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			316 lines
		
	
	
	
		
			8.6 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			316 lines
		
	
	
	
		
			8.6 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| /*
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|  * Copyright (c) 2020, Matthew Olsson <mattco@serenityos.org>
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|  *
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|  * SPDX-License-Identifier: BSD-2-Clause
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|  */
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| 
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| #include <AK/QuickSort.h>
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| #include <LibJS/Runtime/Accessor.h>
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| #include <LibJS/Runtime/IndexedProperties.h>
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| 
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| namespace JS {
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| 
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| constexpr size_t const SPARSE_ARRAY_HOLE_THRESHOLD = 200;
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| constexpr size_t const LENGTH_SETTER_GENERIC_STORAGE_THRESHOLD = 4 * MiB;
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| 
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| SimpleIndexedPropertyStorage::SimpleIndexedPropertyStorage(Vector<Value>&& initial_values)
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|     : IndexedPropertyStorage(IsSimpleStorage::Yes)
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|     , m_array_size(initial_values.size())
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|     , m_packed_elements(move(initial_values))
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| {
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| }
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| 
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| bool SimpleIndexedPropertyStorage::has_index(u32 index) const
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| {
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|     return inline_has_index(index);
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| }
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| 
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| Optional<ValueAndAttributes> SimpleIndexedPropertyStorage::get(u32 index) const
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| {
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|     return inline_get(index);
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| }
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| 
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| void SimpleIndexedPropertyStorage::grow_storage_if_needed()
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| {
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|     if (m_array_size <= m_packed_elements.size())
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|         return;
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| 
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|     if (m_array_size <= m_packed_elements.capacity()) {
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|         m_packed_elements.resize_and_keep_capacity(m_array_size);
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|     } else {
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|         // When the array is actually full grow storage by 25% at a time.
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|         m_packed_elements.resize_and_keep_capacity(m_array_size + (m_array_size / 4));
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|     }
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| }
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| 
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| void SimpleIndexedPropertyStorage::put(u32 index, Value value, PropertyAttributes attributes)
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| {
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|     VERIFY(attributes == default_attributes);
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| 
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|     if (index >= m_array_size) {
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|         m_array_size = index + 1;
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|         grow_storage_if_needed();
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|     }
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|     m_packed_elements[index] = value;
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| }
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| 
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| void SimpleIndexedPropertyStorage::remove(u32 index)
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| {
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|     VERIFY(index < m_array_size);
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|     m_packed_elements[index] = {};
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| }
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| 
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| ValueAndAttributes SimpleIndexedPropertyStorage::take_first()
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| {
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|     m_array_size--;
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|     return { m_packed_elements.take_first(), default_attributes };
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| }
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| 
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| ValueAndAttributes SimpleIndexedPropertyStorage::take_last()
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| {
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|     m_array_size--;
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|     auto last_element = m_packed_elements[m_array_size];
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|     m_packed_elements[m_array_size] = {};
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|     return { last_element, default_attributes };
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| }
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| 
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| bool SimpleIndexedPropertyStorage::set_array_like_size(size_t new_size)
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| {
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|     m_array_size = new_size;
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|     m_packed_elements.resize_and_keep_capacity(new_size);
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|     return true;
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| }
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| 
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| GenericIndexedPropertyStorage::GenericIndexedPropertyStorage(SimpleIndexedPropertyStorage&& storage)
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|     : IndexedPropertyStorage(IsSimpleStorage::No)
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| {
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|     m_array_size = storage.array_like_size();
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|     for (size_t i = 0; i < storage.m_packed_elements.size(); ++i) {
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|         auto value = storage.m_packed_elements[i];
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|         if (!value.is_empty())
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|             m_sparse_elements.set(i, { value, default_attributes });
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|     }
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| }
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| 
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| bool GenericIndexedPropertyStorage::has_index(u32 index) const
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| {
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|     return m_sparse_elements.contains(index);
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| }
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| 
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| Optional<ValueAndAttributes> GenericIndexedPropertyStorage::get(u32 index) const
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| {
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|     if (index >= m_array_size)
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|         return {};
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|     return m_sparse_elements.get(index);
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| }
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| 
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| void GenericIndexedPropertyStorage::put(u32 index, Value value, PropertyAttributes attributes)
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| {
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|     if (index >= m_array_size)
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|         m_array_size = index + 1;
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|     m_sparse_elements.set(index, { value, attributes });
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| }
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| 
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| void GenericIndexedPropertyStorage::remove(u32 index)
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| {
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|     VERIFY(index < m_array_size);
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|     m_sparse_elements.remove(index);
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| }
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| 
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| ValueAndAttributes GenericIndexedPropertyStorage::take_first()
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| {
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|     VERIFY(m_array_size > 0);
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|     m_array_size--;
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| 
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|     auto indices = m_sparse_elements.keys();
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|     quick_sort(indices);
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| 
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|     auto it = m_sparse_elements.find(indices.first());
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|     auto first_element = it->value;
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|     m_sparse_elements.remove(it);
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|     return first_element;
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| }
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| 
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| ValueAndAttributes GenericIndexedPropertyStorage::take_last()
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| {
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|     VERIFY(m_array_size > 0);
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|     m_array_size--;
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| 
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|     auto result = m_sparse_elements.get(m_array_size);
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|     if (!result.has_value())
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|         return {};
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|     m_sparse_elements.remove(m_array_size);
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|     return result.value();
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| }
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| 
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| bool GenericIndexedPropertyStorage::set_array_like_size(size_t new_size)
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| {
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|     if (new_size == m_array_size)
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|         return true;
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| 
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|     if (new_size >= m_array_size) {
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|         m_array_size = new_size;
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|         return true;
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|     }
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| 
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|     bool any_failed = false;
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|     size_t highest_index = 0;
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| 
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|     HashMap<u32, ValueAndAttributes> new_sparse_elements;
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|     for (auto& entry : m_sparse_elements) {
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|         if (entry.key >= new_size) {
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|             if (entry.value.attributes.is_configurable())
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|                 continue;
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|             else
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|                 any_failed = true;
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|         }
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|         new_sparse_elements.set(entry.key, entry.value);
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|         highest_index = max(highest_index, entry.key);
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|     }
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| 
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|     if (any_failed)
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|         m_array_size = highest_index + 1;
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|     else
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|         m_array_size = new_size;
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| 
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|     m_sparse_elements = move(new_sparse_elements);
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|     return !any_failed;
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| }
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| 
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| IndexedPropertyIterator::IndexedPropertyIterator(IndexedProperties const& indexed_properties, u32 staring_index, bool skip_empty)
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|     : m_indexed_properties(indexed_properties)
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|     , m_index(staring_index)
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|     , m_skip_empty(skip_empty)
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| {
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|     if (m_skip_empty) {
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|         m_cached_indices = m_indexed_properties.indices();
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|         skip_empty_indices();
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|     }
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| }
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| 
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| IndexedPropertyIterator& IndexedPropertyIterator::operator++()
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| {
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|     m_index++;
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| 
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|     if (m_skip_empty)
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|         skip_empty_indices();
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| 
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|     return *this;
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| }
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| 
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| IndexedPropertyIterator& IndexedPropertyIterator::operator*()
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| {
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|     return *this;
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| }
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| 
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| bool IndexedPropertyIterator::operator!=(IndexedPropertyIterator const& other) const
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| {
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|     return m_index != other.m_index;
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| }
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| 
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| void IndexedPropertyIterator::skip_empty_indices()
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| {
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|     for (auto i : m_cached_indices) {
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|         if (i < m_index)
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|             continue;
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|         m_index = i;
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|         return;
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|     }
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|     m_index = m_indexed_properties.array_like_size();
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| }
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| 
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| Optional<ValueAndAttributes> IndexedProperties::get(u32 index) const
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| {
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|     if (!m_storage)
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|         return {};
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|     return m_storage->get(index);
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| }
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| 
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| void IndexedProperties::put(u32 index, Value value, PropertyAttributes attributes)
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| {
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|     ensure_storage();
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|     if (m_storage->is_simple_storage() && (attributes != default_attributes || index > (array_like_size() + SPARSE_ARRAY_HOLE_THRESHOLD))) {
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|         switch_to_generic_storage();
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|     }
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| 
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|     m_storage->put(index, value, attributes);
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| }
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| 
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| void IndexedProperties::remove(u32 index)
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| {
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|     VERIFY(m_storage);
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|     VERIFY(m_storage->has_index(index));
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|     m_storage->remove(index);
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| }
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| 
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| bool IndexedProperties::set_array_like_size(size_t new_size)
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| {
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|     ensure_storage();
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|     auto current_array_like_size = array_like_size();
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| 
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|     // We can't use simple storage for lengths that don't fit in an i32.
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|     // Also, to avoid gigantic unused storage allocations, let's put an (arbitrary) 4M cap on simple storage here.
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|     // This prevents something like "a = []; a.length = 0x80000000;" from allocating 2G entries.
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|     if (m_storage->is_simple_storage()
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|         && (new_size > NumericLimits<i32>::max()
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|             || (current_array_like_size < LENGTH_SETTER_GENERIC_STORAGE_THRESHOLD && new_size > LENGTH_SETTER_GENERIC_STORAGE_THRESHOLD))) {
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|         switch_to_generic_storage();
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|     }
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| 
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|     return m_storage->set_array_like_size(new_size);
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| }
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| 
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| size_t IndexedProperties::real_size() const
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| {
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|     if (!m_storage)
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|         return 0;
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|     if (m_storage->is_simple_storage()) {
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|         auto& packed_elements = static_cast<SimpleIndexedPropertyStorage const&>(*m_storage).elements();
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|         size_t size = 0;
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|         for (auto& element : packed_elements) {
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|             if (!element.is_empty())
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|                 ++size;
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|         }
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|         return size;
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|     }
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|     return static_cast<GenericIndexedPropertyStorage const&>(*m_storage).size();
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| }
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| 
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| Vector<u32> IndexedProperties::indices() const
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| {
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|     if (!m_storage)
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|         return {};
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|     if (m_storage->is_simple_storage()) {
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|         auto const& storage = static_cast<SimpleIndexedPropertyStorage const&>(*m_storage);
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|         auto const& elements = storage.elements();
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|         Vector<u32> indices;
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|         indices.ensure_capacity(storage.array_like_size());
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|         for (size_t i = 0; i < elements.size(); ++i) {
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|             if (!elements.at(i).is_empty())
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|                 indices.unchecked_append(i);
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|         }
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|         return indices;
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|     }
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|     auto const& storage = static_cast<GenericIndexedPropertyStorage const&>(*m_storage);
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|     auto indices = storage.sparse_elements().keys();
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|     quick_sort(indices);
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|     return indices;
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| }
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| 
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| void IndexedProperties::switch_to_generic_storage()
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| {
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|     if (!m_storage) {
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|         m_storage = make<GenericIndexedPropertyStorage>();
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|         return;
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|     }
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|     auto& storage = static_cast<SimpleIndexedPropertyStorage&>(*m_storage);
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|     m_storage = make<GenericIndexedPropertyStorage>(move(storage));
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| }
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| 
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| void IndexedProperties::ensure_storage()
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| {
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|     if (!m_storage)
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|         m_storage = make<SimpleIndexedPropertyStorage>();
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| }
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| 
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| }
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