author | erikj |
Tue, 12 Sep 2017 19:03:39 +0200 | |
changeset 47216 | 71c04702a3d5 |
parent 46600 | hotspot/src/share/vm/runtime/frame.hpp@fdde0f192cde |
child 49364 | 601146c66cad |
permissions | -rw-r--r-- |
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/* |
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* Copyright (c) 1997, 2017, 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_FRAME_HPP |
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#define SHARE_VM_RUNTIME_FRAME_HPP |
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#include "oops/method.hpp" |
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#include "runtime/basicLock.hpp" |
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#include "runtime/monitorChunk.hpp" |
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#include "runtime/registerMap.hpp" |
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#include "utilities/macros.hpp" |
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#ifdef ZERO |
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# include "stack_zero.hpp" |
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#endif |
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typedef class BytecodeInterpreter* interpreterState; |
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class CodeBlob; |
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class FrameValues; |
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class vframeArray; |
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// A frame represents a physical stack frame (an activation). Frames |
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// can be C or Java frames, and the Java frames can be interpreted or |
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// compiled. In contrast, vframes represent source-level activations, |
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// so that one physical frame can correspond to multiple source level |
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// frames because of inlining. |
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class frame VALUE_OBJ_CLASS_SPEC { |
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private: |
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// Instance variables: |
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intptr_t* _sp; // stack pointer (from Thread::last_Java_sp) |
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address _pc; // program counter (the next instruction after the call) |
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CodeBlob* _cb; // CodeBlob that "owns" pc |
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enum deopt_state { |
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not_deoptimized, |
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is_deoptimized, |
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unknown |
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}; |
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deopt_state _deopt_state; |
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public: |
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// Constructors |
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frame(); |
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#ifndef PRODUCT |
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// This is a generic constructor which is only used by pns() in debug.cpp. |
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// pns (i.e. print native stack) uses this constructor to create a starting |
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// frame for stack walking. The implementation of this constructor is platform |
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// dependent (i.e. SPARC doesn't need an 'fp' argument an will ignore it) but |
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// we want to keep the signature generic because pns() is shared code. |
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frame(void* sp, void* fp, void* pc); |
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#endif |
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// Accessors |
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// pc: Returns the pc at which this frame will continue normally. |
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// It must point at the beginning of the next instruction to execute. |
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address pc() const { return _pc; } |
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// This returns the pc that if you were in the debugger you'd see. Not |
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// the idealized value in the frame object. This undoes the magic conversion |
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// that happens for deoptimized frames. In addition it makes the value the |
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// hardware would want to see in the native frame. The only user (at this point) |
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// is deoptimization. It likely no one else should ever use it. |
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address raw_pc() const; |
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void set_pc( address newpc ); |
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intptr_t* sp() const { return _sp; } |
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void set_sp( intptr_t* newsp ) { _sp = newsp; } |
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CodeBlob* cb() const { return _cb; } |
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// patching operations |
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void patch_pc(Thread* thread, address pc); |
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// Every frame needs to return a unique id which distinguishes it from all other frames. |
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// For sparc and ia32 use sp. ia64 can have memory frames that are empty so multiple frames |
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// will have identical sp values. For ia64 the bsp (fp) value will serve. No real frame |
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// should have an id() of NULL so it is a distinguishing value for an unmatchable frame. |
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// We also have relationals which allow comparing a frame to anoth frame's id() allow |
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// us to distinguish younger (more recent activation) from older (less recent activations) |
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// A NULL id is only valid when comparing for equality. |
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intptr_t* id(void) const; |
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bool is_younger(intptr_t* id) const; |
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bool is_older(intptr_t* id) const; |
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// testers |
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// Compares for strict equality. Rarely used or needed. |
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// It can return a different result than f1.id() == f2.id() |
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bool equal(frame other) const; |
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// type testers |
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bool is_interpreted_frame() const; |
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bool is_java_frame() const; |
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bool is_entry_frame() const; // Java frame called from C? |
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bool is_stub_frame() const; |
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bool is_ignored_frame() const; |
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bool is_native_frame() const; |
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bool is_runtime_frame() const; |
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bool is_compiled_frame() const; |
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bool is_safepoint_blob_frame() const; |
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bool is_deoptimized_frame() const; |
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// testers |
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bool is_first_frame() const; // oldest frame? (has no sender) |
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bool is_first_java_frame() const; // same for Java frame |
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bool is_interpreted_frame_valid(JavaThread* thread) const; // performs sanity checks on interpreted frames. |
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// tells whether this frame is marked for deoptimization |
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bool should_be_deoptimized() const; |
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// tells whether this frame can be deoptimized |
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bool can_be_deoptimized() const; |
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// returns the frame size in stack slots |
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int frame_size(RegisterMap* map) const; |
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// returns the sending frame |
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frame sender(RegisterMap* map) const; |
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// for Profiling - acting on another frame. walks sender frames |
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// if valid. |
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frame profile_find_Java_sender_frame(JavaThread *thread); |
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bool safe_for_sender(JavaThread *thread); |
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// returns the sender, but skips conversion frames |
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frame real_sender(RegisterMap* map) const; |
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// returns the the sending Java frame, skipping any intermediate C frames |
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// NB: receiver must not be first frame |
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frame java_sender() const; |
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private: |
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// Helper methods for better factored code in frame::sender |
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frame sender_for_compiled_frame(RegisterMap* map) const; |
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frame sender_for_entry_frame(RegisterMap* map) const; |
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frame sender_for_interpreter_frame(RegisterMap* map) const; |
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frame sender_for_native_frame(RegisterMap* map) const; |
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bool is_entry_frame_valid(JavaThread* thread) const; |
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// All frames: |
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// A low-level interface for vframes: |
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public: |
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intptr_t* addr_at(int index) const { return &fp()[index]; } |
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intptr_t at(int index) const { return *addr_at(index); } |
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// accessors for locals |
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oop obj_at(int offset) const { return *obj_at_addr(offset); } |
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void obj_at_put(int offset, oop value) { *obj_at_addr(offset) = value; } |
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jint int_at(int offset) const { return *int_at_addr(offset); } |
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void int_at_put(int offset, jint value) { *int_at_addr(offset) = value; } |
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oop* obj_at_addr(int offset) const { return (oop*) addr_at(offset); } |
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oop* adjusted_obj_at_addr(Method* method, int index) { return obj_at_addr(adjust_offset(method, index)); } |
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private: |
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jint* int_at_addr(int offset) const { return (jint*) addr_at(offset); } |
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public: |
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// Link (i.e., the pointer to the previous frame) |
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intptr_t* link() const; |
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// Return address |
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address sender_pc() const; |
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// Support for deoptimization |
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void deoptimize(JavaThread* thread); |
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// The frame's original SP, before any extension by an interpreted callee; |
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// used for packing debug info into vframeArray objects and vframeArray lookup. |
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intptr_t* unextended_sp() const; |
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// returns the stack pointer of the calling frame |
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intptr_t* sender_sp() const; |
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// Returns the real 'frame pointer' for the current frame. |
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// This is the value expected by the platform ABI when it defines a |
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// frame pointer register. It may differ from the effective value of |
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// the FP register when that register is used in the JVM for other |
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// purposes (like compiled frames on some platforms). |
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// On other platforms, it is defined so that the stack area used by |
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// this frame goes from real_fp() to sp(). |
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intptr_t* real_fp() const; |
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// Deoptimization info, if needed (platform dependent). |
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// Stored in the initial_info field of the unroll info, to be used by |
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// the platform dependent deoptimization blobs. |
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intptr_t *initial_deoptimization_info(); |
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// Interpreter frames: |
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private: |
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intptr_t** interpreter_frame_locals_addr() const; |
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intptr_t* interpreter_frame_bcp_addr() const; |
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intptr_t* interpreter_frame_mdp_addr() const; |
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public: |
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// Locals |
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// The _at version returns a pointer because the address is used for GC. |
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intptr_t* interpreter_frame_local_at(int index) const; |
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void interpreter_frame_set_locals(intptr_t* locs); |
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// byte code index |
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jint interpreter_frame_bci() const; |
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// byte code pointer |
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address interpreter_frame_bcp() const; |
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void interpreter_frame_set_bcp(address bcp); |
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// method data pointer |
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address interpreter_frame_mdp() const; |
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void interpreter_frame_set_mdp(address dp); |
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// Find receiver out of caller's (compiled) argument list |
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oop retrieve_receiver(RegisterMap *reg_map); |
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// Return the monitor owner and BasicLock for compiled synchronized |
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// native methods so that biased locking can revoke the receiver's |
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// bias if necessary. This is also used by JVMTI's GetLocalInstance method |
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// (via VM_GetReceiver) to retrieve the receiver from a native wrapper frame. |
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BasicLock* get_native_monitor(); |
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oop get_native_receiver(); |
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// Find receiver for an invoke when arguments are just pushed on stack (i.e., callee stack-frame is |
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// not setup) |
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oop interpreter_callee_receiver(Symbol* signature) { return *interpreter_callee_receiver_addr(signature); } |
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oop* interpreter_callee_receiver_addr(Symbol* signature); |
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// expression stack (may go up or down, direction == 1 or -1) |
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public: |
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intptr_t* interpreter_frame_expression_stack() const; |
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static jint interpreter_frame_expression_stack_direction(); |
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// The _at version returns a pointer because the address is used for GC. |
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intptr_t* interpreter_frame_expression_stack_at(jint offset) const; |
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// top of expression stack |
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intptr_t* interpreter_frame_tos_at(jint offset) const; |
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intptr_t* interpreter_frame_tos_address() const; |
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jint interpreter_frame_expression_stack_size() const; |
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intptr_t* interpreter_frame_sender_sp() const; |
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#ifndef CC_INTERP |
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// template based interpreter deoptimization support |
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void set_interpreter_frame_sender_sp(intptr_t* sender_sp); |
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void interpreter_frame_set_monitor_end(BasicObjectLock* value); |
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#endif // CC_INTERP |
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// Address of the temp oop in the frame. Needed as GC root. |
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oop* interpreter_frame_temp_oop_addr() const; |
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// BasicObjectLocks: |
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// |
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// interpreter_frame_monitor_begin is higher in memory than interpreter_frame_monitor_end |
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// Interpreter_frame_monitor_begin points to one element beyond the oldest one, |
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// interpreter_frame_monitor_end points to the youngest one, or if there are none, |
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// it points to one beyond where the first element will be. |
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// interpreter_frame_monitor_size reports the allocation size of a monitor in the interpreter stack. |
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// this value is >= BasicObjectLock::size(), and may be rounded up |
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BasicObjectLock* interpreter_frame_monitor_begin() const; |
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BasicObjectLock* interpreter_frame_monitor_end() const; |
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BasicObjectLock* next_monitor_in_interpreter_frame(BasicObjectLock* current) const; |
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BasicObjectLock* previous_monitor_in_interpreter_frame(BasicObjectLock* current) const; |
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static int interpreter_frame_monitor_size(); |
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void interpreter_frame_verify_monitor(BasicObjectLock* value) const; |
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// Return/result value from this interpreter frame |
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// If the method return type is T_OBJECT or T_ARRAY populates oop_result |
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// For other (non-T_VOID) the appropriate field in the jvalue is populated |
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// with the result value. |
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// Should only be called when at method exit when the method is not |
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// exiting due to an exception. |
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BasicType interpreter_frame_result(oop* oop_result, jvalue* value_result); |
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public: |
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// Method & constant pool cache |
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Method* interpreter_frame_method() const; |
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323 |
void interpreter_frame_set_method(Method* method); |
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Method** interpreter_frame_method_addr() const; |
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325 |
ConstantPoolCache** interpreter_frame_cache_addr() const; |
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oop* interpreter_frame_mirror_addr() const; |
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327 |
|
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328 |
void interpreter_frame_set_mirror(oop mirror); |
1 | 329 |
|
330 |
public: |
|
331 |
// Entry frames |
|
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332 |
JavaCallWrapper* entry_frame_call_wrapper() const { return *entry_frame_call_wrapper_addr(); } |
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333 |
JavaCallWrapper* entry_frame_call_wrapper_if_safe(JavaThread* thread) const; |
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334 |
JavaCallWrapper** entry_frame_call_wrapper_addr() const; |
1 | 335 |
intptr_t* entry_frame_argument_at(int offset) const; |
336 |
||
337 |
// tells whether there is another chunk of Delta stack above |
|
338 |
bool entry_frame_is_first() const; |
|
339 |
||
340 |
// Compiled frames: |
|
341 |
||
342 |
public: |
|
343 |
// Given the index of a local, and the number of argument words |
|
344 |
// in this stack frame, tell which word of the stack frame to find |
|
345 |
// the local in. Arguments are stored above the ofp/rpc pair, |
|
346 |
// while other locals are stored below it. |
|
347 |
// Since monitors (BasicLock blocks) are also assigned indexes, |
|
348 |
// but may have different storage requirements, their presence |
|
349 |
// can also affect the calculation of offsets. |
|
350 |
static int local_offset_for_compiler(int local_index, int nof_args, int max_nof_locals, int max_nof_monitors); |
|
351 |
||
352 |
// Given the index of a monitor, etc., tell which word of the |
|
353 |
// stack frame contains the start of the BasicLock block. |
|
354 |
// Note that the local index by convention is the __higher__ |
|
355 |
// of the two indexes allocated to the block. |
|
356 |
static int monitor_offset_for_compiler(int local_index, int nof_args, int max_nof_locals, int max_nof_monitors); |
|
357 |
||
358 |
// Tell the smallest value that local_offset_for_compiler will attain. |
|
359 |
// This is used to help determine how much stack frame to allocate. |
|
360 |
static int min_local_offset_for_compiler(int nof_args, int max_nof_locals, int max_nof_monitors); |
|
361 |
||
362 |
// Tells if this register must be spilled during a call. |
|
363 |
// On Intel, all registers are smashed by calls. |
|
364 |
static bool volatile_across_calls(Register reg); |
|
365 |
||
366 |
||
367 |
// Safepoints |
|
368 |
||
369 |
public: |
|
370 |
oop saved_oop_result(RegisterMap* map) const; |
|
371 |
void set_saved_oop_result(RegisterMap* map, oop obj); |
|
372 |
||
373 |
// For debugging |
|
374 |
private: |
|
375 |
const char* print_name() const; |
|
376 |
||
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void describe_pd(FrameValues& values, int frame_no); |
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378 |
|
1 | 379 |
public: |
380 |
void print_value() const { print_value_on(tty,NULL); } |
|
381 |
void print_value_on(outputStream* st, JavaThread *thread) const; |
|
382 |
void print_on(outputStream* st) const; |
|
383 |
void interpreter_frame_print_on(outputStream* st) const; |
|
384 |
void print_on_error(outputStream* st, char* buf, int buflen, bool verbose = false) const; |
|
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|
385 |
static void print_C_frame(outputStream* st, char* buf, int buflen, address pc); |
1 | 386 |
|
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// Add annotated descriptions of memory locations belonging to this frame to values |
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|
388 |
void describe(FrameValues& values, int frame_no); |
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|
389 |
|
46600 | 390 |
// Conversion from a VMReg to physical stack location |
391 |
oop* oopmapreg_to_location(VMReg reg, const RegisterMap* reg_map) const; |
|
1 | 392 |
|
393 |
// Oops-do's |
|
17872 | 394 |
void oops_compiled_arguments_do(Symbol* signature, bool has_receiver, bool has_appendix, const RegisterMap* reg_map, OopClosure* f); |
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|
395 |
void oops_interpreted_do(OopClosure* f, const RegisterMap* map, bool query_oop_map_cache = true); |
1 | 396 |
|
397 |
private: |
|
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|
398 |
void oops_interpreted_arguments_do(Symbol* signature, bool has_receiver, OopClosure* f); |
1 | 399 |
|
400 |
// Iteration of oops |
|
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|
401 |
void oops_do_internal(OopClosure* f, CodeBlobClosure* cf, RegisterMap* map, bool use_interpreter_oop_map_cache); |
1 | 402 |
void oops_entry_do(OopClosure* f, const RegisterMap* map); |
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|
403 |
void oops_code_blob_do(OopClosure* f, CodeBlobClosure* cf, const RegisterMap* map); |
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|
404 |
int adjust_offset(Method* method, int index); // helper for above fn |
1 | 405 |
public: |
406 |
// Memory management |
|
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|
407 |
void oops_do(OopClosure* f, CodeBlobClosure* cf, RegisterMap* map) { oops_do_internal(f, cf, map, true); } |
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|
408 |
void nmethods_do(CodeBlobClosure* cf); |
1 | 409 |
|
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|
410 |
// RedefineClasses support for finding live interpreted methods on the stack |
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|
411 |
void metadata_do(void f(Metadata*)); |
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|
412 |
|
1 | 413 |
// Verification |
414 |
void verify(const RegisterMap* map); |
|
415 |
static bool verify_return_pc(address x); |
|
416 |
// Usage: |
|
417 |
// assert(frame::verify_return_pc(return_address), "must be a return pc"); |
|
418 |
||
419 |
int pd_oop_map_offset_adjustment() const; |
|
420 |
||
46589 | 421 |
NOT_PRODUCT(void pd_ps();) // platform dependent frame printing |
422 |
||
40010 | 423 |
#include CPU_HEADER(frame) |
7397 | 424 |
|
1 | 425 |
}; |
426 |
||
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|
427 |
#ifndef PRODUCT |
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|
428 |
// A simple class to describe a location on the stack |
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|
429 |
class FrameValue VALUE_OBJ_CLASS_SPEC { |
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|
430 |
public: |
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|
431 |
intptr_t* location; |
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|
432 |
char* description; |
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|
433 |
int owner; |
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|
434 |
int priority; |
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|
435 |
|
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|
436 |
FrameValue() { |
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|
437 |
location = NULL; |
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|
438 |
description = NULL; |
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|
439 |
owner = -1; |
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|
440 |
priority = 0; |
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|
441 |
} |
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|
442 |
|
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|
443 |
}; |
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|
444 |
|
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|
445 |
|
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|
446 |
// A collection of described stack values that can print a symbolic |
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|
447 |
// description of the stack memory. Interpreter frame values can be |
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|
448 |
// in the caller frames so all the values are collected first and then |
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|
449 |
// sorted before being printed. |
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|
450 |
class FrameValues { |
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|
451 |
private: |
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|
452 |
GrowableArray<FrameValue> _values; |
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|
453 |
|
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|
454 |
static int compare(FrameValue* a, FrameValue* b) { |
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|
455 |
if (a->location == b->location) { |
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|
456 |
return a->priority - b->priority; |
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|
457 |
} |
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|
458 |
return a->location - b->location; |
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|
459 |
} |
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|
460 |
|
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|
461 |
public: |
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|
462 |
// Used by frame functions to describe locations. |
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|
463 |
void describe(int owner, intptr_t* location, const char* description, int priority = 0); |
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|
464 |
|
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|
465 |
#ifdef ASSERT |
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|
466 |
void validate(); |
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|
467 |
#endif |
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|
468 |
void print(JavaThread* thread); |
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|
469 |
}; |
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|
470 |
|
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|
471 |
#endif |
1 | 472 |
|
473 |
// |
|
474 |
// StackFrameStream iterates through the frames of a thread starting from |
|
475 |
// top most frame. It automatically takes care of updating the location of |
|
476 |
// all (callee-saved) registers. Notice: If a thread is stopped at |
|
477 |
// a safepoint, all registers are saved, not only the callee-saved ones. |
|
478 |
// |
|
479 |
// Use: |
|
480 |
// |
|
481 |
// for(StackFrameStream fst(thread); !fst.is_done(); fst.next()) { |
|
482 |
// ... |
|
483 |
// } |
|
484 |
// |
|
485 |
class StackFrameStream : public StackObj { |
|
486 |
private: |
|
487 |
frame _fr; |
|
488 |
RegisterMap _reg_map; |
|
489 |
bool _is_done; |
|
490 |
public: |
|
491 |
StackFrameStream(JavaThread *thread, bool update = true); |
|
492 |
||
493 |
// Iteration |
|
494 |
bool is_done() { return (_is_done) ? true : (_is_done = _fr.is_first_frame(), false); } |
|
495 |
void next() { if (!_is_done) _fr = _fr.sender(&_reg_map); } |
|
496 |
||
497 |
// Query |
|
498 |
frame *current() { return &_fr; } |
|
499 |
RegisterMap* register_map() { return &_reg_map; } |
|
500 |
}; |
|
7397 | 501 |
|
502 |
#endif // SHARE_VM_RUNTIME_FRAME_HPP |