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1 // Copyright 2011 the V8 project authors. All rights reserved. | 1 // Copyright 2011 the V8 project authors. All rights reserved. |
2 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
4 // met: | 4 // met: |
5 // | 5 // |
6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
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3603 __ push(edx); | 3603 __ push(edx); |
3604 __ push(ebx); | 3604 __ push(ebx); |
3605 __ TailCallRuntime(Runtime::kGetArgumentsProperty, 1, 1); | 3605 __ TailCallRuntime(Runtime::kGetArgumentsProperty, 1, 1); |
3606 } | 3606 } |
3607 | 3607 |
3608 | 3608 |
3609 void ArgumentsAccessStub::GenerateNewObject(MacroAssembler* masm) { | 3609 void ArgumentsAccessStub::GenerateNewObject(MacroAssembler* masm) { |
3610 // esp[0] : return address | 3610 // esp[0] : return address |
3611 // esp[4] : number of parameters | 3611 // esp[4] : number of parameters |
3612 // esp[8] : receiver displacement | 3612 // esp[8] : receiver displacement |
3613 // esp[16] : function | 3613 // esp[12] : function |
3614 | 3614 |
3615 // The displacement is used for skipping the return address and the | 3615 // The displacement is used for skipping the return address and the |
3616 // frame pointer on the stack. It is the offset of the last | 3616 // frame pointer on the stack. It is the offset of the last |
3617 // parameter (if any) relative to the frame pointer. | 3617 // parameter (if any) relative to the frame pointer. |
3618 static const int kDisplacement = 2 * kPointerSize; | 3618 static const int kDisplacement = 2 * kPointerSize; |
3619 | 3619 |
3620 // Check if the calling frame is an arguments adaptor frame. | 3620 // Check if the calling frame is an arguments adaptor frame. |
3621 Label adaptor_frame, try_allocate, runtime; | 3621 Label adaptor_frame, try_allocate, runtime; |
3622 __ mov(edx, Operand(ebp, StandardFrameConstants::kCallerFPOffset)); | 3622 __ mov(edx, Operand(ebp, StandardFrameConstants::kCallerFPOffset)); |
3623 __ mov(ecx, Operand(edx, StandardFrameConstants::kContextOffset)); | 3623 __ mov(ecx, Operand(edx, StandardFrameConstants::kContextOffset)); |
3624 __ cmp(Operand(ecx), Immediate(Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR))); | 3624 __ cmp(Operand(ecx), Immediate(Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR))); |
3625 __ j(equal, &adaptor_frame); | 3625 __ j(equal, &adaptor_frame); |
3626 | 3626 |
3627 // Get the length from the frame. | 3627 // Get the length from the frame. |
3628 __ mov(ecx, Operand(esp, 1 * kPointerSize)); | 3628 __ mov(ecx, Operand(esp, 1 * kPointerSize)); |
3629 __ jmp(&try_allocate); | 3629 __ jmp(&try_allocate); |
3630 | 3630 |
3631 // Patch the arguments.length and the parameters pointer. | 3631 // Patch the arguments.length and the parameters pointer. |
3632 __ bind(&adaptor_frame); | 3632 __ bind(&adaptor_frame); |
3633 __ mov(ecx, Operand(edx, ArgumentsAdaptorFrameConstants::kLengthOffset)); | 3633 __ mov(ecx, Operand(edx, ArgumentsAdaptorFrameConstants::kLengthOffset)); |
3634 __ mov(Operand(esp, 1 * kPointerSize), ecx); | 3634 __ mov(Operand(esp, 1 * kPointerSize), ecx); |
3635 __ lea(edx, Operand(edx, ecx, times_2, kDisplacement)); | 3635 __ lea(edx, Operand(edx, ecx, times_2, kDisplacement)); |
3636 __ mov(Operand(esp, 2 * kPointerSize), edx); | 3636 __ mov(Operand(esp, 2 * kPointerSize), edx); |
3637 | 3637 |
3638 // Try the new space allocation. Start out with computing the size of | 3638 // Try the new space allocation. Start out with computing the size of |
3639 // the arguments object and the elements array. | 3639 // the arguments object and the elements array. |
3640 NearLabel add_arguments_object; | 3640 NearLabel add_arguments_object; |
3641 __ bind(&try_allocate); | 3641 __ bind(&try_allocate); |
3642 __ test(ecx, Operand(ecx)); | 3642 if (type_ == NEW_NON_STRICT) { |
3643 __ j(zero, &add_arguments_object); | 3643 __ TailCallRuntime(Runtime::kNewArgumentsFast, 3, 1); |
3644 __ lea(ecx, Operand(ecx, times_2, FixedArray::kHeaderSize)); | 3644 } else { |
3645 __ bind(&add_arguments_object); | 3645 __ test(ecx, Operand(ecx)); |
3646 __ add(Operand(ecx), Immediate(GetArgumentsObjectSize())); | 3646 __ j(zero, &add_arguments_object); |
| 3647 __ lea(ecx, Operand(ecx, times_2, FixedArray::kHeaderSize)); |
| 3648 __ bind(&add_arguments_object); |
| 3649 __ add(Operand(ecx), Immediate(GetArgumentsObjectSize())); |
3647 | 3650 |
3648 // Do the allocation of both objects in one go. | 3651 // Do the allocation of both objects in one go. |
3649 __ AllocateInNewSpace(ecx, eax, edx, ebx, &runtime, TAG_OBJECT); | 3652 __ AllocateInNewSpace(ecx, eax, edx, ebx, &runtime, TAG_OBJECT); |
3650 | 3653 |
3651 // Get the arguments boilerplate from the current (global) context. | 3654 // Get the arguments boilerplate from the current (global) context. |
3652 __ mov(edi, Operand(esi, Context::SlotOffset(Context::GLOBAL_INDEX))); | 3655 __ mov(edi, Operand(esi, Context::SlotOffset(Context::GLOBAL_INDEX))); |
3653 __ mov(edi, FieldOperand(edi, GlobalObject::kGlobalContextOffset)); | 3656 __ mov(edi, FieldOperand(edi, GlobalObject::kGlobalContextOffset)); |
3654 __ mov(edi, Operand(edi, | 3657 __ mov(edi, Operand(edi, |
3655 Context::SlotOffset(GetArgumentsBoilerplateIndex()))); | 3658 Context::SlotOffset(GetArgumentsBoilerplateIndex()))); |
3656 | 3659 |
3657 // Copy the JS object part. | 3660 // Copy the JS object part. |
3658 for (int i = 0; i < JSObject::kHeaderSize; i += kPointerSize) { | 3661 for (int i = 0; i < JSObject::kHeaderSize; i += kPointerSize) { |
3659 __ mov(ebx, FieldOperand(edi, i)); | 3662 __ mov(ebx, FieldOperand(edi, i)); |
3660 __ mov(FieldOperand(eax, i), ebx); | 3663 __ mov(FieldOperand(eax, i), ebx); |
| 3664 } |
| 3665 |
| 3666 if (type_ == NEW_NON_STRICT) { |
| 3667 // Setup the callee in-object property. |
| 3668 STATIC_ASSERT(Heap::kArgumentsCalleeIndex == 1); |
| 3669 __ mov(ebx, Operand(esp, 3 * kPointerSize)); |
| 3670 __ mov(FieldOperand(eax, JSObject::kHeaderSize + |
| 3671 Heap::kArgumentsCalleeIndex * kPointerSize), |
| 3672 ebx); |
| 3673 } |
| 3674 |
| 3675 // Get the length (smi tagged) and set that as an in-object property too. |
| 3676 STATIC_ASSERT(Heap::kArgumentsLengthIndex == 0); |
| 3677 __ mov(ecx, Operand(esp, 1 * kPointerSize)); |
| 3678 __ mov(FieldOperand(eax, JSObject::kHeaderSize + |
| 3679 Heap::kArgumentsLengthIndex * kPointerSize), |
| 3680 ecx); |
| 3681 |
| 3682 // If there are no actual arguments, we're done. |
| 3683 Label done; |
| 3684 __ test(ecx, Operand(ecx)); |
| 3685 __ j(zero, &done); |
| 3686 |
| 3687 // Get the parameters pointer from the stack. |
| 3688 __ mov(edx, Operand(esp, 2 * kPointerSize)); |
| 3689 |
| 3690 // Setup the elements pointer in the allocated arguments object and |
| 3691 // initialize the header in the elements fixed array. |
| 3692 __ lea(edi, Operand(eax, GetArgumentsObjectSize())); |
| 3693 __ mov(FieldOperand(eax, JSObject::kElementsOffset), edi); |
| 3694 __ mov(FieldOperand(edi, FixedArray::kMapOffset), |
| 3695 Immediate(FACTORY->fixed_array_map())); |
| 3696 |
| 3697 __ mov(FieldOperand(edi, FixedArray::kLengthOffset), ecx); |
| 3698 // Untag the length for the loop below. |
| 3699 __ SmiUntag(ecx); |
| 3700 |
| 3701 // Copy the fixed array slots. |
| 3702 NearLabel loop; |
| 3703 __ bind(&loop); |
| 3704 __ mov(ebx, Operand(edx, -1 * kPointerSize)); // Skip receiver. |
| 3705 __ mov(FieldOperand(edi, FixedArray::kHeaderSize), ebx); |
| 3706 __ add(Operand(edi), Immediate(kPointerSize)); |
| 3707 __ sub(Operand(edx), Immediate(kPointerSize)); |
| 3708 __ dec(ecx); |
| 3709 __ j(not_zero, &loop); |
| 3710 |
| 3711 // Return and remove the on-stack parameters. |
| 3712 __ bind(&done); |
| 3713 __ ret(3 * kPointerSize); |
| 3714 |
| 3715 // Do the runtime call to allocate the arguments object. |
| 3716 __ bind(&runtime); |
| 3717 __ TailCallRuntime(Runtime::kNewStrictArgumentsFast, 3, 1); |
3661 } | 3718 } |
3662 | |
3663 if (type_ == NEW_NON_STRICT) { | |
3664 // Setup the callee in-object property. | |
3665 STATIC_ASSERT(Heap::kArgumentsCalleeIndex == 1); | |
3666 __ mov(ebx, Operand(esp, 3 * kPointerSize)); | |
3667 __ mov(FieldOperand(eax, JSObject::kHeaderSize + | |
3668 Heap::kArgumentsCalleeIndex * kPointerSize), | |
3669 ebx); | |
3670 } | |
3671 | |
3672 // Get the length (smi tagged) and set that as an in-object property too. | |
3673 STATIC_ASSERT(Heap::kArgumentsLengthIndex == 0); | |
3674 __ mov(ecx, Operand(esp, 1 * kPointerSize)); | |
3675 __ mov(FieldOperand(eax, JSObject::kHeaderSize + | |
3676 Heap::kArgumentsLengthIndex * kPointerSize), | |
3677 ecx); | |
3678 | |
3679 // If there are no actual arguments, we're done. | |
3680 Label done; | |
3681 __ test(ecx, Operand(ecx)); | |
3682 __ j(zero, &done); | |
3683 | |
3684 // Get the parameters pointer from the stack. | |
3685 __ mov(edx, Operand(esp, 2 * kPointerSize)); | |
3686 | |
3687 // Setup the elements pointer in the allocated arguments object and | |
3688 // initialize the header in the elements fixed array. | |
3689 __ lea(edi, Operand(eax, GetArgumentsObjectSize())); | |
3690 __ mov(FieldOperand(eax, JSObject::kElementsOffset), edi); | |
3691 __ mov(FieldOperand(edi, FixedArray::kMapOffset), | |
3692 Immediate(FACTORY->fixed_array_map())); | |
3693 | |
3694 __ mov(FieldOperand(edi, FixedArray::kLengthOffset), ecx); | |
3695 // Untag the length for the loop below. | |
3696 __ SmiUntag(ecx); | |
3697 | |
3698 // Copy the fixed array slots. | |
3699 NearLabel loop; | |
3700 __ bind(&loop); | |
3701 __ mov(ebx, Operand(edx, -1 * kPointerSize)); // Skip receiver. | |
3702 __ mov(FieldOperand(edi, FixedArray::kHeaderSize), ebx); | |
3703 __ add(Operand(edi), Immediate(kPointerSize)); | |
3704 __ sub(Operand(edx), Immediate(kPointerSize)); | |
3705 __ dec(ecx); | |
3706 __ j(not_zero, &loop); | |
3707 | |
3708 // Return and remove the on-stack parameters. | |
3709 __ bind(&done); | |
3710 __ ret(3 * kPointerSize); | |
3711 | |
3712 // Do the runtime call to allocate the arguments object. | |
3713 __ bind(&runtime); | |
3714 __ TailCallRuntime(Runtime::kNewArgumentsFast, 3, 1); | |
3715 } | 3719 } |
3716 | 3720 |
3717 | 3721 |
3718 void RegExpExecStub::Generate(MacroAssembler* masm) { | 3722 void RegExpExecStub::Generate(MacroAssembler* masm) { |
3719 // Just jump directly to runtime if native RegExp is not selected at compile | 3723 // Just jump directly to runtime if native RegExp is not selected at compile |
3720 // time or if regexp entry in generated code is turned off runtime switch or | 3724 // time or if regexp entry in generated code is turned off runtime switch or |
3721 // at compilation. | 3725 // at compilation. |
3722 #ifdef V8_INTERPRETED_REGEXP | 3726 #ifdef V8_INTERPRETED_REGEXP |
3723 __ TailCallRuntime(Runtime::kRegExpExec, 4, 1); | 3727 __ TailCallRuntime(Runtime::kRegExpExec, 4, 1); |
3724 #else // V8_INTERPRETED_REGEXP | 3728 #else // V8_INTERPRETED_REGEXP |
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6479 // Do a tail call to the rewritten stub. | 6483 // Do a tail call to the rewritten stub. |
6480 __ jmp(Operand(edi)); | 6484 __ jmp(Operand(edi)); |
6481 } | 6485 } |
6482 | 6486 |
6483 | 6487 |
6484 #undef __ | 6488 #undef __ |
6485 | 6489 |
6486 } } // namespace v8::internal | 6490 } } // namespace v8::internal |
6487 | 6491 |
6488 #endif // V8_TARGET_ARCH_IA32 | 6492 #endif // V8_TARGET_ARCH_IA32 |
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