src/share/vm/gc_implementation/g1/g1EvacFailure.hpp

Mon, 07 Jul 2014 10:12:40 +0200

author
stefank
date
Mon, 07 Jul 2014 10:12:40 +0200
changeset 6992
2c6ef90f030a
parent 6198
55fb97c4c58d
child 7005
e0954897238a
permissions
-rw-r--r--

8049421: G1 Class Unloading after completing a concurrent mark cycle
Reviewed-by: tschatzl, ehelin, brutisso, coleenp, roland, iveresov
Contributed-by: stefan.karlsson@oracle.com, mikael.gerdin@oracle.com

johnc@3412 1 /*
mikael@6198 2 * Copyright (c) 2012, 2013, Oracle and/or its affiliates. All rights reserved.
johnc@3412 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
johnc@3412 4 *
johnc@3412 5 * This code is free software; you can redistribute it and/or modify it
johnc@3412 6 * under the terms of the GNU General Public License version 2 only, as
johnc@3412 7 * published by the Free Software Foundation.
johnc@3412 8 *
johnc@3412 9 * This code is distributed in the hope that it will be useful, but WITHOUT
johnc@3412 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
johnc@3412 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
johnc@3412 12 * version 2 for more details (a copy is included in the LICENSE file that
johnc@3412 13 * accompanied this code).
johnc@3412 14 *
johnc@3412 15 * You should have received a copy of the GNU General Public License version
johnc@3412 16 * 2 along with this work; if not, write to the Free Software Foundation,
johnc@3412 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
johnc@3412 18 *
johnc@3412 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
johnc@3412 20 * or visit www.oracle.com if you need additional information or have any
johnc@3412 21 * questions.
johnc@3412 22 *
johnc@3412 23 */
johnc@3412 24
johnc@3412 25 #ifndef SHARE_VM_GC_IMPLEMENTATION_G1_G1EVACFAILURE_HPP
johnc@3412 26 #define SHARE_VM_GC_IMPLEMENTATION_G1_G1EVACFAILURE_HPP
johnc@3412 27
johnc@3412 28 #include "gc_implementation/g1/concurrentMark.inline.hpp"
johnc@3412 29 #include "gc_implementation/g1/dirtyCardQueue.hpp"
johnc@3412 30 #include "gc_implementation/g1/g1CollectedHeap.inline.hpp"
johnc@3412 31 #include "gc_implementation/g1/g1_globals.hpp"
johnc@3412 32 #include "gc_implementation/g1/g1OopClosures.inline.hpp"
johnc@3412 33 #include "gc_implementation/g1/heapRegion.hpp"
johnc@3412 34 #include "gc_implementation/g1/heapRegionRemSet.hpp"
johnc@3412 35 #include "utilities/workgroup.hpp"
johnc@3412 36
johnc@3412 37 // Closures and tasks associated with any self-forwarding pointers
johnc@3412 38 // installed as a result of an evacuation failure.
johnc@3412 39
johnc@3412 40 class UpdateRSetDeferred : public OopsInHeapRegionClosure {
johnc@3412 41 private:
johnc@3412 42 G1CollectedHeap* _g1;
johnc@3412 43 DirtyCardQueue *_dcq;
mgerdin@5811 44 G1SATBCardTableModRefBS* _ct_bs;
johnc@3412 45
johnc@3412 46 public:
johnc@3412 47 UpdateRSetDeferred(G1CollectedHeap* g1, DirtyCardQueue* dcq) :
mgerdin@5811 48 _g1(g1), _ct_bs(_g1->g1_barrier_set()), _dcq(dcq) {}
johnc@3412 49
johnc@3412 50 virtual void do_oop(narrowOop* p) { do_oop_work(p); }
johnc@3412 51 virtual void do_oop( oop* p) { do_oop_work(p); }
johnc@3412 52 template <class T> void do_oop_work(T* p) {
johnc@3412 53 assert(_from->is_in_reserved(p), "paranoia");
johnc@3412 54 if (!_from->is_in_reserved(oopDesc::load_decode_heap_oop(p)) &&
johnc@3412 55 !_from->is_survivor()) {
johnc@3412 56 size_t card_index = _ct_bs->index_for(p);
johnc@3412 57 if (_ct_bs->mark_card_deferred(card_index)) {
johnc@3412 58 _dcq->enqueue((jbyte*)_ct_bs->byte_for_index(card_index));
johnc@3412 59 }
johnc@3412 60 }
johnc@3412 61 }
johnc@3412 62 };
johnc@3412 63
johnc@3412 64 class RemoveSelfForwardPtrObjClosure: public ObjectClosure {
johnc@3412 65 private:
johnc@3412 66 G1CollectedHeap* _g1;
johnc@3412 67 ConcurrentMark* _cm;
johnc@3412 68 HeapRegion* _hr;
tonyp@3416 69 size_t _marked_bytes;
johnc@3412 70 OopsInHeapRegionClosure *_update_rset_cl;
tonyp@3416 71 bool _during_initial_mark;
tonyp@3416 72 bool _during_conc_mark;
johnc@3463 73 uint _worker_id;
stefank@6992 74 HeapWord* _end_of_last_gap;
stefank@6992 75 HeapWord* _last_gap_threshold;
stefank@6992 76 HeapWord* _last_obj_threshold;
johnc@3463 77
johnc@3412 78 public:
johnc@3412 79 RemoveSelfForwardPtrObjClosure(G1CollectedHeap* g1, ConcurrentMark* cm,
johnc@3412 80 HeapRegion* hr,
tonyp@3416 81 OopsInHeapRegionClosure* update_rset_cl,
tonyp@3416 82 bool during_initial_mark,
johnc@3463 83 bool during_conc_mark,
johnc@3463 84 uint worker_id) :
tonyp@3416 85 _g1(g1), _cm(cm), _hr(hr), _marked_bytes(0),
johnc@3412 86 _update_rset_cl(update_rset_cl),
tonyp@3416 87 _during_initial_mark(during_initial_mark),
johnc@3463 88 _during_conc_mark(during_conc_mark),
stefank@6992 89 _worker_id(worker_id),
stefank@6992 90 _end_of_last_gap(hr->bottom()),
stefank@6992 91 _last_gap_threshold(hr->bottom()),
stefank@6992 92 _last_obj_threshold(hr->bottom()) { }
johnc@3412 93
tonyp@3416 94 size_t marked_bytes() { return _marked_bytes; }
johnc@3412 95
johnc@3412 96 // <original comment>
johnc@3412 97 // The original idea here was to coalesce evacuated and dead objects.
johnc@3412 98 // However that caused complications with the block offset table (BOT).
johnc@3412 99 // In particular if there were two TLABs, one of them partially refined.
johnc@3412 100 // |----- TLAB_1--------|----TLAB_2-~~~(partially refined part)~~~|
johnc@3412 101 // The BOT entries of the unrefined part of TLAB_2 point to the start
johnc@3412 102 // of TLAB_2. If the last object of the TLAB_1 and the first object
johnc@3412 103 // of TLAB_2 are coalesced, then the cards of the unrefined part
johnc@3412 104 // would point into middle of the filler object.
johnc@3412 105 // The current approach is to not coalesce and leave the BOT contents intact.
johnc@3412 106 // </original comment>
johnc@3412 107 //
johnc@3412 108 // We now reset the BOT when we start the object iteration over the
johnc@3412 109 // region and refine its entries for every object we come across. So
johnc@3412 110 // the above comment is not really relevant and we should be able
johnc@3412 111 // to coalesce dead objects if we want to.
johnc@3412 112 void do_object(oop obj) {
johnc@3412 113 HeapWord* obj_addr = (HeapWord*) obj;
johnc@3412 114 assert(_hr->is_in(obj_addr), "sanity");
johnc@3412 115 size_t obj_size = obj->size();
stefank@6992 116 HeapWord* obj_end = obj_addr + obj_size;
stefank@6992 117
stefank@6992 118 if (_end_of_last_gap != obj_addr) {
stefank@6992 119 // there was a gap before obj_addr
stefank@6992 120 _last_gap_threshold = _hr->cross_threshold(_end_of_last_gap, obj_addr);
stefank@6992 121 }
johnc@3412 122
johnc@3412 123 if (obj->is_forwarded() && obj->forwardee() == obj) {
johnc@3412 124 // The object failed to move.
tonyp@3416 125
tonyp@3416 126 // We consider all objects that we find self-forwarded to be
tonyp@3416 127 // live. What we'll do is that we'll update the prev marking
tonyp@3416 128 // info so that they are all under PTAMS and explicitly marked.
stefank@6992 129 if (!_cm->isPrevMarked(obj)) {
stefank@6992 130 _cm->markPrev(obj);
stefank@6992 131 }
tonyp@3416 132 if (_during_initial_mark) {
tonyp@3416 133 // For the next marking info we'll only mark the
tonyp@3416 134 // self-forwarded objects explicitly if we are during
tonyp@3416 135 // initial-mark (since, normally, we only mark objects pointed
tonyp@3416 136 // to by roots if we succeed in copying them). By marking all
tonyp@3416 137 // self-forwarded objects we ensure that we mark any that are
tonyp@3416 138 // still pointed to be roots. During concurrent marking, and
tonyp@3416 139 // after initial-mark, we don't need to mark any objects
tonyp@3416 140 // explicitly and all objects in the CSet are considered
tonyp@3416 141 // (implicitly) live. So, we won't mark them explicitly and
tonyp@3416 142 // we'll leave them over NTAMS.
tonyp@3464 143 _cm->grayRoot(obj, obj_size, _worker_id, _hr);
johnc@3412 144 }
tonyp@3416 145 _marked_bytes += (obj_size * HeapWordSize);
johnc@3412 146 obj->set_mark(markOopDesc::prototype());
johnc@3412 147
johnc@3412 148 // While we were processing RSet buffers during the collection,
johnc@3412 149 // we actually didn't scan any cards on the collection set,
johnc@3412 150 // since we didn't want to update remembered sets with entries
johnc@3412 151 // that point into the collection set, given that live objects
johnc@3412 152 // from the collection set are about to move and such entries
johnc@3412 153 // will be stale very soon.
johnc@3412 154 // This change also dealt with a reliability issue which
johnc@3412 155 // involved scanning a card in the collection set and coming
johnc@3412 156 // across an array that was being chunked and looking malformed.
johnc@3412 157 // The problem is that, if evacuation fails, we might have
johnc@3412 158 // remembered set entries missing given that we skipped cards on
johnc@3412 159 // the collection set. So, we'll recreate such entries now.
johnc@3412 160 obj->oop_iterate(_update_rset_cl);
johnc@3412 161 } else {
stefank@6992 162
johnc@3412 163 // The object has been either evacuated or is dead. Fill it with a
johnc@3412 164 // dummy object.
stefank@6992 165 MemRegion mr(obj_addr, obj_size);
johnc@3412 166 CollectedHeap::fill_with_object(mr);
stefank@6992 167
stefank@6992 168 // must nuke all dead objects which we skipped when iterating over the region
stefank@6992 169 _cm->clearRangePrevBitmap(MemRegion(_end_of_last_gap, obj_end));
johnc@3412 170 }
stefank@6992 171 _end_of_last_gap = obj_end;
stefank@6992 172 _last_obj_threshold = _hr->cross_threshold(obj_addr, obj_end);
johnc@3412 173 }
johnc@3412 174 };
johnc@3412 175
johnc@3412 176 class RemoveSelfForwardPtrHRClosure: public HeapRegionClosure {
johnc@3412 177 G1CollectedHeap* _g1h;
johnc@3412 178 ConcurrentMark* _cm;
johnc@3412 179 OopsInHeapRegionClosure *_update_rset_cl;
johnc@3463 180 uint _worker_id;
johnc@3412 181
johnc@3412 182 public:
johnc@3412 183 RemoveSelfForwardPtrHRClosure(G1CollectedHeap* g1h,
johnc@3463 184 OopsInHeapRegionClosure* update_rset_cl,
johnc@3463 185 uint worker_id) :
johnc@3412 186 _g1h(g1h), _update_rset_cl(update_rset_cl),
johnc@3463 187 _worker_id(worker_id), _cm(_g1h->concurrent_mark()) { }
johnc@3412 188
johnc@3412 189 bool doHeapRegion(HeapRegion *hr) {
tonyp@3416 190 bool during_initial_mark = _g1h->g1_policy()->during_initial_mark_pause();
tonyp@3416 191 bool during_conc_mark = _g1h->mark_in_progress();
tonyp@3416 192
johnc@3412 193 assert(!hr->isHumongous(), "sanity");
johnc@3412 194 assert(hr->in_collection_set(), "bad CS");
johnc@3412 195
johnc@3412 196 if (hr->claimHeapRegion(HeapRegion::ParEvacFailureClaimValue)) {
johnc@3412 197 if (hr->evacuation_failed()) {
tonyp@3416 198 RemoveSelfForwardPtrObjClosure rspc(_g1h, _cm, hr, _update_rset_cl,
tonyp@3416 199 during_initial_mark,
johnc@3463 200 during_conc_mark,
johnc@3463 201 _worker_id);
tonyp@3416 202
tonyp@3416 203 hr->note_self_forwarding_removal_start(during_initial_mark,
tonyp@3416 204 during_conc_mark);
johnc@3412 205
johnc@3412 206 // In the common case (i.e. when there is no evacuation
johnc@3412 207 // failure) we make sure that the following is done when
johnc@3412 208 // the region is freed so that it is "ready-to-go" when it's
johnc@3412 209 // re-allocated. However, when evacuation failure happens, a
johnc@3412 210 // region will remain in the heap and might ultimately be added
johnc@3412 211 // to a CSet in the future. So we have to be careful here and
johnc@3412 212 // make sure the region's RSet is ready for parallel iteration
johnc@3412 213 // whenever this might be required in the future.
johnc@3412 214 hr->rem_set()->reset_for_par_iteration();
johnc@3412 215 hr->reset_bot();
johnc@3412 216 _update_rset_cl->set_region(hr);
johnc@3412 217 hr->object_iterate(&rspc);
johnc@3412 218
tonyp@3416 219 hr->note_self_forwarding_removal_end(during_initial_mark,
tonyp@3416 220 during_conc_mark,
tonyp@3416 221 rspc.marked_bytes());
johnc@3412 222 }
johnc@3412 223 }
johnc@3412 224 return false;
johnc@3412 225 }
johnc@3412 226 };
johnc@3412 227
johnc@3412 228 class G1ParRemoveSelfForwardPtrsTask: public AbstractGangTask {
johnc@3412 229 protected:
johnc@3412 230 G1CollectedHeap* _g1h;
johnc@3412 231
johnc@3412 232 public:
johnc@3412 233 G1ParRemoveSelfForwardPtrsTask(G1CollectedHeap* g1h) :
johnc@3412 234 AbstractGangTask("G1 Remove Self-forwarding Pointers"),
johnc@3412 235 _g1h(g1h) { }
johnc@3412 236
johnc@3412 237 void work(uint worker_id) {
johnc@3412 238 UpdateRSetImmediate immediate_update(_g1h->g1_rem_set());
johnc@3412 239 DirtyCardQueue dcq(&_g1h->dirty_card_queue_set());
johnc@3412 240 UpdateRSetDeferred deferred_update(_g1h, &dcq);
johnc@3412 241
johnc@3412 242 OopsInHeapRegionClosure *update_rset_cl = &deferred_update;
johnc@3412 243 if (!G1DeferredRSUpdate) {
johnc@3412 244 update_rset_cl = &immediate_update;
johnc@3412 245 }
johnc@3412 246
johnc@3463 247 RemoveSelfForwardPtrHRClosure rsfp_cl(_g1h, update_rset_cl, worker_id);
johnc@3412 248
johnc@3412 249 HeapRegion* hr = _g1h->start_cset_region_for_worker(worker_id);
johnc@3412 250 _g1h->collection_set_iterate_from(hr, &rsfp_cl);
johnc@3412 251 }
johnc@3412 252 };
johnc@3412 253
johnc@3412 254 #endif // SHARE_VM_GC_IMPLEMENTATION_G1_G1EVACFAILURE_HPP

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