Mercurial > hg > truffle
annotate src/share/vm/interpreter/interpreterRuntime.cpp @ 18083:1ff7622846cf
Added tag jdk8u25-b07 for changeset 520188d4bade
author | asaha |
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date | Mon, 14 Jul 2014 15:08:04 -0700 |
parents | 78bbf4d43a14 |
children | 52b4284cb496 134f18d0174b |
rev | line source |
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0 | 1 /* |
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2 * Copyright (c) 1997, 2014, Oracle and/or its affiliates. All rights reserved. |
0 | 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
4 * | |
5 * This code is free software; you can redistribute it and/or modify it | |
6 * under the terms of the GNU General Public License version 2 only, as | |
7 * published by the Free Software Foundation. | |
8 * | |
9 * This code is distributed in the hope that it will be useful, but WITHOUT | |
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
12 * version 2 for more details (a copy is included in the LICENSE file that | |
13 * accompanied this code). | |
14 * | |
15 * You should have received a copy of the GNU General Public License version | |
16 * 2 along with this work; if not, write to the Free Software Foundation, | |
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. | |
18 * | |
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19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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20 * or visit www.oracle.com if you need additional information or have any |
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21 * questions. |
0 | 22 * |
23 */ | |
24 | |
1972 | 25 #include "precompiled.hpp" |
26 #include "classfile/systemDictionary.hpp" | |
27 #include "classfile/vmSymbols.hpp" | |
28 #include "compiler/compileBroker.hpp" | |
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29 #include "compiler/disassembler.hpp" |
1972 | 30 #include "gc_interface/collectedHeap.hpp" |
31 #include "interpreter/interpreter.hpp" | |
32 #include "interpreter/interpreterRuntime.hpp" | |
33 #include "interpreter/linkResolver.hpp" | |
34 #include "interpreter/templateTable.hpp" | |
35 #include "memory/oopFactory.hpp" | |
36 #include "memory/universe.inline.hpp" | |
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37 #include "oops/constantPool.hpp" |
1972 | 38 #include "oops/instanceKlass.hpp" |
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39 #include "oops/methodData.hpp" |
1972 | 40 #include "oops/objArrayKlass.hpp" |
41 #include "oops/oop.inline.hpp" | |
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42 #include "oops/symbol.hpp" |
1972 | 43 #include "prims/jvmtiExport.hpp" |
44 #include "prims/nativeLookup.hpp" | |
45 #include "runtime/biasedLocking.hpp" | |
46 #include "runtime/compilationPolicy.hpp" | |
47 #include "runtime/deoptimization.hpp" | |
48 #include "runtime/fieldDescriptor.hpp" | |
49 #include "runtime/handles.inline.hpp" | |
50 #include "runtime/interfaceSupport.hpp" | |
51 #include "runtime/java.hpp" | |
52 #include "runtime/jfieldIDWorkaround.hpp" | |
53 #include "runtime/osThread.hpp" | |
54 #include "runtime/sharedRuntime.hpp" | |
55 #include "runtime/stubRoutines.hpp" | |
56 #include "runtime/synchronizer.hpp" | |
57 #include "runtime/threadCritical.hpp" | |
58 #include "utilities/events.hpp" | |
59 #ifdef TARGET_ARCH_x86 | |
60 # include "vm_version_x86.hpp" | |
61 #endif | |
62 #ifdef TARGET_ARCH_sparc | |
63 # include "vm_version_sparc.hpp" | |
64 #endif | |
65 #ifdef TARGET_ARCH_zero | |
66 # include "vm_version_zero.hpp" | |
67 #endif | |
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68 #ifdef TARGET_ARCH_arm |
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69 # include "vm_version_arm.hpp" |
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70 #endif |
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71 #ifdef TARGET_ARCH_ppc |
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72 # include "vm_version_ppc.hpp" |
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73 #endif |
1972 | 74 #ifdef COMPILER2 |
75 #include "opto/runtime.hpp" | |
76 #endif | |
0 | 77 |
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78 PRAGMA_FORMAT_MUTE_WARNINGS_FOR_GCC |
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79 |
0 | 80 class UnlockFlagSaver { |
81 private: | |
82 JavaThread* _thread; | |
83 bool _do_not_unlock; | |
84 public: | |
85 UnlockFlagSaver(JavaThread* t) { | |
86 _thread = t; | |
87 _do_not_unlock = t->do_not_unlock_if_synchronized(); | |
88 t->set_do_not_unlock_if_synchronized(false); | |
89 } | |
90 ~UnlockFlagSaver() { | |
91 _thread->set_do_not_unlock_if_synchronized(_do_not_unlock); | |
92 } | |
93 }; | |
94 | |
95 //------------------------------------------------------------------------------------------------------------------------ | |
96 // State accessors | |
97 | |
98 void InterpreterRuntime::set_bcp_and_mdp(address bcp, JavaThread *thread) { | |
99 last_frame(thread).interpreter_frame_set_bcp(bcp); | |
100 if (ProfileInterpreter) { | |
101 // ProfileTraps uses MDOs independently of ProfileInterpreter. | |
102 // That is why we must check both ProfileInterpreter and mdo != NULL. | |
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103 MethodData* mdo = last_frame(thread).interpreter_frame_method()->method_data(); |
0 | 104 if (mdo != NULL) { |
105 NEEDS_CLEANUP; | |
106 last_frame(thread).interpreter_frame_set_mdp(mdo->bci_to_dp(last_frame(thread).interpreter_frame_bci())); | |
107 } | |
108 } | |
109 } | |
110 | |
111 //------------------------------------------------------------------------------------------------------------------------ | |
112 // Constants | |
113 | |
114 | |
115 IRT_ENTRY(void, InterpreterRuntime::ldc(JavaThread* thread, bool wide)) | |
116 // access constant pool | |
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117 ConstantPool* pool = method(thread)->constants(); |
1565 | 118 int index = wide ? get_index_u2(thread, Bytecodes::_ldc_w) : get_index_u1(thread, Bytecodes::_ldc); |
0 | 119 constantTag tag = pool->tag_at(index); |
120 | |
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121 assert (tag.is_unresolved_klass() || tag.is_klass(), "wrong ldc call"); |
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122 Klass* klass = pool->klass_at(index, CHECK); |
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123 oop java_class = klass->java_mirror(); |
0 | 124 thread->set_vm_result(java_class); |
125 IRT_END | |
126 | |
1602 | 127 IRT_ENTRY(void, InterpreterRuntime::resolve_ldc(JavaThread* thread, Bytecodes::Code bytecode)) { |
128 assert(bytecode == Bytecodes::_fast_aldc || | |
129 bytecode == Bytecodes::_fast_aldc_w, "wrong bc"); | |
130 ResourceMark rm(thread); | |
131 methodHandle m (thread, method(thread)); | |
2142 | 132 Bytecode_loadconstant ldc(m, bci(thread)); |
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133 oop result = ldc.resolve_constant(CHECK); |
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134 #ifdef ASSERT |
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135 { |
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136 // The bytecode wrappers aren't GC-safe so construct a new one |
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137 Bytecode_loadconstant ldc2(m, bci(thread)); |
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138 oop coop = m->constants()->resolved_references()->obj_at(ldc2.cache_index()); |
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139 assert(result == coop, "expected result for assembly code"); |
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140 } |
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141 #endif |
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142 thread->set_vm_result(result); |
1602 | 143 } |
144 IRT_END | |
145 | |
0 | 146 |
147 //------------------------------------------------------------------------------------------------------------------------ | |
148 // Allocation | |
149 | |
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150 IRT_ENTRY(void, InterpreterRuntime::_new(JavaThread* thread, ConstantPool* pool, int index)) |
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151 Klass* k_oop = pool->klass_at(index, CHECK); |
0 | 152 instanceKlassHandle klass (THREAD, k_oop); |
153 | |
154 // Make sure we are not instantiating an abstract klass | |
155 klass->check_valid_for_instantiation(true, CHECK); | |
156 | |
157 // Make sure klass is initialized | |
158 klass->initialize(CHECK); | |
159 | |
160 // At this point the class may not be fully initialized | |
161 // because of recursive initialization. If it is fully | |
162 // initialized & has_finalized is not set, we rewrite | |
163 // it into its fast version (Note: no locking is needed | |
164 // here since this is an atomic byte write and can be | |
165 // done more than once). | |
166 // | |
167 // Note: In case of classes with has_finalized we don't | |
168 // rewrite since that saves us an extra check in | |
169 // the fast version which then would call the | |
170 // slow version anyway (and do a call back into | |
171 // Java). | |
172 // If we have a breakpoint, then we don't rewrite | |
173 // because the _breakpoint bytecode would be lost. | |
174 oop obj = klass->allocate_instance(CHECK); | |
175 thread->set_vm_result(obj); | |
176 IRT_END | |
177 | |
178 | |
179 IRT_ENTRY(void, InterpreterRuntime::newarray(JavaThread* thread, BasicType type, jint size)) | |
180 oop obj = oopFactory::new_typeArray(type, size, CHECK); | |
181 thread->set_vm_result(obj); | |
182 IRT_END | |
183 | |
184 | |
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185 IRT_ENTRY(void, InterpreterRuntime::anewarray(JavaThread* thread, ConstantPool* pool, int index, jint size)) |
0 | 186 // Note: no oopHandle for pool & klass needed since they are not used |
187 // anymore after new_objArray() and no GC can happen before. | |
188 // (This may have to change if this code changes!) | |
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189 Klass* klass = pool->klass_at(index, CHECK); |
0 | 190 objArrayOop obj = oopFactory::new_objArray(klass, size, CHECK); |
191 thread->set_vm_result(obj); | |
192 IRT_END | |
193 | |
194 | |
195 IRT_ENTRY(void, InterpreterRuntime::multianewarray(JavaThread* thread, jint* first_size_address)) | |
196 // We may want to pass in more arguments - could make this slightly faster | |
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197 ConstantPool* constants = method(thread)->constants(); |
1565 | 198 int i = get_index_u2(thread, Bytecodes::_multianewarray); |
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199 Klass* klass = constants->klass_at(i, CHECK); |
0 | 200 int nof_dims = number_of_dimensions(thread); |
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201 assert(klass->is_klass(), "not a class"); |
0 | 202 assert(nof_dims >= 1, "multianewarray rank must be nonzero"); |
203 | |
204 // We must create an array of jints to pass to multi_allocate. | |
205 ResourceMark rm(thread); | |
206 const int small_dims = 10; | |
207 jint dim_array[small_dims]; | |
208 jint *dims = &dim_array[0]; | |
209 if (nof_dims > small_dims) { | |
210 dims = (jint*) NEW_RESOURCE_ARRAY(jint, nof_dims); | |
211 } | |
212 for (int index = 0; index < nof_dims; index++) { | |
213 // offset from first_size_address is addressed as local[index] | |
214 int n = Interpreter::local_offset_in_bytes(index)/jintSize; | |
215 dims[index] = first_size_address[n]; | |
216 } | |
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217 oop obj = ArrayKlass::cast(klass)->multi_allocate(nof_dims, dims, CHECK); |
0 | 218 thread->set_vm_result(obj); |
219 IRT_END | |
220 | |
221 | |
222 IRT_ENTRY(void, InterpreterRuntime::register_finalizer(JavaThread* thread, oopDesc* obj)) | |
223 assert(obj->is_oop(), "must be a valid oop"); | |
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224 assert(obj->klass()->has_finalizer(), "shouldn't be here otherwise"); |
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225 InstanceKlass::register_finalizer(instanceOop(obj), CHECK); |
0 | 226 IRT_END |
227 | |
228 | |
229 // Quicken instance-of and check-cast bytecodes | |
230 IRT_ENTRY(void, InterpreterRuntime::quicken_io_cc(JavaThread* thread)) | |
231 // Force resolving; quicken the bytecode | |
1565 | 232 int which = get_index_u2(thread, Bytecodes::_checkcast); |
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233 ConstantPool* cpool = method(thread)->constants(); |
0 | 234 // We'd expect to assert that we're only here to quicken bytecodes, but in a multithreaded |
235 // program we might have seen an unquick'd bytecode in the interpreter but have another | |
236 // thread quicken the bytecode before we get here. | |
237 // assert( cpool->tag_at(which).is_unresolved_klass(), "should only come here to quicken bytecodes" ); | |
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238 Klass* klass = cpool->klass_at(which, CHECK); |
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239 thread->set_vm_result_2(klass); |
0 | 240 IRT_END |
241 | |
242 | |
243 //------------------------------------------------------------------------------------------------------------------------ | |
244 // Exceptions | |
245 | |
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246 void InterpreterRuntime::note_trap_inner(JavaThread* thread, int reason, |
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247 methodHandle trap_method, int trap_bci, TRAPS) { |
0 | 248 if (trap_method.not_null()) { |
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249 MethodData* trap_mdo = trap_method->method_data(); |
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250 if (trap_mdo == NULL) { |
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251 Method::build_interpreter_method_data(trap_method, THREAD); |
0 | 252 if (HAS_PENDING_EXCEPTION) { |
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253 assert((PENDING_EXCEPTION->is_a(SystemDictionary::OutOfMemoryError_klass())), |
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254 "we expect only an OOM error here"); |
0 | 255 CLEAR_PENDING_EXCEPTION; |
256 } | |
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257 trap_mdo = trap_method->method_data(); |
0 | 258 // and fall through... |
259 } | |
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260 if (trap_mdo != NULL) { |
0 | 261 // Update per-method count of trap events. The interpreter |
262 // is updating the MDO to simulate the effect of compiler traps. | |
263 Deoptimization::update_method_data_from_interpreter(trap_mdo, trap_bci, reason); | |
264 } | |
265 } | |
266 } | |
267 | |
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268 // Assume the compiler is (or will be) interested in this event. |
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269 // If necessary, create an MDO to hold the information, and record it. |
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270 void InterpreterRuntime::note_trap(JavaThread* thread, int reason, TRAPS) { |
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271 assert(ProfileTraps, "call me only if profiling"); |
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272 methodHandle trap_method(thread, method(thread)); |
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273 int trap_bci = trap_method->bci_from(bcp(thread)); |
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274 note_trap_inner(thread, reason, trap_method, trap_bci, THREAD); |
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275 } |
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276 |
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277 #ifdef CC_INTERP |
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278 // As legacy note_trap, but we have more arguments. |
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279 IRT_ENTRY(void, InterpreterRuntime::note_trap(JavaThread* thread, int reason, Method *method, int trap_bci)) |
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280 methodHandle trap_method(method); |
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281 note_trap_inner(thread, reason, trap_method, trap_bci, THREAD); |
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282 IRT_END |
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283 |
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284 // Class Deoptimization is not visible in BytecodeInterpreter, so we need a wrapper |
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285 // for each exception. |
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286 void InterpreterRuntime::note_nullCheck_trap(JavaThread* thread, Method *method, int trap_bci) |
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287 { if (ProfileTraps) note_trap(thread, Deoptimization::Reason_null_check, method, trap_bci); } |
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288 void InterpreterRuntime::note_div0Check_trap(JavaThread* thread, Method *method, int trap_bci) |
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289 { if (ProfileTraps) note_trap(thread, Deoptimization::Reason_div0_check, method, trap_bci); } |
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290 void InterpreterRuntime::note_rangeCheck_trap(JavaThread* thread, Method *method, int trap_bci) |
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291 { if (ProfileTraps) note_trap(thread, Deoptimization::Reason_range_check, method, trap_bci); } |
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292 void InterpreterRuntime::note_classCheck_trap(JavaThread* thread, Method *method, int trap_bci) |
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293 { if (ProfileTraps) note_trap(thread, Deoptimization::Reason_class_check, method, trap_bci); } |
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294 void InterpreterRuntime::note_arrayCheck_trap(JavaThread* thread, Method *method, int trap_bci) |
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295 { if (ProfileTraps) note_trap(thread, Deoptimization::Reason_array_check, method, trap_bci); } |
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296 #endif // CC_INTERP |
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297 |
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298 |
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299 static Handle get_preinitialized_exception(Klass* k, TRAPS) { |
0 | 300 // get klass |
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301 InstanceKlass* klass = InstanceKlass::cast(k); |
0 | 302 assert(klass->is_initialized(), |
303 "this klass should have been initialized during VM initialization"); | |
304 // create instance - do not call constructor since we may have no | |
305 // (java) stack space left (should assert constructor is empty) | |
306 Handle exception; | |
307 oop exception_oop = klass->allocate_instance(CHECK_(exception)); | |
308 exception = Handle(THREAD, exception_oop); | |
309 if (StackTraceInThrowable) { | |
310 java_lang_Throwable::fill_in_stack_trace(exception); | |
311 } | |
312 return exception; | |
313 } | |
314 | |
315 // Special handling for stack overflow: since we don't have any (java) stack | |
316 // space left we use the pre-allocated & pre-initialized StackOverflowError | |
317 // klass to create an stack overflow error instance. We do not call its | |
318 // constructor for the same reason (it is empty, anyway). | |
319 IRT_ENTRY(void, InterpreterRuntime::throw_StackOverflowError(JavaThread* thread)) | |
320 Handle exception = get_preinitialized_exception( | |
321 SystemDictionary::StackOverflowError_klass(), | |
322 CHECK); | |
323 THROW_HANDLE(exception); | |
324 IRT_END | |
325 | |
326 | |
327 IRT_ENTRY(void, InterpreterRuntime::create_exception(JavaThread* thread, char* name, char* message)) | |
328 // lookup exception klass | |
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329 TempNewSymbol s = SymbolTable::new_symbol(name, CHECK); |
0 | 330 if (ProfileTraps) { |
331 if (s == vmSymbols::java_lang_ArithmeticException()) { | |
332 note_trap(thread, Deoptimization::Reason_div0_check, CHECK); | |
333 } else if (s == vmSymbols::java_lang_NullPointerException()) { | |
334 note_trap(thread, Deoptimization::Reason_null_check, CHECK); | |
335 } | |
336 } | |
337 // create exception | |
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338 Handle exception = Exceptions::new_exception(thread, s, message); |
0 | 339 thread->set_vm_result(exception()); |
340 IRT_END | |
341 | |
342 | |
343 IRT_ENTRY(void, InterpreterRuntime::create_klass_exception(JavaThread* thread, char* name, oopDesc* obj)) | |
344 ResourceMark rm(thread); | |
6983 | 345 const char* klass_name = obj->klass()->external_name(); |
0 | 346 // lookup exception klass |
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347 TempNewSymbol s = SymbolTable::new_symbol(name, CHECK); |
0 | 348 if (ProfileTraps) { |
349 note_trap(thread, Deoptimization::Reason_class_check, CHECK); | |
350 } | |
351 // create exception, with klass name as detail message | |
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352 Handle exception = Exceptions::new_exception(thread, s, klass_name); |
0 | 353 thread->set_vm_result(exception()); |
354 IRT_END | |
355 | |
356 | |
357 IRT_ENTRY(void, InterpreterRuntime::throw_ArrayIndexOutOfBoundsException(JavaThread* thread, char* name, jint index)) | |
358 char message[jintAsStringSize]; | |
359 // lookup exception klass | |
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360 TempNewSymbol s = SymbolTable::new_symbol(name, CHECK); |
0 | 361 if (ProfileTraps) { |
362 note_trap(thread, Deoptimization::Reason_range_check, CHECK); | |
363 } | |
364 // create exception | |
365 sprintf(message, "%d", index); | |
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366 THROW_MSG(s, message); |
0 | 367 IRT_END |
368 | |
369 IRT_ENTRY(void, InterpreterRuntime::throw_ClassCastException( | |
370 JavaThread* thread, oopDesc* obj)) | |
371 | |
372 ResourceMark rm(thread); | |
373 char* message = SharedRuntime::generate_class_cast_message( | |
6983 | 374 thread, obj->klass()->external_name()); |
0 | 375 |
376 if (ProfileTraps) { | |
377 note_trap(thread, Deoptimization::Reason_class_check, CHECK); | |
378 } | |
379 | |
380 // create exception | |
381 THROW_MSG(vmSymbols::java_lang_ClassCastException(), message); | |
382 IRT_END | |
383 | |
384 // exception_handler_for_exception(...) returns the continuation address, | |
385 // the exception oop (via TLS) and sets the bci/bcp for the continuation. | |
386 // The exception oop is returned to make sure it is preserved over GC (it | |
387 // is only on the stack if the exception was thrown explicitly via athrow). | |
388 // During this operation, the expression stack contains the values for the | |
389 // bci where the exception happened. If the exception was propagated back | |
390 // from a call, the expression stack contains the values for the bci at the | |
391 // invoke w/o arguments (i.e., as if one were inside the call). | |
392 IRT_ENTRY(address, InterpreterRuntime::exception_handler_for_exception(JavaThread* thread, oopDesc* exception)) | |
393 | |
394 Handle h_exception(thread, exception); | |
395 methodHandle h_method (thread, method(thread)); | |
396 constantPoolHandle h_constants(thread, h_method->constants()); | |
397 bool should_repeat; | |
398 int handler_bci; | |
1602 | 399 int current_bci = bci(thread); |
0 | 400 |
401 // Need to do this check first since when _do_not_unlock_if_synchronized | |
402 // is set, we don't want to trigger any classloading which may make calls | |
403 // into java, or surprisingly find a matching exception handler for bci 0 | |
404 // since at this moment the method hasn't been "officially" entered yet. | |
405 if (thread->do_not_unlock_if_synchronized()) { | |
406 ResourceMark rm; | |
407 assert(current_bci == 0, "bci isn't zero for do_not_unlock_if_synchronized"); | |
408 thread->set_vm_result(exception); | |
409 #ifdef CC_INTERP | |
410 return (address) -1; | |
411 #else | |
412 return Interpreter::remove_activation_entry(); | |
413 #endif | |
414 } | |
415 | |
416 do { | |
417 should_repeat = false; | |
418 | |
419 // assertions | |
420 #ifdef ASSERT | |
421 assert(h_exception.not_null(), "NULL exceptions should be handled by athrow"); | |
422 assert(h_exception->is_oop(), "just checking"); | |
423 // Check that exception is a subclass of Throwable, otherwise we have a VerifyError | |
1142 | 424 if (!(h_exception->is_a(SystemDictionary::Throwable_klass()))) { |
0 | 425 if (ExitVMOnVerifyError) vm_exit(-1); |
426 ShouldNotReachHere(); | |
427 } | |
428 #endif | |
429 | |
430 // tracing | |
431 if (TraceExceptions) { | |
432 ttyLocker ttyl; | |
433 ResourceMark rm(thread); | |
434 tty->print_cr("Exception <%s> (" INTPTR_FORMAT ")", h_exception->print_value_string(), (address)h_exception()); | |
435 tty->print_cr(" thrown in interpreter method <%s>", h_method->print_value_string()); | |
436 tty->print_cr(" at bci %d for thread " INTPTR_FORMAT, current_bci, thread); | |
437 } | |
438 // Don't go paging in something which won't be used. | |
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439 // else if (extable->length() == 0) { |
0 | 440 // // disabled for now - interpreter is not using shortcut yet |
441 // // (shortcut is not to call runtime if we have no exception handlers) | |
442 // // warning("performance bug: should not call runtime if method has no exception handlers"); | |
443 // } | |
444 // for AbortVMOnException flag | |
445 NOT_PRODUCT(Exceptions::debug_check_abort(h_exception)); | |
446 | |
447 // exception handler lookup | |
448 KlassHandle h_klass(THREAD, h_exception->klass()); | |
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449 handler_bci = Method::fast_exception_handler_bci_for(h_method, h_klass, current_bci, THREAD); |
0 | 450 if (HAS_PENDING_EXCEPTION) { |
451 // We threw an exception while trying to find the exception handler. | |
452 // Transfer the new exception to the exception handle which will | |
453 // be set into thread local storage, and do another lookup for an | |
454 // exception handler for this exception, this time starting at the | |
455 // BCI of the exception handler which caused the exception to be | |
456 // thrown (bug 4307310). | |
457 h_exception = Handle(THREAD, PENDING_EXCEPTION); | |
458 CLEAR_PENDING_EXCEPTION; | |
459 if (handler_bci >= 0) { | |
460 current_bci = handler_bci; | |
461 should_repeat = true; | |
462 } | |
463 } | |
464 } while (should_repeat == true); | |
465 | |
466 // notify JVMTI of an exception throw; JVMTI will detect if this is a first | |
467 // time throw or a stack unwinding throw and accordingly notify the debugger | |
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468 if (JvmtiExport::can_post_on_exceptions()) { |
0 | 469 JvmtiExport::post_exception_throw(thread, h_method(), bcp(thread), h_exception()); |
470 } | |
471 | |
472 #ifdef CC_INTERP | |
473 address continuation = (address)(intptr_t) handler_bci; | |
474 #else | |
475 address continuation = NULL; | |
476 #endif | |
477 address handler_pc = NULL; | |
478 if (handler_bci < 0 || !thread->reguard_stack((address) &continuation)) { | |
479 // Forward exception to callee (leaving bci/bcp untouched) because (a) no | |
480 // handler in this method, or (b) after a stack overflow there is not yet | |
481 // enough stack space available to reprotect the stack. | |
482 #ifndef CC_INTERP | |
483 continuation = Interpreter::remove_activation_entry(); | |
484 #endif | |
485 // Count this for compilation purposes | |
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486 h_method->interpreter_throwout_increment(THREAD); |
0 | 487 } else { |
488 // handler in this method => change bci/bcp to handler bci/bcp and continue there | |
489 handler_pc = h_method->code_base() + handler_bci; | |
490 #ifndef CC_INTERP | |
491 set_bcp_and_mdp(handler_pc, thread); | |
492 continuation = Interpreter::dispatch_table(vtos)[*handler_pc]; | |
493 #endif | |
494 } | |
495 // notify debugger of an exception catch | |
496 // (this is good for exceptions caught in native methods as well) | |
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497 if (JvmtiExport::can_post_on_exceptions()) { |
0 | 498 JvmtiExport::notice_unwind_due_to_exception(thread, h_method(), handler_pc, h_exception(), (handler_pc != NULL)); |
499 } | |
500 | |
501 thread->set_vm_result(h_exception()); | |
502 return continuation; | |
503 IRT_END | |
504 | |
505 | |
506 IRT_ENTRY(void, InterpreterRuntime::throw_pending_exception(JavaThread* thread)) | |
507 assert(thread->has_pending_exception(), "must only ne called if there's an exception pending"); | |
508 // nothing to do - eventually we should remove this code entirely (see comments @ call sites) | |
509 IRT_END | |
510 | |
511 | |
512 IRT_ENTRY(void, InterpreterRuntime::throw_AbstractMethodError(JavaThread* thread)) | |
513 THROW(vmSymbols::java_lang_AbstractMethodError()); | |
514 IRT_END | |
515 | |
516 | |
517 IRT_ENTRY(void, InterpreterRuntime::throw_IncompatibleClassChangeError(JavaThread* thread)) | |
518 THROW(vmSymbols::java_lang_IncompatibleClassChangeError()); | |
519 IRT_END | |
520 | |
521 | |
522 //------------------------------------------------------------------------------------------------------------------------ | |
523 // Fields | |
524 // | |
525 | |
526 IRT_ENTRY(void, InterpreterRuntime::resolve_get_put(JavaThread* thread, Bytecodes::Code bytecode)) | |
527 // resolve field | |
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528 fieldDescriptor info; |
0 | 529 constantPoolHandle pool(thread, method(thread)->constants()); |
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530 bool is_put = (bytecode == Bytecodes::_putfield || bytecode == Bytecodes::_putstatic); |
0 | 531 bool is_static = (bytecode == Bytecodes::_getstatic || bytecode == Bytecodes::_putstatic); |
532 | |
533 { | |
534 JvmtiHideSingleStepping jhss(thread); | |
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535 LinkResolver::resolve_field_access(info, pool, get_index_u2_cpcache(thread, bytecode), |
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536 bytecode, CHECK); |
0 | 537 } // end JvmtiHideSingleStepping |
538 | |
539 // check if link resolution caused cpCache to be updated | |
540 if (already_resolved(thread)) return; | |
541 | |
542 // compute auxiliary field attributes | |
543 TosState state = as_TosState(info.field_type()); | |
544 | |
545 // We need to delay resolving put instructions on final fields | |
546 // until we actually invoke one. This is required so we throw | |
547 // exceptions at the correct place. If we do not resolve completely | |
548 // in the current pass, leaving the put_code set to zero will | |
549 // cause the next put instruction to reresolve. | |
550 Bytecodes::Code put_code = (Bytecodes::Code)0; | |
551 | |
552 // We also need to delay resolving getstatic instructions until the | |
553 // class is intitialized. This is required so that access to the static | |
554 // field will call the initialization function every time until the class | |
555 // is completely initialized ala. in 2.17.5 in JVM Specification. | |
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556 InstanceKlass* klass = InstanceKlass::cast(info.field_holder()); |
0 | 557 bool uninitialized_static = ((bytecode == Bytecodes::_getstatic || bytecode == Bytecodes::_putstatic) && |
558 !klass->is_initialized()); | |
559 Bytecodes::Code get_code = (Bytecodes::Code)0; | |
560 | |
561 if (!uninitialized_static) { | |
562 get_code = ((is_static) ? Bytecodes::_getstatic : Bytecodes::_getfield); | |
563 if (is_put || !info.access_flags().is_final()) { | |
564 put_code = ((is_static) ? Bytecodes::_putstatic : Bytecodes::_putfield); | |
565 } | |
566 } | |
567 | |
568 cache_entry(thread)->set_field( | |
569 get_code, | |
570 put_code, | |
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571 info.field_holder(), |
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572 info.index(), |
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573 info.offset(), |
0 | 574 state, |
575 info.access_flags().is_final(), | |
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576 info.access_flags().is_volatile(), |
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577 pool->pool_holder() |
0 | 578 ); |
579 IRT_END | |
580 | |
581 | |
582 //------------------------------------------------------------------------------------------------------------------------ | |
583 // Synchronization | |
584 // | |
585 // The interpreter's synchronization code is factored out so that it can | |
586 // be shared by method invocation and synchronized blocks. | |
587 //%note synchronization_3 | |
588 | |
589 //%note monitor_1 | |
590 IRT_ENTRY_NO_ASYNC(void, InterpreterRuntime::monitorenter(JavaThread* thread, BasicObjectLock* elem)) | |
591 #ifdef ASSERT | |
592 thread->last_frame().interpreter_frame_verify_monitor(elem); | |
593 #endif | |
594 if (PrintBiasedLockingStatistics) { | |
595 Atomic::inc(BiasedLocking::slow_path_entry_count_addr()); | |
596 } | |
597 Handle h_obj(thread, elem->obj()); | |
598 assert(Universe::heap()->is_in_reserved_or_null(h_obj()), | |
599 "must be NULL or an object"); | |
600 if (UseBiasedLocking) { | |
601 // Retry fast entry if bias is revoked to avoid unnecessary inflation | |
602 ObjectSynchronizer::fast_enter(h_obj, elem->lock(), true, CHECK); | |
603 } else { | |
604 ObjectSynchronizer::slow_enter(h_obj, elem->lock(), CHECK); | |
605 } | |
606 assert(Universe::heap()->is_in_reserved_or_null(elem->obj()), | |
607 "must be NULL or an object"); | |
608 #ifdef ASSERT | |
609 thread->last_frame().interpreter_frame_verify_monitor(elem); | |
610 #endif | |
611 IRT_END | |
612 | |
613 | |
614 //%note monitor_1 | |
615 IRT_ENTRY_NO_ASYNC(void, InterpreterRuntime::monitorexit(JavaThread* thread, BasicObjectLock* elem)) | |
616 #ifdef ASSERT | |
617 thread->last_frame().interpreter_frame_verify_monitor(elem); | |
618 #endif | |
619 Handle h_obj(thread, elem->obj()); | |
620 assert(Universe::heap()->is_in_reserved_or_null(h_obj()), | |
621 "must be NULL or an object"); | |
622 if (elem == NULL || h_obj()->is_unlocked()) { | |
623 THROW(vmSymbols::java_lang_IllegalMonitorStateException()); | |
624 } | |
625 ObjectSynchronizer::slow_exit(h_obj(), elem->lock(), thread); | |
626 // Free entry. This must be done here, since a pending exception might be installed on | |
627 // exit. If it is not cleared, the exception handling code will try to unlock the monitor again. | |
628 elem->set_obj(NULL); | |
629 #ifdef ASSERT | |
630 thread->last_frame().interpreter_frame_verify_monitor(elem); | |
631 #endif | |
632 IRT_END | |
633 | |
634 | |
635 IRT_ENTRY(void, InterpreterRuntime::throw_illegal_monitor_state_exception(JavaThread* thread)) | |
636 THROW(vmSymbols::java_lang_IllegalMonitorStateException()); | |
637 IRT_END | |
638 | |
639 | |
640 IRT_ENTRY(void, InterpreterRuntime::new_illegal_monitor_state_exception(JavaThread* thread)) | |
641 // Returns an illegal exception to install into the current thread. The | |
642 // pending_exception flag is cleared so normal exception handling does not | |
643 // trigger. Any current installed exception will be overwritten. This | |
644 // method will be called during an exception unwind. | |
645 | |
646 assert(!HAS_PENDING_EXCEPTION, "no pending exception"); | |
647 Handle exception(thread, thread->vm_result()); | |
648 assert(exception() != NULL, "vm result should be set"); | |
649 thread->set_vm_result(NULL); // clear vm result before continuing (may cause memory leaks and assert failures) | |
1142 | 650 if (!exception->is_a(SystemDictionary::ThreadDeath_klass())) { |
0 | 651 exception = get_preinitialized_exception( |
652 SystemDictionary::IllegalMonitorStateException_klass(), | |
653 CATCH); | |
654 } | |
655 thread->set_vm_result(exception()); | |
656 IRT_END | |
657 | |
658 | |
659 //------------------------------------------------------------------------------------------------------------------------ | |
660 // Invokes | |
661 | |
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662 IRT_ENTRY(Bytecodes::Code, InterpreterRuntime::get_original_bytecode_at(JavaThread* thread, Method* method, address bcp)) |
0 | 663 return method->orig_bytecode_at(method->bci_from(bcp)); |
664 IRT_END | |
665 | |
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666 IRT_ENTRY(void, InterpreterRuntime::set_original_bytecode_at(JavaThread* thread, Method* method, address bcp, Bytecodes::Code new_code)) |
0 | 667 method->set_orig_bytecode_at(method->bci_from(bcp), new_code); |
668 IRT_END | |
669 | |
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670 IRT_ENTRY(void, InterpreterRuntime::_breakpoint(JavaThread* thread, Method* method, address bcp)) |
0 | 671 JvmtiExport::post_raw_breakpoint(thread, method, bcp); |
672 IRT_END | |
673 | |
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674 IRT_ENTRY(void, InterpreterRuntime::resolve_invoke(JavaThread* thread, Bytecodes::Code bytecode)) { |
0 | 675 // extract receiver from the outgoing argument list if necessary |
676 Handle receiver(thread, NULL); | |
677 if (bytecode == Bytecodes::_invokevirtual || bytecode == Bytecodes::_invokeinterface) { | |
678 ResourceMark rm(thread); | |
679 methodHandle m (thread, method(thread)); | |
2142 | 680 Bytecode_invoke call(m, bci(thread)); |
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681 Symbol* signature = call.signature(); |
0 | 682 receiver = Handle(thread, |
683 thread->last_frame().interpreter_callee_receiver(signature)); | |
684 assert(Universe::heap()->is_in_reserved_or_null(receiver()), | |
685 "sanity check"); | |
686 assert(receiver.is_null() || | |
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687 !Universe::heap()->is_in_reserved(receiver->klass()), |
0 | 688 "sanity check"); |
689 } | |
690 | |
691 // resolve method | |
692 CallInfo info; | |
693 constantPoolHandle pool(thread, method(thread)->constants()); | |
694 | |
695 { | |
696 JvmtiHideSingleStepping jhss(thread); | |
697 LinkResolver::resolve_invoke(info, receiver, pool, | |
1565 | 698 get_index_u2_cpcache(thread, bytecode), bytecode, CHECK); |
0 | 699 if (JvmtiExport::can_hotswap_or_post_breakpoint()) { |
700 int retry_count = 0; | |
701 while (info.resolved_method()->is_old()) { | |
702 // It is very unlikely that method is redefined more than 100 times | |
703 // in the middle of resolve. If it is looping here more than 100 times | |
704 // means then there could be a bug here. | |
705 guarantee((retry_count++ < 100), | |
706 "Could not resolve to latest version of redefined method"); | |
707 // method is redefined in the middle of resolve so re-try. | |
708 LinkResolver::resolve_invoke(info, receiver, pool, | |
1565 | 709 get_index_u2_cpcache(thread, bytecode), bytecode, CHECK); |
0 | 710 } |
711 } | |
712 } // end JvmtiHideSingleStepping | |
713 | |
714 // check if link resolution caused cpCache to be updated | |
715 if (already_resolved(thread)) return; | |
716 | |
717 if (bytecode == Bytecodes::_invokeinterface) { | |
718 if (TraceItables && Verbose) { | |
719 ResourceMark rm(thread); | |
720 tty->print_cr("Resolving: klass: %s to method: %s", info.resolved_klass()->name()->as_C_string(), info.resolved_method()->name()->as_C_string()); | |
721 } | |
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722 } |
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723 #ifdef ASSERT |
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724 if (bytecode == Bytecodes::_invokeinterface) { |
0 | 725 if (info.resolved_method()->method_holder() == |
1142 | 726 SystemDictionary::Object_klass()) { |
0 | 727 // NOTE: THIS IS A FIX FOR A CORNER CASE in the JVM spec |
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728 // (see also CallInfo::set_interface for details) |
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729 assert(info.call_kind() == CallInfo::vtable_call || |
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730 info.call_kind() == CallInfo::direct_call, ""); |
0 | 731 methodHandle rm = info.resolved_method(); |
732 assert(rm->is_final() || info.has_vtable_index(), | |
733 "should have been set already"); | |
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734 } else if (!info.resolved_method()->has_itable_index()) { |
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735 // Resolved something like CharSequence.toString. Use vtable not itable. |
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736 assert(info.call_kind() != CallInfo::itable_call, ""); |
0 | 737 } else { |
738 // Setup itable entry | |
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739 assert(info.call_kind() == CallInfo::itable_call, ""); |
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740 int index = info.resolved_method()->itable_index(); |
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741 assert(info.itable_index() == index, ""); |
0 | 742 } |
743 } else { | |
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744 assert(info.call_kind() == CallInfo::direct_call || |
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745 info.call_kind() == CallInfo::vtable_call, ""); |
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746 } |
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747 #endif |
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748 switch (info.call_kind()) { |
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749 case CallInfo::direct_call: |
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750 cache_entry(thread)->set_direct_call( |
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751 bytecode, |
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752 info.resolved_method()); |
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753 break; |
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754 case CallInfo::vtable_call: |
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755 cache_entry(thread)->set_vtable_call( |
0 | 756 bytecode, |
757 info.resolved_method(), | |
758 info.vtable_index()); | |
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759 break; |
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760 case CallInfo::itable_call: |
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761 cache_entry(thread)->set_itable_call( |
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762 bytecode, |
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763 info.resolved_method(), |
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764 info.itable_index()); |
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765 break; |
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766 default: ShouldNotReachHere(); |
0 | 767 } |
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768 } |
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769 IRT_END |
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770 |
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771 |
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772 // First time execution: Resolve symbols, create a permanent MethodType object. |
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773 IRT_ENTRY(void, InterpreterRuntime::resolve_invokehandle(JavaThread* thread)) { |
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774 assert(EnableInvokeDynamic, ""); |
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775 const Bytecodes::Code bytecode = Bytecodes::_invokehandle; |
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776 |
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777 // resolve method |
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778 CallInfo info; |
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779 constantPoolHandle pool(thread, method(thread)->constants()); |
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780 |
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781 { |
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782 JvmtiHideSingleStepping jhss(thread); |
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783 LinkResolver::resolve_invoke(info, Handle(), pool, |
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784 get_index_u2_cpcache(thread, bytecode), bytecode, CHECK); |
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785 } // end JvmtiHideSingleStepping |
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786 |
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787 cache_entry(thread)->set_method_handle(pool, info); |
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788 } |
0 | 789 IRT_END |
790 | |
791 | |
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792 // First time execution: Resolve symbols, create a permanent CallSite object. |
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793 IRT_ENTRY(void, InterpreterRuntime::resolve_invokedynamic(JavaThread* thread)) { |
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794 assert(EnableInvokeDynamic, ""); |
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795 const Bytecodes::Code bytecode = Bytecodes::_invokedynamic; |
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796 |
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797 //TO DO: consider passing BCI to Java. |
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798 // int caller_bci = method(thread)->bci_from(bcp(thread)); |
726
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799 |
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800 // resolve method |
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801 CallInfo info; |
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802 constantPoolHandle pool(thread, method(thread)->constants()); |
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803 int index = get_index_u4(thread, bytecode); |
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804 { |
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805 JvmtiHideSingleStepping jhss(thread); |
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806 LinkResolver::resolve_invoke(info, Handle(), pool, |
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807 index, bytecode, CHECK); |
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808 } // end JvmtiHideSingleStepping |
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809 |
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810 ConstantPoolCacheEntry* cp_cache_entry = pool->invokedynamic_cp_cache_entry_at(index); |
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811 cp_cache_entry->set_dynamic_call(pool, info); |
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812 } |
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813 IRT_END |
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814 |
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815 |
0 | 816 //------------------------------------------------------------------------------------------------------------------------ |
817 // Miscellaneous | |
818 | |
819 | |
941 | 820 nmethod* InterpreterRuntime::frequency_counter_overflow(JavaThread* thread, address branch_bcp) { |
821 nmethod* nm = frequency_counter_overflow_inner(thread, branch_bcp); | |
822 assert(branch_bcp != NULL || nm == NULL, "always returns null for non OSR requests"); | |
823 if (branch_bcp != NULL && nm != NULL) { | |
824 // This was a successful request for an OSR nmethod. Because | |
825 // frequency_counter_overflow_inner ends with a safepoint check, | |
826 // nm could have been unloaded so look it up again. It's unsafe | |
827 // to examine nm directly since it might have been freed and used | |
828 // for something else. | |
829 frame fr = thread->last_frame(); | |
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830 Method* method = fr.interpreter_frame_method(); |
941 | 831 int bci = method->bci_from(fr.interpreter_frame_bcp()); |
1783 | 832 nm = method->lookup_osr_nmethod_for(bci, CompLevel_none, false); |
941 | 833 } |
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834 #ifndef PRODUCT |
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835 if (TraceOnStackReplacement) { |
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836 if (nm != NULL) { |
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837 tty->print("OSR entry @ pc: " INTPTR_FORMAT ": ", nm->osr_entry()); |
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838 nm->print(); |
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839 } |
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840 } |
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841 #endif |
941 | 842 return nm; |
843 } | |
844 | |
0 | 845 IRT_ENTRY(nmethod*, |
941 | 846 InterpreterRuntime::frequency_counter_overflow_inner(JavaThread* thread, address branch_bcp)) |
0 | 847 // use UnlockFlagSaver to clear and restore the _do_not_unlock_if_synchronized |
848 // flag, in case this method triggers classloading which will call into Java. | |
849 UnlockFlagSaver fs(thread); | |
850 | |
851 frame fr = thread->last_frame(); | |
852 assert(fr.is_interpreted_frame(), "must come from interpreter"); | |
853 methodHandle method(thread, fr.interpreter_frame_method()); | |
1783 | 854 const int branch_bci = branch_bcp != NULL ? method->bci_from(branch_bcp) : InvocationEntryBci; |
855 const int bci = branch_bcp != NULL ? method->bci_from(fr.interpreter_frame_bcp()) : InvocationEntryBci; | |
856 | |
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857 assert(!HAS_PENDING_EXCEPTION, "Should not have any exceptions pending"); |
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858 nmethod* osr_nm = CompilationPolicy::policy()->event(method, method, branch_bci, bci, CompLevel_none, NULL, thread); |
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859 assert(!HAS_PENDING_EXCEPTION, "Event handler should not throw any exceptions"); |
0 | 860 |
1783 | 861 if (osr_nm != NULL) { |
862 // We may need to do on-stack replacement which requires that no | |
863 // monitors in the activation are biased because their | |
864 // BasicObjectLocks will need to migrate during OSR. Force | |
865 // unbiasing of all monitors in the activation now (even though | |
866 // the OSR nmethod might be invalidated) because we don't have a | |
867 // safepoint opportunity later once the migration begins. | |
868 if (UseBiasedLocking) { | |
869 ResourceMark rm; | |
870 GrowableArray<Handle>* objects_to_revoke = new GrowableArray<Handle>(); | |
871 for( BasicObjectLock *kptr = fr.interpreter_frame_monitor_end(); | |
872 kptr < fr.interpreter_frame_monitor_begin(); | |
873 kptr = fr.next_monitor_in_interpreter_frame(kptr) ) { | |
874 if( kptr->obj() != NULL ) { | |
875 objects_to_revoke->append(Handle(THREAD, kptr->obj())); | |
876 } | |
0 | 877 } |
1783 | 878 BiasedLocking::revoke(objects_to_revoke); |
0 | 879 } |
880 } | |
1783 | 881 return osr_nm; |
0 | 882 IRT_END |
883 | |
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884 IRT_LEAF(jint, InterpreterRuntime::bcp_to_di(Method* method, address cur_bcp)) |
0 | 885 assert(ProfileInterpreter, "must be profiling interpreter"); |
886 int bci = method->bci_from(cur_bcp); | |
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887 MethodData* mdo = method->method_data(); |
0 | 888 if (mdo == NULL) return 0; |
889 return mdo->bci_to_di(bci); | |
890 IRT_END | |
891 | |
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892 IRT_ENTRY(void, InterpreterRuntime::profile_method(JavaThread* thread)) |
0 | 893 // use UnlockFlagSaver to clear and restore the _do_not_unlock_if_synchronized |
894 // flag, in case this method triggers classloading which will call into Java. | |
895 UnlockFlagSaver fs(thread); | |
896 | |
897 assert(ProfileInterpreter, "must be profiling interpreter"); | |
898 frame fr = thread->last_frame(); | |
899 assert(fr.is_interpreted_frame(), "must come from interpreter"); | |
900 methodHandle method(thread, fr.interpreter_frame_method()); | |
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901 Method::build_interpreter_method_data(method, THREAD); |
0 | 902 if (HAS_PENDING_EXCEPTION) { |
903 assert((PENDING_EXCEPTION->is_a(SystemDictionary::OutOfMemoryError_klass())), "we expect only an OOM error here"); | |
904 CLEAR_PENDING_EXCEPTION; | |
905 // and fall through... | |
906 } | |
907 IRT_END | |
908 | |
909 | |
910 #ifdef ASSERT | |
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911 IRT_LEAF(void, InterpreterRuntime::verify_mdp(Method* method, address bcp, address mdp)) |
0 | 912 assert(ProfileInterpreter, "must be profiling interpreter"); |
913 | |
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914 MethodData* mdo = method->method_data(); |
0 | 915 assert(mdo != NULL, "must not be null"); |
916 | |
917 int bci = method->bci_from(bcp); | |
918 | |
919 address mdp2 = mdo->bci_to_dp(bci); | |
920 if (mdp != mdp2) { | |
921 ResourceMark rm; | |
922 ResetNoHandleMark rnm; // In a LEAF entry. | |
923 HandleMark hm; | |
924 tty->print_cr("FAILED verify : actual mdp %p expected mdp %p @ bci %d", mdp, mdp2, bci); | |
925 int current_di = mdo->dp_to_di(mdp); | |
926 int expected_di = mdo->dp_to_di(mdp2); | |
927 tty->print_cr(" actual di %d expected di %d", current_di, expected_di); | |
928 int expected_approx_bci = mdo->data_at(expected_di)->bci(); | |
929 int approx_bci = -1; | |
930 if (current_di >= 0) { | |
931 approx_bci = mdo->data_at(current_di)->bci(); | |
932 } | |
933 tty->print_cr(" actual bci is %d expected bci %d", approx_bci, expected_approx_bci); | |
934 mdo->print_on(tty); | |
935 method->print_codes(); | |
936 } | |
937 assert(mdp == mdp2, "wrong mdp"); | |
938 IRT_END | |
939 #endif // ASSERT | |
940 | |
941 IRT_ENTRY(void, InterpreterRuntime::update_mdp_for_ret(JavaThread* thread, int return_bci)) | |
942 assert(ProfileInterpreter, "must be profiling interpreter"); | |
943 ResourceMark rm(thread); | |
944 HandleMark hm(thread); | |
945 frame fr = thread->last_frame(); | |
946 assert(fr.is_interpreted_frame(), "must come from interpreter"); | |
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947 MethodData* h_mdo = fr.interpreter_frame_method()->method_data(); |
0 | 948 |
949 // Grab a lock to ensure atomic access to setting the return bci and | |
950 // the displacement. This can block and GC, invalidating all naked oops. | |
951 MutexLocker ml(RetData_lock); | |
952 | |
953 // ProfileData is essentially a wrapper around a derived oop, so we | |
954 // need to take the lock before making any ProfileData structures. | |
955 ProfileData* data = h_mdo->data_at(h_mdo->dp_to_di(fr.interpreter_frame_mdp())); | |
956 RetData* rdata = data->as_RetData(); | |
957 address new_mdp = rdata->fixup_ret(return_bci, h_mdo); | |
958 fr.interpreter_frame_set_mdp(new_mdp); | |
959 IRT_END | |
960 | |
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961 IRT_ENTRY(MethodCounters*, InterpreterRuntime::build_method_counters(JavaThread* thread, Method* m)) |
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962 MethodCounters* mcs = Method::build_method_counters(m, thread); |
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963 if (HAS_PENDING_EXCEPTION) { |
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964 assert((PENDING_EXCEPTION->is_a(SystemDictionary::OutOfMemoryError_klass())), "we expect only an OOM error here"); |
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965 CLEAR_PENDING_EXCEPTION; |
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966 } |
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967 return mcs; |
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968 IRT_END |
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969 |
0 | 970 |
971 IRT_ENTRY(void, InterpreterRuntime::at_safepoint(JavaThread* thread)) | |
972 // We used to need an explict preserve_arguments here for invoke bytecodes. However, | |
973 // stack traversal automatically takes care of preserving arguments for invoke, so | |
974 // this is no longer needed. | |
975 | |
976 // IRT_END does an implicit safepoint check, hence we are guaranteed to block | |
977 // if this is called during a safepoint | |
978 | |
979 if (JvmtiExport::should_post_single_step()) { | |
980 // We are called during regular safepoints and when the VM is | |
981 // single stepping. If any thread is marked for single stepping, | |
982 // then we may have JVMTI work to do. | |
983 JvmtiExport::at_single_stepping_point(thread, method(thread), bcp(thread)); | |
984 } | |
985 IRT_END | |
986 | |
987 IRT_ENTRY(void, InterpreterRuntime::post_field_access(JavaThread *thread, oopDesc* obj, | |
988 ConstantPoolCacheEntry *cp_entry)) | |
989 | |
990 // check the access_flags for the field in the klass | |
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991 |
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992 InstanceKlass* ik = InstanceKlass::cast(cp_entry->f1_as_klass()); |
0 | 993 int index = cp_entry->field_index(); |
3938 | 994 if ((ik->field_access_flags(index) & JVM_ACC_FIELD_ACCESS_WATCHED) == 0) return; |
0 | 995 |
996 switch(cp_entry->flag_state()) { | |
997 case btos: // fall through | |
998 case ctos: // fall through | |
999 case stos: // fall through | |
1000 case itos: // fall through | |
1001 case ftos: // fall through | |
1002 case ltos: // fall through | |
1003 case dtos: // fall through | |
1004 case atos: break; | |
1005 default: ShouldNotReachHere(); return; | |
1006 } | |
1007 bool is_static = (obj == NULL); | |
1008 HandleMark hm(thread); | |
1009 | |
1010 Handle h_obj; | |
1011 if (!is_static) { | |
1012 // non-static field accessors have an object, but we need a handle | |
1013 h_obj = Handle(thread, obj); | |
1014 } | |
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1015 instanceKlassHandle h_cp_entry_f1(thread, (Klass*)cp_entry->f1_as_klass()); |
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1016 jfieldID fid = jfieldIDWorkaround::to_jfieldID(h_cp_entry_f1, cp_entry->f2_as_index(), is_static); |
0 | 1017 JvmtiExport::post_field_access(thread, method(thread), bcp(thread), h_cp_entry_f1, h_obj, fid); |
1018 IRT_END | |
1019 | |
1020 IRT_ENTRY(void, InterpreterRuntime::post_field_modification(JavaThread *thread, | |
1021 oopDesc* obj, ConstantPoolCacheEntry *cp_entry, jvalue *value)) | |
1022 | |
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1023 Klass* k = (Klass*)cp_entry->f1_as_klass(); |
0 | 1024 |
1025 // check the access_flags for the field in the klass | |
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1026 InstanceKlass* ik = InstanceKlass::cast(k); |
0 | 1027 int index = cp_entry->field_index(); |
1028 // bail out if field modifications are not watched | |
3938 | 1029 if ((ik->field_access_flags(index) & JVM_ACC_FIELD_MODIFICATION_WATCHED) == 0) return; |
0 | 1030 |
1031 char sig_type = '\0'; | |
1032 | |
1033 switch(cp_entry->flag_state()) { | |
1034 case btos: sig_type = 'Z'; break; | |
1035 case ctos: sig_type = 'C'; break; | |
1036 case stos: sig_type = 'S'; break; | |
1037 case itos: sig_type = 'I'; break; | |
1038 case ftos: sig_type = 'F'; break; | |
1039 case atos: sig_type = 'L'; break; | |
1040 case ltos: sig_type = 'J'; break; | |
1041 case dtos: sig_type = 'D'; break; | |
1042 default: ShouldNotReachHere(); return; | |
1043 } | |
1044 bool is_static = (obj == NULL); | |
1045 | |
1046 HandleMark hm(thread); | |
1047 instanceKlassHandle h_klass(thread, k); | |
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1048 jfieldID fid = jfieldIDWorkaround::to_jfieldID(h_klass, cp_entry->f2_as_index(), is_static); |
0 | 1049 jvalue fvalue; |
1050 #ifdef _LP64 | |
1051 fvalue = *value; | |
1052 #else | |
1053 // Long/double values are stored unaligned and also noncontiguously with | |
1054 // tagged stacks. We can't just do a simple assignment even in the non- | |
1055 // J/D cases because a C++ compiler is allowed to assume that a jvalue is | |
1056 // 8-byte aligned, and interpreter stack slots are only 4-byte aligned. | |
1057 // We assume that the two halves of longs/doubles are stored in interpreter | |
1058 // stack slots in platform-endian order. | |
1059 jlong_accessor u; | |
1060 jint* newval = (jint*)value; | |
1061 u.words[0] = newval[0]; | |
1506 | 1062 u.words[1] = newval[Interpreter::stackElementWords]; // skip if tag |
0 | 1063 fvalue.j = u.long_value; |
1064 #endif // _LP64 | |
1065 | |
1066 Handle h_obj; | |
1067 if (!is_static) { | |
1068 // non-static field accessors have an object, but we need a handle | |
1069 h_obj = Handle(thread, obj); | |
1070 } | |
1071 | |
1072 JvmtiExport::post_raw_field_modification(thread, method(thread), bcp(thread), h_klass, h_obj, | |
1073 fid, sig_type, &fvalue); | |
1074 IRT_END | |
1075 | |
1076 IRT_ENTRY(void, InterpreterRuntime::post_method_entry(JavaThread *thread)) | |
1077 JvmtiExport::post_method_entry(thread, InterpreterRuntime::method(thread), InterpreterRuntime::last_frame(thread)); | |
1078 IRT_END | |
1079 | |
1080 | |
1081 IRT_ENTRY(void, InterpreterRuntime::post_method_exit(JavaThread *thread)) | |
1082 JvmtiExport::post_method_exit(thread, InterpreterRuntime::method(thread), InterpreterRuntime::last_frame(thread)); | |
1083 IRT_END | |
1084 | |
1085 IRT_LEAF(int, InterpreterRuntime::interpreter_contains(address pc)) | |
1086 { | |
1087 return (Interpreter::contains(pc) ? 1 : 0); | |
1088 } | |
1089 IRT_END | |
1090 | |
1091 | |
1092 // Implementation of SignatureHandlerLibrary | |
1093 | |
1094 address SignatureHandlerLibrary::set_handler_blob() { | |
1095 BufferBlob* handler_blob = BufferBlob::create("native signature handlers", blob_size); | |
1096 if (handler_blob == NULL) { | |
1097 return NULL; | |
1098 } | |
1748 | 1099 address handler = handler_blob->code_begin(); |
0 | 1100 _handler_blob = handler_blob; |
1101 _handler = handler; | |
1102 return handler; | |
1103 } | |
1104 | |
1105 void SignatureHandlerLibrary::initialize() { | |
1106 if (_fingerprints != NULL) { | |
1107 return; | |
1108 } | |
1109 if (set_handler_blob() == NULL) { | |
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1110 vm_exit_out_of_memory(blob_size, OOM_MALLOC_ERROR, "native signature handlers"); |
0 | 1111 } |
1112 | |
1113 BufferBlob* bb = BufferBlob::create("Signature Handler Temp Buffer", | |
1114 SignatureHandlerLibrary::buffer_size); | |
1748 | 1115 _buffer = bb->code_begin(); |
0 | 1116 |
6197 | 1117 _fingerprints = new(ResourceObj::C_HEAP, mtCode)GrowableArray<uint64_t>(32, true); |
1118 _handlers = new(ResourceObj::C_HEAP, mtCode)GrowableArray<address>(32, true); | |
0 | 1119 } |
1120 | |
1121 address SignatureHandlerLibrary::set_handler(CodeBuffer* buffer) { | |
1122 address handler = _handler; | |
1748 | 1123 int insts_size = buffer->pure_insts_size(); |
1124 if (handler + insts_size > _handler_blob->code_end()) { | |
0 | 1125 // get a new handler blob |
1126 handler = set_handler_blob(); | |
1127 } | |
1128 if (handler != NULL) { | |
1748 | 1129 memcpy(handler, buffer->insts_begin(), insts_size); |
0 | 1130 pd_set_handler(handler); |
1748 | 1131 ICache::invalidate_range(handler, insts_size); |
1132 _handler = handler + insts_size; | |
0 | 1133 } |
1134 return handler; | |
1135 } | |
1136 | |
1137 void SignatureHandlerLibrary::add(methodHandle method) { | |
1138 if (method->signature_handler() == NULL) { | |
1139 // use slow signature handler if we can't do better | |
1140 int handler_index = -1; | |
1141 // check if we can use customized (fast) signature handler | |
1142 if (UseFastSignatureHandlers && method->size_of_parameters() <= Fingerprinter::max_size_of_parameters) { | |
1143 // use customized signature handler | |
1144 MutexLocker mu(SignatureHandlerLibrary_lock); | |
1145 // make sure data structure is initialized | |
1146 initialize(); | |
1147 // lookup method signature's fingerprint | |
1148 uint64_t fingerprint = Fingerprinter(method).fingerprint(); | |
1149 handler_index = _fingerprints->find(fingerprint); | |
1150 // create handler if necessary | |
1151 if (handler_index < 0) { | |
1152 ResourceMark rm; | |
1153 ptrdiff_t align_offset = (address) | |
1154 round_to((intptr_t)_buffer, CodeEntryAlignment) - (address)_buffer; | |
1155 CodeBuffer buffer((address)(_buffer + align_offset), | |
1156 SignatureHandlerLibrary::buffer_size - align_offset); | |
1157 InterpreterRuntime::SignatureHandlerGenerator(method, &buffer).generate(fingerprint); | |
1158 // copy into code heap | |
1159 address handler = set_handler(&buffer); | |
1160 if (handler == NULL) { | |
1161 // use slow signature handler | |
1162 } else { | |
1163 // debugging suppport | |
1164 if (PrintSignatureHandlers) { | |
1165 tty->cr(); | |
1166 tty->print_cr("argument handler #%d for: %s %s (fingerprint = " UINT64_FORMAT ", %d bytes generated)", | |
1167 _handlers->length(), | |
1168 (method->is_static() ? "static" : "receiver"), | |
1169 method->name_and_sig_as_C_string(), | |
1170 fingerprint, | |
1748 | 1171 buffer.insts_size()); |
1172 Disassembler::decode(handler, handler + buffer.insts_size()); | |
0 | 1173 #ifndef PRODUCT |
1174 tty->print_cr(" --- associated result handler ---"); | |
1175 address rh_begin = Interpreter::result_handler(method()->result_type()); | |
1176 address rh_end = rh_begin; | |
1177 while (*(int*)rh_end != 0) { | |
1178 rh_end += sizeof(int); | |
1179 } | |
1180 Disassembler::decode(rh_begin, rh_end); | |
1181 #endif | |
1182 } | |
1183 // add handler to library | |
1184 _fingerprints->append(fingerprint); | |
1185 _handlers->append(handler); | |
1186 // set handler index | |
1187 assert(_fingerprints->length() == _handlers->length(), "sanity check"); | |
1188 handler_index = _fingerprints->length() - 1; | |
1189 } | |
1190 } | |
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1191 // Set handler under SignatureHandlerLibrary_lock |
0 | 1192 if (handler_index < 0) { |
1193 // use generic signature handler | |
1194 method->set_signature_handler(Interpreter::slow_signature_handler()); | |
1195 } else { | |
1196 // set handler | |
1197 method->set_signature_handler(_handlers->at(handler_index)); | |
1198 } | |
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1199 } else { |
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1200 CHECK_UNHANDLED_OOPS_ONLY(Thread::current()->clear_unhandled_oops()); |
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1201 // use generic signature handler |
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1202 method->set_signature_handler(Interpreter::slow_signature_handler()); |
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1203 } |
0 | 1204 } |
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1205 #ifdef ASSERT |
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1206 int handler_index = -1; |
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1207 int fingerprint_index = -2; |
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1208 { |
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1209 // '_handlers' and '_fingerprints' are 'GrowableArray's and are NOT synchronized |
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1210 // in any way if accessed from multiple threads. To avoid races with another |
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1211 // thread which may change the arrays in the above, mutex protected block, we |
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1212 // have to protect this read access here with the same mutex as well! |
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1213 MutexLocker mu(SignatureHandlerLibrary_lock); |
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1214 if (_handlers != NULL) { |
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1215 handler_index = _handlers->find(method->signature_handler()); |
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1216 fingerprint_index = _fingerprints->find(Fingerprinter(method).fingerprint()); |
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1217 } |
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1218 } |
0 | 1219 assert(method->signature_handler() == Interpreter::slow_signature_handler() || |
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1220 handler_index == fingerprint_index, "sanity check"); |
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1221 #endif // ASSERT |
0 | 1222 } |
1223 | |
1224 | |
1225 BufferBlob* SignatureHandlerLibrary::_handler_blob = NULL; | |
1226 address SignatureHandlerLibrary::_handler = NULL; | |
1227 GrowableArray<uint64_t>* SignatureHandlerLibrary::_fingerprints = NULL; | |
1228 GrowableArray<address>* SignatureHandlerLibrary::_handlers = NULL; | |
1229 address SignatureHandlerLibrary::_buffer = NULL; | |
1230 | |
1231 | |
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1232 IRT_ENTRY(void, InterpreterRuntime::prepare_native_call(JavaThread* thread, Method* method)) |
0 | 1233 methodHandle m(thread, method); |
1234 assert(m->is_native(), "sanity check"); | |
1235 // lookup native function entry point if it doesn't exist | |
1236 bool in_base_library; | |
1237 if (!m->has_native_function()) { | |
1238 NativeLookup::lookup(m, in_base_library, CHECK); | |
1239 } | |
1240 // make sure signature handler is installed | |
1241 SignatureHandlerLibrary::add(m); | |
1242 // The interpreter entry point checks the signature handler first, | |
1243 // before trying to fetch the native entry point and klass mirror. | |
1244 // We must set the signature handler last, so that multiple processors | |
1245 // preparing the same method will be sure to see non-null entry & mirror. | |
1246 IRT_END | |
1247 | |
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1248 #if defined(IA32) || defined(AMD64) || defined(ARM) |
0 | 1249 IRT_LEAF(void, InterpreterRuntime::popframe_move_outgoing_args(JavaThread* thread, void* src_address, void* dest_address)) |
1250 if (src_address == dest_address) { | |
1251 return; | |
1252 } | |
1253 ResetNoHandleMark rnm; // In a LEAF entry. | |
1254 HandleMark hm; | |
1255 ResourceMark rm; | |
1256 frame fr = thread->last_frame(); | |
1257 assert(fr.is_interpreted_frame(), ""); | |
1258 jint bci = fr.interpreter_frame_bci(); | |
1259 methodHandle mh(thread, fr.interpreter_frame_method()); | |
2142 | 1260 Bytecode_invoke invoke(mh, bci); |
1261 ArgumentSizeComputer asc(invoke.signature()); | |
1262 int size_of_arguments = (asc.size() + (invoke.has_receiver() ? 1 : 0)); // receiver | |
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1263 Copy::conjoint_jbytes(src_address, dest_address, |
1506 | 1264 size_of_arguments * Interpreter::stackElementSize); |
0 | 1265 IRT_END |
1266 #endif | |
12010
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1267 |
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1268 #if INCLUDE_JVMTI |
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1269 // This is a support of the JVMTI PopFrame interface. |
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1270 // Make sure it is an invokestatic of a polymorphic intrinsic that has a member_name argument |
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1271 // and return it as a vm_result so that it can be reloaded in the list of invokestatic parameters. |
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1272 // The dmh argument is a reference to a DirectMethoHandle that has a member name field. |
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1273 IRT_ENTRY(void, InterpreterRuntime::member_name_arg_or_null(JavaThread* thread, address dmh, |
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1274 Method* method, address bcp)) |
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1275 Bytecodes::Code code = Bytecodes::code_at(method, bcp); |
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1276 if (code != Bytecodes::_invokestatic) { |
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1277 return; |
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1278 } |
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1279 ConstantPool* cpool = method->constants(); |
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1280 int cp_index = Bytes::get_native_u2(bcp + 1) + ConstantPool::CPCACHE_INDEX_TAG; |
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1281 Symbol* cname = cpool->klass_name_at(cpool->klass_ref_index_at(cp_index)); |
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1282 Symbol* mname = cpool->name_ref_at(cp_index); |
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1283 |
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1284 if (MethodHandles::has_member_arg(cname, mname)) { |
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1285 oop member_name = java_lang_invoke_DirectMethodHandle::member((oop)dmh); |
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1286 thread->set_vm_result(member_name); |
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1287 } |
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1288 IRT_END |
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1289 #endif // INCLUDE_JVMTI |