Mercurial > hg > graal-compiler
annotate src/share/vm/oops/constantPool.cpp @ 17910:03214612e77e
8035936: SIGBUS in StubRoutines::aesencryptBlock, solaris-sparc
Summary: Fix the arbitrary alignment issue in SPARC AES crypto stub routines.
Reviewed-by: kvn, iveresov
Contributed-by: shrinivas.joshi@oracle.com
author | kvn |
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date | Wed, 30 Apr 2014 14:14:01 -0700 |
parents | 9428a0b94204 |
children | 78bbf4d43a14 |
rev | line source |
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0 | 1 /* |
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2 * Copyright (c) 1997, 2013, Oracle and/or its affiliates. All rights reserved. |
0 | 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
4 * | |
5 * This code is free software; you can redistribute it and/or modify it | |
6 * under the terms of the GNU General Public License version 2 only, as | |
7 * published by the Free Software Foundation. | |
8 * | |
9 * This code is distributed in the hope that it will be useful, but WITHOUT | |
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
12 * version 2 for more details (a copy is included in the LICENSE file that | |
13 * accompanied this code). | |
14 * | |
15 * You should have received a copy of the GNU General Public License version | |
16 * 2 along with this work; if not, write to the Free Software Foundation, | |
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. | |
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. |
0 | 22 * |
23 */ | |
24 | |
1972 | 25 #include "precompiled.hpp" |
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26 #include "classfile/classLoaderData.hpp" |
1972 | 27 #include "classfile/javaClasses.hpp" |
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28 #include "classfile/metadataOnStackMark.hpp" |
1972 | 29 #include "classfile/symbolTable.hpp" |
30 #include "classfile/systemDictionary.hpp" | |
31 #include "classfile/vmSymbols.hpp" | |
32 #include "interpreter/linkResolver.hpp" | |
7956 | 33 #include "memory/heapInspection.hpp" |
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34 #include "memory/metadataFactory.hpp" |
1972 | 35 #include "memory/oopFactory.hpp" |
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36 #include "oops/constantPool.hpp" |
1972 | 37 #include "oops/instanceKlass.hpp" |
38 #include "oops/objArrayKlass.hpp" | |
39 #include "runtime/fieldType.hpp" | |
40 #include "runtime/init.hpp" | |
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41 #include "runtime/javaCalls.hpp" |
1972 | 42 #include "runtime/signature.hpp" |
43 #include "runtime/vframe.hpp" | |
0 | 44 |
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45 ConstantPool* ConstantPool::allocate(ClassLoaderData* loader_data, int length, TRAPS) { |
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46 // Tags are RW but comment below applies to tags also. |
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47 Array<u1>* tags = MetadataFactory::new_writeable_array<u1>(loader_data, length, 0, CHECK_NULL); |
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48 |
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49 int size = ConstantPool::size(length); |
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50 |
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51 // CDS considerations: |
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52 // Allocate read-write but may be able to move to read-only at dumping time |
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53 // if all the klasses are resolved. The only other field that is writable is |
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54 // the resolved_references array, which is recreated at startup time. |
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55 // But that could be moved to InstanceKlass (although a pain to access from |
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56 // assembly code). Maybe it could be moved to the cpCache which is RW. |
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57 return new (loader_data, size, false, MetaspaceObj::ConstantPoolType, THREAD) ConstantPool(tags); |
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58 } |
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59 |
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60 ConstantPool::ConstantPool(Array<u1>* tags) { |
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61 set_length(tags->length()); |
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62 set_tags(NULL); |
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63 set_cache(NULL); |
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64 set_reference_map(NULL); |
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65 set_resolved_references(NULL); |
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66 set_operands(NULL); |
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67 set_pool_holder(NULL); |
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68 set_flags(0); |
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69 |
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70 // only set to non-zero if constant pool is merged by RedefineClasses |
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71 set_version(0); |
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72 set_lock(new Monitor(Monitor::nonleaf + 2, "A constant pool lock")); |
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73 |
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74 // initialize tag array |
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75 int length = tags->length(); |
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76 for (int index = 0; index < length; index++) { |
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77 tags->at_put(index, JVM_CONSTANT_Invalid); |
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78 } |
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79 set_tags(tags); |
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80 } |
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81 |
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82 void ConstantPool::deallocate_contents(ClassLoaderData* loader_data) { |
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83 MetadataFactory::free_metadata(loader_data, cache()); |
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84 set_cache(NULL); |
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85 MetadataFactory::free_array<u2>(loader_data, reference_map()); |
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86 set_reference_map(NULL); |
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87 |
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88 MetadataFactory::free_array<jushort>(loader_data, operands()); |
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89 set_operands(NULL); |
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90 |
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91 release_C_heap_structures(); |
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92 |
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93 // free tag array |
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94 MetadataFactory::free_array<u1>(loader_data, tags()); |
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95 set_tags(NULL); |
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96 } |
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97 |
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98 void ConstantPool::release_C_heap_structures() { |
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99 // walk constant pool and decrement symbol reference counts |
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100 unreference_symbols(); |
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101 |
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102 delete _lock; |
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103 set_lock(NULL); |
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104 } |
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105 |
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106 objArrayOop ConstantPool::resolved_references() const { |
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107 return (objArrayOop)JNIHandles::resolve(_resolved_references); |
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108 } |
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109 |
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110 // Create resolved_references array and mapping array for original cp indexes |
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111 // The ldc bytecode was rewritten to have the resolved reference array index so need a way |
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112 // to map it back for resolving and some unlikely miscellaneous uses. |
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113 // The objects created by invokedynamic are appended to this list. |
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114 void ConstantPool::initialize_resolved_references(ClassLoaderData* loader_data, |
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115 intStack reference_map, |
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116 int constant_pool_map_length, |
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117 TRAPS) { |
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118 // Initialized the resolved object cache. |
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119 int map_length = reference_map.length(); |
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120 if (map_length > 0) { |
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121 // Only need mapping back to constant pool entries. The map isn't used for |
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122 // invokedynamic resolved_reference entries. For invokedynamic entries, |
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123 // the constant pool cache index has the mapping back to both the constant |
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124 // pool and to the resolved reference index. |
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125 if (constant_pool_map_length > 0) { |
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126 Array<u2>* om = MetadataFactory::new_array<u2>(loader_data, constant_pool_map_length, CHECK); |
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127 |
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128 for (int i = 0; i < constant_pool_map_length; i++) { |
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129 int x = reference_map.at(i); |
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130 assert(x == (int)(jushort) x, "klass index is too big"); |
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131 om->at_put(i, (jushort)x); |
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132 } |
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133 set_reference_map(om); |
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134 } |
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135 |
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136 // Create Java array for holding resolved strings, methodHandles, |
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137 // methodTypes, invokedynamic and invokehandle appendix objects, etc. |
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138 objArrayOop stom = oopFactory::new_objArray(SystemDictionary::Object_klass(), map_length, CHECK); |
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139 Handle refs_handle (THREAD, (oop)stom); // must handleize. |
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140 set_resolved_references(loader_data->add_handle(refs_handle)); |
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141 } |
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142 } |
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143 |
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144 // CDS support. Create a new resolved_references array. |
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145 void ConstantPool::restore_unshareable_info(TRAPS) { |
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146 |
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147 // Only create the new resolved references array and lock if it hasn't been |
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148 // attempted before |
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149 if (resolved_references() != NULL) return; |
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150 |
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151 // restore the C++ vtable from the shared archive |
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152 restore_vtable(); |
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153 |
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154 if (SystemDictionary::Object_klass_loaded()) { |
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155 // Recreate the object array and add to ClassLoaderData. |
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156 int map_length = resolved_reference_length(); |
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157 if (map_length > 0) { |
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158 objArrayOop stom = oopFactory::new_objArray(SystemDictionary::Object_klass(), map_length, CHECK); |
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159 Handle refs_handle (THREAD, (oop)stom); // must handleize. |
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160 |
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161 ClassLoaderData* loader_data = pool_holder()->class_loader_data(); |
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162 set_resolved_references(loader_data->add_handle(refs_handle)); |
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163 } |
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164 |
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165 // Also need to recreate the mutex. Make sure this matches the constructor |
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166 set_lock(new Monitor(Monitor::nonleaf + 2, "A constant pool lock")); |
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167 } |
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168 } |
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169 |
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170 void ConstantPool::remove_unshareable_info() { |
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171 // Resolved references are not in the shared archive. |
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172 // Save the length for restoration. It is not necessarily the same length |
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173 // as reference_map.length() if invokedynamic is saved. |
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174 set_resolved_reference_length( |
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175 resolved_references() != NULL ? resolved_references()->length() : 0); |
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176 set_resolved_references(NULL); |
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177 set_lock(NULL); |
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178 } |
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179 |
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180 int ConstantPool::cp_to_object_index(int cp_index) { |
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181 // this is harder don't do this so much. |
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182 int i = reference_map()->find(cp_index); |
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183 // We might not find the index for jsr292 call. |
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184 return (i < 0) ? _no_index_sentinel : i; |
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185 } |
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186 |
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187 Klass* ConstantPool::klass_at_impl(constantPoolHandle this_oop, int which, TRAPS) { |
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188 // A resolved constantPool entry will contain a Klass*, otherwise a Symbol*. |
0 | 189 // It is not safe to rely on the tag bit's here, since we don't have a lock, and the entry and |
190 // tag is not updated atomicly. | |
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191 |
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192 CPSlot entry = this_oop->slot_at(which); |
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193 if (entry.is_resolved()) { |
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194 assert(entry.get_klass()->is_klass(), "must be"); |
0 | 195 // Already resolved - return entry. |
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196 return entry.get_klass(); |
0 | 197 } |
198 | |
199 // Acquire lock on constant oop while doing update. After we get the lock, we check if another object | |
200 // already has updated the object | |
201 assert(THREAD->is_Java_thread(), "must be a Java thread"); | |
202 bool do_resolve = false; | |
203 bool in_error = false; | |
204 | |
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205 // Create a handle for the mirror. This will preserve the resolved class |
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206 // until the loader_data is registered. |
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207 Handle mirror_handle; |
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208 |
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209 Symbol* name = NULL; |
0 | 210 Handle loader; |
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211 { MonitorLockerEx ml(this_oop->lock()); |
0 | 212 |
213 if (this_oop->tag_at(which).is_unresolved_klass()) { | |
214 if (this_oop->tag_at(which).is_unresolved_klass_in_error()) { | |
215 in_error = true; | |
216 } else { | |
217 do_resolve = true; | |
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218 name = this_oop->unresolved_klass_at(which); |
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219 loader = Handle(THREAD, this_oop->pool_holder()->class_loader()); |
0 | 220 } |
221 } | |
222 } // unlocking constantPool | |
223 | |
224 | |
225 // The original attempt to resolve this constant pool entry failed so find the | |
226 // original error and throw it again (JVMS 5.4.3). | |
227 if (in_error) { | |
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228 Symbol* error = SystemDictionary::find_resolution_error(this_oop, which); |
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229 guarantee(error != (Symbol*)NULL, "tag mismatch with resolution error table"); |
0 | 230 ResourceMark rm; |
231 // exception text will be the class name | |
232 const char* className = this_oop->unresolved_klass_at(which)->as_C_string(); | |
233 THROW_MSG_0(error, className); | |
234 } | |
235 | |
236 if (do_resolve) { | |
237 // this_oop must be unlocked during resolve_or_fail | |
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238 oop protection_domain = this_oop->pool_holder()->protection_domain(); |
0 | 239 Handle h_prot (THREAD, protection_domain); |
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240 Klass* k_oop = SystemDictionary::resolve_or_fail(name, loader, h_prot, true, THREAD); |
0 | 241 KlassHandle k; |
242 if (!HAS_PENDING_EXCEPTION) { | |
243 k = KlassHandle(THREAD, k_oop); | |
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244 // preserve the resolved klass. |
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245 mirror_handle = Handle(THREAD, k_oop->java_mirror()); |
0 | 246 // Do access check for klasses |
247 verify_constant_pool_resolve(this_oop, k, THREAD); | |
248 } | |
249 | |
250 // Failed to resolve class. We must record the errors so that subsequent attempts | |
251 // to resolve this constant pool entry fail with the same error (JVMS 5.4.3). | |
252 if (HAS_PENDING_EXCEPTION) { | |
253 ResourceMark rm; | |
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254 Symbol* error = PENDING_EXCEPTION->klass()->name(); |
0 | 255 |
256 bool throw_orig_error = false; | |
257 { | |
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258 MonitorLockerEx ml(this_oop->lock()); |
0 | 259 |
260 // some other thread has beaten us and has resolved the class. | |
261 if (this_oop->tag_at(which).is_klass()) { | |
262 CLEAR_PENDING_EXCEPTION; | |
263 entry = this_oop->resolved_klass_at(which); | |
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264 return entry.get_klass(); |
0 | 265 } |
266 | |
267 if (!PENDING_EXCEPTION-> | |
1142 | 268 is_a(SystemDictionary::LinkageError_klass())) { |
0 | 269 // Just throw the exception and don't prevent these classes from |
270 // being loaded due to virtual machine errors like StackOverflow | |
271 // and OutOfMemoryError, etc, or if the thread was hit by stop() | |
272 // Needs clarification to section 5.4.3 of the VM spec (see 6308271) | |
273 } | |
274 else if (!this_oop->tag_at(which).is_unresolved_klass_in_error()) { | |
275 SystemDictionary::add_resolution_error(this_oop, which, error); | |
276 this_oop->tag_at_put(which, JVM_CONSTANT_UnresolvedClassInError); | |
277 } else { | |
278 // some other thread has put the class in error state. | |
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279 error = SystemDictionary::find_resolution_error(this_oop, which); |
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280 assert(error != NULL, "checking"); |
0 | 281 throw_orig_error = true; |
282 } | |
283 } // unlocked | |
284 | |
285 if (throw_orig_error) { | |
286 CLEAR_PENDING_EXCEPTION; | |
287 ResourceMark rm; | |
288 const char* className = this_oop->unresolved_klass_at(which)->as_C_string(); | |
289 THROW_MSG_0(error, className); | |
290 } | |
291 | |
292 return 0; | |
293 } | |
294 | |
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295 if (TraceClassResolution && !k()->oop_is_array()) { |
0 | 296 // skip resolving the constant pool so that this code get's |
297 // called the next time some bytecodes refer to this class. | |
298 ResourceMark rm; | |
299 int line_number = -1; | |
300 const char * source_file = NULL; | |
301 if (JavaThread::current()->has_last_Java_frame()) { | |
302 // try to identify the method which called this function. | |
303 vframeStream vfst(JavaThread::current()); | |
304 if (!vfst.at_end()) { | |
305 line_number = vfst.method()->line_number_from_bci(vfst.bci()); | |
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306 Symbol* s = vfst.method()->method_holder()->source_file_name(); |
0 | 307 if (s != NULL) { |
308 source_file = s->as_C_string(); | |
309 } | |
310 } | |
311 } | |
312 if (k() != this_oop->pool_holder()) { | |
313 // only print something if the classes are different | |
314 if (source_file != NULL) { | |
315 tty->print("RESOLVE %s %s %s:%d\n", | |
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316 this_oop->pool_holder()->external_name(), |
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317 InstanceKlass::cast(k())->external_name(), source_file, line_number); |
0 | 318 } else { |
319 tty->print("RESOLVE %s %s\n", | |
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320 this_oop->pool_holder()->external_name(), |
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321 InstanceKlass::cast(k())->external_name()); |
0 | 322 } |
323 } | |
324 return k(); | |
325 } else { | |
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326 MonitorLockerEx ml(this_oop->lock()); |
0 | 327 // Only updated constant pool - if it is resolved. |
328 do_resolve = this_oop->tag_at(which).is_unresolved_klass(); | |
329 if (do_resolve) { | |
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330 ClassLoaderData* this_key = this_oop->pool_holder()->class_loader_data(); |
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331 this_key->record_dependency(k(), CHECK_NULL); // Can throw OOM |
0 | 332 this_oop->klass_at_put(which, k()); |
333 } | |
334 } | |
335 } | |
336 | |
337 entry = this_oop->resolved_klass_at(which); | |
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338 assert(entry.is_resolved() && entry.get_klass()->is_klass(), "must be resolved at this point"); |
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339 return entry.get_klass(); |
0 | 340 } |
341 | |
342 | |
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343 // Does not update ConstantPool* - to avoid any exception throwing. Used |
0 | 344 // by compiler and exception handling. Also used to avoid classloads for |
345 // instanceof operations. Returns NULL if the class has not been loaded or | |
346 // if the verification of constant pool failed | |
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347 Klass* ConstantPool::klass_at_if_loaded(constantPoolHandle this_oop, int which) { |
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348 CPSlot entry = this_oop->slot_at(which); |
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349 if (entry.is_resolved()) { |
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350 assert(entry.get_klass()->is_klass(), "must be"); |
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351 return entry.get_klass(); |
0 | 352 } else { |
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353 assert(entry.is_unresolved(), "must be either symbol or klass"); |
0 | 354 Thread *thread = Thread::current(); |
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355 Symbol* name = entry.get_symbol(); |
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356 oop loader = this_oop->pool_holder()->class_loader(); |
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357 oop protection_domain = this_oop->pool_holder()->protection_domain(); |
0 | 358 Handle h_prot (thread, protection_domain); |
359 Handle h_loader (thread, loader); | |
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360 Klass* k = SystemDictionary::find(name, h_loader, h_prot, thread); |
0 | 361 |
362 if (k != NULL) { | |
363 // Make sure that resolving is legal | |
364 EXCEPTION_MARK; | |
365 KlassHandle klass(THREAD, k); | |
366 // return NULL if verification fails | |
367 verify_constant_pool_resolve(this_oop, klass, THREAD); | |
368 if (HAS_PENDING_EXCEPTION) { | |
369 CLEAR_PENDING_EXCEPTION; | |
370 return NULL; | |
371 } | |
372 return klass(); | |
373 } else { | |
374 return k; | |
375 } | |
376 } | |
377 } | |
378 | |
379 | |
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380 Klass* ConstantPool::klass_ref_at_if_loaded(constantPoolHandle this_oop, int which) { |
0 | 381 return klass_at_if_loaded(this_oop, this_oop->klass_ref_index_at(which)); |
382 } | |
383 | |
384 | |
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385 Method* ConstantPool::method_at_if_loaded(constantPoolHandle cpool, |
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386 int which) { |
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387 if (cpool->cache() == NULL) return NULL; // nothing to load yet |
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388 int cache_index = decode_cpcache_index(which, true); |
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389 if (!(cache_index >= 0 && cache_index < cpool->cache()->length())) { |
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390 // FIXME: should be an assert |
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391 if (PrintMiscellaneous && (Verbose||WizardMode)) { |
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392 tty->print_cr("bad operand %d in:", which); cpool->print(); |
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393 } |
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394 return NULL; |
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395 } |
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396 ConstantPoolCacheEntry* e = cpool->cache()->entry_at(cache_index); |
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397 return e->method_if_resolved(cpool); |
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398 } |
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399 |
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400 |
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401 bool ConstantPool::has_appendix_at_if_loaded(constantPoolHandle cpool, int which) { |
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402 if (cpool->cache() == NULL) return false; // nothing to load yet |
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403 int cache_index = decode_cpcache_index(which, true); |
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404 ConstantPoolCacheEntry* e = cpool->cache()->entry_at(cache_index); |
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405 return e->has_appendix(); |
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406 } |
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407 |
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408 oop ConstantPool::appendix_at_if_loaded(constantPoolHandle cpool, int which) { |
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409 if (cpool->cache() == NULL) return NULL; // nothing to load yet |
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410 int cache_index = decode_cpcache_index(which, true); |
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411 ConstantPoolCacheEntry* e = cpool->cache()->entry_at(cache_index); |
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412 return e->appendix_if_resolved(cpool); |
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413 } |
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414 |
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415 |
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416 bool ConstantPool::has_method_type_at_if_loaded(constantPoolHandle cpool, int which) { |
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417 if (cpool->cache() == NULL) return false; // nothing to load yet |
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418 int cache_index = decode_cpcache_index(which, true); |
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419 ConstantPoolCacheEntry* e = cpool->cache()->entry_at(cache_index); |
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420 return e->has_method_type(); |
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421 } |
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422 |
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423 oop ConstantPool::method_type_at_if_loaded(constantPoolHandle cpool, int which) { |
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424 if (cpool->cache() == NULL) return NULL; // nothing to load yet |
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425 int cache_index = decode_cpcache_index(which, true); |
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426 ConstantPoolCacheEntry* e = cpool->cache()->entry_at(cache_index); |
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427 return e->method_type_if_resolved(cpool); |
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428 } |
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429 |
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430 |
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431 Symbol* ConstantPool::impl_name_ref_at(int which, bool uncached) { |
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432 int name_index = name_ref_index_at(impl_name_and_type_ref_index_at(which, uncached)); |
0 | 433 return symbol_at(name_index); |
434 } | |
435 | |
436 | |
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437 Symbol* ConstantPool::impl_signature_ref_at(int which, bool uncached) { |
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438 int signature_index = signature_ref_index_at(impl_name_and_type_ref_index_at(which, uncached)); |
0 | 439 return symbol_at(signature_index); |
440 } | |
441 | |
442 | |
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443 int ConstantPool::impl_name_and_type_ref_index_at(int which, bool uncached) { |
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444 int i = which; |
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445 if (!uncached && cache() != NULL) { |
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446 if (ConstantPool::is_invokedynamic_index(which)) { |
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447 // Invokedynamic index is index into resolved_references |
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448 int pool_index = invokedynamic_cp_cache_entry_at(which)->constant_pool_index(); |
2460 | 449 pool_index = invoke_dynamic_name_and_type_ref_index_at(pool_index); |
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450 assert(tag_at(pool_index).is_name_and_type(), ""); |
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451 return pool_index; |
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452 } |
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453 // change byte-ordering and go via cache |
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454 i = remap_instruction_operand_from_cache(which); |
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455 } else { |
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456 if (tag_at(which).is_invoke_dynamic()) { |
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457 int pool_index = invoke_dynamic_name_and_type_ref_index_at(which); |
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458 assert(tag_at(pool_index).is_name_and_type(), ""); |
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459 return pool_index; |
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460 } |
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461 } |
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462 assert(tag_at(i).is_field_or_method(), "Corrupted constant pool"); |
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463 assert(!tag_at(i).is_invoke_dynamic(), "Must be handled above"); |
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464 jint ref_index = *int_at_addr(i); |
0 | 465 return extract_high_short_from_int(ref_index); |
466 } | |
467 | |
468 | |
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469 int ConstantPool::impl_klass_ref_index_at(int which, bool uncached) { |
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470 guarantee(!ConstantPool::is_invokedynamic_index(which), |
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471 "an invokedynamic instruction does not have a klass"); |
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472 int i = which; |
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473 if (!uncached && cache() != NULL) { |
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474 // change byte-ordering and go via cache |
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475 i = remap_instruction_operand_from_cache(which); |
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476 } |
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477 assert(tag_at(i).is_field_or_method(), "Corrupted constant pool"); |
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478 jint ref_index = *int_at_addr(i); |
0 | 479 return extract_low_short_from_int(ref_index); |
480 } | |
481 | |
482 | |
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483 |
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484 int ConstantPool::remap_instruction_operand_from_cache(int operand) { |
1565 | 485 int cpc_index = operand; |
486 DEBUG_ONLY(cpc_index -= CPCACHE_INDEX_TAG); | |
487 assert((int)(u2)cpc_index == cpc_index, "clean u2"); | |
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488 int member_index = cache()->entry_at(cpc_index)->constant_pool_index(); |
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489 return member_index; |
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490 } |
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491 |
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492 |
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493 void ConstantPool::verify_constant_pool_resolve(constantPoolHandle this_oop, KlassHandle k, TRAPS) { |
0 | 494 if (k->oop_is_instance() || k->oop_is_objArray()) { |
495 instanceKlassHandle holder (THREAD, this_oop->pool_holder()); | |
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496 Klass* elem_oop = k->oop_is_instance() ? k() : ObjArrayKlass::cast(k())->bottom_klass(); |
0 | 497 KlassHandle element (THREAD, elem_oop); |
498 | |
499 // The element type could be a typeArray - we only need the access check if it is | |
500 // an reference to another class | |
501 if (element->oop_is_instance()) { | |
502 LinkResolver::check_klass_accessability(holder, element, CHECK); | |
503 } | |
504 } | |
505 } | |
506 | |
507 | |
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508 int ConstantPool::name_ref_index_at(int which_nt) { |
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509 jint ref_index = name_and_type_at(which_nt); |
0 | 510 return extract_low_short_from_int(ref_index); |
511 } | |
512 | |
513 | |
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514 int ConstantPool::signature_ref_index_at(int which_nt) { |
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515 jint ref_index = name_and_type_at(which_nt); |
0 | 516 return extract_high_short_from_int(ref_index); |
517 } | |
518 | |
519 | |
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520 Klass* ConstantPool::klass_ref_at(int which, TRAPS) { |
0 | 521 return klass_at(klass_ref_index_at(which), CHECK_NULL); |
522 } | |
523 | |
524 | |
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525 Symbol* ConstantPool::klass_name_at(int which) { |
0 | 526 assert(tag_at(which).is_unresolved_klass() || tag_at(which).is_klass(), |
527 "Corrupted constant pool"); | |
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528 // A resolved constantPool entry will contain a Klass*, otherwise a Symbol*. |
0 | 529 // It is not safe to rely on the tag bit's here, since we don't have a lock, and the entry and |
530 // tag is not updated atomicly. | |
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531 CPSlot entry = slot_at(which); |
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532 if (entry.is_resolved()) { |
0 | 533 // Already resolved - return entry's name. |
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534 assert(entry.get_klass()->is_klass(), "must be"); |
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535 return entry.get_klass()->name(); |
0 | 536 } else { |
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537 assert(entry.is_unresolved(), "must be either symbol or klass"); |
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538 return entry.get_symbol(); |
0 | 539 } |
540 } | |
541 | |
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542 Symbol* ConstantPool::klass_ref_at_noresolve(int which) { |
0 | 543 jint ref_index = klass_ref_index_at(which); |
544 return klass_at_noresolve(ref_index); | |
545 } | |
546 | |
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547 Symbol* ConstantPool::uncached_klass_ref_at_noresolve(int which) { |
1602 | 548 jint ref_index = uncached_klass_ref_index_at(which); |
549 return klass_at_noresolve(ref_index); | |
550 } | |
551 | |
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552 char* ConstantPool::string_at_noresolve(int which) { |
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553 Symbol* s = unresolved_string_at(which); |
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554 if (s == NULL) { |
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555 return (char*)"<pseudo-string>"; |
0 | 556 } else { |
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557 return unresolved_string_at(which)->as_C_string(); |
0 | 558 } |
559 } | |
560 | |
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561 BasicType ConstantPool::basic_type_for_signature_at(int which) { |
0 | 562 return FieldType::basic_type(symbol_at(which)); |
563 } | |
564 | |
565 | |
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566 void ConstantPool::resolve_string_constants_impl(constantPoolHandle this_oop, TRAPS) { |
0 | 567 for (int index = 1; index < this_oop->length(); index++) { // Index 0 is unused |
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568 if (this_oop->tag_at(index).is_string()) { |
0 | 569 this_oop->string_at(index, CHECK); |
570 } | |
571 } | |
572 } | |
573 | |
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574 // Resolve all the classes in the constant pool. If they are all resolved, |
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575 // the constant pool is read-only. Enhancement: allocate cp entries to |
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576 // another metaspace, and copy to read-only or read-write space if this |
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577 // bit is set. |
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578 bool ConstantPool::resolve_class_constants(TRAPS) { |
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579 constantPoolHandle cp(THREAD, this); |
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580 for (int index = 1; index < length(); index++) { // Index 0 is unused |
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581 if (tag_at(index).is_unresolved_klass() && |
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582 klass_at_if_loaded(cp, index) == NULL) { |
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583 return false; |
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584 } |
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585 } |
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586 // set_preresolution(); or some bit for future use |
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587 return true; |
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588 } |
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589 |
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590 // If resolution for MethodHandle or MethodType fails, save the exception |
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591 // in the resolution error table, so that the same exception is thrown again. |
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592 void ConstantPool::save_and_throw_exception(constantPoolHandle this_oop, int which, |
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593 int tag, TRAPS) { |
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594 ResourceMark rm; |
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595 Symbol* error = PENDING_EXCEPTION->klass()->name(); |
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596 MonitorLockerEx ml(this_oop->lock()); // lock cpool to change tag. |
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597 |
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598 int error_tag = (tag == JVM_CONSTANT_MethodHandle) ? |
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599 JVM_CONSTANT_MethodHandleInError : JVM_CONSTANT_MethodTypeInError; |
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600 |
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601 if (!PENDING_EXCEPTION-> |
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602 is_a(SystemDictionary::LinkageError_klass())) { |
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603 // Just throw the exception and don't prevent these classes from |
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604 // being loaded due to virtual machine errors like StackOverflow |
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605 // and OutOfMemoryError, etc, or if the thread was hit by stop() |
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606 // Needs clarification to section 5.4.3 of the VM spec (see 6308271) |
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607 |
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608 } else if (this_oop->tag_at(which).value() != error_tag) { |
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609 SystemDictionary::add_resolution_error(this_oop, which, error); |
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610 this_oop->tag_at_put(which, error_tag); |
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611 } else { |
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612 // some other thread has put the class in error state. |
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613 error = SystemDictionary::find_resolution_error(this_oop, which); |
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614 assert(error != NULL, "checking"); |
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615 CLEAR_PENDING_EXCEPTION; |
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616 THROW_MSG(error, ""); |
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617 } |
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618 } |
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619 |
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620 |
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621 // Called to resolve constants in the constant pool and return an oop. |
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622 // Some constant pool entries cache their resolved oop. This is also |
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623 // called to create oops from constants to use in arguments for invokedynamic |
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624 oop ConstantPool::resolve_constant_at_impl(constantPoolHandle this_oop, int index, int cache_index, TRAPS) { |
1602 | 625 oop result_oop = NULL; |
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626 Handle throw_exception; |
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627 |
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628 if (cache_index == _possible_index_sentinel) { |
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629 // It is possible that this constant is one which is cached in the objects. |
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630 // We'll do a linear search. This should be OK because this usage is rare. |
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631 assert(index > 0, "valid index"); |
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632 cache_index = this_oop->cp_to_object_index(index); |
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633 } |
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634 assert(cache_index == _no_index_sentinel || cache_index >= 0, ""); |
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635 assert(index == _no_index_sentinel || index >= 0, ""); |
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636 |
1602 | 637 if (cache_index >= 0) { |
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638 result_oop = this_oop->resolved_references()->obj_at(cache_index); |
1602 | 639 if (result_oop != NULL) { |
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640 return result_oop; |
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641 // That was easy... |
1602 | 642 } |
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643 index = this_oop->object_to_cp_index(cache_index); |
1602 | 644 } |
645 | |
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646 jvalue prim_value; // temp used only in a few cases below |
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647 |
1602 | 648 int tag_value = this_oop->tag_at(index).value(); |
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649 |
1602 | 650 switch (tag_value) { |
651 | |
652 case JVM_CONSTANT_UnresolvedClass: | |
653 case JVM_CONSTANT_UnresolvedClassInError: | |
654 case JVM_CONSTANT_Class: | |
655 { | |
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656 assert(cache_index == _no_index_sentinel, "should not have been set"); |
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657 Klass* resolved = klass_at_impl(this_oop, index, CHECK_NULL); |
1602 | 658 // ldc wants the java mirror. |
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659 result_oop = resolved->java_mirror(); |
1602 | 660 break; |
661 } | |
662 | |
663 case JVM_CONSTANT_String: | |
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664 assert(cache_index != _no_index_sentinel, "should have been set"); |
1602 | 665 if (this_oop->is_pseudo_string_at(index)) { |
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666 result_oop = this_oop->pseudo_string_at(index, cache_index); |
1602 | 667 break; |
668 } | |
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669 result_oop = string_at_impl(this_oop, index, cache_index, CHECK_NULL); |
1602 | 670 break; |
671 | |
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672 case JVM_CONSTANT_MethodHandleInError: |
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673 case JVM_CONSTANT_MethodTypeInError: |
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674 { |
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675 Symbol* error = SystemDictionary::find_resolution_error(this_oop, index); |
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676 guarantee(error != (Symbol*)NULL, "tag mismatch with resolution error table"); |
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677 ResourceMark rm; |
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678 THROW_MSG_0(error, ""); |
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679 break; |
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680 } |
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681 |
1602 | 682 case JVM_CONSTANT_MethodHandle: |
683 { | |
684 int ref_kind = this_oop->method_handle_ref_kind_at(index); | |
685 int callee_index = this_oop->method_handle_klass_index_at(index); | |
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686 Symbol* name = this_oop->method_handle_name_ref_at(index); |
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687 Symbol* signature = this_oop->method_handle_signature_ref_at(index); |
1602 | 688 if (PrintMiscellaneous) |
689 tty->print_cr("resolve JVM_CONSTANT_MethodHandle:%d [%d/%d/%d] %s.%s", | |
690 ref_kind, index, this_oop->method_handle_index_at(index), | |
691 callee_index, name->as_C_string(), signature->as_C_string()); | |
692 KlassHandle callee; | |
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693 { Klass* k = klass_at_impl(this_oop, callee_index, CHECK_NULL); |
1602 | 694 callee = KlassHandle(THREAD, k); |
695 } | |
696 KlassHandle klass(THREAD, this_oop->pool_holder()); | |
697 Handle value = SystemDictionary::link_method_handle_constant(klass, ref_kind, | |
698 callee, name, signature, | |
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699 THREAD); |
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700 result_oop = value(); |
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701 if (HAS_PENDING_EXCEPTION) { |
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702 save_and_throw_exception(this_oop, index, tag_value, CHECK_NULL); |
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703 } |
1602 | 704 break; |
705 } | |
706 | |
707 case JVM_CONSTANT_MethodType: | |
708 { | |
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709 Symbol* signature = this_oop->method_type_signature_at(index); |
1602 | 710 if (PrintMiscellaneous) |
711 tty->print_cr("resolve JVM_CONSTANT_MethodType [%d/%d] %s", | |
712 index, this_oop->method_type_index_at(index), | |
713 signature->as_C_string()); | |
714 KlassHandle klass(THREAD, this_oop->pool_holder()); | |
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715 Handle value = SystemDictionary::find_method_handle_type(signature, klass, THREAD); |
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716 result_oop = value(); |
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717 if (HAS_PENDING_EXCEPTION) { |
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718 save_and_throw_exception(this_oop, index, tag_value, CHECK_NULL); |
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719 } |
1602 | 720 break; |
721 } | |
722 | |
723 case JVM_CONSTANT_Integer: | |
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724 assert(cache_index == _no_index_sentinel, "should not have been set"); |
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725 prim_value.i = this_oop->int_at(index); |
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726 result_oop = java_lang_boxing_object::create(T_INT, &prim_value, CHECK_NULL); |
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727 break; |
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728 |
1602 | 729 case JVM_CONSTANT_Float: |
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730 assert(cache_index == _no_index_sentinel, "should not have been set"); |
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731 prim_value.f = this_oop->float_at(index); |
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732 result_oop = java_lang_boxing_object::create(T_FLOAT, &prim_value, CHECK_NULL); |
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733 break; |
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734 |
1602 | 735 case JVM_CONSTANT_Long: |
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736 assert(cache_index == _no_index_sentinel, "should not have been set"); |
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737 prim_value.j = this_oop->long_at(index); |
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738 result_oop = java_lang_boxing_object::create(T_LONG, &prim_value, CHECK_NULL); |
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739 break; |
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740 |
1602 | 741 case JVM_CONSTANT_Double: |
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742 assert(cache_index == _no_index_sentinel, "should not have been set"); |
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743 prim_value.d = this_oop->double_at(index); |
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744 result_oop = java_lang_boxing_object::create(T_DOUBLE, &prim_value, CHECK_NULL); |
1602 | 745 break; |
746 | |
747 default: | |
748 DEBUG_ONLY( tty->print_cr("*** %p: tag at CP[%d/%d] = %d", | |
749 this_oop(), index, cache_index, tag_value) ); | |
750 assert(false, "unexpected constant tag"); | |
751 break; | |
752 } | |
753 | |
754 if (cache_index >= 0) { | |
755 // Cache the oop here also. | |
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756 Handle result_handle(THREAD, result_oop); |
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757 MonitorLockerEx ml(this_oop->lock()); // don't know if we really need this |
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758 oop result = this_oop->resolved_references()->obj_at(cache_index); |
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759 // Benign race condition: resolved_references may already be filled in while we were trying to lock. |
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760 // The important thing here is that all threads pick up the same result. |
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761 // It doesn't matter which racing thread wins, as long as only one |
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762 // result is used by all threads, and all future queries. |
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763 // That result may be either a resolved constant or a failure exception. |
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764 if (result == NULL) { |
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765 this_oop->resolved_references()->obj_at_put(cache_index, result_handle()); |
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766 return result_handle(); |
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767 } else { |
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768 // Return the winning thread's result. This can be different than |
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769 // result_handle() for MethodHandles. |
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770 return result; |
1602 | 771 } |
772 } else { | |
773 return result_oop; | |
774 } | |
775 } | |
776 | |
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777 oop ConstantPool::uncached_string_at(int which, TRAPS) { |
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778 Symbol* sym = unresolved_string_at(which); |
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779 oop str = StringTable::intern(sym, CHECK_(NULL)); |
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780 assert(java_lang_String::is_instance(str), "must be string"); |
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781 return str; |
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782 } |
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783 |
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784 |
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785 oop ConstantPool::resolve_bootstrap_specifier_at_impl(constantPoolHandle this_oop, int index, TRAPS) { |
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786 assert(this_oop->tag_at(index).is_invoke_dynamic(), "Corrupted constant pool"); |
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787 |
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788 Handle bsm; |
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789 int argc; |
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790 { |
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791 // JVM_CONSTANT_InvokeDynamic is an ordered pair of [bootm, name&type], plus optional arguments |
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792 // The bootm, being a JVM_CONSTANT_MethodHandle, has its own cache entry. |
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793 // It is accompanied by the optional arguments. |
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794 int bsm_index = this_oop->invoke_dynamic_bootstrap_method_ref_index_at(index); |
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795 oop bsm_oop = this_oop->resolve_possibly_cached_constant_at(bsm_index, CHECK_NULL); |
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796 if (!java_lang_invoke_MethodHandle::is_instance(bsm_oop)) { |
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797 THROW_MSG_NULL(vmSymbols::java_lang_LinkageError(), "BSM not an MethodHandle"); |
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798 } |
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799 |
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800 // Extract the optional static arguments. |
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801 argc = this_oop->invoke_dynamic_argument_count_at(index); |
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802 if (argc == 0) return bsm_oop; |
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803 |
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804 bsm = Handle(THREAD, bsm_oop); |
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805 } |
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806 |
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807 objArrayHandle info; |
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808 { |
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809 objArrayOop info_oop = oopFactory::new_objArray(SystemDictionary::Object_klass(), 1+argc, CHECK_NULL); |
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810 info = objArrayHandle(THREAD, info_oop); |
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811 } |
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812 |
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813 info->obj_at_put(0, bsm()); |
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814 for (int i = 0; i < argc; i++) { |
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815 int arg_index = this_oop->invoke_dynamic_argument_index_at(index, i); |
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816 oop arg_oop = this_oop->resolve_possibly_cached_constant_at(arg_index, CHECK_NULL); |
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817 info->obj_at_put(1+i, arg_oop); |
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818 } |
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819 |
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820 return info(); |
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821 } |
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822 |
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823 oop ConstantPool::string_at_impl(constantPoolHandle this_oop, int which, int obj_index, TRAPS) { |
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824 // If the string has already been interned, this entry will be non-null |
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825 oop str = this_oop->resolved_references()->obj_at(obj_index); |
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826 if (str != NULL) return str; |
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827 Symbol* sym = this_oop->unresolved_string_at(which); |
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828 str = StringTable::intern(sym, CHECK_(NULL)); |
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829 this_oop->string_at_put(which, obj_index, str); |
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830 assert(java_lang_String::is_instance(str), "must be string"); |
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831 return str; |
0 | 832 } |
833 | |
834 | |
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835 bool ConstantPool::klass_name_at_matches(instanceKlassHandle k, |
0 | 836 int which) { |
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837 // Names are interned, so we can compare Symbol*s directly |
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838 Symbol* cp_name = klass_name_at(which); |
0 | 839 return (cp_name == k->name()); |
840 } | |
841 | |
842 | |
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843 // Iterate over symbols and decrement ones which are Symbol*s. |
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844 // This is done during GC so do not need to lock constantPool unless we |
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845 // have per-thread safepoints. |
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846 // Only decrement the UTF8 symbols. Unresolved classes and strings point to |
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847 // these symbols but didn't increment the reference count. |
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848 void ConstantPool::unreference_symbols() { |
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849 for (int index = 1; index < length(); index++) { // Index 0 is unused |
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850 constantTag tag = tag_at(index); |
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851 if (tag.is_symbol()) { |
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852 symbol_at(index)->decrement_refcount(); |
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853 } |
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854 } |
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855 } |
0 | 856 |
857 | |
858 // Compare this constant pool's entry at index1 to the constant pool | |
859 // cp2's entry at index2. | |
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860 bool ConstantPool::compare_entry_to(int index1, constantPoolHandle cp2, |
0 | 861 int index2, TRAPS) { |
862 | |
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863 // The error tags are equivalent to non-error tags when comparing |
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864 jbyte t1 = tag_at(index1).non_error_value(); |
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865 jbyte t2 = cp2->tag_at(index2).non_error_value(); |
0 | 866 |
867 if (t1 != t2) { | |
868 // Not the same entry type so there is nothing else to check. Note | |
869 // that this style of checking will consider resolved/unresolved | |
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870 // class pairs as different. |
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871 // From the ConstantPool* API point of view, this is correct |
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872 // behavior. See VM_RedefineClasses::merge_constant_pools() to see how this |
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873 // plays out in the context of ConstantPool* merging. |
0 | 874 return false; |
875 } | |
876 | |
877 switch (t1) { | |
878 case JVM_CONSTANT_Class: | |
879 { | |
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880 Klass* k1 = klass_at(index1, CHECK_false); |
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881 Klass* k2 = cp2->klass_at(index2, CHECK_false); |
0 | 882 if (k1 == k2) { |
883 return true; | |
884 } | |
885 } break; | |
886 | |
887 case JVM_CONSTANT_ClassIndex: | |
888 { | |
889 int recur1 = klass_index_at(index1); | |
890 int recur2 = cp2->klass_index_at(index2); | |
891 bool match = compare_entry_to(recur1, cp2, recur2, CHECK_false); | |
892 if (match) { | |
893 return true; | |
894 } | |
895 } break; | |
896 | |
897 case JVM_CONSTANT_Double: | |
898 { | |
899 jdouble d1 = double_at(index1); | |
900 jdouble d2 = cp2->double_at(index2); | |
901 if (d1 == d2) { | |
902 return true; | |
903 } | |
904 } break; | |
905 | |
906 case JVM_CONSTANT_Fieldref: | |
907 case JVM_CONSTANT_InterfaceMethodref: | |
908 case JVM_CONSTANT_Methodref: | |
909 { | |
910 int recur1 = uncached_klass_ref_index_at(index1); | |
911 int recur2 = cp2->uncached_klass_ref_index_at(index2); | |
912 bool match = compare_entry_to(recur1, cp2, recur2, CHECK_false); | |
913 if (match) { | |
914 recur1 = uncached_name_and_type_ref_index_at(index1); | |
915 recur2 = cp2->uncached_name_and_type_ref_index_at(index2); | |
916 match = compare_entry_to(recur1, cp2, recur2, CHECK_false); | |
917 if (match) { | |
918 return true; | |
919 } | |
920 } | |
921 } break; | |
922 | |
923 case JVM_CONSTANT_Float: | |
924 { | |
925 jfloat f1 = float_at(index1); | |
926 jfloat f2 = cp2->float_at(index2); | |
927 if (f1 == f2) { | |
928 return true; | |
929 } | |
930 } break; | |
931 | |
932 case JVM_CONSTANT_Integer: | |
933 { | |
934 jint i1 = int_at(index1); | |
935 jint i2 = cp2->int_at(index2); | |
936 if (i1 == i2) { | |
937 return true; | |
938 } | |
939 } break; | |
940 | |
941 case JVM_CONSTANT_Long: | |
942 { | |
943 jlong l1 = long_at(index1); | |
944 jlong l2 = cp2->long_at(index2); | |
945 if (l1 == l2) { | |
946 return true; | |
947 } | |
948 } break; | |
949 | |
950 case JVM_CONSTANT_NameAndType: | |
951 { | |
952 int recur1 = name_ref_index_at(index1); | |
953 int recur2 = cp2->name_ref_index_at(index2); | |
954 bool match = compare_entry_to(recur1, cp2, recur2, CHECK_false); | |
955 if (match) { | |
956 recur1 = signature_ref_index_at(index1); | |
957 recur2 = cp2->signature_ref_index_at(index2); | |
958 match = compare_entry_to(recur1, cp2, recur2, CHECK_false); | |
959 if (match) { | |
960 return true; | |
961 } | |
962 } | |
963 } break; | |
964 | |
965 case JVM_CONSTANT_StringIndex: | |
966 { | |
967 int recur1 = string_index_at(index1); | |
968 int recur2 = cp2->string_index_at(index2); | |
969 bool match = compare_entry_to(recur1, cp2, recur2, CHECK_false); | |
970 if (match) { | |
971 return true; | |
972 } | |
973 } break; | |
974 | |
975 case JVM_CONSTANT_UnresolvedClass: | |
976 { | |
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977 Symbol* k1 = unresolved_klass_at(index1); |
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978 Symbol* k2 = cp2->unresolved_klass_at(index2); |
0 | 979 if (k1 == k2) { |
980 return true; | |
981 } | |
982 } break; | |
983 | |
1602 | 984 case JVM_CONSTANT_MethodType: |
985 { | |
12845
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986 int k1 = method_type_index_at_error_ok(index1); |
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987 int k2 = cp2->method_type_index_at_error_ok(index2); |
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988 bool match = compare_entry_to(k1, cp2, k2, CHECK_false); |
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989 if (match) { |
1602 | 990 return true; |
991 } | |
992 } break; | |
993 | |
994 case JVM_CONSTANT_MethodHandle: | |
995 { | |
12845
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996 int k1 = method_handle_ref_kind_at_error_ok(index1); |
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997 int k2 = cp2->method_handle_ref_kind_at_error_ok(index2); |
1602 | 998 if (k1 == k2) { |
12845
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999 int i1 = method_handle_index_at_error_ok(index1); |
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1000 int i2 = cp2->method_handle_index_at_error_ok(index2); |
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1001 bool match = compare_entry_to(i1, cp2, i2, CHECK_false); |
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1002 if (match) { |
1602 | 1003 return true; |
1004 } | |
1005 } | |
1006 } break; | |
1007 | |
1660
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1008 case JVM_CONSTANT_InvokeDynamic: |
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1009 { |
10151
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1010 int k1 = invoke_dynamic_name_and_type_ref_index_at(index1); |
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1011 int k2 = cp2->invoke_dynamic_name_and_type_ref_index_at(index2); |
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1012 int i1 = invoke_dynamic_bootstrap_specifier_index(index1); |
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1013 int i2 = cp2->invoke_dynamic_bootstrap_specifier_index(index2); |
10350 | 1014 // separate statements and variables because CHECK_false is used |
1015 bool match_entry = compare_entry_to(k1, cp2, k2, CHECK_false); | |
1016 bool match_operand = compare_operand_to(i1, cp2, i2, CHECK_false); | |
1017 return (match_entry && match_operand); | |
1660
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1018 } break; |
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1019 |
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1020 case JVM_CONSTANT_String: |
0 | 1021 { |
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1022 Symbol* s1 = unresolved_string_at(index1); |
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1023 Symbol* s2 = cp2->unresolved_string_at(index2); |
0 | 1024 if (s1 == s2) { |
1025 return true; | |
1026 } | |
1027 } break; | |
1028 | |
1029 case JVM_CONSTANT_Utf8: | |
1030 { | |
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1031 Symbol* s1 = symbol_at(index1); |
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1032 Symbol* s2 = cp2->symbol_at(index2); |
0 | 1033 if (s1 == s2) { |
1034 return true; | |
1035 } | |
1036 } break; | |
1037 | |
1038 // Invalid is used as the tag for the second constant pool entry | |
1039 // occupied by JVM_CONSTANT_Double or JVM_CONSTANT_Long. It should | |
1040 // not be seen by itself. | |
1041 case JVM_CONSTANT_Invalid: // fall through | |
1042 | |
1043 default: | |
1044 ShouldNotReachHere(); | |
1045 break; | |
1046 } | |
1047 | |
1048 return false; | |
1049 } // end compare_entry_to() | |
1050 | |
1051 | |
10151
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1052 // Resize the operands array with delta_len and delta_size. |
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1053 // Used in RedefineClasses for CP merge. |
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1054 void ConstantPool::resize_operands(int delta_len, int delta_size, TRAPS) { |
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1055 int old_len = operand_array_length(operands()); |
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1056 int new_len = old_len + delta_len; |
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1057 int min_len = (delta_len > 0) ? old_len : new_len; |
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1058 |
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1059 int old_size = operands()->length(); |
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1060 int new_size = old_size + delta_size; |
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1061 int min_size = (delta_size > 0) ? old_size : new_size; |
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1062 |
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1063 ClassLoaderData* loader_data = pool_holder()->class_loader_data(); |
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1064 Array<u2>* new_ops = MetadataFactory::new_array<u2>(loader_data, new_size, CHECK); |
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1065 |
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1066 // Set index in the resized array for existing elements only |
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1067 for (int idx = 0; idx < min_len; idx++) { |
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1068 int offset = operand_offset_at(idx); // offset in original array |
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1069 operand_offset_at_put(new_ops, idx, offset + 2*delta_len); // offset in resized array |
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1070 } |
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1071 // Copy the bootstrap specifiers only |
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1072 Copy::conjoint_memory_atomic(operands()->adr_at(2*old_len), |
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1073 new_ops->adr_at(2*new_len), |
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1074 (min_size - 2*min_len) * sizeof(u2)); |
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1075 // Explicitly deallocate old operands array. |
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1076 // Note, it is not needed for 7u backport. |
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1077 if ( operands() != NULL) { // the safety check |
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1078 MetadataFactory::free_array<u2>(loader_data, operands()); |
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1079 } |
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1080 set_operands(new_ops); |
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1081 } // end resize_operands() |
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1082 |
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1083 |
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1084 // Extend the operands array with the length and size of the ext_cp operands. |
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1085 // Used in RedefineClasses for CP merge. |
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1086 void ConstantPool::extend_operands(constantPoolHandle ext_cp, TRAPS) { |
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1087 int delta_len = operand_array_length(ext_cp->operands()); |
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1088 if (delta_len == 0) { |
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1089 return; // nothing to do |
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1090 } |
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1091 int delta_size = ext_cp->operands()->length(); |
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1092 |
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1093 assert(delta_len > 0 && delta_size > 0, "extended operands array must be bigger"); |
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1094 |
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1095 if (operand_array_length(operands()) == 0) { |
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1096 ClassLoaderData* loader_data = pool_holder()->class_loader_data(); |
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1097 Array<u2>* new_ops = MetadataFactory::new_array<u2>(loader_data, delta_size, CHECK); |
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1098 // The first element index defines the offset of second part |
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1099 operand_offset_at_put(new_ops, 0, 2*delta_len); // offset in new array |
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1100 set_operands(new_ops); |
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1101 } else { |
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1102 resize_operands(delta_len, delta_size, CHECK); |
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1103 } |
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1104 |
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1105 } // end extend_operands() |
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1106 |
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1107 |
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1108 // Shrink the operands array to a smaller array with new_len length. |
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1109 // Used in RedefineClasses for CP merge. |
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1110 void ConstantPool::shrink_operands(int new_len, TRAPS) { |
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1111 int old_len = operand_array_length(operands()); |
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1112 if (new_len == old_len) { |
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1113 return; // nothing to do |
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1114 } |
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1115 assert(new_len < old_len, "shrunken operands array must be smaller"); |
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1116 |
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1117 int free_base = operand_next_offset_at(new_len - 1); |
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1118 int delta_len = new_len - old_len; |
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1119 int delta_size = 2*delta_len + free_base - operands()->length(); |
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1120 |
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1121 resize_operands(delta_len, delta_size, CHECK); |
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1122 |
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1123 } // end shrink_operands() |
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1124 |
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1125 |
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1126 void ConstantPool::copy_operands(constantPoolHandle from_cp, |
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1127 constantPoolHandle to_cp, |
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1128 TRAPS) { |
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1129 |
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1130 int from_oplen = operand_array_length(from_cp->operands()); |
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1131 int old_oplen = operand_array_length(to_cp->operands()); |
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1132 if (from_oplen != 0) { |
6934 | 1133 ClassLoaderData* loader_data = to_cp->pool_holder()->class_loader_data(); |
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1134 // append my operands to the target's operands array |
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1135 if (old_oplen == 0) { |
6934 | 1136 // Can't just reuse from_cp's operand list because of deallocation issues |
1137 int len = from_cp->operands()->length(); | |
1138 Array<u2>* new_ops = MetadataFactory::new_array<u2>(loader_data, len, CHECK); | |
1139 Copy::conjoint_memory_atomic( | |
1140 from_cp->operands()->adr_at(0), new_ops->adr_at(0), len * sizeof(u2)); | |
1141 to_cp->set_operands(new_ops); | |
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1142 } else { |
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1143 int old_len = to_cp->operands()->length(); |
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1144 int from_len = from_cp->operands()->length(); |
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1145 int old_off = old_oplen * sizeof(u2); |
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1146 int from_off = from_oplen * sizeof(u2); |
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1147 // Use the metaspace for the destination constant pool |
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1148 Array<u2>* new_operands = MetadataFactory::new_array<u2>(loader_data, old_len + from_len, CHECK); |
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1149 int fillp = 0, len = 0; |
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1150 // first part of dest |
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1151 Copy::conjoint_memory_atomic(to_cp->operands()->adr_at(0), |
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1152 new_operands->adr_at(fillp), |
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1153 (len = old_off) * sizeof(u2)); |
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1154 fillp += len; |
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1155 // first part of src |
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1156 Copy::conjoint_memory_atomic(from_cp->operands()->adr_at(0), |
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1157 new_operands->adr_at(fillp), |
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1158 (len = from_off) * sizeof(u2)); |
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1159 fillp += len; |
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1160 // second part of dest |
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1161 Copy::conjoint_memory_atomic(to_cp->operands()->adr_at(old_off), |
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1162 new_operands->adr_at(fillp), |
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1163 (len = old_len - old_off) * sizeof(u2)); |
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1164 fillp += len; |
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1165 // second part of src |
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1166 Copy::conjoint_memory_atomic(from_cp->operands()->adr_at(from_off), |
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1167 new_operands->adr_at(fillp), |
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1168 (len = from_len - from_off) * sizeof(u2)); |
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1169 fillp += len; |
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1170 assert(fillp == new_operands->length(), ""); |
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1171 |
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1172 // Adjust indexes in the first part of the copied operands array. |
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1173 for (int j = 0; j < from_oplen; j++) { |
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1174 int offset = operand_offset_at(new_operands, old_oplen + j); |
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1175 assert(offset == operand_offset_at(from_cp->operands(), j), "correct copy"); |
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1176 offset += old_len; // every new tuple is preceded by old_len extra u2's |
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1177 operand_offset_at_put(new_operands, old_oplen + j, offset); |
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1178 } |
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1179 |
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1180 // replace target operands array with combined array |
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1181 to_cp->set_operands(new_operands); |
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1182 } |
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1183 } |
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1184 } // end copy_operands() |
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1185 |
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1186 |
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1187 // Copy this constant pool's entries at start_i to end_i (inclusive) |
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1188 // to the constant pool to_cp's entries starting at to_i. A total of |
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1189 // (end_i - start_i) + 1 entries are copied. |
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1190 void ConstantPool::copy_cp_to_impl(constantPoolHandle from_cp, int start_i, int end_i, |
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1191 constantPoolHandle to_cp, int to_i, TRAPS) { |
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1192 |
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1193 |
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1194 int dest_i = to_i; // leave original alone for debug purposes |
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1195 |
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1196 for (int src_i = start_i; src_i <= end_i; /* see loop bottom */ ) { |
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1197 copy_entry_to(from_cp, src_i, to_cp, dest_i, CHECK); |
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1198 |
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1199 switch (from_cp->tag_at(src_i).value()) { |
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1200 case JVM_CONSTANT_Double: |
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1201 case JVM_CONSTANT_Long: |
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1202 // double and long take two constant pool entries |
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1203 src_i += 2; |
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1204 dest_i += 2; |
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1205 break; |
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1206 |
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1207 default: |
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1208 // all others take one constant pool entry |
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1209 src_i++; |
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1210 dest_i++; |
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1211 break; |
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1212 } |
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1213 } |
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1214 copy_operands(from_cp, to_cp, CHECK); |
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1215 |
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1216 } // end copy_cp_to_impl() |
0 | 1217 |
1218 | |
1219 // Copy this constant pool's entry at from_i to the constant pool | |
1220 // to_cp's entry at to_i. | |
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1221 void ConstantPool::copy_entry_to(constantPoolHandle from_cp, int from_i, |
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1222 constantPoolHandle to_cp, int to_i, |
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1223 TRAPS) { |
0 | 1224 |
2011
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|
1225 int tag = from_cp->tag_at(from_i).value(); |
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diff
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|
1226 switch (tag) { |
0 | 1227 case JVM_CONSTANT_Class: |
1228 { | |
6725
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1229 Klass* k = from_cp->klass_at(from_i, CHECK); |
0 | 1230 to_cp->klass_at_put(to_i, k); |
1231 } break; | |
1232 | |
1233 case JVM_CONSTANT_ClassIndex: | |
1234 { | |
2011
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diff
changeset
|
1235 jint ki = from_cp->klass_index_at(from_i); |
0 | 1236 to_cp->klass_index_at_put(to_i, ki); |
1237 } break; | |
1238 | |
1239 case JVM_CONSTANT_Double: | |
1240 { | |
2011
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diff
changeset
|
1241 jdouble d = from_cp->double_at(from_i); |
0 | 1242 to_cp->double_at_put(to_i, d); |
1243 // double takes two constant pool entries so init second entry's tag | |
1244 to_cp->tag_at_put(to_i + 1, JVM_CONSTANT_Invalid); | |
1245 } break; | |
1246 | |
1247 case JVM_CONSTANT_Fieldref: | |
1248 { | |
2011
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|
1249 int class_index = from_cp->uncached_klass_ref_index_at(from_i); |
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changeset
|
1250 int name_and_type_index = from_cp->uncached_name_and_type_ref_index_at(from_i); |
0 | 1251 to_cp->field_at_put(to_i, class_index, name_and_type_index); |
1252 } break; | |
1253 | |
1254 case JVM_CONSTANT_Float: | |
1255 { | |
2011
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diff
changeset
|
1256 jfloat f = from_cp->float_at(from_i); |
0 | 1257 to_cp->float_at_put(to_i, f); |
1258 } break; | |
1259 | |
1260 case JVM_CONSTANT_Integer: | |
1261 { | |
2011
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diff
changeset
|
1262 jint i = from_cp->int_at(from_i); |
0 | 1263 to_cp->int_at_put(to_i, i); |
1264 } break; | |
1265 | |
1266 case JVM_CONSTANT_InterfaceMethodref: | |
1267 { | |
2011
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|
1268 int class_index = from_cp->uncached_klass_ref_index_at(from_i); |
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|
1269 int name_and_type_index = from_cp->uncached_name_and_type_ref_index_at(from_i); |
0 | 1270 to_cp->interface_method_at_put(to_i, class_index, name_and_type_index); |
1271 } break; | |
1272 | |
1273 case JVM_CONSTANT_Long: | |
1274 { | |
2011
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|
1275 jlong l = from_cp->long_at(from_i); |
0 | 1276 to_cp->long_at_put(to_i, l); |
1277 // long takes two constant pool entries so init second entry's tag | |
1278 to_cp->tag_at_put(to_i + 1, JVM_CONSTANT_Invalid); | |
1279 } break; | |
1280 | |
1281 case JVM_CONSTANT_Methodref: | |
1282 { | |
2011
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|
1283 int class_index = from_cp->uncached_klass_ref_index_at(from_i); |
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|
1284 int name_and_type_index = from_cp->uncached_name_and_type_ref_index_at(from_i); |
0 | 1285 to_cp->method_at_put(to_i, class_index, name_and_type_index); |
1286 } break; | |
1287 | |
1288 case JVM_CONSTANT_NameAndType: | |
1289 { | |
2011
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|
1290 int name_ref_index = from_cp->name_ref_index_at(from_i); |
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|
1291 int signature_ref_index = from_cp->signature_ref_index_at(from_i); |
0 | 1292 to_cp->name_and_type_at_put(to_i, name_ref_index, signature_ref_index); |
1293 } break; | |
1294 | |
1295 case JVM_CONSTANT_StringIndex: | |
1296 { | |
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|
1297 jint si = from_cp->string_index_at(from_i); |
0 | 1298 to_cp->string_index_at_put(to_i, si); |
1299 } break; | |
1300 | |
1301 case JVM_CONSTANT_UnresolvedClass: | |
17696
53094b350323
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|
1302 case JVM_CONSTANT_UnresolvedClassInError: |
0 | 1303 { |
2332
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changeset
|
1304 // Can be resolved after checking tag, so check the slot first. |
fbbeec6dad2d
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coleenp
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2177
diff
changeset
|
1305 CPSlot entry = from_cp->slot_at(from_i); |
6725
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1306 if (entry.is_resolved()) { |
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|
1307 assert(entry.get_klass()->is_klass(), "must be"); |
2332
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coleenp
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2177
diff
changeset
|
1308 // Already resolved |
6725
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|
1309 to_cp->klass_at_put(to_i, entry.get_klass()); |
2332
fbbeec6dad2d
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changeset
|
1310 } else { |
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coleenp
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2177
diff
changeset
|
1311 to_cp->unresolved_klass_at_put(to_i, entry.get_symbol()); |
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|
1312 } |
0 | 1313 } break; |
1314 | |
6725
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|
1315 case JVM_CONSTANT_String: |
0 | 1316 { |
6725
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|
1317 Symbol* s = from_cp->unresolved_string_at(from_i); |
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|
1318 to_cp->unresolved_string_at_put(to_i, s); |
0 | 1319 } break; |
1320 | |
1321 case JVM_CONSTANT_Utf8: | |
1322 { | |
2177
3582bf76420e
6990754: Use native memory and reference counting to implement SymbolTable
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diff
changeset
|
1323 Symbol* s = from_cp->symbol_at(from_i); |
6725
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|
1324 // Need to increase refcount, the old one will be thrown away and deferenced |
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|
1325 s->increment_refcount(); |
0 | 1326 to_cp->symbol_at_put(to_i, s); |
1327 } break; | |
1328 | |
1602 | 1329 case JVM_CONSTANT_MethodType: |
12845
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coleenp
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12316
diff
changeset
|
1330 case JVM_CONSTANT_MethodTypeInError: |
1602 | 1331 { |
12845
b4a4fdc1f464
8025185: MethodHandleInError and MethodTypeInError not handled in ConstantPool::compare_entry_to and copy_entry_to
coleenp
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12316
diff
changeset
|
1332 jint k = from_cp->method_type_index_at_error_ok(from_i); |
1602 | 1333 to_cp->method_type_index_at_put(to_i, k); |
1334 } break; | |
1335 | |
1336 case JVM_CONSTANT_MethodHandle: | |
12845
b4a4fdc1f464
8025185: MethodHandleInError and MethodTypeInError not handled in ConstantPool::compare_entry_to and copy_entry_to
coleenp
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12316
diff
changeset
|
1337 case JVM_CONSTANT_MethodHandleInError: |
1602 | 1338 { |
12845
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coleenp
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12316
diff
changeset
|
1339 int k1 = from_cp->method_handle_ref_kind_at_error_ok(from_i); |
b4a4fdc1f464
8025185: MethodHandleInError and MethodTypeInError not handled in ConstantPool::compare_entry_to and copy_entry_to
coleenp
parents:
12316
diff
changeset
|
1340 int k2 = from_cp->method_handle_index_at_error_ok(from_i); |
1602 | 1341 to_cp->method_handle_index_at_put(to_i, k1, k2); |
1342 } break; | |
1343 | |
1660
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6964498: JSR 292 invokedynamic sites need local bootstrap methods
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1602
diff
changeset
|
1344 case JVM_CONSTANT_InvokeDynamic: |
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1602
diff
changeset
|
1345 { |
2011
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changeset
|
1346 int k1 = from_cp->invoke_dynamic_bootstrap_specifier_index(from_i); |
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changeset
|
1347 int k2 = from_cp->invoke_dynamic_name_and_type_ref_index_at(from_i); |
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changeset
|
1348 k1 += operand_array_length(to_cp->operands()); // to_cp might already have operands |
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changeset
|
1349 to_cp->invoke_dynamic_at_put(to_i, k1, k2); |
1660
083fde3b838e
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1602
diff
changeset
|
1350 } break; |
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1602
diff
changeset
|
1351 |
0 | 1352 // Invalid is used as the tag for the second constant pool entry |
1353 // occupied by JVM_CONSTANT_Double or JVM_CONSTANT_Long. It should | |
1354 // not be seen by itself. | |
1355 case JVM_CONSTANT_Invalid: // fall through | |
1356 | |
1357 default: | |
1358 { | |
1359 ShouldNotReachHere(); | |
1360 } break; | |
1361 } | |
1362 } // end copy_entry_to() | |
1363 | |
1364 | |
1365 // Search constant pool search_cp for an entry that matches this | |
1366 // constant pool's entry at pattern_i. Returns the index of a | |
1367 // matching entry or zero (0) if there is no matching entry. | |
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1368 int ConstantPool::find_matching_entry(int pattern_i, |
0 | 1369 constantPoolHandle search_cp, TRAPS) { |
1370 | |
1371 // index zero (0) is not used | |
1372 for (int i = 1; i < search_cp->length(); i++) { | |
1373 bool found = compare_entry_to(pattern_i, search_cp, i, CHECK_0); | |
1374 if (found) { | |
1375 return i; | |
1376 } | |
1377 } | |
1378 | |
1379 return 0; // entry not found; return unused index zero (0) | |
1380 } // end find_matching_entry() | |
1381 | |
1382 | |
10151
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1383 // Compare this constant pool's bootstrap specifier at idx1 to the constant pool |
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1384 // cp2's bootstrap specifier at idx2. |
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|
1385 bool ConstantPool::compare_operand_to(int idx1, constantPoolHandle cp2, int idx2, TRAPS) { |
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1386 int k1 = operand_bootstrap_method_ref_index_at(idx1); |
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1387 int k2 = cp2->operand_bootstrap_method_ref_index_at(idx2); |
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|
1388 bool match = compare_entry_to(k1, cp2, k2, CHECK_false); |
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1389 |
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|
1390 if (!match) { |
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1391 return false; |
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1392 } |
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1393 int argc = operand_argument_count_at(idx1); |
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1394 if (argc == cp2->operand_argument_count_at(idx2)) { |
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1395 for (int j = 0; j < argc; j++) { |
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1396 k1 = operand_argument_index_at(idx1, j); |
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1397 k2 = cp2->operand_argument_index_at(idx2, j); |
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1398 match = compare_entry_to(k1, cp2, k2, CHECK_false); |
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1399 if (!match) { |
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1400 return false; |
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1401 } |
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1402 } |
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1403 return true; // got through loop; all elements equal |
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1404 } |
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1405 return false; |
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1406 } // end compare_operand_to() |
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1407 |
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1408 // Search constant pool search_cp for a bootstrap specifier that matches |
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1409 // this constant pool's bootstrap specifier at pattern_i index. |
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1410 // Return the index of a matching bootstrap specifier or (-1) if there is no match. |
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1411 int ConstantPool::find_matching_operand(int pattern_i, |
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1412 constantPoolHandle search_cp, int search_len, TRAPS) { |
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1413 for (int i = 0; i < search_len; i++) { |
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1414 bool found = compare_operand_to(pattern_i, search_cp, i, CHECK_(-1)); |
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1415 if (found) { |
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1416 return i; |
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1417 } |
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1418 } |
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1419 return -1; // bootstrap specifier not found; return unused index (-1) |
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1420 } // end find_matching_operand() |
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1421 |
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1422 |
0 | 1423 #ifndef PRODUCT |
1424 | |
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1425 const char* ConstantPool::printable_name_at(int which) { |
0 | 1426 |
1427 constantTag tag = tag_at(which); | |
1428 | |
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1429 if (tag.is_string()) { |
0 | 1430 return string_at_noresolve(which); |
1431 } else if (tag.is_klass() || tag.is_unresolved_klass()) { | |
1432 return klass_name_at(which)->as_C_string(); | |
1433 } else if (tag.is_symbol()) { | |
1434 return symbol_at(which)->as_C_string(); | |
1435 } | |
1436 return ""; | |
1437 } | |
1438 | |
1439 #endif // PRODUCT | |
1440 | |
1441 | |
1442 // JVMTI GetConstantPool support | |
1443 | |
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1444 // For debugging of constant pool |
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1445 const bool debug_cpool = false; |
0 | 1446 |
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1447 #define DBG(code) do { if (debug_cpool) { (code); } } while(0) |
0 | 1448 |
1449 static void print_cpool_bytes(jint cnt, u1 *bytes) { | |
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1450 const char* WARN_MSG = "Must not be such entry!"; |
0 | 1451 jint size = 0; |
1452 u2 idx1, idx2; | |
1453 | |
1454 for (jint idx = 1; idx < cnt; idx++) { | |
1455 jint ent_size = 0; | |
1456 u1 tag = *bytes++; | |
1457 size++; // count tag | |
1458 | |
1459 printf("const #%03d, tag: %02d ", idx, tag); | |
1460 switch(tag) { | |
1461 case JVM_CONSTANT_Invalid: { | |
1462 printf("Invalid"); | |
1463 break; | |
1464 } | |
1465 case JVM_CONSTANT_Unicode: { | |
1466 printf("Unicode %s", WARN_MSG); | |
1467 break; | |
1468 } | |
1469 case JVM_CONSTANT_Utf8: { | |
1470 u2 len = Bytes::get_Java_u2(bytes); | |
1471 char str[128]; | |
1472 if (len > 127) { | |
1473 len = 127; | |
1474 } | |
1475 strncpy(str, (char *) (bytes+2), len); | |
1476 str[len] = '\0'; | |
1477 printf("Utf8 \"%s\"", str); | |
1478 ent_size = 2 + len; | |
1479 break; | |
1480 } | |
1481 case JVM_CONSTANT_Integer: { | |
1482 u4 val = Bytes::get_Java_u4(bytes); | |
1483 printf("int %d", *(int *) &val); | |
1484 ent_size = 4; | |
1485 break; | |
1486 } | |
1487 case JVM_CONSTANT_Float: { | |
1488 u4 val = Bytes::get_Java_u4(bytes); | |
1489 printf("float %5.3ff", *(float *) &val); | |
1490 ent_size = 4; | |
1491 break; | |
1492 } | |
1493 case JVM_CONSTANT_Long: { | |
1494 u8 val = Bytes::get_Java_u8(bytes); | |
3960 | 1495 printf("long "INT64_FORMAT, (int64_t) *(jlong *) &val); |
0 | 1496 ent_size = 8; |
1497 idx++; // Long takes two cpool slots | |
1498 break; | |
1499 } | |
1500 case JVM_CONSTANT_Double: { | |
1501 u8 val = Bytes::get_Java_u8(bytes); | |
1502 printf("double %5.3fd", *(jdouble *)&val); | |
1503 ent_size = 8; | |
1504 idx++; // Double takes two cpool slots | |
1505 break; | |
1506 } | |
1507 case JVM_CONSTANT_Class: { | |
1508 idx1 = Bytes::get_Java_u2(bytes); | |
1509 printf("class #%03d", idx1); | |
1510 ent_size = 2; | |
1511 break; | |
1512 } | |
1513 case JVM_CONSTANT_String: { | |
1514 idx1 = Bytes::get_Java_u2(bytes); | |
1515 printf("String #%03d", idx1); | |
1516 ent_size = 2; | |
1517 break; | |
1518 } | |
1519 case JVM_CONSTANT_Fieldref: { | |
1520 idx1 = Bytes::get_Java_u2(bytes); | |
1521 idx2 = Bytes::get_Java_u2(bytes+2); | |
1522 printf("Field #%03d, #%03d", (int) idx1, (int) idx2); | |
1523 ent_size = 4; | |
1524 break; | |
1525 } | |
1526 case JVM_CONSTANT_Methodref: { | |
1527 idx1 = Bytes::get_Java_u2(bytes); | |
1528 idx2 = Bytes::get_Java_u2(bytes+2); | |
1529 printf("Method #%03d, #%03d", idx1, idx2); | |
1530 ent_size = 4; | |
1531 break; | |
1532 } | |
1533 case JVM_CONSTANT_InterfaceMethodref: { | |
1534 idx1 = Bytes::get_Java_u2(bytes); | |
1535 idx2 = Bytes::get_Java_u2(bytes+2); | |
1536 printf("InterfMethod #%03d, #%03d", idx1, idx2); | |
1537 ent_size = 4; | |
1538 break; | |
1539 } | |
1540 case JVM_CONSTANT_NameAndType: { | |
1541 idx1 = Bytes::get_Java_u2(bytes); | |
1542 idx2 = Bytes::get_Java_u2(bytes+2); | |
1543 printf("NameAndType #%03d, #%03d", idx1, idx2); | |
1544 ent_size = 4; | |
1545 break; | |
1546 } | |
1547 case JVM_CONSTANT_ClassIndex: { | |
1548 printf("ClassIndex %s", WARN_MSG); | |
1549 break; | |
1550 } | |
1551 case JVM_CONSTANT_UnresolvedClass: { | |
1552 printf("UnresolvedClass: %s", WARN_MSG); | |
1553 break; | |
1554 } | |
1555 case JVM_CONSTANT_UnresolvedClassInError: { | |
1556 printf("UnresolvedClassInErr: %s", WARN_MSG); | |
1557 break; | |
1558 } | |
1559 case JVM_CONSTANT_StringIndex: { | |
1560 printf("StringIndex: %s", WARN_MSG); | |
1561 break; | |
1562 } | |
1563 } | |
1564 printf(";\n"); | |
1565 bytes += ent_size; | |
1566 size += ent_size; | |
1567 } | |
1568 printf("Cpool size: %d\n", size); | |
1569 fflush(0); | |
1570 return; | |
1571 } /* end print_cpool_bytes */ | |
1572 | |
1573 | |
1574 // Returns size of constant pool entry. | |
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1575 jint ConstantPool::cpool_entry_size(jint idx) { |
0 | 1576 switch(tag_at(idx).value()) { |
1577 case JVM_CONSTANT_Invalid: | |
1578 case JVM_CONSTANT_Unicode: | |
1579 return 1; | |
1580 | |
1581 case JVM_CONSTANT_Utf8: | |
1582 return 3 + symbol_at(idx)->utf8_length(); | |
1583 | |
1584 case JVM_CONSTANT_Class: | |
1585 case JVM_CONSTANT_String: | |
1586 case JVM_CONSTANT_ClassIndex: | |
1587 case JVM_CONSTANT_UnresolvedClass: | |
1588 case JVM_CONSTANT_UnresolvedClassInError: | |
1589 case JVM_CONSTANT_StringIndex: | |
1602 | 1590 case JVM_CONSTANT_MethodType: |
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1591 case JVM_CONSTANT_MethodTypeInError: |
0 | 1592 return 3; |
1593 | |
1602 | 1594 case JVM_CONSTANT_MethodHandle: |
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1595 case JVM_CONSTANT_MethodHandleInError: |
1602 | 1596 return 4; //tag, ref_kind, ref_index |
1597 | |
0 | 1598 case JVM_CONSTANT_Integer: |
1599 case JVM_CONSTANT_Float: | |
1600 case JVM_CONSTANT_Fieldref: | |
1601 case JVM_CONSTANT_Methodref: | |
1602 case JVM_CONSTANT_InterfaceMethodref: | |
1603 case JVM_CONSTANT_NameAndType: | |
1913
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1604 return 5; |
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|
1605 |
1660
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1606 case JVM_CONSTANT_InvokeDynamic: |
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1607 // u1 tag, u2 bsm, u2 nt |
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1608 return 5; |
0 | 1609 |
1610 case JVM_CONSTANT_Long: | |
1611 case JVM_CONSTANT_Double: | |
1612 return 9; | |
1613 } | |
1614 assert(false, "cpool_entry_size: Invalid constant pool entry tag"); | |
1615 return 1; | |
1616 } /* end cpool_entry_size */ | |
1617 | |
1618 | |
1619 // SymbolHashMap is used to find a constant pool index from a string. | |
1620 // This function fills in SymbolHashMaps, one for utf8s and one for | |
1621 // class names, returns size of the cpool raw bytes. | |
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1622 jint ConstantPool::hash_entries_to(SymbolHashMap *symmap, |
0 | 1623 SymbolHashMap *classmap) { |
1624 jint size = 0; | |
1625 | |
1626 for (u2 idx = 1; idx < length(); idx++) { | |
1627 u2 tag = tag_at(idx).value(); | |
1628 size += cpool_entry_size(idx); | |
1629 | |
1630 switch(tag) { | |
1631 case JVM_CONSTANT_Utf8: { | |
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1632 Symbol* sym = symbol_at(idx); |
0 | 1633 symmap->add_entry(sym, idx); |
1634 DBG(printf("adding symbol entry %s = %d\n", sym->as_utf8(), idx)); | |
1635 break; | |
1636 } | |
1637 case JVM_CONSTANT_Class: | |
1638 case JVM_CONSTANT_UnresolvedClass: | |
1639 case JVM_CONSTANT_UnresolvedClassInError: { | |
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1640 Symbol* sym = klass_name_at(idx); |
0 | 1641 classmap->add_entry(sym, idx); |
1642 DBG(printf("adding class entry %s = %d\n", sym->as_utf8(), idx)); | |
1643 break; | |
1644 } | |
1645 case JVM_CONSTANT_Long: | |
1646 case JVM_CONSTANT_Double: { | |
1647 idx++; // Both Long and Double take two cpool slots | |
1648 break; | |
1649 } | |
1650 } | |
1651 } | |
1652 return size; | |
1653 } /* end hash_utf8_entries_to */ | |
1654 | |
1655 | |
1656 // Copy cpool bytes. | |
1657 // Returns: | |
1658 // 0, in case of OutOfMemoryError | |
1659 // -1, in case of internal error | |
1660 // > 0, count of the raw cpool bytes that have been copied | |
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1661 int ConstantPool::copy_cpool_bytes(int cpool_size, |
0 | 1662 SymbolHashMap* tbl, |
1663 unsigned char *bytes) { | |
1664 u2 idx1, idx2; | |
1665 jint size = 0; | |
1666 jint cnt = length(); | |
1667 unsigned char *start_bytes = bytes; | |
1668 | |
1669 for (jint idx = 1; idx < cnt; idx++) { | |
1670 u1 tag = tag_at(idx).value(); | |
1671 jint ent_size = cpool_entry_size(idx); | |
1672 | |
1673 assert(size + ent_size <= cpool_size, "Size mismatch"); | |
1674 | |
1675 *bytes = tag; | |
1676 DBG(printf("#%03hd tag=%03hd, ", idx, tag)); | |
1677 switch(tag) { | |
1678 case JVM_CONSTANT_Invalid: { | |
1679 DBG(printf("JVM_CONSTANT_Invalid")); | |
1680 break; | |
1681 } | |
1682 case JVM_CONSTANT_Unicode: { | |
1683 assert(false, "Wrong constant pool tag: JVM_CONSTANT_Unicode"); | |
1684 DBG(printf("JVM_CONSTANT_Unicode")); | |
1685 break; | |
1686 } | |
1687 case JVM_CONSTANT_Utf8: { | |
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1688 Symbol* sym = symbol_at(idx); |
0 | 1689 char* str = sym->as_utf8(); |
1690 // Warning! It's crashing on x86 with len = sym->utf8_length() | |
1691 int len = (int) strlen(str); | |
1692 Bytes::put_Java_u2((address) (bytes+1), (u2) len); | |
1693 for (int i = 0; i < len; i++) { | |
1694 bytes[3+i] = (u1) str[i]; | |
1695 } | |
1696 DBG(printf("JVM_CONSTANT_Utf8: %s ", str)); | |
1697 break; | |
1698 } | |
1699 case JVM_CONSTANT_Integer: { | |
1700 jint val = int_at(idx); | |
1701 Bytes::put_Java_u4((address) (bytes+1), *(u4*)&val); | |
1702 break; | |
1703 } | |
1704 case JVM_CONSTANT_Float: { | |
1705 jfloat val = float_at(idx); | |
1706 Bytes::put_Java_u4((address) (bytes+1), *(u4*)&val); | |
1707 break; | |
1708 } | |
1709 case JVM_CONSTANT_Long: { | |
1710 jlong val = long_at(idx); | |
1711 Bytes::put_Java_u8((address) (bytes+1), *(u8*)&val); | |
1712 idx++; // Long takes two cpool slots | |
1713 break; | |
1714 } | |
1715 case JVM_CONSTANT_Double: { | |
1716 jdouble val = double_at(idx); | |
1717 Bytes::put_Java_u8((address) (bytes+1), *(u8*)&val); | |
1718 idx++; // Double takes two cpool slots | |
1719 break; | |
1720 } | |
1721 case JVM_CONSTANT_Class: | |
1722 case JVM_CONSTANT_UnresolvedClass: | |
1723 case JVM_CONSTANT_UnresolvedClassInError: { | |
1724 *bytes = JVM_CONSTANT_Class; | |
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1725 Symbol* sym = klass_name_at(idx); |
0 | 1726 idx1 = tbl->symbol_to_value(sym); |
1727 assert(idx1 != 0, "Have not found a hashtable entry"); | |
1728 Bytes::put_Java_u2((address) (bytes+1), idx1); | |
1729 DBG(printf("JVM_CONSTANT_Class: idx=#%03hd, %s", idx1, sym->as_utf8())); | |
1730 break; | |
1731 } | |
1732 case JVM_CONSTANT_String: { | |
1733 *bytes = JVM_CONSTANT_String; | |
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1734 Symbol* sym = unresolved_string_at(idx); |
0 | 1735 idx1 = tbl->symbol_to_value(sym); |
1736 assert(idx1 != 0, "Have not found a hashtable entry"); | |
1737 Bytes::put_Java_u2((address) (bytes+1), idx1); | |
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1738 DBG(printf("JVM_CONSTANT_String: idx=#%03hd, %s", idx1, sym->as_utf8())); |
0 | 1739 break; |
1740 } | |
1741 case JVM_CONSTANT_Fieldref: | |
1742 case JVM_CONSTANT_Methodref: | |
1743 case JVM_CONSTANT_InterfaceMethodref: { | |
1744 idx1 = uncached_klass_ref_index_at(idx); | |
1745 idx2 = uncached_name_and_type_ref_index_at(idx); | |
1746 Bytes::put_Java_u2((address) (bytes+1), idx1); | |
1747 Bytes::put_Java_u2((address) (bytes+3), idx2); | |
1748 DBG(printf("JVM_CONSTANT_Methodref: %hd %hd", idx1, idx2)); | |
1749 break; | |
1750 } | |
1751 case JVM_CONSTANT_NameAndType: { | |
1752 idx1 = name_ref_index_at(idx); | |
1753 idx2 = signature_ref_index_at(idx); | |
1754 Bytes::put_Java_u2((address) (bytes+1), idx1); | |
1755 Bytes::put_Java_u2((address) (bytes+3), idx2); | |
1756 DBG(printf("JVM_CONSTANT_NameAndType: %hd %hd", idx1, idx2)); | |
1757 break; | |
1758 } | |
1759 case JVM_CONSTANT_ClassIndex: { | |
1760 *bytes = JVM_CONSTANT_Class; | |
1761 idx1 = klass_index_at(idx); | |
1762 Bytes::put_Java_u2((address) (bytes+1), idx1); | |
1763 DBG(printf("JVM_CONSTANT_ClassIndex: %hd", idx1)); | |
1764 break; | |
1765 } | |
1766 case JVM_CONSTANT_StringIndex: { | |
1767 *bytes = JVM_CONSTANT_String; | |
1768 idx1 = string_index_at(idx); | |
1769 Bytes::put_Java_u2((address) (bytes+1), idx1); | |
1770 DBG(printf("JVM_CONSTANT_StringIndex: %hd", idx1)); | |
1771 break; | |
1772 } | |
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1773 case JVM_CONSTANT_MethodHandle: |
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1774 case JVM_CONSTANT_MethodHandleInError: { |
1602 | 1775 *bytes = JVM_CONSTANT_MethodHandle; |
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1776 int kind = method_handle_ref_kind_at_error_ok(idx); |
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1777 idx1 = method_handle_index_at_error_ok(idx); |
1602 | 1778 *(bytes+1) = (unsigned char) kind; |
1779 Bytes::put_Java_u2((address) (bytes+2), idx1); | |
1780 DBG(printf("JVM_CONSTANT_MethodHandle: %d %hd", kind, idx1)); | |
1781 break; | |
1782 } | |
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1783 case JVM_CONSTANT_MethodType: |
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1784 case JVM_CONSTANT_MethodTypeInError: { |
1602 | 1785 *bytes = JVM_CONSTANT_MethodType; |
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1786 idx1 = method_type_index_at_error_ok(idx); |
1602 | 1787 Bytes::put_Java_u2((address) (bytes+1), idx1); |
1788 DBG(printf("JVM_CONSTANT_MethodType: %hd", idx1)); | |
1789 break; | |
1790 } | |
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|
1791 case JVM_CONSTANT_InvokeDynamic: { |
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1792 *bytes = tag; |
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|
1793 idx1 = extract_low_short_from_int(*int_at_addr(idx)); |
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|
1794 idx2 = extract_high_short_from_int(*int_at_addr(idx)); |
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|
1795 assert(idx2 == invoke_dynamic_name_and_type_ref_index_at(idx), "correct half of u4"); |
1660
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6964498: JSR 292 invokedynamic sites need local bootstrap methods
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1602
diff
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|
1796 Bytes::put_Java_u2((address) (bytes+1), idx1); |
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diff
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|
1797 Bytes::put_Java_u2((address) (bytes+3), idx2); |
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|
1798 DBG(printf("JVM_CONSTANT_InvokeDynamic: %hd %hd", idx1, idx2)); |
1660
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1602
diff
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|
1799 break; |
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diff
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|
1800 } |
0 | 1801 } |
1802 DBG(printf("\n")); | |
1803 bytes += ent_size; | |
1804 size += ent_size; | |
1805 } | |
1806 assert(size == cpool_size, "Size mismatch"); | |
1807 | |
1808 // Keep temorarily for debugging until it's stable. | |
1809 DBG(print_cpool_bytes(cnt, start_bytes)); | |
1810 return (int)(bytes - start_bytes); | |
1811 } /* end copy_cpool_bytes */ | |
1812 | |
9060
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1813 #undef DBG |
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1814 |
0 | 1815 |
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1816 void ConstantPool::set_on_stack(const bool value) { |
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1817 if (value) { |
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1818 _flags |= _on_stack; |
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1819 } else { |
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1820 _flags &= ~_on_stack; |
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1821 } |
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1822 if (value) MetadataOnStackMark::record(this); |
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1823 } |
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1824 |
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1825 // JSR 292 support for patching constant pool oops after the class is linked and |
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1826 // the oop array for resolved references are created. |
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1827 // We can't do this during classfile parsing, which is how the other indexes are |
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1828 // patched. The other patches are applied early for some error checking |
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1829 // so only defer the pseudo_strings. |
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1830 void ConstantPool::patch_resolved_references( |
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1831 GrowableArray<Handle>* cp_patches) { |
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1832 assert(EnableInvokeDynamic, ""); |
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1833 for (int index = 1; index < cp_patches->length(); index++) { // Index 0 is unused |
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1834 Handle patch = cp_patches->at(index); |
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1835 if (patch.not_null()) { |
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1836 assert (tag_at(index).is_string(), "should only be string left"); |
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1837 // Patching a string means pre-resolving it. |
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1838 // The spelling in the constant pool is ignored. |
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1839 // The constant reference may be any object whatever. |
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1840 // If it is not a real interned string, the constant is referred |
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1841 // to as a "pseudo-string", and must be presented to the CP |
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1842 // explicitly, because it may require scavenging. |
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1843 int obj_index = cp_to_object_index(index); |
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1844 pseudo_string_at_put(index, obj_index, patch()); |
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1845 DEBUG_ONLY(cp_patches->at_put(index, Handle());) |
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1846 } |
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1847 } |
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1848 #ifdef ASSERT |
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1849 // Ensure that all the patches have been used. |
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1850 for (int index = 0; index < cp_patches->length(); index++) { |
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1851 assert(cp_patches->at(index).is_null(), |
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1852 err_msg("Unused constant pool patch at %d in class file %s", |
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1853 index, |
6940
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1854 pool_holder()->external_name())); |
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1855 } |
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1856 #endif // ASSERT |
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1857 } |
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1858 |
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1859 #ifndef PRODUCT |
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1860 |
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1861 // CompileTheWorld support. Preload all classes loaded references in the passed in constantpool |
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1862 void ConstantPool::preload_and_initialize_all_classes(ConstantPool* obj, TRAPS) { |
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1863 guarantee(obj->is_constantPool(), "object must be constant pool"); |
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1864 constantPoolHandle cp(THREAD, (ConstantPool*)obj); |
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1865 guarantee(cp->pool_holder() != NULL, "must be fully loaded"); |
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1866 |
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1867 for (int i = 0; i< cp->length(); i++) { |
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1868 if (cp->tag_at(i).is_unresolved_klass()) { |
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1869 // This will force loading of the class |
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1870 Klass* klass = cp->klass_at(i, CHECK); |
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1871 if (klass->oop_is_instance()) { |
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1872 // Force initialization of class |
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1873 InstanceKlass::cast(klass)->initialize(CHECK); |
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1874 } |
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1875 } |
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1876 } |
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1877 } |
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1878 |
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1879 #endif |
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1880 |
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1881 |
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1882 // Printing |
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1883 |
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1884 void ConstantPool::print_on(outputStream* st) const { |
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1885 EXCEPTION_MARK; |
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1886 assert(is_constantPool(), "must be constantPool"); |
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1887 st->print_cr(internal_name()); |
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1888 if (flags() != 0) { |
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1889 st->print(" - flags: 0x%x", flags()); |
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1890 if (has_preresolution()) st->print(" has_preresolution"); |
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1891 if (on_stack()) st->print(" on_stack"); |
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1892 st->cr(); |
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1893 } |
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1894 if (pool_holder() != NULL) { |
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1895 st->print_cr(" - holder: " INTPTR_FORMAT, pool_holder()); |
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1896 } |
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1897 st->print_cr(" - cache: " INTPTR_FORMAT, cache()); |
12316
190899198332
7195622: CheckUnhandledOops has limited usefulness now
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1898 st->print_cr(" - resolved_references: " INTPTR_FORMAT, (void *)resolved_references()); |
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1899 st->print_cr(" - reference_map: " INTPTR_FORMAT, reference_map()); |
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1900 |
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1901 for (int index = 1; index < length(); index++) { // Index 0 is unused |
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1902 ((ConstantPool*)this)->print_entry_on(index, st); |
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1903 switch (tag_at(index).value()) { |
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1904 case JVM_CONSTANT_Long : |
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1905 case JVM_CONSTANT_Double : |
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1906 index++; // Skip entry following eigth-byte constant |
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1907 } |
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1908 |
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1909 } |
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1910 st->cr(); |
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1911 } |
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1912 |
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1913 // Print one constant pool entry |
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1914 void ConstantPool::print_entry_on(const int index, outputStream* st) { |
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1915 EXCEPTION_MARK; |
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1916 st->print(" - %3d : ", index); |
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1917 tag_at(index).print_on(st); |
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1918 st->print(" : "); |
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1919 switch (tag_at(index).value()) { |
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1920 case JVM_CONSTANT_Class : |
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1921 { Klass* k = klass_at(index, CATCH); |
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1922 guarantee(k != NULL, "need klass"); |
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1923 k->print_value_on(st); |
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1924 st->print(" {0x%lx}", (address)k); |
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1925 } |
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1926 break; |
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1927 case JVM_CONSTANT_Fieldref : |
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1928 case JVM_CONSTANT_Methodref : |
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1929 case JVM_CONSTANT_InterfaceMethodref : |
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1930 st->print("klass_index=%d", uncached_klass_ref_index_at(index)); |
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1931 st->print(" name_and_type_index=%d", uncached_name_and_type_ref_index_at(index)); |
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1932 break; |
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1933 case JVM_CONSTANT_String : |
8104 | 1934 if (is_pseudo_string_at(index)) { |
1935 oop anObj = pseudo_string_at(index); | |
1936 anObj->print_value_on(st); | |
1937 st->print(" {0x%lx}", (address)anObj); | |
1938 } else { | |
1939 unresolved_string_at(index)->print_value_on(st); | |
1940 } | |
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1941 break; |
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1942 case JVM_CONSTANT_Integer : |
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1943 st->print("%d", int_at(index)); |
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1944 break; |
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1945 case JVM_CONSTANT_Float : |
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1946 st->print("%f", float_at(index)); |
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1947 break; |
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1948 case JVM_CONSTANT_Long : |
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1949 st->print_jlong(long_at(index)); |
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1950 break; |
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1951 case JVM_CONSTANT_Double : |
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1952 st->print("%lf", double_at(index)); |
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1953 break; |
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1954 case JVM_CONSTANT_NameAndType : |
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1955 st->print("name_index=%d", name_ref_index_at(index)); |
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1956 st->print(" signature_index=%d", signature_ref_index_at(index)); |
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1957 break; |
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1958 case JVM_CONSTANT_Utf8 : |
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1959 symbol_at(index)->print_value_on(st); |
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1960 break; |
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1961 case JVM_CONSTANT_UnresolvedClass : // fall-through |
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1962 case JVM_CONSTANT_UnresolvedClassInError: { |
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1963 // unresolved_klass_at requires lock or safe world. |
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1964 CPSlot entry = slot_at(index); |
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1965 if (entry.is_resolved()) { |
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1966 entry.get_klass()->print_value_on(st); |
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1967 } else { |
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1968 entry.get_symbol()->print_value_on(st); |
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1969 } |
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1970 } |
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1971 break; |
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1972 case JVM_CONSTANT_MethodHandle : |
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1973 case JVM_CONSTANT_MethodHandleInError : |
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1974 st->print("ref_kind=%d", method_handle_ref_kind_at_error_ok(index)); |
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1975 st->print(" ref_index=%d", method_handle_index_at_error_ok(index)); |
6725
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1976 break; |
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1977 case JVM_CONSTANT_MethodType : |
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1978 case JVM_CONSTANT_MethodTypeInError : |
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1979 st->print("signature_index=%d", method_type_index_at_error_ok(index)); |
6725
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1980 break; |
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1981 case JVM_CONSTANT_InvokeDynamic : |
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1982 { |
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1983 st->print("bootstrap_method_index=%d", invoke_dynamic_bootstrap_method_ref_index_at(index)); |
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1984 st->print(" name_and_type_index=%d", invoke_dynamic_name_and_type_ref_index_at(index)); |
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1985 int argc = invoke_dynamic_argument_count_at(index); |
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1986 if (argc > 0) { |
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1987 for (int arg_i = 0; arg_i < argc; arg_i++) { |
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1988 int arg = invoke_dynamic_argument_index_at(index, arg_i); |
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1989 st->print((arg_i == 0 ? " arguments={%d" : ", %d"), arg); |
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1990 } |
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1991 st->print("}"); |
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1992 } |
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1993 } |
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1994 break; |
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1995 default: |
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1996 ShouldNotReachHere(); |
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1997 break; |
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1998 } |
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1999 st->cr(); |
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2000 } |
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2001 |
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2002 void ConstantPool::print_value_on(outputStream* st) const { |
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2003 assert(is_constantPool(), "must be constantPool"); |
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2004 st->print("constant pool [%d]", length()); |
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2005 if (has_preresolution()) st->print("/preresolution"); |
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2006 if (operands() != NULL) st->print("/operands[%d]", operands()->length()); |
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2007 print_address_on(st); |
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2008 st->print(" for "); |
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2009 pool_holder()->print_value_on(st); |
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2010 if (pool_holder() != NULL) { |
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2011 bool extra = (pool_holder()->constants() != this); |
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2012 if (extra) st->print(" (extra)"); |
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2013 } |
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2014 if (cache() != NULL) { |
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2015 st->print(" cache=" PTR_FORMAT, cache()); |
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2016 } |
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2017 } |
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2018 |
7956 | 2019 #if INCLUDE_SERVICES |
2020 // Size Statistics | |
2021 void ConstantPool::collect_statistics(KlassSizeStats *sz) const { | |
2022 sz->_cp_all_bytes += (sz->_cp_bytes = sz->count(this)); | |
2023 sz->_cp_all_bytes += (sz->_cp_tags_bytes = sz->count_array(tags())); | |
2024 sz->_cp_all_bytes += (sz->_cp_cache_bytes = sz->count(cache())); | |
2025 sz->_cp_all_bytes += (sz->_cp_operands_bytes = sz->count_array(operands())); | |
2026 sz->_cp_all_bytes += (sz->_cp_refmap_bytes = sz->count_array(reference_map())); | |
2027 | |
2028 sz->_ro_bytes += sz->_cp_operands_bytes + sz->_cp_tags_bytes + | |
2029 sz->_cp_refmap_bytes; | |
2030 sz->_rw_bytes += sz->_cp_bytes + sz->_cp_cache_bytes; | |
2031 } | |
2032 #endif // INCLUDE_SERVICES | |
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2033 |
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2034 // Verification |
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2035 |
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2036 void ConstantPool::verify_on(outputStream* st) { |
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2037 guarantee(is_constantPool(), "object must be constant pool"); |
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2038 for (int i = 0; i< length(); i++) { |
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2039 constantTag tag = tag_at(i); |
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2040 CPSlot entry = slot_at(i); |
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2041 if (tag.is_klass()) { |
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2042 if (entry.is_resolved()) { |
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2043 guarantee(entry.get_klass()->is_klass(), "should be klass"); |
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2044 } |
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2045 } else if (tag.is_unresolved_klass()) { |
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2046 if (entry.is_resolved()) { |
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2047 guarantee(entry.get_klass()->is_klass(), "should be klass"); |
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2048 } |
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2049 } else if (tag.is_symbol()) { |
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2050 guarantee(entry.get_symbol()->refcount() != 0, "should have nonzero reference count"); |
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2051 } else if (tag.is_string()) { |
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2052 guarantee(entry.get_symbol()->refcount() != 0, "should have nonzero reference count"); |
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2053 } |
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2054 } |
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2055 if (cache() != NULL) { |
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2056 // Note: cache() can be NULL before a class is completely setup or |
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2057 // in temporary constant pools used during constant pool merging |
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2058 guarantee(cache()->is_constantPoolCache(), "should be constant pool cache"); |
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2059 } |
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2060 if (pool_holder() != NULL) { |
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2061 // Note: pool_holder() can be NULL in temporary constant pools |
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2062 // used during constant pool merging |
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2063 guarantee(pool_holder()->is_klass(), "should be klass"); |
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2064 } |
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2065 } |
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2066 |
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2067 |
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2068 void SymbolHashMap::add_entry(Symbol* sym, u2 value) { |
0 | 2069 char *str = sym->as_utf8(); |
2070 unsigned int hash = compute_hash(str, sym->utf8_length()); | |
2071 unsigned int index = hash % table_size(); | |
2072 | |
2073 // check if already in map | |
2074 // we prefer the first entry since it is more likely to be what was used in | |
2075 // the class file | |
2076 for (SymbolHashMapEntry *en = bucket(index); en != NULL; en = en->next()) { | |
2077 assert(en->symbol() != NULL, "SymbolHashMapEntry symbol is NULL"); | |
2078 if (en->hash() == hash && en->symbol() == sym) { | |
2079 return; // already there | |
2080 } | |
2081 } | |
2082 | |
2083 SymbolHashMapEntry* entry = new SymbolHashMapEntry(hash, sym, value); | |
2084 entry->set_next(bucket(index)); | |
2085 _buckets[index].set_entry(entry); | |
2086 assert(entry->symbol() != NULL, "SymbolHashMapEntry symbol is NULL"); | |
2087 } | |
2088 | |
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2089 SymbolHashMapEntry* SymbolHashMap::find_entry(Symbol* sym) { |
0 | 2090 assert(sym != NULL, "SymbolHashMap::find_entry - symbol is NULL"); |
2091 char *str = sym->as_utf8(); | |
2092 int len = sym->utf8_length(); | |
2093 unsigned int hash = SymbolHashMap::compute_hash(str, len); | |
2094 unsigned int index = hash % table_size(); | |
2095 for (SymbolHashMapEntry *en = bucket(index); en != NULL; en = en->next()) { | |
2096 assert(en->symbol() != NULL, "SymbolHashMapEntry symbol is NULL"); | |
2097 if (en->hash() == hash && en->symbol() == sym) { | |
2098 return en; | |
2099 } | |
2100 } | |
2101 return NULL; | |
2102 } |