memBaseline.cpp 16.4 KB
Newer Older
Z
zgu 已提交
1
/*
2
 * Copyright (c) 2012, 2013, Oracle and/or its affiliates. All rights reserved.
Z
zgu 已提交
3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25
 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
 *
 * This code is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License version 2 only, as
 * published by the Free Software Foundation.
 *
 * This code is distributed in the hope that it will be useful, but WITHOUT
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
 * version 2 for more details (a copy is included in the LICENSE file that
 * accompanied this code).
 *
 * You should have received a copy of the GNU General Public License version
 * 2 along with this work; if not, write to the Free Software Foundation,
 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
 *
 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
 * or visit www.oracle.com if you need additional information or have any
 * questions.
 *
 */
#include "precompiled.hpp"
#include "memory/allocation.hpp"
26 27
#include "runtime/safepoint.hpp"
#include "runtime/thread.inline.hpp"
Z
zgu 已提交
28 29 30
#include "services/memBaseline.hpp"
#include "services/memTracker.hpp"

31

Z
zgu 已提交
32 33 34 35 36 37 38 39 40 41 42 43
MemType2Name MemBaseline::MemType2NameMap[NUMBER_OF_MEMORY_TYPE] = {
  {mtJavaHeap,   "Java Heap"},
  {mtClass,      "Class"},
  {mtThreadStack,"Thread Stack"},
  {mtThread,     "Thread"},
  {mtCode,       "Code"},
  {mtGC,         "GC"},
  {mtCompiler,   "Compiler"},
  {mtInternal,   "Internal"},
  {mtOther,      "Other"},
  {mtSymbol,     "Symbol"},
  {mtNMT,        "Memory Tracking"},
S
sla 已提交
44
  {mtTracing,    "Tracing"},
Z
zgu 已提交
45
  {mtChunk,      "Pooled Free Chunks"},
46
  {mtClassShared,"Shared spaces for classes"},
47
  {mtTest,       "Test"},
Z
zgu 已提交
48 49 50 51 52 53 54 55 56 57 58 59 60 61 62
  {mtNone,       "Unknown"}  // It can happen when type tagging records are lagging
                             // behind
};

MemBaseline::MemBaseline() {
  _baselined = false;

  for (int index = 0; index < NUMBER_OF_MEMORY_TYPE; index ++) {
    _malloc_data[index].set_type(MemType2NameMap[index]._flag);
    _vm_data[index].set_type(MemType2NameMap[index]._flag);
    _arena_data[index].set_type(MemType2NameMap[index]._flag);
  }

  _malloc_cs = NULL;
  _vm_cs = NULL;
63
  _vm_map = NULL;
Z
zgu 已提交
64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80

  _number_of_classes = 0;
  _number_of_threads = 0;
}


void MemBaseline::clear() {
  if (_malloc_cs != NULL) {
    delete _malloc_cs;
    _malloc_cs = NULL;
  }

  if (_vm_cs != NULL) {
    delete _vm_cs;
    _vm_cs = NULL;
  }

81 82 83 84 85
  if (_vm_map != NULL) {
    delete _vm_map;
    _vm_map = NULL;
  }

Z
zgu 已提交
86 87 88 89 90 91 92 93 94 95 96 97 98
  reset();
}


void MemBaseline::reset() {
  _baselined = false;
  _total_vm_reserved = 0;
  _total_vm_committed = 0;
  _total_malloced = 0;
  _number_of_classes = 0;

  if (_malloc_cs != NULL) _malloc_cs->clear();
  if (_vm_cs != NULL) _vm_cs->clear();
99
  if (_vm_map != NULL) _vm_map->clear();
Z
zgu 已提交
100 101 102 103 104 105 106 107 108

  for (int index = 0; index < NUMBER_OF_MEMORY_TYPE; index ++) {
    _malloc_data[index].clear();
    _vm_data[index].clear();
    _arena_data[index].clear();
  }
}

MemBaseline::~MemBaseline() {
109
  clear();
Z
zgu 已提交
110 111 112 113 114
}

// baseline malloc'd memory records, generate overall summary and summaries by
// memory types
bool MemBaseline::baseline_malloc_summary(const MemPointerArray* malloc_records) {
115 116
  MemPointerArrayIteratorImpl malloc_itr((MemPointerArray*)malloc_records);
  MemPointerRecord* malloc_ptr = (MemPointerRecord*)malloc_itr.current();
Z
zgu 已提交
117 118
  size_t used_arena_size = 0;
  int index;
119 120 121
  while (malloc_ptr != NULL) {
    index = flag2index(FLAGS_TO_MEMORY_TYPE(malloc_ptr->flags()));
    size_t size = malloc_ptr->size();
122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140
    if (malloc_ptr->is_arena_memory_record()) {
      // We do have anonymous arenas, they are either used as value objects,
      // which are embedded inside other objects, or used as stack objects.
      _arena_data[index].inc(size);
      used_arena_size += size;
    } else {
      _total_malloced += size;
      _malloc_data[index].inc(size);
      if (malloc_ptr->is_arena_record()) {
        // see if arena memory record present
        MemPointerRecord* next_malloc_ptr = (MemPointerRecordEx*)malloc_itr.peek_next();
        if (next_malloc_ptr->is_arena_memory_record()) {
          assert(next_malloc_ptr->is_memory_record_of_arena(malloc_ptr),
             "Arena records do not match");
          size = next_malloc_ptr->size();
          _arena_data[index].inc(size);
          used_arena_size += size;
          malloc_itr.next();
        }
Z
zgu 已提交
141 142
      }
    }
143
    malloc_ptr = (MemPointerRecordEx*)malloc_itr.next();
Z
zgu 已提交
144 145 146 147 148 149 150 151 152 153 154 155
  }

  // substract used arena size to get size of arena chunk in free list
  index = flag2index(mtChunk);
  _malloc_data[index].reduce(used_arena_size);
  // we really don't know how many chunks in free list, so just set to
  // 0
  _malloc_data[index].overwrite_counter(0);

  return true;
}

156 157 158 159
// check if there is a safepoint in progress, if so, block the thread
// for the safepoint
void MemBaseline::check_safepoint(JavaThread* thr) {
  if (SafepointSynchronize::is_synchronizing()) {
160 161
    // grab and drop the SR_lock to honor the safepoint protocol
    MutexLocker ml(thr->SR_lock());
162 163 164
  }
}

Z
zgu 已提交
165 166 167
// baseline mmap'd memory records, generate overall summary and summaries by
// memory types
bool MemBaseline::baseline_vm_summary(const MemPointerArray* vm_records) {
168 169
  MemPointerArrayIteratorImpl vm_itr((MemPointerArray*)vm_records);
  VMMemRegion* vm_ptr = (VMMemRegion*)vm_itr.current();
Z
zgu 已提交
170
  int index;
171 172 173
  while (vm_ptr != NULL) {
    if (vm_ptr->is_reserved_region()) {
      index = flag2index(FLAGS_TO_MEMORY_TYPE(vm_ptr->flags()));
Z
zgu 已提交
174
    // we use the number of thread stack to count threads
175
      if (IS_MEMORY_TYPE(vm_ptr->flags(), mtThreadStack)) {
Z
zgu 已提交
176 177
      _number_of_threads ++;
    }
178 179 180 181 182 183 184
      _total_vm_reserved += vm_ptr->size();
      _vm_data[index].inc(vm_ptr->size(), 0);
    } else {
      _total_vm_committed += vm_ptr->size();
      _vm_data[index].inc(0, vm_ptr->size());
    }
    vm_ptr = (VMMemRegion*)vm_itr.next();
Z
zgu 已提交
185 186 187 188 189 190 191 192 193
  }
  return true;
}

// baseline malloc'd memory by callsites, but only the callsites with memory allocation
// over 1KB are stored.
bool MemBaseline::baseline_malloc_details(const MemPointerArray* malloc_records) {
  assert(MemTracker::track_callsite(), "detail tracking is off");

194 195 196
  MemPointerArrayIteratorImpl malloc_itr(const_cast<MemPointerArray*>(malloc_records));
  MemPointerRecordEx* malloc_ptr = (MemPointerRecordEx*)malloc_itr.current();
  MallocCallsitePointer malloc_callsite;
Z
zgu 已提交
197

198
  // initailize malloc callsite array
Z
zgu 已提交
199 200 201
  if (_malloc_cs == NULL) {
    _malloc_cs = new (std::nothrow) MemPointerArrayImpl<MallocCallsitePointer>(64);
    // out of native memory
202
    if (_malloc_cs == NULL || _malloc_cs->out_of_memory()) {
Z
zgu 已提交
203 204 205 206 207 208
      return false;
    }
  } else {
    _malloc_cs->clear();
  }

209 210 211 212 213 214
  MemPointerArray* malloc_data = const_cast<MemPointerArray*>(malloc_records);

  // sort into callsite pc order. Details are aggregated by callsites
  malloc_data->sort((FN_SORT)malloc_sort_by_pc);
  bool ret = true;

Z
zgu 已提交
215
  // baseline memory that is totaled over 1 KB
216
  while (malloc_ptr != NULL) {
217
    if (!MemPointerRecord::is_arena_memory_record(malloc_ptr->flags())) {
Z
zgu 已提交
218
      // skip thread stacks
219 220 221 222 223 224
      if (!IS_MEMORY_TYPE(malloc_ptr->flags(), mtThreadStack)) {
        if (malloc_callsite.addr() != malloc_ptr->pc()) {
          if ((malloc_callsite.amount()/K) > 0) {
            if (!_malloc_cs->append(&malloc_callsite)) {
              ret = false;
              break;
Z
zgu 已提交
225 226
            }
          }
227
          malloc_callsite = MallocCallsitePointer(malloc_ptr->pc());
Z
zgu 已提交
228
        }
229
        malloc_callsite.inc(malloc_ptr->size());
Z
zgu 已提交
230 231
      }
    }
232
    malloc_ptr = (MemPointerRecordEx*)malloc_itr.next();
Z
zgu 已提交
233 234
  }

235 236 237 238 239 240 241 242 243 244
  // restore to address order. Snapshot malloc data is maintained in memory
  // address order.
  malloc_data->sort((FN_SORT)malloc_sort_by_addr);

  if (!ret) {
              return false;
            }
  // deal with last record
  if (malloc_callsite.addr() != 0 && (malloc_callsite.amount()/K) > 0) {
    if (!_malloc_cs->append(&malloc_callsite)) {
Z
zgu 已提交
245 246 247 248 249 250 251 252 253 254
      return false;
    }
  }
  return true;
}

// baseline mmap'd memory by callsites
bool MemBaseline::baseline_vm_details(const MemPointerArray* vm_records) {
  assert(MemTracker::track_callsite(), "detail tracking is off");

255 256 257 258 259 260 261 262 263 264 265 266 267 268
  VMCallsitePointer  vm_callsite;
  VMCallsitePointer* cur_callsite = NULL;
  MemPointerArrayIteratorImpl vm_itr((MemPointerArray*)vm_records);
  VMMemRegionEx* vm_ptr = (VMMemRegionEx*)vm_itr.current();

  // initialize virtual memory map array
  if (_vm_map == NULL) {
    _vm_map = new (std::nothrow) MemPointerArrayImpl<VMMemRegionEx>(vm_records->length());
   if (_vm_map == NULL || _vm_map->out_of_memory()) {
     return false;
   }
  } else {
    _vm_map->clear();
  }
Z
zgu 已提交
269

270
  // initialize virtual memory callsite array
Z
zgu 已提交
271 272
  if (_vm_cs == NULL) {
    _vm_cs = new (std::nothrow) MemPointerArrayImpl<VMCallsitePointer>(64);
273
    if (_vm_cs == NULL || _vm_cs->out_of_memory()) {
Z
zgu 已提交
274 275 276 277 278 279
      return false;
    }
  } else {
    _vm_cs->clear();
  }

280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296
  // consolidate virtual memory data
  VMMemRegionEx*     reserved_rec = NULL;
  VMMemRegionEx*     committed_rec = NULL;

  // vm_ptr is coming in increasing base address order
  while (vm_ptr != NULL) {
    if (vm_ptr->is_reserved_region()) {
      // consolidate reserved memory regions for virtual memory map.
      // The criteria for consolidation is:
      // 1. two adjacent reserved memory regions
      // 2. belong to the same memory type
      // 3. reserved from the same callsite
      if (reserved_rec == NULL ||
        reserved_rec->base() + reserved_rec->size() != vm_ptr->addr() ||
        FLAGS_TO_MEMORY_TYPE(reserved_rec->flags()) != FLAGS_TO_MEMORY_TYPE(vm_ptr->flags()) ||
        reserved_rec->pc() != vm_ptr->pc()) {
        if (!_vm_map->append(vm_ptr)) {
Z
zgu 已提交
297 298
        return false;
      }
299 300 301 302 303
        // inserted reserved region, we need the pointer to the element in virtual
        // memory map array.
        reserved_rec = (VMMemRegionEx*)_vm_map->at(_vm_map->length() - 1);
      } else {
        reserved_rec->expand_region(vm_ptr->addr(), vm_ptr->size());
Z
zgu 已提交
304
    }
305 306

      if (cur_callsite != NULL && !_vm_cs->append(cur_callsite)) {
Z
zgu 已提交
307 308
      return false;
    }
309 310 311 312 313 314 315 316 317 318 319 320 321
      vm_callsite = VMCallsitePointer(vm_ptr->pc());
      cur_callsite = &vm_callsite;
      vm_callsite.inc(vm_ptr->size(), 0);
    } else {
      // consolidate committed memory regions for virtual memory map
      // The criterial is:
      // 1. two adjacent committed memory regions
      // 2. committed from the same callsite
      if (committed_rec == NULL ||
        committed_rec->base() + committed_rec->size() != vm_ptr->addr() ||
        committed_rec->pc() != vm_ptr->pc()) {
        if (!_vm_map->append(vm_ptr)) {
          return false;
322
        }
323 324 325 326 327 328 329
        committed_rec = (VMMemRegionEx*)_vm_map->at(_vm_map->length() - 1);
    } else {
        committed_rec->expand_region(vm_ptr->addr(), vm_ptr->size());
      }
      vm_callsite.inc(0, vm_ptr->size());
    }
    vm_ptr = (VMMemRegionEx*)vm_itr.next();
Z
zgu 已提交
330
  }
331 332 333 334 335 336 337 338 339 340 341 342 343 344 345 346 347 348 349 350 351 352 353 354
  // deal with last record
  if (cur_callsite != NULL && !_vm_cs->append(cur_callsite)) {
    return false;
  }

  // sort it into callsite pc order. Details are aggregated by callsites
  _vm_cs->sort((FN_SORT)bl_vm_sort_by_pc);

  // walk the array to consolidate record by pc
  MemPointerArrayIteratorImpl itr(_vm_cs);
  VMCallsitePointer* callsite_rec = (VMCallsitePointer*)itr.current();
  VMCallsitePointer* next_rec = (VMCallsitePointer*)itr.next();
  while (next_rec != NULL) {
    assert(callsite_rec != NULL, "Sanity check");
    if (next_rec->addr() == callsite_rec->addr()) {
      callsite_rec->inc(next_rec->reserved_amount(), next_rec->committed_amount());
      itr.remove();
      next_rec = (VMCallsitePointer*)itr.current();
    } else {
      callsite_rec = next_rec;
      next_rec = (VMCallsitePointer*)itr.next();
    }
  }

Z
zgu 已提交
355 356 357 358 359
  return true;
}

// baseline a snapshot. If summary_only = false, memory usages aggregated by
// callsites are also baselined.
360 361
// The method call can be lengthy, especially when detail tracking info is
// requested. So the method checks for safepoint explicitly.
Z
zgu 已提交
362
bool MemBaseline::baseline(MemSnapshot& snapshot, bool summary_only) {
363 364 365
  Thread* THREAD = Thread::current();
  assert(THREAD->is_Java_thread(), "must be a JavaThread");
  MutexLocker snapshot_locker(snapshot._lock);
Z
zgu 已提交
366
  reset();
367 368 369 370 371
  _baselined = baseline_malloc_summary(snapshot._alloc_ptrs);
  if (_baselined) {
    check_safepoint((JavaThread*)THREAD);
    _baselined = baseline_vm_summary(snapshot._vm_ptrs);
  }
372
  _number_of_classes = snapshot.number_of_classes();
Z
zgu 已提交
373 374

  if (!summary_only && MemTracker::track_callsite() && _baselined) {
375 376 377 378 379 380
    check_safepoint((JavaThread*)THREAD);
    _baselined =  baseline_malloc_details(snapshot._alloc_ptrs);
    if (_baselined) {
      check_safepoint((JavaThread*)THREAD);
      _baselined =  baseline_vm_details(snapshot._vm_ptrs);
    }
Z
zgu 已提交
381 382 383 384 385 386 387 388 389 390 391 392 393 394 395 396 397 398 399 400 401
  }
  return _baselined;
}


int MemBaseline::flag2index(MEMFLAGS flag) const {
  for (int index = 0; index < NUMBER_OF_MEMORY_TYPE; index ++) {
    if (MemType2NameMap[index]._flag == flag) {
      return index;
    }
  }
  assert(false, "no type");
  return -1;
}

const char* MemBaseline::type2name(MEMFLAGS type) {
  for (int index = 0; index < NUMBER_OF_MEMORY_TYPE; index ++) {
    if (MemType2NameMap[index]._flag == type) {
      return MemType2NameMap[index]._name;
    }
  }
402
  assert(false, err_msg("bad type %x", type));
Z
zgu 已提交
403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444 445 446 447 448 449 450 451 452 453 454 455 456 457 458 459 460 461 462 463 464 465 466 467 468 469 470 471 472 473 474 475 476 477 478 479 480 481 482 483 484 485 486 487 488 489 490 491 492
  return NULL;
}


MemBaseline& MemBaseline::operator=(const MemBaseline& other) {
  _total_malloced = other._total_malloced;
  _total_vm_reserved = other._total_vm_reserved;
  _total_vm_committed = other._total_vm_committed;

  _baselined = other._baselined;
  _number_of_classes = other._number_of_classes;

  for (int index = 0; index < NUMBER_OF_MEMORY_TYPE; index ++) {
    _malloc_data[index] = other._malloc_data[index];
    _vm_data[index] = other._vm_data[index];
    _arena_data[index] = other._arena_data[index];
  }

  if (MemTracker::track_callsite()) {
    assert(_malloc_cs != NULL && _vm_cs != NULL, "out of memory");
    assert(other._malloc_cs != NULL && other._vm_cs != NULL,
           "not properly baselined");
    _malloc_cs->clear();
    _vm_cs->clear();
    int index;
    for (index = 0; index < other._malloc_cs->length(); index ++) {
      _malloc_cs->append(other._malloc_cs->at(index));
    }

    for (index = 0; index < other._vm_cs->length(); index ++) {
      _vm_cs->append(other._vm_cs->at(index));
    }
  }
  return *this;
}

/* compare functions for sorting */

// sort snapshot malloc'd records in callsite pc order
int MemBaseline::malloc_sort_by_pc(const void* p1, const void* p2) {
  assert(MemTracker::track_callsite(),"Just check");
  const MemPointerRecordEx* mp1 = (const MemPointerRecordEx*)p1;
  const MemPointerRecordEx* mp2 = (const MemPointerRecordEx*)p2;
  return UNSIGNED_COMPARE(mp1->pc(), mp2->pc());
}

// sort baselined malloc'd records in size order
int MemBaseline::bl_malloc_sort_by_size(const void* p1, const void* p2) {
  assert(MemTracker::is_on(), "Just check");
  const MallocCallsitePointer* mp1 = (const MallocCallsitePointer*)p1;
  const MallocCallsitePointer* mp2 = (const MallocCallsitePointer*)p2;
  return UNSIGNED_COMPARE(mp2->amount(), mp1->amount());
}

// sort baselined malloc'd records in callsite pc order
int MemBaseline::bl_malloc_sort_by_pc(const void* p1, const void* p2) {
  assert(MemTracker::is_on(), "Just check");
  const MallocCallsitePointer* mp1 = (const MallocCallsitePointer*)p1;
  const MallocCallsitePointer* mp2 = (const MallocCallsitePointer*)p2;
  return UNSIGNED_COMPARE(mp1->addr(), mp2->addr());
}


// sort baselined mmap'd records in size (reserved size) order
int MemBaseline::bl_vm_sort_by_size(const void* p1, const void* p2) {
  assert(MemTracker::is_on(), "Just check");
  const VMCallsitePointer* mp1 = (const VMCallsitePointer*)p1;
  const VMCallsitePointer* mp2 = (const VMCallsitePointer*)p2;
  return UNSIGNED_COMPARE(mp2->reserved_amount(), mp1->reserved_amount());
}

// sort baselined mmap'd records in callsite pc order
int MemBaseline::bl_vm_sort_by_pc(const void* p1, const void* p2) {
  assert(MemTracker::is_on(), "Just check");
  const VMCallsitePointer* mp1 = (const VMCallsitePointer*)p1;
  const VMCallsitePointer* mp2 = (const VMCallsitePointer*)p2;
  return UNSIGNED_COMPARE(mp1->addr(), mp2->addr());
}


// sort snapshot malloc'd records in memory block address order
int MemBaseline::malloc_sort_by_addr(const void* p1, const void* p2) {
  assert(MemTracker::is_on(), "Just check");
  const MemPointerRecord* mp1 = (const MemPointerRecord*)p1;
  const MemPointerRecord* mp2 = (const MemPointerRecord*)p2;
  int delta = UNSIGNED_COMPARE(mp1->addr(), mp2->addr());
  assert(delta != 0, "dup pointer");
  return delta;
}