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510 lines
23 KiB
510 lines
23 KiB
6 years ago
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//
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// Copyright (c) 2002--2010
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// Toon Knapen, Karl Meerbergen, Kresimir Fresl,
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// Thomas Klimpel and Rutger ter Borg
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//
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// Distributed under the Boost Software License, Version 1.0.
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// (See accompanying file LICENSE_1_0.txt or copy at
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// http://www.boost.org/LICENSE_1_0.txt)
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//
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// THIS FILE IS AUTOMATICALLY GENERATED
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// PLEASE DO NOT EDIT!
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//
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#ifndef BOOST_NUMERIC_BINDINGS_LAPACK_DRIVER_GGEV_HPP
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#define BOOST_NUMERIC_BINDINGS_LAPACK_DRIVER_GGEV_HPP
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#include <boost/assert.hpp>
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#include <boost/numeric/bindings/begin.hpp>
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#include <boost/numeric/bindings/detail/array.hpp>
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#include <boost/numeric/bindings/is_column_major.hpp>
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#include <boost/numeric/bindings/is_complex.hpp>
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#include <boost/numeric/bindings/is_mutable.hpp>
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#include <boost/numeric/bindings/is_real.hpp>
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#include <boost/numeric/bindings/lapack/workspace.hpp>
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#include <boost/numeric/bindings/remove_imaginary.hpp>
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#include <boost/numeric/bindings/size.hpp>
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#include <boost/numeric/bindings/stride.hpp>
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#include <boost/numeric/bindings/traits/detail/utils.hpp>
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#include <boost/numeric/bindings/value_type.hpp>
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#include <boost/static_assert.hpp>
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#include <boost/type_traits/is_same.hpp>
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#include <boost/type_traits/remove_const.hpp>
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#include <boost/utility/enable_if.hpp>
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//
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// The LAPACK-backend for ggev is the netlib-compatible backend.
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//
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#include <boost/numeric/bindings/lapack/detail/lapack.h>
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#include <boost/numeric/bindings/lapack/detail/lapack_option.hpp>
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namespace boost {
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namespace numeric {
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namespace bindings {
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namespace lapack {
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//
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// The detail namespace contains value-type-overloaded functions that
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// dispatch to the appropriate back-end LAPACK-routine.
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//
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namespace detail {
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//
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// Overloaded function for dispatching to
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// * netlib-compatible LAPACK backend (the default), and
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// * float value-type.
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//
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inline std::ptrdiff_t ggev( const char jobvl, const char jobvr,
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const fortran_int_t n, float* a, const fortran_int_t lda, float* b,
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const fortran_int_t ldb, float* alphar, float* alphai, float* beta,
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float* vl, const fortran_int_t ldvl, float* vr,
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const fortran_int_t ldvr, float* work, const fortran_int_t lwork ) {
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fortran_int_t info(0);
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LAPACK_SGGEV( &jobvl, &jobvr, &n, a, &lda, b, &ldb, alphar, alphai, beta,
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vl, &ldvl, vr, &ldvr, work, &lwork, &info );
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return info;
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}
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//
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// Overloaded function for dispatching to
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// * netlib-compatible LAPACK backend (the default), and
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// * double value-type.
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//
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inline std::ptrdiff_t ggev( const char jobvl, const char jobvr,
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const fortran_int_t n, double* a, const fortran_int_t lda, double* b,
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const fortran_int_t ldb, double* alphar, double* alphai, double* beta,
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double* vl, const fortran_int_t ldvl, double* vr,
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const fortran_int_t ldvr, double* work, const fortran_int_t lwork ) {
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fortran_int_t info(0);
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LAPACK_DGGEV( &jobvl, &jobvr, &n, a, &lda, b, &ldb, alphar, alphai, beta,
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vl, &ldvl, vr, &ldvr, work, &lwork, &info );
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return info;
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}
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//
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// Overloaded function for dispatching to
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// * netlib-compatible LAPACK backend (the default), and
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// * complex<float> value-type.
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//
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inline std::ptrdiff_t ggev( const char jobvl, const char jobvr,
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const fortran_int_t n, std::complex<float>* a,
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const fortran_int_t lda, std::complex<float>* b,
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const fortran_int_t ldb, std::complex<float>* alpha,
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std::complex<float>* beta, std::complex<float>* vl,
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const fortran_int_t ldvl, std::complex<float>* vr,
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const fortran_int_t ldvr, std::complex<float>* work,
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const fortran_int_t lwork, float* rwork ) {
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fortran_int_t info(0);
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LAPACK_CGGEV( &jobvl, &jobvr, &n, a, &lda, b, &ldb, alpha, beta, vl,
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&ldvl, vr, &ldvr, work, &lwork, rwork, &info );
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return info;
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}
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//
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// Overloaded function for dispatching to
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// * netlib-compatible LAPACK backend (the default), and
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// * complex<double> value-type.
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//
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inline std::ptrdiff_t ggev( const char jobvl, const char jobvr,
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const fortran_int_t n, std::complex<double>* a,
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const fortran_int_t lda, std::complex<double>* b,
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const fortran_int_t ldb, std::complex<double>* alpha,
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std::complex<double>* beta, std::complex<double>* vl,
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const fortran_int_t ldvl, std::complex<double>* vr,
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const fortran_int_t ldvr, std::complex<double>* work,
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const fortran_int_t lwork, double* rwork ) {
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fortran_int_t info(0);
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LAPACK_ZGGEV( &jobvl, &jobvr, &n, a, &lda, b, &ldb, alpha, beta, vl,
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&ldvl, vr, &ldvr, work, &lwork, rwork, &info );
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return info;
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}
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} // namespace detail
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//
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// Value-type based template class. Use this class if you need a type
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// for dispatching to ggev.
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//
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template< typename Value, typename Enable = void >
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struct ggev_impl {};
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//
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// This implementation is enabled if Value is a real type.
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//
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template< typename Value >
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struct ggev_impl< Value, typename boost::enable_if< is_real< Value > >::type > {
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typedef Value value_type;
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typedef typename remove_imaginary< Value >::type real_type;
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//
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// Static member function for user-defined workspaces, that
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// * Deduces the required arguments for dispatching to LAPACK, and
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// * Asserts that most arguments make sense.
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//
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template< typename MatrixA, typename MatrixB, typename VectorALPHAR,
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typename VectorALPHAI, typename VectorBETA, typename MatrixVL,
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typename MatrixVR, typename WORK >
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static std::ptrdiff_t invoke( const char jobvl, const char jobvr,
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MatrixA& a, MatrixB& b, VectorALPHAR& alphar,
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VectorALPHAI& alphai, VectorBETA& beta, MatrixVL& vl,
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MatrixVR& vr, detail::workspace1< WORK > work ) {
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namespace bindings = ::boost::numeric::bindings;
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BOOST_STATIC_ASSERT( (bindings::is_column_major< MatrixA >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_column_major< MatrixB >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_column_major< MatrixVL >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_column_major< MatrixVR >::value) );
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BOOST_STATIC_ASSERT( (boost::is_same< typename remove_const<
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typename bindings::value_type< MatrixA >::type >::type,
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typename remove_const< typename bindings::value_type<
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MatrixB >::type >::type >::value) );
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BOOST_STATIC_ASSERT( (boost::is_same< typename remove_const<
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typename bindings::value_type< MatrixA >::type >::type,
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typename remove_const< typename bindings::value_type<
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VectorALPHAR >::type >::type >::value) );
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BOOST_STATIC_ASSERT( (boost::is_same< typename remove_const<
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typename bindings::value_type< MatrixA >::type >::type,
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typename remove_const< typename bindings::value_type<
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VectorALPHAI >::type >::type >::value) );
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BOOST_STATIC_ASSERT( (boost::is_same< typename remove_const<
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typename bindings::value_type< MatrixA >::type >::type,
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typename remove_const< typename bindings::value_type<
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VectorBETA >::type >::type >::value) );
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BOOST_STATIC_ASSERT( (boost::is_same< typename remove_const<
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typename bindings::value_type< MatrixA >::type >::type,
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typename remove_const< typename bindings::value_type<
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MatrixVL >::type >::type >::value) );
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BOOST_STATIC_ASSERT( (boost::is_same< typename remove_const<
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typename bindings::value_type< MatrixA >::type >::type,
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typename remove_const< typename bindings::value_type<
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MatrixVR >::type >::type >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< MatrixA >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< MatrixB >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< VectorALPHAR >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< VectorALPHAI >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< VectorBETA >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< MatrixVL >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< MatrixVR >::value) );
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BOOST_ASSERT( bindings::size(alphai) >= bindings::size_column(a) );
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BOOST_ASSERT( bindings::size(alphar) >= bindings::size_column(a) );
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BOOST_ASSERT( bindings::size(work.select(real_type())) >=
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min_size_work( bindings::size_column(a) ));
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BOOST_ASSERT( bindings::size_column(a) >= 0 );
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BOOST_ASSERT( bindings::size_minor(a) == 1 ||
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bindings::stride_minor(a) == 1 );
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BOOST_ASSERT( bindings::size_minor(b) == 1 ||
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bindings::stride_minor(b) == 1 );
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BOOST_ASSERT( bindings::size_minor(vl) == 1 ||
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bindings::stride_minor(vl) == 1 );
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BOOST_ASSERT( bindings::size_minor(vr) == 1 ||
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bindings::stride_minor(vr) == 1 );
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BOOST_ASSERT( bindings::stride_major(a) >= std::max< std::ptrdiff_t >(1,
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bindings::size_column(a)) );
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BOOST_ASSERT( bindings::stride_major(b) >= std::max< std::ptrdiff_t >(1,
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bindings::size_column(a)) );
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BOOST_ASSERT( jobvl == 'N' || jobvl == 'V' );
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BOOST_ASSERT( jobvr == 'N' || jobvr == 'V' );
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return detail::ggev( jobvl, jobvr, bindings::size_column(a),
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bindings::begin_value(a), bindings::stride_major(a),
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bindings::begin_value(b), bindings::stride_major(b),
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bindings::begin_value(alphar), bindings::begin_value(alphai),
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bindings::begin_value(beta), bindings::begin_value(vl),
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bindings::stride_major(vl), bindings::begin_value(vr),
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bindings::stride_major(vr),
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bindings::begin_value(work.select(real_type())),
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bindings::size(work.select(real_type())) );
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}
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//
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// Static member function that
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// * Figures out the minimal workspace requirements, and passes
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// the results to the user-defined workspace overload of the
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// invoke static member function
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// * Enables the unblocked algorithm (BLAS level 2)
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//
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template< typename MatrixA, typename MatrixB, typename VectorALPHAR,
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typename VectorALPHAI, typename VectorBETA, typename MatrixVL,
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typename MatrixVR >
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static std::ptrdiff_t invoke( const char jobvl, const char jobvr,
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MatrixA& a, MatrixB& b, VectorALPHAR& alphar,
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VectorALPHAI& alphai, VectorBETA& beta, MatrixVL& vl,
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MatrixVR& vr, minimal_workspace ) {
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namespace bindings = ::boost::numeric::bindings;
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bindings::detail::array< real_type > tmp_work( min_size_work(
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bindings::size_column(a) ) );
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return invoke( jobvl, jobvr, a, b, alphar, alphai, beta, vl, vr,
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workspace( tmp_work ) );
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}
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//
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// Static member function that
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// * Figures out the optimal workspace requirements, and passes
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// the results to the user-defined workspace overload of the
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// invoke static member
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// * Enables the blocked algorithm (BLAS level 3)
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//
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template< typename MatrixA, typename MatrixB, typename VectorALPHAR,
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typename VectorALPHAI, typename VectorBETA, typename MatrixVL,
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typename MatrixVR >
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static std::ptrdiff_t invoke( const char jobvl, const char jobvr,
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MatrixA& a, MatrixB& b, VectorALPHAR& alphar,
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VectorALPHAI& alphai, VectorBETA& beta, MatrixVL& vl,
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MatrixVR& vr, optimal_workspace ) {
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namespace bindings = ::boost::numeric::bindings;
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real_type opt_size_work;
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detail::ggev( jobvl, jobvr, bindings::size_column(a),
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bindings::begin_value(a), bindings::stride_major(a),
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bindings::begin_value(b), bindings::stride_major(b),
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bindings::begin_value(alphar), bindings::begin_value(alphai),
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bindings::begin_value(beta), bindings::begin_value(vl),
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bindings::stride_major(vl), bindings::begin_value(vr),
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bindings::stride_major(vr), &opt_size_work, -1 );
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bindings::detail::array< real_type > tmp_work(
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traits::detail::to_int( opt_size_work ) );
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return invoke( jobvl, jobvr, a, b, alphar, alphai, beta, vl, vr,
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workspace( tmp_work ) );
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}
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//
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// Static member function that returns the minimum size of
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// workspace-array work.
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//
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static std::ptrdiff_t min_size_work( const std::ptrdiff_t n ) {
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return std::max< std::ptrdiff_t >(1,8*n);
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}
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};
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//
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// This implementation is enabled if Value is a complex type.
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//
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template< typename Value >
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struct ggev_impl< Value, typename boost::enable_if< is_complex< Value > >::type > {
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typedef Value value_type;
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typedef typename remove_imaginary< Value >::type real_type;
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//
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// Static member function for user-defined workspaces, that
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// * Deduces the required arguments for dispatching to LAPACK, and
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// * Asserts that most arguments make sense.
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//
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template< typename MatrixA, typename MatrixB, typename VectorALPHA,
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typename VectorBETA, typename MatrixVL, typename MatrixVR,
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typename WORK, typename RWORK >
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static std::ptrdiff_t invoke( const char jobvl, const char jobvr,
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MatrixA& a, MatrixB& b, VectorALPHA& alpha, VectorBETA& beta,
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MatrixVL& vl, MatrixVR& vr, detail::workspace2< WORK,
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RWORK > work ) {
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namespace bindings = ::boost::numeric::bindings;
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BOOST_STATIC_ASSERT( (bindings::is_column_major< MatrixA >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_column_major< MatrixB >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_column_major< MatrixVL >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_column_major< MatrixVR >::value) );
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BOOST_STATIC_ASSERT( (boost::is_same< typename remove_const<
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typename bindings::value_type< MatrixA >::type >::type,
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typename remove_const< typename bindings::value_type<
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MatrixB >::type >::type >::value) );
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BOOST_STATIC_ASSERT( (boost::is_same< typename remove_const<
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typename bindings::value_type< MatrixA >::type >::type,
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typename remove_const< typename bindings::value_type<
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VectorALPHA >::type >::type >::value) );
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BOOST_STATIC_ASSERT( (boost::is_same< typename remove_const<
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typename bindings::value_type< MatrixA >::type >::type,
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typename remove_const< typename bindings::value_type<
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VectorBETA >::type >::type >::value) );
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BOOST_STATIC_ASSERT( (boost::is_same< typename remove_const<
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typename bindings::value_type< MatrixA >::type >::type,
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typename remove_const< typename bindings::value_type<
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MatrixVL >::type >::type >::value) );
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BOOST_STATIC_ASSERT( (boost::is_same< typename remove_const<
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typename bindings::value_type< MatrixA >::type >::type,
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typename remove_const< typename bindings::value_type<
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MatrixVR >::type >::type >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< MatrixA >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< MatrixB >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< VectorALPHA >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< VectorBETA >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< MatrixVL >::value) );
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BOOST_STATIC_ASSERT( (bindings::is_mutable< MatrixVR >::value) );
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BOOST_ASSERT( bindings::size(alpha) >= bindings::size_column(a) );
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BOOST_ASSERT( bindings::size(beta) >= bindings::size_column(a) );
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BOOST_ASSERT( bindings::size(work.select(real_type())) >=
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min_size_rwork( bindings::size_column(a) ));
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BOOST_ASSERT( bindings::size(work.select(value_type())) >=
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min_size_work( bindings::size_column(a) ));
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BOOST_ASSERT( bindings::size_column(a) >= 0 );
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BOOST_ASSERT( bindings::size_minor(a) == 1 ||
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bindings::stride_minor(a) == 1 );
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BOOST_ASSERT( bindings::size_minor(b) == 1 ||
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bindings::stride_minor(b) == 1 );
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BOOST_ASSERT( bindings::size_minor(vl) == 1 ||
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bindings::stride_minor(vl) == 1 );
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BOOST_ASSERT( bindings::size_minor(vr) == 1 ||
|
||
|
bindings::stride_minor(vr) == 1 );
|
||
|
BOOST_ASSERT( bindings::stride_major(a) >= std::max< std::ptrdiff_t >(1,
|
||
|
bindings::size_column(a)) );
|
||
|
BOOST_ASSERT( bindings::stride_major(b) >= std::max< std::ptrdiff_t >(1,
|
||
|
bindings::size_column(a)) );
|
||
|
BOOST_ASSERT( jobvl == 'N' || jobvl == 'V' );
|
||
|
BOOST_ASSERT( jobvr == 'N' || jobvr == 'V' );
|
||
|
return detail::ggev( jobvl, jobvr, bindings::size_column(a),
|
||
|
bindings::begin_value(a), bindings::stride_major(a),
|
||
|
bindings::begin_value(b), bindings::stride_major(b),
|
||
|
bindings::begin_value(alpha), bindings::begin_value(beta),
|
||
|
bindings::begin_value(vl), bindings::stride_major(vl),
|
||
|
bindings::begin_value(vr), bindings::stride_major(vr),
|
||
|
bindings::begin_value(work.select(value_type())),
|
||
|
bindings::size(work.select(value_type())),
|
||
|
bindings::begin_value(work.select(real_type())) );
|
||
|
}
|
||
|
|
||
|
//
|
||
|
// Static member function that
|
||
|
// * Figures out the minimal workspace requirements, and passes
|
||
|
// the results to the user-defined workspace overload of the
|
||
|
// invoke static member function
|
||
|
// * Enables the unblocked algorithm (BLAS level 2)
|
||
|
//
|
||
|
template< typename MatrixA, typename MatrixB, typename VectorALPHA,
|
||
|
typename VectorBETA, typename MatrixVL, typename MatrixVR >
|
||
|
static std::ptrdiff_t invoke( const char jobvl, const char jobvr,
|
||
|
MatrixA& a, MatrixB& b, VectorALPHA& alpha, VectorBETA& beta,
|
||
|
MatrixVL& vl, MatrixVR& vr, minimal_workspace ) {
|
||
|
namespace bindings = ::boost::numeric::bindings;
|
||
|
bindings::detail::array< value_type > tmp_work( min_size_work(
|
||
|
bindings::size_column(a) ) );
|
||
|
bindings::detail::array< real_type > tmp_rwork( min_size_rwork(
|
||
|
bindings::size_column(a) ) );
|
||
|
return invoke( jobvl, jobvr, a, b, alpha, beta, vl, vr,
|
||
|
workspace( tmp_work, tmp_rwork ) );
|
||
|
}
|
||
|
|
||
|
//
|
||
|
// Static member function that
|
||
|
// * Figures out the optimal workspace requirements, and passes
|
||
|
// the results to the user-defined workspace overload of the
|
||
|
// invoke static member
|
||
|
// * Enables the blocked algorithm (BLAS level 3)
|
||
|
//
|
||
|
template< typename MatrixA, typename MatrixB, typename VectorALPHA,
|
||
|
typename VectorBETA, typename MatrixVL, typename MatrixVR >
|
||
|
static std::ptrdiff_t invoke( const char jobvl, const char jobvr,
|
||
|
MatrixA& a, MatrixB& b, VectorALPHA& alpha, VectorBETA& beta,
|
||
|
MatrixVL& vl, MatrixVR& vr, optimal_workspace ) {
|
||
|
namespace bindings = ::boost::numeric::bindings;
|
||
|
value_type opt_size_work;
|
||
|
bindings::detail::array< real_type > tmp_rwork( min_size_rwork(
|
||
|
bindings::size_column(a) ) );
|
||
|
detail::ggev( jobvl, jobvr, bindings::size_column(a),
|
||
|
bindings::begin_value(a), bindings::stride_major(a),
|
||
|
bindings::begin_value(b), bindings::stride_major(b),
|
||
|
bindings::begin_value(alpha), bindings::begin_value(beta),
|
||
|
bindings::begin_value(vl), bindings::stride_major(vl),
|
||
|
bindings::begin_value(vr), bindings::stride_major(vr),
|
||
|
&opt_size_work, -1, bindings::begin_value(tmp_rwork) );
|
||
|
bindings::detail::array< value_type > tmp_work(
|
||
|
traits::detail::to_int( opt_size_work ) );
|
||
|
return invoke( jobvl, jobvr, a, b, alpha, beta, vl, vr,
|
||
|
workspace( tmp_work, tmp_rwork ) );
|
||
|
}
|
||
|
|
||
|
//
|
||
|
// Static member function that returns the minimum size of
|
||
|
// workspace-array work.
|
||
|
//
|
||
|
static std::ptrdiff_t min_size_work( const std::ptrdiff_t n ) {
|
||
|
return std::max< std::ptrdiff_t >(1,2*n);
|
||
|
}
|
||
|
|
||
|
//
|
||
|
// Static member function that returns the minimum size of
|
||
|
// workspace-array rwork.
|
||
|
//
|
||
|
static std::ptrdiff_t min_size_rwork( const std::ptrdiff_t n ) {
|
||
|
return 8*n;
|
||
|
}
|
||
|
};
|
||
|
|
||
|
|
||
|
//
|
||
|
// Functions for direct use. These functions are overloaded for temporaries,
|
||
|
// so that wrapped types can still be passed and used for write-access. In
|
||
|
// addition, if applicable, they are overloaded for user-defined workspaces.
|
||
|
// Calls to these functions are passed to the ggev_impl classes. In the
|
||
|
// documentation, most overloads are collapsed to avoid a large number of
|
||
|
// prototypes which are very similar.
|
||
|
//
|
||
|
|
||
|
//
|
||
|
// Overloaded function for ggev. Its overload differs for
|
||
|
// * User-defined workspace
|
||
|
//
|
||
|
template< typename MatrixA, typename MatrixB, typename VectorALPHAR,
|
||
|
typename VectorALPHAI, typename VectorBETA, typename MatrixVL,
|
||
|
typename MatrixVR, typename Workspace >
|
||
|
inline typename boost::enable_if< detail::is_workspace< Workspace >,
|
||
|
std::ptrdiff_t >::type
|
||
|
ggev( const char jobvl, const char jobvr, MatrixA& a, MatrixB& b,
|
||
|
VectorALPHAR& alphar, VectorALPHAI& alphai, VectorBETA& beta,
|
||
|
MatrixVL& vl, MatrixVR& vr, Workspace work ) {
|
||
|
return ggev_impl< typename bindings::value_type<
|
||
|
MatrixA >::type >::invoke( jobvl, jobvr, a, b, alphar, alphai,
|
||
|
beta, vl, vr, work );
|
||
|
}
|
||
|
|
||
|
//
|
||
|
// Overloaded function for ggev. Its overload differs for
|
||
|
// * Default workspace-type (optimal)
|
||
|
//
|
||
|
template< typename MatrixA, typename MatrixB, typename VectorALPHAR,
|
||
|
typename VectorALPHAI, typename VectorBETA, typename MatrixVL,
|
||
|
typename MatrixVR >
|
||
|
inline typename boost::disable_if< detail::is_workspace< MatrixVR >,
|
||
|
std::ptrdiff_t >::type
|
||
|
ggev( const char jobvl, const char jobvr, MatrixA& a, MatrixB& b,
|
||
|
VectorALPHAR& alphar, VectorALPHAI& alphai, VectorBETA& beta,
|
||
|
MatrixVL& vl, MatrixVR& vr ) {
|
||
|
return ggev_impl< typename bindings::value_type<
|
||
|
MatrixA >::type >::invoke( jobvl, jobvr, a, b, alphar, alphai,
|
||
|
beta, vl, vr, optimal_workspace() );
|
||
|
}
|
||
|
|
||
|
//
|
||
|
// Overloaded function for ggev. Its overload differs for
|
||
|
// * User-defined workspace
|
||
|
//
|
||
|
template< typename MatrixA, typename MatrixB, typename VectorALPHA,
|
||
|
typename VectorBETA, typename MatrixVL, typename MatrixVR,
|
||
|
typename Workspace >
|
||
|
inline typename boost::enable_if< detail::is_workspace< Workspace >,
|
||
|
std::ptrdiff_t >::type
|
||
|
ggev( const char jobvl, const char jobvr, MatrixA& a, MatrixB& b,
|
||
|
VectorALPHA& alpha, VectorBETA& beta, MatrixVL& vl, MatrixVR& vr,
|
||
|
Workspace work ) {
|
||
|
return ggev_impl< typename bindings::value_type<
|
||
|
MatrixA >::type >::invoke( jobvl, jobvr, a, b, alpha, beta, vl,
|
||
|
vr, work );
|
||
|
}
|
||
|
|
||
|
//
|
||
|
// Overloaded function for ggev. Its overload differs for
|
||
|
// * Default workspace-type (optimal)
|
||
|
//
|
||
|
template< typename MatrixA, typename MatrixB, typename VectorALPHA,
|
||
|
typename VectorBETA, typename MatrixVL, typename MatrixVR >
|
||
|
inline typename boost::disable_if< detail::is_workspace< MatrixVR >,
|
||
|
std::ptrdiff_t >::type
|
||
|
ggev( const char jobvl, const char jobvr, MatrixA& a, MatrixB& b,
|
||
|
VectorALPHA& alpha, VectorBETA& beta, MatrixVL& vl, MatrixVR& vr ) {
|
||
|
return ggev_impl< typename bindings::value_type<
|
||
|
MatrixA >::type >::invoke( jobvl, jobvr, a, b, alpha, beta, vl,
|
||
|
vr, optimal_workspace() );
|
||
|
}
|
||
|
|
||
|
} // namespace lapack
|
||
|
} // namespace bindings
|
||
|
} // namespace numeric
|
||
|
} // namespace boost
|
||
|
|
||
|
#endif
|