Mercurial > hg > truffle
annotate src/share/vm/gc_implementation/g1/satbQueue.cpp @ 19083:09292c24d555
LSStackSlotAllocator: hide inner class.
author | Josef Eisl <josef.eisl@jku.at> |
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date | Sat, 31 Jan 2015 11:07:15 +0100 |
parents | 52b4284cb496 |
children | 7848fc12602b |
rev | line source |
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342 | 1 /* |
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2 * Copyright (c) 2001, 2014, 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" |
2149 | 26 #include "gc_implementation/g1/g1CollectedHeap.inline.hpp" |
1972 | 27 #include "gc_implementation/g1/satbQueue.hpp" |
28 #include "memory/allocation.inline.hpp" | |
29 #include "memory/sharedHeap.hpp" | |
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30 #include "oops/oop.inline.hpp" |
1972 | 31 #include "runtime/mutexLocker.hpp" |
32 #include "runtime/thread.hpp" | |
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33 #include "runtime/vmThread.hpp" |
342 | 34 |
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35 PRAGMA_FORMAT_MUTE_WARNINGS_FOR_GCC |
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36 |
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37 void ObjPtrQueue::flush() { |
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38 // The buffer might contain refs into the CSet. We have to filter it |
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39 // first before we flush it, otherwise we might end up with an |
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40 // enqueued buffer with refs into the CSet which breaks our invariants. |
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41 filter(); |
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42 PtrQueue::flush(); |
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43 } |
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44 |
2149 | 45 // This method removes entries from an SATB buffer that will not be |
46 // useful to the concurrent marking threads. An entry is removed if it | |
47 // satisfies one of the following conditions: | |
48 // | |
49 // * it points to an object outside the G1 heap (G1's concurrent | |
50 // marking only visits objects inside the G1 heap), | |
51 // * it points to an object that has been allocated since marking | |
52 // started (according to SATB those objects do not need to be | |
53 // visited during marking), or | |
54 // * it points to an object that has already been marked (no need to | |
55 // process it again). | |
56 // | |
57 // The rest of the entries will be retained and are compacted towards | |
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58 // the top of the buffer. Note that, because we do not allow old |
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59 // regions in the CSet during marking, all objects on the CSet regions |
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60 // are young (eden or survivors) and therefore implicitly live. So any |
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61 // references into the CSet will be removed during filtering. |
2149 | 62 |
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63 void ObjPtrQueue::filter() { |
2149 | 64 G1CollectedHeap* g1h = G1CollectedHeap::heap(); |
65 void** buf = _buf; | |
66 size_t sz = _sz; | |
67 | |
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68 if (buf == NULL) { |
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69 // nothing to do |
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70 return; |
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71 } |
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72 |
2149 | 73 // Used for sanity checking at the end of the loop. |
74 debug_only(size_t entries = 0; size_t retained = 0;) | |
75 | |
76 size_t i = sz; | |
77 size_t new_index = sz; | |
78 | |
79 while (i > _index) { | |
80 assert(i > 0, "we should have at least one more entry to process"); | |
81 i -= oopSize; | |
82 debug_only(entries += 1;) | |
83 oop* p = (oop*) &buf[byte_index_to_index((int) i)]; | |
84 oop obj = *p; | |
85 // NULL the entry so that unused parts of the buffer contain NULLs | |
86 // at the end. If we are going to retain it we will copy it to its | |
87 // final place. If we have retained all entries we have visited so | |
88 // far, we'll just end up copying it to the same place. | |
89 *p = NULL; | |
90 | |
91 bool retain = g1h->is_obj_ill(obj); | |
92 if (retain) { | |
93 assert(new_index > 0, "we should not have already filled up the buffer"); | |
94 new_index -= oopSize; | |
95 assert(new_index >= i, | |
96 "new_index should never be below i, as we alwaysr compact 'up'"); | |
97 oop* new_p = (oop*) &buf[byte_index_to_index((int) new_index)]; | |
98 assert(new_p >= p, "the destination location should never be below " | |
99 "the source as we always compact 'up'"); | |
100 assert(*new_p == NULL, | |
101 "we should have already cleared the destination location"); | |
102 *new_p = obj; | |
103 debug_only(retained += 1;) | |
104 } | |
105 } | |
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106 |
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107 #ifdef ASSERT |
2149 | 108 size_t entries_calc = (sz - _index) / oopSize; |
109 assert(entries == entries_calc, "the number of entries we counted " | |
110 "should match the number of entries we calculated"); | |
111 size_t retained_calc = (sz - new_index) / oopSize; | |
112 assert(retained == retained_calc, "the number of retained entries we counted " | |
113 "should match the number of retained entries we calculated"); | |
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114 #endif // ASSERT |
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115 |
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116 _index = new_index; |
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117 } |
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118 |
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119 // This method will first apply the above filtering to the buffer. If |
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120 // post-filtering a large enough chunk of the buffer has been cleared |
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121 // we can re-use the buffer (instead of enqueueing it) and we can just |
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122 // allow the mutator to carry on executing using the same buffer |
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123 // instead of replacing it. |
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124 |
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125 bool ObjPtrQueue::should_enqueue_buffer() { |
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126 assert(_lock == NULL || _lock->owned_by_self(), |
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127 "we should have taken the lock before calling this"); |
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128 |
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129 // Even if G1SATBBufferEnqueueingThresholdPercent == 0 we have to |
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130 // filter the buffer given that this will remove any references into |
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131 // the CSet as we currently assume that no such refs will appear in |
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132 // enqueued buffers. |
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133 |
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134 // This method should only be called if there is a non-NULL buffer |
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135 // that is full. |
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136 assert(_index == 0, "pre-condition"); |
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137 assert(_buf != NULL, "pre-condition"); |
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138 |
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139 filter(); |
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140 |
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141 size_t sz = _sz; |
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142 size_t all_entries = sz / oopSize; |
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143 size_t retained_entries = (sz - _index) / oopSize; |
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144 size_t perc = retained_entries * 100 / all_entries; |
2149 | 145 bool should_enqueue = perc > (size_t) G1SATBBufferEnqueueingThresholdPercent; |
146 return should_enqueue; | |
147 } | |
148 | |
342 | 149 void ObjPtrQueue::apply_closure(ObjectClosure* cl) { |
150 if (_buf != NULL) { | |
151 apply_closure_to_buffer(cl, _buf, _index, _sz); | |
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152 } |
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153 } |
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154 |
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155 void ObjPtrQueue::apply_closure_and_empty(ObjectClosure* cl) { |
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156 if (_buf != NULL) { |
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157 apply_closure_to_buffer(cl, _buf, _index, _sz); |
342 | 158 _index = _sz; |
159 } | |
160 } | |
161 | |
162 void ObjPtrQueue::apply_closure_to_buffer(ObjectClosure* cl, | |
163 void** buf, size_t index, size_t sz) { | |
164 if (cl == NULL) return; | |
165 for (size_t i = index; i < sz; i += oopSize) { | |
166 oop obj = (oop)buf[byte_index_to_index((int)i)]; | |
167 // There can be NULL entries because of destructors. | |
168 if (obj != NULL) { | |
169 cl->do_object(obj); | |
170 } | |
171 } | |
172 } | |
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173 |
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174 #ifndef PRODUCT |
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175 // Helpful for debugging |
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176 |
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177 void ObjPtrQueue::print(const char* name) { |
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178 print(name, _buf, _index, _sz); |
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179 } |
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180 |
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181 void ObjPtrQueue::print(const char* name, |
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182 void** buf, size_t index, size_t sz) { |
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183 gclog_or_tty->print_cr(" SATB BUFFER [%s] buf: "PTR_FORMAT" " |
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184 "index: "SIZE_FORMAT" sz: "SIZE_FORMAT, |
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185 name, buf, index, sz); |
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186 } |
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187 #endif // PRODUCT |
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188 |
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189 #ifdef ASSERT |
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190 void ObjPtrQueue::verify_oops_in_buffer() { |
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191 if (_buf == NULL) return; |
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192 for (size_t i = _index; i < _sz; i += oopSize) { |
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193 oop obj = (oop)_buf[byte_index_to_index((int)i)]; |
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194 assert(obj != NULL && obj->is_oop(true /* ignore mark word */), |
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195 "Not an oop"); |
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196 } |
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197 } |
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198 #endif |
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199 |
342 | 200 #ifdef _MSC_VER // the use of 'this' below gets a warning, make it go away |
201 #pragma warning( disable:4355 ) // 'this' : used in base member initializer list | |
202 #endif // _MSC_VER | |
203 | |
204 SATBMarkQueueSet::SATBMarkQueueSet() : | |
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205 PtrQueueSet(), _closure(NULL), _par_closures(NULL), |
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206 _shared_satb_queue(this, true /*perm*/) { } |
342 | 207 |
208 void SATBMarkQueueSet::initialize(Monitor* cbl_mon, Mutex* fl_lock, | |
1111 | 209 int process_completed_threshold, |
342 | 210 Mutex* lock) { |
1111 | 211 PtrQueueSet::initialize(cbl_mon, fl_lock, process_completed_threshold, -1); |
342 | 212 _shared_satb_queue.set_lock(lock); |
213 if (ParallelGCThreads > 0) { | |
6197 | 214 _par_closures = NEW_C_HEAP_ARRAY(ObjectClosure*, ParallelGCThreads, mtGC); |
342 | 215 } |
216 } | |
217 | |
218 void SATBMarkQueueSet::handle_zero_index_for_thread(JavaThread* t) { | |
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219 DEBUG_ONLY(t->satb_mark_queue().verify_oops_in_buffer();) |
342 | 220 t->satb_mark_queue().handle_zero_index(); |
221 } | |
222 | |
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223 #ifdef ASSERT |
14253 | 224 void SATBMarkQueueSet::dump_active_states(bool expected_active) { |
225 gclog_or_tty->print_cr("Expected SATB active state: %s", | |
226 expected_active ? "ACTIVE" : "INACTIVE"); | |
227 gclog_or_tty->print_cr("Actual SATB active states:"); | |
228 gclog_or_tty->print_cr(" Queue set: %s", is_active() ? "ACTIVE" : "INACTIVE"); | |
229 for (JavaThread* t = Threads::first(); t; t = t->next()) { | |
230 gclog_or_tty->print_cr(" Thread \"%s\" queue: %s", t->name(), | |
231 t->satb_mark_queue().is_active() ? "ACTIVE" : "INACTIVE"); | |
232 } | |
233 gclog_or_tty->print_cr(" Shared queue: %s", | |
234 shared_satb_queue()->is_active() ? "ACTIVE" : "INACTIVE"); | |
235 } | |
236 | |
237 void SATBMarkQueueSet::verify_active_states(bool expected_active) { | |
238 // Verify queue set state | |
239 if (is_active() != expected_active) { | |
240 dump_active_states(expected_active); | |
241 guarantee(false, "SATB queue set has an unexpected active state"); | |
242 } | |
243 | |
244 // Verify thread queue states | |
245 for (JavaThread* t = Threads::first(); t; t = t->next()) { | |
246 if (t->satb_mark_queue().is_active() != expected_active) { | |
247 dump_active_states(expected_active); | |
248 guarantee(false, "Thread SATB queue has an unexpected active state"); | |
249 } | |
250 } | |
251 | |
252 // Verify shared queue state | |
253 if (shared_satb_queue()->is_active() != expected_active) { | |
254 dump_active_states(expected_active); | |
255 guarantee(false, "Shared SATB queue has an unexpected active state"); | |
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256 } |
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257 } |
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258 #endif // ASSERT |
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259 |
14253 | 260 void SATBMarkQueueSet::set_active_all_threads(bool active, bool expected_active) { |
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261 assert(SafepointSynchronize::is_at_safepoint(), "Must be at safepoint."); |
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262 #ifdef ASSERT |
14253 | 263 verify_active_states(expected_active); |
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264 #endif // ASSERT |
14253 | 265 _all_active = active; |
266 for (JavaThread* t = Threads::first(); t; t = t->next()) { | |
267 t->satb_mark_queue().set_active(active); | |
342 | 268 } |
14253 | 269 shared_satb_queue()->set_active(active); |
342 | 270 } |
271 | |
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272 void SATBMarkQueueSet::filter_thread_buffers() { |
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273 for(JavaThread* t = Threads::first(); t; t = t->next()) { |
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274 t->satb_mark_queue().filter(); |
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275 } |
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276 shared_satb_queue()->filter(); |
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277 } |
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278 |
342 | 279 void SATBMarkQueueSet::set_closure(ObjectClosure* closure) { |
280 _closure = closure; | |
281 } | |
282 | |
283 void SATBMarkQueueSet::set_par_closure(int i, ObjectClosure* par_closure) { | |
284 assert(ParallelGCThreads > 0 && _par_closures != NULL, "Precondition"); | |
285 _par_closures[i] = par_closure; | |
286 } | |
287 | |
288 void SATBMarkQueueSet::iterate_closure_all_threads() { | |
289 for(JavaThread* t = Threads::first(); t; t = t->next()) { | |
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290 t->satb_mark_queue().apply_closure_and_empty(_closure); |
342 | 291 } |
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292 shared_satb_queue()->apply_closure_and_empty(_closure); |
342 | 293 } |
294 | |
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295 void SATBMarkQueueSet::par_iterate_closure_all_threads(uint worker) { |
342 | 296 SharedHeap* sh = SharedHeap::heap(); |
297 int parity = sh->strong_roots_parity(); | |
298 | |
299 for(JavaThread* t = Threads::first(); t; t = t->next()) { | |
300 if (t->claim_oops_do(true, parity)) { | |
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301 t->satb_mark_queue().apply_closure_and_empty(_par_closures[worker]); |
342 | 302 } |
303 } | |
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304 |
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305 // We also need to claim the VMThread so that its parity is updated |
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306 // otherwise the next call to Thread::possibly_parallel_oops_do inside |
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307 // a StrongRootsScope might skip the VMThread because it has a stale |
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308 // parity that matches the parity set by the StrongRootsScope |
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309 // |
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310 // Whichever worker succeeds in claiming the VMThread gets to do |
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311 // the shared queue. |
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312 |
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313 VMThread* vmt = VMThread::vm_thread(); |
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314 if (vmt->claim_oops_do(true, parity)) { |
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315 shared_satb_queue()->apply_closure_and_empty(_par_closures[worker]); |
342 | 316 } |
317 } | |
318 | |
319 bool SATBMarkQueueSet::apply_closure_to_completed_buffer_work(bool par, | |
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320 uint worker) { |
1111 | 321 BufferNode* nd = NULL; |
342 | 322 { |
323 MutexLockerEx x(_cbl_mon, Mutex::_no_safepoint_check_flag); | |
324 if (_completed_buffers_head != NULL) { | |
325 nd = _completed_buffers_head; | |
1111 | 326 _completed_buffers_head = nd->next(); |
342 | 327 if (_completed_buffers_head == NULL) _completed_buffers_tail = NULL; |
328 _n_completed_buffers--; | |
329 if (_n_completed_buffers == 0) _process_completed = false; | |
330 } | |
331 } | |
332 ObjectClosure* cl = (par ? _par_closures[worker] : _closure); | |
333 if (nd != NULL) { | |
1111 | 334 void **buf = BufferNode::make_buffer_from_node(nd); |
335 ObjPtrQueue::apply_closure_to_buffer(cl, buf, 0, _sz); | |
336 deallocate_buffer(buf); | |
342 | 337 return true; |
338 } else { | |
339 return false; | |
340 } | |
341 } | |
342 | |
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343 void SATBMarkQueueSet::iterate_completed_buffers_read_only(ObjectClosure* cl) { |
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344 assert(SafepointSynchronize::is_at_safepoint(), "Must be at safepoint."); |
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345 assert(cl != NULL, "pre-condition"); |
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346 |
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347 BufferNode* nd = _completed_buffers_head; |
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348 while (nd != NULL) { |
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349 void** buf = BufferNode::make_buffer_from_node(nd); |
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350 ObjPtrQueue::apply_closure_to_buffer(cl, buf, 0, _sz); |
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351 nd = nd->next(); |
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352 } |
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353 } |
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354 |
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355 void SATBMarkQueueSet::iterate_thread_buffers_read_only(ObjectClosure* cl) { |
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356 assert(SafepointSynchronize::is_at_safepoint(), "Must be at safepoint."); |
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357 assert(cl != NULL, "pre-condition"); |
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358 |
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359 for (JavaThread* t = Threads::first(); t; t = t->next()) { |
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360 t->satb_mark_queue().apply_closure(cl); |
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361 } |
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362 shared_satb_queue()->apply_closure(cl); |
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363 } |
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364 |
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365 #ifndef PRODUCT |
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366 // Helpful for debugging |
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367 |
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368 #define SATB_PRINTER_BUFFER_SIZE 256 |
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369 |
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370 void SATBMarkQueueSet::print_all(const char* msg) { |
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371 char buffer[SATB_PRINTER_BUFFER_SIZE]; |
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372 assert(SafepointSynchronize::is_at_safepoint(), "Must be at safepoint."); |
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373 |
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374 gclog_or_tty->cr(); |
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375 gclog_or_tty->print_cr("SATB BUFFERS [%s]", msg); |
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376 |
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377 BufferNode* nd = _completed_buffers_head; |
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378 int i = 0; |
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379 while (nd != NULL) { |
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380 void** buf = BufferNode::make_buffer_from_node(nd); |
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381 jio_snprintf(buffer, SATB_PRINTER_BUFFER_SIZE, "Enqueued: %d", i); |
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382 ObjPtrQueue::print(buffer, buf, 0, _sz); |
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383 nd = nd->next(); |
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384 i += 1; |
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385 } |
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386 |
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387 for (JavaThread* t = Threads::first(); t; t = t->next()) { |
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388 jio_snprintf(buffer, SATB_PRINTER_BUFFER_SIZE, "Thread: %s", t->name()); |
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389 t->satb_mark_queue().print(buffer); |
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390 } |
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391 |
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392 shared_satb_queue()->print("Shared"); |
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393 |
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394 gclog_or_tty->cr(); |
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395 } |
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396 #endif // PRODUCT |
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397 |
342 | 398 void SATBMarkQueueSet::abandon_partial_marking() { |
1111 | 399 BufferNode* buffers_to_delete = NULL; |
342 | 400 { |
401 MutexLockerEx x(_cbl_mon, Mutex::_no_safepoint_check_flag); | |
402 while (_completed_buffers_head != NULL) { | |
1111 | 403 BufferNode* nd = _completed_buffers_head; |
404 _completed_buffers_head = nd->next(); | |
405 nd->set_next(buffers_to_delete); | |
342 | 406 buffers_to_delete = nd; |
407 } | |
408 _completed_buffers_tail = NULL; | |
409 _n_completed_buffers = 0; | |
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410 DEBUG_ONLY(assert_completed_buffer_list_len_correct_locked()); |
342 | 411 } |
412 while (buffers_to_delete != NULL) { | |
1111 | 413 BufferNode* nd = buffers_to_delete; |
414 buffers_to_delete = nd->next(); | |
415 deallocate_buffer(BufferNode::make_buffer_from_node(nd)); | |
342 | 416 } |
417 assert(SafepointSynchronize::is_at_safepoint(), "Must be at safepoint."); | |
418 // So we can safely manipulate these queues. | |
419 for (JavaThread* t = Threads::first(); t; t = t->next()) { | |
420 t->satb_mark_queue().reset(); | |
421 } | |
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422 shared_satb_queue()->reset(); |
342 | 423 } |