294 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
			
		
		
	
	
			294 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
/*
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  [auto_generated]
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  boost/numeric/odeint/stepper/extrapolation_stepper.hpp
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  [begin_description]
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  extrapolation stepper
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  [end_description]
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  Copyright 2009-2015 Mario Mulansky
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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
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  copy at http://www.boost.org/LICENSE_1_0.txt)
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*/
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#ifndef BOOST_NUMERIC_ODEINT_STEPPER_EXTRAPOLATION_STEPPER_HPP_INCLUDED
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#define BOOST_NUMERIC_ODEINT_STEPPER_EXTRAPOLATION_STEPPER_HPP_INCLUDED
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#include <iostream>
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#include <algorithm>
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#include <boost/config.hpp> // for min/max guidelines
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#include <boost/static_assert.hpp>
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#include <boost/numeric/odeint/util/bind.hpp>
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#include <boost/numeric/odeint/util/unwrap_reference.hpp>
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#include <boost/numeric/odeint/stepper/base/explicit_error_stepper_base.hpp>
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#include <boost/numeric/odeint/stepper/modified_midpoint.hpp>
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#include <boost/numeric/odeint/stepper/controlled_step_result.hpp>
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#include <boost/numeric/odeint/algebra/range_algebra.hpp>
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#include <boost/numeric/odeint/algebra/default_operations.hpp>
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#include <boost/numeric/odeint/algebra/algebra_dispatcher.hpp>
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#include <boost/numeric/odeint/algebra/operations_dispatcher.hpp>
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#include <boost/numeric/odeint/util/state_wrapper.hpp>
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#include <boost/numeric/odeint/util/is_resizeable.hpp>
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#include <boost/numeric/odeint/util/resizer.hpp>
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#include <boost/numeric/odeint/util/unit_helper.hpp>
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#include <boost/numeric/odeint/util/detail/less_with_sign.hpp>
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namespace boost
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{
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namespace numeric
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{
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namespace odeint
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{
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template < unsigned short Order, class State, class Value = double,
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           class Deriv = State, class Time = Value,
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           class Algebra = typename algebra_dispatcher< State >::algebra_type,
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           class Operations =
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               typename operations_dispatcher< State >::operations_type,
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           class Resizer = initially_resizer >
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#ifndef DOXYGEN_SKIP
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class extrapolation_stepper
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    : public explicit_error_stepper_base<
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          extrapolation_stepper< Order, State, Value, Deriv, Time, Algebra,
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                                 Operations, Resizer >,
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          Order, Order, Order - 2, State, Value, Deriv, Time, Algebra,
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          Operations, Resizer >
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#else
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class extrapolation_stepper : public explicit_error_stepper_base
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#endif
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{
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  private:
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    // check for Order being odd
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    BOOST_STATIC_ASSERT_MSG(
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        ( ( Order % 2 ) == 0 ) && ( Order > 2 ),
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        "extrapolation_stepper requires even Order larger than 2" );
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  public:
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#ifndef DOXYGEN_SKIP
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    typedef explicit_error_stepper_base<
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        extrapolation_stepper< Order, State, Value, Deriv, Time, Algebra,
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                               Operations, Resizer >,
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        Order, Order, Order - 2, State, Value, Deriv, Time, Algebra, Operations,
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        Resizer > stepper_base_type;
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#else
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    typedef explicit_error_stepper_base< extrapolation_stepper< ... >, ... >
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    stepper_base_type;
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#endif
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    typedef typename stepper_base_type::state_type state_type;
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    typedef typename stepper_base_type::value_type value_type;
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    typedef typename stepper_base_type::deriv_type deriv_type;
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    typedef typename stepper_base_type::time_type time_type;
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    typedef typename stepper_base_type::algebra_type algebra_type;
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    typedef typename stepper_base_type::operations_type operations_type;
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    typedef typename stepper_base_type::resizer_type resizer_type;
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#ifndef DOXYGEN_SKIP
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    typedef typename stepper_base_type::stepper_type stepper_type;
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    typedef typename stepper_base_type::wrapped_state_type wrapped_state_type;
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    typedef typename stepper_base_type::wrapped_deriv_type wrapped_deriv_type;
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    typedef std::vector< value_type > value_vector;
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    typedef std::vector< value_vector > value_matrix;
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    typedef std::vector< size_t > int_vector;
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    typedef std::vector< wrapped_state_type > state_table_type;
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    typedef modified_midpoint< state_type, value_type, deriv_type, time_type,
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                               algebra_type, operations_type,
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                               resizer_type > midpoint_stepper_type;
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#endif // DOXYGEN_SKIP
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    typedef unsigned short order_type;
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    static const order_type order_value = stepper_base_type::order_value;
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    static const order_type stepper_order_value =
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        stepper_base_type::stepper_order_value;
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    static const order_type error_order_value =
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        stepper_base_type::error_order_value;
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    const static size_t m_k_max = ( order_value - 2 ) / 2;
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    extrapolation_stepper( const algebra_type &algebra = algebra_type() )
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        : stepper_base_type( algebra ), m_interval_sequence( m_k_max + 1 ),
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          m_coeff( m_k_max + 1 ), m_table( m_k_max )
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    {
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        for ( unsigned short i = 0; i < m_k_max + 1; i++ )
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        {
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            m_interval_sequence[i] = 2 * ( i + 1 );
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            m_coeff[i].resize( i );
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            for ( size_t k = 0; k < i; ++k )
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            {
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                const value_type r =
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                    static_cast< value_type >( m_interval_sequence[i] ) /
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                    static_cast< value_type >( m_interval_sequence[k] );
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                m_coeff[i][k] =
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                    static_cast< value_type >( 1 ) /
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                    ( r * r - static_cast< value_type >(
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                                  1 ) ); // coefficients for extrapolation
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            }
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        }
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    }
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    template < class System, class StateIn, class DerivIn, class StateOut,
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               class Err >
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    void do_step_impl( System system, const StateIn &in, const DerivIn &dxdt,
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                       time_type t, StateOut &out, time_type dt, Err &xerr )
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    {
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        // std::cout << "dt: " << dt << std::endl;
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        // normal step
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        do_step_impl( system, in, dxdt, t, out, dt );
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        static const value_type val1( 1.0 );
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        // additionally, perform the error calculation
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        stepper_base_type::m_algebra.for_each3(
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            xerr, out, m_table[0].m_v,
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            typename operations_type::template scale_sum2<
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                value_type, value_type >( val1, -val1 ) );
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    }
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    template < class System, class StateInOut, class DerivIn, class Err >
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    void do_step_impl_io( System system, StateInOut &inout, const DerivIn &dxdt,
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                          time_type t, time_type dt, Err &xerr )
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    {
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        // normal step
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        do_step_impl_io( system, inout, dxdt, t, dt );
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        static const value_type val1( 1.0 );
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        // additionally, perform the error calculation
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        stepper_base_type::m_algebra.for_each3(
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            xerr, inout, m_table[0].m_v,
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            typename operations_type::template scale_sum2<
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                value_type, value_type >( val1, -val1 ) );
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    }
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    template < class System, class StateIn, class DerivIn, class StateOut >
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    void do_step_impl( System system, const StateIn &in, const DerivIn &dxdt,
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                       time_type t, StateOut &out, time_type dt )
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    {
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        m_resizer.adjust_size(
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            in, detail::bind( &stepper_type::template resize_impl< StateIn >,
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                              detail::ref( *this ), detail::_1 ) );
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        size_t k = 0;
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        m_midpoint.set_steps( m_interval_sequence[k] );
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        m_midpoint.do_step( system, in, dxdt, t, out, dt );
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        for ( k = 1; k <= m_k_max; ++k )
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        {
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            m_midpoint.set_steps( m_interval_sequence[k] );
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            m_midpoint.do_step( system, in, dxdt, t, m_table[k - 1].m_v, dt );
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            extrapolate( k, m_table, m_coeff, out );
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        }
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    }
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    template < class System, class StateInOut, class DerivIn >
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    void do_step_impl_io( System system, StateInOut &inout, const DerivIn &dxdt,
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                          time_type t, time_type dt )
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    {
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        // special care for inout
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        m_xout_resizer.adjust_size(
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            inout,
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            detail::bind( &stepper_type::template resize_m_xout< StateInOut >,
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                          detail::ref( *this ), detail::_1 ) );
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        do_step_impl( system, inout, dxdt, t, m_xout.m_v, dt );
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        boost::numeric::odeint::copy( m_xout.m_v, inout );
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    }
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    template < class System, class StateInOut, class DerivIn >
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    void do_step_dxdt_impl( System system, StateInOut &x, const DerivIn &dxdt,
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                            time_type t, time_type dt )
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    {
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        do_step_impl_io( system , x , dxdt , t , dt );
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    }
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    template < class System, class StateIn, class DerivIn, class StateOut >
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    void do_step_dxdt_impl( System system, const StateIn &in,
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                            const DerivIn &dxdt, time_type t, StateOut &out,
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                            time_type dt )
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    {
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        do_step_impl( system , in , dxdt , t , out , dt );
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    }
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    template < class StateIn > void adjust_size( const StateIn &x )
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    {
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        resize_impl( x );
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        m_midpoint.adjust_size( x );
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    }
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  private:
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    template < class StateIn > bool resize_impl( const StateIn &x )
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    {
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        bool resized( false );
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        for ( size_t i = 0; i < m_k_max; ++i )
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            resized |= adjust_size_by_resizeability(
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                m_table[i], x, typename is_resizeable< state_type >::type() );
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        return resized;
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    }
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    template < class StateIn > bool resize_m_xout( const StateIn &x )
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    {
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        return adjust_size_by_resizeability(
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            m_xout, x, typename is_resizeable< state_type >::type() );
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    }
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    template < class StateInOut >
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    void extrapolate( size_t k, state_table_type &table,
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                      const value_matrix &coeff, StateInOut &xest )
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    /* polynomial extrapolation, see http://www.nr.com/webnotes/nr3web21.pdf
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       uses the obtained intermediate results to extrapolate to dt->0
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    */
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    {
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        static const value_type val1 = static_cast< value_type >( 1.0 );
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        for ( int j = k - 1; j > 0; --j )
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        {
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            stepper_base_type::m_algebra.for_each3(
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                table[j - 1].m_v, table[j].m_v, table[j - 1].m_v,
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                typename operations_type::template scale_sum2<
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                    value_type, value_type >( val1 + coeff[k][j],
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                                              -coeff[k][j] ) );
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        }
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        stepper_base_type::m_algebra.for_each3(
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            xest, table[0].m_v, xest,
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            typename operations_type::template scale_sum2<
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                value_type, value_type >( val1 + coeff[k][0], -coeff[k][0] ) );
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    }
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  private:
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    midpoint_stepper_type m_midpoint;
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    resizer_type m_resizer;
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    resizer_type m_xout_resizer;
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    int_vector m_interval_sequence; // stores the successive interval counts
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    value_matrix m_coeff;
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    wrapped_state_type m_xout;
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    state_table_type m_table; // sequence of states for extrapolation
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};
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/******** DOXYGEN *******/
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/**
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 * \class extrapolation_stepper
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 * \brief Extrapolation stepper with configurable order, and error estimation.
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 *
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 * The extrapolation stepper is a stepper with error estimation and configurable
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 * order. The order is given as template parameter and needs to be an _odd_
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 * number. The stepper is based on several executions of the modified midpoint
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 * method and a Richardson extrapolation. This is essentially the same technique
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 * as for bulirsch_stoer, but without the variable order.
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 *
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 * \note The Order parameter has to be an even number greater 2.
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 */
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}
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}
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}
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#endif
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