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			5.7 KiB
		
	
	
	
		
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			181 lines
		
	
	
		
			5.7 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
/* boost random/student_t_distribution.hpp header file
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 *
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 * Copyright Steven Watanabe 2011
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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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 *
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 * See http://www.boost.org for most recent version including documentation.
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 *
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 * $Id$
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 */
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#ifndef BOOST_RANDOM_STUDENT_T_DISTRIBUTION_HPP
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#define BOOST_RANDOM_STUDENT_T_DISTRIBUTION_HPP
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#include <boost/config/no_tr1/cmath.hpp>
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#include <iosfwd>
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#include <boost/config.hpp>
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#include <boost/limits.hpp>
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#include <boost/random/detail/operators.hpp>
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#include <boost/random/chi_squared_distribution.hpp>
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#include <boost/random/normal_distribution.hpp>
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namespace boost {
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namespace random {
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/**
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 * The Student t distribution is a real valued distribution with one
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 * parameter n, the number of degrees of freedom.
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 *
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 * It has \f$\displaystyle p(x) =
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 *   \frac{1}{\sqrt{n\pi}}
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 *   \frac{\Gamma((n+1)/2)}{\Gamma(n/2)}
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 *   \left(1+\frac{x^2}{n}\right)^{-(n+1)/2}
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 * \f$.
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 */
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template<class RealType = double>
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class student_t_distribution {
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public:
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    typedef RealType result_type;
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    typedef RealType input_type;
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    class param_type {
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    public:
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        typedef student_t_distribution distribution_type;
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        /**
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         * Constructs a @c param_type with "n" degrees of freedom.
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         *
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         * Requires: n > 0
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         */
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        explicit param_type(RealType n_arg = RealType(1.0))
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          : _n(n_arg)
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        {}
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        /** Returns the number of degrees of freedom of the distribution. */
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        RealType n() const { return _n; }
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        /** Writes a @c param_type to a @c std::ostream. */
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        BOOST_RANDOM_DETAIL_OSTREAM_OPERATOR(os, param_type, parm)
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        { os << parm._n; return os; }
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        /** Reads a @c param_type from a @c std::istream. */
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        BOOST_RANDOM_DETAIL_ISTREAM_OPERATOR(is, param_type, parm)
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        { is >> parm._n; return is; }
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        /** Returns true if the two sets of parameters are the same. */
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        BOOST_RANDOM_DETAIL_EQUALITY_OPERATOR(param_type, lhs, rhs)
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        { return lhs._n == rhs._n; }
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        /** Returns true if the two sets of parameters are the different. */
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        BOOST_RANDOM_DETAIL_INEQUALITY_OPERATOR(param_type)
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    private:
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        RealType _n;
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    };
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    /**
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     * Constructs an @c student_t_distribution with "n" degrees of freedom.
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     *
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     * Requires: n > 0
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     */
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    explicit student_t_distribution(RealType n_arg = RealType(1.0))
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      : _normal(), _chi_squared(n_arg)
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    {}
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    /** Constructs an @c student_t_distribution from its parameters. */
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    explicit student_t_distribution(const param_type& parm)
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      : _normal(), _chi_squared(parm.n())
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    {}
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    /**
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     * Returns a random variate distributed according to the
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     * Student t distribution.
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     */
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    template<class URNG>
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    RealType operator()(URNG& urng)
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    {
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        using std::sqrt;
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        return _normal(urng) / sqrt(_chi_squared(urng) / n());
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    }
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    /**
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     * Returns a random variate distributed accordint to the Student
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     * t distribution with parameters specified by @c param.
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     */
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    template<class URNG>
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    RealType operator()(URNG& urng, const param_type& parm) const
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    {
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        return student_t_distribution(parm)(urng);
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    }
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    /** Returns the number of degrees of freedom. */
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    RealType n() const { return _chi_squared.n(); }
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    /** Returns the smallest value that the distribution can produce. */
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    RealType min BOOST_PREVENT_MACRO_SUBSTITUTION () const
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    { return -std::numeric_limits<RealType>::infinity(); }
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    /** Returns the largest value that the distribution can produce. */
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    RealType max BOOST_PREVENT_MACRO_SUBSTITUTION () const
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    { return std::numeric_limits<RealType>::infinity(); }
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    /** Returns the parameters of the distribution. */
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    param_type param() const { return param_type(n()); }
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    /** Sets the parameters of the distribution. */
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    void param(const param_type& parm)
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    {
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        typedef chi_squared_distribution<RealType> chi_squared_type;
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        typename chi_squared_type::param_type chi_squared_param(parm.n());
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        _chi_squared.param(chi_squared_param);
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    }
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    /**
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     * Effects: Subsequent uses of the distribution do not depend
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     * on values produced by any engine prior to invoking reset.
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     */
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    void reset()
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    {
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        _normal.reset();
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        _chi_squared.reset();
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    }
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    /** Writes a @c student_t_distribution to a @c std::ostream. */
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    BOOST_RANDOM_DETAIL_OSTREAM_OPERATOR(os, student_t_distribution, td)
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    {
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        os << td.param();
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        return os;
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    }
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    /** Reads a @c student_t_distribution from a @c std::istream. */
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    BOOST_RANDOM_DETAIL_ISTREAM_OPERATOR(is, student_t_distribution, td)
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    {
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        param_type parm;
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        if(is >> parm) {
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            td.param(parm);
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        }
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        return is;
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    }
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    /**
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     * Returns true if the two instances of @c student_t_distribution will
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     * return identical sequences of values given equal generators.
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     */
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    BOOST_RANDOM_DETAIL_EQUALITY_OPERATOR(student_t_distribution, lhs, rhs)
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    { return lhs._normal == rhs._normal && lhs._chi_squared == rhs._chi_squared; }
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    /**
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     * Returns true if the two instances of @c student_t_distribution will
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     * return different sequences of values given equal generators.
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     */
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    BOOST_RANDOM_DETAIL_INEQUALITY_OPERATOR(student_t_distribution)
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private:
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    normal_distribution<RealType> _normal;
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    chi_squared_distribution<RealType> _chi_squared;
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};
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} // namespace random
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} // namespace boost
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#endif // BOOST_RANDOM_STUDENT_T_DISTRIBUTION_HPP
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