debug-ia32.cc 10.9 KB
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// Copyright 2012 the V8 project authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
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#include "src/v8.h"
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#if V8_TARGET_ARCH_IA32
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#include "src/codegen.h"
#include "src/debug.h"
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namespace v8 {
namespace internal {
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bool BreakLocationIterator::IsDebugBreakAtReturn() {
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  return Debug::IsDebugBreakAtReturn(rinfo());
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}


// Patch the JS frame exit code with a debug break call. See
// CodeGenerator::VisitReturnStatement and VirtualFrame::Exit in codegen-ia32.cc
// for the precise return instructions sequence.
void BreakLocationIterator::SetDebugBreakAtReturn() {
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  DCHECK(Assembler::kJSReturnSequenceLength >=
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         Assembler::kCallInstructionLength);
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  rinfo()->PatchCodeWithCall(
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      debug_info_->GetIsolate()->builtins()->Return_DebugBreak()->entry(),
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      Assembler::kJSReturnSequenceLength - Assembler::kCallInstructionLength);
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}


// Restore the JS frame exit code.
void BreakLocationIterator::ClearDebugBreakAtReturn() {
  rinfo()->PatchCode(original_rinfo()->pc(),
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                     Assembler::kJSReturnSequenceLength);
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}


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// A debug break in the frame exit code is identified by the JS frame exit code
// having been patched with a call instruction.
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bool Debug::IsDebugBreakAtReturn(RelocInfo* rinfo) {
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  DCHECK(RelocInfo::IsJSReturn(rinfo->rmode()));
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  return rinfo->IsPatchedReturnSequence();
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}


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bool BreakLocationIterator::IsDebugBreakAtSlot() {
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  DCHECK(IsDebugBreakSlot());
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  // Check whether the debug break slot instructions have been patched.
  return rinfo()->IsPatchedDebugBreakSlotSequence();
}


void BreakLocationIterator::SetDebugBreakAtSlot() {
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  DCHECK(IsDebugBreakSlot());
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  Isolate* isolate = debug_info_->GetIsolate();
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  rinfo()->PatchCodeWithCall(
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      isolate->builtins()->Slot_DebugBreak()->entry(),
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      Assembler::kDebugBreakSlotLength - Assembler::kCallInstructionLength);
}


void BreakLocationIterator::ClearDebugBreakAtSlot() {
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  DCHECK(IsDebugBreakSlot());
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  rinfo()->PatchCode(original_rinfo()->pc(), Assembler::kDebugBreakSlotLength);
}

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#define __ ACCESS_MASM(masm)
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static void Generate_DebugBreakCallHelper(MacroAssembler* masm,
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                                          RegList object_regs,
                                          RegList non_object_regs,
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                                          bool convert_call_to_jmp) {
  // Enter an internal frame.
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  {
    FrameScope scope(masm, StackFrame::INTERNAL);

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    // Load padding words on stack.
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    for (int i = 0; i < LiveEdit::kFramePaddingInitialSize; i++) {
      __ push(Immediate(Smi::FromInt(LiveEdit::kFramePaddingValue)));
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    }
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    __ push(Immediate(Smi::FromInt(LiveEdit::kFramePaddingInitialSize)));
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    // Store the registers containing live values on the expression stack to
    // make sure that these are correctly updated during GC. Non object values
    // are stored as a smi causing it to be untouched by GC.
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    DCHECK((object_regs & ~kJSCallerSaved) == 0);
    DCHECK((non_object_regs & ~kJSCallerSaved) == 0);
    DCHECK((object_regs & non_object_regs) == 0);
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    for (int i = 0; i < kNumJSCallerSaved; i++) {
      int r = JSCallerSavedCode(i);
      Register reg = { r };
      if ((object_regs & (1 << r)) != 0) {
        __ push(reg);
      }
      if ((non_object_regs & (1 << r)) != 0) {
        if (FLAG_debug_code) {
          __ test(reg, Immediate(0xc0000000));
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          __ Assert(zero, kUnableToEncodeValueAsSmi);
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        }
        __ SmiTag(reg);
        __ push(reg);
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      }
    }
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#ifdef DEBUG
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    __ RecordComment("// Calling from debug break to runtime - come in - over");
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#endif
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    __ Move(eax, Immediate(0));  // No arguments.
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    __ mov(ebx, Immediate(ExternalReference::debug_break(masm->isolate())));

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    CEntryStub ceb(masm->isolate(), 1);
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    __ CallStub(&ceb);

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    // Automatically find register that could be used after register restore.
    // We need one register for padding skip instructions.
    Register unused_reg = { -1 };

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    // Restore the register values containing object pointers from the
    // expression stack.
    for (int i = kNumJSCallerSaved; --i >= 0;) {
      int r = JSCallerSavedCode(i);
      Register reg = { r };
      if (FLAG_debug_code) {
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        __ Move(reg, Immediate(kDebugZapValue));
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      }
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      bool taken = reg.code() == esi.code();
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      if ((object_regs & (1 << r)) != 0) {
        __ pop(reg);
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        taken = true;
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      }
      if ((non_object_regs & (1 << r)) != 0) {
        __ pop(reg);
        __ SmiUntag(reg);
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        taken = true;
      }
      if (!taken) {
        unused_reg = reg;
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      }
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    }
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    DCHECK(unused_reg.code() != -1);
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    // Read current padding counter and skip corresponding number of words.
    __ pop(unused_reg);
    // We divide stored value by 2 (untagging) and multiply it by word's size.
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    STATIC_ASSERT(kSmiTagSize == 1 && kSmiShiftSize == 0);
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    __ lea(esp, Operand(esp, unused_reg, times_half_pointer_size, 0));

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    // Get rid of the internal frame.
  }
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  // If this call did not replace a call but patched other code then there will
  // be an unwanted return address left on the stack. Here we get rid of that.
  if (convert_call_to_jmp) {
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    __ add(esp, Immediate(kPointerSize));
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  }

  // Now that the break point has been handled, resume normal execution by
  // jumping to the target address intended by the caller and that was
  // overwritten by the address of DebugBreakXXX.
  ExternalReference after_break_target =
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      ExternalReference::debug_after_break_target_address(masm->isolate());
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  __ jmp(Operand::StaticVariable(after_break_target));
}


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void DebugCodegen::GenerateCallICStubDebugBreak(MacroAssembler* masm) {
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  // Register state for CallICStub
  // ----------- S t a t e -------------
  //  -- edx    : type feedback slot (smi)
  //  -- edi    : function
  // -----------------------------------
  Generate_DebugBreakCallHelper(masm, edx.bit() | edi.bit(),
                                0, false);
}


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void DebugCodegen::GenerateLoadICDebugBreak(MacroAssembler* masm) {
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  // Register state for IC load call (from ic-ia32.cc).
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  Register receiver = LoadDescriptor::ReceiverRegister();
  Register name = LoadDescriptor::NameRegister();
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  RegList regs = receiver.bit() | name.bit();
  if (FLAG_vector_ics) {
    regs |= VectorLoadICTrampolineDescriptor::SlotRegister().bit();
  }
  Generate_DebugBreakCallHelper(masm, regs, 0, false);
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}


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void DebugCodegen::GenerateStoreICDebugBreak(MacroAssembler* masm) {
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  // Register state for IC store call (from ic-ia32.cc).
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  Register receiver = StoreDescriptor::ReceiverRegister();
  Register name = StoreDescriptor::NameRegister();
  Register value = StoreDescriptor::ValueRegister();
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  Generate_DebugBreakCallHelper(
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      masm, receiver.bit() | name.bit() | value.bit(), 0, false);
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}


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void DebugCodegen::GenerateKeyedLoadICDebugBreak(MacroAssembler* masm) {
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  // Register state for keyed IC load call (from ic-ia32.cc).
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  GenerateLoadICDebugBreak(masm);
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}


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void DebugCodegen::GenerateKeyedStoreICDebugBreak(MacroAssembler* masm) {
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  // Register state for keyed IC store call (from ic-ia32.cc).
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  Register receiver = StoreDescriptor::ReceiverRegister();
  Register name = StoreDescriptor::NameRegister();
  Register value = StoreDescriptor::ValueRegister();
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  Generate_DebugBreakCallHelper(
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      masm, receiver.bit() | name.bit() | value.bit(), 0, false);
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}


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void DebugCodegen::GenerateCompareNilICDebugBreak(MacroAssembler* masm) {
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  // Register state for CompareNil IC
  // ----------- S t a t e -------------
  //  -- eax    : value
  // -----------------------------------
  Generate_DebugBreakCallHelper(masm, eax.bit(), 0, false);
}


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void DebugCodegen::GenerateReturnDebugBreak(MacroAssembler* masm) {
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  // Register state just before return from JS function (from codegen-ia32.cc).
  // ----------- S t a t e -------------
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  //  -- eax: return value
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  // -----------------------------------
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  Generate_DebugBreakCallHelper(masm, eax.bit(), 0, true);
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}


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void DebugCodegen::GenerateCallFunctionStubDebugBreak(MacroAssembler* masm) {
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  // Register state for CallFunctionStub (from code-stubs-ia32.cc).
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  // ----------- S t a t e -------------
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  //  -- edi: function
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  // -----------------------------------
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  Generate_DebugBreakCallHelper(masm, edi.bit(), 0, false);
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}


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void DebugCodegen::GenerateCallConstructStubDebugBreak(MacroAssembler* masm) {
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  // Register state for CallConstructStub (from code-stubs-ia32.cc).
  // eax is the actual number of arguments not encoded as a smi see comment
  // above IC call.
  // ----------- S t a t e -------------
  //  -- eax: number of arguments (not smi)
  //  -- edi: constructor function
  // -----------------------------------
  // The number of arguments in eax is not smi encoded.
  Generate_DebugBreakCallHelper(masm, edi.bit(), eax.bit(), false);
}


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void DebugCodegen::GenerateCallConstructStubRecordDebugBreak(
    MacroAssembler* masm) {
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  // Register state for CallConstructStub (from code-stubs-ia32.cc).
  // eax is the actual number of arguments not encoded as a smi see comment
  // above IC call.
  // ----------- S t a t e -------------
  //  -- eax: number of arguments (not smi)
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  //  -- ebx: feedback array
  //  -- edx: feedback slot (smi)
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  //  -- edi: constructor function
  // -----------------------------------
  // The number of arguments in eax is not smi encoded.
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  Generate_DebugBreakCallHelper(masm, ebx.bit() | edx.bit() | edi.bit(),
                                eax.bit(), false);
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}


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void DebugCodegen::GenerateSlot(MacroAssembler* masm) {
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  // Generate enough nop's to make space for a call instruction.
  Label check_codesize;
  __ bind(&check_codesize);
  __ RecordDebugBreakSlot();
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  __ Nop(Assembler::kDebugBreakSlotLength);
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  DCHECK_EQ(Assembler::kDebugBreakSlotLength,
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            masm->SizeOfCodeGeneratedSince(&check_codesize));
}


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void DebugCodegen::GenerateSlotDebugBreak(MacroAssembler* masm) {
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  // In the places where a debug break slot is inserted no registers can contain
  // object pointers.
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  Generate_DebugBreakCallHelper(masm, 0, 0, true);
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}


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void DebugCodegen::GeneratePlainReturnLiveEdit(MacroAssembler* masm) {
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  masm->ret(0);
}

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void DebugCodegen::GenerateFrameDropperLiveEdit(MacroAssembler* masm) {
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  ExternalReference restarter_frame_function_slot =
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      ExternalReference::debug_restarter_frame_function_pointer_address(
          masm->isolate());
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  __ mov(Operand::StaticVariable(restarter_frame_function_slot), Immediate(0));

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  // We do not know our frame height, but set esp based on ebp.
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  __ lea(esp, Operand(ebp, -1 * kPointerSize));
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  __ pop(edi);  // Function.
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  __ pop(ebp);

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  // Load context from the function.
  __ mov(esi, FieldOperand(edi, JSFunction::kContextOffset));

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  // Get function code.
  __ mov(edx, FieldOperand(edi, JSFunction::kSharedFunctionInfoOffset));
  __ mov(edx, FieldOperand(edx, SharedFunctionInfo::kCodeOffset));
  __ lea(edx, FieldOperand(edx, Code::kHeaderSize));

  // Re-run JSFunction, edi is function, esi is context.
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  __ jmp(edx);
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}

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const bool LiveEdit::kFrameDropperSupported = true;
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#undef __
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} }  // namespace v8::internal
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#endif  // V8_TARGET_ARCH_IA32