276 lines
		
	
	
		
			8.8 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
		
		
			
		
	
	
			276 lines
		
	
	
		
			8.8 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
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								//  Copyright John Maddock 2006.
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								//  Use, modification and distribution are subject to the
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								//  Boost Software License, Version 1.0. (See accompanying file
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								//  LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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								#ifndef BOOST_STATS_EXPONENTIAL_HPP
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								#define BOOST_STATS_EXPONENTIAL_HPP
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								#include <boost/math/distributions/fwd.hpp>
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								#include <boost/math/constants/constants.hpp>
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								#include <boost/math/special_functions/log1p.hpp>
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								#include <boost/math/special_functions/expm1.hpp>
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								#include <boost/math/distributions/complement.hpp>
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								#include <boost/math/distributions/detail/common_error_handling.hpp>
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								#include <boost/config/no_tr1/cmath.hpp>
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								#ifdef BOOST_MSVC
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								# pragma warning(push)
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								# pragma warning(disable: 4127) // conditional expression is constant
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								# pragma warning(disable: 4702) // unreachable code (return after domain_error throw).
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								#endif
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								#include <utility>
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								namespace boost{ namespace math{
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								namespace detail{
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								//
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								// Error check:
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								//
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								template <class RealType, class Policy>
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								inline bool verify_lambda(const char* function, RealType l, RealType* presult, const Policy& pol)
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								{
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								   if((l <= 0) || !(boost::math::isfinite)(l))
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								   {
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								      *presult = policies::raise_domain_error<RealType>(
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								         function,
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								         "The scale parameter \"lambda\" must be > 0, but was: %1%.", l, pol);
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								      return false;
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								   }
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								   return true;
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								}
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								template <class RealType, class Policy>
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								inline bool verify_exp_x(const char* function, RealType x, RealType* presult, const Policy& pol)
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								{
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								   if((x < 0) || (boost::math::isnan)(x))
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								   {
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								      *presult = policies::raise_domain_error<RealType>(
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								         function,
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								         "The random variable must be >= 0, but was: %1%.", x, pol);
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								      return false;
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								   }
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								   return true;
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								}
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								} // namespace detail
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								template <class RealType = double, class Policy = policies::policy<> >
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								class exponential_distribution
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								{
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								public:
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								   typedef RealType value_type;
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								   typedef Policy policy_type;
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								   exponential_distribution(RealType l_lambda = 1)
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								      : m_lambda(l_lambda)
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								   {
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								      RealType err;
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								      detail::verify_lambda("boost::math::exponential_distribution<%1%>::exponential_distribution", l_lambda, &err, Policy());
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								   } // exponential_distribution
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								   RealType lambda()const { return m_lambda; }
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								private:
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								   RealType m_lambda;
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								};
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								typedef exponential_distribution<double> exponential;
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								template <class RealType, class Policy>
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								inline const std::pair<RealType, RealType> range(const exponential_distribution<RealType, Policy>& /*dist*/)
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								{ // Range of permissible values for random variable x.
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								  if (std::numeric_limits<RealType>::has_infinity)
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								  { 
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								    return std::pair<RealType, RealType>(static_cast<RealType>(0), std::numeric_limits<RealType>::infinity()); // 0 to + infinity.
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								  }
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								  else
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								  {
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								   using boost::math::tools::max_value;
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								   return std::pair<RealType, RealType>(static_cast<RealType>(0), max_value<RealType>()); // 0 to + max
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								  }
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								}
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								template <class RealType, class Policy>
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								inline const std::pair<RealType, RealType> support(const exponential_distribution<RealType, Policy>& /*dist*/)
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								{ // Range of supported values for random variable x.
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								   // This is range where cdf rises from 0 to 1, and outside it, the pdf is zero.
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								   using boost::math::tools::max_value;
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								   using boost::math::tools::min_value;
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								   return std::pair<RealType, RealType>(min_value<RealType>(),  max_value<RealType>());
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								   // min_value<RealType>() to avoid a discontinuity at x = 0.
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								}
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								template <class RealType, class Policy>
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								inline RealType pdf(const exponential_distribution<RealType, Policy>& dist, const RealType& x)
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								{
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								   BOOST_MATH_STD_USING // for ADL of std functions
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								   static const char* function = "boost::math::pdf(const exponential_distribution<%1%>&, %1%)";
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								   RealType lambda = dist.lambda();
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								   RealType result = 0;
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								   if(0 == detail::verify_lambda(function, lambda, &result, Policy()))
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								      return result;
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								   if(0 == detail::verify_exp_x(function, x, &result, Policy()))
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								      return result;
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								   // Workaround for VC11/12 bug:
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								   if ((boost::math::isinf)(x))
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								      return 0;
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								   result = lambda * exp(-lambda * x);
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								   return result;
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								} // pdf
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								template <class RealType, class Policy>
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								inline RealType cdf(const exponential_distribution<RealType, Policy>& dist, const RealType& x)
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								{
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								   BOOST_MATH_STD_USING // for ADL of std functions
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								   static const char* function = "boost::math::cdf(const exponential_distribution<%1%>&, %1%)";
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								   RealType result = 0;
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								   RealType lambda = dist.lambda();
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								   if(0 == detail::verify_lambda(function, lambda, &result, Policy()))
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								      return result;
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								   if(0 == detail::verify_exp_x(function, x, &result, Policy()))
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								      return result;
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								   result = -boost::math::expm1(-x * lambda, Policy());
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								   return result;
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								} // cdf
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								template <class RealType, class Policy>
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								inline RealType quantile(const exponential_distribution<RealType, Policy>& dist, const RealType& p)
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								{
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								   BOOST_MATH_STD_USING // for ADL of std functions
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								   static const char* function = "boost::math::quantile(const exponential_distribution<%1%>&, %1%)";
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								   RealType result = 0;
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								   RealType lambda = dist.lambda();
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								   if(0 == detail::verify_lambda(function, lambda, &result, Policy()))
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								      return result;
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								   if(0 == detail::check_probability(function, p, &result, Policy()))
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								      return result;
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								   if(p == 0)
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								      return 0;
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								   if(p == 1)
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								      return policies::raise_overflow_error<RealType>(function, 0, Policy());
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								   result = -boost::math::log1p(-p, Policy()) / lambda;
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								   return result;
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								} // quantile
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								template <class RealType, class Policy>
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								inline RealType cdf(const complemented2_type<exponential_distribution<RealType, Policy>, RealType>& c)
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								{
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								   BOOST_MATH_STD_USING // for ADL of std functions
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								   static const char* function = "boost::math::cdf(const exponential_distribution<%1%>&, %1%)";
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								   RealType result = 0;
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								   RealType lambda = c.dist.lambda();
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								   if(0 == detail::verify_lambda(function, lambda, &result, Policy()))
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								      return result;
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								   if(0 == detail::verify_exp_x(function, c.param, &result, Policy()))
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								      return result;
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								   // Workaround for VC11/12 bug:
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								   if (c.param >= tools::max_value<RealType>())
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								      return 0;
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								   result = exp(-c.param * lambda);
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								   return result;
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								}
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								template <class RealType, class Policy>
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								inline RealType quantile(const complemented2_type<exponential_distribution<RealType, Policy>, RealType>& c)
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								{
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								   BOOST_MATH_STD_USING // for ADL of std functions
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								   static const char* function = "boost::math::quantile(const exponential_distribution<%1%>&, %1%)";
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								   RealType result = 0;
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								   RealType lambda = c.dist.lambda();
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								   if(0 == detail::verify_lambda(function, lambda, &result, Policy()))
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								      return result;
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								   RealType q = c.param;
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								   if(0 == detail::check_probability(function, q, &result, Policy()))
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								      return result;
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								   if(q == 1)
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								      return 0;
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								   if(q == 0)
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								      return policies::raise_overflow_error<RealType>(function, 0, Policy());
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								   result = -log(q) / lambda;
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								   return result;
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								}
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								template <class RealType, class Policy>
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								inline RealType mean(const exponential_distribution<RealType, Policy>& dist)
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								{
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								   RealType result = 0;
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								   RealType lambda = dist.lambda();
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								   if(0 == detail::verify_lambda("boost::math::mean(const exponential_distribution<%1%>&)", lambda, &result, Policy()))
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								      return result;
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								   return 1 / lambda;
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								}
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								template <class RealType, class Policy>
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								inline RealType standard_deviation(const exponential_distribution<RealType, Policy>& dist)
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								{
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								   RealType result = 0;
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								   RealType lambda = dist.lambda();
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								   if(0 == detail::verify_lambda("boost::math::standard_deviation(const exponential_distribution<%1%>&)", lambda, &result, Policy()))
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								      return result;
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								   return 1 / lambda;
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								}
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								template <class RealType, class Policy>
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								inline RealType mode(const exponential_distribution<RealType, Policy>& /*dist*/)
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								{
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								   return 0;
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								}
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								template <class RealType, class Policy>
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								inline RealType median(const exponential_distribution<RealType, Policy>& dist)
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								{
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								   using boost::math::constants::ln_two;
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								   return ln_two<RealType>() / dist.lambda(); // ln(2) / lambda
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								}
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								template <class RealType, class Policy>
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								inline RealType skewness(const exponential_distribution<RealType, Policy>& /*dist*/)
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								{
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								   return 2;
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								}
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								template <class RealType, class Policy>
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								inline RealType kurtosis(const exponential_distribution<RealType, Policy>& /*dist*/)
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								{
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								   return 9;
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								}
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								template <class RealType, class Policy>
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								inline RealType kurtosis_excess(const exponential_distribution<RealType, Policy>& /*dist*/)
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								{
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								   return 6;
							 | 
						||
| 
								 | 
							
								}
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								} // namespace math
							 | 
						||
| 
								 | 
							
								} // namespace boost
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								#ifdef BOOST_MSVC
							 | 
						||
| 
								 | 
							
								# pragma warning(pop)
							 | 
						||
| 
								 | 
							
								#endif
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								// This include must be at the end, *after* the accessors
							 | 
						||
| 
								 | 
							
								// for this distribution have been defined, in order to
							 | 
						||
| 
								 | 
							
								// keep compilers that support two-phase lookup happy.
							 | 
						||
| 
								 | 
							
								#include <boost/math/distributions/detail/derived_accessors.hpp>
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								#endif // BOOST_STATS_EXPONENTIAL_HPP
							 |