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https://github.com/openjdk/jdk.git
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412 lines
16 KiB
C++
412 lines
16 KiB
C++
/*
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* Copyright (c) 1997, 2023, Oracle and/or its affiliates. All rights reserved.
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* Copyright (c) 2021, Azul Systems, Inc. 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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#ifndef SHARE_RUNTIME_INTERFACESUPPORT_INLINE_HPP
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#define SHARE_RUNTIME_INTERFACESUPPORT_INLINE_HPP
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// No interfaceSupport.hpp
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#include "gc/shared/gc_globals.hpp"
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#include "runtime/globals.hpp"
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#include "runtime/handles.inline.hpp"
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#include "runtime/javaThread.inline.hpp"
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#include "runtime/mutexLocker.hpp"
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#include "runtime/orderAccess.hpp"
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#include "runtime/os.hpp"
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#include "runtime/safepointMechanism.inline.hpp"
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#include "runtime/safepointVerifiers.hpp"
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#include "runtime/threadWXSetters.inline.hpp"
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#include "runtime/vmOperations.hpp"
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#include "utilities/globalDefinitions.hpp"
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#include "utilities/macros.hpp"
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#include "utilities/preserveException.hpp"
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// Wrapper for all entry points to the virtual machine.
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// InterfaceSupport provides functionality used by the VM_LEAF_BASE and
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// VM_ENTRY_BASE macros. These macros are used to guard entry points into
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// the VM and perform checks upon leave of the VM.
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class InterfaceSupport: AllStatic {
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# ifdef ASSERT
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public:
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static unsigned int _scavenge_alot_counter;
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static unsigned int _fullgc_alot_counter;
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static intx _fullgc_alot_invocation;
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// Helper methods used to implement +ScavengeALot and +FullGCALot
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static void check_gc_alot() { if (ScavengeALot || FullGCALot) gc_alot(); }
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static void gc_alot();
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static void walk_stack_from(vframe* start_vf);
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static void walk_stack();
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static void zombieAll();
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static void deoptimizeAll();
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static void verify_stack();
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static void verify_last_frame();
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# endif
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};
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// Basic class for all thread transition classes.
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class ThreadStateTransition : public StackObj {
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protected:
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JavaThread* _thread;
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public:
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ThreadStateTransition(JavaThread *thread) : _thread(thread) {
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assert(thread != nullptr, "must be active Java thread");
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assert(thread == Thread::current(), "must be current thread");
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}
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static inline void transition_from_java(JavaThread *thread, JavaThreadState to) {
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assert(thread->thread_state() == _thread_in_Java, "coming from wrong thread state");
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assert(to == _thread_in_vm || to == _thread_in_native, "invalid transition");
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thread->set_thread_state(to);
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}
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// We never install asynchronous exceptions when coming (back) in to the runtime
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// from native code because the runtime is not set up to handle exceptions floating
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// around at arbitrary points.
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static inline void transition_from_native(JavaThread *thread, JavaThreadState to, bool check_asyncs = true) {
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assert(thread->thread_state() == _thread_in_native, "coming from wrong thread state");
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assert(to == _thread_in_vm || to == _thread_in_Java, "invalid transition");
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assert(!thread->has_last_Java_frame() || thread->frame_anchor()->walkable(), "Unwalkable stack in native transition");
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if (!UseSystemMemoryBarrier) {
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thread->set_thread_state_fence(_thread_in_vm);
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} else {
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thread->set_thread_state(_thread_in_vm);
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}
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SafepointMechanism::process_if_requested_with_exit_check(thread, to != _thread_in_Java ? false : check_asyncs);
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thread->set_thread_state(to);
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}
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static inline void transition_from_vm(JavaThread *thread, JavaThreadState to, bool check_asyncs = true) {
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assert(thread->thread_state() == _thread_in_vm, "coming from wrong thread state");
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if (to == _thread_in_Java) {
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SafepointMechanism::process_if_requested_with_exit_check(thread, check_asyncs);
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thread->set_thread_state(to);
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} else {
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assert(to == _thread_in_native || to == _thread_blocked, "invalid transition");
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// Check NoSafepointVerifier. This also clears unhandled oops if CheckUnhandledOops is used.
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thread->check_possible_safepoint();
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// Once we are in native/blocked vm expects stack to be walkable
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thread->frame_anchor()->make_walkable();
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OrderAccess::storestore(); // Keep thread_state change and make_walkable() separate.
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thread->set_thread_state(to);
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}
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}
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};
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class ThreadInVMfromJava : public ThreadStateTransition {
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bool _check_asyncs;
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public:
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ThreadInVMfromJava(JavaThread* thread, bool check_asyncs = true) : ThreadStateTransition(thread), _check_asyncs(check_asyncs) {
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transition_from_java(thread, _thread_in_vm);
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}
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~ThreadInVMfromJava() {
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if (_thread->stack_overflow_state()->stack_yellow_reserved_zone_disabled()) {
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_thread->stack_overflow_state()->enable_stack_yellow_reserved_zone();
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}
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// We prevent asynchronous exceptions from being installed on return to Java in situations
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// where we can't tolerate them. See bugs: 4324348, 4854693, 4998314, 5040492, 5050705.
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transition_from_vm(_thread, _thread_in_Java, _check_asyncs);
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}
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};
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class ThreadInVMfromUnknown {
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JavaThread* _thread;
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public:
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ThreadInVMfromUnknown() : _thread(nullptr) {
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Thread* t = Thread::current();
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if (t->is_Java_thread()) {
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JavaThread* t2 = JavaThread::cast(t);
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if (t2->thread_state() == _thread_in_native) {
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_thread = t2;
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ThreadStateTransition::transition_from_native(t2, _thread_in_vm);
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// Used to have a HandleMarkCleaner but that is dangerous as
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// it could free a handle in our (indirect, nested) caller.
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// We expect any handles will be short lived and figure we
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// don't need an actual HandleMark.
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}
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}
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}
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~ThreadInVMfromUnknown() {
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if (_thread) {
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ThreadStateTransition::transition_from_vm(_thread, _thread_in_native);
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}
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}
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};
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class ThreadInVMfromNative : public ThreadStateTransition {
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ResetNoHandleMark __rnhm;
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public:
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ThreadInVMfromNative(JavaThread* thread) : ThreadStateTransition(thread) {
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transition_from_native(thread, _thread_in_vm);
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}
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~ThreadInVMfromNative() {
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// We cannot assert !_thread->owns_locks() since we have valid cases where
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// we call known native code using this wrapper holding locks.
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transition_from_vm(_thread, _thread_in_native);
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}
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};
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class ThreadToNativeFromVM : public ThreadStateTransition {
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public:
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ThreadToNativeFromVM(JavaThread *thread) : ThreadStateTransition(thread) {
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assert(!thread->owns_locks(), "must release all locks when leaving VM");
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transition_from_vm(thread, _thread_in_native);
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}
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~ThreadToNativeFromVM() {
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transition_from_native(_thread, _thread_in_vm);
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assert(!_thread->is_pending_jni_exception_check(), "Pending JNI Exception Check");
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// We don't need to clear_walkable because it will happen automagically when we return to java
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}
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};
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// Perform a transition to _thread_blocked and take a call-back to be executed before
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// SafepointMechanism::process_if_requested when returning to the VM. This allows us
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// to perform an "undo" action if we might block processing a safepoint/handshake operation
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// (such as thread suspension).
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template <typename PRE_PROC = void(JavaThread*)>
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class ThreadBlockInVMPreprocess : public ThreadStateTransition {
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private:
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PRE_PROC& _pr;
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bool _allow_suspend;
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public:
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ThreadBlockInVMPreprocess(JavaThread* thread, PRE_PROC& pr, bool allow_suspend = false)
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: ThreadStateTransition(thread), _pr(pr), _allow_suspend(allow_suspend) {
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transition_from_vm(thread, _thread_blocked);
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}
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~ThreadBlockInVMPreprocess() {
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assert(_thread->thread_state() == _thread_blocked, "coming from wrong thread state");
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// Change back to _thread_in_vm and ensure it is seen by the VM thread.
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_thread->set_thread_state_fence(_thread_in_vm);
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if (SafepointMechanism::should_process(_thread, _allow_suspend)) {
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_pr(_thread);
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SafepointMechanism::process_if_requested(_thread, _allow_suspend, false /* check_async_exception */);
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}
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}
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};
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class ThreadBlockInVM : public ThreadBlockInVMPreprocess<> {
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public:
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ThreadBlockInVM(JavaThread* thread, bool allow_suspend = false)
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: ThreadBlockInVMPreprocess(thread, emptyOp, allow_suspend) {}
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private:
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static void emptyOp(JavaThread* current) {}
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};
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// Debug class instantiated in JRT_ENTRY macro.
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// Can be used to verify properties on enter/exit of the VM.
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#ifdef ASSERT
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class VMEntryWrapper {
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public:
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VMEntryWrapper();
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~VMEntryWrapper();
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};
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class VMNativeEntryWrapper {
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public:
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VMNativeEntryWrapper();
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~VMNativeEntryWrapper();
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};
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#endif // ASSERT
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// LEAF routines do not lock, GC or throw exceptions
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// On macos/aarch64 we need to maintain the W^X state of the thread. So we
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// take WXWrite on the enter to VM from the "outside" world, so the rest of JVM
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// code can assume writing (but not executing) codecache is always possible
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// without preliminary actions.
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// JavaThread state should be changed only after taking WXWrite. The state
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// change may trigger a safepoint, that would need WXWrite to do bookkeeping
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// in the codecache.
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#define VM_LEAF_BASE(result_type, header) \
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debug_only(NoHandleMark __hm;) \
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os::verify_stack_alignment(); \
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/* begin of body */
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#define VM_ENTRY_BASE_FROM_LEAF(result_type, header, thread) \
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debug_only(ResetNoHandleMark __rnhm;) \
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HandleMarkCleaner __hm(thread); \
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JavaThread* THREAD = thread; /* For exception macros. */ \
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os::verify_stack_alignment(); \
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/* begin of body */
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// ENTRY routines may lock, GC and throw exceptions
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#define VM_ENTRY_BASE(result_type, header, thread) \
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HandleMarkCleaner __hm(thread); \
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JavaThread* THREAD = thread; /* For exception macros. */ \
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os::verify_stack_alignment(); \
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/* begin of body */
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#define JRT_ENTRY(result_type, header) \
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result_type header { \
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assert(current == JavaThread::current(), "Must be"); \
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MACOS_AARCH64_ONLY(ThreadWXEnable __wx(WXWrite, current)); \
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ThreadInVMfromJava __tiv(current); \
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VM_ENTRY_BASE(result_type, header, current) \
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debug_only(VMEntryWrapper __vew;)
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// JRT_LEAF currently can be called from either _thread_in_Java or
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// _thread_in_native mode.
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//
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// JRT_LEAF rules:
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// A JRT_LEAF method may not interfere with safepointing by
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// 1) acquiring or blocking on a Mutex or JavaLock - checked
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// 2) allocating heap memory - checked
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// 3) executing a VM operation - checked
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// 4) executing a system call (including malloc) that could block or grab a lock
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// 5) invoking GC
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// 6) reaching a safepoint
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// 7) running too long
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// Nor may any method it calls.
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#define JRT_LEAF(result_type, header) \
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result_type header { \
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VM_LEAF_BASE(result_type, header) \
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debug_only(NoSafepointVerifier __nsv;)
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#define JRT_ENTRY_NO_ASYNC(result_type, header) \
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result_type header { \
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assert(current == JavaThread::current(), "Must be"); \
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MACOS_AARCH64_ONLY(ThreadWXEnable __wx(WXWrite, current)); \
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ThreadInVMfromJava __tiv(current, false /* check asyncs */); \
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VM_ENTRY_BASE(result_type, header, current) \
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debug_only(VMEntryWrapper __vew;)
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// Same as JRT Entry but allows for return value after the safepoint
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// to get back into Java from the VM
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#define JRT_BLOCK_ENTRY(result_type, header) \
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result_type header { \
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assert(current == JavaThread::current(), "Must be"); \
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MACOS_AARCH64_ONLY(ThreadWXEnable __wx(WXWrite, current)); \
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HandleMarkCleaner __hm(current);
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#define JRT_BLOCK \
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{ \
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assert(current == JavaThread::current(), "Must be"); \
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ThreadInVMfromJava __tiv(current); \
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JavaThread* THREAD = current; /* For exception macros. */ \
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debug_only(VMEntryWrapper __vew;)
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#define JRT_BLOCK_NO_ASYNC \
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{ \
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assert(current == JavaThread::current(), "Must be"); \
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ThreadInVMfromJava __tiv(current, false /* check asyncs */); \
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JavaThread* THREAD = current; /* For exception macros. */ \
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debug_only(VMEntryWrapper __vew;)
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#define JRT_BLOCK_END }
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#define JRT_END }
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// Definitions for JNI
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//
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// As the JNIEnv can be passed from external native code we validate
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// it in debug builds, primarily for our own testing. In general JNI
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// does not attempt to detect programming errors and a bad JNIEnv may
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// not even be readable.
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#define JNI_ENTRY(result_type, header) \
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JNI_ENTRY_NO_PRESERVE(result_type, header) \
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WeakPreserveExceptionMark __wem(thread);
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#define JNI_ENTRY_NO_PRESERVE(result_type, header) \
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extern "C" { \
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result_type JNICALL header { \
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JavaThread* thread=JavaThread::thread_from_jni_environment(env); \
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assert(thread == Thread::current(), "JNIEnv is only valid in same thread"); \
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MACOS_AARCH64_ONLY(ThreadWXEnable __wx(WXWrite, thread)); \
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ThreadInVMfromNative __tiv(thread); \
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debug_only(VMNativeEntryWrapper __vew;) \
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VM_ENTRY_BASE(result_type, header, thread)
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#define JNI_LEAF(result_type, header) \
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extern "C" { \
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result_type JNICALL header { \
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JavaThread* thread=JavaThread::thread_from_jni_environment(env); \
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assert(thread == Thread::current(), "JNIEnv is only valid in same thread"); \
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VM_LEAF_BASE(result_type, header)
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// Close the routine and the extern "C"
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#define JNI_END } }
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// Definitions for JVM
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#define JVM_ENTRY(result_type, header) \
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extern "C" { \
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result_type JNICALL header { \
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JavaThread* thread=JavaThread::thread_from_jni_environment(env); \
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MACOS_AARCH64_ONLY(ThreadWXEnable __wx(WXWrite, thread)); \
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ThreadInVMfromNative __tiv(thread); \
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debug_only(VMNativeEntryWrapper __vew;) \
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VM_ENTRY_BASE(result_type, header, thread)
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#define JVM_ENTRY_NO_ENV(result_type, header) \
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extern "C" { \
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result_type JNICALL header { \
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JavaThread* thread = JavaThread::current(); \
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MACOS_AARCH64_ONLY(ThreadWXEnable __wx(WXWrite, thread)); \
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ThreadInVMfromNative __tiv(thread); \
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debug_only(VMNativeEntryWrapper __vew;) \
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VM_ENTRY_BASE(result_type, header, thread)
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#define JVM_LEAF(result_type, header) \
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extern "C" { \
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result_type JNICALL header { \
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VM_Exit::block_if_vm_exited(); \
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VM_LEAF_BASE(result_type, header)
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#define JVM_END } }
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#endif // SHARE_RUNTIME_INTERFACESUPPORT_INLINE_HPP
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