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/*
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* Copyright (c) 2014, 2018, Oracle and/or its affiliates. All rights reserved.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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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 "gc/shared/collectedHeap.hpp"
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#include "jfr/jfrEvents.hpp"
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#include "jfr/leakprofiler/utilities/granularTimer.hpp"
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#include "jfr/leakprofiler/chains/rootSetClosure.hpp"
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#include "jfr/leakprofiler/chains/edge.hpp"
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#include "jfr/leakprofiler/chains/edgeQueue.hpp"
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#include "jfr/leakprofiler/chains/edgeStore.hpp"
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#include "jfr/leakprofiler/chains/bitset.hpp"
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#include "jfr/leakprofiler/sampling/objectSample.hpp"
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#include "jfr/leakprofiler/leakProfiler.hpp"
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#include "jfr/leakprofiler/checkpoint/objectSampleCheckpoint.hpp"
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#include "jfr/leakprofiler/sampling/objectSampler.hpp"
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#include "jfr/leakprofiler/emitEventOperation.hpp"
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#include "jfr/leakprofiler/chains/bfsClosure.hpp"
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#include "jfr/leakprofiler/chains/dfsClosure.hpp"
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#include "jfr/leakprofiler/chains/objectSampleMarker.hpp"
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#include "jfr/recorder/checkpoint/jfrCheckpointWriter.hpp"
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#include "jfr/support/jfrThreadId.hpp"
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#include "logging/log.hpp"
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#include "memory/resourceArea.hpp"
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#include "memory/universe.hpp"
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#include "oops/markOop.hpp"
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#include "oops/oop.inline.hpp"
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#include "runtime/safepoint.hpp"
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#include "runtime/vmThread.hpp"
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#include "utilities/globalDefinitions.hpp"
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/* The EdgeQueue is backed by directly managed virtual memory.
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* We will attempt to dimension an initial reservation
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* in proportion to the size of the heap (represented by heap_region).
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* Initial memory reservation: 5% of the heap OR at least 32 Mb
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* Commit ratio: 1 : 10 (subject to allocation granularties)
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*/
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static size_t edge_queue_memory_reservation(const MemRegion& heap_region) {
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const size_t memory_reservation_bytes = MAX2(heap_region.byte_size() / 20, 32*M);
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assert(memory_reservation_bytes >= (size_t)32*M, "invariant");
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return memory_reservation_bytes;
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}
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static size_t edge_queue_memory_commit_size(size_t memory_reservation_bytes) {
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const size_t memory_commit_block_size_bytes = memory_reservation_bytes / 10;
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assert(memory_commit_block_size_bytes >= (size_t)3*M, "invariant");
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return memory_commit_block_size_bytes;
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}
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static void log_edge_queue_summary(const EdgeQueue& edge_queue) {
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log_trace(jfr, system)("EdgeQueue reserved size total: " SIZE_FORMAT " [KB]", edge_queue.reserved_size() / K);
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log_trace(jfr, system)("EdgeQueue edges total: " SIZE_FORMAT, edge_queue.top());
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log_trace(jfr, system)("EdgeQueue liveset total: " SIZE_FORMAT " [KB]", edge_queue.live_set() / K);
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if (edge_queue.reserved_size() > 0) {
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log_trace(jfr, system)("EdgeQueue commit reserve ratio: %f\n",
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((double)edge_queue.live_set() / (double)edge_queue.reserved_size()));
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}
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}
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void EmitEventOperation::doit() {
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assert(LeakProfiler::is_running(), "invariant");
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_object_sampler = LeakProfiler::object_sampler();
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assert(_object_sampler != NULL, "invariant");
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_vm_thread = VMThread::vm_thread();
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assert(_vm_thread == Thread::current(), "invariant");
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_vm_thread_local = _vm_thread->jfr_thread_local();
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assert(_vm_thread_local != NULL, "invariant");
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assert(_vm_thread->jfr_thread_local()->thread_id() == JFR_THREAD_ID(_vm_thread), "invariant");
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// The VM_Operation::evaluate() which invoked doit()
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// contains a top level ResourceMark
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// save the original markWord for the potential leak objects
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// to be restored on function exit
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ObjectSampleMarker marker;
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if (ObjectSampleCheckpoint::mark(marker, _emit_all) == 0) {
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return;
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}
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EdgeStore edge_store;
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GranularTimer::start(_cutoff_ticks, 1000000);
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if (_cutoff_ticks <= 0) {
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// no chains
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write_events(&edge_store);
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return;
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}
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assert(_cutoff_ticks > 0, "invariant");
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// The bitset used for marking is dimensioned as a function of the heap size
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const MemRegion heap_region = Universe::heap()->reserved_region();
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BitSet mark_bits(heap_region);
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// The edge queue is dimensioned as a fraction of the heap size
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const size_t edge_queue_reservation_size = edge_queue_memory_reservation(heap_region);
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EdgeQueue edge_queue(edge_queue_reservation_size, edge_queue_memory_commit_size(edge_queue_reservation_size));
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// The initialize() routines will attempt to reserve and allocate backing storage memory.
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// Failure to accommodate will render root chain processing impossible.
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// As a fallback on failure, just write out the existing samples, flat, without chains.
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if (!(mark_bits.initialize() && edge_queue.initialize())) {
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log_warning(jfr)("Unable to allocate memory for root chain processing");
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write_events(&edge_store);
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return;
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}
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// necessary condition for attempting a root set iteration
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Universe::heap()->ensure_parsability(false);
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RootSetClosure::add_to_queue(&edge_queue);
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if (edge_queue.is_full()) {
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// Pathological case where roots don't fit in queue
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// Do a depth-first search, but mark roots first
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// to avoid walking sideways over roots
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DFSClosure::find_leaks_from_root_set(&edge_store, &mark_bits);
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} else {
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BFSClosure bfs(&edge_queue, &edge_store, &mark_bits);
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bfs.process();
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}
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GranularTimer::stop();
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write_events(&edge_store);
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log_edge_queue_summary(edge_queue);
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}
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int EmitEventOperation::write_events(EdgeStore* edge_store) {
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assert(_object_sampler != NULL, "invariant");
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assert(edge_store != NULL, "invariant");
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assert(_vm_thread != NULL, "invariant");
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assert(_vm_thread_local != NULL, "invariant");
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assert(SafepointSynchronize::is_at_safepoint(), "invariant");
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// save thread id in preparation for thread local trace data manipulations
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const traceid vmthread_id = _vm_thread_local->thread_id();
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assert(_vm_thread_local->thread_id() == JFR_THREAD_ID(_vm_thread), "invariant");
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const jlong last_sweep = _emit_all ? max_jlong : _object_sampler->last_sweep().value();
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int count = 0;
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for (int i = 0; i < _object_sampler->item_count(); ++i) {
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const ObjectSample* sample = _object_sampler->item_at(i);
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if (sample->is_alive_and_older_than(last_sweep)) {
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write_event(sample, edge_store);
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++count;
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}
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}
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// restore thread local stack trace and thread id
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_vm_thread_local->set_thread_id(vmthread_id);
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_vm_thread_local->clear_cached_stack_trace();
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assert(_vm_thread_local->thread_id() == JFR_THREAD_ID(_vm_thread), "invariant");
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if (count > 0) {
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// serialize assoicated checkpoints
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ObjectSampleCheckpoint::write(edge_store, _emit_all, _vm_thread);
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}
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return count;
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}
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static int array_size(const oop object) {
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assert(object != NULL, "invariant");
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if (object->is_array()) {
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return arrayOop(object)->length();
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}
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return -1;
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}
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void EmitEventOperation::write_event(const ObjectSample* sample, EdgeStore* edge_store) {
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assert(sample != NULL, "invariant");
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assert(!sample->is_dead(), "invariant");
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assert(edge_store != NULL, "invariant");
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assert(_vm_thread_local != NULL, "invariant");
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const oop* object_addr = sample->object_addr();
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assert(*object_addr != NULL, "invariant");
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const Edge* edge = (const Edge*)(*object_addr)->mark();
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traceid gc_root_id = 0;
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if (edge == NULL) {
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// In order to dump out a representation of the event
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// even though it was not reachable / too long to reach,
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// we need to register a top level edge for this object
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Edge e(NULL, object_addr);
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edge_store->add_chain(&e, 1);
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edge = (const Edge*)(*object_addr)->mark();
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} else {
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gc_root_id = edge_store->get_root_id(edge);
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}
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assert(edge != NULL, "invariant");
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assert(edge->pointee() == *object_addr, "invariant");
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const traceid object_id = edge_store->get_id(edge);
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assert(object_id != 0, "invariant");
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EventOldObjectSample e(UNTIMED);
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e.set_starttime(GranularTimer::start_time());
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e.set_endtime(GranularTimer::end_time());
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e.set_allocationTime(sample->allocation_time());
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e.set_object(object_id);
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e.set_arrayElements(array_size(*object_addr));
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e.set_root(gc_root_id);
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// Temporarily assigning both the stack trace id and thread id
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// onto the thread local data structure of the VMThread (for the duration
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// of the commit() call). This trick provides a means to override
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// the event generation mechanism by injecting externally provided id's.
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// Here, in particular, this allows us to emit an old object event
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// supplying information from where the actual sampling occurred.
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_vm_thread_local->set_cached_stack_trace_id(sample->stack_trace_id());
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assert(sample->has_thread(), "invariant");
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_vm_thread_local->set_thread_id(sample->thread_id());
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e.commit();
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}
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