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615 lines
21 KiB
C++
615 lines
21 KiB
C++
// This file is part of Eigen, a lightweight C++ template library
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// for linear algebra.
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//
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// Copyright (C) 2018 Gael Guennebaud <gael.guennebaud@inria.fr>
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//
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// This Source Code Form is subject to the terms of the Mozilla
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// Public License v. 2.0. If a copy of the MPL was not distributed
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// with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
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#ifndef EIGEN_STLITERATORS_H
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#define EIGEN_STLITERATORS_H
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// IWYU pragma: private
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#include "./InternalHeaderCheck.h"
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namespace Eigen {
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namespace internal {
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template <typename IteratorType>
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struct indexed_based_stl_iterator_traits;
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template <typename Derived>
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class indexed_based_stl_iterator_base {
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protected:
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typedef indexed_based_stl_iterator_traits<Derived> traits;
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typedef typename traits::XprType XprType;
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typedef indexed_based_stl_iterator_base<typename traits::non_const_iterator> non_const_iterator;
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typedef indexed_based_stl_iterator_base<typename traits::const_iterator> const_iterator;
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typedef std::conditional_t<internal::is_const<XprType>::value, non_const_iterator, const_iterator> other_iterator;
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// NOTE: in C++03 we cannot declare friend classes through typedefs because we need to write friend class:
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friend class indexed_based_stl_iterator_base<typename traits::const_iterator>;
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friend class indexed_based_stl_iterator_base<typename traits::non_const_iterator>;
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public:
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typedef Index difference_type;
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typedef std::random_access_iterator_tag iterator_category;
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indexed_based_stl_iterator_base() EIGEN_NO_THROW : mp_xpr(0), m_index(0) {}
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indexed_based_stl_iterator_base(XprType& xpr, Index index) EIGEN_NO_THROW : mp_xpr(&xpr), m_index(index) {}
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indexed_based_stl_iterator_base(const non_const_iterator& other) EIGEN_NO_THROW : mp_xpr(other.mp_xpr),
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m_index(other.m_index) {}
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indexed_based_stl_iterator_base& operator=(const non_const_iterator& other) {
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mp_xpr = other.mp_xpr;
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m_index = other.m_index;
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return *this;
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}
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Derived& operator++() {
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++m_index;
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return derived();
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}
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Derived& operator--() {
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--m_index;
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return derived();
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}
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Derived operator++(int) {
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Derived prev(derived());
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operator++();
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return prev;
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}
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Derived operator--(int) {
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Derived prev(derived());
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operator--();
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return prev;
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}
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friend Derived operator+(const indexed_based_stl_iterator_base& a, Index b) {
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Derived ret(a.derived());
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ret += b;
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return ret;
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}
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friend Derived operator-(const indexed_based_stl_iterator_base& a, Index b) {
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Derived ret(a.derived());
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ret -= b;
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return ret;
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}
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friend Derived operator+(Index a, const indexed_based_stl_iterator_base& b) {
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Derived ret(b.derived());
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ret += a;
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return ret;
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}
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friend Derived operator-(Index a, const indexed_based_stl_iterator_base& b) {
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Derived ret(b.derived());
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ret -= a;
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return ret;
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}
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Derived& operator+=(Index b) {
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m_index += b;
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return derived();
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}
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Derived& operator-=(Index b) {
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m_index -= b;
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return derived();
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}
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difference_type operator-(const indexed_based_stl_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index - other.m_index;
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}
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difference_type operator-(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index - other.m_index;
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}
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bool operator==(const indexed_based_stl_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index == other.m_index;
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}
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bool operator!=(const indexed_based_stl_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index != other.m_index;
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}
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bool operator<(const indexed_based_stl_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index < other.m_index;
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}
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bool operator<=(const indexed_based_stl_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index <= other.m_index;
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}
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bool operator>(const indexed_based_stl_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index > other.m_index;
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}
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bool operator>=(const indexed_based_stl_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index >= other.m_index;
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}
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bool operator==(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index == other.m_index;
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}
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bool operator!=(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index != other.m_index;
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}
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bool operator<(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index < other.m_index;
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}
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bool operator<=(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index <= other.m_index;
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}
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bool operator>(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index > other.m_index;
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}
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bool operator>=(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index >= other.m_index;
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}
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protected:
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Derived& derived() { return static_cast<Derived&>(*this); }
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const Derived& derived() const { return static_cast<const Derived&>(*this); }
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XprType* mp_xpr;
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Index m_index;
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};
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template <typename Derived>
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class indexed_based_stl_reverse_iterator_base {
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protected:
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typedef indexed_based_stl_iterator_traits<Derived> traits;
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typedef typename traits::XprType XprType;
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typedef indexed_based_stl_reverse_iterator_base<typename traits::non_const_iterator> non_const_iterator;
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typedef indexed_based_stl_reverse_iterator_base<typename traits::const_iterator> const_iterator;
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typedef std::conditional_t<internal::is_const<XprType>::value, non_const_iterator, const_iterator> other_iterator;
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// NOTE: in C++03 we cannot declare friend classes through typedefs because we need to write friend class:
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friend class indexed_based_stl_reverse_iterator_base<typename traits::const_iterator>;
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friend class indexed_based_stl_reverse_iterator_base<typename traits::non_const_iterator>;
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public:
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typedef Index difference_type;
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typedef std::random_access_iterator_tag iterator_category;
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indexed_based_stl_reverse_iterator_base() : mp_xpr(0), m_index(0) {}
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indexed_based_stl_reverse_iterator_base(XprType& xpr, Index index) : mp_xpr(&xpr), m_index(index) {}
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indexed_based_stl_reverse_iterator_base(const non_const_iterator& other)
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: mp_xpr(other.mp_xpr), m_index(other.m_index) {}
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indexed_based_stl_reverse_iterator_base& operator=(const non_const_iterator& other) {
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mp_xpr = other.mp_xpr;
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m_index = other.m_index;
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return *this;
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}
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Derived& operator++() {
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--m_index;
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return derived();
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}
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Derived& operator--() {
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++m_index;
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return derived();
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}
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Derived operator++(int) {
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Derived prev(derived());
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operator++();
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return prev;
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}
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Derived operator--(int) {
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Derived prev(derived());
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operator--();
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return prev;
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}
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friend Derived operator+(const indexed_based_stl_reverse_iterator_base& a, Index b) {
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Derived ret(a.derived());
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ret += b;
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return ret;
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}
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friend Derived operator-(const indexed_based_stl_reverse_iterator_base& a, Index b) {
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Derived ret(a.derived());
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ret -= b;
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return ret;
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}
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friend Derived operator+(Index a, const indexed_based_stl_reverse_iterator_base& b) {
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Derived ret(b.derived());
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ret += a;
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return ret;
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}
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friend Derived operator-(Index a, const indexed_based_stl_reverse_iterator_base& b) {
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Derived ret(b.derived());
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ret -= a;
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return ret;
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}
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Derived& operator+=(Index b) {
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m_index -= b;
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return derived();
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}
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Derived& operator-=(Index b) {
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m_index += b;
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return derived();
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}
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difference_type operator-(const indexed_based_stl_reverse_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return other.m_index - m_index;
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}
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difference_type operator-(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return other.m_index - m_index;
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}
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bool operator==(const indexed_based_stl_reverse_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index == other.m_index;
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}
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bool operator!=(const indexed_based_stl_reverse_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index != other.m_index;
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}
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bool operator<(const indexed_based_stl_reverse_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index > other.m_index;
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}
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bool operator<=(const indexed_based_stl_reverse_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index >= other.m_index;
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}
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bool operator>(const indexed_based_stl_reverse_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index < other.m_index;
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}
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bool operator>=(const indexed_based_stl_reverse_iterator_base& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index <= other.m_index;
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}
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bool operator==(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index == other.m_index;
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}
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bool operator!=(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index != other.m_index;
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}
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bool operator<(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index > other.m_index;
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}
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bool operator<=(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index >= other.m_index;
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}
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bool operator>(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index < other.m_index;
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}
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bool operator>=(const other_iterator& other) const {
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eigen_assert(mp_xpr == other.mp_xpr);
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return m_index <= other.m_index;
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}
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protected:
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Derived& derived() { return static_cast<Derived&>(*this); }
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const Derived& derived() const { return static_cast<const Derived&>(*this); }
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XprType* mp_xpr;
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Index m_index;
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};
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template <typename XprType>
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class pointer_based_stl_iterator {
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enum { is_lvalue = internal::is_lvalue<XprType>::value };
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typedef pointer_based_stl_iterator<std::remove_const_t<XprType>> non_const_iterator;
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typedef pointer_based_stl_iterator<std::add_const_t<XprType>> const_iterator;
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typedef std::conditional_t<internal::is_const<XprType>::value, non_const_iterator, const_iterator> other_iterator;
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// NOTE: in C++03 we cannot declare friend classes through typedefs because we need to write friend class:
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friend class pointer_based_stl_iterator<std::add_const_t<XprType>>;
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friend class pointer_based_stl_iterator<std::remove_const_t<XprType>>;
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public:
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typedef Index difference_type;
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typedef typename XprType::Scalar value_type;
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typedef std::random_access_iterator_tag iterator_category;
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typedef std::conditional_t<bool(is_lvalue), value_type*, const value_type*> pointer;
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typedef std::conditional_t<bool(is_lvalue), value_type&, const value_type&> reference;
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pointer_based_stl_iterator() EIGEN_NO_THROW : m_ptr(0) {}
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pointer_based_stl_iterator(XprType& xpr, Index index) EIGEN_NO_THROW : m_incr(xpr.innerStride()) {
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m_ptr = xpr.data() + index * m_incr.value();
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}
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pointer_based_stl_iterator(const non_const_iterator& other) EIGEN_NO_THROW : m_ptr(other.m_ptr),
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m_incr(other.m_incr) {}
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pointer_based_stl_iterator& operator=(const non_const_iterator& other) EIGEN_NO_THROW {
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m_ptr = other.m_ptr;
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m_incr.setValue(other.m_incr);
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return *this;
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}
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reference operator*() const { return *m_ptr; }
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reference operator[](Index i) const { return *(m_ptr + i * m_incr.value()); }
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pointer operator->() const { return m_ptr; }
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pointer_based_stl_iterator& operator++() {
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m_ptr += m_incr.value();
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return *this;
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}
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pointer_based_stl_iterator& operator--() {
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m_ptr -= m_incr.value();
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return *this;
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}
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pointer_based_stl_iterator operator++(int) {
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pointer_based_stl_iterator prev(*this);
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operator++();
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return prev;
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}
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pointer_based_stl_iterator operator--(int) {
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pointer_based_stl_iterator prev(*this);
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operator--();
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return prev;
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}
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friend pointer_based_stl_iterator operator+(const pointer_based_stl_iterator& a, Index b) {
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pointer_based_stl_iterator ret(a);
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ret += b;
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return ret;
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}
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friend pointer_based_stl_iterator operator-(const pointer_based_stl_iterator& a, Index b) {
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pointer_based_stl_iterator ret(a);
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ret -= b;
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return ret;
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}
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friend pointer_based_stl_iterator operator+(Index a, const pointer_based_stl_iterator& b) {
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pointer_based_stl_iterator ret(b);
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ret += a;
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return ret;
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}
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friend pointer_based_stl_iterator operator-(Index a, const pointer_based_stl_iterator& b) {
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pointer_based_stl_iterator ret(b);
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ret -= a;
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return ret;
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}
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pointer_based_stl_iterator& operator+=(Index b) {
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m_ptr += b * m_incr.value();
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return *this;
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}
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pointer_based_stl_iterator& operator-=(Index b) {
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m_ptr -= b * m_incr.value();
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return *this;
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}
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difference_type operator-(const pointer_based_stl_iterator& other) const {
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return (m_ptr - other.m_ptr) / m_incr.value();
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}
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difference_type operator-(const other_iterator& other) const { return (m_ptr - other.m_ptr) / m_incr.value(); }
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bool operator==(const pointer_based_stl_iterator& other) const { return m_ptr == other.m_ptr; }
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bool operator!=(const pointer_based_stl_iterator& other) const { return m_ptr != other.m_ptr; }
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bool operator<(const pointer_based_stl_iterator& other) const { return m_ptr < other.m_ptr; }
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bool operator<=(const pointer_based_stl_iterator& other) const { return m_ptr <= other.m_ptr; }
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bool operator>(const pointer_based_stl_iterator& other) const { return m_ptr > other.m_ptr; }
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bool operator>=(const pointer_based_stl_iterator& other) const { return m_ptr >= other.m_ptr; }
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bool operator==(const other_iterator& other) const { return m_ptr == other.m_ptr; }
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bool operator!=(const other_iterator& other) const { return m_ptr != other.m_ptr; }
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bool operator<(const other_iterator& other) const { return m_ptr < other.m_ptr; }
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bool operator<=(const other_iterator& other) const { return m_ptr <= other.m_ptr; }
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bool operator>(const other_iterator& other) const { return m_ptr > other.m_ptr; }
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bool operator>=(const other_iterator& other) const { return m_ptr >= other.m_ptr; }
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protected:
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pointer m_ptr;
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internal::variable_if_dynamic<Index, XprType::InnerStrideAtCompileTime> m_incr;
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};
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template <typename XprType_>
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struct indexed_based_stl_iterator_traits<generic_randaccess_stl_iterator<XprType_>> {
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typedef XprType_ XprType;
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typedef generic_randaccess_stl_iterator<std::remove_const_t<XprType>> non_const_iterator;
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typedef generic_randaccess_stl_iterator<std::add_const_t<XprType>> const_iterator;
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};
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template <typename XprType>
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class generic_randaccess_stl_iterator
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: public indexed_based_stl_iterator_base<generic_randaccess_stl_iterator<XprType>> {
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public:
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typedef typename XprType::Scalar value_type;
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protected:
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enum {
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has_direct_access = (internal::traits<XprType>::Flags & DirectAccessBit) ? 1 : 0,
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is_lvalue = internal::is_lvalue<XprType>::value
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};
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typedef indexed_based_stl_iterator_base<generic_randaccess_stl_iterator> Base;
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using Base::m_index;
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using Base::mp_xpr;
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// TODO currently const Transpose/Reshape expressions never returns const references,
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// so lets return by value too.
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// typedef std::conditional_t<bool(has_direct_access), const value_type&, const value_type> read_only_ref_t;
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typedef const value_type read_only_ref_t;
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public:
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typedef std::conditional_t<bool(is_lvalue), value_type*, const value_type*> pointer;
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typedef std::conditional_t<bool(is_lvalue), value_type&, read_only_ref_t> reference;
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generic_randaccess_stl_iterator() : Base() {}
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generic_randaccess_stl_iterator(XprType& xpr, Index index) : Base(xpr, index) {}
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generic_randaccess_stl_iterator(const typename Base::non_const_iterator& other) : Base(other) {}
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|
using Base::operator=;
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|
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reference operator*() const { return (*mp_xpr)(m_index); }
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reference operator[](Index i) const { return (*mp_xpr)(m_index + i); }
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|
pointer operator->() const { return &((*mp_xpr)(m_index)); }
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|
};
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|
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template <typename XprType_, DirectionType Direction>
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|
struct indexed_based_stl_iterator_traits<subvector_stl_iterator<XprType_, Direction>> {
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|
typedef XprType_ XprType;
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|
typedef subvector_stl_iterator<std::remove_const_t<XprType>, Direction> non_const_iterator;
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|
typedef subvector_stl_iterator<std::add_const_t<XprType>, Direction> const_iterator;
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|
};
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|
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template <typename XprType, DirectionType Direction>
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|
class subvector_stl_iterator : public indexed_based_stl_iterator_base<subvector_stl_iterator<XprType, Direction>> {
|
|
protected:
|
|
enum { is_lvalue = internal::is_lvalue<XprType>::value };
|
|
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typedef indexed_based_stl_iterator_base<subvector_stl_iterator> Base;
|
|
using Base::m_index;
|
|
using Base::mp_xpr;
|
|
|
|
typedef std::conditional_t<Direction == Vertical, typename XprType::ColXpr, typename XprType::RowXpr> SubVectorType;
|
|
typedef std::conditional_t<Direction == Vertical, typename XprType::ConstColXpr, typename XprType::ConstRowXpr>
|
|
ConstSubVectorType;
|
|
|
|
public:
|
|
typedef std::conditional_t<bool(is_lvalue), SubVectorType, ConstSubVectorType> reference;
|
|
typedef typename reference::PlainObject value_type;
|
|
|
|
private:
|
|
class subvector_stl_iterator_ptr {
|
|
public:
|
|
subvector_stl_iterator_ptr(const reference& subvector) : m_subvector(subvector) {}
|
|
reference* operator->() { return &m_subvector; }
|
|
|
|
private:
|
|
reference m_subvector;
|
|
};
|
|
|
|
public:
|
|
typedef subvector_stl_iterator_ptr pointer;
|
|
|
|
subvector_stl_iterator() : Base() {}
|
|
subvector_stl_iterator(XprType& xpr, Index index) : Base(xpr, index) {}
|
|
|
|
reference operator*() const { return (*mp_xpr).template subVector<Direction>(m_index); }
|
|
reference operator[](Index i) const { return (*mp_xpr).template subVector<Direction>(m_index + i); }
|
|
pointer operator->() const { return (*mp_xpr).template subVector<Direction>(m_index); }
|
|
};
|
|
|
|
template <typename XprType_, DirectionType Direction>
|
|
struct indexed_based_stl_iterator_traits<subvector_stl_reverse_iterator<XprType_, Direction>> {
|
|
typedef XprType_ XprType;
|
|
typedef subvector_stl_reverse_iterator<std::remove_const_t<XprType>, Direction> non_const_iterator;
|
|
typedef subvector_stl_reverse_iterator<std::add_const_t<XprType>, Direction> const_iterator;
|
|
};
|
|
|
|
template <typename XprType, DirectionType Direction>
|
|
class subvector_stl_reverse_iterator
|
|
: public indexed_based_stl_reverse_iterator_base<subvector_stl_reverse_iterator<XprType, Direction>> {
|
|
protected:
|
|
enum { is_lvalue = internal::is_lvalue<XprType>::value };
|
|
|
|
typedef indexed_based_stl_reverse_iterator_base<subvector_stl_reverse_iterator> Base;
|
|
using Base::m_index;
|
|
using Base::mp_xpr;
|
|
|
|
typedef std::conditional_t<Direction == Vertical, typename XprType::ColXpr, typename XprType::RowXpr> SubVectorType;
|
|
typedef std::conditional_t<Direction == Vertical, typename XprType::ConstColXpr, typename XprType::ConstRowXpr>
|
|
ConstSubVectorType;
|
|
|
|
public:
|
|
typedef std::conditional_t<bool(is_lvalue), SubVectorType, ConstSubVectorType> reference;
|
|
typedef typename reference::PlainObject value_type;
|
|
|
|
private:
|
|
class subvector_stl_reverse_iterator_ptr {
|
|
public:
|
|
subvector_stl_reverse_iterator_ptr(const reference& subvector) : m_subvector(subvector) {}
|
|
reference* operator->() { return &m_subvector; }
|
|
|
|
private:
|
|
reference m_subvector;
|
|
};
|
|
|
|
public:
|
|
typedef subvector_stl_reverse_iterator_ptr pointer;
|
|
|
|
subvector_stl_reverse_iterator() : Base() {}
|
|
subvector_stl_reverse_iterator(XprType& xpr, Index index) : Base(xpr, index) {}
|
|
|
|
reference operator*() const { return (*mp_xpr).template subVector<Direction>(m_index); }
|
|
reference operator[](Index i) const { return (*mp_xpr).template subVector<Direction>(m_index + i); }
|
|
pointer operator->() const { return (*mp_xpr).template subVector<Direction>(m_index); }
|
|
};
|
|
|
|
} // namespace internal
|
|
|
|
/** returns an iterator to the first element of the 1D vector or array
|
|
* \only_for_vectors
|
|
* \sa end(), cbegin()
|
|
*/
|
|
template <typename Derived>
|
|
inline typename DenseBase<Derived>::iterator DenseBase<Derived>::begin() {
|
|
EIGEN_STATIC_ASSERT_VECTOR_ONLY(Derived);
|
|
return iterator(derived(), 0);
|
|
}
|
|
|
|
/** const version of begin() */
|
|
template <typename Derived>
|
|
inline typename DenseBase<Derived>::const_iterator DenseBase<Derived>::begin() const {
|
|
return cbegin();
|
|
}
|
|
|
|
/** returns a read-only const_iterator to the first element of the 1D vector or array
|
|
* \only_for_vectors
|
|
* \sa cend(), begin()
|
|
*/
|
|
template <typename Derived>
|
|
inline typename DenseBase<Derived>::const_iterator DenseBase<Derived>::cbegin() const {
|
|
EIGEN_STATIC_ASSERT_VECTOR_ONLY(Derived);
|
|
return const_iterator(derived(), 0);
|
|
}
|
|
|
|
/** returns an iterator to the element following the last element of the 1D vector or array
|
|
* \only_for_vectors
|
|
* \sa begin(), cend()
|
|
*/
|
|
template <typename Derived>
|
|
inline typename DenseBase<Derived>::iterator DenseBase<Derived>::end() {
|
|
EIGEN_STATIC_ASSERT_VECTOR_ONLY(Derived);
|
|
return iterator(derived(), size());
|
|
}
|
|
|
|
/** const version of end() */
|
|
template <typename Derived>
|
|
inline typename DenseBase<Derived>::const_iterator DenseBase<Derived>::end() const {
|
|
return cend();
|
|
}
|
|
|
|
/** returns a read-only const_iterator to the element following the last element of the 1D vector or array
|
|
* \only_for_vectors
|
|
* \sa begin(), cend()
|
|
*/
|
|
template <typename Derived>
|
|
inline typename DenseBase<Derived>::const_iterator DenseBase<Derived>::cend() const {
|
|
EIGEN_STATIC_ASSERT_VECTOR_ONLY(Derived);
|
|
return const_iterator(derived(), size());
|
|
}
|
|
|
|
} // namespace Eigen
|
|
|
|
#endif // EIGEN_STLITERATORS_H
|