424 lines
12 KiB
C++
424 lines
12 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 fn_eigs_gen
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//! @{
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//! eigenvalues of general sparse matrix X
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template<typename T1>
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arma_warn_unused
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, Col< std::complex<typename T1::pod_type> > >::result
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eigs_gen
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(
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const char* form = "lm",
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const eigs_opts opts = eigs_opts()
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)
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{
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arma_extra_debug_sigprint();
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typedef typename T1::pod_type T;
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Mat< std::complex<T> > eigvec;
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Col< std::complex<T> > eigval;
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sp_auxlib::form_type form_val = sp_auxlib::interpret_form_str(form);
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const bool status = sp_auxlib::eigs_gen(eigval, eigvec, X, n_eigvals, form_val, opts);
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if(status == false)
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{
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eigval.soft_reset();
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arma_stop_runtime_error("eigs_gen(): decomposition failed");
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}
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return eigval;
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}
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//! this form is deprecated; use eigs_gen(X, n_eigvals, form, opts) instead
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template<typename T1>
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arma_deprecated
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, Col< std::complex<typename T1::pod_type> > >::result
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eigs_gen
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(
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const char* form,
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const typename T1::pod_type tol
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)
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{
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arma_extra_debug_sigprint();
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eigs_opts opts;
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opts.tol = tol;
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return eigs_gen(X, n_eigvals, form, opts);
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}
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template<typename T1>
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arma_warn_unused
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, Col< std::complex<typename T1::pod_type> > >::result
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eigs_gen
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(
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const std::complex<typename T1::pod_type> sigma,
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const eigs_opts opts = eigs_opts()
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)
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{
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arma_extra_debug_sigprint();
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typedef typename T1::pod_type T;
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Mat< std::complex<T> > eigvec;
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Col< std::complex<T> > eigval;
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bool status = false;
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// If X is real and sigma is truly complex, treat X as complex.
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// The reason is that we are still not able to apply truly complex shifts to real matrices
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if( (is_real<typename T1::elem_type>::yes) && (std::imag(sigma) != T(0)) )
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{
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status = sp_auxlib::eigs_gen(eigval, eigvec, conv_to< SpMat< std::complex<T> > >::from(X), n_eigvals, sigma, opts);
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}
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else
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{
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status = sp_auxlib::eigs_gen(eigval, eigvec, X, n_eigvals, sigma, opts);
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}
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if(status == false)
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{
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eigval.soft_reset();
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arma_stop_runtime_error("eigs_gen(): decomposition failed");
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}
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return eigval;
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}
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template<typename T1>
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arma_warn_unused
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, Col< std::complex<typename T1::pod_type> > >::result
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eigs_gen
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(
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const double sigma,
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const eigs_opts opts = eigs_opts()
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)
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{
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arma_extra_debug_sigprint();
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typedef typename T1::pod_type T;
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Mat< std::complex<T> > eigvec;
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Col< std::complex<T> > eigval;
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const bool status = sp_auxlib::eigs_gen(eigval, eigvec, X, n_eigvals, std::complex<T>(T(sigma)), opts);
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if(status == false)
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{
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eigval.soft_reset();
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arma_stop_runtime_error("eigs_gen(): decomposition failed");
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}
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return eigval;
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}
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//! eigenvalues of general sparse matrix X
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template<typename T1>
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, bool >::result
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eigs_gen
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(
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Col< std::complex<typename T1::pod_type> >& eigval,
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const char* form = "lm",
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const eigs_opts opts = eigs_opts()
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)
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{
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arma_extra_debug_sigprint();
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typedef typename T1::pod_type T;
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Mat< std::complex<T> > eigvec;
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sp_auxlib::form_type form_val = sp_auxlib::interpret_form_str(form);
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const bool status = sp_auxlib::eigs_gen(eigval, eigvec, X, n_eigvals, form_val, opts);
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if(status == false)
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{
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eigval.soft_reset();
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arma_debug_warn_level(3, "eigs_gen(): decomposition failed");
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}
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return status;
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}
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//! this form is deprecated; use eigs_gen(eigval, X, n_eigvals, form, opts) instead
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template<typename T1>
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arma_deprecated
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, bool >::result
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eigs_gen
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(
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Col< std::complex<typename T1::pod_type> >& eigval,
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const char* form,
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const typename T1::pod_type tol
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)
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{
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arma_extra_debug_sigprint();
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eigs_opts opts;
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opts.tol = tol;
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return eigs_gen(eigval, X, n_eigvals, form, opts);
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}
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template<typename T1>
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, bool >::result
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eigs_gen
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(
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Col< std::complex<typename T1::pod_type> >& eigval,
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const std::complex<typename T1::pod_type> sigma,
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const eigs_opts opts = eigs_opts()
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)
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{
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arma_extra_debug_sigprint();
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typedef typename T1::pod_type T;
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Mat< std::complex<T> > eigvec;
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bool status = false;
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// If X is real and sigma is truly complex, treat X as complex.
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// The reason is that we are still not able to apply truly complex shifts to real matrices
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if( (is_real<typename T1::elem_type>::yes) && (std::imag(sigma) != T(0)) )
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{
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status = sp_auxlib::eigs_gen(eigval, eigvec, conv_to< SpMat< std::complex<T> > >::from(X), n_eigvals, sigma, opts);
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}
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else
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{
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status = sp_auxlib::eigs_gen(eigval, eigvec, X, n_eigvals, sigma, opts);
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}
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if(status == false)
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{
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eigval.soft_reset();
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arma_debug_warn_level(3, "eigs_gen(): decomposition failed");
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}
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return status;
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}
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template<typename T1>
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, bool >::result
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eigs_gen
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(
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Col< std::complex<typename T1::pod_type> >& eigval,
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const double sigma,
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const eigs_opts opts = eigs_opts()
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)
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{
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arma_extra_debug_sigprint();
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typedef typename T1::pod_type T;
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Mat< std::complex<T> > eigvec;
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const bool status = sp_auxlib::eigs_gen(eigval, eigvec, X, n_eigvals, std::complex<T>(T(sigma)), opts);
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if(status == false)
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{
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eigval.soft_reset();
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arma_debug_warn_level(3, "eigs_gen(): decomposition failed");
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}
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return status;
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}
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//! eigenvalues and eigenvectors of general sparse matrix X
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template<typename T1>
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, bool >::result
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eigs_gen
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(
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Col< std::complex<typename T1::pod_type> >& eigval,
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Mat< std::complex<typename T1::pod_type> >& eigvec,
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const char* form = "lm",
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const eigs_opts opts = eigs_opts()
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)
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{
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arma_extra_debug_sigprint();
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// typedef typename T1::pod_type T;
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arma_debug_check( void_ptr(&eigval) == void_ptr(&eigvec), "eigs_gen(): parameter 'eigval' is an alias of parameter 'eigvec'" );
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sp_auxlib::form_type form_val = sp_auxlib::interpret_form_str(form);
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const bool status = sp_auxlib::eigs_gen(eigval, eigvec, X, n_eigvals, form_val, opts);
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if(status == false)
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{
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eigval.soft_reset();
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eigvec.soft_reset();
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arma_debug_warn_level(3, "eigs_gen(): decomposition failed");
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}
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return status;
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}
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//! this form is deprecated; use eigs_gen(eigval, eigvec, X, n_eigvals, form, opts) instead
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template<typename T1>
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arma_deprecated
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, bool >::result
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eigs_gen
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(
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Col< std::complex<typename T1::pod_type> >& eigval,
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Mat< std::complex<typename T1::pod_type> >& eigvec,
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const char* form,
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const typename T1::pod_type tol
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)
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{
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arma_extra_debug_sigprint();
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eigs_opts opts;
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opts.tol = tol;
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return eigs_gen(eigval, eigvec, X, n_eigvals, form, opts);
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}
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template<typename T1>
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, bool >::result
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eigs_gen
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(
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Col< std::complex<typename T1::pod_type> >& eigval,
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Mat< std::complex<typename T1::pod_type> >& eigvec,
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const std::complex<typename T1::pod_type> sigma,
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const eigs_opts opts = eigs_opts()
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)
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{
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arma_extra_debug_sigprint();
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typedef typename T1::pod_type T;
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arma_debug_check( void_ptr(&eigval) == void_ptr(&eigvec), "eigs_gen(): parameter 'eigval' is an alias of parameter 'eigvec'" );
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bool status = false;
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// If X is real and sigma is truly complex, treat X as complex.
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// The reason is that we are still not able to apply truly complex shifts to real matrices
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if( (is_real<typename T1::elem_type>::yes) && (std::imag(sigma) != T(0)) )
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{
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status = sp_auxlib::eigs_gen(eigval, eigvec, conv_to< SpMat< std::complex<T> > >::from(X), n_eigvals, sigma, opts);
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}
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else
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{
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status = sp_auxlib::eigs_gen(eigval, eigvec, X, n_eigvals, sigma, opts);
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}
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if(status == false)
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{
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eigval.soft_reset();
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eigvec.soft_reset();
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arma_debug_warn_level(3, "eigs_gen(): decomposition failed");
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}
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return status;
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}
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template<typename T1>
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inline
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typename enable_if2< is_real<typename T1::pod_type>::value, bool >::result
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eigs_gen
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(
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Col< std::complex<typename T1::pod_type> >& eigval,
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Mat< std::complex<typename T1::pod_type> >& eigvec,
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const SpBase<typename T1::elem_type, T1>& X,
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const uword n_eigvals,
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const double sigma,
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const eigs_opts opts = eigs_opts()
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)
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{
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arma_extra_debug_sigprint();
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typedef typename T1::pod_type T;
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arma_debug_check( void_ptr(&eigval) == void_ptr(&eigvec), "eigs_gen(): parameter 'eigval' is an alias of parameter 'eigvec'" );
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const bool status = sp_auxlib::eigs_gen(eigval, eigvec, X, n_eigvals, std::complex<T>(T(sigma)), opts);
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if(status == false)
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{
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eigval.soft_reset();
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eigvec.soft_reset();
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arma_debug_warn_level(3, "eigs_gen(): decomposition failed");
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}
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return status;
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}
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//! @}
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