src/share/vm/gc_implementation/g1/g1CollectorPolicy.cpp

Tue, 12 Oct 2010 09:36:48 -0700

author
johnc
date
Tue, 12 Oct 2010 09:36:48 -0700
changeset 2216
c32059ef4dc0
parent 2188
8b10f48633dc
child 2314
f95d63e2154a
permissions
-rw-r--r--

6971296: G1: simplify G1RemSet class hierarchy
Summary: Remove G1RemSet base class and StupidG1RemSet class; rename HRInto_G1RemSet to just G1RemSet.
Reviewed-by: ysr, tonyp

ysr@777 1 /*
trims@1907 2 * Copyright (c) 2001, 2010, Oracle and/or its affiliates. All rights reserved.
ysr@777 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
ysr@777 4 *
ysr@777 5 * This code is free software; you can redistribute it and/or modify it
ysr@777 6 * under the terms of the GNU General Public License version 2 only, as
ysr@777 7 * published by the Free Software Foundation.
ysr@777 8 *
ysr@777 9 * This code is distributed in the hope that it will be useful, but WITHOUT
ysr@777 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
ysr@777 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
ysr@777 12 * version 2 for more details (a copy is included in the LICENSE file that
ysr@777 13 * accompanied this code).
ysr@777 14 *
ysr@777 15 * You should have received a copy of the GNU General Public License version
ysr@777 16 * 2 along with this work; if not, write to the Free Software Foundation,
ysr@777 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
ysr@777 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
ysr@777 22 *
ysr@777 23 */
ysr@777 24
ysr@777 25 #include "incls/_precompiled.incl"
ysr@777 26 #include "incls/_g1CollectorPolicy.cpp.incl"
ysr@777 27
ysr@777 28 #define PREDICTIONS_VERBOSE 0
ysr@777 29
ysr@777 30 // <NEW PREDICTION>
ysr@777 31
ysr@777 32 // Different defaults for different number of GC threads
ysr@777 33 // They were chosen by running GCOld and SPECjbb on debris with different
ysr@777 34 // numbers of GC threads and choosing them based on the results
ysr@777 35
ysr@777 36 // all the same
ysr@777 37 static double rs_length_diff_defaults[] = {
ysr@777 38 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0
ysr@777 39 };
ysr@777 40
ysr@777 41 static double cost_per_card_ms_defaults[] = {
ysr@777 42 0.01, 0.005, 0.005, 0.003, 0.003, 0.002, 0.002, 0.0015
ysr@777 43 };
ysr@777 44
ysr@777 45 // all the same
ysr@777 46 static double fully_young_cards_per_entry_ratio_defaults[] = {
ysr@777 47 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0
ysr@777 48 };
ysr@777 49
ysr@777 50 static double cost_per_entry_ms_defaults[] = {
ysr@777 51 0.015, 0.01, 0.01, 0.008, 0.008, 0.0055, 0.0055, 0.005
ysr@777 52 };
ysr@777 53
ysr@777 54 static double cost_per_byte_ms_defaults[] = {
ysr@777 55 0.00006, 0.00003, 0.00003, 0.000015, 0.000015, 0.00001, 0.00001, 0.000009
ysr@777 56 };
ysr@777 57
ysr@777 58 // these should be pretty consistent
ysr@777 59 static double constant_other_time_ms_defaults[] = {
ysr@777 60 5.0, 5.0, 5.0, 5.0, 5.0, 5.0, 5.0, 5.0
ysr@777 61 };
ysr@777 62
ysr@777 63
ysr@777 64 static double young_other_cost_per_region_ms_defaults[] = {
ysr@777 65 0.3, 0.2, 0.2, 0.15, 0.15, 0.12, 0.12, 0.1
ysr@777 66 };
ysr@777 67
ysr@777 68 static double non_young_other_cost_per_region_ms_defaults[] = {
ysr@777 69 1.0, 0.7, 0.7, 0.5, 0.5, 0.42, 0.42, 0.30
ysr@777 70 };
ysr@777 71
ysr@777 72 // </NEW PREDICTION>
ysr@777 73
ysr@777 74 G1CollectorPolicy::G1CollectorPolicy() :
jmasa@2188 75 _parallel_gc_threads(G1CollectedHeap::use_parallel_gc_threads()
jmasa@2188 76 ? ParallelGCThreads : 1),
jmasa@2188 77
jmasa@2188 78
ysr@777 79 _n_pauses(0),
ysr@777 80 _recent_CH_strong_roots_times_ms(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 81 _recent_G1_strong_roots_times_ms(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 82 _recent_evac_times_ms(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 83 _recent_pause_times_ms(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 84 _recent_rs_sizes(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 85 _recent_gc_times_ms(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 86 _all_pause_times_ms(new NumberSeq()),
ysr@777 87 _stop_world_start(0.0),
ysr@777 88 _all_stop_world_times_ms(new NumberSeq()),
ysr@777 89 _all_yield_times_ms(new NumberSeq()),
ysr@777 90
ysr@777 91 _all_mod_union_times_ms(new NumberSeq()),
ysr@777 92
apetrusenko@1112 93 _summary(new Summary()),
ysr@777 94
johnc@1325 95 #ifndef PRODUCT
ysr@777 96 _cur_clear_ct_time_ms(0.0),
johnc@1325 97 _min_clear_cc_time_ms(-1.0),
johnc@1325 98 _max_clear_cc_time_ms(-1.0),
johnc@1325 99 _cur_clear_cc_time_ms(0.0),
johnc@1325 100 _cum_clear_cc_time_ms(0.0),
johnc@1325 101 _num_cc_clears(0L),
johnc@1325 102 #endif
ysr@777 103
ysr@777 104 _region_num_young(0),
ysr@777 105 _region_num_tenured(0),
ysr@777 106 _prev_region_num_young(0),
ysr@777 107 _prev_region_num_tenured(0),
ysr@777 108
ysr@777 109 _aux_num(10),
ysr@777 110 _all_aux_times_ms(new NumberSeq[_aux_num]),
ysr@777 111 _cur_aux_start_times_ms(new double[_aux_num]),
ysr@777 112 _cur_aux_times_ms(new double[_aux_num]),
ysr@777 113 _cur_aux_times_set(new bool[_aux_num]),
ysr@777 114
ysr@777 115 _concurrent_mark_init_times_ms(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 116 _concurrent_mark_remark_times_ms(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 117 _concurrent_mark_cleanup_times_ms(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 118
ysr@777 119 // <NEW PREDICTION>
ysr@777 120
ysr@777 121 _alloc_rate_ms_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 122 _prev_collection_pause_end_ms(0.0),
ysr@777 123 _pending_card_diff_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 124 _rs_length_diff_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 125 _cost_per_card_ms_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 126 _fully_young_cards_per_entry_ratio_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 127 _partially_young_cards_per_entry_ratio_seq(
ysr@777 128 new TruncatedSeq(TruncatedSeqLength)),
ysr@777 129 _cost_per_entry_ms_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 130 _partially_young_cost_per_entry_ms_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 131 _cost_per_byte_ms_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 132 _cost_per_byte_ms_during_cm_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 133 _constant_other_time_ms_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 134 _young_other_cost_per_region_ms_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 135 _non_young_other_cost_per_region_ms_seq(
ysr@777 136 new TruncatedSeq(TruncatedSeqLength)),
ysr@777 137
ysr@777 138 _pending_cards_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 139 _scanned_cards_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 140 _rs_lengths_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 141
johnc@1186 142 _pause_time_target_ms((double) MaxGCPauseMillis),
ysr@777 143
ysr@777 144 // </NEW PREDICTION>
ysr@777 145
ysr@777 146 _in_young_gc_mode(false),
ysr@777 147 _full_young_gcs(true),
ysr@777 148 _full_young_pause_num(0),
ysr@777 149 _partial_young_pause_num(0),
ysr@777 150
ysr@777 151 _during_marking(false),
ysr@777 152 _in_marking_window(false),
ysr@777 153 _in_marking_window_im(false),
ysr@777 154
ysr@777 155 _known_garbage_ratio(0.0),
ysr@777 156 _known_garbage_bytes(0),
ysr@777 157
ysr@777 158 _young_gc_eff_seq(new TruncatedSeq(TruncatedSeqLength)),
ysr@777 159
ysr@777 160 _recent_prev_end_times_for_all_gcs_sec(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 161
ysr@777 162 _recent_CS_bytes_used_before(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 163 _recent_CS_bytes_surviving(new TruncatedSeq(NumPrevPausesForHeuristics)),
ysr@777 164
ysr@777 165 _recent_avg_pause_time_ratio(0.0),
ysr@777 166 _num_markings(0),
ysr@777 167 _n_marks(0),
ysr@777 168 _n_pauses_at_mark_end(0),
ysr@777 169
ysr@777 170 _all_full_gc_times_ms(new NumberSeq()),
ysr@777 171
ysr@777 172 // G1PausesBtwnConcMark defaults to -1
ysr@777 173 // so the hack is to do the cast QQQ FIXME
ysr@777 174 _pauses_btwn_concurrent_mark((size_t)G1PausesBtwnConcMark),
ysr@777 175 _n_marks_since_last_pause(0),
tonyp@1794 176 _initiate_conc_mark_if_possible(false),
tonyp@1794 177 _during_initial_mark_pause(false),
ysr@777 178 _should_revert_to_full_young_gcs(false),
ysr@777 179 _last_full_young_gc(false),
ysr@777 180
ysr@777 181 _prev_collection_pause_used_at_end_bytes(0),
ysr@777 182
ysr@777 183 _collection_set(NULL),
johnc@1829 184 _collection_set_size(0),
johnc@1829 185 _collection_set_bytes_used_before(0),
johnc@1829 186
johnc@1829 187 // Incremental CSet attributes
johnc@1829 188 _inc_cset_build_state(Inactive),
johnc@1829 189 _inc_cset_head(NULL),
johnc@1829 190 _inc_cset_tail(NULL),
johnc@1829 191 _inc_cset_size(0),
johnc@1829 192 _inc_cset_young_index(0),
johnc@1829 193 _inc_cset_bytes_used_before(0),
johnc@1829 194 _inc_cset_max_finger(NULL),
johnc@1829 195 _inc_cset_recorded_young_bytes(0),
johnc@1829 196 _inc_cset_recorded_rs_lengths(0),
johnc@1829 197 _inc_cset_predicted_elapsed_time_ms(0.0),
johnc@1829 198 _inc_cset_predicted_bytes_to_copy(0),
johnc@1829 199
ysr@777 200 #ifdef _MSC_VER // the use of 'this' below gets a warning, make it go away
ysr@777 201 #pragma warning( disable:4355 ) // 'this' : used in base member initializer list
ysr@777 202 #endif // _MSC_VER
ysr@777 203
ysr@777 204 _short_lived_surv_rate_group(new SurvRateGroup(this, "Short Lived",
ysr@777 205 G1YoungSurvRateNumRegionsSummary)),
ysr@777 206 _survivor_surv_rate_group(new SurvRateGroup(this, "Survivor",
apetrusenko@980 207 G1YoungSurvRateNumRegionsSummary)),
ysr@777 208 // add here any more surv rate groups
apetrusenko@980 209 _recorded_survivor_regions(0),
apetrusenko@980 210 _recorded_survivor_head(NULL),
apetrusenko@980 211 _recorded_survivor_tail(NULL),
tonyp@1791 212 _survivors_age_table(true),
tonyp@1791 213
tonyp@1791 214 _gc_overhead_perc(0.0)
apetrusenko@980 215
ysr@777 216 {
tonyp@1377 217 // Set up the region size and associated fields. Given that the
tonyp@1377 218 // policy is created before the heap, we have to set this up here,
tonyp@1377 219 // so it's done as soon as possible.
tonyp@1377 220 HeapRegion::setup_heap_region_size(Arguments::min_heap_size());
iveresov@1696 221 HeapRegionRemSet::setup_remset_size();
tonyp@1377 222
apetrusenko@1826 223 // Verify PLAB sizes
apetrusenko@1826 224 const uint region_size = HeapRegion::GrainWords;
apetrusenko@1826 225 if (YoungPLABSize > region_size || OldPLABSize > region_size) {
apetrusenko@1826 226 char buffer[128];
apetrusenko@1826 227 jio_snprintf(buffer, sizeof(buffer), "%sPLABSize should be at most %u",
apetrusenko@1826 228 OldPLABSize > region_size ? "Old" : "Young", region_size);
apetrusenko@1826 229 vm_exit_during_initialization(buffer);
apetrusenko@1826 230 }
apetrusenko@1826 231
ysr@777 232 _recent_prev_end_times_for_all_gcs_sec->add(os::elapsedTime());
ysr@777 233 _prev_collection_pause_end_ms = os::elapsedTime() * 1000.0;
ysr@777 234
tonyp@1966 235 _par_last_gc_worker_start_times_ms = new double[_parallel_gc_threads];
ysr@777 236 _par_last_ext_root_scan_times_ms = new double[_parallel_gc_threads];
ysr@777 237 _par_last_mark_stack_scan_times_ms = new double[_parallel_gc_threads];
ysr@777 238
ysr@777 239 _par_last_update_rs_times_ms = new double[_parallel_gc_threads];
ysr@777 240 _par_last_update_rs_processed_buffers = new double[_parallel_gc_threads];
ysr@777 241
ysr@777 242 _par_last_scan_rs_times_ms = new double[_parallel_gc_threads];
ysr@777 243
ysr@777 244 _par_last_obj_copy_times_ms = new double[_parallel_gc_threads];
ysr@777 245
ysr@777 246 _par_last_termination_times_ms = new double[_parallel_gc_threads];
tonyp@1966 247 _par_last_termination_attempts = new double[_parallel_gc_threads];
tonyp@1966 248 _par_last_gc_worker_end_times_ms = new double[_parallel_gc_threads];
ysr@777 249
ysr@777 250 // start conservatively
johnc@1186 251 _expensive_region_limit_ms = 0.5 * (double) MaxGCPauseMillis;
ysr@777 252
ysr@777 253 // <NEW PREDICTION>
ysr@777 254
ysr@777 255 int index;
ysr@777 256 if (ParallelGCThreads == 0)
ysr@777 257 index = 0;
ysr@777 258 else if (ParallelGCThreads > 8)
ysr@777 259 index = 7;
ysr@777 260 else
ysr@777 261 index = ParallelGCThreads - 1;
ysr@777 262
ysr@777 263 _pending_card_diff_seq->add(0.0);
ysr@777 264 _rs_length_diff_seq->add(rs_length_diff_defaults[index]);
ysr@777 265 _cost_per_card_ms_seq->add(cost_per_card_ms_defaults[index]);
ysr@777 266 _fully_young_cards_per_entry_ratio_seq->add(
ysr@777 267 fully_young_cards_per_entry_ratio_defaults[index]);
ysr@777 268 _cost_per_entry_ms_seq->add(cost_per_entry_ms_defaults[index]);
ysr@777 269 _cost_per_byte_ms_seq->add(cost_per_byte_ms_defaults[index]);
ysr@777 270 _constant_other_time_ms_seq->add(constant_other_time_ms_defaults[index]);
ysr@777 271 _young_other_cost_per_region_ms_seq->add(
ysr@777 272 young_other_cost_per_region_ms_defaults[index]);
ysr@777 273 _non_young_other_cost_per_region_ms_seq->add(
ysr@777 274 non_young_other_cost_per_region_ms_defaults[index]);
ysr@777 275
ysr@777 276 // </NEW PREDICTION>
ysr@777 277
tonyp@1965 278 // Below, we might need to calculate the pause time target based on
tonyp@1965 279 // the pause interval. When we do so we are going to give G1 maximum
tonyp@1965 280 // flexibility and allow it to do pauses when it needs to. So, we'll
tonyp@1965 281 // arrange that the pause interval to be pause time target + 1 to
tonyp@1965 282 // ensure that a) the pause time target is maximized with respect to
tonyp@1965 283 // the pause interval and b) we maintain the invariant that pause
tonyp@1965 284 // time target < pause interval. If the user does not want this
tonyp@1965 285 // maximum flexibility, they will have to set the pause interval
tonyp@1965 286 // explicitly.
tonyp@1965 287
tonyp@1965 288 // First make sure that, if either parameter is set, its value is
tonyp@1965 289 // reasonable.
tonyp@1965 290 if (!FLAG_IS_DEFAULT(MaxGCPauseMillis)) {
tonyp@1965 291 if (MaxGCPauseMillis < 1) {
tonyp@1965 292 vm_exit_during_initialization("MaxGCPauseMillis should be "
tonyp@1965 293 "greater than 0");
tonyp@1965 294 }
tonyp@1965 295 }
tonyp@1965 296 if (!FLAG_IS_DEFAULT(GCPauseIntervalMillis)) {
tonyp@1965 297 if (GCPauseIntervalMillis < 1) {
tonyp@1965 298 vm_exit_during_initialization("GCPauseIntervalMillis should be "
tonyp@1965 299 "greater than 0");
tonyp@1965 300 }
tonyp@1965 301 }
tonyp@1965 302
tonyp@1965 303 // Then, if the pause time target parameter was not set, set it to
tonyp@1965 304 // the default value.
tonyp@1965 305 if (FLAG_IS_DEFAULT(MaxGCPauseMillis)) {
tonyp@1965 306 if (FLAG_IS_DEFAULT(GCPauseIntervalMillis)) {
tonyp@1965 307 // The default pause time target in G1 is 200ms
tonyp@1965 308 FLAG_SET_DEFAULT(MaxGCPauseMillis, 200);
tonyp@1965 309 } else {
tonyp@1965 310 // We do not allow the pause interval to be set without the
tonyp@1965 311 // pause time target
tonyp@1965 312 vm_exit_during_initialization("GCPauseIntervalMillis cannot be set "
tonyp@1965 313 "without setting MaxGCPauseMillis");
tonyp@1965 314 }
tonyp@1965 315 }
tonyp@1965 316
tonyp@1965 317 // Then, if the interval parameter was not set, set it according to
tonyp@1965 318 // the pause time target (this will also deal with the case when the
tonyp@1965 319 // pause time target is the default value).
tonyp@1965 320 if (FLAG_IS_DEFAULT(GCPauseIntervalMillis)) {
tonyp@1965 321 FLAG_SET_DEFAULT(GCPauseIntervalMillis, MaxGCPauseMillis + 1);
tonyp@1965 322 }
tonyp@1965 323
tonyp@1965 324 // Finally, make sure that the two parameters are consistent.
tonyp@1965 325 if (MaxGCPauseMillis >= GCPauseIntervalMillis) {
tonyp@1965 326 char buffer[256];
tonyp@1965 327 jio_snprintf(buffer, 256,
tonyp@1965 328 "MaxGCPauseMillis (%u) should be less than "
tonyp@1965 329 "GCPauseIntervalMillis (%u)",
tonyp@1965 330 MaxGCPauseMillis, GCPauseIntervalMillis);
tonyp@1965 331 vm_exit_during_initialization(buffer);
tonyp@1965 332 }
tonyp@1965 333
tonyp@1965 334 double max_gc_time = (double) MaxGCPauseMillis / 1000.0;
johnc@1186 335 double time_slice = (double) GCPauseIntervalMillis / 1000.0;
ysr@777 336 _mmu_tracker = new G1MMUTrackerQueue(time_slice, max_gc_time);
johnc@1186 337 _sigma = (double) G1ConfidencePercent / 100.0;
ysr@777 338
ysr@777 339 // start conservatively (around 50ms is about right)
ysr@777 340 _concurrent_mark_init_times_ms->add(0.05);
ysr@777 341 _concurrent_mark_remark_times_ms->add(0.05);
ysr@777 342 _concurrent_mark_cleanup_times_ms->add(0.20);
ysr@777 343 _tenuring_threshold = MaxTenuringThreshold;
ysr@777 344
tonyp@1717 345 // if G1FixedSurvivorSpaceSize is 0 which means the size is not
tonyp@1717 346 // fixed, then _max_survivor_regions will be calculated at
johnc@1829 347 // calculate_young_list_target_length during initialization
tonyp@1717 348 _max_survivor_regions = G1FixedSurvivorSpaceSize / HeapRegion::GrainBytes;
apetrusenko@980 349
tonyp@1791 350 assert(GCTimeRatio > 0,
tonyp@1791 351 "we should have set it to a default value set_g1_gc_flags() "
tonyp@1791 352 "if a user set it to 0");
tonyp@1791 353 _gc_overhead_perc = 100.0 * (1.0 / (1.0 + GCTimeRatio));
tonyp@1791 354
ysr@777 355 initialize_all();
ysr@777 356 }
ysr@777 357
ysr@777 358 // Increment "i", mod "len"
ysr@777 359 static void inc_mod(int& i, int len) {
ysr@777 360 i++; if (i == len) i = 0;
ysr@777 361 }
ysr@777 362
ysr@777 363 void G1CollectorPolicy::initialize_flags() {
ysr@777 364 set_min_alignment(HeapRegion::GrainBytes);
ysr@777 365 set_max_alignment(GenRemSet::max_alignment_constraint(rem_set_name()));
apetrusenko@982 366 if (SurvivorRatio < 1) {
apetrusenko@982 367 vm_exit_during_initialization("Invalid survivor ratio specified");
apetrusenko@982 368 }
ysr@777 369 CollectorPolicy::initialize_flags();
ysr@777 370 }
ysr@777 371
tonyp@1720 372 // The easiest way to deal with the parsing of the NewSize /
tonyp@1720 373 // MaxNewSize / etc. parameteres is to re-use the code in the
tonyp@1720 374 // TwoGenerationCollectorPolicy class. This is similar to what
tonyp@1720 375 // ParallelScavenge does with its GenerationSizer class (see
tonyp@1720 376 // ParallelScavengeHeap::initialize()). We might change this in the
tonyp@1720 377 // future, but it's a good start.
tonyp@1720 378 class G1YoungGenSizer : public TwoGenerationCollectorPolicy {
tonyp@1720 379 size_t size_to_region_num(size_t byte_size) {
tonyp@1720 380 return MAX2((size_t) 1, byte_size / HeapRegion::GrainBytes);
tonyp@1720 381 }
tonyp@1720 382
tonyp@1720 383 public:
tonyp@1720 384 G1YoungGenSizer() {
tonyp@1720 385 initialize_flags();
tonyp@1720 386 initialize_size_info();
tonyp@1720 387 }
tonyp@1720 388
tonyp@1720 389 size_t min_young_region_num() {
tonyp@1720 390 return size_to_region_num(_min_gen0_size);
tonyp@1720 391 }
tonyp@1720 392 size_t initial_young_region_num() {
tonyp@1720 393 return size_to_region_num(_initial_gen0_size);
tonyp@1720 394 }
tonyp@1720 395 size_t max_young_region_num() {
tonyp@1720 396 return size_to_region_num(_max_gen0_size);
tonyp@1720 397 }
tonyp@1720 398 };
tonyp@1720 399
ysr@777 400 void G1CollectorPolicy::init() {
ysr@777 401 // Set aside an initial future to_space.
ysr@777 402 _g1 = G1CollectedHeap::heap();
ysr@777 403
ysr@777 404 assert(Heap_lock->owned_by_self(), "Locking discipline.");
ysr@777 405
apetrusenko@980 406 initialize_gc_policy_counters();
apetrusenko@980 407
ysr@777 408 if (G1Gen) {
ysr@777 409 _in_young_gc_mode = true;
ysr@777 410
tonyp@1720 411 G1YoungGenSizer sizer;
tonyp@1720 412 size_t initial_region_num = sizer.initial_young_region_num();
tonyp@1720 413
tonyp@1720 414 if (UseAdaptiveSizePolicy) {
ysr@777 415 set_adaptive_young_list_length(true);
ysr@777 416 _young_list_fixed_length = 0;
ysr@777 417 } else {
ysr@777 418 set_adaptive_young_list_length(false);
tonyp@1720 419 _young_list_fixed_length = initial_region_num;
ysr@777 420 }
johnc@1829 421 _free_regions_at_end_of_collection = _g1->free_regions();
johnc@1829 422 calculate_young_list_min_length();
johnc@1829 423 guarantee( _young_list_min_length == 0, "invariant, not enough info" );
johnc@1829 424 calculate_young_list_target_length();
johnc@1829 425 } else {
ysr@777 426 _young_list_fixed_length = 0;
ysr@777 427 _in_young_gc_mode = false;
ysr@777 428 }
johnc@1829 429
johnc@1829 430 // We may immediately start allocating regions and placing them on the
johnc@1829 431 // collection set list. Initialize the per-collection set info
johnc@1829 432 start_incremental_cset_building();
ysr@777 433 }
ysr@777 434
apetrusenko@980 435 // Create the jstat counters for the policy.
apetrusenko@980 436 void G1CollectorPolicy::initialize_gc_policy_counters()
apetrusenko@980 437 {
apetrusenko@980 438 _gc_policy_counters = new GCPolicyCounters("GarbageFirst", 1, 2 + G1Gen);
apetrusenko@980 439 }
apetrusenko@980 440
ysr@777 441 void G1CollectorPolicy::calculate_young_list_min_length() {
ysr@777 442 _young_list_min_length = 0;
ysr@777 443
ysr@777 444 if (!adaptive_young_list_length())
ysr@777 445 return;
ysr@777 446
ysr@777 447 if (_alloc_rate_ms_seq->num() > 3) {
ysr@777 448 double now_sec = os::elapsedTime();
ysr@777 449 double when_ms = _mmu_tracker->when_max_gc_sec(now_sec) * 1000.0;
ysr@777 450 double alloc_rate_ms = predict_alloc_rate_ms();
ysr@777 451 int min_regions = (int) ceil(alloc_rate_ms * when_ms);
johnc@1829 452 int current_region_num = (int) _g1->young_list()->length();
ysr@777 453 _young_list_min_length = min_regions + current_region_num;
ysr@777 454 }
ysr@777 455 }
ysr@777 456
johnc@1829 457 void G1CollectorPolicy::calculate_young_list_target_length() {
ysr@777 458 if (adaptive_young_list_length()) {
ysr@777 459 size_t rs_lengths = (size_t) get_new_prediction(_rs_lengths_seq);
johnc@1829 460 calculate_young_list_target_length(rs_lengths);
ysr@777 461 } else {
ysr@777 462 if (full_young_gcs())
ysr@777 463 _young_list_target_length = _young_list_fixed_length;
ysr@777 464 else
ysr@777 465 _young_list_target_length = _young_list_fixed_length / 2;
johnc@1829 466
ysr@777 467 _young_list_target_length = MAX2(_young_list_target_length, (size_t)1);
ysr@777 468 }
apetrusenko@980 469 calculate_survivors_policy();
ysr@777 470 }
ysr@777 471
johnc@1829 472 void G1CollectorPolicy::calculate_young_list_target_length(size_t rs_lengths) {
ysr@777 473 guarantee( adaptive_young_list_length(), "pre-condition" );
johnc@1829 474 guarantee( !_in_marking_window || !_last_full_young_gc, "invariant" );
ysr@777 475
ysr@777 476 double start_time_sec = os::elapsedTime();
tonyp@1717 477 size_t min_reserve_perc = MAX2((size_t)2, (size_t)G1ReservePercent);
ysr@777 478 min_reserve_perc = MIN2((size_t) 50, min_reserve_perc);
ysr@777 479 size_t reserve_regions =
ysr@777 480 (size_t) ((double) min_reserve_perc * (double) _g1->n_regions() / 100.0);
ysr@777 481
ysr@777 482 if (full_young_gcs() && _free_regions_at_end_of_collection > 0) {
ysr@777 483 // we are in fully-young mode and there are free regions in the heap
ysr@777 484
apetrusenko@980 485 double survivor_regions_evac_time =
apetrusenko@980 486 predict_survivor_regions_evac_time();
apetrusenko@980 487
ysr@777 488 double target_pause_time_ms = _mmu_tracker->max_gc_time() * 1000.0;
ysr@777 489 size_t pending_cards = (size_t) get_new_prediction(_pending_cards_seq);
ysr@777 490 size_t adj_rs_lengths = rs_lengths + predict_rs_length_diff();
johnc@1829 491 size_t scanned_cards = predict_young_card_num(adj_rs_lengths);
apetrusenko@980 492 double base_time_ms = predict_base_elapsed_time_ms(pending_cards, scanned_cards)
apetrusenko@980 493 + survivor_regions_evac_time;
johnc@1829 494
ysr@777 495 // the result
ysr@777 496 size_t final_young_length = 0;
johnc@1829 497
johnc@1829 498 size_t init_free_regions =
johnc@1829 499 MAX2((size_t)0, _free_regions_at_end_of_collection - reserve_regions);
johnc@1829 500
johnc@1829 501 // if we're still under the pause target...
johnc@1829 502 if (base_time_ms <= target_pause_time_ms) {
johnc@1829 503 // We make sure that the shortest young length that makes sense
johnc@1829 504 // fits within the target pause time.
johnc@1829 505 size_t min_young_length = 1;
johnc@1829 506
johnc@1829 507 if (predict_will_fit(min_young_length, base_time_ms,
johnc@1829 508 init_free_regions, target_pause_time_ms)) {
johnc@1829 509 // The shortest young length will fit within the target pause time;
johnc@1829 510 // we'll now check whether the absolute maximum number of young
johnc@1829 511 // regions will fit in the target pause time. If not, we'll do
johnc@1829 512 // a binary search between min_young_length and max_young_length
johnc@1829 513 size_t abs_max_young_length = _free_regions_at_end_of_collection - 1;
johnc@1829 514 size_t max_young_length = abs_max_young_length;
johnc@1829 515
johnc@1829 516 if (max_young_length > min_young_length) {
johnc@1829 517 // Let's check if the initial max young length will fit within the
johnc@1829 518 // target pause. If so then there is no need to search for a maximal
johnc@1829 519 // young length - we'll return the initial maximum
johnc@1829 520
johnc@1829 521 if (predict_will_fit(max_young_length, base_time_ms,
johnc@1829 522 init_free_regions, target_pause_time_ms)) {
johnc@1829 523 // The maximum young length will satisfy the target pause time.
johnc@1829 524 // We are done so set min young length to this maximum length.
johnc@1829 525 // The code after the loop will then set final_young_length using
johnc@1829 526 // the value cached in the minimum length.
johnc@1829 527 min_young_length = max_young_length;
johnc@1829 528 } else {
johnc@1829 529 // The maximum possible number of young regions will not fit within
johnc@1829 530 // the target pause time so let's search....
johnc@1829 531
johnc@1829 532 size_t diff = (max_young_length - min_young_length) / 2;
johnc@1829 533 max_young_length = min_young_length + diff;
johnc@1829 534
johnc@1829 535 while (max_young_length > min_young_length) {
johnc@1829 536 if (predict_will_fit(max_young_length, base_time_ms,
johnc@1829 537 init_free_regions, target_pause_time_ms)) {
johnc@1829 538
johnc@1829 539 // The current max young length will fit within the target
johnc@1829 540 // pause time. Note we do not exit the loop here. By setting
johnc@1829 541 // min = max, and then increasing the max below means that
johnc@1829 542 // we will continue searching for an upper bound in the
johnc@1829 543 // range [max..max+diff]
johnc@1829 544 min_young_length = max_young_length;
johnc@1829 545 }
johnc@1829 546 diff = (max_young_length - min_young_length) / 2;
johnc@1829 547 max_young_length = min_young_length + diff;
johnc@1829 548 }
johnc@1829 549 // the above loop found a maximal young length that will fit
johnc@1829 550 // within the target pause time.
johnc@1829 551 }
johnc@1829 552 assert(min_young_length <= abs_max_young_length, "just checking");
johnc@1829 553 }
johnc@1829 554 final_young_length = min_young_length;
johnc@1829 555 }
ysr@777 556 }
johnc@1829 557 // and we're done!
ysr@777 558
ysr@777 559 // we should have at least one region in the target young length
apetrusenko@980 560 _young_list_target_length =
apetrusenko@980 561 MAX2((size_t) 1, final_young_length + _recorded_survivor_regions);
ysr@777 562
ysr@777 563 // let's keep an eye of how long we spend on this calculation
ysr@777 564 // right now, I assume that we'll print it when we need it; we
ysr@777 565 // should really adde it to the breakdown of a pause
ysr@777 566 double end_time_sec = os::elapsedTime();
ysr@777 567 double elapsed_time_ms = (end_time_sec - start_time_sec) * 1000.0;
ysr@777 568
johnc@1829 569 #ifdef TRACE_CALC_YOUNG_LENGTH
ysr@777 570 // leave this in for debugging, just in case
johnc@1829 571 gclog_or_tty->print_cr("target = %1.1lf ms, young = " SIZE_FORMAT ", "
johnc@1829 572 "elapsed %1.2lf ms, (%s%s) " SIZE_FORMAT SIZE_FORMAT,
ysr@777 573 target_pause_time_ms,
johnc@1829 574 _young_list_target_length
ysr@777 575 elapsed_time_ms,
ysr@777 576 full_young_gcs() ? "full" : "partial",
tonyp@1794 577 during_initial_mark_pause() ? " i-m" : "",
apetrusenko@980 578 _in_marking_window,
apetrusenko@980 579 _in_marking_window_im);
johnc@1829 580 #endif // TRACE_CALC_YOUNG_LENGTH
ysr@777 581
ysr@777 582 if (_young_list_target_length < _young_list_min_length) {
johnc@1829 583 // bummer; this means that, if we do a pause when the maximal
johnc@1829 584 // length dictates, we'll violate the pause spacing target (the
ysr@777 585 // min length was calculate based on the application's current
ysr@777 586 // alloc rate);
ysr@777 587
ysr@777 588 // so, we have to bite the bullet, and allocate the minimum
ysr@777 589 // number. We'll violate our target, but we just can't meet it.
ysr@777 590
johnc@1829 591 #ifdef TRACE_CALC_YOUNG_LENGTH
ysr@777 592 // leave this in for debugging, just in case
ysr@777 593 gclog_or_tty->print_cr("adjusted target length from "
johnc@1829 594 SIZE_FORMAT " to " SIZE_FORMAT,
johnc@1829 595 _young_list_target_length, _young_list_min_length);
johnc@1829 596 #endif // TRACE_CALC_YOUNG_LENGTH
johnc@1829 597
johnc@1829 598 _young_list_target_length = _young_list_min_length;
ysr@777 599 }
ysr@777 600 } else {
ysr@777 601 // we are in a partially-young mode or we've run out of regions (due
ysr@777 602 // to evacuation failure)
ysr@777 603
johnc@1829 604 #ifdef TRACE_CALC_YOUNG_LENGTH
ysr@777 605 // leave this in for debugging, just in case
ysr@777 606 gclog_or_tty->print_cr("(partial) setting target to " SIZE_FORMAT
johnc@1829 607 _young_list_min_length);
johnc@1829 608 #endif // TRACE_CALC_YOUNG_LENGTH
johnc@1829 609 // we'll do the pause as soon as possible by choosing the minimum
ysr@777 610 _young_list_target_length =
ysr@777 611 MAX2(_young_list_min_length, (size_t) 1);
ysr@777 612 }
ysr@777 613
ysr@777 614 _rs_lengths_prediction = rs_lengths;
ysr@777 615 }
ysr@777 616
johnc@1829 617 // This is used by: calculate_young_list_target_length(rs_length). It
johnc@1829 618 // returns true iff:
johnc@1829 619 // the predicted pause time for the given young list will not overflow
johnc@1829 620 // the target pause time
johnc@1829 621 // and:
johnc@1829 622 // the predicted amount of surviving data will not overflow the
johnc@1829 623 // the amount of free space available for survivor regions.
johnc@1829 624 //
ysr@777 625 bool
johnc@1829 626 G1CollectorPolicy::predict_will_fit(size_t young_length,
johnc@1829 627 double base_time_ms,
johnc@1829 628 size_t init_free_regions,
johnc@1829 629 double target_pause_time_ms) {
ysr@777 630
ysr@777 631 if (young_length >= init_free_regions)
ysr@777 632 // end condition 1: not enough space for the young regions
ysr@777 633 return false;
ysr@777 634
ysr@777 635 double accum_surv_rate_adj = 0.0;
ysr@777 636 double accum_surv_rate =
ysr@777 637 accum_yg_surv_rate_pred((int)(young_length - 1)) - accum_surv_rate_adj;
johnc@1829 638
ysr@777 639 size_t bytes_to_copy =
ysr@777 640 (size_t) (accum_surv_rate * (double) HeapRegion::GrainBytes);
johnc@1829 641
ysr@777 642 double copy_time_ms = predict_object_copy_time_ms(bytes_to_copy);
johnc@1829 643
ysr@777 644 double young_other_time_ms =
johnc@1829 645 predict_young_other_time_ms(young_length);
johnc@1829 646
ysr@777 647 double pause_time_ms =
johnc@1829 648 base_time_ms + copy_time_ms + young_other_time_ms;
ysr@777 649
ysr@777 650 if (pause_time_ms > target_pause_time_ms)
ysr@777 651 // end condition 2: over the target pause time
ysr@777 652 return false;
ysr@777 653
ysr@777 654 size_t free_bytes =
ysr@777 655 (init_free_regions - young_length) * HeapRegion::GrainBytes;
ysr@777 656
ysr@777 657 if ((2.0 + sigma()) * (double) bytes_to_copy > (double) free_bytes)
ysr@777 658 // end condition 3: out of to-space (conservatively)
ysr@777 659 return false;
ysr@777 660
ysr@777 661 // success!
ysr@777 662 return true;
ysr@777 663 }
ysr@777 664
apetrusenko@980 665 double G1CollectorPolicy::predict_survivor_regions_evac_time() {
apetrusenko@980 666 double survivor_regions_evac_time = 0.0;
apetrusenko@980 667 for (HeapRegion * r = _recorded_survivor_head;
apetrusenko@980 668 r != NULL && r != _recorded_survivor_tail->get_next_young_region();
apetrusenko@980 669 r = r->get_next_young_region()) {
apetrusenko@980 670 survivor_regions_evac_time += predict_region_elapsed_time_ms(r, true);
apetrusenko@980 671 }
apetrusenko@980 672 return survivor_regions_evac_time;
apetrusenko@980 673 }
apetrusenko@980 674
ysr@777 675 void G1CollectorPolicy::check_prediction_validity() {
ysr@777 676 guarantee( adaptive_young_list_length(), "should not call this otherwise" );
ysr@777 677
johnc@1829 678 size_t rs_lengths = _g1->young_list()->sampled_rs_lengths();
ysr@777 679 if (rs_lengths > _rs_lengths_prediction) {
ysr@777 680 // add 10% to avoid having to recalculate often
ysr@777 681 size_t rs_lengths_prediction = rs_lengths * 1100 / 1000;
johnc@1829 682 calculate_young_list_target_length(rs_lengths_prediction);
ysr@777 683 }
ysr@777 684 }
ysr@777 685
ysr@777 686 HeapWord* G1CollectorPolicy::mem_allocate_work(size_t size,
ysr@777 687 bool is_tlab,
ysr@777 688 bool* gc_overhead_limit_was_exceeded) {
ysr@777 689 guarantee(false, "Not using this policy feature yet.");
ysr@777 690 return NULL;
ysr@777 691 }
ysr@777 692
ysr@777 693 // This method controls how a collector handles one or more
ysr@777 694 // of its generations being fully allocated.
ysr@777 695 HeapWord* G1CollectorPolicy::satisfy_failed_allocation(size_t size,
ysr@777 696 bool is_tlab) {
ysr@777 697 guarantee(false, "Not using this policy feature yet.");
ysr@777 698 return NULL;
ysr@777 699 }
ysr@777 700
ysr@777 701
ysr@777 702 #ifndef PRODUCT
ysr@777 703 bool G1CollectorPolicy::verify_young_ages() {
johnc@1829 704 HeapRegion* head = _g1->young_list()->first_region();
ysr@777 705 return
ysr@777 706 verify_young_ages(head, _short_lived_surv_rate_group);
ysr@777 707 // also call verify_young_ages on any additional surv rate groups
ysr@777 708 }
ysr@777 709
ysr@777 710 bool
ysr@777 711 G1CollectorPolicy::verify_young_ages(HeapRegion* head,
ysr@777 712 SurvRateGroup *surv_rate_group) {
ysr@777 713 guarantee( surv_rate_group != NULL, "pre-condition" );
ysr@777 714
ysr@777 715 const char* name = surv_rate_group->name();
ysr@777 716 bool ret = true;
ysr@777 717 int prev_age = -1;
ysr@777 718
ysr@777 719 for (HeapRegion* curr = head;
ysr@777 720 curr != NULL;
ysr@777 721 curr = curr->get_next_young_region()) {
ysr@777 722 SurvRateGroup* group = curr->surv_rate_group();
ysr@777 723 if (group == NULL && !curr->is_survivor()) {
ysr@777 724 gclog_or_tty->print_cr("## %s: encountered NULL surv_rate_group", name);
ysr@777 725 ret = false;
ysr@777 726 }
ysr@777 727
ysr@777 728 if (surv_rate_group == group) {
ysr@777 729 int age = curr->age_in_surv_rate_group();
ysr@777 730
ysr@777 731 if (age < 0) {
ysr@777 732 gclog_or_tty->print_cr("## %s: encountered negative age", name);
ysr@777 733 ret = false;
ysr@777 734 }
ysr@777 735
ysr@777 736 if (age <= prev_age) {
ysr@777 737 gclog_or_tty->print_cr("## %s: region ages are not strictly increasing "
ysr@777 738 "(%d, %d)", name, age, prev_age);
ysr@777 739 ret = false;
ysr@777 740 }
ysr@777 741 prev_age = age;
ysr@777 742 }
ysr@777 743 }
ysr@777 744
ysr@777 745 return ret;
ysr@777 746 }
ysr@777 747 #endif // PRODUCT
ysr@777 748
ysr@777 749 void G1CollectorPolicy::record_full_collection_start() {
ysr@777 750 _cur_collection_start_sec = os::elapsedTime();
ysr@777 751 // Release the future to-space so that it is available for compaction into.
ysr@777 752 _g1->set_full_collection();
ysr@777 753 }
ysr@777 754
ysr@777 755 void G1CollectorPolicy::record_full_collection_end() {
ysr@777 756 // Consider this like a collection pause for the purposes of allocation
ysr@777 757 // since last pause.
ysr@777 758 double end_sec = os::elapsedTime();
ysr@777 759 double full_gc_time_sec = end_sec - _cur_collection_start_sec;
ysr@777 760 double full_gc_time_ms = full_gc_time_sec * 1000.0;
ysr@777 761
ysr@777 762 _all_full_gc_times_ms->add(full_gc_time_ms);
ysr@777 763
tonyp@1030 764 update_recent_gc_times(end_sec, full_gc_time_ms);
ysr@777 765
ysr@777 766 _g1->clear_full_collection();
ysr@777 767
ysr@777 768 // "Nuke" the heuristics that control the fully/partially young GC
ysr@777 769 // transitions and make sure we start with fully young GCs after the
ysr@777 770 // Full GC.
ysr@777 771 set_full_young_gcs(true);
ysr@777 772 _last_full_young_gc = false;
ysr@777 773 _should_revert_to_full_young_gcs = false;
tonyp@1794 774 clear_initiate_conc_mark_if_possible();
tonyp@1794 775 clear_during_initial_mark_pause();
ysr@777 776 _known_garbage_bytes = 0;
ysr@777 777 _known_garbage_ratio = 0.0;
ysr@777 778 _in_marking_window = false;
ysr@777 779 _in_marking_window_im = false;
ysr@777 780
ysr@777 781 _short_lived_surv_rate_group->start_adding_regions();
ysr@777 782 // also call this on any additional surv rate groups
ysr@777 783
apetrusenko@980 784 record_survivor_regions(0, NULL, NULL);
apetrusenko@980 785
ysr@777 786 _prev_region_num_young = _region_num_young;
ysr@777 787 _prev_region_num_tenured = _region_num_tenured;
ysr@777 788
ysr@777 789 _free_regions_at_end_of_collection = _g1->free_regions();
apetrusenko@980 790 // Reset survivors SurvRateGroup.
apetrusenko@980 791 _survivor_surv_rate_group->reset();
ysr@777 792 calculate_young_list_min_length();
johnc@1829 793 calculate_young_list_target_length();
ysr@777 794 }
ysr@777 795
ysr@777 796 void G1CollectorPolicy::record_before_bytes(size_t bytes) {
ysr@777 797 _bytes_in_to_space_before_gc += bytes;
ysr@777 798 }
ysr@777 799
ysr@777 800 void G1CollectorPolicy::record_after_bytes(size_t bytes) {
ysr@777 801 _bytes_in_to_space_after_gc += bytes;
ysr@777 802 }
ysr@777 803
ysr@777 804 void G1CollectorPolicy::record_stop_world_start() {
ysr@777 805 _stop_world_start = os::elapsedTime();
ysr@777 806 }
ysr@777 807
ysr@777 808 void G1CollectorPolicy::record_collection_pause_start(double start_time_sec,
ysr@777 809 size_t start_used) {
ysr@777 810 if (PrintGCDetails) {
ysr@777 811 gclog_or_tty->stamp(PrintGCTimeStamps);
ysr@777 812 gclog_or_tty->print("[GC pause");
ysr@777 813 if (in_young_gc_mode())
ysr@777 814 gclog_or_tty->print(" (%s)", full_young_gcs() ? "young" : "partial");
ysr@777 815 }
ysr@777 816
ysr@777 817 assert(_g1->used_regions() == _g1->recalculate_used_regions(),
ysr@777 818 "sanity");
tonyp@1071 819 assert(_g1->used() == _g1->recalculate_used(), "sanity");
ysr@777 820
ysr@777 821 double s_w_t_ms = (start_time_sec - _stop_world_start) * 1000.0;
ysr@777 822 _all_stop_world_times_ms->add(s_w_t_ms);
ysr@777 823 _stop_world_start = 0.0;
ysr@777 824
ysr@777 825 _cur_collection_start_sec = start_time_sec;
ysr@777 826 _cur_collection_pause_used_at_start_bytes = start_used;
ysr@777 827 _cur_collection_pause_used_regions_at_start = _g1->used_regions();
ysr@777 828 _pending_cards = _g1->pending_card_num();
ysr@777 829 _max_pending_cards = _g1->max_pending_card_num();
ysr@777 830
ysr@777 831 _bytes_in_to_space_before_gc = 0;
ysr@777 832 _bytes_in_to_space_after_gc = 0;
ysr@777 833 _bytes_in_collection_set_before_gc = 0;
ysr@777 834
ysr@777 835 #ifdef DEBUG
ysr@777 836 // initialise these to something well known so that we can spot
ysr@777 837 // if they are not set properly
ysr@777 838
ysr@777 839 for (int i = 0; i < _parallel_gc_threads; ++i) {
tonyp@1966 840 _par_last_gc_worker_start_times_ms[i] = -1234.0;
tonyp@1966 841 _par_last_ext_root_scan_times_ms[i] = -1234.0;
tonyp@1966 842 _par_last_mark_stack_scan_times_ms[i] = -1234.0;
tonyp@1966 843 _par_last_update_rs_times_ms[i] = -1234.0;
tonyp@1966 844 _par_last_update_rs_processed_buffers[i] = -1234.0;
tonyp@1966 845 _par_last_scan_rs_times_ms[i] = -1234.0;
tonyp@1966 846 _par_last_obj_copy_times_ms[i] = -1234.0;
tonyp@1966 847 _par_last_termination_times_ms[i] = -1234.0;
tonyp@1966 848 _par_last_termination_attempts[i] = -1234.0;
tonyp@1966 849 _par_last_gc_worker_end_times_ms[i] = -1234.0;
ysr@777 850 }
ysr@777 851 #endif
ysr@777 852
ysr@777 853 for (int i = 0; i < _aux_num; ++i) {
ysr@777 854 _cur_aux_times_ms[i] = 0.0;
ysr@777 855 _cur_aux_times_set[i] = false;
ysr@777 856 }
ysr@777 857
ysr@777 858 _satb_drain_time_set = false;
ysr@777 859 _last_satb_drain_processed_buffers = -1;
ysr@777 860
ysr@777 861 if (in_young_gc_mode())
ysr@777 862 _last_young_gc_full = false;
ysr@777 863
ysr@777 864 // do that for any other surv rate groups
ysr@777 865 _short_lived_surv_rate_group->stop_adding_regions();
tonyp@1717 866 _survivors_age_table.clear();
apetrusenko@980 867
ysr@777 868 assert( verify_young_ages(), "region age verification" );
ysr@777 869 }
ysr@777 870
ysr@777 871 void G1CollectorPolicy::record_mark_closure_time(double mark_closure_time_ms) {
ysr@777 872 _mark_closure_time_ms = mark_closure_time_ms;
ysr@777 873 }
ysr@777 874
ysr@777 875 void G1CollectorPolicy::record_concurrent_mark_init_start() {
ysr@777 876 _mark_init_start_sec = os::elapsedTime();
ysr@777 877 guarantee(!in_young_gc_mode(), "should not do be here in young GC mode");
ysr@777 878 }
ysr@777 879
ysr@777 880 void G1CollectorPolicy::record_concurrent_mark_init_end_pre(double
ysr@777 881 mark_init_elapsed_time_ms) {
ysr@777 882 _during_marking = true;
tonyp@1794 883 assert(!initiate_conc_mark_if_possible(), "we should have cleared it by now");
tonyp@1794 884 clear_during_initial_mark_pause();
ysr@777 885 _cur_mark_stop_world_time_ms = mark_init_elapsed_time_ms;
ysr@777 886 }
ysr@777 887
ysr@777 888 void G1CollectorPolicy::record_concurrent_mark_init_end() {
ysr@777 889 double end_time_sec = os::elapsedTime();
ysr@777 890 double elapsed_time_ms = (end_time_sec - _mark_init_start_sec) * 1000.0;
ysr@777 891 _concurrent_mark_init_times_ms->add(elapsed_time_ms);
ysr@777 892 record_concurrent_mark_init_end_pre(elapsed_time_ms);
ysr@777 893
ysr@777 894 _mmu_tracker->add_pause(_mark_init_start_sec, end_time_sec, true);
ysr@777 895 }
ysr@777 896
ysr@777 897 void G1CollectorPolicy::record_concurrent_mark_remark_start() {
ysr@777 898 _mark_remark_start_sec = os::elapsedTime();
ysr@777 899 _during_marking = false;
ysr@777 900 }
ysr@777 901
ysr@777 902 void G1CollectorPolicy::record_concurrent_mark_remark_end() {
ysr@777 903 double end_time_sec = os::elapsedTime();
ysr@777 904 double elapsed_time_ms = (end_time_sec - _mark_remark_start_sec)*1000.0;
ysr@777 905 _concurrent_mark_remark_times_ms->add(elapsed_time_ms);
ysr@777 906 _cur_mark_stop_world_time_ms += elapsed_time_ms;
ysr@777 907 _prev_collection_pause_end_ms += elapsed_time_ms;
ysr@777 908
ysr@777 909 _mmu_tracker->add_pause(_mark_remark_start_sec, end_time_sec, true);
ysr@777 910 }
ysr@777 911
ysr@777 912 void G1CollectorPolicy::record_concurrent_mark_cleanup_start() {
ysr@777 913 _mark_cleanup_start_sec = os::elapsedTime();
ysr@777 914 }
ysr@777 915
ysr@777 916 void
ysr@777 917 G1CollectorPolicy::record_concurrent_mark_cleanup_end(size_t freed_bytes,
ysr@777 918 size_t max_live_bytes) {
ysr@777 919 record_concurrent_mark_cleanup_end_work1(freed_bytes, max_live_bytes);
ysr@777 920 record_concurrent_mark_cleanup_end_work2();
ysr@777 921 }
ysr@777 922
ysr@777 923 void
ysr@777 924 G1CollectorPolicy::
ysr@777 925 record_concurrent_mark_cleanup_end_work1(size_t freed_bytes,
ysr@777 926 size_t max_live_bytes) {
ysr@777 927 if (_n_marks < 2) _n_marks++;
ysr@777 928 if (G1PolicyVerbose > 0)
ysr@777 929 gclog_or_tty->print_cr("At end of marking, max_live is " SIZE_FORMAT " MB "
ysr@777 930 " (of " SIZE_FORMAT " MB heap).",
ysr@777 931 max_live_bytes/M, _g1->capacity()/M);
ysr@777 932 }
ysr@777 933
ysr@777 934 // The important thing about this is that it includes "os::elapsedTime".
ysr@777 935 void G1CollectorPolicy::record_concurrent_mark_cleanup_end_work2() {
ysr@777 936 double end_time_sec = os::elapsedTime();
ysr@777 937 double elapsed_time_ms = (end_time_sec - _mark_cleanup_start_sec)*1000.0;
ysr@777 938 _concurrent_mark_cleanup_times_ms->add(elapsed_time_ms);
ysr@777 939 _cur_mark_stop_world_time_ms += elapsed_time_ms;
ysr@777 940 _prev_collection_pause_end_ms += elapsed_time_ms;
ysr@777 941
ysr@777 942 _mmu_tracker->add_pause(_mark_cleanup_start_sec, end_time_sec, true);
ysr@777 943
ysr@777 944 _num_markings++;
ysr@777 945
ysr@777 946 // We did a marking, so reset the "since_last_mark" variables.
ysr@777 947 double considerConcMarkCost = 1.0;
ysr@777 948 // If there are available processors, concurrent activity is free...
ysr@777 949 if (Threads::number_of_non_daemon_threads() * 2 <
ysr@777 950 os::active_processor_count()) {
ysr@777 951 considerConcMarkCost = 0.0;
ysr@777 952 }
ysr@777 953 _n_pauses_at_mark_end = _n_pauses;
ysr@777 954 _n_marks_since_last_pause++;
ysr@777 955 }
ysr@777 956
ysr@777 957 void
ysr@777 958 G1CollectorPolicy::record_concurrent_mark_cleanup_completed() {
ysr@777 959 if (in_young_gc_mode()) {
ysr@777 960 _should_revert_to_full_young_gcs = false;
ysr@777 961 _last_full_young_gc = true;
ysr@777 962 _in_marking_window = false;
ysr@777 963 if (adaptive_young_list_length())
johnc@1829 964 calculate_young_list_target_length();
ysr@777 965 }
ysr@777 966 }
ysr@777 967
ysr@777 968 void G1CollectorPolicy::record_concurrent_pause() {
ysr@777 969 if (_stop_world_start > 0.0) {
ysr@777 970 double yield_ms = (os::elapsedTime() - _stop_world_start) * 1000.0;
ysr@777 971 _all_yield_times_ms->add(yield_ms);
ysr@777 972 }
ysr@777 973 }
ysr@777 974
ysr@777 975 void G1CollectorPolicy::record_concurrent_pause_end() {
ysr@777 976 }
ysr@777 977
ysr@777 978 void G1CollectorPolicy::record_collection_pause_end_CH_strong_roots() {
ysr@777 979 _cur_CH_strong_roots_end_sec = os::elapsedTime();
ysr@777 980 _cur_CH_strong_roots_dur_ms =
ysr@777 981 (_cur_CH_strong_roots_end_sec - _cur_collection_start_sec) * 1000.0;
ysr@777 982 }
ysr@777 983
ysr@777 984 void G1CollectorPolicy::record_collection_pause_end_G1_strong_roots() {
ysr@777 985 _cur_G1_strong_roots_end_sec = os::elapsedTime();
ysr@777 986 _cur_G1_strong_roots_dur_ms =
ysr@777 987 (_cur_G1_strong_roots_end_sec - _cur_CH_strong_roots_end_sec) * 1000.0;
ysr@777 988 }
ysr@777 989
ysr@777 990 template<class T>
ysr@777 991 T sum_of(T* sum_arr, int start, int n, int N) {
ysr@777 992 T sum = (T)0;
ysr@777 993 for (int i = 0; i < n; i++) {
ysr@777 994 int j = (start + i) % N;
ysr@777 995 sum += sum_arr[j];
ysr@777 996 }
ysr@777 997 return sum;
ysr@777 998 }
ysr@777 999
tonyp@1966 1000 void G1CollectorPolicy::print_par_stats(int level,
tonyp@1966 1001 const char* str,
tonyp@1966 1002 double* data,
ysr@777 1003 bool summary) {
ysr@777 1004 double min = data[0], max = data[0];
ysr@777 1005 double total = 0.0;
ysr@777 1006 int j;
ysr@777 1007 for (j = 0; j < level; ++j)
ysr@777 1008 gclog_or_tty->print(" ");
ysr@777 1009 gclog_or_tty->print("[%s (ms):", str);
ysr@777 1010 for (uint i = 0; i < ParallelGCThreads; ++i) {
ysr@777 1011 double val = data[i];
ysr@777 1012 if (val < min)
ysr@777 1013 min = val;
ysr@777 1014 if (val > max)
ysr@777 1015 max = val;
ysr@777 1016 total += val;
ysr@777 1017 gclog_or_tty->print(" %3.1lf", val);
ysr@777 1018 }
ysr@777 1019 if (summary) {
ysr@777 1020 gclog_or_tty->print_cr("");
ysr@777 1021 double avg = total / (double) ParallelGCThreads;
ysr@777 1022 gclog_or_tty->print(" ");
ysr@777 1023 for (j = 0; j < level; ++j)
ysr@777 1024 gclog_or_tty->print(" ");
ysr@777 1025 gclog_or_tty->print("Avg: %5.1lf, Min: %5.1lf, Max: %5.1lf",
ysr@777 1026 avg, min, max);
ysr@777 1027 }
ysr@777 1028 gclog_or_tty->print_cr("]");
ysr@777 1029 }
ysr@777 1030
tonyp@1966 1031 void G1CollectorPolicy::print_par_sizes(int level,
tonyp@1966 1032 const char* str,
tonyp@1966 1033 double* data,
tonyp@1966 1034 bool summary) {
ysr@777 1035 double min = data[0], max = data[0];
ysr@777 1036 double total = 0.0;
ysr@777 1037 int j;
ysr@777 1038 for (j = 0; j < level; ++j)
ysr@777 1039 gclog_or_tty->print(" ");
ysr@777 1040 gclog_or_tty->print("[%s :", str);
ysr@777 1041 for (uint i = 0; i < ParallelGCThreads; ++i) {
ysr@777 1042 double val = data[i];
ysr@777 1043 if (val < min)
ysr@777 1044 min = val;
ysr@777 1045 if (val > max)
ysr@777 1046 max = val;
ysr@777 1047 total += val;
ysr@777 1048 gclog_or_tty->print(" %d", (int) val);
ysr@777 1049 }
ysr@777 1050 if (summary) {
ysr@777 1051 gclog_or_tty->print_cr("");
ysr@777 1052 double avg = total / (double) ParallelGCThreads;
ysr@777 1053 gclog_or_tty->print(" ");
ysr@777 1054 for (j = 0; j < level; ++j)
ysr@777 1055 gclog_or_tty->print(" ");
ysr@777 1056 gclog_or_tty->print("Sum: %d, Avg: %d, Min: %d, Max: %d",
ysr@777 1057 (int)total, (int)avg, (int)min, (int)max);
ysr@777 1058 }
ysr@777 1059 gclog_or_tty->print_cr("]");
ysr@777 1060 }
ysr@777 1061
ysr@777 1062 void G1CollectorPolicy::print_stats (int level,
ysr@777 1063 const char* str,
ysr@777 1064 double value) {
ysr@777 1065 for (int j = 0; j < level; ++j)
ysr@777 1066 gclog_or_tty->print(" ");
ysr@777 1067 gclog_or_tty->print_cr("[%s: %5.1lf ms]", str, value);
ysr@777 1068 }
ysr@777 1069
ysr@777 1070 void G1CollectorPolicy::print_stats (int level,
ysr@777 1071 const char* str,
ysr@777 1072 int value) {
ysr@777 1073 for (int j = 0; j < level; ++j)
ysr@777 1074 gclog_or_tty->print(" ");
ysr@777 1075 gclog_or_tty->print_cr("[%s: %d]", str, value);
ysr@777 1076 }
ysr@777 1077
ysr@777 1078 double G1CollectorPolicy::avg_value (double* data) {
jmasa@2188 1079 if (G1CollectedHeap::use_parallel_gc_threads()) {
ysr@777 1080 double ret = 0.0;
ysr@777 1081 for (uint i = 0; i < ParallelGCThreads; ++i)
ysr@777 1082 ret += data[i];
ysr@777 1083 return ret / (double) ParallelGCThreads;
ysr@777 1084 } else {
ysr@777 1085 return data[0];
ysr@777 1086 }
ysr@777 1087 }
ysr@777 1088
ysr@777 1089 double G1CollectorPolicy::max_value (double* data) {
jmasa@2188 1090 if (G1CollectedHeap::use_parallel_gc_threads()) {
ysr@777 1091 double ret = data[0];
ysr@777 1092 for (uint i = 1; i < ParallelGCThreads; ++i)
ysr@777 1093 if (data[i] > ret)
ysr@777 1094 ret = data[i];
ysr@777 1095 return ret;
ysr@777 1096 } else {
ysr@777 1097 return data[0];
ysr@777 1098 }
ysr@777 1099 }
ysr@777 1100
ysr@777 1101 double G1CollectorPolicy::sum_of_values (double* data) {
jmasa@2188 1102 if (G1CollectedHeap::use_parallel_gc_threads()) {
ysr@777 1103 double sum = 0.0;
ysr@777 1104 for (uint i = 0; i < ParallelGCThreads; i++)
ysr@777 1105 sum += data[i];
ysr@777 1106 return sum;
ysr@777 1107 } else {
ysr@777 1108 return data[0];
ysr@777 1109 }
ysr@777 1110 }
ysr@777 1111
ysr@777 1112 double G1CollectorPolicy::max_sum (double* data1,
ysr@777 1113 double* data2) {
ysr@777 1114 double ret = data1[0] + data2[0];
ysr@777 1115
jmasa@2188 1116 if (G1CollectedHeap::use_parallel_gc_threads()) {
ysr@777 1117 for (uint i = 1; i < ParallelGCThreads; ++i) {
ysr@777 1118 double data = data1[i] + data2[i];
ysr@777 1119 if (data > ret)
ysr@777 1120 ret = data;
ysr@777 1121 }
ysr@777 1122 }
ysr@777 1123 return ret;
ysr@777 1124 }
ysr@777 1125
ysr@777 1126 // Anything below that is considered to be zero
ysr@777 1127 #define MIN_TIMER_GRANULARITY 0.0000001
ysr@777 1128
tonyp@2062 1129 void G1CollectorPolicy::record_collection_pause_end() {
ysr@777 1130 double end_time_sec = os::elapsedTime();
ysr@777 1131 double elapsed_ms = _last_pause_time_ms;
jmasa@2188 1132 bool parallel = G1CollectedHeap::use_parallel_gc_threads();
ysr@777 1133 double evac_ms = (end_time_sec - _cur_G1_strong_roots_end_sec) * 1000.0;
ysr@777 1134 size_t rs_size =
ysr@777 1135 _cur_collection_pause_used_regions_at_start - collection_set_size();
ysr@777 1136 size_t cur_used_bytes = _g1->used();
ysr@777 1137 assert(cur_used_bytes == _g1->recalculate_used(), "It should!");
ysr@777 1138 bool last_pause_included_initial_mark = false;
tonyp@2062 1139 bool update_stats = !_g1->evacuation_failed();
ysr@777 1140
ysr@777 1141 #ifndef PRODUCT
ysr@777 1142 if (G1YoungSurvRateVerbose) {
ysr@777 1143 gclog_or_tty->print_cr("");
ysr@777 1144 _short_lived_surv_rate_group->print();
ysr@777 1145 // do that for any other surv rate groups too
ysr@777 1146 }
ysr@777 1147 #endif // PRODUCT
ysr@777 1148
ysr@777 1149 if (in_young_gc_mode()) {
tonyp@1794 1150 last_pause_included_initial_mark = during_initial_mark_pause();
ysr@777 1151 if (last_pause_included_initial_mark)
ysr@777 1152 record_concurrent_mark_init_end_pre(0.0);
ysr@777 1153
ysr@777 1154 size_t min_used_targ =
tonyp@1718 1155 (_g1->capacity() / 100) * InitiatingHeapOccupancyPercent;
ysr@777 1156
tonyp@1794 1157
tonyp@1794 1158 if (!_g1->mark_in_progress() && !_last_full_young_gc) {
tonyp@1794 1159 assert(!last_pause_included_initial_mark, "invariant");
tonyp@1794 1160 if (cur_used_bytes > min_used_targ &&
tonyp@1794 1161 cur_used_bytes > _prev_collection_pause_used_at_end_bytes) {
tonyp@1794 1162 assert(!during_initial_mark_pause(), "we should not see this here");
tonyp@1794 1163
tonyp@1794 1164 // Note: this might have already been set, if during the last
tonyp@1794 1165 // pause we decided to start a cycle but at the beginning of
tonyp@1794 1166 // this pause we decided to postpone it. That's OK.
tonyp@1794 1167 set_initiate_conc_mark_if_possible();
ysr@777 1168 }
ysr@777 1169 }
ysr@777 1170
ysr@777 1171 _prev_collection_pause_used_at_end_bytes = cur_used_bytes;
ysr@777 1172 }
ysr@777 1173
ysr@777 1174 _mmu_tracker->add_pause(end_time_sec - elapsed_ms/1000.0,
ysr@777 1175 end_time_sec, false);
ysr@777 1176
ysr@777 1177 guarantee(_cur_collection_pause_used_regions_at_start >=
ysr@777 1178 collection_set_size(),
ysr@777 1179 "Negative RS size?");
ysr@777 1180
ysr@777 1181 // This assert is exempted when we're doing parallel collection pauses,
ysr@777 1182 // because the fragmentation caused by the parallel GC allocation buffers
ysr@777 1183 // can lead to more memory being used during collection than was used
ysr@777 1184 // before. Best leave this out until the fragmentation problem is fixed.
ysr@777 1185 // Pauses in which evacuation failed can also lead to negative
ysr@777 1186 // collections, since no space is reclaimed from a region containing an
ysr@777 1187 // object whose evacuation failed.
ysr@777 1188 // Further, we're now always doing parallel collection. But I'm still
ysr@777 1189 // leaving this here as a placeholder for a more precise assertion later.
ysr@777 1190 // (DLD, 10/05.)
ysr@777 1191 assert((true || parallel) // Always using GC LABs now.
ysr@777 1192 || _g1->evacuation_failed()
ysr@777 1193 || _cur_collection_pause_used_at_start_bytes >= cur_used_bytes,
ysr@777 1194 "Negative collection");
ysr@777 1195
ysr@777 1196 size_t freed_bytes =
ysr@777 1197 _cur_collection_pause_used_at_start_bytes - cur_used_bytes;
ysr@777 1198 size_t surviving_bytes = _collection_set_bytes_used_before - freed_bytes;
johnc@1829 1199
ysr@777 1200 double survival_fraction =
ysr@777 1201 (double)surviving_bytes/
ysr@777 1202 (double)_collection_set_bytes_used_before;
ysr@777 1203
ysr@777 1204 _n_pauses++;
ysr@777 1205
tonyp@1030 1206 if (update_stats) {
ysr@777 1207 _recent_CH_strong_roots_times_ms->add(_cur_CH_strong_roots_dur_ms);
ysr@777 1208 _recent_G1_strong_roots_times_ms->add(_cur_G1_strong_roots_dur_ms);
ysr@777 1209 _recent_evac_times_ms->add(evac_ms);
ysr@777 1210 _recent_pause_times_ms->add(elapsed_ms);
ysr@777 1211
ysr@777 1212 _recent_rs_sizes->add(rs_size);
ysr@777 1213
ysr@777 1214 // We exempt parallel collection from this check because Alloc Buffer
ysr@777 1215 // fragmentation can produce negative collections. Same with evac
ysr@777 1216 // failure.
ysr@777 1217 // Further, we're now always doing parallel collection. But I'm still
ysr@777 1218 // leaving this here as a placeholder for a more precise assertion later.
ysr@777 1219 // (DLD, 10/05.
ysr@777 1220 assert((true || parallel)
ysr@777 1221 || _g1->evacuation_failed()
ysr@777 1222 || surviving_bytes <= _collection_set_bytes_used_before,
ysr@777 1223 "Or else negative collection!");
ysr@777 1224 _recent_CS_bytes_used_before->add(_collection_set_bytes_used_before);
ysr@777 1225 _recent_CS_bytes_surviving->add(surviving_bytes);
ysr@777 1226
ysr@777 1227 // this is where we update the allocation rate of the application
ysr@777 1228 double app_time_ms =
ysr@777 1229 (_cur_collection_start_sec * 1000.0 - _prev_collection_pause_end_ms);
ysr@777 1230 if (app_time_ms < MIN_TIMER_GRANULARITY) {
ysr@777 1231 // This usually happens due to the timer not having the required
ysr@777 1232 // granularity. Some Linuxes are the usual culprits.
ysr@777 1233 // We'll just set it to something (arbitrarily) small.
ysr@777 1234 app_time_ms = 1.0;
ysr@777 1235 }
ysr@777 1236 size_t regions_allocated =
ysr@777 1237 (_region_num_young - _prev_region_num_young) +
ysr@777 1238 (_region_num_tenured - _prev_region_num_tenured);
ysr@777 1239 double alloc_rate_ms = (double) regions_allocated / app_time_ms;
ysr@777 1240 _alloc_rate_ms_seq->add(alloc_rate_ms);
ysr@777 1241 _prev_region_num_young = _region_num_young;
ysr@777 1242 _prev_region_num_tenured = _region_num_tenured;
ysr@777 1243
ysr@777 1244 double interval_ms =
ysr@777 1245 (end_time_sec - _recent_prev_end_times_for_all_gcs_sec->oldest()) * 1000.0;
ysr@777 1246 update_recent_gc_times(end_time_sec, elapsed_ms);
ysr@777 1247 _recent_avg_pause_time_ratio = _recent_gc_times_ms->sum()/interval_ms;
ysr@1521 1248 if (recent_avg_pause_time_ratio() < 0.0 ||
ysr@1521 1249 (recent_avg_pause_time_ratio() - 1.0 > 0.0)) {
ysr@1521 1250 #ifndef PRODUCT
ysr@1521 1251 // Dump info to allow post-facto debugging
ysr@1521 1252 gclog_or_tty->print_cr("recent_avg_pause_time_ratio() out of bounds");
ysr@1521 1253 gclog_or_tty->print_cr("-------------------------------------------");
ysr@1521 1254 gclog_or_tty->print_cr("Recent GC Times (ms):");
ysr@1521 1255 _recent_gc_times_ms->dump();
ysr@1521 1256 gclog_or_tty->print_cr("(End Time=%3.3f) Recent GC End Times (s):", end_time_sec);
ysr@1521 1257 _recent_prev_end_times_for_all_gcs_sec->dump();
ysr@1521 1258 gclog_or_tty->print_cr("GC = %3.3f, Interval = %3.3f, Ratio = %3.3f",
ysr@1521 1259 _recent_gc_times_ms->sum(), interval_ms, recent_avg_pause_time_ratio());
ysr@1522 1260 // In debug mode, terminate the JVM if the user wants to debug at this point.
ysr@1522 1261 assert(!G1FailOnFPError, "Debugging data for CR 6898948 has been dumped above");
ysr@1522 1262 #endif // !PRODUCT
ysr@1522 1263 // Clip ratio between 0.0 and 1.0, and continue. This will be fixed in
ysr@1522 1264 // CR 6902692 by redoing the manner in which the ratio is incrementally computed.
ysr@1521 1265 if (_recent_avg_pause_time_ratio < 0.0) {
ysr@1521 1266 _recent_avg_pause_time_ratio = 0.0;
ysr@1521 1267 } else {
ysr@1521 1268 assert(_recent_avg_pause_time_ratio - 1.0 > 0.0, "Ctl-point invariant");
ysr@1521 1269 _recent_avg_pause_time_ratio = 1.0;
ysr@1521 1270 }
ysr@1521 1271 }
ysr@777 1272 }
ysr@777 1273
ysr@777 1274 if (G1PolicyVerbose > 1) {
ysr@777 1275 gclog_or_tty->print_cr(" Recording collection pause(%d)", _n_pauses);
ysr@777 1276 }
ysr@777 1277
tonyp@2062 1278 PauseSummary* summary = _summary;
ysr@777 1279
ysr@777 1280 double ext_root_scan_time = avg_value(_par_last_ext_root_scan_times_ms);
ysr@777 1281 double mark_stack_scan_time = avg_value(_par_last_mark_stack_scan_times_ms);
ysr@777 1282 double update_rs_time = avg_value(_par_last_update_rs_times_ms);
ysr@777 1283 double update_rs_processed_buffers =
ysr@777 1284 sum_of_values(_par_last_update_rs_processed_buffers);
ysr@777 1285 double scan_rs_time = avg_value(_par_last_scan_rs_times_ms);
ysr@777 1286 double obj_copy_time = avg_value(_par_last_obj_copy_times_ms);
ysr@777 1287 double termination_time = avg_value(_par_last_termination_times_ms);
ysr@777 1288
tonyp@1083 1289 double parallel_other_time = _cur_collection_par_time_ms -
tonyp@1083 1290 (update_rs_time + ext_root_scan_time + mark_stack_scan_time +
johnc@1829 1291 scan_rs_time + obj_copy_time + termination_time);
tonyp@1030 1292 if (update_stats) {
ysr@777 1293 MainBodySummary* body_summary = summary->main_body_summary();
ysr@777 1294 guarantee(body_summary != NULL, "should not be null!");
ysr@777 1295
ysr@777 1296 if (_satb_drain_time_set)
ysr@777 1297 body_summary->record_satb_drain_time_ms(_cur_satb_drain_time_ms);
ysr@777 1298 else
ysr@777 1299 body_summary->record_satb_drain_time_ms(0.0);
ysr@777 1300 body_summary->record_ext_root_scan_time_ms(ext_root_scan_time);
ysr@777 1301 body_summary->record_mark_stack_scan_time_ms(mark_stack_scan_time);
ysr@777 1302 body_summary->record_update_rs_time_ms(update_rs_time);
ysr@777 1303 body_summary->record_scan_rs_time_ms(scan_rs_time);
ysr@777 1304 body_summary->record_obj_copy_time_ms(obj_copy_time);
ysr@777 1305 if (parallel) {
ysr@777 1306 body_summary->record_parallel_time_ms(_cur_collection_par_time_ms);
ysr@777 1307 body_summary->record_clear_ct_time_ms(_cur_clear_ct_time_ms);
ysr@777 1308 body_summary->record_termination_time_ms(termination_time);
ysr@777 1309 body_summary->record_parallel_other_time_ms(parallel_other_time);
ysr@777 1310 }
ysr@777 1311 body_summary->record_mark_closure_time_ms(_mark_closure_time_ms);
ysr@777 1312 }
ysr@777 1313
ysr@777 1314 if (G1PolicyVerbose > 1) {
ysr@777 1315 gclog_or_tty->print_cr(" ET: %10.6f ms (avg: %10.6f ms)\n"
ysr@777 1316 " CH Strong: %10.6f ms (avg: %10.6f ms)\n"
ysr@777 1317 " G1 Strong: %10.6f ms (avg: %10.6f ms)\n"
ysr@777 1318 " Evac: %10.6f ms (avg: %10.6f ms)\n"
ysr@777 1319 " ET-RS: %10.6f ms (avg: %10.6f ms)\n"
ysr@777 1320 " |RS|: " SIZE_FORMAT,
ysr@777 1321 elapsed_ms, recent_avg_time_for_pauses_ms(),
ysr@777 1322 _cur_CH_strong_roots_dur_ms, recent_avg_time_for_CH_strong_ms(),
ysr@777 1323 _cur_G1_strong_roots_dur_ms, recent_avg_time_for_G1_strong_ms(),
ysr@777 1324 evac_ms, recent_avg_time_for_evac_ms(),
ysr@777 1325 scan_rs_time,
ysr@777 1326 recent_avg_time_for_pauses_ms() -
ysr@777 1327 recent_avg_time_for_G1_strong_ms(),
ysr@777 1328 rs_size);
ysr@777 1329
ysr@777 1330 gclog_or_tty->print_cr(" Used at start: " SIZE_FORMAT"K"
ysr@777 1331 " At end " SIZE_FORMAT "K\n"
ysr@777 1332 " garbage : " SIZE_FORMAT "K"
ysr@777 1333 " of " SIZE_FORMAT "K\n"
ysr@777 1334 " survival : %6.2f%% (%6.2f%% avg)",
ysr@777 1335 _cur_collection_pause_used_at_start_bytes/K,
ysr@777 1336 _g1->used()/K, freed_bytes/K,
ysr@777 1337 _collection_set_bytes_used_before/K,
ysr@777 1338 survival_fraction*100.0,
ysr@777 1339 recent_avg_survival_fraction()*100.0);
ysr@777 1340 gclog_or_tty->print_cr(" Recent %% gc pause time: %6.2f",
ysr@777 1341 recent_avg_pause_time_ratio() * 100.0);
ysr@777 1342 }
ysr@777 1343
ysr@777 1344 double other_time_ms = elapsed_ms;
ysr@777 1345
tonyp@2062 1346 if (_satb_drain_time_set) {
tonyp@2062 1347 other_time_ms -= _cur_satb_drain_time_ms;
ysr@777 1348 }
ysr@777 1349
tonyp@2062 1350 if (parallel) {
tonyp@2062 1351 other_time_ms -= _cur_collection_par_time_ms + _cur_clear_ct_time_ms;
tonyp@2062 1352 } else {
tonyp@2062 1353 other_time_ms -=
tonyp@2062 1354 update_rs_time +
tonyp@2062 1355 ext_root_scan_time + mark_stack_scan_time +
tonyp@2062 1356 scan_rs_time + obj_copy_time;
tonyp@2062 1357 }
tonyp@2062 1358
ysr@777 1359 if (PrintGCDetails) {
tonyp@2062 1360 gclog_or_tty->print_cr("%s, %1.8lf secs]",
ysr@777 1361 (last_pause_included_initial_mark) ? " (initial-mark)" : "",
ysr@777 1362 elapsed_ms / 1000.0);
ysr@777 1363
tonyp@2062 1364 if (_satb_drain_time_set) {
tonyp@2062 1365 print_stats(1, "SATB Drain Time", _cur_satb_drain_time_ms);
tonyp@2062 1366 }
tonyp@2062 1367 if (_last_satb_drain_processed_buffers >= 0) {
tonyp@2062 1368 print_stats(2, "Processed Buffers", _last_satb_drain_processed_buffers);
tonyp@2062 1369 }
tonyp@2062 1370 if (parallel) {
tonyp@2062 1371 print_stats(1, "Parallel Time", _cur_collection_par_time_ms);
tonyp@2062 1372 print_par_stats(2, "GC Worker Start Time",
tonyp@2062 1373 _par_last_gc_worker_start_times_ms, false);
tonyp@2062 1374 print_par_stats(2, "Update RS", _par_last_update_rs_times_ms);
tonyp@2062 1375 print_par_sizes(3, "Processed Buffers",
tonyp@2062 1376 _par_last_update_rs_processed_buffers, true);
tonyp@2062 1377 print_par_stats(2, "Ext Root Scanning",
tonyp@2062 1378 _par_last_ext_root_scan_times_ms);
tonyp@2062 1379 print_par_stats(2, "Mark Stack Scanning",
tonyp@2062 1380 _par_last_mark_stack_scan_times_ms);
tonyp@2062 1381 print_par_stats(2, "Scan RS", _par_last_scan_rs_times_ms);
tonyp@2062 1382 print_par_stats(2, "Object Copy", _par_last_obj_copy_times_ms);
tonyp@2062 1383 print_par_stats(2, "Termination", _par_last_termination_times_ms);
tonyp@2062 1384 print_par_sizes(3, "Termination Attempts",
tonyp@2062 1385 _par_last_termination_attempts, true);
tonyp@2062 1386 print_par_stats(2, "GC Worker End Time",
tonyp@2062 1387 _par_last_gc_worker_end_times_ms, false);
tonyp@2062 1388 print_stats(2, "Other", parallel_other_time);
tonyp@2062 1389 print_stats(1, "Clear CT", _cur_clear_ct_time_ms);
tonyp@2062 1390 } else {
tonyp@2062 1391 print_stats(1, "Update RS", update_rs_time);
tonyp@2062 1392 print_stats(2, "Processed Buffers",
tonyp@2062 1393 (int)update_rs_processed_buffers);
tonyp@2062 1394 print_stats(1, "Ext Root Scanning", ext_root_scan_time);
tonyp@2062 1395 print_stats(1, "Mark Stack Scanning", mark_stack_scan_time);
tonyp@2062 1396 print_stats(1, "Scan RS", scan_rs_time);
tonyp@2062 1397 print_stats(1, "Object Copying", obj_copy_time);
ysr@777 1398 }
johnc@1325 1399 #ifndef PRODUCT
johnc@1325 1400 print_stats(1, "Cur Clear CC", _cur_clear_cc_time_ms);
johnc@1325 1401 print_stats(1, "Cum Clear CC", _cum_clear_cc_time_ms);
johnc@1325 1402 print_stats(1, "Min Clear CC", _min_clear_cc_time_ms);
johnc@1325 1403 print_stats(1, "Max Clear CC", _max_clear_cc_time_ms);
johnc@1325 1404 if (_num_cc_clears > 0) {
johnc@1325 1405 print_stats(1, "Avg Clear CC", _cum_clear_cc_time_ms / ((double)_num_cc_clears));
johnc@1325 1406 }
johnc@1325 1407 #endif
ysr@777 1408 print_stats(1, "Other", other_time_ms);
johnc@1829 1409 print_stats(2, "Choose CSet", _recorded_young_cset_choice_time_ms);
johnc@1829 1410
ysr@777 1411 for (int i = 0; i < _aux_num; ++i) {
ysr@777 1412 if (_cur_aux_times_set[i]) {
ysr@777 1413 char buffer[96];
ysr@777 1414 sprintf(buffer, "Aux%d", i);
ysr@777 1415 print_stats(1, buffer, _cur_aux_times_ms[i]);
ysr@777 1416 }
ysr@777 1417 }
ysr@777 1418 }
ysr@777 1419 if (PrintGCDetails)
ysr@777 1420 gclog_or_tty->print(" [");
ysr@777 1421 if (PrintGC || PrintGCDetails)
ysr@777 1422 _g1->print_size_transition(gclog_or_tty,
ysr@777 1423 _cur_collection_pause_used_at_start_bytes,
ysr@777 1424 _g1->used(), _g1->capacity());
ysr@777 1425 if (PrintGCDetails)
ysr@777 1426 gclog_or_tty->print_cr("]");
ysr@777 1427
ysr@777 1428 _all_pause_times_ms->add(elapsed_ms);
tonyp@1083 1429 if (update_stats) {
tonyp@1083 1430 summary->record_total_time_ms(elapsed_ms);
tonyp@1083 1431 summary->record_other_time_ms(other_time_ms);
tonyp@1083 1432 }
ysr@777 1433 for (int i = 0; i < _aux_num; ++i)
ysr@777 1434 if (_cur_aux_times_set[i])
ysr@777 1435 _all_aux_times_ms[i].add(_cur_aux_times_ms[i]);
ysr@777 1436
ysr@777 1437 // Reset marks-between-pauses counter.
ysr@777 1438 _n_marks_since_last_pause = 0;
ysr@777 1439
ysr@777 1440 // Update the efficiency-since-mark vars.
ysr@777 1441 double proc_ms = elapsed_ms * (double) _parallel_gc_threads;
ysr@777 1442 if (elapsed_ms < MIN_TIMER_GRANULARITY) {
ysr@777 1443 // This usually happens due to the timer not having the required
ysr@777 1444 // granularity. Some Linuxes are the usual culprits.
ysr@777 1445 // We'll just set it to something (arbitrarily) small.
ysr@777 1446 proc_ms = 1.0;
ysr@777 1447 }
ysr@777 1448 double cur_efficiency = (double) freed_bytes / proc_ms;
ysr@777 1449
ysr@777 1450 bool new_in_marking_window = _in_marking_window;
ysr@777 1451 bool new_in_marking_window_im = false;
tonyp@1794 1452 if (during_initial_mark_pause()) {
ysr@777 1453 new_in_marking_window = true;
ysr@777 1454 new_in_marking_window_im = true;
ysr@777 1455 }
ysr@777 1456
ysr@777 1457 if (in_young_gc_mode()) {
ysr@777 1458 if (_last_full_young_gc) {
ysr@777 1459 set_full_young_gcs(false);
ysr@777 1460 _last_full_young_gc = false;
ysr@777 1461 }
ysr@777 1462
ysr@777 1463 if ( !_last_young_gc_full ) {
ysr@777 1464 if ( _should_revert_to_full_young_gcs ||
ysr@777 1465 _known_garbage_ratio < 0.05 ||
ysr@777 1466 (adaptive_young_list_length() &&
ysr@777 1467 (get_gc_eff_factor() * cur_efficiency < predict_young_gc_eff())) ) {
ysr@777 1468 set_full_young_gcs(true);
ysr@777 1469 }
ysr@777 1470 }
ysr@777 1471 _should_revert_to_full_young_gcs = false;
ysr@777 1472
ysr@777 1473 if (_last_young_gc_full && !_during_marking)
ysr@777 1474 _young_gc_eff_seq->add(cur_efficiency);
ysr@777 1475 }
ysr@777 1476
ysr@777 1477 _short_lived_surv_rate_group->start_adding_regions();
ysr@777 1478 // do that for any other surv rate groupsx
ysr@777 1479
ysr@777 1480 // <NEW PREDICTION>
ysr@777 1481
apetrusenko@1112 1482 if (update_stats) {
ysr@777 1483 double pause_time_ms = elapsed_ms;
ysr@777 1484
ysr@777 1485 size_t diff = 0;
ysr@777 1486 if (_max_pending_cards >= _pending_cards)
ysr@777 1487 diff = _max_pending_cards - _pending_cards;
ysr@777 1488 _pending_card_diff_seq->add((double) diff);
ysr@777 1489
ysr@777 1490 double cost_per_card_ms = 0.0;
ysr@777 1491 if (_pending_cards > 0) {
ysr@777 1492 cost_per_card_ms = update_rs_time / (double) _pending_cards;
ysr@777 1493 _cost_per_card_ms_seq->add(cost_per_card_ms);
ysr@777 1494 }
ysr@777 1495
ysr@777 1496 size_t cards_scanned = _g1->cards_scanned();
ysr@777 1497
ysr@777 1498 double cost_per_entry_ms = 0.0;
ysr@777 1499 if (cards_scanned > 10) {
ysr@777 1500 cost_per_entry_ms = scan_rs_time / (double) cards_scanned;
ysr@777 1501 if (_last_young_gc_full)
ysr@777 1502 _cost_per_entry_ms_seq->add(cost_per_entry_ms);
ysr@777 1503 else
ysr@777 1504 _partially_young_cost_per_entry_ms_seq->add(cost_per_entry_ms);
ysr@777 1505 }
ysr@777 1506
ysr@777 1507 if (_max_rs_lengths > 0) {
ysr@777 1508 double cards_per_entry_ratio =
ysr@777 1509 (double) cards_scanned / (double) _max_rs_lengths;
ysr@777 1510 if (_last_young_gc_full)
ysr@777 1511 _fully_young_cards_per_entry_ratio_seq->add(cards_per_entry_ratio);
ysr@777 1512 else
ysr@777 1513 _partially_young_cards_per_entry_ratio_seq->add(cards_per_entry_ratio);
ysr@777 1514 }
ysr@777 1515
ysr@777 1516 size_t rs_length_diff = _max_rs_lengths - _recorded_rs_lengths;
ysr@777 1517 if (rs_length_diff >= 0)
ysr@777 1518 _rs_length_diff_seq->add((double) rs_length_diff);
ysr@777 1519
ysr@777 1520 size_t copied_bytes = surviving_bytes;
ysr@777 1521 double cost_per_byte_ms = 0.0;
ysr@777 1522 if (copied_bytes > 0) {
ysr@777 1523 cost_per_byte_ms = obj_copy_time / (double) copied_bytes;
ysr@777 1524 if (_in_marking_window)
ysr@777 1525 _cost_per_byte_ms_during_cm_seq->add(cost_per_byte_ms);
ysr@777 1526 else
ysr@777 1527 _cost_per_byte_ms_seq->add(cost_per_byte_ms);
ysr@777 1528 }
ysr@777 1529
ysr@777 1530 double all_other_time_ms = pause_time_ms -
johnc@1829 1531 (update_rs_time + scan_rs_time + obj_copy_time +
ysr@777 1532 _mark_closure_time_ms + termination_time);
ysr@777 1533
ysr@777 1534 double young_other_time_ms = 0.0;
ysr@777 1535 if (_recorded_young_regions > 0) {
ysr@777 1536 young_other_time_ms =
ysr@777 1537 _recorded_young_cset_choice_time_ms +
ysr@777 1538 _recorded_young_free_cset_time_ms;
ysr@777 1539 _young_other_cost_per_region_ms_seq->add(young_other_time_ms /
ysr@777 1540 (double) _recorded_young_regions);
ysr@777 1541 }
ysr@777 1542 double non_young_other_time_ms = 0.0;
ysr@777 1543 if (_recorded_non_young_regions > 0) {
ysr@777 1544 non_young_other_time_ms =
ysr@777 1545 _recorded_non_young_cset_choice_time_ms +
ysr@777 1546 _recorded_non_young_free_cset_time_ms;
ysr@777 1547
ysr@777 1548 _non_young_other_cost_per_region_ms_seq->add(non_young_other_time_ms /
ysr@777 1549 (double) _recorded_non_young_regions);
ysr@777 1550 }
ysr@777 1551
ysr@777 1552 double constant_other_time_ms = all_other_time_ms -
ysr@777 1553 (young_other_time_ms + non_young_other_time_ms);
ysr@777 1554 _constant_other_time_ms_seq->add(constant_other_time_ms);
ysr@777 1555
ysr@777 1556 double survival_ratio = 0.0;
ysr@777 1557 if (_bytes_in_collection_set_before_gc > 0) {
ysr@777 1558 survival_ratio = (double) bytes_in_to_space_during_gc() /
ysr@777 1559 (double) _bytes_in_collection_set_before_gc;
ysr@777 1560 }
ysr@777 1561
ysr@777 1562 _pending_cards_seq->add((double) _pending_cards);
ysr@777 1563 _scanned_cards_seq->add((double) cards_scanned);
ysr@777 1564 _rs_lengths_seq->add((double) _max_rs_lengths);
ysr@777 1565
ysr@777 1566 double expensive_region_limit_ms =
johnc@1186 1567 (double) MaxGCPauseMillis - predict_constant_other_time_ms();
ysr@777 1568 if (expensive_region_limit_ms < 0.0) {
ysr@777 1569 // this means that the other time was predicted to be longer than
ysr@777 1570 // than the max pause time
johnc@1186 1571 expensive_region_limit_ms = (double) MaxGCPauseMillis;
ysr@777 1572 }
ysr@777 1573 _expensive_region_limit_ms = expensive_region_limit_ms;
ysr@777 1574
ysr@777 1575 if (PREDICTIONS_VERBOSE) {
ysr@777 1576 gclog_or_tty->print_cr("");
ysr@777 1577 gclog_or_tty->print_cr("PREDICTIONS %1.4lf %d "
johnc@1829 1578 "REGIONS %d %d %d "
ysr@777 1579 "PENDING_CARDS %d %d "
ysr@777 1580 "CARDS_SCANNED %d %d "
ysr@777 1581 "RS_LENGTHS %d %d "
ysr@777 1582 "RS_UPDATE %1.6lf %1.6lf RS_SCAN %1.6lf %1.6lf "
ysr@777 1583 "SURVIVAL_RATIO %1.6lf %1.6lf "
ysr@777 1584 "OBJECT_COPY %1.6lf %1.6lf OTHER_CONSTANT %1.6lf %1.6lf "
ysr@777 1585 "OTHER_YOUNG %1.6lf %1.6lf "
ysr@777 1586 "OTHER_NON_YOUNG %1.6lf %1.6lf "
ysr@777 1587 "VTIME_DIFF %1.6lf TERMINATION %1.6lf "
ysr@777 1588 "ELAPSED %1.6lf %1.6lf ",
ysr@777 1589 _cur_collection_start_sec,
ysr@777 1590 (!_last_young_gc_full) ? 2 :
ysr@777 1591 (last_pause_included_initial_mark) ? 1 : 0,
ysr@777 1592 _recorded_region_num,
ysr@777 1593 _recorded_young_regions,
ysr@777 1594 _recorded_non_young_regions,
ysr@777 1595 _predicted_pending_cards, _pending_cards,
ysr@777 1596 _predicted_cards_scanned, cards_scanned,
ysr@777 1597 _predicted_rs_lengths, _max_rs_lengths,
ysr@777 1598 _predicted_rs_update_time_ms, update_rs_time,
ysr@777 1599 _predicted_rs_scan_time_ms, scan_rs_time,
ysr@777 1600 _predicted_survival_ratio, survival_ratio,
ysr@777 1601 _predicted_object_copy_time_ms, obj_copy_time,
ysr@777 1602 _predicted_constant_other_time_ms, constant_other_time_ms,
ysr@777 1603 _predicted_young_other_time_ms, young_other_time_ms,
ysr@777 1604 _predicted_non_young_other_time_ms,
ysr@777 1605 non_young_other_time_ms,
ysr@777 1606 _vtime_diff_ms, termination_time,
ysr@777 1607 _predicted_pause_time_ms, elapsed_ms);
ysr@777 1608 }
ysr@777 1609
ysr@777 1610 if (G1PolicyVerbose > 0) {
ysr@777 1611 gclog_or_tty->print_cr("Pause Time, predicted: %1.4lfms (predicted %s), actual: %1.4lfms",
ysr@777 1612 _predicted_pause_time_ms,
ysr@777 1613 (_within_target) ? "within" : "outside",
ysr@777 1614 elapsed_ms);
ysr@777 1615 }
ysr@777 1616
ysr@777 1617 }
ysr@777 1618
ysr@777 1619 _in_marking_window = new_in_marking_window;
ysr@777 1620 _in_marking_window_im = new_in_marking_window_im;
ysr@777 1621 _free_regions_at_end_of_collection = _g1->free_regions();
ysr@777 1622 calculate_young_list_min_length();
johnc@1829 1623 calculate_young_list_target_length();
ysr@777 1624
iveresov@1546 1625 // Note that _mmu_tracker->max_gc_time() returns the time in seconds.
tonyp@1717 1626 double update_rs_time_goal_ms = _mmu_tracker->max_gc_time() * MILLIUNITS * G1RSetUpdatingPauseTimePercent / 100.0;
iveresov@1546 1627 adjust_concurrent_refinement(update_rs_time, update_rs_processed_buffers, update_rs_time_goal_ms);
ysr@777 1628 // </NEW PREDICTION>
ysr@777 1629 }
ysr@777 1630
ysr@777 1631 // <NEW PREDICTION>
ysr@777 1632
iveresov@1546 1633 void G1CollectorPolicy::adjust_concurrent_refinement(double update_rs_time,
iveresov@1546 1634 double update_rs_processed_buffers,
iveresov@1546 1635 double goal_ms) {
iveresov@1546 1636 DirtyCardQueueSet& dcqs = JavaThread::dirty_card_queue_set();
iveresov@1546 1637 ConcurrentG1Refine *cg1r = G1CollectedHeap::heap()->concurrent_g1_refine();
iveresov@1546 1638
tonyp@1717 1639 if (G1UseAdaptiveConcRefinement) {
iveresov@1546 1640 const int k_gy = 3, k_gr = 6;
iveresov@1546 1641 const double inc_k = 1.1, dec_k = 0.9;
iveresov@1546 1642
iveresov@1546 1643 int g = cg1r->green_zone();
iveresov@1546 1644 if (update_rs_time > goal_ms) {
iveresov@1546 1645 g = (int)(g * dec_k); // Can become 0, that's OK. That would mean a mutator-only processing.
iveresov@1546 1646 } else {
iveresov@1546 1647 if (update_rs_time < goal_ms && update_rs_processed_buffers > g) {
iveresov@1546 1648 g = (int)MAX2(g * inc_k, g + 1.0);
iveresov@1546 1649 }
iveresov@1546 1650 }
iveresov@1546 1651 // Change the refinement threads params
iveresov@1546 1652 cg1r->set_green_zone(g);
iveresov@1546 1653 cg1r->set_yellow_zone(g * k_gy);
iveresov@1546 1654 cg1r->set_red_zone(g * k_gr);
iveresov@1546 1655 cg1r->reinitialize_threads();
iveresov@1546 1656
iveresov@1546 1657 int processing_threshold_delta = MAX2((int)(cg1r->green_zone() * sigma()), 1);
iveresov@1546 1658 int processing_threshold = MIN2(cg1r->green_zone() + processing_threshold_delta,
iveresov@1546 1659 cg1r->yellow_zone());
iveresov@1546 1660 // Change the barrier params
iveresov@1546 1661 dcqs.set_process_completed_threshold(processing_threshold);
iveresov@1546 1662 dcqs.set_max_completed_queue(cg1r->red_zone());
iveresov@1546 1663 }
iveresov@1546 1664
iveresov@1546 1665 int curr_queue_size = dcqs.completed_buffers_num();
iveresov@1546 1666 if (curr_queue_size >= cg1r->yellow_zone()) {
iveresov@1546 1667 dcqs.set_completed_queue_padding(curr_queue_size);
iveresov@1546 1668 } else {
iveresov@1546 1669 dcqs.set_completed_queue_padding(0);
iveresov@1546 1670 }
iveresov@1546 1671 dcqs.notify_if_necessary();
iveresov@1546 1672 }
iveresov@1546 1673
ysr@777 1674 double
ysr@777 1675 G1CollectorPolicy::
ysr@777 1676 predict_young_collection_elapsed_time_ms(size_t adjustment) {
ysr@777 1677 guarantee( adjustment == 0 || adjustment == 1, "invariant" );
ysr@777 1678
ysr@777 1679 G1CollectedHeap* g1h = G1CollectedHeap::heap();
johnc@1829 1680 size_t young_num = g1h->young_list()->length();
ysr@777 1681 if (young_num == 0)
ysr@777 1682 return 0.0;
ysr@777 1683
ysr@777 1684 young_num += adjustment;
ysr@777 1685 size_t pending_cards = predict_pending_cards();
johnc@1829 1686 size_t rs_lengths = g1h->young_list()->sampled_rs_lengths() +
ysr@777 1687 predict_rs_length_diff();
ysr@777 1688 size_t card_num;
ysr@777 1689 if (full_young_gcs())
ysr@777 1690 card_num = predict_young_card_num(rs_lengths);
ysr@777 1691 else
ysr@777 1692 card_num = predict_non_young_card_num(rs_lengths);
ysr@777 1693 size_t young_byte_size = young_num * HeapRegion::GrainBytes;
ysr@777 1694 double accum_yg_surv_rate =
ysr@777 1695 _short_lived_surv_rate_group->accum_surv_rate(adjustment);
ysr@777 1696
ysr@777 1697 size_t bytes_to_copy =
ysr@777 1698 (size_t) (accum_yg_surv_rate * (double) HeapRegion::GrainBytes);
ysr@777 1699
ysr@777 1700 return
ysr@777 1701 predict_rs_update_time_ms(pending_cards) +
ysr@777 1702 predict_rs_scan_time_ms(card_num) +
ysr@777 1703 predict_object_copy_time_ms(bytes_to_copy) +
ysr@777 1704 predict_young_other_time_ms(young_num) +
ysr@777 1705 predict_constant_other_time_ms();
ysr@777 1706 }
ysr@777 1707
ysr@777 1708 double
ysr@777 1709 G1CollectorPolicy::predict_base_elapsed_time_ms(size_t pending_cards) {
ysr@777 1710 size_t rs_length = predict_rs_length_diff();
ysr@777 1711 size_t card_num;
ysr@777 1712 if (full_young_gcs())
ysr@777 1713 card_num = predict_young_card_num(rs_length);
ysr@777 1714 else
ysr@777 1715 card_num = predict_non_young_card_num(rs_length);
ysr@777 1716 return predict_base_elapsed_time_ms(pending_cards, card_num);
ysr@777 1717 }
ysr@777 1718
ysr@777 1719 double
ysr@777 1720 G1CollectorPolicy::predict_base_elapsed_time_ms(size_t pending_cards,
ysr@777 1721 size_t scanned_cards) {
ysr@777 1722 return
ysr@777 1723 predict_rs_update_time_ms(pending_cards) +
ysr@777 1724 predict_rs_scan_time_ms(scanned_cards) +
ysr@777 1725 predict_constant_other_time_ms();
ysr@777 1726 }
ysr@777 1727
ysr@777 1728 double
ysr@777 1729 G1CollectorPolicy::predict_region_elapsed_time_ms(HeapRegion* hr,
ysr@777 1730 bool young) {
ysr@777 1731 size_t rs_length = hr->rem_set()->occupied();
ysr@777 1732 size_t card_num;
ysr@777 1733 if (full_young_gcs())
ysr@777 1734 card_num = predict_young_card_num(rs_length);
ysr@777 1735 else
ysr@777 1736 card_num = predict_non_young_card_num(rs_length);
ysr@777 1737 size_t bytes_to_copy = predict_bytes_to_copy(hr);
ysr@777 1738
ysr@777 1739 double region_elapsed_time_ms =
ysr@777 1740 predict_rs_scan_time_ms(card_num) +
ysr@777 1741 predict_object_copy_time_ms(bytes_to_copy);
ysr@777 1742
ysr@777 1743 if (young)
ysr@777 1744 region_elapsed_time_ms += predict_young_other_time_ms(1);
ysr@777 1745 else
ysr@777 1746 region_elapsed_time_ms += predict_non_young_other_time_ms(1);
ysr@777 1747
ysr@777 1748 return region_elapsed_time_ms;
ysr@777 1749 }
ysr@777 1750
ysr@777 1751 size_t
ysr@777 1752 G1CollectorPolicy::predict_bytes_to_copy(HeapRegion* hr) {
ysr@777 1753 size_t bytes_to_copy;
ysr@777 1754 if (hr->is_marked())
ysr@777 1755 bytes_to_copy = hr->max_live_bytes();
ysr@777 1756 else {
ysr@777 1757 guarantee( hr->is_young() && hr->age_in_surv_rate_group() != -1,
ysr@777 1758 "invariant" );
ysr@777 1759 int age = hr->age_in_surv_rate_group();
apetrusenko@980 1760 double yg_surv_rate = predict_yg_surv_rate(age, hr->surv_rate_group());
ysr@777 1761 bytes_to_copy = (size_t) ((double) hr->used() * yg_surv_rate);
ysr@777 1762 }
ysr@777 1763
ysr@777 1764 return bytes_to_copy;
ysr@777 1765 }
ysr@777 1766
ysr@777 1767 void
ysr@777 1768 G1CollectorPolicy::start_recording_regions() {
ysr@777 1769 _recorded_rs_lengths = 0;
ysr@777 1770 _recorded_young_regions = 0;
ysr@777 1771 _recorded_non_young_regions = 0;
ysr@777 1772
ysr@777 1773 #if PREDICTIONS_VERBOSE
ysr@777 1774 _recorded_marked_bytes = 0;
ysr@777 1775 _recorded_young_bytes = 0;
ysr@777 1776 _predicted_bytes_to_copy = 0;
johnc@1829 1777 _predicted_rs_lengths = 0;
johnc@1829 1778 _predicted_cards_scanned = 0;
ysr@777 1779 #endif // PREDICTIONS_VERBOSE
ysr@777 1780 }
ysr@777 1781
ysr@777 1782 void
johnc@1829 1783 G1CollectorPolicy::record_cset_region_info(HeapRegion* hr, bool young) {
ysr@777 1784 #if PREDICTIONS_VERBOSE
johnc@1829 1785 if (!young) {
ysr@777 1786 _recorded_marked_bytes += hr->max_live_bytes();
ysr@777 1787 }
ysr@777 1788 _predicted_bytes_to_copy += predict_bytes_to_copy(hr);
ysr@777 1789 #endif // PREDICTIONS_VERBOSE
ysr@777 1790
ysr@777 1791 size_t rs_length = hr->rem_set()->occupied();
ysr@777 1792 _recorded_rs_lengths += rs_length;
ysr@777 1793 }
ysr@777 1794
ysr@777 1795 void
johnc@1829 1796 G1CollectorPolicy::record_non_young_cset_region(HeapRegion* hr) {
johnc@1829 1797 assert(!hr->is_young(), "should not call this");
johnc@1829 1798 ++_recorded_non_young_regions;
johnc@1829 1799 record_cset_region_info(hr, false);
johnc@1829 1800 }
johnc@1829 1801
johnc@1829 1802 void
johnc@1829 1803 G1CollectorPolicy::set_recorded_young_regions(size_t n_regions) {
johnc@1829 1804 _recorded_young_regions = n_regions;
johnc@1829 1805 }
johnc@1829 1806
johnc@1829 1807 void G1CollectorPolicy::set_recorded_young_bytes(size_t bytes) {
johnc@1829 1808 #if PREDICTIONS_VERBOSE
johnc@1829 1809 _recorded_young_bytes = bytes;
johnc@1829 1810 #endif // PREDICTIONS_VERBOSE
johnc@1829 1811 }
johnc@1829 1812
johnc@1829 1813 void G1CollectorPolicy::set_recorded_rs_lengths(size_t rs_lengths) {
johnc@1829 1814 _recorded_rs_lengths = rs_lengths;
johnc@1829 1815 }
johnc@1829 1816
johnc@1829 1817 void G1CollectorPolicy::set_predicted_bytes_to_copy(size_t bytes) {
johnc@1829 1818 _predicted_bytes_to_copy = bytes;
ysr@777 1819 }
ysr@777 1820
ysr@777 1821 void
ysr@777 1822 G1CollectorPolicy::end_recording_regions() {
johnc@1829 1823 // The _predicted_pause_time_ms field is referenced in code
johnc@1829 1824 // not under PREDICTIONS_VERBOSE. Let's initialize it.
johnc@1829 1825 _predicted_pause_time_ms = -1.0;
johnc@1829 1826
ysr@777 1827 #if PREDICTIONS_VERBOSE
ysr@777 1828 _predicted_pending_cards = predict_pending_cards();
ysr@777 1829 _predicted_rs_lengths = _recorded_rs_lengths + predict_rs_length_diff();
ysr@777 1830 if (full_young_gcs())
ysr@777 1831 _predicted_cards_scanned += predict_young_card_num(_predicted_rs_lengths);
ysr@777 1832 else
ysr@777 1833 _predicted_cards_scanned +=
ysr@777 1834 predict_non_young_card_num(_predicted_rs_lengths);
ysr@777 1835 _recorded_region_num = _recorded_young_regions + _recorded_non_young_regions;
ysr@777 1836
ysr@777 1837 _predicted_rs_update_time_ms =
ysr@777 1838 predict_rs_update_time_ms(_g1->pending_card_num());
ysr@777 1839 _predicted_rs_scan_time_ms =
ysr@777 1840 predict_rs_scan_time_ms(_predicted_cards_scanned);
ysr@777 1841 _predicted_object_copy_time_ms =
ysr@777 1842 predict_object_copy_time_ms(_predicted_bytes_to_copy);
ysr@777 1843 _predicted_constant_other_time_ms =
ysr@777 1844 predict_constant_other_time_ms();
ysr@777 1845 _predicted_young_other_time_ms =
ysr@777 1846 predict_young_other_time_ms(_recorded_young_regions);
ysr@777 1847 _predicted_non_young_other_time_ms =
ysr@777 1848 predict_non_young_other_time_ms(_recorded_non_young_regions);
ysr@777 1849
ysr@777 1850 _predicted_pause_time_ms =
ysr@777 1851 _predicted_rs_update_time_ms +
ysr@777 1852 _predicted_rs_scan_time_ms +
ysr@777 1853 _predicted_object_copy_time_ms +
ysr@777 1854 _predicted_constant_other_time_ms +
ysr@777 1855 _predicted_young_other_time_ms +
ysr@777 1856 _predicted_non_young_other_time_ms;
ysr@777 1857 #endif // PREDICTIONS_VERBOSE
ysr@777 1858 }
ysr@777 1859
ysr@777 1860 void G1CollectorPolicy::check_if_region_is_too_expensive(double
ysr@777 1861 predicted_time_ms) {
ysr@777 1862 // I don't think we need to do this when in young GC mode since
ysr@777 1863 // marking will be initiated next time we hit the soft limit anyway...
ysr@777 1864 if (predicted_time_ms > _expensive_region_limit_ms) {
ysr@777 1865 if (!in_young_gc_mode()) {
ysr@777 1866 set_full_young_gcs(true);
tonyp@1794 1867 // We might want to do something different here. However,
tonyp@1794 1868 // right now we don't support the non-generational G1 mode
tonyp@1794 1869 // (and in fact we are planning to remove the associated code,
tonyp@1794 1870 // see CR 6814390). So, let's leave it as is and this will be
tonyp@1794 1871 // removed some time in the future
tonyp@1794 1872 ShouldNotReachHere();
tonyp@1794 1873 set_during_initial_mark_pause();
ysr@777 1874 } else
ysr@777 1875 // no point in doing another partial one
ysr@777 1876 _should_revert_to_full_young_gcs = true;
ysr@777 1877 }
ysr@777 1878 }
ysr@777 1879
ysr@777 1880 // </NEW PREDICTION>
ysr@777 1881
ysr@777 1882
ysr@777 1883 void G1CollectorPolicy::update_recent_gc_times(double end_time_sec,
ysr@777 1884 double elapsed_ms) {
ysr@777 1885 _recent_gc_times_ms->add(elapsed_ms);
ysr@777 1886 _recent_prev_end_times_for_all_gcs_sec->add(end_time_sec);
ysr@777 1887 _prev_collection_pause_end_ms = end_time_sec * 1000.0;
ysr@777 1888 }
ysr@777 1889
ysr@777 1890 double G1CollectorPolicy::recent_avg_time_for_pauses_ms() {
johnc@1186 1891 if (_recent_pause_times_ms->num() == 0) return (double) MaxGCPauseMillis;
ysr@777 1892 else return _recent_pause_times_ms->avg();
ysr@777 1893 }
ysr@777 1894
ysr@777 1895 double G1CollectorPolicy::recent_avg_time_for_CH_strong_ms() {
ysr@777 1896 if (_recent_CH_strong_roots_times_ms->num() == 0)
johnc@1186 1897 return (double)MaxGCPauseMillis/3.0;
ysr@777 1898 else return _recent_CH_strong_roots_times_ms->avg();
ysr@777 1899 }
ysr@777 1900
ysr@777 1901 double G1CollectorPolicy::recent_avg_time_for_G1_strong_ms() {
ysr@777 1902 if (_recent_G1_strong_roots_times_ms->num() == 0)
johnc@1186 1903 return (double)MaxGCPauseMillis/3.0;
ysr@777 1904 else return _recent_G1_strong_roots_times_ms->avg();
ysr@777 1905 }
ysr@777 1906
ysr@777 1907 double G1CollectorPolicy::recent_avg_time_for_evac_ms() {
johnc@1186 1908 if (_recent_evac_times_ms->num() == 0) return (double)MaxGCPauseMillis/3.0;
ysr@777 1909 else return _recent_evac_times_ms->avg();
ysr@777 1910 }
ysr@777 1911
ysr@777 1912 int G1CollectorPolicy::number_of_recent_gcs() {
ysr@777 1913 assert(_recent_CH_strong_roots_times_ms->num() ==
ysr@777 1914 _recent_G1_strong_roots_times_ms->num(), "Sequence out of sync");
ysr@777 1915 assert(_recent_G1_strong_roots_times_ms->num() ==
ysr@777 1916 _recent_evac_times_ms->num(), "Sequence out of sync");
ysr@777 1917 assert(_recent_evac_times_ms->num() ==
ysr@777 1918 _recent_pause_times_ms->num(), "Sequence out of sync");
ysr@777 1919 assert(_recent_pause_times_ms->num() ==
ysr@777 1920 _recent_CS_bytes_used_before->num(), "Sequence out of sync");
ysr@777 1921 assert(_recent_CS_bytes_used_before->num() ==
ysr@777 1922 _recent_CS_bytes_surviving->num(), "Sequence out of sync");
ysr@777 1923 return _recent_pause_times_ms->num();
ysr@777 1924 }
ysr@777 1925
ysr@777 1926 double G1CollectorPolicy::recent_avg_survival_fraction() {
ysr@777 1927 return recent_avg_survival_fraction_work(_recent_CS_bytes_surviving,
ysr@777 1928 _recent_CS_bytes_used_before);
ysr@777 1929 }
ysr@777 1930
ysr@777 1931 double G1CollectorPolicy::last_survival_fraction() {
ysr@777 1932 return last_survival_fraction_work(_recent_CS_bytes_surviving,
ysr@777 1933 _recent_CS_bytes_used_before);
ysr@777 1934 }
ysr@777 1935
ysr@777 1936 double
ysr@777 1937 G1CollectorPolicy::recent_avg_survival_fraction_work(TruncatedSeq* surviving,
ysr@777 1938 TruncatedSeq* before) {
ysr@777 1939 assert(surviving->num() == before->num(), "Sequence out of sync");
ysr@777 1940 if (before->sum() > 0.0) {
ysr@777 1941 double recent_survival_rate = surviving->sum() / before->sum();
ysr@777 1942 // We exempt parallel collection from this check because Alloc Buffer
ysr@777 1943 // fragmentation can produce negative collections.
ysr@777 1944 // Further, we're now always doing parallel collection. But I'm still
ysr@777 1945 // leaving this here as a placeholder for a more precise assertion later.
ysr@777 1946 // (DLD, 10/05.)
jmasa@2188 1947 assert((true || G1CollectedHeap::use_parallel_gc_threads()) ||
ysr@777 1948 _g1->evacuation_failed() ||
ysr@777 1949 recent_survival_rate <= 1.0, "Or bad frac");
ysr@777 1950 return recent_survival_rate;
ysr@777 1951 } else {
ysr@777 1952 return 1.0; // Be conservative.
ysr@777 1953 }
ysr@777 1954 }
ysr@777 1955
ysr@777 1956 double
ysr@777 1957 G1CollectorPolicy::last_survival_fraction_work(TruncatedSeq* surviving,
ysr@777 1958 TruncatedSeq* before) {
ysr@777 1959 assert(surviving->num() == before->num(), "Sequence out of sync");
ysr@777 1960 if (surviving->num() > 0 && before->last() > 0.0) {
ysr@777 1961 double last_survival_rate = surviving->last() / before->last();
ysr@777 1962 // We exempt parallel collection from this check because Alloc Buffer
ysr@777 1963 // fragmentation can produce negative collections.
ysr@777 1964 // Further, we're now always doing parallel collection. But I'm still
ysr@777 1965 // leaving this here as a placeholder for a more precise assertion later.
ysr@777 1966 // (DLD, 10/05.)
jmasa@2188 1967 assert((true || G1CollectedHeap::use_parallel_gc_threads()) ||
ysr@777 1968 last_survival_rate <= 1.0, "Or bad frac");
ysr@777 1969 return last_survival_rate;
ysr@777 1970 } else {
ysr@777 1971 return 1.0;
ysr@777 1972 }
ysr@777 1973 }
ysr@777 1974
ysr@777 1975 static const int survival_min_obs = 5;
ysr@777 1976 static double survival_min_obs_limits[] = { 0.9, 0.7, 0.5, 0.3, 0.1 };
ysr@777 1977 static const double min_survival_rate = 0.1;
ysr@777 1978
ysr@777 1979 double
ysr@777 1980 G1CollectorPolicy::conservative_avg_survival_fraction_work(double avg,
ysr@777 1981 double latest) {
ysr@777 1982 double res = avg;
ysr@777 1983 if (number_of_recent_gcs() < survival_min_obs) {
ysr@777 1984 res = MAX2(res, survival_min_obs_limits[number_of_recent_gcs()]);
ysr@777 1985 }
ysr@777 1986 res = MAX2(res, latest);
ysr@777 1987 res = MAX2(res, min_survival_rate);
ysr@777 1988 // In the parallel case, LAB fragmentation can produce "negative
ysr@777 1989 // collections"; so can evac failure. Cap at 1.0
ysr@777 1990 res = MIN2(res, 1.0);
ysr@777 1991 return res;
ysr@777 1992 }
ysr@777 1993
ysr@777 1994 size_t G1CollectorPolicy::expansion_amount() {
tonyp@1791 1995 if ((recent_avg_pause_time_ratio() * 100.0) > _gc_overhead_perc) {
johnc@1186 1996 // We will double the existing space, or take
johnc@1186 1997 // G1ExpandByPercentOfAvailable % of the available expansion
johnc@1186 1998 // space, whichever is smaller, bounded below by a minimum
johnc@1186 1999 // expansion (unless that's all that's left.)
ysr@777 2000 const size_t min_expand_bytes = 1*M;
ysr@777 2001 size_t reserved_bytes = _g1->g1_reserved_obj_bytes();
ysr@777 2002 size_t committed_bytes = _g1->capacity();
ysr@777 2003 size_t uncommitted_bytes = reserved_bytes - committed_bytes;
ysr@777 2004 size_t expand_bytes;
ysr@777 2005 size_t expand_bytes_via_pct =
johnc@1186 2006 uncommitted_bytes * G1ExpandByPercentOfAvailable / 100;
ysr@777 2007 expand_bytes = MIN2(expand_bytes_via_pct, committed_bytes);
ysr@777 2008 expand_bytes = MAX2(expand_bytes, min_expand_bytes);
ysr@777 2009 expand_bytes = MIN2(expand_bytes, uncommitted_bytes);
ysr@777 2010 if (G1PolicyVerbose > 1) {
ysr@777 2011 gclog_or_tty->print("Decided to expand: ratio = %5.2f, "
ysr@777 2012 "committed = %d%s, uncommited = %d%s, via pct = %d%s.\n"
ysr@777 2013 " Answer = %d.\n",
ysr@777 2014 recent_avg_pause_time_ratio(),
ysr@777 2015 byte_size_in_proper_unit(committed_bytes),
ysr@777 2016 proper_unit_for_byte_size(committed_bytes),
ysr@777 2017 byte_size_in_proper_unit(uncommitted_bytes),
ysr@777 2018 proper_unit_for_byte_size(uncommitted_bytes),
ysr@777 2019 byte_size_in_proper_unit(expand_bytes_via_pct),
ysr@777 2020 proper_unit_for_byte_size(expand_bytes_via_pct),
ysr@777 2021 byte_size_in_proper_unit(expand_bytes),
ysr@777 2022 proper_unit_for_byte_size(expand_bytes));
ysr@777 2023 }
ysr@777 2024 return expand_bytes;
ysr@777 2025 } else {
ysr@777 2026 return 0;
ysr@777 2027 }
ysr@777 2028 }
ysr@777 2029
ysr@777 2030 void G1CollectorPolicy::note_start_of_mark_thread() {
ysr@777 2031 _mark_thread_startup_sec = os::elapsedTime();
ysr@777 2032 }
ysr@777 2033
ysr@777 2034 class CountCSClosure: public HeapRegionClosure {
ysr@777 2035 G1CollectorPolicy* _g1_policy;
ysr@777 2036 public:
ysr@777 2037 CountCSClosure(G1CollectorPolicy* g1_policy) :
ysr@777 2038 _g1_policy(g1_policy) {}
ysr@777 2039 bool doHeapRegion(HeapRegion* r) {
ysr@777 2040 _g1_policy->_bytes_in_collection_set_before_gc += r->used();
ysr@777 2041 return false;
ysr@777 2042 }
ysr@777 2043 };
ysr@777 2044
ysr@777 2045 void G1CollectorPolicy::count_CS_bytes_used() {
ysr@777 2046 CountCSClosure cs_closure(this);
ysr@777 2047 _g1->collection_set_iterate(&cs_closure);
ysr@777 2048 }
ysr@777 2049
ysr@777 2050 static void print_indent(int level) {
ysr@777 2051 for (int j = 0; j < level+1; ++j)
ysr@777 2052 gclog_or_tty->print(" ");
ysr@777 2053 }
ysr@777 2054
ysr@777 2055 void G1CollectorPolicy::print_summary (int level,
ysr@777 2056 const char* str,
ysr@777 2057 NumberSeq* seq) const {
ysr@777 2058 double sum = seq->sum();
ysr@777 2059 print_indent(level);
ysr@777 2060 gclog_or_tty->print_cr("%-24s = %8.2lf s (avg = %8.2lf ms)",
ysr@777 2061 str, sum / 1000.0, seq->avg());
ysr@777 2062 }
ysr@777 2063
ysr@777 2064 void G1CollectorPolicy::print_summary_sd (int level,
ysr@777 2065 const char* str,
ysr@777 2066 NumberSeq* seq) const {
ysr@777 2067 print_summary(level, str, seq);
ysr@777 2068 print_indent(level + 5);
ysr@777 2069 gclog_or_tty->print_cr("(num = %5d, std dev = %8.2lf ms, max = %8.2lf ms)",
ysr@777 2070 seq->num(), seq->sd(), seq->maximum());
ysr@777 2071 }
ysr@777 2072
ysr@777 2073 void G1CollectorPolicy::check_other_times(int level,
ysr@777 2074 NumberSeq* other_times_ms,
ysr@777 2075 NumberSeq* calc_other_times_ms) const {
ysr@777 2076 bool should_print = false;
ysr@777 2077
ysr@777 2078 double max_sum = MAX2(fabs(other_times_ms->sum()),
ysr@777 2079 fabs(calc_other_times_ms->sum()));
ysr@777 2080 double min_sum = MIN2(fabs(other_times_ms->sum()),
ysr@777 2081 fabs(calc_other_times_ms->sum()));
ysr@777 2082 double sum_ratio = max_sum / min_sum;
ysr@777 2083 if (sum_ratio > 1.1) {
ysr@777 2084 should_print = true;
ysr@777 2085 print_indent(level + 1);
ysr@777 2086 gclog_or_tty->print_cr("## CALCULATED OTHER SUM DOESN'T MATCH RECORDED ###");
ysr@777 2087 }
ysr@777 2088
ysr@777 2089 double max_avg = MAX2(fabs(other_times_ms->avg()),
ysr@777 2090 fabs(calc_other_times_ms->avg()));
ysr@777 2091 double min_avg = MIN2(fabs(other_times_ms->avg()),
ysr@777 2092 fabs(calc_other_times_ms->avg()));
ysr@777 2093 double avg_ratio = max_avg / min_avg;
ysr@777 2094 if (avg_ratio > 1.1) {
ysr@777 2095 should_print = true;
ysr@777 2096 print_indent(level + 1);
ysr@777 2097 gclog_or_tty->print_cr("## CALCULATED OTHER AVG DOESN'T MATCH RECORDED ###");
ysr@777 2098 }
ysr@777 2099
ysr@777 2100 if (other_times_ms->sum() < -0.01) {
ysr@777 2101 print_indent(level + 1);
ysr@777 2102 gclog_or_tty->print_cr("## RECORDED OTHER SUM IS NEGATIVE ###");
ysr@777 2103 }
ysr@777 2104
ysr@777 2105 if (other_times_ms->avg() < -0.01) {
ysr@777 2106 print_indent(level + 1);
ysr@777 2107 gclog_or_tty->print_cr("## RECORDED OTHER AVG IS NEGATIVE ###");
ysr@777 2108 }
ysr@777 2109
ysr@777 2110 if (calc_other_times_ms->sum() < -0.01) {
ysr@777 2111 should_print = true;
ysr@777 2112 print_indent(level + 1);
ysr@777 2113 gclog_or_tty->print_cr("## CALCULATED OTHER SUM IS NEGATIVE ###");
ysr@777 2114 }
ysr@777 2115
ysr@777 2116 if (calc_other_times_ms->avg() < -0.01) {
ysr@777 2117 should_print = true;
ysr@777 2118 print_indent(level + 1);
ysr@777 2119 gclog_or_tty->print_cr("## CALCULATED OTHER AVG IS NEGATIVE ###");
ysr@777 2120 }
ysr@777 2121
ysr@777 2122 if (should_print)
ysr@777 2123 print_summary(level, "Other(Calc)", calc_other_times_ms);
ysr@777 2124 }
ysr@777 2125
ysr@777 2126 void G1CollectorPolicy::print_summary(PauseSummary* summary) const {
jmasa@2188 2127 bool parallel = G1CollectedHeap::use_parallel_gc_threads();
ysr@777 2128 MainBodySummary* body_summary = summary->main_body_summary();
ysr@777 2129 if (summary->get_total_seq()->num() > 0) {
apetrusenko@1112 2130 print_summary_sd(0, "Evacuation Pauses", summary->get_total_seq());
ysr@777 2131 if (body_summary != NULL) {
ysr@777 2132 print_summary(1, "SATB Drain", body_summary->get_satb_drain_seq());
ysr@777 2133 if (parallel) {
ysr@777 2134 print_summary(1, "Parallel Time", body_summary->get_parallel_seq());
ysr@777 2135 print_summary(2, "Update RS", body_summary->get_update_rs_seq());
ysr@777 2136 print_summary(2, "Ext Root Scanning",
ysr@777 2137 body_summary->get_ext_root_scan_seq());
ysr@777 2138 print_summary(2, "Mark Stack Scanning",
ysr@777 2139 body_summary->get_mark_stack_scan_seq());
ysr@777 2140 print_summary(2, "Scan RS", body_summary->get_scan_rs_seq());
ysr@777 2141 print_summary(2, "Object Copy", body_summary->get_obj_copy_seq());
ysr@777 2142 print_summary(2, "Termination", body_summary->get_termination_seq());
ysr@777 2143 print_summary(2, "Other", body_summary->get_parallel_other_seq());
ysr@777 2144 {
ysr@777 2145 NumberSeq* other_parts[] = {
ysr@777 2146 body_summary->get_update_rs_seq(),
ysr@777 2147 body_summary->get_ext_root_scan_seq(),
ysr@777 2148 body_summary->get_mark_stack_scan_seq(),
ysr@777 2149 body_summary->get_scan_rs_seq(),
ysr@777 2150 body_summary->get_obj_copy_seq(),
ysr@777 2151 body_summary->get_termination_seq()
ysr@777 2152 };
ysr@777 2153 NumberSeq calc_other_times_ms(body_summary->get_parallel_seq(),
johnc@2134 2154 6, other_parts);
ysr@777 2155 check_other_times(2, body_summary->get_parallel_other_seq(),
ysr@777 2156 &calc_other_times_ms);
ysr@777 2157 }
ysr@777 2158 print_summary(1, "Mark Closure", body_summary->get_mark_closure_seq());
ysr@777 2159 print_summary(1, "Clear CT", body_summary->get_clear_ct_seq());
ysr@777 2160 } else {
ysr@777 2161 print_summary(1, "Update RS", body_summary->get_update_rs_seq());
ysr@777 2162 print_summary(1, "Ext Root Scanning",
ysr@777 2163 body_summary->get_ext_root_scan_seq());
ysr@777 2164 print_summary(1, "Mark Stack Scanning",
ysr@777 2165 body_summary->get_mark_stack_scan_seq());
ysr@777 2166 print_summary(1, "Scan RS", body_summary->get_scan_rs_seq());
ysr@777 2167 print_summary(1, "Object Copy", body_summary->get_obj_copy_seq());
ysr@777 2168 }
ysr@777 2169 }
ysr@777 2170 print_summary(1, "Other", summary->get_other_seq());
ysr@777 2171 {
johnc@2134 2172 if (body_summary != NULL) {
johnc@2134 2173 NumberSeq calc_other_times_ms;
johnc@2134 2174 if (parallel) {
johnc@2134 2175 // parallel
johnc@2134 2176 NumberSeq* other_parts[] = {
johnc@2134 2177 body_summary->get_satb_drain_seq(),
johnc@2134 2178 body_summary->get_parallel_seq(),
johnc@2134 2179 body_summary->get_clear_ct_seq()
johnc@2134 2180 };
johnc@2134 2181 calc_other_times_ms = NumberSeq(summary->get_total_seq(),
johnc@2134 2182 3, other_parts);
johnc@2134 2183 } else {
johnc@2134 2184 // serial
johnc@2134 2185 NumberSeq* other_parts[] = {
johnc@2134 2186 body_summary->get_satb_drain_seq(),
johnc@2134 2187 body_summary->get_update_rs_seq(),
johnc@2134 2188 body_summary->get_ext_root_scan_seq(),
johnc@2134 2189 body_summary->get_mark_stack_scan_seq(),
johnc@2134 2190 body_summary->get_scan_rs_seq(),
johnc@2134 2191 body_summary->get_obj_copy_seq()
johnc@2134 2192 };
johnc@2134 2193 calc_other_times_ms = NumberSeq(summary->get_total_seq(),
johnc@2134 2194 6, other_parts);
johnc@2134 2195 }
johnc@2134 2196 check_other_times(1, summary->get_other_seq(), &calc_other_times_ms);
ysr@777 2197 }
ysr@777 2198 }
ysr@777 2199 } else {
ysr@777 2200 print_indent(0);
ysr@777 2201 gclog_or_tty->print_cr("none");
ysr@777 2202 }
ysr@777 2203 gclog_or_tty->print_cr("");
ysr@777 2204 }
ysr@777 2205
ysr@777 2206 void G1CollectorPolicy::print_tracing_info() const {
ysr@777 2207 if (TraceGen0Time) {
ysr@777 2208 gclog_or_tty->print_cr("ALL PAUSES");
ysr@777 2209 print_summary_sd(0, "Total", _all_pause_times_ms);
ysr@777 2210 gclog_or_tty->print_cr("");
ysr@777 2211 gclog_or_tty->print_cr("");
ysr@777 2212 gclog_or_tty->print_cr(" Full Young GC Pauses: %8d", _full_young_pause_num);
ysr@777 2213 gclog_or_tty->print_cr(" Partial Young GC Pauses: %8d", _partial_young_pause_num);
ysr@777 2214 gclog_or_tty->print_cr("");
ysr@777 2215
apetrusenko@1112 2216 gclog_or_tty->print_cr("EVACUATION PAUSES");
apetrusenko@1112 2217 print_summary(_summary);
ysr@777 2218
ysr@777 2219 gclog_or_tty->print_cr("MISC");
ysr@777 2220 print_summary_sd(0, "Stop World", _all_stop_world_times_ms);
ysr@777 2221 print_summary_sd(0, "Yields", _all_yield_times_ms);
ysr@777 2222 for (int i = 0; i < _aux_num; ++i) {
ysr@777 2223 if (_all_aux_times_ms[i].num() > 0) {
ysr@777 2224 char buffer[96];
ysr@777 2225 sprintf(buffer, "Aux%d", i);
ysr@777 2226 print_summary_sd(0, buffer, &_all_aux_times_ms[i]);
ysr@777 2227 }
ysr@777 2228 }
ysr@777 2229
ysr@777 2230 size_t all_region_num = _region_num_young + _region_num_tenured;
ysr@777 2231 gclog_or_tty->print_cr(" New Regions %8d, Young %8d (%6.2lf%%), "
ysr@777 2232 "Tenured %8d (%6.2lf%%)",
ysr@777 2233 all_region_num,
ysr@777 2234 _region_num_young,
ysr@777 2235 (double) _region_num_young / (double) all_region_num * 100.0,
ysr@777 2236 _region_num_tenured,
ysr@777 2237 (double) _region_num_tenured / (double) all_region_num * 100.0);
ysr@777 2238 }
ysr@777 2239 if (TraceGen1Time) {
ysr@777 2240 if (_all_full_gc_times_ms->num() > 0) {
ysr@777 2241 gclog_or_tty->print("\n%4d full_gcs: total time = %8.2f s",
ysr@777 2242 _all_full_gc_times_ms->num(),
ysr@777 2243 _all_full_gc_times_ms->sum() / 1000.0);
ysr@777 2244 gclog_or_tty->print_cr(" (avg = %8.2fms).", _all_full_gc_times_ms->avg());
ysr@777 2245 gclog_or_tty->print_cr(" [std. dev = %8.2f ms, max = %8.2f ms]",
ysr@777 2246 _all_full_gc_times_ms->sd(),
ysr@777 2247 _all_full_gc_times_ms->maximum());
ysr@777 2248 }
ysr@777 2249 }
ysr@777 2250 }
ysr@777 2251
ysr@777 2252 void G1CollectorPolicy::print_yg_surv_rate_info() const {
ysr@777 2253 #ifndef PRODUCT
ysr@777 2254 _short_lived_surv_rate_group->print_surv_rate_summary();
ysr@777 2255 // add this call for any other surv rate groups
ysr@777 2256 #endif // PRODUCT
ysr@777 2257 }
ysr@777 2258
ysr@777 2259 bool
ysr@777 2260 G1CollectorPolicy::should_add_next_region_to_young_list() {
ysr@777 2261 assert(in_young_gc_mode(), "should be in young GC mode");
ysr@777 2262 bool ret;
johnc@1829 2263 size_t young_list_length = _g1->young_list()->length();
apetrusenko@980 2264 size_t young_list_max_length = _young_list_target_length;
apetrusenko@980 2265 if (G1FixedEdenSize) {
apetrusenko@980 2266 young_list_max_length -= _max_survivor_regions;
apetrusenko@980 2267 }
apetrusenko@980 2268 if (young_list_length < young_list_max_length) {
ysr@777 2269 ret = true;
ysr@777 2270 ++_region_num_young;
ysr@777 2271 } else {
ysr@777 2272 ret = false;
ysr@777 2273 ++_region_num_tenured;
ysr@777 2274 }
ysr@777 2275
ysr@777 2276 return ret;
ysr@777 2277 }
ysr@777 2278
ysr@777 2279 #ifndef PRODUCT
ysr@777 2280 // for debugging, bit of a hack...
ysr@777 2281 static char*
ysr@777 2282 region_num_to_mbs(int length) {
ysr@777 2283 static char buffer[64];
ysr@777 2284 double bytes = (double) (length * HeapRegion::GrainBytes);
ysr@777 2285 double mbs = bytes / (double) (1024 * 1024);
ysr@777 2286 sprintf(buffer, "%7.2lfMB", mbs);
ysr@777 2287 return buffer;
ysr@777 2288 }
ysr@777 2289 #endif // PRODUCT
ysr@777 2290
apetrusenko@980 2291 size_t G1CollectorPolicy::max_regions(int purpose) {
ysr@777 2292 switch (purpose) {
ysr@777 2293 case GCAllocForSurvived:
apetrusenko@980 2294 return _max_survivor_regions;
ysr@777 2295 case GCAllocForTenured:
apetrusenko@980 2296 return REGIONS_UNLIMITED;
ysr@777 2297 default:
apetrusenko@980 2298 ShouldNotReachHere();
apetrusenko@980 2299 return REGIONS_UNLIMITED;
ysr@777 2300 };
ysr@777 2301 }
ysr@777 2302
apetrusenko@980 2303 // Calculates survivor space parameters.
apetrusenko@980 2304 void G1CollectorPolicy::calculate_survivors_policy()
apetrusenko@980 2305 {
apetrusenko@980 2306 if (G1FixedSurvivorSpaceSize == 0) {
apetrusenko@980 2307 _max_survivor_regions = _young_list_target_length / SurvivorRatio;
apetrusenko@980 2308 } else {
apetrusenko@982 2309 _max_survivor_regions = G1FixedSurvivorSpaceSize / HeapRegion::GrainBytes;
apetrusenko@980 2310 }
apetrusenko@980 2311
apetrusenko@980 2312 if (G1FixedTenuringThreshold) {
apetrusenko@980 2313 _tenuring_threshold = MaxTenuringThreshold;
apetrusenko@980 2314 } else {
apetrusenko@980 2315 _tenuring_threshold = _survivors_age_table.compute_tenuring_threshold(
apetrusenko@980 2316 HeapRegion::GrainWords * _max_survivor_regions);
apetrusenko@980 2317 }
apetrusenko@980 2318 }
apetrusenko@980 2319
ysr@777 2320 bool
ysr@777 2321 G1CollectorPolicy_BestRegionsFirst::should_do_collection_pause(size_t
ysr@777 2322 word_size) {
ysr@777 2323 assert(_g1->regions_accounted_for(), "Region leakage!");
ysr@777 2324 double max_pause_time_ms = _mmu_tracker->max_gc_time() * 1000.0;
ysr@777 2325
johnc@1829 2326 size_t young_list_length = _g1->young_list()->length();
apetrusenko@980 2327 size_t young_list_max_length = _young_list_target_length;
apetrusenko@980 2328 if (G1FixedEdenSize) {
apetrusenko@980 2329 young_list_max_length -= _max_survivor_regions;
apetrusenko@980 2330 }
apetrusenko@980 2331 bool reached_target_length = young_list_length >= young_list_max_length;
ysr@777 2332
ysr@777 2333 if (in_young_gc_mode()) {
ysr@777 2334 if (reached_target_length) {
johnc@1829 2335 assert( young_list_length > 0 && _g1->young_list()->length() > 0,
ysr@777 2336 "invariant" );
ysr@777 2337 return true;
ysr@777 2338 }
ysr@777 2339 } else {
ysr@777 2340 guarantee( false, "should not reach here" );
ysr@777 2341 }
ysr@777 2342
ysr@777 2343 return false;
ysr@777 2344 }
ysr@777 2345
ysr@777 2346 #ifndef PRODUCT
ysr@777 2347 class HRSortIndexIsOKClosure: public HeapRegionClosure {
ysr@777 2348 CollectionSetChooser* _chooser;
ysr@777 2349 public:
ysr@777 2350 HRSortIndexIsOKClosure(CollectionSetChooser* chooser) :
ysr@777 2351 _chooser(chooser) {}
ysr@777 2352
ysr@777 2353 bool doHeapRegion(HeapRegion* r) {
ysr@777 2354 if (!r->continuesHumongous()) {
ysr@777 2355 assert(_chooser->regionProperlyOrdered(r), "Ought to be.");
ysr@777 2356 }
ysr@777 2357 return false;
ysr@777 2358 }
ysr@777 2359 };
ysr@777 2360
ysr@777 2361 bool G1CollectorPolicy_BestRegionsFirst::assertMarkedBytesDataOK() {
ysr@777 2362 HRSortIndexIsOKClosure cl(_collectionSetChooser);
ysr@777 2363 _g1->heap_region_iterate(&cl);
ysr@777 2364 return true;
ysr@777 2365 }
ysr@777 2366 #endif
ysr@777 2367
tonyp@2011 2368 bool
tonyp@2011 2369 G1CollectorPolicy::force_initial_mark_if_outside_cycle() {
tonyp@2011 2370 bool during_cycle = _g1->concurrent_mark()->cmThread()->during_cycle();
tonyp@2011 2371 if (!during_cycle) {
tonyp@2011 2372 set_initiate_conc_mark_if_possible();
tonyp@2011 2373 return true;
tonyp@2011 2374 } else {
tonyp@2011 2375 return false;
tonyp@2011 2376 }
tonyp@2011 2377 }
tonyp@2011 2378
ysr@777 2379 void
tonyp@1794 2380 G1CollectorPolicy::decide_on_conc_mark_initiation() {
tonyp@1794 2381 // We are about to decide on whether this pause will be an
tonyp@1794 2382 // initial-mark pause.
tonyp@1794 2383
tonyp@1794 2384 // First, during_initial_mark_pause() should not be already set. We
tonyp@1794 2385 // will set it here if we have to. However, it should be cleared by
tonyp@1794 2386 // the end of the pause (it's only set for the duration of an
tonyp@1794 2387 // initial-mark pause).
tonyp@1794 2388 assert(!during_initial_mark_pause(), "pre-condition");
tonyp@1794 2389
tonyp@1794 2390 if (initiate_conc_mark_if_possible()) {
tonyp@1794 2391 // We had noticed on a previous pause that the heap occupancy has
tonyp@1794 2392 // gone over the initiating threshold and we should start a
tonyp@1794 2393 // concurrent marking cycle. So we might initiate one.
tonyp@1794 2394
tonyp@1794 2395 bool during_cycle = _g1->concurrent_mark()->cmThread()->during_cycle();
tonyp@1794 2396 if (!during_cycle) {
tonyp@1794 2397 // The concurrent marking thread is not "during a cycle", i.e.,
tonyp@1794 2398 // it has completed the last one. So we can go ahead and
tonyp@1794 2399 // initiate a new cycle.
tonyp@1794 2400
tonyp@1794 2401 set_during_initial_mark_pause();
tonyp@1794 2402
tonyp@1794 2403 // And we can now clear initiate_conc_mark_if_possible() as
tonyp@1794 2404 // we've already acted on it.
tonyp@1794 2405 clear_initiate_conc_mark_if_possible();
tonyp@1794 2406 } else {
tonyp@1794 2407 // The concurrent marking thread is still finishing up the
tonyp@1794 2408 // previous cycle. If we start one right now the two cycles
tonyp@1794 2409 // overlap. In particular, the concurrent marking thread might
tonyp@1794 2410 // be in the process of clearing the next marking bitmap (which
tonyp@1794 2411 // we will use for the next cycle if we start one). Starting a
tonyp@1794 2412 // cycle now will be bad given that parts of the marking
tonyp@1794 2413 // information might get cleared by the marking thread. And we
tonyp@1794 2414 // cannot wait for the marking thread to finish the cycle as it
tonyp@1794 2415 // periodically yields while clearing the next marking bitmap
tonyp@1794 2416 // and, if it's in a yield point, it's waiting for us to
tonyp@1794 2417 // finish. So, at this point we will not start a cycle and we'll
tonyp@1794 2418 // let the concurrent marking thread complete the last one.
tonyp@1794 2419 }
tonyp@1794 2420 }
tonyp@1794 2421 }
tonyp@1794 2422
tonyp@1794 2423 void
ysr@777 2424 G1CollectorPolicy_BestRegionsFirst::
ysr@777 2425 record_collection_pause_start(double start_time_sec, size_t start_used) {
ysr@777 2426 G1CollectorPolicy::record_collection_pause_start(start_time_sec, start_used);
ysr@777 2427 }
ysr@777 2428
ysr@777 2429 class NextNonCSElemFinder: public HeapRegionClosure {
ysr@777 2430 HeapRegion* _res;
ysr@777 2431 public:
ysr@777 2432 NextNonCSElemFinder(): _res(NULL) {}
ysr@777 2433 bool doHeapRegion(HeapRegion* r) {
ysr@777 2434 if (!r->in_collection_set()) {
ysr@777 2435 _res = r;
ysr@777 2436 return true;
ysr@777 2437 } else {
ysr@777 2438 return false;
ysr@777 2439 }
ysr@777 2440 }
ysr@777 2441 HeapRegion* res() { return _res; }
ysr@777 2442 };
ysr@777 2443
ysr@777 2444 class KnownGarbageClosure: public HeapRegionClosure {
ysr@777 2445 CollectionSetChooser* _hrSorted;
ysr@777 2446
ysr@777 2447 public:
ysr@777 2448 KnownGarbageClosure(CollectionSetChooser* hrSorted) :
ysr@777 2449 _hrSorted(hrSorted)
ysr@777 2450 {}
ysr@777 2451
ysr@777 2452 bool doHeapRegion(HeapRegion* r) {
ysr@777 2453 // We only include humongous regions in collection
ysr@777 2454 // sets when concurrent mark shows that their contained object is
ysr@777 2455 // unreachable.
ysr@777 2456
ysr@777 2457 // Do we have any marking information for this region?
ysr@777 2458 if (r->is_marked()) {
ysr@777 2459 // We don't include humongous regions in collection
ysr@777 2460 // sets because we collect them immediately at the end of a marking
ysr@777 2461 // cycle. We also don't include young regions because we *must*
ysr@777 2462 // include them in the next collection pause.
ysr@777 2463 if (!r->isHumongous() && !r->is_young()) {
ysr@777 2464 _hrSorted->addMarkedHeapRegion(r);
ysr@777 2465 }
ysr@777 2466 }
ysr@777 2467 return false;
ysr@777 2468 }
ysr@777 2469 };
ysr@777 2470
ysr@777 2471 class ParKnownGarbageHRClosure: public HeapRegionClosure {
ysr@777 2472 CollectionSetChooser* _hrSorted;
ysr@777 2473 jint _marked_regions_added;
ysr@777 2474 jint _chunk_size;
ysr@777 2475 jint _cur_chunk_idx;
ysr@777 2476 jint _cur_chunk_end; // Cur chunk [_cur_chunk_idx, _cur_chunk_end)
ysr@777 2477 int _worker;
ysr@777 2478 int _invokes;
ysr@777 2479
ysr@777 2480 void get_new_chunk() {
ysr@777 2481 _cur_chunk_idx = _hrSorted->getParMarkedHeapRegionChunk(_chunk_size);
ysr@777 2482 _cur_chunk_end = _cur_chunk_idx + _chunk_size;
ysr@777 2483 }
ysr@777 2484 void add_region(HeapRegion* r) {
ysr@777 2485 if (_cur_chunk_idx == _cur_chunk_end) {
ysr@777 2486 get_new_chunk();
ysr@777 2487 }
ysr@777 2488 assert(_cur_chunk_idx < _cur_chunk_end, "postcondition");
ysr@777 2489 _hrSorted->setMarkedHeapRegion(_cur_chunk_idx, r);
ysr@777 2490 _marked_regions_added++;
ysr@777 2491 _cur_chunk_idx++;
ysr@777 2492 }
ysr@777 2493
ysr@777 2494 public:
ysr@777 2495 ParKnownGarbageHRClosure(CollectionSetChooser* hrSorted,
ysr@777 2496 jint chunk_size,
ysr@777 2497 int worker) :
ysr@777 2498 _hrSorted(hrSorted), _chunk_size(chunk_size), _worker(worker),
ysr@777 2499 _marked_regions_added(0), _cur_chunk_idx(0), _cur_chunk_end(0),
ysr@777 2500 _invokes(0)
ysr@777 2501 {}
ysr@777 2502
ysr@777 2503 bool doHeapRegion(HeapRegion* r) {
ysr@777 2504 // We only include humongous regions in collection
ysr@777 2505 // sets when concurrent mark shows that their contained object is
ysr@777 2506 // unreachable.
ysr@777 2507 _invokes++;
ysr@777 2508
ysr@777 2509 // Do we have any marking information for this region?
ysr@777 2510 if (r->is_marked()) {
ysr@777 2511 // We don't include humongous regions in collection
ysr@777 2512 // sets because we collect them immediately at the end of a marking
ysr@777 2513 // cycle.
ysr@777 2514 // We also do not include young regions in collection sets
ysr@777 2515 if (!r->isHumongous() && !r->is_young()) {
ysr@777 2516 add_region(r);
ysr@777 2517 }
ysr@777 2518 }
ysr@777 2519 return false;
ysr@777 2520 }
ysr@777 2521 jint marked_regions_added() { return _marked_regions_added; }
ysr@777 2522 int invokes() { return _invokes; }
ysr@777 2523 };
ysr@777 2524
ysr@777 2525 class ParKnownGarbageTask: public AbstractGangTask {
ysr@777 2526 CollectionSetChooser* _hrSorted;
ysr@777 2527 jint _chunk_size;
ysr@777 2528 G1CollectedHeap* _g1;
ysr@777 2529 public:
ysr@777 2530 ParKnownGarbageTask(CollectionSetChooser* hrSorted, jint chunk_size) :
ysr@777 2531 AbstractGangTask("ParKnownGarbageTask"),
ysr@777 2532 _hrSorted(hrSorted), _chunk_size(chunk_size),
ysr@777 2533 _g1(G1CollectedHeap::heap())
ysr@777 2534 {}
ysr@777 2535
ysr@777 2536 void work(int i) {
ysr@777 2537 ParKnownGarbageHRClosure parKnownGarbageCl(_hrSorted, _chunk_size, i);
ysr@777 2538 // Back to zero for the claim value.
tonyp@790 2539 _g1->heap_region_par_iterate_chunked(&parKnownGarbageCl, i,
tonyp@790 2540 HeapRegion::InitialClaimValue);
ysr@777 2541 jint regions_added = parKnownGarbageCl.marked_regions_added();
ysr@777 2542 _hrSorted->incNumMarkedHeapRegions(regions_added);
ysr@777 2543 if (G1PrintParCleanupStats) {
ysr@777 2544 gclog_or_tty->print(" Thread %d called %d times, added %d regions to list.\n",
ysr@777 2545 i, parKnownGarbageCl.invokes(), regions_added);
ysr@777 2546 }
ysr@777 2547 }
ysr@777 2548 };
ysr@777 2549
ysr@777 2550 void
ysr@777 2551 G1CollectorPolicy_BestRegionsFirst::
ysr@777 2552 record_concurrent_mark_cleanup_end(size_t freed_bytes,
ysr@777 2553 size_t max_live_bytes) {
ysr@777 2554 double start;
ysr@777 2555 if (G1PrintParCleanupStats) start = os::elapsedTime();
ysr@777 2556 record_concurrent_mark_cleanup_end_work1(freed_bytes, max_live_bytes);
ysr@777 2557
ysr@777 2558 _collectionSetChooser->clearMarkedHeapRegions();
ysr@777 2559 double clear_marked_end;
ysr@777 2560 if (G1PrintParCleanupStats) {
ysr@777 2561 clear_marked_end = os::elapsedTime();
ysr@777 2562 gclog_or_tty->print_cr(" clear marked regions + work1: %8.3f ms.",
ysr@777 2563 (clear_marked_end - start)*1000.0);
ysr@777 2564 }
jmasa@2188 2565 if (G1CollectedHeap::use_parallel_gc_threads()) {
ysr@777 2566 const size_t OverpartitionFactor = 4;
kvn@1926 2567 const size_t MinWorkUnit = 8;
kvn@1926 2568 const size_t WorkUnit =
ysr@777 2569 MAX2(_g1->n_regions() / (ParallelGCThreads * OverpartitionFactor),
kvn@1926 2570 MinWorkUnit);
ysr@777 2571 _collectionSetChooser->prepareForAddMarkedHeapRegionsPar(_g1->n_regions(),
kvn@1926 2572 WorkUnit);
ysr@777 2573 ParKnownGarbageTask parKnownGarbageTask(_collectionSetChooser,
kvn@1926 2574 (int) WorkUnit);
ysr@777 2575 _g1->workers()->run_task(&parKnownGarbageTask);
tonyp@790 2576
tonyp@790 2577 assert(_g1->check_heap_region_claim_values(HeapRegion::InitialClaimValue),
tonyp@790 2578 "sanity check");
ysr@777 2579 } else {
ysr@777 2580 KnownGarbageClosure knownGarbagecl(_collectionSetChooser);
ysr@777 2581 _g1->heap_region_iterate(&knownGarbagecl);
ysr@777 2582 }
ysr@777 2583 double known_garbage_end;
ysr@777 2584 if (G1PrintParCleanupStats) {
ysr@777 2585 known_garbage_end = os::elapsedTime();
ysr@777 2586 gclog_or_tty->print_cr(" compute known garbage: %8.3f ms.",
ysr@777 2587 (known_garbage_end - clear_marked_end)*1000.0);
ysr@777 2588 }
ysr@777 2589 _collectionSetChooser->sortMarkedHeapRegions();
ysr@777 2590 double sort_end;
ysr@777 2591 if (G1PrintParCleanupStats) {
ysr@777 2592 sort_end = os::elapsedTime();
ysr@777 2593 gclog_or_tty->print_cr(" sorting: %8.3f ms.",
ysr@777 2594 (sort_end - known_garbage_end)*1000.0);
ysr@777 2595 }
ysr@777 2596
ysr@777 2597 record_concurrent_mark_cleanup_end_work2();
ysr@777 2598 double work2_end;
ysr@777 2599 if (G1PrintParCleanupStats) {
ysr@777 2600 work2_end = os::elapsedTime();
ysr@777 2601 gclog_or_tty->print_cr(" work2: %8.3f ms.",
ysr@777 2602 (work2_end - sort_end)*1000.0);
ysr@777 2603 }
ysr@777 2604 }
ysr@777 2605
johnc@1829 2606 // Add the heap region at the head of the non-incremental collection set
ysr@777 2607 void G1CollectorPolicy::
ysr@777 2608 add_to_collection_set(HeapRegion* hr) {
johnc@1829 2609 assert(_inc_cset_build_state == Active, "Precondition");
johnc@1829 2610 assert(!hr->is_young(), "non-incremental add of young region");
johnc@1829 2611
tonyp@1717 2612 if (G1PrintHeapRegions) {
tonyp@1823 2613 gclog_or_tty->print_cr("added region to cset "
tonyp@1823 2614 "%d:["PTR_FORMAT", "PTR_FORMAT"], "
tonyp@1823 2615 "top "PTR_FORMAT", %s",
tonyp@1823 2616 hr->hrs_index(), hr->bottom(), hr->end(),
tonyp@1823 2617 hr->top(), hr->is_young() ? "YOUNG" : "NOT_YOUNG");
ysr@777 2618 }
ysr@777 2619
ysr@777 2620 if (_g1->mark_in_progress())
ysr@777 2621 _g1->concurrent_mark()->registerCSetRegion(hr);
ysr@777 2622
johnc@1829 2623 assert(!hr->in_collection_set(), "should not already be in the CSet");
ysr@777 2624 hr->set_in_collection_set(true);
ysr@777 2625 hr->set_next_in_collection_set(_collection_set);
ysr@777 2626 _collection_set = hr;
ysr@777 2627 _collection_set_size++;
ysr@777 2628 _collection_set_bytes_used_before += hr->used();
tonyp@961 2629 _g1->register_region_with_in_cset_fast_test(hr);
ysr@777 2630 }
ysr@777 2631
johnc@1829 2632 // Initialize the per-collection-set information
johnc@1829 2633 void G1CollectorPolicy::start_incremental_cset_building() {
johnc@1829 2634 assert(_inc_cset_build_state == Inactive, "Precondition");
johnc@1829 2635
johnc@1829 2636 _inc_cset_head = NULL;
johnc@1829 2637 _inc_cset_tail = NULL;
johnc@1829 2638 _inc_cset_size = 0;
johnc@1829 2639 _inc_cset_bytes_used_before = 0;
johnc@1829 2640
johnc@1829 2641 if (in_young_gc_mode()) {
johnc@1829 2642 _inc_cset_young_index = 0;
johnc@1829 2643 }
johnc@1829 2644
johnc@1829 2645 _inc_cset_max_finger = 0;
johnc@1829 2646 _inc_cset_recorded_young_bytes = 0;
johnc@1829 2647 _inc_cset_recorded_rs_lengths = 0;
johnc@1829 2648 _inc_cset_predicted_elapsed_time_ms = 0;
johnc@1829 2649 _inc_cset_predicted_bytes_to_copy = 0;
johnc@1829 2650 _inc_cset_build_state = Active;
johnc@1829 2651 }
johnc@1829 2652
johnc@1829 2653 void G1CollectorPolicy::add_to_incremental_cset_info(HeapRegion* hr, size_t rs_length) {
johnc@1829 2654 // This routine is used when:
johnc@1829 2655 // * adding survivor regions to the incremental cset at the end of an
johnc@1829 2656 // evacuation pause,
johnc@1829 2657 // * adding the current allocation region to the incremental cset
johnc@1829 2658 // when it is retired, and
johnc@1829 2659 // * updating existing policy information for a region in the
johnc@1829 2660 // incremental cset via young list RSet sampling.
johnc@1829 2661 // Therefore this routine may be called at a safepoint by the
johnc@1829 2662 // VM thread, or in-between safepoints by mutator threads (when
johnc@1829 2663 // retiring the current allocation region) or a concurrent
johnc@1829 2664 // refine thread (RSet sampling).
johnc@1829 2665
johnc@1829 2666 double region_elapsed_time_ms = predict_region_elapsed_time_ms(hr, true);
johnc@1829 2667 size_t used_bytes = hr->used();
johnc@1829 2668
johnc@1829 2669 _inc_cset_recorded_rs_lengths += rs_length;
johnc@1829 2670 _inc_cset_predicted_elapsed_time_ms += region_elapsed_time_ms;
johnc@1829 2671
johnc@1829 2672 _inc_cset_bytes_used_before += used_bytes;
johnc@1829 2673
johnc@1829 2674 // Cache the values we have added to the aggregated informtion
johnc@1829 2675 // in the heap region in case we have to remove this region from
johnc@1829 2676 // the incremental collection set, or it is updated by the
johnc@1829 2677 // rset sampling code
johnc@1829 2678 hr->set_recorded_rs_length(rs_length);
johnc@1829 2679 hr->set_predicted_elapsed_time_ms(region_elapsed_time_ms);
johnc@1829 2680
johnc@1829 2681 #if PREDICTIONS_VERBOSE
johnc@1829 2682 size_t bytes_to_copy = predict_bytes_to_copy(hr);
johnc@1829 2683 _inc_cset_predicted_bytes_to_copy += bytes_to_copy;
johnc@1829 2684
johnc@1829 2685 // Record the number of bytes used in this region
johnc@1829 2686 _inc_cset_recorded_young_bytes += used_bytes;
johnc@1829 2687
johnc@1829 2688 // Cache the values we have added to the aggregated informtion
johnc@1829 2689 // in the heap region in case we have to remove this region from
johnc@1829 2690 // the incremental collection set, or it is updated by the
johnc@1829 2691 // rset sampling code
johnc@1829 2692 hr->set_predicted_bytes_to_copy(bytes_to_copy);
johnc@1829 2693 #endif // PREDICTIONS_VERBOSE
johnc@1829 2694 }
johnc@1829 2695
johnc@1829 2696 void G1CollectorPolicy::remove_from_incremental_cset_info(HeapRegion* hr) {
johnc@1829 2697 // This routine is currently only called as part of the updating of
johnc@1829 2698 // existing policy information for regions in the incremental cset that
johnc@1829 2699 // is performed by the concurrent refine thread(s) as part of young list
johnc@1829 2700 // RSet sampling. Therefore we should not be at a safepoint.
johnc@1829 2701
johnc@1829 2702 assert(!SafepointSynchronize::is_at_safepoint(), "should not be at safepoint");
johnc@1829 2703 assert(hr->is_young(), "it should be");
johnc@1829 2704
johnc@1829 2705 size_t used_bytes = hr->used();
johnc@1829 2706 size_t old_rs_length = hr->recorded_rs_length();
johnc@1829 2707 double old_elapsed_time_ms = hr->predicted_elapsed_time_ms();
johnc@1829 2708
johnc@1829 2709 // Subtract the old recorded/predicted policy information for
johnc@1829 2710 // the given heap region from the collection set info.
johnc@1829 2711 _inc_cset_recorded_rs_lengths -= old_rs_length;
johnc@1829 2712 _inc_cset_predicted_elapsed_time_ms -= old_elapsed_time_ms;
johnc@1829 2713
johnc@1829 2714 _inc_cset_bytes_used_before -= used_bytes;
johnc@1829 2715
johnc@1829 2716 // Clear the values cached in the heap region
johnc@1829 2717 hr->set_recorded_rs_length(0);
johnc@1829 2718 hr->set_predicted_elapsed_time_ms(0);
johnc@1829 2719
johnc@1829 2720 #if PREDICTIONS_VERBOSE
johnc@1829 2721 size_t old_predicted_bytes_to_copy = hr->predicted_bytes_to_copy();
johnc@1829 2722 _inc_cset_predicted_bytes_to_copy -= old_predicted_bytes_to_copy;
johnc@1829 2723
johnc@1829 2724 // Subtract the number of bytes used in this region
johnc@1829 2725 _inc_cset_recorded_young_bytes -= used_bytes;
johnc@1829 2726
johnc@1829 2727 // Clear the values cached in the heap region
johnc@1829 2728 hr->set_predicted_bytes_to_copy(0);
johnc@1829 2729 #endif // PREDICTIONS_VERBOSE
johnc@1829 2730 }
johnc@1829 2731
johnc@1829 2732 void G1CollectorPolicy::update_incremental_cset_info(HeapRegion* hr, size_t new_rs_length) {
johnc@1829 2733 // Update the collection set information that is dependent on the new RS length
johnc@1829 2734 assert(hr->is_young(), "Precondition");
johnc@1829 2735
johnc@1829 2736 remove_from_incremental_cset_info(hr);
johnc@1829 2737 add_to_incremental_cset_info(hr, new_rs_length);
johnc@1829 2738 }
johnc@1829 2739
johnc@1829 2740 void G1CollectorPolicy::add_region_to_incremental_cset_common(HeapRegion* hr) {
johnc@1829 2741 assert( hr->is_young(), "invariant");
johnc@1829 2742 assert( hr->young_index_in_cset() == -1, "invariant" );
johnc@1829 2743 assert(_inc_cset_build_state == Active, "Precondition");
johnc@1829 2744
johnc@1829 2745 // We need to clear and set the cached recorded/cached collection set
johnc@1829 2746 // information in the heap region here (before the region gets added
johnc@1829 2747 // to the collection set). An individual heap region's cached values
johnc@1829 2748 // are calculated, aggregated with the policy collection set info,
johnc@1829 2749 // and cached in the heap region here (initially) and (subsequently)
johnc@1829 2750 // by the Young List sampling code.
johnc@1829 2751
johnc@1829 2752 size_t rs_length = hr->rem_set()->occupied();
johnc@1829 2753 add_to_incremental_cset_info(hr, rs_length);
johnc@1829 2754
johnc@1829 2755 HeapWord* hr_end = hr->end();
johnc@1829 2756 _inc_cset_max_finger = MAX2(_inc_cset_max_finger, hr_end);
johnc@1829 2757
johnc@1829 2758 assert(!hr->in_collection_set(), "invariant");
johnc@1829 2759 hr->set_in_collection_set(true);
johnc@1829 2760 assert( hr->next_in_collection_set() == NULL, "invariant");
johnc@1829 2761
johnc@1829 2762 _inc_cset_size++;
johnc@1829 2763 _g1->register_region_with_in_cset_fast_test(hr);
johnc@1829 2764
johnc@1829 2765 hr->set_young_index_in_cset((int) _inc_cset_young_index);
johnc@1829 2766 ++_inc_cset_young_index;
johnc@1829 2767 }
johnc@1829 2768
johnc@1829 2769 // Add the region at the RHS of the incremental cset
johnc@1829 2770 void G1CollectorPolicy::add_region_to_incremental_cset_rhs(HeapRegion* hr) {
johnc@1829 2771 // We should only ever be appending survivors at the end of a pause
johnc@1829 2772 assert( hr->is_survivor(), "Logic");
johnc@1829 2773
johnc@1829 2774 // Do the 'common' stuff
johnc@1829 2775 add_region_to_incremental_cset_common(hr);
johnc@1829 2776
johnc@1829 2777 // Now add the region at the right hand side
johnc@1829 2778 if (_inc_cset_tail == NULL) {
johnc@1829 2779 assert(_inc_cset_head == NULL, "invariant");
johnc@1829 2780 _inc_cset_head = hr;
johnc@1829 2781 } else {
johnc@1829 2782 _inc_cset_tail->set_next_in_collection_set(hr);
johnc@1829 2783 }
johnc@1829 2784 _inc_cset_tail = hr;
johnc@1829 2785
johnc@1829 2786 if (G1PrintHeapRegions) {
johnc@1829 2787 gclog_or_tty->print_cr(" added region to incremental cset (RHS) "
johnc@1829 2788 "%d:["PTR_FORMAT", "PTR_FORMAT"], "
johnc@1829 2789 "top "PTR_FORMAT", young %s",
johnc@1829 2790 hr->hrs_index(), hr->bottom(), hr->end(),
johnc@1829 2791 hr->top(), (hr->is_young()) ? "YES" : "NO");
johnc@1829 2792 }
johnc@1829 2793 }
johnc@1829 2794
johnc@1829 2795 // Add the region to the LHS of the incremental cset
johnc@1829 2796 void G1CollectorPolicy::add_region_to_incremental_cset_lhs(HeapRegion* hr) {
johnc@1829 2797 // Survivors should be added to the RHS at the end of a pause
johnc@1829 2798 assert(!hr->is_survivor(), "Logic");
johnc@1829 2799
johnc@1829 2800 // Do the 'common' stuff
johnc@1829 2801 add_region_to_incremental_cset_common(hr);
johnc@1829 2802
johnc@1829 2803 // Add the region at the left hand side
johnc@1829 2804 hr->set_next_in_collection_set(_inc_cset_head);
johnc@1829 2805 if (_inc_cset_head == NULL) {
johnc@1829 2806 assert(_inc_cset_tail == NULL, "Invariant");
johnc@1829 2807 _inc_cset_tail = hr;
johnc@1829 2808 }
johnc@1829 2809 _inc_cset_head = hr;
johnc@1829 2810
johnc@1829 2811 if (G1PrintHeapRegions) {
johnc@1829 2812 gclog_or_tty->print_cr(" added region to incremental cset (LHS) "
johnc@1829 2813 "%d:["PTR_FORMAT", "PTR_FORMAT"], "
johnc@1829 2814 "top "PTR_FORMAT", young %s",
johnc@1829 2815 hr->hrs_index(), hr->bottom(), hr->end(),
johnc@1829 2816 hr->top(), (hr->is_young()) ? "YES" : "NO");
johnc@1829 2817 }
johnc@1829 2818 }
johnc@1829 2819
johnc@1829 2820 #ifndef PRODUCT
johnc@1829 2821 void G1CollectorPolicy::print_collection_set(HeapRegion* list_head, outputStream* st) {
johnc@1829 2822 assert(list_head == inc_cset_head() || list_head == collection_set(), "must be");
johnc@1829 2823
johnc@1829 2824 st->print_cr("\nCollection_set:");
johnc@1829 2825 HeapRegion* csr = list_head;
johnc@1829 2826 while (csr != NULL) {
johnc@1829 2827 HeapRegion* next = csr->next_in_collection_set();
johnc@1829 2828 assert(csr->in_collection_set(), "bad CS");
johnc@1829 2829 st->print_cr(" [%08x-%08x], t: %08x, P: %08x, N: %08x, C: %08x, "
johnc@1829 2830 "age: %4d, y: %d, surv: %d",
johnc@1829 2831 csr->bottom(), csr->end(),
johnc@1829 2832 csr->top(),
johnc@1829 2833 csr->prev_top_at_mark_start(),
johnc@1829 2834 csr->next_top_at_mark_start(),
johnc@1829 2835 csr->top_at_conc_mark_count(),
johnc@1829 2836 csr->age_in_surv_rate_group_cond(),
johnc@1829 2837 csr->is_young(),
johnc@1829 2838 csr->is_survivor());
johnc@1829 2839 csr = next;
johnc@1829 2840 }
johnc@1829 2841 }
johnc@1829 2842 #endif // !PRODUCT
johnc@1829 2843
tonyp@2062 2844 void
tonyp@2011 2845 G1CollectorPolicy_BestRegionsFirst::choose_collection_set(
tonyp@2011 2846 double target_pause_time_ms) {
johnc@1829 2847 // Set this here - in case we're not doing young collections.
johnc@1829 2848 double non_young_start_time_sec = os::elapsedTime();
johnc@1829 2849
ysr@777 2850 start_recording_regions();
ysr@777 2851
tonyp@2011 2852 guarantee(target_pause_time_ms > 0.0,
tonyp@2011 2853 err_msg("target_pause_time_ms = %1.6lf should be positive",
tonyp@2011 2854 target_pause_time_ms));
tonyp@2011 2855 guarantee(_collection_set == NULL, "Precondition");
ysr@777 2856
ysr@777 2857 double base_time_ms = predict_base_elapsed_time_ms(_pending_cards);
ysr@777 2858 double predicted_pause_time_ms = base_time_ms;
ysr@777 2859
tonyp@2011 2860 double time_remaining_ms = target_pause_time_ms - base_time_ms;
ysr@777 2861
ysr@777 2862 // the 10% and 50% values are arbitrary...
tonyp@2011 2863 if (time_remaining_ms < 0.10 * target_pause_time_ms) {
tonyp@2011 2864 time_remaining_ms = 0.50 * target_pause_time_ms;
ysr@777 2865 _within_target = false;
ysr@777 2866 } else {
ysr@777 2867 _within_target = true;
ysr@777 2868 }
ysr@777 2869
ysr@777 2870 // We figure out the number of bytes available for future to-space.
ysr@777 2871 // For new regions without marking information, we must assume the
ysr@777 2872 // worst-case of complete survival. If we have marking information for a
ysr@777 2873 // region, we can bound the amount of live data. We can add a number of
ysr@777 2874 // such regions, as long as the sum of the live data bounds does not
ysr@777 2875 // exceed the available evacuation space.
ysr@777 2876 size_t max_live_bytes = _g1->free_regions() * HeapRegion::GrainBytes;
ysr@777 2877
ysr@777 2878 size_t expansion_bytes =
ysr@777 2879 _g1->expansion_regions() * HeapRegion::GrainBytes;
ysr@777 2880
apetrusenko@1112 2881 _collection_set_bytes_used_before = 0;
apetrusenko@1112 2882 _collection_set_size = 0;
ysr@777 2883
ysr@777 2884 // Adjust for expansion and slop.
ysr@777 2885 max_live_bytes = max_live_bytes + expansion_bytes;
ysr@777 2886
apetrusenko@1112 2887 assert(_g1->regions_accounted_for(), "Region leakage!");
ysr@777 2888
ysr@777 2889 HeapRegion* hr;
ysr@777 2890 if (in_young_gc_mode()) {
ysr@777 2891 double young_start_time_sec = os::elapsedTime();
ysr@777 2892
ysr@777 2893 if (G1PolicyVerbose > 0) {
ysr@777 2894 gclog_or_tty->print_cr("Adding %d young regions to the CSet",
johnc@1829 2895 _g1->young_list()->length());
ysr@777 2896 }
johnc@1829 2897
ysr@777 2898 _young_cset_length = 0;
ysr@777 2899 _last_young_gc_full = full_young_gcs() ? true : false;
johnc@1829 2900
ysr@777 2901 if (_last_young_gc_full)
ysr@777 2902 ++_full_young_pause_num;
ysr@777 2903 else
ysr@777 2904 ++_partial_young_pause_num;
johnc@1829 2905
johnc@1829 2906 // The young list is laid with the survivor regions from the previous
johnc@1829 2907 // pause are appended to the RHS of the young list, i.e.
johnc@1829 2908 // [Newly Young Regions ++ Survivors from last pause].
johnc@1829 2909
johnc@1829 2910 hr = _g1->young_list()->first_survivor_region();
ysr@777 2911 while (hr != NULL) {
johnc@1829 2912 assert(hr->is_survivor(), "badly formed young list");
johnc@1829 2913 hr->set_young();
johnc@1829 2914 hr = hr->get_next_young_region();
ysr@777 2915 }
ysr@777 2916
johnc@1829 2917 // Clear the fields that point to the survivor list - they are
johnc@1829 2918 // all young now.
johnc@1829 2919 _g1->young_list()->clear_survivors();
johnc@1829 2920
johnc@1829 2921 if (_g1->mark_in_progress())
johnc@1829 2922 _g1->concurrent_mark()->register_collection_set_finger(_inc_cset_max_finger);
johnc@1829 2923
johnc@1829 2924 _young_cset_length = _inc_cset_young_index;
johnc@1829 2925 _collection_set = _inc_cset_head;
johnc@1829 2926 _collection_set_size = _inc_cset_size;
johnc@1829 2927 _collection_set_bytes_used_before = _inc_cset_bytes_used_before;
johnc@1829 2928
johnc@1829 2929 // For young regions in the collection set, we assume the worst
johnc@1829 2930 // case of complete survival
johnc@1829 2931 max_live_bytes -= _inc_cset_size * HeapRegion::GrainBytes;
johnc@1829 2932
johnc@1829 2933 time_remaining_ms -= _inc_cset_predicted_elapsed_time_ms;
johnc@1829 2934 predicted_pause_time_ms += _inc_cset_predicted_elapsed_time_ms;
johnc@1829 2935
johnc@1829 2936 // The number of recorded young regions is the incremental
johnc@1829 2937 // collection set's current size
johnc@1829 2938 set_recorded_young_regions(_inc_cset_size);
johnc@1829 2939 set_recorded_rs_lengths(_inc_cset_recorded_rs_lengths);
johnc@1829 2940 set_recorded_young_bytes(_inc_cset_recorded_young_bytes);
johnc@1829 2941 #if PREDICTIONS_VERBOSE
johnc@1829 2942 set_predicted_bytes_to_copy(_inc_cset_predicted_bytes_to_copy);
johnc@1829 2943 #endif // PREDICTIONS_VERBOSE
johnc@1829 2944
johnc@1829 2945 if (G1PolicyVerbose > 0) {
johnc@1829 2946 gclog_or_tty->print_cr(" Added " PTR_FORMAT " Young Regions to CS.",
johnc@1829 2947 _inc_cset_size);
johnc@1829 2948 gclog_or_tty->print_cr(" (" SIZE_FORMAT " KB left in heap.)",
johnc@1829 2949 max_live_bytes/K);
johnc@1829 2950 }
johnc@1829 2951
johnc@1829 2952 assert(_inc_cset_size == _g1->young_list()->length(), "Invariant");
ysr@777 2953
ysr@777 2954 double young_end_time_sec = os::elapsedTime();
ysr@777 2955 _recorded_young_cset_choice_time_ms =
ysr@777 2956 (young_end_time_sec - young_start_time_sec) * 1000.0;
ysr@777 2957
johnc@1829 2958 // We are doing young collections so reset this.
johnc@1829 2959 non_young_start_time_sec = young_end_time_sec;
johnc@1829 2960
johnc@1829 2961 // Note we can use either _collection_set_size or
johnc@1829 2962 // _young_cset_length here
johnc@1829 2963 if (_collection_set_size > 0 && _last_young_gc_full) {
ysr@777 2964 // don't bother adding more regions...
ysr@777 2965 goto choose_collection_set_end;
ysr@777 2966 }
ysr@777 2967 }
ysr@777 2968
ysr@777 2969 if (!in_young_gc_mode() || !full_young_gcs()) {
ysr@777 2970 bool should_continue = true;
ysr@777 2971 NumberSeq seq;
ysr@777 2972 double avg_prediction = 100000000000000000.0; // something very large
johnc@1829 2973
ysr@777 2974 do {
ysr@777 2975 hr = _collectionSetChooser->getNextMarkedRegion(time_remaining_ms,
ysr@777 2976 avg_prediction);
apetrusenko@1112 2977 if (hr != NULL) {
ysr@777 2978 double predicted_time_ms = predict_region_elapsed_time_ms(hr, false);
ysr@777 2979 time_remaining_ms -= predicted_time_ms;
ysr@777 2980 predicted_pause_time_ms += predicted_time_ms;
ysr@777 2981 add_to_collection_set(hr);
johnc@1829 2982 record_non_young_cset_region(hr);
ysr@777 2983 max_live_bytes -= MIN2(hr->max_live_bytes(), max_live_bytes);
ysr@777 2984 if (G1PolicyVerbose > 0) {
ysr@777 2985 gclog_or_tty->print_cr(" (" SIZE_FORMAT " KB left in heap.)",
ysr@777 2986 max_live_bytes/K);
ysr@777 2987 }
ysr@777 2988 seq.add(predicted_time_ms);
ysr@777 2989 avg_prediction = seq.avg() + seq.sd();
ysr@777 2990 }
ysr@777 2991 should_continue =
ysr@777 2992 ( hr != NULL) &&
ysr@777 2993 ( (adaptive_young_list_length()) ? time_remaining_ms > 0.0
ysr@777 2994 : _collection_set_size < _young_list_fixed_length );
ysr@777 2995 } while (should_continue);
ysr@777 2996
ysr@777 2997 if (!adaptive_young_list_length() &&
ysr@777 2998 _collection_set_size < _young_list_fixed_length)
ysr@777 2999 _should_revert_to_full_young_gcs = true;
ysr@777 3000 }
ysr@777 3001
ysr@777 3002 choose_collection_set_end:
johnc@1829 3003 stop_incremental_cset_building();
johnc@1829 3004
ysr@777 3005 count_CS_bytes_used();
ysr@777 3006
ysr@777 3007 end_recording_regions();
ysr@777 3008
ysr@777 3009 double non_young_end_time_sec = os::elapsedTime();
ysr@777 3010 _recorded_non_young_cset_choice_time_ms =
ysr@777 3011 (non_young_end_time_sec - non_young_start_time_sec) * 1000.0;
ysr@777 3012 }
ysr@777 3013
ysr@777 3014 void G1CollectorPolicy_BestRegionsFirst::record_full_collection_end() {
ysr@777 3015 G1CollectorPolicy::record_full_collection_end();
ysr@777 3016 _collectionSetChooser->updateAfterFullCollection();
ysr@777 3017 }
ysr@777 3018
ysr@777 3019 void G1CollectorPolicy_BestRegionsFirst::
ysr@777 3020 expand_if_possible(size_t numRegions) {
ysr@777 3021 size_t expansion_bytes = numRegions * HeapRegion::GrainBytes;
ysr@777 3022 _g1->expand(expansion_bytes);
ysr@777 3023 }
ysr@777 3024
ysr@777 3025 void G1CollectorPolicy_BestRegionsFirst::
tonyp@2062 3026 record_collection_pause_end() {
tonyp@2062 3027 G1CollectorPolicy::record_collection_pause_end();
ysr@777 3028 assert(assertMarkedBytesDataOK(), "Marked regions not OK at pause end.");
ysr@777 3029 }

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