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Issue 16453002: Removed flag optimize-constructed-arrays. (Closed) Base URL: https://v8.googlecode.com/svn/branches/bleeding_edge
Patch Set: Comment fixes Created 7 years, 5 months ago
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1 // Copyright 2012 the V8 project authors. All rights reserved. 1 // Copyright 2012 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
(...skipping 4660 matching lines...) Expand 10 before | Expand all | Expand 10 after
4671 void StackCheckStub::Generate(MacroAssembler* masm) { 4671 void StackCheckStub::Generate(MacroAssembler* masm) {
4672 __ TailCallRuntime(Runtime::kStackGuard, 0, 1); 4672 __ TailCallRuntime(Runtime::kStackGuard, 0, 1);
4673 } 4673 }
4674 4674
4675 4675
4676 void InterruptStub::Generate(MacroAssembler* masm) { 4676 void InterruptStub::Generate(MacroAssembler* masm) {
4677 __ TailCallRuntime(Runtime::kInterrupt, 0, 1); 4677 __ TailCallRuntime(Runtime::kInterrupt, 0, 1);
4678 } 4678 }
4679 4679
4680 4680
4681 static void GenerateRecordCallTargetNoArray(MacroAssembler* masm) {
4682 // Cache the called function in a global property cell. Cache states
4683 // are uninitialized, monomorphic (indicated by a JSFunction), and
4684 // megamorphic.
4685 // ebx : cache cell for call target
4686 // edi : the function to call
4687 Isolate* isolate = masm->isolate();
4688 Label initialize, done;
4689
4690 // Load the cache state into ecx.
4691 __ mov(ecx, FieldOperand(ebx, PropertyCell::kValueOffset));
4692
4693 // A monomorphic cache hit or an already megamorphic state: invoke the
4694 // function without changing the state.
4695 __ cmp(ecx, edi);
4696 __ j(equal, &done, Label::kNear);
4697 __ cmp(ecx, Immediate(TypeFeedbackCells::MegamorphicSentinel(isolate)));
4698 __ j(equal, &done, Label::kNear);
4699
4700 // A monomorphic miss (i.e, here the cache is not uninitialized) goes
4701 // megamorphic.
4702 __ cmp(ecx, Immediate(TypeFeedbackCells::UninitializedSentinel(isolate)));
4703 __ j(equal, &initialize, Label::kNear);
4704 // MegamorphicSentinel is an immortal immovable object (undefined) so no
4705 // write-barrier is needed.
4706 __ mov(FieldOperand(ebx, Cell::kValueOffset),
4707 Immediate(TypeFeedbackCells::MegamorphicSentinel(isolate)));
4708 __ jmp(&done, Label::kNear);
4709
4710 // An uninitialized cache is patched with the function.
4711 __ bind(&initialize);
4712 __ mov(FieldOperand(ebx, Cell::kValueOffset), edi);
4713 // No need for a write barrier here - cells are rescanned.
4714
4715 __ bind(&done);
4716 }
4717
4718
4719 static void GenerateRecordCallTarget(MacroAssembler* masm) { 4681 static void GenerateRecordCallTarget(MacroAssembler* masm) {
4720 // Cache the called function in a global property cell. Cache states 4682 // Cache the called function in a global property cell. Cache states
4721 // are uninitialized, monomorphic (indicated by a JSFunction), and 4683 // are uninitialized, monomorphic (indicated by a JSFunction), and
4722 // megamorphic. 4684 // megamorphic.
4723 // ebx : cache cell for call target 4685 // ebx : cache cell for call target
4724 // edi : the function to call 4686 // edi : the function to call
4725 ASSERT(FLAG_optimize_constructed_arrays);
4726 Isolate* isolate = masm->isolate(); 4687 Isolate* isolate = masm->isolate();
4727 Label initialize, done, miss, megamorphic, not_array_function; 4688 Label initialize, done, miss, megamorphic, not_array_function;
4728 4689
4729 // Load the cache state into ecx. 4690 // Load the cache state into ecx.
4730 __ mov(ecx, FieldOperand(ebx, Cell::kValueOffset)); 4691 __ mov(ecx, FieldOperand(ebx, Cell::kValueOffset));
4731 4692
4732 // A monomorphic cache hit or an already megamorphic state: invoke the 4693 // A monomorphic cache hit or an already megamorphic state: invoke the
4733 // function without changing the state. 4694 // function without changing the state.
4734 __ cmp(ecx, edi); 4695 __ cmp(ecx, edi);
4735 __ j(equal, &done); 4696 __ j(equal, &done);
(...skipping 81 matching lines...) Expand 10 before | Expand all | Expand 10 after
4817 __ bind(&receiver_ok); 4778 __ bind(&receiver_ok);
4818 } 4779 }
4819 4780
4820 // Check that the function really is a JavaScript function. 4781 // Check that the function really is a JavaScript function.
4821 __ JumpIfSmi(edi, &non_function); 4782 __ JumpIfSmi(edi, &non_function);
4822 // Goto slow case if we do not have a function. 4783 // Goto slow case if we do not have a function.
4823 __ CmpObjectType(edi, JS_FUNCTION_TYPE, ecx); 4784 __ CmpObjectType(edi, JS_FUNCTION_TYPE, ecx);
4824 __ j(not_equal, &slow); 4785 __ j(not_equal, &slow);
4825 4786
4826 if (RecordCallTarget()) { 4787 if (RecordCallTarget()) {
4827 if (FLAG_optimize_constructed_arrays) { 4788 GenerateRecordCallTarget(masm);
4828 GenerateRecordCallTarget(masm);
4829 } else {
4830 GenerateRecordCallTargetNoArray(masm);
4831 }
4832 } 4789 }
4833 4790
4834 // Fast-case: Just invoke the function. 4791 // Fast-case: Just invoke the function.
4835 ParameterCount actual(argc_); 4792 ParameterCount actual(argc_);
4836 4793
4837 if (ReceiverMightBeImplicit()) { 4794 if (ReceiverMightBeImplicit()) {
4838 Label call_as_function; 4795 Label call_as_function;
4839 __ cmp(eax, isolate->factory()->the_hole_value()); 4796 __ cmp(eax, isolate->factory()->the_hole_value());
4840 __ j(equal, &call_as_function); 4797 __ j(equal, &call_as_function);
4841 __ InvokeFunction(edi, 4798 __ InvokeFunction(edi,
(...skipping 52 matching lines...) Expand 10 before | Expand all | Expand 10 after
4894 // edi : constructor function 4851 // edi : constructor function
4895 Label slow, non_function_call; 4852 Label slow, non_function_call;
4896 4853
4897 // Check that function is not a smi. 4854 // Check that function is not a smi.
4898 __ JumpIfSmi(edi, &non_function_call); 4855 __ JumpIfSmi(edi, &non_function_call);
4899 // Check that function is a JSFunction. 4856 // Check that function is a JSFunction.
4900 __ CmpObjectType(edi, JS_FUNCTION_TYPE, ecx); 4857 __ CmpObjectType(edi, JS_FUNCTION_TYPE, ecx);
4901 __ j(not_equal, &slow); 4858 __ j(not_equal, &slow);
4902 4859
4903 if (RecordCallTarget()) { 4860 if (RecordCallTarget()) {
4904 if (FLAG_optimize_constructed_arrays) { 4861 GenerateRecordCallTarget(masm);
4905 GenerateRecordCallTarget(masm);
4906 } else {
4907 GenerateRecordCallTargetNoArray(masm);
4908 }
4909 } 4862 }
4910 4863
4911 // Jump to the function-specific construct stub. 4864 // Jump to the function-specific construct stub.
4912 Register jmp_reg = FLAG_optimize_constructed_arrays ? ecx : ebx; 4865 Register jmp_reg = ecx;
4913 __ mov(jmp_reg, FieldOperand(edi, JSFunction::kSharedFunctionInfoOffset)); 4866 __ mov(jmp_reg, FieldOperand(edi, JSFunction::kSharedFunctionInfoOffset));
4914 __ mov(jmp_reg, FieldOperand(jmp_reg, 4867 __ mov(jmp_reg, FieldOperand(jmp_reg,
4915 SharedFunctionInfo::kConstructStubOffset)); 4868 SharedFunctionInfo::kConstructStubOffset));
4916 __ lea(jmp_reg, FieldOperand(jmp_reg, Code::kHeaderSize)); 4869 __ lea(jmp_reg, FieldOperand(jmp_reg, Code::kHeaderSize));
4917 __ jmp(jmp_reg); 4870 __ jmp(jmp_reg);
4918 4871
4919 // edi: called object 4872 // edi: called object
4920 // eax: number of arguments 4873 // eax: number of arguments
4921 // ecx: object map 4874 // ecx: object map
4922 Label do_call; 4875 Label do_call;
(...skipping 25 matching lines...) Expand all
4948 result_size_ == 1; 4901 result_size_ == 1;
4949 } 4902 }
4950 4903
4951 4904
4952 void CodeStub::GenerateStubsAheadOfTime(Isolate* isolate) { 4905 void CodeStub::GenerateStubsAheadOfTime(Isolate* isolate) {
4953 CEntryStub::GenerateAheadOfTime(isolate); 4906 CEntryStub::GenerateAheadOfTime(isolate);
4954 StoreBufferOverflowStub::GenerateFixedRegStubsAheadOfTime(isolate); 4907 StoreBufferOverflowStub::GenerateFixedRegStubsAheadOfTime(isolate);
4955 StubFailureTrampolineStub::GenerateAheadOfTime(isolate); 4908 StubFailureTrampolineStub::GenerateAheadOfTime(isolate);
4956 // It is important that the store buffer overflow stubs are generated first. 4909 // It is important that the store buffer overflow stubs are generated first.
4957 RecordWriteStub::GenerateFixedRegStubsAheadOfTime(isolate); 4910 RecordWriteStub::GenerateFixedRegStubsAheadOfTime(isolate);
4958 if (FLAG_optimize_constructed_arrays) { 4911 ArrayConstructorStubBase::GenerateStubsAheadOfTime(isolate);
4959 ArrayConstructorStubBase::GenerateStubsAheadOfTime(isolate);
4960 }
4961 } 4912 }
4962 4913
4963 4914
4964 void CodeStub::GenerateFPStubs(Isolate* isolate) { 4915 void CodeStub::GenerateFPStubs(Isolate* isolate) {
4965 if (CpuFeatures::IsSupported(SSE2)) { 4916 if (CpuFeatures::IsSupported(SSE2)) {
4966 CEntryStub save_doubles(1, kSaveFPRegs); 4917 CEntryStub save_doubles(1, kSaveFPRegs);
4967 // Stubs might already be in the snapshot, detect that and don't regenerate, 4918 // Stubs might already be in the snapshot, detect that and don't regenerate,
4968 // which would lead to code stub initialization state being messed up. 4919 // which would lead to code stub initialization state being messed up.
4969 Code* save_doubles_code; 4920 Code* save_doubles_code;
4970 if (!save_doubles.FindCodeInCache(&save_doubles_code, isolate)) { 4921 if (!save_doubles.FindCodeInCache(&save_doubles_code, isolate)) {
(...skipping 2962 matching lines...) Expand 10 before | Expand all | Expand 10 after
7933 // We should either have undefined in ebx or a valid cell 7884 // We should either have undefined in ebx or a valid cell
7934 Label okay_here; 7885 Label okay_here;
7935 Handle<Map> cell_map = masm->isolate()->factory()->cell_map(); 7886 Handle<Map> cell_map = masm->isolate()->factory()->cell_map();
7936 __ cmp(ebx, Immediate(undefined_sentinel)); 7887 __ cmp(ebx, Immediate(undefined_sentinel));
7937 __ j(equal, &okay_here); 7888 __ j(equal, &okay_here);
7938 __ cmp(FieldOperand(ebx, 0), Immediate(cell_map)); 7889 __ cmp(FieldOperand(ebx, 0), Immediate(cell_map));
7939 __ Assert(equal, "Expected property cell in register ebx"); 7890 __ Assert(equal, "Expected property cell in register ebx");
7940 __ bind(&okay_here); 7891 __ bind(&okay_here);
7941 } 7892 }
7942 7893
7943 if (FLAG_optimize_constructed_arrays) { 7894 Label no_info, switch_ready;
7944 Label no_info, switch_ready; 7895 // Get the elements kind and case on that.
7945 // Get the elements kind and case on that. 7896 __ cmp(ebx, Immediate(undefined_sentinel));
7946 __ cmp(ebx, Immediate(undefined_sentinel)); 7897 __ j(equal, &no_info);
7947 __ j(equal, &no_info); 7898 __ mov(edx, FieldOperand(ebx, Cell::kValueOffset));
7948 __ mov(edx, FieldOperand(ebx, Cell::kValueOffset)); 7899 __ JumpIfNotSmi(edx, &no_info);
7949 __ JumpIfNotSmi(edx, &no_info); 7900 __ SmiUntag(edx);
7950 __ SmiUntag(edx); 7901 __ jmp(&switch_ready);
7951 __ jmp(&switch_ready); 7902 __ bind(&no_info);
7952 __ bind(&no_info); 7903 __ mov(edx, Immediate(GetInitialFastElementsKind()));
7953 __ mov(edx, Immediate(GetInitialFastElementsKind())); 7904 __ bind(&switch_ready);
7954 __ bind(&switch_ready);
7955 7905
7956 if (argument_count_ == ANY) { 7906 if (argument_count_ == ANY) {
7957 Label not_zero_case, not_one_case; 7907 Label not_zero_case, not_one_case;
7958 __ test(eax, eax); 7908 __ test(eax, eax);
7959 __ j(not_zero, &not_zero_case); 7909 __ j(not_zero, &not_zero_case);
7960 CreateArrayDispatch<ArrayNoArgumentConstructorStub>(masm); 7910 CreateArrayDispatch<ArrayNoArgumentConstructorStub>(masm);
7961 7911
7962 __ bind(&not_zero_case); 7912 __ bind(&not_zero_case);
7963 __ cmp(eax, 1); 7913 __ cmp(eax, 1);
7964 __ j(greater, &not_one_case); 7914 __ j(greater, &not_one_case);
7965 CreateArrayDispatchOneArgument(masm); 7915 CreateArrayDispatchOneArgument(masm);
7966 7916
7967 __ bind(&not_one_case); 7917 __ bind(&not_one_case);
7968 CreateArrayDispatch<ArrayNArgumentsConstructorStub>(masm); 7918 CreateArrayDispatch<ArrayNArgumentsConstructorStub>(masm);
7969 } else if (argument_count_ == NONE) { 7919 } else if (argument_count_ == NONE) {
7970 CreateArrayDispatch<ArrayNoArgumentConstructorStub>(masm); 7920 CreateArrayDispatch<ArrayNoArgumentConstructorStub>(masm);
7971 } else if (argument_count_ == ONE) { 7921 } else if (argument_count_ == ONE) {
7972 CreateArrayDispatchOneArgument(masm); 7922 CreateArrayDispatchOneArgument(masm);
7973 } else if (argument_count_ == MORE_THAN_ONE) { 7923 } else if (argument_count_ == MORE_THAN_ONE) {
7974 CreateArrayDispatch<ArrayNArgumentsConstructorStub>(masm); 7924 CreateArrayDispatch<ArrayNArgumentsConstructorStub>(masm);
7975 } else {
7976 UNREACHABLE();
7977 }
7978 } else { 7925 } else {
7979 Label generic_constructor; 7926 UNREACHABLE();
7980 // Run the native code for the Array function called as constructor.
7981 ArrayNativeCode(masm, true, &generic_constructor);
7982
7983 // Jump to the generic construct code in case the specialized code cannot
7984 // handle the construction.
7985 __ bind(&generic_constructor);
7986 Handle<Code> generic_construct_stub =
7987 masm->isolate()->builtins()->JSConstructStubGeneric();
7988 __ jmp(generic_construct_stub, RelocInfo::CODE_TARGET);
7989 } 7927 }
7990 } 7928 }
7991 7929
7992 7930
7993 void InternalArrayConstructorStub::GenerateCase( 7931 void InternalArrayConstructorStub::GenerateCase(
7994 MacroAssembler* masm, ElementsKind kind) { 7932 MacroAssembler* masm, ElementsKind kind) {
7995 Label not_zero_case, not_one_case; 7933 Label not_zero_case, not_one_case;
7996 Label normal_sequence; 7934 Label normal_sequence;
7997 7935
7998 __ test(eax, eax); 7936 __ test(eax, eax);
(...skipping 42 matching lines...) Expand 10 before | Expand all | Expand 10 after
8041 7979
8042 // Initial map for the builtin Array function should be a map. 7980 // Initial map for the builtin Array function should be a map.
8043 __ mov(ecx, FieldOperand(edi, JSFunction::kPrototypeOrInitialMapOffset)); 7981 __ mov(ecx, FieldOperand(edi, JSFunction::kPrototypeOrInitialMapOffset));
8044 // Will both indicate a NULL and a Smi. 7982 // Will both indicate a NULL and a Smi.
8045 __ test(ecx, Immediate(kSmiTagMask)); 7983 __ test(ecx, Immediate(kSmiTagMask));
8046 __ Assert(not_zero, "Unexpected initial map for Array function"); 7984 __ Assert(not_zero, "Unexpected initial map for Array function");
8047 __ CmpObjectType(ecx, MAP_TYPE, ecx); 7985 __ CmpObjectType(ecx, MAP_TYPE, ecx);
8048 __ Assert(equal, "Unexpected initial map for Array function"); 7986 __ Assert(equal, "Unexpected initial map for Array function");
8049 } 7987 }
8050 7988
8051 if (FLAG_optimize_constructed_arrays) { 7989 // Figure out the right elements kind
8052 // Figure out the right elements kind 7990 __ mov(ecx, FieldOperand(edi, JSFunction::kPrototypeOrInitialMapOffset));
8053 __ mov(ecx, FieldOperand(edi, JSFunction::kPrototypeOrInitialMapOffset));
8054 7991
8055 // Load the map's "bit field 2" into |result|. We only need the first byte, 7992 // Load the map's "bit field 2" into |result|. We only need the first byte,
8056 // but the following masking takes care of that anyway. 7993 // but the following masking takes care of that anyway.
8057 __ mov(ecx, FieldOperand(ecx, Map::kBitField2Offset)); 7994 __ mov(ecx, FieldOperand(ecx, Map::kBitField2Offset));
8058 // Retrieve elements_kind from bit field 2. 7995 // Retrieve elements_kind from bit field 2.
8059 __ and_(ecx, Map::kElementsKindMask); 7996 __ and_(ecx, Map::kElementsKindMask);
8060 __ shr(ecx, Map::kElementsKindShift); 7997 __ shr(ecx, Map::kElementsKindShift);
8061 7998
8062 if (FLAG_debug_code) { 7999 if (FLAG_debug_code) {
8063 Label done; 8000 Label done;
8064 __ cmp(ecx, Immediate(FAST_ELEMENTS)); 8001 __ cmp(ecx, Immediate(FAST_ELEMENTS));
8065 __ j(equal, &done); 8002 __ j(equal, &done);
8066 __ cmp(ecx, Immediate(FAST_HOLEY_ELEMENTS)); 8003 __ cmp(ecx, Immediate(FAST_HOLEY_ELEMENTS));
8067 __ Assert(equal, 8004 __ Assert(equal,
8068 "Invalid ElementsKind for InternalArray or InternalPackedArray"); 8005 "Invalid ElementsKind for InternalArray or InternalPackedArray");
8069 __ bind(&done); 8006 __ bind(&done);
8070 } 8007 }
8071 8008
8072 Label fast_elements_case; 8009 Label fast_elements_case;
8073 __ cmp(ecx, Immediate(FAST_ELEMENTS)); 8010 __ cmp(ecx, Immediate(FAST_ELEMENTS));
8074 __ j(equal, &fast_elements_case); 8011 __ j(equal, &fast_elements_case);
8075 GenerateCase(masm, FAST_HOLEY_ELEMENTS); 8012 GenerateCase(masm, FAST_HOLEY_ELEMENTS);
8076 8013
8077 __ bind(&fast_elements_case); 8014 __ bind(&fast_elements_case);
8078 GenerateCase(masm, FAST_ELEMENTS); 8015 GenerateCase(masm, FAST_ELEMENTS);
8079 } else {
8080 Label generic_constructor;
8081 // Run the native code for the Array function called as constructor.
8082 ArrayNativeCode(masm, true, &generic_constructor);
8083
8084 // Jump to the generic construct code in case the specialized code cannot
8085 // handle the construction.
8086 __ bind(&generic_constructor);
8087 Handle<Code> generic_construct_stub =
8088 masm->isolate()->builtins()->JSConstructStubGeneric();
8089 __ jmp(generic_construct_stub, RelocInfo::CODE_TARGET);
8090 }
8091 } 8016 }
8092 8017
8093 8018
8094 #undef __ 8019 #undef __
8095 8020
8096 } } // namespace v8::internal 8021 } } // namespace v8::internal
8097 8022
8098 #endif // V8_TARGET_ARCH_IA32 8023 #endif // V8_TARGET_ARCH_IA32
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