parNewGeneration.cpp 61.2 KB
Newer Older
D
duke 已提交
1
/*
S
sla 已提交
2
 * Copyright (c) 2001, 2013, Oracle and/or its affiliates. All rights reserved.
D
duke 已提交
3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18
 * 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.
 *
19 20 21
 * 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.
D
duke 已提交
22 23 24
 *
 */

25 26 27 28 29 30
#include "precompiled.hpp"
#include "gc_implementation/concurrentMarkSweep/concurrentMarkSweepGeneration.hpp"
#include "gc_implementation/parNew/parNewGeneration.hpp"
#include "gc_implementation/parNew/parOopClosures.inline.hpp"
#include "gc_implementation/shared/adaptiveSizePolicy.hpp"
#include "gc_implementation/shared/ageTable.hpp"
31
#include "gc_implementation/shared/parGCAllocBuffer.hpp"
S
sla 已提交
32 33 34 35 36
#include "gc_implementation/shared/gcHeapSummary.hpp"
#include "gc_implementation/shared/gcTimer.hpp"
#include "gc_implementation/shared/gcTrace.hpp"
#include "gc_implementation/shared/gcTraceTime.hpp"
#include "gc_implementation/shared/copyFailedInfo.hpp"
37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56
#include "gc_implementation/shared/spaceDecorator.hpp"
#include "memory/defNewGeneration.inline.hpp"
#include "memory/genCollectedHeap.hpp"
#include "memory/genOopClosures.inline.hpp"
#include "memory/generation.hpp"
#include "memory/generation.inline.hpp"
#include "memory/referencePolicy.hpp"
#include "memory/resourceArea.hpp"
#include "memory/sharedHeap.hpp"
#include "memory/space.hpp"
#include "oops/objArrayOop.hpp"
#include "oops/oop.inline.hpp"
#include "oops/oop.pcgc.inline.hpp"
#include "runtime/handles.hpp"
#include "runtime/handles.inline.hpp"
#include "runtime/java.hpp"
#include "runtime/thread.hpp"
#include "utilities/copy.hpp"
#include "utilities/globalDefinitions.hpp"
#include "utilities/workgroup.hpp"
D
duke 已提交
57 58 59 60 61 62 63 64 65 66

#ifdef _MSC_VER
#pragma warning( push )
#pragma warning( disable:4355 ) // 'this' : used in base member initializer list
#endif
ParScanThreadState::ParScanThreadState(Space* to_space_,
                                       ParNewGeneration* gen_,
                                       Generation* old_gen_,
                                       int thread_num_,
                                       ObjToScanQueueSet* work_queue_set_,
Z
zgu 已提交
67
                                       Stack<oop, mtGC>* overflow_stacks_,
D
duke 已提交
68 69
                                       size_t desired_plab_sz_,
                                       ParallelTaskTerminator& term_) :
70
  _to_space(to_space_), _old_gen(old_gen_), _young_gen(gen_), _thread_num(thread_num_),
D
duke 已提交
71
  _work_queue(work_queue_set_->queue(thread_num_)), _to_space_full(false),
72
  _overflow_stack(overflow_stacks_ ? overflow_stacks_ + thread_num_ : NULL),
D
duke 已提交
73 74 75 76 77 78 79 80 81 82 83 84
  _ageTable(false), // false ==> not the global age table, no perf data.
  _to_space_alloc_buffer(desired_plab_sz_),
  _to_space_closure(gen_, this), _old_gen_closure(gen_, this),
  _to_space_root_closure(gen_, this), _old_gen_root_closure(gen_, this),
  _older_gen_closure(gen_, this),
  _evacuate_followers(this, &_to_space_closure, &_old_gen_closure,
                      &_to_space_root_closure, gen_, &_old_gen_root_closure,
                      work_queue_set_, &term_),
  _is_alive_closure(gen_), _scan_weak_ref_closure(gen_, this),
  _keep_alive_closure(&_scan_weak_ref_closure),
  _strong_roots_time(0.0), _term_time(0.0)
{
85 86 87 88 89 90
  #if TASKQUEUE_STATS
  _term_attempts = 0;
  _overflow_refills = 0;
  _overflow_refill_objs = 0;
  #endif // TASKQUEUE_STATS

D
duke 已提交
91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120
  _survivor_chunk_array =
    (ChunkArray*) old_gen()->get_data_recorder(thread_num());
  _hash_seed = 17;  // Might want to take time-based random value.
  _start = os::elapsedTime();
  _old_gen_closure.set_generation(old_gen_);
  _old_gen_root_closure.set_generation(old_gen_);
}
#ifdef _MSC_VER
#pragma warning( pop )
#endif

void ParScanThreadState::record_survivor_plab(HeapWord* plab_start,
                                              size_t plab_word_size) {
  ChunkArray* sca = survivor_chunk_array();
  if (sca != NULL) {
    // A non-null SCA implies that we want the PLAB data recorded.
    sca->record_sample(plab_start, plab_word_size);
  }
}

bool ParScanThreadState::should_be_partially_scanned(oop new_obj, oop old_obj) const {
  return new_obj->is_objArray() &&
         arrayOop(new_obj)->length() > ParGCArrayScanChunk &&
         new_obj != old_obj;
}

void ParScanThreadState::scan_partial_array_and_push_remainder(oop old) {
  assert(old->is_objArray(), "must be obj array");
  assert(old->is_forwarded(), "must be forwarded");
  assert(Universe::heap()->is_in_reserved(old), "must be in heap.");
121
  assert(!old_gen()->is_in(old), "must be in young generation.");
D
duke 已提交
122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142

  objArrayOop obj = objArrayOop(old->forwardee());
  // Process ParGCArrayScanChunk elements now
  // and push the remainder back onto queue
  int start     = arrayOop(old)->length();
  int end       = obj->length();
  int remainder = end - start;
  assert(start <= end, "just checking");
  if (remainder > 2 * ParGCArrayScanChunk) {
    // Test above combines last partial chunk with a full chunk
    end = start + ParGCArrayScanChunk;
    arrayOop(old)->set_length(end);
    // Push remainder.
    bool ok = work_queue()->push(old);
    assert(ok, "just popped, push must be okay");
  } else {
    // Restore length so that it can be used if there
    // is a promotion failure and forwarding pointers
    // must be removed.
    arrayOop(old)->set_length(end);
  }
143

D
duke 已提交
144
  // process our set of indices (include header in first chunk)
145
  // should make sure end is even (aligned to HeapWord in case of compressed oops)
D
duke 已提交
146 147
  if ((HeapWord *)obj < young_old_boundary()) {
    // object is in to_space
148
    obj->oop_iterate_range(&_to_space_closure, start, end);
D
duke 已提交
149 150
  } else {
    // object is in old generation
151
    obj->oop_iterate_range(&_old_gen_closure, start, end);
D
duke 已提交
152 153 154 155 156 157
  }
}


void ParScanThreadState::trim_queues(int max_size) {
  ObjToScanQueue* queue = work_queue();
158 159 160 161 162 163 164 165 166 167 168 169 170
  do {
    while (queue->size() > (juint)max_size) {
      oop obj_to_scan;
      if (queue->pop_local(obj_to_scan)) {
        if ((HeapWord *)obj_to_scan < young_old_boundary()) {
          if (obj_to_scan->is_objArray() &&
              obj_to_scan->is_forwarded() &&
              obj_to_scan->forwardee() != obj_to_scan) {
            scan_partial_array_and_push_remainder(obj_to_scan);
          } else {
            // object is in to_space
            obj_to_scan->oop_iterate(&_to_space_closure);
          }
D
duke 已提交
171
        } else {
172 173
          // object is in old generation
          obj_to_scan->oop_iterate(&_old_gen_closure);
D
duke 已提交
174 175 176
        }
      }
    }
177 178 179 180 181 182 183 184 185 186 187
    // For the  case of compressed oops, we have a private, non-shared
    // overflow stack, so we eagerly drain it so as to more evenly
    // distribute load early. Note: this may be good to do in
    // general rather than delay for the final stealing phase.
    // If applicable, we'll transfer a set of objects over to our
    // work queue, allowing them to be stolen and draining our
    // private overflow stack.
  } while (ParGCTrimOverflow && young_gen()->take_from_overflow_list(this));
}

bool ParScanThreadState::take_from_overflow_stack() {
188
  assert(ParGCUseLocalOverflow, "Else should not call");
189 190
  assert(young_gen()->overflow_list() == NULL, "Error");
  ObjToScanQueue* queue = work_queue();
Z
zgu 已提交
191
  Stack<oop, mtGC>* const of_stack = overflow_stack();
192 193 194 195 196
  const size_t num_overflow_elems = of_stack->size();
  const size_t space_available = queue->max_elems() - queue->size();
  const size_t num_take_elems = MIN3(space_available / 4,
                                     ParGCDesiredObjsFromOverflowList,
                                     num_overflow_elems);
197 198 199 200 201 202 203 204 205 206 207 208 209 210
  // Transfer the most recent num_take_elems from the overflow
  // stack to our work queue.
  for (size_t i = 0; i != num_take_elems; i++) {
    oop cur = of_stack->pop();
    oop obj_to_push = cur->forwardee();
    assert(Universe::heap()->is_in_reserved(cur), "Should be in heap");
    assert(!old_gen()->is_in_reserved(cur), "Should be in young gen");
    assert(Universe::heap()->is_in_reserved(obj_to_push), "Should be in heap");
    if (should_be_partially_scanned(obj_to_push, cur)) {
      assert(arrayOop(cur)->length() == 0, "entire array remaining to be scanned");
      obj_to_push = cur;
    }
    bool ok = queue->push(obj_to_push);
    assert(ok, "Should have succeeded");
D
duke 已提交
211
  }
212 213 214 215 216
  assert(young_gen()->overflow_list() == NULL, "Error");
  return num_take_elems > 0;  // was something transferred?
}

void ParScanThreadState::push_on_overflow_stack(oop p) {
217
  assert(ParGCUseLocalOverflow, "Else should not call");
218 219
  overflow_stack()->push(p);
  assert(young_gen()->overflow_list() == NULL, "Error");
D
duke 已提交
220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281
}

HeapWord* ParScanThreadState::alloc_in_to_space_slow(size_t word_sz) {

  // Otherwise, if the object is small enough, try to reallocate the
  // buffer.
  HeapWord* obj = NULL;
  if (!_to_space_full) {
    ParGCAllocBuffer* const plab = to_space_alloc_buffer();
    Space*            const sp   = to_space();
    if (word_sz * 100 <
        ParallelGCBufferWastePct * plab->word_sz()) {
      // Is small enough; abandon this buffer and start a new one.
      plab->retire(false, false);
      size_t buf_size = plab->word_sz();
      HeapWord* buf_space = sp->par_allocate(buf_size);
      if (buf_space == NULL) {
        const size_t min_bytes =
          ParGCAllocBuffer::min_size() << LogHeapWordSize;
        size_t free_bytes = sp->free();
        while(buf_space == NULL && free_bytes >= min_bytes) {
          buf_size = free_bytes >> LogHeapWordSize;
          assert(buf_size == (size_t)align_object_size(buf_size),
                 "Invariant");
          buf_space  = sp->par_allocate(buf_size);
          free_bytes = sp->free();
        }
      }
      if (buf_space != NULL) {
        plab->set_word_size(buf_size);
        plab->set_buf(buf_space);
        record_survivor_plab(buf_space, buf_size);
        obj = plab->allocate(word_sz);
        // Note that we cannot compare buf_size < word_sz below
        // because of AlignmentReserve (see ParGCAllocBuffer::allocate()).
        assert(obj != NULL || plab->words_remaining() < word_sz,
               "Else should have been able to allocate");
        // It's conceivable that we may be able to use the
        // buffer we just grabbed for subsequent small requests
        // even if not for this one.
      } else {
        // We're used up.
        _to_space_full = true;
      }

    } else {
      // Too large; allocate the object individually.
      obj = sp->par_allocate(word_sz);
    }
  }
  return obj;
}


void ParScanThreadState::undo_alloc_in_to_space(HeapWord* obj,
                                                size_t word_sz) {
  // Is the alloc in the current alloc buffer?
  if (to_space_alloc_buffer()->contains(obj)) {
    assert(to_space_alloc_buffer()->contains(obj + word_sz - 1),
           "Should contain whole object.");
    to_space_alloc_buffer()->undo_allocation(obj, word_sz);
  } else {
282
    CollectedHeap::fill_with_object(obj, word_sz);
D
duke 已提交
283 284 285
  }
}

S
sla 已提交
286 287 288 289
void ParScanThreadState::print_promotion_failure_size() {
  if (_promotion_failed_info.has_failed() && PrintPromotionFailure) {
    gclog_or_tty->print(" (%d: promotion failure size = " SIZE_FORMAT ") ",
                        _thread_num, _promotion_failed_info.first_size());
290 291 292
  }
}

D
duke 已提交
293 294 295 296 297 298 299 300
class ParScanThreadStateSet: private ResourceArray {
public:
  // Initializes states for the specified number of threads;
  ParScanThreadStateSet(int                     num_threads,
                        Space&                  to_space,
                        ParNewGeneration&       gen,
                        Generation&             old_gen,
                        ObjToScanQueueSet&      queue_set,
Z
zgu 已提交
301
                        Stack<oop, mtGC>*       overflow_stacks_,
D
duke 已提交
302 303
                        size_t                  desired_plab_sz,
                        ParallelTaskTerminator& term);
304 305 306

  ~ParScanThreadStateSet() { TASKQUEUE_STATS_ONLY(reset_stats()); }

307
  inline ParScanThreadState& thread_state(int i);
308

S
sla 已提交
309
  void trace_promotion_failed(YoungGCTracer& gc_tracer);
310
  void reset(int active_workers, bool promotion_failed);
D
duke 已提交
311
  void flush();
312 313 314 315 316 317 318 319 320 321 322

  #if TASKQUEUE_STATS
  static void
    print_termination_stats_hdr(outputStream* const st = gclog_or_tty);
  void print_termination_stats(outputStream* const st = gclog_or_tty);
  static void
    print_taskqueue_stats_hdr(outputStream* const st = gclog_or_tty);
  void print_taskqueue_stats(outputStream* const st = gclog_or_tty);
  void reset_stats();
  #endif // TASKQUEUE_STATS

D
duke 已提交
323 324 325 326
private:
  ParallelTaskTerminator& _term;
  ParNewGeneration&       _gen;
  Generation&             _next_gen;
327 328 329
 public:
  bool is_valid(int id) const { return id < length(); }
  ParallelTaskTerminator* terminator() { return &_term; }
D
duke 已提交
330 331 332 333 334 335
};


ParScanThreadStateSet::ParScanThreadStateSet(
  int num_threads, Space& to_space, ParNewGeneration& gen,
  Generation& old_gen, ObjToScanQueueSet& queue_set,
Z
zgu 已提交
336
  Stack<oop, mtGC>* overflow_stacks,
D
duke 已提交
337 338
  size_t desired_plab_sz, ParallelTaskTerminator& term)
  : ResourceArray(sizeof(ParScanThreadState), num_threads),
339
    _gen(gen), _next_gen(old_gen), _term(term)
D
duke 已提交
340 341
{
  assert(num_threads > 0, "sanity check!");
342 343
  assert(ParGCUseLocalOverflow == (overflow_stacks != NULL),
         "overflow_stack allocation mismatch");
D
duke 已提交
344 345 346 347
  // Initialize states.
  for (int i = 0; i < num_threads; ++i) {
    new ((ParScanThreadState*)_data + i)
        ParScanThreadState(&to_space, &gen, &old_gen, i, &queue_set,
348
                           overflow_stacks, desired_plab_sz, term);
D
duke 已提交
349 350 351
  }
}

352
inline ParScanThreadState& ParScanThreadStateSet::thread_state(int i)
D
duke 已提交
353 354 355 356 357
{
  assert(i >= 0 && i < length(), "sanity check!");
  return ((ParScanThreadState*)_data)[i];
}

S
sla 已提交
358 359 360 361 362 363 364 365
void ParScanThreadStateSet::trace_promotion_failed(YoungGCTracer& gc_tracer) {
  for (int i = 0; i < length(); ++i) {
    if (thread_state(i).promotion_failed()) {
      gc_tracer.report_promotion_failed(thread_state(i).promotion_failed_info());
      thread_state(i).promotion_failed_info().reset();
    }
  }
}
D
duke 已提交
366

367
void ParScanThreadStateSet::reset(int active_threads, bool promotion_failed)
D
duke 已提交
368
{
369
  _term.reset_for_reuse(active_threads);
370 371
  if (promotion_failed) {
    for (int i = 0; i < length(); ++i) {
S
sla 已提交
372
      thread_state(i).print_promotion_failure_size();
373 374
    }
  }
D
duke 已提交
375 376
}

377 378 379 380 381 382 383 384 385 386 387 388 389 390 391 392 393 394 395 396 397 398 399 400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444 445 446 447 448 449 450 451 452
#if TASKQUEUE_STATS
void
ParScanThreadState::reset_stats()
{
  taskqueue_stats().reset();
  _term_attempts = 0;
  _overflow_refills = 0;
  _overflow_refill_objs = 0;
}

void ParScanThreadStateSet::reset_stats()
{
  for (int i = 0; i < length(); ++i) {
    thread_state(i).reset_stats();
  }
}

void
ParScanThreadStateSet::print_termination_stats_hdr(outputStream* const st)
{
  st->print_raw_cr("GC Termination Stats");
  st->print_raw_cr("     elapsed  --strong roots-- "
                   "-------termination-------");
  st->print_raw_cr("thr     ms        ms       %   "
                   "    ms       %   attempts");
  st->print_raw_cr("--- --------- --------- ------ "
                   "--------- ------ --------");
}

void ParScanThreadStateSet::print_termination_stats(outputStream* const st)
{
  print_termination_stats_hdr(st);

  for (int i = 0; i < length(); ++i) {
    const ParScanThreadState & pss = thread_state(i);
    const double elapsed_ms = pss.elapsed_time() * 1000.0;
    const double s_roots_ms = pss.strong_roots_time() * 1000.0;
    const double term_ms = pss.term_time() * 1000.0;
    st->print_cr("%3d %9.2f %9.2f %6.2f "
                 "%9.2f %6.2f " SIZE_FORMAT_W(8),
                 i, elapsed_ms, s_roots_ms, s_roots_ms * 100 / elapsed_ms,
                 term_ms, term_ms * 100 / elapsed_ms, pss.term_attempts());
  }
}

// Print stats related to work queue activity.
void ParScanThreadStateSet::print_taskqueue_stats_hdr(outputStream* const st)
{
  st->print_raw_cr("GC Task Stats");
  st->print_raw("thr "); TaskQueueStats::print_header(1, st); st->cr();
  st->print_raw("--- "); TaskQueueStats::print_header(2, st); st->cr();
}

void ParScanThreadStateSet::print_taskqueue_stats(outputStream* const st)
{
  print_taskqueue_stats_hdr(st);

  TaskQueueStats totals;
  for (int i = 0; i < length(); ++i) {
    const ParScanThreadState & pss = thread_state(i);
    const TaskQueueStats & stats = pss.taskqueue_stats();
    st->print("%3d ", i); stats.print(st); st->cr();
    totals += stats;

    if (pss.overflow_refills() > 0) {
      st->print_cr("    " SIZE_FORMAT_W(10) " overflow refills    "
                   SIZE_FORMAT_W(10) " overflow objects",
                   pss.overflow_refills(), pss.overflow_refill_objs());
    }
  }
  st->print("tot "); totals.print(st); st->cr();

  DEBUG_ONLY(totals.verify());
}
#endif // TASKQUEUE_STATS

D
duke 已提交
453 454
void ParScanThreadStateSet::flush()
{
455 456 457 458
  // Work in this loop should be kept as lightweight as
  // possible since this might otherwise become a bottleneck
  // to scaling. Should we add heavy-weight work into this
  // loop, consider parallelizing the loop into the worker threads.
D
duke 已提交
459
  for (int i = 0; i < length(); ++i) {
460
    ParScanThreadState& par_scan_state = thread_state(i);
D
duke 已提交
461 462 463 464 465

    // Flush stats related to To-space PLAB activity and
    // retire the last buffer.
    par_scan_state.to_space_alloc_buffer()->
      flush_stats_and_retire(_gen.plab_stats(),
466 467
                             true /* end_of_gc */,
                             false /* retain */);
D
duke 已提交
468 469 470 471 472 473 474 475 476 477

    // Every thread has its own age table.  We need to merge
    // them all into one.
    ageTable *local_table = par_scan_state.age_table();
    _gen.age_table()->merge(local_table);

    // Inform old gen that we're done.
    _next_gen.par_promote_alloc_done(i);
    _next_gen.par_oop_since_save_marks_iterate_done(i);
  }
478

479 480 481 482 483 484 485 486
  if (UseConcMarkSweepGC && ParallelGCThreads > 0) {
    // We need to call this even when ResizeOldPLAB is disabled
    // so as to avoid breaking some asserts. While we may be able
    // to avoid this by reorganizing the code a bit, I am loathe
    // to do that unless we find cases where ergo leads to bad
    // performance.
    CFLS_LAB::compute_desired_plab_size();
  }
D
duke 已提交
487 488 489 490
}

ParScanClosure::ParScanClosure(ParNewGeneration* g,
                               ParScanThreadState* par_scan_state) :
491
  OopsInKlassOrGenClosure(g), _par_scan_state(par_scan_state), _g(g)
D
duke 已提交
492 493 494 495 496
{
  assert(_g->level() == 0, "Optimized for youngest generation");
  _boundary = _g->reserved().end();
}

497 498 499 500 501 502 503 504 505 506 507 508
void ParScanWithBarrierClosure::do_oop(oop* p)       { ParScanClosure::do_oop_work(p, true, false); }
void ParScanWithBarrierClosure::do_oop(narrowOop* p) { ParScanClosure::do_oop_work(p, true, false); }

void ParScanWithoutBarrierClosure::do_oop(oop* p)       { ParScanClosure::do_oop_work(p, false, false); }
void ParScanWithoutBarrierClosure::do_oop(narrowOop* p) { ParScanClosure::do_oop_work(p, false, false); }

void ParRootScanWithBarrierTwoGensClosure::do_oop(oop* p)       { ParScanClosure::do_oop_work(p, true, true); }
void ParRootScanWithBarrierTwoGensClosure::do_oop(narrowOop* p) { ParScanClosure::do_oop_work(p, true, true); }

void ParRootScanWithoutBarrierClosure::do_oop(oop* p)       { ParScanClosure::do_oop_work(p, false, true); }
void ParRootScanWithoutBarrierClosure::do_oop(narrowOop* p) { ParScanClosure::do_oop_work(p, false, true); }

D
duke 已提交
509 510 511
ParScanWeakRefClosure::ParScanWeakRefClosure(ParNewGeneration* g,
                                             ParScanThreadState* par_scan_state)
  : ScanWeakRefClosure(g), _par_scan_state(par_scan_state)
512 513 514 515
{}

void ParScanWeakRefClosure::do_oop(oop* p)       { ParScanWeakRefClosure::do_oop_work(p); }
void ParScanWeakRefClosure::do_oop(narrowOop* p) { ParScanWeakRefClosure::do_oop_work(p); }
D
duke 已提交
516 517 518 519 520 521 522 523 524 525 526 527 528 529 530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571

#ifdef WIN32
#pragma warning(disable: 4786) /* identifier was truncated to '255' characters in the browser information */
#endif

ParEvacuateFollowersClosure::ParEvacuateFollowersClosure(
    ParScanThreadState* par_scan_state_,
    ParScanWithoutBarrierClosure* to_space_closure_,
    ParScanWithBarrierClosure* old_gen_closure_,
    ParRootScanWithoutBarrierClosure* to_space_root_closure_,
    ParNewGeneration* par_gen_,
    ParRootScanWithBarrierTwoGensClosure* old_gen_root_closure_,
    ObjToScanQueueSet* task_queues_,
    ParallelTaskTerminator* terminator_) :

    _par_scan_state(par_scan_state_),
    _to_space_closure(to_space_closure_),
    _old_gen_closure(old_gen_closure_),
    _to_space_root_closure(to_space_root_closure_),
    _old_gen_root_closure(old_gen_root_closure_),
    _par_gen(par_gen_),
    _task_queues(task_queues_),
    _terminator(terminator_)
{}

void ParEvacuateFollowersClosure::do_void() {
  ObjToScanQueue* work_q = par_scan_state()->work_queue();

  while (true) {

    // Scan to-space and old-gen objs until we run out of both.
    oop obj_to_scan;
    par_scan_state()->trim_queues(0);

    // We have no local work, attempt to steal from other threads.

    // attempt to steal work from promoted.
    if (task_queues()->steal(par_scan_state()->thread_num(),
                             par_scan_state()->hash_seed(),
                             obj_to_scan)) {
      bool res = work_q->push(obj_to_scan);
      assert(res, "Empty queue should have room for a push.");

      //   if successful, goto Start.
      continue;

      // try global overflow list.
    } else if (par_gen()->take_from_overflow_list(par_scan_state())) {
      continue;
    }

    // Otherwise, offer termination.
    par_scan_state()->start_term_time();
    if (terminator()->offer_termination()) break;
    par_scan_state()->end_term_time();
  }
572 573
  assert(par_gen()->_overflow_list == NULL && par_gen()->_num_par_pushes == 0,
         "Broken overflow list?");
D
duke 已提交
574 575 576 577 578 579 580 581 582 583 584 585
  // Finish the last termination pause.
  par_scan_state()->end_term_time();
}

ParNewGenTask::ParNewGenTask(ParNewGeneration* gen, Generation* next_gen,
                HeapWord* young_old_boundary, ParScanThreadStateSet* state_set) :
    AbstractGangTask("ParNewGeneration collection"),
    _gen(gen), _next_gen(next_gen),
    _young_old_boundary(young_old_boundary),
    _state_set(state_set)
  {}

586 587 588 589 590 591 592 593 594 595
// Reset the terminator for the given number of
// active threads.
void ParNewGenTask::set_for_termination(int active_workers) {
  _state_set->reset(active_workers, _gen->promotion_failed());
  // Should the heap be passed in?  There's only 1 for now so
  // grab it instead.
  GenCollectedHeap* gch = GenCollectedHeap::heap();
  gch->set_n_termination(active_workers);
}

596
void ParNewGenTask::work(uint worker_id) {
D
duke 已提交
597 598 599 600 601 602
  GenCollectedHeap* gch = GenCollectedHeap::heap();
  // Since this is being done in a separate thread, need new resource
  // and handle marks.
  ResourceMark rm;
  HandleMark hm;
  // We would need multiple old-gen queues otherwise.
603
  assert(gch->n_gens() == 2, "Par young collection currently only works with one older gen.");
D
duke 已提交
604 605 606

  Generation* old_gen = gch->next_gen(_gen);

607 608
  ParScanThreadState& par_scan_state = _state_set->thread_state(worker_id);
  assert(_state_set->is_valid(worker_id), "Should not have been called");
609

D
duke 已提交
610 611
  par_scan_state.set_young_old_boundary(_young_old_boundary);

612 613 614 615 616
  KlassScanClosure klass_scan_closure(&par_scan_state.to_space_root_closure(),
                                      gch->rem_set()->klass_rem_set());

  int so = SharedHeap::SO_AllClasses | SharedHeap::SO_Strings | SharedHeap::SO_CodeCache;

D
duke 已提交
617 618
  par_scan_state.start_strong_roots();
  gch->gen_process_strong_roots(_gen->level(),
619 620 621
                                true,  // Process younger gens, if any,
                                       // as strong roots.
                                false, // no scope; this is parallel code
622 623
                                true,  // is scavenging
                                SharedHeap::ScanningOption(so),
624 625
                                &par_scan_state.to_space_root_closure(),
                                true,   // walk *all* scavengable nmethods
626 627
                                &par_scan_state.older_gen_closure(),
                                &klass_scan_closure);
D
duke 已提交
628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644
  par_scan_state.end_strong_roots();

  // "evacuate followers".
  par_scan_state.evacuate_followers_closure().do_void();
}

#ifdef _MSC_VER
#pragma warning( push )
#pragma warning( disable:4355 ) // 'this' : used in base member initializer list
#endif
ParNewGeneration::
ParNewGeneration(ReservedSpace rs, size_t initial_byte_size, int level)
  : DefNewGeneration(rs, initial_byte_size, level, "PCopy"),
  _overflow_list(NULL),
  _is_alive_closure(this),
  _plab_stats(YoungPLABSize, PLABWeight)
{
645 646
  NOT_PRODUCT(_overflow_counter = ParGCWorkQueueOverflowInterval;)
  NOT_PRODUCT(_num_par_pushes = 0;)
D
duke 已提交
647 648 649 650
  _task_queues = new ObjToScanQueueSet(ParallelGCThreads);
  guarantee(_task_queues != NULL, "task_queues allocation failure.");

  for (uint i1 = 0; i1 < ParallelGCThreads; i1++) {
J
jcoomes 已提交
651 652 653
    ObjToScanQueue *q = new ObjToScanQueue();
    guarantee(q != NULL, "work_queue Allocation failure.");
    _task_queues->register_queue(i1, q);
D
duke 已提交
654 655 656 657 658
  }

  for (uint i2 = 0; i2 < ParallelGCThreads; i2++)
    _task_queues->queue(i2)->initialize();

659 660
  _overflow_stacks = NULL;
  if (ParGCUseLocalOverflow) {
Z
zgu 已提交
661 662 663 664 665 666

    // typedef to workaround NEW_C_HEAP_ARRAY macro, which can not deal
    // with ','
    typedef Stack<oop, mtGC> GCOopStack;

    _overflow_stacks = NEW_C_HEAP_ARRAY(GCOopStack, ParallelGCThreads, mtGC);
667
    for (size_t i = 0; i < ParallelGCThreads; ++i) {
Z
zgu 已提交
668
      new (_overflow_stacks + i) Stack<oop, mtGC>();
669 670 671
    }
  }

D
duke 已提交
672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689
  if (UsePerfData) {
    EXCEPTION_MARK;
    ResourceMark rm;

    const char* cname =
         PerfDataManager::counter_name(_gen_counters->name_space(), "threads");
    PerfDataManager::create_constant(SUN_GC, cname, PerfData::U_None,
                                     ParallelGCThreads, CHECK);
  }
}
#ifdef _MSC_VER
#pragma warning( pop )
#endif

// ParNewGeneration::
ParKeepAliveClosure::ParKeepAliveClosure(ParScanWeakRefClosure* cl) :
  DefNewGeneration::KeepAliveClosure(cl), _par_cl(cl) {}

690 691 692 693 694 695 696 697 698 699 700
template <class T>
void /*ParNewGeneration::*/ParKeepAliveClosure::do_oop_work(T* p) {
#ifdef ASSERT
  {
    assert(!oopDesc::is_null(*p), "expected non-null ref");
    oop obj = oopDesc::load_decode_heap_oop_not_null(p);
    // We never expect to see a null reference being processed
    // as a weak reference.
    assert(obj->is_oop(), "expected an oop while scanning weak refs");
  }
#endif // ASSERT
D
duke 已提交
701 702 703 704

  _par_cl->do_oop_nv(p);

  if (Universe::heap()->is_in_reserved(p)) {
705 706
    oop obj = oopDesc::load_decode_heap_oop_not_null(p);
    _rs->write_ref_field_gc_par(p, obj);
D
duke 已提交
707 708 709
  }
}

710 711 712
void /*ParNewGeneration::*/ParKeepAliveClosure::do_oop(oop* p)       { ParKeepAliveClosure::do_oop_work(p); }
void /*ParNewGeneration::*/ParKeepAliveClosure::do_oop(narrowOop* p) { ParKeepAliveClosure::do_oop_work(p); }

D
duke 已提交
713 714 715 716
// ParNewGeneration::
KeepAliveClosure::KeepAliveClosure(ScanWeakRefClosure* cl) :
  DefNewGeneration::KeepAliveClosure(cl) {}

717 718 719 720 721 722 723 724 725 726 727
template <class T>
void /*ParNewGeneration::*/KeepAliveClosure::do_oop_work(T* p) {
#ifdef ASSERT
  {
    assert(!oopDesc::is_null(*p), "expected non-null ref");
    oop obj = oopDesc::load_decode_heap_oop_not_null(p);
    // We never expect to see a null reference being processed
    // as a weak reference.
    assert(obj->is_oop(), "expected an oop while scanning weak refs");
  }
#endif // ASSERT
D
duke 已提交
728 729 730 731

  _cl->do_oop_nv(p);

  if (Universe::heap()->is_in_reserved(p)) {
732 733
    oop obj = oopDesc::load_decode_heap_oop_not_null(p);
    _rs->write_ref_field_gc_par(p, obj);
D
duke 已提交
734 735 736
  }
}

737 738 739 740 741 742 743
void /*ParNewGeneration::*/KeepAliveClosure::do_oop(oop* p)       { KeepAliveClosure::do_oop_work(p); }
void /*ParNewGeneration::*/KeepAliveClosure::do_oop(narrowOop* p) { KeepAliveClosure::do_oop_work(p); }

template <class T> void ScanClosureWithParBarrier::do_oop_work(T* p) {
  T heap_oop = oopDesc::load_heap_oop(p);
  if (!oopDesc::is_null(heap_oop)) {
    oop obj = oopDesc::decode_heap_oop_not_null(heap_oop);
D
duke 已提交
744 745
    if ((HeapWord*)obj < _boundary) {
      assert(!_g->to()->is_in_reserved(obj), "Scanning field twice?");
746 747 748 749
      oop new_obj = obj->is_forwarded()
                      ? obj->forwardee()
                      : _g->DefNewGeneration::copy_to_survivor_space(obj);
      oopDesc::encode_store_heap_oop_not_null(p, new_obj);
D
duke 已提交
750 751 752 753 754 755 756 757 758 759
    }
    if (_gc_barrier) {
      // If p points to a younger generation, mark the card.
      if ((HeapWord*)obj < _gen_boundary) {
        _rs->write_ref_field_gc_par(p, obj);
      }
    }
  }
}

760 761 762
void ScanClosureWithParBarrier::do_oop(oop* p)       { ScanClosureWithParBarrier::do_oop_work(p); }
void ScanClosureWithParBarrier::do_oop(narrowOop* p) { ScanClosureWithParBarrier::do_oop_work(p); }

D
duke 已提交
763 764 765 766 767 768 769 770 771
class ParNewRefProcTaskProxy: public AbstractGangTask {
  typedef AbstractRefProcTaskExecutor::ProcessTask ProcessTask;
public:
  ParNewRefProcTaskProxy(ProcessTask& task, ParNewGeneration& gen,
                         Generation& next_gen,
                         HeapWord* young_old_boundary,
                         ParScanThreadStateSet& state_set);

private:
772
  virtual void work(uint worker_id);
773 774 775
  virtual void set_for_termination(int active_workers) {
    _state_set.terminator()->reset_for_reuse(active_workers);
  }
D
duke 已提交
776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797
private:
  ParNewGeneration&      _gen;
  ProcessTask&           _task;
  Generation&            _next_gen;
  HeapWord*              _young_old_boundary;
  ParScanThreadStateSet& _state_set;
};

ParNewRefProcTaskProxy::ParNewRefProcTaskProxy(
    ProcessTask& task, ParNewGeneration& gen,
    Generation& next_gen,
    HeapWord* young_old_boundary,
    ParScanThreadStateSet& state_set)
  : AbstractGangTask("ParNewGeneration parallel reference processing"),
    _gen(gen),
    _task(task),
    _next_gen(next_gen),
    _young_old_boundary(young_old_boundary),
    _state_set(state_set)
{
}

798
void ParNewRefProcTaskProxy::work(uint worker_id)
D
duke 已提交
799 800 801
{
  ResourceMark rm;
  HandleMark hm;
802
  ParScanThreadState& par_scan_state = _state_set.thread_state(worker_id);
D
duke 已提交
803
  par_scan_state.set_young_old_boundary(_young_old_boundary);
804
  _task.work(worker_id, par_scan_state.is_alive_closure(),
D
duke 已提交
805 806 807 808 809 810 811 812 813 814 815 816 817 818
             par_scan_state.keep_alive_closure(),
             par_scan_state.evacuate_followers_closure());
}

class ParNewRefEnqueueTaskProxy: public AbstractGangTask {
  typedef AbstractRefProcTaskExecutor::EnqueueTask EnqueueTask;
  EnqueueTask& _task;

public:
  ParNewRefEnqueueTaskProxy(EnqueueTask& task)
    : AbstractGangTask("ParNewGeneration parallel reference enqueue"),
      _task(task)
  { }

819
  virtual void work(uint worker_id)
D
duke 已提交
820
  {
821
    _task.work(worker_id);
D
duke 已提交
822 823 824 825 826 827 828 829 830
  }
};


void ParNewRefProcTaskExecutor::execute(ProcessTask& task)
{
  GenCollectedHeap* gch = GenCollectedHeap::heap();
  assert(gch->kind() == CollectedHeap::GenCollectedHeap,
         "not a generational heap");
831
  FlexibleWorkGang* workers = gch->workers();
D
duke 已提交
832
  assert(workers != NULL, "Need parallel worker threads.");
833
  _state_set.reset(workers->active_workers(), _generation.promotion_failed());
D
duke 已提交
834 835 836
  ParNewRefProcTaskProxy rp_task(task, _generation, *_generation.next_gen(),
                                 _generation.reserved().end(), _state_set);
  workers->run_task(&rp_task);
837 838
  _state_set.reset(0 /* bad value in debug if not reset */,
                   _generation.promotion_failed());
D
duke 已提交
839 840 841 842 843
}

void ParNewRefProcTaskExecutor::execute(EnqueueTask& task)
{
  GenCollectedHeap* gch = GenCollectedHeap::heap();
844
  FlexibleWorkGang* workers = gch->workers();
D
duke 已提交
845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880
  assert(workers != NULL, "Need parallel worker threads.");
  ParNewRefEnqueueTaskProxy enq_task(task);
  workers->run_task(&enq_task);
}

void ParNewRefProcTaskExecutor::set_single_threaded_mode()
{
  _state_set.flush();
  GenCollectedHeap* gch = GenCollectedHeap::heap();
  gch->set_par_threads(0);  // 0 ==> non-parallel.
  gch->save_marks();
}

ScanClosureWithParBarrier::
ScanClosureWithParBarrier(ParNewGeneration* g, bool gc_barrier) :
  ScanClosure(g, gc_barrier) {}

EvacuateFollowersClosureGeneral::
EvacuateFollowersClosureGeneral(GenCollectedHeap* gch, int level,
                                OopsInGenClosure* cur,
                                OopsInGenClosure* older) :
  _gch(gch), _level(level),
  _scan_cur_or_nonheap(cur), _scan_older(older)
{}

void EvacuateFollowersClosureGeneral::do_void() {
  do {
    // Beware: this call will lead to closure applications via virtual
    // calls.
    _gch->oop_since_save_marks_iterate(_level,
                                       _scan_cur_or_nonheap,
                                       _scan_older);
  } while (!_gch->no_allocs_since_save_marks(_level));
}


S
sla 已提交
881 882
// A Generation that does parallel young-gen collection.

D
duke 已提交
883 884
bool ParNewGeneration::_avoid_promotion_undo = false;

S
sla 已提交
885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908
void ParNewGeneration::handle_promotion_failed(GenCollectedHeap* gch, ParScanThreadStateSet& thread_state_set, ParNewTracer& gc_tracer) {
  assert(_promo_failure_scan_stack.is_empty(), "post condition");
  _promo_failure_scan_stack.clear(true); // Clear cached segments.

  remove_forwarding_pointers();
  if (PrintGCDetails) {
    gclog_or_tty->print(" (promotion failed)");
  }
  // All the spaces are in play for mark-sweep.
  swap_spaces();  // Make life simpler for CMS || rescan; see 6483690.
  from()->set_next_compaction_space(to());
  gch->set_incremental_collection_failed();
  // Inform the next generation that a promotion failure occurred.
  _next_gen->promotion_failure_occurred();

  // Trace promotion failure in the parallel GC threads
  thread_state_set.trace_promotion_failed(gc_tracer);
  // Single threaded code may have reported promotion failure to the global state
  if (_promotion_failed_info.has_failed()) {
    gc_tracer.report_promotion_failed(_promotion_failed_info);
  }
  // Reset the PromotionFailureALot counters.
  NOT_PRODUCT(Universe::heap()->reset_promotion_should_fail();)
}
D
duke 已提交
909 910 911 912 913 914

void ParNewGeneration::collect(bool   full,
                               bool   clear_all_soft_refs,
                               size_t size,
                               bool   is_tlab) {
  assert(full || size > 0, "otherwise we don't want to collect");
S
sla 已提交
915

D
duke 已提交
916
  GenCollectedHeap* gch = GenCollectedHeap::heap();
S
sla 已提交
917 918 919

  _gc_timer->register_gc_start(os::elapsed_counter());

D
duke 已提交
920 921 922
  assert(gch->kind() == CollectedHeap::GenCollectedHeap,
    "not a CMS generational heap");
  AdaptiveSizePolicy* size_policy = gch->gen_policy()->size_policy();
923 924 925 926 927 928 929
  FlexibleWorkGang* workers = gch->workers();
  assert(workers != NULL, "Need workgang for parallel work");
  int active_workers =
      AdaptiveSizePolicy::calc_active_workers(workers->total_workers(),
                                   workers->active_workers(),
                                   Threads::number_of_non_daemon_threads());
  workers->set_active_workers(active_workers);
D
duke 已提交
930 931
  assert(gch->n_gens() == 2,
         "Par collection currently only works with single older gen.");
932
  _next_gen = gch->next_gen(this);
D
duke 已提交
933 934 935 936 937
  // Do we have to avoid promotion_undo?
  if (gch->collector_policy()->is_concurrent_mark_sweep_policy()) {
    set_avoid_promotion_undo(true);
  }

S
sla 已提交
938
  // If the next generation is too full to accommodate worst-case promotion
D
duke 已提交
939 940 941
  // from this generation, pass on collection; let the next generation
  // do it.
  if (!collection_attempt_is_safe()) {
942
    gch->set_incremental_collection_failed();  // slight lie, in that we did not even attempt one
D
duke 已提交
943 944 945 946
    return;
  }
  assert(to()->is_empty(), "Else not collection_attempt_is_safe");

S
sla 已提交
947 948 949 950
  ParNewTracer gc_tracer;
  gc_tracer.report_gc_start(gch->gc_cause(), _gc_timer->gc_start());
  gch->trace_heap_before_gc(&gc_tracer);

D
duke 已提交
951 952 953 954 955 956 957
  init_assuming_no_promotion_failure();

  if (UseAdaptiveSizePolicy) {
    set_survivor_overflow(false);
    size_policy->minor_collection_begin();
  }

S
sla 已提交
958
  GCTraceTime t1(GCCauseString("GC", gch->gc_cause()), PrintGC && !PrintGCDetails, true, NULL);
D
duke 已提交
959 960 961 962 963 964
  // Capture heap used before collection (for printing).
  size_t gch_prev_used = gch->used();

  SpecializationStats::clear();

  age_table()->clear();
965
  to()->clear(SpaceDecorator::Mangle);
D
duke 已提交
966 967 968

  gch->save_marks();
  assert(workers != NULL, "Need parallel worker threads.");
969 970 971 972 973 974 975 976 977
  int n_workers = active_workers;

  // Set the correct parallelism (number of queues) in the reference processor
  ref_processor()->set_active_mt_degree(n_workers);

  // Always set the terminator for the active number of workers
  // because only those workers go through the termination protocol.
  ParallelTaskTerminator _term(n_workers, task_queues());
  ParScanThreadStateSet thread_state_set(workers->active_workers(),
D
duke 已提交
978
                                         *to(), *this, *_next_gen, *task_queues(),
979
                                         _overflow_stacks, desired_plab_sz(), _term);
D
duke 已提交
980 981 982 983 984 985 986 987 988

  ParNewGenTask tsk(this, _next_gen, reserved().end(), &thread_state_set);
  gch->set_par_threads(n_workers);
  gch->rem_set()->prepare_for_younger_refs_iterate(true);
  // It turns out that even when we're using 1 thread, doing the work in a
  // separate thread causes wide variance in run times.  We can't help this
  // in the multi-threaded case, but we special-case n=1 here to get
  // repeatable measurements of the 1-thread overhead of the parallel code.
  if (n_workers > 1) {
989
    GenCollectedHeap::StrongRootsScope srs(gch);
D
duke 已提交
990 991
    workers->run_task(&tsk);
  } else {
992
    GenCollectedHeap::StrongRootsScope srs(gch);
D
duke 已提交
993 994
    tsk.work(0);
  }
995 996
  thread_state_set.reset(0 /* Bad value in debug if not reset */,
                         promotion_failed());
D
duke 已提交
997 998

  // Process (weak) reference objects found during scavenge.
999
  ReferenceProcessor* rp = ref_processor();
D
duke 已提交
1000 1001 1002 1003 1004 1005 1006 1007
  IsAliveClosure is_alive(this);
  ScanWeakRefClosure scan_weak_ref(this);
  KeepAliveClosure keep_alive(&scan_weak_ref);
  ScanClosure               scan_without_gc_barrier(this, false);
  ScanClosureWithParBarrier scan_with_gc_barrier(this, true);
  set_promo_failure_scan_stack_closure(&scan_without_gc_barrier);
  EvacuateFollowersClosureGeneral evacuate_followers(gch, _level,
    &scan_without_gc_barrier, &scan_with_gc_barrier);
1008
  rp->setup_policy(clear_all_soft_refs);
1009 1010
  // Can  the mt_degree be set later (at run_task() time would be best)?
  rp->set_active_mt_degree(active_workers);
S
sla 已提交
1011
  ReferenceProcessorStats stats;
1012
  if (rp->processing_is_mt()) {
D
duke 已提交
1013
    ParNewRefProcTaskExecutor task_executor(*this, thread_state_set);
S
sla 已提交
1014 1015 1016
    stats = rp->process_discovered_references(&is_alive, &keep_alive,
                                              &evacuate_followers, &task_executor,
                                              _gc_timer);
D
duke 已提交
1017 1018 1019 1020
  } else {
    thread_state_set.flush();
    gch->set_par_threads(0);  // 0 ==> non-parallel.
    gch->save_marks();
S
sla 已提交
1021 1022 1023
    stats = rp->process_discovered_references(&is_alive, &keep_alive,
                                              &evacuate_followers, NULL,
                                              _gc_timer);
D
duke 已提交
1024
  }
S
sla 已提交
1025
  gc_tracer.report_gc_reference_stats(stats);
D
duke 已提交
1026 1027
  if (!promotion_failed()) {
    // Swap the survivor spaces.
1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039
    eden()->clear(SpaceDecorator::Mangle);
    from()->clear(SpaceDecorator::Mangle);
    if (ZapUnusedHeapArea) {
      // This is now done here because of the piece-meal mangling which
      // can check for valid mangling at intermediate points in the
      // collection(s).  When a minor collection fails to collect
      // sufficient space resizing of the young generation can occur
      // an redistribute the spaces in the young generation.  Mangle
      // here so that unzapped regions don't get distributed to
      // other spaces.
      to()->mangle_unused_area();
    }
D
duke 已提交
1040 1041
    swap_spaces();

1042 1043 1044 1045
    // A successful scavenge should restart the GC time limit count which is
    // for full GC's.
    size_policy->reset_gc_overhead_limit_count();

D
duke 已提交
1046
    assert(to()->is_empty(), "to space should be empty now");
1047 1048

    adjust_desired_tenuring_threshold();
D
duke 已提交
1049
  } else {
S
sla 已提交
1050
    handle_promotion_failed(gch, thread_state_set, gc_tracer);
D
duke 已提交
1051 1052 1053 1054 1055 1056
  }
  // set new iteration safe limit for the survivor spaces
  from()->set_concurrent_iteration_safe_limit(from()->top());
  to()->set_concurrent_iteration_safe_limit(to()->top());

  if (ResizePLAB) {
J
johnc 已提交
1057
    plab_stats()->adjust_desired_plab_sz(n_workers);
D
duke 已提交
1058 1059 1060 1061 1062 1063
  }

  if (PrintGC && !PrintGCDetails) {
    gch->print_heap_change(gch_prev_used);
  }

1064 1065 1066 1067
  if (PrintGCDetails && ParallelGCVerbose) {
    TASKQUEUE_STATS_ONLY(thread_state_set.print_termination_stats());
    TASKQUEUE_STATS_ONLY(thread_state_set.print_taskqueue_stats());
  }
1068

D
duke 已提交
1069 1070 1071 1072 1073
  if (UseAdaptiveSizePolicy) {
    size_policy->minor_collection_end(gch->gc_cause());
    size_policy->avg_survived()->sample(from()->used());
  }

1074 1075 1076 1077 1078
  // We need to use a monotonically non-deccreasing time in ms
  // or we will see time-warp warnings and os::javaTimeMillis()
  // does not guarantee monotonicity.
  jlong now = os::javaTimeNanos() / NANOSECS_PER_MILLISEC;
  update_time_of_last_gc(now);
D
duke 已提交
1079 1080 1081

  SpecializationStats::print();

1082 1083
  rp->set_enqueuing_is_done(true);
  if (rp->processing_is_mt()) {
D
duke 已提交
1084
    ParNewRefProcTaskExecutor task_executor(*this, thread_state_set);
1085
    rp->enqueue_discovered_references(&task_executor);
D
duke 已提交
1086
  } else {
1087
    rp->enqueue_discovered_references(NULL);
D
duke 已提交
1088
  }
1089
  rp->verify_no_references_recorded();
S
sla 已提交
1090 1091 1092 1093 1094 1095 1096

  gch->trace_heap_after_gc(&gc_tracer);
  gc_tracer.report_tenuring_threshold(tenuring_threshold());

  _gc_timer->register_gc_end(os::elapsed_counter());

  gc_tracer.report_gc_end(_gc_timer->gc_end(), _gc_timer->time_partitions());
D
duke 已提交
1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142
}

static int sum;
void ParNewGeneration::waste_some_time() {
  for (int i = 0; i < 100; i++) {
    sum += i;
  }
}

static const oop ClaimedForwardPtr = oop(0x4);

// Because of concurrency, there are times where an object for which
// "is_forwarded()" is true contains an "interim" forwarding pointer
// value.  Such a value will soon be overwritten with a real value.
// This method requires "obj" to have a forwarding pointer, and waits, if
// necessary for a real one to be inserted, and returns it.

oop ParNewGeneration::real_forwardee(oop obj) {
  oop forward_ptr = obj->forwardee();
  if (forward_ptr != ClaimedForwardPtr) {
    return forward_ptr;
  } else {
    return real_forwardee_slow(obj);
  }
}

oop ParNewGeneration::real_forwardee_slow(oop obj) {
  // Spin-read if it is claimed but not yet written by another thread.
  oop forward_ptr = obj->forwardee();
  while (forward_ptr == ClaimedForwardPtr) {
    waste_some_time();
    assert(obj->is_forwarded(), "precondition");
    forward_ptr = obj->forwardee();
  }
  return forward_ptr;
}

#ifdef ASSERT
bool ParNewGeneration::is_legal_forward_ptr(oop p) {
  return
    (_avoid_promotion_undo && p == ClaimedForwardPtr)
    || Universe::heap()->is_in_reserved(p);
}
#endif

void ParNewGeneration::preserve_mark_if_necessary(oop obj, markOop m) {
1143 1144 1145
  if (m->must_be_preserved_for_promotion_failure(obj)) {
    // We should really have separate per-worker stacks, rather
    // than use locking of a common pair of stacks.
D
duke 已提交
1146
    MutexLocker ml(ParGCRareEvent_lock);
1147
    preserve_mark(obj, m);
D
duke 已提交
1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205
  }
}

// Multiple GC threads may try to promote an object.  If the object
// is successfully promoted, a forwarding pointer will be installed in
// the object in the young generation.  This method claims the right
// to install the forwarding pointer before it copies the object,
// thus avoiding the need to undo the copy as in
// copy_to_survivor_space_avoiding_with_undo.

oop ParNewGeneration::copy_to_survivor_space_avoiding_promotion_undo(
        ParScanThreadState* par_scan_state, oop old, size_t sz, markOop m) {
  // In the sequential version, this assert also says that the object is
  // not forwarded.  That might not be the case here.  It is the case that
  // the caller observed it to be not forwarded at some time in the past.
  assert(is_in_reserved(old), "shouldn't be scavenging this oop");

  // The sequential code read "old->age()" below.  That doesn't work here,
  // since the age is in the mark word, and that might be overwritten with
  // a forwarding pointer by a parallel thread.  So we must save the mark
  // word in a local and then analyze it.
  oopDesc dummyOld;
  dummyOld.set_mark(m);
  assert(!dummyOld.is_forwarded(),
         "should not be called with forwarding pointer mark word.");

  oop new_obj = NULL;
  oop forward_ptr;

  // Try allocating obj in to-space (unless too old)
  if (dummyOld.age() < tenuring_threshold()) {
    new_obj = (oop)par_scan_state->alloc_in_to_space(sz);
    if (new_obj == NULL) {
      set_survivor_overflow(true);
    }
  }

  if (new_obj == NULL) {
    // Either to-space is full or we decided to promote
    // try allocating obj tenured

    // Attempt to install a null forwarding pointer (atomically),
    // to claim the right to install the real forwarding pointer.
    forward_ptr = old->forward_to_atomic(ClaimedForwardPtr);
    if (forward_ptr != NULL) {
      // someone else beat us to it.
        return real_forwardee(old);
    }

    new_obj = _next_gen->par_promote(par_scan_state->thread_num(),
                                       old, m, sz);

    if (new_obj == NULL) {
      // promotion failed, forward to self
      _promotion_failed = true;
      new_obj = old;

      preserve_mark_if_necessary(old, m);
S
sla 已提交
1206
      par_scan_state->register_promotion_failure(sz);
D
duke 已提交
1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222
    }

    old->forward_to(new_obj);
    forward_ptr = NULL;
  } else {
    // Is in to-space; do copying ourselves.
    Copy::aligned_disjoint_words((HeapWord*)old, (HeapWord*)new_obj, sz);
    forward_ptr = old->forward_to_atomic(new_obj);
    // Restore the mark word copied above.
    new_obj->set_mark(m);
    // Increment age if obj still in new generation
    new_obj->incr_age();
    par_scan_state->age_table()->add(new_obj, sz);
  }
  assert(new_obj != NULL, "just checking");

1223 1224 1225 1226 1227 1228 1229 1230 1231 1232
#ifndef PRODUCT
  // This code must come after the CAS test, or it will print incorrect
  // information.
  if (TraceScavenge) {
    gclog_or_tty->print_cr("{%s %s " PTR_FORMAT " -> " PTR_FORMAT " (%d)}",
       is_in_reserved(new_obj) ? "copying" : "tenuring",
       new_obj->klass()->internal_name(), old, new_obj, new_obj->size());
  }
#endif

D
duke 已提交
1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243
  if (forward_ptr == NULL) {
    oop obj_to_push = new_obj;
    if (par_scan_state->should_be_partially_scanned(obj_to_push, old)) {
      // Length field used as index of next element to be scanned.
      // Real length can be obtained from real_forwardee()
      arrayOop(old)->set_length(0);
      obj_to_push = old;
      assert(obj_to_push->is_forwarded() && obj_to_push->forwardee() != obj_to_push,
             "push forwarded object");
    }
    // Push it on one of the queues of to-be-scanned objects.
1244 1245 1246 1247 1248 1249 1250 1251
    bool simulate_overflow = false;
    NOT_PRODUCT(
      if (ParGCWorkQueueOverflowALot && should_simulate_overflow()) {
        // simulate a stack overflow
        simulate_overflow = true;
      }
    )
    if (simulate_overflow || !par_scan_state->work_queue()->push(obj_to_push)) {
D
duke 已提交
1252 1253 1254 1255
      // Add stats for overflow pushes.
      if (Verbose && PrintGCDetails) {
        gclog_or_tty->print("queue overflow!\n");
      }
1256
      push_on_overflow_list(old, par_scan_state);
1257
      TASKQUEUE_STATS_ONLY(par_scan_state->taskqueue_stats().record_overflow(0));
D
duke 已提交
1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330
    }

    return new_obj;
  }

  // Oops.  Someone beat us to it.  Undo the allocation.  Where did we
  // allocate it?
  if (is_in_reserved(new_obj)) {
    // Must be in to_space.
    assert(to()->is_in_reserved(new_obj), "Checking");
    if (forward_ptr == ClaimedForwardPtr) {
      // Wait to get the real forwarding pointer value.
      forward_ptr = real_forwardee(old);
    }
    par_scan_state->undo_alloc_in_to_space((HeapWord*)new_obj, sz);
  }

  return forward_ptr;
}


// Multiple GC threads may try to promote the same object.  If two
// or more GC threads copy the object, only one wins the race to install
// the forwarding pointer.  The other threads have to undo their copy.

oop ParNewGeneration::copy_to_survivor_space_with_undo(
        ParScanThreadState* par_scan_state, oop old, size_t sz, markOop m) {

  // In the sequential version, this assert also says that the object is
  // not forwarded.  That might not be the case here.  It is the case that
  // the caller observed it to be not forwarded at some time in the past.
  assert(is_in_reserved(old), "shouldn't be scavenging this oop");

  // The sequential code read "old->age()" below.  That doesn't work here,
  // since the age is in the mark word, and that might be overwritten with
  // a forwarding pointer by a parallel thread.  So we must save the mark
  // word here, install it in a local oopDesc, and then analyze it.
  oopDesc dummyOld;
  dummyOld.set_mark(m);
  assert(!dummyOld.is_forwarded(),
         "should not be called with forwarding pointer mark word.");

  bool failed_to_promote = false;
  oop new_obj = NULL;
  oop forward_ptr;

  // Try allocating obj in to-space (unless too old)
  if (dummyOld.age() < tenuring_threshold()) {
    new_obj = (oop)par_scan_state->alloc_in_to_space(sz);
    if (new_obj == NULL) {
      set_survivor_overflow(true);
    }
  }

  if (new_obj == NULL) {
    // Either to-space is full or we decided to promote
    // try allocating obj tenured
    new_obj = _next_gen->par_promote(par_scan_state->thread_num(),
                                       old, m, sz);

    if (new_obj == NULL) {
      // promotion failed, forward to self
      forward_ptr = old->forward_to_atomic(old);
      new_obj = old;

      if (forward_ptr != NULL) {
        return forward_ptr;   // someone else succeeded
      }

      _promotion_failed = true;
      failed_to_promote = true;

      preserve_mark_if_necessary(old, m);
S
sla 已提交
1331
      par_scan_state->register_promotion_failure(sz);
D
duke 已提交
1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343
    }
  } else {
    // Is in to-space; do copying ourselves.
    Copy::aligned_disjoint_words((HeapWord*)old, (HeapWord*)new_obj, sz);
    // Restore the mark word copied above.
    new_obj->set_mark(m);
    // Increment age if new_obj still in new generation
    new_obj->incr_age();
    par_scan_state->age_table()->add(new_obj, sz);
  }
  assert(new_obj != NULL, "just checking");

1344 1345 1346 1347 1348 1349 1350 1351 1352 1353
#ifndef PRODUCT
  // This code must come after the CAS test, or it will print incorrect
  // information.
  if (TraceScavenge) {
    gclog_or_tty->print_cr("{%s %s " PTR_FORMAT " -> " PTR_FORMAT " (%d)}",
       is_in_reserved(new_obj) ? "copying" : "tenuring",
       new_obj->klass()->internal_name(), old, new_obj, new_obj->size());
  }
#endif

D
duke 已提交
1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371
  // Now attempt to install the forwarding pointer (atomically).
  // We have to copy the mark word before overwriting with forwarding
  // ptr, so we can restore it below in the copy.
  if (!failed_to_promote) {
    forward_ptr = old->forward_to_atomic(new_obj);
  }

  if (forward_ptr == NULL) {
    oop obj_to_push = new_obj;
    if (par_scan_state->should_be_partially_scanned(obj_to_push, old)) {
      // Length field used as index of next element to be scanned.
      // Real length can be obtained from real_forwardee()
      arrayOop(old)->set_length(0);
      obj_to_push = old;
      assert(obj_to_push->is_forwarded() && obj_to_push->forwardee() != obj_to_push,
             "push forwarded object");
    }
    // Push it on one of the queues of to-be-scanned objects.
1372 1373 1374 1375 1376 1377 1378 1379
    bool simulate_overflow = false;
    NOT_PRODUCT(
      if (ParGCWorkQueueOverflowALot && should_simulate_overflow()) {
        // simulate a stack overflow
        simulate_overflow = true;
      }
    )
    if (simulate_overflow || !par_scan_state->work_queue()->push(obj_to_push)) {
D
duke 已提交
1380
      // Add stats for overflow pushes.
1381
      push_on_overflow_list(old, par_scan_state);
1382
      TASKQUEUE_STATS_ONLY(par_scan_state->taskqueue_stats().record_overflow(0));
D
duke 已提交
1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402
    }

    return new_obj;
  }

  // Oops.  Someone beat us to it.  Undo the allocation.  Where did we
  // allocate it?
  if (is_in_reserved(new_obj)) {
    // Must be in to_space.
    assert(to()->is_in_reserved(new_obj), "Checking");
    par_scan_state->undo_alloc_in_to_space((HeapWord*)new_obj, sz);
  } else {
    assert(!_avoid_promotion_undo, "Should not be here if avoiding.");
    _next_gen->par_promote_alloc_undo(par_scan_state->thread_num(),
                                      (HeapWord*)new_obj, sz);
  }

  return forward_ptr;
}

1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418
#ifndef PRODUCT
// It's OK to call this multi-threaded;  the worst thing
// that can happen is that we'll get a bunch of closely
// spaced simulated oveflows, but that's OK, in fact
// probably good as it would exercise the overflow code
// under contention.
bool ParNewGeneration::should_simulate_overflow() {
  if (_overflow_counter-- <= 0) { // just being defensive
    _overflow_counter = ParGCWorkQueueOverflowInterval;
    return true;
  } else {
    return false;
  }
}
#endif

1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438
// In case we are using compressed oops, we need to be careful.
// If the object being pushed is an object array, then its length
// field keeps track of the "grey boundary" at which the next
// incremental scan will be done (see ParGCArrayScanChunk).
// When using compressed oops, this length field is kept in the
// lower 32 bits of the erstwhile klass word and cannot be used
// for the overflow chaining pointer (OCP below). As such the OCP
// would itself need to be compressed into the top 32-bits in this
// case. Unfortunately, see below, in the event that we have a
// promotion failure, the node to be pushed on the list can be
// outside of the Java heap, so the heap-based pointer compression
// would not work (we would have potential aliasing between C-heap
// and Java-heap pointers). For this reason, when using compressed
// oops, we simply use a worker-thread-local, non-shared overflow
// list in the form of a growable array, with a slightly different
// overflow stack draining strategy. If/when we start using fat
// stacks here, we can go back to using (fat) pointer chains
// (although some performance comparisons would be useful since
// single global lists have their own performance disadvantages
// as we were made painfully aware not long ago, see 6786503).
1439 1440
#define BUSY (oop(0x1aff1aff))
void ParNewGeneration::push_on_overflow_list(oop from_space_obj, ParScanThreadState* par_scan_state) {
1441
  assert(is_in_reserved(from_space_obj), "Should be from this generation");
1442
  if (ParGCUseLocalOverflow) {
1443 1444 1445 1446
    // In the case of compressed oops, we use a private, not-shared
    // overflow stack.
    par_scan_state->push_on_overflow_stack(from_space_obj);
  } else {
1447
    assert(!UseCompressedOops, "Error");
1448 1449 1450 1451 1452
    // if the object has been forwarded to itself, then we cannot
    // use the klass pointer for the linked list.  Instead we have
    // to allocate an oopDesc in the C-Heap and use that for the linked list.
    // XXX This is horribly inefficient when a promotion failure occurs
    // and should be fixed. XXX FIX ME !!!
1453
#ifndef PRODUCT
1454 1455
    Atomic::inc_ptr(&_num_par_pushes);
    assert(_num_par_pushes > 0, "Tautology");
1456
#endif
1457
    if (from_space_obj->forwardee() == from_space_obj) {
Z
zgu 已提交
1458
      oopDesc* listhead = NEW_C_HEAP_ARRAY(oopDesc, 1, mtGC);
1459 1460
      listhead->forward_to(from_space_obj);
      from_space_obj = listhead;
1461
    }
1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474
    oop observed_overflow_list = _overflow_list;
    oop cur_overflow_list;
    do {
      cur_overflow_list = observed_overflow_list;
      if (cur_overflow_list != BUSY) {
        from_space_obj->set_klass_to_list_ptr(cur_overflow_list);
      } else {
        from_space_obj->set_klass_to_list_ptr(NULL);
      }
      observed_overflow_list =
        (oop)Atomic::cmpxchg_ptr(from_space_obj, &_overflow_list, cur_overflow_list);
    } while (cur_overflow_list != observed_overflow_list);
  }
D
duke 已提交
1475 1476
}

1477 1478 1479
bool ParNewGeneration::take_from_overflow_list(ParScanThreadState* par_scan_state) {
  bool res;

1480
  if (ParGCUseLocalOverflow) {
1481 1482
    res = par_scan_state->take_from_overflow_stack();
  } else {
1483
    assert(!UseCompressedOops, "Error");
1484 1485 1486 1487 1488 1489
    res = take_from_overflow_list_work(par_scan_state);
  }
  return res;
}


1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503
// *NOTE*: The overflow list manipulation code here and
// in CMSCollector:: are very similar in shape,
// except that in the CMS case we thread the objects
// directly into the list via their mark word, and do
// not need to deal with special cases below related
// to chunking of object arrays and promotion failure
// handling.
// CR 6797058 has been filed to attempt consolidation of
// the common code.
// Because of the common code, if you make any changes in
// the code below, please check the CMS version to see if
// similar changes might be needed.
// See CMSCollector::par_take_from_overflow_list() for
// more extensive documentation comments.
1504
bool ParNewGeneration::take_from_overflow_list_work(ParScanThreadState* par_scan_state) {
D
duke 已提交
1505 1506
  ObjToScanQueue* work_q = par_scan_state->work_queue();
  // How many to take?
1507
  size_t objsFromOverflow = MIN2((size_t)(work_q->max_elems() - work_q->size())/4,
1508
                                 (size_t)ParGCDesiredObjsFromOverflowList);
D
duke 已提交
1509

1510
  assert(!UseCompressedOops, "Error");
1511
  assert(par_scan_state->overflow_stack() == NULL, "Error");
D
duke 已提交
1512 1513 1514
  if (_overflow_list == NULL) return false;

  // Otherwise, there was something there; try claiming the list.
1515
  oop prefix = (oop)Atomic::xchg_ptr(BUSY, &_overflow_list);
D
duke 已提交
1516
  // Trim off a prefix of at most objsFromOverflow items
1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542
  Thread* tid = Thread::current();
  size_t spin_count = (size_t)ParallelGCThreads;
  size_t sleep_time_millis = MAX2((size_t)1, objsFromOverflow/100);
  for (size_t spin = 0; prefix == BUSY && spin < spin_count; spin++) {
    // someone grabbed it before we did ...
    // ... we spin for a short while...
    os::sleep(tid, sleep_time_millis, false);
    if (_overflow_list == NULL) {
      // nothing left to take
      return false;
    } else if (_overflow_list != BUSY) {
     // try and grab the prefix
     prefix = (oop)Atomic::xchg_ptr(BUSY, &_overflow_list);
    }
  }
  if (prefix == NULL || prefix == BUSY) {
     // Nothing to take or waited long enough
     if (prefix == NULL) {
       // Write back the NULL in case we overwrote it with BUSY above
       // and it is still the same value.
       (void) Atomic::cmpxchg_ptr(NULL, &_overflow_list, BUSY);
     }
     return false;
  }
  assert(prefix != NULL && prefix != BUSY, "Error");
  size_t i = 1;
D
duke 已提交
1543
  oop cur = prefix;
1544
  while (i < objsFromOverflow && cur->klass_or_null() != NULL) {
1545
    i++; cur = cur->list_ptr_from_klass();
D
duke 已提交
1546 1547 1548
  }

  // Reattach remaining (suffix) to overflow list
1549 1550 1551 1552 1553
  if (cur->klass_or_null() == NULL) {
    // Write back the NULL in lieu of the BUSY we wrote
    // above and it is still the same value.
    if (_overflow_list == BUSY) {
      (void) Atomic::cmpxchg_ptr(NULL, &_overflow_list, BUSY);
D
duke 已提交
1554
    }
1555
  } else {
1556 1557
    assert(cur->klass_or_null() != (Klass*)(address)BUSY, "Error");
    oop suffix = cur->list_ptr_from_klass();       // suffix will be put back on global list
1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577
    cur->set_klass_to_list_ptr(NULL);     // break off suffix
    // It's possible that the list is still in the empty(busy) state
    // we left it in a short while ago; in that case we may be
    // able to place back the suffix.
    oop observed_overflow_list = _overflow_list;
    oop cur_overflow_list = observed_overflow_list;
    bool attached = false;
    while (observed_overflow_list == BUSY || observed_overflow_list == NULL) {
      observed_overflow_list =
        (oop) Atomic::cmpxchg_ptr(suffix, &_overflow_list, cur_overflow_list);
      if (cur_overflow_list == observed_overflow_list) {
        attached = true;
        break;
      } else cur_overflow_list = observed_overflow_list;
    }
    if (!attached) {
      // Too bad, someone else got in in between; we'll need to do a splice.
      // Find the last item of suffix list
      oop last = suffix;
      while (last->klass_or_null() != NULL) {
1578
        last = last->list_ptr_from_klass();
1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592
      }
      // Atomically prepend suffix to current overflow list
      observed_overflow_list = _overflow_list;
      do {
        cur_overflow_list = observed_overflow_list;
        if (cur_overflow_list != BUSY) {
          // Do the splice ...
          last->set_klass_to_list_ptr(cur_overflow_list);
        } else { // cur_overflow_list == BUSY
          last->set_klass_to_list_ptr(NULL);
        }
        observed_overflow_list =
          (oop)Atomic::cmpxchg_ptr(suffix, &_overflow_list, cur_overflow_list);
      } while (cur_overflow_list != observed_overflow_list);
D
duke 已提交
1593 1594 1595 1596
    }
  }

  // Push objects on prefix list onto this thread's work queue
1597
  assert(prefix != NULL && prefix != BUSY, "program logic");
D
duke 已提交
1598
  cur = prefix;
1599
  ssize_t n = 0;
D
duke 已提交
1600 1601
  while (cur != NULL) {
    oop obj_to_push = cur->forwardee();
1602
    oop next        = cur->list_ptr_from_klass();
D
duke 已提交
1603
    cur->set_klass(obj_to_push->klass());
1604 1605 1606 1607 1608 1609
    // This may be an array object that is self-forwarded. In that case, the list pointer
    // space, cur, is not in the Java heap, but rather in the C-heap and should be freed.
    if (!is_in_reserved(cur)) {
      // This can become a scaling bottleneck when there is work queue overflow coincident
      // with promotion failure.
      oopDesc* f = cur;
Z
zgu 已提交
1610
      FREE_C_HEAP_ARRAY(oopDesc, f, mtGC);
1611
    } else if (par_scan_state->should_be_partially_scanned(obj_to_push, cur)) {
D
duke 已提交
1612
      assert(arrayOop(cur)->length() == 0, "entire array remaining to be scanned");
1613
      obj_to_push = cur;
D
duke 已提交
1614
    }
1615 1616
    bool ok = work_q->push(obj_to_push);
    assert(ok, "Should have succeeded");
D
duke 已提交
1617 1618 1619
    cur = next;
    n++;
  }
1620
  TASKQUEUE_STATS_ONLY(par_scan_state->note_overflow_refill(n));
1621 1622 1623 1624
#ifndef PRODUCT
  assert(_num_par_pushes >= n, "Too many pops?");
  Atomic::add_ptr(-(intptr_t)n, &_num_par_pushes);
#endif
D
duke 已提交
1625 1626
  return true;
}
1627
#undef BUSY
D
duke 已提交
1628

S
sla 已提交
1629
void ParNewGeneration::ref_processor_init() {
D
duke 已提交
1630 1631
  if (_ref_processor == NULL) {
    // Allocate and initialize a reference processor
1632 1633 1634 1635 1636 1637 1638 1639 1640
    _ref_processor =
      new ReferenceProcessor(_reserved,                  // span
                             ParallelRefProcEnabled && (ParallelGCThreads > 1), // mt processing
                             (int) ParallelGCThreads,    // mt processing degree
                             refs_discovery_is_mt(),     // mt discovery
                             (int) ParallelGCThreads,    // mt discovery degree
                             refs_discovery_is_atomic(), // atomic_discovery
                             NULL,                       // is_alive_non_header
                             false);                     // write barrier for next field updates
D
duke 已提交
1641 1642 1643 1644 1645 1646
  }
}

const char* ParNewGeneration::name() const {
  return "par new generation";
}