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			248 lines
		
	
	
		
			8.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
		
		
			
		
	
	
			248 lines
		
	
	
		
			8.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
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								/*
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								 [auto_generated]
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								 libs/numeric/odeint/test/integrate_times.cpp
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								 [begin_description]
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								 This file tests the integrate_times function and its variants.
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								 [end_description]
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								 Copyright 2011-2012 Karsten Ahnert
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								 Copyright 2011-2012 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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								#define BOOST_TEST_MODULE odeint_integrate_times
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								#include <boost/test/unit_test.hpp>
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								#include <utility>
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								#include <iostream>
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								#include <vector>
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								#include <boost/ref.hpp>
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								#include <boost/iterator/counting_iterator.hpp>
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								#ifndef ODEINT_INTEGRATE_ITERATOR
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								#include <boost/numeric/odeint/integrate/integrate_times.hpp>
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								#include <boost/numeric/odeint/integrate/integrate_adaptive.hpp>
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								#else
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								#include <boost/numeric/odeint/iterator/integrate/integrate_times.hpp>
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								#include <boost/numeric/odeint/iterator/integrate/integrate_adaptive.hpp>
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								#endif
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								#include <boost/numeric/odeint/stepper/runge_kutta4.hpp>
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								#include <boost/numeric/odeint/stepper/runge_kutta_dopri5.hpp>
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								#include <boost/numeric/odeint/stepper/runge_kutta_cash_karp54.hpp>
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								#include <boost/numeric/odeint/stepper/controlled_runge_kutta.hpp>
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								#include <boost/numeric/odeint/stepper/bulirsch_stoer.hpp>
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								#include <boost/numeric/odeint/stepper/bulirsch_stoer_dense_out.hpp>
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								#include <boost/numeric/odeint/stepper/dense_output_runge_kutta.hpp>
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								using namespace boost::unit_test;
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								using namespace boost::numeric::odeint;
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								typedef double value_type;
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								typedef std::vector< value_type > state_type;
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								void lorenz( const state_type &x , state_type &dxdt , const value_type t )
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								{
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								    BOOST_CHECK( t >= 0.0 );
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								    const value_type sigma( 10.0 );
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								    const value_type R( 28.0 );
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								    const value_type b( value_type( 8.0 ) / value_type( 3.0 ) );
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								    dxdt[0] = sigma * ( x[1] - x[0] );
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								    dxdt[1] = R * x[0] - x[1] - x[0] * x[2];
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								    dxdt[2] = -b * x[2] + x[0] * x[1];
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								}
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								struct push_back_time
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								{
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								    std::vector< double >& m_times;
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								    push_back_time( std::vector< double > × )
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								    :  m_times( times ) { }
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								    void operator()( const state_type &x , double t )
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								    {
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								        m_times.push_back( t );
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								    }
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								};
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								BOOST_AUTO_TEST_SUITE( integrate_times_test )
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								BOOST_AUTO_TEST_CASE( test_integrate_times )
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								{
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								    state_type x( 3 );
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								    x[0] = x[1] = x[2] = 10.0;
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								    const value_type dt = 0.03;
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								    std::vector< double > times;
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								    std::cout << "test rk4 stepper" << std::endl;
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								    // simple stepper
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								    integrate_times( runge_kutta4< state_type >() , lorenz , x , boost::counting_iterator<int>(0) , boost::counting_iterator<int>(10) ,
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								                dt , push_back_time( times ) );
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								    for( int i=0 ; i<10 ; ++i )
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								        // check if observer was called at times 0,1,2,...
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								        BOOST_CHECK_EQUAL( times[i] , static_cast<double>(i) );
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								    times.clear();
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								    std::cout << "test dopri5 stepper" << std::endl;
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								    // controlled stepper
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								    integrate_times( controlled_runge_kutta< runge_kutta_dopri5< state_type > >() , lorenz , x ,
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								                boost::counting_iterator<int>(0) , boost::counting_iterator<int>(10) ,
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								                dt , push_back_time( times ) );
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								    for( int i=0 ; i<10 ; ++i )
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								        // check if observer was called at times 0,1,2,...
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								        BOOST_CHECK_EQUAL( times[i] , static_cast<double>(i) );
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								    times.clear();
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								    std::cout << "test BS stepper" << std::endl;
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								    //another controlled stepper
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								    integrate_times( bulirsch_stoer< state_type >() , lorenz , x ,
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								                boost::counting_iterator<int>(0) , boost::counting_iterator<int>(10) ,
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								                dt , push_back_time( times ) );
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								    for( int i=0 ; i<10 ; ++i )
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								        // check if observer was called at times 0,1,2,...
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								        BOOST_CHECK_EQUAL( times[i] , static_cast<double>(i) );
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								    times.clear();
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								    std::cout << "test dense_out stepper" << std::endl;
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								    // dense output stepper
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								    integrate_times( dense_output_runge_kutta< controlled_runge_kutta< runge_kutta_dopri5< state_type > > >() ,
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								                     lorenz , x ,
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								                     boost::counting_iterator<int>(0) , boost::counting_iterator<int>(10) ,
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								                     dt , push_back_time( times ) );
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								    for( int i=0 ; i<10 ; ++i )
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								        // check if observer was called at times 0,1,2,...
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								        BOOST_CHECK_EQUAL( times[i] , static_cast<double>(i) );
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								    std::cout << "test BS_do stepper" << std::endl;
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								    integrate_times( bulirsch_stoer_dense_out< state_type >() , lorenz , x ,
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								                boost::counting_iterator<int>(0) , boost::counting_iterator<int>(10) ,
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								                dt , push_back_time( times ) );
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								    for( int i=0 ; i<10 ; ++i )
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								        // check if observer was called at times 0,1,2,...
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								        BOOST_CHECK_EQUAL( times[i] , static_cast<double>(i) );
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								}
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								BOOST_AUTO_TEST_CASE( test_integrate_times_ranges )
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								{
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								    state_type x( 3 );
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								    x[0] = x[1] = x[2] = 10.0;
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								    const value_type dt = 0.03;
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								    std::vector< double > times;
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								    // simple stepper
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								    integrate_times( runge_kutta4< state_type >() , lorenz , x ,
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								                std::make_pair( boost::counting_iterator<int>(0) , boost::counting_iterator<int>(10) ) ,
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								                dt , push_back_time( times ) );
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								    for( int i=0 ; i<10 ; ++i )
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								        // check if observer was called at times 0,1,2,...
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								        BOOST_CHECK_EQUAL( times[i] , static_cast<double>(i) );
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								    times.clear();
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								    // controlled stepper
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								    integrate_times( controlled_runge_kutta< runge_kutta_dopri5< state_type > >() , lorenz , x ,
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								                std::make_pair( boost::counting_iterator<int>(0) , boost::counting_iterator<int>(10) ) ,
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								                dt , push_back_time( times ) );
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								    for( int i=0 ; i<10 ; ++i )
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								        // check if observer was called at times 0,1,2,...
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								        BOOST_CHECK_EQUAL( times[i] , static_cast<double>(i) );
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								    times.clear();
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								    //another controlled stepper
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								    integrate_times( bulirsch_stoer< state_type >() , lorenz , x ,
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								                std::make_pair( boost::counting_iterator<int>(0) , boost::counting_iterator<int>(10) ) ,
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								                dt , push_back_time( times ) );
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								    for( int i=0 ; i<10 ; ++i )
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								        // check if observer was called at times 0,1,2,...
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								        BOOST_CHECK_EQUAL( times[i] , static_cast<double>(i) );
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								    times.clear();
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								    // dense output stepper
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								    integrate_times( bulirsch_stoer_dense_out< state_type >() , lorenz , x ,
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								                std::make_pair( boost::counting_iterator<int>(0) , boost::counting_iterator<int>(10) ) ,
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								                dt , push_back_time( times ) );
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								    for( int i=0 ; i<10 ; ++i )
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								        // check if observer was called at times 0,1,2,...
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								        BOOST_CHECK_EQUAL( times[i] , static_cast<double>(i) );
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								}
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								BOOST_AUTO_TEST_CASE( test_integrate_times_overshoot )
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								{
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								    state_type x( 3 );
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								    x[0] = x[1] = x[2] = 10.0;
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								    double dt = -0.1;
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								    std::vector<double> times( 10 );
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								    for( int i=0 ; i<10 ; ++i )
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								            times[i] = 1.0-i*1.0/9.0;
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								    std::cout << "test rk4 stepper" << std::endl;
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								    // simple stepper
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								    std::vector<double> obs_times;
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								    int steps = integrate_times( runge_kutta4< state_type >() , lorenz , x ,
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								                                 times.begin() , times.end() ,
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								                                 dt , push_back_time( obs_times ) );
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								// different behavior for the iterator based integrate implementaton
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								#ifndef ODEINT_INTEGRATE_ITERATOR
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								    BOOST_CHECK_EQUAL( steps , 18 ); // we really need 18 steps because dt and
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								                                     // the difference of the observation times
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								                                     // are so out of sync
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								#else
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								    // iterator based implementation can only return the number of iteration steps
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								    BOOST_CHECK_EQUAL( steps , 9 );
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								#endif
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								    for( int i=0 ; i<10 ; ++i )
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								        BOOST_CHECK_EQUAL( times[i] , obs_times[i] );
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								    std::cout << "test rk_ck stepper" << std::endl;
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								    // controlled stepper
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								    obs_times.clear();
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								    integrate_times( controlled_runge_kutta< runge_kutta_cash_karp54< state_type > >() , lorenz , x ,
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								                     times.begin() , times.end() ,
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								                     dt , push_back_time( obs_times ) );
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								    for( int i=0 ; i<10 ; ++i )
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								        BOOST_CHECK_EQUAL( times[i] , obs_times[i] );
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								    std::cout << "test dopri5 stepper" << std::endl;
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								    // controlled stepper
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								    obs_times.clear();
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								    integrate_times( dense_output_runge_kutta< controlled_runge_kutta< runge_kutta_dopri5< state_type > > >() , lorenz , x ,
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								                     times.begin() , times.end() ,
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								                     dt , push_back_time( obs_times ) );
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								    for( int i=0 ; i<10 ; ++i )
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								        BOOST_CHECK_EQUAL( times[i] , obs_times[i] );
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						||
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								 | 
							
								}
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								BOOST_AUTO_TEST_SUITE_END()
							 |