Mercurial > hg > truffle
annotate src/share/vm/ci/ciMethodData.hpp @ 21936:49dad3e40b57
Convert addresses in ArrayCopyCallNode to word size
author | Stefan Anzinger <stefan.anzinger@oracle.com> |
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date | Fri, 12 Jun 2015 14:52:08 +0200 |
parents | 7848fc12602b |
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rev | line source |
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0 | 1 /* |
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2 * Copyright (c) 2001, 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 #ifndef SHARE_VM_CI_CIMETHODDATA_HPP |
26 #define SHARE_VM_CI_CIMETHODDATA_HPP | |
27 | |
28 #include "ci/ciClassList.hpp" | |
29 #include "ci/ciKlass.hpp" | |
30 #include "ci/ciObject.hpp" | |
31 #include "ci/ciUtilities.hpp" | |
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32 #include "oops/methodData.hpp" |
1972 | 33 #include "oops/oop.inline.hpp" |
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34 #include "runtime/deoptimization.hpp" |
1972 | 35 |
0 | 36 class ciBitData; |
37 class ciCounterData; | |
38 class ciJumpData; | |
39 class ciReceiverTypeData; | |
40 class ciRetData; | |
41 class ciBranchData; | |
42 class ciArrayData; | |
43 class ciMultiBranchData; | |
45
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44 class ciArgInfoData; |
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45 class ciCallTypeData; |
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46 class ciVirtualCallTypeData; |
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47 class ciParametersTypeData; |
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48 class ciSpeculativeTrapData;; |
0 | 49 |
50 typedef ProfileData ciProfileData; | |
51 | |
52 class ciBitData : public BitData { | |
53 public: | |
54 ciBitData(DataLayout* layout) : BitData(layout) {}; | |
55 }; | |
56 | |
57 class ciCounterData : public CounterData { | |
58 public: | |
59 ciCounterData(DataLayout* layout) : CounterData(layout) {}; | |
60 }; | |
61 | |
62 class ciJumpData : public JumpData { | |
63 public: | |
64 ciJumpData(DataLayout* layout) : JumpData(layout) {}; | |
65 }; | |
66 | |
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67 class ciTypeEntries { |
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68 protected: |
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69 static intptr_t translate_klass(intptr_t k) { |
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70 Klass* v = TypeEntries::valid_klass(k); |
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71 if (v != NULL) { |
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72 ciKlass* klass = CURRENT_ENV->get_klass(v); |
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73 CURRENT_ENV->ensure_metadata_alive(klass); |
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74 return with_status(klass, k); |
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75 } |
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76 return with_status(NULL, k); |
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77 } |
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78 |
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79 public: |
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80 static ciKlass* valid_ciklass(intptr_t k) { |
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81 if (!TypeEntries::is_type_none(k) && |
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82 !TypeEntries::is_type_unknown(k)) { |
13080 | 83 ciKlass* res = (ciKlass*)TypeEntries::klass_part(k); |
84 assert(res != NULL, "invalid"); | |
85 return res; | |
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86 } else { |
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87 return NULL; |
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88 } |
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89 } |
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90 |
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91 static intptr_t with_status(ciKlass* k, intptr_t in) { |
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92 return TypeEntries::with_status((intptr_t)k, in); |
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93 } |
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94 |
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95 #ifndef PRODUCT |
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96 static void print_ciklass(outputStream* st, intptr_t k); |
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97 #endif |
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98 }; |
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99 |
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100 class ciTypeStackSlotEntries : public TypeStackSlotEntries, ciTypeEntries { |
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101 public: |
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102 void translate_type_data_from(const TypeStackSlotEntries* args); |
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103 |
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104 ciKlass* valid_type(int i) const { |
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105 return valid_ciklass(type(i)); |
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106 } |
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107 |
12966 | 108 bool maybe_null(int i) const { |
109 return was_null_seen(type(i)); | |
110 } | |
111 | |
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112 #ifndef PRODUCT |
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113 void print_data_on(outputStream* st) const; |
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114 #endif |
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115 }; |
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116 |
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117 class ciReturnTypeEntry : public ReturnTypeEntry, ciTypeEntries { |
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118 public: |
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119 void translate_type_data_from(const ReturnTypeEntry* ret); |
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120 |
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121 ciKlass* valid_type() const { |
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122 return valid_ciklass(type()); |
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123 } |
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124 |
12966 | 125 bool maybe_null() const { |
126 return was_null_seen(type()); | |
127 } | |
128 | |
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129 #ifndef PRODUCT |
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130 void print_data_on(outputStream* st) const; |
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131 #endif |
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132 }; |
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133 |
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134 class ciCallTypeData : public CallTypeData { |
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135 public: |
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136 ciCallTypeData(DataLayout* layout) : CallTypeData(layout) {} |
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137 |
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138 ciTypeStackSlotEntries* args() const { return (ciTypeStackSlotEntries*)CallTypeData::args(); } |
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139 ciReturnTypeEntry* ret() const { return (ciReturnTypeEntry*)CallTypeData::ret(); } |
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140 |
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141 void translate_from(const ProfileData* data) { |
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142 if (has_arguments()) { |
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143 args()->translate_type_data_from(data->as_CallTypeData()->args()); |
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144 } |
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145 if (has_return()) { |
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146 ret()->translate_type_data_from(data->as_CallTypeData()->ret()); |
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147 } |
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148 } |
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149 |
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150 intptr_t argument_type(int i) const { |
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151 assert(has_arguments(), "no arg type profiling data"); |
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152 return args()->type(i); |
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153 } |
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154 |
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155 ciKlass* valid_argument_type(int i) const { |
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156 assert(has_arguments(), "no arg type profiling data"); |
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157 return args()->valid_type(i); |
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158 } |
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159 |
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160 intptr_t return_type() const { |
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161 assert(has_return(), "no ret type profiling data"); |
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162 return ret()->type(); |
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163 } |
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164 |
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165 ciKlass* valid_return_type() const { |
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166 assert(has_return(), "no ret type profiling data"); |
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167 return ret()->valid_type(); |
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168 } |
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169 |
12966 | 170 bool argument_maybe_null(int i) const { |
171 return args()->maybe_null(i); | |
172 } | |
173 | |
174 bool return_maybe_null() const { | |
175 return ret()->maybe_null(); | |
176 } | |
177 | |
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178 #ifndef PRODUCT |
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179 void print_data_on(outputStream* st, const char* extra) const; |
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180 #endif |
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181 }; |
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182 |
0 | 183 class ciReceiverTypeData : public ReceiverTypeData { |
184 public: | |
185 ciReceiverTypeData(DataLayout* layout) : ReceiverTypeData(layout) {}; | |
186 | |
187 void set_receiver(uint row, ciKlass* recv) { | |
188 assert((uint)row < row_limit(), "oob"); | |
189 set_intptr_at(receiver0_offset + row * receiver_type_row_cell_count, | |
190 (intptr_t) recv); | |
191 } | |
192 | |
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193 ciKlass* receiver(uint row) const { |
0 | 194 assert((uint)row < row_limit(), "oob"); |
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195 ciKlass* recv = (ciKlass*)intptr_at(receiver0_offset + row * receiver_type_row_cell_count); |
0 | 196 assert(recv == NULL || recv->is_klass(), "wrong type"); |
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197 return recv; |
0 | 198 } |
199 | |
200 // Copy & translate from oop based ReceiverTypeData | |
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201 virtual void translate_from(const ProfileData* data) { |
0 | 202 translate_receiver_data_from(data); |
203 } | |
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204 void translate_receiver_data_from(const ProfileData* data); |
0 | 205 #ifndef PRODUCT |
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206 void print_data_on(outputStream* st, const char* extra) const; |
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207 void print_receiver_data_on(outputStream* st) const; |
0 | 208 #endif |
209 }; | |
210 | |
211 class ciVirtualCallData : public VirtualCallData { | |
212 // Fake multiple inheritance... It's a ciReceiverTypeData also. | |
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213 ciReceiverTypeData* rtd_super() const { return (ciReceiverTypeData*) this; } |
0 | 214 |
215 public: | |
216 ciVirtualCallData(DataLayout* layout) : VirtualCallData(layout) {}; | |
217 | |
218 void set_receiver(uint row, ciKlass* recv) { | |
219 rtd_super()->set_receiver(row, recv); | |
220 } | |
221 | |
222 ciKlass* receiver(uint row) { | |
223 return rtd_super()->receiver(row); | |
224 } | |
225 | |
226 // Copy & translate from oop based VirtualCallData | |
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227 virtual void translate_from(const ProfileData* data) { |
0 | 228 rtd_super()->translate_receiver_data_from(data); |
229 } | |
230 #ifndef PRODUCT | |
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231 void print_data_on(outputStream* st, const char* extra) const; |
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232 #endif |
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233 }; |
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234 |
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235 class ciVirtualCallTypeData : public VirtualCallTypeData { |
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236 private: |
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237 // Fake multiple inheritance... It's a ciReceiverTypeData also. |
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238 ciReceiverTypeData* rtd_super() const { return (ciReceiverTypeData*) this; } |
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239 public: |
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240 ciVirtualCallTypeData(DataLayout* layout) : VirtualCallTypeData(layout) {} |
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241 |
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242 void set_receiver(uint row, ciKlass* recv) { |
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243 rtd_super()->set_receiver(row, recv); |
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244 } |
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245 |
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246 ciKlass* receiver(uint row) const { |
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247 return rtd_super()->receiver(row); |
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248 } |
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249 |
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250 ciTypeStackSlotEntries* args() const { return (ciTypeStackSlotEntries*)VirtualCallTypeData::args(); } |
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251 ciReturnTypeEntry* ret() const { return (ciReturnTypeEntry*)VirtualCallTypeData::ret(); } |
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252 |
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253 // Copy & translate from oop based VirtualCallData |
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254 virtual void translate_from(const ProfileData* data) { |
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255 rtd_super()->translate_receiver_data_from(data); |
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256 if (has_arguments()) { |
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257 args()->translate_type_data_from(data->as_VirtualCallTypeData()->args()); |
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258 } |
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259 if (has_return()) { |
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260 ret()->translate_type_data_from(data->as_VirtualCallTypeData()->ret()); |
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261 } |
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262 } |
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263 |
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264 intptr_t argument_type(int i) const { |
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265 assert(has_arguments(), "no arg type profiling data"); |
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266 return args()->type(i); |
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267 } |
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268 |
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269 ciKlass* valid_argument_type(int i) const { |
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270 assert(has_arguments(), "no arg type profiling data"); |
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271 return args()->valid_type(i); |
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272 } |
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273 |
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274 intptr_t return_type() const { |
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275 assert(has_return(), "no ret type profiling data"); |
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276 return ret()->type(); |
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277 } |
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278 |
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279 ciKlass* valid_return_type() const { |
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280 assert(has_return(), "no ret type profiling data"); |
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281 return ret()->valid_type(); |
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282 } |
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283 |
12966 | 284 bool argument_maybe_null(int i) const { |
285 return args()->maybe_null(i); | |
286 } | |
287 | |
288 bool return_maybe_null() const { | |
289 return ret()->maybe_null(); | |
290 } | |
291 | |
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292 #ifndef PRODUCT |
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293 void print_data_on(outputStream* st, const char* extra) const; |
0 | 294 #endif |
295 }; | |
296 | |
297 | |
298 class ciRetData : public RetData { | |
299 public: | |
300 ciRetData(DataLayout* layout) : RetData(layout) {}; | |
301 }; | |
302 | |
303 class ciBranchData : public BranchData { | |
304 public: | |
305 ciBranchData(DataLayout* layout) : BranchData(layout) {}; | |
306 }; | |
307 | |
308 class ciArrayData : public ArrayData { | |
309 public: | |
310 ciArrayData(DataLayout* layout) : ArrayData(layout) {}; | |
311 }; | |
312 | |
313 class ciMultiBranchData : public MultiBranchData { | |
314 public: | |
315 ciMultiBranchData(DataLayout* layout) : MultiBranchData(layout) {}; | |
316 }; | |
317 | |
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318 class ciArgInfoData : public ArgInfoData { |
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319 public: |
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320 ciArgInfoData(DataLayout* layout) : ArgInfoData(layout) {}; |
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321 }; |
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322 |
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323 class ciParametersTypeData : public ParametersTypeData { |
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324 public: |
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325 ciParametersTypeData(DataLayout* layout) : ParametersTypeData(layout) {} |
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326 |
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327 virtual void translate_from(const ProfileData* data) { |
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328 parameters()->translate_type_data_from(data->as_ParametersTypeData()->parameters()); |
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329 } |
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330 |
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331 ciTypeStackSlotEntries* parameters() const { return (ciTypeStackSlotEntries*)ParametersTypeData::parameters(); } |
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332 |
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333 ciKlass* valid_parameter_type(int i) const { |
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334 return parameters()->valid_type(i); |
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335 } |
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336 |
12966 | 337 bool parameter_maybe_null(int i) const { |
338 return parameters()->maybe_null(i); | |
339 } | |
340 | |
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341 #ifndef PRODUCT |
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342 void print_data_on(outputStream* st, const char* extra) const; |
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343 #endif |
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344 }; |
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345 |
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346 class ciSpeculativeTrapData : public SpeculativeTrapData { |
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347 public: |
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348 ciSpeculativeTrapData(DataLayout* layout) : SpeculativeTrapData(layout) {} |
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349 |
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350 virtual void translate_from(const ProfileData* data); |
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351 |
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352 ciMethod* method() const { |
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353 return (ciMethod*)intptr_at(method_offset); |
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354 } |
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355 |
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356 void set_method(ciMethod* m) { |
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357 set_intptr_at(method_offset, (intptr_t)m); |
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358 } |
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359 |
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360 #ifndef PRODUCT |
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361 void print_data_on(outputStream* st, const char* extra) const; |
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362 #endif |
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363 }; |
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364 |
0 | 365 // ciMethodData |
366 // | |
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367 // This class represents a MethodData* in the HotSpot virtual |
0 | 368 // machine. |
369 | |
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370 class ciMethodData : public ciMetadata { |
0 | 371 CI_PACKAGE_ACCESS |
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372 friend class ciReplay; |
0 | 373 |
374 private: | |
375 // Size in bytes | |
376 int _data_size; | |
377 int _extra_data_size; | |
378 | |
379 // Data entries | |
380 intptr_t* _data; | |
381 | |
382 // Cached hint for data_before() | |
383 int _hint_di; | |
384 | |
385 // Is data attached? And is it mature? | |
386 enum { empty_state, immature_state, mature_state }; | |
387 u_char _state; | |
388 | |
389 // Set this true if empty extra_data slots are ever witnessed. | |
390 u_char _saw_free_extra_data; | |
391 | |
392 // Support for interprocedural escape analysis | |
393 intx _eflags; // flags on escape information | |
394 intx _arg_local; // bit set of non-escaping arguments | |
395 intx _arg_stack; // bit set of stack-allocatable arguments | |
396 intx _arg_returned; // bit set of returned arguments | |
397 | |
398 // Maturity of the oop when the snapshot is taken. | |
399 int _current_mileage; | |
400 | |
1783 | 401 // These counters hold the age of MDO in tiered. In tiered we can have the same method |
402 // running at different compilation levels concurrently. So, in order to precisely measure | |
403 // its maturity we need separate counters. | |
404 int _invocation_counter; | |
405 int _backedge_counter; | |
406 | |
0 | 407 // Coherent snapshot of original header. |
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408 MethodData _orig; |
0 | 409 |
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410 // Dedicated area dedicated to parameters. Null if no parameter |
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411 // profiling for this method. |
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412 DataLayout* _parameters; |
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413 |
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414 ciMethodData(MethodData* md); |
0 | 415 ciMethodData(); |
416 | |
417 // Accessors | |
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418 int data_size() const { return _data_size; } |
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419 int extra_data_size() const { return _extra_data_size; } |
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420 intptr_t * data() const { return _data; } |
0 | 421 |
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422 MethodData* get_MethodData() const { |
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423 return (MethodData*)_metadata; |
0 | 424 } |
425 | |
426 const char* type_string() { return "ciMethodData"; } | |
427 | |
428 void print_impl(outputStream* st); | |
429 | |
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430 DataLayout* data_layout_at(int data_index) const { |
0 | 431 assert(data_index % sizeof(intptr_t) == 0, "unaligned"); |
432 return (DataLayout*) (((address)_data) + data_index); | |
433 } | |
434 | |
435 bool out_of_bounds(int data_index) { | |
436 return data_index >= data_size(); | |
437 } | |
438 | |
439 // hint accessors | |
440 int hint_di() const { return _hint_di; } | |
441 void set_hint_di(int di) { | |
442 assert(!out_of_bounds(di), "hint_di out of bounds"); | |
443 _hint_di = di; | |
444 } | |
445 ciProfileData* data_before(int bci) { | |
446 // avoid SEGV on this edge case | |
447 if (data_size() == 0) | |
448 return NULL; | |
449 int hint = hint_di(); | |
450 if (data_layout_at(hint)->bci() <= bci) | |
451 return data_at(hint); | |
452 return first_data(); | |
453 } | |
454 | |
455 | |
456 // What is the index of the first data entry? | |
457 int first_di() { return 0; } | |
458 | |
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459 ciArgInfoData *arg_info() const; |
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460 |
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461 address data_base() const { |
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462 return (address) _data; |
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463 } |
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464 DataLayout* limit_data_position() const { |
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465 return (DataLayout*)((address)data_base() + _data_size); |
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466 } |
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467 |
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468 void load_extra_data(); |
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469 ciProfileData* bci_to_extra_data(int bci, ciMethod* m, bool& two_free_slots); |
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470 |
0 | 471 public: |
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472 bool is_method_data() const { return true; } |
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473 |
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474 bool is_empty() { return _state == empty_state; } |
0 | 475 bool is_mature() { return _state == mature_state; } |
476 | |
477 int creation_mileage() { return _orig.creation_mileage(); } | |
478 int current_mileage() { return _current_mileage; } | |
479 | |
1783 | 480 int invocation_count() { return _invocation_counter; } |
481 int backedge_count() { return _backedge_counter; } | |
17780 | 482 |
483 #if INCLUDE_RTM_OPT | |
484 // return cached value | |
485 int rtm_state() { | |
486 if (is_empty()) { | |
487 return NoRTM; | |
488 } else { | |
489 return get_MethodData()->rtm_state(); | |
490 } | |
491 } | |
492 #endif | |
493 | |
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494 // Transfer information about the method to MethodData*. |
1783 | 495 // would_profile means we would like to profile this method, |
496 // meaning it's not trivial. | |
497 void set_would_profile(bool p); | |
498 // Also set the numer of loops and blocks in the method. | |
499 // Again, this is used to determine if a method is trivial. | |
500 void set_compilation_stats(short loops, short blocks); | |
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501 // If the compiler finds a profiled type that is known statically |
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502 // for sure, set it in the MethodData |
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503 void set_argument_type(int bci, int i, ciKlass* k); |
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504 void set_parameter_type(int i, ciKlass* k); |
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505 void set_return_type(int bci, ciKlass* k); |
1783 | 506 |
0 | 507 void load_data(); |
508 | |
509 // Convert a dp (data pointer) to a di (data index). | |
510 int dp_to_di(address dp) { | |
511 return dp - ((address)_data); | |
512 } | |
513 | |
514 // Get the data at an arbitrary (sort of) data index. | |
515 ciProfileData* data_at(int data_index); | |
516 | |
517 // Walk through the data in order. | |
518 ciProfileData* first_data() { return data_at(first_di()); } | |
519 ciProfileData* next_data(ciProfileData* current); | |
520 bool is_valid(ciProfileData* current) { return current != NULL; } | |
521 | |
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522 DataLayout* extra_data_base() const { return limit_data_position(); } |
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523 |
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524 // Get the data at an arbitrary bci, or NULL if there is none. If m |
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525 // is not NULL look for a SpeculativeTrapData if any first. |
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526 ciProfileData* bci_to_data(int bci, ciMethod* m = NULL); |
0 | 527 |
528 uint overflow_trap_count() const { | |
529 return _orig.overflow_trap_count(); | |
530 } | |
531 uint overflow_recompile_count() const { | |
532 return _orig.overflow_recompile_count(); | |
533 } | |
534 uint decompile_count() const { | |
535 return _orig.decompile_count(); | |
536 } | |
537 uint trap_count(int reason) const { | |
538 return _orig.trap_count(reason); | |
539 } | |
540 uint trap_reason_limit() const { return _orig.trap_reason_limit(); } | |
541 uint trap_count_limit() const { return _orig.trap_count_limit(); } | |
542 | |
543 // Helpful query functions that decode trap_state. | |
544 int has_trap_at(ciProfileData* data, int reason); | |
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545 int has_trap_at(int bci, ciMethod* m, int reason) { |
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546 assert((m != NULL) == Deoptimization::reason_is_speculate(reason), "inconsistent method/reason"); |
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547 return has_trap_at(bci_to_data(bci, m), reason); |
0 | 548 } |
549 int trap_recompiled_at(ciProfileData* data); | |
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550 int trap_recompiled_at(int bci, ciMethod* m) { |
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551 return trap_recompiled_at(bci_to_data(bci, m)); |
0 | 552 } |
553 | |
554 void clear_escape_info(); | |
555 bool has_escape_info(); | |
556 void update_escape_info(); | |
557 | |
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558 void set_eflag(MethodData::EscapeFlag f); |
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559 void clear_eflag(MethodData::EscapeFlag f); |
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560 bool eflag_set(MethodData::EscapeFlag f) const; |
0 | 561 |
562 void set_arg_local(int i); | |
563 void set_arg_stack(int i); | |
564 void set_arg_returned(int i); | |
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565 void set_arg_modified(int arg, uint val); |
0 | 566 |
567 bool is_arg_local(int i) const; | |
568 bool is_arg_stack(int i) const; | |
569 bool is_arg_returned(int i) const; | |
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570 uint arg_modified(int arg) const; |
0 | 571 |
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572 ciParametersTypeData* parameters_type_data() const { |
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573 return _parameters != NULL ? new ciParametersTypeData(_parameters) : NULL; |
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574 } |
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575 |
0 | 576 // Code generation helper |
577 ByteSize offset_of_slot(ciProfileData* data, ByteSize slot_offset_in_data); | |
578 int byte_offset_of_slot(ciProfileData* data, ByteSize slot_offset_in_data) { return in_bytes(offset_of_slot(data, slot_offset_in_data)); } | |
579 | |
580 #ifndef PRODUCT | |
581 // printing support for method data | |
582 void print(); | |
583 void print_data_on(outputStream* st); | |
584 #endif | |
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585 void dump_replay_data(outputStream* out); |
0 | 586 }; |
1972 | 587 |
588 #endif // SHARE_VM_CI_CIMETHODDATA_HPP |