author | tschatzl |
Tue, 05 Apr 2016 11:22:20 +0200 | |
changeset 37258 | d5fb0ee5e41a |
parent 36572 | bdbf53032b6a |
child 37413 | 2f71679d06dd |
permissions | -rw-r--r-- |
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/* |
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* Copyright (c) 2001, 2016, 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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||
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#ifndef SHARE_VM_GC_G1_G1OOPCLOSURES_INLINE_HPP |
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#define SHARE_VM_GC_G1_G1OOPCLOSURES_INLINE_HPP |
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#include "gc/g1/g1CollectedHeap.hpp" |
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#include "gc/g1/g1ConcurrentMark.inline.hpp" |
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#include "gc/g1/g1OopClosures.hpp" |
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#include "gc/g1/g1ParScanThreadState.inline.hpp" |
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#include "gc/g1/g1RemSet.hpp" |
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#include "gc/g1/g1RemSet.inline.hpp" |
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#include "gc/g1/heapRegion.inline.hpp" |
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#include "gc/g1/heapRegionRemSet.hpp" |
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#include "memory/iterator.inline.hpp" |
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#include "runtime/prefetch.inline.hpp" |
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/* |
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* This really ought to be an inline function, but apparently the C++ |
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* compiler sometimes sees fit to ignore inline declarations. Sigh. |
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*/ |
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template <class T> |
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inline void FilterIntoCSClosure::do_oop_work(T* p) { |
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T heap_oop = oopDesc::load_heap_oop(p); |
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if (!oopDesc::is_null(heap_oop) && |
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_g1->is_in_cset_or_humongous(oopDesc::decode_heap_oop_not_null(heap_oop))) { |
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_oc->do_oop(p); |
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} |
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} |
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template <class T> |
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inline void FilterOutOfRegionClosure::do_oop_nv(T* p) { |
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T heap_oop = oopDesc::load_heap_oop(p); |
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if (!oopDesc::is_null(heap_oop)) { |
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HeapWord* obj_hw = (HeapWord*)oopDesc::decode_heap_oop_not_null(heap_oop); |
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if (obj_hw < _r_bottom || obj_hw >= _r_end) { |
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_oc->do_oop(p); |
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} |
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} |
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} |
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// This closure is applied to the fields of the objects that have just been copied. |
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template <class T> |
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inline void G1ParScanClosure::do_oop_nv(T* p) { |
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T heap_oop = oopDesc::load_heap_oop(p); |
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if (!oopDesc::is_null(heap_oop)) { |
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oop obj = oopDesc::decode_heap_oop_not_null(heap_oop); |
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const InCSetState state = _g1->in_cset_state(obj); |
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if (state.is_in_cset()) { |
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// We're not going to even bother checking whether the object is |
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// already forwarded or not, as this usually causes an immediate |
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// stall. We'll try to prefetch the object (for write, given that |
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// we might need to install the forwarding reference) and we'll |
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// get back to it when pop it from the queue |
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Prefetch::write(obj->mark_addr(), 0); |
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Prefetch::read(obj->mark_addr(), (HeapWordSize*2)); |
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// slightly paranoid test; I'm trying to catch potential |
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// problems before we go into push_on_queue to know where the |
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// problem is coming from |
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assert((obj == oopDesc::load_decode_heap_oop(p)) || |
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(obj->is_forwarded() && |
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obj->forwardee() == oopDesc::load_decode_heap_oop(p)), |
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"p should still be pointing to obj or to its forwardee"); |
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_par_scan_state->push_on_queue(p); |
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} else { |
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if (state.is_humongous()) { |
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_g1->set_humongous_is_live(obj); |
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} else if (state.is_ext()) { |
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_par_scan_state->do_oop_ext(p); |
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} |
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_par_scan_state->update_rs(_from, p, obj); |
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} |
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} |
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} |
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template <class T> |
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inline void G1ParPushHeapRSClosure::do_oop_nv(T* p) { |
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T heap_oop = oopDesc::load_heap_oop(p); |
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if (!oopDesc::is_null(heap_oop)) { |
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oop obj = oopDesc::decode_heap_oop_not_null(heap_oop); |
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const InCSetState state = _g1->in_cset_state(obj); |
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if (state.is_in_cset_or_humongous()) { |
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Prefetch::write(obj->mark_addr(), 0); |
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Prefetch::read(obj->mark_addr(), (HeapWordSize*2)); |
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// Place on the references queue |
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_par_scan_state->push_on_queue(p); |
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} else if (state.is_ext()) { |
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_par_scan_state->do_oop_ext(p); |
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} else { |
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assert(!_g1->obj_in_cs(obj), "checking"); |
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} |
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} |
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} |
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template <class T> |
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inline void G1CMOopClosure::do_oop_nv(T* p) { |
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oop obj = oopDesc::load_decode_heap_oop(p); |
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_task->deal_with_reference(obj); |
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} |
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template <class T> |
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inline void G1RootRegionScanClosure::do_oop_nv(T* p) { |
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T heap_oop = oopDesc::load_heap_oop(p); |
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if (!oopDesc::is_null(heap_oop)) { |
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oop obj = oopDesc::decode_heap_oop_not_null(heap_oop); |
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HeapRegion* hr = _g1h->heap_region_containing((HeapWord*) obj); |
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_cm->grayRoot(obj, obj->size(), _worker_id, hr); |
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} |
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} |
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template <class T> |
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inline void G1Mux2Closure::do_oop_work(T* p) { |
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// Apply first closure; then apply the second. |
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_c1->do_oop(p); |
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_c2->do_oop(p); |
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} |
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void G1Mux2Closure::do_oop(oop* p) { do_oop_work(p); } |
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void G1Mux2Closure::do_oop(narrowOop* p) { do_oop_work(p); } |
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template <class T> |
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inline void G1TriggerClosure::do_oop_work(T* p) { |
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// Record that this closure was actually applied (triggered). |
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_triggered = true; |
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} |
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void G1TriggerClosure::do_oop(oop* p) { do_oop_work(p); } |
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void G1TriggerClosure::do_oop(narrowOop* p) { do_oop_work(p); } |
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154 |
|
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template <class T> |
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inline void G1InvokeIfNotTriggeredClosure::do_oop_work(T* p) { |
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if (!_trigger_cl->triggered()) { |
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_oop_cl->do_oop(p); |
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} |
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} |
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void G1InvokeIfNotTriggeredClosure::do_oop(oop* p) { do_oop_work(p); } |
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void G1InvokeIfNotTriggeredClosure::do_oop(narrowOop* p) { do_oop_work(p); } |
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163 |
|
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template <class T> |
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inline void G1UpdateRSOrPushRefOopClosure::do_oop_work(T* p) { |
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oop obj = oopDesc::load_decode_heap_oop(p); |
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if (obj == NULL) { |
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return; |
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} |
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170 |
|
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#ifdef ASSERT |
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// can't do because of races |
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// assert(obj == NULL || obj->is_oop(), "expected an oop"); |
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assert(check_obj_alignment(obj), "not oop aligned"); |
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assert(_g1->is_in_reserved(obj), "must be in heap"); |
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#endif // ASSERT |
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|
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assert(_from != NULL, "from region must be non-NULL"); |
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assert(_from->is_in_reserved(p) || |
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(_from->is_humongous() && |
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_g1->heap_region_containing(p)->is_humongous() && |
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_from->humongous_start_region() == _g1->heap_region_containing(p)->humongous_start_region()), |
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"p " PTR_FORMAT " is not in the same region %u or part of the correct humongous object starting at region %u.", |
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p2i(p), _from->hrm_index(), _from->humongous_start_region()->hrm_index()); |
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185 |
|
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HeapRegion* to = _g1->heap_region_containing(obj); |
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if (_from == to) { |
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// Normally this closure should only be called with cross-region references. |
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// But since Java threads are manipulating the references concurrently and we |
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// reload the values things may have changed. |
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// Also this check lets slip through references from a humongous continues region |
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// to its humongous start region, as they are in different regions, and adds a |
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// remembered set entry. This is benign (apart from memory usage), as we never |
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// try to either evacuate or eager reclaim these kind of regions. |
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return; |
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} |
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197 |
|
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// The _record_refs_into_cset flag is true during the RSet |
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// updating part of an evacuation pause. It is false at all |
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// other times: |
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// * rebuilding the remembered sets after a full GC |
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// * during concurrent refinement. |
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// * updating the remembered sets of regions in the collection |
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// set in the event of an evacuation failure (when deferred |
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// updates are enabled). |
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|
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if (_record_refs_into_cset && to->in_collection_set()) { |
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// We are recording references that point into the collection |
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// set and this particular reference does exactly that... |
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// If the referenced object has already been forwarded |
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// to itself, we are handling an evacuation failure and |
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// we have already visited/tried to copy this object |
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// there is no need to retry. |
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if (!self_forwarded(obj)) { |
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assert(_push_ref_cl != NULL, "should not be null"); |
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// Push the reference in the refs queue of the G1ParScanThreadState |
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// instance for this worker thread. |
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_push_ref_cl->do_oop(p); |
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219 |
} |
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220 |
|
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// Deferred updates to the CSet are either discarded (in the normal case), |
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// or processed (if an evacuation failure occurs) at the end |
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// of the collection. |
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// See G1RemSet::cleanup_after_oops_into_collection_set_do(). |
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} else { |
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// We either don't care about pushing references that point into the |
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// collection set (i.e. we're not during an evacuation pause) _or_ |
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228 |
// the reference doesn't point into the collection set. Either way |
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// we add the reference directly to the RSet of the region containing |
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// the referenced object. |
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231 |
assert(to->rem_set() != NULL, "Need per-region 'into' remsets."); |
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232 |
to->rem_set()->add_reference(p, _worker_i); |
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233 |
} |
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234 |
} |
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235 |
void G1UpdateRSOrPushRefOopClosure::do_oop(oop* p) { do_oop_work(p); } |
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void G1UpdateRSOrPushRefOopClosure::do_oop(narrowOop* p) { do_oop_work(p); } |
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237 |
|
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238 |
template <class T> |
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void G1ParCopyHelper::do_klass_barrier(T* p, oop new_obj) { |
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if (_g1->heap_region_containing(new_obj)->is_young()) { |
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241 |
_scanned_klass->record_modified_oops(); |
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} |
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} |
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|
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void G1ParCopyHelper::mark_object(oop obj) { |
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assert(!_g1->heap_region_containing(obj)->in_collection_set(), "should not mark objects in the CSet"); |
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247 |
|
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// We know that the object is not moving so it's safe to read its size. |
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249 |
_cm->grayRoot(obj, (size_t) obj->size(), _worker_id); |
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250 |
} |
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251 |
|
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252 |
void G1ParCopyHelper::mark_forwarded_object(oop from_obj, oop to_obj) { |
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253 |
assert(from_obj->is_forwarded(), "from obj should be forwarded"); |
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254 |
assert(from_obj->forwardee() == to_obj, "to obj should be the forwardee"); |
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255 |
assert(from_obj != to_obj, "should not be self-forwarded"); |
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256 |
|
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257 |
assert(_g1->heap_region_containing(from_obj)->in_collection_set(), "from obj should be in the CSet"); |
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assert(!_g1->heap_region_containing(to_obj)->in_collection_set(), "should not mark objects in the CSet"); |
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259 |
|
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260 |
// The object might be in the process of being copied by another |
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261 |
// worker so we cannot trust that its to-space image is |
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262 |
// well-formed. So we have to read its size from its from-space |
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// image which we know should not be changing. |
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_cm->grayRoot(to_obj, (size_t) from_obj->size(), _worker_id); |
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} |
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template <G1Barrier barrier, G1Mark do_mark_object, bool use_ext> |
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template <class T> |
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void G1ParCopyClosure<barrier, do_mark_object, use_ext>::do_oop_work(T* p) { |
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T heap_oop = oopDesc::load_heap_oop(p); |
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|
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if (oopDesc::is_null(heap_oop)) { |
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return; |
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} |
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|
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oop obj = oopDesc::decode_heap_oop_not_null(heap_oop); |
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|
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assert(_worker_id == _par_scan_state->worker_id(), "sanity"); |
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|
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const InCSetState state = _g1->in_cset_state(obj); |
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if (state.is_in_cset()) { |
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oop forwardee; |
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markOop m = obj->mark(); |
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if (m->is_marked()) { |
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forwardee = (oop) m->decode_pointer(); |
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} else { |
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forwardee = _par_scan_state->copy_to_survivor_space(state, obj, m); |
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} |
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assert(forwardee != NULL, "forwardee should not be NULL"); |
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oopDesc::encode_store_heap_oop(p, forwardee); |
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if (do_mark_object != G1MarkNone && forwardee != obj) { |
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// If the object is self-forwarded we don't need to explicitly |
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// mark it, the evacuation failure protocol will do so. |
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mark_forwarded_object(obj, forwardee); |
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} |
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if (barrier == G1BarrierKlass) { |
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do_klass_barrier(p, forwardee); |
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} |
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} else { |
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if (state.is_humongous()) { |
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_g1->set_humongous_is_live(obj); |
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} |
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if (use_ext && state.is_ext()) { |
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_par_scan_state->do_oop_ext(p); |
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} |
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// The object is not in collection set. If we're a root scanning |
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// closure during an initial mark pause then attempt to mark the object. |
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if (do_mark_object == G1MarkFromRoot) { |
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mark_object(obj); |
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} |
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} |
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} |
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#endif // SHARE_VM_GC_G1_G1OOPCLOSURES_INLINE_HPP |