mirror of
https://github.com/openjdk/jdk.git
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357 lines
11 KiB
C++
357 lines
11 KiB
C++
/*
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* Copyright (c) 1997, 2018, Oracle and/or its affiliates. All rights reserved.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* This code is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 only, as
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* published by the Free Software Foundation.
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*
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* This code is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* version 2 for more details (a copy is included in the LICENSE file that
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* accompanied this code).
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*
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* You should have received a copy of the GNU General Public License version
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* 2 along with this work; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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*
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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* or visit www.oracle.com if you need additional information or have any
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* questions.
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*
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*/
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#ifndef SHARE_VM_RUNTIME_VFRAME_HPP
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#define SHARE_VM_RUNTIME_VFRAME_HPP
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#include "code/debugInfo.hpp"
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#include "code/debugInfoRec.hpp"
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#include "code/location.hpp"
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#include "oops/oop.hpp"
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#include "runtime/frame.hpp"
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#include "runtime/stackValue.hpp"
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#include "runtime/stackValueCollection.hpp"
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#include "utilities/growableArray.hpp"
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// vframes are virtual stack frames representing source level activations.
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// A single frame may hold several source level activations in the case of
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// optimized code. The debugging stored with the optimized code enables
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// us to unfold a frame as a stack of vframes.
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// A cVFrame represents an activation of a non-java method.
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// The vframe inheritance hierarchy:
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// - vframe
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// - javaVFrame
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// - interpretedVFrame
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// - compiledVFrame ; (used for both compiled Java methods and native stubs)
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// - externalVFrame
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// - entryVFrame ; special frame created when calling Java from C
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// - BasicLock
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class vframe: public ResourceObj {
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protected:
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frame _fr; // Raw frame behind the virtual frame.
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RegisterMap _reg_map; // Register map for the raw frame (used to handle callee-saved registers).
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JavaThread* _thread; // The thread owning the raw frame.
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vframe(const frame* fr, const RegisterMap* reg_map, JavaThread* thread);
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vframe(const frame* fr, JavaThread* thread);
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public:
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// Factory method for creating vframes
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static vframe* new_vframe(const frame* f, const RegisterMap *reg_map, JavaThread* thread);
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// Accessors
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frame fr() const { return _fr; }
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CodeBlob* cb() const { return _fr.cb(); }
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CompiledMethod* nm() const {
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assert( cb() != NULL && cb()->is_compiled(), "usage");
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return (CompiledMethod*) cb();
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}
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// ???? Does this need to be a copy?
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frame* frame_pointer() { return &_fr; }
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const RegisterMap* register_map() const { return &_reg_map; }
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JavaThread* thread() const { return _thread; }
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// Returns the sender vframe
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virtual vframe* sender() const;
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// Returns the next javaVFrame on the stack (skipping all other kinds of frame)
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javaVFrame *java_sender() const;
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// Answers if the this is the top vframe in the frame, i.e., if the sender vframe
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// is in the caller frame
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virtual bool is_top() const { return true; }
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// Returns top vframe within same frame (see is_top())
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virtual vframe* top() const;
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// Type testing operations
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virtual bool is_entry_frame() const { return false; }
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virtual bool is_java_frame() const { return false; }
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virtual bool is_interpreted_frame() const { return false; }
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virtual bool is_compiled_frame() const { return false; }
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#ifndef PRODUCT
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// printing operations
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virtual void print_value() const;
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virtual void print();
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#endif
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};
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class javaVFrame: public vframe {
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public:
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// JVM state
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virtual Method* method() const = 0;
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virtual int bci() const = 0;
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virtual StackValueCollection* locals() const = 0;
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virtual StackValueCollection* expressions() const = 0;
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// the order returned by monitors() is from oldest -> youngest#4418568
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virtual GrowableArray<MonitorInfo*>* monitors() const = 0;
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// Debugging support via JVMTI.
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// NOTE that this is not guaranteed to give correct results for compiled vframes.
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// Deoptimize first if necessary.
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virtual void set_locals(StackValueCollection* values) const = 0;
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// Test operation
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bool is_java_frame() const { return true; }
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protected:
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javaVFrame(const frame* fr, const RegisterMap* reg_map, JavaThread* thread) : vframe(fr, reg_map, thread) {}
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javaVFrame(const frame* fr, JavaThread* thread) : vframe(fr, thread) {}
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public:
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// casting
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static javaVFrame* cast(vframe* vf) {
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assert(vf == NULL || vf->is_java_frame(), "must be java frame");
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return (javaVFrame*) vf;
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}
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// Return an array of monitors locked by this frame in the youngest to oldest order
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GrowableArray<MonitorInfo*>* locked_monitors();
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// printing used during stack dumps and diagnostics
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static void print_locked_object_class_name(outputStream* st, Handle obj, const char* lock_state);
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void print_lock_info_on(outputStream* st, int frame_count);
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void print_lock_info(int frame_count) { print_lock_info_on(tty, frame_count); }
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#ifndef PRODUCT
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public:
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// printing operations
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void print();
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void print_value() const;
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void print_activation(int index) const;
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// verify operations
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virtual void verify() const;
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// Structural compare
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bool structural_compare(javaVFrame* other);
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#endif
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friend class vframe;
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};
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class interpretedVFrame: public javaVFrame {
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public:
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// JVM state
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Method* method() const;
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int bci() const;
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StackValueCollection* locals() const;
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StackValueCollection* expressions() const;
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GrowableArray<MonitorInfo*>* monitors() const;
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void set_locals(StackValueCollection* values) const;
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// Test operation
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bool is_interpreted_frame() const { return true; }
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protected:
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interpretedVFrame(const frame* fr, const RegisterMap* reg_map, JavaThread* thread) : javaVFrame(fr, reg_map, thread) {};
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public:
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// Accessors for Byte Code Pointer
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u_char* bcp() const;
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void set_bcp(u_char* bcp);
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// casting
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static interpretedVFrame* cast(vframe* vf) {
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assert(vf == NULL || vf->is_interpreted_frame(), "must be interpreted frame");
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return (interpretedVFrame*) vf;
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}
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private:
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static const int bcp_offset;
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intptr_t* locals_addr_at(int offset) const;
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StackValueCollection* stack_data(bool expressions) const;
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// returns where the parameters starts relative to the frame pointer
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int start_of_parameters() const;
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#ifndef PRODUCT
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public:
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// verify operations
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void verify() const;
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#endif
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friend class vframe;
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};
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class externalVFrame: public vframe {
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protected:
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externalVFrame(const frame* fr, const RegisterMap* reg_map, JavaThread* thread) : vframe(fr, reg_map, thread) {}
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#ifndef PRODUCT
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public:
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// printing operations
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void print_value() const;
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void print();
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#endif
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friend class vframe;
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};
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class entryVFrame: public externalVFrame {
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public:
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bool is_entry_frame() const { return true; }
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protected:
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entryVFrame(const frame* fr, const RegisterMap* reg_map, JavaThread* thread);
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public:
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// casting
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static entryVFrame* cast(vframe* vf) {
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assert(vf == NULL || vf->is_entry_frame(), "must be entry frame");
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return (entryVFrame*) vf;
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}
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#ifndef PRODUCT
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public:
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// printing
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void print_value() const;
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void print();
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#endif
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friend class vframe;
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};
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// A MonitorInfo is a ResourceObject that describes a the pair:
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// 1) the owner of the monitor
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// 2) the monitor lock
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class MonitorInfo : public ResourceObj {
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private:
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oop _owner; // the object owning the monitor
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BasicLock* _lock;
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oop _owner_klass; // klass (mirror) if owner was scalar replaced
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bool _eliminated;
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bool _owner_is_scalar_replaced;
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public:
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// Constructor
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MonitorInfo(oop owner, BasicLock* lock, bool eliminated, bool owner_is_scalar_replaced) {
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if (!owner_is_scalar_replaced) {
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_owner = owner;
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_owner_klass = NULL;
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} else {
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assert(eliminated, "monitor should be eliminated for scalar replaced object");
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_owner = NULL;
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_owner_klass = owner;
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}
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_lock = lock;
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_eliminated = eliminated;
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_owner_is_scalar_replaced = owner_is_scalar_replaced;
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}
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// Accessors
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oop owner() const {
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assert(!_owner_is_scalar_replaced, "should not be called for scalar replaced object");
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return _owner;
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}
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oop owner_klass() const {
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assert(_owner_is_scalar_replaced, "should not be called for not scalar replaced object");
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return _owner_klass;
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}
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BasicLock* lock() const { return _lock; }
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bool eliminated() const { return _eliminated; }
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bool owner_is_scalar_replaced() const { return _owner_is_scalar_replaced; }
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};
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class vframeStreamCommon : StackObj {
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protected:
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// common
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frame _prev_frame;
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frame _frame;
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JavaThread* _thread;
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RegisterMap _reg_map;
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enum { interpreted_mode, compiled_mode, at_end_mode } _mode;
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// For compiled_mode
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int _decode_offset;
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int _sender_decode_offset;
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int _vframe_id;
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// Cached information
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Method* _method;
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int _bci;
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// Should VM activations be ignored or not
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bool _stop_at_java_call_stub;
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bool fill_in_compiled_inlined_sender();
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void fill_from_compiled_frame(int decode_offset);
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void fill_from_compiled_native_frame();
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void fill_from_interpreter_frame();
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bool fill_from_frame();
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// Helper routine for security_get_caller_frame
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void skip_prefixed_method_and_wrappers();
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DEBUG_ONLY(void found_bad_method_frame() const;)
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public:
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// Constructor
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inline vframeStreamCommon(JavaThread* thread);
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// Accessors
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Method* method() const { return _method; }
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int bci() const { return _bci; }
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inline intptr_t* frame_id() const;
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address frame_pc() const { return _frame.pc(); }
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CodeBlob* cb() const { return _frame.cb(); }
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CompiledMethod* nm() const {
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assert( cb() != NULL && cb()->is_compiled(), "usage");
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return (CompiledMethod*) cb();
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}
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javaVFrame* asJavaVFrame();
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// Frame type
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inline bool is_interpreted_frame() const;
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inline bool is_entry_frame() const;
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// Iteration
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inline void next();
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void security_next();
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bool at_end() const { return _mode == at_end_mode; }
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// Implements security traversal. Skips depth no. of frame including
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// special security frames and prefixed native methods
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void security_get_caller_frame(int depth);
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// Helper routine for JVM_LatestUserDefinedLoader -- needed for 1.4
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// reflection implementation
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void skip_reflection_related_frames();
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};
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class vframeStream : public vframeStreamCommon {
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public:
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// Constructors
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vframeStream(JavaThread* thread, bool stop_at_java_call_stub = false);
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// top_frame may not be at safepoint, start with sender
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vframeStream(JavaThread* thread, frame top_frame, bool stop_at_java_call_stub = false);
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};
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#endif // SHARE_VM_RUNTIME_VFRAME_HPP
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