d2d6b6378e
Reviewed-by: rkennke
873 lines
29 KiB
C++
873 lines
29 KiB
C++
/*
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* Copyright (c) 2014, 2019, Red Hat, Inc. All rights reserved.
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*
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* This code is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 only, as
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* published by the Free Software Foundation.
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*
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* This code is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* version 2 for more details (a copy is included in the LICENSE file that
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* accompanied this code).
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*
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* You should have received a copy of the GNU General Public License version
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* 2 along with this work; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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*
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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* or visit www.oracle.com if you need additional information or have any
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* questions.
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*
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*/
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#include "precompiled.hpp"
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#include "code/codeCache.hpp"
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#include "gc/shared/gcTraceTime.inline.hpp"
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#include "gc/shared/preservedMarks.inline.hpp"
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#include "gc/shenandoah/shenandoahForwarding.inline.hpp"
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#include "gc/shenandoah/shenandoahConcurrentMark.inline.hpp"
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#include "gc/shenandoah/shenandoahCollectionSet.hpp"
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#include "gc/shenandoah/shenandoahFreeSet.hpp"
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#include "gc/shenandoah/shenandoahPhaseTimings.hpp"
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#include "gc/shenandoah/shenandoahMarkCompact.hpp"
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#include "gc/shenandoah/shenandoahHeapRegionSet.hpp"
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#include "gc/shenandoah/shenandoahHeap.inline.hpp"
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#include "gc/shenandoah/shenandoahHeuristics.hpp"
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#include "gc/shenandoah/shenandoahMarkingContext.inline.hpp"
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#include "gc/shenandoah/shenandoahRootProcessor.inline.hpp"
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#include "gc/shenandoah/shenandoahTraversalGC.hpp"
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#include "gc/shenandoah/shenandoahTaskqueue.inline.hpp"
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#include "gc/shenandoah/shenandoahUtils.hpp"
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#include "gc/shenandoah/shenandoahVerifier.hpp"
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#include "gc/shenandoah/shenandoahVMOperations.hpp"
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#include "gc/shenandoah/shenandoahWorkerPolicy.hpp"
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#include "memory/metaspace.hpp"
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#include "memory/universe.hpp"
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#include "oops/compressedOops.inline.hpp"
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#include "oops/oop.inline.hpp"
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#include "runtime/biasedLocking.hpp"
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#include "runtime/thread.hpp"
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#include "utilities/copy.hpp"
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#include "utilities/growableArray.hpp"
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#include "gc/shared/workgroup.hpp"
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ShenandoahMarkCompact::ShenandoahMarkCompact() :
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_gc_timer(NULL),
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_preserved_marks(new PreservedMarksSet(true)) {}
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void ShenandoahMarkCompact::initialize(GCTimer* gc_timer) {
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_gc_timer = gc_timer;
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}
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void ShenandoahMarkCompact::do_it(GCCause::Cause gc_cause) {
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ShenandoahHeap* heap = ShenandoahHeap::heap();
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if (ShenandoahVerify) {
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heap->verifier()->verify_before_fullgc();
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}
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if (VerifyBeforeGC) {
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Universe::verify();
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}
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heap->set_full_gc_in_progress(true);
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assert(ShenandoahSafepoint::is_at_shenandoah_safepoint(), "must be at a safepoint");
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assert(Thread::current()->is_VM_thread(), "Do full GC only while world is stopped");
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{
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ShenandoahGCPhase phase(ShenandoahPhaseTimings::full_gc_heapdumps);
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heap->pre_full_gc_dump(_gc_timer);
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}
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{
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ShenandoahGCPhase prepare_phase(ShenandoahPhaseTimings::full_gc_prepare);
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// Full GC is supposed to recover from any GC state:
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// a0. Remember if we have forwarded objects
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bool has_forwarded_objects = heap->has_forwarded_objects();
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// a1. Cancel evacuation, if in progress
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if (heap->is_evacuation_in_progress()) {
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heap->set_evacuation_in_progress(false);
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}
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assert(!heap->is_evacuation_in_progress(), "sanity");
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// a2. Cancel update-refs, if in progress
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if (heap->is_update_refs_in_progress()) {
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heap->set_update_refs_in_progress(false);
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}
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assert(!heap->is_update_refs_in_progress(), "sanity");
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// a3. Cancel concurrent traversal GC, if in progress
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if (heap->is_concurrent_traversal_in_progress()) {
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heap->traversal_gc()->reset();
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heap->set_concurrent_traversal_in_progress(false);
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}
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// b. Cancel concurrent mark, if in progress
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if (heap->is_concurrent_mark_in_progress()) {
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heap->concurrent_mark()->cancel();
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heap->stop_concurrent_marking();
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}
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assert(!heap->is_concurrent_mark_in_progress(), "sanity");
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// c. Reset the bitmaps for new marking
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heap->reset_mark_bitmap();
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assert(heap->marking_context()->is_bitmap_clear(), "sanity");
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assert(!heap->marking_context()->is_complete(), "sanity");
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// d. Abandon reference discovery and clear all discovered references.
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ReferenceProcessor* rp = heap->ref_processor();
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rp->disable_discovery();
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rp->abandon_partial_discovery();
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rp->verify_no_references_recorded();
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// e. Set back forwarded objects bit back, in case some steps above dropped it.
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heap->set_has_forwarded_objects(has_forwarded_objects);
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// The rest of prologue:
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BiasedLocking::preserve_marks();
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_preserved_marks->init(heap->workers()->active_workers());
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}
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heap->make_parsable(true);
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OrderAccess::fence();
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phase1_mark_heap();
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// Once marking is done, which may have fixed up forwarded objects, we can drop it.
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// Coming out of Full GC, we would not have any forwarded objects.
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// This also prevents resolves with fwdptr from kicking in while adjusting pointers in phase3.
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heap->set_has_forwarded_objects(false);
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heap->set_full_gc_move_in_progress(true);
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// Setup workers for the rest
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OrderAccess::fence();
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// Initialize worker slices
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ShenandoahHeapRegionSet** worker_slices = NEW_C_HEAP_ARRAY(ShenandoahHeapRegionSet*, heap->max_workers(), mtGC);
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for (uint i = 0; i < heap->max_workers(); i++) {
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worker_slices[i] = new ShenandoahHeapRegionSet();
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}
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{
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// The rest of code performs region moves, where region status is undefined
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// until all phases run together.
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ShenandoahHeapLocker lock(heap->lock());
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phase2_calculate_target_addresses(worker_slices);
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OrderAccess::fence();
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phase3_update_references();
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phase4_compact_objects(worker_slices);
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}
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{
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// Epilogue
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SharedRestorePreservedMarksTaskExecutor exec(heap->workers());
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_preserved_marks->restore(&exec);
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BiasedLocking::restore_marks();
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_preserved_marks->reclaim();
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}
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// Resize metaspace
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MetaspaceGC::compute_new_size();
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// Free worker slices
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for (uint i = 0; i < heap->max_workers(); i++) {
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delete worker_slices[i];
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}
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FREE_C_HEAP_ARRAY(ShenandoahHeapRegionSet*, worker_slices);
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heap->set_full_gc_move_in_progress(false);
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heap->set_full_gc_in_progress(false);
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if (ShenandoahVerify) {
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heap->verifier()->verify_after_fullgc();
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}
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if (VerifyAfterGC) {
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Universe::verify();
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}
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{
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ShenandoahGCPhase phase(ShenandoahPhaseTimings::full_gc_heapdumps);
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heap->post_full_gc_dump(_gc_timer);
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}
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}
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class ShenandoahPrepareForMarkClosure: public ShenandoahHeapRegionClosure {
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private:
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ShenandoahMarkingContext* const _ctx;
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public:
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ShenandoahPrepareForMarkClosure() : _ctx(ShenandoahHeap::heap()->marking_context()) {}
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void heap_region_do(ShenandoahHeapRegion *r) {
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_ctx->capture_top_at_mark_start(r);
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r->clear_live_data();
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r->set_concurrent_iteration_safe_limit(r->top());
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}
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};
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void ShenandoahMarkCompact::phase1_mark_heap() {
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GCTraceTime(Info, gc, phases) time("Phase 1: Mark live objects", _gc_timer);
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ShenandoahGCPhase mark_phase(ShenandoahPhaseTimings::full_gc_mark);
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ShenandoahHeap* heap = ShenandoahHeap::heap();
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ShenandoahPrepareForMarkClosure cl;
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heap->heap_region_iterate(&cl);
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ShenandoahConcurrentMark* cm = heap->concurrent_mark();
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heap->set_process_references(heap->heuristics()->can_process_references());
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heap->set_unload_classes(heap->heuristics()->can_unload_classes());
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ReferenceProcessor* rp = heap->ref_processor();
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// enable ("weak") refs discovery
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rp->enable_discovery(true /*verify_no_refs*/);
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rp->setup_policy(true); // forcefully purge all soft references
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rp->set_active_mt_degree(heap->workers()->active_workers());
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cm->update_roots(ShenandoahPhaseTimings::full_gc_roots);
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cm->mark_roots(ShenandoahPhaseTimings::full_gc_roots);
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cm->finish_mark_from_roots(/* full_gc = */ true);
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heap->mark_complete_marking_context();
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}
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class ShenandoahPrepareForCompactionObjectClosure : public ObjectClosure {
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private:
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PreservedMarks* const _preserved_marks;
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ShenandoahHeap* const _heap;
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GrowableArray<ShenandoahHeapRegion*>& _empty_regions;
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int _empty_regions_pos;
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ShenandoahHeapRegion* _to_region;
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ShenandoahHeapRegion* _from_region;
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HeapWord* _compact_point;
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public:
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ShenandoahPrepareForCompactionObjectClosure(PreservedMarks* preserved_marks,
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GrowableArray<ShenandoahHeapRegion*>& empty_regions,
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ShenandoahHeapRegion* to_region) :
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_preserved_marks(preserved_marks),
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_heap(ShenandoahHeap::heap()),
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_empty_regions(empty_regions),
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_empty_regions_pos(0),
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_to_region(to_region),
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_from_region(NULL),
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_compact_point(to_region->bottom()) {}
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void set_from_region(ShenandoahHeapRegion* from_region) {
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_from_region = from_region;
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}
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void finish_region() {
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assert(_to_region != NULL, "should not happen");
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_to_region->set_new_top(_compact_point);
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}
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bool is_compact_same_region() {
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return _from_region == _to_region;
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}
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int empty_regions_pos() {
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return _empty_regions_pos;
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}
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void do_object(oop p) {
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assert(_from_region != NULL, "must set before work");
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assert(_heap->complete_marking_context()->is_marked(p), "must be marked");
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assert(!_heap->complete_marking_context()->allocated_after_mark_start((HeapWord*) p), "must be truly marked");
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size_t obj_size = p->size();
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if (_compact_point + obj_size > _to_region->end()) {
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finish_region();
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// Object doesn't fit. Pick next empty region and start compacting there.
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ShenandoahHeapRegion* new_to_region;
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if (_empty_regions_pos < _empty_regions.length()) {
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new_to_region = _empty_regions.at(_empty_regions_pos);
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_empty_regions_pos++;
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} else {
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// Out of empty region? Compact within the same region.
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new_to_region = _from_region;
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}
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assert(new_to_region != _to_region, "must not reuse same to-region");
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assert(new_to_region != NULL, "must not be NULL");
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_to_region = new_to_region;
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_compact_point = _to_region->bottom();
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}
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// Object fits into current region, record new location:
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assert(_compact_point + obj_size <= _to_region->end(), "must fit");
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shenandoah_assert_not_forwarded(NULL, p);
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_preserved_marks->push_if_necessary(p, p->mark_raw());
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p->forward_to(oop(_compact_point));
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_compact_point += obj_size;
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}
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};
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class ShenandoahPrepareForCompactionTask : public AbstractGangTask {
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private:
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PreservedMarksSet* const _preserved_marks;
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ShenandoahHeap* const _heap;
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ShenandoahHeapRegionSet** const _worker_slices;
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ShenandoahRegionIterator _heap_regions;
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ShenandoahHeapRegion* next_from_region(ShenandoahHeapRegionSet* slice) {
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ShenandoahHeapRegion* from_region = _heap_regions.next();
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// Look for next candidate for this slice:
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while (from_region != NULL) {
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// Empty region: get it into the slice to defragment the slice itself.
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// We could have skipped this without violating correctness, but we really
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// want to compact all live regions to the start of the heap, which sometimes
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// means moving them into the fully empty regions.
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if (from_region->is_empty()) break;
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// Can move the region, and this is not the humongous region. Humongous
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// moves are special cased here, because their moves are handled separately.
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if (from_region->is_stw_move_allowed() && !from_region->is_humongous()) break;
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from_region = _heap_regions.next();
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}
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if (from_region != NULL) {
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assert(slice != NULL, "sanity");
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assert(!from_region->is_humongous(), "this path cannot handle humongous regions");
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assert(from_region->is_empty() || from_region->is_stw_move_allowed(), "only regions that can be moved in mark-compact");
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slice->add_region(from_region);
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}
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return from_region;
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}
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public:
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ShenandoahPrepareForCompactionTask(PreservedMarksSet* preserved_marks, ShenandoahHeapRegionSet** worker_slices) :
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AbstractGangTask("Shenandoah Prepare For Compaction Task"),
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_preserved_marks(preserved_marks),
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_heap(ShenandoahHeap::heap()), _worker_slices(worker_slices) {
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}
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void work(uint worker_id) {
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ShenandoahHeapRegionSet* slice = _worker_slices[worker_id];
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ShenandoahHeapRegion* from_region = next_from_region(slice);
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// No work?
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if (from_region == NULL) {
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return;
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}
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// Sliding compaction. Walk all regions in the slice, and compact them.
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// Remember empty regions and reuse them as needed.
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ResourceMark rm;
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GrowableArray<ShenandoahHeapRegion*> empty_regions((int)_heap->num_regions());
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ShenandoahPrepareForCompactionObjectClosure cl(_preserved_marks->get(worker_id), empty_regions, from_region);
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while (from_region != NULL) {
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cl.set_from_region(from_region);
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if (from_region->has_live()) {
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_heap->marked_object_iterate(from_region, &cl);
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}
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// Compacted the region to somewhere else? From-region is empty then.
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if (!cl.is_compact_same_region()) {
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empty_regions.append(from_region);
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}
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from_region = next_from_region(slice);
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}
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cl.finish_region();
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// Mark all remaining regions as empty
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for (int pos = cl.empty_regions_pos(); pos < empty_regions.length(); ++pos) {
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ShenandoahHeapRegion* r = empty_regions.at(pos);
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r->set_new_top(r->bottom());
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}
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}
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};
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void ShenandoahMarkCompact::calculate_target_humongous_objects() {
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ShenandoahHeap* heap = ShenandoahHeap::heap();
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// Compute the new addresses for humongous objects. We need to do this after addresses
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// for regular objects are calculated, and we know what regions in heap suffix are
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// available for humongous moves.
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//
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// Scan the heap backwards, because we are compacting humongous regions towards the end.
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// Maintain the contiguous compaction window in [to_begin; to_end), so that we can slide
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// humongous start there.
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//
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// The complication is potential non-movable regions during the scan. If such region is
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// detected, then sliding restarts towards that non-movable region.
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size_t to_begin = heap->num_regions();
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size_t to_end = heap->num_regions();
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for (size_t c = heap->num_regions(); c > 0; c--) {
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ShenandoahHeapRegion *r = heap->get_region(c - 1);
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if (r->is_humongous_continuation() || (r->new_top() == r->bottom())) {
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// To-region candidate: record this, and continue scan
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to_begin = r->region_number();
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continue;
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}
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if (r->is_humongous_start() && r->is_stw_move_allowed()) {
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// From-region candidate: movable humongous region
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oop old_obj = oop(r->bottom());
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size_t words_size = old_obj->size();
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size_t num_regions = ShenandoahHeapRegion::required_regions(words_size * HeapWordSize);
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size_t start = to_end - num_regions;
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if (start >= to_begin && start != r->region_number()) {
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// Fits into current window, and the move is non-trivial. Record the move then, and continue scan.
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_preserved_marks->get(0)->push_if_necessary(old_obj, old_obj->mark_raw());
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old_obj->forward_to(oop(heap->get_region(start)->bottom()));
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to_end = start;
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continue;
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}
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}
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// Failed to fit. Scan starting from current region.
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to_begin = r->region_number();
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to_end = r->region_number();
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}
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}
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class ShenandoahEnsureHeapActiveClosure: public ShenandoahHeapRegionClosure {
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private:
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ShenandoahHeap* const _heap;
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public:
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ShenandoahEnsureHeapActiveClosure() : _heap(ShenandoahHeap::heap()) {}
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void heap_region_do(ShenandoahHeapRegion* r) {
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if (r->is_trash()) {
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r->recycle();
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}
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if (r->is_cset()) {
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r->make_regular_bypass();
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}
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if (r->is_empty_uncommitted()) {
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r->make_committed_bypass();
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}
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assert (r->is_committed(), "only committed regions in heap now, see region " SIZE_FORMAT, r->region_number());
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// Record current region occupancy: this communicates empty regions are free
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// to the rest of Full GC code.
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r->set_new_top(r->top());
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}
|
|
};
|
|
|
|
class ShenandoahTrashImmediateGarbageClosure: public ShenandoahHeapRegionClosure {
|
|
private:
|
|
ShenandoahHeap* const _heap;
|
|
ShenandoahMarkingContext* const _ctx;
|
|
|
|
public:
|
|
ShenandoahTrashImmediateGarbageClosure() :
|
|
_heap(ShenandoahHeap::heap()),
|
|
_ctx(ShenandoahHeap::heap()->complete_marking_context()) {}
|
|
|
|
void heap_region_do(ShenandoahHeapRegion* r) {
|
|
if (r->is_humongous_start()) {
|
|
oop humongous_obj = oop(r->bottom());
|
|
if (!_ctx->is_marked(humongous_obj)) {
|
|
assert(!r->has_live(),
|
|
"Region " SIZE_FORMAT " is not marked, should not have live", r->region_number());
|
|
_heap->trash_humongous_region_at(r);
|
|
} else {
|
|
assert(r->has_live(),
|
|
"Region " SIZE_FORMAT " should have live", r->region_number());
|
|
}
|
|
} else if (r->is_humongous_continuation()) {
|
|
// If we hit continuation, the non-live humongous starts should have been trashed already
|
|
assert(r->humongous_start_region()->has_live(),
|
|
"Region " SIZE_FORMAT " should have live", r->region_number());
|
|
} else if (r->is_regular()) {
|
|
if (!r->has_live()) {
|
|
r->make_trash_immediate();
|
|
}
|
|
}
|
|
}
|
|
};
|
|
|
|
void ShenandoahMarkCompact::phase2_calculate_target_addresses(ShenandoahHeapRegionSet** worker_slices) {
|
|
GCTraceTime(Info, gc, phases) time("Phase 2: Compute new object addresses", _gc_timer);
|
|
ShenandoahGCPhase calculate_address_phase(ShenandoahPhaseTimings::full_gc_calculate_addresses);
|
|
|
|
ShenandoahHeap* heap = ShenandoahHeap::heap();
|
|
|
|
{
|
|
// Trash the immediately collectible regions before computing addresses
|
|
ShenandoahTrashImmediateGarbageClosure tigcl;
|
|
heap->heap_region_iterate(&tigcl);
|
|
|
|
// Make sure regions are in good state: committed, active, clean.
|
|
// This is needed because we are potentially sliding the data through them.
|
|
ShenandoahEnsureHeapActiveClosure ecl;
|
|
heap->heap_region_iterate(&ecl);
|
|
}
|
|
|
|
// Compute the new addresses for regular objects
|
|
{
|
|
ShenandoahGCPhase phase(ShenandoahPhaseTimings::full_gc_calculate_addresses_regular);
|
|
ShenandoahPrepareForCompactionTask prepare_task(_preserved_marks, worker_slices);
|
|
heap->workers()->run_task(&prepare_task);
|
|
}
|
|
|
|
// Compute the new addresses for humongous objects
|
|
{
|
|
ShenandoahGCPhase phase(ShenandoahPhaseTimings::full_gc_calculate_addresses_humong);
|
|
calculate_target_humongous_objects();
|
|
}
|
|
}
|
|
|
|
class ShenandoahAdjustPointersClosure : public MetadataVisitingOopIterateClosure {
|
|
private:
|
|
ShenandoahHeap* const _heap;
|
|
ShenandoahMarkingContext* const _ctx;
|
|
|
|
template <class T>
|
|
inline void do_oop_work(T* p) {
|
|
T o = RawAccess<>::oop_load(p);
|
|
if (!CompressedOops::is_null(o)) {
|
|
oop obj = CompressedOops::decode_not_null(o);
|
|
assert(_ctx->is_marked(obj), "must be marked");
|
|
if (obj->is_forwarded()) {
|
|
oop forw = obj->forwardee();
|
|
RawAccess<IS_NOT_NULL>::oop_store(p, forw);
|
|
}
|
|
}
|
|
}
|
|
|
|
public:
|
|
ShenandoahAdjustPointersClosure() :
|
|
_heap(ShenandoahHeap::heap()),
|
|
_ctx(ShenandoahHeap::heap()->complete_marking_context()) {}
|
|
|
|
void do_oop(oop* p) { do_oop_work(p); }
|
|
void do_oop(narrowOop* p) { do_oop_work(p); }
|
|
};
|
|
|
|
class ShenandoahAdjustPointersObjectClosure : public ObjectClosure {
|
|
private:
|
|
ShenandoahHeap* const _heap;
|
|
ShenandoahAdjustPointersClosure _cl;
|
|
|
|
public:
|
|
ShenandoahAdjustPointersObjectClosure() :
|
|
_heap(ShenandoahHeap::heap()) {
|
|
}
|
|
void do_object(oop p) {
|
|
assert(_heap->complete_marking_context()->is_marked(p), "must be marked");
|
|
p->oop_iterate(&_cl);
|
|
}
|
|
};
|
|
|
|
class ShenandoahAdjustPointersTask : public AbstractGangTask {
|
|
private:
|
|
ShenandoahHeap* const _heap;
|
|
ShenandoahRegionIterator _regions;
|
|
|
|
public:
|
|
ShenandoahAdjustPointersTask() :
|
|
AbstractGangTask("Shenandoah Adjust Pointers Task"),
|
|
_heap(ShenandoahHeap::heap()) {
|
|
}
|
|
|
|
void work(uint worker_id) {
|
|
ShenandoahAdjustPointersObjectClosure obj_cl;
|
|
ShenandoahHeapRegion* r = _regions.next();
|
|
while (r != NULL) {
|
|
if (!r->is_humongous_continuation() && r->has_live()) {
|
|
_heap->marked_object_iterate(r, &obj_cl);
|
|
}
|
|
r = _regions.next();
|
|
}
|
|
}
|
|
};
|
|
|
|
class ShenandoahAdjustRootPointersTask : public AbstractGangTask {
|
|
private:
|
|
ShenandoahRootAdjuster* _rp;
|
|
PreservedMarksSet* _preserved_marks;
|
|
public:
|
|
ShenandoahAdjustRootPointersTask(ShenandoahRootAdjuster* rp, PreservedMarksSet* preserved_marks) :
|
|
AbstractGangTask("Shenandoah Adjust Root Pointers Task"),
|
|
_rp(rp),
|
|
_preserved_marks(preserved_marks) {}
|
|
|
|
void work(uint worker_id) {
|
|
ShenandoahAdjustPointersClosure cl;
|
|
_rp->roots_do(worker_id, &cl);
|
|
_preserved_marks->get(worker_id)->adjust_during_full_gc();
|
|
}
|
|
};
|
|
|
|
void ShenandoahMarkCompact::phase3_update_references() {
|
|
GCTraceTime(Info, gc, phases) time("Phase 3: Adjust pointers", _gc_timer);
|
|
ShenandoahGCPhase adjust_pointer_phase(ShenandoahPhaseTimings::full_gc_adjust_pointers);
|
|
|
|
ShenandoahHeap* heap = ShenandoahHeap::heap();
|
|
|
|
WorkGang* workers = heap->workers();
|
|
uint nworkers = workers->active_workers();
|
|
{
|
|
#if COMPILER2_OR_JVMCI
|
|
DerivedPointerTable::clear();
|
|
#endif
|
|
ShenandoahRootAdjuster rp(nworkers, ShenandoahPhaseTimings::full_gc_roots);
|
|
ShenandoahAdjustRootPointersTask task(&rp, _preserved_marks);
|
|
workers->run_task(&task);
|
|
#if COMPILER2_OR_JVMCI
|
|
DerivedPointerTable::update_pointers();
|
|
#endif
|
|
}
|
|
|
|
ShenandoahAdjustPointersTask adjust_pointers_task;
|
|
workers->run_task(&adjust_pointers_task);
|
|
}
|
|
|
|
class ShenandoahCompactObjectsClosure : public ObjectClosure {
|
|
private:
|
|
ShenandoahHeap* const _heap;
|
|
uint const _worker_id;
|
|
|
|
public:
|
|
ShenandoahCompactObjectsClosure(uint worker_id) :
|
|
_heap(ShenandoahHeap::heap()), _worker_id(worker_id) {}
|
|
|
|
void do_object(oop p) {
|
|
assert(_heap->complete_marking_context()->is_marked(p), "must be marked");
|
|
size_t size = (size_t)p->size();
|
|
if (p->is_forwarded()) {
|
|
HeapWord* compact_from = (HeapWord*) p;
|
|
HeapWord* compact_to = (HeapWord*) p->forwardee();
|
|
Copy::aligned_conjoint_words(compact_from, compact_to, size);
|
|
oop new_obj = oop(compact_to);
|
|
new_obj->init_mark_raw();
|
|
}
|
|
}
|
|
};
|
|
|
|
class ShenandoahCompactObjectsTask : public AbstractGangTask {
|
|
private:
|
|
ShenandoahHeap* const _heap;
|
|
ShenandoahHeapRegionSet** const _worker_slices;
|
|
|
|
public:
|
|
ShenandoahCompactObjectsTask(ShenandoahHeapRegionSet** worker_slices) :
|
|
AbstractGangTask("Shenandoah Compact Objects Task"),
|
|
_heap(ShenandoahHeap::heap()),
|
|
_worker_slices(worker_slices) {
|
|
}
|
|
|
|
void work(uint worker_id) {
|
|
ShenandoahHeapRegionSetIterator slice(_worker_slices[worker_id]);
|
|
|
|
ShenandoahCompactObjectsClosure cl(worker_id);
|
|
ShenandoahHeapRegion* r = slice.next();
|
|
while (r != NULL) {
|
|
assert(!r->is_humongous(), "must not get humongous regions here");
|
|
if (r->has_live()) {
|
|
_heap->marked_object_iterate(r, &cl);
|
|
}
|
|
r->set_top(r->new_top());
|
|
r = slice.next();
|
|
}
|
|
}
|
|
};
|
|
|
|
class ShenandoahPostCompactClosure : public ShenandoahHeapRegionClosure {
|
|
private:
|
|
ShenandoahHeap* const _heap;
|
|
size_t _live;
|
|
|
|
public:
|
|
ShenandoahPostCompactClosure() : _heap(ShenandoahHeap::heap()), _live(0) {
|
|
_heap->free_set()->clear();
|
|
}
|
|
|
|
void heap_region_do(ShenandoahHeapRegion* r) {
|
|
assert (!r->is_cset(), "cset regions should have been demoted already");
|
|
|
|
// Need to reset the complete-top-at-mark-start pointer here because
|
|
// the complete marking bitmap is no longer valid. This ensures
|
|
// size-based iteration in marked_object_iterate().
|
|
// NOTE: See blurb at ShenandoahMCResetCompleteBitmapTask on why we need to skip
|
|
// pinned regions.
|
|
if (!r->is_pinned()) {
|
|
_heap->complete_marking_context()->reset_top_at_mark_start(r);
|
|
}
|
|
|
|
size_t live = r->used();
|
|
|
|
// Make empty regions that have been allocated into regular
|
|
if (r->is_empty() && live > 0) {
|
|
r->make_regular_bypass();
|
|
}
|
|
|
|
// Reclaim regular regions that became empty
|
|
if (r->is_regular() && live == 0) {
|
|
r->make_trash();
|
|
}
|
|
|
|
// Recycle all trash regions
|
|
if (r->is_trash()) {
|
|
live = 0;
|
|
r->recycle();
|
|
}
|
|
|
|
r->set_live_data(live);
|
|
r->reset_alloc_metadata_to_shared();
|
|
_live += live;
|
|
}
|
|
|
|
size_t get_live() {
|
|
return _live;
|
|
}
|
|
};
|
|
|
|
void ShenandoahMarkCompact::compact_humongous_objects() {
|
|
// Compact humongous regions, based on their fwdptr objects.
|
|
//
|
|
// This code is serial, because doing the in-slice parallel sliding is tricky. In most cases,
|
|
// humongous regions are already compacted, and do not require further moves, which alleviates
|
|
// sliding costs. We may consider doing this in parallel in future.
|
|
|
|
ShenandoahHeap* heap = ShenandoahHeap::heap();
|
|
|
|
for (size_t c = heap->num_regions(); c > 0; c--) {
|
|
ShenandoahHeapRegion* r = heap->get_region(c - 1);
|
|
if (r->is_humongous_start()) {
|
|
oop old_obj = oop(r->bottom());
|
|
if (!old_obj->is_forwarded()) {
|
|
// No need to move the object, it stays at the same slot
|
|
continue;
|
|
}
|
|
size_t words_size = old_obj->size();
|
|
size_t num_regions = ShenandoahHeapRegion::required_regions(words_size * HeapWordSize);
|
|
|
|
size_t old_start = r->region_number();
|
|
size_t old_end = old_start + num_regions - 1;
|
|
size_t new_start = heap->heap_region_index_containing(old_obj->forwardee());
|
|
size_t new_end = new_start + num_regions - 1;
|
|
assert(old_start != new_start, "must be real move");
|
|
assert(r->is_stw_move_allowed(), "Region " SIZE_FORMAT " should be movable", r->region_number());
|
|
|
|
Copy::aligned_conjoint_words(heap->get_region(old_start)->bottom(),
|
|
heap->get_region(new_start)->bottom(),
|
|
ShenandoahHeapRegion::region_size_words()*num_regions);
|
|
|
|
oop new_obj = oop(heap->get_region(new_start)->bottom());
|
|
new_obj->init_mark_raw();
|
|
|
|
{
|
|
for (size_t c = old_start; c <= old_end; c++) {
|
|
ShenandoahHeapRegion* r = heap->get_region(c);
|
|
r->make_regular_bypass();
|
|
r->set_top(r->bottom());
|
|
}
|
|
|
|
for (size_t c = new_start; c <= new_end; c++) {
|
|
ShenandoahHeapRegion* r = heap->get_region(c);
|
|
if (c == new_start) {
|
|
r->make_humongous_start_bypass();
|
|
} else {
|
|
r->make_humongous_cont_bypass();
|
|
}
|
|
|
|
// Trailing region may be non-full, record the remainder there
|
|
size_t remainder = words_size & ShenandoahHeapRegion::region_size_words_mask();
|
|
if ((c == new_end) && (remainder != 0)) {
|
|
r->set_top(r->bottom() + remainder);
|
|
} else {
|
|
r->set_top(r->end());
|
|
}
|
|
|
|
r->reset_alloc_metadata_to_shared();
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
// This is slightly different to ShHeap::reset_next_mark_bitmap:
|
|
// we need to remain able to walk pinned regions.
|
|
// Since pinned region do not move and don't get compacted, we will get holes with
|
|
// unreachable objects in them (which may have pointers to unloaded Klasses and thus
|
|
// cannot be iterated over using oop->size(). The only way to safely iterate over those is using
|
|
// a valid marking bitmap and valid TAMS pointer. This class only resets marking
|
|
// bitmaps for un-pinned regions, and later we only reset TAMS for unpinned regions.
|
|
class ShenandoahMCResetCompleteBitmapTask : public AbstractGangTask {
|
|
private:
|
|
ShenandoahRegionIterator _regions;
|
|
|
|
public:
|
|
ShenandoahMCResetCompleteBitmapTask() :
|
|
AbstractGangTask("Parallel Reset Bitmap Task") {
|
|
}
|
|
|
|
void work(uint worker_id) {
|
|
ShenandoahHeapRegion* region = _regions.next();
|
|
ShenandoahHeap* heap = ShenandoahHeap::heap();
|
|
ShenandoahMarkingContext* const ctx = heap->complete_marking_context();
|
|
while (region != NULL) {
|
|
if (heap->is_bitmap_slice_committed(region) && !region->is_pinned() && region->has_live()) {
|
|
ctx->clear_bitmap(region);
|
|
}
|
|
region = _regions.next();
|
|
}
|
|
}
|
|
};
|
|
|
|
void ShenandoahMarkCompact::phase4_compact_objects(ShenandoahHeapRegionSet** worker_slices) {
|
|
GCTraceTime(Info, gc, phases) time("Phase 4: Move objects", _gc_timer);
|
|
ShenandoahGCPhase compaction_phase(ShenandoahPhaseTimings::full_gc_copy_objects);
|
|
|
|
ShenandoahHeap* heap = ShenandoahHeap::heap();
|
|
|
|
// Compact regular objects first
|
|
{
|
|
ShenandoahGCPhase phase(ShenandoahPhaseTimings::full_gc_copy_objects_regular);
|
|
ShenandoahCompactObjectsTask compact_task(worker_slices);
|
|
heap->workers()->run_task(&compact_task);
|
|
}
|
|
|
|
// Compact humongous objects after regular object moves
|
|
{
|
|
ShenandoahGCPhase phase(ShenandoahPhaseTimings::full_gc_copy_objects_humong);
|
|
compact_humongous_objects();
|
|
}
|
|
|
|
// Reset complete bitmap. We're about to reset the complete-top-at-mark-start pointer
|
|
// and must ensure the bitmap is in sync.
|
|
{
|
|
ShenandoahGCPhase phase(ShenandoahPhaseTimings::full_gc_copy_objects_reset_complete);
|
|
ShenandoahMCResetCompleteBitmapTask task;
|
|
heap->workers()->run_task(&task);
|
|
}
|
|
|
|
// Bring regions in proper states after the collection, and set heap properties.
|
|
{
|
|
ShenandoahGCPhase phase(ShenandoahPhaseTimings::full_gc_copy_objects_rebuild);
|
|
|
|
ShenandoahPostCompactClosure post_compact;
|
|
heap->heap_region_iterate(&post_compact);
|
|
heap->set_used(post_compact.get_live());
|
|
|
|
heap->collection_set()->clear();
|
|
heap->free_set()->rebuild();
|
|
}
|
|
|
|
heap->clear_cancelled_gc();
|
|
}
|