src/share/vm/gc_implementation/g1/g1CollectedHeap.inline.hpp

Sat, 07 Nov 2020 10:30:02 +0800

author
aoqi
date
Sat, 07 Nov 2020 10:30:02 +0800
changeset 10026
8c95980d0b66
parent 9448
73d689add964
permissions
-rw-r--r--

Added tag mips-jdk8u275-b01 for changeset d3b4d62f391f

aoqi@0 1 /*
mlarsson@7686 2 * Copyright (c) 2001, 2015, Oracle and/or its affiliates. All rights reserved.
aoqi@0 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
aoqi@0 4 *
aoqi@0 5 * This code is free software; you can redistribute it and/or modify it
aoqi@0 6 * under the terms of the GNU General Public License version 2 only, as
aoqi@0 7 * published by the Free Software Foundation.
aoqi@0 8 *
aoqi@0 9 * This code is distributed in the hope that it will be useful, but WITHOUT
aoqi@0 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
aoqi@0 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
aoqi@0 12 * version 2 for more details (a copy is included in the LICENSE file that
aoqi@0 13 * accompanied this code).
aoqi@0 14 *
aoqi@0 15 * You should have received a copy of the GNU General Public License version
aoqi@0 16 * 2 along with this work; if not, write to the Free Software Foundation,
aoqi@0 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
aoqi@0 18 *
aoqi@0 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
aoqi@0 20 * or visit www.oracle.com if you need additional information or have any
aoqi@0 21 * questions.
aoqi@0 22 *
aoqi@0 23 */
aoqi@0 24
aoqi@0 25 #ifndef SHARE_VM_GC_IMPLEMENTATION_G1_G1COLLECTEDHEAP_INLINE_HPP
aoqi@0 26 #define SHARE_VM_GC_IMPLEMENTATION_G1_G1COLLECTEDHEAP_INLINE_HPP
aoqi@0 27
aoqi@0 28 #include "gc_implementation/g1/concurrentMark.hpp"
aoqi@0 29 #include "gc_implementation/g1/g1CollectedHeap.hpp"
aoqi@0 30 #include "gc_implementation/g1/g1AllocRegion.inline.hpp"
aoqi@0 31 #include "gc_implementation/g1/g1CollectorPolicy.hpp"
aoqi@0 32 #include "gc_implementation/g1/g1SATBCardTableModRefBS.hpp"
tschatzl@7091 33 #include "gc_implementation/g1/heapRegionManager.inline.hpp"
aoqi@0 34 #include "gc_implementation/g1/heapRegionSet.inline.hpp"
goetz@6911 35 #include "runtime/orderAccess.inline.hpp"
aoqi@0 36 #include "utilities/taskqueue.hpp"
aoqi@0 37
tschatzl@7651 38 PLABStats* G1CollectedHeap::alloc_buffer_stats(InCSetState dest) {
tschatzl@7651 39 switch (dest.value()) {
tschatzl@7651 40 case InCSetState::Young:
tschatzl@7651 41 return &_survivor_plab_stats;
tschatzl@7651 42 case InCSetState::Old:
tschatzl@7651 43 return &_old_plab_stats;
tschatzl@7651 44 default:
tschatzl@7651 45 ShouldNotReachHere();
tschatzl@7651 46 return NULL; // Keep some compilers happy
tschatzl@7651 47 }
tschatzl@7651 48 }
tschatzl@7651 49
tschatzl@7651 50 size_t G1CollectedHeap::desired_plab_sz(InCSetState dest) {
tschatzl@7651 51 size_t gclab_word_size = alloc_buffer_stats(dest)->desired_plab_sz();
tschatzl@7651 52 // Prevent humongous PLAB sizes for two reasons:
tschatzl@7651 53 // * PLABs are allocated using a similar paths as oops, but should
tschatzl@7651 54 // never be in a humongous region
tschatzl@7651 55 // * Allowing humongous PLABs needlessly churns the region free lists
tschatzl@7651 56 return MIN2(_humongous_object_threshold_in_words, gclab_word_size);
tschatzl@7651 57 }
tschatzl@7651 58
tschatzl@7651 59 HeapWord* G1CollectedHeap::par_allocate_during_gc(InCSetState dest,
tschatzl@7651 60 size_t word_size,
tschatzl@7651 61 AllocationContext_t context) {
tschatzl@7651 62 switch (dest.value()) {
tschatzl@7651 63 case InCSetState::Young:
tschatzl@7651 64 return survivor_attempt_allocation(word_size, context);
tschatzl@7651 65 case InCSetState::Old:
tschatzl@7651 66 return old_attempt_allocation(word_size, context);
tschatzl@7651 67 default:
tschatzl@7651 68 ShouldNotReachHere();
tschatzl@7651 69 return NULL; // Keep some compilers happy
tschatzl@7651 70 }
tschatzl@7651 71 }
tschatzl@7651 72
aoqi@0 73 // Inline functions for G1CollectedHeap
aoqi@0 74
jcoomes@7159 75 inline AllocationContextStats& G1CollectedHeap::allocation_context_stats() {
jcoomes@7159 76 return _allocation_context_stats;
jcoomes@7159 77 }
jcoomes@7159 78
aoqi@0 79 // Return the region with the given index. It assumes the index is valid.
tschatzl@7091 80 inline HeapRegion* G1CollectedHeap::region_at(uint index) const { return _hrm.at(index); }
drchase@6680 81
tschatzl@7010 82 inline uint G1CollectedHeap::addr_to_region(HeapWord* addr) const {
tschatzl@7010 83 assert(is_in_reserved(addr),
kevinw@9327 84 err_msg("Cannot calculate region index for address " PTR_FORMAT " that is outside of the heap [" PTR_FORMAT ", " PTR_FORMAT ")",
tschatzl@7010 85 p2i(addr), p2i(_reserved.start()), p2i(_reserved.end())));
tschatzl@7010 86 return (uint)(pointer_delta(addr, _reserved.start(), sizeof(uint8_t)) >> HeapRegion::LogOfHRGrainBytes);
tschatzl@7010 87 }
tschatzl@7010 88
tschatzl@7050 89 inline HeapWord* G1CollectedHeap::bottom_addr_for_region(uint index) const {
tschatzl@7091 90 return _hrm.reserved().start() + index * HeapRegion::GrainWords;
tschatzl@7050 91 }
aoqi@0 92
aoqi@0 93 template <class T>
tschatzl@7050 94 inline HeapRegion* G1CollectedHeap::heap_region_containing_raw(const T addr) const {
brutisso@7049 95 assert(addr != NULL, "invariant");
tschatzl@7050 96 assert(is_in_g1_reserved((const void*) addr),
kevinw@9327 97 err_msg("Address " PTR_FORMAT " is outside of the heap ranging from [" PTR_FORMAT " to " PTR_FORMAT ")",
tschatzl@7050 98 p2i((void*)addr), p2i(g1_reserved().start()), p2i(g1_reserved().end())));
tschatzl@7091 99 return _hrm.addr_to_region((HeapWord*) addr);
drchase@6680 100 }
drchase@6680 101
drchase@6680 102 template <class T>
tschatzl@7050 103 inline HeapRegion* G1CollectedHeap::heap_region_containing(const T addr) const {
brutisso@7049 104 HeapRegion* hr = heap_region_containing_raw(addr);
brutisso@7049 105 if (hr->continuesHumongous()) {
brutisso@7049 106 return hr->humongous_start_region();
aoqi@0 107 }
aoqi@0 108 return hr;
aoqi@0 109 }
aoqi@0 110
goetz@6911 111 inline void G1CollectedHeap::reset_gc_time_stamp() {
goetz@6911 112 _gc_time_stamp = 0;
goetz@6911 113 OrderAccess::fence();
goetz@6911 114 // Clear the cached CSet starting regions and time stamps.
goetz@6911 115 // Their validity is dependent on the GC timestamp.
goetz@6911 116 clear_cset_start_regions();
goetz@6911 117 }
goetz@6911 118
goetz@6911 119 inline void G1CollectedHeap::increment_gc_time_stamp() {
goetz@6911 120 ++_gc_time_stamp;
goetz@6911 121 OrderAccess::fence();
aoqi@0 122 }
aoqi@0 123
aoqi@0 124 inline void G1CollectedHeap::old_set_remove(HeapRegion* hr) {
aoqi@0 125 _old_set.remove(hr);
aoqi@0 126 }
aoqi@0 127
aoqi@0 128 inline bool G1CollectedHeap::obj_in_cs(oop obj) {
tschatzl@7091 129 HeapRegion* r = _hrm.addr_to_region((HeapWord*) obj);
aoqi@0 130 return r != NULL && r->in_collection_set();
aoqi@0 131 }
aoqi@0 132
tschatzl@7050 133 inline HeapWord* G1CollectedHeap::attempt_allocation(size_t word_size,
mlarsson@7686 134 uint* gc_count_before_ret,
mlarsson@7686 135 uint* gclocker_retry_count_ret) {
aoqi@0 136 assert_heap_not_locked_and_not_at_safepoint();
aoqi@0 137 assert(!isHumongous(word_size), "attempt_allocation() should not "
aoqi@0 138 "be called for humongous allocation requests");
aoqi@0 139
sjohanss@7118 140 AllocationContext_t context = AllocationContext::current();
sjohanss@7118 141 HeapWord* result = _allocator->mutator_alloc_region(context)->attempt_allocation(word_size,
sjohanss@7118 142 false /* bot_updates */);
aoqi@0 143 if (result == NULL) {
aoqi@0 144 result = attempt_allocation_slow(word_size,
sjohanss@7118 145 context,
aoqi@0 146 gc_count_before_ret,
aoqi@0 147 gclocker_retry_count_ret);
aoqi@0 148 }
aoqi@0 149 assert_heap_not_locked();
aoqi@0 150 if (result != NULL) {
aoqi@0 151 dirty_young_block(result, word_size);
aoqi@0 152 }
aoqi@0 153 return result;
aoqi@0 154 }
aoqi@0 155
sjohanss@7118 156 inline HeapWord* G1CollectedHeap::survivor_attempt_allocation(size_t word_size,
sjohanss@7118 157 AllocationContext_t context) {
aoqi@0 158 assert(!isHumongous(word_size),
aoqi@0 159 "we should not be seeing humongous-size allocations in this path");
aoqi@0 160
sjohanss@7118 161 HeapWord* result = _allocator->survivor_gc_alloc_region(context)->attempt_allocation(word_size,
sjohanss@7118 162 false /* bot_updates */);
aoqi@0 163 if (result == NULL) {
aoqi@0 164 MutexLockerEx x(FreeList_lock, Mutex::_no_safepoint_check_flag);
sjohanss@7118 165 result = _allocator->survivor_gc_alloc_region(context)->attempt_allocation_locked(word_size,
sjohanss@7118 166 false /* bot_updates */);
aoqi@0 167 }
aoqi@0 168 if (result != NULL) {
aoqi@0 169 dirty_young_block(result, word_size);
aoqi@0 170 }
aoqi@0 171 return result;
aoqi@0 172 }
aoqi@0 173
sjohanss@7118 174 inline HeapWord* G1CollectedHeap::old_attempt_allocation(size_t word_size,
sjohanss@7118 175 AllocationContext_t context) {
aoqi@0 176 assert(!isHumongous(word_size),
aoqi@0 177 "we should not be seeing humongous-size allocations in this path");
aoqi@0 178
sjohanss@7118 179 HeapWord* result = _allocator->old_gc_alloc_region(context)->attempt_allocation(word_size,
sjohanss@7118 180 true /* bot_updates */);
aoqi@0 181 if (result == NULL) {
aoqi@0 182 MutexLockerEx x(FreeList_lock, Mutex::_no_safepoint_check_flag);
sjohanss@7118 183 result = _allocator->old_gc_alloc_region(context)->attempt_allocation_locked(word_size,
sjohanss@7118 184 true /* bot_updates */);
aoqi@0 185 }
aoqi@0 186 return result;
aoqi@0 187 }
aoqi@0 188
aoqi@0 189 // It dirties the cards that cover the block so that so that the post
aoqi@0 190 // write barrier never queues anything when updating objects on this
aoqi@0 191 // block. It is assumed (and in fact we assert) that the block
aoqi@0 192 // belongs to a young region.
aoqi@0 193 inline void
aoqi@0 194 G1CollectedHeap::dirty_young_block(HeapWord* start, size_t word_size) {
aoqi@0 195 assert_heap_not_locked();
aoqi@0 196
aoqi@0 197 // Assign the containing region to containing_hr so that we don't
aoqi@0 198 // have to keep calling heap_region_containing_raw() in the
aoqi@0 199 // asserts below.
aoqi@0 200 DEBUG_ONLY(HeapRegion* containing_hr = heap_region_containing_raw(start);)
brutisso@7049 201 assert(word_size > 0, "pre-condition");
aoqi@0 202 assert(containing_hr->is_in(start), "it should contain start");
aoqi@0 203 assert(containing_hr->is_young(), "it should be young");
aoqi@0 204 assert(!containing_hr->isHumongous(), "it should not be humongous");
aoqi@0 205
aoqi@0 206 HeapWord* end = start + word_size;
aoqi@0 207 assert(containing_hr->is_in(end - 1), "it should also contain end - 1");
aoqi@0 208
aoqi@0 209 MemRegion mr(start, end);
aoqi@0 210 g1_barrier_set()->g1_mark_as_young(mr);
aoqi@0 211 }
aoqi@0 212
aoqi@0 213 inline RefToScanQueue* G1CollectedHeap::task_queue(int i) const {
aoqi@0 214 return _task_queues->queue(i);
aoqi@0 215 }
aoqi@0 216
aoqi@0 217 inline bool G1CollectedHeap::isMarkedPrev(oop obj) const {
aoqi@0 218 return _cm->prevMarkBitMap()->isMarked((HeapWord *)obj);
aoqi@0 219 }
aoqi@0 220
aoqi@0 221 inline bool G1CollectedHeap::isMarkedNext(oop obj) const {
aoqi@0 222 return _cm->nextMarkBitMap()->isMarked((HeapWord *)obj);
aoqi@0 223 }
aoqi@0 224
aoqi@0 225 // This is a fast test on whether a reference points into the
aoqi@0 226 // collection set or not. Assume that the reference
aoqi@0 227 // points into the heap.
tschatzl@7010 228 inline bool G1CollectedHeap::is_in_cset(oop obj) {
tschatzl@7010 229 bool ret = _in_cset_fast_test.is_in_cset((HeapWord*)obj);
aoqi@0 230 // let's make sure the result is consistent with what the slower
aoqi@0 231 // test returns
aoqi@0 232 assert( ret || !obj_in_cs(obj), "sanity");
aoqi@0 233 assert(!ret || obj_in_cs(obj), "sanity");
aoqi@0 234 return ret;
aoqi@0 235 }
aoqi@0 236
tschatzl@7010 237 bool G1CollectedHeap::is_in_cset_or_humongous(const oop obj) {
tschatzl@7010 238 return _in_cset_fast_test.is_in_cset_or_humongous((HeapWord*)obj);
tschatzl@7010 239 }
tschatzl@7010 240
tschatzl@7651 241 InCSetState G1CollectedHeap::in_cset_state(const oop obj) {
tschatzl@7010 242 return _in_cset_fast_test.at((HeapWord*)obj);
tschatzl@7010 243 }
tschatzl@7010 244
tschatzl@7010 245 void G1CollectedHeap::register_humongous_region_with_in_cset_fast_test(uint index) {
tschatzl@7010 246 _in_cset_fast_test.set_humongous(index);
tschatzl@7010 247 }
tschatzl@7010 248
aoqi@0 249 #ifndef PRODUCT
aoqi@0 250 // Support for G1EvacuationFailureALot
aoqi@0 251
aoqi@0 252 inline bool
aoqi@0 253 G1CollectedHeap::evacuation_failure_alot_for_gc_type(bool gcs_are_young,
aoqi@0 254 bool during_initial_mark,
aoqi@0 255 bool during_marking) {
aoqi@0 256 bool res = false;
aoqi@0 257 if (during_marking) {
aoqi@0 258 res |= G1EvacuationFailureALotDuringConcMark;
aoqi@0 259 }
aoqi@0 260 if (during_initial_mark) {
aoqi@0 261 res |= G1EvacuationFailureALotDuringInitialMark;
aoqi@0 262 }
aoqi@0 263 if (gcs_are_young) {
aoqi@0 264 res |= G1EvacuationFailureALotDuringYoungGC;
aoqi@0 265 } else {
aoqi@0 266 // GCs are mixed
aoqi@0 267 res |= G1EvacuationFailureALotDuringMixedGC;
aoqi@0 268 }
aoqi@0 269 return res;
aoqi@0 270 }
aoqi@0 271
aoqi@0 272 inline void
aoqi@0 273 G1CollectedHeap::set_evacuation_failure_alot_for_current_gc() {
aoqi@0 274 if (G1EvacuationFailureALot) {
aoqi@0 275 // Note we can't assert that _evacuation_failure_alot_for_current_gc
aoqi@0 276 // is clear here. It may have been set during a previous GC but that GC
aoqi@0 277 // did not copy enough objects (i.e. G1EvacuationFailureALotCount) to
aoqi@0 278 // trigger an evacuation failure and clear the flags and and counts.
aoqi@0 279
aoqi@0 280 // Check if we have gone over the interval.
aoqi@0 281 const size_t gc_num = total_collections();
aoqi@0 282 const size_t elapsed_gcs = gc_num - _evacuation_failure_alot_gc_number;
aoqi@0 283
aoqi@0 284 _evacuation_failure_alot_for_current_gc = (elapsed_gcs >= G1EvacuationFailureALotInterval);
aoqi@0 285
aoqi@0 286 // Now check if G1EvacuationFailureALot is enabled for the current GC type.
aoqi@0 287 const bool gcs_are_young = g1_policy()->gcs_are_young();
aoqi@0 288 const bool during_im = g1_policy()->during_initial_mark_pause();
aoqi@0 289 const bool during_marking = mark_in_progress();
aoqi@0 290
aoqi@0 291 _evacuation_failure_alot_for_current_gc &=
aoqi@0 292 evacuation_failure_alot_for_gc_type(gcs_are_young,
aoqi@0 293 during_im,
aoqi@0 294 during_marking);
aoqi@0 295 }
aoqi@0 296 }
aoqi@0 297
tschatzl@7050 298 inline bool G1CollectedHeap::evacuation_should_fail() {
aoqi@0 299 if (!G1EvacuationFailureALot || !_evacuation_failure_alot_for_current_gc) {
aoqi@0 300 return false;
aoqi@0 301 }
aoqi@0 302 // G1EvacuationFailureALot is in effect for current GC
aoqi@0 303 // Access to _evacuation_failure_alot_count is not atomic;
aoqi@0 304 // the value does not have to be exact.
aoqi@0 305 if (++_evacuation_failure_alot_count < G1EvacuationFailureALotCount) {
aoqi@0 306 return false;
aoqi@0 307 }
aoqi@0 308 _evacuation_failure_alot_count = 0;
aoqi@0 309 return true;
aoqi@0 310 }
aoqi@0 311
aoqi@0 312 inline void G1CollectedHeap::reset_evacuation_should_fail() {
aoqi@0 313 if (G1EvacuationFailureALot) {
aoqi@0 314 _evacuation_failure_alot_gc_number = total_collections();
aoqi@0 315 _evacuation_failure_alot_count = 0;
aoqi@0 316 _evacuation_failure_alot_for_current_gc = false;
aoqi@0 317 }
aoqi@0 318 }
aoqi@0 319 #endif // #ifndef PRODUCT
aoqi@0 320
aoqi@0 321 inline bool G1CollectedHeap::is_in_young(const oop obj) {
brutisso@7049 322 if (obj == NULL) {
brutisso@7049 323 return false;
brutisso@7049 324 }
brutisso@7049 325 return heap_region_containing(obj)->is_young();
aoqi@0 326 }
aoqi@0 327
aoqi@0 328 // We don't need barriers for initializing stores to objects
aoqi@0 329 // in the young gen: for the SATB pre-barrier, there is no
aoqi@0 330 // pre-value that needs to be remembered; for the remembered-set
aoqi@0 331 // update logging post-barrier, we don't maintain remembered set
aoqi@0 332 // information for young gen objects.
aoqi@0 333 inline bool G1CollectedHeap::can_elide_initializing_store_barrier(oop new_obj) {
aoqi@0 334 return is_in_young(new_obj);
aoqi@0 335 }
aoqi@0 336
aoqi@0 337 inline bool G1CollectedHeap::is_obj_dead(const oop obj) const {
brutisso@7049 338 if (obj == NULL) {
brutisso@7049 339 return false;
aoqi@0 340 }
brutisso@7049 341 return is_obj_dead(obj, heap_region_containing(obj));
aoqi@0 342 }
aoqi@0 343
aoqi@0 344 inline bool G1CollectedHeap::is_obj_ill(const oop obj) const {
brutisso@7049 345 if (obj == NULL) {
brutisso@7049 346 return false;
aoqi@0 347 }
brutisso@7049 348 return is_obj_ill(obj, heap_region_containing(obj));
aoqi@0 349 }
aoqi@0 350
kbarrett@7830 351 inline void G1CollectedHeap::set_humongous_reclaim_candidate(uint region, bool value) {
kbarrett@7830 352 assert(_hrm.at(region)->startsHumongous(), "Must start a humongous object");
kbarrett@7830 353 _humongous_reclaim_candidates.set_candidate(region, value);
kbarrett@7830 354 }
kbarrett@7830 355
kbarrett@7830 356 inline bool G1CollectedHeap::is_humongous_reclaim_candidate(uint region) {
kbarrett@7830 357 assert(_hrm.at(region)->startsHumongous(), "Must start a humongous object");
kbarrett@7830 358 return _humongous_reclaim_candidates.is_candidate(region);
kbarrett@7830 359 }
kbarrett@7830 360
tschatzl@7010 361 inline void G1CollectedHeap::set_humongous_is_live(oop obj) {
tschatzl@7010 362 uint region = addr_to_region((HeapWord*)obj);
kbarrett@7830 363 // Clear the flag in the humongous_reclaim_candidates table. Also
tschatzl@7010 364 // reset the entry in the _in_cset_fast_test table so that subsequent references
tschatzl@7010 365 // to the same humongous object do not go into the slow path again.
tschatzl@7010 366 // This is racy, as multiple threads may at the same time enter here, but this
tschatzl@7010 367 // is benign.
kbarrett@7830 368 // During collection we only ever clear the "candidate" flag, and only ever clear the
tschatzl@7010 369 // entry in the in_cset_fast_table.
tschatzl@7010 370 // We only ever evaluate the contents of these tables (in the VM thread) after
tschatzl@7010 371 // having synchronized the worker threads with the VM thread, or in the same
tschatzl@7010 372 // thread (i.e. within the VM thread).
kbarrett@7830 373 if (is_humongous_reclaim_candidate(region)) {
kbarrett@7830 374 set_humongous_reclaim_candidate(region, false);
tschatzl@7010 375 _in_cset_fast_test.clear_humongous(region);
aoqi@0 376 }
aoqi@0 377 }
aoqi@0 378
aoqi@0 379 #endif // SHARE_VM_GC_IMPLEMENTATION_G1_G1COLLECTEDHEAP_INLINE_HPP

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