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I wrote a script to do this which is attached to the bug. TBR=abarth@chromium.org BUG=435361 Review URL: https://codereview.chromium.org/736373003
518 lines
20 KiB
C++
518 lines
20 KiB
C++
/*
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* Copyright (C) 2007, 2008 Apple Inc. All rights reserved.
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* Copyright (C) 2009 Google Inc. 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
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* are met:
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*
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* 3. Neither the name of Apple Computer, Inc. ("Apple") nor the names of
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* its contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY APPLE AND ITS CONTRIBUTORS "AS IS" AND ANY
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* EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL APPLE OR ITS CONTRIBUTORS BE LIABLE FOR ANY
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* DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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* ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#ifndef SKY_ENGINE_WTF_DEQUE_H_
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#define SKY_ENGINE_WTF_DEQUE_H_
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// FIXME: Could move what Vector and Deque share into a separate file.
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// Deque doesn't actually use Vector.
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#include <iterator>
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#include "sky/engine/wtf/PassTraits.h"
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#include "sky/engine/wtf/Vector.h"
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namespace WTF {
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template<typename T, size_t inlineCapacity, typename Allocator> class DequeIteratorBase;
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template<typename T, size_t inlineCapacity, typename Allocator> class DequeIterator;
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template<typename T, size_t inlineCapacity, typename Allocator> class DequeConstIterator;
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template<typename T, size_t inlineCapacity = 0, typename Allocator = DefaultAllocator>
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class Deque : public VectorDestructorBase<Deque<T, inlineCapacity, Allocator>, T, (inlineCapacity > 0), Allocator::isGarbageCollected> {
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WTF_USE_ALLOCATOR(Deque, Allocator);
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public:
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typedef DequeIterator<T, inlineCapacity, Allocator> iterator;
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typedef DequeConstIterator<T, inlineCapacity, Allocator> const_iterator;
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typedef std::reverse_iterator<iterator> reverse_iterator;
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typedef std::reverse_iterator<const_iterator> const_reverse_iterator;
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typedef PassTraits<T> Pass;
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typedef typename PassTraits<T>::PassType PassType;
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Deque();
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Deque(const Deque<T, inlineCapacity, Allocator>&);
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// FIXME: Doesn't work if there is an inline buffer, due to crbug.com/360572
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Deque<T, 0, Allocator>& operator=(const Deque&);
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void finalize();
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// We hard wire the inlineCapacity to zero here, due to crbug.com/360572
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void swap(Deque<T, 0, Allocator>&);
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size_t size() const { return m_start <= m_end ? m_end - m_start : m_end + m_buffer.capacity() - m_start; }
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bool isEmpty() const { return m_start == m_end; }
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iterator begin() { return iterator(this, m_start); }
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iterator end() { return iterator(this, m_end); }
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const_iterator begin() const { return const_iterator(this, m_start); }
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const_iterator end() const { return const_iterator(this, m_end); }
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reverse_iterator rbegin() { return reverse_iterator(end()); }
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reverse_iterator rend() { return reverse_iterator(begin()); }
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const_reverse_iterator rbegin() const { return const_reverse_iterator(end()); }
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const_reverse_iterator rend() const { return const_reverse_iterator(begin()); }
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T& first() { ASSERT(m_start != m_end); return m_buffer.buffer()[m_start]; }
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const T& first() const { ASSERT(m_start != m_end); return m_buffer.buffer()[m_start]; }
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PassType takeFirst();
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T& last() { ASSERT(m_start != m_end); return *(--end()); }
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const T& last() const { ASSERT(m_start != m_end); return *(--end()); }
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PassType takeLast();
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T& at(size_t i)
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{
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RELEASE_ASSERT(i < size());
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size_t right = m_buffer.capacity() - m_start;
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return i < right ? m_buffer.buffer()[m_start + i] : m_buffer.buffer()[i - right];
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}
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const T& at(size_t i) const
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{
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RELEASE_ASSERT(i < size());
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size_t right = m_buffer.capacity() - m_start;
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return i < right ? m_buffer.buffer()[m_start + i] : m_buffer.buffer()[i - right];
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}
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T& operator[](size_t i) { return at(i); }
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const T& operator[](size_t i) const { return at(i); }
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template<typename U> void append(const U&);
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template<typename U> void prepend(const U&);
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void removeFirst();
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void removeLast();
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void remove(iterator&);
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void remove(const_iterator&);
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void clear();
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template<typename Predicate>
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iterator findIf(Predicate&);
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private:
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friend class DequeIteratorBase<T, inlineCapacity, Allocator>;
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typedef VectorBuffer<T, inlineCapacity, Allocator> Buffer;
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typedef VectorTypeOperations<T> TypeOperations;
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typedef DequeIteratorBase<T, inlineCapacity, Allocator> IteratorBase;
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void remove(size_t position);
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void destroyAll();
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void expandCapacityIfNeeded();
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void expandCapacity();
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Buffer m_buffer;
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unsigned m_start;
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unsigned m_end;
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};
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template<typename T, size_t inlineCapacity, typename Allocator>
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class DequeIteratorBase {
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protected:
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DequeIteratorBase();
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DequeIteratorBase(const Deque<T, inlineCapacity, Allocator>*, size_t);
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DequeIteratorBase(const DequeIteratorBase&);
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DequeIteratorBase<T, 0, Allocator>& operator=(const DequeIteratorBase<T, 0, Allocator>&);
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~DequeIteratorBase();
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void assign(const DequeIteratorBase& other) { *this = other; }
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void increment();
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void decrement();
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T* before() const;
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T* after() const;
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bool isEqual(const DequeIteratorBase&) const;
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private:
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Deque<T, inlineCapacity, Allocator>* m_deque;
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unsigned m_index;
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friend class Deque<T, inlineCapacity, Allocator>;
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};
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template<typename T, size_t inlineCapacity = 0, typename Allocator = DefaultAllocator>
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class DequeIterator : public DequeIteratorBase<T, inlineCapacity, Allocator> {
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private:
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typedef DequeIteratorBase<T, inlineCapacity, Allocator> Base;
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typedef DequeIterator<T, inlineCapacity, Allocator> Iterator;
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public:
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typedef ptrdiff_t difference_type;
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typedef T value_type;
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typedef T* pointer;
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typedef T& reference;
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typedef std::bidirectional_iterator_tag iterator_category;
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DequeIterator(Deque<T, inlineCapacity, Allocator>* deque, size_t index) : Base(deque, index) { }
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DequeIterator(const Iterator& other) : Base(other) { }
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DequeIterator& operator=(const Iterator& other) { Base::assign(other); return *this; }
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T& operator*() const { return *Base::after(); }
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T* operator->() const { return Base::after(); }
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bool operator==(const Iterator& other) const { return Base::isEqual(other); }
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bool operator!=(const Iterator& other) const { return !Base::isEqual(other); }
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Iterator& operator++() { Base::increment(); return *this; }
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// postfix ++ intentionally omitted
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Iterator& operator--() { Base::decrement(); return *this; }
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// postfix -- intentionally omitted
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};
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template<typename T, size_t inlineCapacity = 0, typename Allocator = DefaultAllocator>
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class DequeConstIterator : public DequeIteratorBase<T, inlineCapacity, Allocator> {
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private:
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typedef DequeIteratorBase<T, inlineCapacity, Allocator> Base;
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typedef DequeConstIterator<T, inlineCapacity, Allocator> Iterator;
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typedef DequeIterator<T, inlineCapacity, Allocator> NonConstIterator;
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public:
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typedef ptrdiff_t difference_type;
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typedef T value_type;
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typedef const T* pointer;
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typedef const T& reference;
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typedef std::bidirectional_iterator_tag iterator_category;
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DequeConstIterator(const Deque<T, inlineCapacity, Allocator>* deque, size_t index) : Base(deque, index) { }
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DequeConstIterator(const Iterator& other) : Base(other) { }
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DequeConstIterator(const NonConstIterator& other) : Base(other) { }
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DequeConstIterator& operator=(const Iterator& other) { Base::assign(other); return *this; }
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DequeConstIterator& operator=(const NonConstIterator& other) { Base::assign(other); return *this; }
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const T& operator*() const { return *Base::after(); }
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const T* operator->() const { return Base::after(); }
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bool operator==(const Iterator& other) const { return Base::isEqual(other); }
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bool operator!=(const Iterator& other) const { return !Base::isEqual(other); }
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Iterator& operator++() { Base::increment(); return *this; }
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// postfix ++ intentionally omitted
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Iterator& operator--() { Base::decrement(); return *this; }
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// postfix -- intentionally omitted
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};
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline Deque<T, inlineCapacity, Allocator>::Deque()
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: m_start(0)
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, m_end(0)
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{
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline Deque<T, inlineCapacity, Allocator>::Deque(const Deque<T, inlineCapacity, Allocator>& other)
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: m_buffer(other.m_buffer.capacity())
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, m_start(other.m_start)
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, m_end(other.m_end)
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{
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const T* otherBuffer = other.m_buffer.buffer();
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if (m_start <= m_end)
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TypeOperations::uninitializedCopy(otherBuffer + m_start, otherBuffer + m_end, m_buffer.buffer() + m_start);
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else {
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TypeOperations::uninitializedCopy(otherBuffer, otherBuffer + m_end, m_buffer.buffer());
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TypeOperations::uninitializedCopy(otherBuffer + m_start, otherBuffer + m_buffer.capacity(), m_buffer.buffer() + m_start);
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}
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline Deque<T, 0, Allocator>& Deque<T, inlineCapacity, Allocator>::operator=(const Deque& other)
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{
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Deque<T> copy(other);
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swap(copy);
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return *this;
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline void Deque<T, inlineCapacity, Allocator>::destroyAll()
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{
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if (m_start <= m_end) {
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TypeOperations::destruct(m_buffer.buffer() + m_start, m_buffer.buffer() + m_end);
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} else {
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TypeOperations::destruct(m_buffer.buffer(), m_buffer.buffer() + m_end);
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TypeOperations::destruct(m_buffer.buffer() + m_start, m_buffer.buffer() + m_buffer.capacity());
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}
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}
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// Off-GC-heap deques: Destructor should be called.
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// On-GC-heap deques: Destructor should be called for inline buffers
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// (if any) but destructor shouldn't be called for vector backing since
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// it is managed by the traced GC heap.
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline void Deque<T, inlineCapacity, Allocator>::finalize()
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{
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if (!inlineCapacity && !m_buffer.buffer())
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return;
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if (!isEmpty() && !(Allocator::isGarbageCollected && m_buffer.hasOutOfLineBuffer()))
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destroyAll();
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m_buffer.destruct();
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}
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// FIXME: Doesn't work if there is an inline buffer, due to crbug.com/360572
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline void Deque<T, inlineCapacity, Allocator>::swap(Deque<T, 0, Allocator>& other)
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{
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std::swap(m_start, other.m_start);
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std::swap(m_end, other.m_end);
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m_buffer.swapVectorBuffer(other.m_buffer);
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline void Deque<T, inlineCapacity, Allocator>::clear()
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{
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destroyAll();
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m_start = 0;
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m_end = 0;
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m_buffer.deallocateBuffer(m_buffer.buffer());
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m_buffer.resetBufferPointer();
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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template<typename Predicate>
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inline DequeIterator<T, inlineCapacity, Allocator> Deque<T, inlineCapacity, Allocator>::findIf(Predicate& predicate)
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{
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iterator end_iterator = end();
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for (iterator it = begin(); it != end_iterator; ++it) {
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if (predicate(*it))
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return it;
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}
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return end_iterator;
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline void Deque<T, inlineCapacity, Allocator>::expandCapacityIfNeeded()
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{
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if (m_start) {
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if (m_end + 1 != m_start)
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return;
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} else if (m_end) {
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if (m_end != m_buffer.capacity() - 1)
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return;
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} else if (m_buffer.capacity())
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return;
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expandCapacity();
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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void Deque<T, inlineCapacity, Allocator>::expandCapacity()
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{
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size_t oldCapacity = m_buffer.capacity();
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T* oldBuffer = m_buffer.buffer();
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m_buffer.allocateBuffer(std::max(static_cast<size_t>(16), oldCapacity + oldCapacity / 4 + 1));
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if (m_start <= m_end)
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TypeOperations::move(oldBuffer + m_start, oldBuffer + m_end, m_buffer.buffer() + m_start);
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else {
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TypeOperations::move(oldBuffer, oldBuffer + m_end, m_buffer.buffer());
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size_t newStart = m_buffer.capacity() - (oldCapacity - m_start);
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TypeOperations::move(oldBuffer + m_start, oldBuffer + oldCapacity, m_buffer.buffer() + newStart);
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m_start = newStart;
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}
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m_buffer.deallocateBuffer(oldBuffer);
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline typename Deque<T, inlineCapacity, Allocator>::PassType Deque<T, inlineCapacity, Allocator>::takeFirst()
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{
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T oldFirst = Pass::transfer(first());
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removeFirst();
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return Pass::transfer(oldFirst);
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline typename Deque<T, inlineCapacity, Allocator>::PassType Deque<T, inlineCapacity, Allocator>::takeLast()
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{
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T oldLast = Pass::transfer(last());
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removeLast();
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return Pass::transfer(oldLast);
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}
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template<typename T, size_t inlineCapacity, typename Allocator> template<typename U>
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inline void Deque<T, inlineCapacity, Allocator>::append(const U& value)
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{
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expandCapacityIfNeeded();
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new (NotNull, &m_buffer.buffer()[m_end]) T(value);
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if (m_end == m_buffer.capacity() - 1)
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m_end = 0;
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else
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++m_end;
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}
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template<typename T, size_t inlineCapacity, typename Allocator> template<typename U>
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inline void Deque<T, inlineCapacity, Allocator>::prepend(const U& value)
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{
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expandCapacityIfNeeded();
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if (!m_start)
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m_start = m_buffer.capacity() - 1;
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else
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--m_start;
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new (NotNull, &m_buffer.buffer()[m_start]) T(value);
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline void Deque<T, inlineCapacity, Allocator>::removeFirst()
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{
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ASSERT(!isEmpty());
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TypeOperations::destruct(&m_buffer.buffer()[m_start], &m_buffer.buffer()[m_start + 1]);
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if (m_start == m_buffer.capacity() - 1)
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m_start = 0;
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else
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++m_start;
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline void Deque<T, inlineCapacity, Allocator>::removeLast()
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{
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ASSERT(!isEmpty());
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if (!m_end)
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m_end = m_buffer.capacity() - 1;
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else
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--m_end;
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TypeOperations::destruct(&m_buffer.buffer()[m_end], &m_buffer.buffer()[m_end + 1]);
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline void Deque<T, inlineCapacity, Allocator>::remove(iterator& it)
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{
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remove(it.m_index);
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline void Deque<T, inlineCapacity, Allocator>::remove(const_iterator& it)
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{
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remove(it.m_index);
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline void Deque<T, inlineCapacity, Allocator>::remove(size_t position)
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{
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if (position == m_end)
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return;
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T* buffer = m_buffer.buffer();
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TypeOperations::destruct(&buffer[position], &buffer[position + 1]);
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// Find which segment of the circular buffer contained the remove element, and only move elements in that part.
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if (position >= m_start) {
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TypeOperations::moveOverlapping(buffer + m_start, buffer + position, buffer + m_start + 1);
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m_start = (m_start + 1) % m_buffer.capacity();
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} else {
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TypeOperations::moveOverlapping(buffer + position + 1, buffer + m_end, buffer + position);
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m_end = (m_end - 1 + m_buffer.capacity()) % m_buffer.capacity();
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}
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline DequeIteratorBase<T, inlineCapacity, Allocator>::DequeIteratorBase()
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: m_deque(0)
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{
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline DequeIteratorBase<T, inlineCapacity, Allocator>::DequeIteratorBase(const Deque<T, inlineCapacity, Allocator>* deque, size_t index)
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: m_deque(const_cast<Deque<T, inlineCapacity, Allocator>*>(deque))
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, m_index(index)
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{
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline DequeIteratorBase<T, inlineCapacity, Allocator>::DequeIteratorBase(const DequeIteratorBase& other)
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: m_deque(other.m_deque)
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, m_index(other.m_index)
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{
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline DequeIteratorBase<T, 0, Allocator>& DequeIteratorBase<T, inlineCapacity, Allocator>::operator=(const DequeIteratorBase<T, 0, Allocator>& other)
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{
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m_deque = other.m_deque;
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m_index = other.m_index;
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return *this;
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}
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline DequeIteratorBase<T, inlineCapacity, Allocator>::~DequeIteratorBase()
|
|
{
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|
}
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|
|
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template<typename T, size_t inlineCapacity, typename Allocator>
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inline bool DequeIteratorBase<T, inlineCapacity, Allocator>::isEqual(const DequeIteratorBase& other) const
|
|
{
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|
return m_index == other.m_index;
|
|
}
|
|
|
|
template<typename T, size_t inlineCapacity, typename Allocator>
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|
inline void DequeIteratorBase<T, inlineCapacity, Allocator>::increment()
|
|
{
|
|
ASSERT(m_index != m_deque->m_end);
|
|
ASSERT(m_deque->m_buffer.capacity());
|
|
if (m_index == m_deque->m_buffer.capacity() - 1)
|
|
m_index = 0;
|
|
else
|
|
++m_index;
|
|
}
|
|
|
|
template<typename T, size_t inlineCapacity, typename Allocator>
|
|
inline void DequeIteratorBase<T, inlineCapacity, Allocator>::decrement()
|
|
{
|
|
ASSERT(m_index != m_deque->m_start);
|
|
ASSERT(m_deque->m_buffer.capacity());
|
|
if (!m_index)
|
|
m_index = m_deque->m_buffer.capacity() - 1;
|
|
else
|
|
--m_index;
|
|
}
|
|
|
|
template<typename T, size_t inlineCapacity, typename Allocator>
|
|
inline T* DequeIteratorBase<T, inlineCapacity, Allocator>::after() const
|
|
{
|
|
ASSERT(m_index != m_deque->m_end);
|
|
return &m_deque->m_buffer.buffer()[m_index];
|
|
}
|
|
|
|
template<typename T, size_t inlineCapacity, typename Allocator>
|
|
inline T* DequeIteratorBase<T, inlineCapacity, Allocator>::before() const
|
|
{
|
|
ASSERT(m_index != m_deque->m_start);
|
|
if (!m_index)
|
|
return &m_deque->m_buffer.buffer()[m_deque->m_buffer.capacity() - 1];
|
|
return &m_deque->m_buffer.buffer()[m_index - 1];
|
|
}
|
|
|
|
template<typename T, size_t inlineCapacity, typename Allocator>
|
|
inline void swap(Deque<T, inlineCapacity, Allocator>& a, Deque<T, inlineCapacity, Allocator>& b)
|
|
{
|
|
a.swap(b);
|
|
}
|
|
|
|
} // namespace WTF
|
|
|
|
using WTF::Deque;
|
|
|
|
#endif // SKY_ENGINE_WTF_DEQUE_H_
|