src/hotspot/share/gc/g1/heapRegionSet.cpp
author tschatzl
Wed, 08 Aug 2018 15:31:06 +0200
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child 51494 1906adbef2dc
permissions -rw-r--r--
8208669: GC changes to allow enabling -Wreorder Reviewed-by: kbarrett
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/*
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 * Copyright (c) 2011, 2018, 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/g1CollectedHeap.inline.hpp"
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#include "gc/g1/heapRegionRemSet.hpp"
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#include "gc/g1/heapRegionSet.inline.hpp"
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uint FreeRegionList::_unrealistically_long_length = 0;
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#ifndef PRODUCT
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void HeapRegionSetBase::verify_region(HeapRegion* hr) {
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  assert(hr->containing_set() == this, "Inconsistent containing set for %u", hr->hrm_index());
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  assert(!hr->is_young(), "Adding young region %u", hr->hrm_index()); // currently we don't use these sets for young regions
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  assert(hr->is_humongous() == regions_humongous(), "Wrong humongous state for region %u and set %s", hr->hrm_index(), name());
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  assert(hr->is_free() == regions_free(), "Wrong free state for region %u and set %s", hr->hrm_index(), name());
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  assert(!hr->is_free() || hr->is_empty(), "Free region %u is not empty for set %s", hr->hrm_index(), name());
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  assert(!hr->is_empty() || hr->is_free() || hr->is_archive(),
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         "Empty region %u is not free or archive for set %s", hr->hrm_index(), name());
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}
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#endif
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void HeapRegionSetBase::verify() {
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  // It's important that we also observe the MT safety protocol even
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  // for the verification calls. If we do verification without the
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  // appropriate locks and the set changes underneath our feet
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  // verification might fail and send us on a wild goose chase.
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  check_mt_safety();
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  guarantee_heap_region_set(( is_empty() && length() == 0) ||
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                            (!is_empty() && length() > 0),
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                            "invariant");
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}
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void HeapRegionSetBase::verify_start() {
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  // See comment in verify() about MT safety and verification.
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  check_mt_safety();
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  assert_heap_region_set(!_verify_in_progress, "verification should not be in progress");
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  // Do the basic verification first before we do the checks over the regions.
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  HeapRegionSetBase::verify();
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  _verify_in_progress = true;
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}
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void HeapRegionSetBase::verify_end() {
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  // See comment in verify() about MT safety and verification.
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  check_mt_safety();
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  assert_heap_region_set(_verify_in_progress, "verification should be in progress");
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  _verify_in_progress = false;
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}
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void HeapRegionSetBase::print_on(outputStream* out, bool print_contents) {
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  out->cr();
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  out->print_cr("Set: %s (" PTR_FORMAT ")", name(), p2i(this));
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  out->print_cr("  Region Assumptions");
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  out->print_cr("    humongous         : %s", BOOL_TO_STR(regions_humongous()));
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  out->print_cr("    free              : %s", BOOL_TO_STR(regions_free()));
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  out->print_cr("  Attributes");
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  out->print_cr("    length            : %14u", length());
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}
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HeapRegionSetBase::HeapRegionSetBase(const char* name, bool humongous, bool free, HRSMtSafeChecker* mt_safety_checker)
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  : _is_humongous(humongous),
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    _is_free(free),
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    _mt_safety_checker(mt_safety_checker),
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    _length(0),
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    _name(name),
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    _verify_in_progress(false)
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{ }
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void FreeRegionList::set_unrealistically_long_length(uint len) {
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  guarantee(_unrealistically_long_length == 0, "should only be set once");
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  _unrealistically_long_length = len;
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}
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void FreeRegionList::remove_all() {
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  check_mt_safety();
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  verify_optional();
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  HeapRegion* curr = _head;
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  while (curr != NULL) {
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    verify_region(curr);
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    HeapRegion* next = curr->next();
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    curr->set_next(NULL);
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    curr->set_prev(NULL);
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    curr->set_containing_set(NULL);
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    curr = next;
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  }
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  clear();
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  verify_optional();
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}
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void FreeRegionList::add_ordered(FreeRegionList* from_list) {
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  check_mt_safety();
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  from_list->check_mt_safety();
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  verify_optional();
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  from_list->verify_optional();
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  if (from_list->is_empty()) {
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    return;
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  }
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  #ifdef ASSERT
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  FreeRegionListIterator iter(from_list);
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  while (iter.more_available()) {
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    HeapRegion* hr = iter.get_next();
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    // In set_containing_set() we check that we either set the value
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    // from NULL to non-NULL or vice versa to catch bugs. So, we have
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    // to NULL it first before setting it to the value.
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    hr->set_containing_set(NULL);
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    hr->set_containing_set(this);
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  }
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  #endif // ASSERT
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  if (is_empty()) {
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    assert_free_region_list(length() == 0 && _tail == NULL, "invariant");
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    _head = from_list->_head;
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    _tail = from_list->_tail;
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  } else {
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    HeapRegion* curr_to = _head;
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    HeapRegion* curr_from = from_list->_head;
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    while (curr_from != NULL) {
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      while (curr_to != NULL && curr_to->hrm_index() < curr_from->hrm_index()) {
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        curr_to = curr_to->next();
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      }
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      if (curr_to == NULL) {
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        // The rest of the from list should be added as tail
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        _tail->set_next(curr_from);
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        curr_from->set_prev(_tail);
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        curr_from = NULL;
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      } else {
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        HeapRegion* next_from = curr_from->next();
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        curr_from->set_next(curr_to);
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        curr_from->set_prev(curr_to->prev());
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        if (curr_to->prev() == NULL) {
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          _head = curr_from;
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        } else {
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          curr_to->prev()->set_next(curr_from);
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        }
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        curr_to->set_prev(curr_from);
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        curr_from = next_from;
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      }
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    }
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    if (_tail->hrm_index() < from_list->_tail->hrm_index()) {
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      _tail = from_list->_tail;
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    }
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  }
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  _length += from_list->length();
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  from_list->clear();
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  verify_optional();
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  from_list->verify_optional();
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}
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void FreeRegionList::remove_starting_at(HeapRegion* first, uint num_regions) {
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  check_mt_safety();
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  assert_free_region_list(num_regions >= 1, "pre-condition");
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  assert_free_region_list(!is_empty(), "pre-condition");
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  verify_optional();
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  DEBUG_ONLY(uint old_length = length();)
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  HeapRegion* curr = first;
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  uint count = 0;
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  while (count < num_regions) {
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    verify_region(curr);
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    HeapRegion* next = curr->next();
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    HeapRegion* prev = curr->prev();
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    assert(count < num_regions,
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           "[%s] should not come across more regions "
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           "pending for removal than num_regions: %u",
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           name(), num_regions);
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    if (prev == NULL) {
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      assert_free_region_list(_head == curr, "invariant");
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      _head = next;
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    } else {
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      assert_free_region_list(_head != curr, "invariant");
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      prev->set_next(next);
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    }
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    if (next == NULL) {
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      assert_free_region_list(_tail == curr, "invariant");
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      _tail = prev;
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    } else {
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      assert_free_region_list(_tail != curr, "invariant");
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      next->set_prev(prev);
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    }
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    if (_last == curr) {
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      _last = NULL;
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    }
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    curr->set_next(NULL);
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    curr->set_prev(NULL);
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    remove(curr);
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    count++;
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    curr = next;
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  }
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  assert(count == num_regions,
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         "[%s] count: %u should be == num_regions: %u",
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         name(), count, num_regions);
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  assert(length() + num_regions == old_length,
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         "[%s] new length should be consistent "
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         "new length: %u old length: %u num_regions: %u",
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         name(), length(), old_length, num_regions);
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  verify_optional();
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}
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void FreeRegionList::verify() {
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  // See comment in HeapRegionSetBase::verify() about MT safety and
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  // verification.
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  check_mt_safety();
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  // This will also do the basic verification too.
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  verify_start();
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  verify_list();
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  verify_end();
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}
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void FreeRegionList::clear() {
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  _length = 0;
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  _head = NULL;
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  _tail = NULL;
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  _last = NULL;
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}
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void FreeRegionList::verify_list() {
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  HeapRegion* curr = _head;
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  HeapRegion* prev1 = NULL;
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  HeapRegion* prev0 = NULL;
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  uint count = 0;
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  size_t capacity = 0;
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  uint last_index = 0;
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  guarantee(_head == NULL || _head->prev() == NULL, "_head should not have a prev");
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  while (curr != NULL) {
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    verify_region(curr);
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    count++;
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    guarantee(count < _unrealistically_long_length,
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              "[%s] the calculated length: %u seems very long, is there maybe a cycle? curr: " PTR_FORMAT " prev0: " PTR_FORMAT " " "prev1: " PTR_FORMAT " length: %u",
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              name(), count, p2i(curr), p2i(prev0), p2i(prev1), length());
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    if (curr->next() != NULL) {
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      guarantee(curr->next()->prev() == curr, "Next or prev pointers messed up");
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    }
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    guarantee(curr->hrm_index() == 0 || curr->hrm_index() > last_index, "List should be sorted");
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    last_index = curr->hrm_index();
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    capacity += curr->capacity();
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    prev1 = prev0;
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    prev0 = curr;
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    curr = curr->next();
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  }
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  guarantee(_tail == prev0, "Expected %s to end with %u but it ended with %u.", name(), _tail->hrm_index(), prev0->hrm_index());
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  guarantee(_tail == NULL || _tail->next() == NULL, "_tail should not have a next");
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  guarantee(length() == count, "%s count mismatch. Expected %u, actual %u.", name(), length(), count);
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}
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// Note on the check_mt_safety() methods below:
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//
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// Verification of the "master" heap region sets / lists that are
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// maintained by G1CollectedHeap is always done during a STW pause and
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// by the VM thread at the start / end of the pause. The standard
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// verification methods all assert check_mt_safety(). This is
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// important as it ensures that verification is done without
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// concurrent updates taking place at the same time. It follows, that,
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// for the "master" heap region sets / lists, the check_mt_safety()
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// method should include the VM thread / STW case.
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void MasterFreeRegionListMtSafeChecker::check() {
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  // Master Free List MT safety protocol:
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  // (a) If we're at a safepoint, operations on the master free list
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  // should be invoked by either the VM thread (which will serialize
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  // them) or by the GC workers while holding the
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  // FreeList_lock.
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  // (b) If we're not at a safepoint, operations on the master free
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  // list should be invoked while holding the Heap_lock.
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  if (SafepointSynchronize::is_at_safepoint()) {
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    guarantee(Thread::current()->is_VM_thread() ||
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              FreeList_lock->owned_by_self(), "master free list MT safety protocol at a safepoint");
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  } else {
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    guarantee(Heap_lock->owned_by_self(), "master free list MT safety protocol outside a safepoint");
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  }
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}
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void OldRegionSetMtSafeChecker::check() {
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  // Master Old Set MT safety protocol:
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  // (a) If we're at a safepoint, operations on the master old set
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  // should be invoked:
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  // - by the VM thread (which will serialize them), or
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  // - by the GC workers while holding the FreeList_lock, if we're
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  //   at a safepoint for an evacuation pause (this lock is taken
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  //   anyway when an GC alloc region is retired so that a new one
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  //   is allocated from the free list), or
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  // - by the GC workers while holding the OldSets_lock, if we're at a
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  //   safepoint for a cleanup pause.
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  // (b) If we're not at a safepoint, operations on the master old set
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  // should be invoked while holding the Heap_lock.
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  if (SafepointSynchronize::is_at_safepoint()) {
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    guarantee(Thread::current()->is_VM_thread()
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        || FreeList_lock->owned_by_self() || OldSets_lock->owned_by_self(),
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        "master old set MT safety protocol at a safepoint");
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  } else {
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    guarantee(Heap_lock->owned_by_self(), "master old set MT safety protocol outside a safepoint");
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  }
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}
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void HumongousRegionSetMtSafeChecker::check() {
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  // Humongous Set MT safety protocol:
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  // (a) If we're at a safepoint, operations on the master humongous
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  // set should be invoked by either the VM thread (which will
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  // serialize them) or by the GC workers while holding the
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  // OldSets_lock.
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  // (b) If we're not at a safepoint, operations on the master
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  // humongous set should be invoked while holding the Heap_lock.
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  if (SafepointSynchronize::is_at_safepoint()) {
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    guarantee(Thread::current()->is_VM_thread() ||
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              OldSets_lock->owned_by_self(),
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              "master humongous set MT safety protocol at a safepoint");
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  } else {
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    guarantee(Heap_lock->owned_by_self(),
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              "master humongous set MT safety protocol outside a safepoint");
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  }
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}