hotspot/src/share/vm/gc/g1/g1Allocator.cpp
author ehelin
Mon, 19 Oct 2015 15:47:36 +0200
changeset 34131 d5fc001452bb
parent 33803 d61d5830df80
child 34146 42523f0da397
permissions -rw-r--r--
8139883: Add virtual destructor G1ParScanThreadState Reviewed-by: tschatzl, mgerdin, stefank
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/*
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 * Copyright (c) 2014, 2015, Oracle and/or its affiliates. All rights reserved.
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 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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 *
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 * This code is free software; you can redistribute it and/or modify it
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 * under the terms of the GNU General Public License version 2 only, as
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 * published by the Free Software Foundation.
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 *
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 * This code is distributed in the hope that it will be useful, but WITHOUT
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 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
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 * version 2 for more details (a copy is included in the LICENSE file that
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 * accompanied this code).
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 *
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 * You should have received a copy of the GNU General Public License version
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 * 2 along with this work; if not, write to the Free Software Foundation,
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 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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 *
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 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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 * or visit www.oracle.com if you need additional information or have any
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 * questions.
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 *
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 */
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#include "precompiled.hpp"
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#include "gc/g1/g1Allocator.inline.hpp"
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#include "gc/g1/g1AllocRegion.inline.hpp"
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#include "gc/g1/g1CollectedHeap.inline.hpp"
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#include "gc/g1/g1CollectorPolicy.hpp"
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#include "gc/g1/g1MarkSweep.hpp"
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#include "gc/g1/heapRegion.inline.hpp"
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#include "gc/g1/heapRegionSet.inline.hpp"
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G1DefaultAllocator::G1DefaultAllocator(G1CollectedHeap* heap) :
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  G1Allocator(heap),
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  _retained_old_gc_alloc_region(NULL),
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  _survivor_gc_alloc_region(heap->alloc_buffer_stats(InCSetState::Young)),
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  _old_gc_alloc_region(heap->alloc_buffer_stats(InCSetState::Old)) {
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}
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void G1DefaultAllocator::init_mutator_alloc_region() {
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  assert(_mutator_alloc_region.get() == NULL, "pre-condition");
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  _mutator_alloc_region.init();
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}
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void G1DefaultAllocator::release_mutator_alloc_region() {
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  _mutator_alloc_region.release();
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  assert(_mutator_alloc_region.get() == NULL, "post-condition");
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}
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void G1Allocator::reuse_retained_old_region(EvacuationInfo& evacuation_info,
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                                            OldGCAllocRegion* old,
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                                            HeapRegion** retained_old) {
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  HeapRegion* retained_region = *retained_old;
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  *retained_old = NULL;
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  assert(retained_region == NULL || !retained_region->is_archive(),
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         "Archive region should not be alloc region (index %u)", retained_region->hrm_index());
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  // We will discard the current GC alloc region if:
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  // a) it's in the collection set (it can happen!),
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  // b) it's already full (no point in using it),
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  // c) it's empty (this means that it was emptied during
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  // a cleanup and it should be on the free list now), or
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  // d) it's humongous (this means that it was emptied
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  // during a cleanup and was added to the free list, but
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  // has been subsequently used to allocate a humongous
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  // object that may be less than the region size).
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  if (retained_region != NULL &&
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      !retained_region->in_collection_set() &&
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      !(retained_region->top() == retained_region->end()) &&
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      !retained_region->is_empty() &&
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      !retained_region->is_humongous()) {
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    retained_region->record_timestamp();
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    // The retained region was added to the old region set when it was
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    // retired. We have to remove it now, since we don't allow regions
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    // we allocate to in the region sets. We'll re-add it later, when
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    // it's retired again.
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    _g1h->old_set_remove(retained_region);
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    bool during_im = _g1h->collector_state()->during_initial_mark_pause();
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    retained_region->note_start_of_copying(during_im);
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    old->set(retained_region);
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    _g1h->hr_printer()->reuse(retained_region);
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    evacuation_info.set_alloc_regions_used_before(retained_region->used());
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  }
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}
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void G1DefaultAllocator::init_gc_alloc_regions(EvacuationInfo& evacuation_info) {
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  assert_at_safepoint(true /* should_be_vm_thread */);
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  G1Allocator::init_gc_alloc_regions(evacuation_info);
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  _survivor_gc_alloc_region.init();
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  _old_gc_alloc_region.init();
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  reuse_retained_old_region(evacuation_info,
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                            &_old_gc_alloc_region,
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                            &_retained_old_gc_alloc_region);
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}
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void G1DefaultAllocator::release_gc_alloc_regions(EvacuationInfo& evacuation_info) {
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  AllocationContext_t context = AllocationContext::current();
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  evacuation_info.set_allocation_regions(survivor_gc_alloc_region(context)->count() +
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                                         old_gc_alloc_region(context)->count());
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  survivor_gc_alloc_region(context)->release();
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  // If we have an old GC alloc region to release, we'll save it in
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  // _retained_old_gc_alloc_region. If we don't
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  // _retained_old_gc_alloc_region will become NULL. This is what we
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  // want either way so no reason to check explicitly for either
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  // condition.
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  _retained_old_gc_alloc_region = old_gc_alloc_region(context)->release();
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  if (_retained_old_gc_alloc_region != NULL) {
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    _retained_old_gc_alloc_region->record_retained_region();
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  }
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}
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void G1DefaultAllocator::abandon_gc_alloc_regions() {
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  assert(survivor_gc_alloc_region(AllocationContext::current())->get() == NULL, "pre-condition");
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  assert(old_gc_alloc_region(AllocationContext::current())->get() == NULL, "pre-condition");
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  _retained_old_gc_alloc_region = NULL;
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}
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G1PLAB::G1PLAB(size_t gclab_word_size) :
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  PLAB(gclab_word_size), _retired(true) { }
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size_t G1Allocator::unsafe_max_tlab_alloc(AllocationContext_t context) {
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  // Return the remaining space in the cur alloc region, but not less than
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  // the min TLAB size.
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  // Also, this value can be at most the humongous object threshold,
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  // since we can't allow tlabs to grow big enough to accommodate
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  // humongous objects.
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  HeapRegion* hr = mutator_alloc_region(context)->get();
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  size_t max_tlab = _g1h->max_tlab_size() * wordSize;
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  if (hr == NULL) {
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    return max_tlab;
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  } else {
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    return MIN2(MAX2(hr->free(), (size_t) MinTLABSize), max_tlab);
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  }
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}
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HeapWord* G1Allocator::par_allocate_during_gc(InCSetState dest,
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                                              size_t word_size,
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                                              AllocationContext_t context) {
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  size_t temp = 0;
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  HeapWord* result = par_allocate_during_gc(dest, word_size, word_size, &temp, context);
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  assert(result == NULL || temp == word_size,
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         "Requested " SIZE_FORMAT " words, but got " SIZE_FORMAT " at " PTR_FORMAT,
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         word_size, temp, p2i(result));
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  return result;
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}
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HeapWord* G1Allocator::par_allocate_during_gc(InCSetState dest,
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                                              size_t min_word_size,
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                                              size_t desired_word_size,
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                                              size_t* actual_word_size,
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                                              AllocationContext_t context) {
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  switch (dest.value()) {
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    case InCSetState::Young:
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      return survivor_attempt_allocation(min_word_size, desired_word_size, actual_word_size, context);
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    case InCSetState::Old:
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      return old_attempt_allocation(min_word_size, desired_word_size, actual_word_size, context);
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    default:
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      ShouldNotReachHere();
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      return NULL; // Keep some compilers happy
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  }
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}
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bool G1Allocator::survivor_is_full(AllocationContext_t context) const {
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  return _survivor_is_full;
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}
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bool G1Allocator::old_is_full(AllocationContext_t context) const {
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  return _old_is_full;
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}
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void G1Allocator::set_survivor_full(AllocationContext_t context) {
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  _survivor_is_full = true;
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}
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void G1Allocator::set_old_full(AllocationContext_t context) {
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  _old_is_full = true;
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}
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HeapWord* G1Allocator::survivor_attempt_allocation(size_t min_word_size,
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                                                   size_t desired_word_size,
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                                                   size_t* actual_word_size,
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                                                   AllocationContext_t context) {
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  assert(!_g1h->is_humongous(desired_word_size),
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         "we should not be seeing humongous-size allocations in this path");
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  HeapWord* result = survivor_gc_alloc_region(context)->attempt_allocation(min_word_size,
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                                                                           desired_word_size,
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                                                                           actual_word_size,
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                                                                           false /* bot_updates */);
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  if (result == NULL && !survivor_is_full(context)) {
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    MutexLockerEx x(FreeList_lock, Mutex::_no_safepoint_check_flag);
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    result = survivor_gc_alloc_region(context)->attempt_allocation_locked(min_word_size,
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                                                                          desired_word_size,
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                                                                          actual_word_size,
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                                                                          false /* bot_updates */);
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    if (result == NULL) {
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      set_survivor_full(context);
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    }
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  }
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  if (result != NULL) {
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    _g1h->dirty_young_block(result, *actual_word_size);
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  }
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  return result;
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}
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HeapWord* G1Allocator::old_attempt_allocation(size_t min_word_size,
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                                              size_t desired_word_size,
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                                              size_t* actual_word_size,
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                                              AllocationContext_t context) {
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  assert(!_g1h->is_humongous(desired_word_size),
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         "we should not be seeing humongous-size allocations in this path");
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  HeapWord* result = old_gc_alloc_region(context)->attempt_allocation(min_word_size,
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                                                                      desired_word_size,
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                                                                      actual_word_size,
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                                                                      true /* bot_updates */);
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  if (result == NULL && !old_is_full(context)) {
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    MutexLockerEx x(FreeList_lock, Mutex::_no_safepoint_check_flag);
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    result = old_gc_alloc_region(context)->attempt_allocation_locked(min_word_size,
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                                                                     desired_word_size,
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                                                                     actual_word_size,
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                                                                     true /* bot_updates */);
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    if (result == NULL) {
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      set_old_full(context);
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    }
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  }
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  return result;
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}
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void G1Allocator::init_gc_alloc_regions(EvacuationInfo& evacuation_info) {
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  _survivor_is_full = false;
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  _old_is_full = false;
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}
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G1PLABAllocator::G1PLABAllocator(G1Allocator* allocator) :
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  _g1h(G1CollectedHeap::heap()),
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  _allocator(allocator),
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  _survivor_alignment_bytes(calc_survivor_alignment_bytes()) {
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  for (size_t i = 0; i < ARRAY_SIZE(_direct_allocated); i++) {
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    _direct_allocated[i] = 0;
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  }
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}
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bool G1PLABAllocator::may_throw_away_buffer(size_t const allocation_word_sz, size_t const buffer_size) const {
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  return (allocation_word_sz * 100 < buffer_size * ParallelGCBufferWastePct);
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}
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HeapWord* G1PLABAllocator::allocate_direct_or_new_plab(InCSetState dest,
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                                                       size_t word_sz,
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                                                       AllocationContext_t context,
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                                                       bool* plab_refill_failed) {
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  size_t plab_word_size = G1CollectedHeap::heap()->desired_plab_sz(dest);
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  size_t required_in_plab = PLAB::size_required_for_allocation(word_sz);
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  // Only get a new PLAB if the allocation fits and it would not waste more than
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  // ParallelGCBufferWastePct in the existing buffer.
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  if ((required_in_plab <= plab_word_size) &&
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    may_throw_away_buffer(required_in_plab, plab_word_size)) {
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    G1PLAB* alloc_buf = alloc_buffer(dest, context);
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    alloc_buf->retire();
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    size_t actual_plab_size = 0;
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    HeapWord* buf = _allocator->par_allocate_during_gc(dest,
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                                                       required_in_plab,
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                                                       plab_word_size,
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                                                       &actual_plab_size,
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                                                       context);
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    assert(buf == NULL || ((actual_plab_size >= required_in_plab) && (actual_plab_size <= plab_word_size)),
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           "Requested at minimum " SIZE_FORMAT ", desired " SIZE_FORMAT " words, but got " SIZE_FORMAT " at " PTR_FORMAT,
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           required_in_plab, plab_word_size, actual_plab_size, p2i(buf));
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    if (buf != NULL) {
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      alloc_buf->set_buf(buf, actual_plab_size);
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      HeapWord* const obj = alloc_buf->allocate(word_sz);
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      assert(obj != NULL, "PLAB should have been big enough, tried to allocate "
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                          SIZE_FORMAT " requiring " SIZE_FORMAT " PLAB size " SIZE_FORMAT,
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                          word_sz, required_in_plab, plab_word_size);
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      return obj;
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    }
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    // Otherwise.
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    *plab_refill_failed = true;
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  }
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  // Try direct allocation.
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  HeapWord* result = _allocator->par_allocate_during_gc(dest, word_sz, context);
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  if (result != NULL) {
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    _direct_allocated[dest.value()] += word_sz;
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  }
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  return result;
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}
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void G1PLABAllocator::undo_allocation(InCSetState dest, HeapWord* obj, size_t word_sz, AllocationContext_t context) {
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  alloc_buffer(dest, context)->undo_allocation(obj, word_sz);
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}
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G1DefaultPLABAllocator::G1DefaultPLABAllocator(G1Allocator* allocator) :
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  G1PLABAllocator(allocator),
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  _surviving_alloc_buffer(_g1h->desired_plab_sz(InCSetState::Young)),
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  _tenured_alloc_buffer(_g1h->desired_plab_sz(InCSetState::Old)) {
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  for (uint state = 0; state < InCSetState::Num; state++) {
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    _alloc_buffers[state] = NULL;
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  }
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  _alloc_buffers[InCSetState::Young] = &_surviving_alloc_buffer;
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  _alloc_buffers[InCSetState::Old]  = &_tenured_alloc_buffer;
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}
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void G1DefaultPLABAllocator::flush_and_retire_stats() {
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  for (uint state = 0; state < InCSetState::Num; state++) {
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    G1PLAB* const buf = _alloc_buffers[state];
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    if (buf != NULL) {
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      G1EvacStats* stats = _g1h->alloc_buffer_stats(state);
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      buf->flush_and_retire_stats(stats);
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      stats->add_direct_allocated(_direct_allocated[state]);
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      _direct_allocated[state] = 0;
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    }
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  }
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}
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   325
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void G1DefaultPLABAllocator::waste(size_t& wasted, size_t& undo_wasted) {
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  wasted = 0;
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  undo_wasted = 0;
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  for (uint state = 0; state < InCSetState::Num; state++) {
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    G1PLAB * const buf = _alloc_buffers[state];
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    if (buf != NULL) {
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      wasted += buf->waste();
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      undo_wasted += buf->undo_waste();
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   334
    }
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  }
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}
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G1ArchiveAllocator* G1ArchiveAllocator::create_allocator(G1CollectedHeap* g1h) {
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  // Create the archive allocator, and also enable archive object checking
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  // in mark-sweep, since we will be creating archive regions.
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  G1ArchiveAllocator* result =  new G1ArchiveAllocator(g1h);
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  G1MarkSweep::enable_archive_object_check();
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  return result;
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}
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   345
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   346
bool G1ArchiveAllocator::alloc_new_region() {
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  // Allocate the highest free region in the reserved heap,
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  // and add it to our list of allocated regions. It is marked
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  // archive and added to the old set.
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  HeapRegion* hr = _g1h->alloc_highest_free_region();
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   351
  if (hr == NULL) {
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   352
    return false;
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   353
  }
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  assert(hr->is_empty(), "expected empty region (index %u)", hr->hrm_index());
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  hr->set_archive();
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  _g1h->old_set_add(hr);
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   357
  _g1h->hr_printer()->alloc(hr, G1HRPrinter::Archive);
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  _allocated_regions.append(hr);
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   359
  _allocation_region = hr;
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   360
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  // Set up _bottom and _max to begin allocating in the lowest
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   362
  // min_region_size'd chunk of the allocated G1 region.
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   363
  _bottom = hr->bottom();
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   364
  _max = _bottom + HeapRegion::min_region_size_in_words();
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   365
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  // Tell mark-sweep that objects in this region are not to be marked.
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  G1MarkSweep::set_range_archive(MemRegion(_bottom, HeapRegion::GrainWords), true);
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   368
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   369
  // Since we've modified the old set, call update_sizes.
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   370
  _g1h->g1mm()->update_sizes();
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   371
  return true;
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   372
}
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   373
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   374
HeapWord* G1ArchiveAllocator::archive_mem_allocate(size_t word_size) {
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   375
  assert(word_size != 0, "size must not be zero");
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   376
  if (_allocation_region == NULL) {
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   377
    if (!alloc_new_region()) {
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   378
      return NULL;
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   379
    }
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   380
  }
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   381
  HeapWord* old_top = _allocation_region->top();
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   382
  assert(_bottom >= _allocation_region->bottom(),
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         "inconsistent allocation state: " PTR_FORMAT " < " PTR_FORMAT,
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   384
         p2i(_bottom), p2i(_allocation_region->bottom()));
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   385
  assert(_max <= _allocation_region->end(),
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   386
         "inconsistent allocation state: " PTR_FORMAT " > " PTR_FORMAT,
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   387
         p2i(_max), p2i(_allocation_region->end()));
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   388
  assert(_bottom <= old_top && old_top <= _max,
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   389
         "inconsistent allocation state: expected "
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   390
         PTR_FORMAT " <= " PTR_FORMAT " <= " PTR_FORMAT,
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   391
         p2i(_bottom), p2i(old_top), p2i(_max));
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   392
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   393
  // Allocate the next word_size words in the current allocation chunk.
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   394
  // If allocation would cross the _max boundary, insert a filler and begin
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   395
  // at the base of the next min_region_size'd chunk. Also advance to the next
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   396
  // chunk if we don't yet cross the boundary, but the remainder would be too
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   397
  // small to fill.
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   398
  HeapWord* new_top = old_top + word_size;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   399
  size_t remainder = pointer_delta(_max, new_top);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   400
  if ((new_top > _max) ||
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   401
      ((new_top < _max) && (remainder < CollectedHeap::min_fill_size()))) {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   402
    if (old_top != _max) {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   403
      size_t fill_size = pointer_delta(_max, old_top);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   404
      CollectedHeap::fill_with_object(old_top, fill_size);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   405
      _summary_bytes_used += fill_size * HeapWordSize;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   406
    }
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   407
    _allocation_region->set_top(_max);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   408
    old_top = _bottom = _max;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   409
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   410
    // Check if we've just used up the last min_region_size'd chunk
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   411
    // in the current region, and if so, allocate a new one.
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   412
    if (_bottom != _allocation_region->end()) {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   413
      _max = _bottom + HeapRegion::min_region_size_in_words();
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   414
    } else {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   415
      if (!alloc_new_region()) {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   416
        return NULL;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   417
      }
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   418
      old_top = _allocation_region->bottom();
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   419
    }
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   420
  }
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   421
  _allocation_region->set_top(old_top + word_size);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   422
  _summary_bytes_used += word_size * HeapWordSize;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   423
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   424
  return old_top;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   425
}
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   426
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   427
void G1ArchiveAllocator::complete_archive(GrowableArray<MemRegion>* ranges,
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   428
                                          size_t end_alignment_in_bytes) {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   429
  assert((end_alignment_in_bytes >> LogHeapWordSize) < HeapRegion::min_region_size_in_words(),
33105
294e48b4f704 8080775: Better argument formatting for assert() and friends
david
parents: 32589
diff changeset
   430
         "alignment " SIZE_FORMAT " too large", end_alignment_in_bytes);
31346
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   431
  assert(is_size_aligned(end_alignment_in_bytes, HeapWordSize),
33105
294e48b4f704 8080775: Better argument formatting for assert() and friends
david
parents: 32589
diff changeset
   432
         "alignment " SIZE_FORMAT " is not HeapWord (%u) aligned", end_alignment_in_bytes, HeapWordSize);
31346
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   433
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   434
  // If we've allocated nothing, simply return.
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   435
  if (_allocation_region == NULL) {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   436
    return;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   437
  }
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   438
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   439
  // If an end alignment was requested, insert filler objects.
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   440
  if (end_alignment_in_bytes != 0) {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   441
    HeapWord* currtop = _allocation_region->top();
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   442
    HeapWord* newtop = (HeapWord*)align_pointer_up(currtop, end_alignment_in_bytes);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   443
    size_t fill_size = pointer_delta(newtop, currtop);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   444
    if (fill_size != 0) {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   445
      if (fill_size < CollectedHeap::min_fill_size()) {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   446
        // If the required fill is smaller than we can represent,
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   447
        // bump up to the next aligned address. We know we won't exceed the current
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   448
        // region boundary because the max supported alignment is smaller than the min
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   449
        // region size, and because the allocation code never leaves space smaller than
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   450
        // the min_fill_size at the top of the current allocation region.
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   451
        newtop = (HeapWord*)align_pointer_up(currtop + CollectedHeap::min_fill_size(),
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   452
                                             end_alignment_in_bytes);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   453
        fill_size = pointer_delta(newtop, currtop);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   454
      }
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   455
      HeapWord* fill = archive_mem_allocate(fill_size);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   456
      CollectedHeap::fill_with_objects(fill, fill_size);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   457
    }
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   458
  }
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   459
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   460
  // Loop through the allocated regions, and create MemRegions summarizing
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   461
  // the allocated address range, combining contiguous ranges. Add the
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   462
  // MemRegions to the GrowableArray provided by the caller.
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   463
  int index = _allocated_regions.length() - 1;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   464
  assert(_allocated_regions.at(index) == _allocation_region,
33105
294e48b4f704 8080775: Better argument formatting for assert() and friends
david
parents: 32589
diff changeset
   465
         "expected region %u at end of array, found %u",
294e48b4f704 8080775: Better argument formatting for assert() and friends
david
parents: 32589
diff changeset
   466
         _allocation_region->hrm_index(), _allocated_regions.at(index)->hrm_index());
31346
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   467
  HeapWord* base_address = _allocation_region->bottom();
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   468
  HeapWord* top = base_address;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   469
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   470
  while (index >= 0) {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   471
    HeapRegion* next = _allocated_regions.at(index);
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   472
    HeapWord* new_base = next->bottom();
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   473
    HeapWord* new_top = next->top();
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   474
    if (new_base != top) {
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   475
      ranges->append(MemRegion(base_address, pointer_delta(top, base_address)));
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   476
      base_address = new_base;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   477
    }
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   478
    top = new_top;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   479
    index = index - 1;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   480
  }
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   481
33105
294e48b4f704 8080775: Better argument formatting for assert() and friends
david
parents: 32589
diff changeset
   482
  assert(top != base_address, "zero-sized range, address " PTR_FORMAT, p2i(base_address));
31346
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   483
  ranges->append(MemRegion(base_address, pointer_delta(top, base_address)));
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   484
  _allocated_regions.clear();
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   485
  _allocation_region = NULL;
a70d45c06136 8042668: GC Support for shared heap ranges in CDS
jiangli
parents: 31331
diff changeset
   486
};