Mercurial > hg > graal-compiler
annotate src/share/vm/gc_implementation/g1/g1RemSet.cpp @ 4097:dc467e8b2c5e
7112743: G1: Reduce overhead of marking closure during evacuation pauses
Summary: Parallelize the serial code that was used to mark objects reachable from survivor objects in the collection set. Some minor improvments in the timers used to track the freeing of the collection set along with some tweaks to PrintGCDetails.
Reviewed-by: tonyp, brutisso
author | johnc |
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date | Thu, 17 Nov 2011 12:40:15 -0800 |
parents | bca17e38de00 |
children | 441e946dc1af |
rev | line source |
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342 | 1 /* |
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2 * Copyright (c) 2001, 2011, Oracle and/or its affiliates. All rights reserved. |
342 | 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
4 * | |
5 * This code is free software; you can redistribute it and/or modify it | |
6 * under the terms of the GNU General Public License version 2 only, as | |
7 * published by the Free Software Foundation. | |
8 * | |
9 * This code is distributed in the hope that it will be useful, but WITHOUT | |
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
12 * version 2 for more details (a copy is included in the LICENSE file that | |
13 * accompanied this code). | |
14 * | |
15 * You should have received a copy of the GNU General Public License version | |
16 * 2 along with this work; if not, write to the Free Software Foundation, | |
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. | |
18 * | |
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19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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20 * or visit www.oracle.com if you need additional information or have any |
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21 * questions. |
342 | 22 * |
23 */ | |
24 | |
1972 | 25 #include "precompiled.hpp" |
26 #include "gc_implementation/g1/bufferingOopClosure.hpp" | |
27 #include "gc_implementation/g1/concurrentG1Refine.hpp" | |
28 #include "gc_implementation/g1/concurrentG1RefineThread.hpp" | |
29 #include "gc_implementation/g1/g1BlockOffsetTable.inline.hpp" | |
30 #include "gc_implementation/g1/g1CollectedHeap.inline.hpp" | |
31 #include "gc_implementation/g1/g1CollectorPolicy.hpp" | |
32 #include "gc_implementation/g1/g1OopClosures.inline.hpp" | |
33 #include "gc_implementation/g1/g1RemSet.inline.hpp" | |
34 #include "gc_implementation/g1/heapRegionSeq.inline.hpp" | |
35 #include "memory/iterator.hpp" | |
36 #include "oops/oop.inline.hpp" | |
37 #include "utilities/intHisto.hpp" | |
342 | 38 |
39 #define CARD_REPEAT_HISTO 0 | |
40 | |
41 #if CARD_REPEAT_HISTO | |
42 static size_t ct_freq_sz; | |
43 static jbyte* ct_freq = NULL; | |
44 | |
45 void init_ct_freq_table(size_t heap_sz_bytes) { | |
46 if (ct_freq == NULL) { | |
47 ct_freq_sz = heap_sz_bytes/CardTableModRefBS::card_size; | |
48 ct_freq = new jbyte[ct_freq_sz]; | |
49 for (size_t j = 0; j < ct_freq_sz; j++) ct_freq[j] = 0; | |
50 } | |
51 } | |
52 | |
53 void ct_freq_note_card(size_t index) { | |
54 assert(0 <= index && index < ct_freq_sz, "Bounds error."); | |
55 if (ct_freq[index] < 100) { ct_freq[index]++; } | |
56 } | |
57 | |
58 static IntHistogram card_repeat_count(10, 10); | |
59 | |
60 void ct_freq_update_histo_and_reset() { | |
61 for (size_t j = 0; j < ct_freq_sz; j++) { | |
62 card_repeat_count.add_entry(ct_freq[j]); | |
63 ct_freq[j] = 0; | |
64 } | |
65 | |
66 } | |
67 #endif | |
68 | |
1861 | 69 G1RemSet::G1RemSet(G1CollectedHeap* g1, CardTableModRefBS* ct_bs) |
70 : _g1(g1), _conc_refine_cards(0), | |
71 _ct_bs(ct_bs), _g1p(_g1->g1_policy()), | |
342 | 72 _cg1r(g1->concurrent_g1_refine()), |
1705 | 73 _cset_rs_update_cl(NULL), |
342 | 74 _cards_scanned(NULL), _total_cards_scanned(0) |
75 { | |
76 _seq_task = new SubTasksDone(NumSeqTasks); | |
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77 guarantee(n_workers() > 0, "There should be some workers"); |
1705 | 78 _cset_rs_update_cl = NEW_C_HEAP_ARRAY(OopsInHeapRegionClosure*, n_workers()); |
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79 for (uint i = 0; i < n_workers(); i++) { |
1705 | 80 _cset_rs_update_cl[i] = NULL; |
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81 } |
342 | 82 } |
83 | |
1861 | 84 G1RemSet::~G1RemSet() { |
342 | 85 delete _seq_task; |
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86 for (uint i = 0; i < n_workers(); i++) { |
1705 | 87 assert(_cset_rs_update_cl[i] == NULL, "it should be"); |
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88 } |
1705 | 89 FREE_C_HEAP_ARRAY(OopsInHeapRegionClosure*, _cset_rs_update_cl); |
342 | 90 } |
91 | |
92 void CountNonCleanMemRegionClosure::do_MemRegion(MemRegion mr) { | |
93 if (_g1->is_in_g1_reserved(mr.start())) { | |
94 _n += (int) ((mr.byte_size() / CardTableModRefBS::card_size)); | |
95 if (_start_first == NULL) _start_first = mr.start(); | |
96 } | |
97 } | |
98 | |
99 class ScanRSClosure : public HeapRegionClosure { | |
100 size_t _cards_done, _cards; | |
101 G1CollectedHeap* _g1h; | |
102 OopsInHeapRegionClosure* _oc; | |
103 G1BlockOffsetSharedArray* _bot_shared; | |
104 CardTableModRefBS *_ct_bs; | |
105 int _worker_i; | |
1261 | 106 int _block_size; |
342 | 107 bool _try_claimed; |
108 public: | |
109 ScanRSClosure(OopsInHeapRegionClosure* oc, int worker_i) : | |
110 _oc(oc), | |
111 _cards(0), | |
112 _cards_done(0), | |
113 _worker_i(worker_i), | |
114 _try_claimed(false) | |
115 { | |
116 _g1h = G1CollectedHeap::heap(); | |
117 _bot_shared = _g1h->bot_shared(); | |
118 _ct_bs = (CardTableModRefBS*) (_g1h->barrier_set()); | |
1261 | 119 _block_size = MAX2<int>(G1RSetScanBlockSize, 1); |
342 | 120 } |
121 | |
122 void set_try_claimed() { _try_claimed = true; } | |
123 | |
124 void scanCard(size_t index, HeapRegion *r) { | |
4023 | 125 // Stack allocate the DirtyCardToOopClosure instance |
126 HeapRegionDCTOC cl(_g1h, r, _oc, | |
127 CardTableModRefBS::Precise, | |
128 HeapRegionDCTOC::IntoCSFilterKind); | |
342 | 129 |
130 // Set the "from" region in the closure. | |
131 _oc->set_region(r); | |
132 HeapWord* card_start = _bot_shared->address_for_index(index); | |
133 HeapWord* card_end = card_start + G1BlockOffsetSharedArray::N_words; | |
134 Space *sp = SharedHeap::heap()->space_containing(card_start); | |
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135 MemRegion sm_region = sp->used_region_at_save_marks(); |
342 | 136 MemRegion mr = sm_region.intersection(MemRegion(card_start,card_end)); |
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137 if (!mr.is_empty() && !_ct_bs->is_card_claimed(index)) { |
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138 // We make the card as "claimed" lazily (so races are possible |
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139 // but they're benign), which reduces the number of duplicate |
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140 // scans (the rsets of the regions in the cset can intersect). |
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141 _ct_bs->set_card_claimed(index); |
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142 _cards_done++; |
4023 | 143 cl.do_MemRegion(mr); |
342 | 144 } |
145 } | |
146 | |
147 void printCard(HeapRegion* card_region, size_t card_index, | |
148 HeapWord* card_start) { | |
149 gclog_or_tty->print_cr("T %d Region [" PTR_FORMAT ", " PTR_FORMAT ") " | |
150 "RS names card %p: " | |
151 "[" PTR_FORMAT ", " PTR_FORMAT ")", | |
152 _worker_i, | |
153 card_region->bottom(), card_region->end(), | |
154 card_index, | |
155 card_start, card_start + G1BlockOffsetSharedArray::N_words); | |
156 } | |
157 | |
158 bool doHeapRegion(HeapRegion* r) { | |
159 assert(r->in_collection_set(), "should only be called on elements of CS."); | |
160 HeapRegionRemSet* hrrs = r->rem_set(); | |
161 if (hrrs->iter_is_complete()) return false; // All done. | |
162 if (!_try_claimed && !hrrs->claim_iter()) return false; | |
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163 // If we ever free the collection set concurrently, we should also |
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164 // clear the card table concurrently therefore we won't need to |
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165 // add regions of the collection set to the dirty cards region. |
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166 _g1h->push_dirty_cards_region(r); |
342 | 167 // If we didn't return above, then |
168 // _try_claimed || r->claim_iter() | |
169 // is true: either we're supposed to work on claimed-but-not-complete | |
170 // regions, or we successfully claimed the region. | |
171 HeapRegionRemSetIterator* iter = _g1h->rem_set_iterator(_worker_i); | |
172 hrrs->init_iterator(iter); | |
173 size_t card_index; | |
1261 | 174 |
175 // We claim cards in block so as to recude the contention. The block size is determined by | |
176 // the G1RSetScanBlockSize parameter. | |
177 size_t jump_to_card = hrrs->iter_claimed_next(_block_size); | |
178 for (size_t current_card = 0; iter->has_next(card_index); current_card++) { | |
179 if (current_card >= jump_to_card + _block_size) { | |
180 jump_to_card = hrrs->iter_claimed_next(_block_size); | |
747 | 181 } |
1261 | 182 if (current_card < jump_to_card) continue; |
342 | 183 HeapWord* card_start = _g1h->bot_shared()->address_for_index(card_index); |
184 #if 0 | |
185 gclog_or_tty->print("Rem set iteration yielded card [" PTR_FORMAT ", " PTR_FORMAT ").\n", | |
186 card_start, card_start + CardTableModRefBS::card_size_in_words); | |
187 #endif | |
188 | |
189 HeapRegion* card_region = _g1h->heap_region_containing(card_start); | |
190 assert(card_region != NULL, "Yielding cards not in the heap?"); | |
191 _cards++; | |
192 | |
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193 if (!card_region->is_on_dirty_cards_region_list()) { |
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194 _g1h->push_dirty_cards_region(card_region); |
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195 } |
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196 |
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197 // If the card is dirty, then we will scan it during updateRS. |
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198 if (!card_region->in_collection_set() && |
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199 !_ct_bs->is_card_dirty(card_index)) { |
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200 scanCard(card_index, card_region); |
342 | 201 } |
202 } | |
747 | 203 if (!_try_claimed) { |
204 hrrs->set_iter_complete(); | |
205 } | |
342 | 206 return false; |
207 } | |
208 size_t cards_done() { return _cards_done;} | |
209 size_t cards_looked_up() { return _cards;} | |
210 }; | |
211 | |
1861 | 212 void G1RemSet::scanRS(OopsInHeapRegionClosure* oc, int worker_i) { |
342 | 213 double rs_time_start = os::elapsedTime(); |
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214 HeapRegion *startRegion = _g1->start_cset_region_for_worker(worker_i); |
342 | 215 |
1261 | 216 ScanRSClosure scanRScl(oc, worker_i); |
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217 |
342 | 218 _g1->collection_set_iterate_from(startRegion, &scanRScl); |
219 scanRScl.set_try_claimed(); | |
220 _g1->collection_set_iterate_from(startRegion, &scanRScl); | |
221 | |
1261 | 222 double scan_rs_time_sec = os::elapsedTime() - rs_time_start; |
342 | 223 |
224 assert( _cards_scanned != NULL, "invariant" ); | |
225 _cards_scanned[worker_i] = scanRScl.cards_done(); | |
226 | |
227 _g1p->record_scan_rs_time(worker_i, scan_rs_time_sec * 1000.0); | |
228 } | |
229 | |
1705 | 230 // Closure used for updating RSets and recording references that |
231 // point into the collection set. Only called during an | |
232 // evacuation pause. | |
233 | |
234 class RefineRecordRefsIntoCSCardTableEntryClosure: public CardTableEntryClosure { | |
235 G1RemSet* _g1rs; | |
236 DirtyCardQueue* _into_cset_dcq; | |
237 public: | |
238 RefineRecordRefsIntoCSCardTableEntryClosure(G1CollectedHeap* g1h, | |
239 DirtyCardQueue* into_cset_dcq) : | |
240 _g1rs(g1h->g1_rem_set()), _into_cset_dcq(into_cset_dcq) | |
241 {} | |
242 bool do_card_ptr(jbyte* card_ptr, int worker_i) { | |
243 // The only time we care about recording cards that | |
244 // contain references that point into the collection set | |
245 // is during RSet updating within an evacuation pause. | |
246 // In this case worker_i should be the id of a GC worker thread. | |
247 assert(SafepointSynchronize::is_at_safepoint(), "not during an evacuation pause"); | |
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248 assert(worker_i < (int) (ParallelGCThreads == 0 ? 1 : ParallelGCThreads), "should be a GC worker"); |
342 | 249 |
1705 | 250 if (_g1rs->concurrentRefineOneCard(card_ptr, worker_i, true)) { |
251 // 'card_ptr' contains references that point into the collection | |
252 // set. We need to record the card in the DCQS | |
253 // (G1CollectedHeap::into_cset_dirty_card_queue_set()) | |
254 // that's used for that purpose. | |
255 // | |
256 // Enqueue the card | |
257 _into_cset_dcq->enqueue(card_ptr); | |
258 } | |
259 return true; | |
260 } | |
261 }; | |
262 | |
1861 | 263 void G1RemSet::updateRS(DirtyCardQueue* into_cset_dcq, int worker_i) { |
342 | 264 double start = os::elapsedTime(); |
1705 | 265 // Apply the given closure to all remaining log entries. |
266 RefineRecordRefsIntoCSCardTableEntryClosure into_cset_update_rs_cl(_g1, into_cset_dcq); | |
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267 |
1705 | 268 _g1->iterate_dirty_card_closure(&into_cset_update_rs_cl, into_cset_dcq, false, worker_i); |
269 | |
794 | 270 // Now there should be no dirty cards. |
271 if (G1RSLogCheckCardTable) { | |
272 CountNonCleanMemRegionClosure cl(_g1); | |
273 _ct_bs->mod_card_iterate(&cl); | |
274 // XXX This isn't true any more: keeping cards of young regions | |
275 // marked dirty broke it. Need some reasonable fix. | |
276 guarantee(cl.n() == 0, "Card table should be clean."); | |
342 | 277 } |
794 | 278 |
342 | 279 _g1p->record_update_rs_time(worker_i, (os::elapsedTime() - start) * 1000.0); |
280 } | |
281 | |
282 class CountRSSizeClosure: public HeapRegionClosure { | |
283 size_t _n; | |
284 size_t _tot; | |
285 size_t _max; | |
286 HeapRegion* _max_r; | |
287 enum { | |
288 N = 20, | |
289 MIN = 6 | |
290 }; | |
291 int _histo[N]; | |
292 public: | |
293 CountRSSizeClosure() : _n(0), _tot(0), _max(0), _max_r(NULL) { | |
294 for (int i = 0; i < N; i++) _histo[i] = 0; | |
295 } | |
296 bool doHeapRegion(HeapRegion* r) { | |
297 if (!r->continuesHumongous()) { | |
298 size_t occ = r->rem_set()->occupied(); | |
299 _n++; | |
300 _tot += occ; | |
301 if (occ > _max) { | |
302 _max = occ; | |
303 _max_r = r; | |
304 } | |
305 // Fit it into a histo bin. | |
306 int s = 1 << MIN; | |
307 int i = 0; | |
308 while (occ > (size_t) s && i < (N-1)) { | |
309 s = s << 1; | |
310 i++; | |
311 } | |
312 _histo[i]++; | |
313 } | |
314 return false; | |
315 } | |
316 size_t n() { return _n; } | |
317 size_t tot() { return _tot; } | |
318 size_t mx() { return _max; } | |
319 HeapRegion* mxr() { return _max_r; } | |
320 void print_histo() { | |
321 int mx = N; | |
322 while (mx >= 0) { | |
323 if (_histo[mx-1] > 0) break; | |
324 mx--; | |
325 } | |
326 gclog_or_tty->print_cr("Number of regions with given RS sizes:"); | |
327 gclog_or_tty->print_cr(" <= %8d %8d", 1 << MIN, _histo[0]); | |
328 for (int i = 1; i < mx-1; i++) { | |
329 gclog_or_tty->print_cr(" %8d - %8d %8d", | |
330 (1 << (MIN + i - 1)) + 1, | |
331 1 << (MIN + i), | |
332 _histo[i]); | |
333 } | |
334 gclog_or_tty->print_cr(" > %8d %8d", (1 << (MIN+mx-2))+1, _histo[mx-1]); | |
335 } | |
336 }; | |
337 | |
1861 | 338 void G1RemSet::cleanupHRRS() { |
342 | 339 HeapRegionRemSet::cleanup(); |
340 } | |
341 | |
1861 | 342 void G1RemSet::oops_into_collection_set_do(OopsInHeapRegionClosure* oc, |
342 | 343 int worker_i) { |
344 #if CARD_REPEAT_HISTO | |
345 ct_freq_update_histo_and_reset(); | |
346 #endif | |
347 if (worker_i == 0) { | |
348 _cg1r->clear_and_record_card_counts(); | |
349 } | |
350 | |
351 // Make this into a command-line flag... | |
352 if (G1RSCountHisto && (ParallelGCThreads == 0 || worker_i == 0)) { | |
353 CountRSSizeClosure count_cl; | |
354 _g1->heap_region_iterate(&count_cl); | |
355 gclog_or_tty->print_cr("Avg of %d RS counts is %f, max is %d, " | |
356 "max region is " PTR_FORMAT, | |
357 count_cl.n(), (float)count_cl.tot()/(float)count_cl.n(), | |
358 count_cl.mx(), count_cl.mxr()); | |
359 count_cl.print_histo(); | |
360 } | |
361 | |
1705 | 362 // We cache the value of 'oc' closure into the appropriate slot in the |
363 // _cset_rs_update_cl for this worker | |
364 assert(worker_i < (int)n_workers(), "sanity"); | |
365 _cset_rs_update_cl[worker_i] = oc; | |
366 | |
367 // A DirtyCardQueue that is used to hold cards containing references | |
368 // that point into the collection set. This DCQ is associated with a | |
369 // special DirtyCardQueueSet (see g1CollectedHeap.hpp). Under normal | |
370 // circumstances (i.e. the pause successfully completes), these cards | |
371 // are just discarded (there's no need to update the RSets of regions | |
372 // that were in the collection set - after the pause these regions | |
373 // are wholly 'free' of live objects. In the event of an evacuation | |
374 // failure the cards/buffers in this queue set are: | |
375 // * passed to the DirtyCardQueueSet that is used to manage deferred | |
376 // RSet updates, or | |
377 // * scanned for references that point into the collection set | |
378 // and the RSet of the corresponding region in the collection set | |
379 // is updated immediately. | |
380 DirtyCardQueue into_cset_dcq(&_g1->into_cset_dirty_card_queue_set()); | |
381 | |
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382 assert((ParallelGCThreads > 0) || worker_i == 0, "invariant"); |
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383 |
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384 // The two flags below were introduced temporarily to serialize |
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385 // the updating and scanning of remembered sets. There are some |
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386 // race conditions when these two operations are done in parallel |
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387 // and they are causing failures. When we resolve said race |
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388 // conditions, we'll revert back to parallel remembered set |
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389 // updating and scanning. See CRs 6677707 and 6677708. |
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390 if (G1UseParallelRSetUpdating || (worker_i == 0)) { |
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391 updateRS(&into_cset_dcq, worker_i); |
342 | 392 } else { |
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393 _g1p->record_update_rs_processed_buffers(worker_i, 0.0); |
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394 _g1p->record_update_rs_time(worker_i, 0.0); |
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395 } |
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396 if (G1UseParallelRSetScanning || (worker_i == 0)) { |
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397 scanRS(oc, worker_i); |
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398 } else { |
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399 _g1p->record_scan_rs_time(worker_i, 0.0); |
342 | 400 } |
1705 | 401 |
402 // We now clear the cached values of _cset_rs_update_cl for this worker | |
403 _cset_rs_update_cl[worker_i] = NULL; | |
342 | 404 } |
405 | |
1861 | 406 void G1RemSet::prepare_for_oops_into_collection_set_do() { |
342 | 407 cleanupHRRS(); |
408 ConcurrentG1Refine* cg1r = _g1->concurrent_g1_refine(); | |
409 _g1->set_refine_cte_cl_concurrency(false); | |
410 DirtyCardQueueSet& dcqs = JavaThread::dirty_card_queue_set(); | |
411 dcqs.concatenate_logs(); | |
412 | |
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413 if (G1CollectedHeap::use_parallel_gc_threads()) { |
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414 // Don't set the number of workers here. It will be set |
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415 // when the task is run |
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416 // _seq_task->set_n_termination((int)n_workers()); |
342 | 417 } |
418 guarantee( _cards_scanned == NULL, "invariant" ); | |
419 _cards_scanned = NEW_C_HEAP_ARRAY(size_t, n_workers()); | |
545 | 420 for (uint i = 0; i < n_workers(); ++i) { |
421 _cards_scanned[i] = 0; | |
422 } | |
342 | 423 _total_cards_scanned = 0; |
424 } | |
425 | |
426 | |
1705 | 427 // This closure, applied to a DirtyCardQueueSet, is used to immediately |
428 // update the RSets for the regions in the CSet. For each card it iterates | |
429 // through the oops which coincide with that card. It scans the reference | |
430 // fields in each oop; when it finds an oop that points into the collection | |
431 // set, the RSet for the region containing the referenced object is updated. | |
432 class UpdateRSetCardTableEntryIntoCSetClosure: public CardTableEntryClosure { | |
616
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433 G1CollectedHeap* _g1; |
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434 CardTableModRefBS* _ct_bs; |
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435 public: |
1705 | 436 UpdateRSetCardTableEntryIntoCSetClosure(G1CollectedHeap* g1, |
437 CardTableModRefBS* bs): | |
438 _g1(g1), _ct_bs(bs) | |
439 { } | |
440 | |
441 bool do_card_ptr(jbyte* card_ptr, int worker_i) { | |
442 // Construct the region representing the card. | |
443 HeapWord* start = _ct_bs->addr_for(card_ptr); | |
444 // And find the region containing it. | |
445 HeapRegion* r = _g1->heap_region_containing(start); | |
446 assert(r != NULL, "unexpected null"); | |
447 | |
448 // Scan oops in the card looking for references into the collection set | |
449 HeapWord* end = _ct_bs->addr_for(card_ptr + 1); | |
450 MemRegion scanRegion(start, end); | |
451 | |
452 UpdateRSetImmediate update_rs_cl(_g1->g1_rem_set()); | |
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453 FilterIntoCSClosure update_rs_cset_oop_cl(NULL, _g1, &update_rs_cl); |
1705 | 454 FilterOutOfRegionClosure filter_then_update_rs_cset_oop_cl(r, &update_rs_cset_oop_cl); |
455 | |
456 // We can pass false as the "filter_young" parameter here as: | |
457 // * we should be in a STW pause, | |
458 // * the DCQS to which this closure is applied is used to hold | |
459 // references that point into the collection set from the prior | |
460 // RSet updating, | |
461 // * the post-write barrier shouldn't be logging updates to young | |
462 // regions (but there is a situation where this can happen - see | |
1861 | 463 // the comment in G1RemSet::concurrentRefineOneCard below - |
1705 | 464 // that should not be applicable here), and |
465 // * during actual RSet updating, the filtering of cards in young | |
466 // regions in HeapRegion::oops_on_card_seq_iterate_careful is | |
467 // employed. | |
468 // As a result, when this closure is applied to "refs into cset" | |
469 // DCQS, we shouldn't see any cards in young regions. | |
470 update_rs_cl.set_region(r); | |
471 HeapWord* stop_point = | |
472 r->oops_on_card_seq_iterate_careful(scanRegion, | |
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473 &filter_then_update_rs_cset_oop_cl, |
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474 false /* filter_young */, |
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475 NULL /* card_ptr */); |
1705 | 476 |
477 // Since this is performed in the event of an evacuation failure, we | |
478 // we shouldn't see a non-null stop point | |
479 assert(stop_point == NULL, "saw an unallocated region"); | |
480 return true; | |
616
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481 } |
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482 }; |
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483 |
1861 | 484 void G1RemSet::cleanup_after_oops_into_collection_set_do() { |
342 | 485 guarantee( _cards_scanned != NULL, "invariant" ); |
486 _total_cards_scanned = 0; | |
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487 for (uint i = 0; i < n_workers(); ++i) { |
342 | 488 _total_cards_scanned += _cards_scanned[i]; |
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489 } |
342 | 490 FREE_C_HEAP_ARRAY(size_t, _cards_scanned); |
491 _cards_scanned = NULL; | |
492 // Cleanup after copy | |
493 _g1->set_refine_cte_cl_concurrency(true); | |
494 // Set all cards back to clean. | |
495 _g1->cleanUpCardTable(); | |
794 | 496 |
1705 | 497 DirtyCardQueueSet& into_cset_dcqs = _g1->into_cset_dirty_card_queue_set(); |
498 int into_cset_n_buffers = into_cset_dcqs.completed_buffers_num(); | |
499 | |
616
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500 if (_g1->evacuation_failed()) { |
1705 | 501 // Restore remembered sets for the regions pointing into the collection set. |
502 | |
616
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503 if (G1DeferredRSUpdate) { |
1705 | 504 // If deferred RS updates are enabled then we just need to transfer |
505 // the completed buffers from (a) the DirtyCardQueueSet used to hold | |
506 // cards that contain references that point into the collection set | |
507 // to (b) the DCQS used to hold the deferred RS updates | |
508 _g1->dirty_card_queue_set().merge_bufferlists(&into_cset_dcqs); | |
616
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509 } else { |
1705 | 510 |
511 CardTableModRefBS* bs = (CardTableModRefBS*)_g1->barrier_set(); | |
512 UpdateRSetCardTableEntryIntoCSetClosure update_rs_cset_immediate(_g1, bs); | |
513 | |
514 int n_completed_buffers = 0; | |
515 while (into_cset_dcqs.apply_closure_to_completed_buffer(&update_rs_cset_immediate, | |
516 0, 0, true)) { | |
517 n_completed_buffers++; | |
518 } | |
519 assert(n_completed_buffers == into_cset_n_buffers, "missed some buffers"); | |
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520 } |
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521 } |
1705 | 522 |
523 // Free any completed buffers in the DirtyCardQueueSet used to hold cards | |
524 // which contain references that point into the collection. | |
525 _g1->into_cset_dirty_card_queue_set().clear(); | |
526 assert(_g1->into_cset_dirty_card_queue_set().completed_buffers_num() == 0, | |
527 "all buffers should be freed"); | |
528 _g1->into_cset_dirty_card_queue_set().clear_n_completed_buffers(); | |
342 | 529 } |
530 | |
531 class ScrubRSClosure: public HeapRegionClosure { | |
532 G1CollectedHeap* _g1h; | |
533 BitMap* _region_bm; | |
534 BitMap* _card_bm; | |
535 CardTableModRefBS* _ctbs; | |
536 public: | |
537 ScrubRSClosure(BitMap* region_bm, BitMap* card_bm) : | |
538 _g1h(G1CollectedHeap::heap()), | |
539 _region_bm(region_bm), _card_bm(card_bm), | |
540 _ctbs(NULL) | |
541 { | |
542 ModRefBarrierSet* bs = _g1h->mr_bs(); | |
543 guarantee(bs->is_a(BarrierSet::CardTableModRef), "Precondition"); | |
544 _ctbs = (CardTableModRefBS*)bs; | |
545 } | |
546 | |
547 bool doHeapRegion(HeapRegion* r) { | |
548 if (!r->continuesHumongous()) { | |
549 r->rem_set()->scrub(_ctbs, _region_bm, _card_bm); | |
550 } | |
551 return false; | |
552 } | |
553 }; | |
554 | |
1861 | 555 void G1RemSet::scrub(BitMap* region_bm, BitMap* card_bm) { |
342 | 556 ScrubRSClosure scrub_cl(region_bm, card_bm); |
557 _g1->heap_region_iterate(&scrub_cl); | |
558 } | |
559 | |
1861 | 560 void G1RemSet::scrub_par(BitMap* region_bm, BitMap* card_bm, |
342 | 561 int worker_num, int claim_val) { |
562 ScrubRSClosure scrub_cl(region_bm, card_bm); | |
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563 _g1->heap_region_par_iterate_chunked(&scrub_cl, |
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564 worker_num, |
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565 (int) n_workers(), |
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566 claim_val); |
342 | 567 } |
568 | |
569 | |
570 static IntHistogram out_of_histo(50, 50); | |
571 | |
1705 | 572 class TriggerClosure : public OopClosure { |
573 bool _trigger; | |
574 public: | |
575 TriggerClosure() : _trigger(false) { } | |
576 bool value() const { return _trigger; } | |
577 template <class T> void do_oop_nv(T* p) { _trigger = true; } | |
578 virtual void do_oop(oop* p) { do_oop_nv(p); } | |
579 virtual void do_oop(narrowOop* p) { do_oop_nv(p); } | |
580 }; | |
581 | |
582 class InvokeIfNotTriggeredClosure: public OopClosure { | |
583 TriggerClosure* _t; | |
584 OopClosure* _oc; | |
585 public: | |
586 InvokeIfNotTriggeredClosure(TriggerClosure* t, OopClosure* oc): | |
587 _t(t), _oc(oc) { } | |
588 template <class T> void do_oop_nv(T* p) { | |
589 if (!_t->value()) _oc->do_oop(p); | |
590 } | |
591 virtual void do_oop(oop* p) { do_oop_nv(p); } | |
592 virtual void do_oop(narrowOop* p) { do_oop_nv(p); } | |
593 }; | |
594 | |
595 class Mux2Closure : public OopClosure { | |
596 OopClosure* _c1; | |
597 OopClosure* _c2; | |
598 public: | |
599 Mux2Closure(OopClosure *c1, OopClosure *c2) : _c1(c1), _c2(c2) { } | |
600 template <class T> void do_oop_nv(T* p) { | |
601 _c1->do_oop(p); _c2->do_oop(p); | |
602 } | |
603 virtual void do_oop(oop* p) { do_oop_nv(p); } | |
604 virtual void do_oop(narrowOop* p) { do_oop_nv(p); } | |
605 }; | |
606 | |
1861 | 607 bool G1RemSet::concurrentRefineOneCard_impl(jbyte* card_ptr, int worker_i, |
1705 | 608 bool check_for_refs_into_cset) { |
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609 // Construct the region representing the card. |
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610 HeapWord* start = _ct_bs->addr_for(card_ptr); |
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611 // And find the region containing it. |
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612 HeapRegion* r = _g1->heap_region_containing(start); |
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613 assert(r != NULL, "unexpected null"); |
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614 |
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615 HeapWord* end = _ct_bs->addr_for(card_ptr + 1); |
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616 MemRegion dirtyRegion(start, end); |
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617 |
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618 #if CARD_REPEAT_HISTO |
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619 init_ct_freq_table(_g1->max_capacity()); |
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620 ct_freq_note_card(_ct_bs->index_for(start)); |
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621 #endif |
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622 |
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623 OopsInHeapRegionClosure* oops_in_heap_closure = NULL; |
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624 if (check_for_refs_into_cset) { |
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625 // ConcurrentG1RefineThreads have worker numbers larger than what |
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626 // _cset_rs_update_cl[] is set up to handle. But those threads should |
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627 // only be active outside of a collection which means that when they |
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628 // reach here they should have check_for_refs_into_cset == false. |
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629 assert((size_t)worker_i < n_workers(), "index of worker larger than _cset_rs_update_cl[].length"); |
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630 oops_in_heap_closure = _cset_rs_update_cl[worker_i]; |
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631 } |
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632 UpdateRSOrPushRefOopClosure update_rs_oop_cl(_g1, |
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633 _g1->g1_rem_set(), |
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634 oops_in_heap_closure, |
1960
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635 check_for_refs_into_cset, |
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636 worker_i); |
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637 update_rs_oop_cl.set_from(r); |
1705 | 638 |
639 TriggerClosure trigger_cl; | |
3983
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640 FilterIntoCSClosure into_cs_cl(NULL, _g1, &trigger_cl); |
1705 | 641 InvokeIfNotTriggeredClosure invoke_cl(&trigger_cl, &into_cs_cl); |
642 Mux2Closure mux(&invoke_cl, &update_rs_oop_cl); | |
643 | |
644 FilterOutOfRegionClosure filter_then_update_rs_oop_cl(r, | |
645 (check_for_refs_into_cset ? | |
646 (OopClosure*)&mux : | |
647 (OopClosure*)&update_rs_oop_cl)); | |
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648 |
1666
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649 // The region for the current card may be a young region. The |
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650 // current card may have been a card that was evicted from the |
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651 // card cache. When the card was inserted into the cache, we had |
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652 // determined that its region was non-young. While in the cache, |
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653 // the region may have been freed during a cleanup pause, reallocated |
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654 // and tagged as young. |
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655 // |
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656 // We wish to filter out cards for such a region but the current |
3317
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657 // thread, if we're running concurrently, may "see" the young type |
1666
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658 // change at any time (so an earlier "is_young" check may pass or |
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659 // fail arbitrarily). We tell the iteration code to perform this |
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660 // filtering when it has been determined that there has been an actual |
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661 // allocation in this region and making it safe to check the young type. |
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662 bool filter_young = true; |
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663 |
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664 HeapWord* stop_point = |
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665 r->oops_on_card_seq_iterate_careful(dirtyRegion, |
1666
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666 &filter_then_update_rs_oop_cl, |
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667 filter_young, |
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668 card_ptr); |
1666
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669 |
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670 // If stop_point is non-null, then we encountered an unallocated region |
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671 // (perhaps the unfilled portion of a TLAB.) For now, we'll dirty the |
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672 // card and re-enqueue: if we put off the card until a GC pause, then the |
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673 // unallocated portion will be filled in. Alternatively, we might try |
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674 // the full complexity of the technique used in "regular" precleaning. |
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675 if (stop_point != NULL) { |
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676 // The card might have gotten re-dirtied and re-enqueued while we |
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677 // worked. (In fact, it's pretty likely.) |
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678 if (*card_ptr != CardTableModRefBS::dirty_card_val()) { |
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679 *card_ptr = CardTableModRefBS::dirty_card_val(); |
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680 MutexLockerEx x(Shared_DirtyCardQ_lock, |
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681 Mutex::_no_safepoint_check_flag); |
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682 DirtyCardQueue* sdcq = |
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683 JavaThread::dirty_card_queue_set().shared_dirty_card_queue(); |
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684 sdcq->enqueue(card_ptr); |
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685 } |
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686 } else { |
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687 out_of_histo.add_entry(filter_then_update_rs_oop_cl.out_of_region()); |
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688 _conc_refine_cards++; |
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689 } |
1705 | 690 |
691 return trigger_cl.value(); | |
890
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692 } |
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693 |
1861 | 694 bool G1RemSet::concurrentRefineOneCard(jbyte* card_ptr, int worker_i, |
1705 | 695 bool check_for_refs_into_cset) { |
342 | 696 // If the card is no longer dirty, nothing to do. |
1705 | 697 if (*card_ptr != CardTableModRefBS::dirty_card_val()) { |
698 // No need to return that this card contains refs that point | |
699 // into the collection set. | |
700 return false; | |
701 } | |
342 | 702 |
703 // Construct the region representing the card. | |
704 HeapWord* start = _ct_bs->addr_for(card_ptr); | |
705 // And find the region containing it. | |
706 HeapRegion* r = _g1->heap_region_containing(start); | |
707 if (r == NULL) { | |
708 guarantee(_g1->is_in_permanent(start), "Or else where?"); | |
1705 | 709 // Again no need to return that this card contains refs that |
710 // point into the collection set. | |
711 return false; // Not in the G1 heap (might be in perm, for example.) | |
342 | 712 } |
713 // Why do we have to check here whether a card is on a young region, | |
714 // given that we dirty young regions and, as a result, the | |
715 // post-barrier is supposed to filter them out and never to enqueue | |
716 // them? When we allocate a new region as the "allocation region" we | |
717 // actually dirty its cards after we release the lock, since card | |
718 // dirtying while holding the lock was a performance bottleneck. So, | |
719 // as a result, it is possible for other threads to actually | |
720 // allocate objects in the region (after the acquire the lock) | |
721 // before all the cards on the region are dirtied. This is unlikely, | |
722 // and it doesn't happen often, but it can happen. So, the extra | |
723 // check below filters out those cards. | |
637
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6817419: G1: Enable extensive verification for humongous regions
iveresov
parents:
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diff
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724 if (r->is_young()) { |
1705 | 725 return false; |
342 | 726 } |
727 // While we are processing RSet buffers during the collection, we | |
728 // actually don't want to scan any cards on the collection set, | |
729 // since we don't want to update remebered sets with entries that | |
730 // point into the collection set, given that live objects from the | |
731 // collection set are about to move and such entries will be stale | |
732 // very soon. This change also deals with a reliability issue which | |
733 // involves scanning a card in the collection set and coming across | |
734 // an array that was being chunked and looking malformed. Note, | |
735 // however, that if evacuation fails, we have to scan any objects | |
736 // that were not moved and create any missing entries. | |
737 if (r->in_collection_set()) { | |
1705 | 738 return false; |
342 | 739 } |
740 | |
890
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741 // Should we defer processing the card? |
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742 // |
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743 // Previously the result from the insert_cache call would be |
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744 // either card_ptr (implying that card_ptr was currently "cold"), |
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745 // null (meaning we had inserted the card ptr into the "hot" |
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|
746 // cache, which had some headroom), or a "hot" card ptr |
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747 // extracted from the "hot" cache. |
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|
748 // |
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|
749 // Now that the _card_counts cache in the ConcurrentG1Refine |
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750 // instance is an evicting hash table, the result we get back |
6cb8e9df7174
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|
751 // could be from evicting the card ptr in an already occupied |
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|
752 // bucket (in which case we have replaced the card ptr in the |
6cb8e9df7174
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|
753 // bucket with card_ptr and "defer" is set to false). To avoid |
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754 // having a data structure (updates to which would need a lock) |
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|
755 // to hold these unprocessed dirty cards, we need to immediately |
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756 // process card_ptr. The actions needed to be taken on return |
6cb8e9df7174
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757 // from cache_insert are summarized in the following table: |
6cb8e9df7174
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|
758 // |
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|
759 // res defer action |
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|
760 // -------------------------------------------------------------- |
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761 // null false card evicted from _card_counts & replaced with |
6cb8e9df7174
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762 // card_ptr; evicted ptr added to hot cache. |
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763 // No need to process res; immediately process card_ptr |
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|
764 // |
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765 // null true card not evicted from _card_counts; card_ptr added |
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|
766 // to hot cache. |
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|
767 // Nothing to do. |
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|
768 // |
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|
769 // non-null false card evicted from _card_counts & replaced with |
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770 // card_ptr; evicted ptr is currently "cold" or |
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|
771 // caused an eviction from the hot cache. |
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|
772 // Immediately process res; process card_ptr. |
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|
773 // |
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774 // non-null true card not evicted from _card_counts; card_ptr is |
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775 // currently cold, or caused an eviction from hot |
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|
776 // cache. |
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|
777 // Immediately process res; no need to process card_ptr. |
342 | 778 |
1705 | 779 |
890
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780 jbyte* res = card_ptr; |
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781 bool defer = false; |
1705 | 782 |
783 // This gets set to true if the card being refined has references | |
784 // that point into the collection set. | |
785 bool oops_into_cset = false; | |
786 | |
890
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787 if (_cg1r->use_cache()) { |
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788 jbyte* res = _cg1r->cache_insert(card_ptr, &defer); |
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789 if (res != NULL && (res != card_ptr || defer)) { |
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790 start = _ct_bs->addr_for(res); |
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791 r = _g1->heap_region_containing(start); |
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792 if (r == NULL) { |
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793 assert(_g1->is_in_permanent(start), "Or else where?"); |
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794 } else { |
1666
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795 // Checking whether the region we got back from the cache |
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796 // is young here is inappropriate. The region could have been |
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797 // freed, reallocated and tagged as young while in the cache. |
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798 // Hence we could see its young type change at any time. |
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799 // |
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800 // Process card pointer we get back from the hot card cache. This |
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801 // will check whether the region containing the card is young |
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802 // _after_ checking that the region has been allocated from. |
1705 | 803 oops_into_cset = concurrentRefineOneCard_impl(res, worker_i, |
804 false /* check_for_refs_into_cset */); | |
805 // The above call to concurrentRefineOneCard_impl is only | |
806 // performed if the hot card cache is enabled. This cache is | |
807 // disabled during an evacuation pause - which is the only | |
808 // time when we need know if the card contains references | |
809 // that point into the collection set. Also when the hot card | |
810 // cache is enabled, this code is executed by the concurrent | |
811 // refine threads - rather than the GC worker threads - and | |
812 // concurrentRefineOneCard_impl will return false. | |
813 assert(!oops_into_cset, "should not see true here"); | |
890
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814 } |
342 | 815 } |
816 } | |
817 | |
890
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818 if (!defer) { |
1705 | 819 oops_into_cset = |
820 concurrentRefineOneCard_impl(card_ptr, worker_i, check_for_refs_into_cset); | |
821 // We should only be detecting that the card contains references | |
822 // that point into the collection set if the current thread is | |
823 // a GC worker thread. | |
824 assert(!oops_into_cset || SafepointSynchronize::is_at_safepoint(), | |
825 "invalid result at non safepoint"); | |
342 | 826 } |
1705 | 827 return oops_into_cset; |
342 | 828 } |
829 | |
830 class HRRSStatsIter: public HeapRegionClosure { | |
831 size_t _occupied; | |
832 size_t _total_mem_sz; | |
833 size_t _max_mem_sz; | |
834 HeapRegion* _max_mem_sz_region; | |
835 public: | |
836 HRRSStatsIter() : | |
837 _occupied(0), | |
838 _total_mem_sz(0), | |
839 _max_mem_sz(0), | |
840 _max_mem_sz_region(NULL) | |
841 {} | |
842 | |
843 bool doHeapRegion(HeapRegion* r) { | |
844 if (r->continuesHumongous()) return false; | |
845 size_t mem_sz = r->rem_set()->mem_size(); | |
846 if (mem_sz > _max_mem_sz) { | |
847 _max_mem_sz = mem_sz; | |
848 _max_mem_sz_region = r; | |
849 } | |
850 _total_mem_sz += mem_sz; | |
851 size_t occ = r->rem_set()->occupied(); | |
852 _occupied += occ; | |
853 return false; | |
854 } | |
855 size_t total_mem_sz() { return _total_mem_sz; } | |
856 size_t max_mem_sz() { return _max_mem_sz; } | |
857 size_t occupied() { return _occupied; } | |
858 HeapRegion* max_mem_sz_region() { return _max_mem_sz_region; } | |
859 }; | |
860 | |
794 | 861 class PrintRSThreadVTimeClosure : public ThreadClosure { |
862 public: | |
863 virtual void do_thread(Thread *t) { | |
864 ConcurrentG1RefineThread* crt = (ConcurrentG1RefineThread*) t; | |
865 gclog_or_tty->print(" %5.2f", crt->vtime_accum()); | |
866 } | |
867 }; | |
868 | |
1861 | 869 void G1RemSet::print_summary_info() { |
342 | 870 G1CollectedHeap* g1 = G1CollectedHeap::heap(); |
871 | |
872 #if CARD_REPEAT_HISTO | |
873 gclog_or_tty->print_cr("\nG1 card_repeat count histogram: "); | |
874 gclog_or_tty->print_cr(" # of repeats --> # of cards with that number."); | |
875 card_repeat_count.print_on(gclog_or_tty); | |
876 #endif | |
877 | |
878 if (FILTEROUTOFREGIONCLOSURE_DOHISTOGRAMCOUNT) { | |
879 gclog_or_tty->print_cr("\nG1 rem-set out-of-region histogram: "); | |
880 gclog_or_tty->print_cr(" # of CS ptrs --> # of cards with that number."); | |
881 out_of_histo.print_on(gclog_or_tty); | |
882 } | |
794 | 883 gclog_or_tty->print_cr("\n Concurrent RS processed %d cards", |
884 _conc_refine_cards); | |
342 | 885 DirtyCardQueueSet& dcqs = JavaThread::dirty_card_queue_set(); |
886 jint tot_processed_buffers = | |
887 dcqs.processed_buffers_mut() + dcqs.processed_buffers_rs_thread(); | |
888 gclog_or_tty->print_cr(" Of %d completed buffers:", tot_processed_buffers); | |
794 | 889 gclog_or_tty->print_cr(" %8d (%5.1f%%) by conc RS threads.", |
342 | 890 dcqs.processed_buffers_rs_thread(), |
891 100.0*(float)dcqs.processed_buffers_rs_thread()/ | |
892 (float)tot_processed_buffers); | |
893 gclog_or_tty->print_cr(" %8d (%5.1f%%) by mutator threads.", | |
894 dcqs.processed_buffers_mut(), | |
895 100.0*(float)dcqs.processed_buffers_mut()/ | |
896 (float)tot_processed_buffers); | |
794 | 897 gclog_or_tty->print_cr(" Conc RS threads times(s)"); |
898 PrintRSThreadVTimeClosure p; | |
899 gclog_or_tty->print(" "); | |
900 g1->concurrent_g1_refine()->threads_do(&p); | |
342 | 901 gclog_or_tty->print_cr(""); |
794 | 902 |
1861 | 903 HRRSStatsIter blk; |
904 g1->heap_region_iterate(&blk); | |
905 gclog_or_tty->print_cr(" Total heap region rem set sizes = " SIZE_FORMAT "K." | |
906 " Max = " SIZE_FORMAT "K.", | |
907 blk.total_mem_sz()/K, blk.max_mem_sz()/K); | |
908 gclog_or_tty->print_cr(" Static structures = " SIZE_FORMAT "K," | |
909 " free_lists = " SIZE_FORMAT "K.", | |
910 HeapRegionRemSet::static_mem_size()/K, | |
911 HeapRegionRemSet::fl_mem_size()/K); | |
912 gclog_or_tty->print_cr(" %d occupied cards represented.", | |
913 blk.occupied()); | |
914 gclog_or_tty->print_cr(" Max sz region = [" PTR_FORMAT ", " PTR_FORMAT " )" | |
915 ", cap = " SIZE_FORMAT "K, occ = " SIZE_FORMAT "K.", | |
916 blk.max_mem_sz_region()->bottom(), blk.max_mem_sz_region()->end(), | |
917 (blk.max_mem_sz_region()->rem_set()->mem_size() + K - 1)/K, | |
918 (blk.max_mem_sz_region()->rem_set()->occupied() + K - 1)/K); | |
919 gclog_or_tty->print_cr(" Did %d coarsenings.", HeapRegionRemSet::n_coarsenings()); | |
342 | 920 } |
1705 | 921 |
1861 | 922 void G1RemSet::prepare_for_verify() { |
637
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923 if (G1HRRSFlushLogBuffersOnVerify && |
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924 (VerifyBeforeGC || VerifyAfterGC) |
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925 && !_g1->full_collection()) { |
342 | 926 cleanupHRRS(); |
927 _g1->set_refine_cte_cl_concurrency(false); | |
928 if (SafepointSynchronize::is_at_safepoint()) { | |
929 DirtyCardQueueSet& dcqs = JavaThread::dirty_card_queue_set(); | |
930 dcqs.concatenate_logs(); | |
931 } | |
932 bool cg1r_use_cache = _cg1r->use_cache(); | |
933 _cg1r->set_use_cache(false); | |
1705 | 934 DirtyCardQueue into_cset_dcq(&_g1->into_cset_dirty_card_queue_set()); |
935 updateRS(&into_cset_dcq, 0); | |
936 _g1->into_cset_dirty_card_queue_set().clear(); | |
342 | 937 _cg1r->set_use_cache(cg1r_use_cache); |
637
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938 |
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939 assert(JavaThread::dirty_card_queue_set().completed_buffers_num() == 0, "All should be consumed"); |
342 | 940 } |
941 } |