Tue, 17 Oct 2017 12:58:25 +0800
merge
1 /*
2 * Copyright (c) 2003, 2013, Oracle and/or its affiliates. All rights reserved.
3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
4 *
5 * This code is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License version 2 only, as
7 * published by the Free Software Foundation.
8 *
9 * This code is distributed in the hope that it will be useful, but WITHOUT
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
12 * version 2 for more details (a copy is included in the LICENSE file that
13 * accompanied this code).
14 *
15 * You should have received a copy of the GNU General Public License version
16 * 2 along with this work; if not, write to the Free Software Foundation,
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
18 *
19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
20 * or visit www.oracle.com if you need additional information or have any
21 * questions.
22 *
23 */
25 #include "precompiled.hpp"
26 #include "classfile/classLoaderExt.hpp"
27 #include "classfile/systemDictionary.hpp"
28 #include "classfile/vmSymbols.hpp"
29 #include "interpreter/bytecodeStream.hpp"
30 #include "interpreter/interpreter.hpp"
31 #include "jvmtifiles/jvmtiEnv.hpp"
32 #include "memory/resourceArea.hpp"
33 #include "memory/universe.inline.hpp"
34 #include "oops/instanceKlass.hpp"
35 #include "prims/jniCheck.hpp"
36 #include "prims/jvm_misc.hpp"
37 #include "prims/jvmtiAgentThread.hpp"
38 #include "prims/jvmtiClassFileReconstituter.hpp"
39 #include "prims/jvmtiCodeBlobEvents.hpp"
40 #include "prims/jvmtiExtensions.hpp"
41 #include "prims/jvmtiGetLoadedClasses.hpp"
42 #include "prims/jvmtiImpl.hpp"
43 #include "prims/jvmtiManageCapabilities.hpp"
44 #include "prims/jvmtiRawMonitor.hpp"
45 #include "prims/jvmtiRedefineClasses.hpp"
46 #include "prims/jvmtiTagMap.hpp"
47 #include "prims/jvmtiThreadState.inline.hpp"
48 #include "prims/jvmtiUtil.hpp"
49 #include "runtime/arguments.hpp"
50 #include "runtime/deoptimization.hpp"
51 #include "runtime/interfaceSupport.hpp"
52 #include "runtime/javaCalls.hpp"
53 #include "runtime/jfieldIDWorkaround.hpp"
54 #include "runtime/osThread.hpp"
55 #include "runtime/reflectionUtils.hpp"
56 #include "runtime/signature.hpp"
57 #include "runtime/thread.inline.hpp"
58 #include "runtime/vframe.hpp"
59 #include "runtime/vmThread.hpp"
60 #include "services/threadService.hpp"
61 #include "utilities/exceptions.hpp"
62 #include "utilities/preserveException.hpp"
65 #define FIXLATER 0 // REMOVE this when completed.
67 // FIXLATER: hook into JvmtiTrace
68 #define TraceJVMTICalls false
70 JvmtiEnv::JvmtiEnv(jint version) : JvmtiEnvBase(version) {
71 }
73 JvmtiEnv::~JvmtiEnv() {
74 }
76 JvmtiEnv*
77 JvmtiEnv::create_a_jvmti(jint version) {
78 return new JvmtiEnv(version);
79 }
81 // VM operation class to copy jni function table at safepoint.
82 // More than one java threads or jvmti agents may be reading/
83 // modifying jni function tables. To reduce the risk of bad
84 // interaction b/w these threads it is copied at safepoint.
85 class VM_JNIFunctionTableCopier : public VM_Operation {
86 private:
87 const struct JNINativeInterface_ *_function_table;
88 public:
89 VM_JNIFunctionTableCopier(const struct JNINativeInterface_ *func_tbl) {
90 _function_table = func_tbl;
91 };
93 VMOp_Type type() const { return VMOp_JNIFunctionTableCopier; }
94 void doit() {
95 copy_jni_function_table(_function_table);
96 };
97 };
99 //
100 // Do not change the "prefix" marker below, everything above it is copied
101 // unchanged into the filled stub, everything below is controlled by the
102 // stub filler (only method bodies are carried forward, and then only for
103 // functionality still in the spec).
104 //
105 // end file prefix
107 //
108 // Memory Management functions
109 //
111 // mem_ptr - pre-checked for NULL
112 jvmtiError
113 JvmtiEnv::Allocate(jlong size, unsigned char** mem_ptr) {
114 return allocate(size, mem_ptr);
115 } /* end Allocate */
118 // mem - NULL is a valid value, must be checked
119 jvmtiError
120 JvmtiEnv::Deallocate(unsigned char* mem) {
121 return deallocate(mem);
122 } /* end Deallocate */
124 // Threads_lock NOT held, java_thread not protected by lock
125 // java_thread - pre-checked
126 // data - NULL is a valid value, must be checked
127 jvmtiError
128 JvmtiEnv::SetThreadLocalStorage(JavaThread* java_thread, const void* data) {
129 JvmtiThreadState* state = java_thread->jvmti_thread_state();
130 if (state == NULL) {
131 if (data == NULL) {
132 // leaving state unset same as data set to NULL
133 return JVMTI_ERROR_NONE;
134 }
135 // otherwise, create the state
136 state = JvmtiThreadState::state_for(java_thread);
137 if (state == NULL) {
138 return JVMTI_ERROR_THREAD_NOT_ALIVE;
139 }
140 }
141 state->env_thread_state(this)->set_agent_thread_local_storage_data((void*)data);
142 return JVMTI_ERROR_NONE;
143 } /* end SetThreadLocalStorage */
146 // Threads_lock NOT held
147 // thread - NOT pre-checked
148 // data_ptr - pre-checked for NULL
149 jvmtiError
150 JvmtiEnv::GetThreadLocalStorage(jthread thread, void** data_ptr) {
151 JavaThread* current_thread = JavaThread::current();
152 if (thread == NULL) {
153 JvmtiThreadState* state = current_thread->jvmti_thread_state();
154 *data_ptr = (state == NULL) ? NULL :
155 state->env_thread_state(this)->get_agent_thread_local_storage_data();
156 } else {
158 // jvmti_GetThreadLocalStorage is "in native" and doesn't transition
159 // the thread to _thread_in_vm. However, when the TLS for a thread
160 // other than the current thread is required we need to transition
161 // from native so as to resolve the jthread.
163 ThreadInVMfromNative __tiv(current_thread);
164 VM_ENTRY_BASE(jvmtiError, JvmtiEnv::GetThreadLocalStorage , current_thread)
165 debug_only(VMNativeEntryWrapper __vew;)
167 oop thread_oop = JNIHandles::resolve_external_guard(thread);
168 if (thread_oop == NULL) {
169 return JVMTI_ERROR_INVALID_THREAD;
170 }
171 if (!thread_oop->is_a(SystemDictionary::Thread_klass())) {
172 return JVMTI_ERROR_INVALID_THREAD;
173 }
174 JavaThread* java_thread = java_lang_Thread::thread(thread_oop);
175 if (java_thread == NULL) {
176 return JVMTI_ERROR_THREAD_NOT_ALIVE;
177 }
178 JvmtiThreadState* state = java_thread->jvmti_thread_state();
179 *data_ptr = (state == NULL) ? NULL :
180 state->env_thread_state(this)->get_agent_thread_local_storage_data();
181 }
182 return JVMTI_ERROR_NONE;
183 } /* end GetThreadLocalStorage */
185 //
186 // Class functions
187 //
189 // class_count_ptr - pre-checked for NULL
190 // classes_ptr - pre-checked for NULL
191 jvmtiError
192 JvmtiEnv::GetLoadedClasses(jint* class_count_ptr, jclass** classes_ptr) {
193 return JvmtiGetLoadedClasses::getLoadedClasses(this, class_count_ptr, classes_ptr);
194 } /* end GetLoadedClasses */
197 // initiating_loader - NULL is a valid value, must be checked
198 // class_count_ptr - pre-checked for NULL
199 // classes_ptr - pre-checked for NULL
200 jvmtiError
201 JvmtiEnv::GetClassLoaderClasses(jobject initiating_loader, jint* class_count_ptr, jclass** classes_ptr) {
202 return JvmtiGetLoadedClasses::getClassLoaderClasses(this, initiating_loader,
203 class_count_ptr, classes_ptr);
204 } /* end GetClassLoaderClasses */
206 // k_mirror - may be primitive, this must be checked
207 // is_modifiable_class_ptr - pre-checked for NULL
208 jvmtiError
209 JvmtiEnv::IsModifiableClass(oop k_mirror, jboolean* is_modifiable_class_ptr) {
210 *is_modifiable_class_ptr = VM_RedefineClasses::is_modifiable_class(k_mirror)?
211 JNI_TRUE : JNI_FALSE;
212 return JVMTI_ERROR_NONE;
213 } /* end IsModifiableClass */
215 // class_count - pre-checked to be greater than or equal to 0
216 // classes - pre-checked for NULL
217 jvmtiError
218 JvmtiEnv::RetransformClasses(jint class_count, const jclass* classes) {
219 //TODO: add locking
221 int index;
222 JavaThread* current_thread = JavaThread::current();
223 ResourceMark rm(current_thread);
225 jvmtiClassDefinition* class_definitions =
226 NEW_RESOURCE_ARRAY(jvmtiClassDefinition, class_count);
227 NULL_CHECK(class_definitions, JVMTI_ERROR_OUT_OF_MEMORY);
229 for (index = 0; index < class_count; index++) {
230 HandleMark hm(current_thread);
232 jclass jcls = classes[index];
233 oop k_mirror = JNIHandles::resolve_external_guard(jcls);
234 if (k_mirror == NULL) {
235 return JVMTI_ERROR_INVALID_CLASS;
236 }
237 if (!k_mirror->is_a(SystemDictionary::Class_klass())) {
238 return JVMTI_ERROR_INVALID_CLASS;
239 }
241 if (java_lang_Class::is_primitive(k_mirror)) {
242 return JVMTI_ERROR_UNMODIFIABLE_CLASS;
243 }
245 Klass* k_oop = java_lang_Class::as_Klass(k_mirror);
246 KlassHandle klass(current_thread, k_oop);
248 jint status = klass->jvmti_class_status();
249 if (status & (JVMTI_CLASS_STATUS_ERROR)) {
250 return JVMTI_ERROR_INVALID_CLASS;
251 }
252 if (status & (JVMTI_CLASS_STATUS_ARRAY)) {
253 return JVMTI_ERROR_UNMODIFIABLE_CLASS;
254 }
256 instanceKlassHandle ikh(current_thread, k_oop);
257 if (ikh->get_cached_class_file_bytes() == NULL) {
258 // Not cached, we need to reconstitute the class file from the
259 // VM representation. We don't attach the reconstituted class
260 // bytes to the InstanceKlass here because they have not been
261 // validated and we're not at a safepoint.
262 constantPoolHandle constants(current_thread, ikh->constants());
263 MonitorLockerEx ml(constants->lock()); // lock constant pool while we query it
265 JvmtiClassFileReconstituter reconstituter(ikh);
266 if (reconstituter.get_error() != JVMTI_ERROR_NONE) {
267 return reconstituter.get_error();
268 }
270 class_definitions[index].class_byte_count = (jint)reconstituter.class_file_size();
271 class_definitions[index].class_bytes = (unsigned char*)
272 reconstituter.class_file_bytes();
273 } else {
274 // it is cached, get it from the cache
275 class_definitions[index].class_byte_count = ikh->get_cached_class_file_len();
276 class_definitions[index].class_bytes = ikh->get_cached_class_file_bytes();
277 }
278 class_definitions[index].klass = jcls;
279 }
280 VM_RedefineClasses op(class_count, class_definitions, jvmti_class_load_kind_retransform);
281 VMThread::execute(&op);
282 return (op.check_error());
283 } /* end RetransformClasses */
286 // class_count - pre-checked to be greater than or equal to 0
287 // class_definitions - pre-checked for NULL
288 jvmtiError
289 JvmtiEnv::RedefineClasses(jint class_count, const jvmtiClassDefinition* class_definitions) {
290 //TODO: add locking
291 VM_RedefineClasses op(class_count, class_definitions, jvmti_class_load_kind_redefine);
292 VMThread::execute(&op);
293 return (op.check_error());
294 } /* end RedefineClasses */
297 //
298 // Object functions
299 //
301 // size_ptr - pre-checked for NULL
302 jvmtiError
303 JvmtiEnv::GetObjectSize(jobject object, jlong* size_ptr) {
304 oop mirror = JNIHandles::resolve_external_guard(object);
305 NULL_CHECK(mirror, JVMTI_ERROR_INVALID_OBJECT);
307 if (mirror->klass() == SystemDictionary::Class_klass() &&
308 !java_lang_Class::is_primitive(mirror)) {
309 Klass* k = java_lang_Class::as_Klass(mirror);
310 assert(k != NULL, "class for non-primitive mirror must exist");
311 *size_ptr = (jlong)k->size() * wordSize;
312 } else {
313 *size_ptr = (jlong)mirror->size() * wordSize;
314 }
315 return JVMTI_ERROR_NONE;
316 } /* end GetObjectSize */
318 //
319 // Method functions
320 //
322 // prefix - NULL is a valid value, must be checked
323 jvmtiError
324 JvmtiEnv::SetNativeMethodPrefix(const char* prefix) {
325 return prefix == NULL?
326 SetNativeMethodPrefixes(0, NULL) :
327 SetNativeMethodPrefixes(1, (char**)&prefix);
328 } /* end SetNativeMethodPrefix */
331 // prefix_count - pre-checked to be greater than or equal to 0
332 // prefixes - pre-checked for NULL
333 jvmtiError
334 JvmtiEnv::SetNativeMethodPrefixes(jint prefix_count, char** prefixes) {
335 // Have to grab JVMTI thread state lock to be sure that some thread
336 // isn't accessing the prefixes at the same time we are setting them.
337 // No locks during VM bring-up.
338 if (Threads::number_of_threads() == 0) {
339 return set_native_method_prefixes(prefix_count, prefixes);
340 } else {
341 MutexLocker mu(JvmtiThreadState_lock);
342 return set_native_method_prefixes(prefix_count, prefixes);
343 }
344 } /* end SetNativeMethodPrefixes */
346 //
347 // Event Management functions
348 //
350 // callbacks - NULL is a valid value, must be checked
351 // size_of_callbacks - pre-checked to be greater than or equal to 0
352 jvmtiError
353 JvmtiEnv::SetEventCallbacks(const jvmtiEventCallbacks* callbacks, jint size_of_callbacks) {
354 JvmtiEventController::set_event_callbacks(this, callbacks, size_of_callbacks);
355 return JVMTI_ERROR_NONE;
356 } /* end SetEventCallbacks */
359 // event_thread - NULL is a valid value, must be checked
360 jvmtiError
361 JvmtiEnv::SetEventNotificationMode(jvmtiEventMode mode, jvmtiEvent event_type, jthread event_thread, ...) {
362 JavaThread* java_thread = NULL;
363 if (event_thread != NULL) {
364 oop thread_oop = JNIHandles::resolve_external_guard(event_thread);
365 if (thread_oop == NULL) {
366 return JVMTI_ERROR_INVALID_THREAD;
367 }
368 if (!thread_oop->is_a(SystemDictionary::Thread_klass())) {
369 return JVMTI_ERROR_INVALID_THREAD;
370 }
371 java_thread = java_lang_Thread::thread(thread_oop);
372 if (java_thread == NULL) {
373 return JVMTI_ERROR_THREAD_NOT_ALIVE;
374 }
375 }
377 // event_type must be valid
378 if (!JvmtiEventController::is_valid_event_type(event_type)) {
379 return JVMTI_ERROR_INVALID_EVENT_TYPE;
380 }
382 // global events cannot be controlled at thread level.
383 if (java_thread != NULL && JvmtiEventController::is_global_event(event_type)) {
384 return JVMTI_ERROR_ILLEGAL_ARGUMENT;
385 }
387 bool enabled = (mode == JVMTI_ENABLE);
389 // assure that needed capabilities are present
390 if (enabled && !JvmtiUtil::has_event_capability(event_type, get_capabilities())) {
391 return JVMTI_ERROR_MUST_POSSESS_CAPABILITY;
392 }
394 if (event_type == JVMTI_EVENT_CLASS_FILE_LOAD_HOOK && enabled) {
395 record_class_file_load_hook_enabled();
396 }
397 JvmtiEventController::set_user_enabled(this, java_thread, event_type, enabled);
399 return JVMTI_ERROR_NONE;
400 } /* end SetEventNotificationMode */
402 //
403 // Capability functions
404 //
406 // capabilities_ptr - pre-checked for NULL
407 jvmtiError
408 JvmtiEnv::GetPotentialCapabilities(jvmtiCapabilities* capabilities_ptr) {
409 JvmtiManageCapabilities::get_potential_capabilities(get_capabilities(),
410 get_prohibited_capabilities(),
411 capabilities_ptr);
412 return JVMTI_ERROR_NONE;
413 } /* end GetPotentialCapabilities */
416 // capabilities_ptr - pre-checked for NULL
417 jvmtiError
418 JvmtiEnv::AddCapabilities(const jvmtiCapabilities* capabilities_ptr) {
419 return JvmtiManageCapabilities::add_capabilities(get_capabilities(),
420 get_prohibited_capabilities(),
421 capabilities_ptr,
422 get_capabilities());
423 } /* end AddCapabilities */
426 // capabilities_ptr - pre-checked for NULL
427 jvmtiError
428 JvmtiEnv::RelinquishCapabilities(const jvmtiCapabilities* capabilities_ptr) {
429 JvmtiManageCapabilities::relinquish_capabilities(get_capabilities(), capabilities_ptr, get_capabilities());
430 return JVMTI_ERROR_NONE;
431 } /* end RelinquishCapabilities */
434 // capabilities_ptr - pre-checked for NULL
435 jvmtiError
436 JvmtiEnv::GetCapabilities(jvmtiCapabilities* capabilities_ptr) {
437 JvmtiManageCapabilities::copy_capabilities(get_capabilities(), capabilities_ptr);
438 return JVMTI_ERROR_NONE;
439 } /* end GetCapabilities */
441 //
442 // Class Loader Search functions
443 //
445 // segment - pre-checked for NULL
446 jvmtiError
447 JvmtiEnv::AddToBootstrapClassLoaderSearch(const char* segment) {
448 jvmtiPhase phase = get_phase();
449 if (phase == JVMTI_PHASE_ONLOAD) {
450 Arguments::append_sysclasspath(segment);
451 return JVMTI_ERROR_NONE;
452 } else if (use_version_1_0_semantics()) {
453 // This JvmtiEnv requested version 1.0 semantics and this function
454 // is only allowed in the ONLOAD phase in version 1.0 so we need to
455 // return an error here.
456 return JVMTI_ERROR_WRONG_PHASE;
457 } else if (phase == JVMTI_PHASE_LIVE) {
458 // The phase is checked by the wrapper that called this function,
459 // but this thread could be racing with the thread that is
460 // terminating the VM so we check one more time.
462 // create the zip entry
463 ClassPathZipEntry* zip_entry = ClassLoader::create_class_path_zip_entry(segment);
464 if (zip_entry == NULL) {
465 return JVMTI_ERROR_ILLEGAL_ARGUMENT;
466 }
468 // lock the loader
469 Thread* thread = Thread::current();
470 HandleMark hm;
471 Handle loader_lock = Handle(thread, SystemDictionary::system_loader_lock());
473 ObjectLocker ol(loader_lock, thread);
475 // add the jar file to the bootclasspath
476 if (TraceClassLoading) {
477 tty->print_cr("[Opened %s]", zip_entry->name());
478 }
479 ClassLoaderExt::append_boot_classpath(zip_entry);
480 return JVMTI_ERROR_NONE;
481 } else {
482 return JVMTI_ERROR_WRONG_PHASE;
483 }
485 } /* end AddToBootstrapClassLoaderSearch */
488 // segment - pre-checked for NULL
489 jvmtiError
490 JvmtiEnv::AddToSystemClassLoaderSearch(const char* segment) {
491 jvmtiPhase phase = get_phase();
493 if (phase == JVMTI_PHASE_ONLOAD) {
494 for (SystemProperty* p = Arguments::system_properties(); p != NULL; p = p->next()) {
495 if (strcmp("java.class.path", p->key()) == 0) {
496 p->append_value(segment);
497 break;
498 }
499 }
500 return JVMTI_ERROR_NONE;
501 } else if (phase == JVMTI_PHASE_LIVE) {
502 // The phase is checked by the wrapper that called this function,
503 // but this thread could be racing with the thread that is
504 // terminating the VM so we check one more time.
505 HandleMark hm;
507 // create the zip entry (which will open the zip file and hence
508 // check that the segment is indeed a zip file).
509 ClassPathZipEntry* zip_entry = ClassLoader::create_class_path_zip_entry(segment);
510 if (zip_entry == NULL) {
511 return JVMTI_ERROR_ILLEGAL_ARGUMENT;
512 }
513 delete zip_entry; // no longer needed
515 // lock the loader
516 Thread* THREAD = Thread::current();
517 Handle loader = Handle(THREAD, SystemDictionary::java_system_loader());
519 ObjectLocker ol(loader, THREAD);
521 // need the path as java.lang.String
522 Handle path = java_lang_String::create_from_platform_dependent_str(segment, THREAD);
523 if (HAS_PENDING_EXCEPTION) {
524 CLEAR_PENDING_EXCEPTION;
525 return JVMTI_ERROR_INTERNAL;
526 }
528 instanceKlassHandle loader_ik(THREAD, loader->klass());
530 // Invoke the appendToClassPathForInstrumentation method - if the method
531 // is not found it means the loader doesn't support adding to the class path
532 // in the live phase.
533 {
534 JavaValue res(T_VOID);
535 JavaCalls::call_special(&res,
536 loader,
537 loader_ik,
538 vmSymbols::appendToClassPathForInstrumentation_name(),
539 vmSymbols::appendToClassPathForInstrumentation_signature(),
540 path,
541 THREAD);
542 if (HAS_PENDING_EXCEPTION) {
543 Symbol* ex_name = PENDING_EXCEPTION->klass()->name();
544 CLEAR_PENDING_EXCEPTION;
546 if (ex_name == vmSymbols::java_lang_NoSuchMethodError()) {
547 return JVMTI_ERROR_CLASS_LOADER_UNSUPPORTED;
548 } else {
549 return JVMTI_ERROR_INTERNAL;
550 }
551 }
552 }
554 return JVMTI_ERROR_NONE;
555 } else {
556 return JVMTI_ERROR_WRONG_PHASE;
557 }
558 } /* end AddToSystemClassLoaderSearch */
560 //
561 // General functions
562 //
564 // phase_ptr - pre-checked for NULL
565 jvmtiError
566 JvmtiEnv::GetPhase(jvmtiPhase* phase_ptr) {
567 *phase_ptr = get_phase();
568 return JVMTI_ERROR_NONE;
569 } /* end GetPhase */
572 jvmtiError
573 JvmtiEnv::DisposeEnvironment() {
574 dispose();
575 return JVMTI_ERROR_NONE;
576 } /* end DisposeEnvironment */
579 // data - NULL is a valid value, must be checked
580 jvmtiError
581 JvmtiEnv::SetEnvironmentLocalStorage(const void* data) {
582 set_env_local_storage(data);
583 return JVMTI_ERROR_NONE;
584 } /* end SetEnvironmentLocalStorage */
587 // data_ptr - pre-checked for NULL
588 jvmtiError
589 JvmtiEnv::GetEnvironmentLocalStorage(void** data_ptr) {
590 *data_ptr = (void*)get_env_local_storage();
591 return JVMTI_ERROR_NONE;
592 } /* end GetEnvironmentLocalStorage */
594 // version_ptr - pre-checked for NULL
595 jvmtiError
596 JvmtiEnv::GetVersionNumber(jint* version_ptr) {
597 *version_ptr = JVMTI_VERSION;
598 return JVMTI_ERROR_NONE;
599 } /* end GetVersionNumber */
602 // name_ptr - pre-checked for NULL
603 jvmtiError
604 JvmtiEnv::GetErrorName(jvmtiError error, char** name_ptr) {
605 if (error < JVMTI_ERROR_NONE || error > JVMTI_ERROR_MAX) {
606 return JVMTI_ERROR_ILLEGAL_ARGUMENT;
607 }
608 const char *name = JvmtiUtil::error_name(error);
609 if (name == NULL) {
610 return JVMTI_ERROR_ILLEGAL_ARGUMENT;
611 }
612 size_t len = strlen(name) + 1;
613 jvmtiError err = allocate(len, (unsigned char**)name_ptr);
614 if (err == JVMTI_ERROR_NONE) {
615 memcpy(*name_ptr, name, len);
616 }
617 return err;
618 } /* end GetErrorName */
621 jvmtiError
622 JvmtiEnv::SetVerboseFlag(jvmtiVerboseFlag flag, jboolean value) {
623 switch (flag) {
624 case JVMTI_VERBOSE_OTHER:
625 // ignore
626 break;
627 case JVMTI_VERBOSE_CLASS:
628 TraceClassLoading = value != 0;
629 TraceClassUnloading = value != 0;
630 break;
631 case JVMTI_VERBOSE_GC:
632 PrintGC = value != 0;
633 break;
634 case JVMTI_VERBOSE_JNI:
635 PrintJNIResolving = value != 0;
636 break;
637 default:
638 return JVMTI_ERROR_ILLEGAL_ARGUMENT;
639 };
640 return JVMTI_ERROR_NONE;
641 } /* end SetVerboseFlag */
644 // format_ptr - pre-checked for NULL
645 jvmtiError
646 JvmtiEnv::GetJLocationFormat(jvmtiJlocationFormat* format_ptr) {
647 *format_ptr = JVMTI_JLOCATION_JVMBCI;
648 return JVMTI_ERROR_NONE;
649 } /* end GetJLocationFormat */
651 //
652 // Thread functions
653 //
655 // Threads_lock NOT held
656 // thread - NOT pre-checked
657 // thread_state_ptr - pre-checked for NULL
658 jvmtiError
659 JvmtiEnv::GetThreadState(jthread thread, jint* thread_state_ptr) {
660 jint state;
661 oop thread_oop;
662 JavaThread* thr;
664 if (thread == NULL) {
665 thread_oop = JavaThread::current()->threadObj();
666 } else {
667 thread_oop = JNIHandles::resolve_external_guard(thread);
668 }
670 if (thread_oop == NULL || !thread_oop->is_a(SystemDictionary::Thread_klass())) {
671 return JVMTI_ERROR_INVALID_THREAD;
672 }
674 // get most state bits
675 state = (jint)java_lang_Thread::get_thread_status(thread_oop);
677 // add more state bits
678 thr = java_lang_Thread::thread(thread_oop);
679 if (thr != NULL) {
680 JavaThreadState jts = thr->thread_state();
682 if (thr->is_being_ext_suspended()) {
683 state |= JVMTI_THREAD_STATE_SUSPENDED;
684 }
685 if (jts == _thread_in_native) {
686 state |= JVMTI_THREAD_STATE_IN_NATIVE;
687 }
688 OSThread* osThread = thr->osthread();
689 if (osThread != NULL && osThread->interrupted()) {
690 state |= JVMTI_THREAD_STATE_INTERRUPTED;
691 }
692 }
694 *thread_state_ptr = state;
695 return JVMTI_ERROR_NONE;
696 } /* end GetThreadState */
699 // thread_ptr - pre-checked for NULL
700 jvmtiError
701 JvmtiEnv::GetCurrentThread(jthread* thread_ptr) {
702 JavaThread* current_thread = JavaThread::current();
703 *thread_ptr = (jthread)JNIHandles::make_local(current_thread, current_thread->threadObj());
704 return JVMTI_ERROR_NONE;
705 } /* end GetCurrentThread */
708 // threads_count_ptr - pre-checked for NULL
709 // threads_ptr - pre-checked for NULL
710 jvmtiError
711 JvmtiEnv::GetAllThreads(jint* threads_count_ptr, jthread** threads_ptr) {
712 int nthreads = 0;
713 Handle *thread_objs = NULL;
714 ResourceMark rm;
715 HandleMark hm;
717 // enumerate threads (including agent threads)
718 ThreadsListEnumerator tle(Thread::current(), true);
719 nthreads = tle.num_threads();
720 *threads_count_ptr = nthreads;
722 if (nthreads == 0) {
723 *threads_ptr = NULL;
724 return JVMTI_ERROR_NONE;
725 }
727 thread_objs = NEW_RESOURCE_ARRAY(Handle, nthreads);
728 NULL_CHECK(thread_objs, JVMTI_ERROR_OUT_OF_MEMORY);
730 for (int i=0; i < nthreads; i++) {
731 thread_objs[i] = Handle(tle.get_threadObj(i));
732 }
734 // have to make global handles outside of Threads_lock
735 jthread *jthreads = new_jthreadArray(nthreads, thread_objs);
736 NULL_CHECK(jthreads, JVMTI_ERROR_OUT_OF_MEMORY);
738 *threads_ptr = jthreads;
739 return JVMTI_ERROR_NONE;
740 } /* end GetAllThreads */
743 // Threads_lock NOT held, java_thread not protected by lock
744 // java_thread - pre-checked
745 jvmtiError
746 JvmtiEnv::SuspendThread(JavaThread* java_thread) {
747 // don't allow hidden thread suspend request.
748 if (java_thread->is_hidden_from_external_view()) {
749 return (JVMTI_ERROR_NONE);
750 }
752 {
753 MutexLockerEx ml(java_thread->SR_lock(), Mutex::_no_safepoint_check_flag);
754 if (java_thread->is_external_suspend()) {
755 // don't allow nested external suspend requests.
756 return (JVMTI_ERROR_THREAD_SUSPENDED);
757 }
758 if (java_thread->is_exiting()) { // thread is in the process of exiting
759 return (JVMTI_ERROR_THREAD_NOT_ALIVE);
760 }
761 java_thread->set_external_suspend();
762 }
764 if (!JvmtiSuspendControl::suspend(java_thread)) {
765 // the thread was in the process of exiting
766 return (JVMTI_ERROR_THREAD_NOT_ALIVE);
767 }
768 return JVMTI_ERROR_NONE;
769 } /* end SuspendThread */
772 // request_count - pre-checked to be greater than or equal to 0
773 // request_list - pre-checked for NULL
774 // results - pre-checked for NULL
775 jvmtiError
776 JvmtiEnv::SuspendThreadList(jint request_count, const jthread* request_list, jvmtiError* results) {
777 int needSafepoint = 0; // > 0 if we need a safepoint
778 for (int i = 0; i < request_count; i++) {
779 JavaThread *java_thread = get_JavaThread(request_list[i]);
780 if (java_thread == NULL) {
781 results[i] = JVMTI_ERROR_INVALID_THREAD;
782 continue;
783 }
784 // the thread has not yet run or has exited (not on threads list)
785 if (java_thread->threadObj() == NULL) {
786 results[i] = JVMTI_ERROR_THREAD_NOT_ALIVE;
787 continue;
788 }
789 if (java_lang_Thread::thread(java_thread->threadObj()) == NULL) {
790 results[i] = JVMTI_ERROR_THREAD_NOT_ALIVE;
791 continue;
792 }
793 // don't allow hidden thread suspend request.
794 if (java_thread->is_hidden_from_external_view()) {
795 results[i] = JVMTI_ERROR_NONE; // indicate successful suspend
796 continue;
797 }
799 {
800 MutexLockerEx ml(java_thread->SR_lock(), Mutex::_no_safepoint_check_flag);
801 if (java_thread->is_external_suspend()) {
802 // don't allow nested external suspend requests.
803 results[i] = JVMTI_ERROR_THREAD_SUSPENDED;
804 continue;
805 }
806 if (java_thread->is_exiting()) { // thread is in the process of exiting
807 results[i] = JVMTI_ERROR_THREAD_NOT_ALIVE;
808 continue;
809 }
810 java_thread->set_external_suspend();
811 }
812 if (java_thread->thread_state() == _thread_in_native) {
813 // We need to try and suspend native threads here. Threads in
814 // other states will self-suspend on their next transition.
815 if (!JvmtiSuspendControl::suspend(java_thread)) {
816 // The thread was in the process of exiting. Force another
817 // safepoint to make sure that this thread transitions.
818 needSafepoint++;
819 results[i] = JVMTI_ERROR_THREAD_NOT_ALIVE;
820 continue;
821 }
822 } else {
823 needSafepoint++;
824 }
825 results[i] = JVMTI_ERROR_NONE; // indicate successful suspend
826 }
827 if (needSafepoint > 0) {
828 VM_ForceSafepoint vfs;
829 VMThread::execute(&vfs);
830 }
831 // per-thread suspend results returned via results parameter
832 return JVMTI_ERROR_NONE;
833 } /* end SuspendThreadList */
836 // Threads_lock NOT held, java_thread not protected by lock
837 // java_thread - pre-checked
838 jvmtiError
839 JvmtiEnv::ResumeThread(JavaThread* java_thread) {
840 // don't allow hidden thread resume request.
841 if (java_thread->is_hidden_from_external_view()) {
842 return JVMTI_ERROR_NONE;
843 }
845 if (!java_thread->is_being_ext_suspended()) {
846 return JVMTI_ERROR_THREAD_NOT_SUSPENDED;
847 }
849 if (!JvmtiSuspendControl::resume(java_thread)) {
850 return JVMTI_ERROR_INTERNAL;
851 }
852 return JVMTI_ERROR_NONE;
853 } /* end ResumeThread */
856 // request_count - pre-checked to be greater than or equal to 0
857 // request_list - pre-checked for NULL
858 // results - pre-checked for NULL
859 jvmtiError
860 JvmtiEnv::ResumeThreadList(jint request_count, const jthread* request_list, jvmtiError* results) {
861 for (int i = 0; i < request_count; i++) {
862 JavaThread *java_thread = get_JavaThread(request_list[i]);
863 if (java_thread == NULL) {
864 results[i] = JVMTI_ERROR_INVALID_THREAD;
865 continue;
866 }
867 // don't allow hidden thread resume request.
868 if (java_thread->is_hidden_from_external_view()) {
869 results[i] = JVMTI_ERROR_NONE; // indicate successful resume
870 continue;
871 }
872 if (!java_thread->is_being_ext_suspended()) {
873 results[i] = JVMTI_ERROR_THREAD_NOT_SUSPENDED;
874 continue;
875 }
877 if (!JvmtiSuspendControl::resume(java_thread)) {
878 results[i] = JVMTI_ERROR_INTERNAL;
879 continue;
880 }
882 results[i] = JVMTI_ERROR_NONE; // indicate successful suspend
883 }
884 // per-thread resume results returned via results parameter
885 return JVMTI_ERROR_NONE;
886 } /* end ResumeThreadList */
889 // Threads_lock NOT held, java_thread not protected by lock
890 // java_thread - pre-checked
891 jvmtiError
892 JvmtiEnv::StopThread(JavaThread* java_thread, jobject exception) {
893 oop e = JNIHandles::resolve_external_guard(exception);
894 NULL_CHECK(e, JVMTI_ERROR_NULL_POINTER);
896 JavaThread::send_async_exception(java_thread->threadObj(), e);
898 return JVMTI_ERROR_NONE;
900 } /* end StopThread */
903 // Threads_lock NOT held
904 // thread - NOT pre-checked
905 jvmtiError
906 JvmtiEnv::InterruptThread(jthread thread) {
907 oop thread_oop = JNIHandles::resolve_external_guard(thread);
908 if (thread_oop == NULL || !thread_oop->is_a(SystemDictionary::Thread_klass()))
909 return JVMTI_ERROR_INVALID_THREAD;
911 JavaThread* current_thread = JavaThread::current();
913 // Todo: this is a duplicate of JVM_Interrupt; share code in future
914 // Ensure that the C++ Thread and OSThread structures aren't freed before we operate
915 MutexLockerEx ml(current_thread->threadObj() == thread_oop ? NULL : Threads_lock);
916 // We need to re-resolve the java_thread, since a GC might have happened during the
917 // acquire of the lock
919 JavaThread* java_thread = java_lang_Thread::thread(JNIHandles::resolve_external_guard(thread));
920 NULL_CHECK(java_thread, JVMTI_ERROR_THREAD_NOT_ALIVE);
922 Thread::interrupt(java_thread);
924 return JVMTI_ERROR_NONE;
925 } /* end InterruptThread */
928 // Threads_lock NOT held
929 // thread - NOT pre-checked
930 // info_ptr - pre-checked for NULL
931 jvmtiError
932 JvmtiEnv::GetThreadInfo(jthread thread, jvmtiThreadInfo* info_ptr) {
933 ResourceMark rm;
934 HandleMark hm;
936 JavaThread* current_thread = JavaThread::current();
938 // if thread is NULL the current thread is used
939 oop thread_oop;
940 if (thread == NULL) {
941 thread_oop = current_thread->threadObj();
942 } else {
943 thread_oop = JNIHandles::resolve_external_guard(thread);
944 }
945 if (thread_oop == NULL || !thread_oop->is_a(SystemDictionary::Thread_klass()))
946 return JVMTI_ERROR_INVALID_THREAD;
948 Handle thread_obj(current_thread, thread_oop);
949 typeArrayHandle name;
950 ThreadPriority priority;
951 Handle thread_group;
952 Handle context_class_loader;
953 bool is_daemon;
955 { MutexLocker mu(Threads_lock);
957 name = typeArrayHandle(current_thread, java_lang_Thread::name(thread_obj()));
958 priority = java_lang_Thread::priority(thread_obj());
959 thread_group = Handle(current_thread, java_lang_Thread::threadGroup(thread_obj()));
960 is_daemon = java_lang_Thread::is_daemon(thread_obj());
962 oop loader = java_lang_Thread::context_class_loader(thread_obj());
963 context_class_loader = Handle(current_thread, loader);
964 }
965 { const char *n;
967 if (name() != NULL) {
968 n = UNICODE::as_utf8((jchar*) name->base(T_CHAR), name->length());
969 } else {
970 n = UNICODE::as_utf8(NULL, 0);
971 }
973 info_ptr->name = (char *) jvmtiMalloc(strlen(n)+1);
974 if (info_ptr->name == NULL)
975 return JVMTI_ERROR_OUT_OF_MEMORY;
977 strcpy(info_ptr->name, n);
978 }
979 info_ptr->is_daemon = is_daemon;
980 info_ptr->priority = priority;
982 info_ptr->context_class_loader = (context_class_loader.is_null()) ? NULL :
983 jni_reference(context_class_loader);
984 info_ptr->thread_group = jni_reference(thread_group);
986 return JVMTI_ERROR_NONE;
987 } /* end GetThreadInfo */
990 // Threads_lock NOT held, java_thread not protected by lock
991 // java_thread - pre-checked
992 // owned_monitor_count_ptr - pre-checked for NULL
993 // owned_monitors_ptr - pre-checked for NULL
994 jvmtiError
995 JvmtiEnv::GetOwnedMonitorInfo(JavaThread* java_thread, jint* owned_monitor_count_ptr, jobject** owned_monitors_ptr) {
996 jvmtiError err = JVMTI_ERROR_NONE;
997 JavaThread* calling_thread = JavaThread::current();
999 // growable array of jvmti monitors info on the C-heap
1000 GrowableArray<jvmtiMonitorStackDepthInfo*> *owned_monitors_list =
1001 new (ResourceObj::C_HEAP, mtInternal) GrowableArray<jvmtiMonitorStackDepthInfo*>(1, true);
1003 uint32_t debug_bits = 0;
1004 if (is_thread_fully_suspended(java_thread, true, &debug_bits)) {
1005 err = get_owned_monitors(calling_thread, java_thread, owned_monitors_list);
1006 } else {
1007 // JVMTI get monitors info at safepoint. Do not require target thread to
1008 // be suspended.
1009 VM_GetOwnedMonitorInfo op(this, calling_thread, java_thread, owned_monitors_list);
1010 VMThread::execute(&op);
1011 err = op.result();
1012 }
1013 jint owned_monitor_count = owned_monitors_list->length();
1014 if (err == JVMTI_ERROR_NONE) {
1015 if ((err = allocate(owned_monitor_count * sizeof(jobject *),
1016 (unsigned char**)owned_monitors_ptr)) == JVMTI_ERROR_NONE) {
1017 // copy into the returned array
1018 for (int i = 0; i < owned_monitor_count; i++) {
1019 (*owned_monitors_ptr)[i] =
1020 ((jvmtiMonitorStackDepthInfo*)owned_monitors_list->at(i))->monitor;
1021 }
1022 *owned_monitor_count_ptr = owned_monitor_count;
1023 }
1024 }
1025 // clean up.
1026 for (int i = 0; i < owned_monitor_count; i++) {
1027 deallocate((unsigned char*)owned_monitors_list->at(i));
1028 }
1029 delete owned_monitors_list;
1031 return err;
1032 } /* end GetOwnedMonitorInfo */
1035 // Threads_lock NOT held, java_thread not protected by lock
1036 // java_thread - pre-checked
1037 // monitor_info_count_ptr - pre-checked for NULL
1038 // monitor_info_ptr - pre-checked for NULL
1039 jvmtiError
1040 JvmtiEnv::GetOwnedMonitorStackDepthInfo(JavaThread* java_thread, jint* monitor_info_count_ptr, jvmtiMonitorStackDepthInfo** monitor_info_ptr) {
1041 jvmtiError err = JVMTI_ERROR_NONE;
1042 JavaThread* calling_thread = JavaThread::current();
1044 // growable array of jvmti monitors info on the C-heap
1045 GrowableArray<jvmtiMonitorStackDepthInfo*> *owned_monitors_list =
1046 new (ResourceObj::C_HEAP, mtInternal) GrowableArray<jvmtiMonitorStackDepthInfo*>(1, true);
1048 uint32_t debug_bits = 0;
1049 if (is_thread_fully_suspended(java_thread, true, &debug_bits)) {
1050 err = get_owned_monitors(calling_thread, java_thread, owned_monitors_list);
1051 } else {
1052 // JVMTI get owned monitors info at safepoint. Do not require target thread to
1053 // be suspended.
1054 VM_GetOwnedMonitorInfo op(this, calling_thread, java_thread, owned_monitors_list);
1055 VMThread::execute(&op);
1056 err = op.result();
1057 }
1059 jint owned_monitor_count = owned_monitors_list->length();
1060 if (err == JVMTI_ERROR_NONE) {
1061 if ((err = allocate(owned_monitor_count * sizeof(jvmtiMonitorStackDepthInfo),
1062 (unsigned char**)monitor_info_ptr)) == JVMTI_ERROR_NONE) {
1063 // copy to output array.
1064 for (int i = 0; i < owned_monitor_count; i++) {
1065 (*monitor_info_ptr)[i].monitor =
1066 ((jvmtiMonitorStackDepthInfo*)owned_monitors_list->at(i))->monitor;
1067 (*monitor_info_ptr)[i].stack_depth =
1068 ((jvmtiMonitorStackDepthInfo*)owned_monitors_list->at(i))->stack_depth;
1069 }
1070 }
1071 *monitor_info_count_ptr = owned_monitor_count;
1072 }
1074 // clean up.
1075 for (int i = 0; i < owned_monitor_count; i++) {
1076 deallocate((unsigned char*)owned_monitors_list->at(i));
1077 }
1078 delete owned_monitors_list;
1080 return err;
1081 } /* end GetOwnedMonitorStackDepthInfo */
1084 // Threads_lock NOT held, java_thread not protected by lock
1085 // java_thread - pre-checked
1086 // monitor_ptr - pre-checked for NULL
1087 jvmtiError
1088 JvmtiEnv::GetCurrentContendedMonitor(JavaThread* java_thread, jobject* monitor_ptr) {
1089 jvmtiError err = JVMTI_ERROR_NONE;
1090 uint32_t debug_bits = 0;
1091 JavaThread* calling_thread = JavaThread::current();
1092 if (is_thread_fully_suspended(java_thread, true, &debug_bits)) {
1093 err = get_current_contended_monitor(calling_thread, java_thread, monitor_ptr);
1094 } else {
1095 // get contended monitor information at safepoint.
1096 VM_GetCurrentContendedMonitor op(this, calling_thread, java_thread, monitor_ptr);
1097 VMThread::execute(&op);
1098 err = op.result();
1099 }
1100 return err;
1101 } /* end GetCurrentContendedMonitor */
1104 // Threads_lock NOT held
1105 // thread - NOT pre-checked
1106 // proc - pre-checked for NULL
1107 // arg - NULL is a valid value, must be checked
1108 jvmtiError
1109 JvmtiEnv::RunAgentThread(jthread thread, jvmtiStartFunction proc, const void* arg, jint priority) {
1110 oop thread_oop = JNIHandles::resolve_external_guard(thread);
1111 if (thread_oop == NULL || !thread_oop->is_a(SystemDictionary::Thread_klass())) {
1112 return JVMTI_ERROR_INVALID_THREAD;
1113 }
1114 if (priority < JVMTI_THREAD_MIN_PRIORITY || priority > JVMTI_THREAD_MAX_PRIORITY) {
1115 return JVMTI_ERROR_INVALID_PRIORITY;
1116 }
1118 //Thread-self
1119 JavaThread* current_thread = JavaThread::current();
1121 Handle thread_hndl(current_thread, thread_oop);
1122 {
1123 MutexLocker mu(Threads_lock); // grab Threads_lock
1125 JvmtiAgentThread *new_thread = new JvmtiAgentThread(this, proc, arg);
1127 // At this point it may be possible that no osthread was created for the
1128 // JavaThread due to lack of memory.
1129 if (new_thread == NULL || new_thread->osthread() == NULL) {
1130 if (new_thread) delete new_thread;
1131 return JVMTI_ERROR_OUT_OF_MEMORY;
1132 }
1134 java_lang_Thread::set_thread(thread_hndl(), new_thread);
1135 java_lang_Thread::set_priority(thread_hndl(), (ThreadPriority)priority);
1136 java_lang_Thread::set_daemon(thread_hndl());
1138 new_thread->set_threadObj(thread_hndl());
1139 Threads::add(new_thread);
1140 Thread::start(new_thread);
1141 } // unlock Threads_lock
1143 return JVMTI_ERROR_NONE;
1144 } /* end RunAgentThread */
1146 //
1147 // Thread Group functions
1148 //
1150 // group_count_ptr - pre-checked for NULL
1151 // groups_ptr - pre-checked for NULL
1152 jvmtiError
1153 JvmtiEnv::GetTopThreadGroups(jint* group_count_ptr, jthreadGroup** groups_ptr) {
1154 JavaThread* current_thread = JavaThread::current();
1156 // Only one top level thread group now.
1157 *group_count_ptr = 1;
1159 // Allocate memory to store global-refs to the thread groups.
1160 // Assume this area is freed by caller.
1161 *groups_ptr = (jthreadGroup *) jvmtiMalloc((sizeof(jthreadGroup)) * (*group_count_ptr));
1163 NULL_CHECK(*groups_ptr, JVMTI_ERROR_OUT_OF_MEMORY);
1165 // Convert oop to Handle, then convert Handle to global-ref.
1166 {
1167 HandleMark hm(current_thread);
1168 Handle system_thread_group(current_thread, Universe::system_thread_group());
1169 *groups_ptr[0] = jni_reference(system_thread_group);
1170 }
1172 return JVMTI_ERROR_NONE;
1173 } /* end GetTopThreadGroups */
1176 // info_ptr - pre-checked for NULL
1177 jvmtiError
1178 JvmtiEnv::GetThreadGroupInfo(jthreadGroup group, jvmtiThreadGroupInfo* info_ptr) {
1179 ResourceMark rm;
1180 HandleMark hm;
1182 JavaThread* current_thread = JavaThread::current();
1184 Handle group_obj (current_thread, JNIHandles::resolve_external_guard(group));
1185 NULL_CHECK(group_obj(), JVMTI_ERROR_INVALID_THREAD_GROUP);
1187 typeArrayHandle name;
1188 Handle parent_group;
1189 bool is_daemon;
1190 ThreadPriority max_priority;
1192 { MutexLocker mu(Threads_lock);
1194 name = typeArrayHandle(current_thread,
1195 java_lang_ThreadGroup::name(group_obj()));
1196 parent_group = Handle(current_thread, java_lang_ThreadGroup::parent(group_obj()));
1197 is_daemon = java_lang_ThreadGroup::is_daemon(group_obj());
1198 max_priority = java_lang_ThreadGroup::maxPriority(group_obj());
1199 }
1201 info_ptr->is_daemon = is_daemon;
1202 info_ptr->max_priority = max_priority;
1203 info_ptr->parent = jni_reference(parent_group);
1205 if (name() != NULL) {
1206 const char* n = UNICODE::as_utf8((jchar*) name->base(T_CHAR), name->length());
1207 info_ptr->name = (char *)jvmtiMalloc(strlen(n)+1);
1208 NULL_CHECK(info_ptr->name, JVMTI_ERROR_OUT_OF_MEMORY);
1209 strcpy(info_ptr->name, n);
1210 } else {
1211 info_ptr->name = NULL;
1212 }
1214 return JVMTI_ERROR_NONE;
1215 } /* end GetThreadGroupInfo */
1218 // thread_count_ptr - pre-checked for NULL
1219 // threads_ptr - pre-checked for NULL
1220 // group_count_ptr - pre-checked for NULL
1221 // groups_ptr - pre-checked for NULL
1222 jvmtiError
1223 JvmtiEnv::GetThreadGroupChildren(jthreadGroup group, jint* thread_count_ptr, jthread** threads_ptr, jint* group_count_ptr, jthreadGroup** groups_ptr) {
1224 JavaThread* current_thread = JavaThread::current();
1225 oop group_obj = (oop) JNIHandles::resolve_external_guard(group);
1226 NULL_CHECK(group_obj, JVMTI_ERROR_INVALID_THREAD_GROUP);
1228 Handle *thread_objs = NULL;
1229 Handle *group_objs = NULL;
1230 int nthreads = 0;
1231 int ngroups = 0;
1232 int hidden_threads = 0;
1234 ResourceMark rm;
1235 HandleMark hm;
1237 Handle group_hdl(current_thread, group_obj);
1239 { MutexLocker mu(Threads_lock);
1241 nthreads = java_lang_ThreadGroup::nthreads(group_hdl());
1242 ngroups = java_lang_ThreadGroup::ngroups(group_hdl());
1244 if (nthreads > 0) {
1245 objArrayOop threads = java_lang_ThreadGroup::threads(group_hdl());
1246 assert(nthreads <= threads->length(), "too many threads");
1247 thread_objs = NEW_RESOURCE_ARRAY(Handle,nthreads);
1248 for (int i=0, j=0; i<nthreads; i++) {
1249 oop thread_obj = threads->obj_at(i);
1250 assert(thread_obj != NULL, "thread_obj is NULL");
1251 JavaThread *javathread = java_lang_Thread::thread(thread_obj);
1252 // Filter out hidden java threads.
1253 if (javathread != NULL && javathread->is_hidden_from_external_view()) {
1254 hidden_threads++;
1255 continue;
1256 }
1257 thread_objs[j++] = Handle(current_thread, thread_obj);
1258 }
1259 nthreads -= hidden_threads;
1260 }
1261 if (ngroups > 0) {
1262 objArrayOop groups = java_lang_ThreadGroup::groups(group_hdl());
1263 assert(ngroups <= groups->length(), "too many threads");
1264 group_objs = NEW_RESOURCE_ARRAY(Handle,ngroups);
1265 for (int i=0; i<ngroups; i++) {
1266 oop group_obj = groups->obj_at(i);
1267 assert(group_obj != NULL, "group_obj != NULL");
1268 group_objs[i] = Handle(current_thread, group_obj);
1269 }
1270 }
1271 }
1273 // have to make global handles outside of Threads_lock
1274 *group_count_ptr = ngroups;
1275 *thread_count_ptr = nthreads;
1276 *threads_ptr = new_jthreadArray(nthreads, thread_objs);
1277 *groups_ptr = new_jthreadGroupArray(ngroups, group_objs);
1278 if ((nthreads > 0) && (*threads_ptr == NULL)) {
1279 return JVMTI_ERROR_OUT_OF_MEMORY;
1280 }
1281 if ((ngroups > 0) && (*groups_ptr == NULL)) {
1282 return JVMTI_ERROR_OUT_OF_MEMORY;
1283 }
1285 return JVMTI_ERROR_NONE;
1286 } /* end GetThreadGroupChildren */
1289 //
1290 // Stack Frame functions
1291 //
1293 // Threads_lock NOT held, java_thread not protected by lock
1294 // java_thread - pre-checked
1295 // max_frame_count - pre-checked to be greater than or equal to 0
1296 // frame_buffer - pre-checked for NULL
1297 // count_ptr - pre-checked for NULL
1298 jvmtiError
1299 JvmtiEnv::GetStackTrace(JavaThread* java_thread, jint start_depth, jint max_frame_count, jvmtiFrameInfo* frame_buffer, jint* count_ptr) {
1300 jvmtiError err = JVMTI_ERROR_NONE;
1301 uint32_t debug_bits = 0;
1302 if (is_thread_fully_suspended(java_thread, true, &debug_bits)) {
1303 err = get_stack_trace(java_thread, start_depth, max_frame_count, frame_buffer, count_ptr);
1304 } else {
1305 // JVMTI get stack trace at safepoint. Do not require target thread to
1306 // be suspended.
1307 VM_GetStackTrace op(this, java_thread, start_depth, max_frame_count, frame_buffer, count_ptr);
1308 VMThread::execute(&op);
1309 err = op.result();
1310 }
1312 return err;
1313 } /* end GetStackTrace */
1316 // max_frame_count - pre-checked to be greater than or equal to 0
1317 // stack_info_ptr - pre-checked for NULL
1318 // thread_count_ptr - pre-checked for NULL
1319 jvmtiError
1320 JvmtiEnv::GetAllStackTraces(jint max_frame_count, jvmtiStackInfo** stack_info_ptr, jint* thread_count_ptr) {
1321 jvmtiError err = JVMTI_ERROR_NONE;
1322 JavaThread* calling_thread = JavaThread::current();
1324 // JVMTI get stack traces at safepoint.
1325 VM_GetAllStackTraces op(this, calling_thread, max_frame_count);
1326 VMThread::execute(&op);
1327 *thread_count_ptr = op.final_thread_count();
1328 *stack_info_ptr = op.stack_info();
1329 err = op.result();
1330 return err;
1331 } /* end GetAllStackTraces */
1334 // thread_count - pre-checked to be greater than or equal to 0
1335 // thread_list - pre-checked for NULL
1336 // max_frame_count - pre-checked to be greater than or equal to 0
1337 // stack_info_ptr - pre-checked for NULL
1338 jvmtiError
1339 JvmtiEnv::GetThreadListStackTraces(jint thread_count, const jthread* thread_list, jint max_frame_count, jvmtiStackInfo** stack_info_ptr) {
1340 jvmtiError err = JVMTI_ERROR_NONE;
1341 // JVMTI get stack traces at safepoint.
1342 VM_GetThreadListStackTraces op(this, thread_count, thread_list, max_frame_count);
1343 VMThread::execute(&op);
1344 err = op.result();
1345 if (err == JVMTI_ERROR_NONE) {
1346 *stack_info_ptr = op.stack_info();
1347 }
1348 return err;
1349 } /* end GetThreadListStackTraces */
1352 // Threads_lock NOT held, java_thread not protected by lock
1353 // java_thread - pre-checked
1354 // count_ptr - pre-checked for NULL
1355 jvmtiError
1356 JvmtiEnv::GetFrameCount(JavaThread* java_thread, jint* count_ptr) {
1357 jvmtiError err = JVMTI_ERROR_NONE;
1359 // retrieve or create JvmtiThreadState.
1360 JvmtiThreadState* state = JvmtiThreadState::state_for(java_thread);
1361 if (state == NULL) {
1362 return JVMTI_ERROR_THREAD_NOT_ALIVE;
1363 }
1364 uint32_t debug_bits = 0;
1365 if (is_thread_fully_suspended(java_thread, true, &debug_bits)) {
1366 err = get_frame_count(state, count_ptr);
1367 } else {
1368 // get java stack frame count at safepoint.
1369 VM_GetFrameCount op(this, state, count_ptr);
1370 VMThread::execute(&op);
1371 err = op.result();
1372 }
1373 return err;
1374 } /* end GetFrameCount */
1377 // Threads_lock NOT held, java_thread not protected by lock
1378 // java_thread - pre-checked
1379 jvmtiError
1380 JvmtiEnv::PopFrame(JavaThread* java_thread) {
1381 JavaThread* current_thread = JavaThread::current();
1382 HandleMark hm(current_thread);
1383 uint32_t debug_bits = 0;
1385 // retrieve or create the state
1386 JvmtiThreadState* state = JvmtiThreadState::state_for(java_thread);
1387 if (state == NULL) {
1388 return JVMTI_ERROR_THREAD_NOT_ALIVE;
1389 }
1391 // Check if java_thread is fully suspended
1392 if (!is_thread_fully_suspended(java_thread, true /* wait for suspend completion */, &debug_bits)) {
1393 return JVMTI_ERROR_THREAD_NOT_SUSPENDED;
1394 }
1395 // Check to see if a PopFrame was already in progress
1396 if (java_thread->popframe_condition() != JavaThread::popframe_inactive) {
1397 // Probably possible for JVMTI clients to trigger this, but the
1398 // JPDA backend shouldn't allow this to happen
1399 return JVMTI_ERROR_INTERNAL;
1400 }
1402 {
1403 // Was workaround bug
1404 // 4812902: popFrame hangs if the method is waiting at a synchronize
1405 // Catch this condition and return an error to avoid hanging.
1406 // Now JVMTI spec allows an implementation to bail out with an opaque frame error.
1407 OSThread* osThread = java_thread->osthread();
1408 if (osThread->get_state() == MONITOR_WAIT) {
1409 return JVMTI_ERROR_OPAQUE_FRAME;
1410 }
1411 }
1413 {
1414 ResourceMark rm(current_thread);
1415 // Check if there are more than one Java frame in this thread, that the top two frames
1416 // are Java (not native) frames, and that there is no intervening VM frame
1417 int frame_count = 0;
1418 bool is_interpreted[2];
1419 intptr_t *frame_sp[2];
1420 // The 2-nd arg of constructor is needed to stop iterating at java entry frame.
1421 for (vframeStream vfs(java_thread, true); !vfs.at_end(); vfs.next()) {
1422 methodHandle mh(current_thread, vfs.method());
1423 if (mh->is_native()) return(JVMTI_ERROR_OPAQUE_FRAME);
1424 is_interpreted[frame_count] = vfs.is_interpreted_frame();
1425 frame_sp[frame_count] = vfs.frame_id();
1426 if (++frame_count > 1) break;
1427 }
1428 if (frame_count < 2) {
1429 // We haven't found two adjacent non-native Java frames on the top.
1430 // There can be two situations here:
1431 // 1. There are no more java frames
1432 // 2. Two top java frames are separated by non-java native frames
1433 if(vframeFor(java_thread, 1) == NULL) {
1434 return JVMTI_ERROR_NO_MORE_FRAMES;
1435 } else {
1436 // Intervening non-java native or VM frames separate java frames.
1437 // Current implementation does not support this. See bug #5031735.
1438 // In theory it is possible to pop frames in such cases.
1439 return JVMTI_ERROR_OPAQUE_FRAME;
1440 }
1441 }
1443 // If any of the top 2 frames is a compiled one, need to deoptimize it
1444 for (int i = 0; i < 2; i++) {
1445 if (!is_interpreted[i]) {
1446 Deoptimization::deoptimize_frame(java_thread, frame_sp[i]);
1447 }
1448 }
1450 // Update the thread state to reflect that the top frame is popped
1451 // so that cur_stack_depth is maintained properly and all frameIDs
1452 // are invalidated.
1453 // The current frame will be popped later when the suspended thread
1454 // is resumed and right before returning from VM to Java.
1455 // (see call_VM_base() in assembler_<cpu>.cpp).
1457 // It's fine to update the thread state here because no JVMTI events
1458 // shall be posted for this PopFrame.
1460 state->update_for_pop_top_frame();
1461 java_thread->set_popframe_condition(JavaThread::popframe_pending_bit);
1462 // Set pending step flag for this popframe and it is cleared when next
1463 // step event is posted.
1464 state->set_pending_step_for_popframe();
1465 }
1467 return JVMTI_ERROR_NONE;
1468 } /* end PopFrame */
1471 // Threads_lock NOT held, java_thread not protected by lock
1472 // java_thread - pre-checked
1473 // java_thread - unchecked
1474 // depth - pre-checked as non-negative
1475 // method_ptr - pre-checked for NULL
1476 // location_ptr - pre-checked for NULL
1477 jvmtiError
1478 JvmtiEnv::GetFrameLocation(JavaThread* java_thread, jint depth, jmethodID* method_ptr, jlocation* location_ptr) {
1479 jvmtiError err = JVMTI_ERROR_NONE;
1480 uint32_t debug_bits = 0;
1482 if (is_thread_fully_suspended(java_thread, true, &debug_bits)) {
1483 err = get_frame_location(java_thread, depth, method_ptr, location_ptr);
1484 } else {
1485 // JVMTI get java stack frame location at safepoint.
1486 VM_GetFrameLocation op(this, java_thread, depth, method_ptr, location_ptr);
1487 VMThread::execute(&op);
1488 err = op.result();
1489 }
1490 return err;
1491 } /* end GetFrameLocation */
1494 // Threads_lock NOT held, java_thread not protected by lock
1495 // java_thread - pre-checked
1496 // java_thread - unchecked
1497 // depth - pre-checked as non-negative
1498 jvmtiError
1499 JvmtiEnv::NotifyFramePop(JavaThread* java_thread, jint depth) {
1500 ResourceMark rm;
1501 uint32_t debug_bits = 0;
1503 JvmtiThreadState *state = JvmtiThreadState::state_for(java_thread);
1504 if (state == NULL) {
1505 return JVMTI_ERROR_THREAD_NOT_ALIVE;
1506 }
1508 if (!JvmtiEnv::is_thread_fully_suspended(java_thread, true, &debug_bits)) {
1509 return JVMTI_ERROR_THREAD_NOT_SUSPENDED;
1510 }
1512 if (TraceJVMTICalls) {
1513 JvmtiSuspendControl::print();
1514 }
1516 vframe *vf = vframeFor(java_thread, depth);
1517 if (vf == NULL) {
1518 return JVMTI_ERROR_NO_MORE_FRAMES;
1519 }
1521 if (!vf->is_java_frame() || ((javaVFrame*) vf)->method()->is_native()) {
1522 return JVMTI_ERROR_OPAQUE_FRAME;
1523 }
1525 assert(vf->frame_pointer() != NULL, "frame pointer mustn't be NULL");
1527 int frame_number = state->count_frames() - depth;
1528 state->env_thread_state(this)->set_frame_pop(frame_number);
1530 return JVMTI_ERROR_NONE;
1531 } /* end NotifyFramePop */
1534 //
1535 // Force Early Return functions
1536 //
1538 // Threads_lock NOT held, java_thread not protected by lock
1539 // java_thread - pre-checked
1540 jvmtiError
1541 JvmtiEnv::ForceEarlyReturnObject(JavaThread* java_thread, jobject value) {
1542 jvalue val;
1543 val.l = value;
1544 return force_early_return(java_thread, val, atos);
1545 } /* end ForceEarlyReturnObject */
1548 // Threads_lock NOT held, java_thread not protected by lock
1549 // java_thread - pre-checked
1550 jvmtiError
1551 JvmtiEnv::ForceEarlyReturnInt(JavaThread* java_thread, jint value) {
1552 jvalue val;
1553 val.i = value;
1554 return force_early_return(java_thread, val, itos);
1555 } /* end ForceEarlyReturnInt */
1558 // Threads_lock NOT held, java_thread not protected by lock
1559 // java_thread - pre-checked
1560 jvmtiError
1561 JvmtiEnv::ForceEarlyReturnLong(JavaThread* java_thread, jlong value) {
1562 jvalue val;
1563 val.j = value;
1564 return force_early_return(java_thread, val, ltos);
1565 } /* end ForceEarlyReturnLong */
1568 // Threads_lock NOT held, java_thread not protected by lock
1569 // java_thread - pre-checked
1570 jvmtiError
1571 JvmtiEnv::ForceEarlyReturnFloat(JavaThread* java_thread, jfloat value) {
1572 jvalue val;
1573 val.f = value;
1574 return force_early_return(java_thread, val, ftos);
1575 } /* end ForceEarlyReturnFloat */
1578 // Threads_lock NOT held, java_thread not protected by lock
1579 // java_thread - pre-checked
1580 jvmtiError
1581 JvmtiEnv::ForceEarlyReturnDouble(JavaThread* java_thread, jdouble value) {
1582 jvalue val;
1583 val.d = value;
1584 return force_early_return(java_thread, val, dtos);
1585 } /* end ForceEarlyReturnDouble */
1588 // Threads_lock NOT held, java_thread not protected by lock
1589 // java_thread - pre-checked
1590 jvmtiError
1591 JvmtiEnv::ForceEarlyReturnVoid(JavaThread* java_thread) {
1592 jvalue val;
1593 val.j = 0L;
1594 return force_early_return(java_thread, val, vtos);
1595 } /* end ForceEarlyReturnVoid */
1598 //
1599 // Heap functions
1600 //
1602 // klass - NULL is a valid value, must be checked
1603 // initial_object - NULL is a valid value, must be checked
1604 // callbacks - pre-checked for NULL
1605 // user_data - NULL is a valid value, must be checked
1606 jvmtiError
1607 JvmtiEnv::FollowReferences(jint heap_filter, jclass klass, jobject initial_object, const jvmtiHeapCallbacks* callbacks, const void* user_data) {
1608 // check klass if provided
1609 Klass* k_oop = NULL;
1610 if (klass != NULL) {
1611 oop k_mirror = JNIHandles::resolve_external_guard(klass);
1612 if (k_mirror == NULL) {
1613 return JVMTI_ERROR_INVALID_CLASS;
1614 }
1615 if (java_lang_Class::is_primitive(k_mirror)) {
1616 return JVMTI_ERROR_NONE;
1617 }
1618 k_oop = java_lang_Class::as_Klass(k_mirror);
1619 if (k_oop == NULL) {
1620 return JVMTI_ERROR_INVALID_CLASS;
1621 }
1622 }
1624 Thread *thread = Thread::current();
1625 HandleMark hm(thread);
1626 KlassHandle kh (thread, k_oop);
1628 TraceTime t("FollowReferences", TraceJVMTIObjectTagging);
1629 JvmtiTagMap::tag_map_for(this)->follow_references(heap_filter, kh, initial_object, callbacks, user_data);
1630 return JVMTI_ERROR_NONE;
1631 } /* end FollowReferences */
1634 // klass - NULL is a valid value, must be checked
1635 // callbacks - pre-checked for NULL
1636 // user_data - NULL is a valid value, must be checked
1637 jvmtiError
1638 JvmtiEnv::IterateThroughHeap(jint heap_filter, jclass klass, const jvmtiHeapCallbacks* callbacks, const void* user_data) {
1639 // check klass if provided
1640 Klass* k_oop = NULL;
1641 if (klass != NULL) {
1642 oop k_mirror = JNIHandles::resolve_external_guard(klass);
1643 if (k_mirror == NULL) {
1644 return JVMTI_ERROR_INVALID_CLASS;
1645 }
1646 if (java_lang_Class::is_primitive(k_mirror)) {
1647 return JVMTI_ERROR_NONE;
1648 }
1649 k_oop = java_lang_Class::as_Klass(k_mirror);
1650 if (k_oop == NULL) {
1651 return JVMTI_ERROR_INVALID_CLASS;
1652 }
1653 }
1655 Thread *thread = Thread::current();
1656 HandleMark hm(thread);
1657 KlassHandle kh (thread, k_oop);
1659 TraceTime t("IterateThroughHeap", TraceJVMTIObjectTagging);
1660 JvmtiTagMap::tag_map_for(this)->iterate_through_heap(heap_filter, kh, callbacks, user_data);
1661 return JVMTI_ERROR_NONE;
1662 } /* end IterateThroughHeap */
1665 // tag_ptr - pre-checked for NULL
1666 jvmtiError
1667 JvmtiEnv::GetTag(jobject object, jlong* tag_ptr) {
1668 oop o = JNIHandles::resolve_external_guard(object);
1669 NULL_CHECK(o, JVMTI_ERROR_INVALID_OBJECT);
1670 *tag_ptr = JvmtiTagMap::tag_map_for(this)->get_tag(object);
1671 return JVMTI_ERROR_NONE;
1672 } /* end GetTag */
1675 jvmtiError
1676 JvmtiEnv::SetTag(jobject object, jlong tag) {
1677 oop o = JNIHandles::resolve_external_guard(object);
1678 NULL_CHECK(o, JVMTI_ERROR_INVALID_OBJECT);
1679 JvmtiTagMap::tag_map_for(this)->set_tag(object, tag);
1680 return JVMTI_ERROR_NONE;
1681 } /* end SetTag */
1684 // tag_count - pre-checked to be greater than or equal to 0
1685 // tags - pre-checked for NULL
1686 // count_ptr - pre-checked for NULL
1687 // object_result_ptr - NULL is a valid value, must be checked
1688 // tag_result_ptr - NULL is a valid value, must be checked
1689 jvmtiError
1690 JvmtiEnv::GetObjectsWithTags(jint tag_count, const jlong* tags, jint* count_ptr, jobject** object_result_ptr, jlong** tag_result_ptr) {
1691 TraceTime t("GetObjectsWithTags", TraceJVMTIObjectTagging);
1692 return JvmtiTagMap::tag_map_for(this)->get_objects_with_tags((jlong*)tags, tag_count, count_ptr, object_result_ptr, tag_result_ptr);
1693 } /* end GetObjectsWithTags */
1696 jvmtiError
1697 JvmtiEnv::ForceGarbageCollection() {
1698 Universe::heap()->collect(GCCause::_jvmti_force_gc);
1699 return JVMTI_ERROR_NONE;
1700 } /* end ForceGarbageCollection */
1703 //
1704 // Heap (1.0) functions
1705 //
1707 // object_reference_callback - pre-checked for NULL
1708 // user_data - NULL is a valid value, must be checked
1709 jvmtiError
1710 JvmtiEnv::IterateOverObjectsReachableFromObject(jobject object, jvmtiObjectReferenceCallback object_reference_callback, const void* user_data) {
1711 oop o = JNIHandles::resolve_external_guard(object);
1712 NULL_CHECK(o, JVMTI_ERROR_INVALID_OBJECT);
1713 JvmtiTagMap::tag_map_for(this)->iterate_over_objects_reachable_from_object(object, object_reference_callback, user_data);
1714 return JVMTI_ERROR_NONE;
1715 } /* end IterateOverObjectsReachableFromObject */
1718 // heap_root_callback - NULL is a valid value, must be checked
1719 // stack_ref_callback - NULL is a valid value, must be checked
1720 // object_ref_callback - NULL is a valid value, must be checked
1721 // user_data - NULL is a valid value, must be checked
1722 jvmtiError
1723 JvmtiEnv::IterateOverReachableObjects(jvmtiHeapRootCallback heap_root_callback, jvmtiStackReferenceCallback stack_ref_callback, jvmtiObjectReferenceCallback object_ref_callback, const void* user_data) {
1724 TraceTime t("IterateOverReachableObjects", TraceJVMTIObjectTagging);
1725 JvmtiTagMap::tag_map_for(this)->iterate_over_reachable_objects(heap_root_callback, stack_ref_callback, object_ref_callback, user_data);
1726 return JVMTI_ERROR_NONE;
1727 } /* end IterateOverReachableObjects */
1730 // heap_object_callback - pre-checked for NULL
1731 // user_data - NULL is a valid value, must be checked
1732 jvmtiError
1733 JvmtiEnv::IterateOverHeap(jvmtiHeapObjectFilter object_filter, jvmtiHeapObjectCallback heap_object_callback, const void* user_data) {
1734 TraceTime t("IterateOverHeap", TraceJVMTIObjectTagging);
1735 Thread *thread = Thread::current();
1736 HandleMark hm(thread);
1737 JvmtiTagMap::tag_map_for(this)->iterate_over_heap(object_filter, KlassHandle(), heap_object_callback, user_data);
1738 return JVMTI_ERROR_NONE;
1739 } /* end IterateOverHeap */
1742 // k_mirror - may be primitive, this must be checked
1743 // heap_object_callback - pre-checked for NULL
1744 // user_data - NULL is a valid value, must be checked
1745 jvmtiError
1746 JvmtiEnv::IterateOverInstancesOfClass(oop k_mirror, jvmtiHeapObjectFilter object_filter, jvmtiHeapObjectCallback heap_object_callback, const void* user_data) {
1747 if (java_lang_Class::is_primitive(k_mirror)) {
1748 // DO PRIMITIVE CLASS PROCESSING
1749 return JVMTI_ERROR_NONE;
1750 }
1751 Klass* k_oop = java_lang_Class::as_Klass(k_mirror);
1752 if (k_oop == NULL) {
1753 return JVMTI_ERROR_INVALID_CLASS;
1754 }
1755 Thread *thread = Thread::current();
1756 HandleMark hm(thread);
1757 KlassHandle klass (thread, k_oop);
1758 TraceTime t("IterateOverInstancesOfClass", TraceJVMTIObjectTagging);
1759 JvmtiTagMap::tag_map_for(this)->iterate_over_heap(object_filter, klass, heap_object_callback, user_data);
1760 return JVMTI_ERROR_NONE;
1761 } /* end IterateOverInstancesOfClass */
1764 //
1765 // Local Variable functions
1766 //
1768 // Threads_lock NOT held, java_thread not protected by lock
1769 // java_thread - pre-checked
1770 // java_thread - unchecked
1771 // depth - pre-checked as non-negative
1772 // value_ptr - pre-checked for NULL
1773 jvmtiError
1774 JvmtiEnv::GetLocalObject(JavaThread* java_thread, jint depth, jint slot, jobject* value_ptr) {
1775 JavaThread* current_thread = JavaThread::current();
1776 // rm object is created to clean up the javaVFrame created in
1777 // doit_prologue(), but after doit() is finished with it.
1778 ResourceMark rm(current_thread);
1780 VM_GetOrSetLocal op(java_thread, current_thread, depth, slot);
1781 VMThread::execute(&op);
1782 jvmtiError err = op.result();
1783 if (err != JVMTI_ERROR_NONE) {
1784 return err;
1785 } else {
1786 *value_ptr = op.value().l;
1787 return JVMTI_ERROR_NONE;
1788 }
1789 } /* end GetLocalObject */
1791 // Threads_lock NOT held, java_thread not protected by lock
1792 // java_thread - pre-checked
1793 // java_thread - unchecked
1794 // depth - pre-checked as non-negative
1795 // value - pre-checked for NULL
1796 jvmtiError
1797 JvmtiEnv::GetLocalInstance(JavaThread* java_thread, jint depth, jobject* value_ptr){
1798 JavaThread* current_thread = JavaThread::current();
1799 // rm object is created to clean up the javaVFrame created in
1800 // doit_prologue(), but after doit() is finished with it.
1801 ResourceMark rm(current_thread);
1803 VM_GetReceiver op(java_thread, current_thread, depth);
1804 VMThread::execute(&op);
1805 jvmtiError err = op.result();
1806 if (err != JVMTI_ERROR_NONE) {
1807 return err;
1808 } else {
1809 *value_ptr = op.value().l;
1810 return JVMTI_ERROR_NONE;
1811 }
1812 } /* end GetLocalInstance */
1815 // Threads_lock NOT held, java_thread not protected by lock
1816 // java_thread - pre-checked
1817 // java_thread - unchecked
1818 // depth - pre-checked as non-negative
1819 // value_ptr - pre-checked for NULL
1820 jvmtiError
1821 JvmtiEnv::GetLocalInt(JavaThread* java_thread, jint depth, jint slot, jint* value_ptr) {
1822 // rm object is created to clean up the javaVFrame created in
1823 // doit_prologue(), but after doit() is finished with it.
1824 ResourceMark rm;
1826 VM_GetOrSetLocal op(java_thread, depth, slot, T_INT);
1827 VMThread::execute(&op);
1828 *value_ptr = op.value().i;
1829 return op.result();
1830 } /* end GetLocalInt */
1833 // Threads_lock NOT held, java_thread not protected by lock
1834 // java_thread - pre-checked
1835 // java_thread - unchecked
1836 // depth - pre-checked as non-negative
1837 // value_ptr - pre-checked for NULL
1838 jvmtiError
1839 JvmtiEnv::GetLocalLong(JavaThread* java_thread, jint depth, jint slot, jlong* value_ptr) {
1840 // rm object is created to clean up the javaVFrame created in
1841 // doit_prologue(), but after doit() is finished with it.
1842 ResourceMark rm;
1844 VM_GetOrSetLocal op(java_thread, depth, slot, T_LONG);
1845 VMThread::execute(&op);
1846 *value_ptr = op.value().j;
1847 return op.result();
1848 } /* end GetLocalLong */
1851 // Threads_lock NOT held, java_thread not protected by lock
1852 // java_thread - pre-checked
1853 // java_thread - unchecked
1854 // depth - pre-checked as non-negative
1855 // value_ptr - pre-checked for NULL
1856 jvmtiError
1857 JvmtiEnv::GetLocalFloat(JavaThread* java_thread, jint depth, jint slot, jfloat* value_ptr) {
1858 // rm object is created to clean up the javaVFrame created in
1859 // doit_prologue(), but after doit() is finished with it.
1860 ResourceMark rm;
1862 VM_GetOrSetLocal op(java_thread, depth, slot, T_FLOAT);
1863 VMThread::execute(&op);
1864 *value_ptr = op.value().f;
1865 return op.result();
1866 } /* end GetLocalFloat */
1869 // Threads_lock NOT held, java_thread not protected by lock
1870 // java_thread - pre-checked
1871 // java_thread - unchecked
1872 // depth - pre-checked as non-negative
1873 // value_ptr - pre-checked for NULL
1874 jvmtiError
1875 JvmtiEnv::GetLocalDouble(JavaThread* java_thread, jint depth, jint slot, jdouble* value_ptr) {
1876 // rm object is created to clean up the javaVFrame created in
1877 // doit_prologue(), but after doit() is finished with it.
1878 ResourceMark rm;
1880 VM_GetOrSetLocal op(java_thread, depth, slot, T_DOUBLE);
1881 VMThread::execute(&op);
1882 *value_ptr = op.value().d;
1883 return op.result();
1884 } /* end GetLocalDouble */
1887 // Threads_lock NOT held, java_thread not protected by lock
1888 // java_thread - pre-checked
1889 // java_thread - unchecked
1890 // depth - pre-checked as non-negative
1891 jvmtiError
1892 JvmtiEnv::SetLocalObject(JavaThread* java_thread, jint depth, jint slot, jobject value) {
1893 // rm object is created to clean up the javaVFrame created in
1894 // doit_prologue(), but after doit() is finished with it.
1895 ResourceMark rm;
1896 jvalue val;
1897 val.l = value;
1898 VM_GetOrSetLocal op(java_thread, depth, slot, T_OBJECT, val);
1899 VMThread::execute(&op);
1900 return op.result();
1901 } /* end SetLocalObject */
1904 // Threads_lock NOT held, java_thread not protected by lock
1905 // java_thread - pre-checked
1906 // java_thread - unchecked
1907 // depth - pre-checked as non-negative
1908 jvmtiError
1909 JvmtiEnv::SetLocalInt(JavaThread* java_thread, jint depth, jint slot, jint value) {
1910 // rm object is created to clean up the javaVFrame created in
1911 // doit_prologue(), but after doit() is finished with it.
1912 ResourceMark rm;
1913 jvalue val;
1914 val.i = value;
1915 VM_GetOrSetLocal op(java_thread, depth, slot, T_INT, val);
1916 VMThread::execute(&op);
1917 return op.result();
1918 } /* end SetLocalInt */
1921 // Threads_lock NOT held, java_thread not protected by lock
1922 // java_thread - pre-checked
1923 // java_thread - unchecked
1924 // depth - pre-checked as non-negative
1925 jvmtiError
1926 JvmtiEnv::SetLocalLong(JavaThread* java_thread, jint depth, jint slot, jlong value) {
1927 // rm object is created to clean up the javaVFrame created in
1928 // doit_prologue(), but after doit() is finished with it.
1929 ResourceMark rm;
1930 jvalue val;
1931 val.j = value;
1932 VM_GetOrSetLocal op(java_thread, depth, slot, T_LONG, val);
1933 VMThread::execute(&op);
1934 return op.result();
1935 } /* end SetLocalLong */
1938 // Threads_lock NOT held, java_thread not protected by lock
1939 // java_thread - pre-checked
1940 // java_thread - unchecked
1941 // depth - pre-checked as non-negative
1942 jvmtiError
1943 JvmtiEnv::SetLocalFloat(JavaThread* java_thread, jint depth, jint slot, jfloat value) {
1944 // rm object is created to clean up the javaVFrame created in
1945 // doit_prologue(), but after doit() is finished with it.
1946 ResourceMark rm;
1947 jvalue val;
1948 val.f = value;
1949 VM_GetOrSetLocal op(java_thread, depth, slot, T_FLOAT, val);
1950 VMThread::execute(&op);
1951 return op.result();
1952 } /* end SetLocalFloat */
1955 // Threads_lock NOT held, java_thread not protected by lock
1956 // java_thread - pre-checked
1957 // java_thread - unchecked
1958 // depth - pre-checked as non-negative
1959 jvmtiError
1960 JvmtiEnv::SetLocalDouble(JavaThread* java_thread, jint depth, jint slot, jdouble value) {
1961 // rm object is created to clean up the javaVFrame created in
1962 // doit_prologue(), but after doit() is finished with it.
1963 ResourceMark rm;
1964 jvalue val;
1965 val.d = value;
1966 VM_GetOrSetLocal op(java_thread, depth, slot, T_DOUBLE, val);
1967 VMThread::execute(&op);
1968 return op.result();
1969 } /* end SetLocalDouble */
1972 //
1973 // Breakpoint functions
1974 //
1976 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
1977 jvmtiError
1978 JvmtiEnv::SetBreakpoint(Method* method_oop, jlocation location) {
1979 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
1980 if (location < 0) { // simple invalid location check first
1981 return JVMTI_ERROR_INVALID_LOCATION;
1982 }
1983 // verify that the breakpoint is not past the end of the method
1984 if (location >= (jlocation) method_oop->code_size()) {
1985 return JVMTI_ERROR_INVALID_LOCATION;
1986 }
1988 ResourceMark rm;
1989 JvmtiBreakpoint bp(method_oop, location);
1990 JvmtiBreakpoints& jvmti_breakpoints = JvmtiCurrentBreakpoints::get_jvmti_breakpoints();
1991 if (jvmti_breakpoints.set(bp) == JVMTI_ERROR_DUPLICATE)
1992 return JVMTI_ERROR_DUPLICATE;
1994 if (TraceJVMTICalls) {
1995 jvmti_breakpoints.print();
1996 }
1998 return JVMTI_ERROR_NONE;
1999 } /* end SetBreakpoint */
2002 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2003 jvmtiError
2004 JvmtiEnv::ClearBreakpoint(Method* method_oop, jlocation location) {
2005 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2007 if (location < 0) { // simple invalid location check first
2008 return JVMTI_ERROR_INVALID_LOCATION;
2009 }
2011 // verify that the breakpoint is not past the end of the method
2012 if (location >= (jlocation) method_oop->code_size()) {
2013 return JVMTI_ERROR_INVALID_LOCATION;
2014 }
2016 JvmtiBreakpoint bp(method_oop, location);
2018 JvmtiBreakpoints& jvmti_breakpoints = JvmtiCurrentBreakpoints::get_jvmti_breakpoints();
2019 if (jvmti_breakpoints.clear(bp) == JVMTI_ERROR_NOT_FOUND)
2020 return JVMTI_ERROR_NOT_FOUND;
2022 if (TraceJVMTICalls) {
2023 jvmti_breakpoints.print();
2024 }
2026 return JVMTI_ERROR_NONE;
2027 } /* end ClearBreakpoint */
2030 //
2031 // Watched Field functions
2032 //
2034 jvmtiError
2035 JvmtiEnv::SetFieldAccessWatch(fieldDescriptor* fdesc_ptr) {
2036 // make sure we haven't set this watch before
2037 if (fdesc_ptr->is_field_access_watched()) return JVMTI_ERROR_DUPLICATE;
2038 fdesc_ptr->set_is_field_access_watched(true);
2040 JvmtiEventController::change_field_watch(JVMTI_EVENT_FIELD_ACCESS, true);
2042 return JVMTI_ERROR_NONE;
2043 } /* end SetFieldAccessWatch */
2046 jvmtiError
2047 JvmtiEnv::ClearFieldAccessWatch(fieldDescriptor* fdesc_ptr) {
2048 // make sure we have a watch to clear
2049 if (!fdesc_ptr->is_field_access_watched()) return JVMTI_ERROR_NOT_FOUND;
2050 fdesc_ptr->set_is_field_access_watched(false);
2052 JvmtiEventController::change_field_watch(JVMTI_EVENT_FIELD_ACCESS, false);
2054 return JVMTI_ERROR_NONE;
2055 } /* end ClearFieldAccessWatch */
2058 jvmtiError
2059 JvmtiEnv::SetFieldModificationWatch(fieldDescriptor* fdesc_ptr) {
2060 // make sure we haven't set this watch before
2061 if (fdesc_ptr->is_field_modification_watched()) return JVMTI_ERROR_DUPLICATE;
2062 fdesc_ptr->set_is_field_modification_watched(true);
2064 JvmtiEventController::change_field_watch(JVMTI_EVENT_FIELD_MODIFICATION, true);
2066 return JVMTI_ERROR_NONE;
2067 } /* end SetFieldModificationWatch */
2070 jvmtiError
2071 JvmtiEnv::ClearFieldModificationWatch(fieldDescriptor* fdesc_ptr) {
2072 // make sure we have a watch to clear
2073 if (!fdesc_ptr->is_field_modification_watched()) return JVMTI_ERROR_NOT_FOUND;
2074 fdesc_ptr->set_is_field_modification_watched(false);
2076 JvmtiEventController::change_field_watch(JVMTI_EVENT_FIELD_MODIFICATION, false);
2078 return JVMTI_ERROR_NONE;
2079 } /* end ClearFieldModificationWatch */
2081 //
2082 // Class functions
2083 //
2086 // k_mirror - may be primitive, this must be checked
2087 // signature_ptr - NULL is a valid value, must be checked
2088 // generic_ptr - NULL is a valid value, must be checked
2089 jvmtiError
2090 JvmtiEnv::GetClassSignature(oop k_mirror, char** signature_ptr, char** generic_ptr) {
2091 ResourceMark rm;
2092 bool isPrimitive = java_lang_Class::is_primitive(k_mirror);
2093 Klass* k = NULL;
2094 if (!isPrimitive) {
2095 k = java_lang_Class::as_Klass(k_mirror);
2096 NULL_CHECK(k, JVMTI_ERROR_INVALID_CLASS);
2097 }
2098 if (signature_ptr != NULL) {
2099 char* result = NULL;
2100 if (isPrimitive) {
2101 char tchar = type2char(java_lang_Class::primitive_type(k_mirror));
2102 result = (char*) jvmtiMalloc(2);
2103 result[0] = tchar;
2104 result[1] = '\0';
2105 } else {
2106 const char* class_sig = k->signature_name();
2107 result = (char *) jvmtiMalloc(strlen(class_sig)+1);
2108 strcpy(result, class_sig);
2109 }
2110 *signature_ptr = result;
2111 }
2112 if (generic_ptr != NULL) {
2113 *generic_ptr = NULL;
2114 if (!isPrimitive && k->oop_is_instance()) {
2115 Symbol* soo = InstanceKlass::cast(k)->generic_signature();
2116 if (soo != NULL) {
2117 const char *gen_sig = soo->as_C_string();
2118 if (gen_sig != NULL) {
2119 char* gen_result;
2120 jvmtiError err = allocate(strlen(gen_sig) + 1,
2121 (unsigned char **)&gen_result);
2122 if (err != JVMTI_ERROR_NONE) {
2123 return err;
2124 }
2125 strcpy(gen_result, gen_sig);
2126 *generic_ptr = gen_result;
2127 }
2128 }
2129 }
2130 }
2131 return JVMTI_ERROR_NONE;
2132 } /* end GetClassSignature */
2135 // k_mirror - may be primitive, this must be checked
2136 // status_ptr - pre-checked for NULL
2137 jvmtiError
2138 JvmtiEnv::GetClassStatus(oop k_mirror, jint* status_ptr) {
2139 jint result = 0;
2140 if (java_lang_Class::is_primitive(k_mirror)) {
2141 result |= JVMTI_CLASS_STATUS_PRIMITIVE;
2142 } else {
2143 Klass* k = java_lang_Class::as_Klass(k_mirror);
2144 NULL_CHECK(k, JVMTI_ERROR_INVALID_CLASS);
2145 result = k->jvmti_class_status();
2146 }
2147 *status_ptr = result;
2149 return JVMTI_ERROR_NONE;
2150 } /* end GetClassStatus */
2153 // k_mirror - may be primitive, this must be checked
2154 // source_name_ptr - pre-checked for NULL
2155 jvmtiError
2156 JvmtiEnv::GetSourceFileName(oop k_mirror, char** source_name_ptr) {
2157 if (java_lang_Class::is_primitive(k_mirror)) {
2158 return JVMTI_ERROR_ABSENT_INFORMATION;
2159 }
2160 Klass* k_klass = java_lang_Class::as_Klass(k_mirror);
2161 NULL_CHECK(k_klass, JVMTI_ERROR_INVALID_CLASS);
2163 if (!k_klass->oop_is_instance()) {
2164 return JVMTI_ERROR_ABSENT_INFORMATION;
2165 }
2167 Symbol* sfnOop = InstanceKlass::cast(k_klass)->source_file_name();
2168 NULL_CHECK(sfnOop, JVMTI_ERROR_ABSENT_INFORMATION);
2169 {
2170 JavaThread* current_thread = JavaThread::current();
2171 ResourceMark rm(current_thread);
2172 const char* sfncp = (const char*) sfnOop->as_C_string();
2173 *source_name_ptr = (char *) jvmtiMalloc(strlen(sfncp)+1);
2174 strcpy(*source_name_ptr, sfncp);
2175 }
2177 return JVMTI_ERROR_NONE;
2178 } /* end GetSourceFileName */
2181 // k_mirror - may be primitive, this must be checked
2182 // modifiers_ptr - pre-checked for NULL
2183 jvmtiError
2184 JvmtiEnv::GetClassModifiers(oop k_mirror, jint* modifiers_ptr) {
2185 JavaThread* current_thread = JavaThread::current();
2186 jint result = 0;
2187 if (!java_lang_Class::is_primitive(k_mirror)) {
2188 Klass* k = java_lang_Class::as_Klass(k_mirror);
2189 NULL_CHECK(k, JVMTI_ERROR_INVALID_CLASS);
2190 result = k->compute_modifier_flags(current_thread);
2191 JavaThread* THREAD = current_thread; // pass to macros
2192 if (HAS_PENDING_EXCEPTION) {
2193 CLEAR_PENDING_EXCEPTION;
2194 return JVMTI_ERROR_INTERNAL;
2195 };
2197 // Reset the deleted ACC_SUPER bit ( deleted in compute_modifier_flags()).
2198 if(k->is_super()) {
2199 result |= JVM_ACC_SUPER;
2200 }
2201 } else {
2202 result = (JVM_ACC_ABSTRACT | JVM_ACC_FINAL | JVM_ACC_PUBLIC);
2203 }
2204 *modifiers_ptr = result;
2206 return JVMTI_ERROR_NONE;
2207 } /* end GetClassModifiers */
2210 // k_mirror - may be primitive, this must be checked
2211 // method_count_ptr - pre-checked for NULL
2212 // methods_ptr - pre-checked for NULL
2213 jvmtiError
2214 JvmtiEnv::GetClassMethods(oop k_mirror, jint* method_count_ptr, jmethodID** methods_ptr) {
2215 JavaThread* current_thread = JavaThread::current();
2216 HandleMark hm(current_thread);
2218 if (java_lang_Class::is_primitive(k_mirror)) {
2219 *method_count_ptr = 0;
2220 *methods_ptr = (jmethodID*) jvmtiMalloc(0 * sizeof(jmethodID));
2221 return JVMTI_ERROR_NONE;
2222 }
2223 Klass* k = java_lang_Class::as_Klass(k_mirror);
2224 NULL_CHECK(k, JVMTI_ERROR_INVALID_CLASS);
2226 // Return CLASS_NOT_PREPARED error as per JVMTI spec.
2227 if (!(k->jvmti_class_status() & (JVMTI_CLASS_STATUS_PREPARED|JVMTI_CLASS_STATUS_ARRAY) )) {
2228 return JVMTI_ERROR_CLASS_NOT_PREPARED;
2229 }
2231 if (!k->oop_is_instance()) {
2232 *method_count_ptr = 0;
2233 *methods_ptr = (jmethodID*) jvmtiMalloc(0 * sizeof(jmethodID));
2234 return JVMTI_ERROR_NONE;
2235 }
2236 instanceKlassHandle instanceK_h(current_thread, k);
2237 // Allocate the result and fill it in
2238 int result_length = instanceK_h->methods()->length();
2239 jmethodID* result_list = (jmethodID*)jvmtiMalloc(result_length * sizeof(jmethodID));
2240 int index;
2241 if (JvmtiExport::can_maintain_original_method_order()) {
2242 // Use the original method ordering indices stored in the class, so we can emit
2243 // jmethodIDs in the order they appeared in the class file
2244 for (index = 0; index < result_length; index++) {
2245 Method* m = instanceK_h->methods()->at(index);
2246 int original_index = instanceK_h->method_ordering()->at(index);
2247 assert(original_index >= 0 && original_index < result_length, "invalid original method index");
2248 jmethodID id = m->jmethod_id();
2249 result_list[original_index] = id;
2250 }
2251 } else {
2252 // otherwise just copy in any order
2253 for (index = 0; index < result_length; index++) {
2254 Method* m = instanceK_h->methods()->at(index);
2255 jmethodID id = m->jmethod_id();
2256 result_list[index] = id;
2257 }
2258 }
2259 // Fill in return value.
2260 *method_count_ptr = result_length;
2261 *methods_ptr = result_list;
2263 return JVMTI_ERROR_NONE;
2264 } /* end GetClassMethods */
2267 // k_mirror - may be primitive, this must be checked
2268 // field_count_ptr - pre-checked for NULL
2269 // fields_ptr - pre-checked for NULL
2270 jvmtiError
2271 JvmtiEnv::GetClassFields(oop k_mirror, jint* field_count_ptr, jfieldID** fields_ptr) {
2272 if (java_lang_Class::is_primitive(k_mirror)) {
2273 *field_count_ptr = 0;
2274 *fields_ptr = (jfieldID*) jvmtiMalloc(0 * sizeof(jfieldID));
2275 return JVMTI_ERROR_NONE;
2276 }
2277 JavaThread* current_thread = JavaThread::current();
2278 HandleMark hm(current_thread);
2279 Klass* k = java_lang_Class::as_Klass(k_mirror);
2280 NULL_CHECK(k, JVMTI_ERROR_INVALID_CLASS);
2282 // Return CLASS_NOT_PREPARED error as per JVMTI spec.
2283 if (!(k->jvmti_class_status() & (JVMTI_CLASS_STATUS_PREPARED|JVMTI_CLASS_STATUS_ARRAY) )) {
2284 return JVMTI_ERROR_CLASS_NOT_PREPARED;
2285 }
2287 if (!k->oop_is_instance()) {
2288 *field_count_ptr = 0;
2289 *fields_ptr = (jfieldID*) jvmtiMalloc(0 * sizeof(jfieldID));
2290 return JVMTI_ERROR_NONE;
2291 }
2294 instanceKlassHandle instanceK_h(current_thread, k);
2296 int result_count = 0;
2297 // First, count the fields.
2298 FilteredFieldStream flds(instanceK_h, true, true);
2299 result_count = flds.field_count();
2301 // Allocate the result and fill it in
2302 jfieldID* result_list = (jfieldID*) jvmtiMalloc(result_count * sizeof(jfieldID));
2303 // The JVMTI spec requires fields in the order they occur in the class file,
2304 // this is the reverse order of what FieldStream hands out.
2305 int id_index = (result_count - 1);
2307 for (FilteredFieldStream src_st(instanceK_h, true, true); !src_st.eos(); src_st.next()) {
2308 result_list[id_index--] = jfieldIDWorkaround::to_jfieldID(
2309 instanceK_h, src_st.offset(),
2310 src_st.access_flags().is_static());
2311 }
2312 assert(id_index == -1, "just checking");
2313 // Fill in the results
2314 *field_count_ptr = result_count;
2315 *fields_ptr = result_list;
2317 return JVMTI_ERROR_NONE;
2318 } /* end GetClassFields */
2321 // k_mirror - may be primitive, this must be checked
2322 // interface_count_ptr - pre-checked for NULL
2323 // interfaces_ptr - pre-checked for NULL
2324 jvmtiError
2325 JvmtiEnv::GetImplementedInterfaces(oop k_mirror, jint* interface_count_ptr, jclass** interfaces_ptr) {
2326 {
2327 if (java_lang_Class::is_primitive(k_mirror)) {
2328 *interface_count_ptr = 0;
2329 *interfaces_ptr = (jclass*) jvmtiMalloc(0 * sizeof(jclass));
2330 return JVMTI_ERROR_NONE;
2331 }
2332 JavaThread* current_thread = JavaThread::current();
2333 HandleMark hm(current_thread);
2334 Klass* k = java_lang_Class::as_Klass(k_mirror);
2335 NULL_CHECK(k, JVMTI_ERROR_INVALID_CLASS);
2337 // Return CLASS_NOT_PREPARED error as per JVMTI spec.
2338 if (!(k->jvmti_class_status() & (JVMTI_CLASS_STATUS_PREPARED|JVMTI_CLASS_STATUS_ARRAY) ))
2339 return JVMTI_ERROR_CLASS_NOT_PREPARED;
2341 if (!k->oop_is_instance()) {
2342 *interface_count_ptr = 0;
2343 *interfaces_ptr = (jclass*) jvmtiMalloc(0 * sizeof(jclass));
2344 return JVMTI_ERROR_NONE;
2345 }
2347 Array<Klass*>* interface_list = InstanceKlass::cast(k)->local_interfaces();
2348 const int result_length = (interface_list == NULL ? 0 : interface_list->length());
2349 jclass* result_list = (jclass*) jvmtiMalloc(result_length * sizeof(jclass));
2350 for (int i_index = 0; i_index < result_length; i_index += 1) {
2351 Klass* klass_at = interface_list->at(i_index);
2352 assert(klass_at->is_klass(), "interfaces must be Klass*s");
2353 assert(klass_at->is_interface(), "interfaces must be interfaces");
2354 oop mirror_at = klass_at->java_mirror();
2355 Handle handle_at = Handle(current_thread, mirror_at);
2356 result_list[i_index] = (jclass) jni_reference(handle_at);
2357 }
2358 *interface_count_ptr = result_length;
2359 *interfaces_ptr = result_list;
2360 }
2362 return JVMTI_ERROR_NONE;
2363 } /* end GetImplementedInterfaces */
2366 // k_mirror - may be primitive, this must be checked
2367 // minor_version_ptr - pre-checked for NULL
2368 // major_version_ptr - pre-checked for NULL
2369 jvmtiError
2370 JvmtiEnv::GetClassVersionNumbers(oop k_mirror, jint* minor_version_ptr, jint* major_version_ptr) {
2371 if (java_lang_Class::is_primitive(k_mirror)) {
2372 return JVMTI_ERROR_ABSENT_INFORMATION;
2373 }
2374 Klass* k_oop = java_lang_Class::as_Klass(k_mirror);
2375 Thread *thread = Thread::current();
2376 HandleMark hm(thread);
2377 KlassHandle klass(thread, k_oop);
2379 jint status = klass->jvmti_class_status();
2380 if (status & (JVMTI_CLASS_STATUS_ERROR)) {
2381 return JVMTI_ERROR_INVALID_CLASS;
2382 }
2383 if (status & (JVMTI_CLASS_STATUS_ARRAY)) {
2384 return JVMTI_ERROR_ABSENT_INFORMATION;
2385 }
2387 instanceKlassHandle ik(thread, k_oop);
2388 *minor_version_ptr = ik->minor_version();
2389 *major_version_ptr = ik->major_version();
2391 return JVMTI_ERROR_NONE;
2392 } /* end GetClassVersionNumbers */
2395 // k_mirror - may be primitive, this must be checked
2396 // constant_pool_count_ptr - pre-checked for NULL
2397 // constant_pool_byte_count_ptr - pre-checked for NULL
2398 // constant_pool_bytes_ptr - pre-checked for NULL
2399 jvmtiError
2400 JvmtiEnv::GetConstantPool(oop k_mirror, jint* constant_pool_count_ptr, jint* constant_pool_byte_count_ptr, unsigned char** constant_pool_bytes_ptr) {
2401 if (java_lang_Class::is_primitive(k_mirror)) {
2402 return JVMTI_ERROR_ABSENT_INFORMATION;
2403 }
2405 Klass* k_oop = java_lang_Class::as_Klass(k_mirror);
2406 Thread *thread = Thread::current();
2407 HandleMark hm(thread);
2408 ResourceMark rm(thread);
2409 KlassHandle klass(thread, k_oop);
2411 jint status = klass->jvmti_class_status();
2412 if (status & (JVMTI_CLASS_STATUS_ERROR)) {
2413 return JVMTI_ERROR_INVALID_CLASS;
2414 }
2415 if (status & (JVMTI_CLASS_STATUS_ARRAY)) {
2416 return JVMTI_ERROR_ABSENT_INFORMATION;
2417 }
2419 instanceKlassHandle ikh(thread, k_oop);
2420 constantPoolHandle constants(thread, ikh->constants());
2421 MonitorLockerEx ml(constants->lock()); // lock constant pool while we query it
2423 JvmtiConstantPoolReconstituter reconstituter(ikh);
2424 if (reconstituter.get_error() != JVMTI_ERROR_NONE) {
2425 return reconstituter.get_error();
2426 }
2428 unsigned char *cpool_bytes;
2429 int cpool_size = reconstituter.cpool_size();
2430 if (reconstituter.get_error() != JVMTI_ERROR_NONE) {
2431 return reconstituter.get_error();
2432 }
2433 jvmtiError res = allocate(cpool_size, &cpool_bytes);
2434 if (res != JVMTI_ERROR_NONE) {
2435 return res;
2436 }
2437 reconstituter.copy_cpool_bytes(cpool_bytes);
2438 if (reconstituter.get_error() != JVMTI_ERROR_NONE) {
2439 return reconstituter.get_error();
2440 }
2442 *constant_pool_count_ptr = constants->length();
2443 *constant_pool_byte_count_ptr = cpool_size;
2444 *constant_pool_bytes_ptr = cpool_bytes;
2446 return JVMTI_ERROR_NONE;
2447 } /* end GetConstantPool */
2450 // k_mirror - may be primitive, this must be checked
2451 // is_interface_ptr - pre-checked for NULL
2452 jvmtiError
2453 JvmtiEnv::IsInterface(oop k_mirror, jboolean* is_interface_ptr) {
2454 {
2455 bool result = false;
2456 if (!java_lang_Class::is_primitive(k_mirror)) {
2457 Klass* k = java_lang_Class::as_Klass(k_mirror);
2458 if (k != NULL && k->is_interface()) {
2459 result = true;
2460 }
2461 }
2462 *is_interface_ptr = result;
2463 }
2465 return JVMTI_ERROR_NONE;
2466 } /* end IsInterface */
2469 // k_mirror - may be primitive, this must be checked
2470 // is_array_class_ptr - pre-checked for NULL
2471 jvmtiError
2472 JvmtiEnv::IsArrayClass(oop k_mirror, jboolean* is_array_class_ptr) {
2473 {
2474 bool result = false;
2475 if (!java_lang_Class::is_primitive(k_mirror)) {
2476 Klass* k = java_lang_Class::as_Klass(k_mirror);
2477 if (k != NULL && k->oop_is_array()) {
2478 result = true;
2479 }
2480 }
2481 *is_array_class_ptr = result;
2482 }
2484 return JVMTI_ERROR_NONE;
2485 } /* end IsArrayClass */
2488 // k_mirror - may be primitive, this must be checked
2489 // classloader_ptr - pre-checked for NULL
2490 jvmtiError
2491 JvmtiEnv::GetClassLoader(oop k_mirror, jobject* classloader_ptr) {
2492 {
2493 if (java_lang_Class::is_primitive(k_mirror)) {
2494 *classloader_ptr = (jclass) jni_reference(Handle());
2495 return JVMTI_ERROR_NONE;
2496 }
2497 JavaThread* current_thread = JavaThread::current();
2498 HandleMark hm(current_thread);
2499 Klass* k = java_lang_Class::as_Klass(k_mirror);
2500 NULL_CHECK(k, JVMTI_ERROR_INVALID_CLASS);
2502 oop result_oop = k->class_loader();
2503 if (result_oop == NULL) {
2504 *classloader_ptr = (jclass) jni_reference(Handle());
2505 return JVMTI_ERROR_NONE;
2506 }
2507 Handle result_handle = Handle(current_thread, result_oop);
2508 jclass result_jnihandle = (jclass) jni_reference(result_handle);
2509 *classloader_ptr = result_jnihandle;
2510 }
2511 return JVMTI_ERROR_NONE;
2512 } /* end GetClassLoader */
2515 // k_mirror - may be primitive, this must be checked
2516 // source_debug_extension_ptr - pre-checked for NULL
2517 jvmtiError
2518 JvmtiEnv::GetSourceDebugExtension(oop k_mirror, char** source_debug_extension_ptr) {
2519 {
2520 if (java_lang_Class::is_primitive(k_mirror)) {
2521 return JVMTI_ERROR_ABSENT_INFORMATION;
2522 }
2523 Klass* k = java_lang_Class::as_Klass(k_mirror);
2524 NULL_CHECK(k, JVMTI_ERROR_INVALID_CLASS);
2525 if (!k->oop_is_instance()) {
2526 return JVMTI_ERROR_ABSENT_INFORMATION;
2527 }
2528 char* sde = InstanceKlass::cast(k)->source_debug_extension();
2529 NULL_CHECK(sde, JVMTI_ERROR_ABSENT_INFORMATION);
2531 {
2532 *source_debug_extension_ptr = (char *) jvmtiMalloc(strlen(sde)+1);
2533 strcpy(*source_debug_extension_ptr, sde);
2534 }
2535 }
2537 return JVMTI_ERROR_NONE;
2538 } /* end GetSourceDebugExtension */
2540 //
2541 // Object functions
2542 //
2544 // hash_code_ptr - pre-checked for NULL
2545 jvmtiError
2546 JvmtiEnv::GetObjectHashCode(jobject object, jint* hash_code_ptr) {
2547 oop mirror = JNIHandles::resolve_external_guard(object);
2548 NULL_CHECK(mirror, JVMTI_ERROR_INVALID_OBJECT);
2549 NULL_CHECK(hash_code_ptr, JVMTI_ERROR_NULL_POINTER);
2551 {
2552 jint result = (jint) mirror->identity_hash();
2553 *hash_code_ptr = result;
2554 }
2555 return JVMTI_ERROR_NONE;
2556 } /* end GetObjectHashCode */
2559 // info_ptr - pre-checked for NULL
2560 jvmtiError
2561 JvmtiEnv::GetObjectMonitorUsage(jobject object, jvmtiMonitorUsage* info_ptr) {
2562 JavaThread* calling_thread = JavaThread::current();
2563 jvmtiError err = get_object_monitor_usage(calling_thread, object, info_ptr);
2564 if (err == JVMTI_ERROR_THREAD_NOT_SUSPENDED) {
2565 // Some of the critical threads were not suspended. go to a safepoint and try again
2566 VM_GetObjectMonitorUsage op(this, calling_thread, object, info_ptr);
2567 VMThread::execute(&op);
2568 err = op.result();
2569 }
2570 return err;
2571 } /* end GetObjectMonitorUsage */
2574 //
2575 // Field functions
2576 //
2578 // name_ptr - NULL is a valid value, must be checked
2579 // signature_ptr - NULL is a valid value, must be checked
2580 // generic_ptr - NULL is a valid value, must be checked
2581 jvmtiError
2582 JvmtiEnv::GetFieldName(fieldDescriptor* fdesc_ptr, char** name_ptr, char** signature_ptr, char** generic_ptr) {
2583 JavaThread* current_thread = JavaThread::current();
2584 ResourceMark rm(current_thread);
2585 if (name_ptr == NULL) {
2586 // just don't return the name
2587 } else {
2588 const char* fieldName = fdesc_ptr->name()->as_C_string();
2589 *name_ptr = (char*) jvmtiMalloc(strlen(fieldName) + 1);
2590 if (*name_ptr == NULL)
2591 return JVMTI_ERROR_OUT_OF_MEMORY;
2592 strcpy(*name_ptr, fieldName);
2593 }
2594 if (signature_ptr== NULL) {
2595 // just don't return the signature
2596 } else {
2597 const char* fieldSignature = fdesc_ptr->signature()->as_C_string();
2598 *signature_ptr = (char*) jvmtiMalloc(strlen(fieldSignature) + 1);
2599 if (*signature_ptr == NULL)
2600 return JVMTI_ERROR_OUT_OF_MEMORY;
2601 strcpy(*signature_ptr, fieldSignature);
2602 }
2603 if (generic_ptr != NULL) {
2604 *generic_ptr = NULL;
2605 Symbol* soop = fdesc_ptr->generic_signature();
2606 if (soop != NULL) {
2607 const char* gen_sig = soop->as_C_string();
2608 if (gen_sig != NULL) {
2609 jvmtiError err = allocate(strlen(gen_sig) + 1, (unsigned char **)generic_ptr);
2610 if (err != JVMTI_ERROR_NONE) {
2611 return err;
2612 }
2613 strcpy(*generic_ptr, gen_sig);
2614 }
2615 }
2616 }
2617 return JVMTI_ERROR_NONE;
2618 } /* end GetFieldName */
2621 // declaring_class_ptr - pre-checked for NULL
2622 jvmtiError
2623 JvmtiEnv::GetFieldDeclaringClass(fieldDescriptor* fdesc_ptr, jclass* declaring_class_ptr) {
2625 *declaring_class_ptr = get_jni_class_non_null(fdesc_ptr->field_holder());
2626 return JVMTI_ERROR_NONE;
2627 } /* end GetFieldDeclaringClass */
2630 // modifiers_ptr - pre-checked for NULL
2631 jvmtiError
2632 JvmtiEnv::GetFieldModifiers(fieldDescriptor* fdesc_ptr, jint* modifiers_ptr) {
2634 AccessFlags resultFlags = fdesc_ptr->access_flags();
2635 jint result = resultFlags.as_int();
2636 *modifiers_ptr = result;
2638 return JVMTI_ERROR_NONE;
2639 } /* end GetFieldModifiers */
2642 // is_synthetic_ptr - pre-checked for NULL
2643 jvmtiError
2644 JvmtiEnv::IsFieldSynthetic(fieldDescriptor* fdesc_ptr, jboolean* is_synthetic_ptr) {
2645 *is_synthetic_ptr = fdesc_ptr->is_synthetic();
2646 return JVMTI_ERROR_NONE;
2647 } /* end IsFieldSynthetic */
2650 //
2651 // Method functions
2652 //
2654 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2655 // name_ptr - NULL is a valid value, must be checked
2656 // signature_ptr - NULL is a valid value, must be checked
2657 // generic_ptr - NULL is a valid value, must be checked
2658 jvmtiError
2659 JvmtiEnv::GetMethodName(Method* method_oop, char** name_ptr, char** signature_ptr, char** generic_ptr) {
2660 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2661 JavaThread* current_thread = JavaThread::current();
2663 ResourceMark rm(current_thread); // get the utf8 name and signature
2664 if (name_ptr == NULL) {
2665 // just don't return the name
2666 } else {
2667 const char* utf8_name = (const char *) method_oop->name()->as_utf8();
2668 *name_ptr = (char *) jvmtiMalloc(strlen(utf8_name)+1);
2669 strcpy(*name_ptr, utf8_name);
2670 }
2671 if (signature_ptr == NULL) {
2672 // just don't return the signature
2673 } else {
2674 const char* utf8_signature = (const char *) method_oop->signature()->as_utf8();
2675 *signature_ptr = (char *) jvmtiMalloc(strlen(utf8_signature) + 1);
2676 strcpy(*signature_ptr, utf8_signature);
2677 }
2679 if (generic_ptr != NULL) {
2680 *generic_ptr = NULL;
2681 Symbol* soop = method_oop->generic_signature();
2682 if (soop != NULL) {
2683 const char* gen_sig = soop->as_C_string();
2684 if (gen_sig != NULL) {
2685 jvmtiError err = allocate(strlen(gen_sig) + 1, (unsigned char **)generic_ptr);
2686 if (err != JVMTI_ERROR_NONE) {
2687 return err;
2688 }
2689 strcpy(*generic_ptr, gen_sig);
2690 }
2691 }
2692 }
2693 return JVMTI_ERROR_NONE;
2694 } /* end GetMethodName */
2697 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2698 // declaring_class_ptr - pre-checked for NULL
2699 jvmtiError
2700 JvmtiEnv::GetMethodDeclaringClass(Method* method_oop, jclass* declaring_class_ptr) {
2701 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2702 (*declaring_class_ptr) = get_jni_class_non_null(method_oop->method_holder());
2703 return JVMTI_ERROR_NONE;
2704 } /* end GetMethodDeclaringClass */
2707 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2708 // modifiers_ptr - pre-checked for NULL
2709 jvmtiError
2710 JvmtiEnv::GetMethodModifiers(Method* method_oop, jint* modifiers_ptr) {
2711 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2712 (*modifiers_ptr) = method_oop->access_flags().as_int() & JVM_RECOGNIZED_METHOD_MODIFIERS;
2713 return JVMTI_ERROR_NONE;
2714 } /* end GetMethodModifiers */
2717 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2718 // max_ptr - pre-checked for NULL
2719 jvmtiError
2720 JvmtiEnv::GetMaxLocals(Method* method_oop, jint* max_ptr) {
2721 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2722 // get max stack
2723 (*max_ptr) = method_oop->max_locals();
2724 return JVMTI_ERROR_NONE;
2725 } /* end GetMaxLocals */
2728 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2729 // size_ptr - pre-checked for NULL
2730 jvmtiError
2731 JvmtiEnv::GetArgumentsSize(Method* method_oop, jint* size_ptr) {
2732 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2733 // get size of arguments
2735 (*size_ptr) = method_oop->size_of_parameters();
2736 return JVMTI_ERROR_NONE;
2737 } /* end GetArgumentsSize */
2740 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2741 // entry_count_ptr - pre-checked for NULL
2742 // table_ptr - pre-checked for NULL
2743 jvmtiError
2744 JvmtiEnv::GetLineNumberTable(Method* method_oop, jint* entry_count_ptr, jvmtiLineNumberEntry** table_ptr) {
2745 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2746 if (!method_oop->has_linenumber_table()) {
2747 return (JVMTI_ERROR_ABSENT_INFORMATION);
2748 }
2750 // The line number table is compressed so we don't know how big it is until decompressed.
2751 // Decompression is really fast so we just do it twice.
2753 // Compute size of table
2754 jint num_entries = 0;
2755 CompressedLineNumberReadStream stream(method_oop->compressed_linenumber_table());
2756 while (stream.read_pair()) {
2757 num_entries++;
2758 }
2759 jvmtiLineNumberEntry *jvmti_table =
2760 (jvmtiLineNumberEntry *)jvmtiMalloc(num_entries * (sizeof(jvmtiLineNumberEntry)));
2762 // Fill jvmti table
2763 if (num_entries > 0) {
2764 int index = 0;
2765 CompressedLineNumberReadStream stream(method_oop->compressed_linenumber_table());
2766 while (stream.read_pair()) {
2767 jvmti_table[index].start_location = (jlocation) stream.bci();
2768 jvmti_table[index].line_number = (jint) stream.line();
2769 index++;
2770 }
2771 assert(index == num_entries, "sanity check");
2772 }
2774 // Set up results
2775 (*entry_count_ptr) = num_entries;
2776 (*table_ptr) = jvmti_table;
2778 return JVMTI_ERROR_NONE;
2779 } /* end GetLineNumberTable */
2782 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2783 // start_location_ptr - pre-checked for NULL
2784 // end_location_ptr - pre-checked for NULL
2785 jvmtiError
2786 JvmtiEnv::GetMethodLocation(Method* method_oop, jlocation* start_location_ptr, jlocation* end_location_ptr) {
2788 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2789 // get start and end location
2790 (*end_location_ptr) = (jlocation) (method_oop->code_size() - 1);
2791 if (method_oop->code_size() == 0) {
2792 // there is no code so there is no start location
2793 (*start_location_ptr) = (jlocation)(-1);
2794 } else {
2795 (*start_location_ptr) = (jlocation)(0);
2796 }
2798 return JVMTI_ERROR_NONE;
2799 } /* end GetMethodLocation */
2802 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2803 // entry_count_ptr - pre-checked for NULL
2804 // table_ptr - pre-checked for NULL
2805 jvmtiError
2806 JvmtiEnv::GetLocalVariableTable(Method* method_oop, jint* entry_count_ptr, jvmtiLocalVariableEntry** table_ptr) {
2808 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2809 JavaThread* current_thread = JavaThread::current();
2811 // does the klass have any local variable information?
2812 InstanceKlass* ik = method_oop->method_holder();
2813 if (!ik->access_flags().has_localvariable_table()) {
2814 return (JVMTI_ERROR_ABSENT_INFORMATION);
2815 }
2817 ConstantPool* constants = method_oop->constants();
2818 NULL_CHECK(constants, JVMTI_ERROR_ABSENT_INFORMATION);
2820 // in the vm localvariable table representation, 6 consecutive elements in the table
2821 // represent a 6-tuple of shorts
2822 // [start_pc, length, name_index, descriptor_index, signature_index, index]
2823 jint num_entries = method_oop->localvariable_table_length();
2824 jvmtiLocalVariableEntry *jvmti_table = (jvmtiLocalVariableEntry *)
2825 jvmtiMalloc(num_entries * (sizeof(jvmtiLocalVariableEntry)));
2827 if (num_entries > 0) {
2828 LocalVariableTableElement* table = method_oop->localvariable_table_start();
2829 for (int i = 0; i < num_entries; i++) {
2830 // get the 5 tuple information from the vm table
2831 jlocation start_location = (jlocation) table[i].start_bci;
2832 jint length = (jint) table[i].length;
2833 int name_index = (int) table[i].name_cp_index;
2834 int signature_index = (int) table[i].descriptor_cp_index;
2835 int generic_signature_index = (int) table[i].signature_cp_index;
2836 jint slot = (jint) table[i].slot;
2838 // get utf8 name and signature
2839 char *name_buf = NULL;
2840 char *sig_buf = NULL;
2841 char *gen_sig_buf = NULL;
2842 {
2843 ResourceMark rm(current_thread);
2845 const char *utf8_name = (const char *) constants->symbol_at(name_index)->as_utf8();
2846 name_buf = (char *) jvmtiMalloc(strlen(utf8_name)+1);
2847 strcpy(name_buf, utf8_name);
2849 const char *utf8_signature = (const char *) constants->symbol_at(signature_index)->as_utf8();
2850 sig_buf = (char *) jvmtiMalloc(strlen(utf8_signature)+1);
2851 strcpy(sig_buf, utf8_signature);
2853 if (generic_signature_index > 0) {
2854 const char *utf8_gen_sign = (const char *)
2855 constants->symbol_at(generic_signature_index)->as_utf8();
2856 gen_sig_buf = (char *) jvmtiMalloc(strlen(utf8_gen_sign)+1);
2857 strcpy(gen_sig_buf, utf8_gen_sign);
2858 }
2859 }
2861 // fill in the jvmti local variable table
2862 jvmti_table[i].start_location = start_location;
2863 jvmti_table[i].length = length;
2864 jvmti_table[i].name = name_buf;
2865 jvmti_table[i].signature = sig_buf;
2866 jvmti_table[i].generic_signature = gen_sig_buf;
2867 jvmti_table[i].slot = slot;
2868 }
2869 }
2871 // set results
2872 (*entry_count_ptr) = num_entries;
2873 (*table_ptr) = jvmti_table;
2875 return JVMTI_ERROR_NONE;
2876 } /* end GetLocalVariableTable */
2879 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2880 // bytecode_count_ptr - pre-checked for NULL
2881 // bytecodes_ptr - pre-checked for NULL
2882 jvmtiError
2883 JvmtiEnv::GetBytecodes(Method* method_oop, jint* bytecode_count_ptr, unsigned char** bytecodes_ptr) {
2884 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2886 HandleMark hm;
2887 methodHandle method(method_oop);
2888 jint size = (jint)method->code_size();
2889 jvmtiError err = allocate(size, bytecodes_ptr);
2890 if (err != JVMTI_ERROR_NONE) {
2891 return err;
2892 }
2894 (*bytecode_count_ptr) = size;
2895 // get byte codes
2896 JvmtiClassFileReconstituter::copy_bytecodes(method, *bytecodes_ptr);
2898 return JVMTI_ERROR_NONE;
2899 } /* end GetBytecodes */
2902 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2903 // is_native_ptr - pre-checked for NULL
2904 jvmtiError
2905 JvmtiEnv::IsMethodNative(Method* method_oop, jboolean* is_native_ptr) {
2906 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2907 (*is_native_ptr) = method_oop->is_native();
2908 return JVMTI_ERROR_NONE;
2909 } /* end IsMethodNative */
2912 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2913 // is_synthetic_ptr - pre-checked for NULL
2914 jvmtiError
2915 JvmtiEnv::IsMethodSynthetic(Method* method_oop, jboolean* is_synthetic_ptr) {
2916 NULL_CHECK(method_oop, JVMTI_ERROR_INVALID_METHODID);
2917 (*is_synthetic_ptr) = method_oop->is_synthetic();
2918 return JVMTI_ERROR_NONE;
2919 } /* end IsMethodSynthetic */
2922 // method_oop - pre-checked for validity, but may be NULL meaning obsolete method
2923 // is_obsolete_ptr - pre-checked for NULL
2924 jvmtiError
2925 JvmtiEnv::IsMethodObsolete(Method* method_oop, jboolean* is_obsolete_ptr) {
2926 if (use_version_1_0_semantics() &&
2927 get_capabilities()->can_redefine_classes == 0) {
2928 // This JvmtiEnv requested version 1.0 semantics and this function
2929 // requires the can_redefine_classes capability in version 1.0 so
2930 // we need to return an error here.
2931 return JVMTI_ERROR_MUST_POSSESS_CAPABILITY;
2932 }
2934 if (method_oop == NULL || method_oop->is_obsolete()) {
2935 *is_obsolete_ptr = true;
2936 } else {
2937 *is_obsolete_ptr = false;
2938 }
2939 return JVMTI_ERROR_NONE;
2940 } /* end IsMethodObsolete */
2942 //
2943 // Raw Monitor functions
2944 //
2946 // name - pre-checked for NULL
2947 // monitor_ptr - pre-checked for NULL
2948 jvmtiError
2949 JvmtiEnv::CreateRawMonitor(const char* name, jrawMonitorID* monitor_ptr) {
2950 JvmtiRawMonitor* rmonitor = new JvmtiRawMonitor(name);
2951 NULL_CHECK(rmonitor, JVMTI_ERROR_OUT_OF_MEMORY);
2953 *monitor_ptr = (jrawMonitorID)rmonitor;
2955 return JVMTI_ERROR_NONE;
2956 } /* end CreateRawMonitor */
2959 // rmonitor - pre-checked for validity
2960 jvmtiError
2961 JvmtiEnv::DestroyRawMonitor(JvmtiRawMonitor * rmonitor) {
2962 if (Threads::number_of_threads() == 0) {
2963 // Remove this monitor from pending raw monitors list
2964 // if it has entered in onload or start phase.
2965 JvmtiPendingMonitors::destroy(rmonitor);
2966 } else {
2967 Thread* thread = Thread::current();
2968 if (rmonitor->is_entered(thread)) {
2969 // The caller owns this monitor which we are about to destroy.
2970 // We exit the underlying synchronization object so that the
2971 // "delete monitor" call below can work without an assertion
2972 // failure on systems that don't like destroying synchronization
2973 // objects that are locked.
2974 int r;
2975 intptr_t recursion = rmonitor->recursions();
2976 for (intptr_t i=0; i <= recursion; i++) {
2977 r = rmonitor->raw_exit(thread);
2978 assert(r == ObjectMonitor::OM_OK, "raw_exit should have worked");
2979 if (r != ObjectMonitor::OM_OK) { // robustness
2980 return JVMTI_ERROR_INTERNAL;
2981 }
2982 }
2983 }
2984 if (rmonitor->owner() != NULL) {
2985 // The caller is trying to destroy a monitor that is locked by
2986 // someone else. While this is not forbidden by the JVMTI
2987 // spec, it will cause an assertion failure on systems that don't
2988 // like destroying synchronization objects that are locked.
2989 // We indicate a problem with the error return (and leak the
2990 // monitor's memory).
2991 return JVMTI_ERROR_NOT_MONITOR_OWNER;
2992 }
2993 }
2995 delete rmonitor;
2997 return JVMTI_ERROR_NONE;
2998 } /* end DestroyRawMonitor */
3001 // rmonitor - pre-checked for validity
3002 jvmtiError
3003 JvmtiEnv::RawMonitorEnter(JvmtiRawMonitor * rmonitor) {
3004 if (Threads::number_of_threads() == 0) {
3005 // No JavaThreads exist so ObjectMonitor enter cannot be
3006 // used, add this raw monitor to the pending list.
3007 // The pending monitors will be actually entered when
3008 // the VM is setup.
3009 // See transition_pending_raw_monitors in create_vm()
3010 // in thread.cpp.
3011 JvmtiPendingMonitors::enter(rmonitor);
3012 } else {
3013 int r;
3014 Thread* thread = Thread::current();
3016 if (thread->is_Java_thread()) {
3017 JavaThread* current_thread = (JavaThread*)thread;
3019 #ifdef PROPER_TRANSITIONS
3020 // Not really unknown but ThreadInVMfromNative does more than we want
3021 ThreadInVMfromUnknown __tiv;
3022 {
3023 ThreadBlockInVM __tbivm(current_thread);
3024 r = rmonitor->raw_enter(current_thread);
3025 }
3026 #else
3027 /* Transition to thread_blocked without entering vm state */
3028 /* This is really evil. Normally you can't undo _thread_blocked */
3029 /* transitions like this because it would cause us to miss a */
3030 /* safepoint but since the thread was already in _thread_in_native */
3031 /* the thread is not leaving a safepoint safe state and it will */
3032 /* block when it tries to return from native. We can't safepoint */
3033 /* block in here because we could deadlock the vmthread. Blech. */
3035 JavaThreadState state = current_thread->thread_state();
3036 assert(state == _thread_in_native, "Must be _thread_in_native");
3037 // frame should already be walkable since we are in native
3038 assert(!current_thread->has_last_Java_frame() ||
3039 current_thread->frame_anchor()->walkable(), "Must be walkable");
3040 current_thread->set_thread_state(_thread_blocked);
3042 r = rmonitor->raw_enter(current_thread);
3043 // restore state, still at a safepoint safe state
3044 current_thread->set_thread_state(state);
3046 #endif /* PROPER_TRANSITIONS */
3047 assert(r == ObjectMonitor::OM_OK, "raw_enter should have worked");
3048 } else {
3049 if (thread->is_VM_thread() || thread->is_ConcurrentGC_thread()) {
3050 r = rmonitor->raw_enter(thread);
3051 } else {
3052 ShouldNotReachHere();
3053 }
3054 }
3056 if (r != ObjectMonitor::OM_OK) { // robustness
3057 return JVMTI_ERROR_INTERNAL;
3058 }
3059 }
3060 return JVMTI_ERROR_NONE;
3061 } /* end RawMonitorEnter */
3064 // rmonitor - pre-checked for validity
3065 jvmtiError
3066 JvmtiEnv::RawMonitorExit(JvmtiRawMonitor * rmonitor) {
3067 jvmtiError err = JVMTI_ERROR_NONE;
3069 if (Threads::number_of_threads() == 0) {
3070 // No JavaThreads exist so just remove this monitor from the pending list.
3071 // Bool value from exit is false if rmonitor is not in the list.
3072 if (!JvmtiPendingMonitors::exit(rmonitor)) {
3073 err = JVMTI_ERROR_NOT_MONITOR_OWNER;
3074 }
3075 } else {
3076 int r;
3077 Thread* thread = Thread::current();
3079 if (thread->is_Java_thread()) {
3080 JavaThread* current_thread = (JavaThread*)thread;
3081 #ifdef PROPER_TRANSITIONS
3082 // Not really unknown but ThreadInVMfromNative does more than we want
3083 ThreadInVMfromUnknown __tiv;
3084 #endif /* PROPER_TRANSITIONS */
3085 r = rmonitor->raw_exit(current_thread);
3086 } else {
3087 if (thread->is_VM_thread() || thread->is_ConcurrentGC_thread()) {
3088 r = rmonitor->raw_exit(thread);
3089 } else {
3090 ShouldNotReachHere();
3091 }
3092 }
3094 if (r == ObjectMonitor::OM_ILLEGAL_MONITOR_STATE) {
3095 err = JVMTI_ERROR_NOT_MONITOR_OWNER;
3096 } else {
3097 assert(r == ObjectMonitor::OM_OK, "raw_exit should have worked");
3098 if (r != ObjectMonitor::OM_OK) { // robustness
3099 err = JVMTI_ERROR_INTERNAL;
3100 }
3101 }
3102 }
3103 return err;
3104 } /* end RawMonitorExit */
3107 // rmonitor - pre-checked for validity
3108 jvmtiError
3109 JvmtiEnv::RawMonitorWait(JvmtiRawMonitor * rmonitor, jlong millis) {
3110 int r;
3111 Thread* thread = Thread::current();
3113 if (thread->is_Java_thread()) {
3114 JavaThread* current_thread = (JavaThread*)thread;
3115 #ifdef PROPER_TRANSITIONS
3116 // Not really unknown but ThreadInVMfromNative does more than we want
3117 ThreadInVMfromUnknown __tiv;
3118 {
3119 ThreadBlockInVM __tbivm(current_thread);
3120 r = rmonitor->raw_wait(millis, true, current_thread);
3121 }
3122 #else
3123 /* Transition to thread_blocked without entering vm state */
3124 /* This is really evil. Normally you can't undo _thread_blocked */
3125 /* transitions like this because it would cause us to miss a */
3126 /* safepoint but since the thread was already in _thread_in_native */
3127 /* the thread is not leaving a safepoint safe state and it will */
3128 /* block when it tries to return from native. We can't safepoint */
3129 /* block in here because we could deadlock the vmthread. Blech. */
3131 JavaThreadState state = current_thread->thread_state();
3132 assert(state == _thread_in_native, "Must be _thread_in_native");
3133 // frame should already be walkable since we are in native
3134 assert(!current_thread->has_last_Java_frame() ||
3135 current_thread->frame_anchor()->walkable(), "Must be walkable");
3136 current_thread->set_thread_state(_thread_blocked);
3138 r = rmonitor->raw_wait(millis, true, current_thread);
3139 // restore state, still at a safepoint safe state
3140 current_thread->set_thread_state(state);
3142 #endif /* PROPER_TRANSITIONS */
3143 } else {
3144 if (thread->is_VM_thread() || thread->is_ConcurrentGC_thread()) {
3145 r = rmonitor->raw_wait(millis, true, thread);
3146 } else {
3147 ShouldNotReachHere();
3148 }
3149 }
3151 switch (r) {
3152 case ObjectMonitor::OM_INTERRUPTED:
3153 return JVMTI_ERROR_INTERRUPT;
3154 case ObjectMonitor::OM_ILLEGAL_MONITOR_STATE:
3155 return JVMTI_ERROR_NOT_MONITOR_OWNER;
3156 }
3157 assert(r == ObjectMonitor::OM_OK, "raw_wait should have worked");
3158 if (r != ObjectMonitor::OM_OK) { // robustness
3159 return JVMTI_ERROR_INTERNAL;
3160 }
3162 return JVMTI_ERROR_NONE;
3163 } /* end RawMonitorWait */
3166 // rmonitor - pre-checked for validity
3167 jvmtiError
3168 JvmtiEnv::RawMonitorNotify(JvmtiRawMonitor * rmonitor) {
3169 int r;
3170 Thread* thread = Thread::current();
3172 if (thread->is_Java_thread()) {
3173 JavaThread* current_thread = (JavaThread*)thread;
3174 // Not really unknown but ThreadInVMfromNative does more than we want
3175 ThreadInVMfromUnknown __tiv;
3176 r = rmonitor->raw_notify(current_thread);
3177 } else {
3178 if (thread->is_VM_thread() || thread->is_ConcurrentGC_thread()) {
3179 r = rmonitor->raw_notify(thread);
3180 } else {
3181 ShouldNotReachHere();
3182 }
3183 }
3185 if (r == ObjectMonitor::OM_ILLEGAL_MONITOR_STATE) {
3186 return JVMTI_ERROR_NOT_MONITOR_OWNER;
3187 }
3188 assert(r == ObjectMonitor::OM_OK, "raw_notify should have worked");
3189 if (r != ObjectMonitor::OM_OK) { // robustness
3190 return JVMTI_ERROR_INTERNAL;
3191 }
3193 return JVMTI_ERROR_NONE;
3194 } /* end RawMonitorNotify */
3197 // rmonitor - pre-checked for validity
3198 jvmtiError
3199 JvmtiEnv::RawMonitorNotifyAll(JvmtiRawMonitor * rmonitor) {
3200 int r;
3201 Thread* thread = Thread::current();
3203 if (thread->is_Java_thread()) {
3204 JavaThread* current_thread = (JavaThread*)thread;
3205 ThreadInVMfromUnknown __tiv;
3206 r = rmonitor->raw_notifyAll(current_thread);
3207 } else {
3208 if (thread->is_VM_thread() || thread->is_ConcurrentGC_thread()) {
3209 r = rmonitor->raw_notifyAll(thread);
3210 } else {
3211 ShouldNotReachHere();
3212 }
3213 }
3215 if (r == ObjectMonitor::OM_ILLEGAL_MONITOR_STATE) {
3216 return JVMTI_ERROR_NOT_MONITOR_OWNER;
3217 }
3218 assert(r == ObjectMonitor::OM_OK, "raw_notifyAll should have worked");
3219 if (r != ObjectMonitor::OM_OK) { // robustness
3220 return JVMTI_ERROR_INTERNAL;
3221 }
3223 return JVMTI_ERROR_NONE;
3224 } /* end RawMonitorNotifyAll */
3227 //
3228 // JNI Function Interception functions
3229 //
3232 // function_table - pre-checked for NULL
3233 jvmtiError
3234 JvmtiEnv::SetJNIFunctionTable(const jniNativeInterface* function_table) {
3235 // Copy jni function table at safepoint.
3236 VM_JNIFunctionTableCopier copier(function_table);
3237 VMThread::execute(&copier);
3239 return JVMTI_ERROR_NONE;
3240 } /* end SetJNIFunctionTable */
3243 // function_table - pre-checked for NULL
3244 jvmtiError
3245 JvmtiEnv::GetJNIFunctionTable(jniNativeInterface** function_table) {
3246 *function_table=(jniNativeInterface*)jvmtiMalloc(sizeof(jniNativeInterface));
3247 if (*function_table == NULL)
3248 return JVMTI_ERROR_OUT_OF_MEMORY;
3249 memcpy(*function_table,(JavaThread::current())->get_jni_functions(),sizeof(jniNativeInterface));
3250 return JVMTI_ERROR_NONE;
3251 } /* end GetJNIFunctionTable */
3254 //
3255 // Event Management functions
3256 //
3258 jvmtiError
3259 JvmtiEnv::GenerateEvents(jvmtiEvent event_type) {
3260 // can only generate two event types
3261 if (event_type != JVMTI_EVENT_COMPILED_METHOD_LOAD &&
3262 event_type != JVMTI_EVENT_DYNAMIC_CODE_GENERATED) {
3263 return JVMTI_ERROR_ILLEGAL_ARGUMENT;
3264 }
3266 // for compiled_method_load events we must check that the environment
3267 // has the can_generate_compiled_method_load_events capability.
3268 if (event_type == JVMTI_EVENT_COMPILED_METHOD_LOAD) {
3269 if (get_capabilities()->can_generate_compiled_method_load_events == 0) {
3270 return JVMTI_ERROR_MUST_POSSESS_CAPABILITY;
3271 }
3272 return JvmtiCodeBlobEvents::generate_compiled_method_load_events(this);
3273 } else {
3274 return JvmtiCodeBlobEvents::generate_dynamic_code_events(this);
3275 }
3277 } /* end GenerateEvents */
3280 //
3281 // Extension Mechanism functions
3282 //
3284 // extension_count_ptr - pre-checked for NULL
3285 // extensions - pre-checked for NULL
3286 jvmtiError
3287 JvmtiEnv::GetExtensionFunctions(jint* extension_count_ptr, jvmtiExtensionFunctionInfo** extensions) {
3288 return JvmtiExtensions::get_functions(this, extension_count_ptr, extensions);
3289 } /* end GetExtensionFunctions */
3292 // extension_count_ptr - pre-checked for NULL
3293 // extensions - pre-checked for NULL
3294 jvmtiError
3295 JvmtiEnv::GetExtensionEvents(jint* extension_count_ptr, jvmtiExtensionEventInfo** extensions) {
3296 return JvmtiExtensions::get_events(this, extension_count_ptr, extensions);
3297 } /* end GetExtensionEvents */
3300 // callback - NULL is a valid value, must be checked
3301 jvmtiError
3302 JvmtiEnv::SetExtensionEventCallback(jint extension_event_index, jvmtiExtensionEvent callback) {
3303 return JvmtiExtensions::set_event_callback(this, extension_event_index, callback);
3304 } /* end SetExtensionEventCallback */
3306 //
3307 // Timers functions
3308 //
3310 // info_ptr - pre-checked for NULL
3311 jvmtiError
3312 JvmtiEnv::GetCurrentThreadCpuTimerInfo(jvmtiTimerInfo* info_ptr) {
3313 os::current_thread_cpu_time_info(info_ptr);
3314 return JVMTI_ERROR_NONE;
3315 } /* end GetCurrentThreadCpuTimerInfo */
3318 // nanos_ptr - pre-checked for NULL
3319 jvmtiError
3320 JvmtiEnv::GetCurrentThreadCpuTime(jlong* nanos_ptr) {
3321 *nanos_ptr = os::current_thread_cpu_time();
3322 return JVMTI_ERROR_NONE;
3323 } /* end GetCurrentThreadCpuTime */
3326 // info_ptr - pre-checked for NULL
3327 jvmtiError
3328 JvmtiEnv::GetThreadCpuTimerInfo(jvmtiTimerInfo* info_ptr) {
3329 os::thread_cpu_time_info(info_ptr);
3330 return JVMTI_ERROR_NONE;
3331 } /* end GetThreadCpuTimerInfo */
3334 // Threads_lock NOT held, java_thread not protected by lock
3335 // java_thread - pre-checked
3336 // nanos_ptr - pre-checked for NULL
3337 jvmtiError
3338 JvmtiEnv::GetThreadCpuTime(JavaThread* java_thread, jlong* nanos_ptr) {
3339 *nanos_ptr = os::thread_cpu_time(java_thread);
3340 return JVMTI_ERROR_NONE;
3341 } /* end GetThreadCpuTime */
3344 // info_ptr - pre-checked for NULL
3345 jvmtiError
3346 JvmtiEnv::GetTimerInfo(jvmtiTimerInfo* info_ptr) {
3347 os::javaTimeNanos_info(info_ptr);
3348 return JVMTI_ERROR_NONE;
3349 } /* end GetTimerInfo */
3352 // nanos_ptr - pre-checked for NULL
3353 jvmtiError
3354 JvmtiEnv::GetTime(jlong* nanos_ptr) {
3355 *nanos_ptr = os::javaTimeNanos();
3356 return JVMTI_ERROR_NONE;
3357 } /* end GetTime */
3360 // processor_count_ptr - pre-checked for NULL
3361 jvmtiError
3362 JvmtiEnv::GetAvailableProcessors(jint* processor_count_ptr) {
3363 *processor_count_ptr = os::active_processor_count();
3364 return JVMTI_ERROR_NONE;
3365 } /* end GetAvailableProcessors */
3367 //
3368 // System Properties functions
3369 //
3371 // count_ptr - pre-checked for NULL
3372 // property_ptr - pre-checked for NULL
3373 jvmtiError
3374 JvmtiEnv::GetSystemProperties(jint* count_ptr, char*** property_ptr) {
3375 jvmtiError err = JVMTI_ERROR_NONE;
3377 *count_ptr = Arguments::PropertyList_count(Arguments::system_properties());
3379 err = allocate(*count_ptr * sizeof(char *), (unsigned char **)property_ptr);
3380 if (err != JVMTI_ERROR_NONE) {
3381 return err;
3382 }
3383 int i = 0 ;
3384 for (SystemProperty* p = Arguments::system_properties(); p != NULL && i < *count_ptr; p = p->next(), i++) {
3385 const char *key = p->key();
3386 char **tmp_value = *property_ptr+i;
3387 err = allocate((strlen(key)+1) * sizeof(char), (unsigned char**)tmp_value);
3388 if (err == JVMTI_ERROR_NONE) {
3389 strcpy(*tmp_value, key);
3390 } else {
3391 // clean up previously allocated memory.
3392 for (int j=0; j<i; j++) {
3393 Deallocate((unsigned char*)*property_ptr+j);
3394 }
3395 Deallocate((unsigned char*)property_ptr);
3396 break;
3397 }
3398 }
3399 return err;
3400 } /* end GetSystemProperties */
3403 // property - pre-checked for NULL
3404 // value_ptr - pre-checked for NULL
3405 jvmtiError
3406 JvmtiEnv::GetSystemProperty(const char* property, char** value_ptr) {
3407 jvmtiError err = JVMTI_ERROR_NONE;
3408 const char *value;
3410 value = Arguments::PropertyList_get_value(Arguments::system_properties(), property);
3411 if (value == NULL) {
3412 err = JVMTI_ERROR_NOT_AVAILABLE;
3413 } else {
3414 err = allocate((strlen(value)+1) * sizeof(char), (unsigned char **)value_ptr);
3415 if (err == JVMTI_ERROR_NONE) {
3416 strcpy(*value_ptr, value);
3417 }
3418 }
3419 return err;
3420 } /* end GetSystemProperty */
3423 // property - pre-checked for NULL
3424 // value - NULL is a valid value, must be checked
3425 jvmtiError
3426 JvmtiEnv::SetSystemProperty(const char* property, const char* value_ptr) {
3427 jvmtiError err =JVMTI_ERROR_NOT_AVAILABLE;
3429 for (SystemProperty* p = Arguments::system_properties(); p != NULL; p = p->next()) {
3430 if (strcmp(property, p->key()) == 0) {
3431 if (p->set_value((char *)value_ptr)) {
3432 err = JVMTI_ERROR_NONE;
3433 }
3434 }
3435 }
3436 return err;
3437 } /* end SetSystemProperty */