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			7.0 KiB
		
	
	
	
		
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			221 lines
		
	
	
		
			7.0 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
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								/* boost random/negative_binomial_distribution.hpp header file
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								 *
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								 * Copyright Steven Watanabe 2010
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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_NEGATIVE_BINOMIAL_DISTRIBUTION_HPP_INCLUDED
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								#define BOOST_RANDOM_NEGATIVE_BINOMIAL_DISTRIBUTION_HPP_INCLUDED
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								#include <iosfwd>
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								#include <boost/limits.hpp>
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								#include <boost/random/detail/config.hpp>
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								#include <boost/random/gamma_distribution.hpp>
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								#include <boost/random/poisson_distribution.hpp>
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								namespace boost {
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								namespace random {
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								/**
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								 * The negative binomial distribution is an integer valued
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								 * distribution with two parameters, @c k and @c p.  The
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								 * distribution produces non-negative values.
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								 *
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								 * The distribution function is
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								 * \f$\displaystyle P(i) = {k+i-1\choose i}p^k(1-p)^i\f$.
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								 *
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								 * This implementation uses a gamma-poisson mixture.
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								 */
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								template<class IntType = int, class RealType = double>
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								class negative_binomial_distribution {
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								public:
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								    typedef IntType 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 negative_binomial_distribution distribution_type;
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								        /**
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								         * Construct a param_type object.  @c k and @c p
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								         * are the parameters of the distribution.
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								         *
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								         * Requires: k >=0 && 0 <= p <= 1
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								         */
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								        explicit param_type(IntType k_arg = 1, RealType p_arg = RealType (0.5))
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								          : _k(k_arg), _p(p_arg)
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								        {}
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								        /** Returns the @c k parameter of the distribution. */
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								        IntType k() const { return _k; }
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								        /** Returns the @c p parameter of the distribution. */
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								        RealType p() const { return _p; }
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								#ifndef BOOST_RANDOM_NO_STREAM_OPERATORS
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								        /** Writes the parameters of the distribution to a @c std::ostream. */
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								        template<class CharT, class Traits>
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								        friend std::basic_ostream<CharT,Traits>&
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								        operator<<(std::basic_ostream<CharT,Traits>& os,
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								                   const param_type& parm)
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								        {
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								            os << parm._p << " " << parm._k;
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								            return os;
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								        }
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								        /** Reads the parameters of the distribution from a @c std::istream. */
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								        template<class CharT, class Traits>
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								        friend std::basic_istream<CharT,Traits>&
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								        operator>>(std::basic_istream<CharT,Traits>& is, param_type& parm)
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								        {
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								            is >> parm._p >> std::ws >> parm._k;
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								            return is;
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								        }
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								#endif
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								        /** Returns true if the parameters have the same values. */
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								        friend bool operator==(const param_type& lhs, const param_type& rhs)
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								        {
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								            return lhs._k == rhs._k && lhs._p == rhs._p;
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								        }
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								        /** Returns true if the parameters have different values. */
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								        friend bool operator!=(const param_type& lhs, const param_type& rhs)
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								        {
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								            return !(lhs == rhs);
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								        }
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								    private:
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								        IntType _k;
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								        RealType _p;
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								    };
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								    /**
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								     * Construct a @c negative_binomial_distribution object. @c k and @c p
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								     * are the parameters of the distribution.
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								     *
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								     * Requires: k >=0 && 0 <= p <= 1
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								     */
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								    explicit negative_binomial_distribution(IntType k_arg = 1,
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								                                            RealType p_arg = RealType(0.5))
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								      : _k(k_arg), _p(p_arg)
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								    {}
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								    /**
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								     * Construct an @c negative_binomial_distribution object from the
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								     * parameters.
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								     */
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								    explicit negative_binomial_distribution(const param_type& parm)
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								      : _k(parm.k()), _p(parm.p())
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								    {}
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								    /**
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								     * Returns a random variate distributed according to the
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								     * negative binomial distribution.
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								     */
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								    template<class URNG>
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								    IntType operator()(URNG& urng) const
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								    {
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								        gamma_distribution<RealType> gamma(_k, (1-_p)/_p);
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								        poisson_distribution<IntType, RealType> poisson(gamma(urng));
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								        return poisson(urng);
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								    }
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								    /**
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								     * Returns a random variate distributed according to the negative
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								     * binomial distribution with parameters specified by @c param.
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								     */
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								    template<class URNG>
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								    IntType operator()(URNG& urng, const param_type& parm) const
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								    {
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								        return negative_binomial_distribution(parm)(urng);
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								    }
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								    /** Returns the @c k parameter of the distribution. */
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								    IntType k() const { return _k; }
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								    /** Returns the @c p parameter of the distribution. */
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								    RealType p() const { return _p; }
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								    /** Returns the smallest value that the distribution can produce. */
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								    IntType min BOOST_PREVENT_MACRO_SUBSTITUTION() const { return 0; }
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								    /** Returns the largest value that the distribution can produce. */
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								    IntType max BOOST_PREVENT_MACRO_SUBSTITUTION() const
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								    { return (std::numeric_limits<IntType>::max)(); }
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								    /** Returns the parameters of the distribution. */
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								    param_type param() const { return param_type(_k, _p); }
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								    /** Sets parameters of the distribution. */
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								    void param(const param_type& parm)
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								    {
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								        _k = parm.k();
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								        _p = parm.p();
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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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								#ifndef BOOST_RANDOM_NO_STREAM_OPERATORS
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								    /** Writes the parameters of the distribution to a @c std::ostream. */
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								    template<class CharT, class Traits>
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								    friend std::basic_ostream<CharT,Traits>&
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								    operator<<(std::basic_ostream<CharT,Traits>& os,
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								               const negative_binomial_distribution& bd)
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								    {
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								        os << bd.param();
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								        return os;
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								    }
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								    /** Reads the parameters of the distribution from a @c std::istream. */
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								    template<class CharT, class Traits>
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								    friend std::basic_istream<CharT,Traits>&
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								    operator>>(std::basic_istream<CharT,Traits>& is,
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								               negative_binomial_distribution& bd)
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								    {
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								        bd.read(is);
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								        return is;
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								    }
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								#endif
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								    /** Returns true if the two distributions will produce the same
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								        sequence of values, given equal generators. */
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								    friend bool operator==(const negative_binomial_distribution& lhs,
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								                           const negative_binomial_distribution& rhs)
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								    {
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								        return lhs._k == rhs._k && lhs._p == rhs._p;
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								    }
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								    /** Returns true if the two distributions could produce different
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								        sequences of values, given equal generators. */
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								    friend bool operator!=(const negative_binomial_distribution& lhs,
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								                           const negative_binomial_distribution& rhs)
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								    {
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								        return !(lhs == rhs);
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								    }
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								private:
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								    /// @cond \show_private
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								    template<class CharT, class Traits>
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								    void read(std::basic_istream<CharT, Traits>& is) {
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								        param_type parm;
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								        if(is >> parm) {
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								            param(parm);
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								        }
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								    }
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								    // parameters
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								    IntType _k;
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								    RealType _p;
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								    /// @endcond
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								};
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								}
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								}
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								#endif
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