163 lines
5.7 KiB
C++
Executable File
163 lines
5.7 KiB
C++
Executable File
/* boost random/uniform_int.hpp header file
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*
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* Copyright Jens Maurer 2000-2001
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* Distributed under the Boost Software License, Version 1.0. (See
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* accompanying file LICENSE_1_0.txt or copy at
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* http://www.boost.org/LICENSE_1_0.txt)
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*
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* See http://www.boost.org for most recent version including documentation.
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*
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* $Id: uniform_int.hpp 47233 2008-07-08 16:22:46Z steven_watanabe $
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*
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* Revision history
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* 2001-04-08 added min<max assertion (N. Becker)
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* 2001-02-18 moved to individual header files
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*/
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#ifndef BOOST_RANDOM_UNIFORM_INT_HPP
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#define BOOST_RANDOM_UNIFORM_INT_HPP
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#include <cassert>
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#include <iostream>
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#include <boost/config.hpp>
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#include <boost/limits.hpp>
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#include <boost/static_assert.hpp>
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#include <boost/detail/workaround.hpp>
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#include <boost/random/uniform_smallint.hpp>
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#include <boost/random/detail/signed_unsigned_tools.hpp>
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#include <boost/type_traits/make_unsigned.hpp>
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#ifdef BOOST_NO_LIMITS_COMPILE_TIME_CONSTANTS
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#include <boost/type_traits/is_float.hpp>
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#endif
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namespace boost {
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// uniform integer distribution on [min, max]
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template<class IntType = int>
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class uniform_int
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{
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public:
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typedef IntType input_type;
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typedef IntType result_type;
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typedef typename make_unsigned<result_type>::type range_type;
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explicit uniform_int(IntType min_arg = 0, IntType max_arg = 9)
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: _min(min_arg), _max(max_arg)
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{
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#ifndef BOOST_NO_LIMITS_COMPILE_TIME_CONSTANTS
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// MSVC fails BOOST_STATIC_ASSERT with std::numeric_limits at class scope
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BOOST_STATIC_ASSERT(std::numeric_limits<IntType>::is_integer);
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#endif
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assert(min_arg <= max_arg);
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init();
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}
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result_type min BOOST_PREVENT_MACRO_SUBSTITUTION () const { return _min; }
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result_type max BOOST_PREVENT_MACRO_SUBSTITUTION () const { return _max; }
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void reset() { }
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// can't have member function templates out-of-line due to MSVC bugs
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template<class Engine>
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result_type operator()(Engine& eng)
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{
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typedef typename Engine::result_type base_result;
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// ranges are always unsigned
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typedef typename make_unsigned<base_result>::type base_unsigned;
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const base_result bmin = (eng.min)();
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const base_unsigned brange =
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random::detail::subtract<base_result>()((eng.max)(), (eng.min)());
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if(_range == 0) {
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return _min;
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} else if(brange == _range) {
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// this will probably never happen in real life
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// basically nothing to do; just take care we don't overflow / underflow
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base_unsigned v = random::detail::subtract<base_result>()(eng(), bmin);
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return random::detail::add<base_unsigned, result_type>()(v, _min);
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} else if(brange < _range) {
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// use rejection method to handle things like 0..3 --> 0..4
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for(;;) {
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// concatenate several invocations of the base RNG
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// take extra care to avoid overflows
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range_type limit;
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if(_range == (std::numeric_limits<range_type>::max)()) {
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limit = _range/(range_type(brange)+1);
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if(_range % range_type(brange)+1 == range_type(brange))
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++limit;
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} else {
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limit = (_range+1)/(range_type(brange)+1);
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}
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// We consider "result" as expressed to base (brange+1):
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// For every power of (brange+1), we determine a random factor
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range_type result = range_type(0);
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range_type mult = range_type(1);
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while(mult <= limit) {
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result += random::detail::subtract<base_result>()(eng(), bmin) * mult;
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mult *= range_type(brange)+range_type(1);
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}
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if(mult == limit)
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// _range+1 is an integer power of brange+1: no rejections required
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return result;
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// _range/mult < brange+1 -> no endless loop
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result += uniform_int<range_type>(0, _range/mult)(eng) * mult;
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if(result <= _range)
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return random::detail::add<range_type, result_type>()(result, _min);
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}
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} else { // brange > range
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if(brange / _range > 4 /* quantization_cutoff */ ) {
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// the new range is vastly smaller than the source range,
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// so quantization effects are not relevant
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return boost::uniform_smallint<result_type>(_min, _max)(eng);
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} else {
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// use rejection method to handle cases like 0..5 -> 0..4
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for(;;) {
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base_unsigned result =
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random::detail::subtract<base_result>()(eng(), bmin);
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// result and range are non-negative, and result is possibly larger
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// than range, so the cast is safe
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if(result <= static_cast<base_unsigned>(_range))
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return random::detail::add<base_unsigned, result_type>()(result, _min);
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}
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}
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}
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}
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#if !defined(BOOST_NO_OPERATORS_IN_NAMESPACE) && !defined(BOOST_NO_MEMBER_TEMPLATE_FRIENDS)
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template<class CharT, class Traits>
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friend std::basic_ostream<CharT,Traits>&
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operator<<(std::basic_ostream<CharT,Traits>& os, const uniform_int& ud)
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{
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os << ud._min << " " << ud._max;
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return os;
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}
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template<class CharT, class Traits>
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friend std::basic_istream<CharT,Traits>&
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operator>>(std::basic_istream<CharT,Traits>& is, uniform_int& ud)
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{
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# if BOOST_WORKAROUND(_MSC_FULL_VER, BOOST_TESTED_AT(13102292)) && BOOST_MSVC == 1400
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return detail::extract_uniform_int(is, ud, ud.impl);
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# else
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is >> std::ws >> ud._min >> std::ws >> ud._max;
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ud.init();
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return is;
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# endif
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}
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#endif
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private:
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void init()
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{
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_range = random::detail::subtract<result_type>()(_max, _min);
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}
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// The result_type may be signed or unsigned, but the _range is always
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// unsigned.
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result_type _min, _max;
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range_type _range;
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};
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} // namespace boost
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#endif // BOOST_RANDOM_UNIFORM_INT_HPP
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