annotate src/share/vm/runtime/vmThread.cpp @ 3780:4bf3cbef0b3e

Merge
author jcoomes
date Wed, 06 Jul 2011 08:43:01 -0700
parents 1f4413413144
children f08d439fab8c
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1 /*
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2 * Copyright (c) 1998, 2010, 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 "compiler/compileBroker.hpp"
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27 #include "gc_interface/collectedHeap.hpp"
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28 #include "memory/resourceArea.hpp"
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29 #include "oops/methodOop.hpp"
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30 #include "oops/oop.inline.hpp"
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31 #include "runtime/interfaceSupport.hpp"
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32 #include "runtime/mutexLocker.hpp"
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33 #include "runtime/os.hpp"
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34 #include "runtime/vmThread.hpp"
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35 #include "runtime/vm_operations.hpp"
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36 #include "services/runtimeService.hpp"
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37 #include "utilities/dtrace.hpp"
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38 #include "utilities/events.hpp"
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39 #include "utilities/xmlstream.hpp"
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40 #ifdef TARGET_OS_FAMILY_linux
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41 # include "thread_linux.inline.hpp"
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42 #endif
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43 #ifdef TARGET_OS_FAMILY_solaris
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44 # include "thread_solaris.inline.hpp"
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45 #endif
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46 #ifdef TARGET_OS_FAMILY_windows
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47 # include "thread_windows.inline.hpp"
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48 #endif
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49
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50 HS_DTRACE_PROBE_DECL3(hotspot, vmops__request, char *, uintptr_t, int);
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51 HS_DTRACE_PROBE_DECL3(hotspot, vmops__begin, char *, uintptr_t, int);
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52 HS_DTRACE_PROBE_DECL3(hotspot, vmops__end, char *, uintptr_t, int);
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53
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54 // Dummy VM operation to act as first element in our circular double-linked list
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55 class VM_Dummy: public VM_Operation {
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56 VMOp_Type type() const { return VMOp_Dummy; }
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57 void doit() {};
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58 };
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59
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60 VMOperationQueue::VMOperationQueue() {
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61 // The queue is a circular doubled-linked list, which always contains
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62 // one element (i.e., one element means empty).
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63 for(int i = 0; i < nof_priorities; i++) {
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64 _queue_length[i] = 0;
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65 _queue_counter = 0;
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66 _queue[i] = new VM_Dummy();
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67 _queue[i]->set_next(_queue[i]);
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68 _queue[i]->set_prev(_queue[i]);
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69 }
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70 _drain_list = NULL;
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71 }
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72
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73
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74 bool VMOperationQueue::queue_empty(int prio) {
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75 // It is empty if there is exactly one element
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76 bool empty = (_queue[prio] == _queue[prio]->next());
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77 assert( (_queue_length[prio] == 0 && empty) ||
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78 (_queue_length[prio] > 0 && !empty), "sanity check");
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79 return _queue_length[prio] == 0;
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80 }
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81
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82 // Inserts an element to the right of the q element
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83 void VMOperationQueue::insert(VM_Operation* q, VM_Operation* n) {
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84 assert(q->next()->prev() == q && q->prev()->next() == q, "sanity check");
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85 n->set_prev(q);
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86 n->set_next(q->next());
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87 q->next()->set_prev(n);
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88 q->set_next(n);
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89 }
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90
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91 void VMOperationQueue::queue_add_front(int prio, VM_Operation *op) {
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92 _queue_length[prio]++;
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93 insert(_queue[prio]->next(), op);
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94 }
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95
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96 void VMOperationQueue::queue_add_back(int prio, VM_Operation *op) {
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97 _queue_length[prio]++;
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98 insert(_queue[prio]->prev(), op);
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99 }
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100
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101
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102 void VMOperationQueue::unlink(VM_Operation* q) {
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103 assert(q->next()->prev() == q && q->prev()->next() == q, "sanity check");
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104 q->prev()->set_next(q->next());
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105 q->next()->set_prev(q->prev());
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106 }
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107
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108 VM_Operation* VMOperationQueue::queue_remove_front(int prio) {
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109 if (queue_empty(prio)) return NULL;
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110 assert(_queue_length[prio] >= 0, "sanity check");
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111 _queue_length[prio]--;
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112 VM_Operation* r = _queue[prio]->next();
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113 assert(r != _queue[prio], "cannot remove base element");
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114 unlink(r);
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115 return r;
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116 }
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117
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118 VM_Operation* VMOperationQueue::queue_drain(int prio) {
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119 if (queue_empty(prio)) return NULL;
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120 DEBUG_ONLY(int length = _queue_length[prio];);
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121 assert(length >= 0, "sanity check");
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122 _queue_length[prio] = 0;
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123 VM_Operation* r = _queue[prio]->next();
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124 assert(r != _queue[prio], "cannot remove base element");
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125 // remove links to base element from head and tail
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126 r->set_prev(NULL);
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127 _queue[prio]->prev()->set_next(NULL);
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128 // restore queue to empty state
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129 _queue[prio]->set_next(_queue[prio]);
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130 _queue[prio]->set_prev(_queue[prio]);
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131 assert(queue_empty(prio), "drain corrupted queue");
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132 #ifdef DEBUG
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133 int len = 0;
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134 VM_Operation* cur;
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135 for(cur = r; cur != NULL; cur=cur->next()) len++;
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136 assert(len == length, "drain lost some ops");
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137 #endif
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138 return r;
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139 }
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140
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141 void VMOperationQueue::queue_oops_do(int queue, OopClosure* f) {
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142 VM_Operation* cur = _queue[queue];
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143 cur = cur->next();
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144 while (cur != _queue[queue]) {
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145 cur->oops_do(f);
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146 cur = cur->next();
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147 }
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148 }
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149
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150 void VMOperationQueue::drain_list_oops_do(OopClosure* f) {
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151 VM_Operation* cur = _drain_list;
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152 while (cur != NULL) {
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153 cur->oops_do(f);
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154 cur = cur->next();
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155 }
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156 }
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157
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158 //-----------------------------------------------------------------
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159 // High-level interface
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160 bool VMOperationQueue::add(VM_Operation *op) {
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161
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162 HS_DTRACE_PROBE3(hotspot, vmops__request, op->name(), strlen(op->name()),
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163 op->evaluation_mode());
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164
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165 // Encapsulates VM queue policy. Currently, that
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166 // only involves putting them on the right list
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167 if (op->evaluate_at_safepoint()) {
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168 queue_add_back(SafepointPriority, op);
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169 return true;
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170 }
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171
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172 queue_add_back(MediumPriority, op);
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173 return true;
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174 }
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175
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176 VM_Operation* VMOperationQueue::remove_next() {
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177 // Assuming VMOperation queue is two-level priority queue. If there are
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178 // more than two priorities, we need a different scheduling algorithm.
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179 assert(SafepointPriority == 0 && MediumPriority == 1 && nof_priorities == 2,
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180 "current algorithm does not work");
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181
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182 // simple counter based scheduling to prevent starvation of lower priority
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183 // queue. -- see 4390175
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184 int high_prio, low_prio;
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185 if (_queue_counter++ < 10) {
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186 high_prio = SafepointPriority;
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187 low_prio = MediumPriority;
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188 } else {
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189 _queue_counter = 0;
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190 high_prio = MediumPriority;
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191 low_prio = SafepointPriority;
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192 }
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193
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194 return queue_remove_front(queue_empty(high_prio) ? low_prio : high_prio);
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195 }
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196
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197 void VMOperationQueue::oops_do(OopClosure* f) {
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198 for(int i = 0; i < nof_priorities; i++) {
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199 queue_oops_do(i, f);
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200 }
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201 drain_list_oops_do(f);
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202 }
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203
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204
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205 //------------------------------------------------------------------------------------------------------------------
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206 // Implementation of VMThread stuff
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207
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208 bool VMThread::_should_terminate = false;
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209 bool VMThread::_terminated = false;
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210 Monitor* VMThread::_terminate_lock = NULL;
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211 VMThread* VMThread::_vm_thread = NULL;
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212 VM_Operation* VMThread::_cur_vm_operation = NULL;
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213 VMOperationQueue* VMThread::_vm_queue = NULL;
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214 PerfCounter* VMThread::_perf_accumulated_vm_operation_time = NULL;
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215
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216
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217 void VMThread::create() {
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218 assert(vm_thread() == NULL, "we can only allocate one VMThread");
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219 _vm_thread = new VMThread();
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220
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221 // Create VM operation queue
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222 _vm_queue = new VMOperationQueue();
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223 guarantee(_vm_queue != NULL, "just checking");
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224
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225 _terminate_lock = new Monitor(Mutex::safepoint, "VMThread::_terminate_lock", true);
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226
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227 if (UsePerfData) {
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228 // jvmstat performance counters
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229 Thread* THREAD = Thread::current();
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230 _perf_accumulated_vm_operation_time =
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231 PerfDataManager::create_counter(SUN_THREADS, "vmOperationTime",
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232 PerfData::U_Ticks, CHECK);
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233 }
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234 }
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235
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236
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237 VMThread::VMThread() : NamedThread() {
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238 set_name("VM Thread");
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239 }
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240
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241 void VMThread::destroy() {
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242 if (_vm_thread != NULL) {
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243 delete _vm_thread;
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244 _vm_thread = NULL; // VM thread is gone
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245 }
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246 }
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247
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248 void VMThread::run() {
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249 assert(this == vm_thread(), "check");
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250
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251 this->initialize_thread_local_storage();
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252 this->record_stack_base_and_size();
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253 // Notify_lock wait checks on active_handles() to rewait in
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254 // case of spurious wakeup, it should wait on the last
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255 // value set prior to the notify
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256 this->set_active_handles(JNIHandleBlock::allocate_block());
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257
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258 {
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259 MutexLocker ml(Notify_lock);
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260 Notify_lock->notify();
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261 }
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262 // Notify_lock is destroyed by Threads::create_vm()
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263
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264 int prio = (VMThreadPriority == -1)
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265 ? os::java_to_os_priority[NearMaxPriority]
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266 : VMThreadPriority;
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267 // Note that I cannot call os::set_priority because it expects Java
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268 // priorities and I am *explicitly* using OS priorities so that it's
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269 // possible to set the VM thread priority higher than any Java thread.
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270 os::set_native_priority( this, prio );
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271
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272 // Wait for VM_Operations until termination
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273 this->loop();
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274
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275 // Note the intention to exit before safepointing.
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276 // 6295565 This has the effect of waiting for any large tty
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277 // outputs to finish.
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278 if (xtty != NULL) {
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279 ttyLocker ttyl;
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280 xtty->begin_elem("destroy_vm");
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281 xtty->stamp();
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282 xtty->end_elem();
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283 assert(should_terminate(), "termination flag must be set");
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284 }
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285
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286 // 4526887 let VM thread exit at Safepoint
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287 SafepointSynchronize::begin();
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288
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289 if (VerifyBeforeExit) {
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290 HandleMark hm(VMThread::vm_thread());
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291 // Among other things, this ensures that Eden top is correct.
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292 Universe::heap()->prepare_for_verify();
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293 os::check_heap();
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294 // Silent verification so as not to pollute normal output,
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295 // unless we really asked for it.
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296 Universe::verify(true, !(PrintGCDetails || Verbose));
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297 }
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298
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299 CompileBroker::set_should_block();
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300
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301 // wait for threads (compiler threads or daemon threads) in the
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302 // _thread_in_native state to block.
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303 VM_Exit::wait_for_threads_in_native_to_block();
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304
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305 // signal other threads that VM process is gone
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306 {
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307 // Note: we must have the _no_safepoint_check_flag. Mutex::lock() allows
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308 // VM thread to enter any lock at Safepoint as long as its _owner is NULL.
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309 // If that happens after _terminate_lock->wait() has unset _owner
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310 // but before it actually drops the lock and waits, the notification below
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311 // may get lost and we will have a hang. To avoid this, we need to use
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312 // Mutex::lock_without_safepoint_check().
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313 MutexLockerEx ml(_terminate_lock, Mutex::_no_safepoint_check_flag);
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314 _terminated = true;
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315 _terminate_lock->notify();
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316 }
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317
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318 // Deletion must be done synchronously by the JNI DestroyJavaVM thread
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319 // so that the VMThread deletion completes before the main thread frees
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320 // up the CodeHeap.
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321
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322 }
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323
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324
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325 // Notify the VMThread that the last non-daemon JavaThread has terminated,
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326 // and wait until operation is performed.
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327 void VMThread::wait_for_vm_thread_exit() {
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328 { MutexLocker mu(VMOperationQueue_lock);
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329 _should_terminate = true;
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330 VMOperationQueue_lock->notify();
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331 }
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332
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333 // Note: VM thread leaves at Safepoint. We are not stopped by Safepoint
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334 // because this thread has been removed from the threads list. But anything
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335 // that could get blocked by Safepoint should not be used after this point,
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336 // otherwise we will hang, since there is no one can end the safepoint.
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337
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338 // Wait until VM thread is terminated
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339 // Note: it should be OK to use Terminator_lock here. But this is called
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340 // at a very delicate time (VM shutdown) and we are operating in non- VM
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341 // thread at Safepoint. It's safer to not share lock with other threads.
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342 { MutexLockerEx ml(_terminate_lock, Mutex::_no_safepoint_check_flag);
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343 while(!VMThread::is_terminated()) {
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344 _terminate_lock->wait(Mutex::_no_safepoint_check_flag);
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345 }
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346 }
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347 }
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348
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349 void VMThread::print_on(outputStream* st) const {
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350 st->print("\"%s\" ", name());
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351 Thread::print_on(st);
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352 st->cr();
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353 }
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354
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355 void VMThread::evaluate_operation(VM_Operation* op) {
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356 ResourceMark rm;
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357
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358 {
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359 PerfTraceTime vm_op_timer(perf_accumulated_vm_operation_time());
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360 HS_DTRACE_PROBE3(hotspot, vmops__begin, op->name(), strlen(op->name()),
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361 op->evaluation_mode());
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362 op->evaluate();
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363 HS_DTRACE_PROBE3(hotspot, vmops__end, op->name(), strlen(op->name()),
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364 op->evaluation_mode());
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365 }
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366
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367 // Last access of info in _cur_vm_operation!
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368 bool c_heap_allocated = op->is_cheap_allocated();
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369
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370 // Mark as completed
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371 if (!op->evaluate_concurrently()) {
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372 op->calling_thread()->increment_vm_operation_completed_count();
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373 }
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374 // It is unsafe to access the _cur_vm_operation after the 'increment_vm_operation_completed_count' call,
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375 // since if it is stack allocated the calling thread might have deallocated
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376 if (c_heap_allocated) {
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377 delete _cur_vm_operation;
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378 }
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379 }
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380
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381
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382 void VMThread::loop() {
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383 assert(_cur_vm_operation == NULL, "no current one should be executing");
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384
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385 while(true) {
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386 VM_Operation* safepoint_ops = NULL;
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387 //
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388 // Wait for VM operation
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389 //
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390 // use no_safepoint_check to get lock without attempting to "sneak"
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391 { MutexLockerEx mu_queue(VMOperationQueue_lock,
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392 Mutex::_no_safepoint_check_flag);
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393
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394 // Look for new operation
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395 assert(_cur_vm_operation == NULL, "no current one should be executing");
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396 _cur_vm_operation = _vm_queue->remove_next();
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397
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398 // Stall time tracking code
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399 if (PrintVMQWaitTime && _cur_vm_operation != NULL &&
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400 !_cur_vm_operation->evaluate_concurrently()) {
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401 long stall = os::javaTimeMillis() - _cur_vm_operation->timestamp();
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402 if (stall > 0)
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403 tty->print_cr("%s stall: %Ld", _cur_vm_operation->name(), stall);
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404 }
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405
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406 while (!should_terminate() && _cur_vm_operation == NULL) {
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407 // wait with a timeout to guarantee safepoints at regular intervals
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408 bool timedout =
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409 VMOperationQueue_lock->wait(Mutex::_no_safepoint_check_flag,
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410 GuaranteedSafepointInterval);
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411
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412 // Support for self destruction
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413 if ((SelfDestructTimer != 0) && !is_error_reported() &&
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414 (os::elapsedTime() > SelfDestructTimer * 60)) {
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415 tty->print_cr("VM self-destructed");
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416 exit(-1);
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417 }
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418
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419 if (timedout && (SafepointALot ||
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420 SafepointSynchronize::is_cleanup_needed())) {
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421 MutexUnlockerEx mul(VMOperationQueue_lock,
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422 Mutex::_no_safepoint_check_flag);
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423 // Force a safepoint since we have not had one for at least
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424 // 'GuaranteedSafepointInterval' milliseconds. This will run all
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425 // the clean-up processing that needs to be done regularly at a
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426 // safepoint
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427 SafepointSynchronize::begin();
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428 #ifdef ASSERT
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429 if (GCALotAtAllSafepoints) InterfaceSupport::check_gc_alot();
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parents:
diff changeset
430 #endif
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parents:
diff changeset
431 SafepointSynchronize::end();
a61af66fc99e Initial load
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parents:
diff changeset
432 }
a61af66fc99e Initial load
duke
parents:
diff changeset
433 _cur_vm_operation = _vm_queue->remove_next();
a61af66fc99e Initial load
duke
parents:
diff changeset
434
a61af66fc99e Initial load
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parents:
diff changeset
435 // If we are at a safepoint we will evaluate all the operations that
a61af66fc99e Initial load
duke
parents:
diff changeset
436 // follow that also require a safepoint
a61af66fc99e Initial load
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parents:
diff changeset
437 if (_cur_vm_operation != NULL &&
a61af66fc99e Initial load
duke
parents:
diff changeset
438 _cur_vm_operation->evaluate_at_safepoint()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
439 safepoint_ops = _vm_queue->drain_at_safepoint_priority();
a61af66fc99e Initial load
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parents:
diff changeset
440 }
a61af66fc99e Initial load
duke
parents:
diff changeset
441 }
a61af66fc99e Initial load
duke
parents:
diff changeset
442
a61af66fc99e Initial load
duke
parents:
diff changeset
443 if (should_terminate()) break;
a61af66fc99e Initial load
duke
parents:
diff changeset
444 } // Release mu_queue_lock
a61af66fc99e Initial load
duke
parents:
diff changeset
445
a61af66fc99e Initial load
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parents:
diff changeset
446 //
a61af66fc99e Initial load
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parents:
diff changeset
447 // Execute VM operation
a61af66fc99e Initial load
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parents:
diff changeset
448 //
a61af66fc99e Initial load
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parents:
diff changeset
449 { HandleMark hm(VMThread::vm_thread());
a61af66fc99e Initial load
duke
parents:
diff changeset
450
a61af66fc99e Initial load
duke
parents:
diff changeset
451 EventMark em("Executing VM operation: %s", vm_operation()->name());
a61af66fc99e Initial load
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parents:
diff changeset
452 assert(_cur_vm_operation != NULL, "we should have found an operation to execute");
a61af66fc99e Initial load
duke
parents:
diff changeset
453
a61af66fc99e Initial load
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parents:
diff changeset
454 // Give the VM thread an extra quantum. Jobs tend to be bursty and this
a61af66fc99e Initial load
duke
parents:
diff changeset
455 // helps the VM thread to finish up the job.
a61af66fc99e Initial load
duke
parents:
diff changeset
456 // FIXME: When this is enabled and there are many threads, this can degrade
a61af66fc99e Initial load
duke
parents:
diff changeset
457 // performance significantly.
a61af66fc99e Initial load
duke
parents:
diff changeset
458 if( VMThreadHintNoPreempt )
a61af66fc99e Initial load
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parents:
diff changeset
459 os::hint_no_preempt();
a61af66fc99e Initial load
duke
parents:
diff changeset
460
a61af66fc99e Initial load
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parents:
diff changeset
461 // If we are at a safepoint we will evaluate all the operations that
a61af66fc99e Initial load
duke
parents:
diff changeset
462 // follow that also require a safepoint
a61af66fc99e Initial load
duke
parents:
diff changeset
463 if (_cur_vm_operation->evaluate_at_safepoint()) {
a61af66fc99e Initial load
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parents:
diff changeset
464
a61af66fc99e Initial load
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parents:
diff changeset
465 _vm_queue->set_drain_list(safepoint_ops); // ensure ops can be scanned
a61af66fc99e Initial load
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parents:
diff changeset
466
a61af66fc99e Initial load
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parents:
diff changeset
467 SafepointSynchronize::begin();
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parents:
diff changeset
468 evaluate_operation(_cur_vm_operation);
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parents:
diff changeset
469 // now process all queued safepoint ops, iteratively draining
a61af66fc99e Initial load
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parents:
diff changeset
470 // the queue until there are none left
a61af66fc99e Initial load
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parents:
diff changeset
471 do {
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parents:
diff changeset
472 _cur_vm_operation = safepoint_ops;
a61af66fc99e Initial load
duke
parents:
diff changeset
473 if (_cur_vm_operation != NULL) {
a61af66fc99e Initial load
duke
parents:
diff changeset
474 do {
a61af66fc99e Initial load
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parents:
diff changeset
475 // evaluate_operation deletes the op object so we have
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duke
parents:
diff changeset
476 // to grab the next op now
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parents:
diff changeset
477 VM_Operation* next = _cur_vm_operation->next();
a61af66fc99e Initial load
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parents:
diff changeset
478 _vm_queue->set_drain_list(next);
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parents:
diff changeset
479 evaluate_operation(_cur_vm_operation);
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parents:
diff changeset
480 _cur_vm_operation = next;
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parents:
diff changeset
481 if (PrintSafepointStatistics) {
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parents:
diff changeset
482 SafepointSynchronize::inc_vmop_coalesced_count();
a61af66fc99e Initial load
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parents:
diff changeset
483 }
a61af66fc99e Initial load
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parents:
diff changeset
484 } while (_cur_vm_operation != NULL);
a61af66fc99e Initial load
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parents:
diff changeset
485 }
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duke
parents:
diff changeset
486 // There is a chance that a thread enqueued a safepoint op
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parents:
diff changeset
487 // since we released the op-queue lock and initiated the safepoint.
a61af66fc99e Initial load
duke
parents:
diff changeset
488 // So we drain the queue again if there is anything there, as an
a61af66fc99e Initial load
duke
parents:
diff changeset
489 // optimization to try and reduce the number of safepoints.
a61af66fc99e Initial load
duke
parents:
diff changeset
490 // As the safepoint synchronizes us with JavaThreads we will see
a61af66fc99e Initial load
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parents:
diff changeset
491 // any enqueue made by a JavaThread, but the peek will not
a61af66fc99e Initial load
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parents:
diff changeset
492 // necessarily detect a concurrent enqueue by a GC thread, but
a61af66fc99e Initial load
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parents:
diff changeset
493 // that simply means the op will wait for the next major cycle of the
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parents:
diff changeset
494 // VMThread - just as it would if the GC thread lost the race for
a61af66fc99e Initial load
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parents:
diff changeset
495 // the lock.
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parents:
diff changeset
496 if (_vm_queue->peek_at_safepoint_priority()) {
a61af66fc99e Initial load
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parents:
diff changeset
497 // must hold lock while draining queue
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duke
parents:
diff changeset
498 MutexLockerEx mu_queue(VMOperationQueue_lock,
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duke
parents:
diff changeset
499 Mutex::_no_safepoint_check_flag);
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parents:
diff changeset
500 safepoint_ops = _vm_queue->drain_at_safepoint_priority();
a61af66fc99e Initial load
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parents:
diff changeset
501 } else {
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parents:
diff changeset
502 safepoint_ops = NULL;
a61af66fc99e Initial load
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parents:
diff changeset
503 }
a61af66fc99e Initial load
duke
parents:
diff changeset
504 } while(safepoint_ops != NULL);
a61af66fc99e Initial load
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parents:
diff changeset
505
a61af66fc99e Initial load
duke
parents:
diff changeset
506 _vm_queue->set_drain_list(NULL);
a61af66fc99e Initial load
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parents:
diff changeset
507
a61af66fc99e Initial load
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parents:
diff changeset
508 // Complete safepoint synchronization
a61af66fc99e Initial load
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parents:
diff changeset
509 SafepointSynchronize::end();
a61af66fc99e Initial load
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parents:
diff changeset
510
a61af66fc99e Initial load
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parents:
diff changeset
511 } else { // not a safepoint operation
a61af66fc99e Initial load
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parents:
diff changeset
512 if (TraceLongCompiles) {
a61af66fc99e Initial load
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parents:
diff changeset
513 elapsedTimer t;
a61af66fc99e Initial load
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parents:
diff changeset
514 t.start();
a61af66fc99e Initial load
duke
parents:
diff changeset
515 evaluate_operation(_cur_vm_operation);
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parents:
diff changeset
516 t.stop();
a61af66fc99e Initial load
duke
parents:
diff changeset
517 double secs = t.seconds();
a61af66fc99e Initial load
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parents:
diff changeset
518 if (secs * 1e3 > LongCompileThreshold) {
a61af66fc99e Initial load
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parents:
diff changeset
519 // XXX - _cur_vm_operation should not be accessed after
a61af66fc99e Initial load
duke
parents:
diff changeset
520 // the completed count has been incremented; the waiting
a61af66fc99e Initial load
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parents:
diff changeset
521 // thread may have already freed this memory.
a61af66fc99e Initial load
duke
parents:
diff changeset
522 tty->print_cr("vm %s: %3.7f secs]", _cur_vm_operation->name(), secs);
a61af66fc99e Initial load
duke
parents:
diff changeset
523 }
a61af66fc99e Initial load
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parents:
diff changeset
524 } else {
a61af66fc99e Initial load
duke
parents:
diff changeset
525 evaluate_operation(_cur_vm_operation);
a61af66fc99e Initial load
duke
parents:
diff changeset
526 }
a61af66fc99e Initial load
duke
parents:
diff changeset
527
a61af66fc99e Initial load
duke
parents:
diff changeset
528 _cur_vm_operation = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
529 }
a61af66fc99e Initial load
duke
parents:
diff changeset
530 }
a61af66fc99e Initial load
duke
parents:
diff changeset
531
a61af66fc99e Initial load
duke
parents:
diff changeset
532 //
a61af66fc99e Initial load
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parents:
diff changeset
533 // Notify (potential) waiting Java thread(s) - lock without safepoint
a61af66fc99e Initial load
duke
parents:
diff changeset
534 // check so that sneaking is not possible
a61af66fc99e Initial load
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parents:
diff changeset
535 { MutexLockerEx mu(VMOperationRequest_lock,
a61af66fc99e Initial load
duke
parents:
diff changeset
536 Mutex::_no_safepoint_check_flag);
a61af66fc99e Initial load
duke
parents:
diff changeset
537 VMOperationRequest_lock->notify_all();
a61af66fc99e Initial load
duke
parents:
diff changeset
538 }
a61af66fc99e Initial load
duke
parents:
diff changeset
539
a61af66fc99e Initial load
duke
parents:
diff changeset
540 //
a61af66fc99e Initial load
duke
parents:
diff changeset
541 // We want to make sure that we get to a safepoint regularly.
a61af66fc99e Initial load
duke
parents:
diff changeset
542 //
a61af66fc99e Initial load
duke
parents:
diff changeset
543 if (SafepointALot || SafepointSynchronize::is_cleanup_needed()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
544 long interval = SafepointSynchronize::last_non_safepoint_interval();
a61af66fc99e Initial load
duke
parents:
diff changeset
545 bool max_time_exceeded = GuaranteedSafepointInterval != 0 && (interval > GuaranteedSafepointInterval);
a61af66fc99e Initial load
duke
parents:
diff changeset
546 if (SafepointALot || max_time_exceeded) {
a61af66fc99e Initial load
duke
parents:
diff changeset
547 HandleMark hm(VMThread::vm_thread());
a61af66fc99e Initial load
duke
parents:
diff changeset
548 SafepointSynchronize::begin();
a61af66fc99e Initial load
duke
parents:
diff changeset
549 SafepointSynchronize::end();
a61af66fc99e Initial load
duke
parents:
diff changeset
550 }
a61af66fc99e Initial load
duke
parents:
diff changeset
551 }
a61af66fc99e Initial load
duke
parents:
diff changeset
552 }
a61af66fc99e Initial load
duke
parents:
diff changeset
553 }
a61af66fc99e Initial load
duke
parents:
diff changeset
554
a61af66fc99e Initial load
duke
parents:
diff changeset
555 void VMThread::execute(VM_Operation* op) {
a61af66fc99e Initial load
duke
parents:
diff changeset
556 Thread* t = Thread::current();
a61af66fc99e Initial load
duke
parents:
diff changeset
557
a61af66fc99e Initial load
duke
parents:
diff changeset
558 if (!t->is_VM_thread()) {
806
821269eca479 6820167: GCALotAtAllSafepoints + FullGCALot(ScavengeALot) options crash JVM
ysr
parents: 0
diff changeset
559 SkipGCALot sgcalot(t); // avoid re-entrant attempts to gc-a-lot
0
a61af66fc99e Initial load
duke
parents:
diff changeset
560 // JavaThread or WatcherThread
a61af66fc99e Initial load
duke
parents:
diff changeset
561 t->check_for_valid_safepoint_state(true);
a61af66fc99e Initial load
duke
parents:
diff changeset
562
a61af66fc99e Initial load
duke
parents:
diff changeset
563 // New request from Java thread, evaluate prologue
a61af66fc99e Initial load
duke
parents:
diff changeset
564 if (!op->doit_prologue()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
565 return; // op was cancelled
a61af66fc99e Initial load
duke
parents:
diff changeset
566 }
a61af66fc99e Initial load
duke
parents:
diff changeset
567
a61af66fc99e Initial load
duke
parents:
diff changeset
568 // Setup VM_operations for execution
a61af66fc99e Initial load
duke
parents:
diff changeset
569 op->set_calling_thread(t, Thread::get_priority(t));
a61af66fc99e Initial load
duke
parents:
diff changeset
570
a61af66fc99e Initial load
duke
parents:
diff changeset
571 // It does not make sense to execute the epilogue, if the VM operation object is getting
a61af66fc99e Initial load
duke
parents:
diff changeset
572 // deallocated by the VM thread.
a61af66fc99e Initial load
duke
parents:
diff changeset
573 bool concurrent = op->evaluate_concurrently();
a61af66fc99e Initial load
duke
parents:
diff changeset
574 bool execute_epilog = !op->is_cheap_allocated();
a61af66fc99e Initial load
duke
parents:
diff changeset
575 assert(!concurrent || op->is_cheap_allocated(), "concurrent => cheap_allocated");
a61af66fc99e Initial load
duke
parents:
diff changeset
576
a61af66fc99e Initial load
duke
parents:
diff changeset
577 // Get ticket number for non-concurrent VM operations
a61af66fc99e Initial load
duke
parents:
diff changeset
578 int ticket = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
579 if (!concurrent) {
a61af66fc99e Initial load
duke
parents:
diff changeset
580 ticket = t->vm_operation_ticket();
a61af66fc99e Initial load
duke
parents:
diff changeset
581 }
a61af66fc99e Initial load
duke
parents:
diff changeset
582
a61af66fc99e Initial load
duke
parents:
diff changeset
583 // Add VM operation to list of waiting threads. We are guaranteed not to block while holding the
a61af66fc99e Initial load
duke
parents:
diff changeset
584 // VMOperationQueue_lock, so we can block without a safepoint check. This allows vm operation requests
a61af66fc99e Initial load
duke
parents:
diff changeset
585 // to be queued up during a safepoint synchronization.
a61af66fc99e Initial load
duke
parents:
diff changeset
586 {
a61af66fc99e Initial load
duke
parents:
diff changeset
587 VMOperationQueue_lock->lock_without_safepoint_check();
a61af66fc99e Initial load
duke
parents:
diff changeset
588 bool ok = _vm_queue->add(op);
a61af66fc99e Initial load
duke
parents:
diff changeset
589 op->set_timestamp(os::javaTimeMillis());
a61af66fc99e Initial load
duke
parents:
diff changeset
590 VMOperationQueue_lock->notify();
a61af66fc99e Initial load
duke
parents:
diff changeset
591 VMOperationQueue_lock->unlock();
a61af66fc99e Initial load
duke
parents:
diff changeset
592 // VM_Operation got skipped
a61af66fc99e Initial load
duke
parents:
diff changeset
593 if (!ok) {
a61af66fc99e Initial load
duke
parents:
diff changeset
594 assert(concurrent, "can only skip concurrent tasks");
a61af66fc99e Initial load
duke
parents:
diff changeset
595 if (op->is_cheap_allocated()) delete op;
a61af66fc99e Initial load
duke
parents:
diff changeset
596 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
597 }
a61af66fc99e Initial load
duke
parents:
diff changeset
598 }
a61af66fc99e Initial load
duke
parents:
diff changeset
599
a61af66fc99e Initial load
duke
parents:
diff changeset
600 if (!concurrent) {
a61af66fc99e Initial load
duke
parents:
diff changeset
601 // Wait for completion of request (non-concurrent)
a61af66fc99e Initial load
duke
parents:
diff changeset
602 // Note: only a JavaThread triggers the safepoint check when locking
a61af66fc99e Initial load
duke
parents:
diff changeset
603 MutexLocker mu(VMOperationRequest_lock);
a61af66fc99e Initial load
duke
parents:
diff changeset
604 while(t->vm_operation_completed_count() < ticket) {
a61af66fc99e Initial load
duke
parents:
diff changeset
605 VMOperationRequest_lock->wait(!t->is_Java_thread());
a61af66fc99e Initial load
duke
parents:
diff changeset
606 }
a61af66fc99e Initial load
duke
parents:
diff changeset
607 }
a61af66fc99e Initial load
duke
parents:
diff changeset
608
a61af66fc99e Initial load
duke
parents:
diff changeset
609 if (execute_epilog) {
a61af66fc99e Initial load
duke
parents:
diff changeset
610 op->doit_epilogue();
a61af66fc99e Initial load
duke
parents:
diff changeset
611 }
a61af66fc99e Initial load
duke
parents:
diff changeset
612 } else {
a61af66fc99e Initial load
duke
parents:
diff changeset
613 // invoked by VM thread; usually nested VM operation
a61af66fc99e Initial load
duke
parents:
diff changeset
614 assert(t->is_VM_thread(), "must be a VM thread");
a61af66fc99e Initial load
duke
parents:
diff changeset
615 VM_Operation* prev_vm_operation = vm_operation();
a61af66fc99e Initial load
duke
parents:
diff changeset
616 if (prev_vm_operation != NULL) {
a61af66fc99e Initial load
duke
parents:
diff changeset
617 // Check the VM operation allows nested VM operation. This normally not the case, e.g., the compiler
a61af66fc99e Initial load
duke
parents:
diff changeset
618 // does not allow nested scavenges or compiles.
a61af66fc99e Initial load
duke
parents:
diff changeset
619 if (!prev_vm_operation->allow_nested_vm_operations()) {
1490
f03d0a26bf83 6888954: argument formatting for assert() and friends
jcoomes
parents: 1489
diff changeset
620 fatal(err_msg("Nested VM operation %s requested by operation %s",
f03d0a26bf83 6888954: argument formatting for assert() and friends
jcoomes
parents: 1489
diff changeset
621 op->name(), vm_operation()->name()));
0
a61af66fc99e Initial load
duke
parents:
diff changeset
622 }
a61af66fc99e Initial load
duke
parents:
diff changeset
623 op->set_calling_thread(prev_vm_operation->calling_thread(), prev_vm_operation->priority());
a61af66fc99e Initial load
duke
parents:
diff changeset
624 }
a61af66fc99e Initial load
duke
parents:
diff changeset
625
a61af66fc99e Initial load
duke
parents:
diff changeset
626 EventMark em("Executing %s VM operation: %s", prev_vm_operation ? "nested" : "", op->name());
a61af66fc99e Initial load
duke
parents:
diff changeset
627
a61af66fc99e Initial load
duke
parents:
diff changeset
628 // Release all internal handles after operation is evaluated
a61af66fc99e Initial load
duke
parents:
diff changeset
629 HandleMark hm(t);
a61af66fc99e Initial load
duke
parents:
diff changeset
630 _cur_vm_operation = op;
a61af66fc99e Initial load
duke
parents:
diff changeset
631
a61af66fc99e Initial load
duke
parents:
diff changeset
632 if (op->evaluate_at_safepoint() && !SafepointSynchronize::is_at_safepoint()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
633 SafepointSynchronize::begin();
a61af66fc99e Initial load
duke
parents:
diff changeset
634 op->evaluate();
a61af66fc99e Initial load
duke
parents:
diff changeset
635 SafepointSynchronize::end();
a61af66fc99e Initial load
duke
parents:
diff changeset
636 } else {
a61af66fc99e Initial load
duke
parents:
diff changeset
637 op->evaluate();
a61af66fc99e Initial load
duke
parents:
diff changeset
638 }
a61af66fc99e Initial load
duke
parents:
diff changeset
639
a61af66fc99e Initial load
duke
parents:
diff changeset
640 // Free memory if needed
a61af66fc99e Initial load
duke
parents:
diff changeset
641 if (op->is_cheap_allocated()) delete op;
a61af66fc99e Initial load
duke
parents:
diff changeset
642
a61af66fc99e Initial load
duke
parents:
diff changeset
643 _cur_vm_operation = prev_vm_operation;
a61af66fc99e Initial load
duke
parents:
diff changeset
644 }
a61af66fc99e Initial load
duke
parents:
diff changeset
645 }
a61af66fc99e Initial load
duke
parents:
diff changeset
646
a61af66fc99e Initial load
duke
parents:
diff changeset
647
989
148e5441d916 6863023: need non-perm oops in code cache for JSR 292
jrose
parents: 844
diff changeset
648 void VMThread::oops_do(OopClosure* f, CodeBlobClosure* cf) {
148e5441d916 6863023: need non-perm oops in code cache for JSR 292
jrose
parents: 844
diff changeset
649 Thread::oops_do(f, cf);
0
a61af66fc99e Initial load
duke
parents:
diff changeset
650 _vm_queue->oops_do(f);
a61af66fc99e Initial load
duke
parents:
diff changeset
651 }
a61af66fc99e Initial load
duke
parents:
diff changeset
652
a61af66fc99e Initial load
duke
parents:
diff changeset
653 //------------------------------------------------------------------------------------------------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
654 #ifndef PRODUCT
a61af66fc99e Initial load
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655
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656 void VMOperationQueue::verify_queue(int prio) {
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657 // Check that list is correctly linked
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658 int length = _queue_length[prio];
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659 VM_Operation *cur = _queue[prio];
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660 int i;
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661
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662 // Check forward links
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663 for(i = 0; i < length; i++) {
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664 cur = cur->next();
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665 assert(cur != _queue[prio], "list to short (forward)");
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666 }
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667 assert(cur->next() == _queue[prio], "list to long (forward)");
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668
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669 // Check backwards links
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670 cur = _queue[prio];
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671 for(i = 0; i < length; i++) {
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672 cur = cur->prev();
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673 assert(cur != _queue[prio], "list to short (backwards)");
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674 }
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675 assert(cur->prev() == _queue[prio], "list to long (backwards)");
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676 }
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677
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678 #endif
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679
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680 void VMThread::verify() {
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681 oops_do(&VerifyOopClosure::verify_oop, NULL);
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682 }