hotspot/src/share/vm/runtime/interfaceSupport.hpp
author duke
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/*
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 * Copyright 1997-2007 Sun Microsystems, 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 Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
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 * CA 95054 USA or visit www.sun.com if you need additional information or
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 * have any questions.
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 *
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 */
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// Wrapper for all entry points to the virtual machine.
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// The HandleMarkCleaner is a faster version of HandleMark.
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// It relies on the fact that there is a HandleMark further
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// down the stack (in JavaCalls::call_helper), and just resets
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// to the saved values in that HandleMark.
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class HandleMarkCleaner: public StackObj {
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 private:
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  Thread* _thread;
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 public:
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  HandleMarkCleaner(Thread* thread) {
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    _thread = thread;
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    _thread->last_handle_mark()->push();
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  }
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  ~HandleMarkCleaner() {
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    _thread->last_handle_mark()->pop_and_restore();
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  }
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 private:
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  inline void* operator new(size_t size, void* ptr) {
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    return ptr;
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  }
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};
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// InterfaceSupport provides functionality used by the __LEAF and __ENTRY
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// macros. These macros are used to guard entry points into the VM and
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// 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 long _scavenge_alot_counter;
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  static long _fullgc_alot_counter;
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  static long _number_of_calls;
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  static long _fullgc_alot_invocation;
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  // tracing
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  static void trace(const char* result_type, const char* header);
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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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# ifdef ENABLE_ZAP_DEAD_LOCALS
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  static void zap_dead_locals_old();
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# endif
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  static void zombieAll();
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  static void deoptimizeAll();
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  static void stress_derived_pointers();
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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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 public:
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  // OS dependent stuff
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  #include "incls/_interfaceSupport_pd.hpp.incl"
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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) {
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    _thread = thread;
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    assert(thread != NULL && thread->is_Java_thread(), "must be Java thread");
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  }
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  // Change threadstate in a manner, so safepoint can detect changes.
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  // Time-critical: called on exit from every runtime routine
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  static inline void transition(JavaThread *thread, JavaThreadState from, JavaThreadState to) {
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    assert(from != _thread_in_Java, "use transition_from_java");
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    assert(from != _thread_in_native, "use transition_from_native");
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    assert((from & 1) == 0 && (to & 1) == 0, "odd numbers are transitions states");
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    assert(thread->thread_state() == from, "coming from wrong thread state");
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    // Change to transition state (assumes total store ordering!  -Urs)
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    thread->set_thread_state((JavaThreadState)(from + 1));
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    // Make sure new state is seen by VM thread
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    if (os::is_MP()) {
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      if (UseMembar) {
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        // Force a fence between the write above and read below
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        OrderAccess::fence();
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      } else {
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        // store to serialize page so VM thread can do pseudo remote membar
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        os::write_memory_serialize_page(thread);
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      }
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    }
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    if (SafepointSynchronize::do_call_back()) {
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      SafepointSynchronize::block(thread);
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    }
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    thread->set_thread_state(to);
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    CHECK_UNHANDLED_OOPS_ONLY(thread->clear_unhandled_oops();)
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  }
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  // transition_and_fence must be used on any thread state transition
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  // where there might not be a Java call stub on the stack, in
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  // particular on Windows where the Structured Exception Handler is
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  // set up in the call stub. os::write_memory_serialize_page() can
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  // fault and we can't recover from it on Windows without a SEH in
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  // place.
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  static inline void transition_and_fence(JavaThread *thread, JavaThreadState from, JavaThreadState to) {
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    assert(thread->thread_state() == from, "coming from wrong thread state");
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    assert((from & 1) == 0 && (to & 1) == 0, "odd numbers are transitions states");
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    // Change to transition state (assumes total store ordering!  -Urs)
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    thread->set_thread_state((JavaThreadState)(from + 1));
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    // Make sure new state is seen by VM thread
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    if (os::is_MP()) {
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      if (UseMembar) {
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        // Force a fence between the write above and read below
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        OrderAccess::fence();
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      } else {
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        // Must use this rather than serialization page in particular on Windows
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        InterfaceSupport::serialize_memory(thread);
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      }
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    }
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    if (SafepointSynchronize::do_call_back()) {
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      SafepointSynchronize::block(thread);
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    }
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    thread->set_thread_state(to);
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    CHECK_UNHANDLED_OOPS_ONLY(thread->clear_unhandled_oops();)
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  }
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  // Same as above, but assumes from = _thread_in_Java. This is simpler, since we
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  // never block on entry to the VM. This will break the code, since e.g. preserve arguments
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  // have not been setup.
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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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    thread->set_thread_state(to);
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  }
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  static inline void transition_from_native(JavaThread *thread, JavaThreadState to) {
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    assert((to & 1) == 0, "odd numbers are transitions states");
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    assert(thread->thread_state() == _thread_in_native, "coming from wrong thread state");
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    // Change to transition state (assumes total store ordering!  -Urs)
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    thread->set_thread_state(_thread_in_native_trans);
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    // Make sure new state is seen by GC thread
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    if (os::is_MP()) {
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      if (UseMembar) {
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        // Force a fence between the write above and read below
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        OrderAccess::fence();
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      } else {
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        // Must use this rather than serialization page in particular on Windows
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        InterfaceSupport::serialize_memory(thread);
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      }
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    }
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    // We never install asynchronous exceptions when coming (back) in
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    // to the runtime from native code because the runtime is not set
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    // up to handle exceptions floating around at arbitrary points.
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    if (SafepointSynchronize::do_call_back() || thread->is_suspend_after_native()) {
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      JavaThread::check_safepoint_and_suspend_for_native_trans(thread);
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      // Clear unhandled oops anywhere where we could block, even if we don't.
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      CHECK_UNHANDLED_OOPS_ONLY(thread->clear_unhandled_oops();)
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    }
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    thread->set_thread_state(to);
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  }
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 protected:
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   void trans(JavaThreadState from, JavaThreadState to)  { transition(_thread, from, to); }
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   void trans_from_java(JavaThreadState to)              { transition_from_java(_thread, to); }
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   void trans_from_native(JavaThreadState to)            { transition_from_native(_thread, to); }
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   void trans_and_fence(JavaThreadState from, JavaThreadState to) { transition_and_fence(_thread, from, to); }
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};
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class ThreadInVMfromJava : public ThreadStateTransition {
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 public:
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  ThreadInVMfromJava(JavaThread* thread) : ThreadStateTransition(thread) {
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    trans_from_java(_thread_in_vm);
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  }
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  ~ThreadInVMfromJava()  {
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    trans(_thread_in_vm, _thread_in_Java);
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    // Check for pending. async. exceptions or suspends.
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    if (_thread->has_special_runtime_exit_condition()) _thread->handle_special_runtime_exit_condition();
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  }
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};
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class ThreadInVMfromUnknown {
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 private:
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  JavaThread* _thread;
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  ThreadInVMfromUnknown() : _thread(NULL) {
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    Thread* t = Thread::current();
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    if (t->is_Java_thread()) {
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      JavaThread* t2 = (JavaThread*) 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_and_fence(_thread, _thread_in_vm, _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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 public:
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  ThreadInVMfromNative(JavaThread* thread) : ThreadStateTransition(thread) {
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    trans_from_native(_thread_in_vm);
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  }
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  ~ThreadInVMfromNative() {
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    trans_and_fence(_thread_in_vm, _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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    // We are leaving the VM at this point and going directly to native code.
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    // Block, if we are in the middle of a safepoint synchronization.
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    assert(!thread->owns_locks(), "must release all locks when leaving VM");
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    thread->frame_anchor()->make_walkable(thread);
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    trans_and_fence(_thread_in_vm, _thread_in_native);
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    // Check for pending. async. exceptions or suspends.
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    if (_thread->has_special_runtime_exit_condition()) _thread->handle_special_runtime_exit_condition(false);
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  }
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  ~ThreadToNativeFromVM() {
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    trans_from_native(_thread_in_vm);
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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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class ThreadBlockInVM : public ThreadStateTransition {
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 public:
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  ThreadBlockInVM(JavaThread *thread)
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  : ThreadStateTransition(thread) {
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    // Once we are blocked vm expects stack to be walkable
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    thread->frame_anchor()->make_walkable(thread);
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    trans_and_fence(_thread_in_vm, _thread_blocked);
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  }
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  ~ThreadBlockInVM() {
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    trans_and_fence(_thread_blocked, _thread_in_vm);
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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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// This special transition class is only used to prevent asynchronous exceptions
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// from being installed on vm exit in situations where we can't tolerate them.
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// See bugs: 4324348, 4854693, 4998314, 5040492, 5050705.
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class ThreadInVMfromJavaNoAsyncException : public ThreadStateTransition {
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 public:
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  ThreadInVMfromJavaNoAsyncException(JavaThread* thread) : ThreadStateTransition(thread) {
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    trans_from_java(_thread_in_vm);
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  }
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  ~ThreadInVMfromJavaNoAsyncException()  {
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    trans(_thread_in_vm, _thread_in_Java);
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    // NOTE: We do not check for pending. async. exceptions.
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    // If we did and moved the pending async exception over into the
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    // pending exception field, we would need to deopt (currently C2
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    // only). However, to do so would require that we transition back
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    // to the _thread_in_vm state. Instead we postpone the handling of
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    // the async exception.
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    // Check for pending. suspends only.
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    if (_thread->has_special_runtime_exit_condition())
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      _thread->handle_special_runtime_exit_condition(false);
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  }
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};
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// Debug class instantiated in JRT_ENTRY and ITR_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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    if (VerifyLastFrame) {
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      InterfaceSupport::verify_last_frame();
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    }
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  }
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  ~VMEntryWrapper() {
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    InterfaceSupport::check_gc_alot();
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    if (WalkStackALot) {
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      InterfaceSupport::walk_stack();
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    }
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#ifdef ENABLE_ZAP_DEAD_LOCALS
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    if (ZapDeadLocalsOld) {
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      InterfaceSupport::zap_dead_locals_old();
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    }
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#endif
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#ifdef COMPILER2
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    // This option is not used by Compiler 1
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    if (StressDerivedPointers) {
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      InterfaceSupport::stress_derived_pointers();
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    }
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#endif
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    if (DeoptimizeALot || DeoptimizeRandom) {
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      InterfaceSupport::deoptimizeAll();
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    }
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    if (ZombieALot) {
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      InterfaceSupport::zombieAll();
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    }
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    // do verification AFTER potential deoptimization
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    if (VerifyStack) {
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      InterfaceSupport::verify_stack();
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    }
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  }
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};
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class VMNativeEntryWrapper {
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 public:
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  VMNativeEntryWrapper() {
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   358
    if (GCALotAtAllSafepoints) InterfaceSupport::check_gc_alot();
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  }
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  ~VMNativeEntryWrapper() {
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   362
    if (GCALotAtAllSafepoints) InterfaceSupport::check_gc_alot();
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  }
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};
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   365
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#endif
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// VM-internal runtime interface support
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#ifdef ASSERT
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class RuntimeHistogramElement : public HistogramElement {
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  public:
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   RuntimeHistogramElement(const char* name);
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};
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#define TRACE_CALL(result_type, header)                            \
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  InterfaceSupport::_number_of_calls++;                            \
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   380
  if (TraceRuntimeCalls)                                           \
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    InterfaceSupport::trace(#result_type, #header);                \
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   382
  if (CountRuntimeCalls) {                                         \
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   383
    static RuntimeHistogramElement* e = new RuntimeHistogramElement(#header); \
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   384
    if (e != NULL) e->increment_count();                           \
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  }
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#else
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   387
#define TRACE_CALL(result_type, header)                            \
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  /* do nothing */
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#endif
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// LEAF routines do not lock, GC or throw exceptions
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   393
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#define __LEAF(result_type, header)                                  \
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   395
  TRACE_CALL(result_type, header)                                    \
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   396
  debug_only(NoHandleMark __hm;)                                     \
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  /* begin of body */
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// ENTRY routines may lock, GC and throw exceptions
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   401
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   402
#define __ENTRY(result_type, header, thread)                         \
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   403
  TRACE_CALL(result_type, header)                                    \
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   404
  HandleMarkCleaner __hm(thread);                                    \
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   405
  Thread* THREAD = thread;                                           \
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  /* begin of body */
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   407
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   408
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// QUICK_ENTRY routines behave like ENTRY but without a handle mark
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   410
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   411
#define __QUICK_ENTRY(result_type, header, thread)                   \
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   412
  TRACE_CALL(result_type, header)                                    \
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   413
  debug_only(NoHandleMark __hm;)                                     \
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   414
  Thread* THREAD = thread;                                           \
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   415
  /* begin of body */
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   416
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   417
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   418
// Definitions for IRT (Interpreter Runtime)
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   419
// (thread is an argument passed in to all these routines)
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   420
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   421
#define IRT_ENTRY(result_type, header)                               \
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  result_type header {                                               \
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   423
    ThreadInVMfromJava __tiv(thread);                                \
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   424
    __ENTRY(result_type, header, thread)                             \
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   425
    debug_only(VMEntryWrapper __vew;)
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   426
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   427
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   428
#define IRT_LEAF(result_type, header)                                \
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   429
  result_type header {                                               \
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   430
    __LEAF(result_type, header)                                      \
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   431
    debug_only(No_Safepoint_Verifier __nspv(true);)
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   432
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   433
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   434
#define IRT_ENTRY_NO_ASYNC(result_type, header)                      \
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   435
  result_type header {                                               \
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   436
    ThreadInVMfromJavaNoAsyncException __tiv(thread);                \
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   437
    __ENTRY(result_type, header, thread)                             \
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   438
    debug_only(VMEntryWrapper __vew;)
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   439
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   440
// Another special case for nmethod_entry_point so the nmethod that the
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   441
// interpreter is about to branch to doesn't get flushed before as we
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   442
// branch to it's interpreter_entry_point.  Skip stress testing here too.
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   443
// Also we don't allow async exceptions because it is just too painful.
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   444
#define IRT_ENTRY_FOR_NMETHOD(result_type, header)                   \
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   445
  result_type header {                                               \
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   446
    nmethodLocker _nmlock(nm);                                       \
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   447
    ThreadInVMfromJavaNoAsyncException __tiv(thread);                                \
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   448
    __ENTRY(result_type, header, thread)
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   449
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   450
#define IRT_END }
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   451
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   452
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   453
// Definitions for JRT (Java (Compiler/Shared) Runtime)
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   454
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   455
#define JRT_ENTRY(result_type, header)                               \
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   456
  result_type header {                                               \
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   457
    ThreadInVMfromJava __tiv(thread);                                \
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   458
    __ENTRY(result_type, header, thread)                             \
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   459
    debug_only(VMEntryWrapper __vew;)
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   460
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   461
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   462
#define JRT_LEAF(result_type, header)                                \
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   463
  result_type header {                                               \
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   464
  __LEAF(result_type, header)                                        \
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   465
  debug_only(JRT_Leaf_Verifier __jlv;)
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   466
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   467
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   468
#define JRT_ENTRY_NO_ASYNC(result_type, header)                      \
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   469
  result_type header {                                               \
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   470
    ThreadInVMfromJavaNoAsyncException __tiv(thread);                \
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   471
    __ENTRY(result_type, header, thread)                             \
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   472
    debug_only(VMEntryWrapper __vew;)
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   473
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   474
// Same as JRT Entry but allows for return value after the safepoint
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   475
// to get back into Java from the VM
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   476
#define JRT_BLOCK_ENTRY(result_type, header)                         \
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   477
  result_type header {                                               \
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   478
    TRACE_CALL(result_type, header)                                  \
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   479
    HandleMarkCleaner __hm(thread);
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   480
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   481
#define JRT_BLOCK                                                    \
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   482
    {                                                                \
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   483
    ThreadInVMfromJava __tiv(thread);                                \
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   484
    Thread* THREAD = thread;                                         \
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   485
    debug_only(VMEntryWrapper __vew;)
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   486
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   487
#define JRT_BLOCK_END }
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   488
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   489
#define JRT_END }
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   490
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   491
// Definitions for JNI
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   492
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   493
#define JNI_ENTRY(result_type, header)                               \
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   494
    JNI_ENTRY_NO_PRESERVE(result_type, header)                       \
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   495
    WeakPreserveExceptionMark __wem(thread);
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   496
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   497
#define JNI_ENTRY_NO_PRESERVE(result_type, header)             \
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   498
extern "C" {                                                         \
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   499
  result_type JNICALL header {                                \
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   500
    JavaThread* thread=JavaThread::thread_from_jni_environment(env); \
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   501
    assert( !VerifyJNIEnvThread || (thread == Thread::current()), "JNIEnv is only valid in same thread"); \
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   502
    ThreadInVMfromNative __tiv(thread);                              \
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   503
    debug_only(VMNativeEntryWrapper __vew;)                          \
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   504
    __ENTRY(result_type, header, thread)
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   505
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   506
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   507
// Ensure that the VMNativeEntryWrapper constructor, which can cause
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   508
// a GC, is called outside the NoHandleMark (set via __QUICK_ENTRY).
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   509
#define JNI_QUICK_ENTRY(result_type, header)                         \
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   510
extern "C" {                                                         \
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   511
  result_type JNICALL header {                                \
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   512
    JavaThread* thread=JavaThread::thread_from_jni_environment(env); \
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   513
    assert( !VerifyJNIEnvThread || (thread == Thread::current()), "JNIEnv is only valid in same thread"); \
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   514
    ThreadInVMfromNative __tiv(thread);                              \
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   515
    debug_only(VMNativeEntryWrapper __vew;)                          \
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   516
    __QUICK_ENTRY(result_type, header, thread)
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   517
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diff changeset
   518
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   519
#define JNI_LEAF(result_type, header)                                \
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   520
extern "C" {                                                         \
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   521
  result_type JNICALL header {                                \
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diff changeset
   522
    JavaThread* thread=JavaThread::thread_from_jni_environment(env); \
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diff changeset
   523
    assert( !VerifyJNIEnvThread || (thread == Thread::current()), "JNIEnv is only valid in same thread"); \
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diff changeset
   524
    __LEAF(result_type, header)
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diff changeset
   525
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diff changeset
   526
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   527
// Close the routine and the extern "C"
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   528
#define JNI_END } }
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diff changeset
   529
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diff changeset
   530
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diff changeset
   531
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parents:
diff changeset
   532
// Definitions for JVM
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parents:
diff changeset
   533
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parents:
diff changeset
   534
#define JVM_ENTRY(result_type, header)                               \
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diff changeset
   535
extern "C" {                                                         \
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parents:
diff changeset
   536
  result_type JNICALL header {                                       \
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parents:
diff changeset
   537
    JavaThread* thread=JavaThread::thread_from_jni_environment(env); \
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parents:
diff changeset
   538
    ThreadInVMfromNative __tiv(thread);                              \
489c9b5090e2 Initial load
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parents:
diff changeset
   539
    debug_only(VMNativeEntryWrapper __vew;)                          \
489c9b5090e2 Initial load
duke
parents:
diff changeset
   540
    __ENTRY(result_type, header, thread)
489c9b5090e2 Initial load
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parents:
diff changeset
   541
489c9b5090e2 Initial load
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parents:
diff changeset
   542
489c9b5090e2 Initial load
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parents:
diff changeset
   543
#define JVM_ENTRY_NO_ENV(result_type, header)                        \
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parents:
diff changeset
   544
extern "C" {                                                         \
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parents:
diff changeset
   545
  result_type JNICALL header {                                       \
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parents:
diff changeset
   546
    JavaThread* thread = (JavaThread*)ThreadLocalStorage::thread();  \
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parents:
diff changeset
   547
    ThreadInVMfromNative __tiv(thread);                              \
489c9b5090e2 Initial load
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parents:
diff changeset
   548
    debug_only(VMNativeEntryWrapper __vew;)                          \
489c9b5090e2 Initial load
duke
parents:
diff changeset
   549
    __ENTRY(result_type, header, thread)
489c9b5090e2 Initial load
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diff changeset
   550
489c9b5090e2 Initial load
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parents:
diff changeset
   551
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diff changeset
   552
#define JVM_QUICK_ENTRY(result_type, header)                         \
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parents:
diff changeset
   553
extern "C" {                                                         \
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parents:
diff changeset
   554
  result_type JNICALL header {                                       \
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parents:
diff changeset
   555
    JavaThread* thread=JavaThread::thread_from_jni_environment(env); \
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parents:
diff changeset
   556
    ThreadInVMfromNative __tiv(thread);                              \
489c9b5090e2 Initial load
duke
parents:
diff changeset
   557
    debug_only(VMNativeEntryWrapper __vew;)                          \
489c9b5090e2 Initial load
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parents:
diff changeset
   558
    __QUICK_ENTRY(result_type, header, thread)
489c9b5090e2 Initial load
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parents:
diff changeset
   559
489c9b5090e2 Initial load
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parents:
diff changeset
   560
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parents:
diff changeset
   561
#define JVM_LEAF(result_type, header)                                \
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diff changeset
   562
extern "C" {                                                         \
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parents:
diff changeset
   563
  result_type JNICALL header {                                       \
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parents:
diff changeset
   564
    VM_Exit::block_if_vm_exited();                                   \
489c9b5090e2 Initial load
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parents:
diff changeset
   565
    __LEAF(result_type, header)
489c9b5090e2 Initial load
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parents:
diff changeset
   566
489c9b5090e2 Initial load
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parents:
diff changeset
   567
489c9b5090e2 Initial load
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parents:
diff changeset
   568
#define JVM_END } }