src/share/vm/services/memTracker.cpp

Wed, 20 Mar 2013 09:42:48 -0400

author
zgu
date
Wed, 20 Mar 2013 09:42:48 -0400
changeset 4810
06db4c0afbf3
parent 4512
4102b59539ce
child 4890
4c8bb5e4f68f
permissions
-rw-r--r--

8009298: NMT: Special version of class loading/unloading with runThese stresses out NMT
8009777: NMT: add new NMT dcmd to control auto shutdown option
Summary: Added diagnostic VM option and DCmd command to allow NMT stay alive under stress situation
Reviewed-by: dcubed, coleenp

zgu@3900 1 /*
zgu@3900 2 * Copyright (c) 2012, Oracle and/or its affiliates. All rights reserved.
zgu@3900 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
zgu@3900 4 *
zgu@3900 5 * This code is free software; you can redistribute it and/or modify it
zgu@3900 6 * under the terms of the GNU General Public License version 2 only, as
zgu@3900 7 * published by the Free Software Foundation.
zgu@3900 8 *
zgu@3900 9 * This code is distributed in the hope that it will be useful, but WITHOUT
zgu@3900 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
zgu@3900 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
zgu@3900 12 * version 2 for more details (a copy is included in the LICENSE file that
zgu@3900 13 * accompanied this code).
zgu@3900 14 *
zgu@3900 15 * You should have received a copy of the GNU General Public License version
zgu@3900 16 * 2 along with this work; if not, write to the Free Software Foundation,
zgu@3900 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
zgu@3900 18 *
zgu@3900 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
zgu@3900 20 * or visit www.oracle.com if you need additional information or have any
zgu@3900 21 * questions.
zgu@3900 22 *
zgu@3900 23 */
zgu@3900 24 #include "precompiled.hpp"
zgu@3900 25
zgu@4400 26 #include "oops/instanceKlass.hpp"
zgu@3900 27 #include "runtime/atomic.hpp"
zgu@3900 28 #include "runtime/interfaceSupport.hpp"
zgu@3900 29 #include "runtime/mutexLocker.hpp"
zgu@3900 30 #include "runtime/safepoint.hpp"
zgu@3900 31 #include "runtime/threadCritical.hpp"
ctornqvi@4512 32 #include "runtime/vm_operations.hpp"
zgu@3900 33 #include "services/memPtr.hpp"
zgu@3900 34 #include "services/memReporter.hpp"
zgu@3900 35 #include "services/memTracker.hpp"
zgu@3900 36 #include "utilities/decoder.hpp"
zgu@3900 37 #include "utilities/globalDefinitions.hpp"
zgu@3900 38
zgu@3900 39 bool NMT_track_callsite = false;
zgu@3900 40
zgu@3900 41 // walk all 'known' threads at NMT sync point, and collect their recorders
zgu@3900 42 void SyncThreadRecorderClosure::do_thread(Thread* thread) {
zgu@3900 43 assert(SafepointSynchronize::is_at_safepoint(), "Safepoint required");
zgu@3900 44 if (thread->is_Java_thread()) {
zgu@3900 45 JavaThread* javaThread = (JavaThread*)thread;
zgu@3900 46 MemRecorder* recorder = javaThread->get_recorder();
zgu@3900 47 if (recorder != NULL) {
zgu@3900 48 MemTracker::enqueue_pending_recorder(recorder);
zgu@3900 49 javaThread->set_recorder(NULL);
zgu@3900 50 }
zgu@3900 51 }
zgu@3900 52 _thread_count ++;
zgu@3900 53 }
zgu@3900 54
zgu@3900 55
zgu@3900 56 MemRecorder* MemTracker::_global_recorder = NULL;
zgu@3900 57 MemSnapshot* MemTracker::_snapshot = NULL;
zgu@3900 58 MemBaseline MemTracker::_baseline;
zgu@3936 59 Mutex* MemTracker::_query_lock = NULL;
zgu@3900 60 volatile MemRecorder* MemTracker::_merge_pending_queue = NULL;
zgu@3900 61 volatile MemRecorder* MemTracker::_pooled_recorders = NULL;
zgu@3900 62 MemTrackWorker* MemTracker::_worker_thread = NULL;
zgu@3900 63 int MemTracker::_sync_point_skip_count = 0;
zgu@3900 64 MemTracker::NMTLevel MemTracker::_tracking_level = MemTracker::NMT_off;
zgu@3900 65 volatile MemTracker::NMTStates MemTracker::_state = NMT_uninited;
zgu@3900 66 MemTracker::ShutdownReason MemTracker::_reason = NMT_shutdown_none;
zgu@3900 67 int MemTracker::_thread_count = 255;
zgu@3900 68 volatile jint MemTracker::_pooled_recorder_count = 0;
ctornqvi@4512 69 volatile unsigned long MemTracker::_processing_generation = 0;
ctornqvi@4512 70 volatile bool MemTracker::_worker_thread_idle = false;
zgu@4810 71 volatile bool MemTracker::_slowdown_calling_thread = false;
zgu@3900 72 debug_only(intx MemTracker::_main_thread_tid = 0;)
zgu@3994 73 NOT_PRODUCT(volatile jint MemTracker::_pending_recorder_count = 0;)
zgu@3900 74
zgu@3900 75 void MemTracker::init_tracking_options(const char* option_line) {
zgu@3900 76 _tracking_level = NMT_off;
zgu@4291 77 if (strcmp(option_line, "=summary") == 0) {
zgu@3900 78 _tracking_level = NMT_summary;
zgu@4291 79 } else if (strcmp(option_line, "=detail") == 0) {
zgu@3900 80 _tracking_level = NMT_detail;
zgu@4291 81 } else if (strcmp(option_line, "=off") != 0) {
zgu@4291 82 vm_exit_during_initialization("Syntax error, expecting -XX:NativeMemoryTracking=[off|summary|detail]", NULL);
zgu@3900 83 }
zgu@3900 84 }
zgu@3900 85
zgu@3900 86 // first phase of bootstrapping, when VM is still in single-threaded mode.
zgu@3900 87 void MemTracker::bootstrap_single_thread() {
zgu@3900 88 if (_tracking_level > NMT_off) {
zgu@3900 89 assert(_state == NMT_uninited, "wrong state");
zgu@3900 90
zgu@3900 91 // NMT is not supported with UseMallocOnly is on. NMT can NOT
zgu@3900 92 // handle the amount of malloc data without significantly impacting
zgu@3900 93 // runtime performance when this flag is on.
zgu@3900 94 if (UseMallocOnly) {
zgu@3900 95 shutdown(NMT_use_malloc_only);
zgu@3900 96 return;
zgu@3900 97 }
zgu@3900 98
zgu@3936 99 _query_lock = new (std::nothrow) Mutex(Monitor::max_nonleaf, "NMT_queryLock");
zgu@3936 100 if (_query_lock == NULL) {
zgu@3936 101 shutdown(NMT_out_of_memory);
zgu@3936 102 return;
zgu@3936 103 }
zgu@3936 104
zgu@3900 105 debug_only(_main_thread_tid = os::current_thread_id();)
zgu@3900 106 _state = NMT_bootstrapping_single_thread;
zgu@3900 107 NMT_track_callsite = (_tracking_level == NMT_detail && can_walk_stack());
zgu@3900 108 }
zgu@3900 109 }
zgu@3900 110
zgu@3900 111 // second phase of bootstrapping, when VM is about to or already entered multi-theaded mode.
zgu@3900 112 void MemTracker::bootstrap_multi_thread() {
zgu@3900 113 if (_tracking_level > NMT_off && _state == NMT_bootstrapping_single_thread) {
zgu@3900 114 // create nmt lock for multi-thread execution
zgu@3900 115 assert(_main_thread_tid == os::current_thread_id(), "wrong thread");
zgu@3900 116 _state = NMT_bootstrapping_multi_thread;
zgu@3900 117 NMT_track_callsite = (_tracking_level == NMT_detail && can_walk_stack());
zgu@3900 118 }
zgu@3900 119 }
zgu@3900 120
zgu@3900 121 // fully start nmt
zgu@3900 122 void MemTracker::start() {
zgu@3900 123 // Native memory tracking is off from command line option
zgu@3900 124 if (_tracking_level == NMT_off || shutdown_in_progress()) return;
zgu@3900 125
zgu@3900 126 assert(_main_thread_tid == os::current_thread_id(), "wrong thread");
zgu@3900 127 assert(_state == NMT_bootstrapping_multi_thread, "wrong state");
zgu@3900 128
zgu@3900 129 _snapshot = new (std::nothrow)MemSnapshot();
zgu@3900 130 if (_snapshot != NULL && !_snapshot->out_of_memory()) {
zgu@3900 131 if (start_worker()) {
zgu@3900 132 _state = NMT_started;
zgu@3900 133 NMT_track_callsite = (_tracking_level == NMT_detail && can_walk_stack());
zgu@3900 134 return;
zgu@3900 135 }
zgu@3900 136 }
zgu@3900 137
zgu@3900 138 // fail to start native memory tracking, shut it down
zgu@3900 139 shutdown(NMT_initialization);
zgu@3900 140 }
zgu@3900 141
zgu@3900 142 /**
zgu@3900 143 * Shutting down native memory tracking.
zgu@3900 144 * We can not shutdown native memory tracking immediately, so we just
zgu@3900 145 * setup shutdown pending flag, every native memory tracking component
zgu@3900 146 * should orderly shut itself down.
zgu@3900 147 *
zgu@3900 148 * The shutdown sequences:
zgu@3900 149 * 1. MemTracker::shutdown() sets MemTracker to shutdown pending state
zgu@3900 150 * 2. Worker thread calls MemTracker::final_shutdown(), which transites
zgu@3900 151 * MemTracker to final shutdown state.
zgu@3900 152 * 3. At sync point, MemTracker does final cleanup, before sets memory
zgu@3900 153 * tracking level to off to complete shutdown.
zgu@3900 154 */
zgu@3900 155 void MemTracker::shutdown(ShutdownReason reason) {
zgu@3900 156 if (_tracking_level == NMT_off) return;
zgu@3900 157
zgu@3900 158 if (_state <= NMT_bootstrapping_single_thread) {
zgu@3900 159 // we still in single thread mode, there is not contention
zgu@3900 160 _state = NMT_shutdown_pending;
zgu@3900 161 _reason = reason;
zgu@3900 162 } else {
zgu@3900 163 // we want to know who initialized shutdown
zgu@3900 164 if ((jint)NMT_started == Atomic::cmpxchg((jint)NMT_shutdown_pending,
zgu@3900 165 (jint*)&_state, (jint)NMT_started)) {
zgu@3900 166 _reason = reason;
zgu@3900 167 }
zgu@3900 168 }
zgu@3900 169 }
zgu@3900 170
zgu@3900 171 // final phase of shutdown
zgu@3900 172 void MemTracker::final_shutdown() {
zgu@3900 173 // delete all pending recorders and pooled recorders
zgu@3900 174 delete_all_pending_recorders();
zgu@3900 175 delete_all_pooled_recorders();
zgu@3900 176
zgu@3900 177 {
zgu@3900 178 // shared baseline and snapshot are the only objects needed to
zgu@3900 179 // create query results
zgu@3936 180 MutexLockerEx locker(_query_lock, true);
zgu@3900 181 // cleanup baseline data and snapshot
zgu@3900 182 _baseline.clear();
zgu@3900 183 delete _snapshot;
zgu@3900 184 _snapshot = NULL;
zgu@3900 185 }
zgu@3900 186
zgu@3900 187 // shutdown shared decoder instance, since it is only
zgu@3900 188 // used by native memory tracking so far.
zgu@3900 189 Decoder::shutdown();
zgu@3900 190
zgu@3900 191 MemTrackWorker* worker = NULL;
zgu@3900 192 {
zgu@3900 193 ThreadCritical tc;
zgu@3900 194 // can not delete worker inside the thread critical
zgu@3900 195 if (_worker_thread != NULL && Thread::current() == _worker_thread) {
zgu@3900 196 worker = _worker_thread;
zgu@3900 197 _worker_thread = NULL;
zgu@3900 198 }
zgu@3900 199 }
zgu@3900 200 if (worker != NULL) {
zgu@3900 201 delete worker;
zgu@3900 202 }
zgu@3900 203 _state = NMT_final_shutdown;
zgu@3900 204 }
zgu@3900 205
zgu@3900 206 // delete all pooled recorders
zgu@3900 207 void MemTracker::delete_all_pooled_recorders() {
zgu@3900 208 // free all pooled recorders
zgu@3900 209 volatile MemRecorder* cur_head = _pooled_recorders;
zgu@3900 210 if (cur_head != NULL) {
zgu@3900 211 MemRecorder* null_ptr = NULL;
zgu@3900 212 while (cur_head != NULL && (void*)cur_head != Atomic::cmpxchg_ptr((void*)null_ptr,
zgu@3900 213 (void*)&_pooled_recorders, (void*)cur_head)) {
zgu@3900 214 cur_head = _pooled_recorders;
zgu@3900 215 }
zgu@3900 216 if (cur_head != NULL) {
zgu@3900 217 delete cur_head;
zgu@3900 218 _pooled_recorder_count = 0;
zgu@3900 219 }
zgu@3900 220 }
zgu@3900 221 }
zgu@3900 222
zgu@3900 223 // delete all recorders in pending queue
zgu@3900 224 void MemTracker::delete_all_pending_recorders() {
zgu@3900 225 // free all pending recorders
zgu@3900 226 MemRecorder* pending_head = get_pending_recorders();
zgu@3900 227 if (pending_head != NULL) {
zgu@3900 228 delete pending_head;
zgu@3900 229 }
zgu@3900 230 }
zgu@3900 231
zgu@3900 232 /*
zgu@3900 233 * retrieve per-thread recorder of specified thread.
zgu@3900 234 * if thread == NULL, it means global recorder
zgu@3900 235 */
zgu@3900 236 MemRecorder* MemTracker::get_thread_recorder(JavaThread* thread) {
zgu@3900 237 if (shutdown_in_progress()) return NULL;
zgu@3900 238
zgu@3900 239 MemRecorder* rc;
zgu@3900 240 if (thread == NULL) {
zgu@3900 241 rc = _global_recorder;
zgu@3900 242 } else {
zgu@3900 243 rc = thread->get_recorder();
zgu@3900 244 }
zgu@3900 245
zgu@3900 246 if (rc != NULL && rc->is_full()) {
zgu@3900 247 enqueue_pending_recorder(rc);
zgu@3900 248 rc = NULL;
zgu@3900 249 }
zgu@3900 250
zgu@3900 251 if (rc == NULL) {
zgu@3900 252 rc = get_new_or_pooled_instance();
zgu@3900 253 if (thread == NULL) {
zgu@3900 254 _global_recorder = rc;
zgu@3900 255 } else {
zgu@3900 256 thread->set_recorder(rc);
zgu@3900 257 }
zgu@3900 258 }
zgu@3900 259 return rc;
zgu@3900 260 }
zgu@3900 261
zgu@3900 262 /*
zgu@3900 263 * get a per-thread recorder from pool, or create a new one if
zgu@3900 264 * there is not one available.
zgu@3900 265 */
zgu@3900 266 MemRecorder* MemTracker::get_new_or_pooled_instance() {
zgu@3900 267 MemRecorder* cur_head = const_cast<MemRecorder*> (_pooled_recorders);
zgu@3900 268 if (cur_head == NULL) {
zgu@3900 269 MemRecorder* rec = new (std::nothrow)MemRecorder();
zgu@3900 270 if (rec == NULL || rec->out_of_memory()) {
zgu@3900 271 shutdown(NMT_out_of_memory);
zgu@3900 272 if (rec != NULL) {
zgu@3900 273 delete rec;
zgu@3900 274 rec = NULL;
zgu@3900 275 }
zgu@3900 276 }
zgu@3900 277 return rec;
zgu@3900 278 } else {
zgu@3900 279 MemRecorder* next_head = cur_head->next();
zgu@3900 280 if ((void*)cur_head != Atomic::cmpxchg_ptr((void*)next_head, (void*)&_pooled_recorders,
zgu@3900 281 (void*)cur_head)) {
zgu@3900 282 return get_new_or_pooled_instance();
zgu@3900 283 }
zgu@3900 284 cur_head->set_next(NULL);
zgu@3900 285 Atomic::dec(&_pooled_recorder_count);
ctornqvi@4512 286 cur_head->set_generation();
zgu@3900 287 return cur_head;
zgu@3900 288 }
zgu@3900 289 }
zgu@3900 290
zgu@3900 291 /*
zgu@3900 292 * retrieve all recorders in pending queue, and empty the queue
zgu@3900 293 */
zgu@3900 294 MemRecorder* MemTracker::get_pending_recorders() {
zgu@3900 295 MemRecorder* cur_head = const_cast<MemRecorder*>(_merge_pending_queue);
zgu@3900 296 MemRecorder* null_ptr = NULL;
zgu@3900 297 while ((void*)cur_head != Atomic::cmpxchg_ptr((void*)null_ptr, (void*)&_merge_pending_queue,
zgu@3900 298 (void*)cur_head)) {
zgu@3900 299 cur_head = const_cast<MemRecorder*>(_merge_pending_queue);
zgu@3900 300 }
zgu@3994 301 NOT_PRODUCT(Atomic::store(0, &_pending_recorder_count));
zgu@3900 302 return cur_head;
zgu@3900 303 }
zgu@3900 304
zgu@3900 305 /*
zgu@3900 306 * release a recorder to recorder pool.
zgu@3900 307 */
zgu@3900 308 void MemTracker::release_thread_recorder(MemRecorder* rec) {
zgu@3900 309 assert(rec != NULL, "null recorder");
zgu@3900 310 // we don't want to pool too many recorders
zgu@3900 311 rec->set_next(NULL);
zgu@3900 312 if (shutdown_in_progress() || _pooled_recorder_count > _thread_count * 2) {
zgu@3900 313 delete rec;
zgu@3900 314 return;
zgu@3900 315 }
zgu@3900 316
zgu@3900 317 rec->clear();
zgu@3900 318 MemRecorder* cur_head = const_cast<MemRecorder*>(_pooled_recorders);
zgu@3900 319 rec->set_next(cur_head);
zgu@3900 320 while ((void*)cur_head != Atomic::cmpxchg_ptr((void*)rec, (void*)&_pooled_recorders,
zgu@3900 321 (void*)cur_head)) {
zgu@3900 322 cur_head = const_cast<MemRecorder*>(_pooled_recorders);
zgu@3900 323 rec->set_next(cur_head);
zgu@3900 324 }
zgu@3900 325 Atomic::inc(&_pooled_recorder_count);
zgu@3900 326 }
zgu@3900 327
zgu@3900 328 /*
zgu@3900 329 * This is the most important method in whole nmt implementation.
zgu@3900 330 *
zgu@3900 331 * Create a memory record.
zgu@3900 332 * 1. When nmt is in single-threaded bootstrapping mode, no lock is needed as VM
zgu@3900 333 * still in single thread mode.
zgu@3900 334 * 2. For all threads other than JavaThread, ThreadCritical is needed
zgu@3900 335 * to write to recorders to global recorder.
zgu@3900 336 * 3. For JavaThreads that are not longer visible by safepoint, also
zgu@3900 337 * need to take ThreadCritical and records are written to global
zgu@3900 338 * recorders, since these threads are NOT walked by Threads.do_thread().
zgu@3900 339 * 4. JavaThreads that are running in native state, have to transition
zgu@3900 340 * to VM state before writing to per-thread recorders.
zgu@3900 341 * 5. JavaThreads that are running in VM state do not need any lock and
zgu@3900 342 * records are written to per-thread recorders.
zgu@3900 343 * 6. For a thread has yet to attach VM 'Thread', they need to take
zgu@3900 344 * ThreadCritical to write to global recorder.
zgu@3900 345 *
zgu@3900 346 * Important note:
zgu@3900 347 * NO LOCK should be taken inside ThreadCritical lock !!!
zgu@3900 348 */
zgu@3900 349 void MemTracker::create_memory_record(address addr, MEMFLAGS flags,
zgu@3900 350 size_t size, address pc, Thread* thread) {
zgu@4079 351 assert(addr != NULL, "Sanity check");
zgu@3900 352 if (!shutdown_in_progress()) {
zgu@3900 353 // single thread, we just write records direct to global recorder,'
zgu@3900 354 // with any lock
zgu@3900 355 if (_state == NMT_bootstrapping_single_thread) {
zgu@3900 356 assert(_main_thread_tid == os::current_thread_id(), "wrong thread");
zgu@3900 357 thread = NULL;
zgu@3900 358 } else {
zgu@3900 359 if (thread == NULL) {
zgu@3900 360 // don't use Thread::current(), since it is possible that
zgu@3900 361 // the calling thread has yet to attach to VM 'Thread',
zgu@3900 362 // which will result assertion failure
zgu@3900 363 thread = ThreadLocalStorage::thread();
zgu@3900 364 }
zgu@3900 365 }
zgu@3900 366
zgu@3900 367 if (thread != NULL) {
zgu@4810 368 // slow down all calling threads except NMT worker thread, so it
zgu@4810 369 // can catch up.
zgu@4810 370 if (_slowdown_calling_thread && thread != _worker_thread) {
zgu@4810 371 os::yield_all();
zgu@4810 372 }
zgu@4810 373
zgu@3900 374 if (thread->is_Java_thread() && ((JavaThread*)thread)->is_safepoint_visible()) {
zgu@4193 375 JavaThread* java_thread = (JavaThread*)thread;
zgu@3935 376 JavaThreadState state = java_thread->thread_state();
zgu@3935 377 if (SafepointSynchronize::safepoint_safe(java_thread, state)) {
zgu@3935 378 // JavaThreads that are safepoint safe, can run through safepoint,
zgu@3935 379 // so ThreadCritical is needed to ensure no threads at safepoint create
zgu@3935 380 // new records while the records are being gathered and the sequence number is changing
zgu@3935 381 ThreadCritical tc;
zgu@3935 382 create_record_in_recorder(addr, flags, size, pc, java_thread);
zgu@3900 383 } else {
zgu@3935 384 create_record_in_recorder(addr, flags, size, pc, java_thread);
zgu@3900 385 }
zgu@3900 386 } else {
zgu@3900 387 // other threads, such as worker and watcher threads, etc. need to
zgu@3900 388 // take ThreadCritical to write to global recorder
zgu@3900 389 ThreadCritical tc;
zgu@3900 390 create_record_in_recorder(addr, flags, size, pc, NULL);
zgu@3900 391 }
zgu@3900 392 } else {
zgu@3900 393 if (_state == NMT_bootstrapping_single_thread) {
zgu@3900 394 // single thread, no lock needed
zgu@3900 395 create_record_in_recorder(addr, flags, size, pc, NULL);
zgu@3900 396 } else {
zgu@3900 397 // for thread has yet to attach VM 'Thread', we can not use VM mutex.
zgu@3900 398 // use native thread critical instead
zgu@3900 399 ThreadCritical tc;
zgu@3900 400 create_record_in_recorder(addr, flags, size, pc, NULL);
zgu@3900 401 }
zgu@3900 402 }
zgu@3900 403 }
zgu@3900 404 }
zgu@3900 405
zgu@3900 406 // write a record to proper recorder. No lock can be taken from this method
zgu@3900 407 // down.
zgu@3900 408 void MemTracker::create_record_in_recorder(address addr, MEMFLAGS flags,
zgu@3935 409 size_t size, address pc, JavaThread* thread) {
zgu@3900 410
zgu@3935 411 MemRecorder* rc = get_thread_recorder(thread);
zgu@3900 412 if (rc != NULL) {
zgu@3900 413 rc->record(addr, flags, size, pc);
zgu@3900 414 }
zgu@3900 415 }
zgu@3900 416
zgu@3900 417 /**
zgu@3900 418 * enqueue a recorder to pending queue
zgu@3900 419 */
zgu@3900 420 void MemTracker::enqueue_pending_recorder(MemRecorder* rec) {
zgu@3900 421 assert(rec != NULL, "null recorder");
zgu@3900 422
zgu@3900 423 // we are shutting down, so just delete it
zgu@3900 424 if (shutdown_in_progress()) {
zgu@3900 425 rec->set_next(NULL);
zgu@3900 426 delete rec;
zgu@3900 427 return;
zgu@3900 428 }
zgu@3900 429
zgu@3900 430 MemRecorder* cur_head = const_cast<MemRecorder*>(_merge_pending_queue);
zgu@3900 431 rec->set_next(cur_head);
zgu@3900 432 while ((void*)cur_head != Atomic::cmpxchg_ptr((void*)rec, (void*)&_merge_pending_queue,
zgu@3900 433 (void*)cur_head)) {
zgu@3900 434 cur_head = const_cast<MemRecorder*>(_merge_pending_queue);
zgu@3900 435 rec->set_next(cur_head);
zgu@3900 436 }
zgu@3994 437 NOT_PRODUCT(Atomic::inc(&_pending_recorder_count);)
zgu@3900 438 }
zgu@3900 439
zgu@3900 440 /*
zgu@3900 441 * The method is called at global safepoint
zgu@3900 442 * during it synchronization process.
zgu@3900 443 * 1. enqueue all JavaThreads' per-thread recorders
zgu@3900 444 * 2. enqueue global recorder
zgu@3900 445 * 3. retrieve all pending recorders
zgu@3900 446 * 4. reset global sequence number generator
zgu@3900 447 * 5. call worker's sync
zgu@3900 448 */
zgu@3900 449 #define MAX_SAFEPOINTS_TO_SKIP 128
zgu@3900 450 #define SAFE_SEQUENCE_THRESHOLD 30
zgu@3900 451 #define HIGH_GENERATION_THRESHOLD 60
zgu@4810 452 #define MAX_RECORDER_THREAD_RATIO 30
zgu@3900 453
zgu@3900 454 void MemTracker::sync() {
zgu@3900 455 assert(_tracking_level > NMT_off, "NMT is not enabled");
zgu@3900 456 assert(SafepointSynchronize::is_at_safepoint(), "Safepoint required");
zgu@3900 457
zgu@3900 458 // Some GC tests hit large number of safepoints in short period of time
zgu@3900 459 // without meaningful activities. We should prevent going to
zgu@3900 460 // sync point in these cases, which can potentially exhaust generation buffer.
zgu@3900 461 // Here is the factots to determine if we should go into sync point:
zgu@3900 462 // 1. not to overflow sequence number
zgu@3900 463 // 2. if we are in danger to overflow generation buffer
zgu@3900 464 // 3. how many safepoints we already skipped sync point
zgu@3900 465 if (_state == NMT_started) {
zgu@3900 466 // worker thread is not ready, no one can manage generation
zgu@3900 467 // buffer, so skip this safepoint
zgu@3900 468 if (_worker_thread == NULL) return;
zgu@3900 469
zgu@3900 470 if (_sync_point_skip_count < MAX_SAFEPOINTS_TO_SKIP) {
zgu@3900 471 int per_seq_in_use = SequenceGenerator::peek() * 100 / max_jint;
zgu@3900 472 int per_gen_in_use = _worker_thread->generations_in_use() * 100 / MAX_GENERATIONS;
zgu@3900 473 if (per_seq_in_use < SAFE_SEQUENCE_THRESHOLD && per_gen_in_use >= HIGH_GENERATION_THRESHOLD) {
zgu@3900 474 _sync_point_skip_count ++;
zgu@3900 475 return;
zgu@3900 476 }
zgu@3900 477 }
zgu@3900 478 _sync_point_skip_count = 0;
zgu@3900 479 {
zgu@3900 480 // This method is running at safepoint, with ThreadCritical lock,
zgu@3900 481 // it should guarantee that NMT is fully sync-ed.
zgu@3900 482 ThreadCritical tc;
zgu@3935 483
zgu@4193 484 SequenceGenerator::reset();
zgu@4193 485
zgu@3935 486 // walk all JavaThreads to collect recorders
zgu@3935 487 SyncThreadRecorderClosure stc;
zgu@3935 488 Threads::threads_do(&stc);
zgu@3935 489
zgu@3935 490 _thread_count = stc.get_thread_count();
zgu@3935 491 MemRecorder* pending_recorders = get_pending_recorders();
zgu@3935 492
zgu@3900 493 if (_global_recorder != NULL) {
zgu@3900 494 _global_recorder->set_next(pending_recorders);
zgu@3900 495 pending_recorders = _global_recorder;
zgu@3900 496 _global_recorder = NULL;
zgu@3900 497 }
zgu@4810 498
zgu@4810 499 // see if NMT has too many outstanding recorder instances, it usually
zgu@4810 500 // means that worker thread is lagging behind in processing them.
zgu@4810 501 if (!AutoShutdownNMT) {
zgu@4810 502 _slowdown_calling_thread = (MemRecorder::_instance_count > MAX_RECORDER_THREAD_RATIO * _thread_count);
zgu@4810 503 }
zgu@4810 504
zgu@3900 505 // check _worker_thread with lock to avoid racing condition
zgu@3900 506 if (_worker_thread != NULL) {
zgu@4400 507 _worker_thread->at_sync_point(pending_recorders, InstanceKlass::number_of_instance_classes());
zgu@3900 508 }
zgu@4193 509
zgu@4193 510 assert(SequenceGenerator::peek() == 1, "Should not have memory activities during sync-point");
zgu@3900 511 }
zgu@3900 512 }
zgu@3900 513
zgu@3900 514 // now, it is the time to shut whole things off
zgu@3900 515 if (_state == NMT_final_shutdown) {
zgu@3900 516 // walk all JavaThreads to delete all recorders
zgu@3900 517 SyncThreadRecorderClosure stc;
zgu@3900 518 Threads::threads_do(&stc);
zgu@3900 519 // delete global recorder
zgu@3900 520 {
zgu@3900 521 ThreadCritical tc;
zgu@3900 522 if (_global_recorder != NULL) {
zgu@3900 523 delete _global_recorder;
zgu@3900 524 _global_recorder = NULL;
zgu@3900 525 }
zgu@3900 526 }
zgu@3935 527 MemRecorder* pending_recorders = get_pending_recorders();
zgu@3935 528 if (pending_recorders != NULL) {
zgu@3935 529 delete pending_recorders;
zgu@3935 530 }
zgu@3935 531 // try at a later sync point to ensure MemRecorder instance drops to zero to
zgu@3935 532 // completely shutdown NMT
zgu@3935 533 if (MemRecorder::_instance_count == 0) {
zgu@3935 534 _state = NMT_shutdown;
zgu@3935 535 _tracking_level = NMT_off;
zgu@3935 536 }
zgu@3900 537 }
zgu@3900 538 }
zgu@3900 539
zgu@3900 540 /*
zgu@3900 541 * Start worker thread.
zgu@3900 542 */
zgu@3900 543 bool MemTracker::start_worker() {
zgu@3900 544 assert(_worker_thread == NULL, "Just Check");
zgu@3900 545 _worker_thread = new (std::nothrow) MemTrackWorker();
zgu@3900 546 if (_worker_thread == NULL || _worker_thread->has_error()) {
zgu@3900 547 shutdown(NMT_initialization);
zgu@3900 548 return false;
zgu@3900 549 }
zgu@3900 550 _worker_thread->start();
zgu@3900 551 return true;
zgu@3900 552 }
zgu@3900 553
zgu@3900 554 /*
zgu@3900 555 * We need to collect a JavaThread's per-thread recorder
zgu@3900 556 * before it exits.
zgu@3900 557 */
zgu@3900 558 void MemTracker::thread_exiting(JavaThread* thread) {
zgu@3900 559 if (is_on()) {
zgu@3900 560 MemRecorder* rec = thread->get_recorder();
zgu@3900 561 if (rec != NULL) {
zgu@3900 562 enqueue_pending_recorder(rec);
zgu@3900 563 thread->set_recorder(NULL);
zgu@3900 564 }
zgu@3900 565 }
zgu@3900 566 }
zgu@3900 567
zgu@3900 568 // baseline current memory snapshot
zgu@3900 569 bool MemTracker::baseline() {
zgu@3936 570 MutexLockerEx lock(_query_lock, true);
zgu@3900 571 MemSnapshot* snapshot = get_snapshot();
zgu@3900 572 if (snapshot != NULL) {
zgu@3900 573 return _baseline.baseline(*snapshot, false);
zgu@3900 574 }
zgu@3900 575 return false;
zgu@3900 576 }
zgu@3900 577
zgu@3900 578 // print memory usage from current snapshot
zgu@3900 579 bool MemTracker::print_memory_usage(BaselineOutputer& out, size_t unit, bool summary_only) {
zgu@3900 580 MemBaseline baseline;
zgu@3936 581 MutexLockerEx lock(_query_lock, true);
zgu@3900 582 MemSnapshot* snapshot = get_snapshot();
zgu@3900 583 if (snapshot != NULL && baseline.baseline(*snapshot, summary_only)) {
zgu@3900 584 BaselineReporter reporter(out, unit);
zgu@3900 585 reporter.report_baseline(baseline, summary_only);
zgu@3900 586 return true;
zgu@3900 587 }
zgu@3900 588 return false;
zgu@3900 589 }
zgu@3900 590
ctornqvi@4512 591 // Whitebox API for blocking until the current generation of NMT data has been merged
ctornqvi@4512 592 bool MemTracker::wbtest_wait_for_data_merge() {
ctornqvi@4512 593 // NMT can't be shutdown while we're holding _query_lock
ctornqvi@4512 594 MutexLockerEx lock(_query_lock, true);
ctornqvi@4512 595 assert(_worker_thread != NULL, "Invalid query");
ctornqvi@4512 596 // the generation at query time, so NMT will spin till this generation is processed
ctornqvi@4512 597 unsigned long generation_at_query_time = SequenceGenerator::current_generation();
ctornqvi@4512 598 unsigned long current_processing_generation = _processing_generation;
ctornqvi@4512 599 // if generation counter overflown
ctornqvi@4512 600 bool generation_overflown = (generation_at_query_time < current_processing_generation);
ctornqvi@4512 601 long generations_to_wrap = MAX_UNSIGNED_LONG - current_processing_generation;
ctornqvi@4512 602 // spin
ctornqvi@4512 603 while (!shutdown_in_progress()) {
ctornqvi@4512 604 if (!generation_overflown) {
ctornqvi@4512 605 if (current_processing_generation > generation_at_query_time) {
ctornqvi@4512 606 return true;
ctornqvi@4512 607 }
ctornqvi@4512 608 } else {
ctornqvi@4512 609 assert(generations_to_wrap >= 0, "Sanity check");
ctornqvi@4512 610 long current_generations_to_wrap = MAX_UNSIGNED_LONG - current_processing_generation;
ctornqvi@4512 611 assert(current_generations_to_wrap >= 0, "Sanity check");
ctornqvi@4512 612 // to overflow an unsigned long should take long time, so to_wrap check should be sufficient
ctornqvi@4512 613 if (current_generations_to_wrap > generations_to_wrap &&
ctornqvi@4512 614 current_processing_generation > generation_at_query_time) {
ctornqvi@4512 615 return true;
ctornqvi@4512 616 }
ctornqvi@4512 617 }
ctornqvi@4512 618
ctornqvi@4512 619 // if worker thread is idle, but generation is not advancing, that means
ctornqvi@4512 620 // there is not safepoint to let NMT advance generation, force one.
ctornqvi@4512 621 if (_worker_thread_idle) {
ctornqvi@4512 622 VM_ForceSafepoint vfs;
ctornqvi@4512 623 VMThread::execute(&vfs);
ctornqvi@4512 624 }
ctornqvi@4512 625 MemSnapshot* snapshot = get_snapshot();
ctornqvi@4512 626 if (snapshot == NULL) {
ctornqvi@4512 627 return false;
ctornqvi@4512 628 }
ctornqvi@4512 629 snapshot->wait(1000);
ctornqvi@4512 630 current_processing_generation = _processing_generation;
ctornqvi@4512 631 }
ctornqvi@4512 632 // We end up here if NMT is shutting down before our data has been merged
ctornqvi@4512 633 return false;
ctornqvi@4512 634 }
ctornqvi@4512 635
zgu@3900 636 // compare memory usage between current snapshot and baseline
zgu@3900 637 bool MemTracker::compare_memory_usage(BaselineOutputer& out, size_t unit, bool summary_only) {
zgu@3936 638 MutexLockerEx lock(_query_lock, true);
zgu@3900 639 if (_baseline.baselined()) {
zgu@3900 640 MemBaseline baseline;
zgu@3900 641 MemSnapshot* snapshot = get_snapshot();
zgu@3900 642 if (snapshot != NULL && baseline.baseline(*snapshot, summary_only)) {
zgu@3900 643 BaselineReporter reporter(out, unit);
zgu@3900 644 reporter.diff_baselines(baseline, _baseline, summary_only);
zgu@3900 645 return true;
zgu@3900 646 }
zgu@3900 647 }
zgu@3900 648 return false;
zgu@3900 649 }
zgu@3900 650
zgu@3900 651 #ifndef PRODUCT
zgu@3900 652 void MemTracker::walk_stack(int toSkip, char* buf, int len) {
zgu@3900 653 int cur_len = 0;
zgu@3900 654 char tmp[1024];
zgu@3900 655 address pc;
zgu@3900 656
zgu@3900 657 while (cur_len < len) {
zgu@3900 658 pc = os::get_caller_pc(toSkip + 1);
zgu@3900 659 if (pc != NULL && os::dll_address_to_function_name(pc, tmp, sizeof(tmp), NULL)) {
zgu@3900 660 jio_snprintf(&buf[cur_len], (len - cur_len), "%s\n", tmp);
zgu@3900 661 cur_len = (int)strlen(buf);
zgu@3900 662 } else {
zgu@3900 663 buf[cur_len] = '\0';
zgu@3900 664 break;
zgu@3900 665 }
zgu@3900 666 toSkip ++;
zgu@3900 667 }
zgu@3900 668 }
zgu@3900 669
zgu@3900 670 void MemTracker::print_tracker_stats(outputStream* st) {
zgu@3900 671 st->print_cr("\nMemory Tracker Stats:");
zgu@3900 672 st->print_cr("\tMax sequence number = %d", SequenceGenerator::max_seq_num());
zgu@3900 673 st->print_cr("\tthead count = %d", _thread_count);
zgu@3900 674 st->print_cr("\tArena instance = %d", Arena::_instance_count);
zgu@3900 675 st->print_cr("\tpooled recorder count = %d", _pooled_recorder_count);
zgu@3900 676 st->print_cr("\tqueued recorder count = %d", _pending_recorder_count);
zgu@3900 677 st->print_cr("\tmemory recorder instance count = %d", MemRecorder::_instance_count);
zgu@3900 678 if (_worker_thread != NULL) {
zgu@3900 679 st->print_cr("\tWorker thread:");
zgu@3900 680 st->print_cr("\t\tSync point count = %d", _worker_thread->_sync_point_count);
zgu@3900 681 st->print_cr("\t\tpending recorder count = %d", _worker_thread->count_pending_recorders());
zgu@3900 682 st->print_cr("\t\tmerge count = %d", _worker_thread->_merge_count);
zgu@3900 683 } else {
zgu@3900 684 st->print_cr("\tWorker thread is not started");
zgu@3900 685 }
zgu@3900 686 st->print_cr(" ");
zgu@3900 687
zgu@3900 688 if (_snapshot != NULL) {
zgu@3900 689 _snapshot->print_snapshot_stats(st);
zgu@3900 690 } else {
zgu@3900 691 st->print_cr("No snapshot");
zgu@3900 692 }
zgu@3900 693 }
zgu@3900 694 #endif
zgu@3900 695

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