32 #ifndef VSMC_RNG_LOGISTIC_DISTRIBUTION_HPP    33 #define VSMC_RNG_LOGISTIC_DISTRIBUTION_HPP    44 template <
typename RealType>
    54 template <
typename RealType>
    62         return std::numeric_limits<result_type>::lowest();
    70     template <
typename RNGType>
    76         return param.
a() + param.
b() * 
std::log(u / (1 - u));
    83 template <std::
size_t K, 
typename RealType, 
typename RNGType>
    85     RNGType &rng, std::size_t n, RealType *r, RealType a, RealType b)
    89     sub(n, static_cast<RealType>(1), r, s);
    99 template <
typename RealType, 
typename RNGType>
   101     RNGType &rng, std::size_t n, RealType *r, RealType a, RealType b)
   103     static_assert(std::is_floating_point<RealType>::value,
   104         "**logistic_distribution** USED WITH RealType OTHER THAN FLOATING "   107     const std::size_t k = 1024;
   108     const std::size_t m = n / k;
   109     const std::size_t l = n % k;
   110     for (std::size_t i = 0; i != m; ++i, r += k)
   111         internal::logistic_distribution_impl<k>(rng, k, r, a, b);
   112     internal::logistic_distribution_impl<k>(rng, l, r, a, b);
   119 #endif // VSMC_RNG_LOGISTIC_DISTRIBUTION_HPP 
#define VSMC_DEFINE_RNG_DISTRIBUTION_2(Name, name, p1, v1, p2, v2)                    
 
void logistic_distribution(RNGType &, std::size_t, RealType *, RealType, RealType)
Generating logistic random variates. 
 
bool logistic_distribution_check_param(RealType, RealType b)
 
void u01_distribution(RNGType &, std::size_t, RealType *)
Generate standard uniform random variates. 
 
void div(std::size_t n, const float *a, const float *b, float *y)
 
void sub(std::size_t n, const float *a, const float *b, float *y)
 
void fma(std::size_t n, const T *a, const T *b, const T *c, T *y)
For , compute . 
 
Standard uniform distribution. 
 
#define VSMC_DEFINE_RNG_DISTRIBUTION_RAND_2(Name, name, p1, p2)                          
 
void log(std::size_t n, const float *a, float *y)
 
void logistic_distribution_impl(RNGType &rng, std::size_t n, RealType *r, RealType a, RealType b)