184 lines
		
	
	
		
			6.9 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
			
		
		
	
	
			184 lines
		
	
	
		
			6.9 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
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/*
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 [auto_generated]
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 boost/numeric/odeint/iterator/adaptive_iterator.hpp
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 [begin_description]
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 Iterator for iterating throught the solution of an ODE with adaptive step size. The dereferenced types containes also the time.
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 [end_description]
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 Copyright 2012-2013 Karsten Ahnert
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 Copyright 2012 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_ITERATOR_ADAPTIVE_ITERATOR_HPP_INCLUDED
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#define BOOST_NUMERIC_ODEINT_ITERATOR_ADAPTIVE_ITERATOR_HPP_INCLUDED
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#include <boost/numeric/odeint/util/stepper_traits.hpp>
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#include <boost/numeric/odeint/util/unit_helper.hpp>
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#include <boost/numeric/odeint/stepper/stepper_categories.hpp>
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#include <boost/numeric/odeint/stepper/controlled_step_result.hpp>
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#include <boost/numeric/odeint/iterator/impl/adaptive_iterator_impl.hpp>
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namespace boost {
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namespace numeric {
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namespace odeint {
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    /* use the adaptive_iterator_impl with the right tags */
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    template< class Stepper , class System , class State
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#ifndef DOXYGEN_SKIP
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        , class StepperTag = typename base_tag< typename traits::stepper_category< Stepper >::type >::type
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#endif
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    >
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    class adaptive_iterator : public adaptive_iterator_impl<
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            adaptive_iterator< Stepper , System , State , StepperTag > ,
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            Stepper , System , State , detail::ode_state_iterator_tag , StepperTag
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        >
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    {
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        typedef typename traits::time_type< Stepper >::type time_type;
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        typedef adaptive_iterator< Stepper , System , State , StepperTag > iterator_type;
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    public:
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        adaptive_iterator( Stepper stepper , System sys , State &s , time_type t_start , time_type t_end , time_type dt )
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            : adaptive_iterator_impl< iterator_type , Stepper , System , State , detail::ode_state_iterator_tag , StepperTag >( stepper , sys , s , t_start , t_end , dt )
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        {}
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        adaptive_iterator( Stepper stepper , System sys , State &s )
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            : adaptive_iterator_impl< iterator_type , Stepper , System , State , detail::ode_state_iterator_tag , StepperTag >( stepper , sys , s )
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        {}
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    };
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    template< class Stepper , class System , class State >
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    adaptive_iterator< Stepper , System , State > make_adaptive_iterator_begin(
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        Stepper stepper ,
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        System system , 
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        State &x ,
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        typename traits::time_type< Stepper >::type t_start ,
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        typename traits::time_type< Stepper >::type t_end ,
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        typename traits::time_type< Stepper >::type dt )
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    {
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        return adaptive_iterator< Stepper , System , State >( stepper , system , x , t_start , t_end , dt );
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    }
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    template< class Stepper , class System , class State >
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    adaptive_iterator< Stepper , System , State > make_adaptive_iterator_end(
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        Stepper stepper ,
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        System system , 
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        State &x )
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    {
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        return adaptive_iterator< Stepper , System , State >( stepper , system , x );
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    }
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    template< class Stepper , class System , class State >
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    std::pair< adaptive_iterator< Stepper , System , State > , adaptive_iterator< Stepper , System , State > >
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    make_adaptive_range(
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        Stepper stepper ,
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        System system , 
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        State &x ,
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        typename traits::time_type< Stepper >::type t_start ,
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        typename traits::time_type< Stepper >::type t_end ,
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        typename traits::time_type< Stepper >::type dt )
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    {
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        return std::make_pair(
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            adaptive_iterator< Stepper , System , State >( stepper , system , x , t_start , t_end , dt ) ,
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            adaptive_iterator< Stepper , System , State >( stepper , system , x )
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            );
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    }
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    /**
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     * \class adaptive_iterator
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     *
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     * \brief ODE Iterator with adaptive step size. The value type of this iterator is the state type of the stepper.
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     *
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     * Implements an iterator representing the solution of an ODE from t_start
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     * to t_end evaluated at steps with an adaptive step size dt.
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     * After each iteration the iterator dereferences to the state x at the next
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     * time t+dt where dt is controlled by the stepper.
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     * This iterator can be used with ControlledSteppers and
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     * DenseOutputSteppers and it always makes use of the all the given steppers
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     * capabilities. A for_each over such an iterator range behaves similar to
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     * the integrate_adaptive routine.
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     *
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     * adaptive_iterator is a model of single-pass iterator.
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     *
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     * The value type of this iterator is the state type of the stepper. Hence one can only access the state and not the current time.
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     *
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     * \tparam Stepper The stepper type which should be used during the iteration.
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     * \tparam System The type of the system function (ODE) which should be solved.
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     * \tparam State The state type of the ODE.
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     */
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    /**
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     * \fn make_adaptive_iterator_begin( Stepper stepper , System system , State &x ,
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        typename traits::time_type< Stepper >::type t_start ,
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        typename traits::time_type< Stepper >::type t_end ,
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        typename traits::time_type< Stepper >::type dt )
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     *
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     * \brief Factory function for adaptive_iterator. Constructs a begin iterator.
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     *
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     * \param stepper The stepper to use during the iteration.
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     * \param system The system function (ODE) to solve.
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     * \param x The initial state.
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     * \param t_start The initial time.
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     * \param t_end The end time, at which the iteration should stop.
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     * \param dt The initial time step.
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     * \returns The adaptive iterator.
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     */
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    /**
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     * \fn make_adaptive_iterator_end( Stepper stepper , System system , State &x )
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     * \brief Factory function for adaptive_iterator. Constructs a end iterator.
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     *
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     * \param stepper The stepper to use during the iteration.
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     * \param system The system function (ODE) to solve.
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     * \param x The initial state.
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     * \returns The adaptive iterator.
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     */
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    /**
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     * \fn make_adaptive_range( Stepper stepper , System system , State &x ,
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        typename traits::time_type< Stepper >::type t_start ,
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        typename traits::time_type< Stepper >::type t_end ,
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        typename traits::time_type< Stepper >::type dt )
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     *
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     * \brief Factory function to construct a single pass range of adaptive iterators. A range is here a pair of adaptive_iterator.
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     *
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     * \param stepper The stepper to use during the iteration.
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     * \param system The system function (ODE) to solve.
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     * \param x The initial state.
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     * \param t_start The initial time.
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     * \param t_end The end time, at which the iteration should stop.
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     * \param dt The initial time step.
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     * \returns The adaptive range.
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     */
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} // namespace odeint
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} // namespace numeric
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} // namespace boost
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#endif // BOOST_NUMERIC_ODEINT_ITERATOR_ADAPTIVE_ITERATOR_HPP_INCLUDED
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