Mercurial > hg > truffle
annotate src/share/vm/prims/methodHandles.cpp @ 1912:8213b0f5c92d
6981777: implement JSR 292 EG adjustments from summer 2010
Summary: Small bug fix to make "raw" adapters work for JDK changes under 6981777
Reviewed-by: twisti
author | jrose |
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date | Sat, 30 Oct 2010 12:19:07 -0700 |
parents | 5beba6174298 |
children | f95d63e2154a |
rev | line source |
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710 | 1 /* |
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2 * Copyright (c) 2008, 2010, Oracle and/or its affiliates. All rights reserved. |
710 | 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. |
710 | 22 * |
23 */ | |
24 | |
25 /* | |
26 * JSR 292 reference implementation: method handles | |
27 */ | |
28 | |
29 #include "incls/_precompiled.incl" | |
30 #include "incls/_methodHandles.cpp.incl" | |
31 | |
32 bool MethodHandles::_enabled = false; // set true after successful native linkage | |
33 | |
34 MethodHandleEntry* MethodHandles::_entries[MethodHandles::_EK_LIMIT] = {NULL}; | |
35 const char* MethodHandles::_entry_names[_EK_LIMIT+1] = { | |
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36 "raise_exception", |
710 | 37 "invokestatic", // how a MH emulates invokestatic |
38 "invokespecial", // ditto for the other invokes... | |
39 "invokevirtual", | |
40 "invokeinterface", | |
41 "bound_ref", // these are for BMH... | |
42 "bound_int", | |
43 "bound_long", | |
44 "bound_ref_direct", // (direct versions have a direct methodOop) | |
45 "bound_int_direct", | |
46 "bound_long_direct", | |
47 | |
48 // starting at _adapter_mh_first: | |
49 "adapter_retype_only", // these are for AMH... | |
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50 "adapter_retype_raw", |
710 | 51 "adapter_check_cast", |
52 "adapter_prim_to_prim", | |
53 "adapter_ref_to_prim", | |
54 "adapter_prim_to_ref", | |
55 "adapter_swap_args", | |
56 "adapter_rot_args", | |
57 "adapter_dup_args", | |
58 "adapter_drop_args", | |
59 "adapter_collect_args", | |
60 "adapter_spread_args", | |
61 "adapter_flyby", | |
62 "adapter_ricochet", | |
63 | |
64 // optimized adapter types: | |
65 "adapter_swap_args/1", | |
66 "adapter_swap_args/2", | |
67 "adapter_rot_args/1,up", | |
68 "adapter_rot_args/1,down", | |
69 "adapter_rot_args/2,up", | |
70 "adapter_rot_args/2,down", | |
71 "adapter_prim_to_prim/i2i", | |
72 "adapter_prim_to_prim/l2i", | |
73 "adapter_prim_to_prim/d2f", | |
74 "adapter_prim_to_prim/i2l", | |
75 "adapter_prim_to_prim/f2d", | |
76 "adapter_ref_to_prim/unboxi", | |
77 "adapter_ref_to_prim/unboxl", | |
78 "adapter_spread_args/0", | |
79 "adapter_spread_args/1", | |
80 "adapter_spread_args/more", | |
81 | |
82 NULL | |
83 }; | |
84 | |
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85 // Adapters. |
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86 MethodHandlesAdapterBlob* MethodHandles::_adapter_code = NULL; |
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87 int MethodHandles::_adapter_code_size = StubRoutines::method_handles_adapters_code_size; |
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88 |
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89 jobject MethodHandles::_raise_exception_method; |
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90 |
710 | 91 #ifdef ASSERT |
92 bool MethodHandles::spot_check_entry_names() { | |
93 assert(!strcmp(entry_name(_invokestatic_mh), "invokestatic"), ""); | |
94 assert(!strcmp(entry_name(_bound_ref_mh), "bound_ref"), ""); | |
95 assert(!strcmp(entry_name(_adapter_retype_only), "adapter_retype_only"), ""); | |
96 assert(!strcmp(entry_name(_adapter_ricochet), "adapter_ricochet"), ""); | |
97 assert(!strcmp(entry_name(_adapter_opt_unboxi), "adapter_ref_to_prim/unboxi"), ""); | |
98 return true; | |
99 } | |
100 #endif | |
101 | |
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102 |
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103 //------------------------------------------------------------------------------ |
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104 // MethodHandles::generate_adapters |
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105 // |
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106 void MethodHandles::generate_adapters() { |
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107 if (!EnableMethodHandles || SystemDictionary::MethodHandle_klass() == NULL) return; |
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108 |
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109 assert(_adapter_code == NULL, "generate only once"); |
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110 |
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111 ResourceMark rm; |
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112 TraceTime timer("MethodHandles adapters generation", TraceStartupTime); |
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113 _adapter_code = MethodHandlesAdapterBlob::create(_adapter_code_size); |
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114 if (_adapter_code == NULL) |
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115 vm_exit_out_of_memory(_adapter_code_size, "CodeCache: no room for MethodHandles adapters"); |
1748 | 116 CodeBuffer code(_adapter_code); |
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117 MethodHandlesAdapterGenerator g(&code); |
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118 g.generate(); |
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119 } |
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120 |
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121 |
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122 //------------------------------------------------------------------------------ |
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123 // MethodHandlesAdapterGenerator::generate |
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124 // |
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125 void MethodHandlesAdapterGenerator::generate() { |
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126 // Generate generic method handle adapters. |
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127 for (MethodHandles::EntryKind ek = MethodHandles::_EK_FIRST; |
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128 ek < MethodHandles::_EK_LIMIT; |
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129 ek = MethodHandles::EntryKind(1 + (int)ek)) { |
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130 StubCodeMark mark(this, "MethodHandle", MethodHandles::entry_name(ek)); |
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131 MethodHandles::generate_method_handle_stub(_masm, ek); |
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132 } |
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133 } |
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134 |
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135 |
710 | 136 void MethodHandles::set_enabled(bool z) { |
137 if (_enabled != z) { | |
138 guarantee(z && EnableMethodHandles, "can only enable once, and only if -XX:+EnableMethodHandles"); | |
139 _enabled = z; | |
140 } | |
141 } | |
142 | |
143 // Note: A method which does not have a TRAPS argument cannot block in the GC | |
144 // or throw exceptions. Such methods are used in this file to do something quick | |
145 // and local, like parse a data structure. For speed, such methods work on plain | |
146 // oops, not handles. Trapping methods uniformly operate on handles. | |
147 | |
148 methodOop MethodHandles::decode_vmtarget(oop vmtarget, int vmindex, oop mtype, | |
149 klassOop& receiver_limit_result, int& decode_flags_result) { | |
150 if (vmtarget == NULL) return NULL; | |
151 assert(methodOopDesc::nonvirtual_vtable_index < 0, "encoding"); | |
152 if (vmindex < 0) { | |
153 // this DMH performs no dispatch; it is directly bound to a methodOop | |
154 // A MemberName may either be directly bound to a methodOop, | |
155 // or it may use the klass/index form; both forms mean the same thing. | |
156 methodOop m = decode_methodOop(methodOop(vmtarget), decode_flags_result); | |
157 if ((decode_flags_result & _dmf_has_receiver) != 0 | |
158 && java_dyn_MethodType::is_instance(mtype)) { | |
159 // Extract receiver type restriction from mtype.ptypes[0]. | |
160 objArrayOop ptypes = java_dyn_MethodType::ptypes(mtype); | |
161 oop ptype0 = (ptypes == NULL || ptypes->length() < 1) ? oop(NULL) : ptypes->obj_at(0); | |
162 if (java_lang_Class::is_instance(ptype0)) | |
163 receiver_limit_result = java_lang_Class::as_klassOop(ptype0); | |
164 } | |
165 if (vmindex == methodOopDesc::nonvirtual_vtable_index) { | |
166 // this DMH can be an "invokespecial" version | |
167 decode_flags_result &= ~_dmf_does_dispatch; | |
168 } else { | |
169 assert(vmindex == methodOopDesc::invalid_vtable_index, "random vmindex?"); | |
170 } | |
171 return m; | |
172 } else { | |
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173 assert(vmtarget->is_klass(), "must be class or interface"); |
710 | 174 decode_flags_result |= MethodHandles::_dmf_does_dispatch; |
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175 decode_flags_result |= MethodHandles::_dmf_has_receiver; |
710 | 176 receiver_limit_result = (klassOop)vmtarget; |
177 Klass* tk = Klass::cast((klassOop)vmtarget); | |
178 if (tk->is_interface()) { | |
179 // an itable linkage is <interface, itable index> | |
180 decode_flags_result |= MethodHandles::_dmf_from_interface; | |
181 return klassItable::method_for_itable_index((klassOop)vmtarget, vmindex); | |
182 } else { | |
183 if (!tk->oop_is_instance()) | |
1142 | 184 tk = instanceKlass::cast(SystemDictionary::Object_klass()); |
710 | 185 return ((instanceKlass*)tk)->method_at_vtable(vmindex); |
186 } | |
187 } | |
188 } | |
189 | |
190 // MemberName and DirectMethodHandle have the same linkage to the JVM internals. | |
191 // (MemberName is the non-operational name used for queries and setup.) | |
192 | |
193 methodOop MethodHandles::decode_DirectMethodHandle(oop mh, klassOop& receiver_limit_result, int& decode_flags_result) { | |
194 oop vmtarget = sun_dyn_DirectMethodHandle::vmtarget(mh); | |
195 int vmindex = sun_dyn_DirectMethodHandle::vmindex(mh); | |
196 oop mtype = sun_dyn_DirectMethodHandle::type(mh); | |
197 return decode_vmtarget(vmtarget, vmindex, mtype, receiver_limit_result, decode_flags_result); | |
198 } | |
199 | |
200 methodOop MethodHandles::decode_BoundMethodHandle(oop mh, klassOop& receiver_limit_result, int& decode_flags_result) { | |
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201 assert(sun_dyn_BoundMethodHandle::is_instance(mh), ""); |
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202 assert(mh->klass() != SystemDictionary::AdapterMethodHandle_klass(), ""); |
710 | 203 for (oop bmh = mh;;) { |
204 // Bound MHs can be stacked to bind several arguments. | |
205 oop target = java_dyn_MethodHandle::vmtarget(bmh); | |
206 if (target == NULL) return NULL; | |
207 decode_flags_result |= MethodHandles::_dmf_binds_argument; | |
208 klassOop tk = target->klass(); | |
209 if (tk == SystemDictionary::BoundMethodHandle_klass()) { | |
210 bmh = target; | |
211 continue; | |
212 } else { | |
213 if (java_dyn_MethodHandle::is_subclass(tk)) { | |
214 //assert(tk == SystemDictionary::DirectMethodHandle_klass(), "end of BMH chain must be DMH"); | |
215 return decode_MethodHandle(target, receiver_limit_result, decode_flags_result); | |
216 } else { | |
217 // Optimized case: binding a receiver to a non-dispatched DMH | |
218 // short-circuits directly to the methodOop. | |
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219 // (It might be another argument besides a receiver also.) |
710 | 220 assert(target->is_method(), "must be a simple method"); |
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221 decode_flags_result |= MethodHandles::_dmf_binds_method; |
710 | 222 methodOop m = (methodOop) target; |
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223 if (!m->is_static()) |
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224 decode_flags_result |= MethodHandles::_dmf_has_receiver; |
710 | 225 return m; |
226 } | |
227 } | |
228 } | |
229 } | |
230 | |
231 methodOop MethodHandles::decode_AdapterMethodHandle(oop mh, klassOop& receiver_limit_result, int& decode_flags_result) { | |
232 assert(mh->klass() == SystemDictionary::AdapterMethodHandle_klass(), ""); | |
233 for (oop amh = mh;;) { | |
234 // Adapter MHs can be stacked to convert several arguments. | |
235 int conv_op = adapter_conversion_op(sun_dyn_AdapterMethodHandle::conversion(amh)); | |
236 decode_flags_result |= (_dmf_adapter_lsb << conv_op) & _DMF_ADAPTER_MASK; | |
237 oop target = java_dyn_MethodHandle::vmtarget(amh); | |
238 if (target == NULL) return NULL; | |
239 klassOop tk = target->klass(); | |
240 if (tk == SystemDictionary::AdapterMethodHandle_klass()) { | |
241 amh = target; | |
242 continue; | |
243 } else { | |
244 // must be a BMH (which will bind some more arguments) or a DMH (for the final call) | |
245 return MethodHandles::decode_MethodHandle(target, receiver_limit_result, decode_flags_result); | |
246 } | |
247 } | |
248 } | |
249 | |
250 methodOop MethodHandles::decode_MethodHandle(oop mh, klassOop& receiver_limit_result, int& decode_flags_result) { | |
251 if (mh == NULL) return NULL; | |
252 klassOop mhk = mh->klass(); | |
253 assert(java_dyn_MethodHandle::is_subclass(mhk), "must be a MethodHandle"); | |
254 if (mhk == SystemDictionary::DirectMethodHandle_klass()) { | |
255 return decode_DirectMethodHandle(mh, receiver_limit_result, decode_flags_result); | |
256 } else if (mhk == SystemDictionary::BoundMethodHandle_klass()) { | |
257 return decode_BoundMethodHandle(mh, receiver_limit_result, decode_flags_result); | |
258 } else if (mhk == SystemDictionary::AdapterMethodHandle_klass()) { | |
259 return decode_AdapterMethodHandle(mh, receiver_limit_result, decode_flags_result); | |
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260 } else if (sun_dyn_BoundMethodHandle::is_subclass(mhk)) { |
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261 // could be a JavaMethodHandle (but not an adapter MH) |
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262 return decode_BoundMethodHandle(mh, receiver_limit_result, decode_flags_result); |
710 | 263 } else { |
264 assert(false, "cannot parse this MH"); | |
265 return NULL; // random MH? | |
266 } | |
267 } | |
268 | |
269 methodOop MethodHandles::decode_methodOop(methodOop m, int& decode_flags_result) { | |
270 assert(m->is_method(), ""); | |
271 if (m->is_static()) { | |
272 // check that signature begins '(L' or '([' (not '(I', '()', etc.) | |
273 symbolOop sig = m->signature(); | |
274 BasicType recv_bt = char2type(sig->byte_at(1)); | |
275 // Note: recv_bt might be T_ILLEGAL if byte_at(2) is ')' | |
276 assert(sig->byte_at(0) == '(', "must be method sig"); | |
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277 // if (recv_bt == T_OBJECT || recv_bt == T_ARRAY) |
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278 // decode_flags_result |= _dmf_has_receiver; |
710 | 279 } else { |
280 // non-static method | |
281 decode_flags_result |= _dmf_has_receiver; | |
282 if (!m->can_be_statically_bound() && !m->is_initializer()) { | |
283 decode_flags_result |= _dmf_does_dispatch; | |
284 if (Klass::cast(m->method_holder())->is_interface()) | |
285 decode_flags_result |= _dmf_from_interface; | |
286 } | |
287 } | |
288 return m; | |
289 } | |
290 | |
291 | |
292 // A trusted party is handing us a cookie to determine a method. | |
293 // Let's boil it down to the method oop they really want. | |
294 methodOop MethodHandles::decode_method(oop x, klassOop& receiver_limit_result, int& decode_flags_result) { | |
295 decode_flags_result = 0; | |
296 receiver_limit_result = NULL; | |
297 klassOop xk = x->klass(); | |
298 if (xk == Universe::methodKlassObj()) { | |
299 return decode_methodOop((methodOop) x, decode_flags_result); | |
300 } else if (xk == SystemDictionary::MemberName_klass()) { | |
301 // Note: This only works if the MemberName has already been resolved. | |
302 return decode_MemberName(x, receiver_limit_result, decode_flags_result); | |
303 } else if (java_dyn_MethodHandle::is_subclass(xk)) { | |
304 return decode_MethodHandle(x, receiver_limit_result, decode_flags_result); | |
1142 | 305 } else if (xk == SystemDictionary::reflect_Method_klass()) { |
710 | 306 oop clazz = java_lang_reflect_Method::clazz(x); |
307 int slot = java_lang_reflect_Method::slot(x); | |
308 klassOop k = java_lang_Class::as_klassOop(clazz); | |
309 if (k != NULL && Klass::cast(k)->oop_is_instance()) | |
310 return decode_methodOop(instanceKlass::cast(k)->method_with_idnum(slot), | |
311 decode_flags_result); | |
1142 | 312 } else if (xk == SystemDictionary::reflect_Constructor_klass()) { |
710 | 313 oop clazz = java_lang_reflect_Constructor::clazz(x); |
314 int slot = java_lang_reflect_Constructor::slot(x); | |
315 klassOop k = java_lang_Class::as_klassOop(clazz); | |
316 if (k != NULL && Klass::cast(k)->oop_is_instance()) | |
317 return decode_methodOop(instanceKlass::cast(k)->method_with_idnum(slot), | |
318 decode_flags_result); | |
319 } else { | |
320 // unrecognized object | |
321 assert(!x->is_method(), "already checked"); | |
322 assert(!sun_dyn_MemberName::is_instance(x), "already checked"); | |
323 } | |
324 return NULL; | |
325 } | |
326 | |
327 | |
328 int MethodHandles::decode_MethodHandle_stack_pushes(oop mh) { | |
329 if (mh->klass() == SystemDictionary::DirectMethodHandle_klass()) | |
330 return 0; // no push/pop | |
331 int this_vmslots = java_dyn_MethodHandle::vmslots(mh); | |
332 int last_vmslots = 0; | |
333 oop last_mh = mh; | |
334 for (;;) { | |
335 oop target = java_dyn_MethodHandle::vmtarget(last_mh); | |
336 if (target->klass() == SystemDictionary::DirectMethodHandle_klass()) { | |
337 last_vmslots = java_dyn_MethodHandle::vmslots(target); | |
338 break; | |
339 } else if (!java_dyn_MethodHandle::is_instance(target)) { | |
340 // might be klass or method | |
341 assert(target->is_method(), "must get here with a direct ref to method"); | |
342 last_vmslots = methodOop(target)->size_of_parameters(); | |
343 break; | |
344 } | |
345 last_mh = target; | |
346 } | |
347 // If I am called with fewer VM slots than my ultimate callee, | |
348 // it must be that I push the additionally needed slots. | |
349 // Likewise if am called with more VM slots, I will pop them. | |
350 return (last_vmslots - this_vmslots); | |
351 } | |
352 | |
353 | |
354 // MemberName support | |
355 | |
356 // import sun_dyn_MemberName.* | |
357 enum { | |
358 IS_METHOD = sun_dyn_MemberName::MN_IS_METHOD, | |
359 IS_CONSTRUCTOR = sun_dyn_MemberName::MN_IS_CONSTRUCTOR, | |
360 IS_FIELD = sun_dyn_MemberName::MN_IS_FIELD, | |
361 IS_TYPE = sun_dyn_MemberName::MN_IS_TYPE, | |
362 SEARCH_SUPERCLASSES = sun_dyn_MemberName::MN_SEARCH_SUPERCLASSES, | |
363 SEARCH_INTERFACES = sun_dyn_MemberName::MN_SEARCH_INTERFACES, | |
364 ALL_KINDS = IS_METHOD | IS_CONSTRUCTOR | IS_FIELD | IS_TYPE, | |
365 VM_INDEX_UNINITIALIZED = sun_dyn_MemberName::VM_INDEX_UNINITIALIZED | |
366 }; | |
367 | |
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368 Handle MethodHandles::new_MemberName(TRAPS) { |
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369 Handle empty; |
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370 instanceKlassHandle k(THREAD, SystemDictionary::MemberName_klass()); |
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371 if (!k->is_initialized()) k->initialize(CHECK_(empty)); |
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372 return Handle(THREAD, k->allocate_instance(THREAD)); |
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373 } |
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374 |
710 | 375 void MethodHandles::init_MemberName(oop mname_oop, oop target_oop) { |
1142 | 376 if (target_oop->klass() == SystemDictionary::reflect_Field_klass()) { |
710 | 377 oop clazz = java_lang_reflect_Field::clazz(target_oop); // fd.field_holder() |
378 int slot = java_lang_reflect_Field::slot(target_oop); // fd.index() | |
379 int mods = java_lang_reflect_Field::modifiers(target_oop); | |
380 klassOop k = java_lang_Class::as_klassOop(clazz); | |
381 int offset = instanceKlass::cast(k)->offset_from_fields(slot); | |
382 init_MemberName(mname_oop, k, accessFlags_from(mods), offset); | |
383 } else { | |
384 int decode_flags = 0; klassOop receiver_limit = NULL; | |
385 methodOop m = MethodHandles::decode_method(target_oop, | |
386 receiver_limit, decode_flags); | |
387 bool do_dispatch = ((decode_flags & MethodHandles::_dmf_does_dispatch) != 0); | |
388 init_MemberName(mname_oop, m, do_dispatch); | |
389 } | |
390 } | |
391 | |
392 void MethodHandles::init_MemberName(oop mname_oop, methodOop m, bool do_dispatch) { | |
393 int flags = ((m->is_initializer() ? IS_CONSTRUCTOR : IS_METHOD) | |
394 | (jushort)( m->access_flags().as_short() & JVM_RECOGNIZED_METHOD_MODIFIERS )); | |
395 oop vmtarget = m; | |
396 int vmindex = methodOopDesc::invalid_vtable_index; // implies no info yet | |
397 if (!do_dispatch || (flags & IS_CONSTRUCTOR) || m->can_be_statically_bound()) | |
398 vmindex = methodOopDesc::nonvirtual_vtable_index; // implies never any dispatch | |
399 assert(vmindex != VM_INDEX_UNINITIALIZED, "Java sentinel value"); | |
400 sun_dyn_MemberName::set_vmtarget(mname_oop, vmtarget); | |
401 sun_dyn_MemberName::set_vmindex(mname_oop, vmindex); | |
402 sun_dyn_MemberName::set_flags(mname_oop, flags); | |
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403 sun_dyn_MemberName::set_clazz(mname_oop, Klass::cast(m->method_holder())->java_mirror()); |
710 | 404 } |
405 | |
406 void MethodHandles::init_MemberName(oop mname_oop, klassOop field_holder, AccessFlags mods, int offset) { | |
407 int flags = (IS_FIELD | (jushort)( mods.as_short() & JVM_RECOGNIZED_FIELD_MODIFIERS )); | |
408 oop vmtarget = field_holder; | |
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409 int vmindex = offset; // determines the field uniquely when combined with static bit |
710 | 410 assert(vmindex != VM_INDEX_UNINITIALIZED, "bad alias on vmindex"); |
411 sun_dyn_MemberName::set_vmtarget(mname_oop, vmtarget); | |
412 sun_dyn_MemberName::set_vmindex(mname_oop, vmindex); | |
413 sun_dyn_MemberName::set_flags(mname_oop, flags); | |
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414 sun_dyn_MemberName::set_clazz(mname_oop, Klass::cast(field_holder)->java_mirror()); |
710 | 415 } |
416 | |
417 | |
418 methodOop MethodHandles::decode_MemberName(oop mname, klassOop& receiver_limit_result, int& decode_flags_result) { | |
419 int flags = sun_dyn_MemberName::flags(mname); | |
420 if ((flags & (IS_METHOD | IS_CONSTRUCTOR)) == 0) return NULL; // not invocable | |
421 oop vmtarget = sun_dyn_MemberName::vmtarget(mname); | |
422 int vmindex = sun_dyn_MemberName::vmindex(mname); | |
423 if (vmindex == VM_INDEX_UNINITIALIZED) return NULL; // not resolved | |
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424 methodOop m = decode_vmtarget(vmtarget, vmindex, NULL, receiver_limit_result, decode_flags_result); |
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425 oop clazz = sun_dyn_MemberName::clazz(mname); |
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426 if (clazz != NULL && java_lang_Class::is_instance(clazz)) { |
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427 klassOop klass = java_lang_Class::as_klassOop(clazz); |
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428 if (klass != NULL) receiver_limit_result = klass; |
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429 } |
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430 return m; |
710 | 431 } |
432 | |
433 // An unresolved member name is a mere symbolic reference. | |
434 // Resolving it plants a vmtarget/vmindex in it, | |
435 // which refers dirctly to JVM internals. | |
436 void MethodHandles::resolve_MemberName(Handle mname, TRAPS) { | |
437 assert(sun_dyn_MemberName::is_instance(mname()), ""); | |
438 #ifdef ASSERT | |
439 // If this assert throws, renegotiate the sentinel value used by the Java code, | |
440 // so that it is distinct from any valid vtable index value, and any special | |
441 // values defined in methodOopDesc::VtableIndexFlag. | |
442 // The point of the slop is to give the Java code and the JVM some room | |
443 // to independently specify sentinel values. | |
444 const int sentinel_slop = 10; | |
445 const int sentinel_limit = methodOopDesc::highest_unused_vtable_index_value - sentinel_slop; | |
446 assert(VM_INDEX_UNINITIALIZED < sentinel_limit, "Java sentinel != JVM sentinels"); | |
447 #endif | |
448 if (sun_dyn_MemberName::vmindex(mname()) != VM_INDEX_UNINITIALIZED) | |
449 return; // already resolved | |
450 oop defc_oop = sun_dyn_MemberName::clazz(mname()); | |
451 oop name_str = sun_dyn_MemberName::name(mname()); | |
452 oop type_str = sun_dyn_MemberName::type(mname()); | |
453 int flags = sun_dyn_MemberName::flags(mname()); | |
454 | |
455 if (defc_oop == NULL || name_str == NULL || type_str == NULL) { | |
456 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "nothing to resolve"); | |
457 } | |
458 klassOop defc_klassOop = java_lang_Class::as_klassOop(defc_oop); | |
459 defc_oop = NULL; // safety | |
460 if (defc_klassOop == NULL) return; // a primitive; no resolution possible | |
461 if (!Klass::cast(defc_klassOop)->oop_is_instance()) { | |
462 if (!Klass::cast(defc_klassOop)->oop_is_array()) return; | |
1142 | 463 defc_klassOop = SystemDictionary::Object_klass(); |
710 | 464 } |
465 instanceKlassHandle defc(THREAD, defc_klassOop); | |
466 defc_klassOop = NULL; // safety | |
467 if (defc.is_null()) { | |
468 THROW_MSG(vmSymbols::java_lang_InternalError(), "primitive class"); | |
469 } | |
470 defc->link_class(CHECK); | |
471 | |
472 // convert the external string name to an internal symbol | |
473 symbolHandle name(THREAD, java_lang_String::as_symbol_or_null(name_str)); | |
474 if (name.is_null()) return; // no such name | |
475 name_str = NULL; // safety | |
476 | |
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477 Handle polymorphic_method_type; |
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478 bool polymorphic_signature = false; |
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479 if ((flags & ALL_KINDS) == IS_METHOD && |
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480 (defc() == SystemDictionary::InvokeDynamic_klass() || |
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481 (defc() == SystemDictionary::MethodHandle_klass() && |
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482 methodOopDesc::is_method_handle_invoke_name(name())))) |
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483 polymorphic_signature = true; |
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484 |
710 | 485 // convert the external string or reflective type to an internal signature |
486 symbolHandle type; { | |
487 symbolOop type_sym = NULL; | |
488 if (java_dyn_MethodType::is_instance(type_str)) { | |
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489 type_sym = java_dyn_MethodType::as_signature(type_str, polymorphic_signature, CHECK); |
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490 if (polymorphic_signature) |
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491 polymorphic_method_type = Handle(THREAD, type_str); //preserve exactly |
710 | 492 } else if (java_lang_Class::is_instance(type_str)) { |
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493 type_sym = java_lang_Class::as_signature(type_str, false, CHECK); |
710 | 494 } else if (java_lang_String::is_instance(type_str)) { |
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495 if (polymorphic_signature) { |
710 | 496 type = java_lang_String::as_symbol(type_str, CHECK); |
497 } else { | |
498 type_sym = java_lang_String::as_symbol_or_null(type_str); | |
499 } | |
500 } else { | |
501 THROW_MSG(vmSymbols::java_lang_InternalError(), "unrecognized type"); | |
502 } | |
503 if (type_sym != NULL) | |
504 type = symbolHandle(THREAD, type_sym); | |
505 } | |
506 if (type.is_null()) return; // no such signature exists in the VM | |
507 type_str = NULL; // safety | |
508 | |
509 // Time to do the lookup. | |
510 switch (flags & ALL_KINDS) { | |
511 case IS_METHOD: | |
512 { | |
513 CallInfo result; | |
514 { | |
515 EXCEPTION_MARK; | |
516 if ((flags & JVM_ACC_STATIC) != 0) { | |
517 LinkResolver::resolve_static_call(result, | |
518 defc, name, type, KlassHandle(), false, false, THREAD); | |
519 } else if (defc->is_interface()) { | |
520 LinkResolver::resolve_interface_call(result, Handle(), defc, | |
521 defc, name, type, KlassHandle(), false, false, THREAD); | |
522 } else { | |
523 LinkResolver::resolve_virtual_call(result, Handle(), defc, | |
524 defc, name, type, KlassHandle(), false, false, THREAD); | |
525 } | |
526 if (HAS_PENDING_EXCEPTION) { | |
527 CLEAR_PENDING_EXCEPTION; | |
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528 break; // go to second chance |
710 | 529 } |
530 } | |
531 methodHandle m = result.resolved_method(); | |
532 oop vmtarget = NULL; | |
533 int vmindex = methodOopDesc::nonvirtual_vtable_index; | |
534 if (defc->is_interface()) { | |
535 vmindex = klassItable::compute_itable_index(m()); | |
536 assert(vmindex >= 0, ""); | |
537 } else if (result.has_vtable_index()) { | |
538 vmindex = result.vtable_index(); | |
539 assert(vmindex >= 0, ""); | |
540 } | |
541 assert(vmindex != VM_INDEX_UNINITIALIZED, ""); | |
542 if (vmindex < 0) { | |
543 assert(result.is_statically_bound(), ""); | |
544 vmtarget = m(); | |
545 } else { | |
546 vmtarget = result.resolved_klass()->as_klassOop(); | |
547 } | |
548 int mods = (m->access_flags().as_short() & JVM_RECOGNIZED_METHOD_MODIFIERS); | |
549 sun_dyn_MemberName::set_vmtarget(mname(), vmtarget); | |
550 sun_dyn_MemberName::set_vmindex(mname(), vmindex); | |
551 sun_dyn_MemberName::set_modifiers(mname(), mods); | |
552 DEBUG_ONLY(int junk; klassOop junk2); | |
553 assert(decode_MemberName(mname(), junk2, junk) == result.resolved_method()(), | |
554 "properly stored for later decoding"); | |
555 return; | |
556 } | |
557 case IS_CONSTRUCTOR: | |
558 { | |
559 CallInfo result; | |
560 { | |
561 EXCEPTION_MARK; | |
562 if (name() == vmSymbols::object_initializer_name()) { | |
563 LinkResolver::resolve_special_call(result, | |
564 defc, name, type, KlassHandle(), false, THREAD); | |
565 } else { | |
566 break; // will throw after end of switch | |
567 } | |
568 if (HAS_PENDING_EXCEPTION) { | |
569 CLEAR_PENDING_EXCEPTION; | |
570 return; | |
571 } | |
572 } | |
573 assert(result.is_statically_bound(), ""); | |
574 methodHandle m = result.resolved_method(); | |
575 oop vmtarget = m(); | |
576 int vmindex = methodOopDesc::nonvirtual_vtable_index; | |
577 int mods = (m->access_flags().as_short() & JVM_RECOGNIZED_METHOD_MODIFIERS); | |
578 sun_dyn_MemberName::set_vmtarget(mname(), vmtarget); | |
579 sun_dyn_MemberName::set_vmindex(mname(), vmindex); | |
580 sun_dyn_MemberName::set_modifiers(mname(), mods); | |
581 DEBUG_ONLY(int junk; klassOop junk2); | |
582 assert(decode_MemberName(mname(), junk2, junk) == result.resolved_method()(), | |
583 "properly stored for later decoding"); | |
584 return; | |
585 } | |
586 case IS_FIELD: | |
587 { | |
588 // This is taken from LinkResolver::resolve_field, sans access checks. | |
589 fieldDescriptor fd; // find_field initializes fd if found | |
590 KlassHandle sel_klass(THREAD, instanceKlass::cast(defc())->find_field(name(), type(), &fd)); | |
591 // check if field exists; i.e., if a klass containing the field def has been selected | |
592 if (sel_klass.is_null()) return; | |
593 oop vmtarget = sel_klass->as_klassOop(); | |
594 int vmindex = fd.offset(); | |
595 int mods = (fd.access_flags().as_short() & JVM_RECOGNIZED_FIELD_MODIFIERS); | |
596 if (vmindex == VM_INDEX_UNINITIALIZED) break; // should not happen | |
597 sun_dyn_MemberName::set_vmtarget(mname(), vmtarget); | |
598 sun_dyn_MemberName::set_vmindex(mname(), vmindex); | |
599 sun_dyn_MemberName::set_modifiers(mname(), mods); | |
600 return; | |
601 } | |
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602 default: |
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603 THROW_MSG(vmSymbols::java_lang_InternalError(), "unrecognized MemberName format"); |
710 | 604 } |
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605 |
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606 // Second chance. |
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607 if (polymorphic_method_type.not_null()) { |
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608 // Look on a non-null class loader. |
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609 Handle cur_class_loader; |
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610 const int nptypes = java_dyn_MethodType::ptype_count(polymorphic_method_type()); |
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611 for (int i = 0; i <= nptypes; i++) { |
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612 oop type_mirror; |
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613 if (i < nptypes) type_mirror = java_dyn_MethodType::ptype(polymorphic_method_type(), i); |
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614 else type_mirror = java_dyn_MethodType::rtype(polymorphic_method_type()); |
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615 klassOop example_type = java_lang_Class::as_klassOop(type_mirror); |
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616 if (example_type == NULL) continue; |
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617 oop class_loader = Klass::cast(example_type)->class_loader(); |
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618 if (class_loader == NULL || class_loader == cur_class_loader()) continue; |
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619 cur_class_loader = Handle(THREAD, class_loader); |
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620 methodOop m = SystemDictionary::find_method_handle_invoke(name, |
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621 type, |
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622 KlassHandle(THREAD, example_type), |
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623 THREAD); |
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624 if (HAS_PENDING_EXCEPTION) { |
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625 CLEAR_PENDING_EXCEPTION; |
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626 m = NULL; |
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627 // try again with a different class loader... |
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628 } |
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629 if (m != NULL) { |
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630 int mods = (m->access_flags().as_short() & JVM_RECOGNIZED_METHOD_MODIFIERS); |
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631 sun_dyn_MemberName::set_vmtarget(mname(), m); |
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632 sun_dyn_MemberName::set_vmindex(mname(), m->vtable_index()); |
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633 sun_dyn_MemberName::set_modifiers(mname(), mods); |
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634 return; |
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635 } |
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636 } |
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637 } |
710 | 638 } |
639 | |
640 // Conversely, a member name which is only initialized from JVM internals | |
641 // may have null defc, name, and type fields. | |
642 // Resolving it plants a vmtarget/vmindex in it, | |
643 // which refers directly to JVM internals. | |
644 void MethodHandles::expand_MemberName(Handle mname, int suppress, TRAPS) { | |
645 assert(sun_dyn_MemberName::is_instance(mname()), ""); | |
646 oop vmtarget = sun_dyn_MemberName::vmtarget(mname()); | |
647 int vmindex = sun_dyn_MemberName::vmindex(mname()); | |
648 if (vmtarget == NULL || vmindex == VM_INDEX_UNINITIALIZED) { | |
649 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "nothing to expand"); | |
650 } | |
651 | |
652 bool have_defc = (sun_dyn_MemberName::clazz(mname()) != NULL); | |
653 bool have_name = (sun_dyn_MemberName::name(mname()) != NULL); | |
654 bool have_type = (sun_dyn_MemberName::type(mname()) != NULL); | |
655 int flags = sun_dyn_MemberName::flags(mname()); | |
656 | |
657 if (suppress != 0) { | |
658 if (suppress & _suppress_defc) have_defc = true; | |
659 if (suppress & _suppress_name) have_name = true; | |
660 if (suppress & _suppress_type) have_type = true; | |
661 } | |
662 | |
663 if (have_defc && have_name && have_type) return; // nothing needed | |
664 | |
665 switch (flags & ALL_KINDS) { | |
666 case IS_METHOD: | |
667 case IS_CONSTRUCTOR: | |
668 { | |
669 klassOop receiver_limit = NULL; | |
670 int decode_flags = 0; | |
671 methodHandle m(THREAD, decode_vmtarget(vmtarget, vmindex, NULL, | |
672 receiver_limit, decode_flags)); | |
673 if (m.is_null()) break; | |
674 if (!have_defc) { | |
675 klassOop defc = m->method_holder(); | |
676 if (receiver_limit != NULL && receiver_limit != defc | |
677 && Klass::cast(receiver_limit)->is_subtype_of(defc)) | |
678 defc = receiver_limit; | |
679 sun_dyn_MemberName::set_clazz(mname(), Klass::cast(defc)->java_mirror()); | |
680 } | |
681 if (!have_name) { | |
682 //not java_lang_String::create_from_symbol; let's intern member names | |
683 Handle name = StringTable::intern(m->name(), CHECK); | |
684 sun_dyn_MemberName::set_name(mname(), name()); | |
685 } | |
686 if (!have_type) { | |
687 Handle type = java_lang_String::create_from_symbol(m->signature(), CHECK); | |
688 sun_dyn_MemberName::set_type(mname(), type()); | |
689 } | |
690 return; | |
691 } | |
692 case IS_FIELD: | |
693 { | |
694 // This is taken from LinkResolver::resolve_field, sans access checks. | |
695 if (!vmtarget->is_klass()) break; | |
696 if (!Klass::cast((klassOop) vmtarget)->oop_is_instance()) break; | |
697 instanceKlassHandle defc(THREAD, (klassOop) vmtarget); | |
698 bool is_static = ((flags & JVM_ACC_STATIC) != 0); | |
699 fieldDescriptor fd; // find_field initializes fd if found | |
700 if (!defc->find_field_from_offset(vmindex, is_static, &fd)) | |
701 break; // cannot expand | |
702 if (!have_defc) { | |
703 sun_dyn_MemberName::set_clazz(mname(), defc->java_mirror()); | |
704 } | |
705 if (!have_name) { | |
706 //not java_lang_String::create_from_symbol; let's intern member names | |
707 Handle name = StringTable::intern(fd.name(), CHECK); | |
708 sun_dyn_MemberName::set_name(mname(), name()); | |
709 } | |
710 if (!have_type) { | |
711 Handle type = java_lang_String::create_from_symbol(fd.signature(), CHECK); | |
712 sun_dyn_MemberName::set_type(mname(), type()); | |
713 } | |
714 return; | |
715 } | |
716 } | |
717 THROW_MSG(vmSymbols::java_lang_InternalError(), "unrecognized MemberName format"); | |
718 } | |
719 | |
720 int MethodHandles::find_MemberNames(klassOop k, | |
721 symbolOop name, symbolOop sig, | |
722 int mflags, klassOop caller, | |
723 int skip, objArrayOop results) { | |
724 DEBUG_ONLY(No_Safepoint_Verifier nsv); | |
725 // this code contains no safepoints! | |
726 | |
727 // %%% take caller into account! | |
728 | |
729 if (k == NULL || !Klass::cast(k)->oop_is_instance()) return -1; | |
730 | |
731 int rfill = 0, rlimit = results->length(), rskip = skip; | |
732 // overflow measurement: | |
733 int overflow = 0, overflow_limit = MAX2(1000, rlimit); | |
734 | |
735 int match_flags = mflags; | |
736 bool search_superc = ((match_flags & SEARCH_SUPERCLASSES) != 0); | |
737 bool search_intfc = ((match_flags & SEARCH_INTERFACES) != 0); | |
738 bool local_only = !(search_superc | search_intfc); | |
739 bool classes_only = false; | |
740 | |
741 if (name != NULL) { | |
742 if (name->utf8_length() == 0) return 0; // a match is not possible | |
743 } | |
744 if (sig != NULL) { | |
745 if (sig->utf8_length() == 0) return 0; // a match is not possible | |
746 if (sig->byte_at(0) == '(') | |
747 match_flags &= ~(IS_FIELD | IS_TYPE); | |
748 else | |
749 match_flags &= ~(IS_CONSTRUCTOR | IS_METHOD); | |
750 } | |
751 | |
752 if ((match_flags & IS_TYPE) != 0) { | |
753 // NYI, and Core Reflection works quite well for this query | |
754 } | |
755 | |
756 if ((match_flags & IS_FIELD) != 0) { | |
757 for (FieldStream st(k, local_only, !search_intfc); !st.eos(); st.next()) { | |
758 if (name != NULL && st.name() != name) | |
759 continue; | |
760 if (sig != NULL && st.signature() != sig) | |
761 continue; | |
762 // passed the filters | |
763 if (rskip > 0) { | |
764 --rskip; | |
765 } else if (rfill < rlimit) { | |
766 oop result = results->obj_at(rfill++); | |
767 if (!sun_dyn_MemberName::is_instance(result)) | |
768 return -99; // caller bug! | |
769 MethodHandles::init_MemberName(result, st.klass()->as_klassOop(), st.access_flags(), st.offset()); | |
770 } else if (++overflow >= overflow_limit) { | |
771 match_flags = 0; break; // got tired of looking at overflow | |
772 } | |
773 } | |
774 } | |
775 | |
776 if ((match_flags & (IS_METHOD | IS_CONSTRUCTOR)) != 0) { | |
777 // watch out for these guys: | |
778 symbolOop init_name = vmSymbols::object_initializer_name(); | |
779 symbolOop clinit_name = vmSymbols::class_initializer_name(); | |
780 if (name == clinit_name) clinit_name = NULL; // hack for exposing <clinit> | |
781 bool negate_name_test = false; | |
782 // fix name so that it captures the intention of IS_CONSTRUCTOR | |
783 if (!(match_flags & IS_METHOD)) { | |
784 // constructors only | |
785 if (name == NULL) { | |
786 name = init_name; | |
787 } else if (name != init_name) { | |
788 return 0; // no constructors of this method name | |
789 } | |
790 } else if (!(match_flags & IS_CONSTRUCTOR)) { | |
791 // methods only | |
792 if (name == NULL) { | |
793 name = init_name; | |
794 negate_name_test = true; // if we see the name, we *omit* the entry | |
795 } else if (name == init_name) { | |
796 return 0; // no methods of this constructor name | |
797 } | |
798 } else { | |
799 // caller will accept either sort; no need to adjust name | |
800 } | |
801 for (MethodStream st(k, local_only, !search_intfc); !st.eos(); st.next()) { | |
802 methodOop m = st.method(); | |
803 symbolOop m_name = m->name(); | |
804 if (m_name == clinit_name) | |
805 continue; | |
806 if (name != NULL && ((m_name != name) ^ negate_name_test)) | |
807 continue; | |
808 if (sig != NULL && m->signature() != sig) | |
809 continue; | |
810 // passed the filters | |
811 if (rskip > 0) { | |
812 --rskip; | |
813 } else if (rfill < rlimit) { | |
814 oop result = results->obj_at(rfill++); | |
815 if (!sun_dyn_MemberName::is_instance(result)) | |
816 return -99; // caller bug! | |
817 MethodHandles::init_MemberName(result, m, true); | |
818 } else if (++overflow >= overflow_limit) { | |
819 match_flags = 0; break; // got tired of looking at overflow | |
820 } | |
821 } | |
822 } | |
823 | |
824 // return number of elements we at leasted wanted to initialize | |
825 return rfill + overflow; | |
826 } | |
827 | |
828 | |
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829 // Decode this java.lang.Class object into an instanceKlass, if possible. |
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830 // Throw IAE if not |
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831 instanceKlassHandle MethodHandles::resolve_instance_klass(oop java_mirror_oop, TRAPS) { |
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832 instanceKlassHandle empty; |
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833 klassOop caller = NULL; |
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834 if (java_lang_Class::is_instance(java_mirror_oop)) { |
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835 caller = java_lang_Class::as_klassOop(java_mirror_oop); |
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836 } |
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837 if (caller == NULL || !Klass::cast(caller)->oop_is_instance()) { |
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838 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(), "not a class", empty); |
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839 } |
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840 return instanceKlassHandle(THREAD, caller); |
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841 } |
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842 |
710 | 843 |
844 | |
845 // Decode the vmtarget field of a method handle. | |
846 // Sanitize out methodOops, klassOops, and any other non-Java data. | |
847 // This is for debugging and reflection. | |
848 oop MethodHandles::encode_target(Handle mh, int format, TRAPS) { | |
849 assert(java_dyn_MethodHandle::is_instance(mh()), "must be a MH"); | |
850 if (format == ETF_HANDLE_OR_METHOD_NAME) { | |
851 oop target = java_dyn_MethodHandle::vmtarget(mh()); | |
852 if (target == NULL) { | |
853 return NULL; // unformed MH | |
854 } | |
855 klassOop tklass = target->klass(); | |
1142 | 856 if (Klass::cast(tklass)->is_subclass_of(SystemDictionary::Object_klass())) { |
710 | 857 return target; // target is another MH (or something else?) |
858 } | |
859 } | |
860 if (format == ETF_DIRECT_HANDLE) { | |
861 oop target = mh(); | |
862 for (;;) { | |
863 if (target->klass() == SystemDictionary::DirectMethodHandle_klass()) { | |
864 return target; | |
865 } | |
866 if (!java_dyn_MethodHandle::is_instance(target)){ | |
867 return NULL; // unformed MH | |
868 } | |
869 target = java_dyn_MethodHandle::vmtarget(target); | |
870 } | |
871 } | |
872 // cases of metadata in MH.vmtarget: | |
873 // - AMH can have methodOop for static invoke with bound receiver | |
874 // - DMH can have methodOop for static invoke (on variable receiver) | |
875 // - DMH can have klassOop for dispatched (non-static) invoke | |
876 klassOop receiver_limit = NULL; | |
877 int decode_flags = 0; | |
878 methodOop m = decode_MethodHandle(mh(), receiver_limit, decode_flags); | |
879 if (m == NULL) return NULL; | |
880 switch (format) { | |
881 case ETF_REFLECT_METHOD: | |
882 // same as jni_ToReflectedMethod: | |
883 if (m->is_initializer()) { | |
884 return Reflection::new_constructor(m, THREAD); | |
885 } else { | |
886 return Reflection::new_method(m, UseNewReflection, false, THREAD); | |
887 } | |
888 | |
889 case ETF_HANDLE_OR_METHOD_NAME: // method, not handle | |
890 case ETF_METHOD_NAME: | |
891 { | |
892 if (SystemDictionary::MemberName_klass() == NULL) break; | |
893 instanceKlassHandle mname_klass(THREAD, SystemDictionary::MemberName_klass()); | |
894 mname_klass->initialize(CHECK_NULL); | |
895 Handle mname = mname_klass->allocate_instance_handle(CHECK_NULL); | |
896 sun_dyn_MemberName::set_vmindex(mname(), VM_INDEX_UNINITIALIZED); | |
897 bool do_dispatch = ((decode_flags & MethodHandles::_dmf_does_dispatch) != 0); | |
898 init_MemberName(mname(), m, do_dispatch); | |
899 expand_MemberName(mname, 0, CHECK_NULL); | |
900 return mname(); | |
901 } | |
902 } | |
903 | |
904 // Unknown format code. | |
905 char msg[50]; | |
906 jio_snprintf(msg, sizeof(msg), "unknown getTarget format=%d", format); | |
907 THROW_MSG_NULL(vmSymbols::java_lang_IllegalArgumentException(), msg); | |
908 } | |
909 | |
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910 static const char* always_null_names[] = { |
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911 "java/lang/Void", |
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912 "java/lang/Null", |
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913 //"java/lang/Nothing", |
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914 "sun/dyn/empty/Empty", |
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915 NULL |
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916 }; |
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917 |
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918 static bool is_always_null_type(klassOop klass) { |
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919 if (!Klass::cast(klass)->oop_is_instance()) return false; |
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920 instanceKlass* ik = instanceKlass::cast(klass); |
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921 // Must be on the boot class path: |
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922 if (ik->class_loader() != NULL) return false; |
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923 // Check the name. |
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924 symbolOop name = ik->name(); |
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925 for (int i = 0; ; i++) { |
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926 const char* test_name = always_null_names[i]; |
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927 if (test_name == NULL) break; |
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928 if (name->equals(test_name)) |
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929 return true; |
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930 } |
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931 return false; |
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932 } |
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933 |
710 | 934 bool MethodHandles::class_cast_needed(klassOop src, klassOop dst) { |
1142 | 935 if (src == dst || dst == SystemDictionary::Object_klass()) |
710 | 936 return false; // quickest checks |
937 Klass* srck = Klass::cast(src); | |
938 Klass* dstk = Klass::cast(dst); | |
939 if (dstk->is_interface()) { | |
940 // interface receivers can safely be viewed as untyped, | |
941 // because interface calls always include a dynamic check | |
1142 | 942 //dstk = Klass::cast(SystemDictionary::Object_klass()); |
710 | 943 return false; |
944 } | |
945 if (srck->is_interface()) { | |
946 // interface arguments must be viewed as untyped | |
1142 | 947 //srck = Klass::cast(SystemDictionary::Object_klass()); |
710 | 948 return true; |
949 } | |
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950 if (is_always_null_type(src)) { |
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951 // some source types are known to be never instantiated; |
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952 // they represent references which are always null |
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953 // such null references never fail to convert safely |
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954 return false; |
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955 } |
710 | 956 return !srck->is_subclass_of(dstk->as_klassOop()); |
957 } | |
958 | |
959 static oop object_java_mirror() { | |
1142 | 960 return Klass::cast(SystemDictionary::Object_klass())->java_mirror(); |
710 | 961 } |
962 | |
963 bool MethodHandles::same_basic_type_for_arguments(BasicType src, | |
964 BasicType dst, | |
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965 bool raw, |
710 | 966 bool for_return) { |
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967 if (for_return) { |
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968 // return values can always be forgotten: |
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969 if (dst == T_VOID) return true; |
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970 if (src == T_VOID) return raw && (dst == T_INT); |
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971 // We allow caller to receive a garbage int, which is harmless. |
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972 // This trick is pulled by trusted code (see VerifyType.canPassRaw). |
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973 } |
710 | 974 assert(src != T_VOID && dst != T_VOID, "should not be here"); |
975 if (src == dst) return true; | |
976 if (type2size[src] != type2size[dst]) return false; | |
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977 if (src == T_OBJECT || dst == T_OBJECT) return false; |
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978 if (raw) return true; // bitwise reinterpretation; caller guarantees safety |
710 | 979 // allow reinterpretation casts for integral widening |
980 if (is_subword_type(src)) { // subwords can fit in int or other subwords | |
981 if (dst == T_INT) // any subword fits in an int | |
982 return true; | |
983 if (src == T_BOOLEAN) // boolean fits in any subword | |
984 return is_subword_type(dst); | |
985 if (src == T_BYTE && dst == T_SHORT) | |
986 return true; // remaining case: byte fits in short | |
987 } | |
988 // allow float/fixed reinterpretation casts | |
989 if (src == T_FLOAT) return dst == T_INT; | |
990 if (src == T_INT) return dst == T_FLOAT; | |
991 if (src == T_DOUBLE) return dst == T_LONG; | |
992 if (src == T_LONG) return dst == T_DOUBLE; | |
993 return false; | |
994 } | |
995 | |
996 const char* MethodHandles::check_method_receiver(methodOop m, | |
997 klassOop passed_recv_type) { | |
998 assert(!m->is_static(), "caller resp."); | |
999 if (passed_recv_type == NULL) | |
1000 return "receiver type is primitive"; | |
1001 if (class_cast_needed(passed_recv_type, m->method_holder())) { | |
1002 Klass* formal = Klass::cast(m->method_holder()); | |
1003 return SharedRuntime::generate_class_cast_message("receiver type", | |
1004 formal->external_name()); | |
1005 } | |
1006 return NULL; // checks passed | |
1007 } | |
1008 | |
1009 // Verify that m's signature can be called type-safely by a method handle | |
1010 // of the given method type 'mtype'. | |
1011 // It takes a TRAPS argument because it must perform symbol lookups. | |
1012 void MethodHandles::verify_method_signature(methodHandle m, | |
1013 Handle mtype, | |
1014 int first_ptype_pos, | |
1015 KlassHandle insert_ptype, | |
1016 TRAPS) { | |
1017 objArrayHandle ptypes(THREAD, java_dyn_MethodType::ptypes(mtype())); | |
1018 int pnum = first_ptype_pos; | |
1019 int pmax = ptypes->length(); | |
1020 int mnum = 0; // method argument | |
1021 const char* err = NULL; | |
1022 for (SignatureStream ss(m->signature()); !ss.is_done(); ss.next()) { | |
1023 oop ptype_oop = NULL; | |
1024 if (ss.at_return_type()) { | |
1025 if (pnum != pmax) | |
1026 { err = "too many arguments"; break; } | |
1027 ptype_oop = java_dyn_MethodType::rtype(mtype()); | |
1028 } else { | |
1029 if (pnum >= pmax) | |
1030 { err = "not enough arguments"; break; } | |
1031 if (pnum >= 0) | |
1032 ptype_oop = ptypes->obj_at(pnum); | |
1033 else if (insert_ptype.is_null()) | |
1034 ptype_oop = NULL; | |
1035 else | |
1036 ptype_oop = insert_ptype->java_mirror(); | |
1037 pnum += 1; | |
1038 mnum += 1; | |
1039 } | |
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1040 klassOop pklass = NULL; |
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1041 BasicType ptype = T_OBJECT; |
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1042 if (ptype_oop != NULL) |
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1043 ptype = java_lang_Class::as_BasicType(ptype_oop, &pklass); |
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1044 else |
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1045 // null does not match any non-reference; use Object to report the error |
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1046 pklass = SystemDictionary::Object_klass(); |
710 | 1047 klassOop mklass = NULL; |
1048 BasicType mtype = ss.type(); | |
1049 if (mtype == T_ARRAY) mtype = T_OBJECT; // fold all refs to T_OBJECT | |
1050 if (mtype == T_OBJECT) { | |
1051 if (ptype_oop == NULL) { | |
1052 // null matches any reference | |
1053 continue; | |
1054 } | |
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1055 KlassHandle pklass_handle(THREAD, pklass); pklass = NULL; |
710 | 1056 // If we fail to resolve types at this point, we will throw an error. |
1057 symbolOop name_oop = ss.as_symbol(CHECK); | |
1058 symbolHandle name(THREAD, name_oop); | |
1059 instanceKlass* mk = instanceKlass::cast(m->method_holder()); | |
1060 Handle loader(THREAD, mk->class_loader()); | |
1061 Handle domain(THREAD, mk->protection_domain()); | |
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1062 mklass = SystemDictionary::resolve_or_null(name, loader, domain, CHECK); |
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1063 pklass = pklass_handle(); |
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1064 if (mklass == NULL && pklass != NULL && |
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1065 Klass::cast(pklass)->name() == name() && |
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1066 m->is_method_handle_invoke()) { |
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1067 // Assume a match. We can't really decode the signature of MH.invoke*. |
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1068 continue; |
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1069 } |
710 | 1070 } |
1071 if (!ss.at_return_type()) { | |
1072 err = check_argument_type_change(ptype, pklass, mtype, mklass, mnum); | |
1073 } else { | |
1074 err = check_return_type_change(mtype, mklass, ptype, pklass); // note reversal! | |
1075 } | |
1076 if (err != NULL) break; | |
1077 } | |
1078 | |
1079 if (err != NULL) { | |
1080 THROW_MSG(vmSymbols::java_lang_InternalError(), err); | |
1081 } | |
1082 } | |
1083 | |
1084 // Main routine for verifying the MethodHandle.type of a proposed | |
1085 // direct or bound-direct method handle. | |
1086 void MethodHandles::verify_method_type(methodHandle m, | |
1087 Handle mtype, | |
1088 bool has_bound_recv, | |
1089 KlassHandle bound_recv_type, | |
1090 TRAPS) { | |
1091 bool m_needs_receiver = !m->is_static(); | |
1092 | |
1093 const char* err = NULL; | |
1094 | |
1095 int first_ptype_pos = m_needs_receiver ? 1 : 0; | |
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1096 if (has_bound_recv) { |
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1097 first_ptype_pos -= 1; // ptypes do not include the bound argument; start earlier in them |
710 | 1098 if (m_needs_receiver && bound_recv_type.is_null()) |
1099 { err = "bound receiver is not an object"; goto die; } | |
1100 } | |
1101 | |
1102 if (m_needs_receiver && err == NULL) { | |
1103 objArrayOop ptypes = java_dyn_MethodType::ptypes(mtype()); | |
1104 if (ptypes->length() < first_ptype_pos) | |
1105 { err = "receiver argument is missing"; goto die; } | |
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1106 if (has_bound_recv) |
710 | 1107 err = check_method_receiver(m(), bound_recv_type->as_klassOop()); |
1108 else | |
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1109 err = check_method_receiver(m(), java_lang_Class::as_klassOop(ptypes->obj_at(first_ptype_pos-1))); |
710 | 1110 if (err != NULL) goto die; |
1111 } | |
1112 | |
1113 // Check the other arguments for mistypes. | |
1114 verify_method_signature(m, mtype, first_ptype_pos, bound_recv_type, CHECK); | |
1115 return; | |
1116 | |
1117 die: | |
1118 THROW_MSG(vmSymbols::java_lang_InternalError(), err); | |
1119 } | |
1120 | |
1121 void MethodHandles::verify_vmslots(Handle mh, TRAPS) { | |
1122 // Verify vmslots. | |
1123 int check_slots = argument_slot_count(java_dyn_MethodHandle::type(mh())); | |
1124 if (java_dyn_MethodHandle::vmslots(mh()) != check_slots) { | |
1125 THROW_MSG(vmSymbols::java_lang_InternalError(), "bad vmslots in BMH"); | |
1126 } | |
1127 } | |
1128 | |
1129 void MethodHandles::verify_vmargslot(Handle mh, int argnum, int argslot, TRAPS) { | |
1130 // Verify that argslot points at the given argnum. | |
1131 int check_slot = argument_slot(java_dyn_MethodHandle::type(mh()), argnum); | |
1132 if (argslot != check_slot || argslot < 0) { | |
1133 const char* fmt = "for argnum of %d, vmargslot is %d, should be %d"; | |
1134 size_t msglen = strlen(fmt) + 3*11 + 1; | |
1135 char* msg = NEW_RESOURCE_ARRAY(char, msglen); | |
1136 jio_snprintf(msg, msglen, fmt, argnum, argslot, check_slot); | |
1137 THROW_MSG(vmSymbols::java_lang_InternalError(), msg); | |
1138 } | |
1139 } | |
1140 | |
1141 // Verify the correspondence between two method types. | |
1142 // Apart from the advertised changes, caller method type X must | |
1143 // be able to invoke the callee method Y type with no violations | |
1144 // of type integrity. | |
1145 // Return NULL if all is well, else a short error message. | |
1146 const char* MethodHandles::check_method_type_change(oop src_mtype, int src_beg, int src_end, | |
1147 int insert_argnum, oop insert_type, | |
1148 int change_argnum, oop change_type, | |
1149 int delete_argnum, | |
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1150 oop dst_mtype, int dst_beg, int dst_end, |
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1151 bool raw) { |
710 | 1152 objArrayOop src_ptypes = java_dyn_MethodType::ptypes(src_mtype); |
1153 objArrayOop dst_ptypes = java_dyn_MethodType::ptypes(dst_mtype); | |
1154 | |
1155 int src_max = src_ptypes->length(); | |
1156 int dst_max = dst_ptypes->length(); | |
1157 | |
1158 if (src_end == -1) src_end = src_max; | |
1159 if (dst_end == -1) dst_end = dst_max; | |
1160 | |
1161 assert(0 <= src_beg && src_beg <= src_end && src_end <= src_max, "oob"); | |
1162 assert(0 <= dst_beg && dst_beg <= dst_end && dst_end <= dst_max, "oob"); | |
1163 | |
1164 // pending actions; set to -1 when done: | |
1165 int ins_idx = insert_argnum, chg_idx = change_argnum, del_idx = delete_argnum; | |
1166 | |
1167 const char* err = NULL; | |
1168 | |
1169 // Walk along each array of parameter types, including a virtual | |
1170 // NULL end marker at the end of each. | |
1171 for (int src_idx = src_beg, dst_idx = dst_beg; | |
1172 (src_idx <= src_end && dst_idx <= dst_end); | |
1173 src_idx++, dst_idx++) { | |
1174 oop src_type = (src_idx == src_end) ? oop(NULL) : src_ptypes->obj_at(src_idx); | |
1175 oop dst_type = (dst_idx == dst_end) ? oop(NULL) : dst_ptypes->obj_at(dst_idx); | |
1176 bool fix_null_src_type = false; | |
1177 | |
1178 // Perform requested edits. | |
1179 if (ins_idx == src_idx) { | |
1180 // note that the inserted guy is never affected by a change or deletion | |
1181 ins_idx = -1; | |
1182 src_type = insert_type; | |
1183 fix_null_src_type = true; | |
1184 --src_idx; // back up to process src type on next loop | |
1185 src_idx = src_end; | |
1186 } else { | |
1187 // note that the changed guy can be immediately deleted | |
1188 if (chg_idx == src_idx) { | |
1189 chg_idx = -1; | |
1190 assert(src_idx < src_end, "oob"); | |
1191 src_type = change_type; | |
1192 fix_null_src_type = true; | |
1193 } | |
1194 if (del_idx == src_idx) { | |
1195 del_idx = -1; | |
1196 assert(src_idx < src_end, "oob"); | |
1197 --dst_idx; | |
1198 continue; // rerun loop after skipping this position | |
1199 } | |
1200 } | |
1201 | |
1202 if (src_type == NULL && fix_null_src_type) | |
1203 // explicit null in this case matches any dest reference | |
1204 src_type = (java_lang_Class::is_primitive(dst_type) ? object_java_mirror() : dst_type); | |
1205 | |
1206 // Compare the two argument types. | |
1207 if (src_type != dst_type) { | |
1208 if (src_type == NULL) return "not enough arguments"; | |
1209 if (dst_type == NULL) return "too many arguments"; | |
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1210 err = check_argument_type_change(src_type, dst_type, dst_idx, raw); |
710 | 1211 if (err != NULL) return err; |
1212 } | |
1213 } | |
1214 | |
1215 // Now compare return types also. | |
1216 oop src_rtype = java_dyn_MethodType::rtype(src_mtype); | |
1217 oop dst_rtype = java_dyn_MethodType::rtype(dst_mtype); | |
1218 if (src_rtype != dst_rtype) { | |
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1219 err = check_return_type_change(dst_rtype, src_rtype, raw); // note reversal! |
710 | 1220 if (err != NULL) return err; |
1221 } | |
1222 | |
1223 assert(err == NULL, ""); | |
1224 return NULL; // all is well | |
1225 } | |
1226 | |
1227 | |
1228 const char* MethodHandles::check_argument_type_change(BasicType src_type, | |
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1229 klassOop src_klass, |
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1230 BasicType dst_type, |
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1231 klassOop dst_klass, |
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1232 int argnum, |
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1233 bool raw) { |
710 | 1234 const char* err = NULL; |
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1235 bool for_return = (argnum < 0); |
710 | 1236 |
1237 // just in case: | |
1238 if (src_type == T_ARRAY) src_type = T_OBJECT; | |
1239 if (dst_type == T_ARRAY) dst_type = T_OBJECT; | |
1240 | |
1241 // Produce some nice messages if VerifyMethodHandles is turned on: | |
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1242 if (!same_basic_type_for_arguments(src_type, dst_type, raw, for_return)) { |
710 | 1243 if (src_type == T_OBJECT) { |
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1244 if (raw && dst_type == T_INT && is_always_null_type(src_klass)) |
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1245 return NULL; // OK to convert a null pointer to a garbage int |
710 | 1246 err = ((argnum >= 0) |
1247 ? "type mismatch: passing a %s for method argument #%d, which expects primitive %s" | |
1248 : "type mismatch: returning a %s, but caller expects primitive %s"); | |
1249 } else if (dst_type == T_OBJECT) { | |
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1250 err = ((argnum >= 0) |
710 | 1251 ? "type mismatch: passing a primitive %s for method argument #%d, which expects %s" |
1252 : "type mismatch: returning a primitive %s, but caller expects %s"); | |
1253 } else { | |
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1254 err = ((argnum >= 0) |
710 | 1255 ? "type mismatch: passing a %s for method argument #%d, which expects %s" |
1256 : "type mismatch: returning a %s, but caller expects %s"); | |
1257 } | |
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1258 } else if (src_type == T_OBJECT && dst_type == T_OBJECT && |
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1259 class_cast_needed(src_klass, dst_klass)) { |
710 | 1260 if (!class_cast_needed(dst_klass, src_klass)) { |
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1261 if (raw) |
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1262 return NULL; // reverse cast is OK; the MH target is trusted to enforce it |
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1263 err = ((argnum >= 0) |
710 | 1264 ? "cast required: passing a %s for method argument #%d, which expects %s" |
1265 : "cast required: returning a %s, but caller expects %s"); | |
1266 } else { | |
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1267 err = ((argnum >= 0) |
710 | 1268 ? "reference mismatch: passing a %s for method argument #%d, which expects %s" |
1269 : "reference mismatch: returning a %s, but caller expects %s"); | |
1270 } | |
1271 } else { | |
1272 // passed the obstacle course | |
1273 return NULL; | |
1274 } | |
1275 | |
1276 // format, format, format | |
1277 const char* src_name = type2name(src_type); | |
1278 const char* dst_name = type2name(dst_type); | |
1279 if (src_type == T_OBJECT) src_name = Klass::cast(src_klass)->external_name(); | |
1280 if (dst_type == T_OBJECT) dst_name = Klass::cast(dst_klass)->external_name(); | |
1281 if (src_name == NULL) src_name = "unknown type"; | |
1282 if (dst_name == NULL) dst_name = "unknown type"; | |
1283 | |
1284 size_t msglen = strlen(err) + strlen(src_name) + strlen(dst_name) + (argnum < 10 ? 1 : 11); | |
1285 char* msg = NEW_RESOURCE_ARRAY(char, msglen + 1); | |
1286 if (argnum >= 0) { | |
1287 assert(strstr(err, "%d") != NULL, ""); | |
1288 jio_snprintf(msg, msglen, err, src_name, argnum, dst_name); | |
1289 } else { | |
1290 assert(strstr(err, "%d") == NULL, ""); | |
1291 jio_snprintf(msg, msglen, err, src_name, dst_name); | |
1292 } | |
1293 return msg; | |
1294 } | |
1295 | |
1296 // Compute the depth within the stack of the given argument, i.e., | |
1297 // the combined size of arguments to the right of the given argument. | |
1298 // For the last argument (ptypes.length-1) this will be zero. | |
1299 // For the first argument (0) this will be the size of all | |
1300 // arguments but that one. For the special number -1, this | |
1301 // will be the size of all arguments, including the first. | |
1302 // If the argument is neither -1 nor a valid argument index, | |
1303 // then return a negative number. Otherwise, the result | |
1304 // is in the range [0..vmslots] inclusive. | |
1305 int MethodHandles::argument_slot(oop method_type, int arg) { | |
1306 objArrayOop ptypes = java_dyn_MethodType::ptypes(method_type); | |
1307 int argslot = 0; | |
1308 int len = ptypes->length(); | |
1309 if (arg < -1 || arg >= len) return -99; | |
1310 for (int i = len-1; i > arg; i--) { | |
1311 BasicType bt = java_lang_Class::as_BasicType(ptypes->obj_at(i)); | |
1312 argslot += type2size[bt]; | |
1313 } | |
1314 assert(argument_slot_to_argnum(method_type, argslot) == arg, "inverse works"); | |
1315 return argslot; | |
1316 } | |
1317 | |
1318 // Given a slot number, return the argument number. | |
1319 int MethodHandles::argument_slot_to_argnum(oop method_type, int query_argslot) { | |
1320 objArrayOop ptypes = java_dyn_MethodType::ptypes(method_type); | |
1321 int argslot = 0; | |
1322 int len = ptypes->length(); | |
1323 for (int i = len-1; i >= 0; i--) { | |
1324 if (query_argslot == argslot) return i; | |
1325 BasicType bt = java_lang_Class::as_BasicType(ptypes->obj_at(i)); | |
1326 argslot += type2size[bt]; | |
1327 } | |
1328 // return pseudo-arg deepest in stack: | |
1329 if (query_argslot == argslot) return -1; | |
1330 return -99; // oob slot, or splitting a double-slot arg | |
1331 } | |
1332 | |
1333 methodHandle MethodHandles::dispatch_decoded_method(methodHandle m, | |
1334 KlassHandle receiver_limit, | |
1335 int decode_flags, | |
1336 KlassHandle receiver_klass, | |
1337 TRAPS) { | |
1338 assert((decode_flags & ~_DMF_DIRECT_MASK) == 0, "must be direct method reference"); | |
1339 assert((decode_flags & _dmf_has_receiver) != 0, "must have a receiver or first reference argument"); | |
1340 | |
1341 if (!m->is_static() && | |
1342 (receiver_klass.is_null() || !receiver_klass->is_subtype_of(m->method_holder()))) | |
1343 // given type does not match class of method, or receiver is null! | |
1344 // caller should have checked this, but let's be extra careful... | |
1345 return methodHandle(); | |
1346 | |
1347 if (receiver_limit.not_null() && | |
1348 (receiver_klass.not_null() && !receiver_klass->is_subtype_of(receiver_limit()))) | |
1349 // given type is not limited to the receiver type | |
1350 // note that a null receiver can match any reference value, for a static method | |
1351 return methodHandle(); | |
1352 | |
1353 if (!(decode_flags & MethodHandles::_dmf_does_dispatch)) { | |
1354 // pre-dispatched or static method (null receiver is OK for static) | |
1355 return m; | |
1356 | |
1357 } else if (receiver_klass.is_null()) { | |
1358 // null receiver value; cannot dispatch | |
1359 return methodHandle(); | |
1360 | |
1361 } else if (!(decode_flags & MethodHandles::_dmf_from_interface)) { | |
1362 // perform virtual dispatch | |
1363 int vtable_index = m->vtable_index(); | |
1364 guarantee(vtable_index >= 0, "valid vtable index"); | |
1365 | |
1366 // receiver_klass might be an arrayKlassOop but all vtables start at | |
1367 // the same place. The cast is to avoid virtual call and assertion. | |
1368 // See also LinkResolver::runtime_resolve_virtual_method. | |
1369 instanceKlass* inst = (instanceKlass*)Klass::cast(receiver_klass()); | |
1370 DEBUG_ONLY(inst->verify_vtable_index(vtable_index)); | |
1371 methodOop m_oop = inst->method_at_vtable(vtable_index); | |
1372 return methodHandle(THREAD, m_oop); | |
1373 | |
1374 } else { | |
1375 // perform interface dispatch | |
1376 int itable_index = klassItable::compute_itable_index(m()); | |
1377 guarantee(itable_index >= 0, "valid itable index"); | |
1378 instanceKlass* inst = instanceKlass::cast(receiver_klass()); | |
1379 methodOop m_oop = inst->method_at_itable(m->method_holder(), itable_index, THREAD); | |
1380 return methodHandle(THREAD, m_oop); | |
1381 } | |
1382 } | |
1383 | |
1384 void MethodHandles::verify_DirectMethodHandle(Handle mh, methodHandle m, TRAPS) { | |
1385 // Verify type. | |
1386 Handle mtype(THREAD, java_dyn_MethodHandle::type(mh())); | |
1387 verify_method_type(m, mtype, false, KlassHandle(), CHECK); | |
1388 | |
1389 // Verify vmslots. | |
1390 if (java_dyn_MethodHandle::vmslots(mh()) != m->size_of_parameters()) { | |
1391 THROW_MSG(vmSymbols::java_lang_InternalError(), "bad vmslots in DMH"); | |
1392 } | |
1393 } | |
1394 | |
1395 void MethodHandles::init_DirectMethodHandle(Handle mh, methodHandle m, bool do_dispatch, TRAPS) { | |
1396 // Check arguments. | |
1397 if (mh.is_null() || m.is_null() || | |
1398 (!do_dispatch && m->is_abstract())) { | |
1399 THROW(vmSymbols::java_lang_InternalError()); | |
1400 } | |
1401 | |
1402 java_dyn_MethodHandle::init_vmslots(mh()); | |
1403 | |
1404 if (VerifyMethodHandles) { | |
1405 // The privileged code which invokes this routine should not make | |
1406 // a mistake about types, but it's better to verify. | |
1407 verify_DirectMethodHandle(mh, m, CHECK); | |
1408 } | |
1409 | |
1410 // Finally, after safety checks are done, link to the target method. | |
1411 // We will follow the same path as the latter part of | |
1412 // InterpreterRuntime::resolve_invoke(), which first finds the method | |
1413 // and then decides how to populate the constant pool cache entry | |
1414 // that links the interpreter calls to the method. We need the same | |
1415 // bits, and will use the same calling sequence code. | |
1416 | |
1417 int vmindex = methodOopDesc::garbage_vtable_index; | |
1418 oop vmtarget = NULL; | |
1419 | |
1420 instanceKlass::cast(m->method_holder())->link_class(CHECK); | |
1421 | |
1422 MethodHandleEntry* me = NULL; | |
1423 if (do_dispatch && Klass::cast(m->method_holder())->is_interface()) { | |
1424 // We are simulating an invokeinterface instruction. | |
1425 // (We might also be simulating an invokevirtual on a miranda method, | |
1426 // but it is safe to treat it as an invokeinterface.) | |
1427 assert(!m->can_be_statically_bound(), "no final methods on interfaces"); | |
1428 vmindex = klassItable::compute_itable_index(m()); | |
1429 assert(vmindex >= 0, "(>=0) == do_dispatch"); | |
1430 // Set up same bits as ConstantPoolCacheEntry::set_interface_call(). | |
1431 vmtarget = m->method_holder(); // the interface | |
1432 me = MethodHandles::entry(MethodHandles::_invokeinterface_mh); | |
1433 } else if (!do_dispatch || m->can_be_statically_bound()) { | |
1434 // We are simulating an invokestatic or invokespecial instruction. | |
1435 // Set up the method pointer, just like ConstantPoolCacheEntry::set_method(). | |
1436 vmtarget = m(); | |
1437 // this does not help dispatch, but it will make it possible to parse this MH: | |
1438 vmindex = methodOopDesc::nonvirtual_vtable_index; | |
1439 assert(vmindex < 0, "(>=0) == do_dispatch"); | |
1440 if (!m->is_static()) { | |
1441 me = MethodHandles::entry(MethodHandles::_invokespecial_mh); | |
1442 } else { | |
1443 me = MethodHandles::entry(MethodHandles::_invokestatic_mh); | |
1444 // Part of the semantics of a static call is an initialization barrier. | |
1445 // For a DMH, it is done now, when the handle is created. | |
1446 Klass* k = Klass::cast(m->method_holder()); | |
1447 if (k->should_be_initialized()) { | |
1448 k->initialize(CHECK); | |
1449 } | |
1450 } | |
1451 } else { | |
1452 // We are simulating an invokevirtual instruction. | |
1453 // Set up the vtable index, just like ConstantPoolCacheEntry::set_method(). | |
1454 // The key logic is LinkResolver::runtime_resolve_virtual_method. | |
1455 vmindex = m->vtable_index(); | |
1456 vmtarget = m->method_holder(); | |
1457 me = MethodHandles::entry(MethodHandles::_invokevirtual_mh); | |
1458 } | |
1459 | |
1460 if (me == NULL) { THROW(vmSymbols::java_lang_InternalError()); } | |
1461 | |
1462 sun_dyn_DirectMethodHandle::set_vmtarget(mh(), vmtarget); | |
1463 sun_dyn_DirectMethodHandle::set_vmindex(mh(), vmindex); | |
1464 DEBUG_ONLY(int flags; klassOop rlimit); | |
1465 assert(MethodHandles::decode_method(mh(), rlimit, flags) == m(), | |
1466 "properly stored for later decoding"); | |
1467 DEBUG_ONLY(bool actual_do_dispatch = ((flags & _dmf_does_dispatch) != 0)); | |
1468 assert(!(actual_do_dispatch && !do_dispatch), | |
1469 "do not perform dispatch if !do_dispatch specified"); | |
1470 assert(actual_do_dispatch == (vmindex >= 0), "proper later decoding of do_dispatch"); | |
1471 assert(decode_MethodHandle_stack_pushes(mh()) == 0, "DMH does not move stack"); | |
1472 | |
1473 // Done! | |
1474 java_dyn_MethodHandle::set_vmentry(mh(), me); | |
1475 } | |
1476 | |
1477 void MethodHandles::verify_BoundMethodHandle_with_receiver(Handle mh, | |
1478 methodHandle m, | |
1479 TRAPS) { | |
1480 // Verify type. | |
1481 oop receiver = sun_dyn_BoundMethodHandle::argument(mh()); | |
1482 Handle mtype(THREAD, java_dyn_MethodHandle::type(mh())); | |
1483 KlassHandle bound_recv_type; | |
1484 if (receiver != NULL) bound_recv_type = KlassHandle(THREAD, receiver->klass()); | |
1485 verify_method_type(m, mtype, true, bound_recv_type, CHECK); | |
1486 | |
1487 int receiver_pos = m->size_of_parameters() - 1; | |
1488 | |
1489 // Verify MH.vmargslot, which should point at the bound receiver. | |
1490 verify_vmargslot(mh, -1, sun_dyn_BoundMethodHandle::vmargslot(mh()), CHECK); | |
1491 //verify_vmslots(mh, CHECK); | |
1492 | |
1493 // Verify vmslots. | |
1494 if (java_dyn_MethodHandle::vmslots(mh()) != receiver_pos) { | |
1495 THROW_MSG(vmSymbols::java_lang_InternalError(), "bad vmslots in BMH (receiver)"); | |
1496 } | |
1497 } | |
1498 | |
1499 // Initialize a BMH with a receiver bound directly to a methodOop. | |
1500 void MethodHandles::init_BoundMethodHandle_with_receiver(Handle mh, | |
1501 methodHandle original_m, | |
1502 KlassHandle receiver_limit, | |
1503 int decode_flags, | |
1504 TRAPS) { | |
1505 // Check arguments. | |
1506 if (mh.is_null() || original_m.is_null()) { | |
1507 THROW(vmSymbols::java_lang_InternalError()); | |
1508 } | |
1509 | |
1510 KlassHandle receiver_klass; | |
1511 { | |
1512 oop receiver_oop = sun_dyn_BoundMethodHandle::argument(mh()); | |
1513 if (receiver_oop != NULL) | |
1514 receiver_klass = KlassHandle(THREAD, receiver_oop->klass()); | |
1515 } | |
1516 methodHandle m = dispatch_decoded_method(original_m, | |
1517 receiver_limit, decode_flags, | |
1518 receiver_klass, | |
1519 CHECK); | |
1520 if (m.is_null()) { THROW(vmSymbols::java_lang_InternalError()); } | |
1521 if (m->is_abstract()) { THROW(vmSymbols::java_lang_AbstractMethodError()); } | |
1522 | |
1523 java_dyn_MethodHandle::init_vmslots(mh()); | |
1524 | |
1525 if (VerifyMethodHandles) { | |
1526 verify_BoundMethodHandle_with_receiver(mh, m, CHECK); | |
1527 } | |
1528 | |
1529 sun_dyn_BoundMethodHandle::set_vmtarget(mh(), m()); | |
1530 | |
1531 DEBUG_ONLY(int junk; klassOop junk2); | |
1532 assert(MethodHandles::decode_method(mh(), junk2, junk) == m(), "properly stored for later decoding"); | |
1533 assert(decode_MethodHandle_stack_pushes(mh()) == 1, "BMH pushes one stack slot"); | |
1534 | |
1535 // Done! | |
1536 java_dyn_MethodHandle::set_vmentry(mh(), MethodHandles::entry(MethodHandles::_bound_ref_direct_mh)); | |
1537 } | |
1538 | |
1539 void MethodHandles::verify_BoundMethodHandle(Handle mh, Handle target, int argnum, | |
1540 bool direct_to_method, TRAPS) { | |
1541 Handle ptype_handle(THREAD, | |
1542 java_dyn_MethodType::ptype(java_dyn_MethodHandle::type(target()), argnum)); | |
1543 KlassHandle ptype_klass; | |
1544 BasicType ptype = java_lang_Class::as_BasicType(ptype_handle(), &ptype_klass); | |
1545 int slots_pushed = type2size[ptype]; | |
1546 | |
1547 oop argument = sun_dyn_BoundMethodHandle::argument(mh()); | |
1548 | |
1549 const char* err = NULL; | |
1550 | |
1551 switch (ptype) { | |
1552 case T_OBJECT: | |
1553 if (argument != NULL) | |
1554 // we must implicitly convert from the arg type to the outgoing ptype | |
1555 err = check_argument_type_change(T_OBJECT, argument->klass(), ptype, ptype_klass(), argnum); | |
1556 break; | |
1557 | |
1558 case T_ARRAY: case T_VOID: | |
1559 assert(false, "array, void do not appear here"); | |
1560 default: | |
1561 if (ptype != T_INT && !is_subword_type(ptype)) { | |
1562 err = "unexpected parameter type"; | |
1563 break; | |
1564 } | |
1565 // check subrange of Integer.value, if necessary | |
1142 | 1566 if (argument == NULL || argument->klass() != SystemDictionary::Integer_klass()) { |
710 | 1567 err = "bound integer argument must be of type java.lang.Integer"; |
1568 break; | |
1569 } | |
1570 if (ptype != T_INT) { | |
1571 int value_offset = java_lang_boxing_object::value_offset_in_bytes(T_INT); | |
1572 jint value = argument->int_field(value_offset); | |
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1573 int vminfo = adapter_unbox_subword_vminfo(ptype); |
710 | 1574 jint subword = truncate_subword_from_vminfo(value, vminfo); |
1575 if (value != subword) { | |
1576 err = "bound subword value does not fit into the subword type"; | |
1577 break; | |
1578 } | |
1579 } | |
1580 break; | |
1581 case T_FLOAT: | |
1582 case T_DOUBLE: | |
1583 case T_LONG: | |
1584 { | |
1585 // we must implicitly convert from the unboxed arg type to the outgoing ptype | |
1586 BasicType argbox = java_lang_boxing_object::basic_type(argument); | |
1587 if (argbox != ptype) { | |
1588 err = check_argument_type_change(T_OBJECT, (argument == NULL | |
1142 | 1589 ? SystemDictionary::Object_klass() |
710 | 1590 : argument->klass()), |
1591 ptype, ptype_klass(), argnum); | |
1592 assert(err != NULL, "this must be an error"); | |
1593 } | |
1594 break; | |
1595 } | |
1596 } | |
1597 | |
1598 if (err == NULL) { | |
1599 DEBUG_ONLY(int this_pushes = decode_MethodHandle_stack_pushes(mh())); | |
1600 if (direct_to_method) { | |
1601 assert(this_pushes == slots_pushed, "BMH pushes one or two stack slots"); | |
1602 assert(slots_pushed <= MethodHandlePushLimit, ""); | |
1603 } else { | |
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1604 int target_pushes = decode_MethodHandle_stack_pushes(target()); |
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1605 assert(this_pushes == slots_pushed + target_pushes, "BMH stack motion must be correct"); |
710 | 1606 // do not blow the stack; use a Java-based adapter if this limit is exceeded |
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1607 // FIXME |
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1608 // if (slots_pushed + target_pushes > MethodHandlePushLimit) |
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1609 // err = "too many bound parameters"; |
710 | 1610 } |
1611 } | |
1612 | |
1613 if (err == NULL) { | |
1614 // Verify the rest of the method type. | |
1615 err = check_method_type_insertion(java_dyn_MethodHandle::type(mh()), | |
1616 argnum, ptype_handle(), | |
1617 java_dyn_MethodHandle::type(target())); | |
1618 } | |
1619 | |
1620 if (err != NULL) { | |
1621 THROW_MSG(vmSymbols::java_lang_InternalError(), err); | |
1622 } | |
1623 } | |
1624 | |
1625 void MethodHandles::init_BoundMethodHandle(Handle mh, Handle target, int argnum, TRAPS) { | |
1626 // Check arguments. | |
1627 if (mh.is_null() || target.is_null() || !java_dyn_MethodHandle::is_instance(target())) { | |
1628 THROW(vmSymbols::java_lang_InternalError()); | |
1629 } | |
1630 | |
1631 java_dyn_MethodHandle::init_vmslots(mh()); | |
1632 | |
1633 if (VerifyMethodHandles) { | |
1634 int insert_after = argnum - 1; | |
1635 verify_vmargslot(mh, insert_after, sun_dyn_BoundMethodHandle::vmargslot(mh()), CHECK); | |
1636 verify_vmslots(mh, CHECK); | |
1637 } | |
1638 | |
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1639 // Get bound type and required slots. |
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1640 oop ptype_oop = java_dyn_MethodType::ptype(java_dyn_MethodHandle::type(target()), argnum); |
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1641 BasicType ptype = java_lang_Class::as_BasicType(ptype_oop); |
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1642 int slots_pushed = type2size[ptype]; |
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1643 |
710 | 1644 // If (a) the target is a direct non-dispatched method handle, |
1645 // or (b) the target is a dispatched direct method handle and we | |
1646 // are binding the receiver, cut out the middle-man. | |
1647 // Do this by decoding the DMH and using its methodOop directly as vmtarget. | |
1648 bool direct_to_method = false; | |
1649 if (OptimizeMethodHandles && | |
1650 target->klass() == SystemDictionary::DirectMethodHandle_klass() && | |
1651 (argnum == 0 || sun_dyn_DirectMethodHandle::vmindex(target()) < 0)) { | |
1652 int decode_flags = 0; klassOop receiver_limit_oop = NULL; | |
1653 methodHandle m(THREAD, decode_method(target(), receiver_limit_oop, decode_flags)); | |
1654 if (m.is_null()) { THROW_MSG(vmSymbols::java_lang_InternalError(), "DMH failed to decode"); } | |
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1655 DEBUG_ONLY(int m_vmslots = m->size_of_parameters() - slots_pushed); // pos. of 1st arg. |
710 | 1656 assert(sun_dyn_BoundMethodHandle::vmslots(mh()) == m_vmslots, "type w/ m sig"); |
1657 if (argnum == 0 && (decode_flags & _dmf_has_receiver) != 0) { | |
1658 KlassHandle receiver_limit(THREAD, receiver_limit_oop); | |
1659 init_BoundMethodHandle_with_receiver(mh, m, | |
1660 receiver_limit, decode_flags, | |
1661 CHECK); | |
1662 return; | |
1663 } | |
1664 | |
1665 // Even if it is not a bound receiver, we still might be able | |
1666 // to bind another argument and still invoke the methodOop directly. | |
1667 if (!(decode_flags & _dmf_does_dispatch)) { | |
1668 direct_to_method = true; | |
1669 sun_dyn_BoundMethodHandle::set_vmtarget(mh(), m()); | |
1670 } | |
1671 } | |
1672 if (!direct_to_method) | |
1673 sun_dyn_BoundMethodHandle::set_vmtarget(mh(), target()); | |
1674 | |
1675 if (VerifyMethodHandles) { | |
1676 verify_BoundMethodHandle(mh, target, argnum, direct_to_method, CHECK); | |
1677 } | |
1678 | |
1679 // Next question: Is this a ref, int, or long bound value? | |
1680 MethodHandleEntry* me = NULL; | |
1681 if (ptype == T_OBJECT) { | |
1682 if (direct_to_method) me = MethodHandles::entry(_bound_ref_direct_mh); | |
1683 else me = MethodHandles::entry(_bound_ref_mh); | |
1684 } else if (slots_pushed == 2) { | |
1685 if (direct_to_method) me = MethodHandles::entry(_bound_long_direct_mh); | |
1686 else me = MethodHandles::entry(_bound_long_mh); | |
1687 } else if (slots_pushed == 1) { | |
1688 if (direct_to_method) me = MethodHandles::entry(_bound_int_direct_mh); | |
1689 else me = MethodHandles::entry(_bound_int_mh); | |
1690 } else { | |
1691 assert(false, ""); | |
1692 } | |
1693 | |
1694 // Done! | |
1695 java_dyn_MethodHandle::set_vmentry(mh(), me); | |
1696 } | |
1697 | |
1698 static void throw_InternalError_for_bad_conversion(int conversion, const char* err, TRAPS) { | |
1699 char msg[200]; | |
1700 jio_snprintf(msg, sizeof(msg), "bad adapter (conversion=0x%08x): %s", conversion, err); | |
1701 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), msg); | |
1702 } | |
1703 | |
1704 void MethodHandles::verify_AdapterMethodHandle(Handle mh, int argnum, TRAPS) { | |
1705 jint conversion = sun_dyn_AdapterMethodHandle::conversion(mh()); | |
1706 int argslot = sun_dyn_AdapterMethodHandle::vmargslot(mh()); | |
1707 | |
1708 verify_vmargslot(mh, argnum, argslot, CHECK); | |
1709 verify_vmslots(mh, CHECK); | |
1710 | |
1711 jint conv_op = adapter_conversion_op(conversion); | |
1712 if (!conv_op_valid(conv_op)) { | |
1713 throw_InternalError_for_bad_conversion(conversion, "unknown conversion op", THREAD); | |
1714 return; | |
1715 } | |
1716 EntryKind ek = adapter_entry_kind(conv_op); | |
1717 | |
1718 int stack_move = adapter_conversion_stack_move(conversion); | |
1719 BasicType src = adapter_conversion_src_type(conversion); | |
1720 BasicType dest = adapter_conversion_dest_type(conversion); | |
1721 int vminfo = adapter_conversion_vminfo(conversion); // should be zero | |
1722 | |
1723 Handle argument(THREAD, sun_dyn_AdapterMethodHandle::argument(mh())); | |
1724 Handle target(THREAD, sun_dyn_AdapterMethodHandle::vmtarget(mh())); | |
1725 Handle src_mtype(THREAD, java_dyn_MethodHandle::type(mh())); | |
1726 Handle dst_mtype(THREAD, java_dyn_MethodHandle::type(target())); | |
1727 | |
1728 const char* err = NULL; | |
1729 | |
1730 if (err == NULL) { | |
1731 // Check that the correct argument is supplied, but only if it is required. | |
1732 switch (ek) { | |
1733 case _adapter_check_cast: // target type of cast | |
1734 case _adapter_ref_to_prim: // wrapper type from which to unbox | |
1735 case _adapter_prim_to_ref: // wrapper type to box into | |
1736 case _adapter_collect_args: // array type to collect into | |
1737 case _adapter_spread_args: // array type to spread from | |
1738 if (!java_lang_Class::is_instance(argument()) | |
1739 || java_lang_Class::is_primitive(argument())) | |
1740 { err = "adapter requires argument of type java.lang.Class"; break; } | |
1741 if (ek == _adapter_collect_args || | |
1742 ek == _adapter_spread_args) { | |
1743 // Make sure it is a suitable collection type. (Array, for now.) | |
1744 Klass* ak = Klass::cast(java_lang_Class::as_klassOop(argument())); | |
1745 if (!ak->oop_is_objArray()) { | |
1746 { err = "adapter requires argument of type java.lang.Class<Object[]>"; break; } | |
1747 } | |
1748 } | |
1749 break; | |
1750 case _adapter_flyby: | |
1751 case _adapter_ricochet: | |
1752 if (!java_dyn_MethodHandle::is_instance(argument())) | |
1753 { err = "MethodHandle adapter argument required"; break; } | |
1754 break; | |
1755 default: | |
1756 if (argument.not_null()) | |
1757 { err = "adapter has spurious argument"; break; } | |
1758 break; | |
1759 } | |
1760 } | |
1761 | |
1762 if (err == NULL) { | |
1763 // Check that the src/dest types are supplied if needed. | |
1764 switch (ek) { | |
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1765 case _adapter_check_cast: |
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1766 if (src != T_OBJECT || dest != T_OBJECT) { |
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1767 err = "adapter requires object src/dest conversion subfields"; |
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1768 } |
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1769 break; |
710 | 1770 case _adapter_prim_to_prim: |
1771 if (!is_java_primitive(src) || !is_java_primitive(dest) || src == dest) { | |
1772 err = "adapter requires primitive src/dest conversion subfields"; break; | |
1773 } | |
1774 if ( (src == T_FLOAT || src == T_DOUBLE) && !(dest == T_FLOAT || dest == T_DOUBLE) || | |
1775 !(src == T_FLOAT || src == T_DOUBLE) && (dest == T_FLOAT || dest == T_DOUBLE)) { | |
1776 err = "adapter cannot convert beween floating and fixed-point"; break; | |
1777 } | |
1778 break; | |
1779 case _adapter_ref_to_prim: | |
1780 if (src != T_OBJECT || !is_java_primitive(dest) | |
1781 || argument() != Klass::cast(SystemDictionary::box_klass(dest))->java_mirror()) { | |
1782 err = "adapter requires primitive dest conversion subfield"; break; | |
1783 } | |
1784 break; | |
1785 case _adapter_prim_to_ref: | |
1786 if (!is_java_primitive(src) || dest != T_OBJECT | |
1787 || argument() != Klass::cast(SystemDictionary::box_klass(src))->java_mirror()) { | |
1788 err = "adapter requires primitive src conversion subfield"; break; | |
1789 } | |
1790 break; | |
1791 case _adapter_swap_args: | |
1792 case _adapter_rot_args: | |
1793 { | |
1794 if (!src || src != dest) { | |
1795 err = "adapter requires src/dest conversion subfields for swap"; break; | |
1796 } | |
1797 int swap_size = type2size[src]; | |
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1798 oop src_mtype = sun_dyn_AdapterMethodHandle::type(mh()); |
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1799 oop dest_mtype = sun_dyn_AdapterMethodHandle::type(target()); |
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1800 int slot_limit = sun_dyn_AdapterMethodHandle::vmslots(target()); |
710 | 1801 int src_slot = argslot; |
1802 int dest_slot = vminfo; | |
1803 bool rotate_up = (src_slot > dest_slot); // upward rotation | |
1804 int src_arg = argnum; | |
1805 int dest_arg = argument_slot_to_argnum(dest_mtype, dest_slot); | |
1806 verify_vmargslot(mh, dest_arg, dest_slot, CHECK); | |
1807 if (!(dest_slot >= src_slot + swap_size) && | |
1808 !(src_slot >= dest_slot + swap_size)) { | |
1809 err = "source, destination slots must be distinct"; | |
1810 } else if (ek == _adapter_swap_args && !(src_slot > dest_slot)) { | |
1811 err = "source of swap must be deeper in stack"; | |
1812 } else if (ek == _adapter_swap_args) { | |
1813 err = check_argument_type_change(java_dyn_MethodType::ptype(src_mtype, dest_arg), | |
1814 java_dyn_MethodType::ptype(dest_mtype, src_arg), | |
1815 dest_arg); | |
1816 } else if (ek == _adapter_rot_args) { | |
1817 if (rotate_up) { | |
1818 assert((src_slot > dest_slot) && (src_arg < dest_arg), ""); | |
1819 // rotate up: [dest_slot..src_slot-ss] --> [dest_slot+ss..src_slot] | |
1820 // that is: [src_arg+1..dest_arg] --> [src_arg..dest_arg-1] | |
1821 for (int i = src_arg+1; i <= dest_arg && err == NULL; i++) { | |
1822 err = check_argument_type_change(java_dyn_MethodType::ptype(src_mtype, i), | |
1823 java_dyn_MethodType::ptype(dest_mtype, i-1), | |
1824 i); | |
1825 } | |
1826 } else { // rotate down | |
1827 assert((src_slot < dest_slot) && (src_arg > dest_arg), ""); | |
1828 // rotate down: [src_slot+ss..dest_slot] --> [src_slot..dest_slot-ss] | |
1829 // that is: [dest_arg..src_arg-1] --> [dst_arg+1..src_arg] | |
1830 for (int i = dest_arg; i <= src_arg-1 && err == NULL; i++) { | |
1831 err = check_argument_type_change(java_dyn_MethodType::ptype(src_mtype, i), | |
1832 java_dyn_MethodType::ptype(dest_mtype, i+1), | |
1833 i); | |
1834 } | |
1835 } | |
1836 } | |
1837 if (err == NULL) | |
1838 err = check_argument_type_change(java_dyn_MethodType::ptype(src_mtype, src_arg), | |
1839 java_dyn_MethodType::ptype(dest_mtype, dest_arg), | |
1840 src_arg); | |
1841 } | |
1842 break; | |
1843 case _adapter_collect_args: | |
1844 case _adapter_spread_args: | |
1845 { | |
1846 BasicType coll_type = (ek == _adapter_collect_args) ? dest : src; | |
1847 BasicType elem_type = (ek == _adapter_collect_args) ? src : dest; | |
1848 if (coll_type != T_OBJECT || elem_type != T_OBJECT) { | |
1849 err = "adapter requires src/dest subfields"; break; | |
1850 // later: | |
1851 // - consider making coll be a primitive array | |
1852 // - consider making coll be a heterogeneous collection | |
1853 } | |
1854 } | |
1855 break; | |
1856 default: | |
1857 if (src != 0 || dest != 0) { | |
1858 err = "adapter has spurious src/dest conversion subfields"; break; | |
1859 } | |
1860 break; | |
1861 } | |
1862 } | |
1863 | |
1864 if (err == NULL) { | |
1865 // Check the stack_move subfield. | |
1866 // It must always report the net change in stack size, positive or negative. | |
1867 int slots_pushed = stack_move / stack_move_unit(); | |
1868 switch (ek) { | |
1869 case _adapter_prim_to_prim: | |
1870 case _adapter_ref_to_prim: | |
1871 case _adapter_prim_to_ref: | |
1872 if (slots_pushed != type2size[dest] - type2size[src]) { | |
1873 err = "wrong stack motion for primitive conversion"; | |
1874 } | |
1875 break; | |
1876 case _adapter_dup_args: | |
1877 if (slots_pushed <= 0) { | |
1878 err = "adapter requires conversion subfield slots_pushed > 0"; | |
1879 } | |
1880 break; | |
1881 case _adapter_drop_args: | |
1882 if (slots_pushed >= 0) { | |
1883 err = "adapter requires conversion subfield slots_pushed < 0"; | |
1884 } | |
1885 break; | |
1886 case _adapter_collect_args: | |
1887 if (slots_pushed > 1) { | |
1888 err = "adapter requires conversion subfield slots_pushed <= 1"; | |
1889 } | |
1890 break; | |
1891 case _adapter_spread_args: | |
1892 if (slots_pushed < -1) { | |
1893 err = "adapter requires conversion subfield slots_pushed >= -1"; | |
1894 } | |
1895 break; | |
1896 default: | |
1897 if (stack_move != 0) { | |
1898 err = "adapter has spurious stack_move conversion subfield"; | |
1899 } | |
1900 break; | |
1901 } | |
1902 if (err == NULL && stack_move != slots_pushed * stack_move_unit()) { | |
1903 err = "stack_move conversion subfield must be multiple of stack_move_unit"; | |
1904 } | |
1905 } | |
1906 | |
1907 if (err == NULL) { | |
1908 // Make sure this adapter does not push too deeply. | |
1909 int slots_pushed = stack_move / stack_move_unit(); | |
1910 int this_vmslots = java_dyn_MethodHandle::vmslots(mh()); | |
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1911 int target_vmslots = java_dyn_MethodHandle::vmslots(target()); |
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1912 if (slots_pushed != (target_vmslots - this_vmslots)) { |
710 | 1913 err = "stack_move inconsistent with previous and current MethodType vmslots"; |
1914 } else if (slots_pushed > 0) { | |
1915 // verify stack_move against MethodHandlePushLimit | |
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1916 int target_pushes = decode_MethodHandle_stack_pushes(target()); |
710 | 1917 // do not blow the stack; use a Java-based adapter if this limit is exceeded |
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1918 if (slots_pushed + target_pushes > MethodHandlePushLimit) { |
710 | 1919 err = "adapter pushes too many parameters"; |
1920 } | |
1921 } | |
1922 | |
1923 // While we're at it, check that the stack motion decoder works: | |
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1924 DEBUG_ONLY(int target_pushes = decode_MethodHandle_stack_pushes(target())); |
710 | 1925 DEBUG_ONLY(int this_pushes = decode_MethodHandle_stack_pushes(mh())); |
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1926 assert(this_pushes == slots_pushed + target_pushes, "AMH stack motion must be correct"); |
710 | 1927 } |
1928 | |
1929 if (err == NULL && vminfo != 0) { | |
1930 switch (ek) { | |
1931 case _adapter_swap_args: | |
1932 case _adapter_rot_args: | |
1933 break; // OK | |
1934 default: | |
1935 err = "vminfo subfield is reserved to the JVM"; | |
1936 } | |
1937 } | |
1938 | |
1939 // Do additional ad hoc checks. | |
1940 if (err == NULL) { | |
1941 switch (ek) { | |
1942 case _adapter_retype_only: | |
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1943 err = check_method_type_passthrough(src_mtype(), dst_mtype(), false); |
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1944 break; |
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1945 |
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1946 case _adapter_retype_raw: |
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1947 err = check_method_type_passthrough(src_mtype(), dst_mtype(), true); |
710 | 1948 break; |
1949 | |
1950 case _adapter_check_cast: | |
1951 { | |
1952 // The actual value being checked must be a reference: | |
1953 err = check_argument_type_change(java_dyn_MethodType::ptype(src_mtype(), argnum), | |
1954 object_java_mirror(), argnum); | |
1955 if (err != NULL) break; | |
1956 | |
1957 // The output of the cast must fit with the destination argument: | |
1958 Handle cast_class = argument; | |
1959 err = check_method_type_conversion(src_mtype(), | |
1960 argnum, cast_class(), | |
1961 dst_mtype()); | |
1962 } | |
1963 break; | |
1964 | |
1965 // %%% TO DO: continue in remaining cases to verify src/dst_mtype if VerifyMethodHandles | |
1966 } | |
1967 } | |
1968 | |
1969 if (err != NULL) { | |
1970 throw_InternalError_for_bad_conversion(conversion, err, THREAD); | |
1971 return; | |
1972 } | |
1973 | |
1974 } | |
1975 | |
1976 void MethodHandles::init_AdapterMethodHandle(Handle mh, Handle target, int argnum, TRAPS) { | |
1977 oop argument = sun_dyn_AdapterMethodHandle::argument(mh()); | |
1978 int argslot = sun_dyn_AdapterMethodHandle::vmargslot(mh()); | |
1979 jint conversion = sun_dyn_AdapterMethodHandle::conversion(mh()); | |
1980 jint conv_op = adapter_conversion_op(conversion); | |
1981 | |
1982 // adjust the adapter code to the internal EntryKind enumeration: | |
1983 EntryKind ek_orig = adapter_entry_kind(conv_op); | |
1984 EntryKind ek_opt = ek_orig; // may be optimized | |
1985 | |
1986 // Finalize the vmtarget field (Java initialized it to null). | |
1987 if (!java_dyn_MethodHandle::is_instance(target())) { | |
1988 throw_InternalError_for_bad_conversion(conversion, "bad target", THREAD); | |
1989 return; | |
1990 } | |
1991 sun_dyn_AdapterMethodHandle::set_vmtarget(mh(), target()); | |
1992 | |
1993 if (VerifyMethodHandles) { | |
1994 verify_AdapterMethodHandle(mh, argnum, CHECK); | |
1995 } | |
1996 | |
1997 int stack_move = adapter_conversion_stack_move(conversion); | |
1998 BasicType src = adapter_conversion_src_type(conversion); | |
1999 BasicType dest = adapter_conversion_dest_type(conversion); | |
2000 int vminfo = adapter_conversion_vminfo(conversion); // should be zero | |
2001 | |
2002 const char* err = NULL; | |
2003 | |
2004 // Now it's time to finish the case analysis and pick a MethodHandleEntry. | |
2005 switch (ek_orig) { | |
2006 case _adapter_retype_only: | |
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2007 case _adapter_retype_raw: |
710 | 2008 case _adapter_check_cast: |
2009 case _adapter_dup_args: | |
2010 case _adapter_drop_args: | |
2011 // these work fine via general case code | |
2012 break; | |
2013 | |
2014 case _adapter_prim_to_prim: | |
2015 { | |
2016 // Non-subword cases are {int,float,long,double} -> {int,float,long,double}. | |
2017 // And, the {float,double} -> {int,long} cases must be handled by Java. | |
2018 switch (type2size[src] *4+ type2size[dest]) { | |
2019 case 1 *4+ 1: | |
2020 assert(src == T_INT || is_subword_type(src), "source is not float"); | |
2021 // Subword-related cases are int -> {boolean,byte,char,short}. | |
2022 ek_opt = _adapter_opt_i2i; | |
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2023 vminfo = adapter_prim_to_prim_subword_vminfo(dest); |
710 | 2024 break; |
2025 case 2 *4+ 1: | |
2026 if (src == T_LONG && (dest == T_INT || is_subword_type(dest))) { | |
2027 ek_opt = _adapter_opt_l2i; | |
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2028 vminfo = adapter_prim_to_prim_subword_vminfo(dest); |
710 | 2029 } else if (src == T_DOUBLE && dest == T_FLOAT) { |
2030 ek_opt = _adapter_opt_d2f; | |
2031 } else { | |
2032 assert(false, ""); | |
2033 } | |
2034 break; | |
2035 case 1 *4+ 2: | |
2036 if (src == T_INT && dest == T_LONG) { | |
2037 ek_opt = _adapter_opt_i2l; | |
2038 } else if (src == T_FLOAT && dest == T_DOUBLE) { | |
2039 ek_opt = _adapter_opt_f2d; | |
2040 } else { | |
2041 assert(false, ""); | |
2042 } | |
2043 break; | |
2044 default: | |
2045 assert(false, ""); | |
2046 break; | |
2047 } | |
2048 } | |
2049 break; | |
2050 | |
2051 case _adapter_ref_to_prim: | |
2052 { | |
2053 switch (type2size[dest]) { | |
2054 case 1: | |
2055 ek_opt = _adapter_opt_unboxi; | |
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2056 vminfo = adapter_unbox_subword_vminfo(dest); |
710 | 2057 break; |
2058 case 2: | |
2059 ek_opt = _adapter_opt_unboxl; | |
2060 break; | |
2061 default: | |
2062 assert(false, ""); | |
2063 break; | |
2064 } | |
2065 } | |
2066 break; | |
2067 | |
2068 case _adapter_prim_to_ref: | |
2069 goto throw_not_impl; // allocates, hence could block | |
2070 | |
2071 case _adapter_swap_args: | |
2072 case _adapter_rot_args: | |
2073 { | |
2074 int swap_slots = type2size[src]; | |
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2075 int slot_limit = sun_dyn_AdapterMethodHandle::vmslots(mh()); |
710 | 2076 int src_slot = argslot; |
2077 int dest_slot = vminfo; | |
2078 int rotate = (ek_orig == _adapter_swap_args) ? 0 : (src_slot > dest_slot) ? 1 : -1; | |
2079 switch (swap_slots) { | |
2080 case 1: | |
2081 ek_opt = (!rotate ? _adapter_opt_swap_1 : | |
2082 rotate > 0 ? _adapter_opt_rot_1_up : _adapter_opt_rot_1_down); | |
2083 break; | |
2084 case 2: | |
2085 ek_opt = (!rotate ? _adapter_opt_swap_2 : | |
2086 rotate > 0 ? _adapter_opt_rot_2_up : _adapter_opt_rot_2_down); | |
2087 break; | |
2088 default: | |
2089 assert(false, ""); | |
2090 break; | |
2091 } | |
2092 } | |
2093 break; | |
2094 | |
2095 case _adapter_collect_args: | |
2096 goto throw_not_impl; // allocates, hence could block | |
2097 | |
2098 case _adapter_spread_args: | |
2099 { | |
2100 // vminfo will be the required length of the array | |
2101 int slots_pushed = stack_move / stack_move_unit(); | |
2102 int array_size = slots_pushed + 1; | |
2103 assert(array_size >= 0, ""); | |
2104 vminfo = array_size; | |
2105 switch (array_size) { | |
2106 case 0: ek_opt = _adapter_opt_spread_0; break; | |
2107 case 1: ek_opt = _adapter_opt_spread_1; break; | |
2108 default: ek_opt = _adapter_opt_spread_more; break; | |
2109 } | |
2110 if ((vminfo & CONV_VMINFO_MASK) != vminfo) | |
2111 goto throw_not_impl; // overflow | |
2112 } | |
2113 break; | |
2114 | |
2115 case _adapter_flyby: | |
2116 case _adapter_ricochet: | |
2117 goto throw_not_impl; // runs Java code, hence could block | |
2118 | |
2119 default: | |
2120 // should have failed much earlier; must be a missing case here | |
2121 assert(false, "incomplete switch"); | |
2122 // and fall through: | |
2123 | |
2124 throw_not_impl: | |
2125 // FIXME: these adapters are NYI | |
2126 err = "adapter not yet implemented in the JVM"; | |
2127 break; | |
2128 } | |
2129 | |
2130 if (err != NULL) { | |
2131 throw_InternalError_for_bad_conversion(conversion, err, THREAD); | |
2132 return; | |
2133 } | |
2134 | |
2135 // Rebuild the conversion value; maybe parts of it were changed. | |
2136 jint new_conversion = adapter_conversion(conv_op, src, dest, stack_move, vminfo); | |
2137 | |
2138 // Finalize the conversion field. (Note that it is final to Java code.) | |
2139 sun_dyn_AdapterMethodHandle::set_conversion(mh(), new_conversion); | |
2140 | |
2141 // Done! | |
2142 java_dyn_MethodHandle::set_vmentry(mh(), entry(ek_opt)); | |
2143 | |
2144 // There should be enough memory barriers on exit from native methods | |
2145 // to ensure that the MH is fully initialized to all threads before | |
2146 // Java code can publish it in global data structures. | |
2147 } | |
2148 | |
2149 // | |
2150 // Here are the native methods on sun.dyn.MethodHandleImpl. | |
2151 // They are the private interface between this JVM and the HotSpot-specific | |
2152 // Java code that implements JSR 292 method handles. | |
2153 // | |
2154 // Note: We use a JVM_ENTRY macro to define each of these, for this is the way | |
2155 // that intrinsic (non-JNI) native methods are defined in HotSpot. | |
2156 // | |
2157 | |
2158 // direct method handles for invokestatic or invokespecial | |
2159 // void init(DirectMethodHandle self, MemberName ref, boolean doDispatch, Class<?> caller); | |
2160 JVM_ENTRY(void, MHI_init_DMH(JNIEnv *env, jobject igcls, jobject mh_jh, | |
2161 jobject target_jh, jboolean do_dispatch, jobject caller_jh)) { | |
2162 ResourceMark rm; // for error messages | |
2163 | |
2164 // This is the guy we are initializing: | |
2165 if (mh_jh == NULL) { THROW(vmSymbols::java_lang_InternalError()); } | |
2166 Handle mh(THREAD, JNIHandles::resolve_non_null(mh_jh)); | |
2167 | |
2168 // Early returns out of this method leave the DMH in an unfinished state. | |
2169 assert(java_dyn_MethodHandle::vmentry(mh()) == NULL, "must be safely null"); | |
2170 | |
2171 // which method are we really talking about? | |
2172 if (target_jh == NULL) { THROW(vmSymbols::java_lang_InternalError()); } | |
2173 oop target_oop = JNIHandles::resolve_non_null(target_jh); | |
2174 if (sun_dyn_MemberName::is_instance(target_oop) && | |
2175 sun_dyn_MemberName::vmindex(target_oop) == VM_INDEX_UNINITIALIZED) { | |
2176 Handle mname(THREAD, target_oop); | |
2177 MethodHandles::resolve_MemberName(mname, CHECK); | |
2178 target_oop = mname(); // in case of GC | |
2179 } | |
2180 | |
2181 int decode_flags = 0; klassOop receiver_limit = NULL; | |
2182 methodHandle m(THREAD, | |
2183 MethodHandles::decode_method(target_oop, | |
2184 receiver_limit, decode_flags)); | |
2185 if (m.is_null()) { THROW_MSG(vmSymbols::java_lang_InternalError(), "no such method"); } | |
2186 | |
2187 // The trusted Java code that calls this method should already have performed | |
2188 // access checks on behalf of the given caller. But, we can verify this. | |
2189 if (VerifyMethodHandles && caller_jh != NULL) { | |
2190 KlassHandle caller(THREAD, java_lang_Class::as_klassOop(JNIHandles::resolve_non_null(caller_jh))); | |
2191 // If this were a bytecode, the first access check would be against | |
2192 // the "reference class" mentioned in the CONSTANT_Methodref. | |
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2193 // We don't know at this point which class that was, and if we |
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2194 // check against m.method_holder we might get the wrong answer. |
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2195 // So we just make sure to handle this check when the resolution |
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2196 // happens, when we call resolve_MemberName. |
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2197 // |
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2198 // (A public class can inherit public members from private supers, |
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2199 // and it would be wrong to check access against the private super |
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2200 // if the original symbolic reference was against the public class.) |
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2201 // |
710 | 2202 // If there were a bytecode, the next step would be to lookup the method |
2203 // in the reference class, then then check the method's access bits. | |
2204 // Emulate LinkResolver::check_method_accessability. | |
2205 klassOop resolved_klass = m->method_holder(); | |
2206 if (!Reflection::verify_field_access(caller->as_klassOop(), | |
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2207 resolved_klass, resolved_klass, |
710 | 2208 m->access_flags(), |
2209 true)) { | |
2210 // %%% following cutout belongs in Reflection::verify_field_access? | |
2211 bool same_pm = Reflection::is_same_package_member(caller->as_klassOop(), | |
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2212 resolved_klass, THREAD); |
710 | 2213 if (!same_pm) { |
2214 THROW_MSG(vmSymbols::java_lang_InternalError(), m->name_and_sig_as_C_string()); | |
2215 } | |
2216 } | |
2217 } | |
2218 | |
2219 MethodHandles::init_DirectMethodHandle(mh, m, (do_dispatch != JNI_FALSE), CHECK); | |
2220 } | |
2221 JVM_END | |
2222 | |
2223 // bound method handles | |
2224 JVM_ENTRY(void, MHI_init_BMH(JNIEnv *env, jobject igcls, jobject mh_jh, | |
2225 jobject target_jh, int argnum)) { | |
2226 ResourceMark rm; // for error messages | |
2227 | |
2228 // This is the guy we are initializing: | |
2229 if (mh_jh == NULL) { THROW(vmSymbols::java_lang_InternalError()); } | |
2230 Handle mh(THREAD, JNIHandles::resolve_non_null(mh_jh)); | |
2231 | |
2232 // Early returns out of this method leave the BMH in an unfinished state. | |
2233 assert(java_dyn_MethodHandle::vmentry(mh()) == NULL, "must be safely null"); | |
2234 | |
2235 if (target_jh == NULL) { THROW(vmSymbols::java_lang_InternalError()); } | |
2236 Handle target(THREAD, JNIHandles::resolve_non_null(target_jh)); | |
2237 | |
2238 if (!java_dyn_MethodHandle::is_instance(target())) { | |
2239 // Target object is a reflective method. (%%% Do we need this alternate path?) | |
2240 Untested("init_BMH of non-MH"); | |
2241 if (argnum != 0) { THROW(vmSymbols::java_lang_InternalError()); } | |
2242 int decode_flags = 0; klassOop receiver_limit_oop = NULL; | |
2243 methodHandle m(THREAD, | |
2244 MethodHandles::decode_method(target(), | |
2245 receiver_limit_oop, | |
2246 decode_flags)); | |
2247 KlassHandle receiver_limit(THREAD, receiver_limit_oop); | |
2248 MethodHandles::init_BoundMethodHandle_with_receiver(mh, m, | |
2249 receiver_limit, | |
2250 decode_flags, | |
2251 CHECK); | |
2252 return; | |
2253 } | |
2254 | |
2255 // Build a BMH on top of a DMH or another BMH: | |
2256 MethodHandles::init_BoundMethodHandle(mh, target, argnum, CHECK); | |
2257 } | |
2258 JVM_END | |
2259 | |
2260 // adapter method handles | |
2261 JVM_ENTRY(void, MHI_init_AMH(JNIEnv *env, jobject igcls, jobject mh_jh, | |
2262 jobject target_jh, int argnum)) { | |
2263 // This is the guy we are initializing: | |
2264 if (mh_jh == NULL || target_jh == NULL) { | |
2265 THROW(vmSymbols::java_lang_InternalError()); | |
2266 } | |
2267 Handle mh(THREAD, JNIHandles::resolve_non_null(mh_jh)); | |
2268 Handle target(THREAD, JNIHandles::resolve_non_null(target_jh)); | |
2269 | |
2270 // Early returns out of this method leave the AMH in an unfinished state. | |
2271 assert(java_dyn_MethodHandle::vmentry(mh()) == NULL, "must be safely null"); | |
2272 | |
2273 MethodHandles::init_AdapterMethodHandle(mh, target, argnum, CHECK); | |
2274 } | |
2275 JVM_END | |
2276 | |
2277 // method type forms | |
2278 JVM_ENTRY(void, MHI_init_MT(JNIEnv *env, jobject igcls, jobject erased_jh)) { | |
2279 if (erased_jh == NULL) return; | |
2280 if (TraceMethodHandles) { | |
2281 tty->print("creating MethodType form "); | |
2282 if (WizardMode || Verbose) { // Warning: this calls Java code on the MH! | |
2283 // call Object.toString() | |
2284 symbolOop name = vmSymbols::toString_name(), sig = vmSymbols::void_string_signature(); | |
2285 JavaCallArguments args(Handle(THREAD, JNIHandles::resolve_non_null(erased_jh))); | |
2286 JavaValue result(T_OBJECT); | |
1142 | 2287 JavaCalls::call_virtual(&result, SystemDictionary::Object_klass(), name, sig, |
710 | 2288 &args, CHECK); |
2289 Handle str(THREAD, (oop)result.get_jobject()); | |
2290 java_lang_String::print(str, tty); | |
2291 } | |
2292 tty->cr(); | |
2293 } | |
2294 } | |
2295 JVM_END | |
2296 | |
2297 // debugging and reflection | |
2298 JVM_ENTRY(jobject, MHI_getTarget(JNIEnv *env, jobject igcls, jobject mh_jh, jint format)) { | |
2299 Handle mh(THREAD, JNIHandles::resolve(mh_jh)); | |
2300 if (!java_dyn_MethodHandle::is_instance(mh())) { | |
2301 THROW_NULL(vmSymbols::java_lang_IllegalArgumentException()); | |
2302 } | |
2303 oop target = MethodHandles::encode_target(mh, format, CHECK_NULL); | |
2304 return JNIHandles::make_local(THREAD, target); | |
2305 } | |
2306 JVM_END | |
2307 | |
2308 JVM_ENTRY(jint, MHI_getConstant(JNIEnv *env, jobject igcls, jint which)) { | |
2309 switch (which) { | |
2310 case MethodHandles::GC_JVM_PUSH_LIMIT: | |
2311 guarantee(MethodHandlePushLimit >= 2 && MethodHandlePushLimit <= 0xFF, | |
2312 "MethodHandlePushLimit parameter must be in valid range"); | |
2313 return MethodHandlePushLimit; | |
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2314 case MethodHandles::GC_JVM_STACK_MOVE_UNIT: |
710 | 2315 // return number of words per slot, signed according to stack direction |
2316 return MethodHandles::stack_move_unit(); | |
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2317 case MethodHandles::GC_CONV_OP_IMPLEMENTED_MASK: |
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2318 return MethodHandles::adapter_conversion_ops_supported_mask(); |
710 | 2319 } |
2320 return 0; | |
2321 } | |
2322 JVM_END | |
2323 | |
2324 #ifndef PRODUCT | |
2325 #define EACH_NAMED_CON(template) \ | |
2326 template(MethodHandles,GC_JVM_PUSH_LIMIT) \ | |
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2327 template(MethodHandles,GC_JVM_STACK_MOVE_UNIT) \ |
710 | 2328 template(MethodHandles,ETF_HANDLE_OR_METHOD_NAME) \ |
2329 template(MethodHandles,ETF_DIRECT_HANDLE) \ | |
2330 template(MethodHandles,ETF_METHOD_NAME) \ | |
2331 template(MethodHandles,ETF_REFLECT_METHOD) \ | |
2332 template(sun_dyn_MemberName,MN_IS_METHOD) \ | |
2333 template(sun_dyn_MemberName,MN_IS_CONSTRUCTOR) \ | |
2334 template(sun_dyn_MemberName,MN_IS_FIELD) \ | |
2335 template(sun_dyn_MemberName,MN_IS_TYPE) \ | |
2336 template(sun_dyn_MemberName,MN_SEARCH_SUPERCLASSES) \ | |
2337 template(sun_dyn_MemberName,MN_SEARCH_INTERFACES) \ | |
2338 template(sun_dyn_MemberName,VM_INDEX_UNINITIALIZED) \ | |
2339 template(sun_dyn_AdapterMethodHandle,OP_RETYPE_ONLY) \ | |
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2340 template(sun_dyn_AdapterMethodHandle,OP_RETYPE_RAW) \ |
710 | 2341 template(sun_dyn_AdapterMethodHandle,OP_CHECK_CAST) \ |
2342 template(sun_dyn_AdapterMethodHandle,OP_PRIM_TO_PRIM) \ | |
2343 template(sun_dyn_AdapterMethodHandle,OP_REF_TO_PRIM) \ | |
2344 template(sun_dyn_AdapterMethodHandle,OP_PRIM_TO_REF) \ | |
2345 template(sun_dyn_AdapterMethodHandle,OP_SWAP_ARGS) \ | |
2346 template(sun_dyn_AdapterMethodHandle,OP_ROT_ARGS) \ | |
2347 template(sun_dyn_AdapterMethodHandle,OP_DUP_ARGS) \ | |
2348 template(sun_dyn_AdapterMethodHandle,OP_DROP_ARGS) \ | |
2349 template(sun_dyn_AdapterMethodHandle,OP_COLLECT_ARGS) \ | |
2350 template(sun_dyn_AdapterMethodHandle,OP_SPREAD_ARGS) \ | |
2351 template(sun_dyn_AdapterMethodHandle,OP_FLYBY) \ | |
2352 template(sun_dyn_AdapterMethodHandle,OP_RICOCHET) \ | |
2353 template(sun_dyn_AdapterMethodHandle,CONV_OP_LIMIT) \ | |
2354 template(sun_dyn_AdapterMethodHandle,CONV_OP_MASK) \ | |
2355 template(sun_dyn_AdapterMethodHandle,CONV_VMINFO_MASK) \ | |
2356 template(sun_dyn_AdapterMethodHandle,CONV_VMINFO_SHIFT) \ | |
2357 template(sun_dyn_AdapterMethodHandle,CONV_OP_SHIFT) \ | |
2358 template(sun_dyn_AdapterMethodHandle,CONV_DEST_TYPE_SHIFT) \ | |
2359 template(sun_dyn_AdapterMethodHandle,CONV_SRC_TYPE_SHIFT) \ | |
2360 template(sun_dyn_AdapterMethodHandle,CONV_STACK_MOVE_SHIFT) \ | |
2361 template(sun_dyn_AdapterMethodHandle,CONV_STACK_MOVE_MASK) \ | |
2362 /*end*/ | |
2363 | |
2364 #define ONE_PLUS(scope,value) 1+ | |
2365 static const int con_value_count = EACH_NAMED_CON(ONE_PLUS) 0; | |
2366 #define VALUE_COMMA(scope,value) scope::value, | |
2367 static const int con_values[con_value_count+1] = { EACH_NAMED_CON(VALUE_COMMA) 0 }; | |
2368 #define STRING_NULL(scope,value) #value "\0" | |
2369 static const char con_names[] = { EACH_NAMED_CON(STRING_NULL) }; | |
2370 | |
2371 #undef ONE_PLUS | |
2372 #undef VALUE_COMMA | |
2373 #undef STRING_NULL | |
2374 #undef EACH_NAMED_CON | |
2375 #endif | |
2376 | |
2377 JVM_ENTRY(jint, MHI_getNamedCon(JNIEnv *env, jobject igcls, jint which, jobjectArray box_jh)) { | |
2378 #ifndef PRODUCT | |
2379 if (which >= 0 && which < con_value_count) { | |
2380 int con = con_values[which]; | |
2381 objArrayOop box = (objArrayOop) JNIHandles::resolve(box_jh); | |
2382 if (box != NULL && box->klass() == Universe::objectArrayKlassObj() && box->length() > 0) { | |
2383 const char* str = &con_names[0]; | |
2384 for (int i = 0; i < which; i++) | |
2385 str += strlen(str) + 1; // skip name and null | |
2386 oop name = java_lang_String::create_oop_from_str(str, CHECK_0); | |
2387 box->obj_at_put(0, name); | |
2388 } | |
2389 return con; | |
2390 } | |
2391 #endif | |
2392 return 0; | |
2393 } | |
2394 JVM_END | |
2395 | |
2396 // void init(MemberName self, AccessibleObject ref) | |
2397 JVM_ENTRY(void, MHI_init_Mem(JNIEnv *env, jobject igcls, jobject mname_jh, jobject target_jh)) { | |
2398 if (mname_jh == NULL || target_jh == NULL) { THROW(vmSymbols::java_lang_InternalError()); } | |
2399 Handle mname(THREAD, JNIHandles::resolve_non_null(mname_jh)); | |
2400 oop target_oop = JNIHandles::resolve_non_null(target_jh); | |
2401 MethodHandles::init_MemberName(mname(), target_oop); | |
2402 } | |
2403 JVM_END | |
2404 | |
2405 // void expand(MemberName self) | |
2406 JVM_ENTRY(void, MHI_expand_Mem(JNIEnv *env, jobject igcls, jobject mname_jh)) { | |
2407 if (mname_jh == NULL) { THROW(vmSymbols::java_lang_InternalError()); } | |
2408 Handle mname(THREAD, JNIHandles::resolve_non_null(mname_jh)); | |
2409 MethodHandles::expand_MemberName(mname, 0, CHECK); | |
2410 } | |
2411 JVM_END | |
2412 | |
2413 // void resolve(MemberName self, Class<?> caller) | |
2414 JVM_ENTRY(void, MHI_resolve_Mem(JNIEnv *env, jobject igcls, jobject mname_jh, jclass caller_jh)) { | |
2415 if (mname_jh == NULL) { THROW(vmSymbols::java_lang_InternalError()); } | |
2416 Handle mname(THREAD, JNIHandles::resolve_non_null(mname_jh)); | |
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2417 |
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2418 // The trusted Java code that calls this method should already have performed |
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2419 // access checks on behalf of the given caller. But, we can verify this. |
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2420 if (VerifyMethodHandles && caller_jh != NULL) { |
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2421 klassOop reference_klass = java_lang_Class::as_klassOop(sun_dyn_MemberName::clazz(mname())); |
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2422 if (reference_klass != NULL) { |
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2423 // Emulate LinkResolver::check_klass_accessability. |
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2424 klassOop caller = java_lang_Class::as_klassOop(JNIHandles::resolve_non_null(caller_jh)); |
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2425 if (!Reflection::verify_class_access(caller, |
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2426 reference_klass, |
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2427 true)) { |
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2428 THROW_MSG(vmSymbols::java_lang_InternalError(), Klass::cast(reference_klass)->external_name()); |
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2429 } |
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2430 } |
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2431 } |
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2432 |
710 | 2433 MethodHandles::resolve_MemberName(mname, CHECK); |
2434 } | |
2435 JVM_END | |
2436 | |
2437 // static native int getMembers(Class<?> defc, String matchName, String matchSig, | |
2438 // int matchFlags, Class<?> caller, int skip, MemberName[] results); | |
2439 JVM_ENTRY(jint, MHI_getMembers(JNIEnv *env, jobject igcls, | |
2440 jclass clazz_jh, jstring name_jh, jstring sig_jh, | |
2441 int mflags, jclass caller_jh, jint skip, jobjectArray results_jh)) { | |
2442 if (clazz_jh == NULL || results_jh == NULL) return -1; | |
2443 klassOop k_oop = java_lang_Class::as_klassOop(JNIHandles::resolve_non_null(clazz_jh)); | |
2444 | |
2445 objArrayOop results = (objArrayOop) JNIHandles::resolve(results_jh); | |
2446 if (results == NULL || !results->is_objArray()) return -1; | |
2447 | |
2448 symbolOop name = NULL, sig = NULL; | |
2449 if (name_jh != NULL) { | |
2450 name = java_lang_String::as_symbol_or_null(JNIHandles::resolve_non_null(name_jh)); | |
2451 if (name == NULL) return 0; // a match is not possible | |
2452 } | |
2453 if (sig_jh != NULL) { | |
2454 sig = java_lang_String::as_symbol_or_null(JNIHandles::resolve_non_null(sig_jh)); | |
2455 if (sig == NULL) return 0; // a match is not possible | |
2456 } | |
2457 | |
2458 klassOop caller = NULL; | |
2459 if (caller_jh != NULL) { | |
2460 oop caller_oop = JNIHandles::resolve_non_null(caller_jh); | |
2461 if (!java_lang_Class::is_instance(caller_oop)) return -1; | |
2462 caller = java_lang_Class::as_klassOop(caller_oop); | |
2463 } | |
2464 | |
2465 if (name != NULL && sig != NULL && results != NULL) { | |
2466 // try a direct resolve | |
2467 // %%% TO DO | |
2468 } | |
2469 | |
2470 int res = MethodHandles::find_MemberNames(k_oop, name, sig, mflags, | |
2471 caller, skip, results); | |
2472 // TO DO: expand at least some of the MemberNames, to avoid massive callbacks | |
2473 return res; | |
2474 } | |
2475 JVM_END | |
2476 | |
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2477 JVM_ENTRY(void, MHI_registerBootstrap(JNIEnv *env, jobject igcls, jclass caller_jh, jobject bsm_jh)) { |
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2478 instanceKlassHandle ik = MethodHandles::resolve_instance_klass(caller_jh, THREAD); |
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2479 if (!AllowTransitionalJSR292) { |
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2480 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), |
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2481 "registerBootstrapMethod is only supported in JSR 292 EDR"); |
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2482 } |
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2483 ik->link_class(CHECK); |
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2484 if (!java_dyn_MethodHandle::is_instance(JNIHandles::resolve(bsm_jh))) { |
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2485 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "method handle"); |
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2486 } |
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2487 const char* err = NULL; |
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2488 if (ik->is_initialized() || ik->is_in_error_state()) { |
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2489 err = "too late: class is already initialized"; |
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2490 } else { |
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2491 ObjectLocker ol(ik, THREAD); // note: this should be a recursive lock |
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2492 if (ik->is_not_initialized() || |
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2493 (ik->is_being_initialized() && ik->is_reentrant_initialization(THREAD))) { |
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2494 if (ik->bootstrap_method() != NULL) { |
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2495 err = "class is already equipped with a bootstrap method"; |
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2496 } else { |
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2497 ik->set_bootstrap_method(JNIHandles::resolve_non_null(bsm_jh)); |
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2498 err = NULL; |
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2499 } |
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2500 } else { |
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2501 err = "class is already initialized"; |
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2502 if (ik->is_being_initialized()) |
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2503 err = "class is already being initialized in a different thread"; |
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2504 } |
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2505 } |
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2506 if (err != NULL) { |
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2507 THROW_MSG(vmSymbols::java_lang_IllegalStateException(), err); |
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2508 } |
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2509 } |
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2510 JVM_END |
710 | 2511 |
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2512 JVM_ENTRY(jobject, MHI_getBootstrap(JNIEnv *env, jobject igcls, jclass caller_jh)) { |
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2513 instanceKlassHandle ik = MethodHandles::resolve_instance_klass(caller_jh, THREAD); |
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2514 return JNIHandles::make_local(THREAD, ik->bootstrap_method()); |
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2515 } |
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2516 JVM_END |
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2517 |
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2518 JVM_ENTRY(void, MHI_setCallSiteTarget(JNIEnv *env, jobject igcls, jobject site_jh, jobject target_jh)) { |
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2519 // No special action required, yet. |
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2520 oop site_oop = JNIHandles::resolve(site_jh); |
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2521 if (!java_dyn_CallSite::is_instance(site_oop)) |
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2522 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "not a CallSite"); |
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2523 java_dyn_CallSite::set_target(site_oop, JNIHandles::resolve(target_jh)); |
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2524 } |
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2525 JVM_END |
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2526 |
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2527 |
710 | 2528 /// JVM_RegisterMethodHandleMethods |
2529 | |
2530 #define ADR "J" | |
2531 | |
2532 #define LANG "Ljava/lang/" | |
2533 #define JDYN "Ljava/dyn/" | |
2534 #define IDYN "Lsun/dyn/" | |
2535 | |
2536 #define OBJ LANG"Object;" | |
2537 #define CLS LANG"Class;" | |
2538 #define STRG LANG"String;" | |
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2539 #define CST JDYN"CallSite;" |
710 | 2540 #define MT JDYN"MethodType;" |
2541 #define MH JDYN"MethodHandle;" | |
2542 #define MHI IDYN"MethodHandleImpl;" | |
2543 #define MEM IDYN"MemberName;" | |
2544 #define AMH IDYN"AdapterMethodHandle;" | |
2545 #define BMH IDYN"BoundMethodHandle;" | |
2546 #define DMH IDYN"DirectMethodHandle;" | |
2547 | |
2548 #define CC (char*) /*cast a literal from (const char*)*/ | |
2549 #define FN_PTR(f) CAST_FROM_FN_PTR(void*, &f) | |
2550 | |
2551 // These are the native methods on sun.dyn.MethodHandleNatives. | |
2552 static JNINativeMethod methods[] = { | |
2553 // void init(MemberName self, AccessibleObject ref) | |
2554 {CC"init", CC"("AMH""MH"I)V", FN_PTR(MHI_init_AMH)}, | |
2555 {CC"init", CC"("BMH""OBJ"I)V", FN_PTR(MHI_init_BMH)}, | |
2556 {CC"init", CC"("DMH""OBJ"Z"CLS")V", FN_PTR(MHI_init_DMH)}, | |
2557 {CC"init", CC"("MT")V", FN_PTR(MHI_init_MT)}, | |
2558 {CC"init", CC"("MEM""OBJ")V", FN_PTR(MHI_init_Mem)}, | |
2559 {CC"expand", CC"("MEM")V", FN_PTR(MHI_expand_Mem)}, | |
2560 {CC"resolve", CC"("MEM""CLS")V", FN_PTR(MHI_resolve_Mem)}, | |
2561 {CC"getTarget", CC"("MH"I)"OBJ, FN_PTR(MHI_getTarget)}, | |
2562 {CC"getConstant", CC"(I)I", FN_PTR(MHI_getConstant)}, | |
2563 // static native int getNamedCon(int which, Object[] name) | |
2564 {CC"getNamedCon", CC"(I["OBJ")I", FN_PTR(MHI_getNamedCon)}, | |
2565 // static native int getMembers(Class<?> defc, String matchName, String matchSig, | |
2566 // int matchFlags, Class<?> caller, int skip, MemberName[] results); | |
2567 {CC"getMembers", CC"("CLS""STRG""STRG"I"CLS"I["MEM")I", FN_PTR(MHI_getMembers)} | |
2568 }; | |
2569 | |
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2570 // More entry points specifically for EnableInvokeDynamic. |
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2571 static JNINativeMethod methods2[] = { |
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2572 {CC"registerBootstrap", CC"("CLS MH")V", FN_PTR(MHI_registerBootstrap)}, |
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2573 {CC"getBootstrap", CC"("CLS")"MH, FN_PTR(MHI_getBootstrap)}, |
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2574 {CC"setCallSiteTarget", CC"("CST MH")V", FN_PTR(MHI_setCallSiteTarget)} |
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2575 }; |
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2576 |
710 | 2577 |
2578 // This one function is exported, used by NativeLookup. | |
2579 | |
2580 JVM_ENTRY(void, JVM_RegisterMethodHandleMethods(JNIEnv *env, jclass MHN_class)) { | |
2581 assert(MethodHandles::spot_check_entry_names(), "entry enum is OK"); | |
2582 | |
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2583 // note: this explicit warning-producing stuff will be replaced by auto-detection of the JSR 292 classes |
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2584 |
710 | 2585 if (!EnableMethodHandles) { |
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2586 warning("JSR 292 method handles are disabled in this JVM. Use -XX:+UnlockExperimentalVMOptions -XX:+EnableMethodHandles to enable."); |
710 | 2587 return; // bind nothing |
2588 } | |
2589 | |
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2590 bool enable_MH = true; |
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2591 |
710 | 2592 { |
2593 ThreadToNativeFromVM ttnfv(thread); | |
2594 | |
2595 int status = env->RegisterNatives(MHN_class, methods, sizeof(methods)/sizeof(JNINativeMethod)); | |
2596 if (env->ExceptionOccurred()) { | |
2597 MethodHandles::set_enabled(false); | |
2598 warning("JSR 292 method handle code is mismatched to this JVM. Disabling support."); | |
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2599 enable_MH = false; |
710 | 2600 env->ExceptionClear(); |
2601 } | |
2602 } | |
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2603 |
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2604 if (enable_MH) { |
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2605 KlassHandle MHI_klass = SystemDictionaryHandles::MethodHandleImpl_klass(); |
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2606 if (MHI_klass.not_null()) { |
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2607 symbolHandle raiseException_name = oopFactory::new_symbol_handle("raiseException", CHECK); |
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2608 symbolHandle raiseException_sig = oopFactory::new_symbol_handle("(ILjava/lang/Object;Ljava/lang/Object;)V", CHECK); |
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2609 methodOop raiseException_method = instanceKlass::cast(MHI_klass->as_klassOop()) |
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2610 ->find_method(raiseException_name(), raiseException_sig()); |
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2611 if (raiseException_method != NULL && raiseException_method->is_static()) { |
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2612 MethodHandles::set_raise_exception_method(raiseException_method); |
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2613 } else { |
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2614 warning("JSR 292 method handle code is mismatched to this JVM. Disabling support."); |
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2615 enable_MH = false; |
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2616 } |
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2617 } |
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2618 } |
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2619 |
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2620 if (enable_MH) { |
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2621 MethodHandles::set_enabled(true); |
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2622 } |
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2623 |
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2624 if (!EnableInvokeDynamic) { |
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2625 warning("JSR 292 invokedynamic is disabled in this JVM. Use -XX:+UnlockExperimentalVMOptions -XX:+EnableInvokeDynamic to enable."); |
726
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2626 return; // bind nothing |
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|
2627 } |
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2628 |
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|
2629 { |
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2630 ThreadToNativeFromVM ttnfv(thread); |
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|
2631 |
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2632 int status = env->RegisterNatives(MHN_class, methods2, sizeof(methods2)/sizeof(JNINativeMethod)); |
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2633 if (env->ExceptionOccurred()) { |
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2634 MethodHandles::set_enabled(false); |
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2635 warning("JSR 292 method handle code is mismatched to this JVM. Disabling support."); |
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2636 env->ExceptionClear(); |
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2637 } else { |
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2638 MethodHandles::set_enabled(true); |
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2639 } |
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2640 } |
710 | 2641 } |
2642 JVM_END |