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      1 /*
      2  * Copyright (C) 2011 The Android Open Source Project
      3  *
      4  * Licensed under the Apache License, Version 2.0 (the "License");
      5  * you may not use this file except in compliance with the License.
      6  * You may obtain a copy of the License at
      7  *
      8  *      http://www.apache.org/licenses/LICENSE-2.0
      9  *
     10  * Unless required by applicable law or agreed to in writing, software
     11  * distributed under the License is distributed on an "AS IS" BASIS,
     12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
     13  * See the License for the specific language governing permissions and
     14  * limitations under the License.
     15  */
     16 #ifndef ART_RUNTIME_MIRROR_STRING_INL_H_
     17 #define ART_RUNTIME_MIRROR_STRING_INL_H_
     18 
     19 #include "string.h"
     20 
     21 #include "android-base/stringprintf.h"
     22 
     23 #include "array.h"
     24 #include "base/bit_utils.h"
     25 #include "base/globals.h"
     26 #include "base/utils.h"
     27 #include "class.h"
     28 #include "common_throws.h"
     29 #include "dex/utf.h"
     30 #include "gc/heap-inl.h"
     31 #include "runtime.h"
     32 #include "thread.h"
     33 
     34 namespace art {
     35 namespace mirror {
     36 
     37 inline uint32_t String::ClassSize(PointerSize pointer_size) {
     38 #ifdef USE_D8_DESUGAR
     39   // Two lambdas in CharSequence:
     40   //   lambda$chars$0$CharSequence
     41   //   lambda$codePoints$1$CharSequence
     42   // which were virtual functions in standalone desugar, becomes
     43   // direct functions with D8 desugaring.
     44   uint32_t vtable_entries = Object::kVTableLength + 54;
     45 #else
     46   uint32_t vtable_entries = Object::kVTableLength + 56;
     47 #endif
     48   return Class::ComputeClassSize(true, vtable_entries, 0, 0, 0, 1, 2, pointer_size);
     49 }
     50 
     51 // Sets string count in the allocation code path to ensure it is guarded by a CAS.
     52 class SetStringCountVisitor {
     53  public:
     54   explicit SetStringCountVisitor(int32_t count) : count_(count) {
     55   }
     56 
     57   void operator()(ObjPtr<Object> obj, size_t usable_size ATTRIBUTE_UNUSED) const
     58       REQUIRES_SHARED(Locks::mutator_lock_) {
     59     // Avoid AsString as object is not yet in live bitmap or allocation stack.
     60     ObjPtr<String> string = ObjPtr<String>::DownCast(obj);
     61     string->SetCount(count_);
     62     DCHECK(!string->IsCompressed() || kUseStringCompression);
     63   }
     64 
     65  private:
     66   const int32_t count_;
     67 };
     68 
     69 // Sets string count and value in the allocation code path to ensure it is guarded by a CAS.
     70 class SetStringCountAndBytesVisitor {
     71  public:
     72   SetStringCountAndBytesVisitor(int32_t count, Handle<ByteArray> src_array, int32_t offset,
     73                                 int32_t high_byte)
     74       : count_(count), src_array_(src_array), offset_(offset), high_byte_(high_byte) {
     75   }
     76 
     77   void operator()(ObjPtr<Object> obj, size_t usable_size ATTRIBUTE_UNUSED) const
     78       REQUIRES_SHARED(Locks::mutator_lock_) {
     79     // Avoid AsString as object is not yet in live bitmap or allocation stack.
     80     ObjPtr<String> string = ObjPtr<String>::DownCast(obj);
     81     string->SetCount(count_);
     82     DCHECK(!string->IsCompressed() || kUseStringCompression);
     83     int32_t length = String::GetLengthFromCount(count_);
     84     const uint8_t* const src = reinterpret_cast<uint8_t*>(src_array_->GetData()) + offset_;
     85     if (string->IsCompressed()) {
     86       uint8_t* valueCompressed = string->GetValueCompressed();
     87       for (int i = 0; i < length; i++) {
     88         valueCompressed[i] = (src[i] & 0xFF);
     89       }
     90     } else {
     91       uint16_t* value = string->GetValue();
     92       for (int i = 0; i < length; i++) {
     93         value[i] = high_byte_ + (src[i] & 0xFF);
     94       }
     95     }
     96   }
     97 
     98  private:
     99   const int32_t count_;
    100   Handle<ByteArray> src_array_;
    101   const int32_t offset_;
    102   const int32_t high_byte_;
    103 };
    104 
    105 // Sets string count and value in the allocation code path to ensure it is guarded by a CAS.
    106 class SetStringCountAndValueVisitorFromCharArray {
    107  public:
    108   SetStringCountAndValueVisitorFromCharArray(int32_t count, Handle<CharArray> src_array,
    109                                              int32_t offset) :
    110     count_(count), src_array_(src_array), offset_(offset) {
    111   }
    112 
    113   void operator()(ObjPtr<Object> obj, size_t usable_size ATTRIBUTE_UNUSED) const
    114       REQUIRES_SHARED(Locks::mutator_lock_) {
    115     // Avoid AsString as object is not yet in live bitmap or allocation stack.
    116     ObjPtr<String> string = ObjPtr<String>::DownCast(obj);
    117     string->SetCount(count_);
    118     const uint16_t* const src = src_array_->GetData() + offset_;
    119     const int32_t length = String::GetLengthFromCount(count_);
    120     if (kUseStringCompression && String::IsCompressed(count_)) {
    121       for (int i = 0; i < length; ++i) {
    122         string->GetValueCompressed()[i] = static_cast<uint8_t>(src[i]);
    123       }
    124     } else {
    125       memcpy(string->GetValue(), src, length * sizeof(uint16_t));
    126     }
    127   }
    128 
    129  private:
    130   const int32_t count_;
    131   Handle<CharArray> src_array_;
    132   const int32_t offset_;
    133 };
    134 
    135 // Sets string count and value in the allocation code path to ensure it is guarded by a CAS.
    136 class SetStringCountAndValueVisitorFromString {
    137  public:
    138   SetStringCountAndValueVisitorFromString(int32_t count,
    139                                           Handle<String> src_string,
    140                                           int32_t offset) :
    141     count_(count), src_string_(src_string), offset_(offset) {
    142   }
    143 
    144   void operator()(ObjPtr<Object> obj, size_t usable_size ATTRIBUTE_UNUSED) const
    145       REQUIRES_SHARED(Locks::mutator_lock_) {
    146     // Avoid AsString as object is not yet in live bitmap or allocation stack.
    147     ObjPtr<String> string = ObjPtr<String>::DownCast(obj);
    148     string->SetCount(count_);
    149     const int32_t length = String::GetLengthFromCount(count_);
    150     bool compressible = kUseStringCompression && String::IsCompressed(count_);
    151     if (src_string_->IsCompressed()) {
    152       const uint8_t* const src = src_string_->GetValueCompressed() + offset_;
    153       memcpy(string->GetValueCompressed(), src, length * sizeof(uint8_t));
    154     } else {
    155       const uint16_t* const src = src_string_->GetValue() + offset_;
    156       if (compressible) {
    157         for (int i = 0; i < length; ++i) {
    158           string->GetValueCompressed()[i] = static_cast<uint8_t>(src[i]);
    159         }
    160       } else {
    161         memcpy(string->GetValue(), src, length * sizeof(uint16_t));
    162       }
    163     }
    164   }
    165 
    166  private:
    167   const int32_t count_;
    168   Handle<String> src_string_;
    169   const int32_t offset_;
    170 };
    171 
    172 inline uint16_t String::CharAt(int32_t index) {
    173   int32_t count = GetLength();
    174   if (UNLIKELY((index < 0) || (index >= count))) {
    175     ThrowStringIndexOutOfBoundsException(index, count);
    176     return 0;
    177   }
    178   if (IsCompressed()) {
    179     return GetValueCompressed()[index];
    180   } else {
    181     return GetValue()[index];
    182   }
    183 }
    184 
    185 template <typename MemoryType>
    186 int32_t String::FastIndexOf(MemoryType* chars, int32_t ch, int32_t start) {
    187   const MemoryType* p = chars + start;
    188   const MemoryType* end = chars + GetLength();
    189   while (p < end) {
    190     if (*p++ == ch) {
    191       return (p - 1) - chars;
    192     }
    193   }
    194   return -1;
    195 }
    196 
    197 template<VerifyObjectFlags kVerifyFlags>
    198 inline size_t String::SizeOf() {
    199   size_t size = sizeof(String);
    200   if (IsCompressed()) {
    201     size += (sizeof(uint8_t) * GetLength<kVerifyFlags>());
    202   } else {
    203     size += (sizeof(uint16_t) * GetLength<kVerifyFlags>());
    204   }
    205   // String.equals() intrinsics assume zero-padding up to kObjectAlignment,
    206   // so make sure the zero-padding is actually copied around if GC compaction
    207   // chooses to copy only SizeOf() bytes.
    208   // http://b/23528461
    209   return RoundUp(size, kObjectAlignment);
    210 }
    211 
    212 template <bool kIsInstrumented, typename PreFenceVisitor>
    213 inline String* String::Alloc(Thread* self, int32_t utf16_length_with_flag,
    214                              gc::AllocatorType allocator_type,
    215                              const PreFenceVisitor& pre_fence_visitor) {
    216   constexpr size_t header_size = sizeof(String);
    217   const bool compressible = kUseStringCompression && String::IsCompressed(utf16_length_with_flag);
    218   const size_t block_size = (compressible) ? sizeof(uint8_t) : sizeof(uint16_t);
    219   size_t length = String::GetLengthFromCount(utf16_length_with_flag);
    220   static_assert(sizeof(length) <= sizeof(size_t),
    221                 "static_cast<size_t>(utf16_length) must not lose bits.");
    222   size_t data_size = block_size * length;
    223   size_t size = header_size + data_size;
    224   // String.equals() intrinsics assume zero-padding up to kObjectAlignment,
    225   // so make sure the allocator clears the padding as well.
    226   // http://b/23528461
    227   size_t alloc_size = RoundUp(size, kObjectAlignment);
    228 
    229   Class* string_class = GetJavaLangString();
    230   // Check for overflow and throw OutOfMemoryError if this was an unreasonable request.
    231   // Do this by comparing with the maximum length that will _not_ cause an overflow.
    232   const size_t overflow_length = (-header_size) / block_size;   // Unsigned arithmetic.
    233   const size_t max_alloc_length = overflow_length - 1u;
    234   static_assert(IsAligned<sizeof(uint16_t)>(kObjectAlignment),
    235                 "kObjectAlignment must be at least as big as Java char alignment");
    236   const size_t max_length = RoundDown(max_alloc_length, kObjectAlignment / block_size);
    237   if (UNLIKELY(length > max_length)) {
    238     self->ThrowOutOfMemoryError(
    239         android::base::StringPrintf("%s of length %d would overflow",
    240                                     Class::PrettyDescriptor(string_class).c_str(),
    241                                     static_cast<int>(length)).c_str());
    242     return nullptr;
    243   }
    244 
    245   gc::Heap* heap = Runtime::Current()->GetHeap();
    246   return down_cast<String*>(
    247       heap->AllocObjectWithAllocator<kIsInstrumented, true>(self, string_class, alloc_size,
    248                                                             allocator_type, pre_fence_visitor));
    249 }
    250 
    251 template <bool kIsInstrumented>
    252 inline String* String::AllocEmptyString(Thread* self, gc::AllocatorType allocator_type) {
    253   const int32_t length_with_flag = String::GetFlaggedCount(0, /* compressible */ true);
    254   SetStringCountVisitor visitor(length_with_flag);
    255   return Alloc<kIsInstrumented>(self, length_with_flag, allocator_type, visitor);
    256 }
    257 
    258 template <bool kIsInstrumented>
    259 inline String* String::AllocFromByteArray(Thread* self, int32_t byte_length,
    260                                           Handle<ByteArray> array, int32_t offset,
    261                                           int32_t high_byte, gc::AllocatorType allocator_type) {
    262   const uint8_t* const src = reinterpret_cast<uint8_t*>(array->GetData()) + offset;
    263   high_byte &= 0xff;  // Extract the relevant bits before determining `compressible`.
    264   const bool compressible =
    265       kUseStringCompression && String::AllASCII<uint8_t>(src, byte_length) && (high_byte == 0);
    266   const int32_t length_with_flag = String::GetFlaggedCount(byte_length, compressible);
    267   SetStringCountAndBytesVisitor visitor(length_with_flag, array, offset, high_byte << 8);
    268   String* string = Alloc<kIsInstrumented>(self, length_with_flag, allocator_type, visitor);
    269   return string;
    270 }
    271 
    272 template <bool kIsInstrumented>
    273 inline String* String::AllocFromCharArray(Thread* self, int32_t count,
    274                                           Handle<CharArray> array, int32_t offset,
    275                                           gc::AllocatorType allocator_type) {
    276   // It is a caller error to have a count less than the actual array's size.
    277   DCHECK_GE(array->GetLength(), count);
    278   const bool compressible = kUseStringCompression &&
    279                             String::AllASCII<uint16_t>(array->GetData() + offset, count);
    280   const int32_t length_with_flag = String::GetFlaggedCount(count, compressible);
    281   SetStringCountAndValueVisitorFromCharArray visitor(length_with_flag, array, offset);
    282   String* new_string = Alloc<kIsInstrumented>(self, length_with_flag, allocator_type, visitor);
    283   return new_string;
    284 }
    285 
    286 template <bool kIsInstrumented>
    287 inline String* String::AllocFromString(Thread* self, int32_t string_length, Handle<String> string,
    288                                        int32_t offset, gc::AllocatorType allocator_type) {
    289   const bool compressible = kUseStringCompression &&
    290       ((string->IsCompressed()) ? true : String::AllASCII<uint16_t>(string->GetValue() + offset,
    291                                                                     string_length));
    292   const int32_t length_with_flag = String::GetFlaggedCount(string_length, compressible);
    293   SetStringCountAndValueVisitorFromString visitor(length_with_flag, string, offset);
    294   String* new_string = Alloc<kIsInstrumented>(self, length_with_flag, allocator_type, visitor);
    295   return new_string;
    296 }
    297 
    298 inline int32_t String::GetHashCode() {
    299   int32_t result = GetField32(OFFSET_OF_OBJECT_MEMBER(String, hash_code_));
    300   if (UNLIKELY(result == 0)) {
    301     result = ComputeHashCode();
    302   }
    303   if (kIsDebugBuild) {
    304     if (IsCompressed()) {
    305       DCHECK(result != 0 || ComputeUtf16Hash(GetValueCompressed(), GetLength()) == 0)
    306           << ToModifiedUtf8() << " " << result;
    307     } else {
    308       DCHECK(result != 0 || ComputeUtf16Hash(GetValue(), GetLength()) == 0)
    309           << ToModifiedUtf8() << " " << result;
    310     }
    311   }
    312   return result;
    313 }
    314 
    315 template<typename MemoryType>
    316 inline bool String::AllASCII(const MemoryType* chars, const int length) {
    317   static_assert(std::is_unsigned<MemoryType>::value, "Expecting unsigned MemoryType");
    318   for (int i = 0; i < length; ++i) {
    319     if (!IsASCII(chars[i])) {
    320       return false;
    321     }
    322   }
    323   return true;
    324 }
    325 
    326 inline bool String::DexFileStringAllASCII(const char* chars, const int length) {
    327   // For strings from the dex file we just need to check that
    328   // the terminating character is at the right position.
    329   DCHECK_EQ(AllASCII(reinterpret_cast<const uint8_t*>(chars), length), chars[length] == 0);
    330   return chars[length] == 0;
    331 }
    332 
    333 }  // namespace mirror
    334 }  // namespace art
    335 
    336 #endif  // ART_RUNTIME_MIRROR_STRING_INL_H_
    337