146 lines
		
	
	
		
			4.2 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
		
		
			
		
	
	
			146 lines
		
	
	
		
			4.2 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
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								//  boost sinc.hpp header file
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								//  (C) Copyright Hubert Holin 2001.
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								//  Distributed under the Boost Software License, Version 1.0. (See
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								//  accompanying file LICENSE_1_0.txt or copy at
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								//  http://www.boost.org/LICENSE_1_0.txt)
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								// See http://www.boost.org for updates, documentation, and revision history.
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								#ifndef BOOST_SINC_HPP
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								#define BOOST_SINC_HPP
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								#ifdef _MSC_VER
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								#pragma once
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								#endif
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								#include <boost/math/tools/config.hpp>
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								#include <boost/math/tools/precision.hpp>
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								#include <boost/math/policies/policy.hpp>
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								#include <boost/math/special_functions/math_fwd.hpp>
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								#include <boost/config/no_tr1/cmath.hpp>
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								#include <boost/limits.hpp>
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								#include <string>
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								#include <stdexcept>
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								#include <boost/config.hpp>
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								// These are the the "Sinus Cardinal" functions.
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								namespace boost
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								{
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								    namespace math
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								    {
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								       namespace detail
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								       {
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								        // This is the "Sinus Cardinal" of index Pi.
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								        template<typename T>
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								        inline T    sinc_pi_imp(const T x)
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								        {
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								            BOOST_MATH_STD_USING
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								            T const    taylor_0_bound = tools::epsilon<T>();
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								            T const    taylor_2_bound = tools::root_epsilon<T>();
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								            T const    taylor_n_bound = tools::forth_root_epsilon<T>();
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								            if    (abs(x) >= taylor_n_bound)
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								            {
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								                return(sin(x)/x);
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								            }
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								            else
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								            {
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								                // approximation by taylor series in x at 0 up to order 0
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								                T    result = static_cast<T>(1);
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								                if    (abs(x) >= taylor_0_bound)
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								                {
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								                    T    x2 = x*x;
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								                    // approximation by taylor series in x at 0 up to order 2
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								                    result -= x2/static_cast<T>(6);
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								                    if    (abs(x) >= taylor_2_bound)
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								                    {
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								                        // approximation by taylor series in x at 0 up to order 4
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								                        result += (x2*x2)/static_cast<T>(120);
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								                    }
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								                }
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								                return(result);
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								            }
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								        }
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								       } // namespace detail
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								       template <class T>
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								       inline typename tools::promote_args<T>::type sinc_pi(T x)
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								       {
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								          typedef typename tools::promote_args<T>::type result_type;
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								          return detail::sinc_pi_imp(static_cast<result_type>(x));
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								       }
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								       template <class T, class Policy>
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								       inline typename tools::promote_args<T>::type sinc_pi(T x, const Policy&)
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								       {
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								          typedef typename tools::promote_args<T>::type result_type;
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								          return detail::sinc_pi_imp(static_cast<result_type>(x));
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								       }
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								#ifndef    BOOST_NO_TEMPLATE_TEMPLATES
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								        template<typename T, template<typename> class U>
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								        inline U<T>    sinc_pi(const U<T> x)
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								        {
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								            BOOST_MATH_STD_USING
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								            using    ::std::numeric_limits;
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								            T const    taylor_0_bound = tools::epsilon<T>();
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								            T const    taylor_2_bound = tools::root_epsilon<T>();
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								            T const    taylor_n_bound = tools::forth_root_epsilon<T>();
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								            if    (abs(x) >= taylor_n_bound)
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								            {
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								                return(sin(x)/x);
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								            }
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								            else
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								            {
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								                // approximation by taylor series in x at 0 up to order 0
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								#ifdef __MWERKS__
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								                U<T>    result = static_cast<U<T> >(1);
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								#else
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								                U<T>    result = U<T>(1);
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								#endif
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								                if    (abs(x) >= taylor_0_bound)
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								                {
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								                    U<T>    x2 = x*x;
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								                    // approximation by taylor series in x at 0 up to order 2
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								                    result -= x2/static_cast<T>(6);
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								                    if    (abs(x) >= taylor_2_bound)
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								                    {
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								                        // approximation by taylor series in x at 0 up to order 4
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								                        result += (x2*x2)/static_cast<T>(120);
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								                    }
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								                }
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								                return(result);
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								            }
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								        }
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								        template<typename T, template<typename> class U, class Policy>
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								        inline U<T>    sinc_pi(const U<T> x, const Policy&)
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								        {
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								           return sinc_pi(x);
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								        }
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								#endif    /* BOOST_NO_TEMPLATE_TEMPLATES */
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								    }
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								}
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								#endif /* BOOST_SINC_HPP */
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