mirror of
https://github.com/bolero-MURAKAMI/Sprout
synced 2024-11-12 21:09:01 +00:00
178 lines
6.5 KiB
C++
178 lines
6.5 KiB
C++
/*=============================================================================
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Copyright (c) 2011-2014 Bolero MURAKAMI
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https://github.com/bolero-MURAKAMI/Sprout
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Distributed under the Boost Software License, Version 1.0. (See accompanying
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file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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=============================================================================*/
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#ifndef SPROUT_RANDOM_ADDITIVE_COMBINE_HPP
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#define SPROUT_RANDOM_ADDITIVE_COMBINE_HPP
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#include <cstdint>
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#include <ios>
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#include <istream>
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#include <sprout/config.hpp>
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#include <sprout/random/random_result.hpp>
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#include <sprout/random/linear_congruential.hpp>
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#include <sprout/random/type_traits.hpp>
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#include <sprout/random/results.hpp>
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#include <sprout/type_traits/enabler_if.hpp>
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namespace sprout {
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namespace random {
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//
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// additive_combine_engine
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//
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template<typename MLCG1, typename MLCG2>
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class additive_combine_engine {
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public:
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typedef MLCG1 base1_type;
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typedef MLCG2 base2_type;
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typedef base1_type first_base;
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typedef base2_type second_base;
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typedef typename base1_type::result_type result_type;
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private:
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static SPROUT_CONSTEXPR result_type static_min() SPROUT_NOEXCEPT {
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return 1;
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}
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static SPROUT_CONSTEXPR result_type static_max() SPROUT_NOEXCEPT {
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return base1_type::modulus - 1;
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}
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public:
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struct private_construct_t {};
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private:
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base1_type mlcg1_;
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base2_type mlcg2_;
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private:
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SPROUT_CONSTEXPR additive_combine_engine(
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base1_type const& mlcg1, base2_type const& mlcg2,
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private_construct_t
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)
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: mlcg1_(mlcg1), mlcg2_(mlcg2)
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{}
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template<typename Random1, typename Random2>
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SPROUT_CONSTEXPR sprout::random::random_result<additive_combine_engine> generate(Random1 const& rnd1, Random2 const& rnd2) const {
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return sprout::random::random_result<additive_combine_engine>(
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sprout::random::result(rnd2) < sprout::random::result(rnd1)
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? sprout::random::result(rnd1) - sprout::random::result(rnd2)
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: sprout::random::result(rnd1) - sprout::random::result(rnd2) + base1_type::modulus - 1
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,
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additive_combine_engine(
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sprout::random::next(rnd1), sprout::random::next(rnd2),
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private_construct_t()
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)
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);
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}
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public:
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SPROUT_CONSTEXPR additive_combine_engine()
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: mlcg1_(), mlcg2_()
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{}
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explicit SPROUT_CONSTEXPR additive_combine_engine(result_type seed)
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: mlcg1_(seed), mlcg2_(seed)
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{}
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template<typename Sseq, typename sprout::enabler_if<sprout::random::is_seed_seq<Sseq>::value>::type = sprout::enabler>
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explicit SPROUT_CXX14_CONSTEXPR additive_combine_engine(Sseq& seq)
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: mlcg1_(seq), mlcg2_(seq)
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{}
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template<typename Sseq, typename sprout::enabler_if<sprout::random::is_seed_seq<Sseq>::value>::type = sprout::enabler>
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explicit SPROUT_CONSTEXPR additive_combine_engine(Sseq const& seq)
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: mlcg1_(seq), mlcg2_(seq)
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{}
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template<typename ForwardIterator>
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SPROUT_CONSTEXPR additive_combine_engine(ForwardIterator first, ForwardIterator last)
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: mlcg1_(first, last), mlcg2_(first, last)
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{}
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SPROUT_CONSTEXPR additive_combine_engine(typename base1_type::result_type seed1, typename base2_type::result_type seed2)
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: mlcg1_(seed1), mlcg2_(seed2)
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{}
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SPROUT_CONSTEXPR additive_combine_engine(base1_type const& rng1, base2_type const& rng2)
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: mlcg1_(rng1), mlcg2_(rng2)
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{}
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SPROUT_CXX14_CONSTEXPR void seed() {
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mlcg1_.seed();
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mlcg2_.seed();
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}
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SPROUT_CXX14_CONSTEXPR void seed(result_type seed) {
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mlcg1_.seed(seed);
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mlcg2_.seed(seed);
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}
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template<typename Sseq, typename sprout::enabler_if<sprout::random::is_seed_seq<Sseq>::value>::type = sprout::enabler>
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SPROUT_CXX14_CONSTEXPR void seed(Sseq& seq) {
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mlcg1_.seed(seq);
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mlcg2_.seed(seq);
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}
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template<typename Sseq, typename sprout::enabler_if<sprout::random::is_seed_seq<Sseq>::value>::type = sprout::enabler>
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SPROUT_CXX14_CONSTEXPR void seed(Sseq const& seq) {
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mlcg1_.seed(seq);
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mlcg2_.seed(seq);
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}
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template<typename ForwardIterator>
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SPROUT_CXX14_CONSTEXPR void seed(ForwardIterator first, ForwardIterator last) {
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mlcg1_.seed(first, last);
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mlcg2_.seed(first, last);
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}
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SPROUT_CXX14_CONSTEXPR void seed(typename base1_type::result_type seed1, typename base2_type::result_type seed2) {
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mlcg1_.seed(seed1);
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mlcg2_.seed(seed2);
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}
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SPROUT_CONSTEXPR result_type min() const SPROUT_NOEXCEPT {
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return 1;
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}
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SPROUT_CONSTEXPR result_type max() const SPROUT_NOEXCEPT {
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return base1_type::modulus - 1;
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}
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SPROUT_CXX14_CONSTEXPR result_type operator()() {
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result_type val1 = static_cast<result_type>(mlcg1_());
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result_type val2 = static_cast<result_type>(mlcg2_());
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return val2 < val1
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? val1 - val2
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: val1 - val2 + base1_type::modulus - 1
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;
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}
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SPROUT_CONSTEXPR sprout::random::random_result<additive_combine_engine> const operator()() const {
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return generate(mlcg1_(), mlcg2_());
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}
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SPROUT_CONSTEXPR base1_type const& base1() const SPROUT_NOEXCEPT {
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return mlcg1_;
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}
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SPROUT_CONSTEXPR base2_type const& base2() const SPROUT_NOEXCEPT {
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return mlcg2_;
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}
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friend SPROUT_CONSTEXPR bool operator==(additive_combine_engine const& lhs, additive_combine_engine const& rhs) SPROUT_NOEXCEPT {
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return lhs.mlcg1_ == rhs.mlcg1_ && lhs.mlcg2_ == rhs.mlcg2_;
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}
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friend SPROUT_CONSTEXPR bool operator!=(additive_combine_engine const& lhs, additive_combine_engine const& rhs) SPROUT_NOEXCEPT {
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return !(lhs == rhs);
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}
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template<typename Elem, typename Traits>
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friend SPROUT_NON_CONSTEXPR std::basic_istream<Elem, Traits>& operator>>(
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std::basic_istream<Elem, Traits>& lhs,
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additive_combine_engine& rhs
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)
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{
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return lhs >> rhs.mlcg1_ >> std::ws >> rhs.mlcg2_;
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}
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template<typename Elem, typename Traits>
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friend SPROUT_NON_CONSTEXPR std::basic_ostream<Elem, Traits>& operator<<(
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std::basic_ostream<Elem, Traits>& lhs,
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additive_combine_engine const& rhs
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)
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{
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return lhs << rhs.mlcg1_ << ' ' << rhs.mlcg2_;
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}
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};
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//
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// ecuyer1988
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//
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typedef sprout::random::additive_combine_engine<
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sprout::random::linear_congruential_engine<std::uint_fast32_t, 40014, 0, 2147483563>,
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sprout::random::linear_congruential_engine<std::uint_fast32_t, 40692, 0, 2147483399>
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> ecuyer1988;
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} // namespace random
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using sprout::random::additive_combine_engine;
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using sprout::random::ecuyer1988;
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} // namespace sprout
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#endif // #ifndef SPROUT_RANDOM_ADDITIVE_COMBINE_HPP
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