| OLD | NEW |
| (Empty) | |
| 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file |
| 2 // for details. All rights reserved. Use of this source code is governed by a |
| 3 // BSD-style license that can be found in the LICENSE file. |
| 4 |
| 5 #include "vm/bootstrap_natives.h" |
| 6 |
| 7 #include "include/dart_api.h" |
| 8 |
| 9 #include "vm/bigint_operations.h" |
| 10 #include "vm/exceptions.h" |
| 11 #include "vm/native_entry.h" |
| 12 #include "vm/object.h" |
| 13 |
| 14 namespace dart { |
| 15 |
| 16 // TypedData. |
| 17 |
| 18 // Checks to see if offsetInBytes is in the range. |
| 19 static bool RangeCheck(intptr_t offsetInBytes, intptr_t lengthInBytes) { |
| 20 return ((offsetInBytes >= 0) && |
| 21 (lengthInBytes > 0) && |
| 22 (offsetInBytes < lengthInBytes)); |
| 23 } |
| 24 |
| 25 |
| 26 // Checks to see if a length will not result in an OOM error. |
| 27 static void LengthCheck(intptr_t len, intptr_t max) { |
| 28 ASSERT(len >= 0); |
| 29 if (len > max) { |
| 30 const String& error = String::Handle(String::NewFormatted( |
| 31 "insufficient memory to allocate a TypedData object of length (%"Pd")", |
| 32 len)); |
| 33 const Array& args = Array::Handle(Array::New(1)); |
| 34 args.SetAt(0, error); |
| 35 Exceptions::ThrowByType(Exceptions::kOutOfMemory, args); |
| 36 } |
| 37 } |
| 38 |
| 39 |
| 40 static void PeerFinalizer(Dart_Handle handle, void* peer) { |
| 41 Dart_DeletePersistentHandle(handle); |
| 42 OS::AlignedFree(peer); |
| 43 } |
| 44 |
| 45 |
| 46 DEFINE_NATIVE_ENTRY(TypedData_length, 1) { |
| 47 GET_NON_NULL_NATIVE_ARGUMENT(Instance, instance, arguments->NativeArgAt(0)); |
| 48 if (instance.IsTypedData()) { |
| 49 const TypedData& array = TypedData::Cast(instance); |
| 50 return Smi::New(array.Length()); |
| 51 } |
| 52 if (instance.IsExternalTypedData()) { |
| 53 const ExternalTypedData& array = ExternalTypedData::Cast(instance); |
| 54 return Smi::New(array.Length()); |
| 55 } |
| 56 const String& error = String::Handle(String::NewFormatted( |
| 57 "Expected a TypedData object but found %s", instance.ToCString())); |
| 58 const Array& args = Array::Handle(Array::New(1)); |
| 59 args.SetAt(0, error); |
| 60 Exceptions::ThrowByType(Exceptions::kArgument, args); |
| 61 return Integer::null(); |
| 62 } |
| 63 |
| 64 |
| 65 // We check the length parameter against a possible maximum length for the |
| 66 // array based on available physical addressable memory on the system. The |
| 67 // maximum possible length is a scaled value of kSmiMax which is set up based |
| 68 // on whether the underlying architecture is 32-bit or 64-bit. |
| 69 #define TYPED_DATA_NEW(name) \ |
| 70 DEFINE_NATIVE_ENTRY(TypedData_##name##_new, 1) { \ |
| 71 GET_NON_NULL_NATIVE_ARGUMENT(Smi, length, arguments->NativeArgAt(0)); \ |
| 72 intptr_t cid = kTypedData##name##Cid; \ |
| 73 intptr_t len = length.Value(); \ |
| 74 intptr_t max = (kSmiMax / TypedData::ElementSizeInBytes(cid)); \ |
| 75 LengthCheck(len, max); \ |
| 76 return TypedData::New(cid, len); \ |
| 77 } \ |
| 78 |
| 79 |
| 80 // We check the length parameter against a possible maximum length for the |
| 81 // array based on available physical addressable memory on the system. The |
| 82 // maximum possible length is a scaled value of kSmiMax which is set up based |
| 83 // on whether the underlying architecture is 32-bit or 64-bit. |
| 84 #define EXT_TYPED_DATA_NEW(name) \ |
| 85 DEFINE_NATIVE_ENTRY(ExternalTypedData_##name##_new, 1) { \ |
| 86 const int kAlignment = 16; \ |
| 87 GET_NON_NULL_NATIVE_ARGUMENT(Smi, length, arguments->NativeArgAt(0)); \ |
| 88 intptr_t cid = kExternalTypedData##name##Cid; \ |
| 89 intptr_t len = length.Value(); \ |
| 90 intptr_t max = (kSmiMax / ExternalTypedData::ElementSizeInBytes(cid)); \ |
| 91 LengthCheck(len, max); \ |
| 92 intptr_t len_bytes = len * ExternalTypedData::ElementSizeInBytes(cid); \ |
| 93 uint8_t* data = OS::AllocateAlignedArray<uint8_t>(len_bytes, kAlignment); \ |
| 94 const ExternalTypedData& obj = \ |
| 95 ExternalTypedData::Handle(ExternalTypedData::New(cid, data, len)); \ |
| 96 obj.AddFinalizer(data, PeerFinalizer); \ |
| 97 return obj.raw(); \ |
| 98 } \ |
| 99 |
| 100 |
| 101 #define TYPED_DATA_NEW_NATIVE(name) \ |
| 102 TYPED_DATA_NEW(name) \ |
| 103 EXT_TYPED_DATA_NEW(name) \ |
| 104 |
| 105 |
| 106 CLASS_LIST_TYPED_DATA(TYPED_DATA_NEW_NATIVE) |
| 107 |
| 108 |
| 109 #define TYPED_DATA_GETTER(getter, object) \ |
| 110 DEFINE_NATIVE_ENTRY(TypedData_##getter, 2) { \ |
| 111 GET_NON_NULL_NATIVE_ARGUMENT(Instance, instance, arguments->NativeArgAt(0)); \ |
| 112 GET_NON_NULL_NATIVE_ARGUMENT(Smi, index, arguments->NativeArgAt(1)); \ |
| 113 if (instance.IsTypedData()) { \ |
| 114 const TypedData& array = TypedData::Cast(instance); \ |
| 115 intptr_t offsetInBytes = index.Value() * array.ElementSizeInBytes(); \ |
| 116 ASSERT(RangeCheck(offsetInBytes, array.LengthInBytes())); \ |
| 117 return object::New(array.getter(offsetInBytes)); \ |
| 118 } \ |
| 119 if (instance.IsExternalTypedData()) { \ |
| 120 const ExternalTypedData& array = ExternalTypedData::Cast(instance); \ |
| 121 intptr_t offsetInBytes = index.Value() * array.ElementSizeInBytes(); \ |
| 122 ASSERT(RangeCheck(offsetInBytes, array.LengthInBytes())); \ |
| 123 return object::New(array.getter(offsetInBytes)); \ |
| 124 } \ |
| 125 const String& error = String::Handle(String::NewFormatted( \ |
| 126 "Expected a TypedData object but found %s", instance.ToCString())); \ |
| 127 const Array& args = Array::Handle(Array::New(1)); \ |
| 128 args.SetAt(0, error); \ |
| 129 Exceptions::ThrowByType(Exceptions::kArgument, args); \ |
| 130 return object::null(); \ |
| 131 } \ |
| 132 |
| 133 |
| 134 #define TYPED_DATA_SETTER(setter, object, get_object_value) \ |
| 135 DEFINE_NATIVE_ENTRY(TypedData_##setter, 3) { \ |
| 136 GET_NON_NULL_NATIVE_ARGUMENT(Instance, instance, arguments->NativeArgAt(0)); \ |
| 137 GET_NON_NULL_NATIVE_ARGUMENT(Smi, index, arguments->NativeArgAt(1)); \ |
| 138 GET_NON_NULL_NATIVE_ARGUMENT(object, value, arguments->NativeArgAt(2)); \ |
| 139 if (instance.IsTypedData()) { \ |
| 140 const TypedData& array = TypedData::Cast(instance); \ |
| 141 intptr_t offsetInBytes = index.Value() * array.ElementSizeInBytes(); \ |
| 142 ASSERT(RangeCheck(offsetInBytes, array.LengthInBytes())); \ |
| 143 array.setter(offsetInBytes, value.get_object_value()); \ |
| 144 } else if (instance.IsExternalTypedData()) { \ |
| 145 const ExternalTypedData& array = ExternalTypedData::Cast(instance); \ |
| 146 intptr_t offsetInBytes = index.Value() * array.ElementSizeInBytes(); \ |
| 147 ASSERT(RangeCheck(offsetInBytes, array.LengthInBytes())); \ |
| 148 array.setter(offsetInBytes, value.get_object_value()); \ |
| 149 } else { \ |
| 150 const String& error = String::Handle(String::NewFormatted( \ |
| 151 "Expected a TypedData object but found %s", instance.ToCString())); \ |
| 152 const Array& args = Array::Handle(Array::New(1)); \ |
| 153 args.SetAt(0, error); \ |
| 154 Exceptions::ThrowByType(Exceptions::kArgument, args); \ |
| 155 } \ |
| 156 return Object::null(); \ |
| 157 } |
| 158 |
| 159 |
| 160 #define TYPED_DATA_UINT64_GETTER(getter, object) \ |
| 161 DEFINE_NATIVE_ENTRY(TypedData_##getter, 2) { \ |
| 162 GET_NON_NULL_NATIVE_ARGUMENT(Instance, instance, arguments->NativeArgAt(0)); \ |
| 163 GET_NON_NULL_NATIVE_ARGUMENT(Smi, index, arguments->NativeArgAt(1)); \ |
| 164 uint64_t value = 0; \ |
| 165 if (instance.IsTypedData()) { \ |
| 166 const TypedData& array = TypedData::Cast(instance); \ |
| 167 intptr_t offsetInBytes = index.Value() * array.ElementSizeInBytes(); \ |
| 168 ASSERT(RangeCheck(offsetInBytes, array.LengthInBytes())); \ |
| 169 value = array.getter(offsetInBytes); \ |
| 170 } else if (instance.IsExternalTypedData()) { \ |
| 171 const ExternalTypedData& array = ExternalTypedData::Cast(instance); \ |
| 172 intptr_t offsetInBytes = index.Value() * array.ElementSizeInBytes(); \ |
| 173 ASSERT(RangeCheck(offsetInBytes, array.LengthInBytes())); \ |
| 174 value = array.getter(offsetInBytes); \ |
| 175 } else { \ |
| 176 const String& error = String::Handle(String::NewFormatted( \ |
| 177 "Expected a TypedData object but found %s", instance.ToCString())); \ |
| 178 const Array& args = Array::Handle(Array::New(1)); \ |
| 179 args.SetAt(0, error); \ |
| 180 Exceptions::ThrowByType(Exceptions::kArgument, args); \ |
| 181 } \ |
| 182 Integer& result = Integer::Handle(); \ |
| 183 if (value > static_cast<uint64_t>(Mint::kMaxValue)) { \ |
| 184 result = BigintOperations::NewFromUint64(value); \ |
| 185 } else if (value > static_cast<uint64_t>(Smi::kMaxValue)) { \ |
| 186 result = Mint::New(value); \ |
| 187 } else { \ |
| 188 result = Smi::New(value); \ |
| 189 } \ |
| 190 return result.raw(); \ |
| 191 } \ |
| 192 |
| 193 |
| 194 // TODO(asiva): Consider truncating the bigint value if it does not fit into |
| 195 // a uint64_t value (see ASSERT(BigintOperations::FitsIntoUint64(bigint))). |
| 196 #define TYPED_DATA_UINT64_SETTER(setter, object) \ |
| 197 DEFINE_NATIVE_ENTRY(TypedData_##setter, 3) { \ |
| 198 GET_NON_NULL_NATIVE_ARGUMENT(Instance, instance, arguments->NativeArgAt(0)); \ |
| 199 GET_NON_NULL_NATIVE_ARGUMENT(Smi, index, arguments->NativeArgAt(1)); \ |
| 200 GET_NON_NULL_NATIVE_ARGUMENT(object, value, arguments->NativeArgAt(2)); \ |
| 201 uint64_t object_value; \ |
| 202 if (value.IsBigint()) { \ |
| 203 const Bigint& bigint = Bigint::Cast(value); \ |
| 204 ASSERT(BigintOperations::FitsIntoUint64(bigint)); \ |
| 205 object_value = BigintOperations::AbsToUint64(bigint); \ |
| 206 } else { \ |
| 207 ASSERT(value.IsMint() || value.IsSmi()); \ |
| 208 object_value = value.AsInt64Value(); \ |
| 209 } \ |
| 210 if (instance.IsTypedData()) { \ |
| 211 const TypedData& array = TypedData::Cast(instance); \ |
| 212 intptr_t offsetInBytes = index.Value() * array.ElementSizeInBytes(); \ |
| 213 ASSERT(RangeCheck(offsetInBytes, array.LengthInBytes())); \ |
| 214 array.setter(offsetInBytes, object_value); \ |
| 215 } else if (instance.IsExternalTypedData()) { \ |
| 216 const ExternalTypedData& array = ExternalTypedData::Cast(instance); \ |
| 217 intptr_t offsetInBytes = index.Value() * array.ElementSizeInBytes(); \ |
| 218 ASSERT(RangeCheck(offsetInBytes, array.LengthInBytes())); \ |
| 219 array.setter(offsetInBytes, object_value); \ |
| 220 } else { \ |
| 221 const String& error = String::Handle(String::NewFormatted( \ |
| 222 "Expected a TypedData object but found %s", instance.ToCString())); \ |
| 223 const Array& args = Array::Handle(Array::New(1)); \ |
| 224 args.SetAt(0, error); \ |
| 225 Exceptions::ThrowByType(Exceptions::kArgument, args); \ |
| 226 } \ |
| 227 return Object::null(); \ |
| 228 } |
| 229 |
| 230 |
| 231 #define TYPED_DATA_NATIVES(name, getter, setter, object, get_object_value) \ |
| 232 TYPED_DATA_GETTER(getter, object) \ |
| 233 TYPED_DATA_SETTER(setter, object, get_object_value) \ |
| 234 |
| 235 |
| 236 #define TYPED_DATA_UINT64_NATIVES(name, getter, setter, object) \ |
| 237 TYPED_DATA_UINT64_GETTER(getter, object) \ |
| 238 TYPED_DATA_UINT64_SETTER(setter, object) \ |
| 239 |
| 240 |
| 241 TYPED_DATA_NATIVES(Int8Array, GetInt8, SetInt8, Smi, Value) |
| 242 TYPED_DATA_NATIVES(Uint8Array, GetUint8, SetUint8, Smi, Value) |
| 243 TYPED_DATA_NATIVES(Int16Array, GetInt16, SetInt16, Smi, Value) |
| 244 TYPED_DATA_NATIVES(Uint16Array, GetUint16, SetUint16, Smi, Value) |
| 245 TYPED_DATA_NATIVES(Int32Array, GetInt32, SetInt32, Integer, AsInt64Value) |
| 246 TYPED_DATA_NATIVES(Uint32Array, GetUint32, SetUint32, Integer, AsInt64Value) |
| 247 TYPED_DATA_NATIVES(Int64Array, GetInt64, SetInt64, Integer, AsInt64Value) |
| 248 TYPED_DATA_UINT64_NATIVES(Uint64Array, GetUint64, SetUint64, Integer) |
| 249 TYPED_DATA_NATIVES(Float32Array, GetFloat32, SetFloat32, Double, value) |
| 250 TYPED_DATA_NATIVES(Float64Array, GetFloat64, SetFloat64, Double, value) |
| 251 |
| 252 } // namespace dart |
| OLD | NEW |