mirror of
https://github.com/openjdk/jdk.git
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781 lines
24 KiB
C++
781 lines
24 KiB
C++
/*
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* Copyright (c) 1997, 2021, 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 "jvm.h"
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#include "cds/dynamicArchive.hpp"
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#include "classfile/classLoaderDataGraph.hpp"
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#include "classfile/javaClasses.hpp"
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#include "classfile/stringTable.hpp"
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#include "classfile/symbolTable.hpp"
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#include "classfile/systemDictionary.hpp"
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#include "code/codeCache.hpp"
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#include "compiler/compileBroker.hpp"
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#include "compiler/compilerOracle.hpp"
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#include "gc/shared/collectedHeap.hpp"
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#include "gc/shared/stringdedup/stringDedup.hpp"
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#include "interpreter/bytecodeHistogram.hpp"
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#include "jfr/jfrEvents.hpp"
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#include "jfr/support/jfrThreadId.hpp"
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#if INCLUDE_JVMCI
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#include "jvmci/jvmci.hpp"
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#endif
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#include "logging/log.hpp"
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#include "logging/logStream.hpp"
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#include "memory/metaspaceUtils.hpp"
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#include "memory/oopFactory.hpp"
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#include "memory/resourceArea.hpp"
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#include "memory/universe.hpp"
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#include "oops/constantPool.hpp"
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#include "oops/generateOopMap.hpp"
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#include "oops/instanceKlass.hpp"
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#include "oops/instanceOop.hpp"
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#include "oops/klassVtable.hpp"
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#include "oops/method.hpp"
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#include "oops/objArrayOop.hpp"
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#include "oops/oop.inline.hpp"
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#include "oops/symbol.hpp"
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#include "prims/jvmtiExport.hpp"
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#include "runtime/deoptimization.hpp"
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#include "runtime/flags/flagSetting.hpp"
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#include "runtime/handles.inline.hpp"
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#include "runtime/init.hpp"
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#include "runtime/interfaceSupport.inline.hpp"
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#include "runtime/java.hpp"
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#include "runtime/sharedRuntime.hpp"
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#include "runtime/statSampler.hpp"
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#include "runtime/stubRoutines.hpp"
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#include "runtime/sweeper.hpp"
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#include "runtime/task.hpp"
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#include "runtime/thread.inline.hpp"
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#include "runtime/timer.hpp"
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#include "runtime/vmOperations.hpp"
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#include "runtime/vmThread.hpp"
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#include "runtime/vm_version.hpp"
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#include "services/memTracker.hpp"
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#include "utilities/dtrace.hpp"
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#include "utilities/globalDefinitions.hpp"
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#include "utilities/macros.hpp"
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#include "utilities/vmError.hpp"
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#ifdef COMPILER1
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#include "c1/c1_Compiler.hpp"
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#include "c1/c1_Runtime1.hpp"
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#endif
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#ifdef COMPILER2
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#include "code/compiledIC.hpp"
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#include "opto/compile.hpp"
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#include "opto/indexSet.hpp"
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#include "opto/runtime.hpp"
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#endif
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#if INCLUDE_JFR
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#include "jfr/jfr.hpp"
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#endif
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GrowableArray<Method*>* collected_profiled_methods;
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int compare_methods(Method** a, Method** b) {
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// compiled_invocation_count() returns int64_t, forcing the entire expression
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// to be evaluated as int64_t. Overflow is not an issue.
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int64_t diff = (((*b)->invocation_count() + (*b)->compiled_invocation_count())
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- ((*a)->invocation_count() + (*a)->compiled_invocation_count()));
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return (diff < 0) ? -1 : (diff > 0) ? 1 : 0;
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}
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void collect_profiled_methods(Method* m) {
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Thread* thread = Thread::current();
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methodHandle mh(thread, m);
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if ((m->method_data() != NULL) &&
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(PrintMethodData || CompilerOracle::should_print(mh))) {
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collected_profiled_methods->push(m);
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}
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}
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void print_method_profiling_data() {
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if (ProfileInterpreter COMPILER1_PRESENT(|| C1UpdateMethodData) &&
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(PrintMethodData || CompilerOracle::should_print_methods())) {
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ResourceMark rm;
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collected_profiled_methods = new GrowableArray<Method*>(1024);
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SystemDictionary::methods_do(collect_profiled_methods);
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collected_profiled_methods->sort(&compare_methods);
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int count = collected_profiled_methods->length();
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int total_size = 0;
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if (count > 0) {
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for (int index = 0; index < count; index++) {
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Method* m = collected_profiled_methods->at(index);
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ttyLocker ttyl;
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tty->print_cr("------------------------------------------------------------------------");
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m->print_invocation_count();
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tty->print_cr(" mdo size: %d bytes", m->method_data()->size_in_bytes());
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tty->cr();
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// Dump data on parameters if any
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if (m->method_data() != NULL && m->method_data()->parameters_type_data() != NULL) {
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tty->fill_to(2);
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m->method_data()->parameters_type_data()->print_data_on(tty);
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}
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m->print_codes();
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total_size += m->method_data()->size_in_bytes();
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}
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tty->print_cr("------------------------------------------------------------------------");
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tty->print_cr("Total MDO size: %d bytes", total_size);
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}
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}
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}
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#ifndef PRODUCT
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// Statistics printing (method invocation histogram)
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GrowableArray<Method*>* collected_invoked_methods;
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void collect_invoked_methods(Method* m) {
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if (m->invocation_count() + m->compiled_invocation_count() >= 1) {
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collected_invoked_methods->push(m);
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}
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}
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// Invocation count accumulators should be unsigned long to shift the
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// overflow border. Longer-running workloads tend to create invocation
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// counts which already overflow 32-bit counters for individual methods.
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void print_method_invocation_histogram() {
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ResourceMark rm;
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collected_invoked_methods = new GrowableArray<Method*>(1024);
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SystemDictionary::methods_do(collect_invoked_methods);
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collected_invoked_methods->sort(&compare_methods);
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//
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tty->cr();
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tty->print_cr("Histogram Over Method Invocation Counters (cutoff = " INTX_FORMAT "):", MethodHistogramCutoff);
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tty->cr();
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tty->print_cr("____Count_(I+C)____Method________________________Module_________________");
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uint64_t total = 0,
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int_total = 0,
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comp_total = 0,
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special_total= 0,
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static_total = 0,
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final_total = 0,
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synch_total = 0,
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native_total = 0,
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access_total = 0;
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for (int index = 0; index < collected_invoked_methods->length(); index++) {
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// Counter values returned from getter methods are signed int.
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// To shift the overflow border by a factor of two, we interpret
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// them here as unsigned long. A counter can't be negative anyway.
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Method* m = collected_invoked_methods->at(index);
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uint64_t iic = (uint64_t)m->invocation_count();
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uint64_t cic = (uint64_t)m->compiled_invocation_count();
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if ((iic + cic) >= (uint64_t)MethodHistogramCutoff) m->print_invocation_count();
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int_total += iic;
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comp_total += cic;
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if (m->is_final()) final_total += iic + cic;
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if (m->is_static()) static_total += iic + cic;
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if (m->is_synchronized()) synch_total += iic + cic;
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if (m->is_native()) native_total += iic + cic;
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if (m->is_accessor()) access_total += iic + cic;
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}
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tty->cr();
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total = int_total + comp_total;
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special_total = final_total + static_total +synch_total + native_total + access_total;
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tty->print_cr("Invocations summary for %d methods:", collected_invoked_methods->length());
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tty->print_cr("\t" UINT64_FORMAT_W(12) " (100%%) total", total);
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tty->print_cr("\t" UINT64_FORMAT_W(12) " (%4.1f%%) |- interpreted", int_total, 100.0 * int_total / total);
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tty->print_cr("\t" UINT64_FORMAT_W(12) " (%4.1f%%) |- compiled", comp_total, 100.0 * comp_total / total);
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tty->print_cr("\t" UINT64_FORMAT_W(12) " (%4.1f%%) |- special methods (interpreted and compiled)",
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special_total, 100.0 * special_total/ total);
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tty->print_cr("\t" UINT64_FORMAT_W(12) " (%4.1f%%) |- synchronized",synch_total, 100.0 * synch_total / total);
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tty->print_cr("\t" UINT64_FORMAT_W(12) " (%4.1f%%) |- final", final_total, 100.0 * final_total / total);
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tty->print_cr("\t" UINT64_FORMAT_W(12) " (%4.1f%%) |- static", static_total, 100.0 * static_total / total);
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tty->print_cr("\t" UINT64_FORMAT_W(12) " (%4.1f%%) |- native", native_total, 100.0 * native_total / total);
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tty->print_cr("\t" UINT64_FORMAT_W(12) " (%4.1f%%) |- accessor", access_total, 100.0 * access_total / total);
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tty->cr();
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SharedRuntime::print_call_statistics(comp_total);
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}
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void print_bytecode_count() {
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if (CountBytecodes || TraceBytecodes || StopInterpreterAt) {
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tty->print_cr("[BytecodeCounter::counter_value = %d]", BytecodeCounter::counter_value());
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}
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}
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// General statistics printing (profiling ...)
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void print_statistics() {
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if (CITime) {
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CompileBroker::print_times();
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}
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#ifdef COMPILER1
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if ((PrintC1Statistics || LogVMOutput || LogCompilation) && UseCompiler) {
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FlagSetting fs(DisplayVMOutput, DisplayVMOutput && PrintC1Statistics);
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Runtime1::print_statistics();
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SharedRuntime::print_statistics();
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}
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#endif /* COMPILER1 */
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#ifdef COMPILER2
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if ((PrintOptoStatistics || LogVMOutput || LogCompilation) && UseCompiler) {
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FlagSetting fs(DisplayVMOutput, DisplayVMOutput && PrintOptoStatistics);
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Compile::print_statistics();
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Deoptimization::print_statistics();
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#ifndef COMPILER1
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SharedRuntime::print_statistics();
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#endif //COMPILER1
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os::print_statistics();
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}
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if (PrintLockStatistics || PrintPreciseRTMLockingStatistics) {
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OptoRuntime::print_named_counters();
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}
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#ifdef ASSERT
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if (CollectIndexSetStatistics) {
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IndexSet::print_statistics();
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}
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#endif // ASSERT
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#else // COMPILER2
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#if INCLUDE_JVMCI
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#ifndef COMPILER1
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if ((TraceDeoptimization || LogVMOutput || LogCompilation) && UseCompiler) {
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FlagSetting fs(DisplayVMOutput, DisplayVMOutput && TraceDeoptimization);
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Deoptimization::print_statistics();
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SharedRuntime::print_statistics();
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}
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#endif // COMPILER1
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#endif // INCLUDE_JVMCI
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#endif // COMPILER2
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if (PrintNMethodStatistics) {
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nmethod::print_statistics();
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}
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if (CountCompiledCalls) {
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print_method_invocation_histogram();
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}
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print_method_profiling_data();
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if (TimeOopMap) {
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GenerateOopMap::print_time();
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}
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if (PrintSymbolTableSizeHistogram) {
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SymbolTable::print_histogram();
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}
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if (CountBytecodes || TraceBytecodes || StopInterpreterAt) {
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BytecodeCounter::print();
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}
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if (PrintBytecodePairHistogram) {
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BytecodePairHistogram::print();
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}
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if (PrintCodeCache) {
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MutexLocker mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
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CodeCache::print();
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}
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// CodeHeap State Analytics.
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// Does also call NMethodSweeper::print(tty)
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if (PrintCodeHeapAnalytics) {
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CompileBroker::print_heapinfo(NULL, "all", 4096); // details
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} else if (PrintMethodFlushingStatistics) {
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NMethodSweeper::print(tty);
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}
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if (PrintCodeCache2) {
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MutexLocker mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
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CodeCache::print_internals();
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}
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if (VerifyOops && Verbose) {
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tty->print_cr("+VerifyOops count: %d", StubRoutines::verify_oop_count());
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}
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print_bytecode_count();
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if (PrintSystemDictionaryAtExit) {
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ResourceMark rm;
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MutexLocker mcld(ClassLoaderDataGraph_lock);
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SystemDictionary::print();
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}
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if (PrintClassLoaderDataGraphAtExit) {
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ResourceMark rm;
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MutexLocker mcld(ClassLoaderDataGraph_lock);
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ClassLoaderDataGraph::print();
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}
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if (LogTouchedMethods && PrintTouchedMethodsAtExit) {
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Method::print_touched_methods(tty);
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}
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// Native memory tracking data
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if (PrintNMTStatistics) {
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MemTracker::final_report(tty);
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}
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if (PrintMetaspaceStatisticsAtExit) {
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MetaspaceUtils::print_basic_report(tty, 0);
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}
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ThreadsSMRSupport::log_statistics();
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}
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#else // PRODUCT MODE STATISTICS
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void print_statistics() {
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if (PrintMethodData) {
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print_method_profiling_data();
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}
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if (CITime) {
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CompileBroker::print_times();
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}
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#ifdef COMPILER2_OR_JVMCI
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if ((LogVMOutput || LogCompilation) && UseCompiler) {
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// Only print the statistics to the log file
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FlagSetting fs(DisplayVMOutput, false);
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Deoptimization::print_statistics();
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}
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#endif /* COMPILER2 || INCLUDE_JVMCI */
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if (PrintCodeCache) {
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MutexLocker mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
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CodeCache::print();
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}
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// CodeHeap State Analytics.
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// Does also call NMethodSweeper::print(tty)
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if (PrintCodeHeapAnalytics) {
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CompileBroker::print_heapinfo(NULL, "all", 4096); // details
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} else if (PrintMethodFlushingStatistics) {
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NMethodSweeper::print(tty);
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}
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#ifdef COMPILER2
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if (PrintPreciseRTMLockingStatistics) {
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OptoRuntime::print_named_counters();
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}
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#endif
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// Native memory tracking data
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if (PrintNMTStatistics) {
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MemTracker::final_report(tty);
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}
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if (PrintMetaspaceStatisticsAtExit) {
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MetaspaceUtils::print_basic_report(tty, 0);
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}
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if (LogTouchedMethods && PrintTouchedMethodsAtExit) {
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Method::print_touched_methods(tty);
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}
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ThreadsSMRSupport::log_statistics();
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}
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#endif
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// Note: before_exit() can be executed only once, if more than one threads
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// are trying to shutdown the VM at the same time, only one thread
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// can run before_exit() and all other threads must wait.
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void before_exit(JavaThread* thread) {
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#define BEFORE_EXIT_NOT_RUN 0
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#define BEFORE_EXIT_RUNNING 1
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#define BEFORE_EXIT_DONE 2
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static jint volatile _before_exit_status = BEFORE_EXIT_NOT_RUN;
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// Note: don't use a Mutex to guard the entire before_exit(), as
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// JVMTI post_thread_end_event and post_vm_death_event will run native code.
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// A CAS or OSMutex would work just fine but then we need to manipulate
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// thread state for Safepoint. Here we use Monitor wait() and notify_all()
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// for synchronization.
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{ MonitorLocker ml(BeforeExit_lock);
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switch (_before_exit_status) {
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case BEFORE_EXIT_NOT_RUN:
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_before_exit_status = BEFORE_EXIT_RUNNING;
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break;
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case BEFORE_EXIT_RUNNING:
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while (_before_exit_status == BEFORE_EXIT_RUNNING) {
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ml.wait();
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}
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assert(_before_exit_status == BEFORE_EXIT_DONE, "invalid state");
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return;
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case BEFORE_EXIT_DONE:
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// need block to avoid SS compiler bug
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{
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return;
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}
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}
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}
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#if INCLUDE_JVMCI
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if (EnableJVMCI) {
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JVMCI::shutdown();
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}
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#endif
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// Hang forever on exit if we're reporting an error.
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if (ShowMessageBoxOnError && VMError::is_error_reported()) {
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os::infinite_sleep();
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}
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EventThreadEnd event;
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if (event.should_commit()) {
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event.set_thread(JFR_THREAD_ID(thread));
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event.commit();
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}
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JFR_ONLY(Jfr::on_vm_shutdown();)
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// Stop the WatcherThread. We do this before disenrolling various
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// PeriodicTasks to reduce the likelihood of races.
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if (PeriodicTask::num_tasks() > 0) {
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WatcherThread::stop();
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}
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// shut down the StatSampler task
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StatSampler::disengage();
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StatSampler::destroy();
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// Shut down string deduplication if running.
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if (StringDedup::is_enabled()) {
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StringDedup::stop();
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}
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// Stop concurrent GC threads
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Universe::heap()->stop();
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// Print GC/heap related information.
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Log(gc, heap, exit) log;
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if (log.is_info()) {
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ResourceMark rm;
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LogStream ls_info(log.info());
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Universe::print_on(&ls_info);
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if (log.is_trace()) {
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LogStream ls_trace(log.trace());
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MutexLocker mcld(ClassLoaderDataGraph_lock);
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ClassLoaderDataGraph::print_on(&ls_trace);
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}
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}
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if (PrintBytecodeHistogram) {
|
|
BytecodeHistogram::print();
|
|
}
|
|
|
|
#ifdef LINUX
|
|
if (DumpPerfMapAtExit) {
|
|
CodeCache::write_perf_map();
|
|
}
|
|
#endif
|
|
|
|
if (JvmtiExport::should_post_thread_life()) {
|
|
JvmtiExport::post_thread_end(thread);
|
|
}
|
|
|
|
// Always call even when there are not JVMTI environments yet, since environments
|
|
// may be attached late and JVMTI must track phases of VM execution
|
|
JvmtiExport::post_vm_death();
|
|
Threads::shutdown_vm_agents();
|
|
|
|
// Terminate the signal thread
|
|
// Note: we don't wait until it actually dies.
|
|
os::terminate_signal_thread();
|
|
|
|
#if INCLUDE_CDS
|
|
if (DynamicDumpSharedSpaces) {
|
|
ExceptionMark em(thread);
|
|
DynamicArchive::dump(thread);
|
|
if (thread->has_pending_exception()) {
|
|
ResourceMark rm(thread);
|
|
oop pending_exception = thread->pending_exception();
|
|
log_error(cds)("ArchiveClassesAtExit has failed %s: %s", pending_exception->klass()->external_name(),
|
|
java_lang_String::as_utf8_string(java_lang_Throwable::message(pending_exception)));
|
|
thread->clear_pending_exception();
|
|
}
|
|
}
|
|
#endif
|
|
|
|
print_statistics();
|
|
Universe::heap()->print_tracing_info();
|
|
|
|
{ MutexLocker ml(BeforeExit_lock);
|
|
_before_exit_status = BEFORE_EXIT_DONE;
|
|
BeforeExit_lock->notify_all();
|
|
}
|
|
|
|
if (VerifyStringTableAtExit) {
|
|
size_t fail_cnt = StringTable::verify_and_compare_entries();
|
|
if (fail_cnt != 0) {
|
|
tty->print_cr("ERROR: fail_cnt=" SIZE_FORMAT, fail_cnt);
|
|
guarantee(fail_cnt == 0, "unexpected StringTable verification failures");
|
|
}
|
|
}
|
|
|
|
#undef BEFORE_EXIT_NOT_RUN
|
|
#undef BEFORE_EXIT_RUNNING
|
|
#undef BEFORE_EXIT_DONE
|
|
}
|
|
|
|
void vm_exit(int code) {
|
|
Thread* thread =
|
|
ThreadLocalStorage::is_initialized() ? Thread::current_or_null() : NULL;
|
|
if (thread == NULL) {
|
|
// very early initialization failure -- just exit
|
|
vm_direct_exit(code);
|
|
}
|
|
|
|
// We'd like to add an entry to the XML log to show that the VM is
|
|
// terminating, but we can't safely do that here. The logic to make
|
|
// XML termination logging safe is tied to the termination of the
|
|
// VMThread, and it doesn't terminate on this exit path. See 8222534.
|
|
|
|
if (VMThread::vm_thread() != NULL) {
|
|
if (thread->is_Java_thread()) {
|
|
// We must be "in_vm" for the code below to work correctly.
|
|
// Historically there must have been some exit path for which
|
|
// that was not the case and so we set it explicitly - even
|
|
// though we no longer know what that path may be.
|
|
JavaThread::cast(thread)->set_thread_state(_thread_in_vm);
|
|
}
|
|
|
|
// Fire off a VM_Exit operation to bring VM to a safepoint and exit
|
|
VM_Exit op(code);
|
|
|
|
// 4945125 The vm thread comes to a safepoint during exit.
|
|
// GC vm_operations can get caught at the safepoint, and the
|
|
// heap is unparseable if they are caught. Grab the Heap_lock
|
|
// to prevent this. The GC vm_operations will not be able to
|
|
// queue until after we release it, but we never do that as we
|
|
// are terminating the VM process.
|
|
MutexLocker ml(Heap_lock);
|
|
|
|
VMThread::execute(&op);
|
|
// should never reach here; but in case something wrong with VM Thread.
|
|
vm_direct_exit(code);
|
|
} else {
|
|
// VM thread is gone, just exit
|
|
vm_direct_exit(code);
|
|
}
|
|
ShouldNotReachHere();
|
|
}
|
|
|
|
void notify_vm_shutdown() {
|
|
// For now, just a dtrace probe.
|
|
HOTSPOT_VM_SHUTDOWN();
|
|
}
|
|
|
|
void vm_direct_exit(int code) {
|
|
notify_vm_shutdown();
|
|
os::wait_for_keypress_at_exit();
|
|
os::exit(code);
|
|
}
|
|
|
|
void vm_direct_exit(int code, const char* message) {
|
|
if (message != nullptr) {
|
|
tty->print_cr("%s", message);
|
|
}
|
|
vm_direct_exit(code);
|
|
}
|
|
|
|
void vm_perform_shutdown_actions() {
|
|
if (is_init_completed()) {
|
|
Thread* thread = Thread::current_or_null();
|
|
if (thread != NULL && thread->is_Java_thread()) {
|
|
// We are leaving the VM, set state to native (in case any OS exit
|
|
// handlers call back to the VM)
|
|
JavaThread* jt = JavaThread::cast(thread);
|
|
// Must always be walkable or have no last_Java_frame when in
|
|
// thread_in_native
|
|
jt->frame_anchor()->make_walkable(jt);
|
|
jt->set_thread_state(_thread_in_native);
|
|
}
|
|
}
|
|
notify_vm_shutdown();
|
|
}
|
|
|
|
void vm_shutdown()
|
|
{
|
|
vm_perform_shutdown_actions();
|
|
os::wait_for_keypress_at_exit();
|
|
os::shutdown();
|
|
}
|
|
|
|
void vm_abort(bool dump_core) {
|
|
vm_perform_shutdown_actions();
|
|
os::wait_for_keypress_at_exit();
|
|
|
|
// Flush stdout and stderr before abort.
|
|
fflush(stdout);
|
|
fflush(stderr);
|
|
|
|
os::abort(dump_core);
|
|
ShouldNotReachHere();
|
|
}
|
|
|
|
void vm_notify_during_cds_dumping(const char* error, const char* message) {
|
|
if (error != NULL) {
|
|
tty->print_cr("Error occurred during CDS dumping");
|
|
tty->print("%s", error);
|
|
if (message != NULL) {
|
|
tty->print_cr(": %s", message);
|
|
}
|
|
else {
|
|
tty->cr();
|
|
}
|
|
}
|
|
}
|
|
|
|
void vm_exit_during_cds_dumping(const char* error, const char* message) {
|
|
vm_notify_during_cds_dumping(error, message);
|
|
|
|
// Failure during CDS dumping, we don't want to dump core
|
|
vm_abort(false);
|
|
}
|
|
|
|
void vm_notify_during_shutdown(const char* error, const char* message) {
|
|
if (error != NULL) {
|
|
tty->print_cr("Error occurred during initialization of VM");
|
|
tty->print("%s", error);
|
|
if (message != NULL) {
|
|
tty->print_cr(": %s", message);
|
|
}
|
|
else {
|
|
tty->cr();
|
|
}
|
|
}
|
|
if (ShowMessageBoxOnError && WizardMode) {
|
|
fatal("Error occurred during initialization of VM");
|
|
}
|
|
}
|
|
|
|
void vm_exit_during_initialization() {
|
|
vm_notify_during_shutdown(NULL, NULL);
|
|
|
|
// Failure during initialization, we don't want to dump core
|
|
vm_abort(false);
|
|
}
|
|
|
|
void vm_exit_during_initialization(Handle exception) {
|
|
tty->print_cr("Error occurred during initialization of VM");
|
|
// If there are exceptions on this thread it must be cleared
|
|
// first and here. Any future calls to EXCEPTION_MARK requires
|
|
// that no pending exceptions exist.
|
|
JavaThread* THREAD = JavaThread::current(); // can't be NULL
|
|
if (HAS_PENDING_EXCEPTION) {
|
|
CLEAR_PENDING_EXCEPTION;
|
|
}
|
|
java_lang_Throwable::print_stack_trace(exception, tty);
|
|
tty->cr();
|
|
vm_notify_during_shutdown(NULL, NULL);
|
|
|
|
// Failure during initialization, we don't want to dump core
|
|
vm_abort(false);
|
|
}
|
|
|
|
void vm_exit_during_initialization(Symbol* ex, const char* message) {
|
|
ResourceMark rm;
|
|
vm_notify_during_shutdown(ex->as_C_string(), message);
|
|
|
|
// Failure during initialization, we don't want to dump core
|
|
vm_abort(false);
|
|
}
|
|
|
|
void vm_exit_during_initialization(const char* error, const char* message) {
|
|
vm_notify_during_shutdown(error, message);
|
|
|
|
// Failure during initialization, we don't want to dump core
|
|
vm_abort(false);
|
|
}
|
|
|
|
void vm_shutdown_during_initialization(const char* error, const char* message) {
|
|
vm_notify_during_shutdown(error, message);
|
|
vm_shutdown();
|
|
}
|
|
|
|
JDK_Version JDK_Version::_current;
|
|
const char* JDK_Version::_java_version;
|
|
const char* JDK_Version::_runtime_name;
|
|
const char* JDK_Version::_runtime_version;
|
|
const char* JDK_Version::_runtime_vendor_version;
|
|
const char* JDK_Version::_runtime_vendor_vm_bug_url;
|
|
|
|
void JDK_Version::initialize() {
|
|
assert(!_current.is_valid(), "Don't initialize twice");
|
|
|
|
int major = VM_Version::vm_major_version();
|
|
int minor = VM_Version::vm_minor_version();
|
|
int security = VM_Version::vm_security_version();
|
|
int build = VM_Version::vm_build_number();
|
|
int patch = VM_Version::vm_patch_version();
|
|
_current = JDK_Version(major, minor, security, patch, build);
|
|
}
|
|
|
|
void JDK_Version_init() {
|
|
JDK_Version::initialize();
|
|
}
|
|
|
|
static int64_t encode_jdk_version(const JDK_Version& v) {
|
|
return
|
|
((int64_t)v.major_version() << (BitsPerByte * 4)) |
|
|
((int64_t)v.minor_version() << (BitsPerByte * 3)) |
|
|
((int64_t)v.security_version() << (BitsPerByte * 2)) |
|
|
((int64_t)v.patch_version() << (BitsPerByte * 1)) |
|
|
((int64_t)v.build_number() << (BitsPerByte * 0));
|
|
}
|
|
|
|
int JDK_Version::compare(const JDK_Version& other) const {
|
|
assert(is_valid() && other.is_valid(), "Invalid version (uninitialized?)");
|
|
uint64_t e = encode_jdk_version(*this);
|
|
uint64_t o = encode_jdk_version(other);
|
|
return (e > o) ? 1 : ((e == o) ? 0 : -1);
|
|
}
|
|
|
|
/* See JEP 223 */
|
|
void JDK_Version::to_string(char* buffer, size_t buflen) const {
|
|
assert(buffer && buflen > 0, "call with useful buffer");
|
|
size_t index = 0;
|
|
|
|
if (!is_valid()) {
|
|
jio_snprintf(buffer, buflen, "%s", "(uninitialized)");
|
|
} else {
|
|
int rc = jio_snprintf(
|
|
&buffer[index], buflen - index, "%d.%d", _major, _minor);
|
|
if (rc == -1) return;
|
|
index += rc;
|
|
if (_patch > 0) {
|
|
rc = jio_snprintf(&buffer[index], buflen - index, ".%d.%d", _security, _patch);
|
|
if (rc == -1) return;
|
|
index += rc;
|
|
} else if (_security > 0) {
|
|
rc = jio_snprintf(&buffer[index], buflen - index, ".%d", _security);
|
|
if (rc == -1) return;
|
|
index += rc;
|
|
}
|
|
if (_build > 0) {
|
|
rc = jio_snprintf(&buffer[index], buflen - index, "+%d", _build);
|
|
if (rc == -1) return;
|
|
index += rc;
|
|
}
|
|
}
|
|
}
|