src/share/vm/services/memoryManager.cpp

Thu, 29 May 2014 08:58:51 -0400

author
lfoltan
date
Thu, 29 May 2014 08:58:51 -0400
changeset 9314
46ab61b0758b
parent 6911
ce8f6bb717c9
child 9448
73d689add964
child 9608
4b8584c24ff4
permissions
-rw-r--r--

8041623: Solaris Studio 12.4 C++ 5.13, CHECK_UNHANDLED_OOPS use of class oop's copy constructor definitions causing error level diagnostic.
Summary: Fix several minor compilation issues with volatile oops for CHECK_UNHANDLED_OOPS support.
Reviewed-by: coleenp, hseigel

duke@435 1 /*
lfoltan@9314 2 * Copyright (c) 2003, 2014, 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 "classfile/vmSymbols.hpp"
stefank@2314 28 #include "oops/oop.inline.hpp"
stefank@2314 29 #include "runtime/handles.inline.hpp"
stefank@2314 30 #include "runtime/javaCalls.hpp"
goetz@6911 31 #include "runtime/orderAccess.inline.hpp"
stefank@2314 32 #include "services/lowMemoryDetector.hpp"
stefank@2314 33 #include "services/management.hpp"
stefank@2314 34 #include "services/memoryManager.hpp"
stefank@2314 35 #include "services/memoryPool.hpp"
stefank@2314 36 #include "services/memoryService.hpp"
fparain@2888 37 #include "services/gcNotifier.hpp"
stefank@2314 38 #include "utilities/dtrace.hpp"
duke@435 39
dcubed@3202 40 #ifndef USDT2
duke@435 41 HS_DTRACE_PROBE_DECL8(hotspot, mem__pool__gc__begin, char*, int, char*, int,
duke@435 42 size_t, size_t, size_t, size_t);
duke@435 43 HS_DTRACE_PROBE_DECL8(hotspot, mem__pool__gc__end, char*, int, char*, int,
duke@435 44 size_t, size_t, size_t, size_t);
dcubed@3202 45 #endif /* !USDT2 */
duke@435 46
duke@435 47 MemoryManager::MemoryManager() {
duke@435 48 _num_pools = 0;
lfoltan@9314 49 (void)const_cast<instanceOop&>(_memory_mgr_obj = instanceOop(NULL));
duke@435 50 }
duke@435 51
duke@435 52 void MemoryManager::add_pool(MemoryPool* pool) {
duke@435 53 assert(_num_pools < MemoryManager::max_num_pools, "_num_pools exceeds the max");
duke@435 54 if (_num_pools < MemoryManager::max_num_pools) {
duke@435 55 _pools[_num_pools] = pool;
duke@435 56 _num_pools++;
duke@435 57 }
duke@435 58 pool->add_manager(this);
duke@435 59 }
duke@435 60
duke@435 61 MemoryManager* MemoryManager::get_code_cache_memory_manager() {
duke@435 62 return (MemoryManager*) new CodeCacheMemoryManager();
duke@435 63 }
duke@435 64
ehelin@5312 65 MemoryManager* MemoryManager::get_metaspace_memory_manager() {
ehelin@5312 66 return (MemoryManager*) new MetaspaceMemoryManager();
ehelin@5312 67 }
ehelin@5312 68
duke@435 69 GCMemoryManager* MemoryManager::get_copy_memory_manager() {
duke@435 70 return (GCMemoryManager*) new CopyMemoryManager();
duke@435 71 }
duke@435 72
duke@435 73 GCMemoryManager* MemoryManager::get_msc_memory_manager() {
duke@435 74 return (GCMemoryManager*) new MSCMemoryManager();
duke@435 75 }
duke@435 76
duke@435 77 GCMemoryManager* MemoryManager::get_parnew_memory_manager() {
duke@435 78 return (GCMemoryManager*) new ParNewMemoryManager();
duke@435 79 }
duke@435 80
duke@435 81 GCMemoryManager* MemoryManager::get_cms_memory_manager() {
duke@435 82 return (GCMemoryManager*) new CMSMemoryManager();
duke@435 83 }
duke@435 84
duke@435 85 GCMemoryManager* MemoryManager::get_psScavenge_memory_manager() {
duke@435 86 return (GCMemoryManager*) new PSScavengeMemoryManager();
duke@435 87 }
duke@435 88
duke@435 89 GCMemoryManager* MemoryManager::get_psMarkSweep_memory_manager() {
duke@435 90 return (GCMemoryManager*) new PSMarkSweepMemoryManager();
duke@435 91 }
duke@435 92
tonyp@1524 93 GCMemoryManager* MemoryManager::get_g1YoungGen_memory_manager() {
tonyp@1524 94 return (GCMemoryManager*) new G1YoungGenMemoryManager();
tonyp@1524 95 }
tonyp@1524 96
tonyp@1524 97 GCMemoryManager* MemoryManager::get_g1OldGen_memory_manager() {
tonyp@1524 98 return (GCMemoryManager*) new G1OldGenMemoryManager();
tonyp@1524 99 }
tonyp@1524 100
duke@435 101 instanceOop MemoryManager::get_memory_manager_instance(TRAPS) {
duke@435 102 // Must do an acquire so as to force ordering of subsequent
duke@435 103 // loads from anything _memory_mgr_obj points to or implies.
duke@435 104 instanceOop mgr_obj = (instanceOop)OrderAccess::load_ptr_acquire(&_memory_mgr_obj);
duke@435 105 if (mgr_obj == NULL) {
duke@435 106 // It's ok for more than one thread to execute the code up to the locked region.
duke@435 107 // Extra manager instances will just be gc'ed.
coleenp@4037 108 Klass* k = Management::sun_management_ManagementFactory_klass(CHECK_0);
duke@435 109 instanceKlassHandle ik(THREAD, k);
duke@435 110
duke@435 111 Handle mgr_name = java_lang_String::create_from_str(name(), CHECK_0);
duke@435 112
duke@435 113 JavaValue result(T_OBJECT);
duke@435 114 JavaCallArguments args;
duke@435 115 args.push_oop(mgr_name); // Argument 1
duke@435 116
coleenp@2497 117 Symbol* method_name = NULL;
coleenp@2497 118 Symbol* signature = NULL;
duke@435 119 if (is_gc_memory_manager()) {
coleenp@2497 120 method_name = vmSymbols::createGarbageCollector_name();
coleenp@2497 121 signature = vmSymbols::createGarbageCollector_signature();
duke@435 122 args.push_oop(Handle()); // Argument 2 (for future extension)
duke@435 123 } else {
coleenp@2497 124 method_name = vmSymbols::createMemoryManager_name();
coleenp@2497 125 signature = vmSymbols::createMemoryManager_signature();
duke@435 126 }
duke@435 127
duke@435 128 JavaCalls::call_static(&result,
duke@435 129 ik,
duke@435 130 method_name,
duke@435 131 signature,
duke@435 132 &args,
duke@435 133 CHECK_0);
duke@435 134
duke@435 135 instanceOop m = (instanceOop) result.get_jobject();
duke@435 136 instanceHandle mgr(THREAD, m);
duke@435 137
duke@435 138 {
duke@435 139 // Get lock before setting _memory_mgr_obj
duke@435 140 // since another thread may have created the instance
duke@435 141 MutexLocker ml(Management_lock);
duke@435 142
duke@435 143 // Check if another thread has created the management object. We reload
duke@435 144 // _memory_mgr_obj here because some other thread may have initialized
duke@435 145 // it while we were executing the code before the lock.
duke@435 146 //
duke@435 147 // The lock has done an acquire, so the load can't float above it, but
duke@435 148 // we need to do a load_acquire as above.
duke@435 149 mgr_obj = (instanceOop)OrderAccess::load_ptr_acquire(&_memory_mgr_obj);
duke@435 150 if (mgr_obj != NULL) {
duke@435 151 return mgr_obj;
duke@435 152 }
duke@435 153
duke@435 154 // Get the address of the object we created via call_special.
duke@435 155 mgr_obj = mgr();
duke@435 156
duke@435 157 // Use store barrier to make sure the memory accesses associated
duke@435 158 // with creating the management object are visible before publishing
duke@435 159 // its address. The unlock will publish the store to _memory_mgr_obj
duke@435 160 // because it does a release first.
duke@435 161 OrderAccess::release_store_ptr(&_memory_mgr_obj, mgr_obj);
duke@435 162 }
duke@435 163 }
duke@435 164
duke@435 165 return mgr_obj;
duke@435 166 }
duke@435 167
duke@435 168 void MemoryManager::oops_do(OopClosure* f) {
duke@435 169 f->do_oop((oop*) &_memory_mgr_obj);
duke@435 170 }
duke@435 171
duke@435 172 GCStatInfo::GCStatInfo(int num_pools) {
duke@435 173 // initialize the arrays for memory usage
zgu@3900 174 _before_gc_usage_array = (MemoryUsage*) NEW_C_HEAP_ARRAY(MemoryUsage, num_pools, mtInternal);
zgu@3900 175 _after_gc_usage_array = (MemoryUsage*) NEW_C_HEAP_ARRAY(MemoryUsage, num_pools, mtInternal);
duke@435 176 _usage_array_size = num_pools;
johnc@3291 177 clear();
duke@435 178 }
duke@435 179
duke@435 180 GCStatInfo::~GCStatInfo() {
zgu@3900 181 FREE_C_HEAP_ARRAY(MemoryUsage*, _before_gc_usage_array, mtInternal);
zgu@3900 182 FREE_C_HEAP_ARRAY(MemoryUsage*, _after_gc_usage_array, mtInternal);
duke@435 183 }
duke@435 184
duke@435 185 void GCStatInfo::set_gc_usage(int pool_index, MemoryUsage usage, bool before_gc) {
duke@435 186 MemoryUsage* gc_usage_array;
duke@435 187 if (before_gc) {
duke@435 188 gc_usage_array = _before_gc_usage_array;
duke@435 189 } else {
duke@435 190 gc_usage_array = _after_gc_usage_array;
duke@435 191 }
duke@435 192 gc_usage_array[pool_index] = usage;
duke@435 193 }
duke@435 194
kevinw@2058 195 void GCStatInfo::clear() {
kevinw@2058 196 _index = 0;
kevinw@2058 197 _start_time = 0L;
kevinw@2058 198 _end_time = 0L;
kevinw@2058 199 size_t len = _usage_array_size * sizeof(MemoryUsage);
kevinw@2058 200 memset(_before_gc_usage_array, 0, len);
kevinw@2058 201 memset(_after_gc_usage_array, 0, len);
kevinw@2058 202 }
kevinw@2058 203
kevinw@2058 204
duke@435 205 GCMemoryManager::GCMemoryManager() : MemoryManager() {
duke@435 206 _num_collections = 0;
duke@435 207 _last_gc_stat = NULL;
kevinw@2058 208 _last_gc_lock = new Mutex(Mutex::leaf, "_last_gc_lock", true);
kevinw@2058 209 _current_gc_stat = NULL;
duke@435 210 _num_gc_threads = 1;
fparain@2888 211 _notification_enabled = false;
duke@435 212 }
duke@435 213
duke@435 214 GCMemoryManager::~GCMemoryManager() {
duke@435 215 delete _last_gc_stat;
kevinw@2058 216 delete _last_gc_lock;
kevinw@2058 217 delete _current_gc_stat;
duke@435 218 }
duke@435 219
duke@435 220 void GCMemoryManager::initialize_gc_stat_info() {
duke@435 221 assert(MemoryService::num_memory_pools() > 0, "should have one or more memory pools");
zgu@3900 222 _last_gc_stat = new(ResourceObj::C_HEAP, mtGC) GCStatInfo(MemoryService::num_memory_pools());
zgu@3900 223 _current_gc_stat = new(ResourceObj::C_HEAP, mtGC) GCStatInfo(MemoryService::num_memory_pools());
kevinw@2058 224 // tracking concurrent collections we need two objects: one to update, and one to
kevinw@2058 225 // hold the publicly available "last (completed) gc" information.
duke@435 226 }
duke@435 227
kevinw@2058 228 void GCMemoryManager::gc_begin(bool recordGCBeginTime, bool recordPreGCUsage,
kevinw@2058 229 bool recordAccumulatedGCTime) {
kevinw@2058 230 assert(_last_gc_stat != NULL && _current_gc_stat != NULL, "Just checking");
kevinw@2058 231 if (recordAccumulatedGCTime) {
kevinw@2058 232 _accumulated_timer.start();
kevinw@2058 233 }
kevinw@2058 234 // _num_collections now increases in gc_end, to count completed collections
kevinw@2058 235 if (recordGCBeginTime) {
kevinw@2058 236 _current_gc_stat->set_index(_num_collections+1);
kevinw@2058 237 _current_gc_stat->set_start_time(Management::timestamp());
kevinw@2058 238 }
duke@435 239
kevinw@2058 240 if (recordPreGCUsage) {
kevinw@2058 241 // Keep memory usage of all memory pools
kevinw@2058 242 for (int i = 0; i < MemoryService::num_memory_pools(); i++) {
kevinw@2058 243 MemoryPool* pool = MemoryService::get_memory_pool(i);
kevinw@2058 244 MemoryUsage usage = pool->get_memory_usage();
kevinw@2058 245 _current_gc_stat->set_before_gc_usage(i, usage);
dcubed@3202 246 #ifndef USDT2
kevinw@2058 247 HS_DTRACE_PROBE8(hotspot, mem__pool__gc__begin,
kevinw@2058 248 name(), strlen(name()),
kevinw@2058 249 pool->name(), strlen(pool->name()),
kevinw@2058 250 usage.init_size(), usage.used(),
kevinw@2058 251 usage.committed(), usage.max_size());
dcubed@3202 252 #else /* USDT2 */
dcubed@3202 253 HOTSPOT_MEM_POOL_GC_BEGIN(
dcubed@3202 254 (char *) name(), strlen(name()),
dcubed@3202 255 (char *) pool->name(), strlen(pool->name()),
dcubed@3202 256 usage.init_size(), usage.used(),
dcubed@3202 257 usage.committed(), usage.max_size());
dcubed@3202 258 #endif /* USDT2 */
kevinw@2058 259 }
duke@435 260 }
duke@435 261 }
duke@435 262
kevinw@2058 263 // A collector MUST, even if it does not complete for some reason,
kevinw@2058 264 // make a TraceMemoryManagerStats object where countCollection is true,
kevinw@2058 265 // to ensure the current gc stat is placed in _last_gc_stat.
kevinw@2058 266 void GCMemoryManager::gc_end(bool recordPostGCUsage,
kevinw@2058 267 bool recordAccumulatedGCTime,
fparain@2888 268 bool recordGCEndTime, bool countCollection,
fparain@2888 269 GCCause::Cause cause) {
kevinw@2058 270 if (recordAccumulatedGCTime) {
kevinw@2058 271 _accumulated_timer.stop();
kevinw@2058 272 }
kevinw@2058 273 if (recordGCEndTime) {
kevinw@2058 274 _current_gc_stat->set_end_time(Management::timestamp());
duke@435 275 }
duke@435 276
kevinw@2058 277 if (recordPostGCUsage) {
kevinw@2058 278 int i;
kevinw@2058 279 // keep the last gc statistics for all memory pools
kevinw@2058 280 for (i = 0; i < MemoryService::num_memory_pools(); i++) {
kevinw@2058 281 MemoryPool* pool = MemoryService::get_memory_pool(i);
kevinw@2058 282 MemoryUsage usage = pool->get_memory_usage();
duke@435 283
dcubed@3202 284 #ifndef USDT2
kevinw@2058 285 HS_DTRACE_PROBE8(hotspot, mem__pool__gc__end,
kevinw@2058 286 name(), strlen(name()),
kevinw@2058 287 pool->name(), strlen(pool->name()),
kevinw@2058 288 usage.init_size(), usage.used(),
kevinw@2058 289 usage.committed(), usage.max_size());
dcubed@3202 290 #else /* USDT2 */
dcubed@3202 291 HOTSPOT_MEM_POOL_GC_END(
dcubed@3202 292 (char *) name(), strlen(name()),
dcubed@3202 293 (char *) pool->name(), strlen(pool->name()),
dcubed@3202 294 usage.init_size(), usage.used(),
dcubed@3202 295 usage.committed(), usage.max_size());
dcubed@3202 296 #endif /* USDT2 */
kevinw@2058 297
kevinw@2058 298 _current_gc_stat->set_after_gc_usage(i, usage);
kevinw@2058 299 }
kevinw@2058 300
kevinw@2058 301 // Set last collection usage of the memory pools managed by this collector
kevinw@2058 302 for (i = 0; i < num_memory_pools(); i++) {
kevinw@2058 303 MemoryPool* pool = get_memory_pool(i);
kevinw@2058 304 MemoryUsage usage = pool->get_memory_usage();
kevinw@2058 305
kevinw@2058 306 // Compare with GC usage threshold
kevinw@2058 307 pool->set_last_collection_usage(usage);
kevinw@2058 308 LowMemoryDetector::detect_after_gc_memory(pool);
kevinw@2058 309 }
kevinw@2058 310 }
johnc@3291 311
kevinw@2058 312 if (countCollection) {
kevinw@2058 313 _num_collections++;
kevinw@2058 314 // alternately update two objects making one public when complete
kevinw@2058 315 {
kevinw@2058 316 MutexLockerEx ml(_last_gc_lock, Mutex::_no_safepoint_check_flag);
kevinw@2058 317 GCStatInfo *tmp = _last_gc_stat;
kevinw@2058 318 _last_gc_stat = _current_gc_stat;
kevinw@2058 319 _current_gc_stat = tmp;
kevinw@2058 320 // reset the current stat for diagnosability purposes
kevinw@2058 321 _current_gc_stat->clear();
kevinw@2058 322 }
johnc@3291 323
johnc@3291 324 if (is_notification_enabled()) {
johnc@3291 325 bool isMajorGC = this == MemoryService::get_major_gc_manager();
johnc@3291 326 GCNotifier::pushNotification(this, isMajorGC ? "end of major GC" : "end of minor GC",
johnc@3291 327 GCCause::to_string(cause));
johnc@3291 328 }
duke@435 329 }
duke@435 330 }
kevinw@2058 331
kevinw@2058 332 size_t GCMemoryManager::get_last_gc_stat(GCStatInfo* dest) {
kevinw@2058 333 MutexLockerEx ml(_last_gc_lock, Mutex::_no_safepoint_check_flag);
kevinw@2058 334 if (_last_gc_stat->gc_index() != 0) {
kevinw@2058 335 dest->set_index(_last_gc_stat->gc_index());
kevinw@2058 336 dest->set_start_time(_last_gc_stat->start_time());
kevinw@2058 337 dest->set_end_time(_last_gc_stat->end_time());
kevinw@2058 338 assert(dest->usage_array_size() == _last_gc_stat->usage_array_size(),
kevinw@2058 339 "Must have same array size");
kevinw@2058 340 size_t len = dest->usage_array_size() * sizeof(MemoryUsage);
kevinw@2058 341 memcpy(dest->before_gc_usage_array(), _last_gc_stat->before_gc_usage_array(), len);
kevinw@2058 342 memcpy(dest->after_gc_usage_array(), _last_gc_stat->after_gc_usage_array(), len);
kevinw@2058 343 }
kevinw@2058 344 return _last_gc_stat->gc_index();
kevinw@2058 345 }

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