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#ifndef PYTHONIC_NUMPY_RANDOM_RAYLEIGH_HPP
#define PYTHONIC_NUMPY_RANDOM_RAYLEIGH_HPP
#include "pythonic/include/numpy/random/rayleigh.hpp"
#include "pythonic/include/numpy/random/generator.hpp"
#include "pythonic/types/ndarray.hpp"
#include "pythonic/types/NoneType.hpp"
#include "pythonic/types/tuple.hpp"
#include "pythonic/utils/functor.hpp"
#include <math.h>
#include <random>
#include <algorithm>
PYTHONIC_NS_BEGIN
namespace numpy
{
namespace random
{
template <class pS>
types::ndarray<double, pS> rayleigh(double scale, pS const &array_shape)
{
types::ndarray<double, pS> result{array_shape, types::none_type()};
std::generate(result.fbegin(), result.fend(),
[&]() { return rayleigh(scale); });
return result;
}
auto rayleigh(double scale, long size)
-> decltype(rayleigh(scale, types::array<long, 1>{{size}}))
{
return rayleigh(scale, types::array<long, 1>{{size}});
}
double rayleigh(double scale, types::none_type d)
{
return scale *
sqrt(-2.0 * log(1.0 - std::uniform_real_distribution<double>{
0., 1.}(details::generator)));
}
}
}
PYTHONIC_NS_END
#endif