src/share/vm/services/management.cpp

Tue, 23 Nov 2010 13:22:55 -0800

author
stefank
date
Tue, 23 Nov 2010 13:22:55 -0800
changeset 2314
f95d63e2154a
parent 2112
1c63587d925b
child 2423
b1a2afa37ec4
permissions
-rw-r--r--

6989984: Use standard include model for Hospot
Summary: Replaced MakeDeps and the includeDB files with more standardized solutions.
Reviewed-by: coleenp, kvn, kamg

duke@435 1 /*
stefank@2314 2 * Copyright (c) 2003, 2010, Oracle and/or its affiliates. All rights reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
duke@435 22 *
duke@435 23 */
duke@435 24
stefank@2314 25 #include "precompiled.hpp"
stefank@2314 26 #include "classfile/systemDictionary.hpp"
stefank@2314 27 #include "compiler/compileBroker.hpp"
stefank@2314 28 #include "memory/iterator.hpp"
stefank@2314 29 #include "memory/oopFactory.hpp"
stefank@2314 30 #include "memory/resourceArea.hpp"
stefank@2314 31 #include "oops/klass.hpp"
stefank@2314 32 #include "oops/klassOop.hpp"
stefank@2314 33 #include "oops/objArrayKlass.hpp"
stefank@2314 34 #include "oops/oop.inline.hpp"
stefank@2314 35 #include "runtime/arguments.hpp"
stefank@2314 36 #include "runtime/handles.inline.hpp"
stefank@2314 37 #include "runtime/interfaceSupport.hpp"
stefank@2314 38 #include "runtime/javaCalls.hpp"
stefank@2314 39 #include "runtime/jniHandles.hpp"
stefank@2314 40 #include "runtime/os.hpp"
stefank@2314 41 #include "services/classLoadingService.hpp"
stefank@2314 42 #include "services/heapDumper.hpp"
stefank@2314 43 #include "services/lowMemoryDetector.hpp"
stefank@2314 44 #include "services/management.hpp"
stefank@2314 45 #include "services/memoryManager.hpp"
stefank@2314 46 #include "services/memoryPool.hpp"
stefank@2314 47 #include "services/memoryService.hpp"
stefank@2314 48 #include "services/runtimeService.hpp"
stefank@2314 49 #include "services/threadService.hpp"
duke@435 50
duke@435 51 PerfVariable* Management::_begin_vm_creation_time = NULL;
duke@435 52 PerfVariable* Management::_end_vm_creation_time = NULL;
duke@435 53 PerfVariable* Management::_vm_init_done_time = NULL;
duke@435 54
duke@435 55 klassOop Management::_sensor_klass = NULL;
duke@435 56 klassOop Management::_threadInfo_klass = NULL;
duke@435 57 klassOop Management::_memoryUsage_klass = NULL;
duke@435 58 klassOop Management::_memoryPoolMXBean_klass = NULL;
duke@435 59 klassOop Management::_memoryManagerMXBean_klass = NULL;
duke@435 60 klassOop Management::_garbageCollectorMXBean_klass = NULL;
duke@435 61 klassOop Management::_managementFactory_klass = NULL;
duke@435 62
duke@435 63 jmmOptionalSupport Management::_optional_support = {0};
duke@435 64 TimeStamp Management::_stamp;
duke@435 65
duke@435 66 void management_init() {
duke@435 67 Management::init();
duke@435 68 ThreadService::init();
duke@435 69 RuntimeService::init();
duke@435 70 ClassLoadingService::init();
duke@435 71 }
duke@435 72
duke@435 73 void Management::init() {
duke@435 74 EXCEPTION_MARK;
duke@435 75
duke@435 76 // These counters are for java.lang.management API support.
duke@435 77 // They are created even if -XX:-UsePerfData is set and in
duke@435 78 // that case, they will be allocated on C heap.
duke@435 79
duke@435 80 _begin_vm_creation_time =
duke@435 81 PerfDataManager::create_variable(SUN_RT, "createVmBeginTime",
duke@435 82 PerfData::U_None, CHECK);
duke@435 83
duke@435 84 _end_vm_creation_time =
duke@435 85 PerfDataManager::create_variable(SUN_RT, "createVmEndTime",
duke@435 86 PerfData::U_None, CHECK);
duke@435 87
duke@435 88 _vm_init_done_time =
duke@435 89 PerfDataManager::create_variable(SUN_RT, "vmInitDoneTime",
duke@435 90 PerfData::U_None, CHECK);
duke@435 91
duke@435 92 // Initialize optional support
duke@435 93 _optional_support.isLowMemoryDetectionSupported = 1;
duke@435 94 _optional_support.isCompilationTimeMonitoringSupported = 1;
duke@435 95 _optional_support.isThreadContentionMonitoringSupported = 1;
duke@435 96
duke@435 97 if (os::is_thread_cpu_time_supported()) {
duke@435 98 _optional_support.isCurrentThreadCpuTimeSupported = 1;
duke@435 99 _optional_support.isOtherThreadCpuTimeSupported = 1;
duke@435 100 } else {
duke@435 101 _optional_support.isCurrentThreadCpuTimeSupported = 0;
duke@435 102 _optional_support.isOtherThreadCpuTimeSupported = 0;
duke@435 103 }
duke@435 104 _optional_support.isBootClassPathSupported = 1;
duke@435 105 _optional_support.isObjectMonitorUsageSupported = 1;
duke@435 106 #ifndef SERVICES_KERNEL
duke@435 107 // This depends on the heap inspector
duke@435 108 _optional_support.isSynchronizerUsageSupported = 1;
duke@435 109 #endif // SERVICES_KERNEL
duke@435 110 }
duke@435 111
duke@435 112 void Management::initialize(TRAPS) {
duke@435 113 // Start the low memory detector thread
duke@435 114 LowMemoryDetector::initialize();
duke@435 115
duke@435 116 if (ManagementServer) {
duke@435 117 ResourceMark rm(THREAD);
duke@435 118 HandleMark hm(THREAD);
duke@435 119
duke@435 120 // Load and initialize the sun.management.Agent class
duke@435 121 // invoke startAgent method to start the management server
duke@435 122 Handle loader = Handle(THREAD, SystemDictionary::java_system_loader());
duke@435 123 klassOop k = SystemDictionary::resolve_or_fail(vmSymbolHandles::sun_management_Agent(),
duke@435 124 loader,
duke@435 125 Handle(),
duke@435 126 true,
duke@435 127 CHECK);
duke@435 128 instanceKlassHandle ik (THREAD, k);
duke@435 129
duke@435 130 JavaValue result(T_VOID);
duke@435 131 JavaCalls::call_static(&result,
duke@435 132 ik,
duke@435 133 vmSymbolHandles::startAgent_name(),
duke@435 134 vmSymbolHandles::void_method_signature(),
duke@435 135 CHECK);
duke@435 136 }
duke@435 137 }
duke@435 138
duke@435 139 void Management::get_optional_support(jmmOptionalSupport* support) {
duke@435 140 memcpy(support, &_optional_support, sizeof(jmmOptionalSupport));
duke@435 141 }
duke@435 142
duke@435 143 klassOop Management::load_and_initialize_klass(symbolHandle sh, TRAPS) {
duke@435 144 klassOop k = SystemDictionary::resolve_or_fail(sh, true, CHECK_NULL);
duke@435 145 instanceKlassHandle ik (THREAD, k);
duke@435 146 if (ik->should_be_initialized()) {
duke@435 147 ik->initialize(CHECK_NULL);
duke@435 148 }
duke@435 149 return ik();
duke@435 150 }
duke@435 151
duke@435 152 void Management::record_vm_startup_time(jlong begin, jlong duration) {
duke@435 153 // if the performance counter is not initialized,
duke@435 154 // then vm initialization failed; simply return.
duke@435 155 if (_begin_vm_creation_time == NULL) return;
duke@435 156
duke@435 157 _begin_vm_creation_time->set_value(begin);
duke@435 158 _end_vm_creation_time->set_value(begin + duration);
duke@435 159 PerfMemory::set_accessible(true);
duke@435 160 }
duke@435 161
duke@435 162 jlong Management::timestamp() {
duke@435 163 TimeStamp t;
duke@435 164 t.update();
duke@435 165 return t.ticks() - _stamp.ticks();
duke@435 166 }
duke@435 167
duke@435 168 void Management::oops_do(OopClosure* f) {
duke@435 169 MemoryService::oops_do(f);
duke@435 170 ThreadService::oops_do(f);
duke@435 171
duke@435 172 f->do_oop((oop*) &_sensor_klass);
duke@435 173 f->do_oop((oop*) &_threadInfo_klass);
duke@435 174 f->do_oop((oop*) &_memoryUsage_klass);
duke@435 175 f->do_oop((oop*) &_memoryPoolMXBean_klass);
duke@435 176 f->do_oop((oop*) &_memoryManagerMXBean_klass);
duke@435 177 f->do_oop((oop*) &_garbageCollectorMXBean_klass);
duke@435 178 f->do_oop((oop*) &_managementFactory_klass);
duke@435 179 }
duke@435 180
duke@435 181 klassOop Management::java_lang_management_ThreadInfo_klass(TRAPS) {
duke@435 182 if (_threadInfo_klass == NULL) {
duke@435 183 _threadInfo_klass = load_and_initialize_klass(vmSymbolHandles::java_lang_management_ThreadInfo(), CHECK_NULL);
duke@435 184 }
duke@435 185 return _threadInfo_klass;
duke@435 186 }
duke@435 187
duke@435 188 klassOop Management::java_lang_management_MemoryUsage_klass(TRAPS) {
duke@435 189 if (_memoryUsage_klass == NULL) {
duke@435 190 _memoryUsage_klass = load_and_initialize_klass(vmSymbolHandles::java_lang_management_MemoryUsage(), CHECK_NULL);
duke@435 191 }
duke@435 192 return _memoryUsage_klass;
duke@435 193 }
duke@435 194
duke@435 195 klassOop Management::java_lang_management_MemoryPoolMXBean_klass(TRAPS) {
duke@435 196 if (_memoryPoolMXBean_klass == NULL) {
duke@435 197 _memoryPoolMXBean_klass = load_and_initialize_klass(vmSymbolHandles::java_lang_management_MemoryPoolMXBean(), CHECK_NULL);
duke@435 198 }
duke@435 199 return _memoryPoolMXBean_klass;
duke@435 200 }
duke@435 201
duke@435 202 klassOop Management::java_lang_management_MemoryManagerMXBean_klass(TRAPS) {
duke@435 203 if (_memoryManagerMXBean_klass == NULL) {
duke@435 204 _memoryManagerMXBean_klass = load_and_initialize_klass(vmSymbolHandles::java_lang_management_MemoryManagerMXBean(), CHECK_NULL);
duke@435 205 }
duke@435 206 return _memoryManagerMXBean_klass;
duke@435 207 }
duke@435 208
duke@435 209 klassOop Management::java_lang_management_GarbageCollectorMXBean_klass(TRAPS) {
duke@435 210 if (_garbageCollectorMXBean_klass == NULL) {
duke@435 211 _garbageCollectorMXBean_klass = load_and_initialize_klass(vmSymbolHandles::java_lang_management_GarbageCollectorMXBean(), CHECK_NULL);
duke@435 212 }
duke@435 213 return _garbageCollectorMXBean_klass;
duke@435 214 }
duke@435 215
duke@435 216 klassOop Management::sun_management_Sensor_klass(TRAPS) {
duke@435 217 if (_sensor_klass == NULL) {
duke@435 218 _sensor_klass = load_and_initialize_klass(vmSymbolHandles::sun_management_Sensor(), CHECK_NULL);
duke@435 219 }
duke@435 220 return _sensor_klass;
duke@435 221 }
duke@435 222
duke@435 223 klassOop Management::sun_management_ManagementFactory_klass(TRAPS) {
duke@435 224 if (_managementFactory_klass == NULL) {
duke@435 225 _managementFactory_klass = load_and_initialize_klass(vmSymbolHandles::sun_management_ManagementFactory(), CHECK_NULL);
duke@435 226 }
duke@435 227 return _managementFactory_klass;
duke@435 228 }
duke@435 229
duke@435 230 static void initialize_ThreadInfo_constructor_arguments(JavaCallArguments* args, ThreadSnapshot* snapshot, TRAPS) {
duke@435 231 Handle snapshot_thread(THREAD, snapshot->threadObj());
duke@435 232
duke@435 233 jlong contended_time;
duke@435 234 jlong waited_time;
duke@435 235 if (ThreadService::is_thread_monitoring_contention()) {
duke@435 236 contended_time = Management::ticks_to_ms(snapshot->contended_enter_ticks());
duke@435 237 waited_time = Management::ticks_to_ms(snapshot->monitor_wait_ticks() + snapshot->sleep_ticks());
duke@435 238 } else {
duke@435 239 // set them to -1 if thread contention monitoring is disabled.
duke@435 240 contended_time = max_julong;
duke@435 241 waited_time = max_julong;
duke@435 242 }
duke@435 243
duke@435 244 int thread_status = snapshot->thread_status();
duke@435 245 assert((thread_status & JMM_THREAD_STATE_FLAG_MASK) == 0, "Flags already set in thread_status in Thread object");
duke@435 246 if (snapshot->is_ext_suspended()) {
duke@435 247 thread_status |= JMM_THREAD_STATE_FLAG_SUSPENDED;
duke@435 248 }
duke@435 249 if (snapshot->is_in_native()) {
duke@435 250 thread_status |= JMM_THREAD_STATE_FLAG_NATIVE;
duke@435 251 }
duke@435 252
duke@435 253 ThreadStackTrace* st = snapshot->get_stack_trace();
duke@435 254 Handle stacktrace_h;
duke@435 255 if (st != NULL) {
duke@435 256 stacktrace_h = st->allocate_fill_stack_trace_element_array(CHECK);
duke@435 257 } else {
duke@435 258 stacktrace_h = Handle();
duke@435 259 }
duke@435 260
duke@435 261 args->push_oop(snapshot_thread);
duke@435 262 args->push_int(thread_status);
duke@435 263 args->push_oop(Handle(THREAD, snapshot->blocker_object()));
duke@435 264 args->push_oop(Handle(THREAD, snapshot->blocker_object_owner()));
duke@435 265 args->push_long(snapshot->contended_enter_count());
duke@435 266 args->push_long(contended_time);
duke@435 267 args->push_long(snapshot->monitor_wait_count() + snapshot->sleep_count());
duke@435 268 args->push_long(waited_time);
duke@435 269 args->push_oop(stacktrace_h);
duke@435 270 }
duke@435 271
duke@435 272 // Helper function to construct a ThreadInfo object
duke@435 273 instanceOop Management::create_thread_info_instance(ThreadSnapshot* snapshot, TRAPS) {
duke@435 274 klassOop k = Management::java_lang_management_ThreadInfo_klass(CHECK_NULL);
duke@435 275 instanceKlassHandle ik (THREAD, k);
duke@435 276
duke@435 277 JavaValue result(T_VOID);
duke@435 278 JavaCallArguments args(14);
duke@435 279
duke@435 280 // First allocate a ThreadObj object and
duke@435 281 // push the receiver as the first argument
duke@435 282 Handle element = ik->allocate_instance_handle(CHECK_NULL);
duke@435 283 args.push_oop(element);
duke@435 284
duke@435 285 // initialize the arguments for the ThreadInfo constructor
duke@435 286 initialize_ThreadInfo_constructor_arguments(&args, snapshot, CHECK_NULL);
duke@435 287
duke@435 288 // Call ThreadInfo constructor with no locked monitors and synchronizers
duke@435 289 JavaCalls::call_special(&result,
duke@435 290 ik,
duke@435 291 vmSymbolHandles::object_initializer_name(),
duke@435 292 vmSymbolHandles::java_lang_management_ThreadInfo_constructor_signature(),
duke@435 293 &args,
duke@435 294 CHECK_NULL);
duke@435 295
duke@435 296 return (instanceOop) element();
duke@435 297 }
duke@435 298
duke@435 299 instanceOop Management::create_thread_info_instance(ThreadSnapshot* snapshot,
duke@435 300 objArrayHandle monitors_array,
duke@435 301 typeArrayHandle depths_array,
duke@435 302 objArrayHandle synchronizers_array,
duke@435 303 TRAPS) {
duke@435 304 klassOop k = Management::java_lang_management_ThreadInfo_klass(CHECK_NULL);
duke@435 305 instanceKlassHandle ik (THREAD, k);
duke@435 306
duke@435 307 JavaValue result(T_VOID);
duke@435 308 JavaCallArguments args(17);
duke@435 309
duke@435 310 // First allocate a ThreadObj object and
duke@435 311 // push the receiver as the first argument
duke@435 312 Handle element = ik->allocate_instance_handle(CHECK_NULL);
duke@435 313 args.push_oop(element);
duke@435 314
duke@435 315 // initialize the arguments for the ThreadInfo constructor
duke@435 316 initialize_ThreadInfo_constructor_arguments(&args, snapshot, CHECK_NULL);
duke@435 317
duke@435 318 // push the locked monitors and synchronizers in the arguments
duke@435 319 args.push_oop(monitors_array);
duke@435 320 args.push_oop(depths_array);
duke@435 321 args.push_oop(synchronizers_array);
duke@435 322
duke@435 323 // Call ThreadInfo constructor with locked monitors and synchronizers
duke@435 324 JavaCalls::call_special(&result,
duke@435 325 ik,
duke@435 326 vmSymbolHandles::object_initializer_name(),
duke@435 327 vmSymbolHandles::java_lang_management_ThreadInfo_with_locks_constructor_signature(),
duke@435 328 &args,
duke@435 329 CHECK_NULL);
duke@435 330
duke@435 331 return (instanceOop) element();
duke@435 332 }
duke@435 333
duke@435 334 // Helper functions
duke@435 335 static JavaThread* find_java_thread_from_id(jlong thread_id) {
duke@435 336 assert(Threads_lock->owned_by_self(), "Must hold Threads_lock");
duke@435 337
duke@435 338 JavaThread* java_thread = NULL;
duke@435 339 // Sequential search for now. Need to do better optimization later.
duke@435 340 for (JavaThread* thread = Threads::first(); thread != NULL; thread = thread->next()) {
duke@435 341 oop tobj = thread->threadObj();
duke@435 342 if (!thread->is_exiting() &&
duke@435 343 tobj != NULL &&
duke@435 344 thread_id == java_lang_Thread::thread_id(tobj)) {
duke@435 345 java_thread = thread;
duke@435 346 break;
duke@435 347 }
duke@435 348 }
duke@435 349 return java_thread;
duke@435 350 }
duke@435 351
duke@435 352 static GCMemoryManager* get_gc_memory_manager_from_jobject(jobject mgr, TRAPS) {
duke@435 353 if (mgr == NULL) {
duke@435 354 THROW_(vmSymbols::java_lang_NullPointerException(), NULL);
duke@435 355 }
duke@435 356 oop mgr_obj = JNIHandles::resolve(mgr);
duke@435 357 instanceHandle h(THREAD, (instanceOop) mgr_obj);
duke@435 358
duke@435 359 klassOop k = Management::java_lang_management_GarbageCollectorMXBean_klass(CHECK_NULL);
duke@435 360 if (!h->is_a(k)) {
duke@435 361 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 362 "the object is not an instance of java.lang.management.GarbageCollectorMXBean class",
duke@435 363 NULL);
duke@435 364 }
duke@435 365
duke@435 366 MemoryManager* gc = MemoryService::get_memory_manager(h);
duke@435 367 if (gc == NULL || !gc->is_gc_memory_manager()) {
duke@435 368 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 369 "Invalid GC memory manager",
duke@435 370 NULL);
duke@435 371 }
duke@435 372 return (GCMemoryManager*) gc;
duke@435 373 }
duke@435 374
duke@435 375 static MemoryPool* get_memory_pool_from_jobject(jobject obj, TRAPS) {
duke@435 376 if (obj == NULL) {
duke@435 377 THROW_(vmSymbols::java_lang_NullPointerException(), NULL);
duke@435 378 }
duke@435 379
duke@435 380 oop pool_obj = JNIHandles::resolve(obj);
duke@435 381 assert(pool_obj->is_instance(), "Should be an instanceOop");
duke@435 382 instanceHandle ph(THREAD, (instanceOop) pool_obj);
duke@435 383
duke@435 384 return MemoryService::get_memory_pool(ph);
duke@435 385 }
duke@435 386
duke@435 387 static void validate_thread_id_array(typeArrayHandle ids_ah, TRAPS) {
duke@435 388 int num_threads = ids_ah->length();
duke@435 389 // should be non-empty array
duke@435 390 if (num_threads == 0) {
duke@435 391 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 392 "Empty array of thread IDs");
duke@435 393 }
duke@435 394
duke@435 395 // Validate input thread IDs
duke@435 396 int i = 0;
duke@435 397 for (i = 0; i < num_threads; i++) {
duke@435 398 jlong tid = ids_ah->long_at(i);
duke@435 399 if (tid <= 0) {
duke@435 400 // throw exception if invalid thread id.
duke@435 401 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 402 "Invalid thread ID entry");
duke@435 403 }
duke@435 404 }
duke@435 405
duke@435 406 }
duke@435 407
duke@435 408 static void validate_thread_info_array(objArrayHandle infoArray_h, TRAPS) {
duke@435 409
duke@435 410 // check if the element of infoArray is of type ThreadInfo class
duke@435 411 klassOop threadinfo_klass = Management::java_lang_management_ThreadInfo_klass(CHECK);
duke@435 412 klassOop element_klass = objArrayKlass::cast(infoArray_h->klass())->element_klass();
duke@435 413 if (element_klass != threadinfo_klass) {
duke@435 414 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 415 "infoArray element type is not ThreadInfo class");
duke@435 416 }
duke@435 417
duke@435 418 }
duke@435 419
duke@435 420
duke@435 421 static MemoryManager* get_memory_manager_from_jobject(jobject obj, TRAPS) {
duke@435 422 if (obj == NULL) {
duke@435 423 THROW_(vmSymbols::java_lang_NullPointerException(), NULL);
duke@435 424 }
duke@435 425
duke@435 426 oop mgr_obj = JNIHandles::resolve(obj);
duke@435 427 assert(mgr_obj->is_instance(), "Should be an instanceOop");
duke@435 428 instanceHandle mh(THREAD, (instanceOop) mgr_obj);
duke@435 429
duke@435 430 return MemoryService::get_memory_manager(mh);
duke@435 431 }
duke@435 432
duke@435 433 // Returns a version string and sets major and minor version if
duke@435 434 // the input parameters are non-null.
duke@435 435 JVM_LEAF(jint, jmm_GetVersion(JNIEnv *env))
duke@435 436 return JMM_VERSION;
duke@435 437 JVM_END
duke@435 438
duke@435 439 // Gets the list of VM monitoring and management optional supports
duke@435 440 // Returns 0 if succeeded; otherwise returns non-zero.
duke@435 441 JVM_LEAF(jint, jmm_GetOptionalSupport(JNIEnv *env, jmmOptionalSupport* support))
duke@435 442 if (support == NULL) {
duke@435 443 return -1;
duke@435 444 }
duke@435 445 Management::get_optional_support(support);
duke@435 446 return 0;
duke@435 447 JVM_END
duke@435 448
duke@435 449 // Returns a java.lang.String object containing the input arguments to the VM.
duke@435 450 JVM_ENTRY(jobject, jmm_GetInputArguments(JNIEnv *env))
duke@435 451 ResourceMark rm(THREAD);
duke@435 452
duke@435 453 if (Arguments::num_jvm_args() == 0 && Arguments::num_jvm_flags() == 0) {
duke@435 454 return NULL;
duke@435 455 }
duke@435 456
duke@435 457 char** vm_flags = Arguments::jvm_flags_array();
duke@435 458 char** vm_args = Arguments::jvm_args_array();
duke@435 459 int num_flags = Arguments::num_jvm_flags();
duke@435 460 int num_args = Arguments::num_jvm_args();
duke@435 461
duke@435 462 size_t length = 1; // null terminator
duke@435 463 int i;
duke@435 464 for (i = 0; i < num_flags; i++) {
duke@435 465 length += strlen(vm_flags[i]);
duke@435 466 }
duke@435 467 for (i = 0; i < num_args; i++) {
duke@435 468 length += strlen(vm_args[i]);
duke@435 469 }
duke@435 470 // add a space between each argument
duke@435 471 length += num_flags + num_args - 1;
duke@435 472
duke@435 473 // Return the list of input arguments passed to the VM
duke@435 474 // and preserve the order that the VM processes.
duke@435 475 char* args = NEW_RESOURCE_ARRAY(char, length);
duke@435 476 args[0] = '\0';
duke@435 477 // concatenate all jvm_flags
duke@435 478 if (num_flags > 0) {
duke@435 479 strcat(args, vm_flags[0]);
duke@435 480 for (i = 1; i < num_flags; i++) {
duke@435 481 strcat(args, " ");
duke@435 482 strcat(args, vm_flags[i]);
duke@435 483 }
duke@435 484 }
duke@435 485
duke@435 486 if (num_args > 0 && num_flags > 0) {
duke@435 487 // append a space if args already contains one or more jvm_flags
duke@435 488 strcat(args, " ");
duke@435 489 }
duke@435 490
duke@435 491 // concatenate all jvm_args
duke@435 492 if (num_args > 0) {
duke@435 493 strcat(args, vm_args[0]);
duke@435 494 for (i = 1; i < num_args; i++) {
duke@435 495 strcat(args, " ");
duke@435 496 strcat(args, vm_args[i]);
duke@435 497 }
duke@435 498 }
duke@435 499
duke@435 500 Handle hargs = java_lang_String::create_from_platform_dependent_str(args, CHECK_NULL);
duke@435 501 return JNIHandles::make_local(env, hargs());
duke@435 502 JVM_END
duke@435 503
duke@435 504 // Returns an array of java.lang.String object containing the input arguments to the VM.
duke@435 505 JVM_ENTRY(jobjectArray, jmm_GetInputArgumentArray(JNIEnv *env))
duke@435 506 ResourceMark rm(THREAD);
duke@435 507
duke@435 508 if (Arguments::num_jvm_args() == 0 && Arguments::num_jvm_flags() == 0) {
duke@435 509 return NULL;
duke@435 510 }
duke@435 511
duke@435 512 char** vm_flags = Arguments::jvm_flags_array();
duke@435 513 char** vm_args = Arguments::jvm_args_array();
duke@435 514 int num_flags = Arguments::num_jvm_flags();
duke@435 515 int num_args = Arguments::num_jvm_args();
duke@435 516
never@1577 517 instanceKlassHandle ik (THREAD, SystemDictionary::String_klass());
duke@435 518 objArrayOop r = oopFactory::new_objArray(ik(), num_args + num_flags, CHECK_NULL);
duke@435 519 objArrayHandle result_h(THREAD, r);
duke@435 520
duke@435 521 int index = 0;
duke@435 522 for (int j = 0; j < num_flags; j++, index++) {
duke@435 523 Handle h = java_lang_String::create_from_platform_dependent_str(vm_flags[j], CHECK_NULL);
duke@435 524 result_h->obj_at_put(index, h());
duke@435 525 }
duke@435 526 for (int i = 0; i < num_args; i++, index++) {
duke@435 527 Handle h = java_lang_String::create_from_platform_dependent_str(vm_args[i], CHECK_NULL);
duke@435 528 result_h->obj_at_put(index, h());
duke@435 529 }
duke@435 530 return (jobjectArray) JNIHandles::make_local(env, result_h());
duke@435 531 JVM_END
duke@435 532
duke@435 533 // Returns an array of java/lang/management/MemoryPoolMXBean object
duke@435 534 // one for each memory pool if obj == null; otherwise returns
duke@435 535 // an array of memory pools for a given memory manager if
duke@435 536 // it is a valid memory manager.
duke@435 537 JVM_ENTRY(jobjectArray, jmm_GetMemoryPools(JNIEnv* env, jobject obj))
duke@435 538 ResourceMark rm(THREAD);
duke@435 539
duke@435 540 int num_memory_pools;
duke@435 541 MemoryManager* mgr = NULL;
duke@435 542 if (obj == NULL) {
duke@435 543 num_memory_pools = MemoryService::num_memory_pools();
duke@435 544 } else {
duke@435 545 mgr = get_memory_manager_from_jobject(obj, CHECK_NULL);
duke@435 546 if (mgr == NULL) {
duke@435 547 return NULL;
duke@435 548 }
duke@435 549 num_memory_pools = mgr->num_memory_pools();
duke@435 550 }
duke@435 551
duke@435 552 // Allocate the resulting MemoryPoolMXBean[] object
duke@435 553 klassOop k = Management::java_lang_management_MemoryPoolMXBean_klass(CHECK_NULL);
duke@435 554 instanceKlassHandle ik (THREAD, k);
duke@435 555 objArrayOop r = oopFactory::new_objArray(ik(), num_memory_pools, CHECK_NULL);
duke@435 556 objArrayHandle poolArray(THREAD, r);
duke@435 557
duke@435 558 if (mgr == NULL) {
duke@435 559 // Get all memory pools
duke@435 560 for (int i = 0; i < num_memory_pools; i++) {
duke@435 561 MemoryPool* pool = MemoryService::get_memory_pool(i);
duke@435 562 instanceOop p = pool->get_memory_pool_instance(CHECK_NULL);
duke@435 563 instanceHandle ph(THREAD, p);
duke@435 564 poolArray->obj_at_put(i, ph());
duke@435 565 }
duke@435 566 } else {
duke@435 567 // Get memory pools managed by a given memory manager
duke@435 568 for (int i = 0; i < num_memory_pools; i++) {
duke@435 569 MemoryPool* pool = mgr->get_memory_pool(i);
duke@435 570 instanceOop p = pool->get_memory_pool_instance(CHECK_NULL);
duke@435 571 instanceHandle ph(THREAD, p);
duke@435 572 poolArray->obj_at_put(i, ph());
duke@435 573 }
duke@435 574 }
duke@435 575 return (jobjectArray) JNIHandles::make_local(env, poolArray());
duke@435 576 JVM_END
duke@435 577
duke@435 578 // Returns an array of java/lang/management/MemoryManagerMXBean object
duke@435 579 // one for each memory manager if obj == null; otherwise returns
duke@435 580 // an array of memory managers for a given memory pool if
duke@435 581 // it is a valid memory pool.
duke@435 582 JVM_ENTRY(jobjectArray, jmm_GetMemoryManagers(JNIEnv* env, jobject obj))
duke@435 583 ResourceMark rm(THREAD);
duke@435 584
duke@435 585 int num_mgrs;
duke@435 586 MemoryPool* pool = NULL;
duke@435 587 if (obj == NULL) {
duke@435 588 num_mgrs = MemoryService::num_memory_managers();
duke@435 589 } else {
duke@435 590 pool = get_memory_pool_from_jobject(obj, CHECK_NULL);
duke@435 591 if (pool == NULL) {
duke@435 592 return NULL;
duke@435 593 }
duke@435 594 num_mgrs = pool->num_memory_managers();
duke@435 595 }
duke@435 596
duke@435 597 // Allocate the resulting MemoryManagerMXBean[] object
duke@435 598 klassOop k = Management::java_lang_management_MemoryManagerMXBean_klass(CHECK_NULL);
duke@435 599 instanceKlassHandle ik (THREAD, k);
duke@435 600 objArrayOop r = oopFactory::new_objArray(ik(), num_mgrs, CHECK_NULL);
duke@435 601 objArrayHandle mgrArray(THREAD, r);
duke@435 602
duke@435 603 if (pool == NULL) {
duke@435 604 // Get all memory managers
duke@435 605 for (int i = 0; i < num_mgrs; i++) {
duke@435 606 MemoryManager* mgr = MemoryService::get_memory_manager(i);
duke@435 607 instanceOop p = mgr->get_memory_manager_instance(CHECK_NULL);
duke@435 608 instanceHandle ph(THREAD, p);
duke@435 609 mgrArray->obj_at_put(i, ph());
duke@435 610 }
duke@435 611 } else {
duke@435 612 // Get memory managers for a given memory pool
duke@435 613 for (int i = 0; i < num_mgrs; i++) {
duke@435 614 MemoryManager* mgr = pool->get_memory_manager(i);
duke@435 615 instanceOop p = mgr->get_memory_manager_instance(CHECK_NULL);
duke@435 616 instanceHandle ph(THREAD, p);
duke@435 617 mgrArray->obj_at_put(i, ph());
duke@435 618 }
duke@435 619 }
duke@435 620 return (jobjectArray) JNIHandles::make_local(env, mgrArray());
duke@435 621 JVM_END
duke@435 622
duke@435 623
duke@435 624 // Returns a java/lang/management/MemoryUsage object containing the memory usage
duke@435 625 // of a given memory pool.
duke@435 626 JVM_ENTRY(jobject, jmm_GetMemoryPoolUsage(JNIEnv* env, jobject obj))
duke@435 627 ResourceMark rm(THREAD);
duke@435 628
duke@435 629 MemoryPool* pool = get_memory_pool_from_jobject(obj, CHECK_NULL);
duke@435 630 if (pool != NULL) {
duke@435 631 MemoryUsage usage = pool->get_memory_usage();
duke@435 632 Handle h = MemoryService::create_MemoryUsage_obj(usage, CHECK_NULL);
duke@435 633 return JNIHandles::make_local(env, h());
duke@435 634 } else {
duke@435 635 return NULL;
duke@435 636 }
duke@435 637 JVM_END
duke@435 638
duke@435 639 // Returns a java/lang/management/MemoryUsage object containing the memory usage
duke@435 640 // of a given memory pool.
duke@435 641 JVM_ENTRY(jobject, jmm_GetPeakMemoryPoolUsage(JNIEnv* env, jobject obj))
duke@435 642 ResourceMark rm(THREAD);
duke@435 643
duke@435 644 MemoryPool* pool = get_memory_pool_from_jobject(obj, CHECK_NULL);
duke@435 645 if (pool != NULL) {
duke@435 646 MemoryUsage usage = pool->get_peak_memory_usage();
duke@435 647 Handle h = MemoryService::create_MemoryUsage_obj(usage, CHECK_NULL);
duke@435 648 return JNIHandles::make_local(env, h());
duke@435 649 } else {
duke@435 650 return NULL;
duke@435 651 }
duke@435 652 JVM_END
duke@435 653
duke@435 654 // Returns a java/lang/management/MemoryUsage object containing the memory usage
duke@435 655 // of a given memory pool after most recent GC.
duke@435 656 JVM_ENTRY(jobject, jmm_GetPoolCollectionUsage(JNIEnv* env, jobject obj))
duke@435 657 ResourceMark rm(THREAD);
duke@435 658
duke@435 659 MemoryPool* pool = get_memory_pool_from_jobject(obj, CHECK_NULL);
duke@435 660 if (pool != NULL && pool->is_collected_pool()) {
duke@435 661 MemoryUsage usage = pool->get_last_collection_usage();
duke@435 662 Handle h = MemoryService::create_MemoryUsage_obj(usage, CHECK_NULL);
duke@435 663 return JNIHandles::make_local(env, h());
duke@435 664 } else {
duke@435 665 return NULL;
duke@435 666 }
duke@435 667 JVM_END
duke@435 668
duke@435 669 // Sets the memory pool sensor for a threshold type
duke@435 670 JVM_ENTRY(void, jmm_SetPoolSensor(JNIEnv* env, jobject obj, jmmThresholdType type, jobject sensorObj))
duke@435 671 if (obj == NULL || sensorObj == NULL) {
duke@435 672 THROW(vmSymbols::java_lang_NullPointerException());
duke@435 673 }
duke@435 674
duke@435 675 klassOop sensor_klass = Management::sun_management_Sensor_klass(CHECK);
duke@435 676 oop s = JNIHandles::resolve(sensorObj);
duke@435 677 assert(s->is_instance(), "Sensor should be an instanceOop");
duke@435 678 instanceHandle sensor_h(THREAD, (instanceOop) s);
duke@435 679 if (!sensor_h->is_a(sensor_klass)) {
duke@435 680 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 681 "Sensor is not an instance of sun.management.Sensor class");
duke@435 682 }
duke@435 683
duke@435 684 MemoryPool* mpool = get_memory_pool_from_jobject(obj, CHECK);
duke@435 685 assert(mpool != NULL, "MemoryPool should exist");
duke@435 686
duke@435 687 switch (type) {
duke@435 688 case JMM_USAGE_THRESHOLD_HIGH:
duke@435 689 case JMM_USAGE_THRESHOLD_LOW:
duke@435 690 // have only one sensor for threshold high and low
duke@435 691 mpool->set_usage_sensor_obj(sensor_h);
duke@435 692 break;
duke@435 693 case JMM_COLLECTION_USAGE_THRESHOLD_HIGH:
duke@435 694 case JMM_COLLECTION_USAGE_THRESHOLD_LOW:
duke@435 695 // have only one sensor for threshold high and low
duke@435 696 mpool->set_gc_usage_sensor_obj(sensor_h);
duke@435 697 break;
duke@435 698 default:
duke@435 699 assert(false, "Unrecognized type");
duke@435 700 }
duke@435 701
duke@435 702 JVM_END
duke@435 703
duke@435 704
duke@435 705 // Sets the threshold of a given memory pool.
duke@435 706 // Returns the previous threshold.
duke@435 707 //
duke@435 708 // Input parameters:
duke@435 709 // pool - the MemoryPoolMXBean object
duke@435 710 // type - threshold type
duke@435 711 // threshold - the new threshold (must not be negative)
duke@435 712 //
duke@435 713 JVM_ENTRY(jlong, jmm_SetPoolThreshold(JNIEnv* env, jobject obj, jmmThresholdType type, jlong threshold))
duke@435 714 if (threshold < 0) {
duke@435 715 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 716 "Invalid threshold value",
duke@435 717 -1);
duke@435 718 }
duke@435 719
swamyv@924 720 if ((size_t)threshold > max_uintx) {
swamyv@924 721 stringStream st;
swamyv@924 722 st.print("Invalid valid threshold value. Threshold value (" UINT64_FORMAT ") > max value of size_t (" SIZE_FORMAT ")", (size_t)threshold, max_uintx);
swamyv@924 723 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(), st.as_string(), -1);
duke@435 724 }
duke@435 725
duke@435 726 MemoryPool* pool = get_memory_pool_from_jobject(obj, CHECK_(0L));
duke@435 727 assert(pool != NULL, "MemoryPool should exist");
duke@435 728
duke@435 729 jlong prev = 0;
duke@435 730 switch (type) {
duke@435 731 case JMM_USAGE_THRESHOLD_HIGH:
duke@435 732 if (!pool->usage_threshold()->is_high_threshold_supported()) {
duke@435 733 return -1;
duke@435 734 }
duke@435 735 prev = pool->usage_threshold()->set_high_threshold((size_t) threshold);
duke@435 736 break;
duke@435 737
duke@435 738 case JMM_USAGE_THRESHOLD_LOW:
duke@435 739 if (!pool->usage_threshold()->is_low_threshold_supported()) {
duke@435 740 return -1;
duke@435 741 }
duke@435 742 prev = pool->usage_threshold()->set_low_threshold((size_t) threshold);
duke@435 743 break;
duke@435 744
duke@435 745 case JMM_COLLECTION_USAGE_THRESHOLD_HIGH:
duke@435 746 if (!pool->gc_usage_threshold()->is_high_threshold_supported()) {
duke@435 747 return -1;
duke@435 748 }
duke@435 749 // return and the new threshold is effective for the next GC
duke@435 750 return pool->gc_usage_threshold()->set_high_threshold((size_t) threshold);
duke@435 751
duke@435 752 case JMM_COLLECTION_USAGE_THRESHOLD_LOW:
duke@435 753 if (!pool->gc_usage_threshold()->is_low_threshold_supported()) {
duke@435 754 return -1;
duke@435 755 }
duke@435 756 // return and the new threshold is effective for the next GC
duke@435 757 return pool->gc_usage_threshold()->set_low_threshold((size_t) threshold);
duke@435 758
duke@435 759 default:
duke@435 760 assert(false, "Unrecognized type");
duke@435 761 return -1;
duke@435 762 }
duke@435 763
duke@435 764 // When the threshold is changed, reevaluate if the low memory
duke@435 765 // detection is enabled.
duke@435 766 if (prev != threshold) {
duke@435 767 LowMemoryDetector::recompute_enabled_for_collected_pools();
duke@435 768 LowMemoryDetector::detect_low_memory(pool);
duke@435 769 }
duke@435 770 return prev;
duke@435 771 JVM_END
duke@435 772
duke@435 773 // Returns a java/lang/management/MemoryUsage object representing
duke@435 774 // the memory usage for the heap or non-heap memory.
duke@435 775 JVM_ENTRY(jobject, jmm_GetMemoryUsage(JNIEnv* env, jboolean heap))
duke@435 776 ResourceMark rm(THREAD);
duke@435 777
duke@435 778 // Calculate the memory usage
duke@435 779 size_t total_init = 0;
duke@435 780 size_t total_used = 0;
duke@435 781 size_t total_committed = 0;
duke@435 782 size_t total_max = 0;
duke@435 783 bool has_undefined_init_size = false;
duke@435 784 bool has_undefined_max_size = false;
duke@435 785
duke@435 786 for (int i = 0; i < MemoryService::num_memory_pools(); i++) {
duke@435 787 MemoryPool* pool = MemoryService::get_memory_pool(i);
duke@435 788 if ((heap && pool->is_heap()) || (!heap && pool->is_non_heap())) {
duke@435 789 MemoryUsage u = pool->get_memory_usage();
duke@435 790 total_used += u.used();
duke@435 791 total_committed += u.committed();
duke@435 792
duke@435 793 // if any one of the memory pool has undefined init_size or max_size,
duke@435 794 // set it to -1
duke@435 795 if (u.init_size() == (size_t)-1) {
duke@435 796 has_undefined_init_size = true;
duke@435 797 }
duke@435 798 if (!has_undefined_init_size) {
duke@435 799 total_init += u.init_size();
duke@435 800 }
duke@435 801
duke@435 802 if (u.max_size() == (size_t)-1) {
duke@435 803 has_undefined_max_size = true;
duke@435 804 }
duke@435 805 if (!has_undefined_max_size) {
duke@435 806 total_max += u.max_size();
duke@435 807 }
duke@435 808 }
duke@435 809 }
duke@435 810
tonyp@2112 811 // In our current implementation, we make sure that all non-heap
tonyp@2112 812 // pools have defined init and max sizes. Heap pools do not matter,
tonyp@2112 813 // as we never use total_init and total_max for them.
tonyp@2112 814 assert(heap || !has_undefined_init_size, "Undefined init size");
tonyp@2112 815 assert(heap || !has_undefined_max_size, "Undefined max size");
duke@435 816
phh@1499 817 MemoryUsage usage((heap ? InitialHeapSize : total_init),
duke@435 818 total_used,
duke@435 819 total_committed,
duke@435 820 (heap ? Universe::heap()->max_capacity() : total_max));
duke@435 821
duke@435 822 Handle obj = MemoryService::create_MemoryUsage_obj(usage, CHECK_NULL);
duke@435 823 return JNIHandles::make_local(env, obj());
duke@435 824 JVM_END
duke@435 825
duke@435 826 // Returns the boolean value of a given attribute.
duke@435 827 JVM_LEAF(jboolean, jmm_GetBoolAttribute(JNIEnv *env, jmmBoolAttribute att))
duke@435 828 switch (att) {
duke@435 829 case JMM_VERBOSE_GC:
duke@435 830 return MemoryService::get_verbose();
duke@435 831 case JMM_VERBOSE_CLASS:
duke@435 832 return ClassLoadingService::get_verbose();
duke@435 833 case JMM_THREAD_CONTENTION_MONITORING:
duke@435 834 return ThreadService::is_thread_monitoring_contention();
duke@435 835 case JMM_THREAD_CPU_TIME:
duke@435 836 return ThreadService::is_thread_cpu_time_enabled();
duke@435 837 default:
duke@435 838 assert(0, "Unrecognized attribute");
duke@435 839 return false;
duke@435 840 }
duke@435 841 JVM_END
duke@435 842
duke@435 843 // Sets the given boolean attribute and returns the previous value.
duke@435 844 JVM_ENTRY(jboolean, jmm_SetBoolAttribute(JNIEnv *env, jmmBoolAttribute att, jboolean flag))
duke@435 845 switch (att) {
duke@435 846 case JMM_VERBOSE_GC:
duke@435 847 return MemoryService::set_verbose(flag != 0);
duke@435 848 case JMM_VERBOSE_CLASS:
duke@435 849 return ClassLoadingService::set_verbose(flag != 0);
duke@435 850 case JMM_THREAD_CONTENTION_MONITORING:
duke@435 851 return ThreadService::set_thread_monitoring_contention(flag != 0);
duke@435 852 case JMM_THREAD_CPU_TIME:
duke@435 853 return ThreadService::set_thread_cpu_time_enabled(flag != 0);
duke@435 854 default:
duke@435 855 assert(0, "Unrecognized attribute");
duke@435 856 return false;
duke@435 857 }
duke@435 858 JVM_END
duke@435 859
duke@435 860
duke@435 861 static jlong get_gc_attribute(GCMemoryManager* mgr, jmmLongAttribute att) {
duke@435 862 switch (att) {
duke@435 863 case JMM_GC_TIME_MS:
duke@435 864 return mgr->gc_time_ms();
duke@435 865
duke@435 866 case JMM_GC_COUNT:
duke@435 867 return mgr->gc_count();
duke@435 868
duke@435 869 case JMM_GC_EXT_ATTRIBUTE_INFO_SIZE:
duke@435 870 // current implementation only has 1 ext attribute
duke@435 871 return 1;
duke@435 872
duke@435 873 default:
duke@435 874 assert(0, "Unrecognized GC attribute");
duke@435 875 return -1;
duke@435 876 }
duke@435 877 }
duke@435 878
duke@435 879 class VmThreadCountClosure: public ThreadClosure {
duke@435 880 private:
duke@435 881 int _count;
duke@435 882 public:
duke@435 883 VmThreadCountClosure() : _count(0) {};
duke@435 884 void do_thread(Thread* thread);
duke@435 885 int count() { return _count; }
duke@435 886 };
duke@435 887
duke@435 888 void VmThreadCountClosure::do_thread(Thread* thread) {
duke@435 889 // exclude externally visible JavaThreads
duke@435 890 if (thread->is_Java_thread() && !thread->is_hidden_from_external_view()) {
duke@435 891 return;
duke@435 892 }
duke@435 893
duke@435 894 _count++;
duke@435 895 }
duke@435 896
duke@435 897 static jint get_vm_thread_count() {
duke@435 898 VmThreadCountClosure vmtcc;
duke@435 899 {
duke@435 900 MutexLockerEx ml(Threads_lock);
duke@435 901 Threads::threads_do(&vmtcc);
duke@435 902 }
duke@435 903
duke@435 904 return vmtcc.count();
duke@435 905 }
duke@435 906
duke@435 907 static jint get_num_flags() {
duke@435 908 // last flag entry is always NULL, so subtract 1
duke@435 909 int nFlags = (int) Flag::numFlags - 1;
duke@435 910 int count = 0;
duke@435 911 for (int i = 0; i < nFlags; i++) {
duke@435 912 Flag* flag = &Flag::flags[i];
ysr@785 913 // Exclude the locked (diagnostic, experimental) flags
duke@435 914 if (flag->is_unlocked() || flag->is_unlocker()) {
duke@435 915 count++;
duke@435 916 }
duke@435 917 }
duke@435 918 return count;
duke@435 919 }
duke@435 920
duke@435 921 static jlong get_long_attribute(jmmLongAttribute att) {
duke@435 922 switch (att) {
duke@435 923 case JMM_CLASS_LOADED_COUNT:
duke@435 924 return ClassLoadingService::loaded_class_count();
duke@435 925
duke@435 926 case JMM_CLASS_UNLOADED_COUNT:
duke@435 927 return ClassLoadingService::unloaded_class_count();
duke@435 928
duke@435 929 case JMM_THREAD_TOTAL_COUNT:
duke@435 930 return ThreadService::get_total_thread_count();
duke@435 931
duke@435 932 case JMM_THREAD_LIVE_COUNT:
duke@435 933 return ThreadService::get_live_thread_count();
duke@435 934
duke@435 935 case JMM_THREAD_PEAK_COUNT:
duke@435 936 return ThreadService::get_peak_thread_count();
duke@435 937
duke@435 938 case JMM_THREAD_DAEMON_COUNT:
duke@435 939 return ThreadService::get_daemon_thread_count();
duke@435 940
duke@435 941 case JMM_JVM_INIT_DONE_TIME_MS:
duke@435 942 return Management::vm_init_done_time();
duke@435 943
duke@435 944 case JMM_COMPILE_TOTAL_TIME_MS:
duke@435 945 return Management::ticks_to_ms(CompileBroker::total_compilation_ticks());
duke@435 946
duke@435 947 case JMM_OS_PROCESS_ID:
duke@435 948 return os::current_process_id();
duke@435 949
duke@435 950 // Hotspot-specific counters
duke@435 951 case JMM_CLASS_LOADED_BYTES:
duke@435 952 return ClassLoadingService::loaded_class_bytes();
duke@435 953
duke@435 954 case JMM_CLASS_UNLOADED_BYTES:
duke@435 955 return ClassLoadingService::unloaded_class_bytes();
duke@435 956
duke@435 957 case JMM_SHARED_CLASS_LOADED_COUNT:
duke@435 958 return ClassLoadingService::loaded_shared_class_count();
duke@435 959
duke@435 960 case JMM_SHARED_CLASS_UNLOADED_COUNT:
duke@435 961 return ClassLoadingService::unloaded_shared_class_count();
duke@435 962
duke@435 963
duke@435 964 case JMM_SHARED_CLASS_LOADED_BYTES:
duke@435 965 return ClassLoadingService::loaded_shared_class_bytes();
duke@435 966
duke@435 967 case JMM_SHARED_CLASS_UNLOADED_BYTES:
duke@435 968 return ClassLoadingService::unloaded_shared_class_bytes();
duke@435 969
duke@435 970 case JMM_TOTAL_CLASSLOAD_TIME_MS:
duke@435 971 return ClassLoader::classloader_time_ms();
duke@435 972
duke@435 973 case JMM_VM_GLOBAL_COUNT:
duke@435 974 return get_num_flags();
duke@435 975
duke@435 976 case JMM_SAFEPOINT_COUNT:
duke@435 977 return RuntimeService::safepoint_count();
duke@435 978
duke@435 979 case JMM_TOTAL_SAFEPOINTSYNC_TIME_MS:
duke@435 980 return RuntimeService::safepoint_sync_time_ms();
duke@435 981
duke@435 982 case JMM_TOTAL_STOPPED_TIME_MS:
duke@435 983 return RuntimeService::safepoint_time_ms();
duke@435 984
duke@435 985 case JMM_TOTAL_APP_TIME_MS:
duke@435 986 return RuntimeService::application_time_ms();
duke@435 987
duke@435 988 case JMM_VM_THREAD_COUNT:
duke@435 989 return get_vm_thread_count();
duke@435 990
duke@435 991 case JMM_CLASS_INIT_TOTAL_COUNT:
duke@435 992 return ClassLoader::class_init_count();
duke@435 993
duke@435 994 case JMM_CLASS_INIT_TOTAL_TIME_MS:
duke@435 995 return ClassLoader::class_init_time_ms();
duke@435 996
duke@435 997 case JMM_CLASS_VERIFY_TOTAL_TIME_MS:
duke@435 998 return ClassLoader::class_verify_time_ms();
duke@435 999
duke@435 1000 case JMM_METHOD_DATA_SIZE_BYTES:
duke@435 1001 return ClassLoadingService::class_method_data_size();
duke@435 1002
duke@435 1003 case JMM_OS_MEM_TOTAL_PHYSICAL_BYTES:
duke@435 1004 return os::physical_memory();
duke@435 1005
duke@435 1006 default:
duke@435 1007 return -1;
duke@435 1008 }
duke@435 1009 }
duke@435 1010
duke@435 1011
duke@435 1012 // Returns the long value of a given attribute.
duke@435 1013 JVM_ENTRY(jlong, jmm_GetLongAttribute(JNIEnv *env, jobject obj, jmmLongAttribute att))
duke@435 1014 if (obj == NULL) {
duke@435 1015 return get_long_attribute(att);
duke@435 1016 } else {
duke@435 1017 GCMemoryManager* mgr = get_gc_memory_manager_from_jobject(obj, CHECK_(0L));
duke@435 1018 if (mgr != NULL) {
duke@435 1019 return get_gc_attribute(mgr, att);
duke@435 1020 }
duke@435 1021 }
duke@435 1022 return -1;
duke@435 1023 JVM_END
duke@435 1024
duke@435 1025 // Gets the value of all attributes specified in the given array
duke@435 1026 // and sets the value in the result array.
duke@435 1027 // Returns the number of attributes found.
duke@435 1028 JVM_ENTRY(jint, jmm_GetLongAttributes(JNIEnv *env,
duke@435 1029 jobject obj,
duke@435 1030 jmmLongAttribute* atts,
duke@435 1031 jint count,
duke@435 1032 jlong* result))
duke@435 1033
duke@435 1034 int num_atts = 0;
duke@435 1035 if (obj == NULL) {
duke@435 1036 for (int i = 0; i < count; i++) {
duke@435 1037 result[i] = get_long_attribute(atts[i]);
duke@435 1038 if (result[i] != -1) {
duke@435 1039 num_atts++;
duke@435 1040 }
duke@435 1041 }
duke@435 1042 } else {
duke@435 1043 GCMemoryManager* mgr = get_gc_memory_manager_from_jobject(obj, CHECK_0);
duke@435 1044 for (int i = 0; i < count; i++) {
duke@435 1045 result[i] = get_gc_attribute(mgr, atts[i]);
duke@435 1046 if (result[i] != -1) {
duke@435 1047 num_atts++;
duke@435 1048 }
duke@435 1049 }
duke@435 1050 }
duke@435 1051 return num_atts;
duke@435 1052 JVM_END
duke@435 1053
duke@435 1054 // Helper function to do thread dump for a specific list of threads
duke@435 1055 static void do_thread_dump(ThreadDumpResult* dump_result,
duke@435 1056 typeArrayHandle ids_ah, // array of thread ID (long[])
duke@435 1057 int num_threads,
duke@435 1058 int max_depth,
duke@435 1059 bool with_locked_monitors,
duke@435 1060 bool with_locked_synchronizers,
duke@435 1061 TRAPS) {
duke@435 1062
duke@435 1063 // First get an array of threadObj handles.
duke@435 1064 // A JavaThread may terminate before we get the stack trace.
duke@435 1065 GrowableArray<instanceHandle>* thread_handle_array = new GrowableArray<instanceHandle>(num_threads);
duke@435 1066 {
duke@435 1067 MutexLockerEx ml(Threads_lock);
duke@435 1068 for (int i = 0; i < num_threads; i++) {
duke@435 1069 jlong tid = ids_ah->long_at(i);
duke@435 1070 JavaThread* jt = find_java_thread_from_id(tid);
duke@435 1071 oop thread_obj = (jt != NULL ? jt->threadObj() : (oop)NULL);
duke@435 1072 instanceHandle threadObj_h(THREAD, (instanceOop) thread_obj);
duke@435 1073 thread_handle_array->append(threadObj_h);
duke@435 1074 }
duke@435 1075 }
duke@435 1076
duke@435 1077 // Obtain thread dumps and thread snapshot information
duke@435 1078 VM_ThreadDump op(dump_result,
duke@435 1079 thread_handle_array,
duke@435 1080 num_threads,
duke@435 1081 max_depth, /* stack depth */
duke@435 1082 with_locked_monitors,
duke@435 1083 with_locked_synchronizers);
duke@435 1084 VMThread::execute(&op);
duke@435 1085 }
duke@435 1086
duke@435 1087 // Gets an array of ThreadInfo objects. Each element is the ThreadInfo
duke@435 1088 // for the thread ID specified in the corresponding entry in
duke@435 1089 // the given array of thread IDs; or NULL if the thread does not exist
duke@435 1090 // or has terminated.
duke@435 1091 //
duke@435 1092 // Input parameters:
duke@435 1093 // ids - array of thread IDs
duke@435 1094 // maxDepth - the maximum depth of stack traces to be dumped:
duke@435 1095 // maxDepth == -1 requests to dump entire stack trace.
duke@435 1096 // maxDepth == 0 requests no stack trace.
duke@435 1097 // infoArray - array of ThreadInfo objects
duke@435 1098 //
duke@435 1099 JVM_ENTRY(jint, jmm_GetThreadInfo(JNIEnv *env, jlongArray ids, jint maxDepth, jobjectArray infoArray))
duke@435 1100 // Check if threads is null
duke@435 1101 if (ids == NULL || infoArray == NULL) {
duke@435 1102 THROW_(vmSymbols::java_lang_NullPointerException(), -1);
duke@435 1103 }
duke@435 1104
duke@435 1105 if (maxDepth < -1) {
duke@435 1106 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 1107 "Invalid maxDepth", -1);
duke@435 1108 }
duke@435 1109
duke@435 1110 ResourceMark rm(THREAD);
duke@435 1111 typeArrayOop ta = typeArrayOop(JNIHandles::resolve_non_null(ids));
duke@435 1112 typeArrayHandle ids_ah(THREAD, ta);
duke@435 1113
duke@435 1114 oop infoArray_obj = JNIHandles::resolve_non_null(infoArray);
duke@435 1115 objArrayOop oa = objArrayOop(infoArray_obj);
duke@435 1116 objArrayHandle infoArray_h(THREAD, oa);
duke@435 1117
duke@435 1118 // validate the thread id array
duke@435 1119 validate_thread_id_array(ids_ah, CHECK_0);
duke@435 1120
duke@435 1121 // validate the ThreadInfo[] parameters
duke@435 1122 validate_thread_info_array(infoArray_h, CHECK_0);
duke@435 1123
duke@435 1124 // infoArray must be of the same length as the given array of thread IDs
duke@435 1125 int num_threads = ids_ah->length();
duke@435 1126 if (num_threads != infoArray_h->length()) {
duke@435 1127 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 1128 "The length of the given ThreadInfo array does not match the length of the given array of thread IDs", -1);
duke@435 1129 }
duke@435 1130
duke@435 1131 if (JDK_Version::is_gte_jdk16x_version()) {
duke@435 1132 // make sure the AbstractOwnableSynchronizer klass is loaded before taking thread snapshots
duke@435 1133 java_util_concurrent_locks_AbstractOwnableSynchronizer::initialize(CHECK_0);
duke@435 1134 }
duke@435 1135
duke@435 1136 // Must use ThreadDumpResult to store the ThreadSnapshot.
duke@435 1137 // GC may occur after the thread snapshots are taken but before
duke@435 1138 // this function returns. The threadObj and other oops kept
duke@435 1139 // in the ThreadSnapshot are marked and adjusted during GC.
duke@435 1140 ThreadDumpResult dump_result(num_threads);
duke@435 1141
duke@435 1142 if (maxDepth == 0) {
duke@435 1143 // no stack trace dumped - do not need to stop the world
duke@435 1144 {
duke@435 1145 MutexLockerEx ml(Threads_lock);
duke@435 1146 for (int i = 0; i < num_threads; i++) {
duke@435 1147 jlong tid = ids_ah->long_at(i);
duke@435 1148 JavaThread* jt = find_java_thread_from_id(tid);
duke@435 1149 ThreadSnapshot* ts;
duke@435 1150 if (jt == NULL) {
duke@435 1151 // if the thread does not exist or now it is terminated,
duke@435 1152 // create dummy snapshot
duke@435 1153 ts = new ThreadSnapshot();
duke@435 1154 } else {
duke@435 1155 ts = new ThreadSnapshot(jt);
duke@435 1156 }
duke@435 1157 dump_result.add_thread_snapshot(ts);
duke@435 1158 }
duke@435 1159 }
duke@435 1160 } else {
duke@435 1161 // obtain thread dump with the specific list of threads with stack trace
duke@435 1162
duke@435 1163 do_thread_dump(&dump_result,
duke@435 1164 ids_ah,
duke@435 1165 num_threads,
duke@435 1166 maxDepth,
duke@435 1167 false, /* no locked monitor */
duke@435 1168 false, /* no locked synchronizers */
duke@435 1169 CHECK_0);
duke@435 1170 }
duke@435 1171
duke@435 1172 int num_snapshots = dump_result.num_snapshots();
duke@435 1173 assert(num_snapshots == num_threads, "Must match the number of thread snapshots");
duke@435 1174 int index = 0;
duke@435 1175 for (ThreadSnapshot* ts = dump_result.snapshots(); ts != NULL; index++, ts = ts->next()) {
duke@435 1176 // For each thread, create an java/lang/management/ThreadInfo object
duke@435 1177 // and fill with the thread information
duke@435 1178
duke@435 1179 if (ts->threadObj() == NULL) {
duke@435 1180 // if the thread does not exist or now it is terminated, set threadinfo to NULL
duke@435 1181 infoArray_h->obj_at_put(index, NULL);
duke@435 1182 continue;
duke@435 1183 }
duke@435 1184
duke@435 1185 // Create java.lang.management.ThreadInfo object
duke@435 1186 instanceOop info_obj = Management::create_thread_info_instance(ts, CHECK_0);
duke@435 1187 infoArray_h->obj_at_put(index, info_obj);
duke@435 1188 }
duke@435 1189 return 0;
duke@435 1190 JVM_END
duke@435 1191
duke@435 1192 // Dump thread info for the specified threads.
duke@435 1193 // It returns an array of ThreadInfo objects. Each element is the ThreadInfo
duke@435 1194 // for the thread ID specified in the corresponding entry in
duke@435 1195 // the given array of thread IDs; or NULL if the thread does not exist
duke@435 1196 // or has terminated.
duke@435 1197 //
duke@435 1198 // Input parameter:
duke@435 1199 // ids - array of thread IDs; NULL indicates all live threads
duke@435 1200 // locked_monitors - if true, dump locked object monitors
duke@435 1201 // locked_synchronizers - if true, dump locked JSR-166 synchronizers
duke@435 1202 //
duke@435 1203 JVM_ENTRY(jobjectArray, jmm_DumpThreads(JNIEnv *env, jlongArray thread_ids, jboolean locked_monitors, jboolean locked_synchronizers))
duke@435 1204 ResourceMark rm(THREAD);
duke@435 1205
duke@435 1206 if (JDK_Version::is_gte_jdk16x_version()) {
duke@435 1207 // make sure the AbstractOwnableSynchronizer klass is loaded before taking thread snapshots
duke@435 1208 java_util_concurrent_locks_AbstractOwnableSynchronizer::initialize(CHECK_NULL);
duke@435 1209 }
duke@435 1210
duke@435 1211 typeArrayOop ta = typeArrayOop(JNIHandles::resolve(thread_ids));
duke@435 1212 int num_threads = (ta != NULL ? ta->length() : 0);
duke@435 1213 typeArrayHandle ids_ah(THREAD, ta);
duke@435 1214
duke@435 1215 ThreadDumpResult dump_result(num_threads); // can safepoint
duke@435 1216
duke@435 1217 if (ids_ah() != NULL) {
duke@435 1218
duke@435 1219 // validate the thread id array
duke@435 1220 validate_thread_id_array(ids_ah, CHECK_NULL);
duke@435 1221
duke@435 1222 // obtain thread dump of a specific list of threads
duke@435 1223 do_thread_dump(&dump_result,
duke@435 1224 ids_ah,
duke@435 1225 num_threads,
duke@435 1226 -1, /* entire stack */
duke@435 1227 (locked_monitors ? true : false), /* with locked monitors */
duke@435 1228 (locked_synchronizers ? true : false), /* with locked synchronizers */
duke@435 1229 CHECK_NULL);
duke@435 1230 } else {
duke@435 1231 // obtain thread dump of all threads
duke@435 1232 VM_ThreadDump op(&dump_result,
duke@435 1233 -1, /* entire stack */
duke@435 1234 (locked_monitors ? true : false), /* with locked monitors */
duke@435 1235 (locked_synchronizers ? true : false) /* with locked synchronizers */);
duke@435 1236 VMThread::execute(&op);
duke@435 1237 }
duke@435 1238
duke@435 1239 int num_snapshots = dump_result.num_snapshots();
duke@435 1240
duke@435 1241 // create the result ThreadInfo[] object
duke@435 1242 klassOop k = Management::java_lang_management_ThreadInfo_klass(CHECK_NULL);
duke@435 1243 instanceKlassHandle ik (THREAD, k);
duke@435 1244 objArrayOop r = oopFactory::new_objArray(ik(), num_snapshots, CHECK_NULL);
duke@435 1245 objArrayHandle result_h(THREAD, r);
duke@435 1246
duke@435 1247 int index = 0;
duke@435 1248 for (ThreadSnapshot* ts = dump_result.snapshots(); ts != NULL; ts = ts->next(), index++) {
duke@435 1249 if (ts->threadObj() == NULL) {
duke@435 1250 // if the thread does not exist or now it is terminated, set threadinfo to NULL
duke@435 1251 result_h->obj_at_put(index, NULL);
duke@435 1252 continue;
duke@435 1253 }
duke@435 1254
duke@435 1255
duke@435 1256
duke@435 1257 ThreadStackTrace* stacktrace = ts->get_stack_trace();
duke@435 1258 assert(stacktrace != NULL, "Must have a stack trace dumped");
duke@435 1259
duke@435 1260 // Create Object[] filled with locked monitors
duke@435 1261 // Create int[] filled with the stack depth where a monitor was locked
duke@435 1262 int num_frames = stacktrace->get_stack_depth();
duke@435 1263 int num_locked_monitors = stacktrace->num_jni_locked_monitors();
duke@435 1264
duke@435 1265 // Count the total number of locked monitors
duke@435 1266 for (int i = 0; i < num_frames; i++) {
duke@435 1267 StackFrameInfo* frame = stacktrace->stack_frame_at(i);
duke@435 1268 num_locked_monitors += frame->num_locked_monitors();
duke@435 1269 }
duke@435 1270
duke@435 1271 objArrayHandle monitors_array;
duke@435 1272 typeArrayHandle depths_array;
duke@435 1273 objArrayHandle synchronizers_array;
duke@435 1274
duke@435 1275 if (locked_monitors) {
duke@435 1276 // Constructs Object[] and int[] to contain the object monitor and the stack depth
duke@435 1277 // where the thread locked it
duke@435 1278 objArrayOop array = oopFactory::new_system_objArray(num_locked_monitors, CHECK_NULL);
duke@435 1279 objArrayHandle mh(THREAD, array);
duke@435 1280 monitors_array = mh;
duke@435 1281
duke@435 1282 typeArrayOop tarray = oopFactory::new_typeArray(T_INT, num_locked_monitors, CHECK_NULL);
duke@435 1283 typeArrayHandle dh(THREAD, tarray);
duke@435 1284 depths_array = dh;
duke@435 1285
duke@435 1286 int count = 0;
duke@435 1287 int j = 0;
duke@435 1288 for (int depth = 0; depth < num_frames; depth++) {
duke@435 1289 StackFrameInfo* frame = stacktrace->stack_frame_at(depth);
duke@435 1290 int len = frame->num_locked_monitors();
duke@435 1291 GrowableArray<oop>* locked_monitors = frame->locked_monitors();
duke@435 1292 for (j = 0; j < len; j++) {
duke@435 1293 oop monitor = locked_monitors->at(j);
duke@435 1294 assert(monitor != NULL && monitor->is_instance(), "must be a Java object");
duke@435 1295 monitors_array->obj_at_put(count, monitor);
duke@435 1296 depths_array->int_at_put(count, depth);
duke@435 1297 count++;
duke@435 1298 }
duke@435 1299 }
duke@435 1300
duke@435 1301 GrowableArray<oop>* jni_locked_monitors = stacktrace->jni_locked_monitors();
duke@435 1302 for (j = 0; j < jni_locked_monitors->length(); j++) {
duke@435 1303 oop object = jni_locked_monitors->at(j);
duke@435 1304 assert(object != NULL && object->is_instance(), "must be a Java object");
duke@435 1305 monitors_array->obj_at_put(count, object);
duke@435 1306 // Monitor locked via JNI MonitorEnter call doesn't have stack depth info
duke@435 1307 depths_array->int_at_put(count, -1);
duke@435 1308 count++;
duke@435 1309 }
duke@435 1310 assert(count == num_locked_monitors, "number of locked monitors doesn't match");
duke@435 1311 }
duke@435 1312
duke@435 1313 if (locked_synchronizers) {
duke@435 1314 // Create Object[] filled with locked JSR-166 synchronizers
duke@435 1315 assert(ts->threadObj() != NULL, "Must be a valid JavaThread");
duke@435 1316 ThreadConcurrentLocks* tcl = ts->get_concurrent_locks();
duke@435 1317 GrowableArray<instanceOop>* locks = (tcl != NULL ? tcl->owned_locks() : NULL);
duke@435 1318 int num_locked_synchronizers = (locks != NULL ? locks->length() : 0);
duke@435 1319
duke@435 1320 objArrayOop array = oopFactory::new_system_objArray(num_locked_synchronizers, CHECK_NULL);
duke@435 1321 objArrayHandle sh(THREAD, array);
duke@435 1322 synchronizers_array = sh;
duke@435 1323
duke@435 1324 for (int k = 0; k < num_locked_synchronizers; k++) {
duke@435 1325 synchronizers_array->obj_at_put(k, locks->at(k));
duke@435 1326 }
duke@435 1327 }
duke@435 1328
duke@435 1329 // Create java.lang.management.ThreadInfo object
duke@435 1330 instanceOop info_obj = Management::create_thread_info_instance(ts,
duke@435 1331 monitors_array,
duke@435 1332 depths_array,
duke@435 1333 synchronizers_array,
duke@435 1334 CHECK_NULL);
duke@435 1335 result_h->obj_at_put(index, info_obj);
duke@435 1336 }
duke@435 1337
duke@435 1338 return (jobjectArray) JNIHandles::make_local(env, result_h());
duke@435 1339 JVM_END
duke@435 1340
duke@435 1341 // Returns an array of Class objects.
duke@435 1342 JVM_ENTRY(jobjectArray, jmm_GetLoadedClasses(JNIEnv *env))
duke@435 1343 ResourceMark rm(THREAD);
duke@435 1344
duke@435 1345 LoadedClassesEnumerator lce(THREAD); // Pass current Thread as parameter
duke@435 1346
duke@435 1347 int num_classes = lce.num_loaded_classes();
never@1577 1348 objArrayOop r = oopFactory::new_objArray(SystemDictionary::Class_klass(), num_classes, CHECK_0);
duke@435 1349 objArrayHandle classes_ah(THREAD, r);
duke@435 1350
duke@435 1351 for (int i = 0; i < num_classes; i++) {
duke@435 1352 KlassHandle kh = lce.get_klass(i);
duke@435 1353 oop mirror = Klass::cast(kh())->java_mirror();
duke@435 1354 classes_ah->obj_at_put(i, mirror);
duke@435 1355 }
duke@435 1356
duke@435 1357 return (jobjectArray) JNIHandles::make_local(env, classes_ah());
duke@435 1358 JVM_END
duke@435 1359
duke@435 1360 // Reset statistic. Return true if the requested statistic is reset.
duke@435 1361 // Otherwise, return false.
duke@435 1362 //
duke@435 1363 // Input parameters:
duke@435 1364 // obj - specify which instance the statistic associated with to be reset
duke@435 1365 // For PEAK_POOL_USAGE stat, obj is required to be a memory pool object.
duke@435 1366 // For THREAD_CONTENTION_COUNT and TIME stat, obj is required to be a thread ID.
duke@435 1367 // type - the type of statistic to be reset
duke@435 1368 //
duke@435 1369 JVM_ENTRY(jboolean, jmm_ResetStatistic(JNIEnv *env, jvalue obj, jmmStatisticType type))
duke@435 1370 ResourceMark rm(THREAD);
duke@435 1371
duke@435 1372 switch (type) {
duke@435 1373 case JMM_STAT_PEAK_THREAD_COUNT:
duke@435 1374 ThreadService::reset_peak_thread_count();
duke@435 1375 return true;
duke@435 1376
duke@435 1377 case JMM_STAT_THREAD_CONTENTION_COUNT:
duke@435 1378 case JMM_STAT_THREAD_CONTENTION_TIME: {
duke@435 1379 jlong tid = obj.j;
duke@435 1380 if (tid < 0) {
duke@435 1381 THROW_(vmSymbols::java_lang_IllegalArgumentException(), JNI_FALSE);
duke@435 1382 }
duke@435 1383
duke@435 1384 // Look for the JavaThread of this given tid
duke@435 1385 MutexLockerEx ml(Threads_lock);
duke@435 1386 if (tid == 0) {
duke@435 1387 // reset contention statistics for all threads if tid == 0
duke@435 1388 for (JavaThread* java_thread = Threads::first(); java_thread != NULL; java_thread = java_thread->next()) {
duke@435 1389 if (type == JMM_STAT_THREAD_CONTENTION_COUNT) {
duke@435 1390 ThreadService::reset_contention_count_stat(java_thread);
duke@435 1391 } else {
duke@435 1392 ThreadService::reset_contention_time_stat(java_thread);
duke@435 1393 }
duke@435 1394 }
duke@435 1395 } else {
duke@435 1396 // reset contention statistics for a given thread
duke@435 1397 JavaThread* java_thread = find_java_thread_from_id(tid);
duke@435 1398 if (java_thread == NULL) {
duke@435 1399 return false;
duke@435 1400 }
duke@435 1401
duke@435 1402 if (type == JMM_STAT_THREAD_CONTENTION_COUNT) {
duke@435 1403 ThreadService::reset_contention_count_stat(java_thread);
duke@435 1404 } else {
duke@435 1405 ThreadService::reset_contention_time_stat(java_thread);
duke@435 1406 }
duke@435 1407 }
duke@435 1408 return true;
duke@435 1409 break;
duke@435 1410 }
duke@435 1411 case JMM_STAT_PEAK_POOL_USAGE: {
duke@435 1412 jobject o = obj.l;
duke@435 1413 if (o == NULL) {
duke@435 1414 THROW_(vmSymbols::java_lang_NullPointerException(), JNI_FALSE);
duke@435 1415 }
duke@435 1416
duke@435 1417 oop pool_obj = JNIHandles::resolve(o);
duke@435 1418 assert(pool_obj->is_instance(), "Should be an instanceOop");
duke@435 1419 instanceHandle ph(THREAD, (instanceOop) pool_obj);
duke@435 1420
duke@435 1421 MemoryPool* pool = MemoryService::get_memory_pool(ph);
duke@435 1422 if (pool != NULL) {
duke@435 1423 pool->reset_peak_memory_usage();
duke@435 1424 return true;
duke@435 1425 }
duke@435 1426 break;
duke@435 1427 }
duke@435 1428 case JMM_STAT_GC_STAT: {
duke@435 1429 jobject o = obj.l;
duke@435 1430 if (o == NULL) {
duke@435 1431 THROW_(vmSymbols::java_lang_NullPointerException(), JNI_FALSE);
duke@435 1432 }
duke@435 1433
duke@435 1434 GCMemoryManager* mgr = get_gc_memory_manager_from_jobject(o, CHECK_0);
duke@435 1435 if (mgr != NULL) {
duke@435 1436 mgr->reset_gc_stat();
duke@435 1437 return true;
duke@435 1438 }
duke@435 1439 break;
duke@435 1440 }
duke@435 1441 default:
duke@435 1442 assert(0, "Unknown Statistic Type");
duke@435 1443 }
duke@435 1444 return false;
duke@435 1445 JVM_END
duke@435 1446
duke@435 1447 // Returns the fast estimate of CPU time consumed by
duke@435 1448 // a given thread (in nanoseconds).
duke@435 1449 // If thread_id == 0, return CPU time for the current thread.
duke@435 1450 JVM_ENTRY(jlong, jmm_GetThreadCpuTime(JNIEnv *env, jlong thread_id))
duke@435 1451 if (!os::is_thread_cpu_time_supported()) {
duke@435 1452 return -1;
duke@435 1453 }
duke@435 1454
duke@435 1455 if (thread_id < 0) {
duke@435 1456 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 1457 "Invalid thread ID", -1);
duke@435 1458 }
duke@435 1459
duke@435 1460 JavaThread* java_thread = NULL;
duke@435 1461 if (thread_id == 0) {
duke@435 1462 // current thread
duke@435 1463 return os::current_thread_cpu_time();
duke@435 1464 } else {
duke@435 1465 MutexLockerEx ml(Threads_lock);
duke@435 1466 java_thread = find_java_thread_from_id(thread_id);
duke@435 1467 if (java_thread != NULL) {
duke@435 1468 return os::thread_cpu_time((Thread*) java_thread);
duke@435 1469 }
duke@435 1470 }
duke@435 1471 return -1;
duke@435 1472 JVM_END
duke@435 1473
duke@435 1474 // Returns the CPU time consumed by a given thread (in nanoseconds).
duke@435 1475 // If thread_id == 0, CPU time for the current thread is returned.
duke@435 1476 // If user_sys_cpu_time = true, user level and system CPU time of
duke@435 1477 // a given thread is returned; otherwise, only user level CPU time
duke@435 1478 // is returned.
duke@435 1479 JVM_ENTRY(jlong, jmm_GetThreadCpuTimeWithKind(JNIEnv *env, jlong thread_id, jboolean user_sys_cpu_time))
duke@435 1480 if (!os::is_thread_cpu_time_supported()) {
duke@435 1481 return -1;
duke@435 1482 }
duke@435 1483
duke@435 1484 if (thread_id < 0) {
duke@435 1485 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 1486 "Invalid thread ID", -1);
duke@435 1487 }
duke@435 1488
duke@435 1489 JavaThread* java_thread = NULL;
duke@435 1490 if (thread_id == 0) {
duke@435 1491 // current thread
duke@435 1492 return os::current_thread_cpu_time(user_sys_cpu_time != 0);
duke@435 1493 } else {
duke@435 1494 MutexLockerEx ml(Threads_lock);
duke@435 1495 java_thread = find_java_thread_from_id(thread_id);
duke@435 1496 if (java_thread != NULL) {
duke@435 1497 return os::thread_cpu_time((Thread*) java_thread, user_sys_cpu_time != 0);
duke@435 1498 }
duke@435 1499 }
duke@435 1500 return -1;
duke@435 1501 JVM_END
duke@435 1502
duke@435 1503 // Returns a String array of all VM global flag names
duke@435 1504 JVM_ENTRY(jobjectArray, jmm_GetVMGlobalNames(JNIEnv *env))
duke@435 1505 // last flag entry is always NULL, so subtract 1
duke@435 1506 int nFlags = (int) Flag::numFlags - 1;
duke@435 1507 // allocate a temp array
never@1577 1508 objArrayOop r = oopFactory::new_objArray(SystemDictionary::String_klass(),
duke@435 1509 nFlags, CHECK_0);
duke@435 1510 objArrayHandle flags_ah(THREAD, r);
duke@435 1511 int num_entries = 0;
duke@435 1512 for (int i = 0; i < nFlags; i++) {
duke@435 1513 Flag* flag = &Flag::flags[i];
ysr@785 1514 // Exclude the locked (experimental, diagnostic) flags
duke@435 1515 if (flag->is_unlocked() || flag->is_unlocker()) {
duke@435 1516 Handle s = java_lang_String::create_from_str(flag->name, CHECK_0);
duke@435 1517 flags_ah->obj_at_put(num_entries, s());
duke@435 1518 num_entries++;
duke@435 1519 }
duke@435 1520 }
duke@435 1521
duke@435 1522 if (num_entries < nFlags) {
duke@435 1523 // Return array of right length
never@1577 1524 objArrayOop res = oopFactory::new_objArray(SystemDictionary::String_klass(), num_entries, CHECK_0);
duke@435 1525 for(int i = 0; i < num_entries; i++) {
duke@435 1526 res->obj_at_put(i, flags_ah->obj_at(i));
duke@435 1527 }
duke@435 1528 return (jobjectArray)JNIHandles::make_local(env, res);
duke@435 1529 }
duke@435 1530
duke@435 1531 return (jobjectArray)JNIHandles::make_local(env, flags_ah());
duke@435 1532 JVM_END
duke@435 1533
phh@1502 1534 // Utility function used by jmm_GetVMGlobals. Returns false if flag type
phh@1502 1535 // can't be determined, true otherwise. If false is returned, then *global
phh@1502 1536 // will be incomplete and invalid.
phh@1502 1537 bool add_global_entry(JNIEnv* env, Handle name, jmmVMGlobal *global, Flag *flag, TRAPS) {
duke@435 1538 Handle flag_name;
duke@435 1539 if (name() == NULL) {
phh@1502 1540 flag_name = java_lang_String::create_from_str(flag->name, CHECK_false);
duke@435 1541 } else {
duke@435 1542 flag_name = name;
duke@435 1543 }
duke@435 1544 global->name = (jstring)JNIHandles::make_local(env, flag_name());
duke@435 1545
duke@435 1546 if (flag->is_bool()) {
duke@435 1547 global->value.z = flag->get_bool() ? JNI_TRUE : JNI_FALSE;
duke@435 1548 global->type = JMM_VMGLOBAL_TYPE_JBOOLEAN;
duke@435 1549 } else if (flag->is_intx()) {
duke@435 1550 global->value.j = (jlong)flag->get_intx();
duke@435 1551 global->type = JMM_VMGLOBAL_TYPE_JLONG;
duke@435 1552 } else if (flag->is_uintx()) {
duke@435 1553 global->value.j = (jlong)flag->get_uintx();
duke@435 1554 global->type = JMM_VMGLOBAL_TYPE_JLONG;
phh@1502 1555 } else if (flag->is_uint64_t()) {
phh@1502 1556 global->value.j = (jlong)flag->get_uint64_t();
phh@1502 1557 global->type = JMM_VMGLOBAL_TYPE_JLONG;
duke@435 1558 } else if (flag->is_ccstr()) {
phh@1502 1559 Handle str = java_lang_String::create_from_str(flag->get_ccstr(), CHECK_false);
duke@435 1560 global->value.l = (jobject)JNIHandles::make_local(env, str());
duke@435 1561 global->type = JMM_VMGLOBAL_TYPE_JSTRING;
phh@1502 1562 } else {
phh@1502 1563 global->type = JMM_VMGLOBAL_TYPE_UNKNOWN;
phh@1502 1564 return false;
duke@435 1565 }
duke@435 1566
duke@435 1567 global->writeable = flag->is_writeable();
duke@435 1568 global->external = flag->is_external();
duke@435 1569 switch (flag->origin) {
duke@435 1570 case DEFAULT:
duke@435 1571 global->origin = JMM_VMGLOBAL_ORIGIN_DEFAULT;
duke@435 1572 break;
duke@435 1573 case COMMAND_LINE:
duke@435 1574 global->origin = JMM_VMGLOBAL_ORIGIN_COMMAND_LINE;
duke@435 1575 break;
duke@435 1576 case ENVIRON_VAR:
duke@435 1577 global->origin = JMM_VMGLOBAL_ORIGIN_ENVIRON_VAR;
duke@435 1578 break;
duke@435 1579 case CONFIG_FILE:
duke@435 1580 global->origin = JMM_VMGLOBAL_ORIGIN_CONFIG_FILE;
duke@435 1581 break;
duke@435 1582 case MANAGEMENT:
duke@435 1583 global->origin = JMM_VMGLOBAL_ORIGIN_MANAGEMENT;
duke@435 1584 break;
duke@435 1585 case ERGONOMIC:
duke@435 1586 global->origin = JMM_VMGLOBAL_ORIGIN_ERGONOMIC;
duke@435 1587 break;
duke@435 1588 default:
duke@435 1589 global->origin = JMM_VMGLOBAL_ORIGIN_OTHER;
duke@435 1590 }
phh@1502 1591
phh@1502 1592 return true;
duke@435 1593 }
duke@435 1594
duke@435 1595 // Fill globals array of count length with jmmVMGlobal entries
duke@435 1596 // specified by names. If names == NULL, fill globals array
duke@435 1597 // with all Flags. Return value is number of entries
duke@435 1598 // created in globals.
duke@435 1599 // If a Flag with a given name in an array element does not
duke@435 1600 // exist, globals[i].name will be set to NULL.
duke@435 1601 JVM_ENTRY(jint, jmm_GetVMGlobals(JNIEnv *env,
duke@435 1602 jobjectArray names,
duke@435 1603 jmmVMGlobal *globals,
duke@435 1604 jint count))
duke@435 1605
duke@435 1606
duke@435 1607 if (globals == NULL) {
duke@435 1608 THROW_(vmSymbols::java_lang_NullPointerException(), 0);
duke@435 1609 }
duke@435 1610
duke@435 1611 ResourceMark rm(THREAD);
duke@435 1612
duke@435 1613 if (names != NULL) {
duke@435 1614 // return the requested globals
duke@435 1615 objArrayOop ta = objArrayOop(JNIHandles::resolve_non_null(names));
duke@435 1616 objArrayHandle names_ah(THREAD, ta);
duke@435 1617 // Make sure we have a String array
duke@435 1618 klassOop element_klass = objArrayKlass::cast(names_ah->klass())->element_klass();
never@1577 1619 if (element_klass != SystemDictionary::String_klass()) {
duke@435 1620 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 1621 "Array element type is not String class", 0);
duke@435 1622 }
duke@435 1623
duke@435 1624 int names_length = names_ah->length();
duke@435 1625 int num_entries = 0;
duke@435 1626 for (int i = 0; i < names_length && i < count; i++) {
duke@435 1627 oop s = names_ah->obj_at(i);
duke@435 1628 if (s == NULL) {
duke@435 1629 THROW_(vmSymbols::java_lang_NullPointerException(), 0);
duke@435 1630 }
duke@435 1631
duke@435 1632 Handle sh(THREAD, s);
duke@435 1633 char* str = java_lang_String::as_utf8_string(s);
duke@435 1634 Flag* flag = Flag::find_flag(str, strlen(str));
phh@1502 1635 if (flag != NULL &&
phh@1502 1636 add_global_entry(env, sh, &globals[i], flag, THREAD)) {
duke@435 1637 num_entries++;
duke@435 1638 } else {
duke@435 1639 globals[i].name = NULL;
duke@435 1640 }
duke@435 1641 }
duke@435 1642 return num_entries;
duke@435 1643 } else {
duke@435 1644 // return all globals if names == NULL
duke@435 1645
duke@435 1646 // last flag entry is always NULL, so subtract 1
duke@435 1647 int nFlags = (int) Flag::numFlags - 1;
duke@435 1648 Handle null_h;
duke@435 1649 int num_entries = 0;
duke@435 1650 for (int i = 0; i < nFlags && num_entries < count; i++) {
duke@435 1651 Flag* flag = &Flag::flags[i];
ysr@785 1652 // Exclude the locked (diagnostic, experimental) flags
phh@1502 1653 if ((flag->is_unlocked() || flag->is_unlocker()) &&
phh@1502 1654 add_global_entry(env, null_h, &globals[num_entries], flag, THREAD)) {
duke@435 1655 num_entries++;
duke@435 1656 }
duke@435 1657 }
duke@435 1658 return num_entries;
duke@435 1659 }
duke@435 1660 JVM_END
duke@435 1661
duke@435 1662 JVM_ENTRY(void, jmm_SetVMGlobal(JNIEnv *env, jstring flag_name, jvalue new_value))
duke@435 1663 ResourceMark rm(THREAD);
duke@435 1664
duke@435 1665 oop fn = JNIHandles::resolve_external_guard(flag_name);
duke@435 1666 if (fn == NULL) {
duke@435 1667 THROW_MSG(vmSymbols::java_lang_NullPointerException(),
duke@435 1668 "The flag name cannot be null.");
duke@435 1669 }
duke@435 1670 char* name = java_lang_String::as_utf8_string(fn);
duke@435 1671 Flag* flag = Flag::find_flag(name, strlen(name));
duke@435 1672 if (flag == NULL) {
duke@435 1673 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 1674 "Flag does not exist.");
duke@435 1675 }
duke@435 1676 if (!flag->is_writeable()) {
duke@435 1677 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 1678 "This flag is not writeable.");
duke@435 1679 }
duke@435 1680
duke@435 1681 bool succeed;
duke@435 1682 if (flag->is_bool()) {
duke@435 1683 bool bvalue = (new_value.z == JNI_TRUE ? true : false);
duke@435 1684 succeed = CommandLineFlags::boolAtPut(name, &bvalue, MANAGEMENT);
duke@435 1685 } else if (flag->is_intx()) {
phh@1502 1686 intx ivalue = (intx)new_value.j;
duke@435 1687 succeed = CommandLineFlags::intxAtPut(name, &ivalue, MANAGEMENT);
duke@435 1688 } else if (flag->is_uintx()) {
phh@1502 1689 uintx uvalue = (uintx)new_value.j;
duke@435 1690 succeed = CommandLineFlags::uintxAtPut(name, &uvalue, MANAGEMENT);
phh@1502 1691 } else if (flag->is_uint64_t()) {
phh@1502 1692 uint64_t uvalue = (uint64_t)new_value.j;
phh@1502 1693 succeed = CommandLineFlags::uint64_tAtPut(name, &uvalue, MANAGEMENT);
duke@435 1694 } else if (flag->is_ccstr()) {
duke@435 1695 oop str = JNIHandles::resolve_external_guard(new_value.l);
duke@435 1696 if (str == NULL) {
duke@435 1697 THROW(vmSymbols::java_lang_NullPointerException());
duke@435 1698 }
duke@435 1699 ccstr svalue = java_lang_String::as_utf8_string(str);
duke@435 1700 succeed = CommandLineFlags::ccstrAtPut(name, &svalue, MANAGEMENT);
duke@435 1701 }
duke@435 1702 assert(succeed, "Setting flag should succeed");
duke@435 1703 JVM_END
duke@435 1704
duke@435 1705 class ThreadTimesClosure: public ThreadClosure {
duke@435 1706 private:
duke@435 1707 objArrayOop _names;
duke@435 1708 typeArrayOop _times;
duke@435 1709 int _names_len;
duke@435 1710 int _times_len;
duke@435 1711 int _count;
duke@435 1712
duke@435 1713 public:
duke@435 1714 ThreadTimesClosure(objArrayOop names, typeArrayOop times);
duke@435 1715 virtual void do_thread(Thread* thread);
duke@435 1716 int count() { return _count; }
duke@435 1717 };
duke@435 1718
duke@435 1719 ThreadTimesClosure::ThreadTimesClosure(objArrayOop names,
duke@435 1720 typeArrayOop times) {
duke@435 1721 assert(names != NULL, "names was NULL");
duke@435 1722 assert(times != NULL, "times was NULL");
duke@435 1723 _names = names;
duke@435 1724 _names_len = names->length();
duke@435 1725 _times = times;
duke@435 1726 _times_len = times->length();
duke@435 1727 _count = 0;
duke@435 1728 }
duke@435 1729
duke@435 1730 void ThreadTimesClosure::do_thread(Thread* thread) {
duke@435 1731 Handle s;
duke@435 1732 assert(thread != NULL, "thread was NULL");
duke@435 1733
duke@435 1734 // exclude externally visible JavaThreads
duke@435 1735 if (thread->is_Java_thread() && !thread->is_hidden_from_external_view()) {
duke@435 1736 return;
duke@435 1737 }
duke@435 1738
duke@435 1739 if (_count >= _names_len || _count >= _times_len) {
duke@435 1740 // skip if the result array is not big enough
duke@435 1741 return;
duke@435 1742 }
duke@435 1743
duke@435 1744 EXCEPTION_MARK;
duke@435 1745
duke@435 1746 assert(thread->name() != NULL, "All threads should have a name");
duke@435 1747 s = java_lang_String::create_from_str(thread->name(), CHECK);
duke@435 1748 _names->obj_at_put(_count, s());
duke@435 1749
duke@435 1750 _times->long_at_put(_count, os::is_thread_cpu_time_supported() ?
duke@435 1751 os::thread_cpu_time(thread) : -1);
duke@435 1752 _count++;
duke@435 1753 }
duke@435 1754
duke@435 1755 // Fills names with VM internal thread names and times with the corresponding
duke@435 1756 // CPU times. If names or times is NULL, a NullPointerException is thrown.
duke@435 1757 // If the element type of names is not String, an IllegalArgumentException is
duke@435 1758 // thrown.
duke@435 1759 // If an array is not large enough to hold all the entries, only the entries
duke@435 1760 // that fit will be returned. Return value is the number of VM internal
duke@435 1761 // threads entries.
duke@435 1762 JVM_ENTRY(jint, jmm_GetInternalThreadTimes(JNIEnv *env,
duke@435 1763 jobjectArray names,
duke@435 1764 jlongArray times))
duke@435 1765 if (names == NULL || times == NULL) {
duke@435 1766 THROW_(vmSymbols::java_lang_NullPointerException(), 0);
duke@435 1767 }
duke@435 1768 objArrayOop na = objArrayOop(JNIHandles::resolve_non_null(names));
duke@435 1769 objArrayHandle names_ah(THREAD, na);
duke@435 1770
duke@435 1771 // Make sure we have a String array
duke@435 1772 klassOop element_klass = objArrayKlass::cast(names_ah->klass())->element_klass();
never@1577 1773 if (element_klass != SystemDictionary::String_klass()) {
duke@435 1774 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 1775 "Array element type is not String class", 0);
duke@435 1776 }
duke@435 1777
duke@435 1778 typeArrayOop ta = typeArrayOop(JNIHandles::resolve_non_null(times));
duke@435 1779 typeArrayHandle times_ah(THREAD, ta);
duke@435 1780
duke@435 1781 ThreadTimesClosure ttc(names_ah(), times_ah());
duke@435 1782 {
duke@435 1783 MutexLockerEx ml(Threads_lock);
duke@435 1784 Threads::threads_do(&ttc);
duke@435 1785 }
duke@435 1786
duke@435 1787 return ttc.count();
duke@435 1788 JVM_END
duke@435 1789
duke@435 1790 static Handle find_deadlocks(bool object_monitors_only, TRAPS) {
duke@435 1791 ResourceMark rm(THREAD);
duke@435 1792
duke@435 1793 VM_FindDeadlocks op(!object_monitors_only /* also check concurrent locks? */);
duke@435 1794 VMThread::execute(&op);
duke@435 1795
duke@435 1796 DeadlockCycle* deadlocks = op.result();
duke@435 1797 if (deadlocks == NULL) {
duke@435 1798 // no deadlock found and return
duke@435 1799 return Handle();
duke@435 1800 }
duke@435 1801
duke@435 1802 int num_threads = 0;
duke@435 1803 DeadlockCycle* cycle;
duke@435 1804 for (cycle = deadlocks; cycle != NULL; cycle = cycle->next()) {
duke@435 1805 num_threads += cycle->num_threads();
duke@435 1806 }
duke@435 1807
never@1577 1808 objArrayOop r = oopFactory::new_objArray(SystemDictionary::Thread_klass(), num_threads, CHECK_NH);
duke@435 1809 objArrayHandle threads_ah(THREAD, r);
duke@435 1810
duke@435 1811 int index = 0;
duke@435 1812 for (cycle = deadlocks; cycle != NULL; cycle = cycle->next()) {
duke@435 1813 GrowableArray<JavaThread*>* deadlock_threads = cycle->threads();
duke@435 1814 int len = deadlock_threads->length();
duke@435 1815 for (int i = 0; i < len; i++) {
duke@435 1816 threads_ah->obj_at_put(index, deadlock_threads->at(i)->threadObj());
duke@435 1817 index++;
duke@435 1818 }
duke@435 1819 }
duke@435 1820 return threads_ah;
duke@435 1821 }
duke@435 1822
duke@435 1823 // Finds cycles of threads that are deadlocked involved in object monitors
duke@435 1824 // and JSR-166 synchronizers.
duke@435 1825 // Returns an array of Thread objects which are in deadlock, if any.
duke@435 1826 // Otherwise, returns NULL.
duke@435 1827 //
duke@435 1828 // Input parameter:
duke@435 1829 // object_monitors_only - if true, only check object monitors
duke@435 1830 //
duke@435 1831 JVM_ENTRY(jobjectArray, jmm_FindDeadlockedThreads(JNIEnv *env, jboolean object_monitors_only))
duke@435 1832 Handle result = find_deadlocks(object_monitors_only != 0, CHECK_0);
duke@435 1833 return (jobjectArray) JNIHandles::make_local(env, result());
duke@435 1834 JVM_END
duke@435 1835
duke@435 1836 // Finds cycles of threads that are deadlocked on monitor locks
duke@435 1837 // Returns an array of Thread objects which are in deadlock, if any.
duke@435 1838 // Otherwise, returns NULL.
duke@435 1839 JVM_ENTRY(jobjectArray, jmm_FindMonitorDeadlockedThreads(JNIEnv *env))
duke@435 1840 Handle result = find_deadlocks(true, CHECK_0);
duke@435 1841 return (jobjectArray) JNIHandles::make_local(env, result());
duke@435 1842 JVM_END
duke@435 1843
duke@435 1844 // Gets the information about GC extension attributes including
duke@435 1845 // the name of the attribute, its type, and a short description.
duke@435 1846 //
duke@435 1847 // Input parameters:
duke@435 1848 // mgr - GC memory manager
duke@435 1849 // info - caller allocated array of jmmExtAttributeInfo
duke@435 1850 // count - number of elements of the info array
duke@435 1851 //
duke@435 1852 // Returns the number of GC extension attributes filled in the info array; or
duke@435 1853 // -1 if info is not big enough
duke@435 1854 //
duke@435 1855 JVM_ENTRY(jint, jmm_GetGCExtAttributeInfo(JNIEnv *env, jobject mgr, jmmExtAttributeInfo* info, jint count))
duke@435 1856 // All GC memory managers have 1 attribute (number of GC threads)
duke@435 1857 if (count == 0) {
duke@435 1858 return 0;
duke@435 1859 }
duke@435 1860
duke@435 1861 if (info == NULL) {
duke@435 1862 THROW_(vmSymbols::java_lang_NullPointerException(), 0);
duke@435 1863 }
duke@435 1864
duke@435 1865 info[0].name = "GcThreadCount";
duke@435 1866 info[0].type = 'I';
duke@435 1867 info[0].description = "Number of GC threads";
duke@435 1868 return 1;
duke@435 1869 JVM_END
duke@435 1870
duke@435 1871 // verify the given array is an array of java/lang/management/MemoryUsage objects
duke@435 1872 // of a given length and return the objArrayOop
duke@435 1873 static objArrayOop get_memory_usage_objArray(jobjectArray array, int length, TRAPS) {
duke@435 1874 if (array == NULL) {
duke@435 1875 THROW_(vmSymbols::java_lang_NullPointerException(), 0);
duke@435 1876 }
duke@435 1877
duke@435 1878 objArrayOop oa = objArrayOop(JNIHandles::resolve_non_null(array));
duke@435 1879 objArrayHandle array_h(THREAD, oa);
duke@435 1880
duke@435 1881 // array must be of the given length
duke@435 1882 if (length != array_h->length()) {
duke@435 1883 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 1884 "The length of the given MemoryUsage array does not match the number of memory pools.", 0);
duke@435 1885 }
duke@435 1886
duke@435 1887 // check if the element of array is of type MemoryUsage class
duke@435 1888 klassOop usage_klass = Management::java_lang_management_MemoryUsage_klass(CHECK_0);
duke@435 1889 klassOop element_klass = objArrayKlass::cast(array_h->klass())->element_klass();
duke@435 1890 if (element_klass != usage_klass) {
duke@435 1891 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
duke@435 1892 "The element type is not MemoryUsage class", 0);
duke@435 1893 }
duke@435 1894
duke@435 1895 return array_h();
duke@435 1896 }
duke@435 1897
duke@435 1898 // Gets the statistics of the last GC of a given GC memory manager.
duke@435 1899 // Input parameters:
duke@435 1900 // obj - GarbageCollectorMXBean object
duke@435 1901 // gc_stat - caller allocated jmmGCStat where:
duke@435 1902 // a. before_gc_usage - array of MemoryUsage objects
duke@435 1903 // b. after_gc_usage - array of MemoryUsage objects
duke@435 1904 // c. gc_ext_attributes_values_size is set to the
duke@435 1905 // gc_ext_attribute_values array allocated
duke@435 1906 // d. gc_ext_attribute_values is a caller allocated array of jvalue.
duke@435 1907 //
duke@435 1908 // On return,
duke@435 1909 // gc_index == 0 indicates no GC statistics available
duke@435 1910 //
duke@435 1911 // before_gc_usage and after_gc_usage - filled with per memory pool
duke@435 1912 // before and after GC usage in the same order as the memory pools
duke@435 1913 // returned by GetMemoryPools for a given GC memory manager.
duke@435 1914 // num_gc_ext_attributes indicates the number of elements in
duke@435 1915 // the gc_ext_attribute_values array is filled; or
duke@435 1916 // -1 if the gc_ext_attributes_values array is not big enough
duke@435 1917 //
duke@435 1918 JVM_ENTRY(void, jmm_GetLastGCStat(JNIEnv *env, jobject obj, jmmGCStat *gc_stat))
duke@435 1919 ResourceMark rm(THREAD);
duke@435 1920
duke@435 1921 if (gc_stat->gc_ext_attribute_values_size > 0 && gc_stat->gc_ext_attribute_values == NULL) {
duke@435 1922 THROW(vmSymbols::java_lang_NullPointerException());
duke@435 1923 }
duke@435 1924
duke@435 1925 // Get the GCMemoryManager
duke@435 1926 GCMemoryManager* mgr = get_gc_memory_manager_from_jobject(obj, CHECK);
duke@435 1927
duke@435 1928 // Make a copy of the last GC statistics
duke@435 1929 // GC may occur while constructing the last GC information
duke@435 1930 int num_pools = MemoryService::num_memory_pools();
duke@435 1931 GCStatInfo* stat = new GCStatInfo(num_pools);
kevinw@2058 1932 if (mgr->get_last_gc_stat(stat) == 0) {
kevinw@2058 1933 gc_stat->gc_index = 0;
kevinw@2058 1934 return;
kevinw@2058 1935 }
duke@435 1936
duke@435 1937 gc_stat->gc_index = stat->gc_index();
duke@435 1938 gc_stat->start_time = Management::ticks_to_ms(stat->start_time());
duke@435 1939 gc_stat->end_time = Management::ticks_to_ms(stat->end_time());
duke@435 1940
duke@435 1941 // Current implementation does not have GC extension attributes
duke@435 1942 gc_stat->num_gc_ext_attributes = 0;
duke@435 1943
duke@435 1944 // Fill the arrays of MemoryUsage objects with before and after GC
duke@435 1945 // per pool memory usage
duke@435 1946 objArrayOop bu = get_memory_usage_objArray(gc_stat->usage_before_gc,
duke@435 1947 num_pools,
duke@435 1948 CHECK);
duke@435 1949 objArrayHandle usage_before_gc_ah(THREAD, bu);
duke@435 1950
duke@435 1951 objArrayOop au = get_memory_usage_objArray(gc_stat->usage_after_gc,
duke@435 1952 num_pools,
duke@435 1953 CHECK);
duke@435 1954 objArrayHandle usage_after_gc_ah(THREAD, au);
duke@435 1955
duke@435 1956 for (int i = 0; i < num_pools; i++) {
duke@435 1957 Handle before_usage = MemoryService::create_MemoryUsage_obj(stat->before_gc_usage_for_pool(i), CHECK);
duke@435 1958 Handle after_usage;
duke@435 1959
duke@435 1960 MemoryUsage u = stat->after_gc_usage_for_pool(i);
duke@435 1961 if (u.max_size() == 0 && u.used() > 0) {
duke@435 1962 // If max size == 0, this pool is a survivor space.
duke@435 1963 // Set max size = -1 since the pools will be swapped after GC.
duke@435 1964 MemoryUsage usage(u.init_size(), u.used(), u.committed(), (size_t)-1);
duke@435 1965 after_usage = MemoryService::create_MemoryUsage_obj(usage, CHECK);
duke@435 1966 } else {
duke@435 1967 after_usage = MemoryService::create_MemoryUsage_obj(stat->after_gc_usage_for_pool(i), CHECK);
duke@435 1968 }
duke@435 1969 usage_before_gc_ah->obj_at_put(i, before_usage());
duke@435 1970 usage_after_gc_ah->obj_at_put(i, after_usage());
duke@435 1971 }
duke@435 1972
duke@435 1973 if (gc_stat->gc_ext_attribute_values_size > 0) {
duke@435 1974 // Current implementation only has 1 attribute (number of GC threads)
duke@435 1975 // The type is 'I'
duke@435 1976 gc_stat->gc_ext_attribute_values[0].i = mgr->num_gc_threads();
duke@435 1977 }
duke@435 1978 JVM_END
duke@435 1979
duke@435 1980 // Dump heap - Returns 0 if succeeds.
duke@435 1981 JVM_ENTRY(jint, jmm_DumpHeap0(JNIEnv *env, jstring outputfile, jboolean live))
duke@435 1982 #ifndef SERVICES_KERNEL
duke@435 1983 ResourceMark rm(THREAD);
duke@435 1984 oop on = JNIHandles::resolve_external_guard(outputfile);
duke@435 1985 if (on == NULL) {
duke@435 1986 THROW_MSG_(vmSymbols::java_lang_NullPointerException(),
duke@435 1987 "Output file name cannot be null.", -1);
duke@435 1988 }
duke@435 1989 char* name = java_lang_String::as_utf8_string(on);
duke@435 1990 if (name == NULL) {
duke@435 1991 THROW_MSG_(vmSymbols::java_lang_NullPointerException(),
duke@435 1992 "Output file name cannot be null.", -1);
duke@435 1993 }
duke@435 1994 HeapDumper dumper(live ? true : false);
duke@435 1995 if (dumper.dump(name) != 0) {
duke@435 1996 const char* errmsg = dumper.error_as_C_string();
duke@435 1997 THROW_MSG_(vmSymbols::java_io_IOException(), errmsg, -1);
duke@435 1998 }
duke@435 1999 return 0;
duke@435 2000 #else // SERVICES_KERNEL
duke@435 2001 return -1;
duke@435 2002 #endif // SERVICES_KERNEL
duke@435 2003 JVM_END
duke@435 2004
duke@435 2005 jlong Management::ticks_to_ms(jlong ticks) {
duke@435 2006 assert(os::elapsed_frequency() > 0, "Must be non-zero");
duke@435 2007 return (jlong)(((double)ticks / (double)os::elapsed_frequency())
duke@435 2008 * (double)1000.0);
duke@435 2009 }
duke@435 2010
duke@435 2011 const struct jmmInterface_1_ jmm_interface = {
duke@435 2012 NULL,
duke@435 2013 NULL,
duke@435 2014 jmm_GetVersion,
duke@435 2015 jmm_GetOptionalSupport,
duke@435 2016 jmm_GetInputArguments,
duke@435 2017 jmm_GetThreadInfo,
duke@435 2018 jmm_GetInputArgumentArray,
duke@435 2019 jmm_GetMemoryPools,
duke@435 2020 jmm_GetMemoryManagers,
duke@435 2021 jmm_GetMemoryPoolUsage,
duke@435 2022 jmm_GetPeakMemoryPoolUsage,
duke@435 2023 NULL,
duke@435 2024 jmm_GetMemoryUsage,
duke@435 2025 jmm_GetLongAttribute,
duke@435 2026 jmm_GetBoolAttribute,
duke@435 2027 jmm_SetBoolAttribute,
duke@435 2028 jmm_GetLongAttributes,
duke@435 2029 jmm_FindMonitorDeadlockedThreads,
duke@435 2030 jmm_GetThreadCpuTime,
duke@435 2031 jmm_GetVMGlobalNames,
duke@435 2032 jmm_GetVMGlobals,
duke@435 2033 jmm_GetInternalThreadTimes,
duke@435 2034 jmm_ResetStatistic,
duke@435 2035 jmm_SetPoolSensor,
duke@435 2036 jmm_SetPoolThreshold,
duke@435 2037 jmm_GetPoolCollectionUsage,
duke@435 2038 jmm_GetGCExtAttributeInfo,
duke@435 2039 jmm_GetLastGCStat,
duke@435 2040 jmm_GetThreadCpuTimeWithKind,
duke@435 2041 NULL,
duke@435 2042 jmm_DumpHeap0,
duke@435 2043 jmm_FindDeadlockedThreads,
duke@435 2044 jmm_SetVMGlobal,
duke@435 2045 NULL,
duke@435 2046 jmm_DumpThreads
duke@435 2047 };
duke@435 2048
duke@435 2049 void* Management::get_jmm_interface(int version) {
duke@435 2050 if (version == JMM_VERSION_1_0) {
duke@435 2051 return (void*) &jmm_interface;
duke@435 2052 }
duke@435 2053 return NULL;
duke@435 2054 }

mercurial