Chromium Code Reviews
chromiumcodereview-hr@appspot.gserviceaccount.com (chromiumcodereview-hr) | Please choose your nickname with Settings | Help | Chromium Project | Gerrit Changes | Sign out
(419)

Side by Side Diff: src/objects-inl.h

Issue 2695653005: Revert of Remove SIMD.js from V8. (Closed)
Patch Set: Created 3 years, 10 months ago
Use n/p to move between diff chunks; N/P to move between comments. Draft comments are only viewable by you.
Jump to:
View unified diff | Download patch
« no previous file with comments | « src/objects-debug.cc ('k') | src/objects-printer.cc » ('j') | no next file with comments »
Toggle Intra-line Diffs ('i') | Expand Comments ('e') | Collapse Comments ('c') | Show Comments Hide Comments ('s')
OLDNEW
1 // Copyright 2012 the V8 project authors. All rights reserved. 1 // Copyright 2012 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 // Review notes: 5 // Review notes:
6 // 6 //
7 // - The use of macros in these inline functions may seem superfluous 7 // - The use of macros in these inline functions may seem superfluous
8 // but it is absolutely needed to make sure gcc generates optimal 8 // but it is absolutely needed to make sure gcc generates optimal
9 // code. gcc is not happy when attempting to inline too deep. 9 // code. gcc is not happy when attempting to inline too deep.
10 // 10 //
(...skipping 156 matching lines...) Expand 10 before | Expand all | Expand 10 after
167 TYPE_CHECKER(JSStringIterator, JS_STRING_ITERATOR_TYPE) 167 TYPE_CHECKER(JSStringIterator, JS_STRING_ITERATOR_TYPE)
168 TYPE_CHECKER(JSTypedArray, JS_TYPED_ARRAY_TYPE) 168 TYPE_CHECKER(JSTypedArray, JS_TYPED_ARRAY_TYPE)
169 TYPE_CHECKER(JSValue, JS_VALUE_TYPE) 169 TYPE_CHECKER(JSValue, JS_VALUE_TYPE)
170 TYPE_CHECKER(JSWeakMap, JS_WEAK_MAP_TYPE) 170 TYPE_CHECKER(JSWeakMap, JS_WEAK_MAP_TYPE)
171 TYPE_CHECKER(JSWeakSet, JS_WEAK_SET_TYPE) 171 TYPE_CHECKER(JSWeakSet, JS_WEAK_SET_TYPE)
172 TYPE_CHECKER(Map, MAP_TYPE) 172 TYPE_CHECKER(Map, MAP_TYPE)
173 TYPE_CHECKER(MutableHeapNumber, MUTABLE_HEAP_NUMBER_TYPE) 173 TYPE_CHECKER(MutableHeapNumber, MUTABLE_HEAP_NUMBER_TYPE)
174 TYPE_CHECKER(Oddball, ODDBALL_TYPE) 174 TYPE_CHECKER(Oddball, ODDBALL_TYPE)
175 TYPE_CHECKER(PropertyCell, PROPERTY_CELL_TYPE) 175 TYPE_CHECKER(PropertyCell, PROPERTY_CELL_TYPE)
176 TYPE_CHECKER(SharedFunctionInfo, SHARED_FUNCTION_INFO_TYPE) 176 TYPE_CHECKER(SharedFunctionInfo, SHARED_FUNCTION_INFO_TYPE)
177 TYPE_CHECKER(Simd128Value, SIMD128_VALUE_TYPE)
177 TYPE_CHECKER(Symbol, SYMBOL_TYPE) 178 TYPE_CHECKER(Symbol, SYMBOL_TYPE)
178 TYPE_CHECKER(TransitionArray, TRANSITION_ARRAY_TYPE) 179 TYPE_CHECKER(TransitionArray, TRANSITION_ARRAY_TYPE)
179 TYPE_CHECKER(WeakCell, WEAK_CELL_TYPE) 180 TYPE_CHECKER(WeakCell, WEAK_CELL_TYPE)
180 TYPE_CHECKER(WeakFixedArray, FIXED_ARRAY_TYPE) 181 TYPE_CHECKER(WeakFixedArray, FIXED_ARRAY_TYPE)
181 182
182 #define TYPED_ARRAY_TYPE_CHECKER(Type, type, TYPE, ctype, size) \ 183 #define TYPED_ARRAY_TYPE_CHECKER(Type, type, TYPE, ctype, size) \
183 TYPE_CHECKER(Fixed##Type##Array, FIXED_##TYPE##_ARRAY_TYPE) 184 TYPE_CHECKER(Fixed##Type##Array, FIXED_##TYPE##_ARRAY_TYPE)
184 TYPED_ARRAYS(TYPED_ARRAY_TYPE_CHECKER) 185 TYPED_ARRAYS(TYPED_ARRAY_TYPE_CHECKER)
185 #undef TYPED_ARRAY_TYPE_CHECKER 186 #undef TYPED_ARRAY_TYPE_CHECKER
186 187
187 #undef TYPE_CHECKER 188 #undef TYPE_CHECKER
188 189
189 bool HeapObject::IsFixedArrayBase() const { 190 bool HeapObject::IsFixedArrayBase() const {
190 return IsFixedArray() || IsFixedDoubleArray() || IsFixedTypedArrayBase(); 191 return IsFixedArray() || IsFixedDoubleArray() || IsFixedTypedArrayBase();
191 } 192 }
192 193
193 bool HeapObject::IsFixedArray() const { 194 bool HeapObject::IsFixedArray() const {
194 InstanceType instance_type = map()->instance_type(); 195 InstanceType instance_type = map()->instance_type();
195 return instance_type == FIXED_ARRAY_TYPE || 196 return instance_type == FIXED_ARRAY_TYPE ||
196 instance_type == TRANSITION_ARRAY_TYPE; 197 instance_type == TRANSITION_ARRAY_TYPE;
197 } 198 }
198 199
199 bool HeapObject::IsBoilerplateDescription() const { return IsFixedArray(); } 200 bool HeapObject::IsBoilerplateDescription() const { return IsFixedArray(); }
200 201
201 // External objects are not extensible, so the map check is enough. 202 // External objects are not extensible, so the map check is enough.
202 bool HeapObject::IsExternal() const { 203 bool HeapObject::IsExternal() const {
203 return map() == GetHeap()->external_map(); 204 return map() == GetHeap()->external_map();
204 } 205 }
205 206
207 #define SIMD128_TYPE_CHECKER(TYPE, Type, type, lane_count, lane_type) \
208 bool HeapObject::Is##Type() const { return map() == GetHeap()->type##_map(); }
209 SIMD128_TYPES(SIMD128_TYPE_CHECKER)
210 #undef SIMD128_TYPE_CHECKER
211
206 #define IS_TYPE_FUNCTION_DEF(type_) \ 212 #define IS_TYPE_FUNCTION_DEF(type_) \
207 bool Object::Is##type_() const { \ 213 bool Object::Is##type_() const { \
208 return IsHeapObject() && HeapObject::cast(this)->Is##type_(); \ 214 return IsHeapObject() && HeapObject::cast(this)->Is##type_(); \
209 } 215 }
210 HEAP_OBJECT_TYPE_LIST(IS_TYPE_FUNCTION_DEF) 216 HEAP_OBJECT_TYPE_LIST(IS_TYPE_FUNCTION_DEF)
211 #undef IS_TYPE_FUNCTION_DEF 217 #undef IS_TYPE_FUNCTION_DEF
212 218
213 #define IS_TYPE_FUNCTION_DEF(Type, Value) \ 219 #define IS_TYPE_FUNCTION_DEF(Type, Value) \
214 bool Object::Is##Type(Isolate* isolate) const { \ 220 bool Object::Is##Type(Isolate* isolate) const { \
215 return this == isolate->heap()->Value(); \ 221 return this == isolate->heap()->Value(); \
(...skipping 388 matching lines...) Expand 10 before | Expand all | Expand 10 after
604 return reinterpret_cast<type*>(object); \ 610 return reinterpret_cast<type*>(object); \
605 } \ 611 } \
606 const type* type::cast(const Object* object) { \ 612 const type* type::cast(const Object* object) { \
607 SLOW_DCHECK(object->Is##type()); \ 613 SLOW_DCHECK(object->Is##type()); \
608 return reinterpret_cast<const type*>(object); \ 614 return reinterpret_cast<const type*>(object); \
609 } 615 }
610 616
611 CAST_ACCESSOR(AbstractCode) 617 CAST_ACCESSOR(AbstractCode)
612 CAST_ACCESSOR(ArrayList) 618 CAST_ACCESSOR(ArrayList)
613 CAST_ACCESSOR(BoilerplateDescription) 619 CAST_ACCESSOR(BoilerplateDescription)
620 CAST_ACCESSOR(Bool16x8)
621 CAST_ACCESSOR(Bool32x4)
622 CAST_ACCESSOR(Bool8x16)
614 CAST_ACCESSOR(ByteArray) 623 CAST_ACCESSOR(ByteArray)
615 CAST_ACCESSOR(BytecodeArray) 624 CAST_ACCESSOR(BytecodeArray)
616 CAST_ACCESSOR(Cell) 625 CAST_ACCESSOR(Cell)
617 CAST_ACCESSOR(Code) 626 CAST_ACCESSOR(Code)
618 CAST_ACCESSOR(CodeCacheHashTable) 627 CAST_ACCESSOR(CodeCacheHashTable)
619 CAST_ACCESSOR(CompilationCacheTable) 628 CAST_ACCESSOR(CompilationCacheTable)
620 CAST_ACCESSOR(ConsString) 629 CAST_ACCESSOR(ConsString)
621 CAST_ACCESSOR(DeoptimizationInputData) 630 CAST_ACCESSOR(DeoptimizationInputData)
622 CAST_ACCESSOR(DeoptimizationOutputData) 631 CAST_ACCESSOR(DeoptimizationOutputData)
623 CAST_ACCESSOR(DependentCode) 632 CAST_ACCESSOR(DependentCode)
624 CAST_ACCESSOR(DescriptorArray) 633 CAST_ACCESSOR(DescriptorArray)
625 CAST_ACCESSOR(ExternalOneByteString) 634 CAST_ACCESSOR(ExternalOneByteString)
626 CAST_ACCESSOR(ExternalString) 635 CAST_ACCESSOR(ExternalString)
627 CAST_ACCESSOR(ExternalTwoByteString) 636 CAST_ACCESSOR(ExternalTwoByteString)
628 CAST_ACCESSOR(FixedArray) 637 CAST_ACCESSOR(FixedArray)
629 CAST_ACCESSOR(FixedArrayBase) 638 CAST_ACCESSOR(FixedArrayBase)
630 CAST_ACCESSOR(FixedDoubleArray) 639 CAST_ACCESSOR(FixedDoubleArray)
631 CAST_ACCESSOR(FixedTypedArrayBase) 640 CAST_ACCESSOR(FixedTypedArrayBase)
641 CAST_ACCESSOR(Float32x4)
632 CAST_ACCESSOR(Foreign) 642 CAST_ACCESSOR(Foreign)
633 CAST_ACCESSOR(FrameArray) 643 CAST_ACCESSOR(FrameArray)
634 CAST_ACCESSOR(GlobalDictionary) 644 CAST_ACCESSOR(GlobalDictionary)
635 CAST_ACCESSOR(HandlerTable) 645 CAST_ACCESSOR(HandlerTable)
636 CAST_ACCESSOR(HeapObject) 646 CAST_ACCESSOR(HeapObject)
647 CAST_ACCESSOR(Int16x8)
648 CAST_ACCESSOR(Int32x4)
649 CAST_ACCESSOR(Int8x16)
637 CAST_ACCESSOR(JSArray) 650 CAST_ACCESSOR(JSArray)
638 CAST_ACCESSOR(JSArrayBuffer) 651 CAST_ACCESSOR(JSArrayBuffer)
639 CAST_ACCESSOR(JSArrayBufferView) 652 CAST_ACCESSOR(JSArrayBufferView)
640 CAST_ACCESSOR(JSBoundFunction) 653 CAST_ACCESSOR(JSBoundFunction)
641 CAST_ACCESSOR(JSDataView) 654 CAST_ACCESSOR(JSDataView)
642 CAST_ACCESSOR(JSDate) 655 CAST_ACCESSOR(JSDate)
643 CAST_ACCESSOR(JSFunction) 656 CAST_ACCESSOR(JSFunction)
644 CAST_ACCESSOR(JSGeneratorObject) 657 CAST_ACCESSOR(JSGeneratorObject)
645 CAST_ACCESSOR(JSGlobalObject) 658 CAST_ACCESSOR(JSGlobalObject)
646 CAST_ACCESSOR(JSGlobalProxy) 659 CAST_ACCESSOR(JSGlobalProxy)
(...skipping 30 matching lines...) Expand all
677 CAST_ACCESSOR(OrderedHashSet) 690 CAST_ACCESSOR(OrderedHashSet)
678 CAST_ACCESSOR(PropertyCell) 691 CAST_ACCESSOR(PropertyCell)
679 CAST_ACCESSOR(TemplateList) 692 CAST_ACCESSOR(TemplateList)
680 CAST_ACCESSOR(RegExpMatchInfo) 693 CAST_ACCESSOR(RegExpMatchInfo)
681 CAST_ACCESSOR(ScopeInfo) 694 CAST_ACCESSOR(ScopeInfo)
682 CAST_ACCESSOR(SeededNumberDictionary) 695 CAST_ACCESSOR(SeededNumberDictionary)
683 CAST_ACCESSOR(SeqOneByteString) 696 CAST_ACCESSOR(SeqOneByteString)
684 CAST_ACCESSOR(SeqString) 697 CAST_ACCESSOR(SeqString)
685 CAST_ACCESSOR(SeqTwoByteString) 698 CAST_ACCESSOR(SeqTwoByteString)
686 CAST_ACCESSOR(SharedFunctionInfo) 699 CAST_ACCESSOR(SharedFunctionInfo)
700 CAST_ACCESSOR(Simd128Value)
687 CAST_ACCESSOR(SlicedString) 701 CAST_ACCESSOR(SlicedString)
688 CAST_ACCESSOR(Smi) 702 CAST_ACCESSOR(Smi)
689 CAST_ACCESSOR(String) 703 CAST_ACCESSOR(String)
690 CAST_ACCESSOR(StringSet) 704 CAST_ACCESSOR(StringSet)
691 CAST_ACCESSOR(StringTable) 705 CAST_ACCESSOR(StringTable)
692 CAST_ACCESSOR(Struct) 706 CAST_ACCESSOR(Struct)
693 CAST_ACCESSOR(Symbol) 707 CAST_ACCESSOR(Symbol)
694 CAST_ACCESSOR(TemplateInfo) 708 CAST_ACCESSOR(TemplateInfo)
695 CAST_ACCESSOR(ThinString) 709 CAST_ACCESSOR(ThinString)
710 CAST_ACCESSOR(Uint16x8)
711 CAST_ACCESSOR(Uint32x4)
712 CAST_ACCESSOR(Uint8x16)
696 CAST_ACCESSOR(UnseededNumberDictionary) 713 CAST_ACCESSOR(UnseededNumberDictionary)
697 CAST_ACCESSOR(WeakCell) 714 CAST_ACCESSOR(WeakCell)
698 CAST_ACCESSOR(WeakFixedArray) 715 CAST_ACCESSOR(WeakFixedArray)
699 CAST_ACCESSOR(WeakHashTable) 716 CAST_ACCESSOR(WeakHashTable)
700 717
701 #define MAKE_STRUCT_CAST(NAME, Name, name) CAST_ACCESSOR(Name) 718 #define MAKE_STRUCT_CAST(NAME, Name, name) CAST_ACCESSOR(Name)
702 STRUCT_LIST(MAKE_STRUCT_CAST) 719 STRUCT_LIST(MAKE_STRUCT_CAST)
703 #undef MAKE_STRUCT_CAST 720 #undef MAKE_STRUCT_CAST
704 721
705 #undef CAST_ACCESSOR 722 #undef CAST_ACCESSOR
(...skipping 845 matching lines...) Expand 10 before | Expand all | Expand 10 after
1551 int HeapNumber::get_exponent() { 1568 int HeapNumber::get_exponent() {
1552 return ((READ_INT_FIELD(this, kExponentOffset) & kExponentMask) >> 1569 return ((READ_INT_FIELD(this, kExponentOffset) & kExponentMask) >>
1553 kExponentShift) - kExponentBias; 1570 kExponentShift) - kExponentBias;
1554 } 1571 }
1555 1572
1556 1573
1557 int HeapNumber::get_sign() { 1574 int HeapNumber::get_sign() {
1558 return READ_INT_FIELD(this, kExponentOffset) & kSignMask; 1575 return READ_INT_FIELD(this, kExponentOffset) & kSignMask;
1559 } 1576 }
1560 1577
1578
1579 bool Simd128Value::Equals(Simd128Value* that) {
1580 // TODO(bmeurer): This doesn't match the SIMD.js specification, but it seems
1581 // to be consistent with what the CompareICStub does, and what is tested in
1582 // the current SIMD.js testsuite.
1583 if (this == that) return true;
1584 #define SIMD128_VALUE(TYPE, Type, type, lane_count, lane_type) \
1585 if (this->Is##Type()) { \
1586 if (!that->Is##Type()) return false; \
1587 return Type::cast(this)->Equals(Type::cast(that)); \
1588 }
1589 SIMD128_TYPES(SIMD128_VALUE)
1590 #undef SIMD128_VALUE
1591 return false;
1592 }
1593
1594
1595 // static
1596 bool Simd128Value::Equals(Handle<Simd128Value> one, Handle<Simd128Value> two) {
1597 return one->Equals(*two);
1598 }
1599
1600
1601 #define SIMD128_VALUE_EQUALS(TYPE, Type, type, lane_count, lane_type) \
1602 bool Type::Equals(Type* that) { \
1603 for (int lane = 0; lane < lane_count; ++lane) { \
1604 if (this->get_lane(lane) != that->get_lane(lane)) return false; \
1605 } \
1606 return true; \
1607 }
1608 SIMD128_TYPES(SIMD128_VALUE_EQUALS)
1609 #undef SIMD128_VALUE_EQUALS
1610
1611
1612 #if defined(V8_TARGET_LITTLE_ENDIAN)
1613 #define SIMD128_READ_LANE(lane_type, lane_count, field_type, field_size) \
1614 lane_type value = \
1615 READ_##field_type##_FIELD(this, kValueOffset + lane * field_size);
1616 #elif defined(V8_TARGET_BIG_ENDIAN)
1617 #define SIMD128_READ_LANE(lane_type, lane_count, field_type, field_size) \
1618 lane_type value = READ_##field_type##_FIELD( \
1619 this, kValueOffset + (lane_count - lane - 1) * field_size);
1620 #else
1621 #error Unknown byte ordering
1622 #endif
1623
1624 #if defined(V8_TARGET_LITTLE_ENDIAN)
1625 #define SIMD128_WRITE_LANE(lane_count, field_type, field_size, value) \
1626 WRITE_##field_type##_FIELD(this, kValueOffset + lane * field_size, value);
1627 #elif defined(V8_TARGET_BIG_ENDIAN)
1628 #define SIMD128_WRITE_LANE(lane_count, field_type, field_size, value) \
1629 WRITE_##field_type##_FIELD( \
1630 this, kValueOffset + (lane_count - lane - 1) * field_size, value);
1631 #else
1632 #error Unknown byte ordering
1633 #endif
1634
1635 #define SIMD128_NUMERIC_LANE_FNS(type, lane_type, lane_count, field_type, \
1636 field_size) \
1637 lane_type type::get_lane(int lane) const { \
1638 DCHECK(lane < lane_count && lane >= 0); \
1639 SIMD128_READ_LANE(lane_type, lane_count, field_type, field_size) \
1640 return value; \
1641 } \
1642 \
1643 void type::set_lane(int lane, lane_type value) { \
1644 DCHECK(lane < lane_count && lane >= 0); \
1645 SIMD128_WRITE_LANE(lane_count, field_type, field_size, value) \
1646 }
1647
1648 SIMD128_NUMERIC_LANE_FNS(Float32x4, float, 4, FLOAT, kFloatSize)
1649 SIMD128_NUMERIC_LANE_FNS(Int32x4, int32_t, 4, INT32, kInt32Size)
1650 SIMD128_NUMERIC_LANE_FNS(Uint32x4, uint32_t, 4, UINT32, kInt32Size)
1651 SIMD128_NUMERIC_LANE_FNS(Int16x8, int16_t, 8, INT16, kShortSize)
1652 SIMD128_NUMERIC_LANE_FNS(Uint16x8, uint16_t, 8, UINT16, kShortSize)
1653 SIMD128_NUMERIC_LANE_FNS(Int8x16, int8_t, 16, INT8, kCharSize)
1654 SIMD128_NUMERIC_LANE_FNS(Uint8x16, uint8_t, 16, UINT8, kCharSize)
1655 #undef SIMD128_NUMERIC_LANE_FNS
1656
1657
1658 #define SIMD128_BOOLEAN_LANE_FNS(type, lane_type, lane_count, field_type, \
1659 field_size) \
1660 bool type::get_lane(int lane) const { \
1661 DCHECK(lane < lane_count && lane >= 0); \
1662 SIMD128_READ_LANE(lane_type, lane_count, field_type, field_size) \
1663 DCHECK(value == 0 || value == -1); \
1664 return value != 0; \
1665 } \
1666 \
1667 void type::set_lane(int lane, bool value) { \
1668 DCHECK(lane < lane_count && lane >= 0); \
1669 int32_t int_val = value ? -1 : 0; \
1670 SIMD128_WRITE_LANE(lane_count, field_type, field_size, int_val) \
1671 }
1672
1673 SIMD128_BOOLEAN_LANE_FNS(Bool32x4, int32_t, 4, INT32, kInt32Size)
1674 SIMD128_BOOLEAN_LANE_FNS(Bool16x8, int16_t, 8, INT16, kShortSize)
1675 SIMD128_BOOLEAN_LANE_FNS(Bool8x16, int8_t, 16, INT8, kCharSize)
1676 #undef SIMD128_BOOLEAN_LANE_FNS
1677
1678 #undef SIMD128_READ_LANE
1679 #undef SIMD128_WRITE_LANE
1680
1681
1561 ACCESSORS(JSReceiver, properties, FixedArray, kPropertiesOffset) 1682 ACCESSORS(JSReceiver, properties, FixedArray, kPropertiesOffset)
1562 1683
1563 1684
1564 Object** FixedArray::GetFirstElementAddress() { 1685 Object** FixedArray::GetFirstElementAddress() {
1565 return reinterpret_cast<Object**>(FIELD_ADDR(this, OffsetOfElementAt(0))); 1686 return reinterpret_cast<Object**>(FIELD_ADDR(this, OffsetOfElementAt(0)));
1566 } 1687 }
1567 1688
1568 1689
1569 bool FixedArray::ContainsOnlySmisOrHoles() { 1690 bool FixedArray::ContainsOnlySmisOrHoles() {
1570 Object* the_hole = GetHeap()->the_hole_value(); 1691 Object* the_hole = GetHeap()->the_hole_value();
(...skipping 759 matching lines...) Expand 10 before | Expand all | Expand 10 after
2330 return Object::ToUint32(index) && *index != kMaxUInt32; 2451 return Object::ToUint32(index) && *index != kMaxUInt32;
2331 } 2452 }
2332 2453
2333 2454
2334 void Object::VerifyApiCallResultType() { 2455 void Object::VerifyApiCallResultType() {
2335 #if DEBUG 2456 #if DEBUG
2336 if (IsSmi()) return; 2457 if (IsSmi()) return;
2337 DCHECK(IsHeapObject()); 2458 DCHECK(IsHeapObject());
2338 Isolate* isolate = HeapObject::cast(this)->GetIsolate(); 2459 Isolate* isolate = HeapObject::cast(this)->GetIsolate();
2339 if (!(IsString() || IsSymbol() || IsJSReceiver() || IsHeapNumber() || 2460 if (!(IsString() || IsSymbol() || IsJSReceiver() || IsHeapNumber() ||
2340 IsUndefined(isolate) || IsTrue(isolate) || IsFalse(isolate) || 2461 IsSimd128Value() || IsUndefined(isolate) || IsTrue(isolate) ||
2341 IsNull(isolate))) { 2462 IsFalse(isolate) || IsNull(isolate))) {
2342 FATAL("API call returned invalid object"); 2463 FATAL("API call returned invalid object");
2343 } 2464 }
2344 #endif // DEBUG 2465 #endif // DEBUG
2345 } 2466 }
2346 2467
2347 2468
2348 Object* FixedArray::get(int index) const { 2469 Object* FixedArray::get(int index) const {
2349 SLOW_DCHECK(index >= 0 && index < this->length()); 2470 SLOW_DCHECK(index >= 0 && index < this->length());
2350 return NOBARRIER_READ_FIELD(this, kHeaderSize + index * kPointerSize); 2471 return NOBARRIER_READ_FIELD(this, kHeaderSize + index * kPointerSize);
2351 } 2472 }
(...skipping 242 matching lines...) Expand 10 before | Expand all | Expand 10 after
2594 } 2715 }
2595 2716
2596 2717
2597 AllocationAlignment HeapObject::RequiredAlignment() { 2718 AllocationAlignment HeapObject::RequiredAlignment() {
2598 #ifdef V8_HOST_ARCH_32_BIT 2719 #ifdef V8_HOST_ARCH_32_BIT
2599 if ((IsFixedFloat64Array() || IsFixedDoubleArray()) && 2720 if ((IsFixedFloat64Array() || IsFixedDoubleArray()) &&
2600 FixedArrayBase::cast(this)->length() != 0) { 2721 FixedArrayBase::cast(this)->length() != 0) {
2601 return kDoubleAligned; 2722 return kDoubleAligned;
2602 } 2723 }
2603 if (IsHeapNumber()) return kDoubleUnaligned; 2724 if (IsHeapNumber()) return kDoubleUnaligned;
2725 if (IsSimd128Value()) return kSimd128Unaligned;
2604 #endif // V8_HOST_ARCH_32_BIT 2726 #endif // V8_HOST_ARCH_32_BIT
2605 return kWordAligned; 2727 return kWordAligned;
2606 } 2728 }
2607 2729
2608 2730
2609 void FixedArray::set(int index, 2731 void FixedArray::set(int index,
2610 Object* value, 2732 Object* value,
2611 WriteBarrierMode mode) { 2733 WriteBarrierMode mode) {
2612 DCHECK_NE(map(), GetHeap()->fixed_cow_array_map()); 2734 DCHECK_NE(map(), GetHeap()->fixed_cow_array_map());
2613 DCHECK_GE(index, 0); 2735 DCHECK_GE(index, 0);
(...skipping 5658 matching lines...) Expand 10 before | Expand all | Expand 10 after
8272 #undef WRITE_INT64_FIELD 8394 #undef WRITE_INT64_FIELD
8273 #undef READ_BYTE_FIELD 8395 #undef READ_BYTE_FIELD
8274 #undef WRITE_BYTE_FIELD 8396 #undef WRITE_BYTE_FIELD
8275 #undef NOBARRIER_READ_BYTE_FIELD 8397 #undef NOBARRIER_READ_BYTE_FIELD
8276 #undef NOBARRIER_WRITE_BYTE_FIELD 8398 #undef NOBARRIER_WRITE_BYTE_FIELD
8277 8399
8278 } // namespace internal 8400 } // namespace internal
8279 } // namespace v8 8401 } // namespace v8
8280 8402
8281 #endif // V8_OBJECTS_INL_H_ 8403 #endif // V8_OBJECTS_INL_H_
OLDNEW
« no previous file with comments | « src/objects-debug.cc ('k') | src/objects-printer.cc » ('j') | no next file with comments »

Powered by Google App Engine
This is Rietveld 408576698