src/share/vm/memory/heapInspection.cpp

Wed, 01 Dec 2010 15:04:06 +0100

author
stefank
date
Wed, 01 Dec 2010 15:04:06 +0100
changeset 2325
c760f78e0a53
parent 2314
f95d63e2154a
child 2497
3582bf76420e
permissions
-rw-r--r--

7003125: precompiled.hpp is included when precompiled headers are not used
Summary: Added an ifndef DONT_USE_PRECOMPILED_HEADER to precompiled.hpp. Set up DONT_USE_PRECOMPILED_HEADER when compiling with Sun Studio or when the user specifies USE_PRECOMPILED_HEADER=0. Fixed broken include dependencies.
Reviewed-by: coleenp, kvn

duke@435 1 /*
stefank@2314 2 * Copyright (c) 2002, 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 "gc_interface/collectedHeap.hpp"
stefank@2314 27 #include "memory/genCollectedHeap.hpp"
stefank@2314 28 #include "memory/heapInspection.hpp"
stefank@2314 29 #include "memory/resourceArea.hpp"
stefank@2314 30 #include "oops/klassOop.hpp"
stefank@2314 31 #include "runtime/os.hpp"
stefank@2314 32 #include "utilities/globalDefinitions.hpp"
stefank@2314 33 #ifndef SERIALGC
stefank@2314 34 #include "gc_implementation/parallelScavenge/parallelScavengeHeap.hpp"
stefank@2314 35 #endif
duke@435 36
duke@435 37 // HeapInspection
duke@435 38
duke@435 39 int KlassInfoEntry::compare(KlassInfoEntry* e1, KlassInfoEntry* e2) {
duke@435 40 if(e1->_instance_words > e2->_instance_words) {
duke@435 41 return -1;
duke@435 42 } else if(e1->_instance_words < e2->_instance_words) {
duke@435 43 return 1;
duke@435 44 }
duke@435 45 return 0;
duke@435 46 }
duke@435 47
duke@435 48 void KlassInfoEntry::print_on(outputStream* st) const {
duke@435 49 ResourceMark rm;
duke@435 50 const char* name;;
duke@435 51 if (_klass->klass_part()->name() != NULL) {
duke@435 52 name = _klass->klass_part()->external_name();
duke@435 53 } else {
duke@435 54 if (_klass == Universe::klassKlassObj()) name = "<klassKlass>"; else
duke@435 55 if (_klass == Universe::arrayKlassKlassObj()) name = "<arrayKlassKlass>"; else
duke@435 56 if (_klass == Universe::objArrayKlassKlassObj()) name = "<objArrayKlassKlass>"; else
duke@435 57 if (_klass == Universe::instanceKlassKlassObj()) name = "<instanceKlassKlass>"; else
duke@435 58 if (_klass == Universe::typeArrayKlassKlassObj()) name = "<typeArrayKlassKlass>"; else
duke@435 59 if (_klass == Universe::symbolKlassObj()) name = "<symbolKlass>"; else
duke@435 60 if (_klass == Universe::boolArrayKlassObj()) name = "<boolArrayKlass>"; else
duke@435 61 if (_klass == Universe::charArrayKlassObj()) name = "<charArrayKlass>"; else
duke@435 62 if (_klass == Universe::singleArrayKlassObj()) name = "<singleArrayKlass>"; else
duke@435 63 if (_klass == Universe::doubleArrayKlassObj()) name = "<doubleArrayKlass>"; else
duke@435 64 if (_klass == Universe::byteArrayKlassObj()) name = "<byteArrayKlass>"; else
duke@435 65 if (_klass == Universe::shortArrayKlassObj()) name = "<shortArrayKlass>"; else
duke@435 66 if (_klass == Universe::intArrayKlassObj()) name = "<intArrayKlass>"; else
duke@435 67 if (_klass == Universe::longArrayKlassObj()) name = "<longArrayKlass>"; else
duke@435 68 if (_klass == Universe::methodKlassObj()) name = "<methodKlass>"; else
duke@435 69 if (_klass == Universe::constMethodKlassObj()) name = "<constMethodKlass>"; else
duke@435 70 if (_klass == Universe::methodDataKlassObj()) name = "<methodDataKlass>"; else
duke@435 71 if (_klass == Universe::constantPoolKlassObj()) name = "<constantPoolKlass>"; else
duke@435 72 if (_klass == Universe::constantPoolCacheKlassObj()) name = "<constantPoolCacheKlass>"; else
duke@435 73 if (_klass == Universe::compiledICHolderKlassObj()) name = "<compiledICHolderKlass>"; else
duke@435 74 name = "<no name>";
duke@435 75 }
duke@435 76 // simplify the formatting (ILP32 vs LP64) - always cast the numbers to 64-bit
ysr@446 77 st->print_cr(INT64_FORMAT_W(13) " " UINT64_FORMAT_W(13) " %s",
duke@435 78 (jlong) _instance_count,
duke@435 79 (julong) _instance_words * HeapWordSize,
duke@435 80 name);
duke@435 81 }
duke@435 82
duke@435 83 KlassInfoEntry* KlassInfoBucket::lookup(const klassOop k) {
duke@435 84 KlassInfoEntry* elt = _list;
duke@435 85 while (elt != NULL) {
duke@435 86 if (elt->is_equal(k)) {
duke@435 87 return elt;
duke@435 88 }
duke@435 89 elt = elt->next();
duke@435 90 }
duke@435 91 elt = new KlassInfoEntry(k, list());
ysr@446 92 // We may be out of space to allocate the new entry.
ysr@446 93 if (elt != NULL) {
ysr@446 94 set_list(elt);
ysr@446 95 }
duke@435 96 return elt;
duke@435 97 }
duke@435 98
duke@435 99 void KlassInfoBucket::iterate(KlassInfoClosure* cic) {
duke@435 100 KlassInfoEntry* elt = _list;
duke@435 101 while (elt != NULL) {
duke@435 102 cic->do_cinfo(elt);
duke@435 103 elt = elt->next();
duke@435 104 }
duke@435 105 }
duke@435 106
duke@435 107 void KlassInfoBucket::empty() {
duke@435 108 KlassInfoEntry* elt = _list;
duke@435 109 _list = NULL;
duke@435 110 while (elt != NULL) {
duke@435 111 KlassInfoEntry* next = elt->next();
duke@435 112 delete elt;
duke@435 113 elt = next;
duke@435 114 }
duke@435 115 }
duke@435 116
duke@435 117 KlassInfoTable::KlassInfoTable(int size, HeapWord* ref) {
ysr@446 118 _size = 0;
duke@435 119 _ref = ref;
ysr@446 120 _buckets = NEW_C_HEAP_ARRAY(KlassInfoBucket, size);
ysr@446 121 if (_buckets != NULL) {
ysr@446 122 _size = size;
ysr@446 123 for (int index = 0; index < _size; index++) {
ysr@446 124 _buckets[index].initialize();
ysr@446 125 }
duke@435 126 }
duke@435 127 }
duke@435 128
duke@435 129 KlassInfoTable::~KlassInfoTable() {
ysr@446 130 if (_buckets != NULL) {
ysr@446 131 for (int index = 0; index < _size; index++) {
ysr@446 132 _buckets[index].empty();
ysr@446 133 }
ysr@446 134 FREE_C_HEAP_ARRAY(KlassInfoBucket, _buckets);
ysr@446 135 _size = 0;
duke@435 136 }
duke@435 137 }
duke@435 138
duke@435 139 uint KlassInfoTable::hash(klassOop p) {
duke@435 140 assert(Universe::heap()->is_in_permanent((HeapWord*)p), "all klasses in permgen");
duke@435 141 return (uint)(((uintptr_t)p - (uintptr_t)_ref) >> 2);
duke@435 142 }
duke@435 143
duke@435 144 KlassInfoEntry* KlassInfoTable::lookup(const klassOop k) {
duke@435 145 uint idx = hash(k) % _size;
ysr@446 146 assert(_buckets != NULL, "Allocation failure should have been caught");
duke@435 147 KlassInfoEntry* e = _buckets[idx].lookup(k);
ysr@446 148 // Lookup may fail if this is a new klass for which we
ysr@446 149 // could not allocate space for an new entry.
ysr@446 150 assert(e == NULL || k == e->klass(), "must be equal");
duke@435 151 return e;
duke@435 152 }
duke@435 153
ysr@446 154 // Return false if the entry could not be recorded on account
ysr@446 155 // of running out of space required to create a new entry.
ysr@446 156 bool KlassInfoTable::record_instance(const oop obj) {
duke@435 157 klassOop k = obj->klass();
duke@435 158 KlassInfoEntry* elt = lookup(k);
ysr@446 159 // elt may be NULL if it's a new klass for which we
ysr@446 160 // could not allocate space for a new entry in the hashtable.
ysr@446 161 if (elt != NULL) {
ysr@446 162 elt->set_count(elt->count() + 1);
ysr@446 163 elt->set_words(elt->words() + obj->size());
ysr@446 164 return true;
ysr@446 165 } else {
ysr@446 166 return false;
ysr@446 167 }
duke@435 168 }
duke@435 169
duke@435 170 void KlassInfoTable::iterate(KlassInfoClosure* cic) {
ysr@446 171 assert(_size == 0 || _buckets != NULL, "Allocation failure should have been caught");
duke@435 172 for (int index = 0; index < _size; index++) {
duke@435 173 _buckets[index].iterate(cic);
duke@435 174 }
duke@435 175 }
duke@435 176
duke@435 177 int KlassInfoHisto::sort_helper(KlassInfoEntry** e1, KlassInfoEntry** e2) {
duke@435 178 return (*e1)->compare(*e1,*e2);
duke@435 179 }
duke@435 180
duke@435 181 KlassInfoHisto::KlassInfoHisto(const char* title, int estimatedCount) :
duke@435 182 _title(title) {
duke@435 183 _elements = new (ResourceObj::C_HEAP) GrowableArray<KlassInfoEntry*>(estimatedCount,true);
duke@435 184 }
duke@435 185
duke@435 186 KlassInfoHisto::~KlassInfoHisto() {
duke@435 187 delete _elements;
duke@435 188 }
duke@435 189
duke@435 190 void KlassInfoHisto::add(KlassInfoEntry* cie) {
duke@435 191 elements()->append(cie);
duke@435 192 }
duke@435 193
duke@435 194 void KlassInfoHisto::sort() {
duke@435 195 elements()->sort(KlassInfoHisto::sort_helper);
duke@435 196 }
duke@435 197
duke@435 198 void KlassInfoHisto::print_elements(outputStream* st) const {
duke@435 199 // simplify the formatting (ILP32 vs LP64) - store the sum in 64-bit
duke@435 200 jlong total = 0;
duke@435 201 julong totalw = 0;
duke@435 202 for(int i=0; i < elements()->length(); i++) {
duke@435 203 st->print("%4d: ", i+1);
duke@435 204 elements()->at(i)->print_on(st);
duke@435 205 total += elements()->at(i)->count();
duke@435 206 totalw += elements()->at(i)->words();
duke@435 207 }
ysr@446 208 st->print_cr("Total " INT64_FORMAT_W(13) " " UINT64_FORMAT_W(13),
duke@435 209 total, totalw * HeapWordSize);
duke@435 210 }
duke@435 211
duke@435 212 void KlassInfoHisto::print_on(outputStream* st) const {
duke@435 213 st->print_cr("%s",title());
duke@435 214 print_elements(st);
duke@435 215 }
duke@435 216
duke@435 217 class HistoClosure : public KlassInfoClosure {
duke@435 218 private:
duke@435 219 KlassInfoHisto* _cih;
duke@435 220 public:
duke@435 221 HistoClosure(KlassInfoHisto* cih) : _cih(cih) {}
duke@435 222
duke@435 223 void do_cinfo(KlassInfoEntry* cie) {
duke@435 224 _cih->add(cie);
duke@435 225 }
duke@435 226 };
duke@435 227
duke@435 228 class RecordInstanceClosure : public ObjectClosure {
duke@435 229 private:
duke@435 230 KlassInfoTable* _cit;
ysr@446 231 size_t _missed_count;
duke@435 232 public:
ysr@446 233 RecordInstanceClosure(KlassInfoTable* cit) :
ysr@446 234 _cit(cit), _missed_count(0) {}
duke@435 235
duke@435 236 void do_object(oop obj) {
ysr@446 237 if (!_cit->record_instance(obj)) {
ysr@446 238 _missed_count++;
ysr@446 239 }
duke@435 240 }
ysr@446 241
ysr@446 242 size_t missed_count() { return _missed_count; }
duke@435 243 };
duke@435 244
ysr@1050 245 void HeapInspection::heap_inspection(outputStream* st, bool need_prologue) {
duke@435 246 ResourceMark rm;
duke@435 247 HeapWord* ref;
duke@435 248
duke@435 249 CollectedHeap* heap = Universe::heap();
ysr@777 250 bool is_shared_heap = false;
duke@435 251 switch (heap->kind()) {
ysr@777 252 case CollectedHeap::G1CollectedHeap:
duke@435 253 case CollectedHeap::GenCollectedHeap: {
ysr@777 254 is_shared_heap = true;
ysr@777 255 SharedHeap* sh = (SharedHeap*)heap;
ysr@1050 256 if (need_prologue) {
ysr@1050 257 sh->gc_prologue(false /* !full */); // get any necessary locks, etc.
ysr@1050 258 }
ysr@777 259 ref = sh->perm_gen()->used_region().start();
duke@435 260 break;
duke@435 261 }
duke@435 262 #ifndef SERIALGC
duke@435 263 case CollectedHeap::ParallelScavengeHeap: {
duke@435 264 ParallelScavengeHeap* psh = (ParallelScavengeHeap*)heap;
duke@435 265 ref = psh->perm_gen()->object_space()->used_region().start();
duke@435 266 break;
duke@435 267 }
duke@435 268 #endif // SERIALGC
duke@435 269 default:
duke@435 270 ShouldNotReachHere(); // Unexpected heap kind for this op
duke@435 271 }
duke@435 272 // Collect klass instance info
ysr@446 273 KlassInfoTable cit(KlassInfoTable::cit_size, ref);
ysr@446 274 if (!cit.allocation_failed()) {
ysr@446 275 // Iterate over objects in the heap
ysr@446 276 RecordInstanceClosure ric(&cit);
jmasa@952 277 // If this operation encounters a bad object when using CMS,
jmasa@952 278 // consider using safe_object_iterate() which avoids perm gen
jmasa@952 279 // objects that may contain bad references.
ysr@446 280 Universe::heap()->object_iterate(&ric);
duke@435 281
ysr@446 282 // Report if certain classes are not counted because of
ysr@446 283 // running out of C-heap for the histogram.
ysr@446 284 size_t missed_count = ric.missed_count();
ysr@446 285 if (missed_count != 0) {
ysr@446 286 st->print_cr("WARNING: Ran out of C-heap; undercounted " SIZE_FORMAT
ysr@446 287 " total instances in data below",
ysr@446 288 missed_count);
ysr@446 289 }
ysr@446 290 // Sort and print klass instance info
ysr@446 291 KlassInfoHisto histo("\n"
ysr@446 292 " num #instances #bytes class name\n"
ysr@446 293 "----------------------------------------------",
ysr@446 294 KlassInfoHisto::histo_initial_size);
ysr@446 295 HistoClosure hc(&histo);
ysr@446 296 cit.iterate(&hc);
ysr@446 297 histo.sort();
ysr@446 298 histo.print_on(st);
ysr@446 299 } else {
ysr@446 300 st->print_cr("WARNING: Ran out of C-heap; histogram not generated");
ysr@446 301 }
duke@435 302 st->flush();
duke@435 303
ysr@1050 304 if (need_prologue && is_shared_heap) {
ysr@777 305 SharedHeap* sh = (SharedHeap*)heap;
ysr@777 306 sh->gc_epilogue(false /* !full */); // release all acquired locks, etc.
duke@435 307 }
duke@435 308 }
duke@435 309
duke@435 310 class FindInstanceClosure : public ObjectClosure {
duke@435 311 private:
duke@435 312 klassOop _klass;
duke@435 313 GrowableArray<oop>* _result;
duke@435 314
duke@435 315 public:
duke@435 316 FindInstanceClosure(klassOop k, GrowableArray<oop>* result) : _klass(k), _result(result) {};
duke@435 317
duke@435 318 void do_object(oop obj) {
duke@435 319 if (obj->is_a(_klass)) {
duke@435 320 _result->append(obj);
duke@435 321 }
duke@435 322 }
duke@435 323 };
duke@435 324
duke@435 325 void HeapInspection::find_instances_at_safepoint(klassOop k, GrowableArray<oop>* result) {
duke@435 326 assert(SafepointSynchronize::is_at_safepoint(), "all threads are stopped");
jcoomes@1844 327 assert(Heap_lock->is_locked(), "should have the Heap_lock");
duke@435 328
duke@435 329 // Ensure that the heap is parsable
duke@435 330 Universe::heap()->ensure_parsability(false); // no need to retire TALBs
duke@435 331
duke@435 332 // Iterate over objects in the heap
duke@435 333 FindInstanceClosure fic(k, result);
jmasa@952 334 // If this operation encounters a bad object when using CMS,
jmasa@952 335 // consider using safe_object_iterate() which avoids perm gen
jmasa@952 336 // objects that may contain bad references.
duke@435 337 Universe::heap()->object_iterate(&fic);
duke@435 338 }

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