OLD | NEW |
1 // Copyright 2015 the V8 project authors. All rights reserved. | 1 // Copyright 2015 the V8 project authors. All rights reserved. |
2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
4 | 4 |
5 #include "src/compiler/code-stub-assembler.h" | 5 #include "src/compiler/code-stub-assembler.h" |
6 | 6 |
7 #include <ostream> | 7 #include <ostream> |
8 | 8 |
9 #include "src/code-factory.h" | 9 #include "src/code-factory.h" |
10 #include "src/compiler/graph.h" | 10 #include "src/compiler/graph.h" |
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107 } | 107 } |
108 | 108 |
109 Node* CodeStubAssembler::Float64Constant(double value) { | 109 Node* CodeStubAssembler::Float64Constant(double value) { |
110 return raw_assembler_->Float64Constant(value); | 110 return raw_assembler_->Float64Constant(value); |
111 } | 111 } |
112 | 112 |
113 Node* CodeStubAssembler::BooleanMapConstant() { | 113 Node* CodeStubAssembler::BooleanMapConstant() { |
114 return HeapConstant(isolate()->factory()->boolean_map()); | 114 return HeapConstant(isolate()->factory()->boolean_map()); |
115 } | 115 } |
116 | 116 |
117 Node* CodeStubAssembler::EmptyStringConstant() { | |
118 return LoadRoot(Heap::kempty_stringRootIndex); | |
119 } | |
120 | |
121 Node* CodeStubAssembler::HeapNumberMapConstant() { | 117 Node* CodeStubAssembler::HeapNumberMapConstant() { |
122 return HeapConstant(isolate()->factory()->heap_number_map()); | 118 return HeapConstant(isolate()->factory()->heap_number_map()); |
123 } | 119 } |
124 | 120 |
125 Node* CodeStubAssembler::NaNConstant() { | |
126 return LoadRoot(Heap::kNanValueRootIndex); | |
127 } | |
128 | |
129 Node* CodeStubAssembler::NoContextConstant() { | |
130 return SmiConstant(Smi::FromInt(0)); | |
131 } | |
132 | |
133 Node* CodeStubAssembler::NullConstant() { | 121 Node* CodeStubAssembler::NullConstant() { |
134 return LoadRoot(Heap::kNullValueRootIndex); | 122 return LoadRoot(Heap::kNullValueRootIndex); |
135 } | 123 } |
136 | 124 |
137 Node* CodeStubAssembler::UndefinedConstant() { | 125 Node* CodeStubAssembler::UndefinedConstant() { |
138 return LoadRoot(Heap::kUndefinedValueRootIndex); | 126 return LoadRoot(Heap::kUndefinedValueRootIndex); |
139 } | 127 } |
140 | 128 |
141 Node* CodeStubAssembler::Parameter(int value) { | 129 Node* CodeStubAssembler::Parameter(int value) { |
142 return raw_assembler_->Parameter(value); | 130 return raw_assembler_->Parameter(value); |
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354 } | 342 } |
355 | 343 |
356 Node* CodeStubAssembler::SmiTag(Node* value) { | 344 Node* CodeStubAssembler::SmiTag(Node* value) { |
357 return raw_assembler_->WordShl(value, SmiShiftBitsConstant()); | 345 return raw_assembler_->WordShl(value, SmiShiftBitsConstant()); |
358 } | 346 } |
359 | 347 |
360 Node* CodeStubAssembler::SmiUntag(Node* value) { | 348 Node* CodeStubAssembler::SmiUntag(Node* value) { |
361 return raw_assembler_->WordSar(value, SmiShiftBitsConstant()); | 349 return raw_assembler_->WordSar(value, SmiShiftBitsConstant()); |
362 } | 350 } |
363 | 351 |
364 Node* CodeStubAssembler::SmiFromWord32(Node* value) { | |
365 if (raw_assembler_->machine()->Is64()) { | |
366 value = raw_assembler_->ChangeInt32ToInt64(value); | |
367 } | |
368 return raw_assembler_->WordShl(value, SmiShiftBitsConstant()); | |
369 } | |
370 | |
371 Node* CodeStubAssembler::SmiToWord32(Node* value) { | 352 Node* CodeStubAssembler::SmiToWord32(Node* value) { |
372 Node* result = raw_assembler_->WordSar(value, SmiShiftBitsConstant()); | 353 Node* result = raw_assembler_->WordSar(value, SmiShiftBitsConstant()); |
373 if (raw_assembler_->machine()->Is64()) { | 354 if (raw_assembler_->machine()->Is64()) { |
374 result = raw_assembler_->TruncateInt64ToInt32(result); | 355 result = raw_assembler_->TruncateInt64ToInt32(result); |
375 } | 356 } |
376 return result; | 357 return result; |
377 } | 358 } |
378 | 359 |
379 Node* CodeStubAssembler::SmiToFloat64(Node* value) { | 360 Node* CodeStubAssembler::SmiToFloat64(Node* value) { |
380 return ChangeInt32ToFloat64(SmiUntag(value)); | 361 return ChangeInt32ToFloat64(SmiUntag(value)); |
381 } | 362 } |
382 | 363 |
383 Node* CodeStubAssembler::SmiAdd(Node* a, Node* b) { return IntPtrAdd(a, b); } | 364 Node* CodeStubAssembler::SmiAdd(Node* a, Node* b) { return IntPtrAdd(a, b); } |
384 | 365 |
385 Node* CodeStubAssembler::SmiAddWithOverflow(Node* a, Node* b) { | 366 Node* CodeStubAssembler::SmiAddWithOverflow(Node* a, Node* b) { |
386 return IntPtrAddWithOverflow(a, b); | 367 return IntPtrAddWithOverflow(a, b); |
387 } | 368 } |
388 | 369 |
389 Node* CodeStubAssembler::SmiSub(Node* a, Node* b) { return IntPtrSub(a, b); } | 370 Node* CodeStubAssembler::SmiSub(Node* a, Node* b) { return IntPtrSub(a, b); } |
390 | 371 |
391 Node* CodeStubAssembler::SmiSubWithOverflow(Node* a, Node* b) { | 372 Node* CodeStubAssembler::SmiSubWithOverflow(Node* a, Node* b) { |
392 return IntPtrSubWithOverflow(a, b); | 373 return IntPtrSubWithOverflow(a, b); |
393 } | 374 } |
394 | 375 |
395 Node* CodeStubAssembler::SmiEqual(Node* a, Node* b) { return WordEqual(a, b); } | 376 Node* CodeStubAssembler::SmiEqual(Node* a, Node* b) { return WordEqual(a, b); } |
396 | 377 |
397 Node* CodeStubAssembler::SmiAboveOrEqual(Node* a, Node* b) { | |
398 return UintPtrGreaterThanOrEqual(a, b); | |
399 } | |
400 | |
401 Node* CodeStubAssembler::SmiLessThan(Node* a, Node* b) { | 378 Node* CodeStubAssembler::SmiLessThan(Node* a, Node* b) { |
402 return IntPtrLessThan(a, b); | 379 return IntPtrLessThan(a, b); |
403 } | 380 } |
404 | 381 |
405 Node* CodeStubAssembler::SmiLessThanOrEqual(Node* a, Node* b) { | 382 Node* CodeStubAssembler::SmiLessThanOrEqual(Node* a, Node* b) { |
406 return IntPtrLessThanOrEqual(a, b); | 383 return IntPtrLessThanOrEqual(a, b); |
407 } | 384 } |
408 | 385 |
409 Node* CodeStubAssembler::SmiMin(Node* a, Node* b) { | 386 Node* CodeStubAssembler::SmiMin(Node* a, Node* b) { |
410 // TODO(bmeurer): Consider using Select once available. | 387 // TODO(bmeurer): Consider using Select once available. |
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505 Node* CodeStubAssembler::LoadMapDescriptors(Node* map) { | 482 Node* CodeStubAssembler::LoadMapDescriptors(Node* map) { |
506 return LoadObjectField(map, Map::kDescriptorsOffset); | 483 return LoadObjectField(map, Map::kDescriptorsOffset); |
507 } | 484 } |
508 | 485 |
509 Node* CodeStubAssembler::LoadNameHash(Node* name) { | 486 Node* CodeStubAssembler::LoadNameHash(Node* name) { |
510 return Load(MachineType::Uint32(), name, | 487 return Load(MachineType::Uint32(), name, |
511 IntPtrConstant(Name::kHashFieldOffset - kHeapObjectTag)); | 488 IntPtrConstant(Name::kHashFieldOffset - kHeapObjectTag)); |
512 } | 489 } |
513 | 490 |
514 Node* CodeStubAssembler::LoadFixedArrayElementInt32Index( | 491 Node* CodeStubAssembler::LoadFixedArrayElementInt32Index( |
515 Node* object, Node* index, int additional_offset) { | 492 Node* object, Node* int32_index, int additional_offset) { |
516 Node* header_size = IntPtrConstant(additional_offset + | 493 Node* header_size = IntPtrConstant(additional_offset + |
517 FixedArray::kHeaderSize - kHeapObjectTag); | 494 FixedArray::kHeaderSize - kHeapObjectTag); |
518 if (raw_assembler_->machine()->Is64()) { | 495 Node* scaled_index = WordShl(int32_index, IntPtrConstant(kPointerSizeLog2)); |
519 index = ChangeInt32ToInt64(index); | |
520 } | |
521 Node* scaled_index = WordShl(index, IntPtrConstant(kPointerSizeLog2)); | |
522 Node* offset = IntPtrAdd(scaled_index, header_size); | 496 Node* offset = IntPtrAdd(scaled_index, header_size); |
523 return Load(MachineType::AnyTagged(), object, offset); | 497 return Load(MachineType::AnyTagged(), object, offset); |
524 } | 498 } |
525 | 499 |
526 Node* CodeStubAssembler::LoadMapInstanceSize(Node* map) { | 500 Node* CodeStubAssembler::LoadMapInstanceSize(Node* map) { |
527 return Load(MachineType::Uint8(), map, | 501 return Load(MachineType::Uint8(), map, |
528 IntPtrConstant(Map::kInstanceSizeOffset - kHeapObjectTag)); | 502 IntPtrConstant(Map::kInstanceSizeOffset - kHeapObjectTag)); |
529 } | 503 } |
530 | 504 |
531 Node* CodeStubAssembler::LoadFixedArrayElementSmiIndex(Node* object, | 505 Node* CodeStubAssembler::LoadFixedArrayElementSmiIndex(Node* object, |
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553 Node* CodeStubAssembler::StoreFixedArrayElementNoWriteBarrier(Node* object, | 527 Node* CodeStubAssembler::StoreFixedArrayElementNoWriteBarrier(Node* object, |
554 Node* index, | 528 Node* index, |
555 Node* value) { | 529 Node* value) { |
556 Node* offset = | 530 Node* offset = |
557 IntPtrAdd(WordShl(index, IntPtrConstant(kPointerSizeLog2)), | 531 IntPtrAdd(WordShl(index, IntPtrConstant(kPointerSizeLog2)), |
558 IntPtrConstant(FixedArray::kHeaderSize - kHeapObjectTag)); | 532 IntPtrConstant(FixedArray::kHeaderSize - kHeapObjectTag)); |
559 return StoreNoWriteBarrier(MachineRepresentation::kTagged, object, offset, | 533 return StoreNoWriteBarrier(MachineRepresentation::kTagged, object, offset, |
560 value); | 534 value); |
561 } | 535 } |
562 | 536 |
563 Node* CodeStubAssembler::StoreFixedArrayElementInt32Index(Node* object, | |
564 Node* index, | |
565 Node* value) { | |
566 if (raw_assembler_->machine()->Is64()) { | |
567 index = ChangeInt32ToInt64(index); | |
568 } | |
569 Node* offset = | |
570 IntPtrAdd(WordShl(index, IntPtrConstant(kPointerSizeLog2)), | |
571 IntPtrConstant(FixedArray::kHeaderSize - kHeapObjectTag)); | |
572 return Store(MachineRepresentation::kTagged, object, offset, value); | |
573 } | |
574 | |
575 Node* CodeStubAssembler::LoadRoot(Heap::RootListIndex root_index) { | 537 Node* CodeStubAssembler::LoadRoot(Heap::RootListIndex root_index) { |
576 if (isolate()->heap()->RootCanBeTreatedAsConstant(root_index)) { | 538 if (isolate()->heap()->RootCanBeTreatedAsConstant(root_index)) { |
577 Handle<Object> root = isolate()->heap()->root_handle(root_index); | 539 Handle<Object> root = isolate()->heap()->root_handle(root_index); |
578 if (root->IsSmi()) { | 540 if (root->IsSmi()) { |
579 return SmiConstant(Smi::cast(*root)); | 541 return SmiConstant(Smi::cast(*root)); |
580 } else { | 542 } else { |
581 return HeapConstant(Handle<HeapObject>::cast(root)); | 543 return HeapConstant(Handle<HeapObject>::cast(root)); |
582 } | 544 } |
583 } | 545 } |
584 | 546 |
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718 StoreMapNoWriteBarrier(result, HeapNumberMapConstant()); | 680 StoreMapNoWriteBarrier(result, HeapNumberMapConstant()); |
719 return result; | 681 return result; |
720 } | 682 } |
721 | 683 |
722 Node* CodeStubAssembler::AllocateHeapNumberWithValue(Node* value) { | 684 Node* CodeStubAssembler::AllocateHeapNumberWithValue(Node* value) { |
723 Node* result = AllocateHeapNumber(); | 685 Node* result = AllocateHeapNumber(); |
724 StoreHeapNumberValue(result, value); | 686 StoreHeapNumberValue(result, value); |
725 return result; | 687 return result; |
726 } | 688 } |
727 | 689 |
728 Node* CodeStubAssembler::AllocateSeqOneByteString(int length) { | |
729 Node* result = Allocate(SeqOneByteString::SizeFor(length)); | |
730 StoreMapNoWriteBarrier(result, LoadRoot(Heap::kOneByteStringMapRootIndex)); | |
731 StoreObjectFieldNoWriteBarrier(result, SeqOneByteString::kLengthOffset, | |
732 SmiConstant(Smi::FromInt(length))); | |
733 StoreObjectFieldNoWriteBarrier(result, SeqOneByteString::kHashFieldOffset, | |
734 IntPtrConstant(String::kEmptyHashField)); | |
735 return result; | |
736 } | |
737 | |
738 Node* CodeStubAssembler::AllocateSeqTwoByteString(int length) { | |
739 Node* result = Allocate(SeqTwoByteString::SizeFor(length)); | |
740 StoreMapNoWriteBarrier(result, LoadRoot(Heap::kStringMapRootIndex)); | |
741 StoreObjectFieldNoWriteBarrier(result, SeqTwoByteString::kLengthOffset, | |
742 SmiConstant(Smi::FromInt(length))); | |
743 StoreObjectFieldNoWriteBarrier(result, SeqTwoByteString::kHashFieldOffset, | |
744 IntPtrConstant(String::kEmptyHashField)); | |
745 return result; | |
746 } | |
747 | |
748 Node* CodeStubAssembler::Load(MachineType rep, Node* base) { | 690 Node* CodeStubAssembler::Load(MachineType rep, Node* base) { |
749 return raw_assembler_->Load(rep, base); | 691 return raw_assembler_->Load(rep, base); |
750 } | 692 } |
751 | 693 |
752 Node* CodeStubAssembler::Load(MachineType rep, Node* base, Node* index) { | 694 Node* CodeStubAssembler::Load(MachineType rep, Node* base, Node* index) { |
753 return raw_assembler_->Load(rep, base, index); | 695 return raw_assembler_->Load(rep, base, index); |
754 } | 696 } |
755 | 697 |
756 Node* CodeStubAssembler::Store(MachineRepresentation rep, Node* base, | 698 Node* CodeStubAssembler::Store(MachineRepresentation rep, Node* base, |
757 Node* value) { | 699 Node* value) { |
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987 Callable callable = CodeFactory::NonNumberToNumber(isolate()); | 929 Callable callable = CodeFactory::NonNumberToNumber(isolate()); |
988 var_value.Bind(CallStub(callable, context, value)); | 930 var_value.Bind(CallStub(callable, context, value)); |
989 Goto(&loop); | 931 Goto(&loop); |
990 } | 932 } |
991 } | 933 } |
992 } | 934 } |
993 Bind(&done_loop); | 935 Bind(&done_loop); |
994 return var_result.value(); | 936 return var_result.value(); |
995 } | 937 } |
996 | 938 |
997 Node* CodeStubAssembler::ToThisString(Node* context, Node* value, | |
998 char const* method_name) { | |
999 Variable var_value(this, MachineRepresentation::kTagged); | |
1000 var_value.Bind(value); | |
1001 | |
1002 // Check if the {value} is a Smi or a HeapObject. | |
1003 Label if_valueissmi(this, Label::kDeferred), if_valueisnotsmi(this), | |
1004 if_valueisstring(this); | |
1005 Branch(WordIsSmi(value), &if_valueissmi, &if_valueisnotsmi); | |
1006 Bind(&if_valueisnotsmi); | |
1007 { | |
1008 // Load the instance type of the {value}. | |
1009 Node* value_instance_type = LoadInstanceType(value); | |
1010 | |
1011 // Check if the {value} is already String. | |
1012 Label if_valueisnotstring(this, Label::kDeferred); | |
1013 Branch( | |
1014 Int32LessThan(value_instance_type, Int32Constant(FIRST_NONSTRING_TYPE)), | |
1015 &if_valueisstring, &if_valueisnotstring); | |
1016 Bind(&if_valueisnotstring); | |
1017 { | |
1018 // Check if the {value} is null. | |
1019 Label if_valueisnullorundefined(this, Label::kDeferred), | |
1020 if_valueisnotnullorundefined(this, Label::kDeferred), | |
1021 if_valueisnotnull(this, Label::kDeferred); | |
1022 Branch(WordEqual(value, NullConstant()), &if_valueisnullorundefined, | |
1023 &if_valueisnotnull); | |
1024 Bind(&if_valueisnotnull); | |
1025 { | |
1026 // Check if the {value} is undefined. | |
1027 Branch(WordEqual(value, UndefinedConstant()), | |
1028 &if_valueisnullorundefined, &if_valueisnotnullorundefined); | |
1029 Bind(&if_valueisnotnullorundefined); | |
1030 { | |
1031 // Convert the {value} to a String. | |
1032 Callable callable = CodeFactory::ToString(isolate()); | |
1033 var_value.Bind(CallStub(callable, context, value)); | |
1034 Goto(&if_valueisstring); | |
1035 } | |
1036 } | |
1037 | |
1038 Bind(&if_valueisnullorundefined); | |
1039 { | |
1040 // The {value} is either null or undefined. | |
1041 CallRuntime(Runtime::kThrowCalledOnNullOrUndefined, context, | |
1042 HeapConstant(factory()->NewStringFromAsciiChecked( | |
1043 "String.prototype.charCodeAt", TENURED))); | |
1044 Goto(&if_valueisstring); // Never reached. | |
1045 } | |
1046 } | |
1047 } | |
1048 Bind(&if_valueissmi); | |
1049 { | |
1050 // The {value} is a Smi, convert it to a String. | |
1051 Callable callable = CodeFactory::NumberToString(isolate()); | |
1052 var_value.Bind(CallStub(callable, context, value)); | |
1053 Goto(&if_valueisstring); | |
1054 } | |
1055 Bind(&if_valueisstring); | |
1056 return var_value.value(); | |
1057 } | |
1058 | |
1059 Node* CodeStubAssembler::StringCharCodeAt(Node* string, Node* index) { | |
1060 // Translate the {index} into a Word. | |
1061 index = SmiToWord(index); | |
1062 | |
1063 // We may need to loop in case of cons or sliced strings. | |
1064 Variable var_index(this, MachineType::PointerRepresentation()); | |
1065 Variable var_result(this, MachineRepresentation::kWord32); | |
1066 Variable var_string(this, MachineRepresentation::kTagged); | |
1067 Variable* loop_vars[] = {&var_index, &var_string}; | |
1068 Label done_loop(this, &var_result), loop(this, 2, loop_vars); | |
1069 var_string.Bind(string); | |
1070 var_index.Bind(index); | |
1071 Goto(&loop); | |
1072 Bind(&loop); | |
1073 { | |
1074 // Load the current {index}. | |
1075 index = var_index.value(); | |
1076 | |
1077 // Load the current {string}. | |
1078 string = var_string.value(); | |
1079 | |
1080 // Load the instance type of the {string}. | |
1081 Node* string_instance_type = LoadInstanceType(string); | |
1082 | |
1083 // Check if the {string} is a SeqString. | |
1084 Label if_stringissequential(this), if_stringisnotsequential(this); | |
1085 Branch(Word32Equal(Word32And(string_instance_type, | |
1086 Int32Constant(kStringRepresentationMask)), | |
1087 Int32Constant(kSeqStringTag)), | |
1088 &if_stringissequential, &if_stringisnotsequential); | |
1089 | |
1090 Bind(&if_stringissequential); | |
1091 { | |
1092 // Check if the {string} is a TwoByteSeqString or a OneByteSeqString. | |
1093 Label if_stringistwobyte(this), if_stringisonebyte(this); | |
1094 Branch(Word32Equal(Word32And(string_instance_type, | |
1095 Int32Constant(kStringEncodingMask)), | |
1096 Int32Constant(kTwoByteStringTag)), | |
1097 &if_stringistwobyte, &if_stringisonebyte); | |
1098 | |
1099 Bind(&if_stringisonebyte); | |
1100 { | |
1101 var_result.Bind( | |
1102 Load(MachineType::Uint8(), string, | |
1103 IntPtrAdd(index, IntPtrConstant(SeqOneByteString::kHeaderSize - | |
1104 kHeapObjectTag)))); | |
1105 Goto(&done_loop); | |
1106 } | |
1107 | |
1108 Bind(&if_stringistwobyte); | |
1109 { | |
1110 var_result.Bind( | |
1111 Load(MachineType::Uint16(), string, | |
1112 IntPtrAdd(WordShl(index, IntPtrConstant(1)), | |
1113 IntPtrConstant(SeqTwoByteString::kHeaderSize - | |
1114 kHeapObjectTag)))); | |
1115 Goto(&done_loop); | |
1116 } | |
1117 } | |
1118 | |
1119 Bind(&if_stringisnotsequential); | |
1120 { | |
1121 // Check if the {string} is a ConsString. | |
1122 Label if_stringiscons(this), if_stringisnotcons(this); | |
1123 Branch(Word32Equal(Word32And(string_instance_type, | |
1124 Int32Constant(kStringRepresentationMask)), | |
1125 Int32Constant(kConsStringTag)), | |
1126 &if_stringiscons, &if_stringisnotcons); | |
1127 | |
1128 Bind(&if_stringiscons); | |
1129 { | |
1130 // Check whether the right hand side is the empty string (i.e. if | |
1131 // this is really a flat string in a cons string). If that is not | |
1132 // the case we flatten the string first. | |
1133 Label if_rhsisempty(this), if_rhsisnotempty(this, Label::kDeferred); | |
1134 Node* rhs = LoadObjectField(string, ConsString::kSecondOffset); | |
1135 Branch(WordEqual(rhs, EmptyStringConstant()), &if_rhsisempty, | |
1136 &if_rhsisnotempty); | |
1137 | |
1138 Bind(&if_rhsisempty); | |
1139 { | |
1140 // Just operate on the left hand side of the {string}. | |
1141 var_string.Bind(LoadObjectField(string, ConsString::kFirstOffset)); | |
1142 Goto(&loop); | |
1143 } | |
1144 | |
1145 Bind(&if_rhsisnotempty); | |
1146 { | |
1147 // Flatten the {string} and lookup in the resulting string. | |
1148 var_string.Bind(CallRuntime(Runtime::kFlattenString, | |
1149 NoContextConstant(), string)); | |
1150 Goto(&loop); | |
1151 } | |
1152 } | |
1153 | |
1154 Bind(&if_stringisnotcons); | |
1155 { | |
1156 // Check if the {string} is an ExternalString. | |
1157 Label if_stringisexternal(this), if_stringisnotexternal(this); | |
1158 Branch(Word32Equal(Word32And(string_instance_type, | |
1159 Int32Constant(kStringRepresentationMask)), | |
1160 Int32Constant(kExternalStringTag)), | |
1161 &if_stringisexternal, &if_stringisnotexternal); | |
1162 | |
1163 Bind(&if_stringisexternal); | |
1164 { | |
1165 // Check if the {string} is a short external string. | |
1166 Label if_stringisshort(this), | |
1167 if_stringisnotshort(this, Label::kDeferred); | |
1168 Branch(Word32Equal(Word32And(string_instance_type, | |
1169 Int32Constant(kShortExternalStringMask)), | |
1170 Int32Constant(0)), | |
1171 &if_stringisshort, &if_stringisnotshort); | |
1172 | |
1173 Bind(&if_stringisshort); | |
1174 { | |
1175 // Load the actual resource data from the {string}. | |
1176 Node* string_resource_data = | |
1177 LoadObjectField(string, ExternalString::kResourceDataOffset, | |
1178 MachineType::Pointer()); | |
1179 | |
1180 // Check if the {string} is a TwoByteExternalString or a | |
1181 // OneByteExternalString. | |
1182 Label if_stringistwobyte(this), if_stringisonebyte(this); | |
1183 Branch(Word32Equal(Word32And(string_instance_type, | |
1184 Int32Constant(kStringEncodingMask)), | |
1185 Int32Constant(kTwoByteStringTag)), | |
1186 &if_stringistwobyte, &if_stringisonebyte); | |
1187 | |
1188 Bind(&if_stringisonebyte); | |
1189 { | |
1190 var_result.Bind( | |
1191 Load(MachineType::Uint8(), string_resource_data, index)); | |
1192 Goto(&done_loop); | |
1193 } | |
1194 | |
1195 Bind(&if_stringistwobyte); | |
1196 { | |
1197 var_result.Bind(Load(MachineType::Uint16(), string_resource_data, | |
1198 WordShl(index, IntPtrConstant(1)))); | |
1199 Goto(&done_loop); | |
1200 } | |
1201 } | |
1202 | |
1203 Bind(&if_stringisnotshort); | |
1204 { | |
1205 // The {string} might be compressed, call the runtime. | |
1206 var_result.Bind(SmiToWord32( | |
1207 CallRuntime(Runtime::kExternalStringGetChar, | |
1208 NoContextConstant(), string, SmiTag(index)))); | |
1209 Goto(&done_loop); | |
1210 } | |
1211 } | |
1212 | |
1213 Bind(&if_stringisnotexternal); | |
1214 { | |
1215 // The {string} is a SlicedString, continue with its parent. | |
1216 Node* string_offset = | |
1217 SmiToWord(LoadObjectField(string, SlicedString::kOffsetOffset)); | |
1218 Node* string_parent = | |
1219 LoadObjectField(string, SlicedString::kParentOffset); | |
1220 var_index.Bind(IntPtrAdd(index, string_offset)); | |
1221 var_string.Bind(string_parent); | |
1222 Goto(&loop); | |
1223 } | |
1224 } | |
1225 } | |
1226 } | |
1227 | |
1228 Bind(&done_loop); | |
1229 return var_result.value(); | |
1230 } | |
1231 | |
1232 Node* CodeStubAssembler::StringFromCharCode(Node* code) { | |
1233 Variable var_result(this, MachineRepresentation::kTagged); | |
1234 | |
1235 // Check if the {code} is a one-byte char code. | |
1236 Label if_codeisonebyte(this), if_codeistwobyte(this, Label::kDeferred), | |
1237 if_done(this); | |
1238 Branch(Int32LessThanOrEqual(code, Int32Constant(String::kMaxOneByteCharCode)), | |
1239 &if_codeisonebyte, &if_codeistwobyte); | |
1240 Bind(&if_codeisonebyte); | |
1241 { | |
1242 // Load the isolate wide single character string cache. | |
1243 Node* cache = LoadRoot(Heap::kSingleCharacterStringCacheRootIndex); | |
1244 | |
1245 // Check if we have an entry for the {code} in the single character string | |
1246 // cache already. | |
1247 Label if_entryisundefined(this, Label::kDeferred), | |
1248 if_entryisnotundefined(this); | |
1249 Node* entry = LoadFixedArrayElementInt32Index(cache, code); | |
1250 Branch(WordEqual(entry, UndefinedConstant()), &if_entryisundefined, | |
1251 &if_entryisnotundefined); | |
1252 | |
1253 Bind(&if_entryisundefined); | |
1254 { | |
1255 // Allocate a new SeqOneByteString for {code} and store it in the {cache}. | |
1256 Node* result = AllocateSeqOneByteString(1); | |
1257 StoreNoWriteBarrier( | |
1258 MachineRepresentation::kWord8, result, | |
1259 IntPtrConstant(SeqOneByteString::kHeaderSize - kHeapObjectTag), code); | |
1260 StoreFixedArrayElementInt32Index(cache, code, result); | |
1261 var_result.Bind(result); | |
1262 Goto(&if_done); | |
1263 } | |
1264 | |
1265 Bind(&if_entryisnotundefined); | |
1266 { | |
1267 // Return the entry from the {cache}. | |
1268 var_result.Bind(entry); | |
1269 Goto(&if_done); | |
1270 } | |
1271 } | |
1272 | |
1273 Bind(&if_codeistwobyte); | |
1274 { | |
1275 // Allocate a new SeqTwoByteString for {code}. | |
1276 Node* result = AllocateSeqTwoByteString(1); | |
1277 StoreNoWriteBarrier( | |
1278 MachineRepresentation::kWord16, result, | |
1279 IntPtrConstant(SeqTwoByteString::kHeaderSize - kHeapObjectTag), code); | |
1280 var_result.Bind(result); | |
1281 Goto(&if_done); | |
1282 } | |
1283 | |
1284 Bind(&if_done); | |
1285 return var_result.value(); | |
1286 } | |
1287 | |
1288 void CodeStubAssembler::BranchIf(Node* condition, Label* if_true, | 939 void CodeStubAssembler::BranchIf(Node* condition, Label* if_true, |
1289 Label* if_false) { | 940 Label* if_false) { |
1290 Label if_condition_is_true(this), if_condition_is_false(this); | 941 Label if_condition_is_true(this), if_condition_is_false(this); |
1291 Branch(condition, &if_condition_is_true, &if_condition_is_false); | 942 Branch(condition, &if_condition_is_true, &if_condition_is_false); |
1292 Bind(&if_condition_is_true); | 943 Bind(&if_condition_is_true); |
1293 Goto(if_true); | 944 Goto(if_true); |
1294 Bind(&if_condition_is_false); | 945 Bind(&if_condition_is_false); |
1295 Goto(if_false); | 946 Goto(if_false); |
1296 } | 947 } |
1297 | 948 |
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1723 } | 1374 } |
1724 } | 1375 } |
1725 } | 1376 } |
1726 | 1377 |
1727 bound_ = true; | 1378 bound_ = true; |
1728 } | 1379 } |
1729 | 1380 |
1730 } // namespace compiler | 1381 } // namespace compiler |
1731 } // namespace internal | 1382 } // namespace internal |
1732 } // namespace v8 | 1383 } // namespace v8 |
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