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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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678 array_buffer->set_flag(Smi::FromInt(0)); | 678 array_buffer->set_flag(Smi::FromInt(0)); |
679 array_buffer->set_is_external(is_external); | 679 array_buffer->set_is_external(is_external); |
680 | 680 |
681 Handle<Object> byte_length = | 681 Handle<Object> byte_length = |
682 isolate->factory()->NewNumberFromSize(allocated_length); | 682 isolate->factory()->NewNumberFromSize(allocated_length); |
683 CHECK(byte_length->IsSmi() || byte_length->IsHeapNumber()); | 683 CHECK(byte_length->IsSmi() || byte_length->IsHeapNumber()); |
684 array_buffer->set_byte_length(*byte_length); | 684 array_buffer->set_byte_length(*byte_length); |
685 | 685 |
686 array_buffer->set_weak_next(isolate->heap()->array_buffers_list()); | 686 array_buffer->set_weak_next(isolate->heap()->array_buffers_list()); |
687 isolate->heap()->set_array_buffers_list(*array_buffer); | 687 isolate->heap()->set_array_buffers_list(*array_buffer); |
688 array_buffer->set_weak_first_array(isolate->heap()->undefined_value()); | 688 array_buffer->set_weak_first_view(isolate->heap()->undefined_value()); |
689 } | 689 } |
690 | 690 |
691 | 691 |
692 bool Runtime::SetupArrayBufferAllocatingData( | 692 bool Runtime::SetupArrayBufferAllocatingData( |
693 Isolate* isolate, | 693 Isolate* isolate, |
694 Handle<JSArrayBuffer> array_buffer, | 694 Handle<JSArrayBuffer> array_buffer, |
695 size_t allocated_length) { | 695 size_t allocated_length) { |
696 void* data; | 696 void* data; |
697 CHECK(V8::ArrayBufferAllocator() != NULL); | 697 CHECK(V8::ArrayBufferAllocator() != NULL); |
698 if (allocated_length != 0) { | 698 if (allocated_length != 0) { |
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843 holder->set_byte_offset(*byte_offset_object); | 843 holder->set_byte_offset(*byte_offset_object); |
844 holder->set_byte_length(*byte_length_object); | 844 holder->set_byte_length(*byte_length_object); |
845 | 845 |
846 size_t byte_offset = NumberToSize(isolate, *byte_offset_object); | 846 size_t byte_offset = NumberToSize(isolate, *byte_offset_object); |
847 size_t byte_length = NumberToSize(isolate, *byte_length_object); | 847 size_t byte_length = NumberToSize(isolate, *byte_length_object); |
848 ASSERT(byte_length % elementSize == 0); | 848 ASSERT(byte_length % elementSize == 0); |
849 size_t length = byte_length / elementSize; | 849 size_t length = byte_length / elementSize; |
850 | 850 |
851 Handle<Object> length_obj = isolate->factory()->NewNumberFromSize(length); | 851 Handle<Object> length_obj = isolate->factory()->NewNumberFromSize(length); |
852 holder->set_length(*length_obj); | 852 holder->set_length(*length_obj); |
853 holder->set_weak_next(buffer->weak_first_array()); | 853 holder->set_weak_next(buffer->weak_first_view()); |
854 buffer->set_weak_first_array(*holder); | 854 buffer->set_weak_first_view(*holder); |
855 | 855 |
856 Handle<ExternalArray> elements = | 856 Handle<ExternalArray> elements = |
857 isolate->factory()->NewExternalArray( | 857 isolate->factory()->NewExternalArray( |
858 static_cast<int>(length), arrayType, | 858 static_cast<int>(length), arrayType, |
859 static_cast<uint8_t*>(buffer->backing_store()) + byte_offset); | 859 static_cast<uint8_t*>(buffer->backing_store()) + byte_offset); |
860 holder->set_elements(*elements); | 860 holder->set_elements(*elements); |
861 return isolate->heap()->undefined_value(); | 861 return isolate->heap()->undefined_value(); |
862 } | 862 } |
863 | 863 |
864 | 864 |
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996 JSObject::SetElement( | 996 JSObject::SetElement( |
997 target, static_cast<uint32_t>(offset + idx), value, | 997 target, static_cast<uint32_t>(offset + idx), value, |
998 NONE, kNonStrictMode); | 998 NONE, kNonStrictMode); |
999 } | 999 } |
1000 } | 1000 } |
1001 | 1001 |
1002 return isolate->heap()->true_value(); | 1002 return isolate->heap()->true_value(); |
1003 } | 1003 } |
1004 | 1004 |
1005 | 1005 |
| 1006 RUNTIME_FUNCTION(MaybeObject*, Runtime_DataViewInitialize) { |
| 1007 HandleScope scope(isolate); |
| 1008 ASSERT(args.length() == 4); |
| 1009 CONVERT_ARG_HANDLE_CHECKED(JSDataView, holder, 0); |
| 1010 CONVERT_ARG_HANDLE_CHECKED(JSArrayBuffer, buffer, 1); |
| 1011 CONVERT_ARG_HANDLE_CHECKED(Object, byte_offset, 2); |
| 1012 CONVERT_ARG_HANDLE_CHECKED(Object, byte_length, 3); |
| 1013 |
| 1014 holder->set_buffer(*buffer); |
| 1015 ASSERT(byte_offset->IsNumber()); |
| 1016 ASSERT( |
| 1017 NumberToSize(isolate, buffer->byte_length()) >= |
| 1018 NumberToSize(isolate, *byte_offset) |
| 1019 + NumberToSize(isolate, *byte_length)); |
| 1020 holder->set_byte_offset(*byte_offset); |
| 1021 ASSERT(byte_length->IsNumber()); |
| 1022 holder->set_byte_length(*byte_length); |
| 1023 |
| 1024 holder->set_weak_next(buffer->weak_first_view()); |
| 1025 buffer->set_weak_first_view(*holder); |
| 1026 |
| 1027 return isolate->heap()->undefined_value(); |
| 1028 } |
| 1029 |
| 1030 |
| 1031 RUNTIME_FUNCTION(MaybeObject*, Runtime_DataViewGetBuffer) { |
| 1032 HandleScope scope(isolate); |
| 1033 ASSERT(args.length() == 1); |
| 1034 CONVERT_ARG_HANDLE_CHECKED(JSDataView, data_view, 0); |
| 1035 return data_view->buffer(); |
| 1036 } |
| 1037 |
| 1038 |
| 1039 RUNTIME_FUNCTION(MaybeObject*, Runtime_DataViewGetByteOffset) { |
| 1040 HandleScope scope(isolate); |
| 1041 ASSERT(args.length() == 1); |
| 1042 CONVERT_ARG_HANDLE_CHECKED(JSDataView, data_view, 0); |
| 1043 return data_view->byte_offset(); |
| 1044 } |
| 1045 |
| 1046 |
| 1047 RUNTIME_FUNCTION(MaybeObject*, Runtime_DataViewGetByteLength) { |
| 1048 HandleScope scope(isolate); |
| 1049 ASSERT(args.length() == 1); |
| 1050 CONVERT_ARG_HANDLE_CHECKED(JSDataView, data_view, 0); |
| 1051 return data_view->byte_length(); |
| 1052 } |
| 1053 |
| 1054 |
| 1055 inline static bool NeedToFlipBytes(bool is_little_endian) { |
| 1056 #ifdef V8_TARGET_LITTLE_ENDIAN |
| 1057 return !is_little_endian; |
| 1058 #else |
| 1059 return is_little_endian; |
| 1060 #endif |
| 1061 } |
| 1062 |
| 1063 |
| 1064 template<int n> |
| 1065 inline void CopyBytes(uint8_t* target, uint8_t* source) { |
| 1066 for (int i = 0; i < n; i++) { |
| 1067 *(target++) = *(source++); |
| 1068 } |
| 1069 } |
| 1070 |
| 1071 |
| 1072 template<int n> |
| 1073 inline void FlipBytes(uint8_t* target, uint8_t* source) { |
| 1074 source = source + (n-1); |
| 1075 for (int i = 0; i < n; i++) { |
| 1076 *(target++) = *(source--); |
| 1077 } |
| 1078 } |
| 1079 |
| 1080 |
| 1081 template<typename T> |
| 1082 inline static bool DataViewGetValue( |
| 1083 Isolate* isolate, |
| 1084 Handle<JSDataView> data_view, |
| 1085 Handle<Object> byte_offset_obj, |
| 1086 bool is_little_endian, |
| 1087 T* result) { |
| 1088 size_t byte_offset = NumberToSize(isolate, *byte_offset_obj); |
| 1089 Handle<JSArrayBuffer> buffer(JSArrayBuffer::cast(data_view->buffer())); |
| 1090 |
| 1091 size_t data_view_byte_offset = |
| 1092 NumberToSize(isolate, data_view->byte_offset()); |
| 1093 size_t data_view_byte_length = |
| 1094 NumberToSize(isolate, data_view->byte_length()); |
| 1095 if (byte_offset + sizeof(T) > data_view_byte_length || |
| 1096 byte_offset + sizeof(T) < byte_offset) { // overflow |
| 1097 return false; |
| 1098 } |
| 1099 |
| 1100 union Value { |
| 1101 T data; |
| 1102 uint8_t bytes[sizeof(T)]; |
| 1103 }; |
| 1104 |
| 1105 Value value; |
| 1106 size_t buffer_offset = data_view_byte_offset + byte_offset; |
| 1107 ASSERT( |
| 1108 NumberToSize(isolate, buffer->byte_length()) |
| 1109 >= buffer_offset + sizeof(T)); |
| 1110 uint8_t* source = |
| 1111 static_cast<uint8_t*>(buffer->backing_store()) + buffer_offset; |
| 1112 if (NeedToFlipBytes(is_little_endian)) { |
| 1113 FlipBytes<sizeof(T)>(value.bytes, source); |
| 1114 } else { |
| 1115 CopyBytes<sizeof(T)>(value.bytes, source); |
| 1116 } |
| 1117 *result = value.data; |
| 1118 return true; |
| 1119 } |
| 1120 |
| 1121 |
| 1122 template<typename T> |
| 1123 static bool DataViewSetValue( |
| 1124 Isolate* isolate, |
| 1125 Handle<JSDataView> data_view, |
| 1126 Handle<Object> byte_offset_obj, |
| 1127 bool is_little_endian, |
| 1128 T data) { |
| 1129 size_t byte_offset = NumberToSize(isolate, *byte_offset_obj); |
| 1130 Handle<JSArrayBuffer> buffer(JSArrayBuffer::cast(data_view->buffer())); |
| 1131 |
| 1132 size_t data_view_byte_offset = |
| 1133 NumberToSize(isolate, data_view->byte_offset()); |
| 1134 size_t data_view_byte_length = |
| 1135 NumberToSize(isolate, data_view->byte_length()); |
| 1136 if (byte_offset + sizeof(T) > data_view_byte_length || |
| 1137 byte_offset + sizeof(T) < byte_offset) { // overflow |
| 1138 return false; |
| 1139 } |
| 1140 |
| 1141 union Value { |
| 1142 T data; |
| 1143 uint8_t bytes[sizeof(T)]; |
| 1144 }; |
| 1145 |
| 1146 Value value; |
| 1147 value.data = data; |
| 1148 size_t buffer_offset = data_view_byte_offset + byte_offset; |
| 1149 ASSERT( |
| 1150 NumberToSize(isolate, buffer->byte_length()) |
| 1151 >= buffer_offset + sizeof(T)); |
| 1152 uint8_t* target = |
| 1153 static_cast<uint8_t*>(buffer->backing_store()) + buffer_offset; |
| 1154 if (NeedToFlipBytes(is_little_endian)) { |
| 1155 FlipBytes<sizeof(T)>(target, value.bytes); |
| 1156 } else { |
| 1157 CopyBytes<sizeof(T)>(target, value.bytes); |
| 1158 } |
| 1159 return true; |
| 1160 } |
| 1161 |
| 1162 |
| 1163 #define DATA_VIEW_GETTER(TypeName, Type, Converter) \ |
| 1164 RUNTIME_FUNCTION(MaybeObject*, Runtime_DataViewGet##TypeName) { \ |
| 1165 HandleScope scope(isolate); \ |
| 1166 ASSERT(args.length() == 3); \ |
| 1167 CONVERT_ARG_HANDLE_CHECKED(JSDataView, holder, 0); \ |
| 1168 CONVERT_ARG_HANDLE_CHECKED(Object, offset, 1); \ |
| 1169 CONVERT_BOOLEAN_ARG_CHECKED(is_little_endian, 2); \ |
| 1170 Type result; \ |
| 1171 if (DataViewGetValue( \ |
| 1172 isolate, holder, offset, is_little_endian, &result)) { \ |
| 1173 return isolate->heap()->Converter(result); \ |
| 1174 } else { \ |
| 1175 return isolate->Throw(*isolate->factory()->NewRangeError( \ |
| 1176 "invalid_data_view_accessor_offset", \ |
| 1177 HandleVector<Object>(NULL, 0))); \ |
| 1178 } \ |
| 1179 } |
| 1180 |
| 1181 DATA_VIEW_GETTER(Uint8, uint8_t, NumberFromUint32) |
| 1182 DATA_VIEW_GETTER(Int8, int8_t, NumberFromInt32) |
| 1183 DATA_VIEW_GETTER(Uint16, uint16_t, NumberFromUint32) |
| 1184 DATA_VIEW_GETTER(Int16, int16_t, NumberFromInt32) |
| 1185 DATA_VIEW_GETTER(Uint32, uint32_t, NumberFromUint32) |
| 1186 DATA_VIEW_GETTER(Int32, int32_t, NumberFromInt32) |
| 1187 DATA_VIEW_GETTER(Float32, float, NumberFromDouble) |
| 1188 DATA_VIEW_GETTER(Float64, double, NumberFromDouble) |
| 1189 |
| 1190 #undef DATA_VIEW_GETTER |
| 1191 |
| 1192 #define DATA_VIEW_SETTER(TypeName, Type) \ |
| 1193 RUNTIME_FUNCTION(MaybeObject*, Runtime_DataViewSet##TypeName) { \ |
| 1194 HandleScope scope(isolate); \ |
| 1195 ASSERT(args.length() == 4); \ |
| 1196 CONVERT_ARG_HANDLE_CHECKED(JSDataView, holder, 0); \ |
| 1197 CONVERT_ARG_HANDLE_CHECKED(Object, offset, 1); \ |
| 1198 CONVERT_ARG_HANDLE_CHECKED(Object, value, 2); \ |
| 1199 CONVERT_BOOLEAN_ARG_CHECKED(is_little_endian, 3); \ |
| 1200 Type v = static_cast<Type>(value->Number()); \ |
| 1201 if (DataViewSetValue( \ |
| 1202 isolate, holder, offset, is_little_endian, v)) { \ |
| 1203 return isolate->heap()->undefined_value(); \ |
| 1204 } else { \ |
| 1205 return isolate->Throw(*isolate->factory()->NewRangeError( \ |
| 1206 "invalid_data_view_accessor_offset", \ |
| 1207 HandleVector<Object>(NULL, 0))); \ |
| 1208 } \ |
| 1209 } |
| 1210 |
| 1211 DATA_VIEW_SETTER(Uint8, uint8_t) |
| 1212 DATA_VIEW_SETTER(Int8, int8_t) |
| 1213 DATA_VIEW_SETTER(Uint16, uint16_t) |
| 1214 DATA_VIEW_SETTER(Int16, int16_t) |
| 1215 DATA_VIEW_SETTER(Uint32, uint32_t) |
| 1216 DATA_VIEW_SETTER(Int32, int32_t) |
| 1217 DATA_VIEW_SETTER(Float32, float) |
| 1218 DATA_VIEW_SETTER(Float64, double) |
| 1219 |
| 1220 #undef DATA_VIEW_SETTER |
| 1221 |
| 1222 |
1006 RUNTIME_FUNCTION(MaybeObject*, Runtime_SetInitialize) { | 1223 RUNTIME_FUNCTION(MaybeObject*, Runtime_SetInitialize) { |
1007 HandleScope scope(isolate); | 1224 HandleScope scope(isolate); |
1008 ASSERT(args.length() == 1); | 1225 ASSERT(args.length() == 1); |
1009 CONVERT_ARG_HANDLE_CHECKED(JSSet, holder, 0); | 1226 CONVERT_ARG_HANDLE_CHECKED(JSSet, holder, 0); |
1010 Handle<ObjectHashSet> table = isolate->factory()->NewObjectHashSet(0); | 1227 Handle<ObjectHashSet> table = isolate->factory()->NewObjectHashSet(0); |
1011 holder->set_table(*table); | 1228 holder->set_table(*table); |
1012 return *holder; | 1229 return *holder; |
1013 } | 1230 } |
1014 | 1231 |
1015 | 1232 |
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13635 // Handle last resort GC and make sure to allow future allocations | 13852 // Handle last resort GC and make sure to allow future allocations |
13636 // to grow the heap without causing GCs (if possible). | 13853 // to grow the heap without causing GCs (if possible). |
13637 isolate->counters()->gc_last_resort_from_js()->Increment(); | 13854 isolate->counters()->gc_last_resort_from_js()->Increment(); |
13638 isolate->heap()->CollectAllGarbage(Heap::kNoGCFlags, | 13855 isolate->heap()->CollectAllGarbage(Heap::kNoGCFlags, |
13639 "Runtime::PerformGC"); | 13856 "Runtime::PerformGC"); |
13640 } | 13857 } |
13641 } | 13858 } |
13642 | 13859 |
13643 | 13860 |
13644 } } // namespace v8::internal | 13861 } } // namespace v8::internal |
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