annotate src/share/vm/runtime/vm_operations.cpp @ 18096:ca6d25be853b jdk8u25-b13

8044269: Analysis of archive files. Summary: Add checksum verification. Reviewed-by: iklam, dholmes, mschoene
author jiangli
date Tue, 12 Aug 2014 17:46:16 -0400
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children 52b4284cb496
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1 /*
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2 * Copyright (c) 1997, 2014, 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
c18cbe5936b8 6941466: Oracle rebranding changes for Hotspot repositories
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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/symbolTable.hpp"
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27 #include "classfile/vmSymbols.hpp"
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28 #include "compiler/compileBroker.hpp"
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29 #include "compiler/compilerOracle.hpp"
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30 #include "gc_implementation/shared/isGCActiveMark.hpp"
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31 #include "memory/resourceArea.hpp"
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32 #include "oops/symbol.hpp"
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33 #include "runtime/arguments.hpp"
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34 #include "runtime/deoptimization.hpp"
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35 #include "runtime/interfaceSupport.hpp"
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36 #include "runtime/sweeper.hpp"
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37 #include "runtime/thread.inline.hpp"
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38 #include "runtime/vm_operations.hpp"
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39 #include "services/threadService.hpp"
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40 #include "trace/tracing.hpp"
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41
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42 PRAGMA_FORMAT_MUTE_WARNINGS_FOR_GCC
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43
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44 #define VM_OP_NAME_INITIALIZE(name) #name,
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45
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46 const char* VM_Operation::_names[VM_Operation::VMOp_Terminating] = \
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47 { VM_OPS_DO(VM_OP_NAME_INITIALIZE) };
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48
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49 void VM_Operation::set_calling_thread(Thread* thread, ThreadPriority priority) {
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50 _calling_thread = thread;
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51 assert(MinPriority <= priority && priority <= MaxPriority, "sanity check");
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52 _priority = priority;
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53 }
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54
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55
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56 void VM_Operation::evaluate() {
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57 ResourceMark rm;
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58 if (TraceVMOperation) {
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59 tty->print("[");
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60 NOT_PRODUCT(print();)
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61 }
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62 doit();
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63 if (TraceVMOperation) {
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64 tty->print_cr("]");
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65 }
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66 }
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67
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68 const char* VM_Operation::mode_to_string(Mode mode) {
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69 switch(mode) {
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70 case _safepoint : return "safepoint";
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71 case _no_safepoint : return "no safepoint";
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72 case _concurrent : return "concurrent";
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73 case _async_safepoint: return "async safepoint";
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74 default : return "unknown";
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75 }
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76 }
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77 // Called by fatal error handler.
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78 void VM_Operation::print_on_error(outputStream* st) const {
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79 st->print("VM_Operation (" PTR_FORMAT "): ", this);
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80 st->print("%s", name());
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81
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82 const char* mode = mode_to_string(evaluation_mode());
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83 st->print(", mode: %s", mode);
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84
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85 if (calling_thread()) {
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86 st->print(", requested by thread " PTR_FORMAT, calling_thread());
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87 }
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88 }
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89
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90 void VM_ThreadStop::doit() {
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91 assert(SafepointSynchronize::is_at_safepoint(), "must be at a safepoint");
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92 JavaThread* target = java_lang_Thread::thread(target_thread());
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93 // Note that this now allows multiple ThreadDeath exceptions to be
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94 // thrown at a thread.
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95 if (target != NULL) {
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96 // the thread has run and is not already in the process of exiting
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97 target->send_thread_stop(throwable());
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98 }
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99 }
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100
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101 void VM_Deoptimize::doit() {
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102 // We do not want any GCs to happen while we are in the middle of this VM operation
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103 ResourceMark rm;
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104 DeoptimizationMarker dm;
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105
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106 // Deoptimize all activations depending on marked nmethods
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107 Deoptimization::deoptimize_dependents();
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108
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109 // Make the dependent methods zombies
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110 CodeCache::make_marked_nmethods_zombies();
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111 }
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112
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113
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114 VM_DeoptimizeFrame::VM_DeoptimizeFrame(JavaThread* thread, intptr_t* id) {
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115 _thread = thread;
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116 _id = id;
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117 }
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118
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119
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120 void VM_DeoptimizeFrame::doit() {
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121 Deoptimization::deoptimize_frame_internal(_thread, _id);
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122 }
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123
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124
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125 #ifndef PRODUCT
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126
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127 void VM_DeoptimizeAll::doit() {
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128 DeoptimizationMarker dm;
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129 // deoptimize all java threads in the system
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130 if (DeoptimizeALot) {
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131 for (JavaThread* thread = Threads::first(); thread != NULL; thread = thread->next()) {
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132 if (thread->has_last_Java_frame()) {
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133 thread->deoptimize();
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134 }
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135 }
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136 } else if (DeoptimizeRandom) {
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137
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138 // Deoptimize some selected threads and frames
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139 int tnum = os::random() & 0x3;
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140 int fnum = os::random() & 0x3;
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141 int tcount = 0;
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142 for (JavaThread* thread = Threads::first(); thread != NULL; thread = thread->next()) {
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143 if (thread->has_last_Java_frame()) {
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144 if (tcount++ == tnum) {
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145 tcount = 0;
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146 int fcount = 0;
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147 // Deoptimize some selected frames.
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148 // Biased llocking wants a updated register map
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149 for(StackFrameStream fst(thread, UseBiasedLocking); !fst.is_done(); fst.next()) {
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150 if (fst.current()->can_be_deoptimized()) {
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151 if (fcount++ == fnum) {
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152 fcount = 0;
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153 Deoptimization::deoptimize(thread, *fst.current(), fst.register_map());
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154 }
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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 }
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160 }
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161 }
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162
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163
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164 void VM_ZombieAll::doit() {
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165 JavaThread *thread = (JavaThread *)calling_thread();
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166 assert(thread->is_Java_thread(), "must be a Java thread");
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167 thread->make_zombies();
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168 }
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169
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170 #endif // !PRODUCT
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171
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172 void VM_UnlinkSymbols::doit() {
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173 JavaThread *thread = (JavaThread *)calling_thread();
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174 assert(thread->is_Java_thread(), "must be a Java thread");
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175 SymbolTable::unlink();
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176 }
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177
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178 void VM_Verify::doit() {
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179 Universe::heap()->prepare_for_verify();
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180 Universe::verify(_silent);
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181 }
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182
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183 bool VM_PrintThreads::doit_prologue() {
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184 assert(Thread::current()->is_Java_thread(), "just checking");
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185
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186 // Make sure AbstractOwnableSynchronizer is loaded
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187 if (JDK_Version::is_gte_jdk16x_version()) {
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188 java_util_concurrent_locks_AbstractOwnableSynchronizer::initialize(JavaThread::current());
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189 }
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190
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191 // Get Heap_lock if concurrent locks will be dumped
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192 if (_print_concurrent_locks) {
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193 Heap_lock->lock();
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194 }
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195 return true;
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196 }
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197
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198 void VM_PrintThreads::doit() {
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199 Threads::print_on(_out, true, false, _print_concurrent_locks);
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200 }
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201
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202 void VM_PrintThreads::doit_epilogue() {
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203 if (_print_concurrent_locks) {
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204 // Release Heap_lock
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205 Heap_lock->unlock();
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206 }
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207 }
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208
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209 void VM_PrintJNI::doit() {
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210 JNIHandles::print_on(_out);
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211 }
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212
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213 VM_FindDeadlocks::~VM_FindDeadlocks() {
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214 if (_deadlocks != NULL) {
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215 DeadlockCycle* cycle = _deadlocks;
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216 while (cycle != NULL) {
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217 DeadlockCycle* d = cycle;
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218 cycle = cycle->next();
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219 delete d;
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220 }
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221 }
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diff changeset
222 }
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223
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224 bool VM_FindDeadlocks::doit_prologue() {
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225 assert(Thread::current()->is_Java_thread(), "just checking");
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226
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227 // Load AbstractOwnableSynchronizer class
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228 if (_concurrent_locks && JDK_Version::is_gte_jdk16x_version()) {
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229 java_util_concurrent_locks_AbstractOwnableSynchronizer::initialize(JavaThread::current());
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230 }
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231
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232 return true;
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233 }
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234
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235 void VM_FindDeadlocks::doit() {
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236 _deadlocks = ThreadService::find_deadlocks_at_safepoint(_concurrent_locks);
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237 if (_out != NULL) {
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238 int num_deadlocks = 0;
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239 for (DeadlockCycle* cycle = _deadlocks; cycle != NULL; cycle = cycle->next()) {
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240 num_deadlocks++;
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241 cycle->print_on(_out);
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242 }
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243
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244 if (num_deadlocks == 1) {
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245 _out->print_cr("\nFound 1 deadlock.\n");
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246 _out->flush();
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247 } else if (num_deadlocks > 1) {
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248 _out->print_cr("\nFound %d deadlocks.\n", num_deadlocks);
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249 _out->flush();
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250 }
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251 }
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252 }
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253
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254 VM_ThreadDump::VM_ThreadDump(ThreadDumpResult* result,
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255 int max_depth,
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256 bool with_locked_monitors,
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257 bool with_locked_synchronizers) {
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258 _result = result;
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259 _num_threads = 0; // 0 indicates all threads
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260 _threads = NULL;
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261 _result = result;
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262 _max_depth = max_depth;
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263 _with_locked_monitors = with_locked_monitors;
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264 _with_locked_synchronizers = with_locked_synchronizers;
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265 }
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266
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267 VM_ThreadDump::VM_ThreadDump(ThreadDumpResult* result,
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268 GrowableArray<instanceHandle>* threads,
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269 int num_threads,
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270 int max_depth,
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271 bool with_locked_monitors,
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272 bool with_locked_synchronizers) {
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273 _result = result;
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274 _num_threads = num_threads;
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275 _threads = threads;
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276 _result = result;
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277 _max_depth = max_depth;
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278 _with_locked_monitors = with_locked_monitors;
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279 _with_locked_synchronizers = with_locked_synchronizers;
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280 }
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281
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282 bool VM_ThreadDump::doit_prologue() {
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283 assert(Thread::current()->is_Java_thread(), "just checking");
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284
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285 // Load AbstractOwnableSynchronizer class before taking thread snapshots
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286 if (JDK_Version::is_gte_jdk16x_version()) {
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287 java_util_concurrent_locks_AbstractOwnableSynchronizer::initialize(JavaThread::current());
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288 }
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289
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290 if (_with_locked_synchronizers) {
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291 // Acquire Heap_lock to dump concurrent locks
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292 Heap_lock->lock();
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293 }
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294
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295 return true;
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296 }
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297
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298 void VM_ThreadDump::doit_epilogue() {
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299 if (_with_locked_synchronizers) {
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300 // Release Heap_lock
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301 Heap_lock->unlock();
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302 }
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303 }
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304
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305 void VM_ThreadDump::doit() {
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306 ResourceMark rm;
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307
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308 ConcurrentLocksDump concurrent_locks(true);
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309 if (_with_locked_synchronizers) {
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310 concurrent_locks.dump_at_safepoint();
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311 }
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312
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313 if (_num_threads == 0) {
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314 // Snapshot all live threads
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315 for (JavaThread* jt = Threads::first(); jt != NULL; jt = jt->next()) {
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316 if (jt->is_exiting() ||
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317 jt->is_hidden_from_external_view()) {
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318 // skip terminating threads and hidden threads
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319 continue;
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320 }
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321 ThreadConcurrentLocks* tcl = NULL;
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322 if (_with_locked_synchronizers) {
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323 tcl = concurrent_locks.thread_concurrent_locks(jt);
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324 }
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325 ThreadSnapshot* ts = snapshot_thread(jt, tcl);
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326 _result->add_thread_snapshot(ts);
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327 }
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328 } else {
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329 // Snapshot threads in the given _threads array
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330 // A dummy snapshot is created if a thread doesn't exist
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331 for (int i = 0; i < _num_threads; i++) {
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332 instanceHandle th = _threads->at(i);
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333 if (th() == NULL) {
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334 // skip if the thread doesn't exist
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diff changeset
335 // Add a dummy snapshot
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336 _result->add_thread_snapshot(new ThreadSnapshot());
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337 continue;
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338 }
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339
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340 // Dump thread stack only if the thread is alive and not exiting
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341 // and not VM internal thread.
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342 JavaThread* jt = java_lang_Thread::thread(th());
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diff changeset
343 if (jt == NULL || /* thread not alive */
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344 jt->is_exiting() ||
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345 jt->is_hidden_from_external_view()) {
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346 // add a NULL snapshot if skipped
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347 _result->add_thread_snapshot(new ThreadSnapshot());
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348 continue;
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349 }
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350 ThreadConcurrentLocks* tcl = NULL;
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diff changeset
351 if (_with_locked_synchronizers) {
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352 tcl = concurrent_locks.thread_concurrent_locks(jt);
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353 }
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354 ThreadSnapshot* ts = snapshot_thread(jt, tcl);
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355 _result->add_thread_snapshot(ts);
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356 }
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diff changeset
357 }
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diff changeset
358 }
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359
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360 ThreadSnapshot* VM_ThreadDump::snapshot_thread(JavaThread* java_thread, ThreadConcurrentLocks* tcl) {
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361 ThreadSnapshot* snapshot = new ThreadSnapshot(java_thread);
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362 snapshot->dump_stack_at_safepoint(_max_depth, _with_locked_monitors);
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363 snapshot->set_concurrent_locks(tcl);
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364 return snapshot;
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diff changeset
365 }
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366
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367 volatile bool VM_Exit::_vm_exited = false;
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368 Thread * VM_Exit::_shutdown_thread = NULL;
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369
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370 int VM_Exit::set_vm_exited() {
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371 Thread * thr_cur = ThreadLocalStorage::get_thread_slow();
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372
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373 assert(SafepointSynchronize::is_at_safepoint(), "must be at safepoint already");
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374
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375 int num_active = 0;
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376
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377 _shutdown_thread = thr_cur;
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378 _vm_exited = true; // global flag
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379 for(JavaThread *thr = Threads::first(); thr != NULL; thr = thr->next())
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diff changeset
380 if (thr!=thr_cur && thr->thread_state() == _thread_in_native) {
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381 ++num_active;
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382 thr->set_terminated(JavaThread::_vm_exited); // per-thread flag
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383 }
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384
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385 return num_active;
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diff changeset
386 }
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387
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diff changeset
388 int VM_Exit::wait_for_threads_in_native_to_block() {
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389 // VM exits at safepoint. This function must be called at the final safepoint
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parents:
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390 // to wait for threads in _thread_in_native state to be quiescent.
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diff changeset
391 assert(SafepointSynchronize::is_at_safepoint(), "must be at safepoint already");
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392
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393 Thread * thr_cur = ThreadLocalStorage::get_thread_slow();
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394 Monitor timer(Mutex::leaf, "VM_Exit timer", true);
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395
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diff changeset
396 // Compiler threads need longer wait because they can access VM data directly
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parents:
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397 // while in native. If they are active and some structures being used are
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parents:
diff changeset
398 // deleted by the shutdown sequence, they will crash. On the other hand, user
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399 // threads must go through native=>Java/VM transitions first to access VM
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400 // data, and they will be stopped during state transition. In theory, we
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parents:
diff changeset
401 // don't have to wait for user threads to be quiescent, but it's always
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parents:
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402 // better to terminate VM when current thread is the only active thread, so
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403 // wait for user threads too. Numbers are in 10 milliseconds.
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404 int max_wait_user_thread = 30; // at least 300 milliseconds
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405 int max_wait_compiler_thread = 1000; // at least 10 seconds
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406
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407 int max_wait = max_wait_compiler_thread;
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408
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diff changeset
409 int attempts = 0;
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410 while (true) {
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411 int num_active = 0;
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diff changeset
412 int num_active_compiler_thread = 0;
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diff changeset
413
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diff changeset
414 for(JavaThread *thr = Threads::first(); thr != NULL; thr = thr->next()) {
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parents:
diff changeset
415 if (thr!=thr_cur && thr->thread_state() == _thread_in_native) {
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416 num_active++;
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parents:
diff changeset
417 if (thr->is_Compiler_thread()) {
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parents:
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418 num_active_compiler_thread++;
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parents:
diff changeset
419 }
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parents:
diff changeset
420 }
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parents:
diff changeset
421 }
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parents:
diff changeset
422
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parents:
diff changeset
423 if (num_active == 0) {
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424 return 0;
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parents:
diff changeset
425 } else if (attempts > max_wait) {
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parents:
diff changeset
426 return num_active;
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parents:
diff changeset
427 } else if (num_active_compiler_thread == 0 && attempts > max_wait_user_thread) {
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parents:
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428 return num_active;
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parents:
diff changeset
429 }
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parents:
diff changeset
430
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diff changeset
431 attempts++;
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parents:
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432
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433 MutexLockerEx ml(&timer, Mutex::_no_safepoint_check_flag);
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parents:
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434 timer.wait(Mutex::_no_safepoint_check_flag, 10);
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parents:
diff changeset
435 }
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parents:
diff changeset
436 }
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parents:
diff changeset
437
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diff changeset
438 void VM_Exit::doit() {
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parents:
diff changeset
439 CompileBroker::set_should_block();
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parents:
diff changeset
440
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441 // Wait for a short period for threads in native to block. Any thread
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442 // still executing native code after the wait will be stopped at
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443 // native==>Java/VM barriers.
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444 // Among 16276 JCK tests, 94% of them come here without any threads still
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445 // running in native; the other 6% are quiescent within 250ms (Ultra 80).
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446 wait_for_threads_in_native_to_block();
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447
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448 set_vm_exited();
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449
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450 // cleanup globals resources before exiting. exit_globals() currently
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451 // cleans up outputStream resources and PerfMemory resources.
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452 exit_globals();
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453
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454 // Check for exit hook
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455 exit_hook_t exit_hook = Arguments::exit_hook();
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456 if (exit_hook != NULL) {
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457 // exit hook should exit.
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458 exit_hook(_exit_code);
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459 // ... but if it didn't, we must do it here
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460 vm_direct_exit(_exit_code);
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461 } else {
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462 vm_direct_exit(_exit_code);
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463 }
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464 }
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465
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466
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467 void VM_Exit::wait_if_vm_exited() {
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468 if (_vm_exited &&
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469 ThreadLocalStorage::get_thread_slow() != _shutdown_thread) {
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470 // _vm_exited is set at safepoint, and the Threads_lock is never released
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471 // we will block here until the process dies
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472 Threads_lock->lock_without_safepoint_check();
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473 ShouldNotReachHere();
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474 }
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475 }