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duration.h
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28 
29 #pragma once
30 
31 #include <chrono>
32 #include "crypto/crypto.h"
33 
34 namespace crypto
35 {
37  template<typename D>
39  {
40  using result_type = D;
41  using rep = typename result_type::rep;
42 
45  : dist(average.count() < 0 ? 0 : average.count())
46  {}
47 
50  {
52  return result_type{dist(rand)};
53  }
54 
55  private:
56  std::poisson_distribution<rep> dist;
57  };
58 
59  /* A custom duration is used for subsecond precision because of the
60  variance. If 5000 milliseconds is given, 95% of the values fall between
61  4859ms-5141ms in 1ms increments (not enough time variance). Providing 1/4
62  seconds would yield 95% of the values between 3s-7.25s in 1/4s
63  increments. */
64 
70 }
crypto namespace.
Definition: crypto.cpp:60
void rand(size_t N, uint8_t *bytes)
Definition: crypto.h:156
mdb_size_t count(MDB_cursor *cur)
Definition: value_stream.cpp:39
Definition: crypto.h:172
Generate poisson distributed values in discrete D time units.
Definition: duration.h:39
std::poisson_distribution< rep > dist
Definition: duration.h:56
typename result_type::rep rep
Type used to represent duration value.
Definition: duration.h:41
D result_type
std::chrono::duration time unit precision
Definition: duration.h:40
random_poisson_duration(result_type average)
Definition: duration.h:44
result_type operator()()
Generate a crypto-secure random duration.
Definition: duration.h:49