8cd4bf5b92
R=asiva@google.com Review URL: https://codereview.chromium.org//23494026 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@27140 260f80e4-7a28-3924-810f-c04153c831b5
300 lines
8.1 KiB
C++
300 lines
8.1 KiB
C++
// Copyright (c) 2011, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#ifndef VM_STACK_FRAME_H_
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#define VM_STACK_FRAME_H_
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#include "vm/allocation.h"
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#include "vm/object.h"
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#include "vm/stub_code.h"
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#if defined(TARGET_ARCH_IA32)
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#include "vm/stack_frame_ia32.h"
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#elif defined(TARGET_ARCH_X64)
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#include "vm/stack_frame_x64.h"
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#elif defined(TARGET_ARCH_ARM)
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#include "vm/stack_frame_arm.h"
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#elif defined(TARGET_ARCH_MIPS)
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#include "vm/stack_frame_mips.h"
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#else
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#error Unknown architecture.
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#endif
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namespace dart {
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// Forward declarations.
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class ObjectPointerVisitor;
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class RawContext;
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// Generic stack frame.
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class StackFrame : public ValueObject {
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public:
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virtual ~StackFrame() { }
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// Accessors to get the pc, sp and fp of a frame.
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uword sp() const { return sp_; }
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uword fp() const { return fp_; }
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uword pc() const { return pc_; }
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// The pool pointer is not implemented on all architectures.
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static int SavedCallerPpSlotFromFp() {
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if (kSavedCallerPpSlotFromFp != kSavedCallerFpSlotFromFp) {
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return kSavedCallerPpSlotFromFp;
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}
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UNREACHABLE();
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return 0;
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}
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void set_pc(uword value) {
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*reinterpret_cast<uword*>(sp_ + (kSavedPcSlotFromSp * kWordSize)) = value;
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}
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// Visit objects in the frame.
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virtual void VisitObjectPointers(ObjectPointerVisitor* visitor);
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// Print a frame.
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virtual void Print() const;
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// Check validity of a frame, used for assertion purposes.
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virtual bool IsValid() const;
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// Frame type.
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virtual bool IsDartFrame() const {
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ASSERT(IsValid());
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return !(IsEntryFrame() || IsExitFrame() || IsStubFrame());
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}
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virtual bool IsStubFrame() const;
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virtual bool IsEntryFrame() const { return false; }
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virtual bool IsExitFrame() const { return false; }
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RawFunction* LookupDartFunction() const;
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RawCode* LookupDartCode() const;
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bool FindExceptionHandler(uword* handler_pc,
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bool* needs_stacktrace,
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bool* is_catch_all) const;
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// Returns token_pos of the pc(), or -1 if none exists.
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intptr_t GetTokenPos() const;
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protected:
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StackFrame() : fp_(0), sp_(0), pc_(0) { }
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// Name of the frame, used for generic frame printing functionality.
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virtual const char* GetName() const { return IsStubFrame()? "stub" : "dart"; }
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private:
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RawCode* GetCodeObject() const;
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uword GetCallerSp() const {
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return fp() + (kCallerSpSlotFromFp * kWordSize);
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}
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uword GetCallerFp() const {
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return *(reinterpret_cast<uword*>(
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fp() + (kSavedCallerFpSlotFromFp * kWordSize)));
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}
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uword GetCallerPc() const {
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return *(reinterpret_cast<uword*>(
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fp() + (kSavedCallerPcSlotFromFp * kWordSize)));
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}
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uword fp_;
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uword sp_;
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uword pc_;
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// The iterators FrameSetIterator and StackFrameIterator set the private
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// fields fp_ and sp_ when they return the respective frame objects.
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friend class FrameSetIterator;
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friend class StackFrameIterator;
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DISALLOW_COPY_AND_ASSIGN(StackFrame);
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};
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// Exit frame is used to mark the transition from dart code into dart VM
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// runtime code.
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class ExitFrame : public StackFrame {
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public:
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bool IsValid() const { return sp() == 0; }
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bool IsDartFrame() const { return false; }
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bool IsStubFrame() const { return false; }
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bool IsExitFrame() const { return true; }
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// Visit objects in the frame.
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virtual void VisitObjectPointers(ObjectPointerVisitor* visitor);
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protected:
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virtual const char* GetName() const { return "exit"; }
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private:
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ExitFrame() { }
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friend class StackFrameIterator;
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DISALLOW_COPY_AND_ASSIGN(ExitFrame);
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};
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// Entry Frame is used to mark the transition from dart VM runtime code into
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// dart code.
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class EntryFrame : public StackFrame {
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public:
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bool IsValid() const { return StubCode::InInvocationStub(pc()); }
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bool IsDartFrame() const { return false; }
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bool IsStubFrame() const { return false; }
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bool IsEntryFrame() const { return true; }
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RawContext* SavedContext() const;
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// Visit objects in the frame.
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virtual void VisitObjectPointers(ObjectPointerVisitor* visitor);
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protected:
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virtual const char* GetName() const { return "entry"; }
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private:
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EntryFrame() { }
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friend class StackFrameIterator;
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DISALLOW_COPY_AND_ASSIGN(EntryFrame);
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};
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class StackFrameIterator : public ValueObject {
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public:
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static const bool kValidateFrames = true;
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static const bool kDontValidateFrames = false;
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// Iterators for iterating over all frames from the last ExitFrame to the
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// first EntryFrame.
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explicit StackFrameIterator(bool validate);
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StackFrameIterator(uword last_fp, bool validate);
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// Iterator for iterating over all frames from the current frame (given by its
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// fp, sp, and pc) to the first EntryFrame.
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StackFrameIterator(uword fp, uword sp, uword pc, bool validate);
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// Checks if a next frame exists.
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bool HasNextFrame() const { return frames_.fp_ != 0; }
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// Get next frame.
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StackFrame* NextFrame();
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private:
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// Iterator for iterating over the set of frames (dart or stub) which exist
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// in one EntryFrame and ExitFrame block.
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class FrameSetIterator : public ValueObject {
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public:
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// Checks if a next non entry/exit frame exists in the set.
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bool HasNext() const {
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if (fp_ == 0) {
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return false;
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}
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const uword pc = *(reinterpret_cast<uword*>(
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sp_ + (kSavedPcSlotFromSp * kWordSize)));
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return !StubCode::InInvocationStub(pc);
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}
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// Get next non entry/exit frame in the set (assumes a next frame exists).
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StackFrame* NextFrame(bool validate);
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private:
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FrameSetIterator() : fp_(0), sp_(0), pc_(0), stack_frame_() { }
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uword fp_;
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uword sp_;
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uword pc_;
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StackFrame stack_frame_; // Singleton frame returned by NextFrame().
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friend class StackFrameIterator;
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DISALLOW_COPY_AND_ASSIGN(FrameSetIterator);
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};
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// Get next exit frame.
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ExitFrame* NextExitFrame();
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// Get next entry frame.
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EntryFrame* NextEntryFrame();
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// Get an iterator to the next set of frames between an entry and exit
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// frame.
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FrameSetIterator* NextFrameSet() { return &frames_; }
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// Setup last or next exit frames so that we are ready to iterate over
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// stack frames.
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void SetupLastExitFrameData();
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void SetupNextExitFrameData();
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bool validate_; // Validate each frame as we traverse the frames.
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EntryFrame entry_; // Singleton entry frame returned by NextEntryFrame().
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ExitFrame exit_; // Singleton exit frame returned by NextExitFrame().
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FrameSetIterator frames_;
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StackFrame* current_frame_; // Points to the current frame in the iterator.
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DISALLOW_COPY_AND_ASSIGN(StackFrameIterator);
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};
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// Iterator for iterating over all dart frames (skips over exit frames,
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// entry frames and stub frames).
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class DartFrameIterator : public ValueObject {
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public:
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DartFrameIterator() : frames_(StackFrameIterator::kDontValidateFrames) { }
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explicit DartFrameIterator(uword last_fp)
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: frames_(last_fp, StackFrameIterator::kDontValidateFrames) {}
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// Get next dart frame.
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StackFrame* NextFrame() {
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StackFrame* frame = frames_.NextFrame();
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while (frame != NULL && !frame->IsDartFrame()) {
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frame = frames_.NextFrame();
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}
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return frame;
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}
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private:
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StackFrameIterator frames_;
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DISALLOW_COPY_AND_ASSIGN(DartFrameIterator);
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};
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// Iterator for iterating over all inlined dart functions in an optimized
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// dart frame (the iteration includes the function that is inlining the
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// other functions).
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class InlinedFunctionsIterator : public ValueObject {
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public:
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InlinedFunctionsIterator(const Code& code, uword pc);
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bool Done() const { return index_ == -1; }
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void Advance();
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RawFunction* function() const {
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ASSERT(!Done());
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return function_.raw();
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}
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uword pc() const {
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ASSERT(!Done());
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return pc_;
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}
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RawCode* code() const {
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ASSERT(!Done());
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return code_.raw();
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}
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private:
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void SetDone() { index_ = -1; }
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intptr_t index_;
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Code& code_;
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DeoptInfo& deopt_info_;
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Function& function_;
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uword pc_;
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GrowableArray<DeoptInstr*> deopt_instructions_;
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Array& object_table_;
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DISALLOW_COPY_AND_ASSIGN(InlinedFunctionsIterator);
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};
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} // namespace dart
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#endif // VM_STACK_FRAME_H_
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