b295d0b0af
Bug: v8:11165 Change-Id: I4b5160245d032f3b57167344b03553e5c0374ca2 Reviewed-on: https://chromium-review.googlesource.com/c/v8/v8/+/3275564 Reviewed-by: Michael Lippautz <mlippautz@chromium.org> Commit-Queue: Camillo Bruni <cbruni@chromium.org> Cr-Commit-Position: refs/heads/main@{#77895}
776 lines
27 KiB
C++
776 lines
27 KiB
C++
// Copyright 2021 the V8 project authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#ifndef INCLUDE_V8_OBJECT_H_
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#define INCLUDE_V8_OBJECT_H_
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#include "v8-local-handle.h" // NOLINT(build/include_directory)
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#include "v8-maybe.h" // NOLINT(build/include_directory)
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#include "v8-persistent-handle.h" // NOLINT(build/include_directory)
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#include "v8-primitive.h" // NOLINT(build/include_directory)
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#include "v8-traced-handle.h" // NOLINT(build/include_directory)
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#include "v8-value.h" // NOLINT(build/include_directory)
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#include "v8config.h" // NOLINT(build/include_directory)
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namespace v8 {
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class Array;
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class Function;
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class FunctionTemplate;
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template <typename T>
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class PropertyCallbackInfo;
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/**
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* A private symbol
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*
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* This is an experimental feature. Use at your own risk.
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*/
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class V8_EXPORT Private : public Data {
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public:
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/**
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* Returns the print name string of the private symbol, or undefined if none.
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*/
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Local<Value> Name() const;
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/**
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* Create a private symbol. If name is not empty, it will be the description.
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*/
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static Local<Private> New(Isolate* isolate,
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Local<String> name = Local<String>());
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/**
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* Retrieve a global private symbol. If a symbol with this name has not
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* been retrieved in the same isolate before, it is created.
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* Note that private symbols created this way are never collected, so
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* they should only be used for statically fixed properties.
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* Also, there is only one global name space for the names used as keys.
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* To minimize the potential for clashes, use qualified names as keys,
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* e.g., "Class#property".
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*/
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static Local<Private> ForApi(Isolate* isolate, Local<String> name);
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V8_INLINE static Private* Cast(Data* data);
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private:
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Private();
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static void CheckCast(Data* that);
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};
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/**
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* An instance of a Property Descriptor, see Ecma-262 6.2.4.
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*
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* Properties in a descriptor are present or absent. If you do not set
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* `enumerable`, `configurable`, and `writable`, they are absent. If `value`,
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* `get`, or `set` are absent, but you must specify them in the constructor, use
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* empty handles.
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*
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* Accessors `get` and `set` must be callable or undefined if they are present.
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*
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* \note Only query properties if they are present, i.e., call `x()` only if
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* `has_x()` returns true.
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*
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* \code
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* // var desc = {writable: false}
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* v8::PropertyDescriptor d(Local<Value>()), false);
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* d.value(); // error, value not set
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* if (d.has_writable()) {
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* d.writable(); // false
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* }
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*
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* // var desc = {value: undefined}
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* v8::PropertyDescriptor d(v8::Undefined(isolate));
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*
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* // var desc = {get: undefined}
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* v8::PropertyDescriptor d(v8::Undefined(isolate), Local<Value>()));
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* \endcode
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*/
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class V8_EXPORT PropertyDescriptor {
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public:
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// GenericDescriptor
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PropertyDescriptor();
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// DataDescriptor
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explicit PropertyDescriptor(Local<Value> value);
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// DataDescriptor with writable property
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PropertyDescriptor(Local<Value> value, bool writable);
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// AccessorDescriptor
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PropertyDescriptor(Local<Value> get, Local<Value> set);
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~PropertyDescriptor();
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Local<Value> value() const;
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bool has_value() const;
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Local<Value> get() const;
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bool has_get() const;
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Local<Value> set() const;
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bool has_set() const;
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void set_enumerable(bool enumerable);
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bool enumerable() const;
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bool has_enumerable() const;
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void set_configurable(bool configurable);
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bool configurable() const;
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bool has_configurable() const;
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bool writable() const;
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bool has_writable() const;
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struct PrivateData;
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PrivateData* get_private() const { return private_; }
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PropertyDescriptor(const PropertyDescriptor&) = delete;
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void operator=(const PropertyDescriptor&) = delete;
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private:
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PrivateData* private_;
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};
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/**
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* PropertyAttribute.
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*/
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enum PropertyAttribute {
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/** None. **/
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None = 0,
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/** ReadOnly, i.e., not writable. **/
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ReadOnly = 1 << 0,
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/** DontEnum, i.e., not enumerable. **/
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DontEnum = 1 << 1,
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/** DontDelete, i.e., not configurable. **/
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DontDelete = 1 << 2
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};
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/**
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* Accessor[Getter|Setter] are used as callback functions when
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* setting|getting a particular property. See Object and ObjectTemplate's
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* method SetAccessor.
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*/
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using AccessorGetterCallback =
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void (*)(Local<String> property, const PropertyCallbackInfo<Value>& info);
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using AccessorNameGetterCallback =
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void (*)(Local<Name> property, const PropertyCallbackInfo<Value>& info);
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using AccessorSetterCallback = void (*)(Local<String> property,
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Local<Value> value,
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const PropertyCallbackInfo<void>& info);
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using AccessorNameSetterCallback =
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void (*)(Local<Name> property, Local<Value> value,
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const PropertyCallbackInfo<void>& info);
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/**
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* Access control specifications.
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*
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* Some accessors should be accessible across contexts. These
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* accessors have an explicit access control parameter which specifies
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* the kind of cross-context access that should be allowed.
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*
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* TODO(dcarney): Remove PROHIBITS_OVERWRITING as it is now unused.
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*/
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enum AccessControl {
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DEFAULT = 0,
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ALL_CAN_READ = 1,
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ALL_CAN_WRITE = 1 << 1,
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PROHIBITS_OVERWRITING = 1 << 2
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};
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/**
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* Property filter bits. They can be or'ed to build a composite filter.
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*/
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enum PropertyFilter {
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ALL_PROPERTIES = 0,
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ONLY_WRITABLE = 1,
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ONLY_ENUMERABLE = 2,
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ONLY_CONFIGURABLE = 4,
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SKIP_STRINGS = 8,
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SKIP_SYMBOLS = 16
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};
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/**
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* Options for marking whether callbacks may trigger JS-observable side effects.
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* Side-effect-free callbacks are allowlisted during debug evaluation with
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* throwOnSideEffect. It applies when calling a Function, FunctionTemplate,
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* or an Accessor callback. For Interceptors, please see
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* PropertyHandlerFlags's kHasNoSideEffect.
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* Callbacks that only cause side effects to the receiver are allowlisted if
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* invoked on receiver objects that are created within the same debug-evaluate
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* call, as these objects are temporary and the side effect does not escape.
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*/
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enum class SideEffectType {
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kHasSideEffect,
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kHasNoSideEffect,
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kHasSideEffectToReceiver
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};
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/**
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* Keys/Properties filter enums:
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*
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* KeyCollectionMode limits the range of collected properties. kOwnOnly limits
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* the collected properties to the given Object only. kIncludesPrototypes will
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* include all keys of the objects's prototype chain as well.
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*/
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enum class KeyCollectionMode { kOwnOnly, kIncludePrototypes };
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/**
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* kIncludesIndices allows for integer indices to be collected, while
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* kSkipIndices will exclude integer indices from being collected.
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*/
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enum class IndexFilter { kIncludeIndices, kSkipIndices };
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/**
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* kConvertToString will convert integer indices to strings.
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* kKeepNumbers will return numbers for integer indices.
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*/
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enum class KeyConversionMode { kConvertToString, kKeepNumbers, kNoNumbers };
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/**
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* Integrity level for objects.
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*/
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enum class IntegrityLevel { kFrozen, kSealed };
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/**
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* A JavaScript object (ECMA-262, 4.3.3)
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*/
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class V8_EXPORT Object : public Value {
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public:
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/**
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* Set only return Just(true) or Empty(), so if it should never fail, use
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* result.Check().
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*/
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V8_WARN_UNUSED_RESULT Maybe<bool> Set(Local<Context> context,
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Local<Value> key, Local<Value> value);
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V8_WARN_UNUSED_RESULT Maybe<bool> Set(Local<Context> context, uint32_t index,
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Local<Value> value);
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// Implements CreateDataProperty (ECMA-262, 7.3.4).
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//
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// Defines a configurable, writable, enumerable property with the given value
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// on the object unless the property already exists and is not configurable
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// or the object is not extensible.
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//
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// Returns true on success.
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V8_WARN_UNUSED_RESULT Maybe<bool> CreateDataProperty(Local<Context> context,
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Local<Name> key,
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Local<Value> value);
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V8_WARN_UNUSED_RESULT Maybe<bool> CreateDataProperty(Local<Context> context,
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uint32_t index,
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Local<Value> value);
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// Implements DefineOwnProperty.
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//
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// In general, CreateDataProperty will be faster, however, does not allow
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// for specifying attributes.
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//
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// Returns true on success.
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V8_WARN_UNUSED_RESULT Maybe<bool> DefineOwnProperty(
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Local<Context> context, Local<Name> key, Local<Value> value,
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PropertyAttribute attributes = None);
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// Implements Object.DefineProperty(O, P, Attributes), see Ecma-262 19.1.2.4.
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//
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// The defineProperty function is used to add an own property or
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// update the attributes of an existing own property of an object.
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//
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// Both data and accessor descriptors can be used.
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//
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// In general, CreateDataProperty is faster, however, does not allow
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// for specifying attributes or an accessor descriptor.
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//
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// The PropertyDescriptor can change when redefining a property.
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//
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// Returns true on success.
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V8_WARN_UNUSED_RESULT Maybe<bool> DefineProperty(
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Local<Context> context, Local<Name> key, PropertyDescriptor& descriptor);
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V8_WARN_UNUSED_RESULT MaybeLocal<Value> Get(Local<Context> context,
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Local<Value> key);
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V8_WARN_UNUSED_RESULT MaybeLocal<Value> Get(Local<Context> context,
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uint32_t index);
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/**
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* Gets the property attributes of a property which can be None or
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* any combination of ReadOnly, DontEnum and DontDelete. Returns
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* None when the property doesn't exist.
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*/
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V8_WARN_UNUSED_RESULT Maybe<PropertyAttribute> GetPropertyAttributes(
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Local<Context> context, Local<Value> key);
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/**
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* Returns Object.getOwnPropertyDescriptor as per ES2016 section 19.1.2.6.
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*/
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V8_WARN_UNUSED_RESULT MaybeLocal<Value> GetOwnPropertyDescriptor(
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Local<Context> context, Local<Name> key);
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/**
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* Object::Has() calls the abstract operation HasProperty(O, P) described
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* in ECMA-262, 7.3.10. Has() returns
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* true, if the object has the property, either own or on the prototype chain.
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* Interceptors, i.e., PropertyQueryCallbacks, are called if present.
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*
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* Has() has the same side effects as JavaScript's `variable in object`.
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* For example, calling Has() on a revoked proxy will throw an exception.
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*
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* \note Has() converts the key to a name, which possibly calls back into
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* JavaScript.
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*
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* See also v8::Object::HasOwnProperty() and
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* v8::Object::HasRealNamedProperty().
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*/
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V8_WARN_UNUSED_RESULT Maybe<bool> Has(Local<Context> context,
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Local<Value> key);
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V8_WARN_UNUSED_RESULT Maybe<bool> Delete(Local<Context> context,
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Local<Value> key);
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V8_WARN_UNUSED_RESULT Maybe<bool> Has(Local<Context> context, uint32_t index);
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V8_WARN_UNUSED_RESULT Maybe<bool> Delete(Local<Context> context,
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uint32_t index);
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/**
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* Note: SideEffectType affects the getter only, not the setter.
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*/
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V8_WARN_UNUSED_RESULT Maybe<bool> SetAccessor(
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Local<Context> context, Local<Name> name,
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AccessorNameGetterCallback getter,
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AccessorNameSetterCallback setter = nullptr,
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MaybeLocal<Value> data = MaybeLocal<Value>(),
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AccessControl settings = DEFAULT, PropertyAttribute attribute = None,
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SideEffectType getter_side_effect_type = SideEffectType::kHasSideEffect,
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SideEffectType setter_side_effect_type = SideEffectType::kHasSideEffect);
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void SetAccessorProperty(Local<Name> name, Local<Function> getter,
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Local<Function> setter = Local<Function>(),
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PropertyAttribute attribute = None,
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AccessControl settings = DEFAULT);
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/**
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* Sets a native data property like Template::SetNativeDataProperty, but
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* this method sets on this object directly.
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*/
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V8_WARN_UNUSED_RESULT Maybe<bool> SetNativeDataProperty(
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Local<Context> context, Local<Name> name,
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AccessorNameGetterCallback getter,
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AccessorNameSetterCallback setter = nullptr,
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Local<Value> data = Local<Value>(), PropertyAttribute attributes = None,
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SideEffectType getter_side_effect_type = SideEffectType::kHasSideEffect,
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SideEffectType setter_side_effect_type = SideEffectType::kHasSideEffect);
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/**
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* Attempts to create a property with the given name which behaves like a data
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* property, except that the provided getter is invoked (and provided with the
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* data value) to supply its value the first time it is read. After the
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* property is accessed once, it is replaced with an ordinary data property.
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*
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* Analogous to Template::SetLazyDataProperty.
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*/
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V8_WARN_UNUSED_RESULT Maybe<bool> SetLazyDataProperty(
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Local<Context> context, Local<Name> name,
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AccessorNameGetterCallback getter, Local<Value> data = Local<Value>(),
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PropertyAttribute attributes = None,
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SideEffectType getter_side_effect_type = SideEffectType::kHasSideEffect,
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SideEffectType setter_side_effect_type = SideEffectType::kHasSideEffect);
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/**
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* Functionality for private properties.
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* This is an experimental feature, use at your own risk.
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* Note: Private properties are not inherited. Do not rely on this, since it
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* may change.
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*/
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Maybe<bool> HasPrivate(Local<Context> context, Local<Private> key);
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Maybe<bool> SetPrivate(Local<Context> context, Local<Private> key,
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Local<Value> value);
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Maybe<bool> DeletePrivate(Local<Context> context, Local<Private> key);
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MaybeLocal<Value> GetPrivate(Local<Context> context, Local<Private> key);
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/**
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* Returns an array containing the names of the enumerable properties
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* of this object, including properties from prototype objects. The
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* array returned by this method contains the same values as would
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* be enumerated by a for-in statement over this object.
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*/
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V8_WARN_UNUSED_RESULT MaybeLocal<Array> GetPropertyNames(
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Local<Context> context);
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V8_WARN_UNUSED_RESULT MaybeLocal<Array> GetPropertyNames(
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Local<Context> context, KeyCollectionMode mode,
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PropertyFilter property_filter, IndexFilter index_filter,
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KeyConversionMode key_conversion = KeyConversionMode::kKeepNumbers);
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/**
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* This function has the same functionality as GetPropertyNames but
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* the returned array doesn't contain the names of properties from
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* prototype objects.
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*/
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V8_WARN_UNUSED_RESULT MaybeLocal<Array> GetOwnPropertyNames(
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Local<Context> context);
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/**
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* Returns an array containing the names of the filtered properties
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* of this object, including properties from prototype objects. The
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* array returned by this method contains the same values as would
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* be enumerated by a for-in statement over this object.
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*/
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V8_WARN_UNUSED_RESULT MaybeLocal<Array> GetOwnPropertyNames(
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Local<Context> context, PropertyFilter filter,
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KeyConversionMode key_conversion = KeyConversionMode::kKeepNumbers);
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/**
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* Get the prototype object. This does not skip objects marked to
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* be skipped by __proto__ and it does not consult the security
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* handler.
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*/
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Local<Value> GetPrototype();
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/**
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* Set the prototype object. This does not skip objects marked to
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* be skipped by __proto__ and it does not consult the security
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* handler.
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*/
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V8_WARN_UNUSED_RESULT Maybe<bool> SetPrototype(Local<Context> context,
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Local<Value> prototype);
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/**
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* Finds an instance of the given function template in the prototype
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* chain.
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*/
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Local<Object> FindInstanceInPrototypeChain(Local<FunctionTemplate> tmpl);
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/**
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* Call builtin Object.prototype.toString on this object.
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* This is different from Value::ToString() that may call
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* user-defined toString function. This one does not.
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*/
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V8_WARN_UNUSED_RESULT MaybeLocal<String> ObjectProtoToString(
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Local<Context> context);
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/**
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* Returns the name of the function invoked as a constructor for this object.
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*/
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Local<String> GetConstructorName();
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/**
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* Sets the integrity level of the object.
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*/
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Maybe<bool> SetIntegrityLevel(Local<Context> context, IntegrityLevel level);
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/** Gets the number of internal fields for this Object. */
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int InternalFieldCount() const;
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/** Same as above, but works for PersistentBase. */
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V8_INLINE static int InternalFieldCount(
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const PersistentBase<Object>& object) {
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return object.val_->InternalFieldCount();
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}
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/** Same as above, but works for BasicTracedReference. */
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V8_INLINE static int InternalFieldCount(
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const BasicTracedReference<Object>& object) {
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return object->InternalFieldCount();
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}
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/** Gets the value from an internal field. */
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V8_INLINE Local<Value> GetInternalField(int index);
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/** Sets the value in an internal field. */
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void SetInternalField(int index, Local<Value> value);
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/**
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* Gets a 2-byte-aligned native pointer from an internal field. This field
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* must have been set by SetAlignedPointerInInternalField, everything else
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* leads to undefined behavior.
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*/
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V8_INLINE void* GetAlignedPointerFromInternalField(int index);
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/** Same as above, but works for PersistentBase. */
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V8_INLINE static void* GetAlignedPointerFromInternalField(
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const PersistentBase<Object>& object, int index) {
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return object.val_->GetAlignedPointerFromInternalField(index);
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}
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/** Same as above, but works for TracedGlobal. */
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V8_INLINE static void* GetAlignedPointerFromInternalField(
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const BasicTracedReference<Object>& object, int index) {
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return object->GetAlignedPointerFromInternalField(index);
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}
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/**
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* Sets a 2-byte-aligned native pointer in an internal field. To retrieve such
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|
* a field, GetAlignedPointerFromInternalField must be used, everything else
|
|
* leads to undefined behavior.
|
|
*/
|
|
void SetAlignedPointerInInternalField(int index, void* value);
|
|
void SetAlignedPointerInInternalFields(int argc, int indices[],
|
|
void* values[]);
|
|
|
|
/**
|
|
* HasOwnProperty() is like JavaScript's Object.prototype.hasOwnProperty().
|
|
*
|
|
* See also v8::Object::Has() and v8::Object::HasRealNamedProperty().
|
|
*/
|
|
V8_WARN_UNUSED_RESULT Maybe<bool> HasOwnProperty(Local<Context> context,
|
|
Local<Name> key);
|
|
V8_WARN_UNUSED_RESULT Maybe<bool> HasOwnProperty(Local<Context> context,
|
|
uint32_t index);
|
|
/**
|
|
* Use HasRealNamedProperty() if you want to check if an object has an own
|
|
* property without causing side effects, i.e., without calling interceptors.
|
|
*
|
|
* This function is similar to v8::Object::HasOwnProperty(), but it does not
|
|
* call interceptors.
|
|
*
|
|
* \note Consider using non-masking interceptors, i.e., the interceptors are
|
|
* not called if the receiver has the real named property. See
|
|
* `v8::PropertyHandlerFlags::kNonMasking`.
|
|
*
|
|
* See also v8::Object::Has().
|
|
*/
|
|
V8_WARN_UNUSED_RESULT Maybe<bool> HasRealNamedProperty(Local<Context> context,
|
|
Local<Name> key);
|
|
V8_WARN_UNUSED_RESULT Maybe<bool> HasRealIndexedProperty(
|
|
Local<Context> context, uint32_t index);
|
|
V8_WARN_UNUSED_RESULT Maybe<bool> HasRealNamedCallbackProperty(
|
|
Local<Context> context, Local<Name> key);
|
|
|
|
/**
|
|
* If result.IsEmpty() no real property was located in the prototype chain.
|
|
* This means interceptors in the prototype chain are not called.
|
|
*/
|
|
V8_WARN_UNUSED_RESULT MaybeLocal<Value> GetRealNamedPropertyInPrototypeChain(
|
|
Local<Context> context, Local<Name> key);
|
|
|
|
/**
|
|
* Gets the property attributes of a real property in the prototype chain,
|
|
* which can be None or any combination of ReadOnly, DontEnum and DontDelete.
|
|
* Interceptors in the prototype chain are not called.
|
|
*/
|
|
V8_WARN_UNUSED_RESULT Maybe<PropertyAttribute>
|
|
GetRealNamedPropertyAttributesInPrototypeChain(Local<Context> context,
|
|
Local<Name> key);
|
|
|
|
/**
|
|
* If result.IsEmpty() no real property was located on the object or
|
|
* in the prototype chain.
|
|
* This means interceptors in the prototype chain are not called.
|
|
*/
|
|
V8_WARN_UNUSED_RESULT MaybeLocal<Value> GetRealNamedProperty(
|
|
Local<Context> context, Local<Name> key);
|
|
|
|
/**
|
|
* Gets the property attributes of a real property which can be
|
|
* None or any combination of ReadOnly, DontEnum and DontDelete.
|
|
* Interceptors in the prototype chain are not called.
|
|
*/
|
|
V8_WARN_UNUSED_RESULT Maybe<PropertyAttribute> GetRealNamedPropertyAttributes(
|
|
Local<Context> context, Local<Name> key);
|
|
|
|
/** Tests for a named lookup interceptor.*/
|
|
bool HasNamedLookupInterceptor() const;
|
|
|
|
/** Tests for an index lookup interceptor.*/
|
|
bool HasIndexedLookupInterceptor() const;
|
|
|
|
/**
|
|
* Returns the identity hash for this object. The current implementation
|
|
* uses a hidden property on the object to store the identity hash.
|
|
*
|
|
* The return value will never be 0. Also, it is not guaranteed to be
|
|
* unique.
|
|
*/
|
|
int GetIdentityHash();
|
|
|
|
/**
|
|
* Clone this object with a fast but shallow copy. Values will point
|
|
* to the same values as the original object.
|
|
*/
|
|
// TODO(dcarney): take an isolate and optionally bail out?
|
|
Local<Object> Clone();
|
|
|
|
/**
|
|
* Returns the context in which the object was created.
|
|
*/
|
|
V8_DEPRECATE_SOON("Use MaybeLocal<Context> GetCreationContext()")
|
|
Local<Context> CreationContext();
|
|
MaybeLocal<Context> GetCreationContext();
|
|
|
|
/**
|
|
* Shortcut for GetCreationContext().ToLocalChecked().
|
|
**/
|
|
Local<Context> GetCreationContextChecked();
|
|
|
|
/** Same as above, but works for Persistents */
|
|
V8_DEPRECATED(
|
|
"Use MaybeLocal<Context> GetCreationContext(const "
|
|
"PersistentBase<Object>& object)")
|
|
static Local<Context> CreationContext(const PersistentBase<Object>& object);
|
|
V8_INLINE static MaybeLocal<Context> GetCreationContext(
|
|
const PersistentBase<Object>& object) {
|
|
return object.val_->GetCreationContext();
|
|
}
|
|
|
|
/**
|
|
* Checks whether a callback is set by the
|
|
* ObjectTemplate::SetCallAsFunctionHandler method.
|
|
* When an Object is callable this method returns true.
|
|
*/
|
|
bool IsCallable() const;
|
|
|
|
/**
|
|
* True if this object is a constructor.
|
|
*/
|
|
bool IsConstructor() const;
|
|
|
|
/**
|
|
* True if this object can carry information relevant to the embedder in its
|
|
* embedder fields, false otherwise. This is generally true for objects
|
|
* constructed through function templates but also holds for other types where
|
|
* V8 automatically adds internal fields at compile time, such as e.g.
|
|
* v8::ArrayBuffer.
|
|
*/
|
|
bool IsApiWrapper() const;
|
|
|
|
/**
|
|
* True if this object was created from an object template which was marked
|
|
* as undetectable. See v8::ObjectTemplate::MarkAsUndetectable for more
|
|
* information.
|
|
*/
|
|
bool IsUndetectable() const;
|
|
|
|
/**
|
|
* Call an Object as a function if a callback is set by the
|
|
* ObjectTemplate::SetCallAsFunctionHandler method.
|
|
*/
|
|
V8_WARN_UNUSED_RESULT MaybeLocal<Value> CallAsFunction(Local<Context> context,
|
|
Local<Value> recv,
|
|
int argc,
|
|
Local<Value> argv[]);
|
|
|
|
/**
|
|
* Call an Object as a constructor if a callback is set by the
|
|
* ObjectTemplate::SetCallAsFunctionHandler method.
|
|
* Note: This method behaves like the Function::NewInstance method.
|
|
*/
|
|
V8_WARN_UNUSED_RESULT MaybeLocal<Value> CallAsConstructor(
|
|
Local<Context> context, int argc, Local<Value> argv[]);
|
|
|
|
/**
|
|
* Return the isolate to which the Object belongs to.
|
|
*/
|
|
Isolate* GetIsolate();
|
|
|
|
/**
|
|
* If this object is a Set, Map, WeakSet or WeakMap, this returns a
|
|
* representation of the elements of this object as an array.
|
|
* If this object is a SetIterator or MapIterator, this returns all
|
|
* elements of the underlying collection, starting at the iterator's current
|
|
* position.
|
|
* For other types, this will return an empty MaybeLocal<Array> (without
|
|
* scheduling an exception).
|
|
*/
|
|
MaybeLocal<Array> PreviewEntries(bool* is_key_value);
|
|
|
|
static Local<Object> New(Isolate* isolate);
|
|
|
|
/**
|
|
* Creates a JavaScript object with the given properties, and
|
|
* a the given prototype_or_null (which can be any JavaScript
|
|
* value, and if it's null, the newly created object won't have
|
|
* a prototype at all). This is similar to Object.create().
|
|
* All properties will be created as enumerable, configurable
|
|
* and writable properties.
|
|
*/
|
|
static Local<Object> New(Isolate* isolate, Local<Value> prototype_or_null,
|
|
Local<Name>* names, Local<Value>* values,
|
|
size_t length);
|
|
|
|
V8_INLINE static Object* Cast(Value* obj);
|
|
|
|
/**
|
|
* Support for TC39 "dynamic code brand checks" proposal.
|
|
*
|
|
* This API allows to query whether an object was constructed from a
|
|
* "code like" ObjectTemplate.
|
|
*
|
|
* See also: v8::ObjectTemplate::SetCodeLike
|
|
*/
|
|
bool IsCodeLike(Isolate* isolate) const;
|
|
|
|
private:
|
|
Object();
|
|
static void CheckCast(Value* obj);
|
|
Local<Value> SlowGetInternalField(int index);
|
|
void* SlowGetAlignedPointerFromInternalField(int index);
|
|
};
|
|
|
|
// --- Implementation ---
|
|
|
|
Local<Value> Object::GetInternalField(int index) {
|
|
#ifndef V8_ENABLE_CHECKS
|
|
using A = internal::Address;
|
|
using I = internal::Internals;
|
|
A obj = *reinterpret_cast<A*>(this);
|
|
// Fast path: If the object is a plain JSObject, which is the common case, we
|
|
// know where to find the internal fields and can return the value directly.
|
|
int instance_type = I::GetInstanceType(obj);
|
|
if (v8::internal::CanHaveInternalField(instance_type)) {
|
|
int offset = I::kJSObjectHeaderSize + (I::kEmbedderDataSlotSize * index);
|
|
A value = I::ReadRawField<A>(obj, offset);
|
|
#ifdef V8_COMPRESS_POINTERS
|
|
// We read the full pointer value and then decompress it in order to avoid
|
|
// dealing with potential endiannes issues.
|
|
value = I::DecompressTaggedAnyField(obj, static_cast<uint32_t>(value));
|
|
#endif
|
|
internal::Isolate* isolate =
|
|
internal::IsolateFromNeverReadOnlySpaceObject(obj);
|
|
A* result = HandleScope::CreateHandle(isolate, value);
|
|
return Local<Value>(reinterpret_cast<Value*>(result));
|
|
}
|
|
#endif
|
|
return SlowGetInternalField(index);
|
|
}
|
|
|
|
void* Object::GetAlignedPointerFromInternalField(int index) {
|
|
#ifndef V8_ENABLE_CHECKS
|
|
using A = internal::Address;
|
|
using I = internal::Internals;
|
|
A obj = *reinterpret_cast<A*>(this);
|
|
// Fast path: If the object is a plain JSObject, which is the common case, we
|
|
// know where to find the internal fields and can return the value directly.
|
|
auto instance_type = I::GetInstanceType(obj);
|
|
if (v8::internal::CanHaveInternalField(instance_type)) {
|
|
int offset = I::kJSObjectHeaderSize + (I::kEmbedderDataSlotSize * index);
|
|
#ifdef V8_HEAP_SANDBOX
|
|
offset += I::kEmbedderDataSlotRawPayloadOffset;
|
|
#endif
|
|
internal::Isolate* isolate = I::GetIsolateForHeapSandbox(obj);
|
|
A value = I::ReadExternalPointerField(
|
|
isolate, obj, offset, internal::kEmbedderDataSlotPayloadTag);
|
|
return reinterpret_cast<void*>(value);
|
|
}
|
|
#endif
|
|
return SlowGetAlignedPointerFromInternalField(index);
|
|
}
|
|
|
|
Private* Private::Cast(Data* data) {
|
|
#ifdef V8_ENABLE_CHECKS
|
|
CheckCast(data);
|
|
#endif
|
|
return reinterpret_cast<Private*>(data);
|
|
}
|
|
|
|
Object* Object::Cast(v8::Value* value) {
|
|
#ifdef V8_ENABLE_CHECKS
|
|
CheckCast(value);
|
|
#endif
|
|
return static_cast<Object*>(value);
|
|
}
|
|
|
|
} // namespace v8
|
|
|
|
#endif // INCLUDE_V8_OBJECT_H_
|