matrix_sparse.hpp

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HPP
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            BOOST_UBLAS_INLINE            const_iterator1 (const self_type &m, int rank, size_type i, size_type j, const const_subiterator_type &it):                container_const_reference<self_type> (m), rank_ (rank), i_ (i), j_ (j), it_ (it) {}            BOOST_UBLAS_INLINE            const_iterator1 (const iterator1 &it):                container_const_reference<self_type> (it ()), rank_ (it.rank_), i_ (it.i_), j_ (it.j_), it_ (it.it_) {}            // Arithmetic            BOOST_UBLAS_INLINE            const_iterator1 &operator ++ () {                if (rank_ == 1 && layout_type::fast_i ())                    ++ it_;                else                    *this = (*this) ().find1 (rank_, index1 () + 1, j_, 1);                return *this;            }            BOOST_UBLAS_INLINE            const_iterator1 &operator -- () {                if (rank_ == 1 && layout_type::fast_i ())                    -- it_;                else                    *this = (*this) ().find1 (rank_, index1 () - 1, j_, -1);                return *this;            }            // Dereference            BOOST_UBLAS_INLINE            const_reference operator * () const {                BOOST_UBLAS_CHECK (index1 () < (*this) ().size1 (), bad_index ());                BOOST_UBLAS_CHECK (index2 () < (*this) ().size2 (), bad_index ());                if (rank_ == 1) {                    return (*it_).second;                } else {                    return (*this) () (i_, j_);                }            }#ifndef BOOST_UBLAS_NO_NESTED_CLASS_RELATION            BOOST_UBLAS_INLINE#ifdef BOOST_UBLAS_MSVC_NESTED_CLASS_RELATION            typename self_type::#endif            const_iterator2 begin () const {                const self_type &m = (*this) ();                return m.find2 (1, index1 (), 0);            }            BOOST_UBLAS_INLINE#ifdef BOOST_UBLAS_MSVC_NESTED_CLASS_RELATION            typename self_type::#endif            const_iterator2 end () const {                const self_type &m = (*this) ();                return m.find2 (1, index1 (), m.size2 ());            }            BOOST_UBLAS_INLINE#ifdef BOOST_UBLAS_MSVC_NESTED_CLASS_RELATION            typename self_type::#endif            const_reverse_iterator2 rbegin () const {                return const_reverse_iterator2 (end ());            }            BOOST_UBLAS_INLINE#ifdef BOOST_UBLAS_MSVC_NESTED_CLASS_RELATION            typename self_type::#endif            const_reverse_iterator2 rend () const {                return const_reverse_iterator2 (begin ());            }#endif            // Indices            BOOST_UBLAS_INLINE            size_type index1 () const {                BOOST_UBLAS_CHECK (*this != (*this) ().find1 (0, (*this) ().size1 (), j_), bad_index ());                if (rank_ == 1) {                    const self_type &m = (*this) ();                    BOOST_UBLAS_CHECK (layout_type::index_i ((*it_).first, m.size1 (), m.size2 ()) < (*this) ().size1 (), bad_index ());                    return layout_type::index_i ((*it_).first, m.size1 (), m.size2 ());                } else {                    return i_;                }            }            BOOST_UBLAS_INLINE            size_type index2 () const {                if (rank_ == 1) {                    const self_type &m = (*this) ();                    BOOST_UBLAS_CHECK (layout_type::index_j ((*it_).first, m.size1 (), m.size2 ()) < (*this) ().size2 (), bad_index ());                    return layout_type::index_j ((*it_).first, m.size1 (), m.size2 ());                } else {                    return j_;                }            }            // Assignment            BOOST_UBLAS_INLINE            const_iterator1 &operator = (const const_iterator1 &it) {                container_const_reference<self_type>::assign (&it ());                rank_ = it.rank_;                i_ = it.i_;                j_ = it.j_;                it_ = it.it_;                return *this;            }            // Comparison            BOOST_UBLAS_INLINE            bool operator == (const const_iterator1 &it) const {                BOOST_UBLAS_CHECK (&(*this) () == &it (), external_logic ());                // BOOST_UBLAS_CHECK (rank_ == it.rank_, internal_logic ());                if (rank_ == 1 || it.rank_ == 1) {                    return it_ == it.it_;                } else {                    return i_ == it.i_ && j_ == it.j_;                }            }        private:            int rank_;            size_type i_;            size_type j_;            const_subiterator_type it_;        };        BOOST_UBLAS_INLINE        const_iterator1 begin1 () const {            return find1 (0, 0, 0);        }        BOOST_UBLAS_INLINE        const_iterator1 end1 () const {            return find1 (0, size1_, 0);        }        class iterator1:            public container_reference<mapped_matrix>,            public bidirectional_iterator_base<sparse_bidirectional_iterator_tag,                                               iterator1, value_type> {        public:            typedef typename mapped_matrix::value_type value_type;            typedef typename mapped_matrix::difference_type difference_type;            typedef typename mapped_matrix::true_reference reference;            typedef typename mapped_matrix::pointer pointer;            typedef iterator2 dual_iterator_type;            typedef reverse_iterator2 dual_reverse_iterator_type;            // Construction and destruction            BOOST_UBLAS_INLINE            iterator1 ():                container_reference<self_type> (), rank_ (), i_ (), j_ (), it_ () {}            BOOST_UBLAS_INLINE            iterator1 (self_type &m, int rank, size_type i, size_type j, const subiterator_type &it):                container_reference<self_type> (m), rank_ (rank), i_ (i), j_ (j), it_ (it) {}            // Arithmetic            BOOST_UBLAS_INLINE            iterator1 &operator ++ () {                if (rank_ == 1 && layout_type::fast_i ())                    ++ it_;                else                    *this = (*this) ().find1 (rank_, index1 () + 1, j_, 1);                return *this;            }            BOOST_UBLAS_INLINE            iterator1 &operator -- () {                if (rank_ == 1 && layout_type::fast_i ())                    -- it_;                else                    *this = (*this) ().find1 (rank_, index1 () - 1, j_, -1);                return *this;            }            // Dereference            BOOST_UBLAS_INLINE            reference operator * () const {                BOOST_UBLAS_CHECK (index1 () < (*this) ().size1 (), bad_index ());                BOOST_UBLAS_CHECK (index2 () < (*this) ().size2 (), bad_index ());                if (rank_ == 1) {                    return (*it_).second;                } else {                    return (*this) ().at_element (i_, j_);                }            }#ifndef BOOST_UBLAS_NO_NESTED_CLASS_RELATION            BOOST_UBLAS_INLINE#ifdef BOOST_UBLAS_MSVC_NESTED_CLASS_RELATION            typename self_type::#endif            iterator2 begin () const {                self_type &m = (*this) ();                return m.find2 (1, index1 (), 0);            }            BOOST_UBLAS_INLINE#ifdef BOOST_UBLAS_MSVC_NESTED_CLASS_RELATION            typename self_type::#endif            iterator2 end () const {                self_type &m = (*this) ();                return m.find2 (1, index1 (), m.size2 ());            }            BOOST_UBLAS_INLINE#ifdef BOOST_UBLAS_MSVC_NESTED_CLASS_RELATION            typename self_type::#endif            reverse_iterator2 rbegin () const {                return reverse_iterator2 (end ());            }            BOOST_UBLAS_INLINE#ifdef BOOST_UBLAS_MSVC_NESTED_CLASS_RELATION            typename self_type::#endif            reverse_iterator2 rend () const {                return reverse_iterator2 (begin ());            }#endif            // Indices            BOOST_UBLAS_INLINE            size_type index1 () const {                BOOST_UBLAS_CHECK (*this != (*this) ().find1 (0, (*this) ().size1 (), j_), bad_index ());                if (rank_ == 1) {                    const self_type &m = (*this) ();                    BOOST_UBLAS_CHECK (layout_type::index_i ((*it_).first, m.size1 (), m.size2 ()) < (*this) ().size1 (), bad_index ());                    return layout_type::index_i ((*it_).first, m.size1 (), m.size2 ());                } else {                    return i_;                }            }            BOOST_UBLAS_INLINE            size_type index2 () const {                if (rank_ == 1) {                    const self_type &m = (*this) ();                    BOOST_UBLAS_CHECK (layout_type::index_j ((*it_).first, m.size1 (), m.size2 ()) < (*this) ().size2 (), bad_index ());                    return layout_type::index_j ((*it_).first, m.size1 (), m.size2 ());                } else {                    return j_;                }            }            // Assignment            BOOST_UBLAS_INLINE            iterator1 &operator = (const iterator1 &it) {                container_reference<self_type>::assign (&it ());                rank_ = it.rank_;                i_ = it.i_;                j_ = it.j_;                it_ = it.it_;                return *this;            }            // Comparison            BOOST_UBLAS_INLINE            bool operator == (const iterator1 &it) const {                BOOST_UBLAS_CHECK (&(*this) () == &it (), external_logic ());                // BOOST_UBLAS_CHECK (rank_ == it.rank_, internal_logic ());                if (rank_ == 1 || it.rank_ == 1) {                    return it_ == it.it_;                } else {                    return i_ == it.i_ && j_ == it.j_;                }            }        private:            int rank_;            size_type i_;            size_type j_;            subiterator_type it_;            friend class const_iterator1;        };        BOOST_UBLAS_INLINE        iterator1 begin1 () {            return find1 (0, 0, 0);        }        BOOST_UBLAS_INLINE        iterator1 end1 () {            return find1 (0, size1_, 0);        }        class const_iterator2:            public container_const_reference<mapped_matrix>,            public bidirectional_iterator_base<sparse_bidirectional_iterator_tag,                                               const_iterator2, value_type> {        public:            typedef typename mapped_matrix::value_type value_type;            typedef typename mapped_matrix::difference_type difference_type;            typedef typename mapped_matrix::const_reference reference;            typedef const typename mapped_matrix::pointer pointer;            typedef const_iterator1 dual_iterator_type;            typedef const_reverse_iterator1 dual_reverse_iterator_type;            // Construction and destruction            BOOST_UBLAS_INLINE            const_iterator2 ():                container_const_reference<self_type> (), rank_ (), i_ (), j_ (), it_ () {}            BOOST_UBLAS_INLINE            const_iterator2 (const self_type &m, int rank, size_type i, size_type j, const const_subiterator_type &it):                container_const_reference<self_type> (m), rank_ (rank), i_ (i), j_ (j), it_ (it) {}            BOOST_UBLAS_INLINE            const_iterator2 (const iterator2 &it):                container_const_reference<self_type> (it ()), rank_ (it.rank_), i_ (it.i_), j_ (it.j_), it_ (it.it_) {}            // Arithmetic            BOOST_UBLAS_INLINE            const_iterator2 &operator ++ () {                if (rank_ == 1 && layout_type::fast_j ())                    ++ it_;                else                    *this = (*this) ().find2 (rank_, i_, index2 () + 1, 1);                return *this;            }            BOOST_UBLAS_INLINE            const_iterator2 &operator -- () {                if (rank_ == 1 && layout_type::fast_j ())                    -- it_;                else                    *this = (*this) ().find2 (rank_, i_, index2 () - 1, -1);                return *this;            }            // Dereference            BOOST_UBLAS_INLINE            const_reference operator * () const {                BOOST_UBLAS_CHECK (index1 () < (*this) ().size1 (), bad_index ());                BOOST_UBLAS_CHECK (index2 () < (*this) ().size2 (), bad_index ());                if (rank_ == 1) {                    return (*it_).second;                } else {                    return (*this) () (i_, j_);                }            }#ifndef BOOST_UBLAS_NO_NESTED_CLASS_RELATION            BOOST_UBLAS_INLINE#ifdef BOOST_UBLAS_MSVC_NESTED_CLASS_RELATION            typename self_type::#endif

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