarkSweepDecorator.hpp"
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31 #include "gc_implementation/shared/liveRange.hpp"
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32 #include "gc_implementation/shared/markSweep.inline.hpp"
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33 #include "gc_implementation/shared/spaceDecorator.hpp"
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34 #include "oops/oop.inline.hpp"
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35
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36 PSMarkSweepDecorator* PSMarkSweepDecorator::_destination_decorator = NULL;
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39 void PSMarkSweepDecorator::set_destination_decorator_tenured() {
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40 ParallelScavengeHeap* heap = (ParallelScavengeHeap*)Universe::heap();
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41 assert(heap->kind() == CollectedHeap::ParallelScavengeHeap, "Sanity");
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42
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43 _destination_decorator = heap->old_gen()->object_mark_sweep();
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44 }
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45
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46 void PSMarkSweepDecorator::advance_destination_decorator() {
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47 ParallelScavengeHeap* heap = (ParallelScavengeHeap*)Universe::heap();
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48 assert(heap->kind() == CollectedHeap::ParallelScavengeHeap, "Sanity");
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49
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50 assert(_destination_decorator != NULL, "Sanity");
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51
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52 PSMarkSweepDecorator* first = heap->old_gen()->object_mark_sweep();
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53 PSMarkSweepDecorator* second = heap->young_gen()->eden_mark_sweep();
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54 PSMarkSweepDecorator* third = heap->young_gen()->from_mark_sweep();
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55 PSMarkSweepDecorator* fourth = heap->young_gen()->to_mark_sweep();
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56
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57 if ( _destination_decorator == first ) {
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58 _destination_decorator = second;
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59 } else if ( _destination_decorator == second ) {
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60 _destination_decorator = third;
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61 } else if ( _destination_decorator == third ) {
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62 _destination_decorator = fourth;
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63 } else {
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64 fatal("PSMarkSweep attempting to advance past last compaction area");
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65 }
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66 }
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67
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68 PSMarkSweepDecorator* PSMarkSweepDecorator::destination_decorator() {
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69 assert(_destination_decorator != NULL, "Sanity");
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70
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71 return _destination_decorator;
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72 }
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73
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74 // FIX ME FIX ME FIX ME FIX ME!!!!!!!!!
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75 // The object forwarding code is duplicated. Factor this out!!!!!
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76 //
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77 // This method "precompacts" objects inside its space to dest. It places forwarding
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78 // pointers into markOops for use by adjust_pointers. If "dest" should overflow, we
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79 // finish by compacting into our own space.
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80
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81 void PSMarkSweepDecorator::precompact() {
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82 // Reset our own compact top.
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83 set_compaction_top(space()->bottom());
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84
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85 /* We allow some amount of garbage towards the bottom of the space, so
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86 * we don't start compacting before there is a significant gain to be made.
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87 * Occasionally, we want to ensure a full compaction, which is determined
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88 * by the MarkSweepAlwaysCompactCount parameter. This is a significant
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89 * performance improvement!
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90 */
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91 bool skip_dead = (MarkSweepAlwaysCompactCount < 1)
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92 || ((PSMarkSweep::total_invocations() % MarkSweepAlwaysCompactCount) != 0);
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93
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94 size_t allowed_deadspace = 0;
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95 if (skip_dead) {
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96 const size_t ratio = allowed_dead_ratio();
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97 allowed_deadspace = space()->capacity_in_words() * ratio / 100;
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98 }
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99
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100 // Fetch the current destination decorator
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101 PSMarkSweepDecorator* dest = destination_decorator();
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102 ObjectStartArray* start_array = dest->start_array();
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103
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104 HeapWord* compact_top = dest->compaction_top();
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105 HeapWord* compact_end = dest->space()->end();
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106
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107 HeapWord* q = space()->bottom();
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108 HeapWord* t = space()->top();
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109
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110 HeapWord* end_of_live= q; /* One byte beyond the last byte of the last
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111 live object. */
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112 HeapWord* first_dead = space()->end(); /* The first dead object. */
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113 LiveRange* liveRange = NULL; /* The current live range, recorded in the
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114 first header of preceding free area. */
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115 _first_dead = first_dead;
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116
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117 const intx interval = PrefetchScanIntervalInBytes;
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118
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119 while (q < t) {
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120 assert(oop(q)->mark()->is_marked() || oop(q)->mark()->is_unlocked() ||
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121 oop(q)->mark()->has_bias_pattern(),
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122 "these are the only valid states during a mark sweep");
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123 if (oop(q)->is_gc_marked()) {
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124 /* prefetch beyond q */
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125 Prefetch::write(q, interval);
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126 size_t size = oop(q)->size();
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127
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128 size_t compaction_max_size = pointer_delta(compact_end, compact_top);
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129
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130 // This should only happen if a space in the young gen overflows the
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131 // old gen. If that should happen, we null out the start_array, because
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132 // the young spaces are not covered by one.
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133 while(size > compaction_max_size) {
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134 // First record the last compact_top
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135 dest->set_compaction_top(compact_top);
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136
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137 // Advance to the next compaction decorator
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138 advance_destination_decorator();
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139 dest = destination_decorator();
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140
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141 // Update compaction info
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142 start_array = dest->start_array();
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143 compact_top = dest->compaction_top();
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144 compact_end = dest->space()->end();
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145 assert(compact_top == dest->space()->bottom(), "Advanced to space already in use");
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146 assert(compact_end > compact_top, "Must always be space remaining");
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147 compaction_max_size =
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148 pointer_delta(compact_end, compact_top);
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149 }
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150
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151 // store the forwarding pointer into the mark word
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152 if (q != compact_top) {
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153 oop(q)->forward_to(oop(compact_top));
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154 assert(oop(q)->is_gc_marked(), "encoding the pointer should preserve the mark");
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155 } else {
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156 // if the object isn't moving we can just set the mark to the default
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157 // mark and handle it specially later on.
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158 oop(q)->init_mark();
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159 assert(oop(q)->forwardee() == NULL, "should be forwarded to NULL");
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160 }
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161
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162 // Update object start array
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163 if (start_array) {
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164 start_array->allocate_block(compact_top);
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165 }
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166
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167 VALIDATE_MARK_SWEEP_ONLY(MarkSweep::register_live_oop(oop(q), size));
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168 compact_top += size;
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169 assert(compact_top <= dest->space()->end(),
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170 "Exceeding space in destination");
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171
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172 q += size;
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173 end_of_live = q;
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174 } else {
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175 /* run over all the contiguous dead objects */
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176 HeapWord* end = q;
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177 do {
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178 /* prefetch beyond end */
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179 Prefetch::write(end, interval);
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180 end += oop(end)->size();
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181 } while (end < t && (!oop(end)->is_gc_marked()));
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182
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183 /* see if we might want to pretend this object is alive so that
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184 * we don't have to compact quite as often.
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185 */
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186 if (allowed_deadspace > 0 && q == compact_top) {
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187 size_t sz = pointer_delta(end, q);
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188 if (insert_deadspace(allowed_deadspace, q, sz)) {
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189 size_t compaction_max_size = pointer_delta(compact_end, compact_top);
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190
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191 // This should only happen if a space in the young gen overflows the
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192 // old gen. If that should happen, we null out the start_array, because
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193 // the young spaces are not covered by one.
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194 while (sz > compaction_max_size) {
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195 // First record the last compact_top
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196 dest->set_compaction_top(compact_top);
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197
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198 // Advance to the next compaction decorator
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199 advance_destination_decorator();
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200 dest = destination_decorator();
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201
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202 // Update compaction info
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203 start_array = dest->start_array();
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204 compact_top = dest->compaction_top();
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205 compact_end = dest->space()->end();
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206 assert(compact_top == dest->space()->bottom(), "Advanced to space already in use");
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207 assert(compact_end > compact_top, "Must always be space remaining");
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208 compaction_max_size =
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209 pointer_delta(compact_end, compact_top);
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210 }
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211
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212 // store the forwarding pointer into the mark word
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213 if (q != compact_top) {
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214 oop(q)->forward_to(oop(compact_top));
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215 assert(oop(q)->is_gc_marked(), "encoding the pointer should preserve the mark");
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216 } else {
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217 // if the object isn't moving we can just set the mark to the default
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218 // mark and handle it specially later on.
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219 oop(q)->init_mark();
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220 assert(oop(q)->forwardee() == NULL, "should be forwarded to NULL");
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221 }
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222
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223 // Update object start array
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224 if (start_array) {
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225 start_array->allocate_block(compact_top);
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226 }
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227
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228 VALIDATE_MARK_SWEEP_ONLY(MarkSweep::register_live_oop(oop(q), sz));
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229 compact_top += sz;
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230 assert(compact_top <= dest->space()->end(),
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231 "Exceeding space in destination");
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232
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233 q = end;
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234 end_of_live = end;
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235 continue;
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236 }
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237 }
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238
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239 /* for the previous LiveRange, record the end of the live objects. */
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240 if (liveRange) {
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241 liveRange->set_end(q);
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242 }
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243
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244 /* record the current LiveRange object.
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245 * liveRange->start() is overlaid on the mark word.
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246 */
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247 liveRange = (LiveRange*)q;
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248 liveRange->set_start(end);
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249 liveRange->set_end(end);
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250
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251 /* see if this is the first dead region. */
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252 if (q < first_dead) {
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253 first_dead = q;
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254 }
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255
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256 /* move on to the next object */
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257 q = end;
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258 }
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259 }
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260
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261 assert(q == t, "just checking");
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262 if (liveRange != NULL) {
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263 liveRange->set_end(q);
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264 }
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265 _end_of_live = end_of_live;
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266 if (end_of_live < first_dead) {
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267 first_dead = end_of_live;
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268 }
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269 _first_dead = first_dead;
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270
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271 // Update compaction top
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272 dest->set_compaction_top(compact_top);
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273 }
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274
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275 bool PSMarkSweepDecorator::insert_deadspace(size_t& allowed_deadspace_words,
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276 HeapWord* q, size_t deadlength) {
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277 if (allowed_deadspace_words >= deadlength) {
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278 allowed_deadspace_words -= deadlength;
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279 CollectedHeap::fill_with_object(q, deadlength);
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280 oop(q)->set_mark(oop(q)->mark()->set_marked());
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281 assert((int) deadlength == oop(q)->size(), "bad filler object size");
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282 // Recall that we required "q == compaction_top".
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283 return true;
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284 } else {
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285 allowed_deadspace_words = 0;
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286 return false;
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287 }
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288 }
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289
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290 void PSMarkSweepDecorator::adjust_pointers() {
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291 // adjust all the interior pointers to point at the new locations of objects
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292 // Used by MarkSweep::mark_sweep_phase3()
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293
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294 HeapWord* q = space()->bottom();
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295 HeapWord* t = _end_of_live; // Established by "prepare_for_compaction".
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296
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297 assert(_first_dead <= _end_of_live, "Stands to reason, no?");
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298
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299 if (q < t && _first_dead > q &&
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300 !oop(q)->is_gc_marked()) {
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301 // we have a chunk of the space which hasn't moved and we've
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302 // reinitialized the mark word during the previous pass, so we can't
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303 // use is_gc_marked for the traversal.
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304 HeapWord* end = _first_dead;
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305
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306 while (q < end) {
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307 VALIDATE_MARK_SWEEP_ONLY(MarkSweep::track_interior_pointers(oop(q)));
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308 // point all the oops to the new location
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309 size_t size = oop(q)->adjust_pointers();
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310 VALIDATE_MARK_SWEEP_ONLY(MarkSweep::check_interior_pointers());
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311 VALIDATE_MARK_SWEEP_ONLY(MarkSweep::validate_live_oop(oop(q), size));
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312 q += size;
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313 }
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314
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315 if (_first_dead == t) {
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316 q = t;
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317 } else {
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318 // $$$ This is funky. Using this to read the previously written
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319 // LiveRange. See also use below.
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320 q = (HeapWord*)oop(_first_dead)->mark()->decode_pointer();
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321 }
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322 }
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323 const intx interval = PrefetchScanIntervalInBytes;
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324
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325 debug_only(HeapWord* prev_q = NULL);
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326 while (q < t) {
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327 // prefetch beyond q
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328 Prefetch::write(q, interval);
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329 if (oop(q)->is_gc_marked()) {
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330 // q is alive
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331 VALIDATE_MARK_SWEEP_ONLY(MarkSweep::track_interior_pointers(oop(q)));
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332 // point all the oops to the new location
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333 size_t size = oop(q)->adjust_pointers();
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334 VALIDATE_MARK_SWEEP_ONLY(MarkSweep::check_interior_pointers());
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335 VALIDATE_MARK_SWEEP_ONLY(MarkSweep::validate_live_oop(oop(q), size));
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336 debug_only(prev_q = q);
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337 q += size;
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338 } else {
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339 // q is not a live object, so its mark should point at the next
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340 // live object
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341 debug_only(prev_q = q);
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342 q = (HeapWord*) oop(q)->mark()->decode_pointer();
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343 assert(q > prev_q, "we should be moving forward through memory");
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344 }
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345 }
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346
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347 assert(q == t, "just checking");
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348 }
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349
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350 void PSMarkSweepDecorator::compact(bool mangle_free_space ) {
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351 // Copy all live objects to their new location
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352 // Used by MarkSweep::mark_sweep_phase4()
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353
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354 HeapWord* q = space()->bottom();
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355 HeapWord* const t = _end_of_live;
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356 debug_only(HeapWord* prev_q = NULL);
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357
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358 if (q < t && _first_dead > q &&
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359 !oop(q)->is_gc_marked()) {
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360 #ifdef ASSERT
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361 // we have a chunk of the space which hasn't moved and we've reinitialized the
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362 // mark word during the previous pass, so we can't use is_gc_marked for the
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363 // traversal.
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364 HeapWord* const end = _first_dead;
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365
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366 while (q < end) {
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367 size_t size = oop(q)->size();
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368 assert(!oop(q)->is_gc_marked(), "should be unmarked (special dense prefix handling)");
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369 VALIDATE_MARK_SWEEP_ONLY(MarkSweep::live_oop_moved_to(q, size, q));
0
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370 debug_only(prev_q = q);
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371 q += size;
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372 }
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373 #endif
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374
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375 if (_first_dead == t) {
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376 q = t;
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377 } else {
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378 // $$$ Funky
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379 q = (HeapWord*) oop(_first_dead)->mark()->decode_pointer();
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380 }
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381 }
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382
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383 const intx scan_interval = PrefetchScanIntervalInBytes;
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384 const intx copy_interval = PrefetchCopyIntervalInBytes;
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385
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386 while (q < t) {
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387 if (!oop(q)->is_gc_marked()) {
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388 // mark is pointer to next marked oop
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389 debug_only(prev_q = q);
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390 q = (HeapWord*) oop(q)->mark()->decode_pointer();
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391 assert(q > prev_q, "we should be moving forward through memory");
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392 } else {
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393 // prefetch beyond q
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394 Prefetch::read(q, scan_interval);
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395
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396 // size and destination
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397 size_t size = oop(q)->size();
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398 HeapWord* compaction_top = (HeapWord*)oop(q)->forwardee();
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399
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400 // prefetch beyond compaction_top
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401 Prefetch::write(compaction_top, copy_interval);
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diff changeset
402
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403 // copy object and reinit its mark
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404 VALIDATE_MARK_SWEEP_ONLY(MarkSweep::live_oop_moved_to(q, size, compaction_top));
0
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diff changeset
405 assert(q != compaction_top, "everything in this pass should be moving");
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406 Copy::aligned_conjoint_words(q, compaction_top, size);
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407 oop(compaction_top)->init_mark();
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408 assert(oop(compaction_top)->klass() != NULL, "should have a class");
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409
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410 debug_only(prev_q = q);
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411 q += size;
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412 }
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413 }
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414
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415 assert(compaction_top() >= space()->bottom() && compaction_top() <= space()->end(),
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416 "should point inside space");
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417 space()->set_top(compaction_top());
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418
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419 if (mangle_free_space) {
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420 space()->mangle_unused_area();
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421 }
0
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422 }