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- #ifndef BOOST_SINC_HPP
- #define BOOST_SINC_HPP
- #ifdef _MSC_VER
- #pragma once
- #endif
- #include <boost/math/tools/config.hpp>
- #include <boost/math/tools/precision.hpp>
- #include <boost/math/policies/policy.hpp>
- #include <boost/math/special_functions/math_fwd.hpp>
- #include <boost/math/special_functions/fpclassify.hpp>
- #include <limits>
- #include <string>
- #include <stdexcept>
- #include <cmath>
- namespace boost
- {
- namespace math
- {
- namespace detail
- {
-
- template<typename T>
- inline T sinc_pi_imp(const T x)
- {
- BOOST_MATH_STD_USING
- if ((boost::math::isinf)(x))
- {
- return 0;
- }
- else if (abs(x) >= 3.3 * tools::forth_root_epsilon<T>())
- {
- return(sin(x)/x);
- }
- else
- {
-
- return 1 - x * x / 6;
- }
- }
- }
- template <class T>
- inline typename tools::promote_args<T>::type sinc_pi(T x)
- {
- typedef typename tools::promote_args<T>::type result_type;
- return detail::sinc_pi_imp(static_cast<result_type>(x));
- }
- template <class T, class Policy>
- inline typename tools::promote_args<T>::type sinc_pi(T x, const Policy&)
- {
- typedef typename tools::promote_args<T>::type result_type;
- return detail::sinc_pi_imp(static_cast<result_type>(x));
- }
- template<typename T, template<typename> class U>
- inline U<T> sinc_pi(const U<T> x)
- {
- BOOST_MATH_STD_USING
- using ::std::numeric_limits;
- T const taylor_0_bound = tools::epsilon<T>();
- T const taylor_2_bound = tools::root_epsilon<T>();
- T const taylor_n_bound = tools::forth_root_epsilon<T>();
- if (abs(x) >= taylor_n_bound)
- {
- return(sin(x)/x);
- }
- else
- {
-
- #ifdef __MWERKS__
- U<T> result = static_cast<U<T> >(1);
- #else
- U<T> result = U<T>(1);
- #endif
- if (abs(x) >= taylor_0_bound)
- {
- U<T> x2 = x*x;
-
- result -= x2/static_cast<T>(6);
- if (abs(x) >= taylor_2_bound)
- {
-
- result += (x2*x2)/static_cast<T>(120);
- }
- }
- return(result);
- }
- }
- template<typename T, template<typename> class U, class Policy>
- inline U<T> sinc_pi(const U<T> x, const Policy&)
- {
- return sinc_pi(x);
- }
- }
- }
- #endif
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