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@@ -1296,7 +1296,62 @@ public:
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};
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template<class RealType = double>
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- class fisher_f_distribution;
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+class fisher_f_distribution
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+{
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+public:
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+ // types
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+ typedef RealType result_type;
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+
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+ class param_type
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+ {
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+ public:
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+ typedef result_type distribution_type;
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+
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+ explicit param_type(result_type m = 1, result_type n = 1);
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+
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+ result_type m() const;
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+ result_type n() const;
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+
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+ friend bool operator==(const param_type& x, const param_type& y);
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+ friend bool operator!=(const param_type& x, const param_type& y);
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+ };
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+
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+ // constructor and reset functions
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+ explicit fisher_f_distribution(result_type m = 1, result_type n = 1);
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+ explicit fisher_f_distribution(const param_type& parm);
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+ void reset();
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+
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+ // generating functions
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+ template<class URNG> result_type operator()(URNG& g);
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+ template<class URNG> result_type operator()(URNG& g, const param_type& parm);
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+
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+ // property functions
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+ result_type m() const;
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+ result_type n() const;
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+
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+ param_type param() const;
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+ void param(const param_type& parm);
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+
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+ result_type min() const;
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+ result_type max() const;
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+
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+ friend bool operator==(const fisher_f_distribution& x,
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+ const fisher_f_distribution& y);
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+ friend bool operator!=(const fisher_f_distribution& x,
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+ const fisher_f_distribution& y);
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+
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+ template <class charT, class traits>
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+ friend
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+ basic_ostream<charT, traits>&
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+ operator<<(basic_ostream<charT, traits>& os,
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+ const fisher_f_distribution& x);
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+
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+ template <class charT, class traits>
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+ friend
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+ basic_istream<charT, traits>&
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+ operator>>(basic_istream<charT, traits>& is,
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+ fisher_f_distribution& x);
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+};
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template<class RealType = double>
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class student_t_distribution;
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@@ -4921,18 +4976,6 @@ public:
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friend bool operator!=(const cauchy_distribution& __x,
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const cauchy_distribution& __y)
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{return !(__x == __y);}
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-
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- template <class _CharT, class _Traits, class _RT>
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- friend
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- basic_ostream<_CharT, _Traits>&
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- operator<<(basic_ostream<_CharT, _Traits>& __os,
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- const cauchy_distribution<_RT>& __x);
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-
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- template <class _CharT, class _Traits, class _RT>
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- friend
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- basic_istream<_CharT, _Traits>&
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- operator>>(basic_istream<_CharT, _Traits>& __is,
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- cauchy_distribution<_RT>& __x);
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};
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template <class _RealType>
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@@ -4977,6 +5020,109 @@ operator>>(basic_istream<_CharT, _Traits>& __is,
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return __is;
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}
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+// fisher_f_distribution
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+
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+template<class _RealType = double>
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+class fisher_f_distribution
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+{
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+public:
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+ // types
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+ typedef _RealType result_type;
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+
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+ class param_type
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+ {
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+ result_type __m_;
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+ result_type __n_;
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+ public:
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+ typedef fisher_f_distribution distribution_type;
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+
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+ explicit param_type(result_type __m = 1, result_type __n = 1)
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+ : __m_(__m), __n_(__n) {}
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+
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+ result_type m() const {return __m_;}
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+ result_type n() const {return __n_;}
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+
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+ friend bool operator==(const param_type& __x, const param_type& __y)
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+ {return __x.__m_ == __y.__m_ && __x.__n_ == __y.__n_;}
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+ friend bool operator!=(const param_type& __x, const param_type& __y)
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+ {return !(__x == __y);}
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+ };
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+
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+private:
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+ param_type __p_;
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+
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+public:
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+ // constructor and reset functions
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+ explicit fisher_f_distribution(result_type __m = 1, result_type __n = 1)
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+ : __p_(param_type(__m, __n)) {}
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+ explicit fisher_f_distribution(const param_type& __p)
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+ : __p_(__p) {}
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+ void reset() {}
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+
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+ // generating functions
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+ template<class _URNG> result_type operator()(_URNG& __g)
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+ {return (*this)(__g, __p_);}
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+ template<class _URNG> result_type operator()(_URNG& __g, const param_type& __p);
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+
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+ // property functions
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+ result_type m() const {return __p_.m();}
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+ result_type n() const {return __p_.n();}
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+
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+ param_type param() const {return __p_;}
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+ void param(const param_type& __p) {__p_ = __p;}
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+
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+ result_type min() const {return 0;}
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+ result_type max() const {return numeric_limits<result_type>::infinity();}
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+
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+ friend bool operator==(const fisher_f_distribution& __x,
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+ const fisher_f_distribution& __y)
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+ {return __x.__p_ == __y.__p_;}
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+ friend bool operator!=(const fisher_f_distribution& __x,
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+ const fisher_f_distribution& __y)
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+ {return !(__x == __y);}
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+};
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+
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+template <class _RealType>
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+template<class _URNG>
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+_RealType
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+fisher_f_distribution<_RealType>::operator()(_URNG& __g, const param_type& __p)
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+{
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+ gamma_distribution<result_type> __gdm(__p.m() * result_type(.5));
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+ gamma_distribution<result_type> __gdn(__p.n() * result_type(.5));
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+ return __p.n() * __gdm(__g) / (__p.m() * __gdn(__g));
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+}
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+
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+template <class _CharT, class _Traits, class _RT>
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+basic_ostream<_CharT, _Traits>&
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+operator<<(basic_ostream<_CharT, _Traits>& __os,
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+ const fisher_f_distribution<_RT>& __x)
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+{
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+ __save_flags<_CharT, _Traits> _(__os);
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+ __os.flags(ios_base::dec | ios_base::left);
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+ _CharT __sp = __os.widen(' ');
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+ __os.fill(__sp);
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+ __os << __x.m() << __sp << __x.n();
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+ return __os;
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+}
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+
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+template <class _CharT, class _Traits, class _RT>
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+basic_istream<_CharT, _Traits>&
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+operator>>(basic_istream<_CharT, _Traits>& __is,
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+ fisher_f_distribution<_RT>& __x)
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+{
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+ typedef fisher_f_distribution<_RT> _Eng;
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+ typedef typename _Eng::result_type result_type;
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+ typedef typename _Eng::param_type param_type;
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+ __save_flags<_CharT, _Traits> _(__is);
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+ __is.flags(ios_base::dec | ios_base::skipws);
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+ result_type __m;
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+ result_type __n;
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+ __is >> __m >> __n;
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+ if (!__is.fail())
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+ __x.param(param_type(__m, __n));
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+ return __is;
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+}
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+
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_LIBCPP_END_NAMESPACE_STD
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#endif // _LIBCPP_RANDOM
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