Mercurial > hg > truffle
annotate src/share/vm/gc_implementation/g1/concurrentMarkThread.cpp @ 5935:a735aec54ea4
7123170: JCK vm/jvmti/ResourceExhausted/resexh001/resexh00101/ tests fails since 7u4 b02
Summary: The JVMTI ResourceExhausted events must be generated in all places where OOME is thrown
Reviewed-by: acorn, coleenp, dcubed, dholmes, dsamersoff, jwilhelm, tonyp
Contributed-by: serguei.spitsyn@oracle.com
author | sspitsyn |
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date | Wed, 14 Mar 2012 20:06:48 -0700 |
parents | eff609af17d7 |
children | 64bf7c8270cb |
rev | line source |
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342 | 1 /* |
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2 * Copyright (c) 2001, 2012, 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/concurrentMarkThread.inline.hpp" | |
27 #include "gc_implementation/g1/g1CollectedHeap.inline.hpp" | |
28 #include "gc_implementation/g1/g1CollectorPolicy.hpp" | |
29 #include "gc_implementation/g1/g1MMUTracker.hpp" | |
30 #include "gc_implementation/g1/vm_operations_g1.hpp" | |
31 #include "memory/resourceArea.hpp" | |
32 #include "runtime/vmThread.hpp" | |
342 | 33 |
34 // ======= Concurrent Mark Thread ======== | |
35 | |
36 // The CM thread is created when the G1 garbage collector is used | |
37 | |
38 SurrogateLockerThread* | |
39 ConcurrentMarkThread::_slt = NULL; | |
40 | |
41 ConcurrentMarkThread::ConcurrentMarkThread(ConcurrentMark* cm) : | |
42 ConcurrentGCThread(), | |
43 _cm(cm), | |
44 _started(false), | |
45 _in_progress(false), | |
46 _vtime_accum(0.0), | |
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47 _vtime_mark_accum(0.0) { |
342 | 48 create_and_start(); |
49 } | |
50 | |
51 class CMCheckpointRootsFinalClosure: public VoidClosure { | |
52 | |
53 ConcurrentMark* _cm; | |
54 public: | |
55 | |
56 CMCheckpointRootsFinalClosure(ConcurrentMark* cm) : | |
57 _cm(cm) {} | |
58 | |
59 void do_void(){ | |
60 _cm->checkpointRootsFinal(false); // !clear_all_soft_refs | |
61 } | |
62 }; | |
63 | |
64 class CMCleanUp: public VoidClosure { | |
65 ConcurrentMark* _cm; | |
66 public: | |
67 | |
68 CMCleanUp(ConcurrentMark* cm) : | |
69 _cm(cm) {} | |
70 | |
71 void do_void(){ | |
72 _cm->cleanup(); | |
73 } | |
74 }; | |
75 | |
76 | |
77 | |
78 void ConcurrentMarkThread::run() { | |
79 initialize_in_thread(); | |
80 _vtime_start = os::elapsedVTime(); | |
81 wait_for_universe_init(); | |
82 | |
2152 | 83 G1CollectedHeap* g1h = G1CollectedHeap::heap(); |
84 G1CollectorPolicy* g1_policy = g1h->g1_policy(); | |
342 | 85 G1MMUTracker *mmu_tracker = g1_policy->mmu_tracker(); |
86 Thread *current_thread = Thread::current(); | |
87 | |
88 while (!_should_terminate) { | |
89 // wait until started is set. | |
90 sleepBeforeNextCycle(); | |
91 { | |
92 ResourceMark rm; | |
93 HandleMark hm; | |
94 double cycle_start = os::elapsedVTime(); | |
95 char verbose_str[128]; | |
96 | |
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97 // We have to ensure that we finish scanning the root regions |
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98 // before the next GC takes place. To ensure this we have to |
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99 // make sure that we do not join the STS until the root regions |
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100 // have been scanned. If we did then it's possible that a |
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101 // subsequent GC could block us from joining the STS and proceed |
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102 // without the root regions have been scanned which would be a |
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103 // correctness issue. |
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104 |
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105 double scan_start = os::elapsedTime(); |
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106 if (!cm()->has_aborted()) { |
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107 if (PrintGC) { |
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108 gclog_or_tty->date_stamp(PrintGCDateStamps); |
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109 gclog_or_tty->stamp(PrintGCTimeStamps); |
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110 gclog_or_tty->print_cr("[GC concurrent-root-region-scan-start]"); |
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111 } |
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112 |
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113 _cm->scanRootRegions(); |
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114 |
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115 double scan_end = os::elapsedTime(); |
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116 if (PrintGC) { |
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117 gclog_or_tty->date_stamp(PrintGCDateStamps); |
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118 gclog_or_tty->stamp(PrintGCTimeStamps); |
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119 gclog_or_tty->print_cr("[GC concurrent-root-region-scan-end, %1.7lf]", |
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120 scan_end - scan_start); |
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121 } |
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122 } |
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123 |
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124 double mark_start_sec = os::elapsedTime(); |
342 | 125 if (PrintGC) { |
126 gclog_or_tty->date_stamp(PrintGCDateStamps); | |
127 gclog_or_tty->stamp(PrintGCTimeStamps); | |
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128 gclog_or_tty->print_cr("[GC concurrent-mark-start]"); |
342 | 129 } |
130 | |
131 int iter = 0; | |
132 do { | |
133 iter++; | |
134 if (!cm()->has_aborted()) { | |
135 _cm->markFromRoots(); | |
136 } | |
137 | |
138 double mark_end_time = os::elapsedVTime(); | |
139 double mark_end_sec = os::elapsedTime(); | |
140 _vtime_mark_accum += (mark_end_time - cycle_start); | |
141 if (!cm()->has_aborted()) { | |
142 if (g1_policy->adaptive_young_list_length()) { | |
143 double now = os::elapsedTime(); | |
144 double remark_prediction_ms = g1_policy->predict_remark_time_ms(); | |
145 jlong sleep_time_ms = mmu_tracker->when_ms(now, remark_prediction_ms); | |
146 os::sleep(current_thread, sleep_time_ms, false); | |
147 } | |
148 | |
149 if (PrintGC) { | |
150 gclog_or_tty->date_stamp(PrintGCDateStamps); | |
151 gclog_or_tty->stamp(PrintGCTimeStamps); | |
152 gclog_or_tty->print_cr("[GC concurrent-mark-end, %1.7lf sec]", | |
153 mark_end_sec - mark_start_sec); | |
154 } | |
155 | |
156 CMCheckpointRootsFinalClosure final_cl(_cm); | |
157 sprintf(verbose_str, "GC remark"); | |
158 VM_CGC_Operation op(&final_cl, verbose_str); | |
159 VMThread::execute(&op); | |
160 } | |
161 if (cm()->restart_for_overflow() && | |
162 G1TraceMarkStackOverflow) { | |
163 gclog_or_tty->print_cr("Restarting conc marking because of MS overflow " | |
164 "in remark (restart #%d).", iter); | |
165 } | |
166 | |
167 if (cm()->restart_for_overflow()) { | |
168 if (PrintGC) { | |
169 gclog_or_tty->date_stamp(PrintGCDateStamps); | |
170 gclog_or_tty->stamp(PrintGCTimeStamps); | |
171 gclog_or_tty->print_cr("[GC concurrent-mark-restart-for-overflow]"); | |
172 } | |
173 } | |
174 } while (cm()->restart_for_overflow()); | |
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175 |
342 | 176 double end_time = os::elapsedVTime(); |
177 // Update the total virtual time before doing this, since it will try | |
178 // to measure it to get the vtime for this marking. We purposely | |
179 // neglect the presumably-short "completeCleanup" phase here. | |
180 _vtime_accum = (end_time - _vtime_start); | |
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181 |
342 | 182 if (!cm()->has_aborted()) { |
183 if (g1_policy->adaptive_young_list_length()) { | |
184 double now = os::elapsedTime(); | |
185 double cleanup_prediction_ms = g1_policy->predict_cleanup_time_ms(); | |
186 jlong sleep_time_ms = mmu_tracker->when_ms(now, cleanup_prediction_ms); | |
187 os::sleep(current_thread, sleep_time_ms, false); | |
188 } | |
189 | |
190 CMCleanUp cl_cl(_cm); | |
191 sprintf(verbose_str, "GC cleanup"); | |
192 VM_CGC_Operation op(&cl_cl, verbose_str); | |
193 VMThread::execute(&op); | |
194 } else { | |
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195 // We don't want to update the marking status if a GC pause |
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196 // is already underway. |
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197 _sts.join(); |
2152 | 198 g1h->set_marking_complete(); |
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199 _sts.leave(); |
342 | 200 } |
201 | |
2152 | 202 // Check if cleanup set the free_regions_coming flag. If it |
203 // hasn't, we can just skip the next step. | |
204 if (g1h->free_regions_coming()) { | |
205 // The following will finish freeing up any regions that we | |
206 // found to be empty during cleanup. We'll do this part | |
207 // without joining the suspendible set. If an evacuation pause | |
2361 | 208 // takes place, then we would carry on freeing regions in |
2152 | 209 // case they are needed by the pause. If a Full GC takes |
2361 | 210 // place, it would wait for us to process the regions |
2152 | 211 // reclaimed by cleanup. |
212 | |
342 | 213 double cleanup_start_sec = os::elapsedTime(); |
214 if (PrintGC) { | |
215 gclog_or_tty->date_stamp(PrintGCDateStamps); | |
216 gclog_or_tty->stamp(PrintGCTimeStamps); | |
217 gclog_or_tty->print_cr("[GC concurrent-cleanup-start]"); | |
218 } | |
219 | |
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220 // Now do the concurrent cleanup operation. |
342 | 221 _cm->completeCleanup(); |
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222 |
2185 | 223 // Notify anyone who's waiting that there are no more free |
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224 // regions coming. We have to do this before we join the STS |
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225 // (in fact, we should not attempt to join the STS in the |
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226 // interval between finishing the cleanup pause and clearing |
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227 // the free_regions_coming flag) otherwise we might deadlock: |
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228 // a GC worker could be blocked waiting for the notification |
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229 // whereas this thread will be blocked for the pause to finish |
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230 // while it's trying to join the STS, which is conditional on |
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231 // the GC workers finishing. |
2185 | 232 g1h->reset_free_regions_coming(); |
233 | |
2152 | 234 double cleanup_end_sec = os::elapsedTime(); |
235 if (PrintGC) { | |
236 gclog_or_tty->date_stamp(PrintGCDateStamps); | |
237 gclog_or_tty->stamp(PrintGCTimeStamps); | |
238 gclog_or_tty->print_cr("[GC concurrent-cleanup-end, %1.7lf]", | |
239 cleanup_end_sec - cleanup_start_sec); | |
342 | 240 } |
241 } | |
2152 | 242 guarantee(cm()->cleanup_list_is_empty(), |
243 "at this point there should be no regions on the cleanup list"); | |
342 | 244 |
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245 // There is a tricky race before recording that the concurrent |
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246 // cleanup has completed and a potential Full GC starting around |
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247 // the same time. We want to make sure that the Full GC calls |
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248 // abort() on concurrent mark after |
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249 // record_concurrent_mark_cleanup_completed(), since abort() is |
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250 // the method that will reset the concurrent mark state. If we |
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251 // end up calling record_concurrent_mark_cleanup_completed() |
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252 // after abort() then we might incorrectly undo some of the work |
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253 // abort() did. Checking the has_aborted() flag after joining |
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254 // the STS allows the correct ordering of the two methods. There |
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255 // are two scenarios: |
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256 // |
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257 // a) If we reach here before the Full GC, the fact that we have |
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258 // joined the STS means that the Full GC cannot start until we |
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259 // leave the STS, so record_concurrent_mark_cleanup_completed() |
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260 // will complete before abort() is called. |
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261 // |
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262 // b) If we reach here during the Full GC, we'll be held up from |
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263 // joining the STS until the Full GC is done, which means that |
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264 // abort() will have completed and has_aborted() will return |
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265 // true to prevent us from calling |
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266 // record_concurrent_mark_cleanup_completed() (and, in fact, it's |
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267 // not needed any more as the concurrent mark state has been |
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268 // already reset). |
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269 _sts.join(); |
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270 if (!cm()->has_aborted()) { |
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271 g1_policy->record_concurrent_mark_cleanup_completed(); |
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272 } |
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273 _sts.leave(); |
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274 |
342 | 275 if (cm()->has_aborted()) { |
276 if (PrintGC) { | |
277 gclog_or_tty->date_stamp(PrintGCDateStamps); | |
278 gclog_or_tty->stamp(PrintGCTimeStamps); | |
279 gclog_or_tty->print_cr("[GC concurrent-mark-abort]"); | |
280 } | |
281 } | |
282 | |
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283 // We now want to allow clearing of the marking bitmap to be |
342 | 284 // suspended by a collection pause. |
285 _sts.join(); | |
286 _cm->clearNextBitmap(); | |
287 _sts.leave(); | |
288 } | |
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289 |
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290 // Update the number of full collections that have been |
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291 // completed. This will also notify the FullGCCount_lock in case a |
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292 // Java thread is waiting for a full GC to happen (e.g., it |
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293 // called System.gc() with +ExplicitGCInvokesConcurrent). |
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294 _sts.join(); |
2152 | 295 g1h->increment_full_collections_completed(true /* concurrent */); |
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296 _sts.leave(); |
342 | 297 } |
298 assert(_should_terminate, "just checking"); | |
299 | |
300 terminate(); | |
301 } | |
302 | |
303 | |
304 void ConcurrentMarkThread::yield() { | |
305 _sts.yield("Concurrent Mark"); | |
306 } | |
307 | |
308 void ConcurrentMarkThread::stop() { | |
309 // it is ok to take late safepoints here, if needed | |
310 MutexLockerEx mu(Terminator_lock); | |
311 _should_terminate = true; | |
312 while (!_has_terminated) { | |
313 Terminator_lock->wait(); | |
314 } | |
315 } | |
316 | |
1019 | 317 void ConcurrentMarkThread::print() const { |
318 print_on(tty); | |
319 } | |
320 | |
321 void ConcurrentMarkThread::print_on(outputStream* st) const { | |
322 st->print("\"G1 Main Concurrent Mark GC Thread\" "); | |
323 Thread::print_on(st); | |
324 st->cr(); | |
342 | 325 } |
326 | |
327 void ConcurrentMarkThread::sleepBeforeNextCycle() { | |
328 // We join here because we don't want to do the "shouldConcurrentMark()" | |
329 // below while the world is otherwise stopped. | |
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330 assert(!in_progress(), "should have been cleared"); |
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331 |
342 | 332 MutexLockerEx x(CGC_lock, Mutex::_no_safepoint_check_flag); |
333 while (!started()) { | |
334 CGC_lock->wait(Mutex::_no_safepoint_check_flag); | |
335 } | |
336 set_in_progress(); | |
337 clear_started(); | |
338 } | |
339 | |
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340 // Note: As is the case with CMS - this method, although exported |
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341 // by the ConcurrentMarkThread, which is a non-JavaThread, can only |
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342 // be called by a JavaThread. Currently this is done at vm creation |
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343 // time (post-vm-init) by the main/Primordial (Java)Thread. |
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344 // XXX Consider changing this in the future to allow the CM thread |
342 | 345 // itself to create this thread? |
346 void ConcurrentMarkThread::makeSurrogateLockerThread(TRAPS) { | |
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347 assert(UseG1GC, "SLT thread needed only for concurrent GC"); |
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348 assert(THREAD->is_Java_thread(), "must be a Java thread"); |
342 | 349 assert(_slt == NULL, "SLT already created"); |
350 _slt = SurrogateLockerThread::make(THREAD); | |
351 } |