// Copyright (c) 2011, the Dart project authors. Please see the AUTHORS file // for details. All rights reserved. Use of this source code is governed by a // BSD-style license that can be found in the LICENSE file. #include "vm/bootstrap_natives.h" #include "vm/exceptions.h" #include "vm/native_entry.h" #include "vm/object.h" namespace dart { DEFINE_NATIVE_ENTRY(StringBase_createFromCodePoints, 1) { const Array& a = Array::CheckedHandle(arguments->At(0)); // TODO(srdjan): Check that parameterized type is an int. Zone* zone = Isolate::Current()->current_zone(); intptr_t len = a.Length(); // Unbox the array and determine the maximum element width. bool is_one_byte_string = true; bool is_two_byte_string = true; uint32_t* temp = reinterpret_cast( zone->Allocate(len * sizeof(uint32_t))); // NOLINT Smi& element = Smi::Handle(); for (intptr_t i = 0; i < len; i++) { const Object& index_object = Object::Handle(a.At(i)); if (!index_object.IsSmi()) { GrowableArray args; args.Add(&index_object); Exceptions::ThrowByType(Exceptions::kIllegalArgument, args); } element ^= index_object.raw(); intptr_t value = element.Value(); if (value < 0) { GrowableArray args; Exceptions::ThrowByType(Exceptions::kIllegalArgument, args); } else if (value > 0xFFFF) { is_one_byte_string = false; is_two_byte_string = false; } else if (value > 0xFF) { is_one_byte_string = false; } temp[i] = value; } String& result = String::Handle(); if (is_one_byte_string) { result ^= OneByteString::New(temp, len, Heap::kNew); } else if (is_two_byte_string) { result ^= TwoByteString::New(temp, len, Heap::kNew); } else { result ^= FourByteString::New(temp, len, Heap::kNew); } arguments->SetReturn(result); } DEFINE_NATIVE_ENTRY(String_hashCode, 1) { const String& str = String::CheckedHandle(arguments->At(0)); intptr_t hash_val = 0; if (!str.IsNull()) { hash_val = str.Hash(); } ASSERT(Smi::IsValid(hash_val)); ASSERT(hash_val > 0); const Smi& hash_smi = Smi::Handle(Smi::New(hash_val)); arguments->SetReturn(hash_smi); } DEFINE_NATIVE_ENTRY(String_getLength, 1) { const String& str = String::CheckedHandle(arguments->At(0)); arguments->SetReturn(Smi::Handle(Smi::New(str.Length()))); } static int32_t StringValueAt(const String& str, const Integer& index) { if (index.IsSmi()) { Smi& smi = Smi::Handle(); smi ^= index.raw(); int32_t index = smi.Value(); if ((index < 0) || (index >= str.Length())) { GrowableArray arguments; arguments.Add(&smi); Exceptions::ThrowByType(Exceptions::kIndexOutOfRange, arguments); } return str.CharAt(index); } else { // TODO(srdjan): Bigint index not supported. UNIMPLEMENTED(); return 0; } } DEFINE_NATIVE_ENTRY(String_charAt, 2) { const String& str = String::CheckedHandle(arguments->At(0)); const Instance& index_instance = Instance::CheckedHandle(arguments->At(1)); if (!index_instance.IsInteger()) { GrowableArray args; args.Add(&index_instance); Exceptions::ThrowByType(Exceptions::kIllegalArgument, args); } Integer& index = Integer::Handle(); index ^= index_instance.raw(); uint32_t value = StringValueAt(str, index); ASSERT(value <= 0x10FFFF); arguments->SetReturn(String::Handle(String::NewSymbol(&value, 1))); } DEFINE_NATIVE_ENTRY(String_charCodeAt, 2) { const String& str = String::CheckedHandle(arguments->At(0)); const Integer& index_instance = Integer::CheckedHandle(arguments->At(1)); if (!index_instance.IsInteger()) { GrowableArray args; args.Add(&index_instance); Exceptions::ThrowByType(Exceptions::kIllegalArgument, args); } Integer& index = Integer::Handle(); index ^= index_instance.raw(); int32_t value = StringValueAt(str, index); ASSERT(value >= 0); ASSERT(value <= 0x10FFFF); arguments->SetReturn(Smi::Handle(Smi::New(value))); } DEFINE_NATIVE_ENTRY(String_concat, 2) { const String& a = String::CheckedHandle(arguments->At(0)); ASSERT(!a.IsNull()); // The receiver cannot be null. const Instance& b_instance = Instance::CheckedHandle(arguments->At(1)); if (!b_instance.IsString()) { GrowableArray args; Exceptions::ThrowByType(Exceptions::kIllegalArgument, args); } String& b = String::Handle(); b ^= b_instance.raw(); const String& result = String::Handle(String::Concat(a, b)); arguments->SetReturn(result); } DEFINE_NATIVE_ENTRY(Strings_concatAll, 1) { const Array& strings = Array::CheckedHandle(arguments->At(0)); ASSERT(!strings.IsNull()); const String& result = String::Handle(String::ConcatAll(strings)); arguments->SetReturn(result); } } // namespace dart