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			6.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
		
		
			
		
	
	
			234 lines
		
	
	
		
			6.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
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								/*
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								 [auto_generated]
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								 libs/numeric/odeint/test/integrate_implicit.cpp
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								 [begin_description]
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								 This file tests the integrate function and its variants with the implicit steppers.
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								 [end_description]
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								 Copyright 2011 Mario Mulansky
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								 Copyright 2011-2013 Karsten Ahnert
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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_functions_implicit
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								#include <vector>
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								#include <cmath>
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								#include <iostream>
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								#include <boost/numeric/odeint/config.hpp>
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								#include <boost/array.hpp>
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								#include <boost/ref.hpp>
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								#include <boost/iterator/counting_iterator.hpp>
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								#include <boost/numeric/ublas/vector.hpp>
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								#include <boost/numeric/ublas/matrix.hpp>
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								#include <boost/test/unit_test.hpp>
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								#include <boost/mpl/vector.hpp>
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								#ifndef ODEINT_INTEGRATE_ITERATOR
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								#include <boost/numeric/odeint/integrate/integrate_const.hpp>
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								#include <boost/numeric/odeint/integrate/integrate_adaptive.hpp>
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								#include <boost/numeric/odeint/integrate/integrate_times.hpp>
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								#include <boost/numeric/odeint/integrate/integrate_n_steps.hpp>
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								#else
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								#include <boost/numeric/odeint/iterator/integrate/integrate_const.hpp>
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								#include <boost/numeric/odeint/iterator/integrate/integrate_adaptive.hpp>
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								#include <boost/numeric/odeint/iterator/integrate/integrate_times.hpp>
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								#include <boost/numeric/odeint/iterator/integrate/integrate_n_steps.hpp>
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								#endif
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								#include <boost/numeric/odeint/stepper/rosenbrock4.hpp>
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								#include <boost/numeric/odeint/stepper/rosenbrock4_controller.hpp>
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								#include <boost/numeric/odeint/stepper/rosenbrock4_dense_output.hpp>
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								using namespace boost::unit_test;
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								using namespace boost::numeric::odeint;
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								namespace mpl = boost::mpl;
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								namespace ublas = boost::numeric::ublas;
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								typedef double value_type;
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								typedef ublas::vector< value_type > state_type;
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								typedef boost::numeric::ublas::matrix< value_type > matrix_type;
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								struct sys
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								{
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								    void operator()( const state_type &x , state_type &dxdt , const value_type &t ) const
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								    {
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								        dxdt( 0 ) = x( 0 ) + 2 * x( 1 );
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								        dxdt( 1 ) = x( 1 );
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								    }
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								};
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								struct jacobi
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								{
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								    void operator()( const state_type &x , matrix_type &jacobi , const value_type &t , state_type &dfdt ) const
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								    {
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								        jacobi( 0 , 0 ) = 1;
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								        jacobi( 0 , 1 ) = 2;
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								        jacobi( 1 , 0 ) = 0;
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								        jacobi( 1 , 1 ) = 1;
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								        dfdt( 0 ) = 0.0;
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								        dfdt( 1 ) = 0.0;
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								    }
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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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								template< class Stepper >
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								struct perform_integrate_const_test
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								{
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								    void operator()( void )
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								    {
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								        state_type x( 2 , 1.0 );
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								        const value_type dt = 0.03;
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								        const value_type t_end = 10.0;
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								        std::vector< value_type > times;
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								        integrate_const( Stepper() , std::make_pair( sys() , jacobi() ) , x , 0.0 , t_end ,
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								                                        dt , push_back_time( times ) );
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								        BOOST_CHECK_EQUAL( static_cast<int>(times.size()) , static_cast<int>(std::floor(t_end/dt))+1 );
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								        for( size_t i=0 ; i<times.size() ; ++i )
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								        {
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								            //std::cout << i << std::endl;
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								            // check if observer was called at times 0,1,2,...
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								            BOOST_CHECK_SMALL( times[i] - static_cast< value_type >(i)*dt , (i+1) * 2.0e-16 );
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								        }
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								    }
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								};
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								template< class Stepper >
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								struct perform_integrate_adaptive_test
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								{
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								    void operator()( void )
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								    {
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								        state_type x( 2 , 1.0 );
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								        const value_type dt = 0.03;
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								        const value_type t_end = 10.0;
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								        std::vector< value_type > times;
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								        size_t steps = integrate_adaptive( Stepper() , std::make_pair( sys() , jacobi() ) , x , 0.0 , t_end ,
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								                                        dt , push_back_time( times ) );
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								        BOOST_CHECK_EQUAL( times.size() , steps+1 );
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								        BOOST_CHECK_SMALL( times[0] - 0.0 , 2.0e-16 );
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								        BOOST_CHECK_SMALL( times[times.size()-1] - t_end , times.size() * 3.0e-16 );
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								    }
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								};
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								template< class Stepper >
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								struct perform_integrate_times_test
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								{
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								    void operator()( void )
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								    {
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								        state_type x( 2 , 1.0 );
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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( Stepper() , std::make_pair( sys() , jacobi() ) , 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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								        BOOST_CHECK_EQUAL( static_cast<int>(times.size()) , 10 );
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								        for( size_t i=0 ; i<times.size() ; ++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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								};
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								template< class Stepper >
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								struct perform_integrate_n_steps_test
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								{
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								    void operator()( void )
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								    {
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								        state_type x( 2 , 1.0 );
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								        const value_type dt = 0.03;
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								        const int n = 200;
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								        std::vector< double > times;
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								        // simple stepper
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								        value_type end_time = integrate_n_steps( Stepper() , std::make_pair( sys() , jacobi() ) , x , 0.0 , dt , n , push_back_time( times ) );
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								        BOOST_CHECK_SMALL( end_time - n*dt , 3.0e-16 );
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								        BOOST_CHECK_EQUAL( static_cast<int>(times.size()) , n+1 );
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								        for( size_t i=0 ; i<times.size() ; ++i )
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								            // check if observer was called at times 0,1,2,...
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								            BOOST_CHECK_SMALL( times[i] - static_cast< value_type >(i)*dt , (i+1) * 2.0e-16 );
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								    }
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								};
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								class stepper_methods : public mpl::vector<
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								    rosenbrock4< value_type > ,
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								    rosenbrock4_controller< rosenbrock4< value_type > > ,
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								    rosenbrock4_dense_output< rosenbrock4_controller< rosenbrock4< value_type > > >
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								> { };
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								BOOST_AUTO_TEST_SUITE( integrate_test )
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								BOOST_AUTO_TEST_CASE_TEMPLATE( integrate_const_test_case , Stepper, stepper_methods )
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								{
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								    perform_integrate_const_test< Stepper > tester;
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								    tester();
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								}
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								BOOST_AUTO_TEST_CASE_TEMPLATE( integrate_adaptive_test_case , Stepper, stepper_methods )
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								{
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								    perform_integrate_adaptive_test< Stepper > tester;
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								    tester();
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								}
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								BOOST_AUTO_TEST_CASE_TEMPLATE( integrate_times_test_case , Stepper, stepper_methods )
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								{
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								    perform_integrate_times_test< Stepper > tester;
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								    tester();
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								}
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								class simple_stepper_methods : public mpl::vector<
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								    rosenbrock4< value_type >
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								> { };
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								BOOST_AUTO_TEST_CASE_TEMPLATE( integrate_n_steps_test_case , Stepper, simple_stepper_methods )
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								{
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								    perform_integrate_n_steps_test< Stepper > tester;
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								    tester();
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								}
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								BOOST_AUTO_TEST_SUITE_END()
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