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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 |
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| 118 // Getter that returns a Smi as an int and writes an int as a Smi. | 118 // Getter that returns a Smi as an int and writes an int as a Smi. |
| 119 #define SMI_ACCESSORS(holder, name, offset) \ | 119 #define SMI_ACCESSORS(holder, name, offset) \ |
| 120 int holder::name() { \ | 120 int holder::name() { \ |
| 121 Object* value = READ_FIELD(this, offset); \ | 121 Object* value = READ_FIELD(this, offset); \ |
| 122 return Smi::cast(value)->value(); \ | 122 return Smi::cast(value)->value(); \ |
| 123 } \ | 123 } \ |
| 124 void holder::set_##name(int value) { \ | 124 void holder::set_##name(int value) { \ |
| 125 WRITE_FIELD(this, offset, Smi::FromInt(value)); \ | 125 WRITE_FIELD(this, offset, Smi::FromInt(value)); \ |
| 126 } | 126 } |
| 127 | 127 |
| 128 #define SYNCHRONIZED_SMI_ACCESSORS(holder, name, offset) \ |
| 129 int holder::synchronized_##name() { \ |
| 130 Object* value = ACQUIRE_READ_FIELD(this, offset); \ |
| 131 return Smi::cast(value)->value(); \ |
| 132 } \ |
| 133 void holder::synchronized_set_##name(int value) { \ |
| 134 RELEASE_WRITE_FIELD(this, offset, Smi::FromInt(value)); \ |
| 135 } |
| 136 |
| 128 | 137 |
| 129 #define BOOL_GETTER(holder, field, name, offset) \ | 138 #define BOOL_GETTER(holder, field, name, offset) \ |
| 130 bool holder::name() { \ | 139 bool holder::name() { \ |
| 131 return BooleanBit::get(field(), offset); \ | 140 return BooleanBit::get(field(), offset); \ |
| 132 } \ | 141 } \ |
| 133 | 142 |
| 134 | 143 |
| 135 #define BOOL_ACCESSORS(holder, field, name, offset) \ | 144 #define BOOL_ACCESSORS(holder, field, name, offset) \ |
| 136 bool holder::name() { \ | 145 bool holder::name() { \ |
| 137 return BooleanBit::get(field(), offset); \ | 146 return BooleanBit::get(field(), offset); \ |
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| 1088 return GetPropertyWithReceiver(this, key, attributes); | 1097 return GetPropertyWithReceiver(this, key, attributes); |
| 1089 } | 1098 } |
| 1090 | 1099 |
| 1091 | 1100 |
| 1092 #define FIELD_ADDR(p, offset) \ | 1101 #define FIELD_ADDR(p, offset) \ |
| 1093 (reinterpret_cast<byte*>(p) + offset - kHeapObjectTag) | 1102 (reinterpret_cast<byte*>(p) + offset - kHeapObjectTag) |
| 1094 | 1103 |
| 1095 #define READ_FIELD(p, offset) \ | 1104 #define READ_FIELD(p, offset) \ |
| 1096 (*reinterpret_cast<Object**>(FIELD_ADDR(p, offset))) | 1105 (*reinterpret_cast<Object**>(FIELD_ADDR(p, offset))) |
| 1097 | 1106 |
| 1107 #define ACQUIRE_READ_FIELD(p, offset) \ |
| 1108 reinterpret_cast<Object*>( \ |
| 1109 Acquire_Load(reinterpret_cast<AtomicWord*>(FIELD_ADDR(p, offset)))) |
| 1110 |
| 1111 #define NO_BARRIER_READ_FIELD(p, offset) \ |
| 1112 reinterpret_cast<Object*>( \ |
| 1113 NoBarrier_Load(reinterpret_cast<AtomicWord*>(FIELD_ADDR(p, offset)))) |
| 1114 |
| 1098 #define WRITE_FIELD(p, offset, value) \ | 1115 #define WRITE_FIELD(p, offset, value) \ |
| 1099 (*reinterpret_cast<Object**>(FIELD_ADDR(p, offset)) = value) | 1116 (*reinterpret_cast<Object**>(FIELD_ADDR(p, offset)) = value) |
| 1100 | 1117 |
| 1118 #define RELEASE_WRITE_FIELD(p, offset, value) \ |
| 1119 Release_Store(reinterpret_cast<AtomicWord*>(FIELD_ADDR(p, offset)), \ |
| 1120 reinterpret_cast<AtomicWord>(value)); |
| 1121 |
| 1122 #define NO_BARRIER_WRITE_FIELD(p, offset, value) \ |
| 1123 NoBarrier_Store(reinterpret_cast<AtomicWord*>(FIELD_ADDR(p, offset)), \ |
| 1124 reinterpret_cast<AtomicWord>(value)); |
| 1125 |
| 1101 #define WRITE_BARRIER(heap, object, offset, value) \ | 1126 #define WRITE_BARRIER(heap, object, offset, value) \ |
| 1102 heap->incremental_marking()->RecordWrite( \ | 1127 heap->incremental_marking()->RecordWrite( \ |
| 1103 object, HeapObject::RawField(object, offset), value); \ | 1128 object, HeapObject::RawField(object, offset), value); \ |
| 1104 if (heap->InNewSpace(value)) { \ | 1129 if (heap->InNewSpace(value)) { \ |
| 1105 heap->RecordWrite(object->address(), offset); \ | 1130 heap->RecordWrite(object->address(), offset); \ |
| 1106 } | 1131 } |
| 1107 | 1132 |
| 1108 #define CONDITIONAL_WRITE_BARRIER(heap, object, offset, value, mode) \ | 1133 #define CONDITIONAL_WRITE_BARRIER(heap, object, offset, value, mode) \ |
| 1109 if (mode == UPDATE_WRITE_BARRIER) { \ | 1134 if (mode == UPDATE_WRITE_BARRIER) { \ |
| 1110 heap->incremental_marking()->RecordWrite( \ | 1135 heap->incremental_marking()->RecordWrite( \ |
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| 1341 void HeapObject::set_map(Map* value) { | 1366 void HeapObject::set_map(Map* value) { |
| 1342 set_map_word(MapWord::FromMap(value)); | 1367 set_map_word(MapWord::FromMap(value)); |
| 1343 if (value != NULL) { | 1368 if (value != NULL) { |
| 1344 // TODO(1600) We are passing NULL as a slot because maps can never be on | 1369 // TODO(1600) We are passing NULL as a slot because maps can never be on |
| 1345 // evacuation candidate. | 1370 // evacuation candidate. |
| 1346 value->GetHeap()->incremental_marking()->RecordWrite(this, NULL, value); | 1371 value->GetHeap()->incremental_marking()->RecordWrite(this, NULL, value); |
| 1347 } | 1372 } |
| 1348 } | 1373 } |
| 1349 | 1374 |
| 1350 | 1375 |
| 1376 Map* HeapObject::synchronized_map() { |
| 1377 return synchronized_map_word().ToMap(); |
| 1378 } |
| 1379 |
| 1380 |
| 1381 void HeapObject::synchronized_set_map(Map* value) { |
| 1382 synchronized_set_map_word(MapWord::FromMap(value)); |
| 1383 if (value != NULL) { |
| 1384 // TODO(1600) We are passing NULL as a slot because maps can never be on |
| 1385 // evacuation candidate. |
| 1386 value->GetHeap()->incremental_marking()->RecordWrite(this, NULL, value); |
| 1387 } |
| 1388 } |
| 1389 |
| 1390 |
| 1391 Map* HeapObject::no_barrier_map() { |
| 1392 return no_barrier_map_word().ToMap(); |
| 1393 } |
| 1394 |
| 1395 |
| 1396 void HeapObject::no_barrier_set_map(Map* value) { |
| 1397 no_barrier_set_map_word(MapWord::FromMap(value)); |
| 1398 if (value != NULL) { |
| 1399 // TODO(1600) We are passing NULL as a slot because maps can never be on |
| 1400 // evacuation candidate. |
| 1401 value->GetHeap()->incremental_marking()->RecordWrite(this, NULL, value); |
| 1402 } |
| 1403 } |
| 1404 |
| 1405 |
| 1351 // Unsafe accessor omitting write barrier. | 1406 // Unsafe accessor omitting write barrier. |
| 1352 void HeapObject::set_map_no_write_barrier(Map* value) { | 1407 void HeapObject::set_map_no_write_barrier(Map* value) { |
| 1353 set_map_word(MapWord::FromMap(value)); | 1408 set_map_word(MapWord::FromMap(value)); |
| 1354 } | 1409 } |
| 1355 | 1410 |
| 1356 | 1411 |
| 1357 MapWord HeapObject::map_word() { | 1412 MapWord HeapObject::map_word() { |
| 1358 return MapWord(reinterpret_cast<uintptr_t>(READ_FIELD(this, kMapOffset))); | 1413 return MapWord(reinterpret_cast<uintptr_t>(READ_FIELD(this, kMapOffset))); |
| 1359 } | 1414 } |
| 1360 | 1415 |
| 1361 | 1416 |
| 1362 void HeapObject::set_map_word(MapWord map_word) { | 1417 void HeapObject::set_map_word(MapWord map_word) { |
| 1363 // WRITE_FIELD does not invoke write barrier, but there is no need | 1418 // WRITE_FIELD does not invoke write barrier, but there is no need |
| 1364 // here. | 1419 // here. |
| 1365 WRITE_FIELD(this, kMapOffset, reinterpret_cast<Object*>(map_word.value_)); | 1420 WRITE_FIELD(this, kMapOffset, reinterpret_cast<Object*>(map_word.value_)); |
| 1366 } | 1421 } |
| 1367 | 1422 |
| 1368 | 1423 |
| 1424 MapWord HeapObject::synchronized_map_word() { |
| 1425 return MapWord( |
| 1426 reinterpret_cast<uintptr_t>(ACQUIRE_READ_FIELD(this, kMapOffset))); |
| 1427 } |
| 1428 |
| 1429 |
| 1430 void HeapObject::synchronized_set_map_word(MapWord map_word) { |
| 1431 // RELEASE_WRITE_FIELD does not invoke write barrier, but there is no need |
| 1432 // here. |
| 1433 RELEASE_WRITE_FIELD( |
| 1434 this, kMapOffset, reinterpret_cast<Object*>(map_word.value_)); |
| 1435 } |
| 1436 |
| 1437 |
| 1438 MapWord HeapObject::no_barrier_map_word() { |
| 1439 return MapWord( |
| 1440 reinterpret_cast<uintptr_t>(NO_BARRIER_READ_FIELD(this, kMapOffset))); |
| 1441 } |
| 1442 |
| 1443 |
| 1444 void HeapObject::no_barrier_set_map_word(MapWord map_word) { |
| 1445 // RELEASE_WRITE_FIELD does not invoke write barrier, but there is no need |
| 1446 // here. |
| 1447 NO_BARRIER_WRITE_FIELD( |
| 1448 this, kMapOffset, reinterpret_cast<Object*>(map_word.value_)); |
| 1449 } |
| 1450 |
| 1451 |
| 1369 HeapObject* HeapObject::FromAddress(Address address) { | 1452 HeapObject* HeapObject::FromAddress(Address address) { |
| 1370 ASSERT_TAG_ALIGNED(address); | 1453 ASSERT_TAG_ALIGNED(address); |
| 1371 return reinterpret_cast<HeapObject*>(address + kHeapObjectTag); | 1454 return reinterpret_cast<HeapObject*>(address + kHeapObjectTag); |
| 1372 } | 1455 } |
| 1373 | 1456 |
| 1374 | 1457 |
| 1375 Address HeapObject::address() { | 1458 Address HeapObject::address() { |
| 1376 return reinterpret_cast<Address>(this) - kHeapObjectTag; | 1459 return reinterpret_cast<Address>(this) - kHeapObjectTag; |
| 1377 } | 1460 } |
| 1378 | 1461 |
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| 2907 | 2990 |
| 2908 | 2991 |
| 2909 template <typename Shape, typename Key> | 2992 template <typename Shape, typename Key> |
| 2910 HashTable<Shape, Key>* HashTable<Shape, Key>::cast(Object* obj) { | 2993 HashTable<Shape, Key>* HashTable<Shape, Key>::cast(Object* obj) { |
| 2911 ASSERT(obj->IsHashTable()); | 2994 ASSERT(obj->IsHashTable()); |
| 2912 return reinterpret_cast<HashTable*>(obj); | 2995 return reinterpret_cast<HashTable*>(obj); |
| 2913 } | 2996 } |
| 2914 | 2997 |
| 2915 | 2998 |
| 2916 SMI_ACCESSORS(FixedArrayBase, length, kLengthOffset) | 2999 SMI_ACCESSORS(FixedArrayBase, length, kLengthOffset) |
| 3000 SYNCHRONIZED_SMI_ACCESSORS(FixedArrayBase, length, kLengthOffset) |
| 3001 |
| 2917 SMI_ACCESSORS(FreeSpace, size, kSizeOffset) | 3002 SMI_ACCESSORS(FreeSpace, size, kSizeOffset) |
| 2918 | 3003 |
| 2919 SMI_ACCESSORS(String, length, kLengthOffset) | 3004 SMI_ACCESSORS(String, length, kLengthOffset) |
| 3005 SYNCHRONIZED_SMI_ACCESSORS(String, length, kLengthOffset) |
| 2920 | 3006 |
| 2921 | 3007 |
| 2922 uint32_t Name::hash_field() { | 3008 uint32_t Name::hash_field() { |
| 2923 return READ_UINT32_FIELD(this, kHashFieldOffset); | 3009 return READ_UINT32_FIELD(this, kHashFieldOffset); |
| 2924 } | 3010 } |
| 2925 | 3011 |
| 2926 | 3012 |
| 2927 void Name::set_hash_field(uint32_t value) { | 3013 void Name::set_hash_field(uint32_t value) { |
| 2928 WRITE_UINT32_FIELD(this, kHashFieldOffset, value); | 3014 WRITE_UINT32_FIELD(this, kHashFieldOffset, value); |
| 2929 #if V8_HOST_ARCH_64_BIT | 3015 #if V8_HOST_ARCH_64_BIT |
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| 6789 #undef READ_UINT32_FIELD | 6875 #undef READ_UINT32_FIELD |
| 6790 #undef WRITE_UINT32_FIELD | 6876 #undef WRITE_UINT32_FIELD |
| 6791 #undef READ_SHORT_FIELD | 6877 #undef READ_SHORT_FIELD |
| 6792 #undef WRITE_SHORT_FIELD | 6878 #undef WRITE_SHORT_FIELD |
| 6793 #undef READ_BYTE_FIELD | 6879 #undef READ_BYTE_FIELD |
| 6794 #undef WRITE_BYTE_FIELD | 6880 #undef WRITE_BYTE_FIELD |
| 6795 | 6881 |
| 6796 } } // namespace v8::internal | 6882 } } // namespace v8::internal |
| 6797 | 6883 |
| 6798 #endif // V8_OBJECTS_INL_H_ | 6884 #endif // V8_OBJECTS_INL_H_ |
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