7f8a3d803c
R=svenpanne@chromium.org BUG= Review URL: https://chromiumcodereview.appspot.com/15691017 git-svn-id: http://v8.googlecode.com/svn/branches/bleeding_edge@14919 ce2b1a6d-e550-0410-aec6-3dcde31c8c00
850 lines
29 KiB
C++
850 lines
29 KiB
C++
// Copyright 2012 the V8 project authors. All rights reserved.
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are
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// met:
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//
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// * Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// * Redistributions in binary form must reproduce the above
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// copyright notice, this list of conditions and the following
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// disclaimer in the documentation and/or other materials provided
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// with the distribution.
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// * Neither the name of Google Inc. nor the names of its
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// contributors may be used to endorse or promote products derived
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// from this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#ifndef V8_JSON_STRINGIFIER_H_
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#define V8_JSON_STRINGIFIER_H_
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#include "v8.h"
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#include "v8utils.h"
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#include "v8conversions.h"
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namespace v8 {
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namespace internal {
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class BasicJsonStringifier BASE_EMBEDDED {
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public:
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explicit BasicJsonStringifier(Isolate* isolate);
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MaybeObject* Stringify(Handle<Object> object);
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INLINE(static MaybeObject* StringifyString(Isolate* isolate,
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Handle<String> object));
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private:
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static const int kInitialPartLength = 32;
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static const int kMaxPartLength = 16 * 1024;
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static const int kPartLengthGrowthFactor = 2;
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enum Result { UNCHANGED, SUCCESS, EXCEPTION, CIRCULAR, STACK_OVERFLOW };
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void Extend();
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void ChangeEncoding();
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INLINE(void ShrinkCurrentPart());
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template <bool is_ascii, typename Char>
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INLINE(void Append_(Char c));
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template <bool is_ascii, typename Char>
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INLINE(void Append_(const Char* chars));
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INLINE(void Append(uint8_t c)) {
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if (is_ascii_) {
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Append_<true>(c);
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} else {
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Append_<false>(c);
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}
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}
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INLINE(void AppendAscii(const char* chars)) {
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if (is_ascii_) {
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Append_<true>(reinterpret_cast<const uint8_t*>(chars));
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} else {
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Append_<false>(reinterpret_cast<const uint8_t*>(chars));
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}
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}
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Handle<Object> ApplyToJsonFunction(Handle<Object> object,
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Handle<Object> key);
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Result SerializeGeneric(Handle<Object> object,
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Handle<Object> key,
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bool deferred_comma,
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bool deferred_key);
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template <typename ResultType, typename Char>
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INLINE(static MaybeObject* StringifyString_(Isolate* isolate,
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Vector<Char> vector,
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Handle<String> result));
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// Entry point to serialize the object.
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INLINE(Result SerializeObject(Handle<Object> obj)) {
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return Serialize_<false>(obj, false, factory_->empty_string());
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}
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// Serialize an array element.
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// The index may serve as argument for the toJSON function.
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INLINE(Result SerializeElement(Isolate* isolate,
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Handle<Object> object,
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int i)) {
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return Serialize_<false>(object,
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false,
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Handle<Object>(Smi::FromInt(i), isolate));
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}
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// Serialize a object property.
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// The key may or may not be serialized depending on the property.
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// The key may also serve as argument for the toJSON function.
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INLINE(Result SerializeProperty(Handle<Object> object,
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bool deferred_comma,
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Handle<String> deferred_key)) {
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ASSERT(!deferred_key.is_null());
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return Serialize_<true>(object, deferred_comma, deferred_key);
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}
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template <bool deferred_string_key>
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Result Serialize_(Handle<Object> object, bool comma, Handle<Object> key);
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void SerializeDeferredKey(bool deferred_comma, Handle<Object> deferred_key) {
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if (deferred_comma) Append(',');
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SerializeString(Handle<String>::cast(deferred_key));
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Append(':');
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}
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Result SerializeSmi(Smi* object);
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Result SerializeDouble(double number);
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INLINE(Result SerializeHeapNumber(Handle<HeapNumber> object)) {
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return SerializeDouble(object->value());
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}
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Result SerializeJSValue(Handle<JSValue> object);
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INLINE(Result SerializeJSArray(Handle<JSArray> object));
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INLINE(Result SerializeJSObject(Handle<JSObject> object));
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Result SerializeJSArraySlow(Handle<JSArray> object, int length);
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void SerializeString(Handle<String> object);
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template <typename SrcChar, typename DestChar>
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INLINE(static int SerializeStringUnchecked_(const SrcChar* src,
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DestChar* dest,
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int length));
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template <bool is_ascii, typename Char>
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INLINE(void SerializeString_(Handle<String> string));
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template <typename Char>
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INLINE(static bool DoNotEscape(Char c));
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template <typename Char>
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INLINE(static Vector<const Char> GetCharVector(Handle<String> string));
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Result StackPush(Handle<Object> object);
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void StackPop();
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INLINE(Handle<String> accumulator()) {
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return Handle<String>(String::cast(accumulator_store_->value()), isolate_);
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}
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INLINE(void set_accumulator(Handle<String> string)) {
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return accumulator_store_->set_value(*string);
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}
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Isolate* isolate_;
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Factory* factory_;
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// We use a value wrapper for the string accumulator to keep the
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// (indirect) handle to it in the outermost handle scope.
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Handle<JSValue> accumulator_store_;
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Handle<String> current_part_;
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Handle<String> tojson_string_;
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Handle<JSArray> stack_;
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int current_index_;
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int part_length_;
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bool is_ascii_;
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static const int kJsonEscapeTableEntrySize = 8;
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static const char* const JsonEscapeTable;
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};
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// Translation table to escape ASCII characters.
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// Table entries start at a multiple of 8 and are null-terminated.
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const char* const BasicJsonStringifier::JsonEscapeTable =
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"\\u0000\0 \\u0001\0 \\u0002\0 \\u0003\0 "
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"\\u0004\0 \\u0005\0 \\u0006\0 \\u0007\0 "
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"\\b\0 \\t\0 \\n\0 \\u000b\0 "
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"\\f\0 \\r\0 \\u000e\0 \\u000f\0 "
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"\\u0010\0 \\u0011\0 \\u0012\0 \\u0013\0 "
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"\\u0014\0 \\u0015\0 \\u0016\0 \\u0017\0 "
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"\\u0018\0 \\u0019\0 \\u001a\0 \\u001b\0 "
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"\\u001c\0 \\u001d\0 \\u001e\0 \\u001f\0 "
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" \0 !\0 \\\"\0 #\0 "
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"$\0 %\0 &\0 '\0 "
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"(\0 )\0 *\0 +\0 "
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",\0 -\0 .\0 /\0 "
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"0\0 1\0 2\0 3\0 "
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"4\0 5\0 6\0 7\0 "
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"8\0 9\0 :\0 ;\0 "
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"<\0 =\0 >\0 ?\0 "
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"@\0 A\0 B\0 C\0 "
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"D\0 E\0 F\0 G\0 "
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"H\0 I\0 J\0 K\0 "
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"L\0 M\0 N\0 O\0 "
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"P\0 Q\0 R\0 S\0 "
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"T\0 U\0 V\0 W\0 "
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"X\0 Y\0 Z\0 [\0 "
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"\\\\\0 ]\0 ^\0 _\0 "
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"`\0 a\0 b\0 c\0 "
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"d\0 e\0 f\0 g\0 "
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"h\0 i\0 j\0 k\0 "
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"l\0 m\0 n\0 o\0 "
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"p\0 q\0 r\0 s\0 "
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"t\0 u\0 v\0 w\0 "
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"x\0 y\0 z\0 {\0 "
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"|\0 }\0 ~\0 \177\0 "
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"\200\0 \201\0 \202\0 \203\0 "
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"\204\0 \205\0 \206\0 \207\0 "
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"\210\0 \211\0 \212\0 \213\0 "
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"\214\0 \215\0 \216\0 \217\0 "
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"\220\0 \221\0 \222\0 \223\0 "
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"\224\0 \225\0 \226\0 \227\0 "
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"\230\0 \231\0 \232\0 \233\0 "
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"\234\0 \235\0 \236\0 \237\0 "
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"\240\0 \241\0 \242\0 \243\0 "
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"\244\0 \245\0 \246\0 \247\0 "
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"\250\0 \251\0 \252\0 \253\0 "
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"\254\0 \255\0 \256\0 \257\0 "
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"\260\0 \261\0 \262\0 \263\0 "
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"\264\0 \265\0 \266\0 \267\0 "
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"\270\0 \271\0 \272\0 \273\0 "
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"\274\0 \275\0 \276\0 \277\0 "
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"\300\0 \301\0 \302\0 \303\0 "
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"\304\0 \305\0 \306\0 \307\0 "
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"\310\0 \311\0 \312\0 \313\0 "
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"\314\0 \315\0 \316\0 \317\0 "
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"\320\0 \321\0 \322\0 \323\0 "
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"\324\0 \325\0 \326\0 \327\0 "
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"\330\0 \331\0 \332\0 \333\0 "
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"\334\0 \335\0 \336\0 \337\0 "
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"\340\0 \341\0 \342\0 \343\0 "
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"\344\0 \345\0 \346\0 \347\0 "
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"\350\0 \351\0 \352\0 \353\0 "
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"\354\0 \355\0 \356\0 \357\0 "
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"\360\0 \361\0 \362\0 \363\0 "
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"\364\0 \365\0 \366\0 \367\0 "
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"\370\0 \371\0 \372\0 \373\0 "
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"\374\0 \375\0 \376\0 \377\0 ";
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BasicJsonStringifier::BasicJsonStringifier(Isolate* isolate)
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: isolate_(isolate), current_index_(0), is_ascii_(true) {
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factory_ = isolate_->factory();
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accumulator_store_ = Handle<JSValue>::cast(
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factory_->ToObject(factory_->empty_string()));
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part_length_ = kInitialPartLength;
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current_part_ = factory_->NewRawOneByteString(part_length_);
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tojson_string_ = factory_->toJSON_string();
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stack_ = factory_->NewJSArray(8);
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}
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MaybeObject* BasicJsonStringifier::Stringify(Handle<Object> object) {
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switch (SerializeObject(object)) {
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case UNCHANGED:
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return isolate_->heap()->undefined_value();
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case SUCCESS:
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ShrinkCurrentPart();
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return *factory_->NewConsString(accumulator(), current_part_);
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case CIRCULAR:
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return isolate_->Throw(*factory_->NewTypeError(
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"circular_structure", HandleVector<Object>(NULL, 0)));
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case STACK_OVERFLOW:
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return isolate_->StackOverflow();
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default:
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return Failure::Exception();
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}
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}
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MaybeObject* BasicJsonStringifier::StringifyString(Isolate* isolate,
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Handle<String> object) {
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static const int kJsonQuoteWorstCaseBlowup = 6;
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static const int kSpaceForQuotes = 2;
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int worst_case_length =
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object->length() * kJsonQuoteWorstCaseBlowup + kSpaceForQuotes;
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if (worst_case_length > 32 * KB) { // Slow path if too large.
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BasicJsonStringifier stringifier(isolate);
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return stringifier.Stringify(object);
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}
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FlattenString(object);
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ASSERT(object->IsFlat());
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if (object->IsOneByteRepresentationUnderneath()) {
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Handle<String> result =
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isolate->factory()->NewRawOneByteString(worst_case_length);
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DisallowHeapAllocation no_gc;
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return StringifyString_<SeqOneByteString>(
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isolate,
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object->GetFlatContent().ToOneByteVector(),
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result);
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} else {
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Handle<String> result =
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isolate->factory()->NewRawTwoByteString(worst_case_length);
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DisallowHeapAllocation no_gc;
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return StringifyString_<SeqTwoByteString>(
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isolate,
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object->GetFlatContent().ToUC16Vector(),
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result);
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}
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}
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template <typename ResultType, typename Char>
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MaybeObject* BasicJsonStringifier::StringifyString_(Isolate* isolate,
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Vector<Char> vector,
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Handle<String> result) {
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DisallowHeapAllocation no_gc;
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int final_size = 0;
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ResultType* dest = ResultType::cast(*result);
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dest->Set(final_size++, '\"');
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final_size += SerializeStringUnchecked_(vector.start(),
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dest->GetChars() + 1,
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vector.length());
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dest->Set(final_size++, '\"');
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return *SeqString::Truncate(Handle<SeqString>::cast(result), final_size);
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}
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template <bool is_ascii, typename Char>
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void BasicJsonStringifier::Append_(Char c) {
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if (is_ascii) {
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SeqOneByteString::cast(*current_part_)->SeqOneByteStringSet(
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current_index_++, c);
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} else {
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SeqTwoByteString::cast(*current_part_)->SeqTwoByteStringSet(
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current_index_++, c);
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}
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if (current_index_ == part_length_) Extend();
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}
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template <bool is_ascii, typename Char>
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void BasicJsonStringifier::Append_(const Char* chars) {
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for ( ; *chars != '\0'; chars++) Append_<is_ascii, Char>(*chars);
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}
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Handle<Object> BasicJsonStringifier::ApplyToJsonFunction(
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Handle<Object> object, Handle<Object> key) {
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LookupResult lookup(isolate_);
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JSObject::cast(*object)->LookupRealNamedProperty(*tojson_string_, &lookup);
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if (!lookup.IsProperty()) return object;
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PropertyAttributes attr;
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Handle<Object> fun =
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Object::GetProperty(object, object, &lookup, tojson_string_, &attr);
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if (!fun->IsJSFunction()) return object;
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// Call toJSON function.
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if (key->IsSmi()) key = factory_->NumberToString(key);
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Handle<Object> argv[] = { key };
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bool has_exception = false;
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HandleScope scope(isolate_);
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object = Execution::Call(fun, object, 1, argv, &has_exception);
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// Return empty handle to signal an exception.
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if (has_exception) return Handle<Object>::null();
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return scope.CloseAndEscape(object);
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}
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BasicJsonStringifier::Result BasicJsonStringifier::StackPush(
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Handle<Object> object) {
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StackLimitCheck check(isolate_);
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if (check.HasOverflowed()) return STACK_OVERFLOW;
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int length = Smi::cast(stack_->length())->value();
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FixedArray* elements = FixedArray::cast(stack_->elements());
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for (int i = 0; i < length; i++) {
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if (elements->get(i) == *object) {
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return CIRCULAR;
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}
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}
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stack_->EnsureSize(length + 1);
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FixedArray::cast(stack_->elements())->set(length, *object);
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stack_->set_length(Smi::FromInt(length + 1));
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return SUCCESS;
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}
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void BasicJsonStringifier::StackPop() {
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int length = Smi::cast(stack_->length())->value();
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stack_->set_length(Smi::FromInt(length - 1));
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}
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template <bool deferred_string_key>
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BasicJsonStringifier::Result BasicJsonStringifier::Serialize_(
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Handle<Object> object, bool comma, Handle<Object> key) {
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if (object->IsJSObject()) {
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object = ApplyToJsonFunction(object, key);
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if (object.is_null()) return EXCEPTION;
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}
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if (object->IsSmi()) {
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if (deferred_string_key) SerializeDeferredKey(comma, key);
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return SerializeSmi(Smi::cast(*object));
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}
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switch (HeapObject::cast(*object)->map()->instance_type()) {
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case HEAP_NUMBER_TYPE:
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if (deferred_string_key) SerializeDeferredKey(comma, key);
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return SerializeHeapNumber(Handle<HeapNumber>::cast(object));
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case ODDBALL_TYPE:
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switch (Oddball::cast(*object)->kind()) {
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case Oddball::kFalse:
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if (deferred_string_key) SerializeDeferredKey(comma, key);
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AppendAscii("false");
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return SUCCESS;
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case Oddball::kTrue:
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if (deferred_string_key) SerializeDeferredKey(comma, key);
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AppendAscii("true");
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return SUCCESS;
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case Oddball::kNull:
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if (deferred_string_key) SerializeDeferredKey(comma, key);
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AppendAscii("null");
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return SUCCESS;
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default:
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return UNCHANGED;
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}
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case JS_ARRAY_TYPE:
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if (deferred_string_key) SerializeDeferredKey(comma, key);
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return SerializeJSArray(Handle<JSArray>::cast(object));
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case JS_VALUE_TYPE:
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if (deferred_string_key) SerializeDeferredKey(comma, key);
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return SerializeJSValue(Handle<JSValue>::cast(object));
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case JS_FUNCTION_TYPE:
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return UNCHANGED;
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default:
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if (object->IsString()) {
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if (deferred_string_key) SerializeDeferredKey(comma, key);
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SerializeString(Handle<String>::cast(object));
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return SUCCESS;
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} else if (object->IsJSObject()) {
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if (deferred_string_key) SerializeDeferredKey(comma, key);
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return SerializeJSObject(Handle<JSObject>::cast(object));
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} else {
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return SerializeGeneric(object, key, comma, deferred_string_key);
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}
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}
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}
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BasicJsonStringifier::Result BasicJsonStringifier::SerializeGeneric(
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Handle<Object> object,
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Handle<Object> key,
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bool deferred_comma,
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bool deferred_key) {
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Handle<JSObject> builtins(isolate_->native_context()->builtins());
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Handle<JSFunction> builtin =
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Handle<JSFunction>::cast(GetProperty(builtins, "JSONSerializeAdapter"));
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Handle<Object> argv[] = { key, object };
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bool has_exception = false;
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Handle<Object> result =
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Execution::Call(builtin, object, 2, argv, &has_exception);
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if (has_exception) return EXCEPTION;
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if (result->IsUndefined()) return UNCHANGED;
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if (deferred_key) {
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if (key->IsSmi()) key = factory_->NumberToString(key);
|
|
SerializeDeferredKey(deferred_comma, key);
|
|
}
|
|
|
|
Handle<String> result_string = Handle<String>::cast(result);
|
|
// Shrink current part, attach it to the accumulator, also attach the result
|
|
// string to the accumulator, and allocate a new part.
|
|
ShrinkCurrentPart(); // Shrink.
|
|
part_length_ = kInitialPartLength; // Allocate conservatively.
|
|
Extend(); // Attach current part and allocate new part.
|
|
// Attach result string to the accumulator.
|
|
set_accumulator(factory_->NewConsString(accumulator(), result_string));
|
|
return SUCCESS;
|
|
}
|
|
|
|
|
|
BasicJsonStringifier::Result BasicJsonStringifier::SerializeJSValue(
|
|
Handle<JSValue> object) {
|
|
bool has_exception = false;
|
|
String* class_name = object->class_name();
|
|
if (class_name == isolate_->heap()->String_string()) {
|
|
Handle<Object> value = Execution::ToString(object, &has_exception);
|
|
if (has_exception) return EXCEPTION;
|
|
SerializeString(Handle<String>::cast(value));
|
|
} else if (class_name == isolate_->heap()->Number_string()) {
|
|
Handle<Object> value = Execution::ToNumber(object, &has_exception);
|
|
if (has_exception) return EXCEPTION;
|
|
if (value->IsSmi()) return SerializeSmi(Smi::cast(*value));
|
|
SerializeHeapNumber(Handle<HeapNumber>::cast(value));
|
|
} else {
|
|
ASSERT(class_name == isolate_->heap()->Boolean_string());
|
|
Object* value = JSValue::cast(*object)->value();
|
|
ASSERT(value->IsBoolean());
|
|
AppendAscii(value->IsTrue() ? "true" : "false");
|
|
}
|
|
return SUCCESS;
|
|
}
|
|
|
|
|
|
BasicJsonStringifier::Result BasicJsonStringifier::SerializeSmi(Smi* object) {
|
|
static const int kBufferSize = 100;
|
|
char chars[kBufferSize];
|
|
Vector<char> buffer(chars, kBufferSize);
|
|
AppendAscii(IntToCString(object->value(), buffer));
|
|
return SUCCESS;
|
|
}
|
|
|
|
|
|
BasicJsonStringifier::Result BasicJsonStringifier::SerializeDouble(
|
|
double number) {
|
|
if (std::isinf(number) || std::isnan(number)) {
|
|
AppendAscii("null");
|
|
return SUCCESS;
|
|
}
|
|
static const int kBufferSize = 100;
|
|
char chars[kBufferSize];
|
|
Vector<char> buffer(chars, kBufferSize);
|
|
AppendAscii(DoubleToCString(number, buffer));
|
|
return SUCCESS;
|
|
}
|
|
|
|
|
|
BasicJsonStringifier::Result BasicJsonStringifier::SerializeJSArray(
|
|
Handle<JSArray> object) {
|
|
HandleScope handle_scope(isolate_);
|
|
Result stack_push = StackPush(object);
|
|
if (stack_push != SUCCESS) return stack_push;
|
|
int length = Smi::cast(object->length())->value();
|
|
Append('[');
|
|
switch (object->GetElementsKind()) {
|
|
case FAST_SMI_ELEMENTS: {
|
|
Handle<FixedArray> elements(
|
|
FixedArray::cast(object->elements()), isolate_);
|
|
for (int i = 0; i < length; i++) {
|
|
if (i > 0) Append(',');
|
|
SerializeSmi(Smi::cast(elements->get(i)));
|
|
}
|
|
break;
|
|
}
|
|
case FAST_DOUBLE_ELEMENTS: {
|
|
Handle<FixedDoubleArray> elements(
|
|
FixedDoubleArray::cast(object->elements()), isolate_);
|
|
for (int i = 0; i < length; i++) {
|
|
if (i > 0) Append(',');
|
|
SerializeDouble(elements->get_scalar(i));
|
|
}
|
|
break;
|
|
}
|
|
case FAST_ELEMENTS: {
|
|
Handle<FixedArray> elements(
|
|
FixedArray::cast(object->elements()), isolate_);
|
|
for (int i = 0; i < length; i++) {
|
|
if (i > 0) Append(',');
|
|
Result result =
|
|
SerializeElement(isolate_,
|
|
Handle<Object>(elements->get(i), isolate_),
|
|
i);
|
|
if (result == SUCCESS) continue;
|
|
if (result == UNCHANGED) {
|
|
AppendAscii("null");
|
|
} else {
|
|
return result;
|
|
}
|
|
}
|
|
break;
|
|
}
|
|
// TODO(yangguo): The FAST_HOLEY_* cases could be handled in a faster way.
|
|
// They resemble the non-holey cases except that a prototype chain lookup
|
|
// is necessary for holes.
|
|
default: {
|
|
Result result = SerializeJSArraySlow(object, length);
|
|
if (result != SUCCESS) return result;
|
|
break;
|
|
}
|
|
}
|
|
Append(']');
|
|
StackPop();
|
|
current_part_ = handle_scope.CloseAndEscape(current_part_);
|
|
return SUCCESS;
|
|
}
|
|
|
|
|
|
BasicJsonStringifier::Result BasicJsonStringifier::SerializeJSArraySlow(
|
|
Handle<JSArray> object, int length) {
|
|
for (int i = 0; i < length; i++) {
|
|
if (i > 0) Append(',');
|
|
Handle<Object> element = Object::GetElement(object, i);
|
|
if (element->IsUndefined()) {
|
|
AppendAscii("null");
|
|
} else {
|
|
Result result = SerializeElement(object->GetIsolate(), element, i);
|
|
if (result == SUCCESS) continue;
|
|
if (result == UNCHANGED) {
|
|
AppendAscii("null");
|
|
} else {
|
|
return result;
|
|
}
|
|
}
|
|
}
|
|
return SUCCESS;
|
|
}
|
|
|
|
|
|
BasicJsonStringifier::Result BasicJsonStringifier::SerializeJSObject(
|
|
Handle<JSObject> object) {
|
|
HandleScope handle_scope(isolate_);
|
|
Result stack_push = StackPush(object);
|
|
if (stack_push != SUCCESS) return stack_push;
|
|
if (object->IsJSGlobalProxy()) {
|
|
object = Handle<JSObject>(
|
|
JSObject::cast(object->GetPrototype()), isolate_);
|
|
ASSERT(object->IsGlobalObject());
|
|
}
|
|
|
|
Append('{');
|
|
bool comma = false;
|
|
|
|
if (object->HasFastProperties() &&
|
|
!object->HasIndexedInterceptor() &&
|
|
!object->HasNamedInterceptor() &&
|
|
object->elements()->length() == 0) {
|
|
Handle<Map> map(object->map());
|
|
for (int i = 0; i < map->NumberOfOwnDescriptors(); i++) {
|
|
Handle<Name> name(map->instance_descriptors()->GetKey(i), isolate_);
|
|
// TODO(rossberg): Should this throw?
|
|
if (!name->IsString()) continue;
|
|
Handle<String> key = Handle<String>::cast(name);
|
|
PropertyDetails details = map->instance_descriptors()->GetDetails(i);
|
|
if (details.IsDontEnum()) continue;
|
|
Handle<Object> property;
|
|
if (details.type() == FIELD && *map == object->map()) {
|
|
property = Handle<Object>(
|
|
object->RawFastPropertyAt(
|
|
map->instance_descriptors()->GetFieldIndex(i)),
|
|
isolate_);
|
|
} else {
|
|
property = GetProperty(isolate_, object, key);
|
|
if (property.is_null()) return EXCEPTION;
|
|
}
|
|
Result result = SerializeProperty(property, comma, key);
|
|
if (!comma && result == SUCCESS) comma = true;
|
|
if (result >= EXCEPTION) return result;
|
|
}
|
|
} else {
|
|
bool has_exception = false;
|
|
Handle<FixedArray> contents =
|
|
GetKeysInFixedArrayFor(object, LOCAL_ONLY, &has_exception);
|
|
if (has_exception) return EXCEPTION;
|
|
|
|
for (int i = 0; i < contents->length(); i++) {
|
|
Object* key = contents->get(i);
|
|
Handle<String> key_handle;
|
|
Handle<Object> property;
|
|
if (key->IsString()) {
|
|
key_handle = Handle<String>(String::cast(key), isolate_);
|
|
property = GetProperty(isolate_, object, key_handle);
|
|
} else {
|
|
ASSERT(key->IsNumber());
|
|
key_handle = factory_->NumberToString(Handle<Object>(key, isolate_));
|
|
uint32_t index;
|
|
if (key->IsSmi()) {
|
|
property = Object::GetElement(object, Smi::cast(key)->value());
|
|
} else if (key_handle->AsArrayIndex(&index)) {
|
|
property = Object::GetElement(object, index);
|
|
} else {
|
|
property = GetProperty(isolate_, object, key_handle);
|
|
}
|
|
}
|
|
if (property.is_null()) return EXCEPTION;
|
|
Result result = SerializeProperty(property, comma, key_handle);
|
|
if (!comma && result == SUCCESS) comma = true;
|
|
if (result >= EXCEPTION) return result;
|
|
}
|
|
}
|
|
|
|
Append('}');
|
|
StackPop();
|
|
current_part_ = handle_scope.CloseAndEscape(current_part_);
|
|
return SUCCESS;
|
|
}
|
|
|
|
|
|
void BasicJsonStringifier::ShrinkCurrentPart() {
|
|
ASSERT(current_index_ < part_length_);
|
|
current_part_ = SeqString::Truncate(Handle<SeqString>::cast(current_part_),
|
|
current_index_);
|
|
}
|
|
|
|
|
|
void BasicJsonStringifier::Extend() {
|
|
set_accumulator(factory_->NewConsString(accumulator(), current_part_));
|
|
if (part_length_ <= kMaxPartLength / kPartLengthGrowthFactor) {
|
|
part_length_ *= kPartLengthGrowthFactor;
|
|
}
|
|
if (is_ascii_) {
|
|
current_part_ = factory_->NewRawOneByteString(part_length_);
|
|
} else {
|
|
current_part_ = factory_->NewRawTwoByteString(part_length_);
|
|
}
|
|
current_index_ = 0;
|
|
}
|
|
|
|
|
|
void BasicJsonStringifier::ChangeEncoding() {
|
|
ShrinkCurrentPart();
|
|
set_accumulator(factory_->NewConsString(accumulator(), current_part_));
|
|
current_part_ = factory_->NewRawTwoByteString(part_length_);
|
|
current_index_ = 0;
|
|
is_ascii_ = false;
|
|
}
|
|
|
|
|
|
template <typename SrcChar, typename DestChar>
|
|
int BasicJsonStringifier::SerializeStringUnchecked_(const SrcChar* src,
|
|
DestChar* dest,
|
|
int length) {
|
|
DestChar* dest_start = dest;
|
|
|
|
// Assert that uc16 character is not truncated down to 8 bit.
|
|
// The <uc16, char> version of this method must not be called.
|
|
ASSERT(sizeof(*dest) >= sizeof(*src));
|
|
|
|
for (int i = 0; i < length; i++) {
|
|
SrcChar c = src[i];
|
|
if (DoNotEscape(c)) {
|
|
*(dest++) = static_cast<DestChar>(c);
|
|
} else {
|
|
const uint8_t* chars = reinterpret_cast<const uint8_t*>(
|
|
&JsonEscapeTable[c * kJsonEscapeTableEntrySize]);
|
|
while (*chars != '\0') *(dest++) = *(chars++);
|
|
}
|
|
}
|
|
|
|
return static_cast<int>(dest - dest_start);
|
|
}
|
|
|
|
|
|
template <bool is_ascii, typename Char>
|
|
void BasicJsonStringifier::SerializeString_(Handle<String> string) {
|
|
int length = string->length();
|
|
Append_<is_ascii, char>('"');
|
|
// We make a rough estimate to find out if the current string can be
|
|
// serialized without allocating a new string part. The worst case length of
|
|
// an escaped character is 6. Shifting the remainin string length right by 3
|
|
// is a more pessimistic estimate, but faster to calculate.
|
|
|
|
if (((part_length_ - current_index_) >> 3) > length) {
|
|
DisallowHeapAllocation no_gc;
|
|
Vector<const Char> vector = GetCharVector<Char>(string);
|
|
if (is_ascii) {
|
|
current_index_ += SerializeStringUnchecked_(
|
|
vector.start(),
|
|
SeqOneByteString::cast(*current_part_)->GetChars() + current_index_,
|
|
length);
|
|
} else {
|
|
current_index_ += SerializeStringUnchecked_(
|
|
vector.start(),
|
|
SeqTwoByteString::cast(*current_part_)->GetChars() + current_index_,
|
|
length);
|
|
}
|
|
} else {
|
|
String* string_location = NULL;
|
|
Vector<const Char> vector(NULL, 0);
|
|
for (int i = 0; i < length; i++) {
|
|
// If GC moved the string, we need to refresh the vector.
|
|
if (*string != string_location) {
|
|
DisallowHeapAllocation no_gc;
|
|
// This does not actually prevent the string from being relocated later.
|
|
vector = GetCharVector<Char>(string);
|
|
string_location = *string;
|
|
}
|
|
Char c = vector[i];
|
|
if (DoNotEscape(c)) {
|
|
Append_<is_ascii, Char>(c);
|
|
} else {
|
|
Append_<is_ascii, uint8_t>(reinterpret_cast<const uint8_t*>(
|
|
&JsonEscapeTable[c * kJsonEscapeTableEntrySize]));
|
|
}
|
|
}
|
|
}
|
|
|
|
Append_<is_ascii, uint8_t>('"');
|
|
}
|
|
|
|
|
|
template <>
|
|
bool BasicJsonStringifier::DoNotEscape(uint8_t c) {
|
|
return c >= '#' && c <= '~' && c != '\\';
|
|
}
|
|
|
|
|
|
template <>
|
|
bool BasicJsonStringifier::DoNotEscape(uint16_t c) {
|
|
return c >= '#' && c != '\\' && c != 0x7f;
|
|
}
|
|
|
|
|
|
template <>
|
|
Vector<const uint8_t> BasicJsonStringifier::GetCharVector(
|
|
Handle<String> string) {
|
|
String::FlatContent flat = string->GetFlatContent();
|
|
ASSERT(flat.IsAscii());
|
|
return flat.ToOneByteVector();
|
|
}
|
|
|
|
|
|
template <>
|
|
Vector<const uc16> BasicJsonStringifier::GetCharVector(Handle<String> string) {
|
|
String::FlatContent flat = string->GetFlatContent();
|
|
ASSERT(flat.IsTwoByte());
|
|
return flat.ToUC16Vector();
|
|
}
|
|
|
|
|
|
void BasicJsonStringifier::SerializeString(Handle<String> object) {
|
|
object = FlattenGetString(object);
|
|
if (is_ascii_) {
|
|
if (object->IsOneByteRepresentation()) {
|
|
SerializeString_<true, uint8_t>(object);
|
|
} else {
|
|
ChangeEncoding();
|
|
SerializeString(object);
|
|
}
|
|
} else {
|
|
if (object->IsOneByteRepresentation()) {
|
|
SerializeString_<false, uint8_t>(object);
|
|
} else {
|
|
SerializeString_<false, uc16>(object);
|
|
}
|
|
}
|
|
}
|
|
|
|
} } // namespace v8::internal
|
|
|
|
#endif // V8_JSON_STRINGIFIER_H_
|