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			122 lines
		
	
	
		
			3.3 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
		
		
			
		
	
	
			122 lines
		
	
	
		
			3.3 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
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								/*
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								 Copyright 2011-2013 Karsten Ahnert
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								 Copyright 2011-2013 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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								#include <iostream>
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								#include <vector>
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								/* WARNING: Compilation in debug mode might consume enormous memory 
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								   (e.g. ~2GB on gcc 4.4 ) 
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								*/
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								// first increase fusion macro variables (now done by odeint itself)
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								//#define BOOST_FUSION_INVOKE_MAX_ARITY 15
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								//#define BOOST_RESULT_OF_NUM_ARGS 15
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								//[ units_define_basic_quantities
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								#include <boost/numeric/odeint.hpp>
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								#include <boost/numeric/odeint/algebra/fusion_algebra.hpp>
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								#include <boost/numeric/odeint/algebra/fusion_algebra_dispatcher.hpp>
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								#include <boost/units/systems/si/length.hpp>
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								#include <boost/units/systems/si/time.hpp>
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								#include <boost/units/systems/si/velocity.hpp>
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								#include <boost/units/systems/si/acceleration.hpp>
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								#include <boost/units/systems/si/io.hpp>
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								#include <boost/fusion/container.hpp>
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								using namespace std;
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								using namespace boost::numeric::odeint;
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								namespace fusion = boost::fusion;
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								namespace units = boost::units;
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								namespace si = boost::units::si;
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								typedef units::quantity< si::time , double > time_type;
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								typedef units::quantity< si::length , double > length_type;
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								typedef units::quantity< si::velocity , double > velocity_type;
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								typedef units::quantity< si::acceleration , double > acceleration_type;
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								typedef units::quantity< si::frequency , double > frequency_type;
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								typedef fusion::vector< length_type , velocity_type > state_type;
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								typedef fusion::vector< velocity_type , acceleration_type > deriv_type;
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								//]
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								//[ units_define_ode
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								struct oscillator
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								{
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								    frequency_type m_omega;
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								    oscillator( const frequency_type &omega = 1.0 * si::hertz ) : m_omega( omega ) { }
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								    void operator()( const state_type &x , deriv_type &dxdt , time_type t ) const
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								    {
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								        fusion::at_c< 0 >( dxdt ) = fusion::at_c< 1 >( x );
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								        fusion::at_c< 1 >( dxdt ) = - m_omega * m_omega * fusion::at_c< 0 >( x );
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								    }
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								};
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								//]
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								//[ units_observer
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								struct streaming_observer
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								{
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								    std::ostream& m_out;
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								    streaming_observer( std::ostream &out ) : m_out( out ) { }
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								    struct write_element
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								    {
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								        std::ostream &m_out;
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								        write_element( std::ostream &out ) : m_out( out ) { };
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								        template< class T >
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								        void operator()( const T &t ) const
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								        {
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								            m_out << "\t" << t;
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								        }
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								    };
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								    template< class State , class Time >
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								    void operator()( const State &x , const Time &t ) const
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								    {
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								        m_out << t;
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								        fusion::for_each( x , write_element( m_out ) );
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								        m_out << "\n";
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								    }
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								};
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								//]
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								int main( int argc , char**argv )
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								{
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								//    typedef dense_output_runge_kutta
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								//    <
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								//        controlled_runge_kutta
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								//        <
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								//            runge_kutta_dopri5< state_type , double , deriv_type , time_type , fusion_algebra >
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								//        >
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								//    > stepper_type;
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								    //[ units_define_stepper
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								    typedef runge_kutta_dopri5< state_type , double , deriv_type , time_type > stepper_type;
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								    state_type x( 1.0 * si::meter , 0.0 * si::meter_per_second );
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								    integrate_const( make_dense_output( 1.0e-6 , 1.0e-6 , stepper_type() ) , oscillator( 2.0 * si::hertz ) ,
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								                     x , 0.0 * si::second , 100.0 * si::second , 0.1 * si::second , streaming_observer( cout ) );
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								    //]
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								    return 0;
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								}
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