vSMC
vSMC: Scalable Monte Carlo
levy_distribution.hpp
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2 // vSMC/include/vsmc/rng/levy_distribution.hpp
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31 
32 #ifndef VSMC_RNG_LEVY_DISTRIBUTION_HPP
33 #define VSMC_RNG_LEVY_DISTRIBUTION_HPP
34 
37 
38 namespace vsmc
39 {
40 
41 namespace internal
42 {
43 
44 template <typename RealType>
45 inline bool levy_distribution_check_param(RealType, RealType b)
46 {
47  return b > 0;
48 }
49 
50 } // namespace vsmc::internal
51 
54 template <typename RealType>
55 class LevyDistribution
56 {
58  Levy, levy, RealType, result_type, a, 0, result_type, b, 1)
60 
61  public:
62  result_type min VSMC_MNE() const { return a(); }
63 
64  result_type max VSMC_MNE() const
65  {
66  return std::numeric_limits<result_type>::max VSMC_MNE();
67  }
68 
69  void reset() { normal_ = NormalDistribution<RealType>(0, 1); }
70 
71  private:
73 
74  template <typename RNGType>
75  result_type generate(RNGType &rng, const param_type &param)
76  {
77  result_type r = normal_(rng);
78 
79  return param.a() + param.b() / (r * r);
80  }
81 }; // class LevyDistribution
82 
83 namespace internal
84 {
85 
86 template <std::size_t K, typename RealType, typename RNGType>
88  RNGType &rng, std::size_t n, RealType *r, RealType a, RealType b)
89 {
91  rng, n, r, static_cast<RealType>(0), static_cast<RealType>(1));
92  sqr(n, r, r);
93  inv(n, r, r);
94  fma(n, b, r, a, r);
95 }
96 
97 } // namespace vsmc::internal
98 
101 template <typename RealType, typename RNGType>
102 inline void levy_distribution(
103  RNGType &rng, std::size_t n, RealType *r, RealType a, RealType b)
104 {
105  const std::size_t k = 1000;
106  const std::size_t m = n / k;
107  const std::size_t l = n % k;
108  for (std::size_t i = 0; i != m; ++i)
109  internal::levy_distribution_impl<k>(rng, k, r + i * k, a, b);
110  internal::levy_distribution_impl<k>(rng, l, r + m * k, a, b);
111 }
112 
113 template <typename RealType, typename RNGType>
114 inline void rng_rand(
115  RNGType &rng, LevyDistribution<RealType> &dist, std::size_t n, RealType *r)
116 {
117  dist(rng, n, r);
118 }
119 
120 } // namespace vsmc
121 
122 #endif // VSMC_RNG_LEVY_DISTRIBUTION_HPP
Definition: monitor.hpp:49
void levy_distribution_impl(RNGType &rng, std::size_t n, RealType *r, RealType a, RealType b)
void rng_rand(RNGType &rng, BernoulliDistribution< IntType > &dist, std::size_t n, IntType *r)
#define VSMC_DEFINE_RNG_DISTRIBUTION_OPERATORS
Definition: common.hpp:286
void normal_distribution(RNGType &, std::size_t, RealType *, RealType, RealType)
Generating normal random variates.
#define VSMC_DEFINE_RNG_DISTRIBUTION_2(Name, name, T, T1, p1, v1, T2, p2, v2)
Definition: common.hpp:159
#define VSMC_MNE
Definition: defines.hpp:38
Normal distribution.
Definition: common.hpp:500
void inv(std::size_t n, const float *a, float *y)
Definition: vmath.hpp:127
Levy distribution.
Definition: common.hpp:491
void fma(std::size_t n, const T *a, const T *b, const T *c, T *y)
For , compute .
Definition: vmath.hpp:257
bool levy_distribution_check_param(RealType, RealType b)
void sqr(std::size_t n, const float *a, float *y)
Definition: vmath.hpp:111
void levy_distribution(RNGType &, std::size_t, RealType *, RealType, RealType)
Generating levy random variates.