Mercurial > hg > truffle
annotate src/share/vm/ci/ciObject.hpp @ 1478:5571b97fc1ec
More JNI global handle clean ups.
author | Thomas Wuerthinger <wuerthinger@ssw.jku.at> |
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date | Fri, 26 Nov 2010 19:45:05 +0100 |
parents | 35069ca331f2 |
children | 2d26b0046e0d |
rev | line source |
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0 | 1 /* |
2 * Copyright 1999-2006 Sun Microsystems, Inc. All Rights Reserved. | |
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 * | |
19 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara, | |
20 * CA 95054 USA or visit www.sun.com if you need additional information or | |
21 * have any questions. | |
22 * | |
23 */ | |
24 | |
25 // ciObject | |
26 // | |
27 // This class represents an oop in the HotSpot virtual machine. | |
28 // Its subclasses are structured in a hierarchy which mirrors | |
29 // an aggregate of the VM's oop and klass hierarchies (see | |
30 // oopHierarchy.hpp). Each instance of ciObject holds a handle | |
31 // to a corresponding oop on the VM side and provides routines | |
32 // for accessing the information in its oop. By using the ciObject | |
33 // hierarchy for accessing oops in the VM, the compiler ensures | |
34 // that it is safe with respect to garbage collection; that is, | |
35 // GC and compilation can proceed independently without | |
36 // interference. | |
37 // | |
38 // Within the VM, the oop and klass hierarchies are separate. | |
39 // The compiler interface does not preserve this separation -- | |
40 // the distinction between `klassOop' and `Klass' are not | |
41 // reflected in the interface and instead the Klass hierarchy | |
42 // is directly modeled as the subclasses of ciKlass. | |
43 class ciObject : public ResourceObj { | |
44 CI_PACKAGE_ACCESS | |
45 friend class ciEnv; | |
46 | |
47 private: | |
48 // A JNI handle referring to an oop in the VM. This | |
49 // handle may, in a small set of cases, correctly be NULL. | |
50 jobject _handle; | |
51 ciKlass* _klass; | |
52 uint _ident; | |
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53 bool _temp_global; |
0 | 54 |
989 | 55 enum { FLAG_BITS = 2 }; |
0 | 56 enum { |
989 | 57 PERM_FLAG = 1, |
58 SCAVENGABLE_FLAG = 2 | |
0 | 59 }; |
60 protected: | |
61 ciObject(); | |
62 ciObject(oop o); | |
63 ciObject(Handle h); | |
64 ciObject(ciKlass* klass); | |
65 | |
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66 public: |
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67 virtual void cleanup() { |
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68 if (_temp_global && _handle != NULL && JNIHandles::is_global_handle(_handle)) { |
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69 JNIHandles::destroy_global(_handle); |
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70 } |
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71 } |
0 | 72 jobject handle() const { return _handle; } |
73 // Get the VM oop that this object holds. | |
74 oop get_oop() const { | |
75 assert(_handle != NULL, "null oop"); | |
76 return JNIHandles::resolve_non_null(_handle); | |
77 } | |
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78 protected: |
0 | 79 |
989 | 80 void init_flags_from(oop x) { |
81 int flags = 0; | |
82 if (x != NULL) { | |
83 if (x->is_perm()) | |
84 flags |= PERM_FLAG; | |
85 if (x->is_scavengable()) | |
86 flags |= SCAVENGABLE_FLAG; | |
87 } | |
88 _ident |= flags; | |
0 | 89 } |
90 | |
91 // Virtual behavior of the print() method. | |
92 virtual void print_impl(outputStream* st) {} | |
93 | |
94 virtual const char* type_string() { return "ciObject"; } | |
95 | |
96 void set_ident(uint id); | |
97 public: | |
98 // The klass of this ciObject. | |
99 ciKlass* klass(); | |
100 | |
101 // A number unique to this object. | |
102 uint ident(); | |
103 | |
104 // Are two ciObjects equal? | |
105 bool equals(ciObject* obj); | |
106 | |
107 // A hash value for the convenience of compilers. | |
108 int hash(); | |
109 | |
989 | 110 // Tells if this oop has an encoding as a constant. |
111 // True if is_scavengable is false. | |
112 // Also true if ScavengeRootsInCode is non-zero. | |
0 | 113 // If it does not have an encoding, the compiler is responsible for |
114 // making other arrangements for dealing with the oop. | |
989 | 115 // See ciEnv::make_array |
116 bool can_be_constant(); | |
117 | |
118 // Tells if this oop should be made a constant. | |
119 // True if is_scavengable is false or ScavengeRootsInCode > 1. | |
120 bool should_be_constant(); | |
0 | 121 |
122 // Is this object guaranteed to be in the permanent part of the heap? | |
123 // If so, CollectedHeap::can_elide_permanent_oop_store_barriers is relevant. | |
124 // If the answer is false, no guarantees are made. | |
125 bool is_perm() { return (_ident & PERM_FLAG) != 0; } | |
126 | |
989 | 127 // Might this object possibly move during a scavenge operation? |
128 // If the answer is true and ScavengeRootsInCode==0, the oop cannot be embedded in code. | |
129 bool is_scavengable() { return (_ident & SCAVENGABLE_FLAG) != 0; } | |
130 | |
0 | 131 // The address which the compiler should embed into the |
132 // generated code to represent this oop. This address | |
133 // is not the true address of the oop -- it will get patched | |
134 // during nmethod creation. | |
135 // | |
136 // Usage note: no address arithmetic allowed. Oop must | |
137 // be registered with the oopRecorder. | |
989 | 138 jobject constant_encoding(); |
0 | 139 |
140 // What kind of ciObject is this? | |
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; } |
0 | 144 virtual bool is_instance() { return false; } |
145 virtual bool is_method() { return false; } | |
146 virtual bool is_method_data() { return false; } | |
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147 virtual bool is_method_handle() const { return false; } |
0 | 148 virtual bool is_array() { return false; } |
149 virtual bool is_obj_array() { return false; } | |
150 virtual bool is_type_array() { return false; } | |
151 virtual bool is_symbol() { return false; } | |
152 virtual bool is_type() { return false; } | |
153 virtual bool is_return_address() { return false; } | |
154 virtual bool is_klass() { return false; } | |
155 virtual bool is_instance_klass() { return false; } | |
156 virtual bool is_method_klass() { return false; } | |
157 virtual bool is_array_klass() { return false; } | |
158 virtual bool is_obj_array_klass() { return false; } | |
159 virtual bool is_type_array_klass() { return false; } | |
160 virtual bool is_symbol_klass() { return false; } | |
161 virtual bool is_klass_klass() { return false; } | |
162 virtual bool is_instance_klass_klass() { return false; } | |
163 virtual bool is_array_klass_klass() { return false; } | |
164 virtual bool is_obj_array_klass_klass() { return false; } | |
165 virtual bool is_type_array_klass_klass() { return false; } | |
166 | |
167 // Is this a type or value which has no associated class? | |
168 // It is true of primitive types and null objects. | |
169 virtual bool is_classless() const { return false; } | |
170 | |
171 // Is this ciObject a Java Language Object? That is, | |
172 // is the ciObject an instance or an array | |
173 virtual bool is_java_object() { return false; } | |
174 | |
175 // Does this ciObject represent a Java Language class? | |
176 // That is, is the ciObject an instanceKlass or arrayKlass? | |
177 virtual bool is_java_klass() { return false; } | |
178 | |
179 // Is this ciObject the ciInstanceKlass representing | |
180 // java.lang.Object()? | |
181 virtual bool is_java_lang_Object() { return false; } | |
182 | |
183 // Does this ciObject refer to a real oop in the VM? | |
184 // | |
185 // Note: some ciObjects refer to oops which have yet to be | |
186 // created. We refer to these as "unloaded". Specifically, | |
187 // there are unloaded ciMethods, ciObjArrayKlasses, and | |
188 // ciInstanceKlasses. By convention the ciNullObject is | |
189 // considered loaded, and primitive types are considered loaded. | |
190 bool is_loaded() const { | |
191 return handle() != NULL || is_classless(); | |
192 } | |
193 | |
194 // Subclass casting with assertions. | |
195 ciNullObject* as_null_object() { | |
196 assert(is_null_object(), "bad cast"); | |
197 return (ciNullObject*)this; | |
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 } |
0 | 207 ciInstance* as_instance() { |
208 assert(is_instance(), "bad cast"); | |
209 return (ciInstance*)this; | |
210 } | |
211 ciMethod* as_method() { | |
212 assert(is_method(), "bad cast"); | |
213 return (ciMethod*)this; | |
214 } | |
215 ciMethodData* as_method_data() { | |
216 assert(is_method_data(), "bad cast"); | |
217 return (ciMethodData*)this; | |
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 } |
0 | 223 ciArray* as_array() { |
224 assert(is_array(), "bad cast"); | |
225 return (ciArray*)this; | |
226 } | |
227 ciObjArray* as_obj_array() { | |
228 assert(is_obj_array(), "bad cast"); | |
229 return (ciObjArray*)this; | |
230 } | |
231 ciTypeArray* as_type_array() { | |
232 assert(is_type_array(), "bad cast"); | |
233 return (ciTypeArray*)this; | |
234 } | |
235 ciSymbol* as_symbol() { | |
236 assert(is_symbol(), "bad cast"); | |
237 return (ciSymbol*)this; | |
238 } | |
239 ciType* as_type() { | |
240 assert(is_type(), "bad cast"); | |
241 return (ciType*)this; | |
242 } | |
243 ciReturnAddress* as_return_address() { | |
244 assert(is_return_address(), "bad cast"); | |
245 return (ciReturnAddress*)this; | |
246 } | |
247 ciKlass* as_klass() { | |
248 assert(is_klass(), "bad cast"); | |
249 return (ciKlass*)this; | |
250 } | |
251 ciInstanceKlass* as_instance_klass() { | |
252 assert(is_instance_klass(), "bad cast"); | |
253 return (ciInstanceKlass*)this; | |
254 } | |
255 ciMethodKlass* as_method_klass() { | |
256 assert(is_method_klass(), "bad cast"); | |
257 return (ciMethodKlass*)this; | |
258 } | |
259 ciArrayKlass* as_array_klass() { | |
260 assert(is_array_klass(), "bad cast"); | |
261 return (ciArrayKlass*)this; | |
262 } | |
263 ciObjArrayKlass* as_obj_array_klass() { | |
264 assert(is_obj_array_klass(), "bad cast"); | |
265 return (ciObjArrayKlass*)this; | |
266 } | |
267 ciTypeArrayKlass* as_type_array_klass() { | |
268 assert(is_type_array_klass(), "bad cast"); | |
269 return (ciTypeArrayKlass*)this; | |
270 } | |
271 ciSymbolKlass* as_symbol_klass() { | |
272 assert(is_symbol_klass(), "bad cast"); | |
273 return (ciSymbolKlass*)this; | |
274 } | |
275 ciKlassKlass* as_klass_klass() { | |
276 assert(is_klass_klass(), "bad cast"); | |
277 return (ciKlassKlass*)this; | |
278 } | |
279 ciInstanceKlassKlass* as_instance_klass_klass() { | |
280 assert(is_instance_klass_klass(), "bad cast"); | |
281 return (ciInstanceKlassKlass*)this; | |
282 } | |
283 ciArrayKlassKlass* as_array_klass_klass() { | |
284 assert(is_array_klass_klass(), "bad cast"); | |
285 return (ciArrayKlassKlass*)this; | |
286 } | |
287 ciObjArrayKlassKlass* as_obj_array_klass_klass() { | |
288 assert(is_obj_array_klass_klass(), "bad cast"); | |
289 return (ciObjArrayKlassKlass*)this; | |
290 } | |
291 ciTypeArrayKlassKlass* as_type_array_klass_klass() { | |
292 assert(is_type_array_klass_klass(), "bad cast"); | |
293 return (ciTypeArrayKlassKlass*)this; | |
294 } | |
295 | |
296 // Print debugging output about this ciObject. | |
297 void print(outputStream* st = tty); | |
298 | |
299 // Print debugging output about the oop this ciObject represents. | |
300 void print_oop(outputStream* st = tty); | |
301 }; |