Chromium Code Reviews| Index: src/serialize.cc |
| diff --git a/src/serialize.cc b/src/serialize.cc |
| index c11f94a5ca0cceb9625611eb0ee45dac855eda50..b862c76f0631ed78fa4914ea4476182c10726ed4 100644 |
| --- a/src/serialize.cc |
| +++ b/src/serialize.cc |
| @@ -1586,29 +1586,34 @@ void Serializer::ObjectSerializer::SerializeExternalString() { |
| ExternalString* string = ExternalString::cast(object_); |
| int length = string->length(); |
| Map* map; |
| - int size; |
| - const char* resource; |
| + int content_size; |
| + int allocation_size; |
| + const byte* resource; |
| // Find the map and size for the imaginary sequential string. |
| bool internalized = object_->IsInternalizedString(); |
| if (object_->IsExternalOneByteString()) { |
| map = internalized ? isolate->heap()->one_byte_internalized_string_map() |
| : isolate->heap()->one_byte_string_map(); |
| - size = SeqOneByteString::SizeFor(length); |
| - resource = ExternalOneByteString::cast(string)->resource()->data(); |
| + allocation_size = SeqOneByteString::SizeFor(length); |
| + content_size = length * kCharSize; |
| + resource = reinterpret_cast<const byte*>( |
| + ExternalOneByteString::cast(string)->resource()->data()); |
| } else { |
| map = internalized ? isolate->heap()->internalized_string_map() |
| : isolate->heap()->string_map(); |
| - size = SeqTwoByteString::SizeFor(length); |
| - resource = reinterpret_cast<const char*>( |
| + allocation_size = SeqTwoByteString::SizeFor(length); |
| + content_size = length * kShortSize; |
| + resource = reinterpret_cast<const byte*>( |
| ExternalTwoByteString::cast(string)->resource()->data()); |
| } |
| - AllocationSpace space = |
| - (size > Page::kMaxRegularHeapObjectSize) ? LO_SPACE : OLD_DATA_SPACE; |
| - SerializePrologue(space, size, map); |
| + AllocationSpace space = (allocation_size > Page::kMaxRegularHeapObjectSize) |
| + ? LO_SPACE |
| + : OLD_DATA_SPACE; |
| + SerializePrologue(space, allocation_size, map); |
| // Output the rest of the imaginary string. |
| - int bytes_to_output = size - HeapObject::kHeaderSize; |
| + int bytes_to_output = allocation_size - HeapObject::kHeaderSize; |
| // Output raw data header. Do not bother with common raw length cases here. |
| sink_->Put(kRawData, "RawDataForString"); |
| @@ -1621,10 +1626,13 @@ void Serializer::ObjectSerializer::SerializeExternalString() { |
| } |
| // Serialize string content. |
| - int content_length = size - SeqString::kHeaderSize; |
| - for (int i = 0; i < content_length; i++) { |
| - sink_->PutSection(resource[i], "StringContent"); |
| - } |
| + sink_->PutRaw(const_cast<byte*>(resource), content_size, "StringContent"); |
| + |
| + // Since the allocation size is rounded up to object alignment, there |
| + // maybe left-over bytes that need to be padded. |
| + int padding_size = allocation_size - SeqString::kHeaderSize - content_size; |
| + DCHECK(0 <= padding_size && padding_size < kObjectAlignment); |
| + for (int i = 0; i < padding_size; i++) sink_->PutSection(0, "StringPadding"); |
|
vogelheim
2014/10/23 16:48:44
If I get this correctly, this makes sure that you
Yang
2014/10/24 07:14:24
This is a single use case, so I'd leave it at this
|
| sink_->Put(kSkip, "SkipAfterString"); |
| sink_->PutInt(bytes_to_output, "SkipDistance"); |
| @@ -1871,9 +1879,7 @@ int Serializer::ObjectSerializer::OutputRawData( |
| } |
| const char* description = code_object_ ? "Code" : "Byte"; |
| - for (int i = 0; i < bytes_to_output; i++) { |
| - sink_->PutSection(object_start[base + i], description); |
| - } |
| + sink_->PutRaw(object_start + base, bytes_to_output, description); |
| if (code_object_) delete[] object_start; |
| } |
| if (to_skip != 0 && return_skip == kIgnoringReturn) { |