annotate src/share/vm/ci/ciObject.hpp @ 1972:f95d63e2154a

6989984: Use standard include model for Hospot Summary: Replaced MakeDeps and the includeDB files with more standardized solutions. Reviewed-by: coleenp, kvn, kamg
author stefank
date Tue, 23 Nov 2010 13:22:55 -0800
parents c18cbe5936b8
children 06f017f7daa7 3582bf76420e
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1 /*
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2 * Copyright (c) 1999, 2010, Oracle and/or its affiliates. All rights reserved.
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3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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4 *
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5 * This code is free software; you can redistribute it and/or modify it
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6 * under the terms of the GNU General Public License version 2 only, as
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7 * published by the Free Software Foundation.
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8 *
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9 * This code is distributed in the hope that it will be useful, but WITHOUT
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10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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12 * version 2 for more details (a copy is included in the LICENSE file that
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13 * accompanied this code).
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14 *
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15 * You should have received a copy of the GNU General Public License version
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16 * 2 along with this work; if not, write to the Free Software Foundation,
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17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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18 *
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19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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20 * or visit www.oracle.com if you need additional information or have any
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21 * questions.
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22 *
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23 */
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24
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25 #ifndef SHARE_VM_CI_CIOBJECT_HPP
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26 #define SHARE_VM_CI_CIOBJECT_HPP
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27
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28 #include "ci/ciClassList.hpp"
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29 #include "memory/allocation.hpp"
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30 #include "runtime/handles.hpp"
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31 #include "runtime/jniHandles.hpp"
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32
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33 // ciObject
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34 //
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35 // This class represents an oop in the HotSpot virtual machine.
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36 // Its subclasses are structured in a hierarchy which mirrors
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37 // an aggregate of the VM's oop and klass hierarchies (see
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38 // oopHierarchy.hpp). Each instance of ciObject holds a handle
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39 // to a corresponding oop on the VM side and provides routines
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40 // for accessing the information in its oop. By using the ciObject
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41 // hierarchy for accessing oops in the VM, the compiler ensures
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42 // that it is safe with respect to garbage collection; that is,
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43 // GC and compilation can proceed independently without
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44 // interference.
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45 //
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46 // Within the VM, the oop and klass hierarchies are separate.
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47 // The compiler interface does not preserve this separation --
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48 // the distinction between `klassOop' and `Klass' are not
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49 // reflected in the interface and instead the Klass hierarchy
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50 // is directly modeled as the subclasses of ciKlass.
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51 class ciObject : public ResourceObj {
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52 CI_PACKAGE_ACCESS
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53 friend class ciEnv;
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54
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55 private:
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56 // A JNI handle referring to an oop in the VM. This
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57 // handle may, in a small set of cases, correctly be NULL.
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58 jobject _handle;
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59 ciKlass* _klass;
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60 uint _ident;
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61
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62 enum { FLAG_BITS = 2 };
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63 enum {
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64 PERM_FLAG = 1,
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65 SCAVENGABLE_FLAG = 2
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66 };
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67 protected:
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68 ciObject();
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69 ciObject(oop o);
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70 ciObject(Handle h);
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71 ciObject(ciKlass* klass);
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72
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73 jobject handle() const { return _handle; }
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74 // Get the VM oop that this object holds.
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75 oop get_oop() const {
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76 assert(_handle != NULL, "null oop");
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77 return JNIHandles::resolve_non_null(_handle);
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78 }
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79
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80 void init_flags_from(oop x) {
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81 int flags = 0;
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82 if (x != NULL) {
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83 if (x->is_perm())
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84 flags |= PERM_FLAG;
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85 if (x->is_scavengable())
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86 flags |= SCAVENGABLE_FLAG;
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87 }
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88 _ident |= flags;
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89 }
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90
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91 // Virtual behavior of the print() method.
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92 virtual void print_impl(outputStream* st) {}
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93
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94 virtual const char* type_string() { return "ciObject"; }
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95
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96 void set_ident(uint id);
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97 public:
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98 // The klass of this ciObject.
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99 ciKlass* klass();
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100
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101 // A number unique to this object.
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102 uint ident();
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103
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104 // Are two ciObjects equal?
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105 bool equals(ciObject* obj);
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106
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107 // A hash value for the convenience of compilers.
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108 int hash();
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109
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110 // Tells if this oop has an encoding as a constant.
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111 // True if is_scavengable is false.
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112 // Also true if ScavengeRootsInCode is non-zero.
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113 // If it does not have an encoding, the compiler is responsible for
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114 // making other arrangements for dealing with the oop.
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115 // See ciEnv::make_array
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116 bool can_be_constant();
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117
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118 // Tells if this oop should be made a constant.
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119 // True if is_scavengable is false or ScavengeRootsInCode > 1.
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120 bool should_be_constant();
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121
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122 // Is this object guaranteed to be in the permanent part of the heap?
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123 // If so, CollectedHeap::can_elide_permanent_oop_store_barriers is relevant.
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124 // If the answer is false, no guarantees are made.
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125 bool is_perm() { return (_ident & PERM_FLAG) != 0; }
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126
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127 // Might this object possibly move during a scavenge operation?
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128 // If the answer is true and ScavengeRootsInCode==0, the oop cannot be embedded in code.
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129 bool is_scavengable() { return (_ident & SCAVENGABLE_FLAG) != 0; }
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130
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131 // The address which the compiler should embed into the
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132 // generated code to represent this oop. This address
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133 // is not the true address of the oop -- it will get patched
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134 // during nmethod creation.
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135 //
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136 // Usage note: no address arithmetic allowed. Oop must
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137 // be registered with the oopRecorder.
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138 jobject constant_encoding();
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139
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140 // What kind of ciObject is this?
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141 virtual bool is_null_object() const { return false; }
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142 virtual bool is_call_site() const { return false; }
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143 virtual bool is_cpcache() const { return false; }
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144 virtual bool is_instance() { return false; }
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145 virtual bool is_method() { return false; }
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146 virtual bool is_method_data() { return false; }
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147 virtual bool is_method_handle() const { return false; }
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148 virtual bool is_array() { return false; }
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149 virtual bool is_obj_array() { return false; }
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150 virtual bool is_type_array() { return false; }
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151 virtual bool is_symbol() { return false; }
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152 virtual bool is_type() { return false; }
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153 virtual bool is_return_address() { return false; }
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154 virtual bool is_klass() { return false; }
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155 virtual bool is_instance_klass() { return false; }
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156 virtual bool is_method_klass() { return false; }
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157 virtual bool is_array_klass() { return false; }
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158 virtual bool is_obj_array_klass() { return false; }
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159 virtual bool is_type_array_klass() { return false; }
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160 virtual bool is_symbol_klass() { return false; }
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161 virtual bool is_klass_klass() { return false; }
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162 virtual bool is_instance_klass_klass() { return false; }
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163 virtual bool is_array_klass_klass() { return false; }
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164 virtual bool is_obj_array_klass_klass() { return false; }
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165 virtual bool is_type_array_klass_klass() { return false; }
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166
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167 // Is this a type or value which has no associated class?
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168 // It is true of primitive types and null objects.
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169 virtual bool is_classless() const { return false; }
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170
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171 // Is this ciObject a Java Language Object? That is,
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172 // is the ciObject an instance or an array
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173 virtual bool is_java_object() { return false; }
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174
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175 // Does this ciObject represent a Java Language class?
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176 // That is, is the ciObject an instanceKlass or arrayKlass?
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177 virtual bool is_java_klass() { return false; }
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178
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179 // Is this ciObject the ciInstanceKlass representing
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180 // java.lang.Object()?
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181 virtual bool is_java_lang_Object() { return false; }
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182
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183 // Does this ciObject refer to a real oop in the VM?
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184 //
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185 // Note: some ciObjects refer to oops which have yet to be
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186 // created. We refer to these as "unloaded". Specifically,
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187 // there are unloaded ciMethods, ciObjArrayKlasses, and
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188 // ciInstanceKlasses. By convention the ciNullObject is
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189 // considered loaded, and primitive types are considered loaded.
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190 bool is_loaded() const {
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191 return handle() != NULL || is_classless();
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192 }
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193
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194 // Subclass casting with assertions.
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195 ciNullObject* as_null_object() {
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196 assert(is_null_object(), "bad cast");
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197 return (ciNullObject*)this;
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198 }
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199 ciCallSite* as_call_site() {
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200 assert(is_call_site(), "bad cast");
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201 return (ciCallSite*) this;
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202 }
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203 ciCPCache* as_cpcache() {
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204 assert(is_cpcache(), "bad cast");
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205 return (ciCPCache*) this;
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206 }
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207 ciInstance* as_instance() {
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208 assert(is_instance(), "bad cast");
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209 return (ciInstance*)this;
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210 }
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211 ciMethod* as_method() {
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212 assert(is_method(), "bad cast");
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213 return (ciMethod*)this;
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214 }
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215 ciMethodData* as_method_data() {
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216 assert(is_method_data(), "bad cast");
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217 return (ciMethodData*)this;
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218 }
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219 ciMethodHandle* as_method_handle() {
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220 assert(is_method_handle(), "bad cast");
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221 return (ciMethodHandle*) this;
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222 }
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223 ciArray* as_array() {
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224 assert(is_array(), "bad cast");
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225 return (ciArray*)this;
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226 }
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227 ciObjArray* as_obj_array() {
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228 assert(is_obj_array(), "bad cast");
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229 return (ciObjArray*)this;
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230 }
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231 ciTypeArray* as_type_array() {
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232 assert(is_type_array(), "bad cast");
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233 return (ciTypeArray*)this;
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234 }
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235 ciSymbol* as_symbol() {
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236 assert(is_symbol(), "bad cast");
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237 return (ciSymbol*)this;
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238 }
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239 ciType* as_type() {
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240 assert(is_type(), "bad cast");
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241 return (ciType*)this;
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242 }
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243 ciReturnAddress* as_return_address() {
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244 assert(is_return_address(), "bad cast");
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245 return (ciReturnAddress*)this;
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246 }
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247 ciKlass* as_klass() {
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248 assert(is_klass(), "bad cast");
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249 return (ciKlass*)this;
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250 }
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251 ciInstanceKlass* as_instance_klass() {
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252 assert(is_instance_klass(), "bad cast");
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253 return (ciInstanceKlass*)this;
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254 }
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255 ciMethodKlass* as_method_klass() {
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256 assert(is_method_klass(), "bad cast");
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257 return (ciMethodKlass*)this;
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258 }
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259 ciArrayKlass* as_array_klass() {
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260 assert(is_array_klass(), "bad cast");
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261 return (ciArrayKlass*)this;
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262 }
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263 ciObjArrayKlass* as_obj_array_klass() {
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264 assert(is_obj_array_klass(), "bad cast");
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265 return (ciObjArrayKlass*)this;
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266 }
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267 ciTypeArrayKlass* as_type_array_klass() {
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268 assert(is_type_array_klass(), "bad cast");
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269 return (ciTypeArrayKlass*)this;
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270 }
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271 ciSymbolKlass* as_symbol_klass() {
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272 assert(is_symbol_klass(), "bad cast");
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273 return (ciSymbolKlass*)this;
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274 }
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275 ciKlassKlass* as_klass_klass() {
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276 assert(is_klass_klass(), "bad cast");
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277 return (ciKlassKlass*)this;
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278 }
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279 ciInstanceKlassKlass* as_instance_klass_klass() {
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280 assert(is_instance_klass_klass(), "bad cast");
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281 return (ciInstanceKlassKlass*)this;
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282 }
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283 ciArrayKlassKlass* as_array_klass_klass() {
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284 assert(is_array_klass_klass(), "bad cast");
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285 return (ciArrayKlassKlass*)this;
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286 }
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287 ciObjArrayKlassKlass* as_obj_array_klass_klass() {
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288 assert(is_obj_array_klass_klass(), "bad cast");
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289 return (ciObjArrayKlassKlass*)this;
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290 }
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291 ciTypeArrayKlassKlass* as_type_array_klass_klass() {
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292 assert(is_type_array_klass_klass(), "bad cast");
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293 return (ciTypeArrayKlassKlass*)this;
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294 }
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295
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296 // Print debugging output about this ciObject.
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297 void print(outputStream* st = tty);
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298
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299 // Print debugging output about the oop this ciObject represents.
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300 void print_oop(outputStream* st = tty);
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301 };
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302
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303 #endif // SHARE_VM_CI_CIOBJECT_HPP