src/share/vm/oops/instanceKlass.cpp

Fri, 18 Mar 2011 16:00:34 -0700

author
never
date
Fri, 18 Mar 2011 16:00:34 -0700
changeset 2658
c7f3d0b4570f
parent 2639
8033953d67ff
child 2690
2cd0180da6e1
permissions
-rw-r--r--

7017732: move static fields into Class to prepare for perm gen removal
Reviewed-by: kvn, coleenp, twisti, stefank

duke@435 1 /*
stefank@2534 2 * Copyright (c) 1997, 2011, Oracle and/or its affiliates. All rights reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
duke@435 22 *
duke@435 23 */
duke@435 24
stefank@2314 25 #include "precompiled.hpp"
stefank@2314 26 #include "classfile/javaClasses.hpp"
stefank@2314 27 #include "classfile/systemDictionary.hpp"
stefank@2314 28 #include "classfile/verifier.hpp"
stefank@2314 29 #include "classfile/vmSymbols.hpp"
stefank@2314 30 #include "compiler/compileBroker.hpp"
stefank@2314 31 #include "gc_implementation/shared/markSweep.inline.hpp"
stefank@2314 32 #include "gc_interface/collectedHeap.inline.hpp"
stefank@2314 33 #include "interpreter/oopMapCache.hpp"
stefank@2314 34 #include "interpreter/rewriter.hpp"
stefank@2314 35 #include "jvmtifiles/jvmti.h"
stefank@2314 36 #include "memory/genOopClosures.inline.hpp"
stefank@2314 37 #include "memory/oopFactory.hpp"
stefank@2314 38 #include "memory/permGen.hpp"
stefank@2314 39 #include "oops/instanceKlass.hpp"
never@2658 40 #include "oops/instanceMirrorKlass.hpp"
stefank@2314 41 #include "oops/instanceOop.hpp"
stefank@2314 42 #include "oops/methodOop.hpp"
stefank@2314 43 #include "oops/objArrayKlassKlass.hpp"
stefank@2314 44 #include "oops/oop.inline.hpp"
coleenp@2497 45 #include "oops/symbol.hpp"
stefank@2314 46 #include "prims/jvmtiExport.hpp"
stefank@2314 47 #include "prims/jvmtiRedefineClassesTrace.hpp"
stefank@2314 48 #include "runtime/fieldDescriptor.hpp"
stefank@2314 49 #include "runtime/handles.inline.hpp"
stefank@2314 50 #include "runtime/javaCalls.hpp"
stefank@2314 51 #include "runtime/mutexLocker.hpp"
stefank@2314 52 #include "services/threadService.hpp"
stefank@2314 53 #include "utilities/dtrace.hpp"
stefank@2314 54 #ifdef TARGET_OS_FAMILY_linux
stefank@2314 55 # include "thread_linux.inline.hpp"
stefank@2314 56 #endif
stefank@2314 57 #ifdef TARGET_OS_FAMILY_solaris
stefank@2314 58 # include "thread_solaris.inline.hpp"
stefank@2314 59 #endif
stefank@2314 60 #ifdef TARGET_OS_FAMILY_windows
stefank@2314 61 # include "thread_windows.inline.hpp"
stefank@2314 62 #endif
stefank@2314 63 #ifndef SERIALGC
stefank@2314 64 #include "gc_implementation/g1/g1CollectedHeap.inline.hpp"
stefank@2314 65 #include "gc_implementation/g1/g1OopClosures.inline.hpp"
stefank@2314 66 #include "gc_implementation/g1/g1RemSet.inline.hpp"
stefank@2314 67 #include "gc_implementation/g1/heapRegionSeq.inline.hpp"
stefank@2314 68 #include "gc_implementation/parNew/parOopClosures.inline.hpp"
stefank@2314 69 #include "gc_implementation/parallelScavenge/psPromotionManager.inline.hpp"
stefank@2314 70 #include "gc_implementation/parallelScavenge/psScavenge.inline.hpp"
stefank@2314 71 #include "oops/oop.pcgc.inline.hpp"
stefank@2314 72 #endif
stefank@2314 73 #ifdef COMPILER1
stefank@2314 74 #include "c1/c1_Compiler.hpp"
stefank@2314 75 #endif
duke@435 76
fparain@1759 77 #ifdef DTRACE_ENABLED
fparain@1759 78
fparain@1759 79 HS_DTRACE_PROBE_DECL4(hotspot, class__initialization__required,
fparain@1759 80 char*, intptr_t, oop, intptr_t);
fparain@1759 81 HS_DTRACE_PROBE_DECL5(hotspot, class__initialization__recursive,
fparain@1759 82 char*, intptr_t, oop, intptr_t, int);
fparain@1759 83 HS_DTRACE_PROBE_DECL5(hotspot, class__initialization__concurrent,
fparain@1759 84 char*, intptr_t, oop, intptr_t, int);
fparain@1759 85 HS_DTRACE_PROBE_DECL5(hotspot, class__initialization__erroneous,
fparain@1759 86 char*, intptr_t, oop, intptr_t, int);
fparain@1759 87 HS_DTRACE_PROBE_DECL5(hotspot, class__initialization__super__failed,
fparain@1759 88 char*, intptr_t, oop, intptr_t, int);
fparain@1759 89 HS_DTRACE_PROBE_DECL5(hotspot, class__initialization__clinit,
fparain@1759 90 char*, intptr_t, oop, intptr_t, int);
fparain@1759 91 HS_DTRACE_PROBE_DECL5(hotspot, class__initialization__error,
fparain@1759 92 char*, intptr_t, oop, intptr_t, int);
fparain@1759 93 HS_DTRACE_PROBE_DECL5(hotspot, class__initialization__end,
fparain@1759 94 char*, intptr_t, oop, intptr_t, int);
fparain@1759 95
fparain@1759 96 #define DTRACE_CLASSINIT_PROBE(type, clss, thread_type) \
fparain@1759 97 { \
fparain@1759 98 char* data = NULL; \
fparain@1759 99 int len = 0; \
coleenp@2497 100 Symbol* name = (clss)->name(); \
fparain@1759 101 if (name != NULL) { \
fparain@1759 102 data = (char*)name->bytes(); \
fparain@1759 103 len = name->utf8_length(); \
fparain@1759 104 } \
fparain@1759 105 HS_DTRACE_PROBE4(hotspot, class__initialization__##type, \
fparain@1759 106 data, len, (clss)->class_loader(), thread_type); \
fparain@1759 107 }
fparain@1759 108
fparain@1759 109 #define DTRACE_CLASSINIT_PROBE_WAIT(type, clss, thread_type, wait) \
fparain@1759 110 { \
fparain@1759 111 char* data = NULL; \
fparain@1759 112 int len = 0; \
coleenp@2497 113 Symbol* name = (clss)->name(); \
fparain@1759 114 if (name != NULL) { \
fparain@1759 115 data = (char*)name->bytes(); \
fparain@1759 116 len = name->utf8_length(); \
fparain@1759 117 } \
fparain@1759 118 HS_DTRACE_PROBE5(hotspot, class__initialization__##type, \
fparain@1759 119 data, len, (clss)->class_loader(), thread_type, wait); \
fparain@1759 120 }
fparain@1759 121
fparain@1759 122 #else // ndef DTRACE_ENABLED
fparain@1759 123
fparain@1759 124 #define DTRACE_CLASSINIT_PROBE(type, clss, thread_type)
fparain@1759 125 #define DTRACE_CLASSINIT_PROBE_WAIT(type, clss, thread_type, wait)
fparain@1759 126
fparain@1759 127 #endif // ndef DTRACE_ENABLED
fparain@1759 128
duke@435 129 bool instanceKlass::should_be_initialized() const {
duke@435 130 return !is_initialized();
duke@435 131 }
duke@435 132
duke@435 133 klassVtable* instanceKlass::vtable() const {
duke@435 134 return new klassVtable(as_klassOop(), start_of_vtable(), vtable_length() / vtableEntry::size());
duke@435 135 }
duke@435 136
duke@435 137 klassItable* instanceKlass::itable() const {
duke@435 138 return new klassItable(as_klassOop());
duke@435 139 }
duke@435 140
duke@435 141 void instanceKlass::eager_initialize(Thread *thread) {
duke@435 142 if (!EagerInitialization) return;
duke@435 143
duke@435 144 if (this->is_not_initialized()) {
duke@435 145 // abort if the the class has a class initializer
duke@435 146 if (this->class_initializer() != NULL) return;
duke@435 147
duke@435 148 // abort if it is java.lang.Object (initialization is handled in genesis)
duke@435 149 klassOop super = this->super();
duke@435 150 if (super == NULL) return;
duke@435 151
duke@435 152 // abort if the super class should be initialized
duke@435 153 if (!instanceKlass::cast(super)->is_initialized()) return;
duke@435 154
duke@435 155 // call body to expose the this pointer
duke@435 156 instanceKlassHandle this_oop(thread, this->as_klassOop());
duke@435 157 eager_initialize_impl(this_oop);
duke@435 158 }
duke@435 159 }
duke@435 160
duke@435 161
duke@435 162 void instanceKlass::eager_initialize_impl(instanceKlassHandle this_oop) {
duke@435 163 EXCEPTION_MARK;
duke@435 164 ObjectLocker ol(this_oop, THREAD);
duke@435 165
duke@435 166 // abort if someone beat us to the initialization
duke@435 167 if (!this_oop->is_not_initialized()) return; // note: not equivalent to is_initialized()
duke@435 168
duke@435 169 ClassState old_state = this_oop->_init_state;
duke@435 170 link_class_impl(this_oop, true, THREAD);
duke@435 171 if (HAS_PENDING_EXCEPTION) {
duke@435 172 CLEAR_PENDING_EXCEPTION;
duke@435 173 // Abort if linking the class throws an exception.
duke@435 174
duke@435 175 // Use a test to avoid redundantly resetting the state if there's
duke@435 176 // no change. Set_init_state() asserts that state changes make
duke@435 177 // progress, whereas here we might just be spinning in place.
duke@435 178 if( old_state != this_oop->_init_state )
duke@435 179 this_oop->set_init_state (old_state);
duke@435 180 } else {
duke@435 181 // linking successfull, mark class as initialized
duke@435 182 this_oop->set_init_state (fully_initialized);
duke@435 183 // trace
duke@435 184 if (TraceClassInitialization) {
duke@435 185 ResourceMark rm(THREAD);
duke@435 186 tty->print_cr("[Initialized %s without side effects]", this_oop->external_name());
duke@435 187 }
duke@435 188 }
duke@435 189 }
duke@435 190
duke@435 191
duke@435 192 // See "The Virtual Machine Specification" section 2.16.5 for a detailed explanation of the class initialization
duke@435 193 // process. The step comments refers to the procedure described in that section.
duke@435 194 // Note: implementation moved to static method to expose the this pointer.
duke@435 195 void instanceKlass::initialize(TRAPS) {
duke@435 196 if (this->should_be_initialized()) {
duke@435 197 HandleMark hm(THREAD);
duke@435 198 instanceKlassHandle this_oop(THREAD, this->as_klassOop());
duke@435 199 initialize_impl(this_oop, CHECK);
duke@435 200 // Note: at this point the class may be initialized
duke@435 201 // OR it may be in the state of being initialized
duke@435 202 // in case of recursive initialization!
duke@435 203 } else {
duke@435 204 assert(is_initialized(), "sanity check");
duke@435 205 }
duke@435 206 }
duke@435 207
duke@435 208
duke@435 209 bool instanceKlass::verify_code(
duke@435 210 instanceKlassHandle this_oop, bool throw_verifyerror, TRAPS) {
duke@435 211 // 1) Verify the bytecodes
duke@435 212 Verifier::Mode mode =
duke@435 213 throw_verifyerror ? Verifier::ThrowException : Verifier::NoException;
acorn@1408 214 return Verifier::verify(this_oop, mode, this_oop->should_verify_class(), CHECK_false);
duke@435 215 }
duke@435 216
duke@435 217
duke@435 218 // Used exclusively by the shared spaces dump mechanism to prevent
duke@435 219 // classes mapped into the shared regions in new VMs from appearing linked.
duke@435 220
duke@435 221 void instanceKlass::unlink_class() {
duke@435 222 assert(is_linked(), "must be linked");
duke@435 223 _init_state = loaded;
duke@435 224 }
duke@435 225
duke@435 226 void instanceKlass::link_class(TRAPS) {
duke@435 227 assert(is_loaded(), "must be loaded");
duke@435 228 if (!is_linked()) {
duke@435 229 instanceKlassHandle this_oop(THREAD, this->as_klassOop());
duke@435 230 link_class_impl(this_oop, true, CHECK);
duke@435 231 }
duke@435 232 }
duke@435 233
duke@435 234 // Called to verify that a class can link during initialization, without
duke@435 235 // throwing a VerifyError.
duke@435 236 bool instanceKlass::link_class_or_fail(TRAPS) {
duke@435 237 assert(is_loaded(), "must be loaded");
duke@435 238 if (!is_linked()) {
duke@435 239 instanceKlassHandle this_oop(THREAD, this->as_klassOop());
duke@435 240 link_class_impl(this_oop, false, CHECK_false);
duke@435 241 }
duke@435 242 return is_linked();
duke@435 243 }
duke@435 244
duke@435 245 bool instanceKlass::link_class_impl(
duke@435 246 instanceKlassHandle this_oop, bool throw_verifyerror, TRAPS) {
duke@435 247 // check for error state
duke@435 248 if (this_oop->is_in_error_state()) {
duke@435 249 ResourceMark rm(THREAD);
duke@435 250 THROW_MSG_(vmSymbols::java_lang_NoClassDefFoundError(),
duke@435 251 this_oop->external_name(), false);
duke@435 252 }
duke@435 253 // return if already verified
duke@435 254 if (this_oop->is_linked()) {
duke@435 255 return true;
duke@435 256 }
duke@435 257
duke@435 258 // Timing
duke@435 259 // timer handles recursion
duke@435 260 assert(THREAD->is_Java_thread(), "non-JavaThread in link_class_impl");
duke@435 261 JavaThread* jt = (JavaThread*)THREAD;
duke@435 262
duke@435 263 // link super class before linking this class
duke@435 264 instanceKlassHandle super(THREAD, this_oop->super());
duke@435 265 if (super.not_null()) {
duke@435 266 if (super->is_interface()) { // check if super class is an interface
duke@435 267 ResourceMark rm(THREAD);
duke@435 268 Exceptions::fthrow(
duke@435 269 THREAD_AND_LOCATION,
coleenp@2497 270 vmSymbols::java_lang_IncompatibleClassChangeError(),
duke@435 271 "class %s has interface %s as super class",
duke@435 272 this_oop->external_name(),
duke@435 273 super->external_name()
duke@435 274 );
duke@435 275 return false;
duke@435 276 }
duke@435 277
duke@435 278 link_class_impl(super, throw_verifyerror, CHECK_false);
duke@435 279 }
duke@435 280
duke@435 281 // link all interfaces implemented by this class before linking this class
duke@435 282 objArrayHandle interfaces (THREAD, this_oop->local_interfaces());
duke@435 283 int num_interfaces = interfaces->length();
duke@435 284 for (int index = 0; index < num_interfaces; index++) {
duke@435 285 HandleMark hm(THREAD);
duke@435 286 instanceKlassHandle ih(THREAD, klassOop(interfaces->obj_at(index)));
duke@435 287 link_class_impl(ih, throw_verifyerror, CHECK_false);
duke@435 288 }
duke@435 289
duke@435 290 // in case the class is linked in the process of linking its superclasses
duke@435 291 if (this_oop->is_linked()) {
duke@435 292 return true;
duke@435 293 }
duke@435 294
mchung@1310 295 // trace only the link time for this klass that includes
mchung@1310 296 // the verification time
mchung@1310 297 PerfClassTraceTime vmtimer(ClassLoader::perf_class_link_time(),
mchung@1310 298 ClassLoader::perf_class_link_selftime(),
mchung@1310 299 ClassLoader::perf_classes_linked(),
mchung@1310 300 jt->get_thread_stat()->perf_recursion_counts_addr(),
mchung@1310 301 jt->get_thread_stat()->perf_timers_addr(),
mchung@1310 302 PerfClassTraceTime::CLASS_LINK);
mchung@1310 303
duke@435 304 // verification & rewriting
duke@435 305 {
duke@435 306 ObjectLocker ol(this_oop, THREAD);
duke@435 307 // rewritten will have been set if loader constraint error found
duke@435 308 // on an earlier link attempt
duke@435 309 // don't verify or rewrite if already rewritten
duke@435 310 if (!this_oop->is_linked()) {
duke@435 311 if (!this_oop->is_rewritten()) {
duke@435 312 {
duke@435 313 // Timer includes any side effects of class verification (resolution,
duke@435 314 // etc), but not recursive entry into verify_code().
mchung@1310 315 PerfClassTraceTime timer(ClassLoader::perf_class_verify_time(),
mchung@1310 316 ClassLoader::perf_class_verify_selftime(),
mchung@1310 317 ClassLoader::perf_classes_verified(),
mchung@1310 318 jt->get_thread_stat()->perf_recursion_counts_addr(),
mchung@1310 319 jt->get_thread_stat()->perf_timers_addr(),
mchung@1310 320 PerfClassTraceTime::CLASS_VERIFY);
duke@435 321 bool verify_ok = verify_code(this_oop, throw_verifyerror, THREAD);
duke@435 322 if (!verify_ok) {
duke@435 323 return false;
duke@435 324 }
duke@435 325 }
duke@435 326
duke@435 327 // Just in case a side-effect of verify linked this class already
duke@435 328 // (which can sometimes happen since the verifier loads classes
duke@435 329 // using custom class loaders, which are free to initialize things)
duke@435 330 if (this_oop->is_linked()) {
duke@435 331 return true;
duke@435 332 }
duke@435 333
duke@435 334 // also sets rewritten
duke@435 335 this_oop->rewrite_class(CHECK_false);
duke@435 336 }
duke@435 337
duke@435 338 // Initialize the vtable and interface table after
duke@435 339 // methods have been rewritten since rewrite may
duke@435 340 // fabricate new methodOops.
duke@435 341 // also does loader constraint checking
duke@435 342 if (!this_oop()->is_shared()) {
duke@435 343 ResourceMark rm(THREAD);
duke@435 344 this_oop->vtable()->initialize_vtable(true, CHECK_false);
duke@435 345 this_oop->itable()->initialize_itable(true, CHECK_false);
duke@435 346 }
duke@435 347 #ifdef ASSERT
duke@435 348 else {
duke@435 349 ResourceMark rm(THREAD);
duke@435 350 this_oop->vtable()->verify(tty, true);
duke@435 351 // In case itable verification is ever added.
duke@435 352 // this_oop->itable()->verify(tty, true);
duke@435 353 }
duke@435 354 #endif
duke@435 355 this_oop->set_init_state(linked);
duke@435 356 if (JvmtiExport::should_post_class_prepare()) {
duke@435 357 Thread *thread = THREAD;
duke@435 358 assert(thread->is_Java_thread(), "thread->is_Java_thread()");
duke@435 359 JvmtiExport::post_class_prepare((JavaThread *) thread, this_oop());
duke@435 360 }
duke@435 361 }
duke@435 362 }
duke@435 363 return true;
duke@435 364 }
duke@435 365
duke@435 366
duke@435 367 // Rewrite the byte codes of all of the methods of a class.
duke@435 368 // Three cases:
duke@435 369 // During the link of a newly loaded class.
duke@435 370 // During the preloading of classes to be written to the shared spaces.
duke@435 371 // - Rewrite the methods and update the method entry points.
duke@435 372 //
duke@435 373 // During the link of a class in the shared spaces.
duke@435 374 // - The methods were already rewritten, update the metho entry points.
duke@435 375 //
duke@435 376 // The rewriter must be called exactly once. Rewriting must happen after
duke@435 377 // verification but before the first method of the class is executed.
duke@435 378
duke@435 379 void instanceKlass::rewrite_class(TRAPS) {
duke@435 380 assert(is_loaded(), "must be loaded");
duke@435 381 instanceKlassHandle this_oop(THREAD, this->as_klassOop());
duke@435 382 if (this_oop->is_rewritten()) {
duke@435 383 assert(this_oop()->is_shared(), "rewriting an unshared class?");
duke@435 384 return;
duke@435 385 }
duke@435 386 Rewriter::rewrite(this_oop, CHECK); // No exception can happen here
duke@435 387 this_oop->set_rewritten();
duke@435 388 }
duke@435 389
duke@435 390
duke@435 391 void instanceKlass::initialize_impl(instanceKlassHandle this_oop, TRAPS) {
duke@435 392 // Make sure klass is linked (verified) before initialization
duke@435 393 // A class could already be verified, since it has been reflected upon.
duke@435 394 this_oop->link_class(CHECK);
duke@435 395
fparain@1759 396 DTRACE_CLASSINIT_PROBE(required, instanceKlass::cast(this_oop()), -1);
fparain@1759 397
fparain@1759 398 bool wait = false;
fparain@1759 399
duke@435 400 // refer to the JVM book page 47 for description of steps
duke@435 401 // Step 1
duke@435 402 { ObjectLocker ol(this_oop, THREAD);
duke@435 403
duke@435 404 Thread *self = THREAD; // it's passed the current thread
duke@435 405
duke@435 406 // Step 2
duke@435 407 // If we were to use wait() instead of waitInterruptibly() then
duke@435 408 // we might end up throwing IE from link/symbol resolution sites
duke@435 409 // that aren't expected to throw. This would wreak havoc. See 6320309.
duke@435 410 while(this_oop->is_being_initialized() && !this_oop->is_reentrant_initialization(self)) {
fparain@1759 411 wait = true;
duke@435 412 ol.waitUninterruptibly(CHECK);
duke@435 413 }
duke@435 414
duke@435 415 // Step 3
fparain@1759 416 if (this_oop->is_being_initialized() && this_oop->is_reentrant_initialization(self)) {
fparain@1759 417 DTRACE_CLASSINIT_PROBE_WAIT(recursive, instanceKlass::cast(this_oop()), -1,wait);
duke@435 418 return;
fparain@1759 419 }
duke@435 420
duke@435 421 // Step 4
fparain@1759 422 if (this_oop->is_initialized()) {
fparain@1759 423 DTRACE_CLASSINIT_PROBE_WAIT(concurrent, instanceKlass::cast(this_oop()), -1,wait);
duke@435 424 return;
fparain@1759 425 }
duke@435 426
duke@435 427 // Step 5
duke@435 428 if (this_oop->is_in_error_state()) {
fparain@1759 429 DTRACE_CLASSINIT_PROBE_WAIT(erroneous, instanceKlass::cast(this_oop()), -1,wait);
duke@435 430 ResourceMark rm(THREAD);
duke@435 431 const char* desc = "Could not initialize class ";
duke@435 432 const char* className = this_oop->external_name();
duke@435 433 size_t msglen = strlen(desc) + strlen(className) + 1;
kamg@2106 434 char* message = NEW_RESOURCE_ARRAY(char, msglen);
duke@435 435 if (NULL == message) {
duke@435 436 // Out of memory: can't create detailed error message
duke@435 437 THROW_MSG(vmSymbols::java_lang_NoClassDefFoundError(), className);
duke@435 438 } else {
duke@435 439 jio_snprintf(message, msglen, "%s%s", desc, className);
duke@435 440 THROW_MSG(vmSymbols::java_lang_NoClassDefFoundError(), message);
duke@435 441 }
duke@435 442 }
duke@435 443
duke@435 444 // Step 6
duke@435 445 this_oop->set_init_state(being_initialized);
duke@435 446 this_oop->set_init_thread(self);
duke@435 447 }
duke@435 448
duke@435 449 // Step 7
duke@435 450 klassOop super_klass = this_oop->super();
duke@435 451 if (super_klass != NULL && !this_oop->is_interface() && Klass::cast(super_klass)->should_be_initialized()) {
duke@435 452 Klass::cast(super_klass)->initialize(THREAD);
duke@435 453
duke@435 454 if (HAS_PENDING_EXCEPTION) {
duke@435 455 Handle e(THREAD, PENDING_EXCEPTION);
duke@435 456 CLEAR_PENDING_EXCEPTION;
duke@435 457 {
duke@435 458 EXCEPTION_MARK;
duke@435 459 this_oop->set_initialization_state_and_notify(initialization_error, THREAD); // Locks object, set state, and notify all waiting threads
duke@435 460 CLEAR_PENDING_EXCEPTION; // ignore any exception thrown, superclass initialization error is thrown below
duke@435 461 }
fparain@1759 462 DTRACE_CLASSINIT_PROBE_WAIT(super__failed, instanceKlass::cast(this_oop()), -1,wait);
duke@435 463 THROW_OOP(e());
duke@435 464 }
duke@435 465 }
duke@435 466
duke@435 467 // Step 8
duke@435 468 {
duke@435 469 assert(THREAD->is_Java_thread(), "non-JavaThread in initialize_impl");
duke@435 470 JavaThread* jt = (JavaThread*)THREAD;
fparain@1759 471 DTRACE_CLASSINIT_PROBE_WAIT(clinit, instanceKlass::cast(this_oop()), -1,wait);
duke@435 472 // Timer includes any side effects of class initialization (resolution,
duke@435 473 // etc), but not recursive entry into call_class_initializer().
mchung@1310 474 PerfClassTraceTime timer(ClassLoader::perf_class_init_time(),
mchung@1310 475 ClassLoader::perf_class_init_selftime(),
mchung@1310 476 ClassLoader::perf_classes_inited(),
mchung@1310 477 jt->get_thread_stat()->perf_recursion_counts_addr(),
mchung@1310 478 jt->get_thread_stat()->perf_timers_addr(),
mchung@1310 479 PerfClassTraceTime::CLASS_CLINIT);
duke@435 480 this_oop->call_class_initializer(THREAD);
duke@435 481 }
duke@435 482
duke@435 483 // Step 9
duke@435 484 if (!HAS_PENDING_EXCEPTION) {
duke@435 485 this_oop->set_initialization_state_and_notify(fully_initialized, CHECK);
duke@435 486 { ResourceMark rm(THREAD);
duke@435 487 debug_only(this_oop->vtable()->verify(tty, true);)
duke@435 488 }
duke@435 489 }
duke@435 490 else {
duke@435 491 // Step 10 and 11
duke@435 492 Handle e(THREAD, PENDING_EXCEPTION);
duke@435 493 CLEAR_PENDING_EXCEPTION;
duke@435 494 {
duke@435 495 EXCEPTION_MARK;
duke@435 496 this_oop->set_initialization_state_and_notify(initialization_error, THREAD);
duke@435 497 CLEAR_PENDING_EXCEPTION; // ignore any exception thrown, class initialization error is thrown below
duke@435 498 }
fparain@1759 499 DTRACE_CLASSINIT_PROBE_WAIT(error, instanceKlass::cast(this_oop()), -1,wait);
never@1577 500 if (e->is_a(SystemDictionary::Error_klass())) {
duke@435 501 THROW_OOP(e());
duke@435 502 } else {
duke@435 503 JavaCallArguments args(e);
coleenp@2497 504 THROW_ARG(vmSymbols::java_lang_ExceptionInInitializerError(),
coleenp@2497 505 vmSymbols::throwable_void_signature(),
duke@435 506 &args);
duke@435 507 }
duke@435 508 }
fparain@1759 509 DTRACE_CLASSINIT_PROBE_WAIT(end, instanceKlass::cast(this_oop()), -1,wait);
duke@435 510 }
duke@435 511
duke@435 512
duke@435 513 // Note: implementation moved to static method to expose the this pointer.
duke@435 514 void instanceKlass::set_initialization_state_and_notify(ClassState state, TRAPS) {
duke@435 515 instanceKlassHandle kh(THREAD, this->as_klassOop());
duke@435 516 set_initialization_state_and_notify_impl(kh, state, CHECK);
duke@435 517 }
duke@435 518
duke@435 519 void instanceKlass::set_initialization_state_and_notify_impl(instanceKlassHandle this_oop, ClassState state, TRAPS) {
duke@435 520 ObjectLocker ol(this_oop, THREAD);
duke@435 521 this_oop->set_init_state(state);
duke@435 522 ol.notify_all(CHECK);
duke@435 523 }
duke@435 524
duke@435 525 void instanceKlass::add_implementor(klassOop k) {
duke@435 526 assert(Compile_lock->owned_by_self(), "");
duke@435 527 // Filter out my subinterfaces.
duke@435 528 // (Note: Interfaces are never on the subklass list.)
duke@435 529 if (instanceKlass::cast(k)->is_interface()) return;
duke@435 530
duke@435 531 // Filter out subclasses whose supers already implement me.
duke@435 532 // (Note: CHA must walk subclasses of direct implementors
duke@435 533 // in order to locate indirect implementors.)
duke@435 534 klassOop sk = instanceKlass::cast(k)->super();
duke@435 535 if (sk != NULL && instanceKlass::cast(sk)->implements_interface(as_klassOop()))
duke@435 536 // We only need to check one immediate superclass, since the
duke@435 537 // implements_interface query looks at transitive_interfaces.
duke@435 538 // Any supers of the super have the same (or fewer) transitive_interfaces.
duke@435 539 return;
duke@435 540
duke@435 541 // Update number of implementors
duke@435 542 int i = _nof_implementors++;
duke@435 543
duke@435 544 // Record this implementor, if there are not too many already
duke@435 545 if (i < implementors_limit) {
duke@435 546 assert(_implementors[i] == NULL, "should be exactly one implementor");
duke@435 547 oop_store_without_check((oop*)&_implementors[i], k);
duke@435 548 } else if (i == implementors_limit) {
duke@435 549 // clear out the list on first overflow
duke@435 550 for (int i2 = 0; i2 < implementors_limit; i2++)
duke@435 551 oop_store_without_check((oop*)&_implementors[i2], NULL);
duke@435 552 }
duke@435 553
duke@435 554 // The implementor also implements the transitive_interfaces
duke@435 555 for (int index = 0; index < local_interfaces()->length(); index++) {
duke@435 556 instanceKlass::cast(klassOop(local_interfaces()->obj_at(index)))->add_implementor(k);
duke@435 557 }
duke@435 558 }
duke@435 559
duke@435 560 void instanceKlass::init_implementor() {
duke@435 561 for (int i = 0; i < implementors_limit; i++)
duke@435 562 oop_store_without_check((oop*)&_implementors[i], NULL);
duke@435 563 _nof_implementors = 0;
duke@435 564 }
duke@435 565
duke@435 566
duke@435 567 void instanceKlass::process_interfaces(Thread *thread) {
duke@435 568 // link this class into the implementors list of every interface it implements
duke@435 569 KlassHandle this_as_oop (thread, this->as_klassOop());
duke@435 570 for (int i = local_interfaces()->length() - 1; i >= 0; i--) {
duke@435 571 assert(local_interfaces()->obj_at(i)->is_klass(), "must be a klass");
duke@435 572 instanceKlass* interf = instanceKlass::cast(klassOop(local_interfaces()->obj_at(i)));
duke@435 573 assert(interf->is_interface(), "expected interface");
duke@435 574 interf->add_implementor(this_as_oop());
duke@435 575 }
duke@435 576 }
duke@435 577
duke@435 578 bool instanceKlass::can_be_primary_super_slow() const {
duke@435 579 if (is_interface())
duke@435 580 return false;
duke@435 581 else
duke@435 582 return Klass::can_be_primary_super_slow();
duke@435 583 }
duke@435 584
duke@435 585 objArrayOop instanceKlass::compute_secondary_supers(int num_extra_slots, TRAPS) {
duke@435 586 // The secondaries are the implemented interfaces.
duke@435 587 instanceKlass* ik = instanceKlass::cast(as_klassOop());
duke@435 588 objArrayHandle interfaces (THREAD, ik->transitive_interfaces());
duke@435 589 int num_secondaries = num_extra_slots + interfaces->length();
duke@435 590 if (num_secondaries == 0) {
duke@435 591 return Universe::the_empty_system_obj_array();
duke@435 592 } else if (num_extra_slots == 0) {
duke@435 593 return interfaces();
duke@435 594 } else {
duke@435 595 // a mix of both
duke@435 596 objArrayOop secondaries = oopFactory::new_system_objArray(num_secondaries, CHECK_NULL);
duke@435 597 for (int i = 0; i < interfaces->length(); i++) {
duke@435 598 secondaries->obj_at_put(num_extra_slots+i, interfaces->obj_at(i));
duke@435 599 }
duke@435 600 return secondaries;
duke@435 601 }
duke@435 602 }
duke@435 603
duke@435 604 bool instanceKlass::compute_is_subtype_of(klassOop k) {
duke@435 605 if (Klass::cast(k)->is_interface()) {
duke@435 606 return implements_interface(k);
duke@435 607 } else {
duke@435 608 return Klass::compute_is_subtype_of(k);
duke@435 609 }
duke@435 610 }
duke@435 611
duke@435 612 bool instanceKlass::implements_interface(klassOop k) const {
duke@435 613 if (as_klassOop() == k) return true;
duke@435 614 assert(Klass::cast(k)->is_interface(), "should be an interface class");
duke@435 615 for (int i = 0; i < transitive_interfaces()->length(); i++) {
duke@435 616 if (transitive_interfaces()->obj_at(i) == k) {
duke@435 617 return true;
duke@435 618 }
duke@435 619 }
duke@435 620 return false;
duke@435 621 }
duke@435 622
duke@435 623 objArrayOop instanceKlass::allocate_objArray(int n, int length, TRAPS) {
duke@435 624 if (length < 0) THROW_0(vmSymbols::java_lang_NegativeArraySizeException());
duke@435 625 if (length > arrayOopDesc::max_array_length(T_OBJECT)) {
martin@1311 626 report_java_out_of_memory("Requested array size exceeds VM limit");
duke@435 627 THROW_OOP_0(Universe::out_of_memory_error_array_size());
duke@435 628 }
duke@435 629 int size = objArrayOopDesc::object_size(length);
duke@435 630 klassOop ak = array_klass(n, CHECK_NULL);
duke@435 631 KlassHandle h_ak (THREAD, ak);
duke@435 632 objArrayOop o =
duke@435 633 (objArrayOop)CollectedHeap::array_allocate(h_ak, size, length, CHECK_NULL);
duke@435 634 return o;
duke@435 635 }
duke@435 636
duke@435 637 instanceOop instanceKlass::register_finalizer(instanceOop i, TRAPS) {
duke@435 638 if (TraceFinalizerRegistration) {
duke@435 639 tty->print("Registered ");
duke@435 640 i->print_value_on(tty);
duke@435 641 tty->print_cr(" (" INTPTR_FORMAT ") as finalizable", (address)i);
duke@435 642 }
duke@435 643 instanceHandle h_i(THREAD, i);
duke@435 644 // Pass the handle as argument, JavaCalls::call expects oop as jobjects
duke@435 645 JavaValue result(T_VOID);
duke@435 646 JavaCallArguments args(h_i);
duke@435 647 methodHandle mh (THREAD, Universe::finalizer_register_method());
duke@435 648 JavaCalls::call(&result, mh, &args, CHECK_NULL);
duke@435 649 return h_i();
duke@435 650 }
duke@435 651
duke@435 652 instanceOop instanceKlass::allocate_instance(TRAPS) {
never@2658 653 assert(!oop_is_instanceMirror(), "wrong allocation path");
duke@435 654 bool has_finalizer_flag = has_finalizer(); // Query before possible GC
duke@435 655 int size = size_helper(); // Query before forming handle.
duke@435 656
duke@435 657 KlassHandle h_k(THREAD, as_klassOop());
duke@435 658
duke@435 659 instanceOop i;
duke@435 660
duke@435 661 i = (instanceOop)CollectedHeap::obj_allocate(h_k, size, CHECK_NULL);
duke@435 662 if (has_finalizer_flag && !RegisterFinalizersAtInit) {
duke@435 663 i = register_finalizer(i, CHECK_NULL);
duke@435 664 }
duke@435 665 return i;
duke@435 666 }
duke@435 667
duke@435 668 instanceOop instanceKlass::allocate_permanent_instance(TRAPS) {
duke@435 669 // Finalizer registration occurs in the Object.<init> constructor
duke@435 670 // and constructors normally aren't run when allocating perm
duke@435 671 // instances so simply disallow finalizable perm objects. This can
duke@435 672 // be relaxed if a need for it is found.
duke@435 673 assert(!has_finalizer(), "perm objects not allowed to have finalizers");
never@2658 674 assert(!oop_is_instanceMirror(), "wrong allocation path");
duke@435 675 int size = size_helper(); // Query before forming handle.
duke@435 676 KlassHandle h_k(THREAD, as_klassOop());
duke@435 677 instanceOop i = (instanceOop)
duke@435 678 CollectedHeap::permanent_obj_allocate(h_k, size, CHECK_NULL);
duke@435 679 return i;
duke@435 680 }
duke@435 681
duke@435 682 void instanceKlass::check_valid_for_instantiation(bool throwError, TRAPS) {
duke@435 683 if (is_interface() || is_abstract()) {
duke@435 684 ResourceMark rm(THREAD);
duke@435 685 THROW_MSG(throwError ? vmSymbols::java_lang_InstantiationError()
duke@435 686 : vmSymbols::java_lang_InstantiationException(), external_name());
duke@435 687 }
never@1577 688 if (as_klassOop() == SystemDictionary::Class_klass()) {
duke@435 689 ResourceMark rm(THREAD);
duke@435 690 THROW_MSG(throwError ? vmSymbols::java_lang_IllegalAccessError()
duke@435 691 : vmSymbols::java_lang_IllegalAccessException(), external_name());
duke@435 692 }
duke@435 693 }
duke@435 694
duke@435 695 klassOop instanceKlass::array_klass_impl(bool or_null, int n, TRAPS) {
duke@435 696 instanceKlassHandle this_oop(THREAD, as_klassOop());
duke@435 697 return array_klass_impl(this_oop, or_null, n, THREAD);
duke@435 698 }
duke@435 699
duke@435 700 klassOop instanceKlass::array_klass_impl(instanceKlassHandle this_oop, bool or_null, int n, TRAPS) {
duke@435 701 if (this_oop->array_klasses() == NULL) {
duke@435 702 if (or_null) return NULL;
duke@435 703
duke@435 704 ResourceMark rm;
duke@435 705 JavaThread *jt = (JavaThread *)THREAD;
duke@435 706 {
duke@435 707 // Atomic creation of array_klasses
duke@435 708 MutexLocker mc(Compile_lock, THREAD); // for vtables
duke@435 709 MutexLocker ma(MultiArray_lock, THREAD);
duke@435 710
duke@435 711 // Check if update has already taken place
duke@435 712 if (this_oop->array_klasses() == NULL) {
duke@435 713 objArrayKlassKlass* oakk =
duke@435 714 (objArrayKlassKlass*)Universe::objArrayKlassKlassObj()->klass_part();
duke@435 715
duke@435 716 klassOop k = oakk->allocate_objArray_klass(1, this_oop, CHECK_NULL);
duke@435 717 this_oop->set_array_klasses(k);
duke@435 718 }
duke@435 719 }
duke@435 720 }
duke@435 721 // _this will always be set at this point
duke@435 722 objArrayKlass* oak = (objArrayKlass*)this_oop->array_klasses()->klass_part();
duke@435 723 if (or_null) {
duke@435 724 return oak->array_klass_or_null(n);
duke@435 725 }
duke@435 726 return oak->array_klass(n, CHECK_NULL);
duke@435 727 }
duke@435 728
duke@435 729 klassOop instanceKlass::array_klass_impl(bool or_null, TRAPS) {
duke@435 730 return array_klass_impl(or_null, 1, THREAD);
duke@435 731 }
duke@435 732
duke@435 733 void instanceKlass::call_class_initializer(TRAPS) {
duke@435 734 instanceKlassHandle ik (THREAD, as_klassOop());
duke@435 735 call_class_initializer_impl(ik, THREAD);
duke@435 736 }
duke@435 737
duke@435 738 static int call_class_initializer_impl_counter = 0; // for debugging
duke@435 739
duke@435 740 methodOop instanceKlass::class_initializer() {
kamg@2616 741 methodOop clinit = find_method(
kamg@2616 742 vmSymbols::class_initializer_name(), vmSymbols::void_method_signature());
kamg@2616 743 if (clinit != NULL && clinit->has_valid_initializer_flags()) {
kamg@2616 744 return clinit;
kamg@2616 745 }
kamg@2616 746 return NULL;
duke@435 747 }
duke@435 748
duke@435 749 void instanceKlass::call_class_initializer_impl(instanceKlassHandle this_oop, TRAPS) {
duke@435 750 methodHandle h_method(THREAD, this_oop->class_initializer());
duke@435 751 assert(!this_oop->is_initialized(), "we cannot initialize twice");
duke@435 752 if (TraceClassInitialization) {
duke@435 753 tty->print("%d Initializing ", call_class_initializer_impl_counter++);
duke@435 754 this_oop->name()->print_value();
duke@435 755 tty->print_cr("%s (" INTPTR_FORMAT ")", h_method() == NULL ? "(no method)" : "", (address)this_oop());
duke@435 756 }
duke@435 757 if (h_method() != NULL) {
duke@435 758 JavaCallArguments args; // No arguments
duke@435 759 JavaValue result(T_VOID);
duke@435 760 JavaCalls::call(&result, h_method, &args, CHECK); // Static call (no args)
duke@435 761 }
duke@435 762 }
duke@435 763
duke@435 764
duke@435 765 void instanceKlass::mask_for(methodHandle method, int bci,
duke@435 766 InterpreterOopMap* entry_for) {
duke@435 767 // Dirty read, then double-check under a lock.
duke@435 768 if (_oop_map_cache == NULL) {
duke@435 769 // Otherwise, allocate a new one.
duke@435 770 MutexLocker x(OopMapCacheAlloc_lock);
duke@435 771 // First time use. Allocate a cache in C heap
duke@435 772 if (_oop_map_cache == NULL) {
duke@435 773 _oop_map_cache = new OopMapCache();
duke@435 774 }
duke@435 775 }
duke@435 776 // _oop_map_cache is constant after init; lookup below does is own locking.
duke@435 777 _oop_map_cache->lookup(method, bci, entry_for);
duke@435 778 }
duke@435 779
duke@435 780
coleenp@2497 781 bool instanceKlass::find_local_field(Symbol* name, Symbol* sig, fieldDescriptor* fd) const {
duke@435 782 const int n = fields()->length();
duke@435 783 for (int i = 0; i < n; i += next_offset ) {
duke@435 784 int name_index = fields()->ushort_at(i + name_index_offset);
duke@435 785 int sig_index = fields()->ushort_at(i + signature_index_offset);
coleenp@2497 786 Symbol* f_name = constants()->symbol_at(name_index);
coleenp@2497 787 Symbol* f_sig = constants()->symbol_at(sig_index);
duke@435 788 if (f_name == name && f_sig == sig) {
duke@435 789 fd->initialize(as_klassOop(), i);
duke@435 790 return true;
duke@435 791 }
duke@435 792 }
duke@435 793 return false;
duke@435 794 }
duke@435 795
duke@435 796
coleenp@2497 797 void instanceKlass::shared_symbols_iterate(SymbolClosure* closure) {
coleenp@2497 798 Klass::shared_symbols_iterate(closure);
coleenp@2497 799 closure->do_symbol(&_generic_signature);
coleenp@2497 800 closure->do_symbol(&_source_file_name);
coleenp@2497 801 closure->do_symbol(&_source_debug_extension);
coleenp@2497 802
duke@435 803 const int n = fields()->length();
duke@435 804 for (int i = 0; i < n; i += next_offset ) {
duke@435 805 int name_index = fields()->ushort_at(i + name_index_offset);
coleenp@2497 806 closure->do_symbol(constants()->symbol_at_addr(name_index));
duke@435 807 int sig_index = fields()->ushort_at(i + signature_index_offset);
coleenp@2497 808 closure->do_symbol(constants()->symbol_at_addr(sig_index));
duke@435 809 }
duke@435 810 }
duke@435 811
duke@435 812
coleenp@2497 813 klassOop instanceKlass::find_interface_field(Symbol* name, Symbol* sig, fieldDescriptor* fd) const {
duke@435 814 const int n = local_interfaces()->length();
duke@435 815 for (int i = 0; i < n; i++) {
duke@435 816 klassOop intf1 = klassOop(local_interfaces()->obj_at(i));
duke@435 817 assert(Klass::cast(intf1)->is_interface(), "just checking type");
duke@435 818 // search for field in current interface
duke@435 819 if (instanceKlass::cast(intf1)->find_local_field(name, sig, fd)) {
duke@435 820 assert(fd->is_static(), "interface field must be static");
duke@435 821 return intf1;
duke@435 822 }
duke@435 823 // search for field in direct superinterfaces
duke@435 824 klassOop intf2 = instanceKlass::cast(intf1)->find_interface_field(name, sig, fd);
duke@435 825 if (intf2 != NULL) return intf2;
duke@435 826 }
duke@435 827 // otherwise field lookup fails
duke@435 828 return NULL;
duke@435 829 }
duke@435 830
duke@435 831
coleenp@2497 832 klassOop instanceKlass::find_field(Symbol* name, Symbol* sig, fieldDescriptor* fd) const {
duke@435 833 // search order according to newest JVM spec (5.4.3.2, p.167).
duke@435 834 // 1) search for field in current klass
duke@435 835 if (find_local_field(name, sig, fd)) {
duke@435 836 return as_klassOop();
duke@435 837 }
duke@435 838 // 2) search for field recursively in direct superinterfaces
duke@435 839 { klassOop intf = find_interface_field(name, sig, fd);
duke@435 840 if (intf != NULL) return intf;
duke@435 841 }
duke@435 842 // 3) apply field lookup recursively if superclass exists
duke@435 843 { klassOop supr = super();
duke@435 844 if (supr != NULL) return instanceKlass::cast(supr)->find_field(name, sig, fd);
duke@435 845 }
duke@435 846 // 4) otherwise field lookup fails
duke@435 847 return NULL;
duke@435 848 }
duke@435 849
duke@435 850
coleenp@2497 851 klassOop instanceKlass::find_field(Symbol* name, Symbol* sig, bool is_static, fieldDescriptor* fd) const {
duke@435 852 // search order according to newest JVM spec (5.4.3.2, p.167).
duke@435 853 // 1) search for field in current klass
duke@435 854 if (find_local_field(name, sig, fd)) {
duke@435 855 if (fd->is_static() == is_static) return as_klassOop();
duke@435 856 }
duke@435 857 // 2) search for field recursively in direct superinterfaces
duke@435 858 if (is_static) {
duke@435 859 klassOop intf = find_interface_field(name, sig, fd);
duke@435 860 if (intf != NULL) return intf;
duke@435 861 }
duke@435 862 // 3) apply field lookup recursively if superclass exists
duke@435 863 { klassOop supr = super();
duke@435 864 if (supr != NULL) return instanceKlass::cast(supr)->find_field(name, sig, is_static, fd);
duke@435 865 }
duke@435 866 // 4) otherwise field lookup fails
duke@435 867 return NULL;
duke@435 868 }
duke@435 869
duke@435 870
duke@435 871 bool instanceKlass::find_local_field_from_offset(int offset, bool is_static, fieldDescriptor* fd) const {
duke@435 872 int length = fields()->length();
duke@435 873 for (int i = 0; i < length; i += next_offset) {
duke@435 874 if (offset_from_fields( i ) == offset) {
duke@435 875 fd->initialize(as_klassOop(), i);
duke@435 876 if (fd->is_static() == is_static) return true;
duke@435 877 }
duke@435 878 }
duke@435 879 return false;
duke@435 880 }
duke@435 881
duke@435 882
duke@435 883 bool instanceKlass::find_field_from_offset(int offset, bool is_static, fieldDescriptor* fd) const {
duke@435 884 klassOop klass = as_klassOop();
duke@435 885 while (klass != NULL) {
duke@435 886 if (instanceKlass::cast(klass)->find_local_field_from_offset(offset, is_static, fd)) {
duke@435 887 return true;
duke@435 888 }
duke@435 889 klass = Klass::cast(klass)->super();
duke@435 890 }
duke@435 891 return false;
duke@435 892 }
duke@435 893
duke@435 894
duke@435 895 void instanceKlass::methods_do(void f(methodOop method)) {
duke@435 896 int len = methods()->length();
duke@435 897 for (int index = 0; index < len; index++) {
duke@435 898 methodOop m = methodOop(methods()->obj_at(index));
duke@435 899 assert(m->is_method(), "must be method");
duke@435 900 f(m);
duke@435 901 }
duke@435 902 }
duke@435 903
never@2658 904
duke@435 905 void instanceKlass::do_local_static_fields(FieldClosure* cl) {
duke@435 906 fieldDescriptor fd;
duke@435 907 int length = fields()->length();
duke@435 908 for (int i = 0; i < length; i += next_offset) {
duke@435 909 fd.initialize(as_klassOop(), i);
duke@435 910 if (fd.is_static()) cl->do_field(&fd);
duke@435 911 }
duke@435 912 }
duke@435 913
duke@435 914
duke@435 915 void instanceKlass::do_local_static_fields(void f(fieldDescriptor*, TRAPS), TRAPS) {
duke@435 916 instanceKlassHandle h_this(THREAD, as_klassOop());
duke@435 917 do_local_static_fields_impl(h_this, f, CHECK);
duke@435 918 }
duke@435 919
duke@435 920
duke@435 921 void instanceKlass::do_local_static_fields_impl(instanceKlassHandle this_oop, void f(fieldDescriptor* fd, TRAPS), TRAPS) {
duke@435 922 fieldDescriptor fd;
duke@435 923 int length = this_oop->fields()->length();
duke@435 924 for (int i = 0; i < length; i += next_offset) {
duke@435 925 fd.initialize(this_oop(), i);
duke@435 926 if (fd.is_static()) { f(&fd, CHECK); } // Do NOT remove {}! (CHECK macro expands into several statements)
duke@435 927 }
duke@435 928 }
duke@435 929
duke@435 930
kvn@479 931 static int compare_fields_by_offset(int* a, int* b) {
kvn@479 932 return a[0] - b[0];
kvn@479 933 }
kvn@479 934
duke@435 935 void instanceKlass::do_nonstatic_fields(FieldClosure* cl) {
duke@435 936 instanceKlass* super = superklass();
duke@435 937 if (super != NULL) {
duke@435 938 super->do_nonstatic_fields(cl);
duke@435 939 }
kvn@479 940 fieldDescriptor fd;
duke@435 941 int length = fields()->length();
kvn@479 942 // In DebugInfo nonstatic fields are sorted by offset.
kvn@479 943 int* fields_sorted = NEW_C_HEAP_ARRAY(int, 2*(length+1));
kvn@479 944 int j = 0;
duke@435 945 for (int i = 0; i < length; i += next_offset) {
duke@435 946 fd.initialize(as_klassOop(), i);
kvn@479 947 if (!fd.is_static()) {
kvn@479 948 fields_sorted[j + 0] = fd.offset();
kvn@479 949 fields_sorted[j + 1] = i;
kvn@479 950 j += 2;
kvn@479 951 }
duke@435 952 }
kvn@479 953 if (j > 0) {
kvn@479 954 length = j;
kvn@479 955 // _sort_Fn is defined in growableArray.hpp.
kvn@479 956 qsort(fields_sorted, length/2, 2*sizeof(int), (_sort_Fn)compare_fields_by_offset);
kvn@479 957 for (int i = 0; i < length; i += 2) {
kvn@479 958 fd.initialize(as_klassOop(), fields_sorted[i + 1]);
kvn@479 959 assert(!fd.is_static() && fd.offset() == fields_sorted[i], "only nonstatic fields");
kvn@479 960 cl->do_field(&fd);
kvn@479 961 }
kvn@479 962 }
kvn@479 963 FREE_C_HEAP_ARRAY(int, fields_sorted);
duke@435 964 }
duke@435 965
duke@435 966
duke@435 967 void instanceKlass::array_klasses_do(void f(klassOop k)) {
duke@435 968 if (array_klasses() != NULL)
duke@435 969 arrayKlass::cast(array_klasses())->array_klasses_do(f);
duke@435 970 }
duke@435 971
duke@435 972
duke@435 973 void instanceKlass::with_array_klasses_do(void f(klassOop k)) {
duke@435 974 f(as_klassOop());
duke@435 975 array_klasses_do(f);
duke@435 976 }
duke@435 977
duke@435 978 #ifdef ASSERT
coleenp@2497 979 static int linear_search(objArrayOop methods, Symbol* name, Symbol* signature) {
duke@435 980 int len = methods->length();
duke@435 981 for (int index = 0; index < len; index++) {
duke@435 982 methodOop m = (methodOop)(methods->obj_at(index));
duke@435 983 assert(m->is_method(), "must be method");
duke@435 984 if (m->signature() == signature && m->name() == name) {
duke@435 985 return index;
duke@435 986 }
duke@435 987 }
duke@435 988 return -1;
duke@435 989 }
duke@435 990 #endif
duke@435 991
coleenp@2497 992 methodOop instanceKlass::find_method(Symbol* name, Symbol* signature) const {
duke@435 993 return instanceKlass::find_method(methods(), name, signature);
duke@435 994 }
duke@435 995
coleenp@2497 996 methodOop instanceKlass::find_method(objArrayOop methods, Symbol* name, Symbol* signature) {
duke@435 997 int len = methods->length();
duke@435 998 // methods are sorted, so do binary search
duke@435 999 int l = 0;
duke@435 1000 int h = len - 1;
duke@435 1001 while (l <= h) {
duke@435 1002 int mid = (l + h) >> 1;
duke@435 1003 methodOop m = (methodOop)methods->obj_at(mid);
duke@435 1004 assert(m->is_method(), "must be method");
duke@435 1005 int res = m->name()->fast_compare(name);
duke@435 1006 if (res == 0) {
duke@435 1007 // found matching name; do linear search to find matching signature
duke@435 1008 // first, quick check for common case
duke@435 1009 if (m->signature() == signature) return m;
duke@435 1010 // search downwards through overloaded methods
duke@435 1011 int i;
duke@435 1012 for (i = mid - 1; i >= l; i--) {
duke@435 1013 methodOop m = (methodOop)methods->obj_at(i);
duke@435 1014 assert(m->is_method(), "must be method");
duke@435 1015 if (m->name() != name) break;
duke@435 1016 if (m->signature() == signature) return m;
duke@435 1017 }
duke@435 1018 // search upwards
duke@435 1019 for (i = mid + 1; i <= h; i++) {
duke@435 1020 methodOop m = (methodOop)methods->obj_at(i);
duke@435 1021 assert(m->is_method(), "must be method");
duke@435 1022 if (m->name() != name) break;
duke@435 1023 if (m->signature() == signature) return m;
duke@435 1024 }
duke@435 1025 // not found
duke@435 1026 #ifdef ASSERT
duke@435 1027 int index = linear_search(methods, name, signature);
jcoomes@1845 1028 assert(index == -1, err_msg("binary search should have found entry %d", index));
duke@435 1029 #endif
duke@435 1030 return NULL;
duke@435 1031 } else if (res < 0) {
duke@435 1032 l = mid + 1;
duke@435 1033 } else {
duke@435 1034 h = mid - 1;
duke@435 1035 }
duke@435 1036 }
duke@435 1037 #ifdef ASSERT
duke@435 1038 int index = linear_search(methods, name, signature);
jcoomes@1845 1039 assert(index == -1, err_msg("binary search should have found entry %d", index));
duke@435 1040 #endif
duke@435 1041 return NULL;
duke@435 1042 }
duke@435 1043
coleenp@2497 1044 methodOop instanceKlass::uncached_lookup_method(Symbol* name, Symbol* signature) const {
duke@435 1045 klassOop klass = as_klassOop();
duke@435 1046 while (klass != NULL) {
duke@435 1047 methodOop method = instanceKlass::cast(klass)->find_method(name, signature);
duke@435 1048 if (method != NULL) return method;
duke@435 1049 klass = instanceKlass::cast(klass)->super();
duke@435 1050 }
duke@435 1051 return NULL;
duke@435 1052 }
duke@435 1053
duke@435 1054 // lookup a method in all the interfaces that this class implements
coleenp@2497 1055 methodOop instanceKlass::lookup_method_in_all_interfaces(Symbol* name,
coleenp@2497 1056 Symbol* signature) const {
duke@435 1057 objArrayOop all_ifs = instanceKlass::cast(as_klassOop())->transitive_interfaces();
duke@435 1058 int num_ifs = all_ifs->length();
duke@435 1059 instanceKlass *ik = NULL;
duke@435 1060 for (int i = 0; i < num_ifs; i++) {
duke@435 1061 ik = instanceKlass::cast(klassOop(all_ifs->obj_at(i)));
duke@435 1062 methodOop m = ik->lookup_method(name, signature);
duke@435 1063 if (m != NULL) {
duke@435 1064 return m;
duke@435 1065 }
duke@435 1066 }
duke@435 1067 return NULL;
duke@435 1068 }
duke@435 1069
duke@435 1070 /* jni_id_for_impl for jfieldIds only */
duke@435 1071 JNIid* instanceKlass::jni_id_for_impl(instanceKlassHandle this_oop, int offset) {
duke@435 1072 MutexLocker ml(JfieldIdCreation_lock);
duke@435 1073 // Retry lookup after we got the lock
duke@435 1074 JNIid* probe = this_oop->jni_ids() == NULL ? NULL : this_oop->jni_ids()->find(offset);
duke@435 1075 if (probe == NULL) {
duke@435 1076 // Slow case, allocate new static field identifier
duke@435 1077 probe = new JNIid(this_oop->as_klassOop(), offset, this_oop->jni_ids());
duke@435 1078 this_oop->set_jni_ids(probe);
duke@435 1079 }
duke@435 1080 return probe;
duke@435 1081 }
duke@435 1082
duke@435 1083
duke@435 1084 /* jni_id_for for jfieldIds only */
duke@435 1085 JNIid* instanceKlass::jni_id_for(int offset) {
duke@435 1086 JNIid* probe = jni_ids() == NULL ? NULL : jni_ids()->find(offset);
duke@435 1087 if (probe == NULL) {
duke@435 1088 probe = jni_id_for_impl(this->as_klassOop(), offset);
duke@435 1089 }
duke@435 1090 return probe;
duke@435 1091 }
duke@435 1092
duke@435 1093
duke@435 1094 // Lookup or create a jmethodID.
dcubed@1412 1095 // This code is called by the VMThread and JavaThreads so the
dcubed@1412 1096 // locking has to be done very carefully to avoid deadlocks
dcubed@1412 1097 // and/or other cache consistency problems.
dcubed@1412 1098 //
dcubed@1412 1099 jmethodID instanceKlass::get_jmethod_id(instanceKlassHandle ik_h, methodHandle method_h) {
duke@435 1100 size_t idnum = (size_t)method_h->method_idnum();
duke@435 1101 jmethodID* jmeths = ik_h->methods_jmethod_ids_acquire();
duke@435 1102 size_t length = 0;
duke@435 1103 jmethodID id = NULL;
duke@435 1104
dcubed@1412 1105 // We use a double-check locking idiom here because this cache is
dcubed@1412 1106 // performance sensitive. In the normal system, this cache only
dcubed@1412 1107 // transitions from NULL to non-NULL which is safe because we use
dcubed@1412 1108 // release_set_methods_jmethod_ids() to advertise the new cache.
dcubed@1412 1109 // A partially constructed cache should never be seen by a racing
dcubed@1412 1110 // thread. We also use release_store_ptr() to save a new jmethodID
dcubed@1412 1111 // in the cache so a partially constructed jmethodID should never be
dcubed@1412 1112 // seen either. Cache reads of existing jmethodIDs proceed without a
dcubed@1412 1113 // lock, but cache writes of a new jmethodID requires uniqueness and
dcubed@1412 1114 // creation of the cache itself requires no leaks so a lock is
dcubed@1412 1115 // generally acquired in those two cases.
dcubed@1412 1116 //
dcubed@1412 1117 // If the RedefineClasses() API has been used, then this cache can
dcubed@1412 1118 // grow and we'll have transitions from non-NULL to bigger non-NULL.
dcubed@1412 1119 // Cache creation requires no leaks and we require safety between all
dcubed@1412 1120 // cache accesses and freeing of the old cache so a lock is generally
dcubed@1412 1121 // acquired when the RedefineClasses() API has been used.
duke@435 1122
dcubed@1412 1123 if (jmeths != NULL) {
dcubed@1412 1124 // the cache already exists
dcubed@1412 1125 if (!ik_h->idnum_can_increment()) {
dcubed@1412 1126 // the cache can't grow so we can just get the current values
dcubed@1412 1127 get_jmethod_id_length_value(jmeths, idnum, &length, &id);
dcubed@1412 1128 } else {
dcubed@1412 1129 // cache can grow so we have to be more careful
dcubed@1412 1130 if (Threads::number_of_threads() == 0 ||
dcubed@1412 1131 SafepointSynchronize::is_at_safepoint()) {
dcubed@1412 1132 // we're single threaded or at a safepoint - no locking needed
dcubed@1412 1133 get_jmethod_id_length_value(jmeths, idnum, &length, &id);
dcubed@1412 1134 } else {
dcubed@1412 1135 MutexLocker ml(JmethodIdCreation_lock);
dcubed@1412 1136 get_jmethod_id_length_value(jmeths, idnum, &length, &id);
dcubed@1412 1137 }
dcubed@1412 1138 }
dcubed@1412 1139 }
dcubed@1412 1140 // implied else:
dcubed@1412 1141 // we need to allocate a cache so default length and id values are good
dcubed@1412 1142
dcubed@1412 1143 if (jmeths == NULL || // no cache yet
dcubed@1412 1144 length <= idnum || // cache is too short
dcubed@1412 1145 id == NULL) { // cache doesn't contain entry
dcubed@1412 1146
dcubed@1412 1147 // This function can be called by the VMThread so we have to do all
dcubed@1412 1148 // things that might block on a safepoint before grabbing the lock.
dcubed@1412 1149 // Otherwise, we can deadlock with the VMThread or have a cache
dcubed@1412 1150 // consistency issue. These vars keep track of what we might have
dcubed@1412 1151 // to free after the lock is dropped.
dcubed@1412 1152 jmethodID to_dealloc_id = NULL;
dcubed@1412 1153 jmethodID* to_dealloc_jmeths = NULL;
dcubed@1412 1154
dcubed@1412 1155 // may not allocate new_jmeths or use it if we allocate it
duke@435 1156 jmethodID* new_jmeths = NULL;
duke@435 1157 if (length <= idnum) {
dcubed@1412 1158 // allocate a new cache that might be used
duke@435 1159 size_t size = MAX2(idnum+1, (size_t)ik_h->idnum_allocated_count());
duke@435 1160 new_jmeths = NEW_C_HEAP_ARRAY(jmethodID, size+1);
duke@435 1161 memset(new_jmeths, 0, (size+1)*sizeof(jmethodID));
dcubed@1412 1162 // cache size is stored in element[0], other elements offset by one
dcubed@1412 1163 new_jmeths[0] = (jmethodID)size;
duke@435 1164 }
duke@435 1165
dcubed@1412 1166 // allocate a new jmethodID that might be used
duke@435 1167 jmethodID new_id = NULL;
duke@435 1168 if (method_h->is_old() && !method_h->is_obsolete()) {
duke@435 1169 // The method passed in is old (but not obsolete), we need to use the current version
duke@435 1170 methodOop current_method = ik_h->method_with_idnum((int)idnum);
duke@435 1171 assert(current_method != NULL, "old and but not obsolete, so should exist");
duke@435 1172 methodHandle current_method_h(current_method == NULL? method_h() : current_method);
duke@435 1173 new_id = JNIHandles::make_jmethod_id(current_method_h);
duke@435 1174 } else {
duke@435 1175 // It is the current version of the method or an obsolete method,
duke@435 1176 // use the version passed in
duke@435 1177 new_id = JNIHandles::make_jmethod_id(method_h);
duke@435 1178 }
duke@435 1179
dcubed@1412 1180 if (Threads::number_of_threads() == 0 ||
dcubed@1412 1181 SafepointSynchronize::is_at_safepoint()) {
dcubed@1412 1182 // we're single threaded or at a safepoint - no locking needed
dcubed@1412 1183 id = get_jmethod_id_fetch_or_update(ik_h, idnum, new_id, new_jmeths,
dcubed@1412 1184 &to_dealloc_id, &to_dealloc_jmeths);
dcubed@484 1185 } else {
duke@435 1186 MutexLocker ml(JmethodIdCreation_lock);
dcubed@1412 1187 id = get_jmethod_id_fetch_or_update(ik_h, idnum, new_id, new_jmeths,
dcubed@1412 1188 &to_dealloc_id, &to_dealloc_jmeths);
dcubed@1412 1189 }
dcubed@1412 1190
dcubed@1412 1191 // The lock has been dropped so we can free resources.
dcubed@1412 1192 // Free up either the old cache or the new cache if we allocated one.
dcubed@1412 1193 if (to_dealloc_jmeths != NULL) {
dcubed@1412 1194 FreeHeap(to_dealloc_jmeths);
dcubed@1412 1195 }
dcubed@1412 1196 // free up the new ID since it wasn't needed
dcubed@1412 1197 if (to_dealloc_id != NULL) {
dcubed@1412 1198 JNIHandles::destroy_jmethod_id(to_dealloc_id);
dcubed@484 1199 }
dcubed@484 1200 }
dcubed@484 1201 return id;
dcubed@484 1202 }
duke@435 1203
duke@435 1204
dcubed@1412 1205 // Common code to fetch the jmethodID from the cache or update the
dcubed@1412 1206 // cache with the new jmethodID. This function should never do anything
dcubed@1412 1207 // that causes the caller to go to a safepoint or we can deadlock with
dcubed@1412 1208 // the VMThread or have cache consistency issues.
dcubed@1412 1209 //
dcubed@1412 1210 jmethodID instanceKlass::get_jmethod_id_fetch_or_update(
dcubed@1412 1211 instanceKlassHandle ik_h, size_t idnum, jmethodID new_id,
dcubed@1412 1212 jmethodID* new_jmeths, jmethodID* to_dealloc_id_p,
dcubed@1412 1213 jmethodID** to_dealloc_jmeths_p) {
dcubed@1412 1214 assert(new_id != NULL, "sanity check");
dcubed@1412 1215 assert(to_dealloc_id_p != NULL, "sanity check");
dcubed@1412 1216 assert(to_dealloc_jmeths_p != NULL, "sanity check");
dcubed@1412 1217 assert(Threads::number_of_threads() == 0 ||
dcubed@1412 1218 SafepointSynchronize::is_at_safepoint() ||
dcubed@1412 1219 JmethodIdCreation_lock->owned_by_self(), "sanity check");
dcubed@1412 1220
dcubed@1412 1221 // reacquire the cache - we are locked, single threaded or at a safepoint
dcubed@484 1222 jmethodID* jmeths = ik_h->methods_jmethod_ids_acquire();
dcubed@1412 1223 jmethodID id = NULL;
dcubed@1412 1224 size_t length = 0;
dcubed@484 1225
dcubed@1412 1226 if (jmeths == NULL || // no cache yet
dcubed@1412 1227 (length = (size_t)jmeths[0]) <= idnum) { // cache is too short
dcubed@484 1228 if (jmeths != NULL) {
dcubed@1412 1229 // copy any existing entries from the old cache
dcubed@484 1230 for (size_t index = 0; index < length; index++) {
dcubed@484 1231 new_jmeths[index+1] = jmeths[index+1];
duke@435 1232 }
dcubed@1412 1233 *to_dealloc_jmeths_p = jmeths; // save old cache for later delete
duke@435 1234 }
dcubed@484 1235 ik_h->release_set_methods_jmethod_ids(jmeths = new_jmeths);
dcubed@484 1236 } else {
dcubed@1412 1237 // fetch jmethodID (if any) from the existing cache
dcubed@484 1238 id = jmeths[idnum+1];
dcubed@1412 1239 *to_dealloc_jmeths_p = new_jmeths; // save new cache for later delete
dcubed@484 1240 }
dcubed@484 1241 if (id == NULL) {
dcubed@1412 1242 // No matching jmethodID in the existing cache or we have a new
dcubed@1412 1243 // cache or we just grew the cache. This cache write is done here
dcubed@1412 1244 // by the first thread to win the foot race because a jmethodID
dcubed@1412 1245 // needs to be unique once it is generally available.
dcubed@484 1246 id = new_id;
dcubed@1412 1247
dcubed@1412 1248 // The jmethodID cache can be read while unlocked so we have to
dcubed@1412 1249 // make sure the new jmethodID is complete before installing it
dcubed@1412 1250 // in the cache.
dcubed@1412 1251 OrderAccess::release_store_ptr(&jmeths[idnum+1], id);
dcubed@484 1252 } else {
dcubed@1412 1253 *to_dealloc_id_p = new_id; // save new id for later delete
duke@435 1254 }
duke@435 1255 return id;
duke@435 1256 }
duke@435 1257
duke@435 1258
dcubed@1412 1259 // Common code to get the jmethodID cache length and the jmethodID
dcubed@1412 1260 // value at index idnum if there is one.
dcubed@1412 1261 //
dcubed@1412 1262 void instanceKlass::get_jmethod_id_length_value(jmethodID* cache,
dcubed@1412 1263 size_t idnum, size_t *length_p, jmethodID* id_p) {
dcubed@1412 1264 assert(cache != NULL, "sanity check");
dcubed@1412 1265 assert(length_p != NULL, "sanity check");
dcubed@1412 1266 assert(id_p != NULL, "sanity check");
dcubed@1412 1267
dcubed@1412 1268 // cache size is stored in element[0], other elements offset by one
dcubed@1412 1269 *length_p = (size_t)cache[0];
dcubed@1412 1270 if (*length_p <= idnum) { // cache is too short
dcubed@1412 1271 *id_p = NULL;
dcubed@1412 1272 } else {
dcubed@1412 1273 *id_p = cache[idnum+1]; // fetch jmethodID (if any)
dcubed@1412 1274 }
dcubed@1412 1275 }
dcubed@1412 1276
dcubed@1412 1277
duke@435 1278 // Lookup a jmethodID, NULL if not found. Do no blocking, no allocations, no handles
duke@435 1279 jmethodID instanceKlass::jmethod_id_or_null(methodOop method) {
duke@435 1280 size_t idnum = (size_t)method->method_idnum();
duke@435 1281 jmethodID* jmeths = methods_jmethod_ids_acquire();
duke@435 1282 size_t length; // length assigned as debugging crumb
duke@435 1283 jmethodID id = NULL;
dcubed@1412 1284 if (jmeths != NULL && // If there is a cache
duke@435 1285 (length = (size_t)jmeths[0]) > idnum) { // and if it is long enough,
duke@435 1286 id = jmeths[idnum+1]; // Look up the id (may be NULL)
duke@435 1287 }
duke@435 1288 return id;
duke@435 1289 }
duke@435 1290
duke@435 1291
duke@435 1292 // Cache an itable index
duke@435 1293 void instanceKlass::set_cached_itable_index(size_t idnum, int index) {
duke@435 1294 int* indices = methods_cached_itable_indices_acquire();
dcubed@1412 1295 int* to_dealloc_indices = NULL;
dcubed@1412 1296
dcubed@1412 1297 // We use a double-check locking idiom here because this cache is
dcubed@1412 1298 // performance sensitive. In the normal system, this cache only
dcubed@1412 1299 // transitions from NULL to non-NULL which is safe because we use
dcubed@1412 1300 // release_set_methods_cached_itable_indices() to advertise the
dcubed@1412 1301 // new cache. A partially constructed cache should never be seen
dcubed@1412 1302 // by a racing thread. Cache reads and writes proceed without a
dcubed@1412 1303 // lock, but creation of the cache itself requires no leaks so a
dcubed@1412 1304 // lock is generally acquired in that case.
dcubed@1412 1305 //
dcubed@1412 1306 // If the RedefineClasses() API has been used, then this cache can
dcubed@1412 1307 // grow and we'll have transitions from non-NULL to bigger non-NULL.
dcubed@1412 1308 // Cache creation requires no leaks and we require safety between all
dcubed@1412 1309 // cache accesses and freeing of the old cache so a lock is generally
dcubed@1412 1310 // acquired when the RedefineClasses() API has been used.
dcubed@1412 1311
dcubed@1412 1312 if (indices == NULL || idnum_can_increment()) {
dcubed@1412 1313 // we need a cache or the cache can grow
duke@435 1314 MutexLocker ml(JNICachedItableIndex_lock);
dcubed@1412 1315 // reacquire the cache to see if another thread already did the work
duke@435 1316 indices = methods_cached_itable_indices_acquire();
duke@435 1317 size_t length = 0;
dcubed@1412 1318 // cache size is stored in element[0], other elements offset by one
duke@435 1319 if (indices == NULL || (length = (size_t)indices[0]) <= idnum) {
duke@435 1320 size_t size = MAX2(idnum+1, (size_t)idnum_allocated_count());
duke@435 1321 int* new_indices = NEW_C_HEAP_ARRAY(int, size+1);
dcubed@1412 1322 new_indices[0] = (int)size;
dcubed@1412 1323 // copy any existing entries
duke@435 1324 size_t i;
duke@435 1325 for (i = 0; i < length; i++) {
duke@435 1326 new_indices[i+1] = indices[i+1];
duke@435 1327 }
duke@435 1328 // Set all the rest to -1
duke@435 1329 for (i = length; i < size; i++) {
duke@435 1330 new_indices[i+1] = -1;
duke@435 1331 }
duke@435 1332 if (indices != NULL) {
dcubed@1412 1333 // We have an old cache to delete so save it for after we
dcubed@1412 1334 // drop the lock.
dcubed@1412 1335 to_dealloc_indices = indices;
duke@435 1336 }
duke@435 1337 release_set_methods_cached_itable_indices(indices = new_indices);
duke@435 1338 }
dcubed@1412 1339
dcubed@1412 1340 if (idnum_can_increment()) {
dcubed@1412 1341 // this cache can grow so we have to write to it safely
dcubed@1412 1342 indices[idnum+1] = index;
dcubed@1412 1343 }
duke@435 1344 } else {
duke@435 1345 CHECK_UNHANDLED_OOPS_ONLY(Thread::current()->clear_unhandled_oops());
duke@435 1346 }
dcubed@1412 1347
dcubed@1412 1348 if (!idnum_can_increment()) {
dcubed@1412 1349 // The cache cannot grow and this JNI itable index value does not
dcubed@1412 1350 // have to be unique like a jmethodID. If there is a race to set it,
dcubed@1412 1351 // it doesn't matter.
dcubed@1412 1352 indices[idnum+1] = index;
dcubed@1412 1353 }
dcubed@1412 1354
dcubed@1412 1355 if (to_dealloc_indices != NULL) {
dcubed@1412 1356 // we allocated a new cache so free the old one
dcubed@1412 1357 FreeHeap(to_dealloc_indices);
dcubed@1412 1358 }
duke@435 1359 }
duke@435 1360
duke@435 1361
duke@435 1362 // Retrieve a cached itable index
duke@435 1363 int instanceKlass::cached_itable_index(size_t idnum) {
duke@435 1364 int* indices = methods_cached_itable_indices_acquire();
duke@435 1365 if (indices != NULL && ((size_t)indices[0]) > idnum) {
duke@435 1366 // indices exist and are long enough, retrieve possible cached
duke@435 1367 return indices[idnum+1];
duke@435 1368 }
duke@435 1369 return -1;
duke@435 1370 }
duke@435 1371
duke@435 1372
duke@435 1373 //
duke@435 1374 // nmethodBucket is used to record dependent nmethods for
duke@435 1375 // deoptimization. nmethod dependencies are actually <klass, method>
duke@435 1376 // pairs but we really only care about the klass part for purposes of
duke@435 1377 // finding nmethods which might need to be deoptimized. Instead of
duke@435 1378 // recording the method, a count of how many times a particular nmethod
duke@435 1379 // was recorded is kept. This ensures that any recording errors are
duke@435 1380 // noticed since an nmethod should be removed as many times are it's
duke@435 1381 // added.
duke@435 1382 //
duke@435 1383 class nmethodBucket {
duke@435 1384 private:
duke@435 1385 nmethod* _nmethod;
duke@435 1386 int _count;
duke@435 1387 nmethodBucket* _next;
duke@435 1388
duke@435 1389 public:
duke@435 1390 nmethodBucket(nmethod* nmethod, nmethodBucket* next) {
duke@435 1391 _nmethod = nmethod;
duke@435 1392 _next = next;
duke@435 1393 _count = 1;
duke@435 1394 }
duke@435 1395 int count() { return _count; }
duke@435 1396 int increment() { _count += 1; return _count; }
duke@435 1397 int decrement() { _count -= 1; assert(_count >= 0, "don't underflow"); return _count; }
duke@435 1398 nmethodBucket* next() { return _next; }
duke@435 1399 void set_next(nmethodBucket* b) { _next = b; }
duke@435 1400 nmethod* get_nmethod() { return _nmethod; }
duke@435 1401 };
duke@435 1402
duke@435 1403
duke@435 1404 //
duke@435 1405 // Walk the list of dependent nmethods searching for nmethods which
duke@435 1406 // are dependent on the klassOop that was passed in and mark them for
duke@435 1407 // deoptimization. Returns the number of nmethods found.
duke@435 1408 //
duke@435 1409 int instanceKlass::mark_dependent_nmethods(DepChange& changes) {
duke@435 1410 assert_locked_or_safepoint(CodeCache_lock);
duke@435 1411 int found = 0;
duke@435 1412 nmethodBucket* b = _dependencies;
duke@435 1413 while (b != NULL) {
duke@435 1414 nmethod* nm = b->get_nmethod();
duke@435 1415 // since dependencies aren't removed until an nmethod becomes a zombie,
duke@435 1416 // the dependency list may contain nmethods which aren't alive.
duke@435 1417 if (nm->is_alive() && !nm->is_marked_for_deoptimization() && nm->check_dependency_on(changes)) {
duke@435 1418 if (TraceDependencies) {
duke@435 1419 ResourceMark rm;
duke@435 1420 tty->print_cr("Marked for deoptimization");
duke@435 1421 tty->print_cr(" context = %s", this->external_name());
duke@435 1422 changes.print();
duke@435 1423 nm->print();
duke@435 1424 nm->print_dependencies();
duke@435 1425 }
duke@435 1426 nm->mark_for_deoptimization();
duke@435 1427 found++;
duke@435 1428 }
duke@435 1429 b = b->next();
duke@435 1430 }
duke@435 1431 return found;
duke@435 1432 }
duke@435 1433
duke@435 1434
duke@435 1435 //
duke@435 1436 // Add an nmethodBucket to the list of dependencies for this nmethod.
duke@435 1437 // It's possible that an nmethod has multiple dependencies on this klass
duke@435 1438 // so a count is kept for each bucket to guarantee that creation and
duke@435 1439 // deletion of dependencies is consistent.
duke@435 1440 //
duke@435 1441 void instanceKlass::add_dependent_nmethod(nmethod* nm) {
duke@435 1442 assert_locked_or_safepoint(CodeCache_lock);
duke@435 1443 nmethodBucket* b = _dependencies;
duke@435 1444 nmethodBucket* last = NULL;
duke@435 1445 while (b != NULL) {
duke@435 1446 if (nm == b->get_nmethod()) {
duke@435 1447 b->increment();
duke@435 1448 return;
duke@435 1449 }
duke@435 1450 b = b->next();
duke@435 1451 }
duke@435 1452 _dependencies = new nmethodBucket(nm, _dependencies);
duke@435 1453 }
duke@435 1454
duke@435 1455
duke@435 1456 //
duke@435 1457 // Decrement count of the nmethod in the dependency list and remove
duke@435 1458 // the bucket competely when the count goes to 0. This method must
duke@435 1459 // find a corresponding bucket otherwise there's a bug in the
duke@435 1460 // recording of dependecies.
duke@435 1461 //
duke@435 1462 void instanceKlass::remove_dependent_nmethod(nmethod* nm) {
duke@435 1463 assert_locked_or_safepoint(CodeCache_lock);
duke@435 1464 nmethodBucket* b = _dependencies;
duke@435 1465 nmethodBucket* last = NULL;
duke@435 1466 while (b != NULL) {
duke@435 1467 if (nm == b->get_nmethod()) {
duke@435 1468 if (b->decrement() == 0) {
duke@435 1469 if (last == NULL) {
duke@435 1470 _dependencies = b->next();
duke@435 1471 } else {
duke@435 1472 last->set_next(b->next());
duke@435 1473 }
duke@435 1474 delete b;
duke@435 1475 }
duke@435 1476 return;
duke@435 1477 }
duke@435 1478 last = b;
duke@435 1479 b = b->next();
duke@435 1480 }
duke@435 1481 #ifdef ASSERT
duke@435 1482 tty->print_cr("### %s can't find dependent nmethod:", this->external_name());
duke@435 1483 nm->print();
duke@435 1484 #endif // ASSERT
duke@435 1485 ShouldNotReachHere();
duke@435 1486 }
duke@435 1487
duke@435 1488
duke@435 1489 #ifndef PRODUCT
duke@435 1490 void instanceKlass::print_dependent_nmethods(bool verbose) {
duke@435 1491 nmethodBucket* b = _dependencies;
duke@435 1492 int idx = 0;
duke@435 1493 while (b != NULL) {
duke@435 1494 nmethod* nm = b->get_nmethod();
duke@435 1495 tty->print("[%d] count=%d { ", idx++, b->count());
duke@435 1496 if (!verbose) {
duke@435 1497 nm->print_on(tty, "nmethod");
duke@435 1498 tty->print_cr(" } ");
duke@435 1499 } else {
duke@435 1500 nm->print();
duke@435 1501 nm->print_dependencies();
duke@435 1502 tty->print_cr("--- } ");
duke@435 1503 }
duke@435 1504 b = b->next();
duke@435 1505 }
duke@435 1506 }
duke@435 1507
duke@435 1508
duke@435 1509 bool instanceKlass::is_dependent_nmethod(nmethod* nm) {
duke@435 1510 nmethodBucket* b = _dependencies;
duke@435 1511 while (b != NULL) {
duke@435 1512 if (nm == b->get_nmethod()) {
duke@435 1513 return true;
duke@435 1514 }
duke@435 1515 b = b->next();
duke@435 1516 }
duke@435 1517 return false;
duke@435 1518 }
duke@435 1519 #endif //PRODUCT
duke@435 1520
duke@435 1521
coleenp@548 1522 #ifdef ASSERT
coleenp@548 1523 template <class T> void assert_is_in(T *p) {
coleenp@548 1524 T heap_oop = oopDesc::load_heap_oop(p);
coleenp@548 1525 if (!oopDesc::is_null(heap_oop)) {
coleenp@548 1526 oop o = oopDesc::decode_heap_oop_not_null(heap_oop);
coleenp@548 1527 assert(Universe::heap()->is_in(o), "should be in heap");
coleenp@548 1528 }
coleenp@548 1529 }
coleenp@548 1530 template <class T> void assert_is_in_closed_subset(T *p) {
coleenp@548 1531 T heap_oop = oopDesc::load_heap_oop(p);
coleenp@548 1532 if (!oopDesc::is_null(heap_oop)) {
coleenp@548 1533 oop o = oopDesc::decode_heap_oop_not_null(heap_oop);
coleenp@548 1534 assert(Universe::heap()->is_in_closed_subset(o), "should be in closed");
coleenp@548 1535 }
coleenp@548 1536 }
coleenp@548 1537 template <class T> void assert_is_in_reserved(T *p) {
coleenp@548 1538 T heap_oop = oopDesc::load_heap_oop(p);
coleenp@548 1539 if (!oopDesc::is_null(heap_oop)) {
coleenp@548 1540 oop o = oopDesc::decode_heap_oop_not_null(heap_oop);
coleenp@548 1541 assert(Universe::heap()->is_in_reserved(o), "should be in reserved");
coleenp@548 1542 }
coleenp@548 1543 }
coleenp@548 1544 template <class T> void assert_nothing(T *p) {}
coleenp@548 1545
coleenp@548 1546 #else
coleenp@548 1547 template <class T> void assert_is_in(T *p) {}
coleenp@548 1548 template <class T> void assert_is_in_closed_subset(T *p) {}
coleenp@548 1549 template <class T> void assert_is_in_reserved(T *p) {}
coleenp@548 1550 template <class T> void assert_nothing(T *p) {}
coleenp@548 1551 #endif // ASSERT
coleenp@548 1552
coleenp@548 1553 //
coleenp@548 1554 // Macros that iterate over areas of oops which are specialized on type of
coleenp@548 1555 // oop pointer either narrow or wide, depending on UseCompressedOops
coleenp@548 1556 //
coleenp@548 1557 // Parameters are:
coleenp@548 1558 // T - type of oop to point to (either oop or narrowOop)
coleenp@548 1559 // start_p - starting pointer for region to iterate over
coleenp@548 1560 // count - number of oops or narrowOops to iterate over
coleenp@548 1561 // do_oop - action to perform on each oop (it's arbitrary C code which
coleenp@548 1562 // makes it more efficient to put in a macro rather than making
coleenp@548 1563 // it a template function)
coleenp@548 1564 // assert_fn - assert function which is template function because performance
coleenp@548 1565 // doesn't matter when enabled.
coleenp@548 1566 #define InstanceKlass_SPECIALIZED_OOP_ITERATE( \
coleenp@548 1567 T, start_p, count, do_oop, \
coleenp@548 1568 assert_fn) \
coleenp@548 1569 { \
coleenp@548 1570 T* p = (T*)(start_p); \
coleenp@548 1571 T* const end = p + (count); \
coleenp@548 1572 while (p < end) { \
coleenp@548 1573 (assert_fn)(p); \
coleenp@548 1574 do_oop; \
coleenp@548 1575 ++p; \
coleenp@548 1576 } \
coleenp@548 1577 }
coleenp@548 1578
coleenp@548 1579 #define InstanceKlass_SPECIALIZED_OOP_REVERSE_ITERATE( \
coleenp@548 1580 T, start_p, count, do_oop, \
coleenp@548 1581 assert_fn) \
coleenp@548 1582 { \
coleenp@548 1583 T* const start = (T*)(start_p); \
coleenp@548 1584 T* p = start + (count); \
coleenp@548 1585 while (start < p) { \
coleenp@548 1586 --p; \
coleenp@548 1587 (assert_fn)(p); \
coleenp@548 1588 do_oop; \
coleenp@548 1589 } \
coleenp@548 1590 }
coleenp@548 1591
coleenp@548 1592 #define InstanceKlass_SPECIALIZED_BOUNDED_OOP_ITERATE( \
coleenp@548 1593 T, start_p, count, low, high, \
coleenp@548 1594 do_oop, assert_fn) \
coleenp@548 1595 { \
coleenp@548 1596 T* const l = (T*)(low); \
coleenp@548 1597 T* const h = (T*)(high); \
coleenp@548 1598 assert(mask_bits((intptr_t)l, sizeof(T)-1) == 0 && \
coleenp@548 1599 mask_bits((intptr_t)h, sizeof(T)-1) == 0, \
coleenp@548 1600 "bounded region must be properly aligned"); \
coleenp@548 1601 T* p = (T*)(start_p); \
coleenp@548 1602 T* end = p + (count); \
coleenp@548 1603 if (p < l) p = l; \
coleenp@548 1604 if (end > h) end = h; \
coleenp@548 1605 while (p < end) { \
coleenp@548 1606 (assert_fn)(p); \
coleenp@548 1607 do_oop; \
coleenp@548 1608 ++p; \
coleenp@548 1609 } \
coleenp@548 1610 }
coleenp@548 1611
coleenp@548 1612
coleenp@548 1613 // The following macros call specialized macros, passing either oop or
coleenp@548 1614 // narrowOop as the specialization type. These test the UseCompressedOops
coleenp@548 1615 // flag.
coleenp@548 1616 #define InstanceKlass_OOP_MAP_ITERATE(obj, do_oop, assert_fn) \
coleenp@548 1617 { \
coleenp@548 1618 /* Compute oopmap block range. The common case \
coleenp@548 1619 is nonstatic_oop_map_size == 1. */ \
coleenp@548 1620 OopMapBlock* map = start_of_nonstatic_oop_maps(); \
jcoomes@1373 1621 OopMapBlock* const end_map = map + nonstatic_oop_map_count(); \
coleenp@548 1622 if (UseCompressedOops) { \
coleenp@548 1623 while (map < end_map) { \
coleenp@548 1624 InstanceKlass_SPECIALIZED_OOP_ITERATE(narrowOop, \
jcoomes@1373 1625 obj->obj_field_addr<narrowOop>(map->offset()), map->count(), \
coleenp@548 1626 do_oop, assert_fn) \
coleenp@548 1627 ++map; \
coleenp@548 1628 } \
coleenp@548 1629 } else { \
coleenp@548 1630 while (map < end_map) { \
coleenp@548 1631 InstanceKlass_SPECIALIZED_OOP_ITERATE(oop, \
jcoomes@1373 1632 obj->obj_field_addr<oop>(map->offset()), map->count(), \
coleenp@548 1633 do_oop, assert_fn) \
coleenp@548 1634 ++map; \
coleenp@548 1635 } \
coleenp@548 1636 } \
coleenp@548 1637 }
coleenp@548 1638
coleenp@548 1639 #define InstanceKlass_OOP_MAP_REVERSE_ITERATE(obj, do_oop, assert_fn) \
coleenp@548 1640 { \
coleenp@548 1641 OopMapBlock* const start_map = start_of_nonstatic_oop_maps(); \
jcoomes@1373 1642 OopMapBlock* map = start_map + nonstatic_oop_map_count(); \
coleenp@548 1643 if (UseCompressedOops) { \
coleenp@548 1644 while (start_map < map) { \
coleenp@548 1645 --map; \
coleenp@548 1646 InstanceKlass_SPECIALIZED_OOP_REVERSE_ITERATE(narrowOop, \
jcoomes@1373 1647 obj->obj_field_addr<narrowOop>(map->offset()), map->count(), \
coleenp@548 1648 do_oop, assert_fn) \
coleenp@548 1649 } \
coleenp@548 1650 } else { \
coleenp@548 1651 while (start_map < map) { \
coleenp@548 1652 --map; \
coleenp@548 1653 InstanceKlass_SPECIALIZED_OOP_REVERSE_ITERATE(oop, \
jcoomes@1373 1654 obj->obj_field_addr<oop>(map->offset()), map->count(), \
coleenp@548 1655 do_oop, assert_fn) \
coleenp@548 1656 } \
coleenp@548 1657 } \
coleenp@548 1658 }
coleenp@548 1659
coleenp@548 1660 #define InstanceKlass_BOUNDED_OOP_MAP_ITERATE(obj, low, high, do_oop, \
coleenp@548 1661 assert_fn) \
coleenp@548 1662 { \
coleenp@548 1663 /* Compute oopmap block range. The common case is \
coleenp@548 1664 nonstatic_oop_map_size == 1, so we accept the \
coleenp@548 1665 usually non-existent extra overhead of examining \
coleenp@548 1666 all the maps. */ \
coleenp@548 1667 OopMapBlock* map = start_of_nonstatic_oop_maps(); \
jcoomes@1373 1668 OopMapBlock* const end_map = map + nonstatic_oop_map_count(); \
coleenp@548 1669 if (UseCompressedOops) { \
coleenp@548 1670 while (map < end_map) { \
coleenp@548 1671 InstanceKlass_SPECIALIZED_BOUNDED_OOP_ITERATE(narrowOop, \
jcoomes@1373 1672 obj->obj_field_addr<narrowOop>(map->offset()), map->count(), \
coleenp@548 1673 low, high, \
coleenp@548 1674 do_oop, assert_fn) \
coleenp@548 1675 ++map; \
coleenp@548 1676 } \
coleenp@548 1677 } else { \
coleenp@548 1678 while (map < end_map) { \
coleenp@548 1679 InstanceKlass_SPECIALIZED_BOUNDED_OOP_ITERATE(oop, \
jcoomes@1373 1680 obj->obj_field_addr<oop>(map->offset()), map->count(), \
coleenp@548 1681 low, high, \
coleenp@548 1682 do_oop, assert_fn) \
coleenp@548 1683 ++map; \
coleenp@548 1684 } \
coleenp@548 1685 } \
coleenp@548 1686 }
coleenp@548 1687
duke@435 1688 void instanceKlass::oop_follow_contents(oop obj) {
coleenp@548 1689 assert(obj != NULL, "can't follow the content of NULL object");
duke@435 1690 obj->follow_header();
coleenp@548 1691 InstanceKlass_OOP_MAP_ITERATE( \
coleenp@548 1692 obj, \
coleenp@548 1693 MarkSweep::mark_and_push(p), \
coleenp@548 1694 assert_is_in_closed_subset)
duke@435 1695 }
duke@435 1696
duke@435 1697 #ifndef SERIALGC
duke@435 1698 void instanceKlass::oop_follow_contents(ParCompactionManager* cm,
duke@435 1699 oop obj) {
coleenp@548 1700 assert(obj != NULL, "can't follow the content of NULL object");
duke@435 1701 obj->follow_header(cm);
coleenp@548 1702 InstanceKlass_OOP_MAP_ITERATE( \
coleenp@548 1703 obj, \
coleenp@548 1704 PSParallelCompact::mark_and_push(cm, p), \
coleenp@548 1705 assert_is_in)
duke@435 1706 }
duke@435 1707 #endif // SERIALGC
duke@435 1708
duke@435 1709 // closure's do_header() method dicates whether the given closure should be
duke@435 1710 // applied to the klass ptr in the object header.
duke@435 1711
ysr@777 1712 #define InstanceKlass_OOP_OOP_ITERATE_DEFN(OopClosureType, nv_suffix) \
ysr@777 1713 \
ysr@777 1714 int instanceKlass::oop_oop_iterate##nv_suffix(oop obj, OopClosureType* closure) { \
coleenp@548 1715 SpecializationStats::record_iterate_call##nv_suffix(SpecializationStats::ik);\
coleenp@548 1716 /* header */ \
coleenp@548 1717 if (closure->do_header()) { \
coleenp@548 1718 obj->oop_iterate_header(closure); \
coleenp@548 1719 } \
coleenp@548 1720 InstanceKlass_OOP_MAP_ITERATE( \
coleenp@548 1721 obj, \
coleenp@548 1722 SpecializationStats:: \
coleenp@548 1723 record_do_oop_call##nv_suffix(SpecializationStats::ik); \
coleenp@548 1724 (closure)->do_oop##nv_suffix(p), \
coleenp@548 1725 assert_is_in_closed_subset) \
coleenp@548 1726 return size_helper(); \
duke@435 1727 }
duke@435 1728
ysr@777 1729 #ifndef SERIALGC
ysr@777 1730 #define InstanceKlass_OOP_OOP_ITERATE_BACKWARDS_DEFN(OopClosureType, nv_suffix) \
ysr@777 1731 \
ysr@777 1732 int instanceKlass::oop_oop_iterate_backwards##nv_suffix(oop obj, \
ysr@777 1733 OopClosureType* closure) { \
ysr@777 1734 SpecializationStats::record_iterate_call##nv_suffix(SpecializationStats::ik); \
ysr@777 1735 /* header */ \
ysr@777 1736 if (closure->do_header()) { \
ysr@777 1737 obj->oop_iterate_header(closure); \
ysr@777 1738 } \
ysr@777 1739 /* instance variables */ \
ysr@777 1740 InstanceKlass_OOP_MAP_REVERSE_ITERATE( \
ysr@777 1741 obj, \
ysr@777 1742 SpecializationStats::record_do_oop_call##nv_suffix(SpecializationStats::ik);\
ysr@777 1743 (closure)->do_oop##nv_suffix(p), \
ysr@777 1744 assert_is_in_closed_subset) \
ysr@777 1745 return size_helper(); \
ysr@777 1746 }
ysr@777 1747 #endif // !SERIALGC
ysr@777 1748
coleenp@548 1749 #define InstanceKlass_OOP_OOP_ITERATE_DEFN_m(OopClosureType, nv_suffix) \
coleenp@548 1750 \
coleenp@548 1751 int instanceKlass::oop_oop_iterate##nv_suffix##_m(oop obj, \
coleenp@548 1752 OopClosureType* closure, \
coleenp@548 1753 MemRegion mr) { \
coleenp@548 1754 SpecializationStats::record_iterate_call##nv_suffix(SpecializationStats::ik);\
coleenp@548 1755 if (closure->do_header()) { \
coleenp@548 1756 obj->oop_iterate_header(closure, mr); \
coleenp@548 1757 } \
coleenp@548 1758 InstanceKlass_BOUNDED_OOP_MAP_ITERATE( \
coleenp@548 1759 obj, mr.start(), mr.end(), \
coleenp@548 1760 (closure)->do_oop##nv_suffix(p), \
coleenp@548 1761 assert_is_in_closed_subset) \
coleenp@548 1762 return size_helper(); \
duke@435 1763 }
duke@435 1764
duke@435 1765 ALL_OOP_OOP_ITERATE_CLOSURES_1(InstanceKlass_OOP_OOP_ITERATE_DEFN)
ysr@777 1766 ALL_OOP_OOP_ITERATE_CLOSURES_2(InstanceKlass_OOP_OOP_ITERATE_DEFN)
duke@435 1767 ALL_OOP_OOP_ITERATE_CLOSURES_1(InstanceKlass_OOP_OOP_ITERATE_DEFN_m)
ysr@777 1768 ALL_OOP_OOP_ITERATE_CLOSURES_2(InstanceKlass_OOP_OOP_ITERATE_DEFN_m)
ysr@777 1769 #ifndef SERIALGC
ysr@777 1770 ALL_OOP_OOP_ITERATE_CLOSURES_1(InstanceKlass_OOP_OOP_ITERATE_BACKWARDS_DEFN)
ysr@777 1771 ALL_OOP_OOP_ITERATE_CLOSURES_2(InstanceKlass_OOP_OOP_ITERATE_BACKWARDS_DEFN)
ysr@777 1772 #endif // !SERIALGC
duke@435 1773
duke@435 1774 int instanceKlass::oop_adjust_pointers(oop obj) {
duke@435 1775 int size = size_helper();
coleenp@548 1776 InstanceKlass_OOP_MAP_ITERATE( \
coleenp@548 1777 obj, \
coleenp@548 1778 MarkSweep::adjust_pointer(p), \
coleenp@548 1779 assert_is_in)
duke@435 1780 obj->adjust_header();
duke@435 1781 return size;
duke@435 1782 }
duke@435 1783
duke@435 1784 #ifndef SERIALGC
duke@435 1785 void instanceKlass::oop_push_contents(PSPromotionManager* pm, oop obj) {
coleenp@548 1786 InstanceKlass_OOP_MAP_REVERSE_ITERATE( \
coleenp@548 1787 obj, \
coleenp@548 1788 if (PSScavenge::should_scavenge(p)) { \
coleenp@548 1789 pm->claim_or_forward_depth(p); \
coleenp@548 1790 }, \
coleenp@548 1791 assert_nothing )
duke@435 1792 }
duke@435 1793
duke@435 1794 int instanceKlass::oop_update_pointers(ParCompactionManager* cm, oop obj) {
coleenp@548 1795 InstanceKlass_OOP_MAP_ITERATE( \
coleenp@548 1796 obj, \
coleenp@548 1797 PSParallelCompact::adjust_pointer(p), \
coleenp@548 1798 assert_nothing)
duke@435 1799 return size_helper();
duke@435 1800 }
duke@435 1801
duke@435 1802 #endif // SERIALGC
duke@435 1803
duke@435 1804 // This klass is alive but the implementor link is not followed/updated.
duke@435 1805 // Subklass and sibling links are handled by Klass::follow_weak_klass_links
duke@435 1806
duke@435 1807 void instanceKlass::follow_weak_klass_links(
duke@435 1808 BoolObjectClosure* is_alive, OopClosure* keep_alive) {
duke@435 1809 assert(is_alive->do_object_b(as_klassOop()), "this oop should be live");
duke@435 1810 if (ClassUnloading) {
duke@435 1811 for (int i = 0; i < implementors_limit; i++) {
duke@435 1812 klassOop impl = _implementors[i];
duke@435 1813 if (impl == NULL) break; // no more in the list
duke@435 1814 if (!is_alive->do_object_b(impl)) {
duke@435 1815 // remove this guy from the list by overwriting him with the tail
duke@435 1816 int lasti = --_nof_implementors;
duke@435 1817 assert(lasti >= i && lasti < implementors_limit, "just checking");
duke@435 1818 _implementors[i] = _implementors[lasti];
duke@435 1819 _implementors[lasti] = NULL;
duke@435 1820 --i; // rerun the loop at this index
duke@435 1821 }
duke@435 1822 }
duke@435 1823 } else {
duke@435 1824 for (int i = 0; i < implementors_limit; i++) {
duke@435 1825 keep_alive->do_oop(&adr_implementors()[i]);
duke@435 1826 }
duke@435 1827 }
duke@435 1828 Klass::follow_weak_klass_links(is_alive, keep_alive);
duke@435 1829 }
duke@435 1830
duke@435 1831 void instanceKlass::remove_unshareable_info() {
duke@435 1832 Klass::remove_unshareable_info();
duke@435 1833 init_implementor();
duke@435 1834 }
duke@435 1835
duke@435 1836 static void clear_all_breakpoints(methodOop m) {
duke@435 1837 m->clear_all_breakpoints();
duke@435 1838 }
duke@435 1839
duke@435 1840 void instanceKlass::release_C_heap_structures() {
duke@435 1841 // Deallocate oop map cache
duke@435 1842 if (_oop_map_cache != NULL) {
duke@435 1843 delete _oop_map_cache;
duke@435 1844 _oop_map_cache = NULL;
duke@435 1845 }
duke@435 1846
duke@435 1847 // Deallocate JNI identifiers for jfieldIDs
duke@435 1848 JNIid::deallocate(jni_ids());
duke@435 1849 set_jni_ids(NULL);
duke@435 1850
duke@435 1851 jmethodID* jmeths = methods_jmethod_ids_acquire();
duke@435 1852 if (jmeths != (jmethodID*)NULL) {
duke@435 1853 release_set_methods_jmethod_ids(NULL);
duke@435 1854 FreeHeap(jmeths);
duke@435 1855 }
duke@435 1856
duke@435 1857 int* indices = methods_cached_itable_indices_acquire();
duke@435 1858 if (indices != (int*)NULL) {
duke@435 1859 release_set_methods_cached_itable_indices(NULL);
duke@435 1860 FreeHeap(indices);
duke@435 1861 }
duke@435 1862
duke@435 1863 // release dependencies
duke@435 1864 nmethodBucket* b = _dependencies;
duke@435 1865 _dependencies = NULL;
duke@435 1866 while (b != NULL) {
duke@435 1867 nmethodBucket* next = b->next();
duke@435 1868 delete b;
duke@435 1869 b = next;
duke@435 1870 }
duke@435 1871
duke@435 1872 // Deallocate breakpoint records
duke@435 1873 if (breakpoints() != 0x0) {
duke@435 1874 methods_do(clear_all_breakpoints);
duke@435 1875 assert(breakpoints() == 0x0, "should have cleared breakpoints");
duke@435 1876 }
duke@435 1877
duke@435 1878 // deallocate information about previous versions
duke@435 1879 if (_previous_versions != NULL) {
duke@435 1880 for (int i = _previous_versions->length() - 1; i >= 0; i--) {
duke@435 1881 PreviousVersionNode * pv_node = _previous_versions->at(i);
duke@435 1882 delete pv_node;
duke@435 1883 }
duke@435 1884 delete _previous_versions;
duke@435 1885 _previous_versions = NULL;
duke@435 1886 }
duke@435 1887
duke@435 1888 // deallocate the cached class file
duke@435 1889 if (_cached_class_file_bytes != NULL) {
duke@435 1890 os::free(_cached_class_file_bytes);
duke@435 1891 _cached_class_file_bytes = NULL;
duke@435 1892 _cached_class_file_len = 0;
duke@435 1893 }
coleenp@2497 1894
coleenp@2497 1895 // Decrement symbol reference counts associated with the unloaded class.
coleenp@2497 1896 if (_name != NULL) _name->decrement_refcount();
coleenp@2497 1897 // unreference array name derived from this class name (arrays of an unloaded
coleenp@2497 1898 // class can't be referenced anymore).
coleenp@2497 1899 if (_array_name != NULL) _array_name->decrement_refcount();
coleenp@2497 1900 if (_source_file_name != NULL) _source_file_name->decrement_refcount();
coleenp@2497 1901 if (_source_debug_extension != NULL) _source_debug_extension->decrement_refcount();
coleenp@2497 1902 // walk constant pool and decrement symbol reference counts
coleenp@2497 1903 _constants->unreference_symbols();
coleenp@2497 1904 }
coleenp@2497 1905
coleenp@2497 1906 void instanceKlass::set_source_file_name(Symbol* n) {
coleenp@2497 1907 _source_file_name = n;
coleenp@2497 1908 if (_source_file_name != NULL) _source_file_name->increment_refcount();
coleenp@2497 1909 }
coleenp@2497 1910
coleenp@2497 1911 void instanceKlass::set_source_debug_extension(Symbol* n) {
coleenp@2497 1912 _source_debug_extension = n;
coleenp@2497 1913 if (_source_debug_extension != NULL) _source_debug_extension->increment_refcount();
duke@435 1914 }
duke@435 1915
never@2658 1916 address instanceKlass::static_field_addr(int offset) {
never@2658 1917 return (address)(offset + instanceMirrorKlass::offset_of_static_fields() + (intptr_t)java_mirror());
never@2658 1918 }
never@2658 1919
never@2658 1920
jrose@1474 1921 const char* instanceKlass::signature_name() const {
duke@435 1922 const char* src = (const char*) (name()->as_C_string());
duke@435 1923 const int src_length = (int)strlen(src);
duke@435 1924 char* dest = NEW_RESOURCE_ARRAY(char, src_length + 3);
duke@435 1925 int src_index = 0;
duke@435 1926 int dest_index = 0;
duke@435 1927 dest[dest_index++] = 'L';
duke@435 1928 while (src_index < src_length) {
duke@435 1929 dest[dest_index++] = src[src_index++];
duke@435 1930 }
duke@435 1931 dest[dest_index++] = ';';
duke@435 1932 dest[dest_index] = '\0';
duke@435 1933 return dest;
duke@435 1934 }
duke@435 1935
duke@435 1936 // different verisons of is_same_class_package
duke@435 1937 bool instanceKlass::is_same_class_package(klassOop class2) {
duke@435 1938 klassOop class1 = as_klassOop();
duke@435 1939 oop classloader1 = instanceKlass::cast(class1)->class_loader();
coleenp@2497 1940 Symbol* classname1 = Klass::cast(class1)->name();
duke@435 1941
duke@435 1942 if (Klass::cast(class2)->oop_is_objArray()) {
duke@435 1943 class2 = objArrayKlass::cast(class2)->bottom_klass();
duke@435 1944 }
duke@435 1945 oop classloader2;
duke@435 1946 if (Klass::cast(class2)->oop_is_instance()) {
duke@435 1947 classloader2 = instanceKlass::cast(class2)->class_loader();
duke@435 1948 } else {
duke@435 1949 assert(Klass::cast(class2)->oop_is_typeArray(), "should be type array");
duke@435 1950 classloader2 = NULL;
duke@435 1951 }
coleenp@2497 1952 Symbol* classname2 = Klass::cast(class2)->name();
duke@435 1953
duke@435 1954 return instanceKlass::is_same_class_package(classloader1, classname1,
duke@435 1955 classloader2, classname2);
duke@435 1956 }
duke@435 1957
coleenp@2497 1958 bool instanceKlass::is_same_class_package(oop classloader2, Symbol* classname2) {
duke@435 1959 klassOop class1 = as_klassOop();
duke@435 1960 oop classloader1 = instanceKlass::cast(class1)->class_loader();
coleenp@2497 1961 Symbol* classname1 = Klass::cast(class1)->name();
duke@435 1962
duke@435 1963 return instanceKlass::is_same_class_package(classloader1, classname1,
duke@435 1964 classloader2, classname2);
duke@435 1965 }
duke@435 1966
duke@435 1967 // return true if two classes are in the same package, classloader
duke@435 1968 // and classname information is enough to determine a class's package
coleenp@2497 1969 bool instanceKlass::is_same_class_package(oop class_loader1, Symbol* class_name1,
coleenp@2497 1970 oop class_loader2, Symbol* class_name2) {
duke@435 1971 if (class_loader1 != class_loader2) {
duke@435 1972 return false;
jrose@1100 1973 } else if (class_name1 == class_name2) {
jrose@1100 1974 return true; // skip painful bytewise comparison
duke@435 1975 } else {
duke@435 1976 ResourceMark rm;
duke@435 1977
coleenp@2497 1978 // The Symbol*'s are in UTF8 encoding. Since we only need to check explicitly
duke@435 1979 // for ASCII characters ('/', 'L', '['), we can keep them in UTF8 encoding.
duke@435 1980 // Otherwise, we just compare jbyte values between the strings.
coleenp@2497 1981 const jbyte *name1 = class_name1->base();
coleenp@2497 1982 const jbyte *name2 = class_name2->base();
coleenp@2497 1983
coleenp@2497 1984 const jbyte *last_slash1 = UTF8::strrchr(name1, class_name1->utf8_length(), '/');
coleenp@2497 1985 const jbyte *last_slash2 = UTF8::strrchr(name2, class_name2->utf8_length(), '/');
duke@435 1986
duke@435 1987 if ((last_slash1 == NULL) || (last_slash2 == NULL)) {
duke@435 1988 // One of the two doesn't have a package. Only return true
duke@435 1989 // if the other one also doesn't have a package.
duke@435 1990 return last_slash1 == last_slash2;
duke@435 1991 } else {
duke@435 1992 // Skip over '['s
duke@435 1993 if (*name1 == '[') {
duke@435 1994 do {
duke@435 1995 name1++;
duke@435 1996 } while (*name1 == '[');
duke@435 1997 if (*name1 != 'L') {
duke@435 1998 // Something is terribly wrong. Shouldn't be here.
duke@435 1999 return false;
duke@435 2000 }
duke@435 2001 }
duke@435 2002 if (*name2 == '[') {
duke@435 2003 do {
duke@435 2004 name2++;
duke@435 2005 } while (*name2 == '[');
duke@435 2006 if (*name2 != 'L') {
duke@435 2007 // Something is terribly wrong. Shouldn't be here.
duke@435 2008 return false;
duke@435 2009 }
duke@435 2010 }
duke@435 2011
duke@435 2012 // Check that package part is identical
duke@435 2013 int length1 = last_slash1 - name1;
duke@435 2014 int length2 = last_slash2 - name2;
duke@435 2015
duke@435 2016 return UTF8::equal(name1, length1, name2, length2);
duke@435 2017 }
duke@435 2018 }
duke@435 2019 }
duke@435 2020
acorn@1087 2021 // Returns true iff super_method can be overridden by a method in targetclassname
acorn@1087 2022 // See JSL 3rd edition 8.4.6.1
acorn@1087 2023 // Assumes name-signature match
acorn@1087 2024 // "this" is instanceKlass of super_method which must exist
acorn@1087 2025 // note that the instanceKlass of the method in the targetclassname has not always been created yet
coleenp@2497 2026 bool instanceKlass::is_override(methodHandle super_method, Handle targetclassloader, Symbol* targetclassname, TRAPS) {
acorn@1087 2027 // Private methods can not be overridden
acorn@1087 2028 if (super_method->is_private()) {
acorn@1087 2029 return false;
acorn@1087 2030 }
acorn@1087 2031 // If super method is accessible, then override
acorn@1087 2032 if ((super_method->is_protected()) ||
acorn@1087 2033 (super_method->is_public())) {
acorn@1087 2034 return true;
acorn@1087 2035 }
acorn@1087 2036 // Package-private methods are not inherited outside of package
acorn@1087 2037 assert(super_method->is_package_private(), "must be package private");
coleenp@2497 2038 return(is_same_class_package(targetclassloader(), targetclassname));
acorn@1087 2039 }
twisti@1040 2040
jrose@1100 2041 /* defined for now in jvm.cpp, for historical reasons *--
jrose@1100 2042 klassOop instanceKlass::compute_enclosing_class_impl(instanceKlassHandle self,
coleenp@2497 2043 Symbol*& simple_name_result, TRAPS) {
jrose@1100 2044 ...
jrose@1100 2045 }
jrose@1100 2046 */
jrose@1100 2047
jrose@1100 2048 // tell if two classes have the same enclosing class (at package level)
jrose@1100 2049 bool instanceKlass::is_same_package_member_impl(instanceKlassHandle class1,
jrose@1100 2050 klassOop class2_oop, TRAPS) {
jrose@1100 2051 if (class2_oop == class1->as_klassOop()) return true;
jrose@1100 2052 if (!Klass::cast(class2_oop)->oop_is_instance()) return false;
jrose@1100 2053 instanceKlassHandle class2(THREAD, class2_oop);
jrose@1100 2054
jrose@1100 2055 // must be in same package before we try anything else
jrose@1100 2056 if (!class1->is_same_class_package(class2->class_loader(), class2->name()))
jrose@1100 2057 return false;
jrose@1100 2058
jrose@1100 2059 // As long as there is an outer1.getEnclosingClass,
jrose@1100 2060 // shift the search outward.
jrose@1100 2061 instanceKlassHandle outer1 = class1;
jrose@1100 2062 for (;;) {
jrose@1100 2063 // As we walk along, look for equalities between outer1 and class2.
jrose@1100 2064 // Eventually, the walks will terminate as outer1 stops
jrose@1100 2065 // at the top-level class around the original class.
xlu@1561 2066 bool ignore_inner_is_member;
xlu@1561 2067 klassOop next = outer1->compute_enclosing_class(&ignore_inner_is_member,
xlu@1561 2068 CHECK_false);
jrose@1100 2069 if (next == NULL) break;
jrose@1100 2070 if (next == class2()) return true;
jrose@1100 2071 outer1 = instanceKlassHandle(THREAD, next);
jrose@1100 2072 }
jrose@1100 2073
jrose@1100 2074 // Now do the same for class2.
jrose@1100 2075 instanceKlassHandle outer2 = class2;
jrose@1100 2076 for (;;) {
xlu@1561 2077 bool ignore_inner_is_member;
xlu@1561 2078 klassOop next = outer2->compute_enclosing_class(&ignore_inner_is_member,
xlu@1561 2079 CHECK_false);
jrose@1100 2080 if (next == NULL) break;
jrose@1100 2081 // Might as well check the new outer against all available values.
jrose@1100 2082 if (next == class1()) return true;
jrose@1100 2083 if (next == outer1()) return true;
jrose@1100 2084 outer2 = instanceKlassHandle(THREAD, next);
jrose@1100 2085 }
jrose@1100 2086
jrose@1100 2087 // If by this point we have not found an equality between the
jrose@1100 2088 // two classes, we know they are in separate package members.
jrose@1100 2089 return false;
jrose@1100 2090 }
jrose@1100 2091
duke@435 2092
duke@435 2093 jint instanceKlass::compute_modifier_flags(TRAPS) const {
duke@435 2094 klassOop k = as_klassOop();
duke@435 2095 jint access = access_flags().as_int();
duke@435 2096
duke@435 2097 // But check if it happens to be member class.
duke@435 2098 typeArrayOop inner_class_list = inner_classes();
duke@435 2099 int length = (inner_class_list == NULL) ? 0 : inner_class_list->length();
duke@435 2100 assert (length % instanceKlass::inner_class_next_offset == 0, "just checking");
duke@435 2101 if (length > 0) {
duke@435 2102 typeArrayHandle inner_class_list_h(THREAD, inner_class_list);
duke@435 2103 instanceKlassHandle ik(THREAD, k);
duke@435 2104 for (int i = 0; i < length; i += instanceKlass::inner_class_next_offset) {
duke@435 2105 int ioff = inner_class_list_h->ushort_at(
duke@435 2106 i + instanceKlass::inner_class_inner_class_info_offset);
duke@435 2107
duke@435 2108 // Inner class attribute can be zero, skip it.
duke@435 2109 // Strange but true: JVM spec. allows null inner class refs.
duke@435 2110 if (ioff == 0) continue;
duke@435 2111
duke@435 2112 // only look at classes that are already loaded
duke@435 2113 // since we are looking for the flags for our self.
coleenp@2497 2114 Symbol* inner_name = ik->constants()->klass_name_at(ioff);
duke@435 2115 if ((ik->name() == inner_name)) {
duke@435 2116 // This is really a member class.
duke@435 2117 access = inner_class_list_h->ushort_at(i + instanceKlass::inner_class_access_flags_offset);
duke@435 2118 break;
duke@435 2119 }
duke@435 2120 }
duke@435 2121 }
duke@435 2122 // Remember to strip ACC_SUPER bit
duke@435 2123 return (access & (~JVM_ACC_SUPER)) & JVM_ACC_WRITTEN_FLAGS;
duke@435 2124 }
duke@435 2125
duke@435 2126 jint instanceKlass::jvmti_class_status() const {
duke@435 2127 jint result = 0;
duke@435 2128
duke@435 2129 if (is_linked()) {
duke@435 2130 result |= JVMTI_CLASS_STATUS_VERIFIED | JVMTI_CLASS_STATUS_PREPARED;
duke@435 2131 }
duke@435 2132
duke@435 2133 if (is_initialized()) {
duke@435 2134 assert(is_linked(), "Class status is not consistent");
duke@435 2135 result |= JVMTI_CLASS_STATUS_INITIALIZED;
duke@435 2136 }
duke@435 2137 if (is_in_error_state()) {
duke@435 2138 result |= JVMTI_CLASS_STATUS_ERROR;
duke@435 2139 }
duke@435 2140 return result;
duke@435 2141 }
duke@435 2142
duke@435 2143 methodOop instanceKlass::method_at_itable(klassOop holder, int index, TRAPS) {
duke@435 2144 itableOffsetEntry* ioe = (itableOffsetEntry*)start_of_itable();
duke@435 2145 int method_table_offset_in_words = ioe->offset()/wordSize;
duke@435 2146 int nof_interfaces = (method_table_offset_in_words - itable_offset_in_words())
duke@435 2147 / itableOffsetEntry::size();
duke@435 2148
duke@435 2149 for (int cnt = 0 ; ; cnt ++, ioe ++) {
twisti@1040 2150 // If the interface isn't implemented by the receiver class,
duke@435 2151 // the VM should throw IncompatibleClassChangeError.
duke@435 2152 if (cnt >= nof_interfaces) {
coleenp@2497 2153 THROW_0(vmSymbols::java_lang_IncompatibleClassChangeError());
duke@435 2154 }
duke@435 2155
duke@435 2156 klassOop ik = ioe->interface_klass();
duke@435 2157 if (ik == holder) break;
duke@435 2158 }
duke@435 2159
duke@435 2160 itableMethodEntry* ime = ioe->first_method_entry(as_klassOop());
duke@435 2161 methodOop m = ime[index].method();
duke@435 2162 if (m == NULL) {
coleenp@2497 2163 THROW_0(vmSymbols::java_lang_AbstractMethodError());
duke@435 2164 }
duke@435 2165 return m;
duke@435 2166 }
duke@435 2167
duke@435 2168 // On-stack replacement stuff
duke@435 2169 void instanceKlass::add_osr_nmethod(nmethod* n) {
duke@435 2170 // only one compilation can be active
duke@435 2171 NEEDS_CLEANUP
duke@435 2172 // This is a short non-blocking critical region, so the no safepoint check is ok.
duke@435 2173 OsrList_lock->lock_without_safepoint_check();
duke@435 2174 assert(n->is_osr_method(), "wrong kind of nmethod");
jrose@1424 2175 n->set_osr_link(osr_nmethods_head());
duke@435 2176 set_osr_nmethods_head(n);
iveresov@2138 2177 // Raise the highest osr level if necessary
iveresov@2138 2178 if (TieredCompilation) {
iveresov@2138 2179 methodOop m = n->method();
iveresov@2138 2180 m->set_highest_osr_comp_level(MAX2(m->highest_osr_comp_level(), n->comp_level()));
iveresov@2138 2181 }
duke@435 2182 // Remember to unlock again
duke@435 2183 OsrList_lock->unlock();
iveresov@2138 2184
iveresov@2138 2185 // Get rid of the osr methods for the same bci that have lower levels.
iveresov@2138 2186 if (TieredCompilation) {
iveresov@2138 2187 for (int l = CompLevel_limited_profile; l < n->comp_level(); l++) {
iveresov@2138 2188 nmethod *inv = lookup_osr_nmethod(n->method(), n->osr_entry_bci(), l, true);
iveresov@2138 2189 if (inv != NULL && inv->is_in_use()) {
iveresov@2138 2190 inv->make_not_entrant();
iveresov@2138 2191 }
iveresov@2138 2192 }
iveresov@2138 2193 }
duke@435 2194 }
duke@435 2195
duke@435 2196
duke@435 2197 void instanceKlass::remove_osr_nmethod(nmethod* n) {
duke@435 2198 // This is a short non-blocking critical region, so the no safepoint check is ok.
duke@435 2199 OsrList_lock->lock_without_safepoint_check();
duke@435 2200 assert(n->is_osr_method(), "wrong kind of nmethod");
duke@435 2201 nmethod* last = NULL;
duke@435 2202 nmethod* cur = osr_nmethods_head();
iveresov@2138 2203 int max_level = CompLevel_none; // Find the max comp level excluding n
iveresov@2138 2204 methodOop m = n->method();
duke@435 2205 // Search for match
duke@435 2206 while(cur != NULL && cur != n) {
iveresov@2138 2207 if (TieredCompilation) {
iveresov@2138 2208 // Find max level before n
iveresov@2138 2209 max_level = MAX2(max_level, cur->comp_level());
iveresov@2138 2210 }
duke@435 2211 last = cur;
jrose@1424 2212 cur = cur->osr_link();
duke@435 2213 }
iveresov@2138 2214 nmethod* next = NULL;
duke@435 2215 if (cur == n) {
iveresov@2138 2216 next = cur->osr_link();
duke@435 2217 if (last == NULL) {
duke@435 2218 // Remove first element
iveresov@2138 2219 set_osr_nmethods_head(next);
duke@435 2220 } else {
iveresov@2138 2221 last->set_osr_link(next);
duke@435 2222 }
duke@435 2223 }
jrose@1424 2224 n->set_osr_link(NULL);
iveresov@2138 2225 if (TieredCompilation) {
iveresov@2138 2226 cur = next;
iveresov@2138 2227 while (cur != NULL) {
iveresov@2138 2228 // Find max level after n
iveresov@2138 2229 max_level = MAX2(max_level, cur->comp_level());
iveresov@2138 2230 cur = cur->osr_link();
iveresov@2138 2231 }
iveresov@2138 2232 m->set_highest_osr_comp_level(max_level);
iveresov@2138 2233 }
duke@435 2234 // Remember to unlock again
duke@435 2235 OsrList_lock->unlock();
duke@435 2236 }
duke@435 2237
iveresov@2138 2238 nmethod* instanceKlass::lookup_osr_nmethod(const methodOop m, int bci, int comp_level, bool match_level) const {
duke@435 2239 // This is a short non-blocking critical region, so the no safepoint check is ok.
duke@435 2240 OsrList_lock->lock_without_safepoint_check();
duke@435 2241 nmethod* osr = osr_nmethods_head();
iveresov@2138 2242 nmethod* best = NULL;
duke@435 2243 while (osr != NULL) {
duke@435 2244 assert(osr->is_osr_method(), "wrong kind of nmethod found in chain");
iveresov@2138 2245 // There can be a time when a c1 osr method exists but we are waiting
iveresov@2138 2246 // for a c2 version. When c2 completes its osr nmethod we will trash
iveresov@2138 2247 // the c1 version and only be able to find the c2 version. However
iveresov@2138 2248 // while we overflow in the c1 code at back branches we don't want to
iveresov@2138 2249 // try and switch to the same code as we are already running
iveresov@2138 2250
duke@435 2251 if (osr->method() == m &&
duke@435 2252 (bci == InvocationEntryBci || osr->osr_entry_bci() == bci)) {
iveresov@2138 2253 if (match_level) {
iveresov@2138 2254 if (osr->comp_level() == comp_level) {
iveresov@2138 2255 // Found a match - return it.
iveresov@2138 2256 OsrList_lock->unlock();
iveresov@2138 2257 return osr;
iveresov@2138 2258 }
iveresov@2138 2259 } else {
iveresov@2138 2260 if (best == NULL || (osr->comp_level() > best->comp_level())) {
iveresov@2138 2261 if (osr->comp_level() == CompLevel_highest_tier) {
iveresov@2138 2262 // Found the best possible - return it.
iveresov@2138 2263 OsrList_lock->unlock();
iveresov@2138 2264 return osr;
iveresov@2138 2265 }
iveresov@2138 2266 best = osr;
iveresov@2138 2267 }
iveresov@2138 2268 }
duke@435 2269 }
jrose@1424 2270 osr = osr->osr_link();
duke@435 2271 }
duke@435 2272 OsrList_lock->unlock();
iveresov@2138 2273 if (best != NULL && best->comp_level() >= comp_level && match_level == false) {
iveresov@2138 2274 return best;
iveresov@2138 2275 }
duke@435 2276 return NULL;
duke@435 2277 }
duke@435 2278
duke@435 2279 // -----------------------------------------------------------------------------------------------------
duke@435 2280 #ifndef PRODUCT
duke@435 2281
duke@435 2282 // Printing
duke@435 2283
jrose@1100 2284 #define BULLET " - "
jrose@1100 2285
duke@435 2286 void FieldPrinter::do_field(fieldDescriptor* fd) {
jrose@1100 2287 _st->print(BULLET);
never@2658 2288 if (_obj == NULL) {
duke@435 2289 fd->print_on(_st);
duke@435 2290 _st->cr();
duke@435 2291 } else {
duke@435 2292 fd->print_on_for(_st, _obj);
duke@435 2293 _st->cr();
duke@435 2294 }
duke@435 2295 }
duke@435 2296
duke@435 2297
duke@435 2298 void instanceKlass::oop_print_on(oop obj, outputStream* st) {
duke@435 2299 Klass::oop_print_on(obj, st);
duke@435 2300
never@1577 2301 if (as_klassOop() == SystemDictionary::String_klass()) {
duke@435 2302 typeArrayOop value = java_lang_String::value(obj);
duke@435 2303 juint offset = java_lang_String::offset(obj);
duke@435 2304 juint length = java_lang_String::length(obj);
duke@435 2305 if (value != NULL &&
duke@435 2306 value->is_typeArray() &&
duke@435 2307 offset <= (juint) value->length() &&
duke@435 2308 offset + length <= (juint) value->length()) {
jrose@1100 2309 st->print(BULLET"string: ");
duke@435 2310 Handle h_obj(obj);
duke@435 2311 java_lang_String::print(h_obj, st);
duke@435 2312 st->cr();
duke@435 2313 if (!WizardMode) return; // that is enough
duke@435 2314 }
duke@435 2315 }
duke@435 2316
jrose@1100 2317 st->print_cr(BULLET"---- fields (total size %d words):", oop_size(obj));
never@2658 2318 FieldPrinter print_field(st, obj);
never@2658 2319 do_nonstatic_fields(&print_field);
duke@435 2320
never@1577 2321 if (as_klassOop() == SystemDictionary::Class_klass()) {
jrose@1100 2322 st->print(BULLET"signature: ");
jrose@1100 2323 java_lang_Class::print_signature(obj, st);
jrose@1100 2324 st->cr();
duke@435 2325 klassOop mirrored_klass = java_lang_Class::as_klassOop(obj);
jrose@1100 2326 st->print(BULLET"fake entry for mirror: ");
duke@435 2327 mirrored_klass->print_value_on(st);
duke@435 2328 st->cr();
jrose@1100 2329 st->print(BULLET"fake entry resolved_constructor: ");
duke@435 2330 methodOop ctor = java_lang_Class::resolved_constructor(obj);
duke@435 2331 ctor->print_value_on(st);
duke@435 2332 klassOop array_klass = java_lang_Class::array_klass(obj);
jrose@1100 2333 st->cr();
jrose@1100 2334 st->print(BULLET"fake entry for array: ");
duke@435 2335 array_klass->print_value_on(st);
duke@435 2336 st->cr();
never@2658 2337 st->print_cr(BULLET"fake entry for oop_size: %d", java_lang_Class::oop_size(obj));
never@2658 2338 st->print_cr(BULLET"fake entry for static_oop_field_count: %d", java_lang_Class::static_oop_field_count(obj));
never@2658 2339 klassOop real_klass = java_lang_Class::as_klassOop(obj);
never@2658 2340 if (real_klass && real_klass->klass_part()->oop_is_instance()) {
never@2658 2341 instanceKlass::cast(real_klass)->do_local_static_fields(&print_field);
never@2658 2342 }
jrose@1474 2343 } else if (as_klassOop() == SystemDictionary::MethodType_klass()) {
jrose@1474 2344 st->print(BULLET"signature: ");
jrose@2639 2345 java_lang_invoke_MethodType::print_signature(obj, st);
jrose@1474 2346 st->cr();
duke@435 2347 }
duke@435 2348 }
duke@435 2349
jrose@1590 2350 #endif //PRODUCT
jrose@1590 2351
duke@435 2352 void instanceKlass::oop_print_value_on(oop obj, outputStream* st) {
duke@435 2353 st->print("a ");
duke@435 2354 name()->print_value_on(st);
duke@435 2355 obj->print_address_on(st);
never@1577 2356 if (as_klassOop() == SystemDictionary::String_klass()
jrose@1100 2357 && java_lang_String::value(obj) != NULL) {
jrose@1100 2358 ResourceMark rm;
jrose@1100 2359 int len = java_lang_String::length(obj);
jrose@1100 2360 int plen = (len < 24 ? len : 12);
jrose@1100 2361 char* str = java_lang_String::as_utf8_string(obj, 0, plen);
jrose@1100 2362 st->print(" = \"%s\"", str);
jrose@1100 2363 if (len > plen)
jrose@1100 2364 st->print("...[%d]", len);
never@1577 2365 } else if (as_klassOop() == SystemDictionary::Class_klass()) {
jrose@1100 2366 klassOop k = java_lang_Class::as_klassOop(obj);
jrose@1100 2367 st->print(" = ");
jrose@1100 2368 if (k != NULL) {
jrose@1100 2369 k->print_value_on(st);
jrose@1100 2370 } else {
jrose@1100 2371 const char* tname = type2name(java_lang_Class::primitive_type(obj));
jrose@1100 2372 st->print("%s", tname ? tname : "type?");
jrose@1100 2373 }
jrose@1474 2374 } else if (as_klassOop() == SystemDictionary::MethodType_klass()) {
jrose@1474 2375 st->print(" = ");
jrose@2639 2376 java_lang_invoke_MethodType::print_signature(obj, st);
jrose@1100 2377 } else if (java_lang_boxing_object::is_instance(obj)) {
jrose@1100 2378 st->print(" = ");
jrose@1100 2379 java_lang_boxing_object::print(obj, st);
jrose@1100 2380 }
duke@435 2381 }
duke@435 2382
duke@435 2383 const char* instanceKlass::internal_name() const {
duke@435 2384 return external_name();
duke@435 2385 }
duke@435 2386
duke@435 2387 // Verification
duke@435 2388
duke@435 2389 class VerifyFieldClosure: public OopClosure {
coleenp@548 2390 protected:
coleenp@548 2391 template <class T> void do_oop_work(T* p) {
duke@435 2392 guarantee(Universe::heap()->is_in_closed_subset(p), "should be in heap");
coleenp@548 2393 oop obj = oopDesc::load_decode_heap_oop(p);
coleenp@548 2394 if (!obj->is_oop_or_null()) {
coleenp@548 2395 tty->print_cr("Failed: " PTR_FORMAT " -> " PTR_FORMAT, p, (address)obj);
duke@435 2396 Universe::print();
duke@435 2397 guarantee(false, "boom");
duke@435 2398 }
duke@435 2399 }
coleenp@548 2400 public:
coleenp@548 2401 virtual void do_oop(oop* p) { VerifyFieldClosure::do_oop_work(p); }
coleenp@548 2402 virtual void do_oop(narrowOop* p) { VerifyFieldClosure::do_oop_work(p); }
duke@435 2403 };
duke@435 2404
duke@435 2405 void instanceKlass::oop_verify_on(oop obj, outputStream* st) {
duke@435 2406 Klass::oop_verify_on(obj, st);
duke@435 2407 VerifyFieldClosure blk;
duke@435 2408 oop_oop_iterate(obj, &blk);
duke@435 2409 }
duke@435 2410
duke@435 2411 #ifndef PRODUCT
duke@435 2412
duke@435 2413 void instanceKlass::verify_class_klass_nonstatic_oop_maps(klassOop k) {
duke@435 2414 // This verification code is disabled. JDK_Version::is_gte_jdk14x_version()
duke@435 2415 // cannot be called since this function is called before the VM is
duke@435 2416 // able to determine what JDK version is running with.
duke@435 2417 // The check below always is false since 1.4.
duke@435 2418 return;
duke@435 2419
duke@435 2420 // This verification code temporarily disabled for the 1.4
duke@435 2421 // reflection implementation since java.lang.Class now has
duke@435 2422 // Java-level instance fields. Should rewrite this to handle this
duke@435 2423 // case.
duke@435 2424 if (!(JDK_Version::is_gte_jdk14x_version() && UseNewReflection)) {
duke@435 2425 // Verify that java.lang.Class instances have a fake oop field added.
duke@435 2426 instanceKlass* ik = instanceKlass::cast(k);
duke@435 2427
duke@435 2428 // Check that we have the right class
duke@435 2429 static bool first_time = true;
never@1577 2430 guarantee(k == SystemDictionary::Class_klass() && first_time, "Invalid verify of maps");
duke@435 2431 first_time = false;
duke@435 2432 const int extra = java_lang_Class::number_of_fake_oop_fields;
duke@435 2433 guarantee(ik->nonstatic_field_size() == extra, "just checking");
jcoomes@1373 2434 guarantee(ik->nonstatic_oop_map_count() == 1, "just checking");
duke@435 2435 guarantee(ik->size_helper() == align_object_size(instanceOopDesc::header_size() + extra), "just checking");
duke@435 2436
duke@435 2437 // Check that the map is (2,extra)
duke@435 2438 int offset = java_lang_Class::klass_offset;
duke@435 2439
duke@435 2440 OopMapBlock* map = ik->start_of_nonstatic_oop_maps();
jcoomes@1374 2441 guarantee(map->offset() == offset && map->count() == (unsigned int) extra,
jcoomes@1374 2442 "sanity");
duke@435 2443 }
duke@435 2444 }
duke@435 2445
coleenp@548 2446 #endif // ndef PRODUCT
duke@435 2447
coleenp@548 2448 // JNIid class for jfieldIDs only
coleenp@548 2449 // Note to reviewers:
coleenp@548 2450 // These JNI functions are just moved over to column 1 and not changed
coleenp@548 2451 // in the compressed oops workspace.
coleenp@548 2452 JNIid::JNIid(klassOop holder, int offset, JNIid* next) {
coleenp@548 2453 _holder = holder;
coleenp@548 2454 _offset = offset;
coleenp@548 2455 _next = next;
coleenp@548 2456 debug_only(_is_static_field_id = false;)
coleenp@548 2457 }
duke@435 2458
duke@435 2459
coleenp@548 2460 JNIid* JNIid::find(int offset) {
coleenp@548 2461 JNIid* current = this;
coleenp@548 2462 while (current != NULL) {
coleenp@548 2463 if (current->offset() == offset) return current;
coleenp@548 2464 current = current->next();
coleenp@548 2465 }
coleenp@548 2466 return NULL;
coleenp@548 2467 }
duke@435 2468
duke@435 2469 void JNIid::oops_do(OopClosure* f) {
duke@435 2470 for (JNIid* cur = this; cur != NULL; cur = cur->next()) {
duke@435 2471 f->do_oop(cur->holder_addr());
duke@435 2472 }
duke@435 2473 }
duke@435 2474
duke@435 2475 void JNIid::deallocate(JNIid* current) {
coleenp@548 2476 while (current != NULL) {
coleenp@548 2477 JNIid* next = current->next();
coleenp@548 2478 delete current;
coleenp@548 2479 current = next;
coleenp@548 2480 }
coleenp@548 2481 }
duke@435 2482
duke@435 2483
coleenp@548 2484 void JNIid::verify(klassOop holder) {
never@2658 2485 int first_field_offset = instanceMirrorKlass::offset_of_static_fields();
coleenp@548 2486 int end_field_offset;
coleenp@548 2487 end_field_offset = first_field_offset + (instanceKlass::cast(holder)->static_field_size() * wordSize);
duke@435 2488
coleenp@548 2489 JNIid* current = this;
coleenp@548 2490 while (current != NULL) {
coleenp@548 2491 guarantee(current->holder() == holder, "Invalid klass in JNIid");
coleenp@548 2492 #ifdef ASSERT
coleenp@548 2493 int o = current->offset();
coleenp@548 2494 if (current->is_static_field_id()) {
coleenp@548 2495 guarantee(o >= first_field_offset && o < end_field_offset, "Invalid static field offset in JNIid");
coleenp@548 2496 }
coleenp@548 2497 #endif
coleenp@548 2498 current = current->next();
coleenp@548 2499 }
coleenp@548 2500 }
duke@435 2501
duke@435 2502
duke@435 2503 #ifdef ASSERT
coleenp@548 2504 void instanceKlass::set_init_state(ClassState state) {
coleenp@548 2505 bool good_state = as_klassOop()->is_shared() ? (_init_state <= state)
coleenp@548 2506 : (_init_state < state);
coleenp@548 2507 assert(good_state || state == allocated, "illegal state transition");
coleenp@548 2508 _init_state = state;
coleenp@548 2509 }
duke@435 2510 #endif
duke@435 2511
duke@435 2512
duke@435 2513 // RedefineClasses() support for previous versions:
duke@435 2514
duke@435 2515 // Add an information node that contains weak references to the
duke@435 2516 // interesting parts of the previous version of the_class.
dcubed@1412 2517 // This is also where we clean out any unused weak references.
dcubed@1412 2518 // Note that while we delete nodes from the _previous_versions
dcubed@1412 2519 // array, we never delete the array itself until the klass is
dcubed@1412 2520 // unloaded. The has_been_redefined() query depends on that fact.
dcubed@1412 2521 //
duke@435 2522 void instanceKlass::add_previous_version(instanceKlassHandle ikh,
coleenp@548 2523 BitMap* emcp_methods, int emcp_method_count) {
duke@435 2524 assert(Thread::current()->is_VM_thread(),
coleenp@548 2525 "only VMThread can add previous versions");
duke@435 2526
duke@435 2527 if (_previous_versions == NULL) {
duke@435 2528 // This is the first previous version so make some space.
duke@435 2529 // Start with 2 elements under the assumption that the class
duke@435 2530 // won't be redefined much.
duke@435 2531 _previous_versions = new (ResourceObj::C_HEAP)
duke@435 2532 GrowableArray<PreviousVersionNode *>(2, true);
duke@435 2533 }
duke@435 2534
duke@435 2535 // RC_TRACE macro has an embedded ResourceMark
duke@435 2536 RC_TRACE(0x00000100, ("adding previous version ref for %s @%d, EMCP_cnt=%d",
duke@435 2537 ikh->external_name(), _previous_versions->length(), emcp_method_count));
duke@435 2538 constantPoolHandle cp_h(ikh->constants());
dcubed@482 2539 jobject cp_ref;
dcubed@482 2540 if (cp_h->is_shared()) {
dcubed@482 2541 // a shared ConstantPool requires a regular reference; a weak
dcubed@482 2542 // reference would be collectible
dcubed@482 2543 cp_ref = JNIHandles::make_global(cp_h);
dcubed@482 2544 } else {
dcubed@482 2545 cp_ref = JNIHandles::make_weak_global(cp_h);
dcubed@482 2546 }
duke@435 2547 PreviousVersionNode * pv_node = NULL;
duke@435 2548 objArrayOop old_methods = ikh->methods();
duke@435 2549
duke@435 2550 if (emcp_method_count == 0) {
dcubed@482 2551 // non-shared ConstantPool gets a weak reference
dcubed@482 2552 pv_node = new PreviousVersionNode(cp_ref, !cp_h->is_shared(), NULL);
duke@435 2553 RC_TRACE(0x00000400,
duke@435 2554 ("add: all methods are obsolete; flushing any EMCP weak refs"));
duke@435 2555 } else {
duke@435 2556 int local_count = 0;
duke@435 2557 GrowableArray<jweak>* method_refs = new (ResourceObj::C_HEAP)
duke@435 2558 GrowableArray<jweak>(emcp_method_count, true);
duke@435 2559 for (int i = 0; i < old_methods->length(); i++) {
duke@435 2560 if (emcp_methods->at(i)) {
duke@435 2561 // this old method is EMCP so save a weak ref
duke@435 2562 methodOop old_method = (methodOop) old_methods->obj_at(i);
duke@435 2563 methodHandle old_method_h(old_method);
duke@435 2564 jweak method_ref = JNIHandles::make_weak_global(old_method_h);
duke@435 2565 method_refs->append(method_ref);
duke@435 2566 if (++local_count >= emcp_method_count) {
duke@435 2567 // no more EMCP methods so bail out now
duke@435 2568 break;
duke@435 2569 }
duke@435 2570 }
duke@435 2571 }
dcubed@482 2572 // non-shared ConstantPool gets a weak reference
dcubed@482 2573 pv_node = new PreviousVersionNode(cp_ref, !cp_h->is_shared(), method_refs);
duke@435 2574 }
duke@435 2575
duke@435 2576 _previous_versions->append(pv_node);
duke@435 2577
duke@435 2578 // Using weak references allows the interesting parts of previous
duke@435 2579 // classes to be GC'ed when they are no longer needed. Since the
duke@435 2580 // caller is the VMThread and we are at a safepoint, this is a good
duke@435 2581 // time to clear out unused weak references.
duke@435 2582
duke@435 2583 RC_TRACE(0x00000400, ("add: previous version length=%d",
duke@435 2584 _previous_versions->length()));
duke@435 2585
duke@435 2586 // skip the last entry since we just added it
duke@435 2587 for (int i = _previous_versions->length() - 2; i >= 0; i--) {
duke@435 2588 // check the previous versions array for a GC'ed weak refs
duke@435 2589 pv_node = _previous_versions->at(i);
duke@435 2590 cp_ref = pv_node->prev_constant_pool();
dcubed@482 2591 assert(cp_ref != NULL, "cp ref was unexpectedly cleared");
duke@435 2592 if (cp_ref == NULL) {
duke@435 2593 delete pv_node;
duke@435 2594 _previous_versions->remove_at(i);
duke@435 2595 // Since we are traversing the array backwards, we don't have to
duke@435 2596 // do anything special with the index.
duke@435 2597 continue; // robustness
duke@435 2598 }
duke@435 2599
duke@435 2600 constantPoolOop cp = (constantPoolOop)JNIHandles::resolve(cp_ref);
duke@435 2601 if (cp == NULL) {
duke@435 2602 // this entry has been GC'ed so remove it
duke@435 2603 delete pv_node;
duke@435 2604 _previous_versions->remove_at(i);
duke@435 2605 // Since we are traversing the array backwards, we don't have to
duke@435 2606 // do anything special with the index.
duke@435 2607 continue;
duke@435 2608 } else {
duke@435 2609 RC_TRACE(0x00000400, ("add: previous version @%d is alive", i));
duke@435 2610 }
duke@435 2611
duke@435 2612 GrowableArray<jweak>* method_refs = pv_node->prev_EMCP_methods();
duke@435 2613 if (method_refs != NULL) {
duke@435 2614 RC_TRACE(0x00000400, ("add: previous methods length=%d",
duke@435 2615 method_refs->length()));
duke@435 2616 for (int j = method_refs->length() - 1; j >= 0; j--) {
duke@435 2617 jweak method_ref = method_refs->at(j);
duke@435 2618 assert(method_ref != NULL, "weak method ref was unexpectedly cleared");
duke@435 2619 if (method_ref == NULL) {
duke@435 2620 method_refs->remove_at(j);
duke@435 2621 // Since we are traversing the array backwards, we don't have to
duke@435 2622 // do anything special with the index.
duke@435 2623 continue; // robustness
duke@435 2624 }
duke@435 2625
duke@435 2626 methodOop method = (methodOop)JNIHandles::resolve(method_ref);
duke@435 2627 if (method == NULL || emcp_method_count == 0) {
duke@435 2628 // This method entry has been GC'ed or the current
duke@435 2629 // RedefineClasses() call has made all methods obsolete
duke@435 2630 // so remove it.
duke@435 2631 JNIHandles::destroy_weak_global(method_ref);
duke@435 2632 method_refs->remove_at(j);
duke@435 2633 } else {
duke@435 2634 // RC_TRACE macro has an embedded ResourceMark
duke@435 2635 RC_TRACE(0x00000400,
duke@435 2636 ("add: %s(%s): previous method @%d in version @%d is alive",
duke@435 2637 method->name()->as_C_string(), method->signature()->as_C_string(),
duke@435 2638 j, i));
duke@435 2639 }
duke@435 2640 }
duke@435 2641 }
duke@435 2642 }
duke@435 2643
duke@435 2644 int obsolete_method_count = old_methods->length() - emcp_method_count;
duke@435 2645
duke@435 2646 if (emcp_method_count != 0 && obsolete_method_count != 0 &&
duke@435 2647 _previous_versions->length() > 1) {
duke@435 2648 // We have a mix of obsolete and EMCP methods. If there is more
duke@435 2649 // than the previous version that we just added, then we have to
duke@435 2650 // clear out any matching EMCP method entries the hard way.
duke@435 2651 int local_count = 0;
duke@435 2652 for (int i = 0; i < old_methods->length(); i++) {
duke@435 2653 if (!emcp_methods->at(i)) {
duke@435 2654 // only obsolete methods are interesting
duke@435 2655 methodOop old_method = (methodOop) old_methods->obj_at(i);
coleenp@2497 2656 Symbol* m_name = old_method->name();
coleenp@2497 2657 Symbol* m_signature = old_method->signature();
duke@435 2658
duke@435 2659 // skip the last entry since we just added it
duke@435 2660 for (int j = _previous_versions->length() - 2; j >= 0; j--) {
duke@435 2661 // check the previous versions array for a GC'ed weak refs
duke@435 2662 pv_node = _previous_versions->at(j);
duke@435 2663 cp_ref = pv_node->prev_constant_pool();
dcubed@482 2664 assert(cp_ref != NULL, "cp ref was unexpectedly cleared");
duke@435 2665 if (cp_ref == NULL) {
duke@435 2666 delete pv_node;
duke@435 2667 _previous_versions->remove_at(j);
duke@435 2668 // Since we are traversing the array backwards, we don't have to
duke@435 2669 // do anything special with the index.
duke@435 2670 continue; // robustness
duke@435 2671 }
duke@435 2672
duke@435 2673 constantPoolOop cp = (constantPoolOop)JNIHandles::resolve(cp_ref);
duke@435 2674 if (cp == NULL) {
duke@435 2675 // this entry has been GC'ed so remove it
duke@435 2676 delete pv_node;
duke@435 2677 _previous_versions->remove_at(j);
duke@435 2678 // Since we are traversing the array backwards, we don't have to
duke@435 2679 // do anything special with the index.
duke@435 2680 continue;
duke@435 2681 }
duke@435 2682
duke@435 2683 GrowableArray<jweak>* method_refs = pv_node->prev_EMCP_methods();
duke@435 2684 if (method_refs == NULL) {
duke@435 2685 // We have run into a PreviousVersion generation where
duke@435 2686 // all methods were made obsolete during that generation's
duke@435 2687 // RedefineClasses() operation. At the time of that
duke@435 2688 // operation, all EMCP methods were flushed so we don't
duke@435 2689 // have to go back any further.
duke@435 2690 //
duke@435 2691 // A NULL method_refs is different than an empty method_refs.
duke@435 2692 // We cannot infer any optimizations about older generations
duke@435 2693 // from an empty method_refs for the current generation.
duke@435 2694 break;
duke@435 2695 }
duke@435 2696
duke@435 2697 for (int k = method_refs->length() - 1; k >= 0; k--) {
duke@435 2698 jweak method_ref = method_refs->at(k);
duke@435 2699 assert(method_ref != NULL,
duke@435 2700 "weak method ref was unexpectedly cleared");
duke@435 2701 if (method_ref == NULL) {
duke@435 2702 method_refs->remove_at(k);
duke@435 2703 // Since we are traversing the array backwards, we don't
duke@435 2704 // have to do anything special with the index.
duke@435 2705 continue; // robustness
duke@435 2706 }
duke@435 2707
duke@435 2708 methodOop method = (methodOop)JNIHandles::resolve(method_ref);
duke@435 2709 if (method == NULL) {
duke@435 2710 // this method entry has been GC'ed so skip it
duke@435 2711 JNIHandles::destroy_weak_global(method_ref);
duke@435 2712 method_refs->remove_at(k);
duke@435 2713 continue;
duke@435 2714 }
duke@435 2715
duke@435 2716 if (method->name() == m_name &&
duke@435 2717 method->signature() == m_signature) {
duke@435 2718 // The current RedefineClasses() call has made all EMCP
duke@435 2719 // versions of this method obsolete so mark it as obsolete
duke@435 2720 // and remove the weak ref.
duke@435 2721 RC_TRACE(0x00000400,
duke@435 2722 ("add: %s(%s): flush obsolete method @%d in version @%d",
duke@435 2723 m_name->as_C_string(), m_signature->as_C_string(), k, j));
duke@435 2724
duke@435 2725 method->set_is_obsolete();
duke@435 2726 JNIHandles::destroy_weak_global(method_ref);
duke@435 2727 method_refs->remove_at(k);
duke@435 2728 break;
duke@435 2729 }
duke@435 2730 }
duke@435 2731
duke@435 2732 // The previous loop may not find a matching EMCP method, but
duke@435 2733 // that doesn't mean that we can optimize and not go any
duke@435 2734 // further back in the PreviousVersion generations. The EMCP
duke@435 2735 // method for this generation could have already been GC'ed,
duke@435 2736 // but there still may be an older EMCP method that has not
duke@435 2737 // been GC'ed.
duke@435 2738 }
duke@435 2739
duke@435 2740 if (++local_count >= obsolete_method_count) {
duke@435 2741 // no more obsolete methods so bail out now
duke@435 2742 break;
duke@435 2743 }
duke@435 2744 }
duke@435 2745 }
duke@435 2746 }
duke@435 2747 } // end add_previous_version()
duke@435 2748
duke@435 2749
duke@435 2750 // Determine if instanceKlass has a previous version.
duke@435 2751 bool instanceKlass::has_previous_version() const {
duke@435 2752 if (_previous_versions == NULL) {
duke@435 2753 // no previous versions array so answer is easy
duke@435 2754 return false;
duke@435 2755 }
duke@435 2756
duke@435 2757 for (int i = _previous_versions->length() - 1; i >= 0; i--) {
duke@435 2758 // Check the previous versions array for an info node that hasn't
duke@435 2759 // been GC'ed
duke@435 2760 PreviousVersionNode * pv_node = _previous_versions->at(i);
duke@435 2761
dcubed@482 2762 jobject cp_ref = pv_node->prev_constant_pool();
dcubed@482 2763 assert(cp_ref != NULL, "cp reference was unexpectedly cleared");
duke@435 2764 if (cp_ref == NULL) {
duke@435 2765 continue; // robustness
duke@435 2766 }
duke@435 2767
duke@435 2768 constantPoolOop cp = (constantPoolOop)JNIHandles::resolve(cp_ref);
duke@435 2769 if (cp != NULL) {
duke@435 2770 // we have at least one previous version
duke@435 2771 return true;
duke@435 2772 }
duke@435 2773
duke@435 2774 // We don't have to check the method refs. If the constant pool has
duke@435 2775 // been GC'ed then so have the methods.
duke@435 2776 }
duke@435 2777
duke@435 2778 // all of the underlying nodes' info has been GC'ed
duke@435 2779 return false;
duke@435 2780 } // end has_previous_version()
duke@435 2781
duke@435 2782 methodOop instanceKlass::method_with_idnum(int idnum) {
duke@435 2783 methodOop m = NULL;
duke@435 2784 if (idnum < methods()->length()) {
duke@435 2785 m = (methodOop) methods()->obj_at(idnum);
duke@435 2786 }
duke@435 2787 if (m == NULL || m->method_idnum() != idnum) {
duke@435 2788 for (int index = 0; index < methods()->length(); ++index) {
duke@435 2789 m = (methodOop) methods()->obj_at(index);
duke@435 2790 if (m->method_idnum() == idnum) {
duke@435 2791 return m;
duke@435 2792 }
duke@435 2793 }
duke@435 2794 }
duke@435 2795 return m;
duke@435 2796 }
duke@435 2797
duke@435 2798
duke@435 2799 // Set the annotation at 'idnum' to 'anno'.
duke@435 2800 // We don't want to create or extend the array if 'anno' is NULL, since that is the
duke@435 2801 // default value. However, if the array exists and is long enough, we must set NULL values.
duke@435 2802 void instanceKlass::set_methods_annotations_of(int idnum, typeArrayOop anno, objArrayOop* md_p) {
duke@435 2803 objArrayOop md = *md_p;
duke@435 2804 if (md != NULL && md->length() > idnum) {
duke@435 2805 md->obj_at_put(idnum, anno);
duke@435 2806 } else if (anno != NULL) {
duke@435 2807 // create the array
duke@435 2808 int length = MAX2(idnum+1, (int)_idnum_allocated_count);
duke@435 2809 md = oopFactory::new_system_objArray(length, Thread::current());
duke@435 2810 if (*md_p != NULL) {
duke@435 2811 // copy the existing entries
duke@435 2812 for (int index = 0; index < (*md_p)->length(); index++) {
duke@435 2813 md->obj_at_put(index, (*md_p)->obj_at(index));
duke@435 2814 }
duke@435 2815 }
duke@435 2816 set_annotations(md, md_p);
duke@435 2817 md->obj_at_put(idnum, anno);
duke@435 2818 } // if no array and idnum isn't included there is nothing to do
duke@435 2819 }
duke@435 2820
duke@435 2821 // Construct a PreviousVersionNode entry for the array hung off
duke@435 2822 // the instanceKlass.
dcubed@482 2823 PreviousVersionNode::PreviousVersionNode(jobject prev_constant_pool,
dcubed@482 2824 bool prev_cp_is_weak, GrowableArray<jweak>* prev_EMCP_methods) {
duke@435 2825
duke@435 2826 _prev_constant_pool = prev_constant_pool;
dcubed@482 2827 _prev_cp_is_weak = prev_cp_is_weak;
duke@435 2828 _prev_EMCP_methods = prev_EMCP_methods;
duke@435 2829 }
duke@435 2830
duke@435 2831
duke@435 2832 // Destroy a PreviousVersionNode
duke@435 2833 PreviousVersionNode::~PreviousVersionNode() {
duke@435 2834 if (_prev_constant_pool != NULL) {
dcubed@482 2835 if (_prev_cp_is_weak) {
dcubed@482 2836 JNIHandles::destroy_weak_global(_prev_constant_pool);
dcubed@482 2837 } else {
dcubed@482 2838 JNIHandles::destroy_global(_prev_constant_pool);
dcubed@482 2839 }
duke@435 2840 }
duke@435 2841
duke@435 2842 if (_prev_EMCP_methods != NULL) {
duke@435 2843 for (int i = _prev_EMCP_methods->length() - 1; i >= 0; i--) {
duke@435 2844 jweak method_ref = _prev_EMCP_methods->at(i);
duke@435 2845 if (method_ref != NULL) {
duke@435 2846 JNIHandles::destroy_weak_global(method_ref);
duke@435 2847 }
duke@435 2848 }
duke@435 2849 delete _prev_EMCP_methods;
duke@435 2850 }
duke@435 2851 }
duke@435 2852
duke@435 2853
duke@435 2854 // Construct a PreviousVersionInfo entry
duke@435 2855 PreviousVersionInfo::PreviousVersionInfo(PreviousVersionNode *pv_node) {
duke@435 2856 _prev_constant_pool_handle = constantPoolHandle(); // NULL handle
duke@435 2857 _prev_EMCP_method_handles = NULL;
duke@435 2858
dcubed@482 2859 jobject cp_ref = pv_node->prev_constant_pool();
dcubed@482 2860 assert(cp_ref != NULL, "constant pool ref was unexpectedly cleared");
duke@435 2861 if (cp_ref == NULL) {
duke@435 2862 return; // robustness
duke@435 2863 }
duke@435 2864
duke@435 2865 constantPoolOop cp = (constantPoolOop)JNIHandles::resolve(cp_ref);
duke@435 2866 if (cp == NULL) {
duke@435 2867 // Weak reference has been GC'ed. Since the constant pool has been
duke@435 2868 // GC'ed, the methods have also been GC'ed.
duke@435 2869 return;
duke@435 2870 }
duke@435 2871
duke@435 2872 // make the constantPoolOop safe to return
duke@435 2873 _prev_constant_pool_handle = constantPoolHandle(cp);
duke@435 2874
duke@435 2875 GrowableArray<jweak>* method_refs = pv_node->prev_EMCP_methods();
duke@435 2876 if (method_refs == NULL) {
duke@435 2877 // the instanceKlass did not have any EMCP methods
duke@435 2878 return;
duke@435 2879 }
duke@435 2880
duke@435 2881 _prev_EMCP_method_handles = new GrowableArray<methodHandle>(10);
duke@435 2882
duke@435 2883 int n_methods = method_refs->length();
duke@435 2884 for (int i = 0; i < n_methods; i++) {
duke@435 2885 jweak method_ref = method_refs->at(i);
duke@435 2886 assert(method_ref != NULL, "weak method ref was unexpectedly cleared");
duke@435 2887 if (method_ref == NULL) {
duke@435 2888 continue; // robustness
duke@435 2889 }
duke@435 2890
duke@435 2891 methodOop method = (methodOop)JNIHandles::resolve(method_ref);
duke@435 2892 if (method == NULL) {
duke@435 2893 // this entry has been GC'ed so skip it
duke@435 2894 continue;
duke@435 2895 }
duke@435 2896
duke@435 2897 // make the methodOop safe to return
duke@435 2898 _prev_EMCP_method_handles->append(methodHandle(method));
duke@435 2899 }
duke@435 2900 }
duke@435 2901
duke@435 2902
duke@435 2903 // Destroy a PreviousVersionInfo
duke@435 2904 PreviousVersionInfo::~PreviousVersionInfo() {
duke@435 2905 // Since _prev_EMCP_method_handles is not C-heap allocated, we
duke@435 2906 // don't have to delete it.
duke@435 2907 }
duke@435 2908
duke@435 2909
duke@435 2910 // Construct a helper for walking the previous versions array
duke@435 2911 PreviousVersionWalker::PreviousVersionWalker(instanceKlass *ik) {
duke@435 2912 _previous_versions = ik->previous_versions();
duke@435 2913 _current_index = 0;
duke@435 2914 // _hm needs no initialization
duke@435 2915 _current_p = NULL;
duke@435 2916 }
duke@435 2917
duke@435 2918
duke@435 2919 // Destroy a PreviousVersionWalker
duke@435 2920 PreviousVersionWalker::~PreviousVersionWalker() {
duke@435 2921 // Delete the current info just in case the caller didn't walk to
duke@435 2922 // the end of the previous versions list. No harm if _current_p is
duke@435 2923 // already NULL.
duke@435 2924 delete _current_p;
duke@435 2925
duke@435 2926 // When _hm is destroyed, all the Handles returned in
duke@435 2927 // PreviousVersionInfo objects will be destroyed.
duke@435 2928 // Also, after this destructor is finished it will be
duke@435 2929 // safe to delete the GrowableArray allocated in the
duke@435 2930 // PreviousVersionInfo objects.
duke@435 2931 }
duke@435 2932
duke@435 2933
duke@435 2934 // Return the interesting information for the next previous version
duke@435 2935 // of the klass. Returns NULL if there are no more previous versions.
duke@435 2936 PreviousVersionInfo* PreviousVersionWalker::next_previous_version() {
duke@435 2937 if (_previous_versions == NULL) {
duke@435 2938 // no previous versions so nothing to return
duke@435 2939 return NULL;
duke@435 2940 }
duke@435 2941
duke@435 2942 delete _current_p; // cleanup the previous info for the caller
duke@435 2943 _current_p = NULL; // reset to NULL so we don't delete same object twice
duke@435 2944
duke@435 2945 int length = _previous_versions->length();
duke@435 2946
duke@435 2947 while (_current_index < length) {
duke@435 2948 PreviousVersionNode * pv_node = _previous_versions->at(_current_index++);
duke@435 2949 PreviousVersionInfo * pv_info = new (ResourceObj::C_HEAP)
duke@435 2950 PreviousVersionInfo(pv_node);
duke@435 2951
duke@435 2952 constantPoolHandle cp_h = pv_info->prev_constant_pool_handle();
duke@435 2953 if (cp_h.is_null()) {
duke@435 2954 delete pv_info;
duke@435 2955
duke@435 2956 // The underlying node's info has been GC'ed so try the next one.
duke@435 2957 // We don't have to check the methods. If the constant pool has
duke@435 2958 // GC'ed then so have the methods.
duke@435 2959 continue;
duke@435 2960 }
duke@435 2961
duke@435 2962 // Found a node with non GC'ed info so return it. The caller will
duke@435 2963 // need to delete pv_info when they are done with it.
duke@435 2964 _current_p = pv_info;
duke@435 2965 return pv_info;
duke@435 2966 }
duke@435 2967
duke@435 2968 // all of the underlying nodes' info has been GC'ed
duke@435 2969 return NULL;
duke@435 2970 } // end next_previous_version()

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