231 lines
8.2 KiB
C++
231 lines
8.2 KiB
C++
// 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 sp_auxlib
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//! @{
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//! wrapper for accesing external functions in ARPACK and SuperLU
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class sp_auxlib
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{
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public:
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enum form_type
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{
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form_none, form_lm, form_sm, form_lr, form_la, form_sr, form_li, form_si, form_sa, form_sigma
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};
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inline static form_type interpret_form_str(const char* form_str);
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//
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// eigs_sym() for real matrices
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template<typename eT, typename T1>
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inline static bool eigs_sym(Col<eT>& eigval, Mat<eT>& eigvec, const SpBase<eT, T1>& X, const uword n_eigvals, const form_type form_val, const eigs_opts& opts);
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template<typename eT, typename T1>
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inline static bool eigs_sym(Col<eT>& eigval, Mat<eT>& eigvec, const SpBase<eT, T1>& X, const uword n_eigvals, const eT sigma, const eigs_opts& opts);
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template<typename eT>
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inline static bool eigs_sym_newarp(Col<eT>& eigval, Mat<eT>& eigvec, const SpMat<eT>& X, const uword n_eigvals, const form_type form_val, const eigs_opts& opts);
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template<typename eT>
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inline static bool eigs_sym_newarp(Col<eT>& eigval, Mat<eT>& eigvec, const SpMat<eT>& X, const uword n_eigvals, const eT sigma, const eigs_opts& opts);
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template<typename eT, bool use_sigma>
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inline static bool eigs_sym_arpack(Col<eT>& eigval, Mat<eT>& eigvec, const SpMat<eT>& X, const uword n_eigvals, const form_type form_val, const eT sigma, const eigs_opts& opts);
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//
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// eigs_gen() for real matrices
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template<typename T, typename T1>
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inline static bool eigs_gen(Col< std::complex<T> >& eigval, Mat< std::complex<T> >& eigvec, const SpBase<T, T1>& X, const uword n_eigvals, const form_type form_val, const eigs_opts& opts);
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template<typename T, typename T1>
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inline static bool eigs_gen(Col< std::complex<T> >& eigval, Mat< std::complex<T> >& eigvec, const SpBase<T, T1>& X, const uword n_eigvals, const std::complex<T> sigma, const eigs_opts& opts);
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template<typename T>
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inline static bool eigs_gen_newarp(Col< std::complex<T> >& eigval, Mat< std::complex<T> >& eigvec, const SpMat<T>& X, const uword n_eigvals, const form_type form_val, const eigs_opts& opts);
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template<typename T, bool use_sigma>
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inline static bool eigs_gen_arpack(Col< std::complex<T> >& eigval, Mat< std::complex<T> >& eigvec, const SpMat<T>& X, const uword n_eigvals, const form_type form_val, const std::complex<T> sigma, const eigs_opts& opts);
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//
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// eigs_gen() for complex matrices
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template<typename T, typename T1>
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inline static bool eigs_gen(Col< std::complex<T> >& eigval, Mat< std::complex<T> >& eigvec, const SpBase< std::complex<T>, T1>& X, const uword n_eigvals, const form_type form_val, const eigs_opts& opts);
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template<typename T, typename T1>
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inline static bool eigs_gen(Col< std::complex<T> >& eigval, Mat< std::complex<T> >& eigvec, const SpBase< std::complex<T>, T1>& X, const uword n_eigvals, const std::complex<T> sigma, const eigs_opts& opts);
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template<typename T, bool use_sigma>
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inline static bool eigs_gen(Col< std::complex<T> >& eigval, Mat< std::complex<T> >& eigvec, const SpMat< std::complex<T> >& X, const uword n_eigvals, const form_type form_val, const std::complex<T> sigma, const eigs_opts& opts);
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//
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// spsolve() via SuperLU
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template<typename T1, typename T2>
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inline static bool spsolve_simple(Mat<typename T1::elem_type>& out, const SpBase<typename T1::elem_type, T1>& A, const Base<typename T1::elem_type, T2>& B, const superlu_opts& user_opts);
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template<typename T1, typename T2>
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inline static bool spsolve_refine(Mat<typename T1::elem_type>& out, typename T1::pod_type& out_rcond, const SpBase<typename T1::elem_type, T1>& A, const Base<typename T1::elem_type, T2>& B, const superlu_opts& user_opts);
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// //
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// // rcond() via SuperLU
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//
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// template<typename T1>
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// sinline static typename T1::pod_type rcond(const SpBase<typename T1::elem_type, T1>& A);
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//
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// support functions
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#if defined(ARMA_USE_SUPERLU)
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template<typename eT>
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inline static typename get_pod_type<eT>::result norm1(superlu::SuperMatrix* A);
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template<typename eT>
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inline static typename get_pod_type<eT>::result lu_rcond(superlu::SuperMatrix* L, superlu::SuperMatrix* U, typename get_pod_type<eT>::result norm_val);
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inline static void set_superlu_opts(superlu::superlu_options_t& options, const superlu_opts& user_opts);
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template<typename eT>
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inline static bool copy_to_supermatrix(superlu::SuperMatrix& out, const SpMat<eT>& A);
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template<typename eT>
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inline static bool copy_to_supermatrix_with_shift(superlu::SuperMatrix& out, const SpMat<eT>& A, const eT shift);
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// // for debugging only
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// template<typename eT>
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// inline static void copy_to_spmat(SpMat<eT>& out, const superlu::SuperMatrix& A);
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template<typename eT>
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inline static bool wrap_to_supermatrix(superlu::SuperMatrix& out, const Mat<eT>& A);
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inline static void destroy_supermatrix(superlu::SuperMatrix& out);
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#endif
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private:
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// calls arpack saupd()/naupd() because the code is so similar for each
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// all of the extra variables are later used by seupd()/neupd(), but those
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// functions are very different and we can't combine their code
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template<typename eT, typename T>
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inline static void run_aupd_plain
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(
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const uword n_eigvals, char* which,
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const SpMat<T>& X, const bool sym,
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blas_int& n, eT& tol, blas_int& maxiter,
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podarray<T>& resid, blas_int& ncv, podarray<T>& v, blas_int& ldv,
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podarray<blas_int>& iparam, podarray<blas_int>& ipntr,
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podarray<T>& workd, podarray<T>& workl, blas_int& lworkl, podarray<eT>& rwork,
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blas_int& info
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);
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template<typename eT, typename T>
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inline static void run_aupd_shiftinvert
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(
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const uword n_eigvals, const T sigma,
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const SpMat<T>& X, const bool sym,
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blas_int& n, eT& tol, blas_int& maxiter,
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podarray<T>& resid, blas_int& ncv, podarray<T>& v, blas_int& ldv,
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podarray<blas_int>& iparam, podarray<blas_int>& ipntr,
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podarray<T>& workd, podarray<T>& workl, blas_int& lworkl, podarray<eT>& rwork,
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blas_int& info
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);
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template<typename eT>
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inline static bool rudimentary_sym_check(const SpMat<eT>& X);
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template<typename T>
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inline static bool rudimentary_sym_check(const SpMat< std::complex<T> >& X);
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};
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#if defined(ARMA_USE_SUPERLU)
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class superlu_supermatrix_wrangler
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{
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private:
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bool used = false;
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arma_aligned superlu::SuperMatrix m;
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public:
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inline ~superlu_supermatrix_wrangler();
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inline superlu_supermatrix_wrangler();
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inline superlu_supermatrix_wrangler(const superlu_supermatrix_wrangler&) = delete;
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inline void operator= (const superlu_supermatrix_wrangler&) = delete;
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inline superlu::SuperMatrix& get_ref();
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inline superlu::SuperMatrix* get_ptr();
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};
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class superlu_stat_wrangler
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{
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private:
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arma_aligned superlu::SuperLUStat_t stat;
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public:
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inline ~superlu_stat_wrangler();
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inline superlu_stat_wrangler();
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inline superlu_stat_wrangler(const superlu_stat_wrangler&) = delete;
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inline void operator= (const superlu_stat_wrangler&) = delete;
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inline superlu::SuperLUStat_t* get_ptr();
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};
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template<typename eT>
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class superlu_array_wrangler
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{
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private:
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arma_aligned eT* mem = nullptr;
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public:
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inline ~superlu_array_wrangler();
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inline superlu_array_wrangler(const uword n_elem);
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inline superlu_array_wrangler() = delete;
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inline superlu_array_wrangler(const superlu_array_wrangler&) = delete;
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inline void operator= (const superlu_array_wrangler&) = delete;
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inline eT* get_ptr();
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};
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#endif
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//! @}
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