src/share/vm/prims/jvmtiEnvBase.cpp

Wed, 28 Nov 2012 17:50:21 -0500

author
coleenp
date
Wed, 28 Nov 2012 17:50:21 -0500
changeset 4295
59c790074993
parent 4278
070d523b96a7
child 4492
8b46b0196eb0
permissions
-rw-r--r--

8003635: NPG: AsynchGetCallTrace broken by Method* virtual call
Summary: Make metaspace::contains be lock free and used to see if something is in metaspace, also compare Method* with vtbl pointer.
Reviewed-by: dholmes, sspitsyn, dcubed, jmasa

duke@435 1 /*
coleenp@4037 2 * Copyright (c) 2003, 2012, 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/systemDictionary.hpp"
stefank@2314 27 #include "jvmtifiles/jvmtiEnv.hpp"
stefank@2314 28 #include "oops/objArrayKlass.hpp"
stefank@2314 29 #include "oops/objArrayOop.hpp"
stefank@2314 30 #include "prims/jvmtiEnvBase.hpp"
stefank@2314 31 #include "prims/jvmtiEventController.inline.hpp"
stefank@2314 32 #include "prims/jvmtiExtensions.hpp"
stefank@2314 33 #include "prims/jvmtiImpl.hpp"
stefank@2314 34 #include "prims/jvmtiManageCapabilities.hpp"
stefank@2314 35 #include "prims/jvmtiTagMap.hpp"
stefank@2314 36 #include "prims/jvmtiThreadState.inline.hpp"
stefank@2314 37 #include "runtime/biasedLocking.hpp"
stefank@2314 38 #include "runtime/deoptimization.hpp"
stefank@2314 39 #include "runtime/interfaceSupport.hpp"
stefank@2314 40 #include "runtime/jfieldIDWorkaround.hpp"
stefank@2314 41 #include "runtime/objectMonitor.hpp"
stefank@2314 42 #include "runtime/objectMonitor.inline.hpp"
stefank@2314 43 #include "runtime/signature.hpp"
stefank@2314 44 #include "runtime/vframe.hpp"
stefank@2314 45 #include "runtime/vframe_hp.hpp"
stefank@2314 46 #include "runtime/vmThread.hpp"
stefank@2314 47 #include "runtime/vm_operations.hpp"
duke@435 48
duke@435 49 ///////////////////////////////////////////////////////////////
duke@435 50 //
duke@435 51 // JvmtiEnvBase
duke@435 52 //
duke@435 53
duke@435 54 JvmtiEnvBase* JvmtiEnvBase::_head_environment = NULL;
duke@435 55
duke@435 56 bool JvmtiEnvBase::_globally_initialized = false;
duke@435 57 volatile bool JvmtiEnvBase::_needs_clean_up = false;
duke@435 58
duke@435 59 jvmtiPhase JvmtiEnvBase::_phase = JVMTI_PHASE_PRIMORDIAL;
duke@435 60
duke@435 61 volatile int JvmtiEnvBase::_dying_thread_env_iteration_count = 0;
duke@435 62
duke@435 63 extern jvmtiInterface_1_ jvmti_Interface;
duke@435 64 extern jvmtiInterface_1_ jvmtiTrace_Interface;
duke@435 65
duke@435 66
duke@435 67 // perform initializations that must occur before any JVMTI environments
duke@435 68 // are released but which should only be initialized once (no matter
duke@435 69 // how many environments are created).
duke@435 70 void
duke@435 71 JvmtiEnvBase::globally_initialize() {
duke@435 72 assert(Threads::number_of_threads() == 0 || JvmtiThreadState_lock->is_locked(), "sanity check");
duke@435 73 assert(_globally_initialized == false, "bad call");
duke@435 74
duke@435 75 JvmtiManageCapabilities::initialize();
duke@435 76
duke@435 77 #ifndef JVMTI_KERNEL
duke@435 78 // register extension functions and events
duke@435 79 JvmtiExtensions::register_extensions();
duke@435 80 #endif // !JVMTI_KERNEL
duke@435 81
duke@435 82 #ifdef JVMTI_TRACE
duke@435 83 JvmtiTrace::initialize();
duke@435 84 #endif
duke@435 85
duke@435 86 _globally_initialized = true;
duke@435 87 }
duke@435 88
duke@435 89
duke@435 90 void
duke@435 91 JvmtiEnvBase::initialize() {
duke@435 92 assert(Threads::number_of_threads() == 0 || JvmtiThreadState_lock->is_locked(), "sanity check");
duke@435 93
duke@435 94 // Add this environment to the end of the environment list (order is important)
duke@435 95 {
duke@435 96 // This block of code must not contain any safepoints, as list deallocation
duke@435 97 // (which occurs at a safepoint) cannot occur simultaneously with this list
duke@435 98 // addition. Note: No_Safepoint_Verifier cannot, currently, be used before
duke@435 99 // threads exist.
duke@435 100 JvmtiEnvIterator it;
duke@435 101 JvmtiEnvBase *previous_env = NULL;
duke@435 102 for (JvmtiEnvBase* env = it.first(); env != NULL; env = it.next(env)) {
duke@435 103 previous_env = env;
duke@435 104 }
duke@435 105 if (previous_env == NULL) {
duke@435 106 _head_environment = this;
duke@435 107 } else {
duke@435 108 previous_env->set_next_environment(this);
duke@435 109 }
duke@435 110 }
duke@435 111
duke@435 112 if (_globally_initialized == false) {
duke@435 113 globally_initialize();
duke@435 114 }
duke@435 115 }
duke@435 116
duke@435 117
dcubed@1046 118 bool
dcubed@1046 119 JvmtiEnvBase::is_valid() {
dcubed@1046 120 jint value = 0;
dcubed@1046 121
dcubed@1046 122 // This object might not be a JvmtiEnvBase so we can't assume
dcubed@1046 123 // the _magic field is properly aligned. Get the value in a safe
dcubed@1046 124 // way and then check against JVMTI_MAGIC.
dcubed@1046 125
dcubed@1046 126 switch (sizeof(_magic)) {
dcubed@1046 127 case 2:
dcubed@1046 128 value = Bytes::get_native_u2((address)&_magic);
dcubed@1046 129 break;
dcubed@1046 130
dcubed@1046 131 case 4:
dcubed@1046 132 value = Bytes::get_native_u4((address)&_magic);
dcubed@1046 133 break;
dcubed@1046 134
dcubed@1046 135 case 8:
dcubed@1046 136 value = Bytes::get_native_u8((address)&_magic);
dcubed@1046 137 break;
dcubed@1046 138
dcubed@1046 139 default:
dcubed@1046 140 guarantee(false, "_magic field is an unexpected size");
dcubed@1046 141 }
dcubed@1046 142
dcubed@1046 143 return value == JVMTI_MAGIC;
dcubed@1046 144 }
dcubed@1046 145
dcubed@1046 146
dcubed@1557 147 bool
dcubed@1556 148 JvmtiEnvBase::use_version_1_0_semantics() {
dcubed@1556 149 int major, minor, micro;
dcubed@1556 150
dcubed@1556 151 JvmtiExport::decode_version_values(_version, &major, &minor, &micro);
dcubed@1556 152 return major == 1 && minor == 0; // micro version doesn't matter here
dcubed@1556 153 }
dcubed@1556 154
dcubed@1556 155
dcubed@1556 156 bool
dcubed@1556 157 JvmtiEnvBase::use_version_1_1_semantics() {
dcubed@1556 158 int major, minor, micro;
dcubed@1556 159
dcubed@1556 160 JvmtiExport::decode_version_values(_version, &major, &minor, &micro);
dcubed@1556 161 return major == 1 && minor == 1; // micro version doesn't matter here
dcubed@1556 162 }
dcubed@1556 163
kamg@2330 164 bool
kamg@2330 165 JvmtiEnvBase::use_version_1_2_semantics() {
kamg@2330 166 int major, minor, micro;
kamg@2330 167
kamg@2330 168 JvmtiExport::decode_version_values(_version, &major, &minor, &micro);
kamg@2330 169 return major == 1 && minor == 2; // micro version doesn't matter here
kamg@2330 170 }
kamg@2330 171
dcubed@1556 172
dcubed@1556 173 JvmtiEnvBase::JvmtiEnvBase(jint version) : _env_event_enable() {
dcubed@1556 174 _version = version;
duke@435 175 _env_local_storage = NULL;
duke@435 176 _tag_map = NULL;
duke@435 177 _native_method_prefix_count = 0;
duke@435 178 _native_method_prefixes = NULL;
duke@435 179 _next = NULL;
duke@435 180 _class_file_load_hook_ever_enabled = false;
duke@435 181
duke@435 182 // Moot since ClassFileLoadHook not yet enabled.
duke@435 183 // But "true" will give a more predictable ClassFileLoadHook behavior
duke@435 184 // for environment creation during ClassFileLoadHook.
duke@435 185 _is_retransformable = true;
duke@435 186
duke@435 187 // all callbacks initially NULL
duke@435 188 memset(&_event_callbacks,0,sizeof(jvmtiEventCallbacks));
duke@435 189
duke@435 190 // all capabilities initially off
duke@435 191 memset(&_current_capabilities, 0, sizeof(_current_capabilities));
duke@435 192
duke@435 193 // all prohibited capabilities initially off
duke@435 194 memset(&_prohibited_capabilities, 0, sizeof(_prohibited_capabilities));
duke@435 195
duke@435 196 _magic = JVMTI_MAGIC;
duke@435 197
duke@435 198 JvmtiEventController::env_initialize((JvmtiEnv*)this);
duke@435 199
duke@435 200 #ifdef JVMTI_TRACE
never@806 201 _jvmti_external.functions = TraceJVMTI != NULL ? &jvmtiTrace_Interface : &jvmti_Interface;
duke@435 202 #else
duke@435 203 _jvmti_external.functions = &jvmti_Interface;
duke@435 204 #endif
duke@435 205 }
duke@435 206
duke@435 207
duke@435 208 void
duke@435 209 JvmtiEnvBase::dispose() {
duke@435 210
duke@435 211 #ifdef JVMTI_TRACE
duke@435 212 JvmtiTrace::shutdown();
duke@435 213 #endif
duke@435 214
duke@435 215 // Dispose of event info and let the event controller call us back
duke@435 216 // in a locked state (env_dispose, below)
duke@435 217 JvmtiEventController::env_dispose(this);
duke@435 218 }
duke@435 219
duke@435 220 void
duke@435 221 JvmtiEnvBase::env_dispose() {
duke@435 222 assert(Threads::number_of_threads() == 0 || JvmtiThreadState_lock->is_locked(), "sanity check");
duke@435 223
duke@435 224 // We have been entered with all events disabled on this environment.
duke@435 225 // A race to re-enable events (by setting callbacks) is prevented by
duke@435 226 // checking for a valid environment when setting callbacks (while
duke@435 227 // holding the JvmtiThreadState_lock).
duke@435 228
duke@435 229 // Mark as invalid.
duke@435 230 _magic = DISPOSED_MAGIC;
duke@435 231
duke@435 232 // Relinquish all capabilities.
duke@435 233 jvmtiCapabilities *caps = get_capabilities();
duke@435 234 JvmtiManageCapabilities::relinquish_capabilities(caps, caps, caps);
duke@435 235
duke@435 236 // Same situation as with events (see above)
duke@435 237 set_native_method_prefixes(0, NULL);
duke@435 238
duke@435 239 #ifndef JVMTI_KERNEL
duke@435 240 JvmtiTagMap* tag_map_to_deallocate = _tag_map;
duke@435 241 set_tag_map(NULL);
duke@435 242 // A tag map can be big, deallocate it now
duke@435 243 if (tag_map_to_deallocate != NULL) {
duke@435 244 delete tag_map_to_deallocate;
duke@435 245 }
duke@435 246 #endif // !JVMTI_KERNEL
duke@435 247
duke@435 248 _needs_clean_up = true;
duke@435 249 }
duke@435 250
duke@435 251
duke@435 252 JvmtiEnvBase::~JvmtiEnvBase() {
duke@435 253 assert(SafepointSynchronize::is_at_safepoint(), "sanity check");
duke@435 254
duke@435 255 // There is a small window of time during which the tag map of a
duke@435 256 // disposed environment could have been reallocated.
duke@435 257 // Make sure it is gone.
duke@435 258 #ifndef JVMTI_KERNEL
duke@435 259 JvmtiTagMap* tag_map_to_deallocate = _tag_map;
duke@435 260 set_tag_map(NULL);
duke@435 261 // A tag map can be big, deallocate it now
duke@435 262 if (tag_map_to_deallocate != NULL) {
duke@435 263 delete tag_map_to_deallocate;
duke@435 264 }
duke@435 265 #endif // !JVMTI_KERNEL
duke@435 266
duke@435 267 _magic = BAD_MAGIC;
duke@435 268 }
duke@435 269
duke@435 270
duke@435 271 void
duke@435 272 JvmtiEnvBase::periodic_clean_up() {
duke@435 273 assert(SafepointSynchronize::is_at_safepoint(), "sanity check");
duke@435 274
duke@435 275 // JvmtiEnvBase reference is saved in JvmtiEnvThreadState. So
duke@435 276 // clean up JvmtiThreadState before deleting JvmtiEnv pointer.
duke@435 277 JvmtiThreadState::periodic_clean_up();
duke@435 278
duke@435 279 // Unlink all invalid environments from the list of environments
duke@435 280 // and deallocate them
duke@435 281 JvmtiEnvIterator it;
duke@435 282 JvmtiEnvBase* previous_env = NULL;
duke@435 283 JvmtiEnvBase* env = it.first();
duke@435 284 while (env != NULL) {
duke@435 285 if (env->is_valid()) {
duke@435 286 previous_env = env;
duke@435 287 env = it.next(env);
duke@435 288 } else {
duke@435 289 // This one isn't valid, remove it from the list and deallocate it
duke@435 290 JvmtiEnvBase* defunct_env = env;
duke@435 291 env = it.next(env);
duke@435 292 if (previous_env == NULL) {
duke@435 293 _head_environment = env;
duke@435 294 } else {
duke@435 295 previous_env->set_next_environment(env);
duke@435 296 }
duke@435 297 delete defunct_env;
duke@435 298 }
duke@435 299 }
duke@435 300
duke@435 301 }
duke@435 302
duke@435 303
duke@435 304 void
duke@435 305 JvmtiEnvBase::check_for_periodic_clean_up() {
duke@435 306 assert(SafepointSynchronize::is_at_safepoint(), "sanity check");
duke@435 307
duke@435 308 class ThreadInsideIterationClosure: public ThreadClosure {
duke@435 309 private:
duke@435 310 bool _inside;
duke@435 311 public:
duke@435 312 ThreadInsideIterationClosure() : _inside(false) {};
duke@435 313
duke@435 314 void do_thread(Thread* thread) {
duke@435 315 _inside |= thread->is_inside_jvmti_env_iteration();
duke@435 316 }
duke@435 317
duke@435 318 bool is_inside_jvmti_env_iteration() {
duke@435 319 return _inside;
duke@435 320 }
duke@435 321 };
duke@435 322
duke@435 323 if (_needs_clean_up) {
duke@435 324 // Check if we are currently iterating environment,
duke@435 325 // deallocation should not occur if we are
duke@435 326 ThreadInsideIterationClosure tiic;
duke@435 327 Threads::threads_do(&tiic);
duke@435 328 if (!tiic.is_inside_jvmti_env_iteration() &&
duke@435 329 !is_inside_dying_thread_env_iteration()) {
duke@435 330 _needs_clean_up = false;
duke@435 331 JvmtiEnvBase::periodic_clean_up();
duke@435 332 }
duke@435 333 }
duke@435 334 }
duke@435 335
duke@435 336
duke@435 337 void
duke@435 338 JvmtiEnvBase::record_first_time_class_file_load_hook_enabled() {
duke@435 339 assert(Threads::number_of_threads() == 0 || JvmtiThreadState_lock->is_locked(),
duke@435 340 "sanity check");
duke@435 341
duke@435 342 if (!_class_file_load_hook_ever_enabled) {
duke@435 343 _class_file_load_hook_ever_enabled = true;
duke@435 344
duke@435 345 if (get_capabilities()->can_retransform_classes) {
duke@435 346 _is_retransformable = true;
duke@435 347 } else {
duke@435 348 _is_retransformable = false;
duke@435 349
duke@435 350 // cannot add retransform capability after ClassFileLoadHook has been enabled
duke@435 351 get_prohibited_capabilities()->can_retransform_classes = 1;
duke@435 352 }
duke@435 353 }
duke@435 354 }
duke@435 355
duke@435 356
duke@435 357 void
duke@435 358 JvmtiEnvBase::record_class_file_load_hook_enabled() {
duke@435 359 if (!_class_file_load_hook_ever_enabled) {
duke@435 360 if (Threads::number_of_threads() == 0) {
duke@435 361 record_first_time_class_file_load_hook_enabled();
duke@435 362 } else {
duke@435 363 MutexLocker mu(JvmtiThreadState_lock);
duke@435 364 record_first_time_class_file_load_hook_enabled();
duke@435 365 }
duke@435 366 }
duke@435 367 }
duke@435 368
duke@435 369
duke@435 370 jvmtiError
duke@435 371 JvmtiEnvBase::set_native_method_prefixes(jint prefix_count, char** prefixes) {
duke@435 372 assert(Threads::number_of_threads() == 0 || JvmtiThreadState_lock->is_locked(),
duke@435 373 "sanity check");
duke@435 374
duke@435 375 int old_prefix_count = get_native_method_prefix_count();
duke@435 376 char **old_prefixes = get_native_method_prefixes();
duke@435 377
duke@435 378 // allocate and install the new prefixex
duke@435 379 if (prefix_count == 0 || !is_valid()) {
duke@435 380 _native_method_prefix_count = 0;
duke@435 381 _native_method_prefixes = NULL;
duke@435 382 } else {
duke@435 383 // there are prefixes, allocate an array to hold them, and fill it
zgu@3900 384 char** new_prefixes = (char**)os::malloc((prefix_count) * sizeof(char*), mtInternal);
duke@435 385 if (new_prefixes == NULL) {
duke@435 386 return JVMTI_ERROR_OUT_OF_MEMORY;
duke@435 387 }
duke@435 388 for (int i = 0; i < prefix_count; i++) {
duke@435 389 char* prefix = prefixes[i];
duke@435 390 if (prefix == NULL) {
duke@435 391 for (int j = 0; j < (i-1); j++) {
duke@435 392 os::free(new_prefixes[j]);
duke@435 393 }
duke@435 394 os::free(new_prefixes);
duke@435 395 return JVMTI_ERROR_NULL_POINTER;
duke@435 396 }
duke@435 397 prefix = os::strdup(prefixes[i]);
duke@435 398 if (prefix == NULL) {
duke@435 399 for (int j = 0; j < (i-1); j++) {
duke@435 400 os::free(new_prefixes[j]);
duke@435 401 }
duke@435 402 os::free(new_prefixes);
duke@435 403 return JVMTI_ERROR_OUT_OF_MEMORY;
duke@435 404 }
duke@435 405 new_prefixes[i] = prefix;
duke@435 406 }
duke@435 407 _native_method_prefix_count = prefix_count;
duke@435 408 _native_method_prefixes = new_prefixes;
duke@435 409 }
duke@435 410
duke@435 411 // now that we know the new prefixes have been successfully installed we can
duke@435 412 // safely remove the old ones
duke@435 413 if (old_prefix_count != 0) {
duke@435 414 for (int i = 0; i < old_prefix_count; i++) {
duke@435 415 os::free(old_prefixes[i]);
duke@435 416 }
duke@435 417 os::free(old_prefixes);
duke@435 418 }
duke@435 419
duke@435 420 return JVMTI_ERROR_NONE;
duke@435 421 }
duke@435 422
duke@435 423
duke@435 424 // Collect all the prefixes which have been set in any JVM TI environments
duke@435 425 // by the SetNativeMethodPrefix(es) functions. Be sure to maintain the
duke@435 426 // order of environments and the order of prefixes within each environment.
duke@435 427 // Return in a resource allocated array.
duke@435 428 char**
duke@435 429 JvmtiEnvBase::get_all_native_method_prefixes(int* count_ptr) {
duke@435 430 assert(Threads::number_of_threads() == 0 ||
duke@435 431 SafepointSynchronize::is_at_safepoint() ||
duke@435 432 JvmtiThreadState_lock->is_locked(),
duke@435 433 "sanity check");
duke@435 434
duke@435 435 int total_count = 0;
duke@435 436 GrowableArray<char*>* prefix_array =new GrowableArray<char*>(5);
duke@435 437
duke@435 438 JvmtiEnvIterator it;
duke@435 439 for (JvmtiEnvBase* env = it.first(); env != NULL; env = it.next(env)) {
duke@435 440 int prefix_count = env->get_native_method_prefix_count();
duke@435 441 char** prefixes = env->get_native_method_prefixes();
duke@435 442 for (int j = 0; j < prefix_count; j++) {
duke@435 443 // retrieve a prefix and so that it is safe against asynchronous changes
duke@435 444 // copy it into the resource area
duke@435 445 char* prefix = prefixes[j];
duke@435 446 char* prefix_copy = NEW_RESOURCE_ARRAY(char, strlen(prefix)+1);
duke@435 447 strcpy(prefix_copy, prefix);
duke@435 448 prefix_array->at_put_grow(total_count++, prefix_copy);
duke@435 449 }
duke@435 450 }
duke@435 451
duke@435 452 char** all_prefixes = NEW_RESOURCE_ARRAY(char*, total_count);
duke@435 453 char** p = all_prefixes;
duke@435 454 for (int i = 0; i < total_count; ++i) {
duke@435 455 *p++ = prefix_array->at(i);
duke@435 456 }
duke@435 457 *count_ptr = total_count;
duke@435 458 return all_prefixes;
duke@435 459 }
duke@435 460
duke@435 461 void
duke@435 462 JvmtiEnvBase::set_event_callbacks(const jvmtiEventCallbacks* callbacks,
duke@435 463 jint size_of_callbacks) {
duke@435 464 assert(Threads::number_of_threads() == 0 || JvmtiThreadState_lock->is_locked(), "sanity check");
duke@435 465
duke@435 466 size_t byte_cnt = sizeof(jvmtiEventCallbacks);
duke@435 467
duke@435 468 // clear in either case to be sure we got any gap between sizes
duke@435 469 memset(&_event_callbacks, 0, byte_cnt);
duke@435 470
duke@435 471 // Now that JvmtiThreadState_lock is held, prevent a possible race condition where events
duke@435 472 // are re-enabled by a call to set event callbacks where the DisposeEnvironment
duke@435 473 // occurs after the boiler-plate environment check and before the lock is acquired.
duke@435 474 if (callbacks != NULL && is_valid()) {
duke@435 475 if (size_of_callbacks < (jint)byte_cnt) {
duke@435 476 byte_cnt = size_of_callbacks;
duke@435 477 }
duke@435 478 memcpy(&_event_callbacks, callbacks, byte_cnt);
duke@435 479 }
duke@435 480 }
duke@435 481
duke@435 482 // Called from JVMTI entry points which perform stack walking. If the
duke@435 483 // associated JavaThread is the current thread, then wait_for_suspend
duke@435 484 // is not used. Otherwise, it determines if we should wait for the
duke@435 485 // "other" thread to complete external suspension. (NOTE: in future
duke@435 486 // releases the suspension mechanism should be reimplemented so this
duke@435 487 // is not necessary.)
duke@435 488 //
duke@435 489 bool
duke@435 490 JvmtiEnvBase::is_thread_fully_suspended(JavaThread* thr, bool wait_for_suspend, uint32_t *bits) {
duke@435 491 // "other" threads require special handling
duke@435 492 if (thr != JavaThread::current()) {
duke@435 493 if (wait_for_suspend) {
duke@435 494 // We are allowed to wait for the external suspend to complete
duke@435 495 // so give the other thread a chance to get suspended.
duke@435 496 if (!thr->wait_for_ext_suspend_completion(SuspendRetryCount,
duke@435 497 SuspendRetryDelay, bits)) {
duke@435 498 // didn't make it so let the caller know
duke@435 499 return false;
duke@435 500 }
duke@435 501 }
duke@435 502 // We aren't allowed to wait for the external suspend to complete
duke@435 503 // so if the other thread isn't externally suspended we need to
duke@435 504 // let the caller know.
duke@435 505 else if (!thr->is_ext_suspend_completed_with_lock(bits)) {
duke@435 506 return false;
duke@435 507 }
duke@435 508 }
duke@435 509
duke@435 510 return true;
duke@435 511 }
duke@435 512
duke@435 513
duke@435 514 // In the fullness of time, all users of the method should instead
duke@435 515 // directly use allocate, besides being cleaner and faster, this will
duke@435 516 // mean much better out of memory handling
duke@435 517 unsigned char *
duke@435 518 JvmtiEnvBase::jvmtiMalloc(jlong size) {
duke@435 519 unsigned char* mem;
duke@435 520 jvmtiError result = allocate(size, &mem);
duke@435 521 assert(result == JVMTI_ERROR_NONE, "Allocate failed");
duke@435 522 return mem;
duke@435 523 }
duke@435 524
duke@435 525
duke@435 526 //
duke@435 527 // Threads
duke@435 528 //
duke@435 529
duke@435 530 jobject *
duke@435 531 JvmtiEnvBase::new_jobjectArray(int length, Handle *handles) {
duke@435 532 if (length == 0) {
duke@435 533 return NULL;
duke@435 534 }
duke@435 535
duke@435 536 jobject *objArray = (jobject *) jvmtiMalloc(sizeof(jobject) * length);
duke@435 537 NULL_CHECK(objArray, NULL);
duke@435 538
duke@435 539 for (int i=0; i<length; i++) {
duke@435 540 objArray[i] = jni_reference(handles[i]);
duke@435 541 }
duke@435 542 return objArray;
duke@435 543 }
duke@435 544
duke@435 545 jthread *
duke@435 546 JvmtiEnvBase::new_jthreadArray(int length, Handle *handles) {
duke@435 547 return (jthread *) new_jobjectArray(length,handles);
duke@435 548 }
duke@435 549
duke@435 550 jthreadGroup *
duke@435 551 JvmtiEnvBase::new_jthreadGroupArray(int length, Handle *handles) {
duke@435 552 return (jthreadGroup *) new_jobjectArray(length,handles);
duke@435 553 }
duke@435 554
duke@435 555
duke@435 556 JavaThread *
duke@435 557 JvmtiEnvBase::get_JavaThread(jthread jni_thread) {
duke@435 558 oop t = JNIHandles::resolve_external_guard(jni_thread);
never@1577 559 if (t == NULL || !t->is_a(SystemDictionary::Thread_klass())) {
duke@435 560 return NULL;
duke@435 561 }
duke@435 562 // The following returns NULL if the thread has not yet run or is in
duke@435 563 // process of exiting
duke@435 564 return java_lang_Thread::thread(t);
duke@435 565 }
duke@435 566
duke@435 567
duke@435 568 // return the vframe on the specified thread and depth, NULL if no such frame
duke@435 569 vframe*
duke@435 570 JvmtiEnvBase::vframeFor(JavaThread* java_thread, jint depth) {
duke@435 571 if (!java_thread->has_last_Java_frame()) {
duke@435 572 return NULL;
duke@435 573 }
duke@435 574 RegisterMap reg_map(java_thread);
duke@435 575 vframe *vf = java_thread->last_java_vframe(&reg_map);
duke@435 576 int d = 0;
duke@435 577 while ((vf != NULL) && (d < depth)) {
duke@435 578 vf = vf->java_sender();
duke@435 579 d++;
duke@435 580 }
duke@435 581 return vf;
duke@435 582 }
duke@435 583
duke@435 584
duke@435 585 //
duke@435 586 // utilities: JNI objects
duke@435 587 //
duke@435 588
duke@435 589
duke@435 590 jclass
coleenp@4037 591 JvmtiEnvBase::get_jni_class_non_null(Klass* k) {
duke@435 592 assert(k != NULL, "k != NULL");
hseigel@4278 593 return (jclass)jni_reference(k->java_mirror());
duke@435 594 }
duke@435 595
duke@435 596 #ifndef JVMTI_KERNEL
duke@435 597
duke@435 598 //
duke@435 599 // Field Information
duke@435 600 //
duke@435 601
duke@435 602 bool
coleenp@4037 603 JvmtiEnvBase::get_field_descriptor(Klass* k, jfieldID field, fieldDescriptor* fd) {
duke@435 604 if (!jfieldIDWorkaround::is_valid_jfieldID(k, field)) {
duke@435 605 return false;
duke@435 606 }
duke@435 607 bool found = false;
duke@435 608 if (jfieldIDWorkaround::is_static_jfieldID(field)) {
duke@435 609 JNIid* id = jfieldIDWorkaround::from_static_jfieldID(field);
never@2658 610 found = id->find_local_field(fd);
duke@435 611 } else {
duke@435 612 // Non-static field. The fieldID is really the offset of the field within the object.
duke@435 613 int offset = jfieldIDWorkaround::from_instance_jfieldID(k, field);
coleenp@4037 614 found = InstanceKlass::cast(k)->find_field_from_offset(offset, false, fd);
duke@435 615 }
duke@435 616 return found;
duke@435 617 }
duke@435 618
duke@435 619 //
duke@435 620 // Object Monitor Information
duke@435 621 //
duke@435 622
duke@435 623 //
duke@435 624 // Count the number of objects for a lightweight monitor. The hobj
duke@435 625 // parameter is object that owns the monitor so this routine will
duke@435 626 // count the number of times the same object was locked by frames
duke@435 627 // in java_thread.
duke@435 628 //
duke@435 629 jint
duke@435 630 JvmtiEnvBase::count_locked_objects(JavaThread *java_thread, Handle hobj) {
duke@435 631 jint ret = 0;
duke@435 632 if (!java_thread->has_last_Java_frame()) {
duke@435 633 return ret; // no Java frames so no monitors
duke@435 634 }
duke@435 635
duke@435 636 ResourceMark rm;
duke@435 637 HandleMark hm;
duke@435 638 RegisterMap reg_map(java_thread);
duke@435 639
duke@435 640 for(javaVFrame *jvf=java_thread->last_java_vframe(&reg_map); jvf != NULL;
duke@435 641 jvf = jvf->java_sender()) {
duke@435 642 GrowableArray<MonitorInfo*>* mons = jvf->monitors();
duke@435 643 if (!mons->is_empty()) {
duke@435 644 for (int i = 0; i < mons->length(); i++) {
duke@435 645 MonitorInfo *mi = mons->at(i);
kvn@1253 646 if (mi->owner_is_scalar_replaced()) continue;
duke@435 647
duke@435 648 // see if owner of the monitor is our object
duke@435 649 if (mi->owner() != NULL && mi->owner() == hobj()) {
duke@435 650 ret++;
duke@435 651 }
duke@435 652 }
duke@435 653 }
duke@435 654 }
duke@435 655 return ret;
duke@435 656 }
duke@435 657
duke@435 658
duke@435 659
duke@435 660 jvmtiError
duke@435 661 JvmtiEnvBase::get_current_contended_monitor(JavaThread *calling_thread, JavaThread *java_thread, jobject *monitor_ptr) {
duke@435 662 #ifdef ASSERT
duke@435 663 uint32_t debug_bits = 0;
duke@435 664 #endif
duke@435 665 assert((SafepointSynchronize::is_at_safepoint() ||
duke@435 666 is_thread_fully_suspended(java_thread, false, &debug_bits)),
duke@435 667 "at safepoint or target thread is suspended");
duke@435 668 oop obj = NULL;
duke@435 669 ObjectMonitor *mon = java_thread->current_waiting_monitor();
duke@435 670 if (mon == NULL) {
duke@435 671 // thread is not doing an Object.wait() call
duke@435 672 mon = java_thread->current_pending_monitor();
duke@435 673 if (mon != NULL) {
duke@435 674 // The thread is trying to enter() or raw_enter() an ObjectMonitor.
duke@435 675 obj = (oop)mon->object();
duke@435 676 // If obj == NULL, then ObjectMonitor is raw which doesn't count
duke@435 677 // as contended for this API
duke@435 678 }
duke@435 679 // implied else: no contended ObjectMonitor
duke@435 680 } else {
duke@435 681 // thread is doing an Object.wait() call
duke@435 682 obj = (oop)mon->object();
duke@435 683 assert(obj != NULL, "Object.wait() should have an object");
duke@435 684 }
duke@435 685
duke@435 686 if (obj == NULL) {
duke@435 687 *monitor_ptr = NULL;
duke@435 688 } else {
duke@435 689 HandleMark hm;
duke@435 690 Handle hobj(obj);
duke@435 691 *monitor_ptr = jni_reference(calling_thread, hobj);
duke@435 692 }
duke@435 693 return JVMTI_ERROR_NONE;
duke@435 694 }
duke@435 695
duke@435 696
duke@435 697 jvmtiError
duke@435 698 JvmtiEnvBase::get_owned_monitors(JavaThread *calling_thread, JavaThread* java_thread,
duke@435 699 GrowableArray<jvmtiMonitorStackDepthInfo*> *owned_monitors_list) {
duke@435 700 jvmtiError err = JVMTI_ERROR_NONE;
duke@435 701 #ifdef ASSERT
duke@435 702 uint32_t debug_bits = 0;
duke@435 703 #endif
duke@435 704 assert((SafepointSynchronize::is_at_safepoint() ||
duke@435 705 is_thread_fully_suspended(java_thread, false, &debug_bits)),
duke@435 706 "at safepoint or target thread is suspended");
duke@435 707
duke@435 708 if (java_thread->has_last_Java_frame()) {
duke@435 709 ResourceMark rm;
duke@435 710 HandleMark hm;
duke@435 711 RegisterMap reg_map(java_thread);
duke@435 712
duke@435 713 int depth = 0;
duke@435 714 for (javaVFrame *jvf = java_thread->last_java_vframe(&reg_map); jvf != NULL;
duke@435 715 jvf = jvf->java_sender()) {
duke@435 716 if (depth++ < MaxJavaStackTraceDepth) { // check for stack too deep
duke@435 717 // add locked objects for this frame into list
duke@435 718 err = get_locked_objects_in_frame(calling_thread, java_thread, jvf, owned_monitors_list, depth-1);
duke@435 719 if (err != JVMTI_ERROR_NONE) {
duke@435 720 return err;
duke@435 721 }
duke@435 722 }
duke@435 723 }
duke@435 724 }
duke@435 725
duke@435 726 // Get off stack monitors. (e.g. acquired via jni MonitorEnter).
duke@435 727 JvmtiMonitorClosure jmc(java_thread, calling_thread, owned_monitors_list, this);
duke@435 728 ObjectSynchronizer::monitors_iterate(&jmc);
duke@435 729 err = jmc.error();
duke@435 730
duke@435 731 return err;
duke@435 732 }
duke@435 733
duke@435 734 // Save JNI local handles for any objects that this frame owns.
duke@435 735 jvmtiError
duke@435 736 JvmtiEnvBase::get_locked_objects_in_frame(JavaThread* calling_thread, JavaThread* java_thread,
duke@435 737 javaVFrame *jvf, GrowableArray<jvmtiMonitorStackDepthInfo*>* owned_monitors_list, int stack_depth) {
duke@435 738 jvmtiError err = JVMTI_ERROR_NONE;
duke@435 739 ResourceMark rm;
duke@435 740
duke@435 741 GrowableArray<MonitorInfo*>* mons = jvf->monitors();
duke@435 742 if (mons->is_empty()) {
duke@435 743 return err; // this javaVFrame holds no monitors
duke@435 744 }
duke@435 745
duke@435 746 HandleMark hm;
duke@435 747 oop wait_obj = NULL;
duke@435 748 {
duke@435 749 // save object of current wait() call (if any) for later comparison
duke@435 750 ObjectMonitor *mon = java_thread->current_waiting_monitor();
duke@435 751 if (mon != NULL) {
duke@435 752 wait_obj = (oop)mon->object();
duke@435 753 }
duke@435 754 }
duke@435 755 oop pending_obj = NULL;
duke@435 756 {
duke@435 757 // save object of current enter() call (if any) for later comparison
duke@435 758 ObjectMonitor *mon = java_thread->current_pending_monitor();
duke@435 759 if (mon != NULL) {
duke@435 760 pending_obj = (oop)mon->object();
duke@435 761 }
duke@435 762 }
duke@435 763
duke@435 764 for (int i = 0; i < mons->length(); i++) {
duke@435 765 MonitorInfo *mi = mons->at(i);
duke@435 766
kvn@1253 767 if (mi->owner_is_scalar_replaced()) continue;
kvn@1253 768
duke@435 769 oop obj = mi->owner();
duke@435 770 if (obj == NULL) {
duke@435 771 // this monitor doesn't have an owning object so skip it
duke@435 772 continue;
duke@435 773 }
duke@435 774
duke@435 775 if (wait_obj == obj) {
duke@435 776 // the thread is waiting on this monitor so it isn't really owned
duke@435 777 continue;
duke@435 778 }
duke@435 779
duke@435 780 if (pending_obj == obj) {
duke@435 781 // the thread is pending on this monitor so it isn't really owned
duke@435 782 continue;
duke@435 783 }
duke@435 784
duke@435 785 if (owned_monitors_list->length() > 0) {
duke@435 786 // Our list has at least one object on it so we have to check
duke@435 787 // for recursive object locking
duke@435 788 bool found = false;
duke@435 789 for (int j = 0; j < owned_monitors_list->length(); j++) {
duke@435 790 jobject jobj = ((jvmtiMonitorStackDepthInfo*)owned_monitors_list->at(j))->monitor;
duke@435 791 oop check = JNIHandles::resolve(jobj);
duke@435 792 if (check == obj) {
duke@435 793 found = true; // we found the object
duke@435 794 break;
duke@435 795 }
duke@435 796 }
duke@435 797
duke@435 798 if (found) {
duke@435 799 // already have this object so don't include it
duke@435 800 continue;
duke@435 801 }
duke@435 802 }
duke@435 803
duke@435 804 // add the owning object to our list
duke@435 805 jvmtiMonitorStackDepthInfo *jmsdi;
duke@435 806 err = allocate(sizeof(jvmtiMonitorStackDepthInfo), (unsigned char **)&jmsdi);
duke@435 807 if (err != JVMTI_ERROR_NONE) {
duke@435 808 return err;
duke@435 809 }
duke@435 810 Handle hobj(obj);
duke@435 811 jmsdi->monitor = jni_reference(calling_thread, hobj);
duke@435 812 jmsdi->stack_depth = stack_depth;
duke@435 813 owned_monitors_list->append(jmsdi);
duke@435 814 }
duke@435 815
duke@435 816 return err;
duke@435 817 }
duke@435 818
duke@435 819 jvmtiError
duke@435 820 JvmtiEnvBase::get_stack_trace(JavaThread *java_thread,
duke@435 821 jint start_depth, jint max_count,
duke@435 822 jvmtiFrameInfo* frame_buffer, jint* count_ptr) {
duke@435 823 #ifdef ASSERT
duke@435 824 uint32_t debug_bits = 0;
duke@435 825 #endif
duke@435 826 assert((SafepointSynchronize::is_at_safepoint() ||
duke@435 827 is_thread_fully_suspended(java_thread, false, &debug_bits)),
duke@435 828 "at safepoint or target thread is suspended");
duke@435 829 int count = 0;
duke@435 830 if (java_thread->has_last_Java_frame()) {
duke@435 831 RegisterMap reg_map(java_thread);
duke@435 832 Thread* current_thread = Thread::current();
duke@435 833 ResourceMark rm(current_thread);
duke@435 834 javaVFrame *jvf = java_thread->last_java_vframe(&reg_map);
duke@435 835 HandleMark hm(current_thread);
duke@435 836 if (start_depth != 0) {
duke@435 837 if (start_depth > 0) {
duke@435 838 for (int j = 0; j < start_depth && jvf != NULL; j++) {
duke@435 839 jvf = jvf->java_sender();
duke@435 840 }
duke@435 841 if (jvf == NULL) {
duke@435 842 // start_depth is deeper than the stack depth
duke@435 843 return JVMTI_ERROR_ILLEGAL_ARGUMENT;
duke@435 844 }
duke@435 845 } else { // start_depth < 0
duke@435 846 // we are referencing the starting depth based on the oldest
duke@435 847 // part of the stack.
duke@435 848 // optimize to limit the number of times that java_sender() is called
duke@435 849 javaVFrame *jvf_cursor = jvf;
duke@435 850 javaVFrame *jvf_prev = NULL;
duke@435 851 javaVFrame *jvf_prev_prev;
duke@435 852 int j = 0;
duke@435 853 while (jvf_cursor != NULL) {
duke@435 854 jvf_prev_prev = jvf_prev;
duke@435 855 jvf_prev = jvf_cursor;
duke@435 856 for (j = 0; j > start_depth && jvf_cursor != NULL; j--) {
duke@435 857 jvf_cursor = jvf_cursor->java_sender();
duke@435 858 }
duke@435 859 }
duke@435 860 if (j == start_depth) {
duke@435 861 // previous pointer is exactly where we want to start
duke@435 862 jvf = jvf_prev;
duke@435 863 } else {
duke@435 864 // we need to back up further to get to the right place
duke@435 865 if (jvf_prev_prev == NULL) {
duke@435 866 // the -start_depth is greater than the stack depth
duke@435 867 return JVMTI_ERROR_ILLEGAL_ARGUMENT;
duke@435 868 }
duke@435 869 // j now is the number of frames on the stack starting with
duke@435 870 // jvf_prev, we start from jvf_prev_prev and move older on
duke@435 871 // the stack that many, the result is -start_depth frames
duke@435 872 // remaining.
duke@435 873 jvf = jvf_prev_prev;
duke@435 874 for (; j < 0; j++) {
duke@435 875 jvf = jvf->java_sender();
duke@435 876 }
duke@435 877 }
duke@435 878 }
duke@435 879 }
duke@435 880 for (; count < max_count && jvf != NULL; count++) {
duke@435 881 frame_buffer[count].method = jvf->method()->jmethod_id();
duke@435 882 frame_buffer[count].location = (jvf->method()->is_native() ? -1 : jvf->bci());
duke@435 883 jvf = jvf->java_sender();
duke@435 884 }
duke@435 885 } else {
duke@435 886 if (start_depth != 0) {
duke@435 887 // no frames and there is a starting depth
duke@435 888 return JVMTI_ERROR_ILLEGAL_ARGUMENT;
duke@435 889 }
duke@435 890 }
duke@435 891 *count_ptr = count;
duke@435 892 return JVMTI_ERROR_NONE;
duke@435 893 }
duke@435 894
duke@435 895 jvmtiError
duke@435 896 JvmtiEnvBase::get_frame_count(JvmtiThreadState *state, jint *count_ptr) {
duke@435 897 assert((state != NULL),
duke@435 898 "JavaThread should create JvmtiThreadState before calling this method");
duke@435 899 *count_ptr = state->count_frames();
duke@435 900 return JVMTI_ERROR_NONE;
duke@435 901 }
duke@435 902
duke@435 903 jvmtiError
duke@435 904 JvmtiEnvBase::get_frame_location(JavaThread *java_thread, jint depth,
duke@435 905 jmethodID* method_ptr, jlocation* location_ptr) {
duke@435 906 #ifdef ASSERT
duke@435 907 uint32_t debug_bits = 0;
duke@435 908 #endif
duke@435 909 assert((SafepointSynchronize::is_at_safepoint() ||
duke@435 910 is_thread_fully_suspended(java_thread, false, &debug_bits)),
duke@435 911 "at safepoint or target thread is suspended");
duke@435 912 Thread* current_thread = Thread::current();
duke@435 913 ResourceMark rm(current_thread);
duke@435 914
duke@435 915 vframe *vf = vframeFor(java_thread, depth);
duke@435 916 if (vf == NULL) {
duke@435 917 return JVMTI_ERROR_NO_MORE_FRAMES;
duke@435 918 }
duke@435 919
duke@435 920 // vframeFor should return a java frame. If it doesn't
duke@435 921 // it means we've got an internal error and we return the
duke@435 922 // error in product mode. In debug mode we will instead
duke@435 923 // attempt to cast the vframe to a javaVFrame and will
duke@435 924 // cause an assertion/crash to allow further diagnosis.
duke@435 925 #ifdef PRODUCT
duke@435 926 if (!vf->is_java_frame()) {
duke@435 927 return JVMTI_ERROR_INTERNAL;
duke@435 928 }
duke@435 929 #endif
duke@435 930
duke@435 931 HandleMark hm(current_thread);
duke@435 932 javaVFrame *jvf = javaVFrame::cast(vf);
coleenp@4037 933 Method* method = jvf->method();
duke@435 934 if (method->is_native()) {
duke@435 935 *location_ptr = -1;
duke@435 936 } else {
duke@435 937 *location_ptr = jvf->bci();
duke@435 938 }
duke@435 939 *method_ptr = method->jmethod_id();
duke@435 940
duke@435 941 return JVMTI_ERROR_NONE;
duke@435 942 }
duke@435 943
duke@435 944
duke@435 945 jvmtiError
duke@435 946 JvmtiEnvBase::get_object_monitor_usage(JavaThread* calling_thread, jobject object, jvmtiMonitorUsage* info_ptr) {
duke@435 947 HandleMark hm;
duke@435 948 Handle hobj;
duke@435 949
duke@435 950 bool at_safepoint = SafepointSynchronize::is_at_safepoint();
duke@435 951
duke@435 952 // Check arguments
duke@435 953 {
duke@435 954 oop mirror = JNIHandles::resolve_external_guard(object);
duke@435 955 NULL_CHECK(mirror, JVMTI_ERROR_INVALID_OBJECT);
duke@435 956 NULL_CHECK(info_ptr, JVMTI_ERROR_NULL_POINTER);
duke@435 957
duke@435 958 hobj = Handle(mirror);
duke@435 959 }
duke@435 960
duke@435 961 JavaThread *owning_thread = NULL;
duke@435 962 ObjectMonitor *mon = NULL;
duke@435 963 jvmtiMonitorUsage ret = {
duke@435 964 NULL, 0, 0, NULL, 0, NULL
duke@435 965 };
duke@435 966
duke@435 967 uint32_t debug_bits = 0;
duke@435 968 // first derive the object's owner and entry_count (if any)
duke@435 969 {
duke@435 970 // Revoke any biases before querying the mark word
duke@435 971 if (SafepointSynchronize::is_at_safepoint()) {
duke@435 972 BiasedLocking::revoke_at_safepoint(hobj);
duke@435 973 } else {
duke@435 974 BiasedLocking::revoke_and_rebias(hobj, false, calling_thread);
duke@435 975 }
duke@435 976
duke@435 977 address owner = NULL;
duke@435 978 {
duke@435 979 markOop mark = hobj()->mark();
duke@435 980
duke@435 981 if (!mark->has_monitor()) {
duke@435 982 // this object has a lightweight monitor
duke@435 983
duke@435 984 if (mark->has_locker()) {
duke@435 985 owner = (address)mark->locker(); // save the address of the Lock word
duke@435 986 }
duke@435 987 // implied else: no owner
duke@435 988 } else {
duke@435 989 // this object has a heavyweight monitor
duke@435 990 mon = mark->monitor();
duke@435 991
duke@435 992 // The owner field of a heavyweight monitor may be NULL for no
duke@435 993 // owner, a JavaThread * or it may still be the address of the
duke@435 994 // Lock word in a JavaThread's stack. A monitor can be inflated
duke@435 995 // by a non-owning JavaThread, but only the owning JavaThread
duke@435 996 // can change the owner field from the Lock word to the
duke@435 997 // JavaThread * and it may not have done that yet.
duke@435 998 owner = (address)mon->owner();
duke@435 999 }
duke@435 1000 }
duke@435 1001
duke@435 1002 if (owner != NULL) {
duke@435 1003 // This monitor is owned so we have to find the owning JavaThread.
duke@435 1004 // Since owning_thread_from_monitor_owner() grabs a lock, GC can
duke@435 1005 // move our object at this point. However, our owner value is safe
duke@435 1006 // since it is either the Lock word on a stack or a JavaThread *.
duke@435 1007 owning_thread = Threads::owning_thread_from_monitor_owner(owner, !at_safepoint);
duke@435 1008 assert(owning_thread != NULL, "sanity check");
duke@435 1009 if (owning_thread != NULL) { // robustness
duke@435 1010 // The monitor's owner either has to be the current thread, at safepoint
duke@435 1011 // or it has to be suspended. Any of these conditions will prevent both
duke@435 1012 // contending and waiting threads from modifying the state of
duke@435 1013 // the monitor.
duke@435 1014 if (!at_safepoint && !JvmtiEnv::is_thread_fully_suspended(owning_thread, true, &debug_bits)) {
duke@435 1015 return JVMTI_ERROR_THREAD_NOT_SUSPENDED;
duke@435 1016 }
duke@435 1017 HandleMark hm;
duke@435 1018 Handle th(owning_thread->threadObj());
duke@435 1019 ret.owner = (jthread)jni_reference(calling_thread, th);
duke@435 1020 }
duke@435 1021 // implied else: no owner
duke@435 1022 }
duke@435 1023
duke@435 1024 if (owning_thread != NULL) { // monitor is owned
duke@435 1025 if ((address)owning_thread == owner) {
duke@435 1026 // the owner field is the JavaThread *
duke@435 1027 assert(mon != NULL,
duke@435 1028 "must have heavyweight monitor with JavaThread * owner");
duke@435 1029 ret.entry_count = mon->recursions() + 1;
duke@435 1030 } else {
duke@435 1031 // The owner field is the Lock word on the JavaThread's stack
duke@435 1032 // so the recursions field is not valid. We have to count the
duke@435 1033 // number of recursive monitor entries the hard way. We pass
duke@435 1034 // a handle to survive any GCs along the way.
duke@435 1035 ResourceMark rm;
duke@435 1036 ret.entry_count = count_locked_objects(owning_thread, hobj);
duke@435 1037 }
duke@435 1038 }
duke@435 1039 // implied else: entry_count == 0
duke@435 1040 }
duke@435 1041
duke@435 1042 int nWant,nWait;
duke@435 1043 if (mon != NULL) {
duke@435 1044 // this object has a heavyweight monitor
duke@435 1045 nWant = mon->contentions(); // # of threads contending for monitor
duke@435 1046 nWait = mon->waiters(); // # of threads in Object.wait()
duke@435 1047 ret.waiter_count = nWant + nWait;
duke@435 1048 ret.notify_waiter_count = nWait;
duke@435 1049 } else {
duke@435 1050 // this object has a lightweight monitor
duke@435 1051 ret.waiter_count = 0;
duke@435 1052 ret.notify_waiter_count = 0;
duke@435 1053 }
duke@435 1054
duke@435 1055 // Allocate memory for heavyweight and lightweight monitor.
duke@435 1056 jvmtiError err;
duke@435 1057 err = allocate(ret.waiter_count * sizeof(jthread *), (unsigned char**)&ret.waiters);
duke@435 1058 if (err != JVMTI_ERROR_NONE) {
duke@435 1059 return err;
duke@435 1060 }
duke@435 1061 err = allocate(ret.notify_waiter_count * sizeof(jthread *),
duke@435 1062 (unsigned char**)&ret.notify_waiters);
duke@435 1063 if (err != JVMTI_ERROR_NONE) {
duke@435 1064 deallocate((unsigned char*)ret.waiters);
duke@435 1065 return err;
duke@435 1066 }
duke@435 1067
duke@435 1068 // now derive the rest of the fields
duke@435 1069 if (mon != NULL) {
duke@435 1070 // this object has a heavyweight monitor
duke@435 1071
duke@435 1072 // Number of waiters may actually be less than the waiter count.
duke@435 1073 // So NULL out memory so that unused memory will be NULL.
duke@435 1074 memset(ret.waiters, 0, ret.waiter_count * sizeof(jthread *));
duke@435 1075 memset(ret.notify_waiters, 0, ret.notify_waiter_count * sizeof(jthread *));
duke@435 1076
duke@435 1077 if (ret.waiter_count > 0) {
duke@435 1078 // we have contending and/or waiting threads
duke@435 1079 HandleMark hm;
duke@435 1080 if (nWant > 0) {
duke@435 1081 // we have contending threads
duke@435 1082 ResourceMark rm;
duke@435 1083 // get_pending_threads returns only java thread so we do not need to
duke@435 1084 // check for non java threads.
duke@435 1085 GrowableArray<JavaThread*>* wantList = Threads::get_pending_threads(
duke@435 1086 nWant, (address)mon, !at_safepoint);
duke@435 1087 if (wantList->length() < nWant) {
duke@435 1088 // robustness: the pending list has gotten smaller
duke@435 1089 nWant = wantList->length();
duke@435 1090 }
duke@435 1091 for (int i = 0; i < nWant; i++) {
duke@435 1092 JavaThread *pending_thread = wantList->at(i);
duke@435 1093 // If the monitor has no owner, then a non-suspended contending
duke@435 1094 // thread could potentially change the state of the monitor by
duke@435 1095 // entering it. The JVM/TI spec doesn't allow this.
duke@435 1096 if (owning_thread == NULL && !at_safepoint &
duke@435 1097 !JvmtiEnv::is_thread_fully_suspended(pending_thread, true, &debug_bits)) {
duke@435 1098 if (ret.owner != NULL) {
duke@435 1099 destroy_jni_reference(calling_thread, ret.owner);
duke@435 1100 }
duke@435 1101 for (int j = 0; j < i; j++) {
duke@435 1102 destroy_jni_reference(calling_thread, ret.waiters[j]);
duke@435 1103 }
duke@435 1104 deallocate((unsigned char*)ret.waiters);
duke@435 1105 deallocate((unsigned char*)ret.notify_waiters);
duke@435 1106 return JVMTI_ERROR_THREAD_NOT_SUSPENDED;
duke@435 1107 }
duke@435 1108 Handle th(pending_thread->threadObj());
duke@435 1109 ret.waiters[i] = (jthread)jni_reference(calling_thread, th);
duke@435 1110 }
duke@435 1111 }
duke@435 1112 if (nWait > 0) {
duke@435 1113 // we have threads in Object.wait()
duke@435 1114 int offset = nWant; // add after any contending threads
duke@435 1115 ObjectWaiter *waiter = mon->first_waiter();
duke@435 1116 for (int i = 0, j = 0; i < nWait; i++) {
duke@435 1117 if (waiter == NULL) {
duke@435 1118 // robustness: the waiting list has gotten smaller
duke@435 1119 nWait = j;
duke@435 1120 break;
duke@435 1121 }
duke@435 1122 Thread *t = mon->thread_of_waiter(waiter);
duke@435 1123 if (t != NULL && t->is_Java_thread()) {
duke@435 1124 JavaThread *wjava_thread = (JavaThread *)t;
duke@435 1125 // If the thread was found on the ObjectWaiter list, then
duke@435 1126 // it has not been notified. This thread can't change the
duke@435 1127 // state of the monitor so it doesn't need to be suspended.
duke@435 1128 Handle th(wjava_thread->threadObj());
duke@435 1129 ret.waiters[offset + j] = (jthread)jni_reference(calling_thread, th);
duke@435 1130 ret.notify_waiters[j++] = (jthread)jni_reference(calling_thread, th);
duke@435 1131 }
duke@435 1132 waiter = mon->next_waiter(waiter);
duke@435 1133 }
duke@435 1134 }
duke@435 1135 }
duke@435 1136
duke@435 1137 // Adjust count. nWant and nWait count values may be less than original.
duke@435 1138 ret.waiter_count = nWant + nWait;
duke@435 1139 ret.notify_waiter_count = nWait;
duke@435 1140 } else {
duke@435 1141 // this object has a lightweight monitor and we have nothing more
duke@435 1142 // to do here because the defaults are just fine.
duke@435 1143 }
duke@435 1144
duke@435 1145 // we don't update return parameter unless everything worked
duke@435 1146 *info_ptr = ret;
duke@435 1147
duke@435 1148 return JVMTI_ERROR_NONE;
duke@435 1149 }
duke@435 1150
duke@435 1151 ResourceTracker::ResourceTracker(JvmtiEnv* env) {
duke@435 1152 _env = env;
zgu@3900 1153 _allocations = new (ResourceObj::C_HEAP, mtInternal) GrowableArray<unsigned char*>(20, true);
duke@435 1154 _failed = false;
duke@435 1155 }
duke@435 1156 ResourceTracker::~ResourceTracker() {
duke@435 1157 if (_failed) {
duke@435 1158 for (int i=0; i<_allocations->length(); i++) {
duke@435 1159 _env->deallocate(_allocations->at(i));
duke@435 1160 }
duke@435 1161 }
duke@435 1162 delete _allocations;
duke@435 1163 }
duke@435 1164
duke@435 1165 jvmtiError ResourceTracker::allocate(jlong size, unsigned char** mem_ptr) {
duke@435 1166 unsigned char *ptr;
duke@435 1167 jvmtiError err = _env->allocate(size, &ptr);
duke@435 1168 if (err == JVMTI_ERROR_NONE) {
duke@435 1169 _allocations->append(ptr);
duke@435 1170 *mem_ptr = ptr;
duke@435 1171 } else {
duke@435 1172 *mem_ptr = NULL;
duke@435 1173 _failed = true;
duke@435 1174 }
duke@435 1175 return err;
duke@435 1176 }
duke@435 1177
duke@435 1178 unsigned char* ResourceTracker::allocate(jlong size) {
duke@435 1179 unsigned char* ptr;
duke@435 1180 allocate(size, &ptr);
duke@435 1181 return ptr;
duke@435 1182 }
duke@435 1183
duke@435 1184 char* ResourceTracker::strdup(const char* str) {
duke@435 1185 char *dup_str = (char*)allocate(strlen(str)+1);
duke@435 1186 if (dup_str != NULL) {
duke@435 1187 strcpy(dup_str, str);
duke@435 1188 }
duke@435 1189 return dup_str;
duke@435 1190 }
duke@435 1191
duke@435 1192 struct StackInfoNode {
duke@435 1193 struct StackInfoNode *next;
duke@435 1194 jvmtiStackInfo info;
duke@435 1195 };
duke@435 1196
duke@435 1197 // Create a jvmtiStackInfo inside a linked list node and create a
duke@435 1198 // buffer for the frame information, both allocated as resource objects.
duke@435 1199 // Fill in both the jvmtiStackInfo and the jvmtiFrameInfo.
duke@435 1200 // Note that either or both of thr and thread_oop
duke@435 1201 // may be null if the thread is new or has exited.
duke@435 1202 void
duke@435 1203 VM_GetMultipleStackTraces::fill_frames(jthread jt, JavaThread *thr, oop thread_oop) {
duke@435 1204 assert(SafepointSynchronize::is_at_safepoint(), "must be at safepoint");
duke@435 1205
duke@435 1206 jint state = 0;
duke@435 1207 struct StackInfoNode *node = NEW_RESOURCE_OBJ(struct StackInfoNode);
duke@435 1208 jvmtiStackInfo *infop = &(node->info);
duke@435 1209 node->next = head();
duke@435 1210 set_head(node);
duke@435 1211 infop->frame_count = 0;
duke@435 1212 infop->thread = jt;
duke@435 1213
duke@435 1214 if (thread_oop != NULL) {
duke@435 1215 // get most state bits
duke@435 1216 state = (jint)java_lang_Thread::get_thread_status(thread_oop);
duke@435 1217 }
duke@435 1218
duke@435 1219 if (thr != NULL) { // add more state bits if there is a JavaThead to query
duke@435 1220 // same as is_being_ext_suspended() but without locking
duke@435 1221 if (thr->is_ext_suspended() || thr->is_external_suspend()) {
duke@435 1222 state |= JVMTI_THREAD_STATE_SUSPENDED;
duke@435 1223 }
duke@435 1224 JavaThreadState jts = thr->thread_state();
duke@435 1225 if (jts == _thread_in_native) {
duke@435 1226 state |= JVMTI_THREAD_STATE_IN_NATIVE;
duke@435 1227 }
duke@435 1228 OSThread* osThread = thr->osthread();
duke@435 1229 if (osThread != NULL && osThread->interrupted()) {
duke@435 1230 state |= JVMTI_THREAD_STATE_INTERRUPTED;
duke@435 1231 }
duke@435 1232 }
duke@435 1233 infop->state = state;
duke@435 1234
duke@435 1235 if (thr != NULL || (state & JVMTI_THREAD_STATE_ALIVE) != 0) {
duke@435 1236 infop->frame_buffer = NEW_RESOURCE_ARRAY(jvmtiFrameInfo, max_frame_count());
duke@435 1237 env()->get_stack_trace(thr, 0, max_frame_count(),
duke@435 1238 infop->frame_buffer, &(infop->frame_count));
duke@435 1239 } else {
duke@435 1240 infop->frame_buffer = NULL;
duke@435 1241 infop->frame_count = 0;
duke@435 1242 }
duke@435 1243 _frame_count_total += infop->frame_count;
duke@435 1244 }
duke@435 1245
duke@435 1246 // Based on the stack information in the linked list, allocate memory
duke@435 1247 // block to return and fill it from the info in the linked list.
duke@435 1248 void
duke@435 1249 VM_GetMultipleStackTraces::allocate_and_fill_stacks(jint thread_count) {
duke@435 1250 // do I need to worry about alignment issues?
duke@435 1251 jlong alloc_size = thread_count * sizeof(jvmtiStackInfo)
duke@435 1252 + _frame_count_total * sizeof(jvmtiFrameInfo);
duke@435 1253 env()->allocate(alloc_size, (unsigned char **)&_stack_info);
duke@435 1254
duke@435 1255 // pointers to move through the newly allocated space as it is filled in
duke@435 1256 jvmtiStackInfo *si = _stack_info + thread_count; // bottom of stack info
duke@435 1257 jvmtiFrameInfo *fi = (jvmtiFrameInfo *)si; // is the top of frame info
duke@435 1258
duke@435 1259 // copy information in resource area into allocated buffer
duke@435 1260 // insert stack info backwards since linked list is backwards
duke@435 1261 // insert frame info forwards
duke@435 1262 // walk the StackInfoNodes
duke@435 1263 for (struct StackInfoNode *sin = head(); sin != NULL; sin = sin->next) {
duke@435 1264 jint frame_count = sin->info.frame_count;
duke@435 1265 size_t frames_size = frame_count * sizeof(jvmtiFrameInfo);
duke@435 1266 --si;
duke@435 1267 memcpy(si, &(sin->info), sizeof(jvmtiStackInfo));
duke@435 1268 if (frames_size == 0) {
duke@435 1269 si->frame_buffer = NULL;
duke@435 1270 } else {
duke@435 1271 memcpy(fi, sin->info.frame_buffer, frames_size);
duke@435 1272 si->frame_buffer = fi; // point to the new allocated copy of the frames
duke@435 1273 fi += frame_count;
duke@435 1274 }
duke@435 1275 }
duke@435 1276 assert(si == _stack_info, "the last copied stack info must be the first record");
duke@435 1277 assert((unsigned char *)fi == ((unsigned char *)_stack_info) + alloc_size,
duke@435 1278 "the last copied frame info must be the last record");
duke@435 1279 }
duke@435 1280
duke@435 1281
duke@435 1282 void
duke@435 1283 VM_GetThreadListStackTraces::doit() {
duke@435 1284 assert(SafepointSynchronize::is_at_safepoint(), "must be at safepoint");
duke@435 1285
duke@435 1286 ResourceMark rm;
duke@435 1287 for (int i = 0; i < _thread_count; ++i) {
duke@435 1288 jthread jt = _thread_list[i];
duke@435 1289 oop thread_oop = JNIHandles::resolve_external_guard(jt);
never@1577 1290 if (thread_oop == NULL || !thread_oop->is_a(SystemDictionary::Thread_klass())) {
duke@435 1291 set_result(JVMTI_ERROR_INVALID_THREAD);
duke@435 1292 return;
duke@435 1293 }
duke@435 1294 fill_frames(jt, java_lang_Thread::thread(thread_oop), thread_oop);
duke@435 1295 }
duke@435 1296 allocate_and_fill_stacks(_thread_count);
duke@435 1297 }
duke@435 1298
duke@435 1299 void
duke@435 1300 VM_GetAllStackTraces::doit() {
duke@435 1301 assert(SafepointSynchronize::is_at_safepoint(), "must be at safepoint");
duke@435 1302
duke@435 1303 ResourceMark rm;
duke@435 1304 _final_thread_count = 0;
duke@435 1305 for (JavaThread *jt = Threads::first(); jt != NULL; jt = jt->next()) {
duke@435 1306 oop thread_oop = jt->threadObj();
duke@435 1307 if (thread_oop != NULL &&
duke@435 1308 !jt->is_exiting() &&
duke@435 1309 java_lang_Thread::is_alive(thread_oop) &&
duke@435 1310 !jt->is_hidden_from_external_view()) {
duke@435 1311 ++_final_thread_count;
duke@435 1312 // Handle block of the calling thread is used to create local refs.
duke@435 1313 fill_frames((jthread)JNIHandles::make_local(_calling_thread, thread_oop),
duke@435 1314 jt, thread_oop);
duke@435 1315 }
duke@435 1316 }
duke@435 1317 allocate_and_fill_stacks(_final_thread_count);
duke@435 1318 }
duke@435 1319
duke@435 1320 // Verifies that the top frame is a java frame in an expected state.
duke@435 1321 // Deoptimizes frame if needed.
duke@435 1322 // Checks that the frame method signature matches the return type (tos).
duke@435 1323 // HandleMark must be defined in the caller only.
duke@435 1324 // It is to keep a ret_ob_h handle alive after return to the caller.
duke@435 1325 jvmtiError
duke@435 1326 JvmtiEnvBase::check_top_frame(JavaThread* current_thread, JavaThread* java_thread,
duke@435 1327 jvalue value, TosState tos, Handle* ret_ob_h) {
duke@435 1328 ResourceMark rm(current_thread);
duke@435 1329
duke@435 1330 vframe *vf = vframeFor(java_thread, 0);
duke@435 1331 NULL_CHECK(vf, JVMTI_ERROR_NO_MORE_FRAMES);
duke@435 1332
duke@435 1333 javaVFrame *jvf = (javaVFrame*) vf;
duke@435 1334 if (!vf->is_java_frame() || jvf->method()->is_native()) {
duke@435 1335 return JVMTI_ERROR_OPAQUE_FRAME;
duke@435 1336 }
duke@435 1337
duke@435 1338 // If the frame is a compiled one, need to deoptimize it.
duke@435 1339 if (vf->is_compiled_frame()) {
duke@435 1340 if (!vf->fr().can_be_deoptimized()) {
duke@435 1341 return JVMTI_ERROR_OPAQUE_FRAME;
duke@435 1342 }
never@2260 1343 Deoptimization::deoptimize_frame(java_thread, jvf->fr().id());
duke@435 1344 }
duke@435 1345
duke@435 1346 // Get information about method return type
coleenp@2497 1347 Symbol* signature = jvf->method()->signature();
duke@435 1348
duke@435 1349 ResultTypeFinder rtf(signature);
duke@435 1350 TosState fr_tos = as_TosState(rtf.type());
duke@435 1351 if (fr_tos != tos) {
duke@435 1352 if (tos != itos || (fr_tos != btos && fr_tos != ctos && fr_tos != stos)) {
duke@435 1353 return JVMTI_ERROR_TYPE_MISMATCH;
duke@435 1354 }
duke@435 1355 }
duke@435 1356
duke@435 1357 // Check that the jobject class matches the return type signature.
duke@435 1358 jobject jobj = value.l;
duke@435 1359 if (tos == atos && jobj != NULL) { // NULL reference is allowed
duke@435 1360 Handle ob_h = Handle(current_thread, JNIHandles::resolve_external_guard(jobj));
duke@435 1361 NULL_CHECK(ob_h, JVMTI_ERROR_INVALID_OBJECT);
duke@435 1362 KlassHandle ob_kh = KlassHandle(current_thread, ob_h()->klass());
duke@435 1363 NULL_CHECK(ob_kh, JVMTI_ERROR_INVALID_OBJECT);
duke@435 1364
duke@435 1365 // Method return type signature.
duke@435 1366 char* ty_sign = 1 + strchr(signature->as_C_string(), ')');
duke@435 1367
hseigel@4278 1368 if (!VM_GetOrSetLocal::is_assignable(ty_sign, ob_kh(), current_thread)) {
duke@435 1369 return JVMTI_ERROR_TYPE_MISMATCH;
duke@435 1370 }
duke@435 1371 *ret_ob_h = ob_h;
duke@435 1372 }
duke@435 1373 return JVMTI_ERROR_NONE;
duke@435 1374 } /* end check_top_frame */
duke@435 1375
duke@435 1376
duke@435 1377 // ForceEarlyReturn<type> follows the PopFrame approach in many aspects.
duke@435 1378 // Main difference is on the last stage in the interpreter.
duke@435 1379 // The PopFrame stops method execution to continue execution
duke@435 1380 // from the same method call instruction.
duke@435 1381 // The ForceEarlyReturn forces return from method so the execution
duke@435 1382 // continues at the bytecode following the method call.
duke@435 1383
duke@435 1384 // Threads_lock NOT held, java_thread not protected by lock
duke@435 1385 // java_thread - pre-checked
duke@435 1386
duke@435 1387 jvmtiError
duke@435 1388 JvmtiEnvBase::force_early_return(JavaThread* java_thread, jvalue value, TosState tos) {
duke@435 1389 JavaThread* current_thread = JavaThread::current();
duke@435 1390 HandleMark hm(current_thread);
duke@435 1391 uint32_t debug_bits = 0;
duke@435 1392
dcubed@1044 1393 // retrieve or create the state
dcubed@1044 1394 JvmtiThreadState* state = JvmtiThreadState::state_for(java_thread);
dcubed@1044 1395 if (state == NULL) {
dcubed@1044 1396 return JVMTI_ERROR_THREAD_NOT_ALIVE;
dcubed@1044 1397 }
dcubed@1044 1398
duke@435 1399 // Check if java_thread is fully suspended
duke@435 1400 if (!is_thread_fully_suspended(java_thread,
duke@435 1401 true /* wait for suspend completion */,
duke@435 1402 &debug_bits)) {
duke@435 1403 return JVMTI_ERROR_THREAD_NOT_SUSPENDED;
duke@435 1404 }
duke@435 1405
duke@435 1406 // Check to see if a ForceEarlyReturn was already in progress
duke@435 1407 if (state->is_earlyret_pending()) {
duke@435 1408 // Probably possible for JVMTI clients to trigger this, but the
duke@435 1409 // JPDA backend shouldn't allow this to happen
duke@435 1410 return JVMTI_ERROR_INTERNAL;
duke@435 1411 }
duke@435 1412 {
duke@435 1413 // The same as for PopFrame. Workaround bug:
duke@435 1414 // 4812902: popFrame hangs if the method is waiting at a synchronize
duke@435 1415 // Catch this condition and return an error to avoid hanging.
duke@435 1416 // Now JVMTI spec allows an implementation to bail out with an opaque
duke@435 1417 // frame error.
duke@435 1418 OSThread* osThread = java_thread->osthread();
duke@435 1419 if (osThread->get_state() == MONITOR_WAIT) {
duke@435 1420 return JVMTI_ERROR_OPAQUE_FRAME;
duke@435 1421 }
duke@435 1422 }
duke@435 1423 Handle ret_ob_h = Handle();
duke@435 1424 jvmtiError err = check_top_frame(current_thread, java_thread, value, tos, &ret_ob_h);
duke@435 1425 if (err != JVMTI_ERROR_NONE) {
duke@435 1426 return err;
duke@435 1427 }
duke@435 1428 assert(tos != atos || value.l == NULL || ret_ob_h() != NULL,
duke@435 1429 "return object oop must not be NULL if jobject is not NULL");
duke@435 1430
duke@435 1431 // Update the thread state to reflect that the top frame must be
duke@435 1432 // forced to return.
duke@435 1433 // The current frame will be returned later when the suspended
duke@435 1434 // thread is resumed and right before returning from VM to Java.
duke@435 1435 // (see call_VM_base() in assembler_<cpu>.cpp).
duke@435 1436
duke@435 1437 state->set_earlyret_pending();
duke@435 1438 state->set_earlyret_oop(ret_ob_h());
duke@435 1439 state->set_earlyret_value(value, tos);
duke@435 1440
duke@435 1441 // Set pending step flag for this early return.
duke@435 1442 // It is cleared when next step event is posted.
duke@435 1443 state->set_pending_step_for_earlyret();
duke@435 1444
duke@435 1445 return JVMTI_ERROR_NONE;
duke@435 1446 } /* end force_early_return */
duke@435 1447
duke@435 1448 void
duke@435 1449 JvmtiMonitorClosure::do_monitor(ObjectMonitor* mon) {
duke@435 1450 if ( _error != JVMTI_ERROR_NONE) {
duke@435 1451 // Error occurred in previous iteration so no need to add
duke@435 1452 // to the list.
duke@435 1453 return;
duke@435 1454 }
duke@435 1455 if (mon->owner() == _java_thread ) {
duke@435 1456 // Filter out on stack monitors collected during stack walk.
duke@435 1457 oop obj = (oop)mon->object();
duke@435 1458 bool found = false;
duke@435 1459 for (int j = 0; j < _owned_monitors_list->length(); j++) {
duke@435 1460 jobject jobj = ((jvmtiMonitorStackDepthInfo*)_owned_monitors_list->at(j))->monitor;
duke@435 1461 oop check = JNIHandles::resolve(jobj);
duke@435 1462 if (check == obj) {
duke@435 1463 // On stack monitor already collected during the stack walk.
duke@435 1464 found = true;
duke@435 1465 break;
duke@435 1466 }
duke@435 1467 }
duke@435 1468 if (found == false) {
duke@435 1469 // This is off stack monitor (e.g. acquired via jni MonitorEnter).
duke@435 1470 jvmtiError err;
duke@435 1471 jvmtiMonitorStackDepthInfo *jmsdi;
duke@435 1472 err = _env->allocate(sizeof(jvmtiMonitorStackDepthInfo), (unsigned char **)&jmsdi);
duke@435 1473 if (err != JVMTI_ERROR_NONE) {
duke@435 1474 _error = err;
duke@435 1475 return;
duke@435 1476 }
duke@435 1477 Handle hobj(obj);
duke@435 1478 jmsdi->monitor = _env->jni_reference(_calling_thread, hobj);
duke@435 1479 // stack depth is unknown for this monitor.
duke@435 1480 jmsdi->stack_depth = -1;
duke@435 1481 _owned_monitors_list->append(jmsdi);
duke@435 1482 }
duke@435 1483 }
duke@435 1484 }
duke@435 1485
duke@435 1486 #endif // !JVMTI_KERNEL

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