mirror of
https://github.com/bolero-MURAKAMI/Sprout.git
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161 lines
4.6 KiB
C++
161 lines
4.6 KiB
C++
#ifndef SPROUT_RANDOM_BERNOULLI_DISTRIBUTION_HPP
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#define SPROUT_RANDOM_BERNOULLI_DISTRIBUTION_HPP
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#include <iosfwd>
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#include <stdexcept>
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#include <sprout/config.hpp>
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#include <sprout/random/random_result.hpp>
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namespace sprout {
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namespace random {
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//
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// bernoulli_distribution
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//
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template<typename RealType = double>
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class bernoulli_distribution {
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public:
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typedef int input_type;
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typedef bool result_type;
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private:
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static SPROUT_CONSTEXPR bool arg_check_nothrow(RealType p_arg) {
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return p_arg >= 0 && p_arg <= 1;
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}
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static SPROUT_CONSTEXPR RealType arg_check(RealType p_arg) {
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return arg_check_nothrow(p_arg)
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? p_arg
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: throw std::invalid_argument("bernoulli_distribution<>: invalid argument (p_arg >= 0 && p_arg <= 1)")
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;
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}
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public:
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//
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// param_type
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//
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class param_type {
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public:
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typedef bernoulli_distribution distribution_type;
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private:
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static SPROUT_CONSTEXPR bool arg_check_nothrow(RealType p_arg) {
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return distribution_type::arg_check_nothrow(p_arg);
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}
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private:
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RealType p_;
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public:
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SPROUT_CONSTEXPR param_type()
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: p_(RealType(0.5))
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{}
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explicit SPROUT_CONSTEXPR param_type(RealType p_arg)
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: p_(arg_check(p_arg))
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{}
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SPROUT_CONSTEXPR RealType p() const {
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return p_;
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}
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template<typename Elem, typename Traits>
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friend std::basic_istream<Elem, Traits>& operator>>(
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std::basic_istream<Elem, Traits>& lhs,
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param_type& rhs
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)
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{
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RealType p;
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if (lhs >> p) {
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if (arg_check_nothrow(p)) {
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rhs.p_ = p;
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} else {
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lhs.setstate(std::ios_base::failbit);
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}
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}
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return lhs;
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}
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template<typename Elem, typename Traits>
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friend std::basic_ostream<Elem, Traits>& operator<<(
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std::basic_ostream<Elem, Traits>& lhs,
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param_type const& rhs
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)
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{
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return lhs << rhs.p_;
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}
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friend SPROUT_CONSTEXPR bool operator==(param_type const& lhs, param_type const& rhs) {
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return lhs.p_ == rhs.p_;
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}
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friend SPROUT_CONSTEXPR bool operator!=(param_type const& lhs, param_type const& rhs) {
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return !(lhs == rhs);
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}
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};
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private:
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RealType p_;
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private:
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template<typename Engine>
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SPROUT_CONSTEXPR sprout::random::random_result<Engine, bernoulli_distribution> generate(
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sprout::random::random_result<Engine> const& rnd
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) const
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{
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return sprout::random::random_result<Engine, bernoulli_distribution>(
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RealType(rnd.result() - rnd.engine().min()) <= p_ * RealType(rnd.engine().max() - rnd.engine().min()),
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rnd.engine(),
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*this
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);
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}
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public:
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SPROUT_CONSTEXPR bernoulli_distribution()
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: p_(RealType(0.5))
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{}
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explicit SPROUT_CONSTEXPR bernoulli_distribution(RealType p_arg)
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: p_(arg_check(p_arg))
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{}
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explicit SPROUT_CONSTEXPR bernoulli_distribution(param_type const& parm)
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: p_(parm.p())
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{}
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SPROUT_CONSTEXPR RealType p() const {
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return p_;
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}
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SPROUT_CONSTEXPR result_type min() const {
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return false;
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}
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SPROUT_CONSTEXPR result_type max() const {
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return true;
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}
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SPROUT_CONSTEXPR param_type param() const {
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return param_type(p_);
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}
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void param(param_type const& parm) {
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p_ = parm.p();
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}
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template<typename Engine>
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SPROUT_CONSTEXPR sprout::random::random_result<Engine, bernoulli_distribution> operator()(Engine const& eng) const {
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return p_ == RealType(0)
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? sprout::random::random_result<Engine, bernoulli_distribution>(false, eng, *this)
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: generate(eng())
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;
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}
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template<typename Elem, typename Traits>
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friend std::basic_istream<Elem, Traits>& operator>>(
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std::basic_istream<Elem, Traits>& lhs,
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bernoulli_distribution& rhs
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)
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{
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param_type parm;
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if (lhs >> parm) {
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rhs.param(parm);
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}
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return lhs;
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}
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template<typename Elem, typename Traits>
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friend std::basic_ostream<Elem, Traits>& operator<<(
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std::basic_ostream<Elem, Traits>& lhs,
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bernoulli_distribution const& rhs
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)
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{
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return lhs << rhs.param();
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}
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friend SPROUT_CONSTEXPR bool operator==(bernoulli_distribution const& lhs, bernoulli_distribution const& rhs) {
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return lhs.param() == rhs.param();
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}
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friend SPROUT_CONSTEXPR bool operator!=(bernoulli_distribution const& lhs, bernoulli_distribution const& rhs) {
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return !(lhs == rhs);
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}
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};
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} // namespace random
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using sprout::random::bernoulli_distribution;
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} // namespace sprout
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#endif // #ifndef SPROUT_RANDOM_BERNOULLI_DISTRIBUTION_HPP
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