Mercurial > hg > truffle
annotate src/share/vm/gc_implementation/g1/g1RemSet.cpp @ 3765:ae5b2f1dcf12
7045662: G1: OopsInHeapRegionClosure::set_region() should not be virtual
Summary: make the method non-virtual, remove five unused closures, and fix a couple of copyright typos.
Reviewed-by: stefank, johnc, poonam
author | tonyp |
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date | Wed, 08 Jun 2011 21:48:38 -0400 |
parents | 063382f9b575 |
children | e8b0b0392037 |
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) { | |
125 DirtyCardToOopClosure* cl = | |
126 r->new_dcto_closure(_oc, | |
127 CardTableModRefBS::Precise, | |
128 HeapRegionDCTOC::IntoCSFilterKind); | |
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++; |
342 | 143 cl->do_MemRegion(mr); |
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 | |
212 // We want the parallel threads to start their scanning at | |
213 // different collection set regions to avoid contention. | |
214 // If we have: | |
215 // n collection set regions | |
216 // p threads | |
217 // Then thread t will start at region t * floor (n/p) | |
218 | |
1861 | 219 HeapRegion* G1RemSet::calculateStartRegion(int worker_i) { |
342 | 220 HeapRegion* result = _g1p->collection_set(); |
221 if (ParallelGCThreads > 0) { | |
222 size_t cs_size = _g1p->collection_set_size(); | |
223 int n_workers = _g1->workers()->total_workers(); | |
224 size_t cs_spans = cs_size / n_workers; | |
225 size_t ind = cs_spans * worker_i; | |
226 for (size_t i = 0; i < ind; i++) | |
227 result = result->next_in_collection_set(); | |
228 } | |
229 return result; | |
230 } | |
231 | |
1861 | 232 void G1RemSet::scanRS(OopsInHeapRegionClosure* oc, int worker_i) { |
342 | 233 double rs_time_start = os::elapsedTime(); |
234 HeapRegion *startRegion = calculateStartRegion(worker_i); | |
235 | |
1261 | 236 ScanRSClosure scanRScl(oc, worker_i); |
342 | 237 _g1->collection_set_iterate_from(startRegion, &scanRScl); |
238 scanRScl.set_try_claimed(); | |
239 _g1->collection_set_iterate_from(startRegion, &scanRScl); | |
240 | |
1261 | 241 double scan_rs_time_sec = os::elapsedTime() - rs_time_start; |
342 | 242 |
243 assert( _cards_scanned != NULL, "invariant" ); | |
244 _cards_scanned[worker_i] = scanRScl.cards_done(); | |
245 | |
246 _g1p->record_scan_rs_time(worker_i, scan_rs_time_sec * 1000.0); | |
247 } | |
248 | |
1705 | 249 // Closure used for updating RSets and recording references that |
250 // point into the collection set. Only called during an | |
251 // evacuation pause. | |
252 | |
253 class RefineRecordRefsIntoCSCardTableEntryClosure: public CardTableEntryClosure { | |
254 G1RemSet* _g1rs; | |
255 DirtyCardQueue* _into_cset_dcq; | |
256 public: | |
257 RefineRecordRefsIntoCSCardTableEntryClosure(G1CollectedHeap* g1h, | |
258 DirtyCardQueue* into_cset_dcq) : | |
259 _g1rs(g1h->g1_rem_set()), _into_cset_dcq(into_cset_dcq) | |
260 {} | |
261 bool do_card_ptr(jbyte* card_ptr, int worker_i) { | |
262 // The only time we care about recording cards that | |
263 // contain references that point into the collection set | |
264 // is during RSet updating within an evacuation pause. | |
265 // In this case worker_i should be the id of a GC worker thread. | |
266 assert(SafepointSynchronize::is_at_safepoint(), "not during an evacuation pause"); | |
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267 assert(worker_i < (int) (ParallelGCThreads == 0 ? 1 : ParallelGCThreads), "should be a GC worker"); |
342 | 268 |
1705 | 269 if (_g1rs->concurrentRefineOneCard(card_ptr, worker_i, true)) { |
270 // 'card_ptr' contains references that point into the collection | |
271 // set. We need to record the card in the DCQS | |
272 // (G1CollectedHeap::into_cset_dirty_card_queue_set()) | |
273 // that's used for that purpose. | |
274 // | |
275 // Enqueue the card | |
276 _into_cset_dcq->enqueue(card_ptr); | |
277 } | |
278 return true; | |
279 } | |
280 }; | |
281 | |
1861 | 282 void G1RemSet::updateRS(DirtyCardQueue* into_cset_dcq, int worker_i) { |
342 | 283 double start = os::elapsedTime(); |
1705 | 284 // Apply the given closure to all remaining log entries. |
285 RefineRecordRefsIntoCSCardTableEntryClosure into_cset_update_rs_cl(_g1, into_cset_dcq); | |
286 _g1->iterate_dirty_card_closure(&into_cset_update_rs_cl, into_cset_dcq, false, worker_i); | |
287 | |
794 | 288 // Now there should be no dirty cards. |
289 if (G1RSLogCheckCardTable) { | |
290 CountNonCleanMemRegionClosure cl(_g1); | |
291 _ct_bs->mod_card_iterate(&cl); | |
292 // XXX This isn't true any more: keeping cards of young regions | |
293 // marked dirty broke it. Need some reasonable fix. | |
294 guarantee(cl.n() == 0, "Card table should be clean."); | |
342 | 295 } |
794 | 296 |
342 | 297 _g1p->record_update_rs_time(worker_i, (os::elapsedTime() - start) * 1000.0); |
298 } | |
299 | |
300 #ifndef PRODUCT | |
301 class PrintRSClosure : public HeapRegionClosure { | |
302 int _count; | |
303 public: | |
304 PrintRSClosure() : _count(0) {} | |
305 bool doHeapRegion(HeapRegion* r) { | |
306 HeapRegionRemSet* hrrs = r->rem_set(); | |
307 _count += (int) hrrs->occupied(); | |
308 if (hrrs->occupied() == 0) { | |
309 gclog_or_tty->print("Heap Region [" PTR_FORMAT ", " PTR_FORMAT ") " | |
310 "has no remset entries\n", | |
311 r->bottom(), r->end()); | |
312 } else { | |
313 gclog_or_tty->print("Printing rem set for heap region [" PTR_FORMAT ", " PTR_FORMAT ")\n", | |
314 r->bottom(), r->end()); | |
315 r->print(); | |
316 hrrs->print(); | |
317 gclog_or_tty->print("\nDone printing rem set\n"); | |
318 } | |
319 return false; | |
320 } | |
321 int occupied() {return _count;} | |
322 }; | |
323 #endif | |
324 | |
325 class CountRSSizeClosure: public HeapRegionClosure { | |
326 size_t _n; | |
327 size_t _tot; | |
328 size_t _max; | |
329 HeapRegion* _max_r; | |
330 enum { | |
331 N = 20, | |
332 MIN = 6 | |
333 }; | |
334 int _histo[N]; | |
335 public: | |
336 CountRSSizeClosure() : _n(0), _tot(0), _max(0), _max_r(NULL) { | |
337 for (int i = 0; i < N; i++) _histo[i] = 0; | |
338 } | |
339 bool doHeapRegion(HeapRegion* r) { | |
340 if (!r->continuesHumongous()) { | |
341 size_t occ = r->rem_set()->occupied(); | |
342 _n++; | |
343 _tot += occ; | |
344 if (occ > _max) { | |
345 _max = occ; | |
346 _max_r = r; | |
347 } | |
348 // Fit it into a histo bin. | |
349 int s = 1 << MIN; | |
350 int i = 0; | |
351 while (occ > (size_t) s && i < (N-1)) { | |
352 s = s << 1; | |
353 i++; | |
354 } | |
355 _histo[i]++; | |
356 } | |
357 return false; | |
358 } | |
359 size_t n() { return _n; } | |
360 size_t tot() { return _tot; } | |
361 size_t mx() { return _max; } | |
362 HeapRegion* mxr() { return _max_r; } | |
363 void print_histo() { | |
364 int mx = N; | |
365 while (mx >= 0) { | |
366 if (_histo[mx-1] > 0) break; | |
367 mx--; | |
368 } | |
369 gclog_or_tty->print_cr("Number of regions with given RS sizes:"); | |
370 gclog_or_tty->print_cr(" <= %8d %8d", 1 << MIN, _histo[0]); | |
371 for (int i = 1; i < mx-1; i++) { | |
372 gclog_or_tty->print_cr(" %8d - %8d %8d", | |
373 (1 << (MIN + i - 1)) + 1, | |
374 1 << (MIN + i), | |
375 _histo[i]); | |
376 } | |
377 gclog_or_tty->print_cr(" > %8d %8d", (1 << (MIN+mx-2))+1, _histo[mx-1]); | |
378 } | |
379 }; | |
380 | |
1861 | 381 void G1RemSet::cleanupHRRS() { |
342 | 382 HeapRegionRemSet::cleanup(); |
383 } | |
384 | |
1861 | 385 void G1RemSet::oops_into_collection_set_do(OopsInHeapRegionClosure* oc, |
342 | 386 int worker_i) { |
387 #if CARD_REPEAT_HISTO | |
388 ct_freq_update_histo_and_reset(); | |
389 #endif | |
390 if (worker_i == 0) { | |
391 _cg1r->clear_and_record_card_counts(); | |
392 } | |
393 | |
394 // Make this into a command-line flag... | |
395 if (G1RSCountHisto && (ParallelGCThreads == 0 || worker_i == 0)) { | |
396 CountRSSizeClosure count_cl; | |
397 _g1->heap_region_iterate(&count_cl); | |
398 gclog_or_tty->print_cr("Avg of %d RS counts is %f, max is %d, " | |
399 "max region is " PTR_FORMAT, | |
400 count_cl.n(), (float)count_cl.tot()/(float)count_cl.n(), | |
401 count_cl.mx(), count_cl.mxr()); | |
402 count_cl.print_histo(); | |
403 } | |
404 | |
1705 | 405 // We cache the value of 'oc' closure into the appropriate slot in the |
406 // _cset_rs_update_cl for this worker | |
407 assert(worker_i < (int)n_workers(), "sanity"); | |
408 _cset_rs_update_cl[worker_i] = oc; | |
409 | |
410 // A DirtyCardQueue that is used to hold cards containing references | |
411 // that point into the collection set. This DCQ is associated with a | |
412 // special DirtyCardQueueSet (see g1CollectedHeap.hpp). Under normal | |
413 // circumstances (i.e. the pause successfully completes), these cards | |
414 // are just discarded (there's no need to update the RSets of regions | |
415 // that were in the collection set - after the pause these regions | |
416 // are wholly 'free' of live objects. In the event of an evacuation | |
417 // failure the cards/buffers in this queue set are: | |
418 // * passed to the DirtyCardQueueSet that is used to manage deferred | |
419 // RSet updates, or | |
420 // * scanned for references that point into the collection set | |
421 // and the RSet of the corresponding region in the collection set | |
422 // is updated immediately. | |
423 DirtyCardQueue into_cset_dcq(&_g1->into_cset_dirty_card_queue_set()); | |
424 | |
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425 assert((ParallelGCThreads > 0) || worker_i == 0, "invariant"); |
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426 |
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427 // The two flags below were introduced temporarily to serialize |
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428 // the updating and scanning of remembered sets. There are some |
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429 // race conditions when these two operations are done in parallel |
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430 // and they are causing failures. When we resolve said race |
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431 // conditions, we'll revert back to parallel remembered set |
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432 // updating and scanning. See CRs 6677707 and 6677708. |
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433 if (G1UseParallelRSetUpdating || (worker_i == 0)) { |
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434 updateRS(&into_cset_dcq, worker_i); |
342 | 435 } else { |
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436 _g1p->record_update_rs_processed_buffers(worker_i, 0.0); |
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437 _g1p->record_update_rs_time(worker_i, 0.0); |
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438 } |
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439 if (G1UseParallelRSetScanning || (worker_i == 0)) { |
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440 scanRS(oc, worker_i); |
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441 } else { |
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442 _g1p->record_scan_rs_time(worker_i, 0.0); |
342 | 443 } |
1705 | 444 |
445 // We now clear the cached values of _cset_rs_update_cl for this worker | |
446 _cset_rs_update_cl[worker_i] = NULL; | |
342 | 447 } |
448 | |
1861 | 449 void G1RemSet::prepare_for_oops_into_collection_set_do() { |
342 | 450 #if G1_REM_SET_LOGGING |
451 PrintRSClosure cl; | |
452 _g1->collection_set_iterate(&cl); | |
453 #endif | |
454 cleanupHRRS(); | |
455 ConcurrentG1Refine* cg1r = _g1->concurrent_g1_refine(); | |
456 _g1->set_refine_cte_cl_concurrency(false); | |
457 DirtyCardQueueSet& dcqs = JavaThread::dirty_card_queue_set(); | |
458 dcqs.concatenate_logs(); | |
459 | |
460 if (ParallelGCThreads > 0) { | |
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461 _seq_task->set_n_threads((int)n_workers()); |
342 | 462 } |
463 guarantee( _cards_scanned == NULL, "invariant" ); | |
464 _cards_scanned = NEW_C_HEAP_ARRAY(size_t, n_workers()); | |
545 | 465 for (uint i = 0; i < n_workers(); ++i) { |
466 _cards_scanned[i] = 0; | |
467 } | |
342 | 468 _total_cards_scanned = 0; |
469 } | |
470 | |
471 | |
472 class cleanUpIteratorsClosure : public HeapRegionClosure { | |
473 bool doHeapRegion(HeapRegion *r) { | |
474 HeapRegionRemSet* hrrs = r->rem_set(); | |
475 hrrs->init_for_par_iteration(); | |
476 return false; | |
477 } | |
478 }; | |
479 | |
1705 | 480 // This closure, applied to a DirtyCardQueueSet, is used to immediately |
481 // update the RSets for the regions in the CSet. For each card it iterates | |
482 // through the oops which coincide with that card. It scans the reference | |
483 // fields in each oop; when it finds an oop that points into the collection | |
484 // set, the RSet for the region containing the referenced object is updated. | |
485 class UpdateRSetCardTableEntryIntoCSetClosure: public CardTableEntryClosure { | |
616
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486 G1CollectedHeap* _g1; |
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487 CardTableModRefBS* _ct_bs; |
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488 public: |
1705 | 489 UpdateRSetCardTableEntryIntoCSetClosure(G1CollectedHeap* g1, |
490 CardTableModRefBS* bs): | |
491 _g1(g1), _ct_bs(bs) | |
492 { } | |
493 | |
494 bool do_card_ptr(jbyte* card_ptr, int worker_i) { | |
495 // Construct the region representing the card. | |
496 HeapWord* start = _ct_bs->addr_for(card_ptr); | |
497 // And find the region containing it. | |
498 HeapRegion* r = _g1->heap_region_containing(start); | |
499 assert(r != NULL, "unexpected null"); | |
500 | |
501 // Scan oops in the card looking for references into the collection set | |
502 HeapWord* end = _ct_bs->addr_for(card_ptr + 1); | |
503 MemRegion scanRegion(start, end); | |
504 | |
505 UpdateRSetImmediate update_rs_cl(_g1->g1_rem_set()); | |
506 FilterIntoCSClosure update_rs_cset_oop_cl(NULL, _g1, &update_rs_cl); | |
507 FilterOutOfRegionClosure filter_then_update_rs_cset_oop_cl(r, &update_rs_cset_oop_cl); | |
508 | |
509 // We can pass false as the "filter_young" parameter here as: | |
510 // * we should be in a STW pause, | |
511 // * the DCQS to which this closure is applied is used to hold | |
512 // references that point into the collection set from the prior | |
513 // RSet updating, | |
514 // * the post-write barrier shouldn't be logging updates to young | |
515 // regions (but there is a situation where this can happen - see | |
1861 | 516 // the comment in G1RemSet::concurrentRefineOneCard below - |
1705 | 517 // that should not be applicable here), and |
518 // * during actual RSet updating, the filtering of cards in young | |
519 // regions in HeapRegion::oops_on_card_seq_iterate_careful is | |
520 // employed. | |
521 // As a result, when this closure is applied to "refs into cset" | |
522 // DCQS, we shouldn't see any cards in young regions. | |
523 update_rs_cl.set_region(r); | |
524 HeapWord* stop_point = | |
525 r->oops_on_card_seq_iterate_careful(scanRegion, | |
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526 &filter_then_update_rs_cset_oop_cl, |
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527 false /* filter_young */, |
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528 NULL /* card_ptr */); |
1705 | 529 |
530 // Since this is performed in the event of an evacuation failure, we | |
531 // we shouldn't see a non-null stop point | |
532 assert(stop_point == NULL, "saw an unallocated region"); | |
533 return true; | |
616
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534 } |
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535 }; |
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536 |
1861 | 537 void G1RemSet::cleanup_after_oops_into_collection_set_do() { |
342 | 538 guarantee( _cards_scanned != NULL, "invariant" ); |
539 _total_cards_scanned = 0; | |
540 for (uint i = 0; i < n_workers(); ++i) | |
541 _total_cards_scanned += _cards_scanned[i]; | |
542 FREE_C_HEAP_ARRAY(size_t, _cards_scanned); | |
543 _cards_scanned = NULL; | |
544 // Cleanup after copy | |
545 #if G1_REM_SET_LOGGING | |
546 PrintRSClosure cl; | |
547 _g1->heap_region_iterate(&cl); | |
548 #endif | |
549 _g1->set_refine_cte_cl_concurrency(true); | |
550 cleanUpIteratorsClosure iterClosure; | |
551 _g1->collection_set_iterate(&iterClosure); | |
552 // Set all cards back to clean. | |
553 _g1->cleanUpCardTable(); | |
794 | 554 |
1705 | 555 DirtyCardQueueSet& into_cset_dcqs = _g1->into_cset_dirty_card_queue_set(); |
556 int into_cset_n_buffers = into_cset_dcqs.completed_buffers_num(); | |
557 | |
616
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558 if (_g1->evacuation_failed()) { |
1705 | 559 // Restore remembered sets for the regions pointing into the collection set. |
560 | |
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561 if (G1DeferredRSUpdate) { |
1705 | 562 // If deferred RS updates are enabled then we just need to transfer |
563 // the completed buffers from (a) the DirtyCardQueueSet used to hold | |
564 // cards that contain references that point into the collection set | |
565 // to (b) the DCQS used to hold the deferred RS updates | |
566 _g1->dirty_card_queue_set().merge_bufferlists(&into_cset_dcqs); | |
616
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567 } else { |
1705 | 568 |
569 CardTableModRefBS* bs = (CardTableModRefBS*)_g1->barrier_set(); | |
570 UpdateRSetCardTableEntryIntoCSetClosure update_rs_cset_immediate(_g1, bs); | |
571 | |
572 int n_completed_buffers = 0; | |
573 while (into_cset_dcqs.apply_closure_to_completed_buffer(&update_rs_cset_immediate, | |
574 0, 0, true)) { | |
575 n_completed_buffers++; | |
576 } | |
577 assert(n_completed_buffers == into_cset_n_buffers, "missed some buffers"); | |
616
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578 } |
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579 } |
1705 | 580 |
581 // Free any completed buffers in the DirtyCardQueueSet used to hold cards | |
582 // which contain references that point into the collection. | |
583 _g1->into_cset_dirty_card_queue_set().clear(); | |
584 assert(_g1->into_cset_dirty_card_queue_set().completed_buffers_num() == 0, | |
585 "all buffers should be freed"); | |
586 _g1->into_cset_dirty_card_queue_set().clear_n_completed_buffers(); | |
342 | 587 } |
588 | |
589 class ScrubRSClosure: public HeapRegionClosure { | |
590 G1CollectedHeap* _g1h; | |
591 BitMap* _region_bm; | |
592 BitMap* _card_bm; | |
593 CardTableModRefBS* _ctbs; | |
594 public: | |
595 ScrubRSClosure(BitMap* region_bm, BitMap* card_bm) : | |
596 _g1h(G1CollectedHeap::heap()), | |
597 _region_bm(region_bm), _card_bm(card_bm), | |
598 _ctbs(NULL) | |
599 { | |
600 ModRefBarrierSet* bs = _g1h->mr_bs(); | |
601 guarantee(bs->is_a(BarrierSet::CardTableModRef), "Precondition"); | |
602 _ctbs = (CardTableModRefBS*)bs; | |
603 } | |
604 | |
605 bool doHeapRegion(HeapRegion* r) { | |
606 if (!r->continuesHumongous()) { | |
607 r->rem_set()->scrub(_ctbs, _region_bm, _card_bm); | |
608 } | |
609 return false; | |
610 } | |
611 }; | |
612 | |
1861 | 613 void G1RemSet::scrub(BitMap* region_bm, BitMap* card_bm) { |
342 | 614 ScrubRSClosure scrub_cl(region_bm, card_bm); |
615 _g1->heap_region_iterate(&scrub_cl); | |
616 } | |
617 | |
1861 | 618 void G1RemSet::scrub_par(BitMap* region_bm, BitMap* card_bm, |
342 | 619 int worker_num, int claim_val) { |
620 ScrubRSClosure scrub_cl(region_bm, card_bm); | |
621 _g1->heap_region_par_iterate_chunked(&scrub_cl, worker_num, claim_val); | |
622 } | |
623 | |
624 | |
625 static IntHistogram out_of_histo(50, 50); | |
626 | |
1705 | 627 class TriggerClosure : public OopClosure { |
628 bool _trigger; | |
629 public: | |
630 TriggerClosure() : _trigger(false) { } | |
631 bool value() const { return _trigger; } | |
632 template <class T> void do_oop_nv(T* p) { _trigger = true; } | |
633 virtual void do_oop(oop* p) { do_oop_nv(p); } | |
634 virtual void do_oop(narrowOop* p) { do_oop_nv(p); } | |
635 }; | |
636 | |
637 class InvokeIfNotTriggeredClosure: public OopClosure { | |
638 TriggerClosure* _t; | |
639 OopClosure* _oc; | |
640 public: | |
641 InvokeIfNotTriggeredClosure(TriggerClosure* t, OopClosure* oc): | |
642 _t(t), _oc(oc) { } | |
643 template <class T> void do_oop_nv(T* p) { | |
644 if (!_t->value()) _oc->do_oop(p); | |
645 } | |
646 virtual void do_oop(oop* p) { do_oop_nv(p); } | |
647 virtual void do_oop(narrowOop* p) { do_oop_nv(p); } | |
648 }; | |
649 | |
650 class Mux2Closure : public OopClosure { | |
651 OopClosure* _c1; | |
652 OopClosure* _c2; | |
653 public: | |
654 Mux2Closure(OopClosure *c1, OopClosure *c2) : _c1(c1), _c2(c2) { } | |
655 template <class T> void do_oop_nv(T* p) { | |
656 _c1->do_oop(p); _c2->do_oop(p); | |
657 } | |
658 virtual void do_oop(oop* p) { do_oop_nv(p); } | |
659 virtual void do_oop(narrowOop* p) { do_oop_nv(p); } | |
660 }; | |
661 | |
1861 | 662 bool G1RemSet::concurrentRefineOneCard_impl(jbyte* card_ptr, int worker_i, |
1705 | 663 bool check_for_refs_into_cset) { |
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664 // Construct the region representing the card. |
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665 HeapWord* start = _ct_bs->addr_for(card_ptr); |
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666 // And find the region containing it. |
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667 HeapRegion* r = _g1->heap_region_containing(start); |
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668 assert(r != NULL, "unexpected null"); |
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669 |
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670 HeapWord* end = _ct_bs->addr_for(card_ptr + 1); |
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671 MemRegion dirtyRegion(start, end); |
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672 |
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673 #if CARD_REPEAT_HISTO |
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674 init_ct_freq_table(_g1->max_capacity()); |
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675 ct_freq_note_card(_ct_bs->index_for(start)); |
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676 #endif |
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677 |
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678 assert(!check_for_refs_into_cset || _cset_rs_update_cl[worker_i] != NULL, "sanity"); |
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679 UpdateRSOrPushRefOopClosure update_rs_oop_cl(_g1, |
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680 _g1->g1_rem_set(), |
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681 _cset_rs_update_cl[worker_i], |
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682 check_for_refs_into_cset, |
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683 worker_i); |
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684 update_rs_oop_cl.set_from(r); |
1705 | 685 |
686 TriggerClosure trigger_cl; | |
687 FilterIntoCSClosure into_cs_cl(NULL, _g1, &trigger_cl); | |
688 InvokeIfNotTriggeredClosure invoke_cl(&trigger_cl, &into_cs_cl); | |
689 Mux2Closure mux(&invoke_cl, &update_rs_oop_cl); | |
690 | |
691 FilterOutOfRegionClosure filter_then_update_rs_oop_cl(r, | |
692 (check_for_refs_into_cset ? | |
693 (OopClosure*)&mux : | |
694 (OopClosure*)&update_rs_oop_cl)); | |
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695 |
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696 // The region for the current card may be a young region. The |
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697 // current card may have been a card that was evicted from the |
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698 // card cache. When the card was inserted into the cache, we had |
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699 // determined that its region was non-young. While in the cache, |
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700 // the region may have been freed during a cleanup pause, reallocated |
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701 // and tagged as young. |
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702 // |
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703 // We wish to filter out cards for such a region but the current |
3317
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704 // thread, if we're running concurrently, may "see" the young type |
1666
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705 // change at any time (so an earlier "is_young" check may pass or |
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706 // fail arbitrarily). We tell the iteration code to perform this |
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707 // filtering when it has been determined that there has been an actual |
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708 // allocation in this region and making it safe to check the young type. |
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709 bool filter_young = true; |
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710 |
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711 HeapWord* stop_point = |
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712 r->oops_on_card_seq_iterate_careful(dirtyRegion, |
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713 &filter_then_update_rs_oop_cl, |
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714 filter_young, |
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715 card_ptr); |
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716 |
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717 // If stop_point is non-null, then we encountered an unallocated region |
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718 // (perhaps the unfilled portion of a TLAB.) For now, we'll dirty the |
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719 // card and re-enqueue: if we put off the card until a GC pause, then the |
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720 // unallocated portion will be filled in. Alternatively, we might try |
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721 // the full complexity of the technique used in "regular" precleaning. |
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722 if (stop_point != NULL) { |
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723 // The card might have gotten re-dirtied and re-enqueued while we |
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724 // worked. (In fact, it's pretty likely.) |
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725 if (*card_ptr != CardTableModRefBS::dirty_card_val()) { |
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726 *card_ptr = CardTableModRefBS::dirty_card_val(); |
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727 MutexLockerEx x(Shared_DirtyCardQ_lock, |
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728 Mutex::_no_safepoint_check_flag); |
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729 DirtyCardQueue* sdcq = |
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730 JavaThread::dirty_card_queue_set().shared_dirty_card_queue(); |
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731 sdcq->enqueue(card_ptr); |
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732 } |
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733 } else { |
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734 out_of_histo.add_entry(filter_then_update_rs_oop_cl.out_of_region()); |
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735 _conc_refine_cards++; |
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736 } |
1705 | 737 |
738 return trigger_cl.value(); | |
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739 } |
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740 |
1861 | 741 bool G1RemSet::concurrentRefineOneCard(jbyte* card_ptr, int worker_i, |
1705 | 742 bool check_for_refs_into_cset) { |
342 | 743 // If the card is no longer dirty, nothing to do. |
1705 | 744 if (*card_ptr != CardTableModRefBS::dirty_card_val()) { |
745 // No need to return that this card contains refs that point | |
746 // into the collection set. | |
747 return false; | |
748 } | |
342 | 749 |
750 // Construct the region representing the card. | |
751 HeapWord* start = _ct_bs->addr_for(card_ptr); | |
752 // And find the region containing it. | |
753 HeapRegion* r = _g1->heap_region_containing(start); | |
754 if (r == NULL) { | |
755 guarantee(_g1->is_in_permanent(start), "Or else where?"); | |
1705 | 756 // Again no need to return that this card contains refs that |
757 // point into the collection set. | |
758 return false; // Not in the G1 heap (might be in perm, for example.) | |
342 | 759 } |
760 // Why do we have to check here whether a card is on a young region, | |
761 // given that we dirty young regions and, as a result, the | |
762 // post-barrier is supposed to filter them out and never to enqueue | |
763 // them? When we allocate a new region as the "allocation region" we | |
764 // actually dirty its cards after we release the lock, since card | |
765 // dirtying while holding the lock was a performance bottleneck. So, | |
766 // as a result, it is possible for other threads to actually | |
767 // allocate objects in the region (after the acquire the lock) | |
768 // before all the cards on the region are dirtied. This is unlikely, | |
769 // and it doesn't happen often, but it can happen. So, the extra | |
770 // check below filters out those cards. | |
637
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771 if (r->is_young()) { |
1705 | 772 return false; |
342 | 773 } |
774 // While we are processing RSet buffers during the collection, we | |
775 // actually don't want to scan any cards on the collection set, | |
776 // since we don't want to update remebered sets with entries that | |
777 // point into the collection set, given that live objects from the | |
778 // collection set are about to move and such entries will be stale | |
779 // very soon. This change also deals with a reliability issue which | |
780 // involves scanning a card in the collection set and coming across | |
781 // an array that was being chunked and looking malformed. Note, | |
782 // however, that if evacuation fails, we have to scan any objects | |
783 // that were not moved and create any missing entries. | |
784 if (r->in_collection_set()) { | |
1705 | 785 return false; |
342 | 786 } |
787 | |
890
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788 // Should we defer processing the card? |
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789 // |
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790 // Previously the result from the insert_cache call would be |
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791 // either card_ptr (implying that card_ptr was currently "cold"), |
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792 // null (meaning we had inserted the card ptr into the "hot" |
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793 // cache, which had some headroom), or a "hot" card ptr |
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794 // extracted from the "hot" cache. |
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795 // |
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796 // Now that the _card_counts cache in the ConcurrentG1Refine |
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797 // instance is an evicting hash table, the result we get back |
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798 // could be from evicting the card ptr in an already occupied |
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799 // bucket (in which case we have replaced the card ptr in the |
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800 // bucket with card_ptr and "defer" is set to false). To avoid |
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801 // having a data structure (updates to which would need a lock) |
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802 // to hold these unprocessed dirty cards, we need to immediately |
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803 // process card_ptr. The actions needed to be taken on return |
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804 // from cache_insert are summarized in the following table: |
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805 // |
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806 // res defer action |
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807 // -------------------------------------------------------------- |
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808 // null false card evicted from _card_counts & replaced with |
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809 // card_ptr; evicted ptr added to hot cache. |
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810 // No need to process res; immediately process card_ptr |
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811 // |
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812 // null true card not evicted from _card_counts; card_ptr added |
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813 // to hot cache. |
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814 // Nothing to do. |
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815 // |
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816 // non-null false card evicted from _card_counts & replaced with |
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817 // card_ptr; evicted ptr is currently "cold" or |
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818 // caused an eviction from the hot cache. |
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819 // Immediately process res; process card_ptr. |
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820 // |
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821 // non-null true card not evicted from _card_counts; card_ptr is |
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822 // currently cold, or caused an eviction from hot |
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823 // cache. |
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824 // Immediately process res; no need to process card_ptr. |
342 | 825 |
1705 | 826 |
890
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827 jbyte* res = card_ptr; |
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828 bool defer = false; |
1705 | 829 |
830 // This gets set to true if the card being refined has references | |
831 // that point into the collection set. | |
832 bool oops_into_cset = false; | |
833 | |
890
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834 if (_cg1r->use_cache()) { |
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835 jbyte* res = _cg1r->cache_insert(card_ptr, &defer); |
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836 if (res != NULL && (res != card_ptr || defer)) { |
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837 start = _ct_bs->addr_for(res); |
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838 r = _g1->heap_region_containing(start); |
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839 if (r == NULL) { |
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840 assert(_g1->is_in_permanent(start), "Or else where?"); |
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841 } else { |
1666
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842 // Checking whether the region we got back from the cache |
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843 // is young here is inappropriate. The region could have been |
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844 // freed, reallocated and tagged as young while in the cache. |
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845 // Hence we could see its young type change at any time. |
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846 // |
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847 // Process card pointer we get back from the hot card cache. This |
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848 // will check whether the region containing the card is young |
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849 // _after_ checking that the region has been allocated from. |
1705 | 850 oops_into_cset = concurrentRefineOneCard_impl(res, worker_i, |
851 false /* check_for_refs_into_cset */); | |
852 // The above call to concurrentRefineOneCard_impl is only | |
853 // performed if the hot card cache is enabled. This cache is | |
854 // disabled during an evacuation pause - which is the only | |
855 // time when we need know if the card contains references | |
856 // that point into the collection set. Also when the hot card | |
857 // cache is enabled, this code is executed by the concurrent | |
858 // refine threads - rather than the GC worker threads - and | |
859 // concurrentRefineOneCard_impl will return false. | |
860 assert(!oops_into_cset, "should not see true here"); | |
890
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861 } |
342 | 862 } |
863 } | |
864 | |
890
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865 if (!defer) { |
1705 | 866 oops_into_cset = |
867 concurrentRefineOneCard_impl(card_ptr, worker_i, check_for_refs_into_cset); | |
868 // We should only be detecting that the card contains references | |
869 // that point into the collection set if the current thread is | |
870 // a GC worker thread. | |
871 assert(!oops_into_cset || SafepointSynchronize::is_at_safepoint(), | |
872 "invalid result at non safepoint"); | |
342 | 873 } |
1705 | 874 return oops_into_cset; |
342 | 875 } |
876 | |
877 class HRRSStatsIter: public HeapRegionClosure { | |
878 size_t _occupied; | |
879 size_t _total_mem_sz; | |
880 size_t _max_mem_sz; | |
881 HeapRegion* _max_mem_sz_region; | |
882 public: | |
883 HRRSStatsIter() : | |
884 _occupied(0), | |
885 _total_mem_sz(0), | |
886 _max_mem_sz(0), | |
887 _max_mem_sz_region(NULL) | |
888 {} | |
889 | |
890 bool doHeapRegion(HeapRegion* r) { | |
891 if (r->continuesHumongous()) return false; | |
892 size_t mem_sz = r->rem_set()->mem_size(); | |
893 if (mem_sz > _max_mem_sz) { | |
894 _max_mem_sz = mem_sz; | |
895 _max_mem_sz_region = r; | |
896 } | |
897 _total_mem_sz += mem_sz; | |
898 size_t occ = r->rem_set()->occupied(); | |
899 _occupied += occ; | |
900 return false; | |
901 } | |
902 size_t total_mem_sz() { return _total_mem_sz; } | |
903 size_t max_mem_sz() { return _max_mem_sz; } | |
904 size_t occupied() { return _occupied; } | |
905 HeapRegion* max_mem_sz_region() { return _max_mem_sz_region; } | |
906 }; | |
907 | |
794 | 908 class PrintRSThreadVTimeClosure : public ThreadClosure { |
909 public: | |
910 virtual void do_thread(Thread *t) { | |
911 ConcurrentG1RefineThread* crt = (ConcurrentG1RefineThread*) t; | |
912 gclog_or_tty->print(" %5.2f", crt->vtime_accum()); | |
913 } | |
914 }; | |
915 | |
1861 | 916 void G1RemSet::print_summary_info() { |
342 | 917 G1CollectedHeap* g1 = G1CollectedHeap::heap(); |
918 | |
919 #if CARD_REPEAT_HISTO | |
920 gclog_or_tty->print_cr("\nG1 card_repeat count histogram: "); | |
921 gclog_or_tty->print_cr(" # of repeats --> # of cards with that number."); | |
922 card_repeat_count.print_on(gclog_or_tty); | |
923 #endif | |
924 | |
925 if (FILTEROUTOFREGIONCLOSURE_DOHISTOGRAMCOUNT) { | |
926 gclog_or_tty->print_cr("\nG1 rem-set out-of-region histogram: "); | |
927 gclog_or_tty->print_cr(" # of CS ptrs --> # of cards with that number."); | |
928 out_of_histo.print_on(gclog_or_tty); | |
929 } | |
794 | 930 gclog_or_tty->print_cr("\n Concurrent RS processed %d cards", |
931 _conc_refine_cards); | |
342 | 932 DirtyCardQueueSet& dcqs = JavaThread::dirty_card_queue_set(); |
933 jint tot_processed_buffers = | |
934 dcqs.processed_buffers_mut() + dcqs.processed_buffers_rs_thread(); | |
935 gclog_or_tty->print_cr(" Of %d completed buffers:", tot_processed_buffers); | |
794 | 936 gclog_or_tty->print_cr(" %8d (%5.1f%%) by conc RS threads.", |
342 | 937 dcqs.processed_buffers_rs_thread(), |
938 100.0*(float)dcqs.processed_buffers_rs_thread()/ | |
939 (float)tot_processed_buffers); | |
940 gclog_or_tty->print_cr(" %8d (%5.1f%%) by mutator threads.", | |
941 dcqs.processed_buffers_mut(), | |
942 100.0*(float)dcqs.processed_buffers_mut()/ | |
943 (float)tot_processed_buffers); | |
794 | 944 gclog_or_tty->print_cr(" Conc RS threads times(s)"); |
945 PrintRSThreadVTimeClosure p; | |
946 gclog_or_tty->print(" "); | |
947 g1->concurrent_g1_refine()->threads_do(&p); | |
342 | 948 gclog_or_tty->print_cr(""); |
794 | 949 |
1861 | 950 HRRSStatsIter blk; |
951 g1->heap_region_iterate(&blk); | |
952 gclog_or_tty->print_cr(" Total heap region rem set sizes = " SIZE_FORMAT "K." | |
953 " Max = " SIZE_FORMAT "K.", | |
954 blk.total_mem_sz()/K, blk.max_mem_sz()/K); | |
955 gclog_or_tty->print_cr(" Static structures = " SIZE_FORMAT "K," | |
956 " free_lists = " SIZE_FORMAT "K.", | |
957 HeapRegionRemSet::static_mem_size()/K, | |
958 HeapRegionRemSet::fl_mem_size()/K); | |
959 gclog_or_tty->print_cr(" %d occupied cards represented.", | |
960 blk.occupied()); | |
961 gclog_or_tty->print_cr(" Max sz region = [" PTR_FORMAT ", " PTR_FORMAT " )" | |
962 ", cap = " SIZE_FORMAT "K, occ = " SIZE_FORMAT "K.", | |
963 blk.max_mem_sz_region()->bottom(), blk.max_mem_sz_region()->end(), | |
964 (blk.max_mem_sz_region()->rem_set()->mem_size() + K - 1)/K, | |
965 (blk.max_mem_sz_region()->rem_set()->occupied() + K - 1)/K); | |
966 gclog_or_tty->print_cr(" Did %d coarsenings.", HeapRegionRemSet::n_coarsenings()); | |
342 | 967 } |
1705 | 968 |
1861 | 969 void G1RemSet::prepare_for_verify() { |
637
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970 if (G1HRRSFlushLogBuffersOnVerify && |
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971 (VerifyBeforeGC || VerifyAfterGC) |
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972 && !_g1->full_collection()) { |
342 | 973 cleanupHRRS(); |
974 _g1->set_refine_cte_cl_concurrency(false); | |
975 if (SafepointSynchronize::is_at_safepoint()) { | |
976 DirtyCardQueueSet& dcqs = JavaThread::dirty_card_queue_set(); | |
977 dcqs.concatenate_logs(); | |
978 } | |
979 bool cg1r_use_cache = _cg1r->use_cache(); | |
980 _cg1r->set_use_cache(false); | |
1705 | 981 DirtyCardQueue into_cset_dcq(&_g1->into_cset_dirty_card_queue_set()); |
982 updateRS(&into_cset_dcq, 0); | |
983 _g1->into_cset_dirty_card_queue_set().clear(); | |
342 | 984 _cg1r->set_use_cache(cg1r_use_cache); |
637
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985 |
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986 assert(JavaThread::dirty_card_queue_set().completed_buffers_num() == 0, "All should be consumed"); |
342 | 987 } |
988 } |