130 lines
4.6 KiB
Plaintext
130 lines
4.6 KiB
Plaintext
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/*
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[auto_generated]
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boost/numeric/odeint/integrate/integrate_adaptive.hpp
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[begin_description]
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Adaptive integration of ODEs.
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[end_description]
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Copyright 2009-2011 Karsten Ahnert
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Copyright 2009-2011 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_INTEGRATE_INTEGRATE_ADAPTIVE_HPP_INCLUDED
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#define BOOST_NUMERIC_ODEINT_INTEGRATE_INTEGRATE_ADAPTIVE_HPP_INCLUDED
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#include <boost/type_traits/is_same.hpp>
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#include <boost/numeric/odeint/stepper/stepper_categories.hpp>
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#include <boost/numeric/odeint/iterator/integrate/null_observer.hpp>
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#include <boost/numeric/odeint/iterator/integrate/detail/integrate_adaptive.hpp>
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namespace boost {
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namespace numeric {
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namespace odeint {
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/*
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* the two overloads are needed in order to solve the forwarding problem
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*/
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template< class Stepper , class System , class State , class Time , class Observer >
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size_t integrate_adaptive(
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Stepper stepper , System system , State &start_state ,
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Time start_time , Time end_time , Time dt ,
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Observer observer )
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{
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typedef typename odeint::unwrap_reference< Stepper >::type::stepper_category stepper_category;
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return detail::integrate_adaptive(
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stepper , system , start_state ,
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start_time , end_time , dt ,
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observer , stepper_category() );
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/*
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* Suggestion for a new extendable version:
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*
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* integrator_adaptive< Stepper , System, State , Time , Observer , typename Stepper::stepper_category > integrator;
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* return integrator.run( stepper , system , start_state , start_time , end_time , dt , observer );
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*/
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}
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/**
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* \brief Second version to solve the forwarding problem,
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* can be called with Boost.Range as start_state.
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*/
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template< class Stepper , class System , class State , class Time , class Observer >
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size_t integrate_adaptive(
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Stepper stepper , System system , const State &start_state ,
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Time start_time , Time end_time , Time dt ,
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Observer observer )
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{
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typedef typename odeint::unwrap_reference< Stepper >::type::stepper_category stepper_category;
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return detail::integrate_adaptive(
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stepper , system , start_state ,
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start_time , end_time , dt ,
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observer , stepper_category() );
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}
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/**
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* \brief integrate_adaptive without an observer.
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*/
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template< class Stepper , class System , class State , class Time >
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size_t integrate_adaptive(
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Stepper stepper , System system , State &start_state ,
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Time start_time , Time end_time , Time dt )
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{
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return integrate_adaptive( stepper , system , start_state , start_time , end_time , dt , null_observer() );
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}
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/**
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* \brief Second version to solve the forwarding problem,
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* can be called with Boost.Range as start_state.
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*/
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template< class Stepper , class System , class State , class Time >
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size_t integrate_adaptive(
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Stepper stepper , System system , const State &start_state ,
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Time start_time , Time end_time , Time dt )
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{
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return integrate_adaptive( stepper , system , start_state , start_time , end_time , dt , null_observer() );
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}
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/************* DOXYGEN ************/
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/**
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* \fn integrate_adaptive( Stepper stepper , System system , State &start_state , Time start_time , Time end_time , Time dt , Observer observer )
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* \brief Integrates the ODE with adaptive step size.
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*
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* This function integrates the ODE given by system with the given stepper.
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* The observer is called after each step. If the stepper has no error
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* control, the step size remains constant and the observer is called at
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* equidistant time points t0+n*dt. If the stepper is a ControlledStepper,
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* the step size is adjusted and the observer is called in non-equidistant
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* intervals.
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*
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* \param stepper The stepper to be used for numerical integration.
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* \param system Function/Functor defining the rhs of the ODE.
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* \param start_state The initial condition x0.
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* \param start_time The initial time t0.
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* \param end_time The final integration time tend.
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* \param dt The time step between observer calls, _not_ necessarily the
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* time step of the integration.
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* \param observer Function/Functor called at equidistant time intervals.
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* \return The number of steps performed.
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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_INTEGRATE_INTEGRATE_ADAPTIVE_HPP_INCLUDED
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