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Issue 173349: Reverting 2753. (Closed) Base URL: http://v8.googlecode.com/svn/branches/bleeding_edge/
Patch Set: Created 11 years, 4 months ago
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1 // Copyright 2006-2009 the V8 project authors. All rights reserved. 1 // Copyright 2006-2009 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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1733 GenerateLoadFunctionPrototype(masm(), ecx, edx, ebx, &miss); 1733 GenerateLoadFunctionPrototype(masm(), ecx, edx, ebx, &miss);
1734 __ bind(&miss); 1734 __ bind(&miss);
1735 __ DecrementCounter(&Counters::keyed_load_function_prototype, 1); 1735 __ DecrementCounter(&Counters::keyed_load_function_prototype, 1);
1736 GenerateLoadMiss(masm(), Code::KEYED_LOAD_IC); 1736 GenerateLoadMiss(masm(), Code::KEYED_LOAD_IC);
1737 1737
1738 // Return the generated code. 1738 // Return the generated code.
1739 return GetCode(CALLBACKS, name); 1739 return GetCode(CALLBACKS, name);
1740 } 1740 }
1741 1741
1742 1742
1743 // Specialized stub for constructing objects from functions which only have only
1744 // simple assignments of the form this.x = ...; in their body.
1745 Object* ConstructStubCompiler::CompileConstructStub(
1746 SharedFunctionInfo* shared) {
1747 // ----------- S t a t e -------------
1748 // -- eax : argc
1749 // -- edi : constructor
1750 // -- esp[0] : return address
1751 // -- esp[4] : last argument
1752 // -----------------------------------
1753 Label generic_stub_call;
1754 #ifdef ENABLE_DEBUGGER_SUPPORT
1755 // Check to see whether there are any break points in the function code. If
1756 // there are jump to the generic constructor stub which calls the actual
1757 // code for the function thereby hitting the break points.
1758 __ mov(ebx, FieldOperand(edi, JSFunction::kSharedFunctionInfoOffset));
1759 __ mov(ebx, FieldOperand(ebx, SharedFunctionInfo::kDebugInfoOffset));
1760 __ cmp(ebx, Factory::undefined_value());
1761 __ j(not_equal, &generic_stub_call, not_taken);
1762 #endif
1763
1764 // Load the initial map and verify that it is in fact a map.
1765 __ mov(ebx, FieldOperand(edi, JSFunction::kPrototypeOrInitialMapOffset));
1766 // Will both indicate a NULL and a Smi.
1767 __ test(ebx, Immediate(kSmiTagMask));
1768 __ j(zero, &generic_stub_call);
1769 __ CmpObjectType(ebx, MAP_TYPE, ecx);
1770 __ j(not_equal, &generic_stub_call);
1771
1772 #ifdef DEBUG
1773 // Cannot construct functions this way.
1774 // edi: constructor
1775 // ebx: initial map
1776 __ CmpInstanceType(ebx, JS_FUNCTION_TYPE);
1777 __ Assert(not_equal, "Function constructed by construct stub.");
1778 #endif
1779
1780 // Now allocate the JSObject on the heap by moving the new space allocation
1781 // top forward.
1782 // edi: constructor
1783 // ebx: initial map
1784 __ movzx_b(ecx, FieldOperand(ebx, Map::kInstanceSizeOffset));
1785 __ shl(ecx, kPointerSizeLog2);
1786 // Make sure that the maximum heap object size will never cause us
1787 // problems here.
1788 ASSERT(Heap::MaxObjectSizeInPagedSpace() >= JSObject::kMaxInstanceSize);
1789 ExternalReference new_space_allocation_top =
1790 ExternalReference::new_space_allocation_top_address();
1791 __ mov(edx, Operand::StaticVariable(new_space_allocation_top));
1792 __ add(ecx, Operand(edx)); // Calculate new top.
1793 ExternalReference new_space_allocation_limit =
1794 ExternalReference::new_space_allocation_limit_address();
1795 __ cmp(ecx, Operand::StaticVariable(new_space_allocation_limit));
1796 __ j(above_equal, &generic_stub_call);
1797
1798 // Update new space top.
1799 __ mov(Operand::StaticVariable(new_space_allocation_top), ecx);
1800
1801 // Allocated the JSObject, now initialize the fields and add the heap tag.
1802 // ebx: initial map
1803 // edx: JSObject
1804 __ mov(Operand(edx, JSObject::kMapOffset), ebx);
1805 __ mov(ebx, Factory::empty_fixed_array());
1806 __ mov(Operand(edx, JSObject::kPropertiesOffset), ebx);
1807 __ mov(Operand(edx, JSObject::kElementsOffset), ebx);
1808 __ or_(Operand(edx), Immediate(kHeapObjectTag));
1809
1810 // Push the allocated object to the stack. This is the object that will be
1811 // returned.
1812 __ push(edx);
1813
1814 // eax: argc
1815 // edx: JSObject
1816 // Load the address of the first in-object property into edx.
1817 __ lea(edx, Operand(edx, JSObject::kHeaderSize));
1818 __ xor_(Operand(edx), Immediate(kHeapObjectTag)); // Clear heap object tag.
1819 // Calculate the location of the first argument. The stack contains the
1820 // allocated object and the return address on top of the argc arguments.
1821 __ lea(ecx, Operand(esp, eax, times_4, 1 * kPointerSize));
1822
1823 // Use edi for holding undefined which is used in several places below.
1824 __ mov(edi, Factory::undefined_value());
1825
1826 // eax: argc
1827 // ecx: first argument
1828 // edx: first in-object property of the JSObject
1829 // edi: undefined
1830 // Fill the initialized properties with a constant value or a passed argument
1831 // depending on the this.x = ...; assignment in the function.
1832 for (int i = 0; i < shared->this_property_assignments_count(); i++) {
1833 if (shared->IsThisPropertyAssignmentArgument(i)) {
1834 Label not_passed;
1835 // Set the property to undefined.
1836 __ mov(Operand(edx, i * kPointerSize), edi);
1837 // Check if the argument assigned to the property is actually passed.
1838 int arg_number = shared->GetThisPropertyAssignmentArgument(i);
1839 __ cmp(eax, arg_number);
1840 __ j(below_equal, &not_passed);
1841 // Argument passed - find it on the stack.
1842 __ mov(ebx, Operand(ecx, arg_number * -kPointerSize));
1843 __ mov(Operand(edx, i * kPointerSize), ebx);
1844 __ bind(&not_passed);
1845 } else {
1846 // Set the property to the constant value.
1847 Handle<Object> constant(shared->GetThisPropertyAssignmentConstant(i));
1848 __ mov(Operand(edx, i * kPointerSize), Immediate(constant));
1849 }
1850 }
1851
1852 // Fill the unused in-object property fields with undefined.
1853 for (int i = shared->this_property_assignments_count();
1854 i < shared->CalculateInObjectProperties();
1855 i++) {
1856 __ mov(Operand(edx, i * kPointerSize), edi);
1857 }
1858
1859 // Move argc to ebx and retreive the JSObject to return.
1860 __ mov(ebx, eax);
1861 __ pop(eax);
1862
1863 // Remove caller arguments from the stack and return.
1864 __ pop(ecx);
1865 __ lea(esp, Operand(esp, ebx, times_4, 1 * kPointerSize)); // 1 ~ receiver
1866 __ push(ecx);
1867 __ IncrementCounter(&Counters::constructed_objects, 1);
1868 __ IncrementCounter(&Counters::constructed_objects_stub, 1);
1869 __ ret(0);
1870
1871 // Jump to the generic stub in case the specialized code cannot handle the
1872 // construction.
1873 __ bind(&generic_stub_call);
1874 Code* code = Builtins::builtin(Builtins::JSConstructStubGeneric);
1875 Handle<Code> generic_construct_stub(code);
1876 __ jmp(generic_construct_stub, RelocInfo::CODE_TARGET);
1877
1878 // Return the generated code.
1879 return GetCode();
1880 }
1881
1882
1883 #undef __ 1743 #undef __
1884 1744
1885 } } // namespace v8::internal 1745 } } // namespace v8::internal
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