annotate src/share/vm/oops/oopsHierarchy.hpp @ 113:ba764ed4b6f2

6420645: Create a vm that uses compressed oops for up to 32gb heapsizes Summary: Compressed oops in instances, arrays, and headers. Code contributors are coleenp, phh, never, swamyv Reviewed-by: jmasa, kamg, acorn, tbell, kvn, rasbold
author coleenp
date Sun, 13 Apr 2008 17:43:42 -0400
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children d1605aabd0a1
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1 /*
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2 * Copyright 1997-2007 Sun Microsystems, Inc. All Rights Reserved.
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3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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4 *
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5 * This code is free software; you can redistribute it and/or modify it
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6 * under the terms of the GNU General Public License version 2 only, as
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7 * published by the Free Software Foundation.
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8 *
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9 * This code is distributed in the hope that it will be useful, but WITHOUT
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10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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12 * version 2 for more details (a copy is included in the LICENSE file that
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13 * accompanied this code).
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14 *
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15 * You should have received a copy of the GNU General Public License version
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16 * 2 along with this work; if not, write to the Free Software Foundation,
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17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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18 *
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19 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
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20 * CA 95054 USA or visit www.sun.com if you need additional information or
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21 * have any questions.
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22 *
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23 */
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24
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25 // OBJECT hierarchy
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26 // This hierarchy is a representation hierarchy, i.e. if A is a superclass
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27 // of B, A's representation is a prefix of B's representation.
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28
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29 typedef juint narrowOop; // Offset instead of address for an oop within a java object
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30 typedef class klassOopDesc* wideKlassOop; // to keep SA happy and unhandled oop
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31 // detector happy.
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32
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33 #ifndef CHECK_UNHANDLED_OOPS
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34
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35 typedef class oopDesc* oop;
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36 typedef class instanceOopDesc* instanceOop;
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37 typedef class methodOopDesc* methodOop;
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38 typedef class constMethodOopDesc* constMethodOop;
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39 typedef class methodDataOopDesc* methodDataOop;
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40 typedef class arrayOopDesc* arrayOop;
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41 typedef class objArrayOopDesc* objArrayOop;
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42 typedef class typeArrayOopDesc* typeArrayOop;
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43 typedef class constantPoolOopDesc* constantPoolOop;
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44 typedef class constantPoolCacheOopDesc* constantPoolCacheOop;
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45 typedef class symbolOopDesc* symbolOop;
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46 typedef class klassOopDesc* klassOop;
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47 typedef class markOopDesc* markOop;
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48 typedef class compiledICHolderOopDesc* compiledICHolderOop;
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49
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50 #else
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51
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52
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53 // When CHECK_UNHANDLED_OOPS is defined, an "oop" is a class with a
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54 // carefully chosen set of constructors and conversion operators to go
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55 // to and from the underlying oopDesc pointer type.
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56 //
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57 // Because oop and its subclasses <type>Oop are class types, arbitrary
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58 // conversions are not accepted by the compiler, and you may get a message
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59 // about overloading ambiguity (between long and int is common when converting
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60 // from a constant in 64 bit mode), or unable to convert from type to 'oop'.
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61 // Applying a cast to one of these conversion operators first will get to the
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62 // underlying oopDesc* type if appropriate.
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63 // Converting NULL to oop to Handle implicit is no longer accepted by the
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64 // compiler because there are too many steps in the conversion. Use Handle()
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65 // instead, which generates less code anyway.
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66
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67 class Thread;
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68 typedef class markOopDesc* markOop;
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69 class PromotedObject;
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70
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71
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72 class oop {
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73 oopDesc* _o;
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74
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75 void register_oop();
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76 void unregister_oop();
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77
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78 // friend class markOop;
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79 public:
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80 void set_obj(const void* p) {
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81 raw_set_obj(p);
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82 if (CheckUnhandledOops) register_oop();
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83 }
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84 void raw_set_obj(const void* p) { _o = (oopDesc*)p; }
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85
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86 oop() { set_obj(NULL); }
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87 oop(const volatile oop& o) { set_obj(o.obj()); }
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88 oop(const void* p) { set_obj(p); }
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89 oop(intptr_t i) { set_obj((void *)i); }
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90 #ifdef _LP64
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91 oop(int i) { set_obj((void *)i); }
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92 #endif
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93 ~oop() {
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94 if (CheckUnhandledOops) unregister_oop();
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95 }
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96
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97 oopDesc* obj() const volatile { return _o; }
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98
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99 // General access
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100 oopDesc* operator->() const { return obj(); }
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101 bool operator==(const oop o) const { return obj() == o.obj(); }
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102 bool operator==(void *p) const { return obj() == p; }
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103 bool operator!=(const oop o) const { return obj() != o.obj(); }
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104 bool operator!=(void *p) const { return obj() != p; }
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105 bool operator==(intptr_t p) const { return obj() == (oopDesc*)p; }
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106 bool operator!=(intptr_t p) const { return obj() != (oopDesc*)p; }
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107
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108 bool operator<(oop o) const { return obj() < o.obj(); }
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109 bool operator>(oop o) const { return obj() > o.obj(); }
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110 bool operator<=(oop o) const { return obj() <= o.obj(); }
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111 bool operator>=(oop o) const { return obj() >= o.obj(); }
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112 bool operator!() const { return !obj(); }
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113
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114 // Cast
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115 operator void* () const { return (void *)obj(); }
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116 operator HeapWord* () const { return (HeapWord*)obj(); }
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117 operator oopDesc* () const { return obj(); }
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118 operator intptr_t* () const { return (intptr_t*)obj(); }
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119 operator PromotedObject* () const { return (PromotedObject*)obj(); }
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120 operator markOop () const { return markOop(obj()); }
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121
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122 operator address () const { return (address)obj(); }
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123 operator intptr_t () const { return (intptr_t)obj(); }
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124
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125 // from javaCalls.cpp
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126 operator jobject () const { return (jobject)obj(); }
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127 // from javaClasses.cpp
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128 operator JavaThread* () const { return (JavaThread*)obj(); }
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129 // from jvm.cpp
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130 operator jlong* () const { return (jlong*)obj(); }
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131
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132 // from parNewGeneration and other things that want to get to the end of
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133 // an oop for stuff (like constMethodKlass.cpp, objArrayKlass.cpp)
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134 operator oop* () const { return (oop *)obj(); }
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135 };
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136
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137 #define DEF_OOP(type) \
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138 class type##OopDesc; \
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139 class type##Oop : public oop { \
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140 public: \
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141 type##Oop() : oop() {} \
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142 type##Oop(const volatile oop& o) : oop(o) {} \
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143 type##Oop(const void* p) : oop(p) {} \
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144 operator type##OopDesc* () const { return (type##OopDesc*)obj(); } \
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145 type##OopDesc* operator->() const { \
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146 return (type##OopDesc*)obj(); \
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147 } \
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148 }; \
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149
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150 DEF_OOP(instance);
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151 DEF_OOP(method);
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152 DEF_OOP(methodData);
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153 DEF_OOP(array);
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154 DEF_OOP(constMethod);
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155 DEF_OOP(constantPool);
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156 DEF_OOP(constantPoolCache);
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157 DEF_OOP(objArray);
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158 DEF_OOP(typeArray);
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159 DEF_OOP(symbol);
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160 DEF_OOP(klass);
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161 DEF_OOP(compiledICHolder);
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162
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163 #endif // CHECK_UNHANDLED_OOPS
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164
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165 // The klass hierarchy is separate from the oop hierarchy.
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166
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167 class Klass;
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168 class instanceKlass;
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169 class instanceRefKlass;
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170 class methodKlass;
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171 class constMethodKlass;
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172 class methodDataKlass;
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173 class klassKlass;
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174 class instanceKlassKlass;
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175 class arrayKlassKlass;
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176 class objArrayKlassKlass;
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177 class typeArrayKlassKlass;
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178 class arrayKlass;
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179 class objArrayKlass;
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180 class typeArrayKlass;
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181 class constantPoolKlass;
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182 class constantPoolCacheKlass;
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183 class symbolKlass;
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184 class compiledICHolderKlass;