376 lines
9.4 KiB
C++
376 lines
9.4 KiB
C++
// SPDX-License-Identifier: Apache-2.0
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//
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// Copyright 2008-2016 Conrad Sanderson (http://conradsanderson.id.au)
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// Copyright 2008-2016 National ICT Australia (NICTA)
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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// ------------------------------------------------------------------------
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//! \addtogroup diagmat_proxy
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//! @{
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template<typename T1>
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class diagmat_proxy_default
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{
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public:
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typedef typename T1::elem_type elem_type;
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typedef typename get_pod_type<elem_type>::result pod_type;
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inline
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diagmat_proxy_default(const T1& X)
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: P ( X )
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, P_is_vec( (resolves_to_vector<T1>::yes) || (P.get_n_rows() == 1) || (P.get_n_cols() == 1) )
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, P_is_col( T1::is_col || (P.get_n_cols() == 1) )
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, n_rows ( P_is_vec ? P.get_n_elem() : P.get_n_rows() )
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, n_cols ( P_is_vec ? P.get_n_elem() : P.get_n_cols() )
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{
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arma_extra_debug_sigprint();
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}
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arma_inline
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elem_type
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operator[](const uword i) const
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{
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if(Proxy<T1>::use_at == false)
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{
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return P_is_vec ? P[i] : P.at(i,i);
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}
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else
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{
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if(P_is_vec)
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{
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return (P_is_col) ? P.at(i,0) : P.at(0,i);
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}
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else
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{
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return P.at(i,i);
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}
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}
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}
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arma_inline
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elem_type
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at(const uword row, const uword col) const
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{
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if(row == col)
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{
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if(Proxy<T1>::use_at == false)
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{
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return (P_is_vec) ? P[row] : P.at(row,row);
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}
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else
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{
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if(P_is_vec)
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{
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return (P_is_col) ? P.at(row,0) : P.at(0,row);
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}
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else
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{
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return P.at(row,row);
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}
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}
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}
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else
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{
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return elem_type(0);
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}
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}
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inline bool is_alias(const Mat<elem_type>& X) const { return P.is_alias(X); }
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const Proxy<T1> P;
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const bool P_is_vec;
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const bool P_is_col;
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const uword n_rows;
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const uword n_cols;
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};
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template<typename T1>
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class diagmat_proxy_fixed
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{
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public:
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typedef typename T1::elem_type elem_type;
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typedef typename get_pod_type<elem_type>::result pod_type;
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inline
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diagmat_proxy_fixed(const T1& X)
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: P(X)
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{
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arma_extra_debug_sigprint();
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}
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arma_inline
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elem_type
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operator[](const uword i) const
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{
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return (P_is_vec) ? P[i] : P.at(i,i);
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}
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arma_inline
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elem_type
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at(const uword row, const uword col) const
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{
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if(row == col)
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{
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return (P_is_vec) ? P[row] : P.at(row,row);
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}
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else
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{
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return elem_type(0);
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}
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}
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arma_inline bool is_alias(const Mat<elem_type>& X) const { return (void_ptr(&X) == void_ptr(&P)); }
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const T1& P;
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//// this may require T1::n_elem etc to be declared as static constexpr inline variables (C++17)
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//// see also the notes in Mat::fixed
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// static constexpr bool P_is_vec = (T1::n_rows == 1) || (T1::n_cols == 1);
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// static constexpr uword n_rows = P_is_vec ? T1::n_elem : T1::n_rows;
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// static constexpr uword n_cols = P_is_vec ? T1::n_elem : T1::n_cols;
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static const bool P_is_vec = (T1::n_rows == 1) || (T1::n_cols == 1);
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static const uword n_rows = P_is_vec ? T1::n_elem : T1::n_rows;
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static const uword n_cols = P_is_vec ? T1::n_elem : T1::n_cols;
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};
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template<typename T1, bool condition>
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struct diagmat_proxy_redirect {};
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template<typename T1>
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struct diagmat_proxy_redirect<T1, false> { typedef diagmat_proxy_default<T1> result; };
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template<typename T1>
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struct diagmat_proxy_redirect<T1, true> { typedef diagmat_proxy_fixed<T1> result; };
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template<typename T1>
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class diagmat_proxy : public diagmat_proxy_redirect<T1, is_Mat_fixed<T1>::value>::result
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{
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public:
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inline diagmat_proxy(const T1& X)
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: diagmat_proxy_redirect<T1, is_Mat_fixed<T1>::value>::result(X)
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{
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}
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};
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template<typename eT>
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class diagmat_proxy< Mat<eT> >
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{
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public:
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typedef eT elem_type;
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typedef typename get_pod_type<elem_type>::result pod_type;
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inline
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diagmat_proxy(const Mat<eT>& X)
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: P ( X )
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, P_is_vec( (X.n_rows == 1) || (X.n_cols == 1) )
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, n_rows ( P_is_vec ? X.n_elem : X.n_rows )
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, n_cols ( P_is_vec ? X.n_elem : X.n_cols )
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{
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arma_extra_debug_sigprint();
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}
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arma_inline elem_type operator[] (const uword i) const { return P_is_vec ? P[i] : P.at(i,i); }
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arma_inline elem_type at (const uword row, const uword col) const { return (row == col) ? ( P_is_vec ? P[row] : P.at(row,row) ) : elem_type(0); }
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arma_inline bool is_alias(const Mat<eT>& X) const { return (void_ptr(&X) == void_ptr(&P)); }
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const Mat<eT>& P;
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const bool P_is_vec;
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const uword n_rows;
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const uword n_cols;
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};
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template<typename eT>
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class diagmat_proxy< Row<eT> >
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{
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public:
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typedef eT elem_type;
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typedef typename get_pod_type<elem_type>::result pod_type;
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inline
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diagmat_proxy(const Row<eT>& X)
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: P(X)
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, n_rows(X.n_elem)
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, n_cols(X.n_elem)
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{
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arma_extra_debug_sigprint();
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}
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arma_inline elem_type operator[] (const uword i) const { return P[i]; }
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arma_inline elem_type at (const uword row, const uword col) const { return (row == col) ? P[row] : elem_type(0); }
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arma_inline bool is_alias(const Mat<eT>& X) const { return (void_ptr(&X) == void_ptr(&P)); }
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static constexpr bool P_is_vec = true;
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const Row<eT>& P;
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const uword n_rows;
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const uword n_cols;
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};
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template<typename eT>
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class diagmat_proxy< Col<eT> >
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{
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public:
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typedef eT elem_type;
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typedef typename get_pod_type<elem_type>::result pod_type;
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inline
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diagmat_proxy(const Col<eT>& X)
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: P(X)
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, n_rows(X.n_elem)
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, n_cols(X.n_elem)
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{
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arma_extra_debug_sigprint();
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}
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arma_inline elem_type operator[] (const uword i) const { return P[i]; }
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arma_inline elem_type at (const uword row, const uword col) const { return (row == col) ? P[row] : elem_type(0); }
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arma_inline bool is_alias(const Mat<eT>& X) const { return (void_ptr(&X) == void_ptr(&P)); }
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static constexpr bool P_is_vec = true;
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const Col<eT>& P;
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const uword n_rows;
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const uword n_cols;
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};
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template<typename eT>
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class diagmat_proxy< subview_row<eT> >
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{
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public:
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typedef eT elem_type;
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typedef typename get_pod_type<elem_type>::result pod_type;
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inline
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diagmat_proxy(const subview_row<eT>& X)
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: P(X)
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, n_rows(X.n_elem)
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, n_cols(X.n_elem)
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{
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arma_extra_debug_sigprint();
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}
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arma_inline elem_type operator[] (const uword i) const { return P[i]; }
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arma_inline elem_type at (const uword row, const uword col) const { return (row == col) ? P[row] : elem_type(0); }
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arma_inline bool is_alias(const Mat<eT>& X) const { return (void_ptr(&X) == void_ptr(&(P.m))); }
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static constexpr bool P_is_vec = true;
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const subview_row<eT>& P;
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const uword n_rows;
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const uword n_cols;
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};
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template<typename eT>
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class diagmat_proxy< subview_col<eT> >
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{
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public:
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typedef eT elem_type;
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typedef typename get_pod_type<elem_type>::result pod_type;
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inline
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diagmat_proxy(const subview_col<eT>& X)
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: P(X)
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, n_rows(X.n_elem)
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, n_cols(X.n_elem)
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{
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arma_extra_debug_sigprint();
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}
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arma_inline elem_type operator[] (const uword i) const { return P[i]; }
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arma_inline elem_type at (const uword row, const uword col) const { return (row == col) ? P[row] : elem_type(0); }
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arma_inline bool is_alias(const Mat<eT>& X) const { return (void_ptr(&X) == void_ptr(&(P.m))); }
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static constexpr bool P_is_vec = true;
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const subview_col<eT>& P;
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const uword n_rows;
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const uword n_cols;
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};
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template<typename T1, typename T2>
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class diagmat_proxy< Glue<T1,T2,glue_times> >
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{
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public:
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typedef typename T1::elem_type elem_type;
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typedef typename get_pod_type<elem_type>::result pod_type;
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inline
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diagmat_proxy(const Glue<T1,T2,glue_times>& X)
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{
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op_diagmat::apply_times(P, X.A, X.B);
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n_rows = P.n_rows;
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n_cols = P.n_cols;
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arma_extra_debug_sigprint();
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}
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arma_inline elem_type operator[] (const uword i) const { return P.at(i,i); }
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arma_inline elem_type at (const uword row, const uword col) const { return (row == col) ? P.at(row,row) : elem_type(0); }
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constexpr bool is_alias(const Mat<elem_type>&) const { return false; }
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static constexpr bool P_is_vec = false;
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Mat<elem_type> P;
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uword n_rows;
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uword n_cols;
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};
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//! @}
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