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			374 lines
		
	
	
	
		
			13 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			374 lines
		
	
	
	
		
			13 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| /*
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|  * Copyright (c) 2020, Andreas Kling <kling@serenityos.org>
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|  * All rights reserved.
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|  *
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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 met:
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|  *
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|  * 1. Redistributions of source code must retain the above copyright notice, this
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|  *    list of conditions and the following disclaimer.
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|  *
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|  * 2. Redistributions in binary form must reproduce the above copyright notice,
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|  *    this list of conditions and the following disclaimer in the documentation
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|  *    and/or other materials provided with the distribution.
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|  *
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|  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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|  * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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|  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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|  * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
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|  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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|  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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|  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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|  * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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|  * OR TORT (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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|  */
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| 
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| #include <AK/String.h>
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| #include <LibJS/Heap/Heap.h>
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| #include <LibJS/Interpreter.h>
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| #include <LibJS/Runtime/Array.h>
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| #include <LibJS/Runtime/Error.h>
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| #include <LibJS/Runtime/GlobalObject.h>
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| #include <LibJS/Runtime/NativeFunction.h>
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| #include <LibJS/Runtime/NativeProperty.h>
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| #include <LibJS/Runtime/Object.h>
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| #include <LibJS/Runtime/Shape.h>
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| #include <LibJS/Runtime/StringObject.h>
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| #include <LibJS/Runtime/Value.h>
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| 
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| namespace JS {
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| 
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| Object* Object::create_empty(Interpreter&, GlobalObject& global_object)
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| {
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|     return global_object.heap().allocate<Object>(global_object.object_prototype());
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| }
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| 
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| Object::Object(Object* prototype)
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| {
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|     if (prototype) {
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|         m_shape = interpreter().global_object().empty_object_shape();
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|         set_prototype(prototype);
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|     } else {
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|         m_shape = interpreter().heap().allocate<Shape>();
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|     }
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| }
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| 
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| Object::~Object()
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| {
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| }
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| 
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| Object* Object::prototype()
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| {
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|     return shape().prototype();
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| }
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| 
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| const Object* Object::prototype() const
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| {
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|     return shape().prototype();
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| }
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| 
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| void Object::set_prototype(Object* new_prototype)
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| {
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|     if (prototype() == new_prototype)
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|         return;
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|     if (shape().is_unique()) {
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|         shape().set_prototype_without_transition(new_prototype);
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|         return;
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|     }
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|     m_shape = m_shape->create_prototype_transition(new_prototype);
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| }
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| 
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| bool Object::has_prototype(const Object* prototype) const
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| {
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|     for (auto* object = this->prototype(); object; object = object->prototype()) {
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|         if (object == prototype)
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|             return true;
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|     }
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|     return false;
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| }
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| 
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| Value Object::get_own_property(const Object& this_object, const FlyString& property_name) const
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| {
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|     auto metadata = shape().lookup(property_name);
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|     if (!metadata.has_value())
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|         return {};
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| 
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|     auto value_here = m_storage[metadata.value().offset];
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|     ASSERT(!value_here.is_empty());
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|     if (value_here.is_object() && value_here.as_object().is_native_property()) {
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|         auto& native_property = static_cast<const NativeProperty&>(value_here.as_object());
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|         auto& interpreter = const_cast<Object*>(this)->interpreter();
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|         auto& call_frame = interpreter.push_call_frame();
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|         call_frame.this_value = const_cast<Object*>(&this_object);
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|         auto result = native_property.get(interpreter);
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|         interpreter.pop_call_frame();
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|         return result;
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|     }
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|     return value_here;
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| }
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| 
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| void Object::set_shape(Shape& new_shape)
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| {
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|     m_storage.resize(new_shape.property_count());
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|     m_shape = &new_shape;
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| }
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| 
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| void Object::put_own_property(Object& this_object, const FlyString& property_name, u8 attributes, Value value, PutOwnPropertyMode mode)
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| {
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|     auto metadata = shape().lookup(property_name);
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|     bool new_property = !metadata.has_value();
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| 
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|     if (new_property) {
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|         if (m_shape->is_unique()) {
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|             m_shape->add_property_to_unique_shape(property_name, attributes);
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|             m_storage.resize(m_shape->property_count());
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|         } else {
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|             set_shape(*m_shape->create_put_transition(property_name, attributes));
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|         }
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|         metadata = shape().lookup(property_name);
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|         ASSERT(metadata.has_value());
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|     }
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| 
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|     if (!new_property && mode == PutOwnPropertyMode::DefineProperty && !(metadata.value().attributes & Attribute::Configurable) && attributes != metadata.value().attributes) {
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|         dbg() << "Disallow reconfig of non-configurable property";
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|         interpreter().throw_exception<TypeError>(String::format("Cannot redefine property '%s'", property_name.characters()));
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|         return;
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|     }
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| 
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|     if (mode == PutOwnPropertyMode::DefineProperty && attributes != metadata.value().attributes) {
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|         if (m_shape->is_unique()) {
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|             m_shape->reconfigure_property_in_unique_shape(property_name, attributes);
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|         } else {
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|             set_shape(*m_shape->create_configure_transition(property_name, attributes));
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|         }
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|         metadata = shape().lookup(property_name);
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| 
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|         dbg() << "Reconfigured property " << property_name << ", new shape says offset is " << metadata.value().offset << " and my storage capacity is " << m_storage.size();
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|     }
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| 
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|     if (!new_property && mode == PutOwnPropertyMode::Put && !(metadata.value().attributes & Attribute::Writable)) {
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|         dbg() << "Disallow write to non-writable property";
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|         return;
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|     }
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| 
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|     if (value.is_empty())
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|         return;
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| 
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|     auto value_here = m_storage[metadata.value().offset];
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|     if (value_here.is_object() && value_here.as_object().is_native_property()) {
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|         auto& native_property = static_cast<NativeProperty&>(value_here.as_object());
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|         auto& interpreter = const_cast<Object*>(this)->interpreter();
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|         auto& call_frame = interpreter.push_call_frame();
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|         call_frame.this_value = &this_object;
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|         native_property.set(interpreter, value);
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|         interpreter.pop_call_frame();
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|     } else {
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|         m_storage[metadata.value().offset] = value;
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|     }
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| }
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| 
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| Value Object::delete_property(PropertyName property_name)
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| {
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|     ASSERT(property_name.is_valid());
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|     if (property_name.is_number()) {
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|         if (property_name.as_number() < static_cast<i32>(elements().size())) {
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|             elements()[property_name.as_number()] = {};
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|             return Value(true);
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|         }
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|         return Value(true);
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|     }
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|     auto metadata = shape().lookup(property_name.as_string());
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|     if (!metadata.has_value())
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|         return Value(true);
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|     if (!(metadata.value().attributes & Attribute::Configurable))
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|         return Value(false);
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| 
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|     size_t deleted_offset = metadata.value().offset;
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| 
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|     ensure_shape_is_unique();
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| 
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|     shape().remove_property_from_unique_shape(property_name.as_string(), deleted_offset);
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|     m_storage.remove(deleted_offset);
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|     return Value(true);
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| }
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| 
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| void Object::ensure_shape_is_unique()
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| {
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|     if (shape().is_unique())
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|         return;
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| 
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|     m_shape = m_shape->create_unique_clone();
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| }
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| 
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| Value Object::get_by_index(i32 property_index) const
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| {
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|     if (property_index < 0)
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|         return get(String::number(property_index));
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| 
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|     const Object* object = this;
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|     while (object) {
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|         if (static_cast<size_t>(property_index) < object->m_elements.size()) {
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|             auto value = object->m_elements[property_index];
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|             if (value.is_empty())
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|                 return {};
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|             return value;
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|         }
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|         object = object->prototype();
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|     }
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|     return {};
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| }
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| 
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| Value Object::get(const FlyString& property_name) const
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| {
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|     bool ok;
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|     i32 property_index = property_name.to_int(ok);
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|     if (ok && property_index >= 0)
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|         return get_by_index(property_index);
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| 
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|     const Object* object = this;
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|     while (object) {
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|         auto value = object->get_own_property(*this, property_name);
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|         if (!value.is_empty())
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|             return value;
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|         object = object->prototype();
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|     }
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|     return {};
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| }
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| 
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| Value Object::get(PropertyName property_name) const
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| {
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|     if (property_name.is_number())
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|         return get_by_index(property_name.as_number());
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|     return get(property_name.as_string());
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| }
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| 
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| void Object::put_by_index(i32 property_index, Value value, u8 attributes)
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| {
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|     ASSERT(!value.is_empty());
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|     if (property_index < 0)
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|         return put(String::number(property_index), value, attributes);
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|     // FIXME: Implement some kind of sparse storage for arrays with huge indices.
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|     // Also: Take attributes into account here
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|     if (static_cast<size_t>(property_index) >= m_elements.size())
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|         m_elements.resize(property_index + 1);
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|     m_elements[property_index] = value;
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| }
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| 
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| void Object::put(const FlyString& property_name, Value value, u8 attributes)
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| {
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|     ASSERT(!value.is_empty());
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|     bool ok;
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|     i32 property_index = property_name.to_int(ok);
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|     if (ok && property_index >= 0)
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|         return put_by_index(property_index, value, attributes);
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| 
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|     // If there's a setter in the prototype chain, we go to the setter.
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|     // Otherwise, it goes in the own property storage.
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|     Object* object = this;
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|     while (object) {
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|         auto metadata = object->shape().lookup(property_name);
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|         if (metadata.has_value()) {
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|             auto value_here = object->m_storage[metadata.value().offset];
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|             if (value_here.is_object() && value_here.as_object().is_native_property()) {
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|                 auto& native_property = static_cast<NativeProperty&>(value_here.as_object());
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|                 auto& interpreter = const_cast<Object*>(this)->interpreter();
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|                 auto& call_frame = interpreter.push_call_frame();
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|                 call_frame.this_value = this;
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|                 native_property.set(interpreter, value);
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|                 interpreter.pop_call_frame();
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|                 return;
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|             }
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|         }
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|         object = object->prototype();
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|     }
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|     put_own_property(*this, property_name, attributes, value, PutOwnPropertyMode::Put);
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| }
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| 
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| void Object::put(PropertyName property_name, Value value, u8 attributes)
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| {
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|     if (property_name.is_number())
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|         return put_by_index(property_name.as_number(), value, attributes);
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|     return put(property_name.as_string(), value, attributes);
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| }
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| 
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| void Object::put_native_function(const FlyString& property_name, AK::Function<Value(Interpreter&)> native_function, i32 length, u8 attributes)
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| {
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|     auto* function = NativeFunction::create(interpreter(), interpreter().global_object(), property_name, move(native_function));
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|     function->put("length", Value(length), Attribute::Configurable);
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|     put(property_name, function, attributes);
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| }
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| 
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| void Object::put_native_property(const FlyString& property_name, AK::Function<Value(Interpreter&)> getter, AK::Function<void(Interpreter&, Value)> setter, u8 attributes)
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| {
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|     put(property_name, heap().allocate<NativeProperty>(move(getter), move(setter)), attributes);
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| }
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| 
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| void Object::visit_children(Cell::Visitor& visitor)
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| {
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|     Cell::visit_children(visitor);
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|     visitor.visit(m_shape);
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| 
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|     for (auto& value : m_storage)
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|         visitor.visit(value);
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| 
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|     for (auto& value : m_elements)
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|         visitor.visit(value);
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| }
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| 
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| bool Object::has_own_property(const FlyString& property_name) const
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| {
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|     bool ok;
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|     i32 property_index = property_name.to_int(ok);
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|     if (ok && property_index >= 0) {
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|         if (static_cast<size_t>(property_index) >= m_elements.size())
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|             return false;
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|         return !m_elements[property_index].is_empty();
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|     }
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|     return shape().lookup(property_name).has_value();
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| }
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| 
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| Value Object::to_primitive(PreferredType preferred_type) const
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| {
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|     Value result = js_undefined();
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| 
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|     switch (preferred_type) {
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|     case PreferredType::Default:
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|     case PreferredType::Number: {
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|         result = value_of();
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|         if (result.is_object()) {
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|             result = to_string();
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|         }
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|         break;
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|     }
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|     case PreferredType::String: {
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|         result = to_string();
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|         if (result.is_object())
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|             result = value_of();
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|         break;
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|     }
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|     }
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| 
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|     ASSERT(!result.is_object());
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|     return result;
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| }
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| 
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| Value Object::to_string() const
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| {
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|     auto to_string_property = get("toString");
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|     if (!to_string_property.is_empty()
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|         && to_string_property.is_object()
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|         && to_string_property.as_object().is_function()) {
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|         auto& to_string_function = static_cast<Function&>(to_string_property.as_object());
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|         auto& interpreter = const_cast<Object*>(this)->interpreter();
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|         auto to_string_result = interpreter.call(to_string_function, const_cast<Object*>(this));
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|         if (to_string_result.is_object())
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|             interpreter.throw_exception<TypeError>("Cannot convert object to string");
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|         if (interpreter.exception())
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|             return {};
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|         return js_string(heap(), to_string_result.to_string());
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|     }
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|     return js_string(heap(), String::format("[object %s]", class_name()));
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| }
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| 
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| }
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