| Index: src/ia32/code-stubs-ia32.cc
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| diff --git a/src/ia32/code-stubs-ia32.cc b/src/ia32/code-stubs-ia32.cc
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| index e05e7e10bc7148801b5f7ec66d763045b33d1826..9f145672540579d43102aabe769f72775c0c6d1b 100644
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| --- a/src/ia32/code-stubs-ia32.cc
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| +++ b/src/ia32/code-stubs-ia32.cc
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| @@ -2898,16 +2898,259 @@ void ArgumentsAccessStub::GenerateReadElement(MacroAssembler* masm) {
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|  }
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|  
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|  
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| -void ArgumentsAccessStub::GenerateNewObject(MacroAssembler* masm) {
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| +void ArgumentsAccessStub::GenerateNewNonStrictSlow(MacroAssembler* masm) {
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|    // esp[0] : return address
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|    // esp[4] : number of parameters
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|    // esp[8] : receiver displacement
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| -  // esp[16] : function
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| +  // esp[12] : function
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|  
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| -  // The displacement is used for skipping the return address and the
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| -  // frame pointer on the stack. It is the offset of the last
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| -  // parameter (if any) relative to the frame pointer.
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| -  static const int kDisplacement = 2 * kPointerSize;
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| +  // Check if the calling frame is an arguments adaptor frame.
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| +  Label runtime;
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| +  __ mov(edx, Operand(ebp, StandardFrameConstants::kCallerFPOffset));
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| +  __ mov(ecx, Operand(edx, StandardFrameConstants::kContextOffset));
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| +  __ cmp(Operand(ecx), Immediate(Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR)));
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| +  __ j(not_equal, &runtime, Label::kNear);
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| +
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| +  // Patch the arguments.length and the parameters pointer.
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| +  __ mov(ecx, Operand(edx, ArgumentsAdaptorFrameConstants::kLengthOffset));
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| +  __ mov(Operand(esp, 1 * kPointerSize), ecx);
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| +  __ lea(edx, Operand(edx, ecx, times_2,
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| +              StandardFrameConstants::kCallerSPOffset));
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| +  __ mov(Operand(esp, 2 * kPointerSize), edx);
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| +
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| +  __ bind(&runtime);
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| +  __ TailCallRuntime(Runtime::kNewArgumentsFast, 3, 1);
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| +}
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| +
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| +
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| +void ArgumentsAccessStub::GenerateNewNonStrictFast(MacroAssembler* masm) {
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| +  // esp[0] : return address
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| +  // esp[4] : number of parameters (tagged)
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| +  // esp[8] : receiver displacement
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| +  // esp[12] : function
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| +
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| +  // ebx = parameter count (tagged)
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| +  __ mov(ebx, Operand(esp, 1 * kPointerSize));
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| +
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| +  // Check if the calling frame is an arguments adaptor frame.
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| +  // TODO(rossberg): Factor out some of the bits that are shared with the other
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| +  // Generate* functions.
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| +  Label runtime;
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| +  Label adaptor_frame, try_allocate;
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| +  __ mov(edx, Operand(ebp, StandardFrameConstants::kCallerFPOffset));
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| +  __ mov(ecx, Operand(edx, StandardFrameConstants::kContextOffset));
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| +  __ cmp(Operand(ecx), Immediate(Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR)));
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| +  __ j(equal, &adaptor_frame, Label::kNear);
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| +
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| +  // No adaptor, parameter count = argument count.
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| +  __ mov(ecx, ebx);
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| +  __ jmp(&try_allocate, Label::kNear);
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| +
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| +  // We have an adaptor frame. Patch the parameters pointer.
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| +  __ bind(&adaptor_frame);
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| +  __ mov(ecx, Operand(edx, ArgumentsAdaptorFrameConstants::kLengthOffset));
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| +  __ lea(edx, Operand(edx, ecx, times_2,
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| +                      StandardFrameConstants::kCallerSPOffset));
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| +  __ mov(Operand(esp, 2 * kPointerSize), edx);
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| +
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| +  // ebx = parameter count (tagged)
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| +  // ecx = argument count (tagged)
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| +  // esp[4] = parameter count (tagged)
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| +  // esp[8] = address of receiver argument
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| +  // Compute the mapped parameter count = min(ebx, ecx) in ebx.
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| +  __ cmp(ebx, Operand(ecx));
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| +  __ j(less_equal, &try_allocate, Label::kNear);
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| +  __ mov(ebx, ecx);
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| +
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| +  __ bind(&try_allocate);
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| +
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| +  // Save mapped parameter count.
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| +  __ push(ebx);
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| +
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| +  // Compute the sizes of backing store, parameter map, and arguments object.
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| +  // 1. Parameter map, has 2 extra words containing context and backing store.
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| +  const int kParameterMapHeaderSize =
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| +      FixedArray::kHeaderSize + 2 * kPointerSize;
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| +  Label no_parameter_map;
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| +  __ test(ebx, Operand(ebx));
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| +  __ j(zero, &no_parameter_map, Label::kNear);
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| +  __ lea(ebx, Operand(ebx, times_2, kParameterMapHeaderSize));
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| +  __ bind(&no_parameter_map);
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| +
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| +  // 2. Backing store.
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| +  __ lea(ebx, Operand(ebx, ecx, times_2, FixedArray::kHeaderSize));
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| +
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| +  // 3. Arguments object.
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| +  __ add(Operand(ebx), Immediate(Heap::kArgumentsObjectSize));
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| +
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| +  // Do the allocation of all three objects in one go.
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| +  __ AllocateInNewSpace(ebx, eax, edx, edi, &runtime, TAG_OBJECT);
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| +
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| +  // eax = address of new object(s) (tagged)
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| +  // ecx = argument count (tagged)
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| +  // esp[0] = mapped parameter count (tagged)
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| +  // esp[8] = parameter count (tagged)
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| +  // esp[12] = address of receiver argument
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| +  // Get the arguments boilerplate from the current (global) context into edi.
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| +  Label has_mapped_parameters, copy;
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| +  __ mov(edi, Operand(esi, Context::SlotOffset(Context::GLOBAL_INDEX)));
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| +  __ mov(edi, FieldOperand(edi, GlobalObject::kGlobalContextOffset));
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| +  __ mov(ebx, Operand(esp, 0 * kPointerSize));
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| +  __ test(ebx, Operand(ebx));
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| +  __ j(not_zero, &has_mapped_parameters, Label::kNear);
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| +  __ mov(edi, Operand(edi,
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| +         Context::SlotOffset(Context::ARGUMENTS_BOILERPLATE_INDEX)));
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| +  __ jmp(©, Label::kNear);
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| +
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| +  __ bind(&has_mapped_parameters);
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| +  __ mov(edi, Operand(edi,
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| +            Context::SlotOffset(Context::ALIASED_ARGUMENTS_BOILERPLATE_INDEX)));
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| +  __ bind(©);
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| +
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| +  // eax = address of new object (tagged)
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| +  // ebx = mapped parameter count (tagged)
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| +  // ecx = argument count (tagged)
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| +  // edi = address of boilerplate object (tagged)
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| +  // esp[0] = mapped parameter count (tagged)
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| +  // esp[8] = parameter count (tagged)
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| +  // esp[12] = address of receiver argument
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| +  // Copy the JS object part.
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| +  for (int i = 0; i < JSObject::kHeaderSize; i += kPointerSize) {
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| +    __ mov(edx, FieldOperand(edi, i));
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| +    __ mov(FieldOperand(eax, i), edx);
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| +  }
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| +
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| +  // Setup the callee in-object property.
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| +  STATIC_ASSERT(Heap::kArgumentsCalleeIndex == 1);
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| +  __ mov(edx, Operand(esp, 4 * kPointerSize));
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| +  __ mov(FieldOperand(eax, JSObject::kHeaderSize +
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| +                      Heap::kArgumentsCalleeIndex * kPointerSize),
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| +         edx);
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| +
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| +  // Use the length (smi tagged) and set that as an in-object property too.
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| +  STATIC_ASSERT(Heap::kArgumentsLengthIndex == 0);
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| +  __ mov(FieldOperand(eax, JSObject::kHeaderSize +
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| +                      Heap::kArgumentsLengthIndex * kPointerSize),
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| +         ecx);
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| +
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| +  // Setup the elements pointer in the allocated arguments object.
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| +  // If we allocated a parameter map, edi will point there, otherwise to the
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| +  // backing store.
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| +  __ lea(edi, Operand(eax, Heap::kArgumentsObjectSize));
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| +  __ mov(FieldOperand(eax, JSObject::kElementsOffset), edi);
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| +
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| +  // eax = address of new object (tagged)
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| +  // ebx = mapped parameter count (tagged)
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| +  // ecx = argument count (tagged)
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| +  // edi = address of parameter map or backing store (tagged)
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| +  // esp[0] = mapped parameter count (tagged)
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| +  // esp[8] = parameter count (tagged)
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| +  // esp[12] = address of receiver argument
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| +  // Free a register.
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| +  __ push(eax);
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| +
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| +  // Initialize parameter map. If there are no mapped arguments, we're done.
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| +  Label skip_parameter_map;
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| +  __ test(ebx, Operand(ebx));
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| +  __ j(zero, &skip_parameter_map);
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| +
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| +  __ mov(FieldOperand(edi, FixedArray::kMapOffset),
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| +         Immediate(FACTORY->non_strict_arguments_elements_map()));
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| +  __ lea(eax, Operand(ebx, reinterpret_cast<intptr_t>(Smi::FromInt(2))));
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| +  __ mov(FieldOperand(edi, FixedArray::kLengthOffset), eax);
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| +  __ mov(FieldOperand(edi, FixedArray::kHeaderSize + 0 * kPointerSize), esi);
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| +  __ lea(eax, Operand(edi, ebx, times_2, kParameterMapHeaderSize));
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| +  __ mov(FieldOperand(edi, FixedArray::kHeaderSize + 1 * kPointerSize), eax);
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| +
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| +  // Copy the parameter slots and the holes in the arguments.
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| +  // We need to fill in mapped_parameter_count slots. They index the context,
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| +  // where parameters are stored in reverse order, at
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| +  //   MIN_CONTEXT_SLOTS .. MIN_CONTEXT_SLOTS+parameter_count-1
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| +  // The mapped parameter thus need to get indices
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| +  //   MIN_CONTEXT_SLOTS+parameter_count-1 ..
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| +  //       MIN_CONTEXT_SLOTS+parameter_count-mapped_parameter_count
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| +  // We loop from right to left.
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| +  Label parameters_loop, parameters_test;
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| +  __ push(ecx);
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| +  __ mov(eax, Operand(esp, 2 * kPointerSize));
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| +  __ mov(ebx, Immediate(Smi::FromInt(Context::MIN_CONTEXT_SLOTS)));
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| +  __ add(ebx, Operand(esp, 4 * kPointerSize));
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| +  __ sub(ebx, Operand(eax));
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| +  __ mov(ecx, FACTORY->the_hole_value());
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| +  __ mov(edx, edi);
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| +  __ lea(edi, Operand(edi, eax, times_2, kParameterMapHeaderSize));
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| +  // eax = loop variable (tagged)
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| +  // ebx = mapping index (tagged)
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| +  // ecx = the hole value
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| +  // edx = address of parameter map (tagged)
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| +  // edi = address of backing store (tagged)
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| +  // esp[0] = argument count (tagged)
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| +  // esp[4] = address of new object (tagged)
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| +  // esp[8] = mapped parameter count (tagged)
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| +  // esp[16] = parameter count (tagged)
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| +  // esp[20] = address of receiver argument
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| +  __ jmp(¶meters_test, Label::kNear);
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| +
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| +  __ bind(¶meters_loop);
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| +  __ sub(Operand(eax), Immediate(Smi::FromInt(1)));
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| +  __ mov(FieldOperand(edx, eax, times_2, kParameterMapHeaderSize), ebx);
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| +  __ mov(FieldOperand(edi, eax, times_2, FixedArray::kHeaderSize), ecx);
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| +  __ add(Operand(ebx), Immediate(Smi::FromInt(1)));
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| +  __ bind(¶meters_test);
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| +  __ test(eax, Operand(eax));
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| +  __ j(not_zero, ¶meters_loop, Label::kNear);
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| +  __ pop(ecx);
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| +
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| +  __ bind(&skip_parameter_map);
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| +
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| +  // ecx = argument count (tagged)
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| +  // edi = address of backing store (tagged)
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| +  // esp[0] = address of new object (tagged)
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| +  // esp[4] = mapped parameter count (tagged)
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| +  // esp[12] = parameter count (tagged)
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| +  // esp[16] = address of receiver argument
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| +  // Copy arguments header and remaining slots (if there are any).
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| +  __ mov(FieldOperand(edi, FixedArray::kMapOffset),
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| +         Immediate(FACTORY->fixed_array_map()));
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| +  __ mov(FieldOperand(edi, FixedArray::kLengthOffset), ecx);
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| +
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| +  Label arguments_loop, arguments_test;
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| +  __ mov(ebx, Operand(esp, 1 * kPointerSize));
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| +  __ mov(edx, Operand(esp, 4 * kPointerSize));
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| +  __ sub(Operand(edx), ebx);  // Is there a smarter way to do negative scaling?
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| +  __ sub(Operand(edx), ebx);
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| +  __ jmp(&arguments_test, Label::kNear);
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| +
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| +  __ bind(&arguments_loop);
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| +  __ sub(Operand(edx), Immediate(kPointerSize));
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| +  __ mov(eax, Operand(edx, 0));
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| +  __ mov(FieldOperand(edi, ebx, times_2, FixedArray::kHeaderSize), eax);
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| +  __ add(Operand(ebx), Immediate(Smi::FromInt(1)));
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| +
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| +  __ bind(&arguments_test);
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| +  __ cmp(ebx, Operand(ecx));
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| +  __ j(less, &arguments_loop, Label::kNear);
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| +
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| +  // Restore.
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| +  __ pop(eax);  // Address of arguments object.
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| +  __ pop(ebx);  // Parameter count.
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| +
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| +  // Return and remove the on-stack parameters.
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| +  __ ret(3 * kPointerSize);
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| +
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| +  // Do the runtime call to allocate the arguments object.
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| +  __ bind(&runtime);
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| +  __ pop(eax);  // Remove saved parameter count.
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| +  __ mov(Operand(esp, 1 * kPointerSize), ecx);  // Patch argument count.
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| +  __ TailCallRuntime(Runtime::kNewStrictArgumentsFast, 3, 1);
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| +}
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| +
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| +
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| +void ArgumentsAccessStub::GenerateNewStrict(MacroAssembler* masm) {
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| +  // esp[0] : return address
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| +  // esp[4] : number of parameters
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| +  // esp[8] : receiver displacement
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| +  // esp[12] : function
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|  
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|    // Check if the calling frame is an arguments adaptor frame.
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|    Label adaptor_frame, try_allocate, runtime;
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| @@ -2924,7 +3167,8 @@ void ArgumentsAccessStub::GenerateNewObject(MacroAssembler* masm) {
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|    __ bind(&adaptor_frame);
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|    __ mov(ecx, Operand(edx, ArgumentsAdaptorFrameConstants::kLengthOffset));
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|    __ mov(Operand(esp, 1 * kPointerSize), ecx);
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| -  __ lea(edx, Operand(edx, ecx, times_2, kDisplacement));
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| +  __ lea(edx, Operand(edx, ecx, times_2,
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| +                      StandardFrameConstants::kCallerSPOffset));
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|    __ mov(Operand(esp, 2 * kPointerSize), edx);
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|  
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|    // Try the new space allocation. Start out with computing the size of
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| @@ -2935,7 +3179,7 @@ void ArgumentsAccessStub::GenerateNewObject(MacroAssembler* masm) {
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|    __ j(zero, &add_arguments_object, Label::kNear);
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|    __ lea(ecx, Operand(ecx, times_2, FixedArray::kHeaderSize));
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|    __ bind(&add_arguments_object);
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| -  __ add(Operand(ecx), Immediate(GetArgumentsObjectSize()));
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| +  __ add(Operand(ecx), Immediate(Heap::kArgumentsObjectSizeStrict));
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|  
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|    // Do the allocation of both objects in one go.
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|    __ AllocateInNewSpace(ecx, eax, edx, ebx, &runtime, TAG_OBJECT);
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| @@ -2943,8 +3187,9 @@ void ArgumentsAccessStub::GenerateNewObject(MacroAssembler* masm) {
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|    // Get the arguments boilerplate from the current (global) context.
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|    __ mov(edi, Operand(esi, Context::SlotOffset(Context::GLOBAL_INDEX)));
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|    __ mov(edi, FieldOperand(edi, GlobalObject::kGlobalContextOffset));
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| -  __ mov(edi, Operand(edi,
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| -                      Context::SlotOffset(GetArgumentsBoilerplateIndex())));
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| +  const int offset =
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| +      Context::SlotOffset(Context::STRICT_MODE_ARGUMENTS_BOILERPLATE_INDEX);
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| +  __ mov(edi, Operand(edi, offset));
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|  
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|    // Copy the JS object part.
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|    for (int i = 0; i < JSObject::kHeaderSize; i += kPointerSize) {
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| @@ -2952,20 +3197,11 @@ void ArgumentsAccessStub::GenerateNewObject(MacroAssembler* masm) {
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|      __ mov(FieldOperand(eax, i), ebx);
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|    }
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|  
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| -  if (type_ == NEW_NON_STRICT) {
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| -    // Setup the callee in-object property.
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| -    STATIC_ASSERT(Heap::kArgumentsCalleeIndex == 1);
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| -    __ mov(ebx, Operand(esp, 3 * kPointerSize));
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| -    __ mov(FieldOperand(eax, JSObject::kHeaderSize +
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| -                             Heap::kArgumentsCalleeIndex * kPointerSize),
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| -           ebx);
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| -  }
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| -
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|    // Get the length (smi tagged) and set that as an in-object property too.
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|    STATIC_ASSERT(Heap::kArgumentsLengthIndex == 0);
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|    __ mov(ecx, Operand(esp, 1 * kPointerSize));
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|    __ mov(FieldOperand(eax, JSObject::kHeaderSize +
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| -                           Heap::kArgumentsLengthIndex * kPointerSize),
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| +                      Heap::kArgumentsLengthIndex * kPointerSize),
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|           ecx);
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|  
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|    // If there are no actual arguments, we're done.
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| @@ -2978,10 +3214,10 @@ void ArgumentsAccessStub::GenerateNewObject(MacroAssembler* masm) {
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|  
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|    // Setup the elements pointer in the allocated arguments object and
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|    // initialize the header in the elements fixed array.
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| -  __ lea(edi, Operand(eax, GetArgumentsObjectSize()));
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| +  __ lea(edi, Operand(eax, Heap::kArgumentsObjectSizeStrict));
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|    __ mov(FieldOperand(eax, JSObject::kElementsOffset), edi);
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|    __ mov(FieldOperand(edi, FixedArray::kMapOffset),
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| -         Immediate(masm->isolate()->factory()->fixed_array_map()));
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| +         Immediate(FACTORY->fixed_array_map()));
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|  
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|    __ mov(FieldOperand(edi, FixedArray::kLengthOffset), ecx);
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|    // Untag the length for the loop below.
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| @@ -3003,7 +3239,7 @@ void ArgumentsAccessStub::GenerateNewObject(MacroAssembler* masm) {
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|  
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|    // Do the runtime call to allocate the arguments object.
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|    __ bind(&runtime);
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| -  __ TailCallRuntime(Runtime::kNewArgumentsFast, 3, 1);
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| +  __ TailCallRuntime(Runtime::kNewStrictArgumentsFast, 3, 1);
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|  }
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|  
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|  
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| 
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