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Issue 11367044: Merged String subclasses into String. (Closed) Base URL: https://dart.googlecode.com/svn/branches/bleeding_edge/dart
Patch Set: Fixes from last code review Created 8 years, 1 month ago
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1 // Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file 1 // Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
2 // for details. All rights reserved. Use of this source code is governed by a 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. 3 // BSD-style license that can be found in the LICENSE file.
4 4
5 #include "vm/object.h" 5 #include "vm/object.h"
6 6
7 #include "include/dart_api.h" 7 #include "include/dart_api.h"
8 #include "platform/assert.h" 8 #include "platform/assert.h"
9 #include "vm/assembler.h" 9 #include "vm/assembler.h"
10 #include "vm/bigint_operations.h" 10 #include "vm/bigint_operations.h"
(...skipping 388 matching lines...) Expand 10 before | Expand all | Expand 10 after
399 cls = Class::New<UnwindError>(); 399 cls = Class::New<UnwindError>();
400 unwind_error_class_ = cls.raw(); 400 unwind_error_class_ = cls.raw();
401 401
402 ASSERT(class_class() != null_); 402 ASSERT(class_class() != null_);
403 403
404 // Pre-allocate the Array and OneByteString class in the vm isolate so that 404 // Pre-allocate the Array and OneByteString class in the vm isolate so that
405 // we can create a symbol table and populate it with some frequently used 405 // we can create a symbol table and populate it with some frequently used
406 // strings as symbols. 406 // strings as symbols.
407 cls = Class::New<Array>(); 407 cls = Class::New<Array>();
408 isolate->object_store()->set_array_class(cls); 408 isolate->object_store()->set_array_class(cls);
409 cls = Class::New<OneByteString>(); 409 cls = Class::NewStringClass(kOneByteStringCid);
410 isolate->object_store()->set_one_byte_string_class(cls); 410 isolate->object_store()->set_one_byte_string_class(cls);
411 411
412 // Allocate and initialize the empty_array instance. 412 // Allocate and initialize the empty_array instance.
413 { 413 {
414 uword address = heap->Allocate(Array::InstanceSize(0), Heap::kOld); 414 uword address = heap->Allocate(Array::InstanceSize(0), Heap::kOld);
415 empty_array_ = reinterpret_cast<RawArray*>(address + kHeapObjectTag); 415 empty_array_ = reinterpret_cast<RawArray*>(address + kHeapObjectTag);
416 InitializeObject(address, kArrayCid, Array::InstanceSize(0)); 416 InitializeObject(address, kArrayCid, Array::InstanceSize(0));
417 empty_array_->ptr()->length_ = Smi::New(0); 417 empty_array_->ptr()->length_ = Smi::New(0);
418 } 418 }
419 } 419 }
(...skipping 118 matching lines...) Expand 10 before | Expand all | Expand 10 after
538 object_store->set_canonical_type_arguments(array); 538 object_store->set_canonical_type_arguments(array);
539 539
540 // Setup type class early in the process. 540 // Setup type class early in the process.
541 cls = Class::New<Type>(); 541 cls = Class::New<Type>();
542 object_store->set_type_class(cls); 542 object_store->set_type_class(cls);
543 543
544 cls = Class::New<TypeParameter>(); 544 cls = Class::New<TypeParameter>();
545 object_store->set_type_parameter_class(cls); 545 object_store->set_type_parameter_class(cls);
546 546
547 // Pre-allocate the OneByteString class needed by the symbol table. 547 // Pre-allocate the OneByteString class needed by the symbol table.
548 cls = Class::New<OneByteString>(); 548 cls = Class::NewStringClass(kOneByteStringCid);
549 object_store->set_one_byte_string_class(cls); 549 object_store->set_one_byte_string_class(cls);
550 550
551 // Setup the symbol table for the symbols created in the isolate. 551 // Setup the symbol table for the symbols created in the isolate.
552 Symbols::SetupSymbolTable(isolate); 552 Symbols::SetupSymbolTable(isolate);
553 553
554 // Set up the libraries array before initializing the core library. 554 // Set up the libraries array before initializing the core library.
555 const GrowableObjectArray& libraries = 555 const GrowableObjectArray& libraries =
556 GrowableObjectArray::Handle(GrowableObjectArray::New(Heap::kOld)); 556 GrowableObjectArray::Handle(GrowableObjectArray::New(Heap::kOld));
557 object_store->set_libraries(libraries); 557 object_store->set_libraries(libraries);
558 558
(...skipping 40 matching lines...) Expand 10 before | Expand all | Expand 10 after
599 ASSERT(object_store->immutable_array_class() != object_store->array_class()); 599 ASSERT(object_store->immutable_array_class() != object_store->array_class());
600 name = Symbols::ImmutableArray(); 600 name = Symbols::ImmutableArray();
601 RegisterPrivateClass(cls, name, core_lib); 601 RegisterPrivateClass(cls, name, core_lib);
602 pending_classes.Add(cls, Heap::kOld); 602 pending_classes.Add(cls, Heap::kOld);
603 603
604 cls = object_store->one_byte_string_class(); // Was allocated above. 604 cls = object_store->one_byte_string_class(); // Was allocated above.
605 name = Symbols::OneByteString(); 605 name = Symbols::OneByteString();
606 RegisterPrivateClass(cls, name, core_lib); 606 RegisterPrivateClass(cls, name, core_lib);
607 pending_classes.Add(cls, Heap::kOld); 607 pending_classes.Add(cls, Heap::kOld);
608 608
609 cls = Class::New<TwoByteString>(); 609 cls = Class::NewStringClass(kTwoByteStringCid);
610 object_store->set_two_byte_string_class(cls); 610 object_store->set_two_byte_string_class(cls);
611 name = Symbols::TwoByteString(); 611 name = Symbols::TwoByteString();
612 RegisterPrivateClass(cls, name, core_lib); 612 RegisterPrivateClass(cls, name, core_lib);
613 pending_classes.Add(cls, Heap::kOld); 613 pending_classes.Add(cls, Heap::kOld);
614 614
615 cls = Class::New<ExternalOneByteString>(); 615 cls = Class::NewStringClass(kExternalOneByteStringCid);
616 object_store->set_external_one_byte_string_class(cls); 616 object_store->set_external_one_byte_string_class(cls);
617 name = Symbols::ExternalOneByteString(); 617 name = Symbols::ExternalOneByteString();
618 RegisterPrivateClass(cls, name, core_lib); 618 RegisterPrivateClass(cls, name, core_lib);
619 pending_classes.Add(cls, Heap::kOld); 619 pending_classes.Add(cls, Heap::kOld);
620 620
621 cls = Class::New<ExternalTwoByteString>(); 621 cls = Class::NewStringClass(kExternalTwoByteStringCid);
622 object_store->set_external_two_byte_string_class(cls); 622 object_store->set_external_two_byte_string_class(cls);
623 name = Symbols::ExternalTwoByteString(); 623 name = Symbols::ExternalTwoByteString();
624 RegisterPrivateClass(cls, name, core_lib); 624 RegisterPrivateClass(cls, name, core_lib);
625 pending_classes.Add(cls, Heap::kOld); 625 pending_classes.Add(cls, Heap::kOld);
626 626
627 cls = Class::New<Stacktrace>(); 627 cls = Class::New<Stacktrace>();
628 object_store->set_stacktrace_class(cls); 628 object_store->set_stacktrace_class(cls);
629 name = Symbols::Stacktrace(); 629 name = Symbols::Stacktrace();
630 RegisterClass(cls, name, core_impl_lib); 630 RegisterClass(cls, name, core_impl_lib);
631 pending_classes.Add(cls, Heap::kOld); 631 pending_classes.Add(cls, Heap::kOld);
(...skipping 446 matching lines...) Expand 10 before | Expand all | Expand 10 after
1078 1078
1079 cls = Class::New<Mint>(); 1079 cls = Class::New<Mint>();
1080 object_store->set_mint_class(cls); 1080 object_store->set_mint_class(cls);
1081 1081
1082 cls = Class::New<Double>(); 1082 cls = Class::New<Double>();
1083 object_store->set_double_class(cls); 1083 object_store->set_double_class(cls);
1084 1084
1085 cls = Class::New<Bigint>(); 1085 cls = Class::New<Bigint>();
1086 object_store->set_bigint_class(cls); 1086 object_store->set_bigint_class(cls);
1087 1087
1088 cls = Class::New<OneByteString>(); 1088 cls = Class::NewStringClass(kOneByteStringCid);
1089 object_store->set_one_byte_string_class(cls); 1089 object_store->set_one_byte_string_class(cls);
1090 1090
1091 cls = Class::New<TwoByteString>(); 1091 cls = Class::NewStringClass(kTwoByteStringCid);
1092 object_store->set_two_byte_string_class(cls); 1092 object_store->set_two_byte_string_class(cls);
1093 1093
1094 cls = Class::New<ExternalOneByteString>(); 1094 cls = Class::NewStringClass(kExternalOneByteStringCid);
1095 object_store->set_external_one_byte_string_class(cls); 1095 object_store->set_external_one_byte_string_class(cls);
1096 1096
1097 cls = Class::New<ExternalTwoByteString>(); 1097 cls = Class::NewStringClass(kExternalTwoByteStringCid);
1098 object_store->set_external_two_byte_string_class(cls); 1098 object_store->set_external_two_byte_string_class(cls);
1099 1099
1100 cls = Class::New<Bool>(); 1100 cls = Class::New<Bool>();
1101 object_store->set_bool_class(cls); 1101 object_store->set_bool_class(cls);
1102 1102
1103 cls = Class::New<Stacktrace>(); 1103 cls = Class::New<Stacktrace>();
1104 object_store->set_stacktrace_class(cls); 1104 object_store->set_stacktrace_class(cls);
1105 1105
1106 cls = Class::New<JSRegExp>(); 1106 cls = Class::New<JSRegExp>();
1107 object_store->set_jsregexp_class(cls); 1107 object_store->set_jsregexp_class(cls);
(...skipping 763 matching lines...) Expand 10 before | Expand all | Expand 10 after
1871 cls.set_num_native_fields(field_count); 1871 cls.set_num_native_fields(field_count);
1872 cls.set_is_finalized(); 1872 cls.set_is_finalized();
1873 library.AddClass(cls); 1873 library.AddClass(cls);
1874 return cls.raw(); 1874 return cls.raw();
1875 } else { 1875 } else {
1876 return Class::null(); 1876 return Class::null();
1877 } 1877 }
1878 } 1878 }
1879 1879
1880 1880
1881 RawClass* Class::NewStringClass(intptr_t class_id) {
1882 intptr_t instance_size;
1883 if (class_id == kOneByteStringCid) {
1884 instance_size = OneByteString::InstanceSize();
1885 } else if (class_id == kTwoByteStringCid) {
1886 instance_size = TwoByteString::InstanceSize();
1887 } else if (class_id == kExternalOneByteStringCid) {
1888 instance_size = ExternalOneByteString::InstanceSize();
1889 } else {
1890 ASSERT(class_id == kExternalTwoByteStringCid);
1891 instance_size = ExternalTwoByteString::InstanceSize();
1892 }
1893 Class& result = Class::Handle(New<String>(class_id));
1894 result.set_instance_size(instance_size);
1895 result.set_next_field_offset(instance_size);
1896 result.set_is_prefinalized();
1897 return result.raw();
1898 }
1899
1900
1881 void Class::set_name(const String& value) const { 1901 void Class::set_name(const String& value) const {
1882 ASSERT(value.IsSymbol()); 1902 ASSERT(value.IsSymbol());
1883 StorePointer(&raw_ptr()->name_, value.raw()); 1903 StorePointer(&raw_ptr()->name_, value.raw());
1884 } 1904 }
1885 1905
1886 1906
1887 void Class::set_script(const Script& value) const { 1907 void Class::set_script(const Script& value) const {
1888 StorePointer(&raw_ptr()->script_, value.raw()); 1908 StorePointer(&raw_ptr()->script_, value.raw());
1889 } 1909 }
1890 1910
(...skipping 293 matching lines...) Expand 10 before | Expand all | Expand 10 after
2184 return false; 2204 return false;
2185 } 2205 }
2186 } 2206 }
2187 return true; 2207 return true;
2188 } 2208 }
2189 2209
2190 2210
2191 RawFunction* Class::LookupFunction(const String& name) const { 2211 RawFunction* Class::LookupFunction(const String& name) const {
2192 Isolate* isolate = Isolate::Current(); 2212 Isolate* isolate = Isolate::Current();
2193 ASSERT(name.IsOneByteString()); 2213 ASSERT(name.IsOneByteString());
2194 const OneByteString& lookup_name = OneByteString::Cast(name);
2195 Array& funcs = Array::Handle(isolate, functions()); 2214 Array& funcs = Array::Handle(isolate, functions());
2196 if (funcs.IsNull()) { 2215 if (funcs.IsNull()) {
2197 // This can occur, e.g., for Null classes. 2216 // This can occur, e.g., for Null classes.
2198 return Function::null(); 2217 return Function::null();
2199 } 2218 }
2200 Function& function = Function::Handle(isolate, Function::null()); 2219 Function& function = Function::Handle(isolate, Function::null());
2201 OneByteString& function_name = 2220 String& function_name = String::Handle(isolate, String::null());
2202 OneByteString::Handle(isolate, OneByteString::null());
2203 intptr_t len = funcs.Length(); 2221 intptr_t len = funcs.Length();
2204 for (intptr_t i = 0; i < len; i++) { 2222 for (intptr_t i = 0; i < len; i++) {
2205 function ^= funcs.At(i); 2223 function ^= funcs.At(i);
2206 function_name ^= function.name(); 2224 function_name ^= function.name();
2207 if (function_name.EqualsIgnoringPrivateKey(lookup_name)) { 2225 if (OneByteString::EqualsIgnoringPrivateKey(function_name, name)) {
2208 return function.raw(); 2226 return function.raw();
2209 } 2227 }
2210 } 2228 }
2211 2229
2212 // No function found. 2230 // No function found.
2213 return Function::null(); 2231 return Function::null();
2214 } 2232 }
2215 2233
2216 2234
2217 RawFunction* Class::LookupGetterFunction(const String& name) const { 2235 RawFunction* Class::LookupGetterFunction(const String& name) const {
(...skipping 75 matching lines...) Expand 10 before | Expand all | Expand 10 after
2293 return field.raw(); 2311 return field.raw();
2294 } 2312 }
2295 // No field found. 2313 // No field found.
2296 return Field::null(); 2314 return Field::null();
2297 } 2315 }
2298 2316
2299 2317
2300 RawField* Class::LookupField(const String& name) const { 2318 RawField* Class::LookupField(const String& name) const {
2301 Isolate* isolate = Isolate::Current(); 2319 Isolate* isolate = Isolate::Current();
2302 ASSERT(name.IsOneByteString()); 2320 ASSERT(name.IsOneByteString());
2303 const OneByteString& lookup_name = OneByteString::Cast(name);
2304 const Array& flds = Array::Handle(isolate, fields()); 2321 const Array& flds = Array::Handle(isolate, fields());
2305 Field& field = Field::Handle(isolate, Field::null()); 2322 Field& field = Field::Handle(isolate, Field::null());
2306 OneByteString& field_name = 2323 String& field_name = String::Handle(isolate, String::null());
2307 OneByteString::Handle(isolate, OneByteString::null());
2308 intptr_t len = flds.Length(); 2324 intptr_t len = flds.Length();
2309 for (intptr_t i = 0; i < len; i++) { 2325 for (intptr_t i = 0; i < len; i++) {
2310 field ^= flds.At(i); 2326 field ^= flds.At(i);
2311 field_name ^= field.name(); 2327 field_name ^= field.name();
2312 if (field_name.EqualsIgnoringPrivateKey(lookup_name)) { 2328 if (OneByteString::EqualsIgnoringPrivateKey(field_name, name)) {
2313 return field.raw(); 2329 return field.raw();
2314 } 2330 }
2315 } 2331 }
2316 // No field found. 2332 // No field found.
2317 return Field::null(); 2333 return Field::null();
2318 } 2334 }
2319 2335
2320 2336
2321 RawLibraryPrefix* Class::LookupLibraryPrefix(const String& name) const { 2337 RawLibraryPrefix* Class::LookupLibraryPrefix(const String& name) const {
2322 Isolate* isolate = Isolate::Current(); 2338 Isolate* isolate = Isolate::Current();
(...skipping 6682 matching lines...) Expand 10 before | Expand all | Expand 10 after
9005 // Integer is an interface. No instances of Integer should exist. 9021 // Integer is an interface. No instances of Integer should exist.
9006 UNREACHABLE(); 9022 UNREACHABLE();
9007 return "Integer"; 9023 return "Integer";
9008 } 9024 }
9009 9025
9010 9026
9011 RawInteger* Integer::New(const String& str, Heap::Space space) { 9027 RawInteger* Integer::New(const String& str, Heap::Space space) {
9012 // We are not supposed to have integers represented as two byte or 9028 // We are not supposed to have integers represented as two byte or
9013 // four byte strings. 9029 // four byte strings.
9014 ASSERT(str.IsOneByteString()); 9030 ASSERT(str.IsOneByteString());
9015 const OneByteString& onestr = OneByteString::Cast(str);
9016 int64_t value; 9031 int64_t value;
9017 if (!OS::StringToInt64(onestr.ToCString(), &value)) { 9032 if (!OS::StringToInt64(str.ToCString(), &value)) {
9018 const Bigint& big = Bigint::Handle(Bigint::New(onestr, space)); 9033 const Bigint& big = Bigint::Handle(Bigint::New(str, space));
9019 ASSERT(!BigintOperations::FitsIntoSmi(big)); 9034 ASSERT(!BigintOperations::FitsIntoSmi(big));
9020 ASSERT(!BigintOperations::FitsIntoMint(big)); 9035 ASSERT(!BigintOperations::FitsIntoMint(big));
9021 return big.raw(); 9036 return big.raw();
9022 } 9037 }
9023 return Integer::New(value, space); 9038 return Integer::New(value, space);
9024 } 9039 }
9025 9040
9026 9041
9027 RawInteger* Integer::New(int64_t value, Heap::Space space) { 9042 RawInteger* Integer::New(int64_t value, Heap::Space space) {
9028 if ((value <= Smi::kMaxValue) && (value >= Smi::kMinValue)) { 9043 if ((value <= Smi::kMaxValue) && (value >= Smi::kMinValue)) {
(...skipping 744 matching lines...) Expand 10 before | Expand all | Expand 10 after
9773 return HashImpl(characters, len); 9788 return HashImpl(characters, len);
9774 } 9789 }
9775 9790
9776 9791
9777 intptr_t String::Hash(const uint32_t* characters, intptr_t len) { 9792 intptr_t String::Hash(const uint32_t* characters, intptr_t len) {
9778 return HashImpl(characters, len); 9793 return HashImpl(characters, len);
9779 } 9794 }
9780 9795
9781 9796
9782 int32_t String::CharAt(intptr_t index) const { 9797 int32_t String::CharAt(intptr_t index) const {
9783 // String is an abstract class. 9798 intptr_t class_id = raw()->GetClassId();
9784 UNREACHABLE(); 9799 ASSERT(RawObject::IsStringClassId(class_id));
9785 return 0; 9800 NoGCScope no_gc;
9801 if (class_id == kOneByteStringCid) {
9802 return *OneByteString::CharAddr(*this, index);
9803 }
9804 if (class_id == kTwoByteStringCid) {
9805 return *TwoByteString::CharAddr(*this, index);
9806 }
9807 if (class_id == kExternalOneByteStringCid) {
9808 return *ExternalOneByteString::CharAddr(*this, index);
9809 }
9810 ASSERT(class_id == kExternalTwoByteStringCid);
9811 return *ExternalTwoByteString::CharAddr(*this, index);
9786 } 9812 }
9787 9813
9788 9814
9789 intptr_t String::CharSize() const { 9815 intptr_t String::CharSize() const {
9790 // String is an abstract class. 9816 intptr_t class_id = raw()->GetClassId();
9791 UNREACHABLE(); 9817 if (class_id == kOneByteStringCid || class_id == kExternalOneByteStringCid) {
9792 return 0; 9818 return kOneByteChar;
9819 }
9820 ASSERT(class_id == kTwoByteStringCid ||
9821 class_id == kExternalTwoByteStringCid);
9822 return kTwoByteChar;
9793 } 9823 }
9794 9824
9795 9825
9826 void* String::GetPeer() const {
9827 intptr_t class_id = raw()->GetClassId();
9828 if (class_id == kExternalOneByteStringCid) {
9829 return ExternalOneByteString::GetPeer(*this);
9830 }
9831 ASSERT(class_id == kExternalTwoByteStringCid);
9832 return ExternalTwoByteString::GetPeer(*this);
9833 }
9834
9835
9796 bool String::Equals(const Instance& other) const { 9836 bool String::Equals(const Instance& other) const {
9797 if (this->raw() == other.raw()) { 9837 if (this->raw() == other.raw()) {
9798 // Both handles point to the same raw instance. 9838 // Both handles point to the same raw instance.
9799 return true; 9839 return true;
9800 } 9840 }
9801 9841
9802 if (!other.IsString() || other.IsNull()) { 9842 if (!other.IsString() || other.IsNull()) {
9803 return false; 9843 return false;
9804 } 9844 }
9805 9845
(...skipping 122 matching lines...) Expand 10 before | Expand all | Expand 10 after
9928 return String::New(utf8_array, array_len, space); 9968 return String::New(utf8_array, array_len, space);
9929 } 9969 }
9930 9970
9931 9971
9932 RawString* String::New(const uint8_t* utf8_array, 9972 RawString* String::New(const uint8_t* utf8_array,
9933 intptr_t array_len, 9973 intptr_t array_len,
9934 Heap::Space space) { 9974 Heap::Space space) {
9935 Utf8::Type type; 9975 Utf8::Type type;
9936 intptr_t len = Utf8::CodePointCount(utf8_array, array_len, &type); 9976 intptr_t len = Utf8::CodePointCount(utf8_array, array_len, &type);
9937 if (type == Utf8::kAscii) { 9977 if (type == Utf8::kAscii) {
9938 const OneByteString& strobj 9978 const String& strobj = String::Handle(OneByteString::New(len, space));
9939 = OneByteString::Handle(OneByteString::New(len, space));
9940 if (len > 0) { 9979 if (len > 0) {
9941 NoGCScope no_gc; 9980 NoGCScope no_gc;
9942 Utf8::DecodeToAscii(utf8_array, array_len, strobj.CharAddr(0), len); 9981 Utf8::DecodeToAscii(utf8_array, array_len,
9982 OneByteString::CharAddr(strobj, 0), len);
9943 } 9983 }
9944 return strobj.raw(); 9984 return strobj.raw();
9945 } 9985 }
9946 ASSERT((type == Utf8::kBMP) || (type == Utf8::kSMP)); 9986 ASSERT((type == Utf8::kBMP) || (type == Utf8::kSMP));
9947 const TwoByteString& strobj = 9987 const String& strobj = String::Handle(TwoByteString::New(len, space));
9948 TwoByteString::Handle(TwoByteString::New(len, space));
9949 NoGCScope no_gc; 9988 NoGCScope no_gc;
9950 Utf8::DecodeToUTF16(utf8_array, array_len, strobj.CharAddr(0), len); 9989 Utf8::DecodeToUTF16(utf8_array, array_len,
9990 TwoByteString::CharAddr(strobj, 0), len);
9951 return strobj.raw(); 9991 return strobj.raw();
9952 } 9992 }
9953 9993
9954 9994
9955 RawString* String::New(const uint16_t* utf16_array, 9995 RawString* String::New(const uint16_t* utf16_array,
9956 intptr_t array_len, 9996 intptr_t array_len,
9957 Heap::Space space) { 9997 Heap::Space space) {
9958 bool is_one_byte_string = true; 9998 bool is_one_byte_string = true;
9959 for (intptr_t i = 0; i < array_len; ++i) { 9999 for (intptr_t i = 0; i < array_len; ++i) {
9960 if (utf16_array[i] > 0x7F) { 10000 if (utf16_array[i] > 0x7F) {
(...skipping 65 matching lines...) Expand 10 before | Expand all | Expand 10 after
10026 } 10066 }
10027 10067
10028 10068
10029 void String::Copy(const String& dst, intptr_t dst_offset, 10069 void String::Copy(const String& dst, intptr_t dst_offset,
10030 const uint8_t* characters, 10070 const uint8_t* characters,
10031 intptr_t len) { 10071 intptr_t len) {
10032 ASSERT(dst_offset >= 0); 10072 ASSERT(dst_offset >= 0);
10033 ASSERT(len >= 0); 10073 ASSERT(len >= 0);
10034 ASSERT(len <= (dst.Length() - dst_offset)); 10074 ASSERT(len <= (dst.Length() - dst_offset));
10035 if (dst.IsOneByteString()) { 10075 if (dst.IsOneByteString()) {
10036 const OneByteString& onestr = OneByteString::Cast(dst);
10037 NoGCScope no_gc; 10076 NoGCScope no_gc;
10038 if (len > 0) { 10077 if (len > 0) {
10039 memmove(onestr.CharAddr(dst_offset), characters, len); 10078 memmove(OneByteString::CharAddr(dst, dst_offset),
10079 characters,
10080 len);
10040 } 10081 }
10041 } else if (dst.IsTwoByteString()) { 10082 } else if (dst.IsTwoByteString()) {
10042 const TwoByteString& twostr = TwoByteString::Cast(dst);
10043 NoGCScope no_gc;
10044 for (intptr_t i = 0; i < len; ++i) { 10083 for (intptr_t i = 0; i < len; ++i) {
10045 *twostr.CharAddr(i + dst_offset) = characters[i]; 10084 *TwoByteString::CharAddr(dst, i + dst_offset) = characters[i];
10046 } 10085 }
10047 } 10086 }
10048 } 10087 }
10049 10088
10050 10089
10051 void String::Copy(const String& dst, intptr_t dst_offset, 10090 void String::Copy(const String& dst, intptr_t dst_offset,
10052 const uint16_t* utf16_array, 10091 const uint16_t* utf16_array,
10053 intptr_t array_len) { 10092 intptr_t array_len) {
10054 ASSERT(dst_offset >= 0); 10093 ASSERT(dst_offset >= 0);
10055 ASSERT(array_len >= 0); 10094 ASSERT(array_len >= 0);
10056 ASSERT(array_len <= (dst.Length() - dst_offset)); 10095 ASSERT(array_len <= (dst.Length() - dst_offset));
10057 if (dst.IsOneByteString()) { 10096 if (dst.IsOneByteString()) {
10058 const OneByteString& onestr = OneByteString::Cast(dst);
10059 NoGCScope no_gc; 10097 NoGCScope no_gc;
10060 for (intptr_t i = 0; i < array_len; ++i) { 10098 for (intptr_t i = 0; i < array_len; ++i) {
10061 ASSERT(utf16_array[i] <= 0x7F); 10099 ASSERT(utf16_array[i] <= 0x7F);
10062 *onestr.CharAddr(i + dst_offset) = utf16_array[i]; 10100 *OneByteString::CharAddr(dst, i + dst_offset) = utf16_array[i];
10063 } 10101 }
10064 } else { 10102 } else {
10065 ASSERT(dst.IsTwoByteString()); 10103 ASSERT(dst.IsTwoByteString());
10066 const TwoByteString& twostr = TwoByteString::Cast(dst);
10067 NoGCScope no_gc; 10104 NoGCScope no_gc;
10068 if (array_len > 0) { 10105 if (array_len > 0) {
10069 memmove(twostr.CharAddr(dst_offset), utf16_array, (array_len * 2)); 10106 memmove(TwoByteString::CharAddr(dst, dst_offset),
10107 utf16_array,
10108 array_len * 2);
10070 } 10109 }
10071 } 10110 }
10072 } 10111 }
10073 10112
10074 10113
10075 void String::Copy(const String& dst, intptr_t dst_offset, 10114 void String::Copy(const String& dst, intptr_t dst_offset,
10076 const String& src, intptr_t src_offset, 10115 const String& src, intptr_t src_offset,
10077 intptr_t len) { 10116 intptr_t len) {
10078 ASSERT(dst_offset >= 0); 10117 ASSERT(dst_offset >= 0);
10079 ASSERT(src_offset >= 0); 10118 ASSERT(src_offset >= 0);
10080 ASSERT(len >= 0); 10119 ASSERT(len >= 0);
10081 ASSERT(len <= (dst.Length() - dst_offset)); 10120 ASSERT(len <= (dst.Length() - dst_offset));
10082 ASSERT(len <= (src.Length() - src_offset)); 10121 ASSERT(len <= (src.Length() - src_offset));
10083 if (len > 0) { 10122 if (len > 0) {
10084 intptr_t char_size = src.CharSize(); 10123 intptr_t char_size = src.CharSize();
10085 if (char_size == kOneByteChar) { 10124 if (char_size == kOneByteChar) {
10086 if (src.IsOneByteString()) { 10125 if (src.IsOneByteString()) {
10087 const OneByteString& onestr = OneByteString::Cast(src);
10088 NoGCScope no_gc; 10126 NoGCScope no_gc;
10089 String::Copy(dst, dst_offset, onestr.CharAddr(0) + src_offset, len); 10127 String::Copy(dst,
10128 dst_offset,
10129 OneByteString::CharAddr(src, src_offset),
10130 len);
10090 } else { 10131 } else {
10091 ASSERT(src.IsExternalOneByteString()); 10132 ASSERT(src.IsExternalOneByteString());
10092 const ExternalOneByteString& onestr = ExternalOneByteString::Cast(src);
10093 NoGCScope no_gc; 10133 NoGCScope no_gc;
10094 String::Copy(dst, dst_offset, onestr.CharAddr(0) + src_offset, len); 10134 String::Copy(dst,
10135 dst_offset,
10136 ExternalOneByteString::CharAddr(src, src_offset),
10137 len);
10095 } 10138 }
10096 } else { 10139 } else {
10097 ASSERT(char_size == kTwoByteChar); 10140 ASSERT(char_size == kTwoByteChar);
10098 if (src.IsTwoByteString()) { 10141 if (src.IsTwoByteString()) {
10099 const TwoByteString& twostr = TwoByteString::Cast(src);
10100 NoGCScope no_gc; 10142 NoGCScope no_gc;
10101 String::Copy(dst, dst_offset, twostr.CharAddr(0) + src_offset, len); 10143 String::Copy(dst,
10144 dst_offset,
10145 TwoByteString::CharAddr(src, src_offset),
10146 len);
10102 } else { 10147 } else {
10103 ASSERT(src.IsExternalTwoByteString()); 10148 ASSERT(src.IsExternalTwoByteString());
10104 const ExternalTwoByteString& twostr = ExternalTwoByteString::Cast(src);
10105 NoGCScope no_gc; 10149 NoGCScope no_gc;
10106 String::Copy(dst, dst_offset, twostr.CharAddr(0) + src_offset, len); 10150 String::Copy(dst,
10151 dst_offset,
10152 ExternalTwoByteString::CharAddr(src, src_offset),
10153 len);
10107 } 10154 }
10108 } 10155 }
10109 } 10156 }
10110 } 10157 }
10111 10158
10112 10159
10113 RawString* String::EscapeSpecialCharacters(const String& str, bool raw_str) { 10160 RawString* String::EscapeSpecialCharacters(const String& str, bool raw_str) {
10114 if (str.IsOneByteString()) { 10161 if (str.IsOneByteString()) {
10115 const OneByteString& onestr = OneByteString::Cast(str); 10162 return OneByteString::EscapeSpecialCharacters(str, raw_str);
10116 return onestr.EscapeSpecialCharacters(raw_str);
10117 } 10163 }
10118 ASSERT(str.IsTwoByteString()); 10164 ASSERT(str.IsTwoByteString());
10119 const TwoByteString& twostr = TwoByteString::Cast(str); 10165 return TwoByteString::EscapeSpecialCharacters(str, raw_str);
10120 return twostr.EscapeSpecialCharacters(raw_str);
10121 } 10166 }
10122 10167
10123 10168
10124 RawString* String::NewFormatted(const char* format, ...) { 10169 RawString* String::NewFormatted(const char* format, ...) {
10125 va_list args; 10170 va_list args;
10126 va_start(args, format); 10171 va_start(args, format);
10127 RawString* result = NewFormattedV(format, args); 10172 RawString* result = NewFormattedV(format, args);
10128 NoGCScope no_gc; 10173 NoGCScope no_gc;
10129 va_end(args); 10174 va_end(args);
10130 return result; 10175 return result;
(...skipping 96 matching lines...) Expand 10 before | Expand all | Expand 10 after
10227 Zone* zone = Isolate::Current()->current_zone(); 10272 Zone* zone = Isolate::Current()->current_zone();
10228 uint8_t* result = zone->Alloc<uint8_t>(len + 1); 10273 uint8_t* result = zone->Alloc<uint8_t>(len + 1);
10229 ToUTF8(result, len); 10274 ToUTF8(result, len);
10230 result[len] = 0; 10275 result[len] = 0;
10231 return reinterpret_cast<const char*>(result); 10276 return reinterpret_cast<const char*>(result);
10232 } 10277 }
10233 10278
10234 10279
10235 void String::ToUTF8(uint8_t* utf8_array, intptr_t array_len) const { 10280 void String::ToUTF8(uint8_t* utf8_array, intptr_t array_len) const {
10236 if (CharSize() == kOneByteChar) { 10281 if (CharSize() == kOneByteChar) {
10237 const OneByteString& obj = OneByteString::Cast(*this); 10282 const String& obj = *this;
10238 ASSERT(array_len >= obj.Length()); 10283 ASSERT(array_len >= obj.Length());
10239 if (obj.Length() > 0) { 10284 if (obj.Length() > 0) {
10240 memmove(utf8_array, obj.CharAddr(0), obj.Length()); 10285 memmove(utf8_array, OneByteString::CharAddr(obj, 0), obj.Length());
10241 } 10286 }
10242 } else { 10287 } else {
10243 ASSERT(array_len >= Utf8::Length(*this)); 10288 ASSERT(array_len >= Utf8::Length(*this));
10244 Utf8::Encode(*this, reinterpret_cast<char*>(utf8_array), array_len); 10289 Utf8::Encode(*this, reinterpret_cast<char*>(utf8_array), array_len);
10245 } 10290 }
10246 } 10291 }
10247 10292
10248 10293
10249 RawString* String::Transform(int32_t (*mapping)(int32_t ch), 10294 RawString* String::Transform(int32_t (*mapping)(int32_t ch),
10250 const String& str, 10295 const String& str,
(...skipping 27 matching lines...) Expand all
10278 return Transform(CaseMapping::ToUpper, str, space); 10323 return Transform(CaseMapping::ToUpper, str, space);
10279 } 10324 }
10280 10325
10281 10326
10282 RawString* String::ToLowerCase(const String& str, Heap::Space space) { 10327 RawString* String::ToLowerCase(const String& str, Heap::Space space) {
10283 // TODO(cshapiro): create a fast-path for OneByteString instances. 10328 // TODO(cshapiro): create a fast-path for OneByteString instances.
10284 return Transform(CaseMapping::ToLower, str, space); 10329 return Transform(CaseMapping::ToLower, str, space);
10285 } 10330 }
10286 10331
10287 10332
10288 RawOneByteString* OneByteString::EscapeSpecialCharacters(bool raw_str) const { 10333 RawOneByteString* OneByteString::EscapeSpecialCharacters(const String& str,
10289 intptr_t len = Length(); 10334 bool raw_str) {
10335 intptr_t len = str.Length();
10290 if (len > 0) { 10336 if (len > 0) {
10291 intptr_t num_escapes = 0; 10337 intptr_t num_escapes = 0;
10292 intptr_t index = 0; 10338 intptr_t index = 0;
10293 for (intptr_t i = 0; i < len; i++) { 10339 for (intptr_t i = 0; i < len; i++) {
10294 if (IsSpecialCharacter(*CharAddr(i)) || 10340 if (IsSpecialCharacter(*CharAddr(str, i)) ||
10295 (!raw_str && (*CharAddr(i) == '\\'))) { 10341 (!raw_str && (*CharAddr(str, i) == '\\'))) {
10296 num_escapes += 1; 10342 num_escapes += 1;
10297 } 10343 }
10298 } 10344 }
10299 const OneByteString& dststr = OneByteString::Handle( 10345 const String& dststr = String::Handle(
10300 OneByteString::New(len + num_escapes, Heap::kNew)); 10346 OneByteString::New(len + num_escapes, Heap::kNew));
10301 for (intptr_t i = 0; i < len; i++) { 10347 for (intptr_t i = 0; i < len; i++) {
10302 if (IsSpecialCharacter(*CharAddr(i))) { 10348 if (IsSpecialCharacter(*CharAddr(str, i))) {
10303 *(dststr.CharAddr(index)) = '\\'; 10349 *(CharAddr(dststr, index)) = '\\';
10304 *(dststr.CharAddr(index + 1)) = SpecialCharacter(*CharAddr(i)); 10350 *(CharAddr(dststr, index + 1)) = SpecialCharacter(*CharAddr(str, i));
10305 index += 2; 10351 index += 2;
10306 } else if (!raw_str && (*CharAddr(i) == '\\')) { 10352 } else if (!raw_str && (*CharAddr(str, i) == '\\')) {
10307 *(dststr.CharAddr(index)) = '\\'; 10353 *(CharAddr(dststr, index)) = '\\';
10308 *(dststr.CharAddr(index + 1)) = '\\'; 10354 *(CharAddr(dststr, index + 1)) = '\\';
10309 index += 2; 10355 index += 2;
10310 } else { 10356 } else {
10311 *(dststr.CharAddr(index)) = *CharAddr(i); 10357 *(CharAddr(dststr, index)) = *CharAddr(str, i);
10312 index += 1; 10358 index += 1;
10313 } 10359 }
10314 } 10360 }
10315 return dststr.raw(); 10361 return OneByteString::raw(dststr);
10316 } 10362 }
10317 return OneByteString::null(); 10363 return OneByteString::null();
10318 } 10364 }
10319 10365
10320 10366
10321 // Check to see if 'name' matches 'this' as is or 10367 // Check to see if 'str1' matches 'str2' as is or
10322 // once the private key separator is stripped from name. 10368 // once the private key separator is stripped from str2.
10323 // 10369 //
10324 // Things are made more complicated by the fact that constructors are 10370 // Things are made more complicated by the fact that constructors are
10325 // added *after* the private suffix, so "foo@123.named" should match 10371 // added *after* the private suffix, so "foo@123.named" should match
10326 // "foo.named". 10372 // "foo.named".
10327 // 10373 //
10328 // Also, the private suffix can occur more than once in the name, as in: 10374 // Also, the private suffix can occur more than once in the name, as in:
10329 // 10375 //
10330 // _ReceivePortImpl@6be832b._internal@6be832b 10376 // _ReceivePortImpl@6be832b._internal@6be832b
10331 // 10377 //
10332 bool OneByteString::EqualsIgnoringPrivateKey(const OneByteString& name) const { 10378 bool OneByteString::EqualsIgnoringPrivateKey(const String& str1,
10333 if (raw() == name.raw()) { 10379 const String& str2) {
10380 ASSERT(str2.IsOneByteString());
10381 if (str1.raw() == str2.raw()) {
10334 return true; // Both handles point to the same raw instance. 10382 return true; // Both handles point to the same raw instance.
10335 } 10383 }
10336 intptr_t len = Length(); 10384 NoGCScope no_gc;
10337 intptr_t name_len = name.Length(); 10385 intptr_t len = str1.Length();
10338 if (len == name_len) { 10386 intptr_t str2_len = str2.Length();
10387 if (len == str2_len) {
10339 for (intptr_t i = 0; i < len; i++) { 10388 for (intptr_t i = 0; i < len; i++) {
10340 if (*(CharAddr(i)) != *(name.CharAddr(i))) { 10389 if (*CharAddr(str1, i) != *CharAddr(str2, i)) {
10341 return false; 10390 return false;
10342 } 10391 }
10343 } 10392 }
10344 return true; 10393 return true;
10345 } 10394 }
10346 if (len < name_len) { 10395 if (len < str2_len) {
10347 return false; // No way they can match. 10396 return false; // No way they can match.
10348 } 10397 }
10349 intptr_t pos = 0; 10398 intptr_t pos = 0;
10350 intptr_t name_pos = 0; 10399 intptr_t str2_pos = 0;
10351 while (pos < len) { 10400 while (pos < len) {
10352 int32_t ch = *(CharAddr(pos)); 10401 int32_t ch = *CharAddr(str1, pos);
10353 pos++; 10402 pos++;
10354 10403
10355 if (ch == Scanner::kPrivateKeySeparator) { 10404 if (ch == Scanner::kPrivateKeySeparator) {
10356 // Consume a private key separator. 10405 // Consume a private key separator.
10357 while (pos < len && *(CharAddr(pos)) != '.') { 10406 while ((pos < len) && (*CharAddr(str1, pos) != '.')) {
10358 pos++; 10407 pos++;
10359 } 10408 }
10360 // Resume matching characters. 10409 // Resume matching characters.
10361 continue; 10410 continue;
10362 } 10411 }
10363 if (name_pos == name_len || ch != *(name.CharAddr(name_pos))) { 10412 if ((str2_pos == str2_len) || (ch != *CharAddr(str2, str2_pos))) {
10364 return false; 10413 return false;
10365 } 10414 }
10366 name_pos++; 10415 str2_pos++;
10367 } 10416 }
10368 10417
10369 // We have reached the end of mangled_name string. 10418 // We have reached the end of mangled_name string.
10370 ASSERT(pos == len); 10419 ASSERT(pos == len);
10371 return (name_pos == name_len); 10420 return (str2_pos == str2_len);
10372 } 10421 }
10373 10422
10374 10423
10375 RawOneByteString* OneByteString::New(intptr_t len, 10424 RawOneByteString* OneByteString::New(intptr_t len,
10376 Heap::Space space) { 10425 Heap::Space space) {
10377 ASSERT(Isolate::Current() == Dart::vm_isolate() || 10426 ASSERT(Isolate::Current() == Dart::vm_isolate() ||
10378 Isolate::Current()->object_store()->one_byte_string_class() != 10427 Isolate::Current()->object_store()->one_byte_string_class() !=
10379 Class::null()); 10428 Class::null());
10380 if (len < 0 || len > kMaxElements) { 10429 if (len < 0 || len > kMaxElements) {
10381 // This should be caught before we reach here. 10430 // This should be caught before we reach here.
10382 FATAL1("Fatal error in OneByteString::New: invalid len %"Pd"\n", len); 10431 FATAL1("Fatal error in OneByteString::New: invalid len %"Pd"\n", len);
10383 } 10432 }
10384 OneByteString& result = OneByteString::Handle(); 10433 String& result = String::Handle();
10385 { 10434 {
10386 RawObject* raw = Object::Allocate(OneByteString::kClassId, 10435 RawObject* raw = Object::Allocate(OneByteString::kClassId,
10387 OneByteString::InstanceSize(len), 10436 OneByteString::InstanceSize(len),
10388 space); 10437 space);
10389 NoGCScope no_gc; 10438 NoGCScope no_gc;
10390 result ^= raw; 10439 result ^= raw;
10391 result.SetLength(len); 10440 result.SetLength(len);
10392 result.SetHash(0); 10441 result.SetHash(0);
10393 } 10442 }
10394 return result.raw(); 10443 return OneByteString::raw(result);
10395 } 10444 }
10396 10445
10397 10446
10398 RawOneByteString* OneByteString::New(const uint8_t* characters, 10447 RawOneByteString* OneByteString::New(const uint8_t* characters,
10399 intptr_t len, 10448 intptr_t len,
10400 Heap::Space space) { 10449 Heap::Space space) {
10401 const OneByteString& result = 10450 const String& result = String::Handle(OneByteString::New(len, space));
10402 OneByteString::Handle(OneByteString::New(len, space));
10403 if (len > 0) { 10451 if (len > 0) {
10404 NoGCScope no_gc; 10452 NoGCScope no_gc;
10405 memmove(result.CharAddr(0), characters, len); 10453 memmove(CharAddr(result, 0), characters, len);
10406 } 10454 }
10407 return result.raw(); 10455 return OneByteString::raw(result);
10408 } 10456 }
10409 10457
10410 10458
10411 RawOneByteString* OneByteString::New(const uint16_t* characters, 10459 RawOneByteString* OneByteString::New(const uint16_t* characters,
10412 intptr_t len, 10460 intptr_t len,
10413 Heap::Space space) { 10461 Heap::Space space) {
10414 const OneByteString& result = 10462 const String& result =String::Handle(OneByteString::New(len, space));
10415 OneByteString::Handle(OneByteString::New(len, space));
10416 for (intptr_t i = 0; i < len; ++i) { 10463 for (intptr_t i = 0; i < len; ++i) {
10417 ASSERT(characters[i] <= 0x7F); 10464 ASSERT(characters[i] <= 0x7F);
10418 *result.CharAddr(i) = characters[i]; 10465 *CharAddr(result, i) = characters[i];
10419 } 10466 }
10420 return result.raw(); 10467 return OneByteString::raw(result);
10421 } 10468 }
10422 10469
10423 10470
10424 RawOneByteString* OneByteString::New(const uint32_t* characters, 10471 RawOneByteString* OneByteString::New(const uint32_t* characters,
10425 intptr_t len, 10472 intptr_t len,
10426 Heap::Space space) { 10473 Heap::Space space) {
10427 const OneByteString& result = 10474 const String& result = String::Handle(OneByteString::New(len, space));
10428 OneByteString::Handle(OneByteString::New(len, space));
10429 for (intptr_t i = 0; i < len; ++i) { 10475 for (intptr_t i = 0; i < len; ++i) {
10430 ASSERT(characters[i] <= 0x7F); 10476 ASSERT(characters[i] <= 0x7F);
10431 *result.CharAddr(i) = characters[i]; 10477 *CharAddr(result, i) = characters[i];
10432 } 10478 }
10433 return result.raw(); 10479 return OneByteString::raw(result);
10434 } 10480 }
10435 10481
10436 10482
10437 RawOneByteString* OneByteString::New(const OneByteString& str, 10483 RawOneByteString* OneByteString::New(const String& str,
10438 Heap::Space space) { 10484 Heap::Space space) {
10439 intptr_t len = str.Length(); 10485 intptr_t len = str.Length();
10440 const OneByteString& result = 10486 const String& result = String::Handle(OneByteString::New(len, space));
10441 OneByteString::Handle(OneByteString::New(len, space));
10442 String::Copy(result, 0, str, 0, len); 10487 String::Copy(result, 0, str, 0, len);
10443 return result.raw(); 10488 return OneByteString::raw(result);
10444 } 10489 }
10445 10490
10446 10491
10447 RawOneByteString* OneByteString::Concat(const String& str1, 10492 RawOneByteString* OneByteString::Concat(const String& str1,
10448 const String& str2, 10493 const String& str2,
10449 Heap::Space space) { 10494 Heap::Space space) {
10450 intptr_t len1 = str1.Length(); 10495 intptr_t len1 = str1.Length();
10451 intptr_t len2 = str2.Length(); 10496 intptr_t len2 = str2.Length();
10452 intptr_t len = len1 + len2; 10497 intptr_t len = len1 + len2;
10453 const OneByteString& result = 10498 const String& result = String::Handle(OneByteString::New(len, space));
10454 OneByteString::Handle(OneByteString::New(len, space));
10455 String::Copy(result, 0, str1, 0, len1); 10499 String::Copy(result, 0, str1, 0, len1);
10456 String::Copy(result, len1, str2, 0, len2); 10500 String::Copy(result, len1, str2, 0, len2);
10457 return result.raw(); 10501 return OneByteString::raw(result);
10458 } 10502 }
10459 10503
10460 10504
10461 RawOneByteString* OneByteString::ConcatAll(const Array& strings, 10505 RawOneByteString* OneByteString::ConcatAll(const Array& strings,
10462 intptr_t len, 10506 intptr_t len,
10463 Heap::Space space) { 10507 Heap::Space space) {
10464 const OneByteString& result = 10508 const String& result = String::Handle(OneByteString::New(len, space));
10465 OneByteString::Handle(OneByteString::New(len, space)); 10509 String& str = String::Handle();
10466 OneByteString& str = OneByteString::Handle();
10467 intptr_t strings_len = strings.Length(); 10510 intptr_t strings_len = strings.Length();
10468 intptr_t pos = 0; 10511 intptr_t pos = 0;
10469 for (intptr_t i = 0; i < strings_len; i++) { 10512 for (intptr_t i = 0; i < strings_len; i++) {
10470 str ^= strings.At(i); 10513 str ^= strings.At(i);
10471 intptr_t str_len = str.Length(); 10514 intptr_t str_len = str.Length();
10472 String::Copy(result, pos, str, 0, str_len); 10515 String::Copy(result, pos, str, 0, str_len);
10473 pos += str_len; 10516 pos += str_len;
10474 } 10517 }
10475 return result.raw(); 10518 return OneByteString::raw(result);
10476 } 10519 }
10477 10520
10478 10521
10479 RawOneByteString* OneByteString::Transform(int32_t (*mapping)(int32_t ch), 10522 RawOneByteString* OneByteString::Transform(int32_t (*mapping)(int32_t ch),
10480 const String& str, 10523 const String& str,
10481 Heap::Space space) { 10524 Heap::Space space) {
10482 ASSERT(!str.IsNull()); 10525 ASSERT(!str.IsNull());
10483 intptr_t len = str.Length(); 10526 intptr_t len = str.Length();
10484 const OneByteString& result = 10527 const String& result = String::Handle(OneByteString::New(len, space));
10485 OneByteString::Handle(OneByteString::New(len, space));
10486 for (intptr_t i = 0; i < len; ++i) { 10528 for (intptr_t i = 0; i < len; ++i) {
10487 int32_t ch = mapping(str.CharAt(i)); 10529 int32_t ch = mapping(str.CharAt(i));
10488 ASSERT(ch >= 0 && ch <= 0x7F); 10530 ASSERT(ch >= 0 && ch <= 0x7F);
10489 *result.CharAddr(i) = ch; 10531 *CharAddr(result, i) = ch;
10490 } 10532 }
10491 return result.raw(); 10533 return OneByteString::raw(result);
10492 } 10534 }
10493 10535
10494 10536
10495 const char* OneByteString::ToCString() const { 10537 RawTwoByteString* TwoByteString::EscapeSpecialCharacters(const String& str,
10496 return String::ToCString(); 10538 bool raw_str) {
10497 } 10539 intptr_t len = str.Length();
10498
10499
10500 RawTwoByteString* TwoByteString::EscapeSpecialCharacters(bool raw_str) const {
10501 intptr_t len = Length();
10502 if (len > 0) { 10540 if (len > 0) {
10503 intptr_t num_escapes = 0; 10541 intptr_t num_escapes = 0;
10504 intptr_t index = 0; 10542 intptr_t index = 0;
10505 for (intptr_t i = 0; i < len; i++) { 10543 for (intptr_t i = 0; i < len; i++) {
10506 if (IsSpecialCharacter(*CharAddr(i)) || 10544 if (IsSpecialCharacter(*CharAddr(str, i)) ||
10507 (!raw_str && (*CharAddr(i) == '\\'))) { 10545 (!raw_str && (*CharAddr(str, i) == '\\'))) {
10508 num_escapes += 1; 10546 num_escapes += 1;
10509 } 10547 }
10510 } 10548 }
10511 const TwoByteString& dststr = TwoByteString::Handle( 10549 const String& dststr = String::Handle(
10512 TwoByteString::New(len + num_escapes, Heap::kNew)); 10550 TwoByteString::New(len + num_escapes, Heap::kNew));
10513 for (intptr_t i = 0; i < len; i++) { 10551 for (intptr_t i = 0; i < len; i++) {
10514 if (IsSpecialCharacter(*CharAddr(i))) { 10552 if (IsSpecialCharacter(*CharAddr(str, i))) {
10515 *(dststr.CharAddr(index)) = '\\'; 10553 *(CharAddr(dststr, index)) = '\\';
10516 *(dststr.CharAddr(index + 1)) = SpecialCharacter(*CharAddr(i)); 10554 *(CharAddr(dststr, index + 1)) = SpecialCharacter(*CharAddr(str, i));
10517 index += 2; 10555 index += 2;
10518 } else if (!raw_str && (*CharAddr(i) == '\\')) { 10556 } else if (!raw_str && (*CharAddr(str, i) == '\\')) {
10519 *(dststr.CharAddr(index)) = '\\'; 10557 *(CharAddr(dststr, index)) = '\\';
10520 *(dststr.CharAddr(index + 1)) = '\\'; 10558 *(CharAddr(dststr, index + 1)) = '\\';
10521 index += 2; 10559 index += 2;
10522 } else { 10560 } else {
10523 *(dststr.CharAddr(index)) = *CharAddr(i); 10561 *(CharAddr(dststr, index)) = *CharAddr(str, i);
10524 index += 1; 10562 index += 1;
10525 } 10563 }
10526 } 10564 }
10527 return dststr.raw(); 10565 return TwoByteString::raw(dststr);
10528 } 10566 }
10529 return TwoByteString::null(); 10567 return TwoByteString::null();
10530 } 10568 }
10531 10569
10532 10570
10533 RawTwoByteString* TwoByteString::New(intptr_t len, 10571 RawTwoByteString* TwoByteString::New(intptr_t len,
10534 Heap::Space space) { 10572 Heap::Space space) {
10535 ASSERT(Isolate::Current()->object_store()->two_byte_string_class()); 10573 ASSERT(Isolate::Current()->object_store()->two_byte_string_class());
10536 if (len < 0 || len > kMaxElements) { 10574 if (len < 0 || len > kMaxElements) {
10537 // This should be caught before we reach here. 10575 // This should be caught before we reach here.
10538 FATAL1("Fatal error in TwoByteString::New: invalid len %"Pd"\n", len); 10576 FATAL1("Fatal error in TwoByteString::New: invalid len %"Pd"\n", len);
10539 } 10577 }
10540 TwoByteString& result = TwoByteString::Handle(); 10578 String& result = String::Handle();
10541 { 10579 {
10542 RawObject* raw = Object::Allocate(TwoByteString::kClassId, 10580 RawObject* raw = Object::Allocate(TwoByteString::kClassId,
10543 TwoByteString::InstanceSize(len), 10581 TwoByteString::InstanceSize(len),
10544 space); 10582 space);
10545 NoGCScope no_gc; 10583 NoGCScope no_gc;
10546 result ^= raw; 10584 result ^= raw;
10547 result.SetLength(len); 10585 result.SetLength(len);
10548 result.SetHash(0); 10586 result.SetHash(0);
10549 } 10587 }
10550 return result.raw(); 10588 return TwoByteString::raw(result);
10551 } 10589 }
10552 10590
10553 10591
10554 RawTwoByteString* TwoByteString::New(const uint16_t* utf16_array, 10592 RawTwoByteString* TwoByteString::New(const uint16_t* utf16_array,
10555 intptr_t array_len, 10593 intptr_t array_len,
10556 Heap::Space space) { 10594 Heap::Space space) {
10557 ASSERT(array_len > 0); 10595 ASSERT(array_len > 0);
10558 const TwoByteString& result = 10596 const String& result = String::Handle(TwoByteString::New(array_len, space));
10559 TwoByteString::Handle(TwoByteString::New(array_len, space));
10560 { 10597 {
10561 NoGCScope no_gc; 10598 NoGCScope no_gc;
10562 memmove(result.CharAddr(0), utf16_array, (array_len * 2)); 10599 memmove(CharAddr(result, 0), utf16_array, (array_len * 2));
10563 } 10600 }
10564 return result.raw(); 10601 return TwoByteString::raw(result);
10565 } 10602 }
10566 10603
10567 10604
10568 RawTwoByteString* TwoByteString::New(intptr_t utf16_len, 10605 RawTwoByteString* TwoByteString::New(intptr_t utf16_len,
10569 const uint32_t* utf32_array, 10606 const uint32_t* utf32_array,
10570 intptr_t array_len, 10607 intptr_t array_len,
10571 Heap::Space space) { 10608 Heap::Space space) {
10572 ASSERT((array_len > 0) && (utf16_len >= array_len)); 10609 ASSERT((array_len > 0) && (utf16_len >= array_len));
10573 const TwoByteString& result = 10610 const String& result = String::Handle(TwoByteString::New(utf16_len, space));
10574 TwoByteString::Handle(TwoByteString::New(utf16_len, space));
10575 { 10611 {
10576 NoGCScope no_gc; 10612 NoGCScope no_gc;
10577 intptr_t j = 0; 10613 intptr_t j = 0;
10578 for (intptr_t i = 0; i < array_len; ++i) { 10614 for (intptr_t i = 0; i < array_len; ++i) {
10579 if (utf32_array[i] > 0xffff) { 10615 if (utf32_array[i] > 0xffff) {
10580 ASSERT(j < (utf16_len - 1)); 10616 ASSERT(j < (utf16_len - 1));
10581 Utf8::ConvertUTF32ToUTF16(utf32_array[i], result.CharAddr(j)); 10617 Utf8::ConvertUTF32ToUTF16(utf32_array[i], CharAddr(result, j));
10582 j += 2; 10618 j += 2;
10583 } else { 10619 } else {
10584 ASSERT(j < utf16_len); 10620 ASSERT(j < utf16_len);
10585 *result.CharAddr(j) = utf32_array[i]; 10621 *CharAddr(result, j) = utf32_array[i];
10586 j += 1; 10622 j += 1;
10587 } 10623 }
10588 } 10624 }
10589 } 10625 }
10590 return result.raw(); 10626 return TwoByteString::raw(result);
10591 } 10627 }
10592 10628
10593 10629
10594 RawTwoByteString* TwoByteString::New(const TwoByteString& str, 10630 RawTwoByteString* TwoByteString::New(const String& str,
10595 Heap::Space space) { 10631 Heap::Space space) {
10596 intptr_t len = str.Length(); 10632 intptr_t len = str.Length();
10597 const TwoByteString& result = 10633 const String& result = String::Handle(TwoByteString::New(len, space));
10598 TwoByteString::Handle(TwoByteString::New(len, space));
10599 String::Copy(result, 0, str, 0, len); 10634 String::Copy(result, 0, str, 0, len);
10600 return result.raw(); 10635 return TwoByteString::raw(result);
10601 } 10636 }
10602 10637
10603 10638
10604 RawTwoByteString* TwoByteString::Concat(const String& str1, 10639 RawTwoByteString* TwoByteString::Concat(const String& str1,
10605 const String& str2, 10640 const String& str2,
10606 Heap::Space space) { 10641 Heap::Space space) {
10607 intptr_t len1 = str1.Length(); 10642 intptr_t len1 = str1.Length();
10608 intptr_t len2 = str2.Length(); 10643 intptr_t len2 = str2.Length();
10609 intptr_t len = len1 + len2; 10644 intptr_t len = len1 + len2;
10610 const TwoByteString& result = 10645 const String& result = String::Handle(TwoByteString::New(len, space));
10611 TwoByteString::Handle(TwoByteString::New(len, space));
10612 String::Copy(result, 0, str1, 0, len1); 10646 String::Copy(result, 0, str1, 0, len1);
10613 String::Copy(result, len1, str2, 0, len2); 10647 String::Copy(result, len1, str2, 0, len2);
10614 return result.raw(); 10648 return TwoByteString::raw(result);
10615 } 10649 }
10616 10650
10617 10651
10618 RawTwoByteString* TwoByteString::ConcatAll(const Array& strings, 10652 RawTwoByteString* TwoByteString::ConcatAll(const Array& strings,
10619 intptr_t len, 10653 intptr_t len,
10620 Heap::Space space) { 10654 Heap::Space space) {
10621 const TwoByteString& result = 10655 const String& result = String::Handle(TwoByteString::New(len, space));
10622 TwoByteString::Handle(TwoByteString::New(len, space));
10623 String& str = String::Handle(); 10656 String& str = String::Handle();
10624 intptr_t strings_len = strings.Length(); 10657 intptr_t strings_len = strings.Length();
10625 intptr_t pos = 0; 10658 intptr_t pos = 0;
10626 for (intptr_t i = 0; i < strings_len; i++) { 10659 for (intptr_t i = 0; i < strings_len; i++) {
10627 str ^= strings.At(i); 10660 str ^= strings.At(i);
10628 intptr_t str_len = str.Length(); 10661 intptr_t str_len = str.Length();
10629 String::Copy(result, pos, str, 0, str_len); 10662 String::Copy(result, pos, str, 0, str_len);
10630 pos += str_len; 10663 pos += str_len;
10631 } 10664 }
10632 return result.raw(); 10665 return TwoByteString::raw(result);
10633 } 10666 }
10634 10667
10635 10668
10636 RawTwoByteString* TwoByteString::Transform(int32_t (*mapping)(int32_t ch), 10669 RawTwoByteString* TwoByteString::Transform(int32_t (*mapping)(int32_t ch),
10637 const String& str, 10670 const String& str,
10638 Heap::Space space) { 10671 Heap::Space space) {
10639 ASSERT(!str.IsNull()); 10672 ASSERT(!str.IsNull());
10640 intptr_t len = str.Length(); 10673 intptr_t len = str.Length();
10641 const TwoByteString& result = 10674 const String& result = String::Handle(TwoByteString::New(len, space));
10642 TwoByteString::Handle(TwoByteString::New(len, space));
10643 for (intptr_t i = 0; i < len; ++i) { 10675 for (intptr_t i = 0; i < len; ++i) {
10644 int32_t ch = mapping(str.CharAt(i)); 10676 int32_t ch = mapping(str.CharAt(i));
10645 ASSERT(ch >= 0 && ch <= 0xFFFF); 10677 ASSERT(ch >= 0 && ch <= 0xFFFF);
10646 *result.CharAddr(i) = ch; 10678 *CharAddr(result, i) = ch;
10647 } 10679 }
10648 return result.raw(); 10680 return TwoByteString::raw(result);
10649 } 10681 }
10650 10682
10651 10683
10652 const char* TwoByteString::ToCString() const {
10653 return String::ToCString();
10654 }
10655
10656
10657 static void AddFinalizer(const Object& referent, 10684 static void AddFinalizer(const Object& referent,
10658 void* peer, 10685 void* peer,
10659 Dart_WeakPersistentHandleFinalizer callback) { 10686 Dart_WeakPersistentHandleFinalizer callback) {
10660 ASSERT(callback != NULL); 10687 ASSERT(callback != NULL);
10661 ApiState* state = Isolate::Current()->api_state(); 10688 ApiState* state = Isolate::Current()->api_state();
10662 ASSERT(state != NULL); 10689 ASSERT(state != NULL);
10663 FinalizablePersistentHandle* weak_ref = 10690 FinalizablePersistentHandle* weak_ref =
10664 state->weak_persistent_handles().AllocateHandle(); 10691 state->weak_persistent_handles().AllocateHandle();
10665 weak_ref->set_raw(referent); 10692 weak_ref->set_raw(referent);
10666 weak_ref->set_peer(peer); 10693 weak_ref->set_peer(peer);
10667 weak_ref->set_callback(callback); 10694 weak_ref->set_callback(callback);
10668 } 10695 }
10669 10696
10670 10697
10671 RawExternalOneByteString* ExternalOneByteString::New( 10698 RawExternalOneByteString* ExternalOneByteString::New(
10672 const uint8_t* data, 10699 const uint8_t* data,
10673 intptr_t len, 10700 intptr_t len,
10674 void* peer, 10701 void* peer,
10675 Dart_PeerFinalizer callback, 10702 Dart_PeerFinalizer callback,
10676 Heap::Space space) { 10703 Heap::Space space) {
10677 ASSERT(Isolate::Current()->object_store()->external_one_byte_string_class() != 10704 ASSERT(Isolate::Current()->object_store()->
10678 Class::null()); 10705 external_one_byte_string_class() != Class::null());
10679 if (len < 0 || len > kMaxElements) { 10706 if (len < 0 || len > kMaxElements) {
10680 // This should be caught before we reach here. 10707 // This should be caught before we reach here.
10681 FATAL1("Fatal error in ExternalOneByteString::New: invalid len %"Pd"\n", 10708 FATAL1("Fatal error in ExternalOneByteString::New: invalid len %"Pd"\n",
10682 len); 10709 len);
10683 } 10710 }
10684 ExternalOneByteString& result = ExternalOneByteString::Handle(); 10711 String& result = String::Handle();
10685 ExternalStringData<uint8_t>* external_data = 10712 ExternalStringData<uint8_t>* external_data =
10686 new ExternalStringData<uint8_t>(data, peer, callback); 10713 new ExternalStringData<uint8_t>(data, peer, callback);
10687 { 10714 {
10688 RawObject* raw = Object::Allocate(ExternalOneByteString::kClassId, 10715 RawObject* raw = Object::Allocate(ExternalOneByteString::kClassId,
10689 ExternalOneByteString::InstanceSize(), 10716 ExternalOneByteString::InstanceSize(),
10690 space); 10717 space);
10691 NoGCScope no_gc; 10718 NoGCScope no_gc;
10692 result ^= raw; 10719 result ^= raw;
10693 result.SetLength(len); 10720 result.SetLength(len);
10694 result.SetHash(0); 10721 result.SetHash(0);
10695 result.SetExternalData(external_data); 10722 SetExternalData(result, external_data);
10696 } 10723 }
10697 AddFinalizer(result, external_data, ExternalOneByteString::Finalize); 10724 AddFinalizer(result, external_data, ExternalOneByteString::Finalize);
10698 return result.raw(); 10725 return ExternalOneByteString::raw(result);
10699 } 10726 }
10700 10727
10701 10728
10702 static void DeleteWeakPersistentHandle(Dart_Handle handle) { 10729 static void DeleteWeakPersistentHandle(Dart_Handle handle) {
10703 ApiState* state = Isolate::Current()->api_state(); 10730 ApiState* state = Isolate::Current()->api_state();
10704 ASSERT(state != NULL); 10731 ASSERT(state != NULL);
10705 FinalizablePersistentHandle* weak_ref = 10732 FinalizablePersistentHandle* weak_ref =
10706 reinterpret_cast<FinalizablePersistentHandle*>(handle); 10733 reinterpret_cast<FinalizablePersistentHandle*>(handle);
10707 ASSERT(state->IsValidWeakPersistentHandle(handle)); 10734 ASSERT(state->IsValidWeakPersistentHandle(handle));
10708 state->weak_persistent_handles().FreeHandle(weak_ref); 10735 state->weak_persistent_handles().FreeHandle(weak_ref);
10709 } 10736 }
10710 10737
10711 10738
10712 void ExternalOneByteString::Finalize(Dart_Handle handle, void* peer) { 10739 void ExternalOneByteString::Finalize(Dart_Handle handle, void* peer) {
10713 delete reinterpret_cast<ExternalStringData<uint8_t>*>(peer); 10740 delete reinterpret_cast<ExternalStringData<uint8_t>*>(peer);
10714 DeleteWeakPersistentHandle(handle); 10741 DeleteWeakPersistentHandle(handle);
10715 } 10742 }
10716 10743
10717 10744
10718 const char* ExternalOneByteString::ToCString() const {
10719 return String::ToCString();
10720 }
10721
10722
10723 RawExternalTwoByteString* ExternalTwoByteString::New( 10745 RawExternalTwoByteString* ExternalTwoByteString::New(
10724 const uint16_t* data, 10746 const uint16_t* data,
10725 intptr_t len, 10747 intptr_t len,
10726 void* peer, 10748 void* peer,
10727 Dart_PeerFinalizer callback, 10749 Dart_PeerFinalizer callback,
10728 Heap::Space space) { 10750 Heap::Space space) {
10729 ASSERT(Isolate::Current()->object_store()->external_two_byte_string_class() != 10751 ASSERT(Isolate::Current()->object_store()->external_two_byte_string_class() !=
10730 Class::null()); 10752 Class::null());
10731 if (len < 0 || len > kMaxElements) { 10753 if (len < 0 || len > kMaxElements) {
10732 // This should be caught before we reach here. 10754 // This should be caught before we reach here.
10733 FATAL1("Fatal error in ExternalTwoByteString::New: invalid len %"Pd"\n", 10755 FATAL1("Fatal error in ExternalTwoByteString::New: invalid len %"Pd"\n",
10734 len); 10756 len);
10735 } 10757 }
10736 ExternalTwoByteString& result = ExternalTwoByteString::Handle(); 10758 String& result = String::Handle();
10737 ExternalStringData<uint16_t>* external_data = 10759 ExternalStringData<uint16_t>* external_data =
10738 new ExternalStringData<uint16_t>(data, peer, callback); 10760 new ExternalStringData<uint16_t>(data, peer, callback);
10739 { 10761 {
10740 RawObject* raw = Object::Allocate(ExternalTwoByteString::kClassId, 10762 RawObject* raw = Object::Allocate(ExternalTwoByteString::kClassId,
10741 ExternalTwoByteString::InstanceSize(), 10763 ExternalTwoByteString::InstanceSize(),
10742 space); 10764 space);
10743 NoGCScope no_gc; 10765 NoGCScope no_gc;
10744 result ^= raw; 10766 result ^= raw;
10745 result.SetLength(len); 10767 result.SetLength(len);
10746 result.SetHash(0); 10768 result.SetHash(0);
10747 result.SetExternalData(external_data); 10769 SetExternalData(result, external_data);
10748 } 10770 }
10749 AddFinalizer(result, external_data, ExternalTwoByteString::Finalize); 10771 AddFinalizer(result, external_data, ExternalTwoByteString::Finalize);
10750 return result.raw(); 10772 return ExternalTwoByteString::raw(result);
10751 } 10773 }
10752 10774
10753 10775
10754 void ExternalTwoByteString::Finalize(Dart_Handle handle, void* peer) { 10776 void ExternalTwoByteString::Finalize(Dart_Handle handle, void* peer) {
10755 delete reinterpret_cast<ExternalStringData<uint16_t>*>(peer); 10777 delete reinterpret_cast<ExternalStringData<uint16_t>*>(peer);
10756 DeleteWeakPersistentHandle(handle); 10778 DeleteWeakPersistentHandle(handle);
10757 } 10779 }
10758 10780
10759 10781
10760 const char* ExternalTwoByteString::ToCString() const {
10761 return String::ToCString();
10762 }
10763
10764
10765 RawBool* Bool::True() { 10782 RawBool* Bool::True() {
10766 return Isolate::Current()->object_store()->true_value(); 10783 return Isolate::Current()->object_store()->true_value();
10767 } 10784 }
10768 10785
10769 10786
10770 RawBool* Bool::False() { 10787 RawBool* Bool::False() {
10771 return Isolate::Current()->object_store()->false_value(); 10788 return Isolate::Current()->object_store()->false_value();
10772 } 10789 }
10773 10790
10774 10791
(...skipping 1118 matching lines...) Expand 10 before | Expand all | Expand 10 after
11893 } 11910 }
11894 return result.raw(); 11911 return result.raw();
11895 } 11912 }
11896 11913
11897 11914
11898 const char* WeakProperty::ToCString() const { 11915 const char* WeakProperty::ToCString() const {
11899 return "_WeakProperty"; 11916 return "_WeakProperty";
11900 } 11917 }
11901 11918
11902 } // namespace dart 11919 } // namespace dart
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