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1 /* boost random/lagged_fibonacci.hpp header file
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2 *
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3 * Copyright Jens Maurer 2000-2001
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4 * Distributed under the Boost Software License, Version 1.0. (See
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5 * accompanying file LICENSE_1_0.txt or copy at
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6 * http://www.boost.org/LICENSE_1_0.txt)
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7 *
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8 * See http://www.boost.org for most recent version including documentation.
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9 *
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10 * $Id: lagged_fibonacci.hpp 72951 2011-07-07 04:57:37Z steven_watanabe $
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11 *
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12 * Revision history
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13 * 2001-02-18 moved to individual header files
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14 */
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15
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16 #ifndef BOOST_RANDOM_LAGGED_FIBONACCI_HPP
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17 #define BOOST_RANDOM_LAGGED_FIBONACCI_HPP
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18
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19 #include <istream>
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20 #include <iosfwd>
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21 #include <algorithm> // std::max
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22 #include <iterator>
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23 #include <boost/config/no_tr1/cmath.hpp> // std::pow
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24 #include <boost/config.hpp>
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25 #include <boost/limits.hpp>
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26 #include <boost/cstdint.hpp>
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27 #include <boost/integer/integer_mask.hpp>
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28 #include <boost/random/linear_congruential.hpp>
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29 #include <boost/random/uniform_01.hpp>
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30 #include <boost/random/detail/config.hpp>
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31 #include <boost/random/detail/seed.hpp>
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32 #include <boost/random/detail/operators.hpp>
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33 #include <boost/random/detail/generator_seed_seq.hpp>
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34
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35 namespace boost {
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36 namespace random {
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37
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38 /**
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39 * Instantiations of class template \lagged_fibonacci_engine model a
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40 * \pseudo_random_number_generator. It uses a lagged Fibonacci
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41 * algorithm with two lags @c p and @c q:
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42 * x(i) = x(i-p) + x(i-q) (mod 2<sup>w</sup>) with p > q.
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43 */
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44 template<class UIntType, int w, unsigned int p, unsigned int q>
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45 class lagged_fibonacci_engine
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46 {
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47 public:
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48 typedef UIntType result_type;
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49 BOOST_STATIC_CONSTANT(bool, has_fixed_range = false);
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50 BOOST_STATIC_CONSTANT(int, word_size = w);
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51 BOOST_STATIC_CONSTANT(unsigned int, long_lag = p);
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52 BOOST_STATIC_CONSTANT(unsigned int, short_lag = q);
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53
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54 BOOST_STATIC_CONSTANT(UIntType, default_seed = 331u);
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55
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56 /** Returns the smallest value that the generator can produce. */
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57 static result_type min BOOST_PREVENT_MACRO_SUBSTITUTION () { return 0; }
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58 /** Returns the largest value that the generator can produce. */
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59 static result_type max BOOST_PREVENT_MACRO_SUBSTITUTION ()
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60 { return low_bits_mask_t<w>::sig_bits; }
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61
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62 /** Creates a new @c lagged_fibonacci_engine and calls @c seed(). */
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63 lagged_fibonacci_engine() { seed(); }
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64
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65 /** Creates a new @c lagged_fibonacci_engine and calls @c seed(value). */
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66 BOOST_RANDOM_DETAIL_ARITHMETIC_CONSTRUCTOR(lagged_fibonacci_engine,
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67 UIntType, value)
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68 { seed(value); }
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69
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70 /** Creates a new @c lagged_fibonacci_engine and calls @c seed(seq). */
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71 BOOST_RANDOM_DETAIL_SEED_SEQ_CONSTRUCTOR(lagged_fibonacci_engine,
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72 SeedSeq, seq)
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73 { seed(seq); }
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74
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75 /**
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76 * Creates a new @c lagged_fibonacci_engine and calls @c seed(first, last).
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77 */
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78 template<class It> lagged_fibonacci_engine(It& first, It last)
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79 { seed(first, last); }
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80
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81 // compiler-generated copy ctor and assignment operator are fine
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82
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83 /** Calls @c seed(default_seed). */
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84 void seed() { seed(default_seed); }
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85
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86 /**
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87 * Sets the state of the generator to values produced by
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88 * a \minstd_rand0 generator.
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89 */
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90 BOOST_RANDOM_DETAIL_ARITHMETIC_SEED(lagged_fibonacci_engine,
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91 UIntType, value)
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92 {
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93 minstd_rand0 intgen(static_cast<boost::uint32_t>(value));
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94 detail::generator_seed_seq<minstd_rand0> gen(intgen);
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95 seed(gen);
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96 }
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97
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98 /**
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99 * Sets the state of the generator using values produced by seq.
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100 */
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101 BOOST_RANDOM_DETAIL_SEED_SEQ_SEED(lagged_fibonacci_engine, SeedSeq, seq)
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102 {
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103 detail::seed_array_int<w>(seq, x);
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104 i = long_lag;
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105 }
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106
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107 /**
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108 * Sets the state of the generator to values from the iterator
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109 * range [first, last). If there are not enough elements in the
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110 * range [first, last) throws @c std::invalid_argument.
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111 */
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112 template<class It>
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113 void seed(It& first, It last)
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114 {
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115 detail::fill_array_int<w>(first, last, x);
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116 i = long_lag;
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117 }
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118
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119 /** Returns the next value of the generator. */
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120 result_type operator()()
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121 {
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122 if(i >= long_lag)
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123 fill();
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124 return x[i++];
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125 }
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126
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127 /** Fills a range with random values */
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128 template<class Iter>
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129 void generate(Iter first, Iter last)
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130 { detail::generate_from_int(*this, first, last); }
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131
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132 /** Advances the state of the generator by @c z. */
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133 void discard(boost::uintmax_t z)
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134 {
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135 for(boost::uintmax_t j = 0; j < z; ++j) {
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136 (*this)();
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137 }
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138 }
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139
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140 /**
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141 * Writes the textual representation of the generator to a @c std::ostream.
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142 */
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143 BOOST_RANDOM_DETAIL_OSTREAM_OPERATOR(os, lagged_fibonacci_engine, f)
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144 {
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145 os << f.i;
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146 for(unsigned int i = 0; i < f.long_lag; ++i)
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147 os << ' ' << f.x[i];
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148 return os;
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149 }
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150
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151 /**
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152 * Reads the textual representation of the generator from a @c std::istream.
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153 */
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154 BOOST_RANDOM_DETAIL_ISTREAM_OPERATOR(is, lagged_fibonacci_engine, f)
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155 {
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156 is >> f.i >> std::ws;
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157 for(unsigned int i = 0; i < f.long_lag; ++i)
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158 is >> f.x[i] >> std::ws;
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159 return is;
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160 }
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161
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162 /**
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163 * Returns true if the two generators will produce identical
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164 * sequences of outputs.
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165 */
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166 BOOST_RANDOM_DETAIL_EQUALITY_OPERATOR(lagged_fibonacci_engine, x, y)
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167 { return x.i == y.i && std::equal(x.x, x.x+long_lag, y.x); }
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168
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169 /**
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170 * Returns true if the two generators will produce different
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171 * sequences of outputs.
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172 */
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173 BOOST_RANDOM_DETAIL_INEQUALITY_OPERATOR(lagged_fibonacci_engine)
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174
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175 private:
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176 /// \cond show_private
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177 void fill();
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178 /// \endcond
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179
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180 unsigned int i;
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181 UIntType x[long_lag];
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182 };
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183
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184 #ifndef BOOST_NO_INCLASS_MEMBER_INITIALIZATION
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185 // A definition is required even for integral static constants
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186 template<class UIntType, int w, unsigned int p, unsigned int q>
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187 const bool lagged_fibonacci_engine<UIntType, w, p, q>::has_fixed_range;
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188 template<class UIntType, int w, unsigned int p, unsigned int q>
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189 const unsigned int lagged_fibonacci_engine<UIntType, w, p, q>::long_lag;
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190 template<class UIntType, int w, unsigned int p, unsigned int q>
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191 const unsigned int lagged_fibonacci_engine<UIntType, w, p, q>::short_lag;
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192 template<class UIntType, int w, unsigned int p, unsigned int q>
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193 const UIntType lagged_fibonacci_engine<UIntType, w, p, q>::default_seed;
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194 #endif
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195
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196 /// \cond show_private
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197
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198 template<class UIntType, int w, unsigned int p, unsigned int q>
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199 void lagged_fibonacci_engine<UIntType, w, p, q>::fill()
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200 {
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201 // two loops to avoid costly modulo operations
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202 { // extra scope for MSVC brokenness w.r.t. for scope
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203 for(unsigned int j = 0; j < short_lag; ++j)
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204 x[j] = (x[j] + x[j+(long_lag-short_lag)]) & low_bits_mask_t<w>::sig_bits;
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205 }
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206 for(unsigned int j = short_lag; j < long_lag; ++j)
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207 x[j] = (x[j] + x[j-short_lag]) & low_bits_mask_t<w>::sig_bits;
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208 i = 0;
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209 }
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210
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211 /// \endcond
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212
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213 /// \cond show_deprecated
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214
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215 // provided for backwards compatibility
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216 template<class UIntType, int w, unsigned int p, unsigned int q, UIntType v = 0>
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217 class lagged_fibonacci : public lagged_fibonacci_engine<UIntType, w, p, q>
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218 {
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219 typedef lagged_fibonacci_engine<UIntType, w, p, q> base_type;
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220 public:
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221 lagged_fibonacci() {}
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222 BOOST_RANDOM_DETAIL_ARITHMETIC_CONSTRUCTOR(lagged_fibonacci, UIntType, val)
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223 { this->seed(val); }
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224 BOOST_RANDOM_DETAIL_SEED_SEQ_CONSTRUCTOR(lagged_fibonacci, SeedSeq, seq)
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225 { this->seed(seq); }
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226 template<class It>
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227 lagged_fibonacci(It& first, It last) : base_type(first, last) {}
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228 };
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229
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230 /// \endcond
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231
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232 // lagged Fibonacci generator for the range [0..1)
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233 // contributed by Matthias Troyer
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234 // for p=55, q=24 originally by G. J. Mitchell and D. P. Moore 1958
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235
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236 /**
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237 * Instantiations of class template @c lagged_fibonacci_01 model a
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238 * \pseudo_random_number_generator. It uses a lagged Fibonacci
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239 * algorithm with two lags @c p and @c q, evaluated in floating-point
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240 * arithmetic: x(i) = x(i-p) + x(i-q) (mod 1) with p > q. See
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241 *
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242 * @blockquote
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243 * "Uniform random number generators for supercomputers", Richard Brent,
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244 * Proc. of Fifth Australian Supercomputer Conference, Melbourne,
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245 * Dec. 1992, pp. 704-706.
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246 * @endblockquote
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247 *
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248 * @xmlnote
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249 * The quality of the generator crucially depends on the choice
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250 * of the parameters. User code should employ one of the sensibly
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251 * parameterized generators such as \lagged_fibonacci607 instead.
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252 * @endxmlnote
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253 *
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254 * The generator requires considerable amounts of memory for the storage
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255 * of its state array. For example, \lagged_fibonacci607 requires about
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256 * 4856 bytes and \lagged_fibonacci44497 requires about 350 KBytes.
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257 */
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258 template<class RealType, int w, unsigned int p, unsigned int q>
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259 class lagged_fibonacci_01_engine
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260 {
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261 public:
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262 typedef RealType result_type;
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263 BOOST_STATIC_CONSTANT(bool, has_fixed_range = false);
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264 BOOST_STATIC_CONSTANT(int, word_size = w);
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265 BOOST_STATIC_CONSTANT(unsigned int, long_lag = p);
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266 BOOST_STATIC_CONSTANT(unsigned int, short_lag = q);
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267
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268 BOOST_STATIC_CONSTANT(boost::uint32_t, default_seed = 331u);
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269
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270 /** Constructs a @c lagged_fibonacci_01 generator and calls @c seed(). */
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271 lagged_fibonacci_01_engine() { seed(); }
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272 /** Constructs a @c lagged_fibonacci_01 generator and calls @c seed(value). */
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273 BOOST_RANDOM_DETAIL_ARITHMETIC_CONSTRUCTOR(lagged_fibonacci_01_engine, uint32_t, value)
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274 { seed(value); }
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275 /** Constructs a @c lagged_fibonacci_01 generator and calls @c seed(gen). */
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276 BOOST_RANDOM_DETAIL_SEED_SEQ_CONSTRUCTOR(lagged_fibonacci_01_engine, SeedSeq, seq)
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277 { seed(seq); }
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278 template<class It> lagged_fibonacci_01_engine(It& first, It last)
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279 { seed(first, last); }
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280
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281 // compiler-generated copy ctor and assignment operator are fine
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282
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283 /** Calls seed(default_seed). */
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284 void seed() { seed(default_seed); }
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285
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286 /**
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287 * Constructs a \minstd_rand0 generator with the constructor parameter
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288 * value and calls seed with it. Distinct seeds in the range
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289 * [1, 2147483647) will produce generators with different states. Other
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290 * seeds will be equivalent to some seed within this range. See
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291 * \linear_congruential_engine for details.
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292 */
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293 BOOST_RANDOM_DETAIL_ARITHMETIC_SEED(lagged_fibonacci_01_engine, boost::uint32_t, value)
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294 {
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295 minstd_rand0 intgen(value);
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296 detail::generator_seed_seq<minstd_rand0> gen(intgen);
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297 seed(gen);
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298 }
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299
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300 /**
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301 * Seeds this @c lagged_fibonacci_01_engine using values produced by
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302 * @c seq.generate.
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303 */
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304 BOOST_RANDOM_DETAIL_SEED_SEQ_SEED(lagged_fibonacci_01_engine, SeedSeq, seq)
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305 {
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306 detail::seed_array_real<w>(seq, x);
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307 i = long_lag;
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308 }
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309
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310 /**
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311 * Seeds this @c lagged_fibonacci_01_engine using values from the
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312 * iterator range [first, last). If there are not enough elements
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313 * in the range, throws @c std::invalid_argument.
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314 */
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315 template<class It>
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316 void seed(It& first, It last)
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317 {
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318 detail::fill_array_real<w>(first, last, x);
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319 i = long_lag;
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320 }
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321
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322 /** Returns the smallest value that the generator can produce. */
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323 static result_type min BOOST_PREVENT_MACRO_SUBSTITUTION () { return result_type(0); }
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324 /** Returns the upper bound of the generators outputs. */
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325 static result_type max BOOST_PREVENT_MACRO_SUBSTITUTION () { return result_type(1); }
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326
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327 /** Returns the next value of the generator. */
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328 result_type operator()()
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329 {
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330 if(i >= long_lag)
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331 fill();
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332 return x[i++];
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333 }
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334
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335 /** Fills a range with random values */
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336 template<class Iter>
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337 void generate(Iter first, Iter last)
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338 { return detail::generate_from_real(*this, first, last); }
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339
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340 /** Advances the state of the generator by @c z. */
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341 void discard(boost::uintmax_t z)
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342 {
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343 for(boost::uintmax_t j = 0; j < z; ++j) {
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344 (*this)();
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345 }
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346 }
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347
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348 /**
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349 * Writes the textual representation of the generator to a @c std::ostream.
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350 */
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351 BOOST_RANDOM_DETAIL_OSTREAM_OPERATOR(os, lagged_fibonacci_01_engine, f)
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352 {
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353 // allow for Koenig lookup
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354 using std::pow;
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355 os << f.i;
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356 std::ios_base::fmtflags oldflags = os.flags(os.dec | os.fixed | os.left);
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357 for(unsigned int i = 0; i < f.long_lag; ++i)
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358 os << ' ' << f.x[i] * f.modulus();
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359 os.flags(oldflags);
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360 return os;
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361 }
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362
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363 /**
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364 * Reads the textual representation of the generator from a @c std::istream.
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365 */
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366 BOOST_RANDOM_DETAIL_ISTREAM_OPERATOR(is, lagged_fibonacci_01_engine, f)
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367 {
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368 is >> f.i;
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369 for(unsigned int i = 0; i < f.long_lag; ++i) {
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370 typename lagged_fibonacci_01_engine::result_type value;
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371 is >> std::ws >> value;
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372 f.x[i] = value / f.modulus();
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373 }
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374 return is;
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375 }
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376
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377 /**
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378 * Returns true if the two generators will produce identical
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379 * sequences of outputs.
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380 */
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381 BOOST_RANDOM_DETAIL_EQUALITY_OPERATOR(lagged_fibonacci_01_engine, x, y)
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382 { return x.i == y.i && std::equal(x.x, x.x+long_lag, y.x); }
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383
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384 /**
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385 * Returns true if the two generators will produce different
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386 * sequences of outputs.
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387 */
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388 BOOST_RANDOM_DETAIL_INEQUALITY_OPERATOR(lagged_fibonacci_01_engine)
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389
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390 private:
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391 /// \cond show_private
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392 void fill();
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393 static RealType modulus()
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394 {
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395 using std::pow;
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396 return pow(RealType(2), word_size);
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397 }
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398 /// \endcond
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399 unsigned int i;
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400 RealType x[long_lag];
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401 };
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402
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403 #ifndef BOOST_NO_INCLASS_MEMBER_INITIALIZATION
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404 // A definition is required even for integral static constants
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405 template<class RealType, int w, unsigned int p, unsigned int q>
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406 const bool lagged_fibonacci_01_engine<RealType, w, p, q>::has_fixed_range;
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407 template<class RealType, int w, unsigned int p, unsigned int q>
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408 const unsigned int lagged_fibonacci_01_engine<RealType, w, p, q>::long_lag;
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409 template<class RealType, int w, unsigned int p, unsigned int q>
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410 const unsigned int lagged_fibonacci_01_engine<RealType, w, p, q>::short_lag;
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411 template<class RealType, int w, unsigned int p, unsigned int q>
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412 const int lagged_fibonacci_01_engine<RealType,w,p,q>::word_size;
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413 template<class RealType, int w, unsigned int p, unsigned int q>
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414 const boost::uint32_t lagged_fibonacci_01_engine<RealType,w,p,q>::default_seed;
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415 #endif
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416
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417 /// \cond show_private
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418 template<class RealType, int w, unsigned int p, unsigned int q>
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419 void lagged_fibonacci_01_engine<RealType, w, p, q>::fill()
|
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420 {
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421 // two loops to avoid costly modulo operations
|
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422 { // extra scope for MSVC brokenness w.r.t. for scope
|
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423 for(unsigned int j = 0; j < short_lag; ++j) {
|
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424 RealType t = x[j] + x[j+(long_lag-short_lag)];
|
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425 if(t >= RealType(1))
|
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426 t -= RealType(1);
|
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427 x[j] = t;
|
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428 }
|
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429 }
|
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430 for(unsigned int j = short_lag; j < long_lag; ++j) {
|
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|
431 RealType t = x[j] + x[j-short_lag];
|
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|
432 if(t >= RealType(1))
|
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|
433 t -= RealType(1);
|
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|
434 x[j] = t;
|
Chris@16
|
435 }
|
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|
436 i = 0;
|
Chris@16
|
437 }
|
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|
438 /// \endcond
|
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|
439
|
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|
440 /// \cond show_deprecated
|
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441
|
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|
442 // provided for backwards compatibility
|
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443 template<class RealType, int w, unsigned int p, unsigned int q>
|
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444 class lagged_fibonacci_01 : public lagged_fibonacci_01_engine<RealType, w, p, q>
|
Chris@16
|
445 {
|
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|
446 typedef lagged_fibonacci_01_engine<RealType, w, p, q> base_type;
|
Chris@16
|
447 public:
|
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|
448 lagged_fibonacci_01() {}
|
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|
449 BOOST_RANDOM_DETAIL_ARITHMETIC_CONSTRUCTOR(lagged_fibonacci_01, boost::uint32_t, val)
|
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|
450 { this->seed(val); }
|
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|
451 BOOST_RANDOM_DETAIL_SEED_SEQ_CONSTRUCTOR(lagged_fibonacci_01, SeedSeq, seq)
|
Chris@16
|
452 { this->seed(seq); }
|
Chris@16
|
453 template<class It>
|
Chris@16
|
454 lagged_fibonacci_01(It& first, It last) : base_type(first, last) {}
|
Chris@16
|
455 };
|
Chris@16
|
456
|
Chris@16
|
457 /// \endcond
|
Chris@16
|
458
|
Chris@16
|
459 namespace detail {
|
Chris@16
|
460
|
Chris@16
|
461 template<class Engine>
|
Chris@16
|
462 struct generator_bits;
|
Chris@16
|
463
|
Chris@16
|
464 template<class RealType, int w, unsigned int p, unsigned int q>
|
Chris@16
|
465 struct generator_bits<lagged_fibonacci_01_engine<RealType, w, p, q> >
|
Chris@16
|
466 {
|
Chris@16
|
467 static std::size_t value() { return w; }
|
Chris@16
|
468 };
|
Chris@16
|
469
|
Chris@16
|
470 template<class RealType, int w, unsigned int p, unsigned int q>
|
Chris@16
|
471 struct generator_bits<lagged_fibonacci_01<RealType, w, p, q> >
|
Chris@16
|
472 {
|
Chris@16
|
473 static std::size_t value() { return w; }
|
Chris@16
|
474 };
|
Chris@16
|
475
|
Chris@16
|
476 }
|
Chris@16
|
477
|
Chris@16
|
478 #ifdef BOOST_RANDOM_DOXYGEN
|
Chris@16
|
479 namespace detail {
|
Chris@16
|
480 /**
|
Chris@16
|
481 * The specializations lagged_fibonacci607 ... lagged_fibonacci44497
|
Chris@16
|
482 * use well tested lags.
|
Chris@16
|
483 *
|
Chris@16
|
484 * See
|
Chris@16
|
485 *
|
Chris@16
|
486 * @blockquote
|
Chris@16
|
487 * "On the Periods of Generalized Fibonacci Recurrences", Richard P. Brent
|
Chris@16
|
488 * Computer Sciences Laboratory Australian National University, December 1992
|
Chris@16
|
489 * @endblockquote
|
Chris@16
|
490 *
|
Chris@16
|
491 * The lags used here can be found in
|
Chris@16
|
492 *
|
Chris@16
|
493 * @blockquote
|
Chris@16
|
494 * "Uniform random number generators for supercomputers", Richard Brent,
|
Chris@16
|
495 * Proc. of Fifth Australian Supercomputer Conference, Melbourne,
|
Chris@16
|
496 * Dec. 1992, pp. 704-706.
|
Chris@16
|
497 * @endblockquote
|
Chris@16
|
498 */
|
Chris@16
|
499 struct lagged_fibonacci_doc {};
|
Chris@16
|
500 }
|
Chris@16
|
501 #endif
|
Chris@16
|
502
|
Chris@16
|
503 /** @copydoc boost::random::detail::lagged_fibonacci_doc */
|
Chris@16
|
504 typedef lagged_fibonacci_01_engine<double, 48, 607, 273> lagged_fibonacci607;
|
Chris@16
|
505 /** @copydoc boost::random::detail::lagged_fibonacci_doc */
|
Chris@16
|
506 typedef lagged_fibonacci_01_engine<double, 48, 1279, 418> lagged_fibonacci1279;
|
Chris@16
|
507 /** @copydoc boost::random::detail::lagged_fibonacci_doc */
|
Chris@16
|
508 typedef lagged_fibonacci_01_engine<double, 48, 2281, 1252> lagged_fibonacci2281;
|
Chris@16
|
509 /** @copydoc boost::random::detail::lagged_fibonacci_doc */
|
Chris@16
|
510 typedef lagged_fibonacci_01_engine<double, 48, 3217, 576> lagged_fibonacci3217;
|
Chris@16
|
511 /** @copydoc boost::random::detail::lagged_fibonacci_doc */
|
Chris@16
|
512 typedef lagged_fibonacci_01_engine<double, 48, 4423, 2098> lagged_fibonacci4423;
|
Chris@16
|
513 /** @copydoc boost::random::detail::lagged_fibonacci_doc */
|
Chris@16
|
514 typedef lagged_fibonacci_01_engine<double, 48, 9689, 5502> lagged_fibonacci9689;
|
Chris@16
|
515 /** @copydoc boost::random::detail::lagged_fibonacci_doc */
|
Chris@16
|
516 typedef lagged_fibonacci_01_engine<double, 48, 19937, 9842> lagged_fibonacci19937;
|
Chris@16
|
517 /** @copydoc boost::random::detail::lagged_fibonacci_doc */
|
Chris@16
|
518 typedef lagged_fibonacci_01_engine<double, 48, 23209, 13470> lagged_fibonacci23209;
|
Chris@16
|
519 /** @copydoc boost::random::detail::lagged_fibonacci_doc */
|
Chris@16
|
520 typedef lagged_fibonacci_01_engine<double, 48, 44497, 21034> lagged_fibonacci44497;
|
Chris@16
|
521
|
Chris@16
|
522 } // namespace random
|
Chris@16
|
523
|
Chris@16
|
524 using random::lagged_fibonacci607;
|
Chris@16
|
525 using random::lagged_fibonacci1279;
|
Chris@16
|
526 using random::lagged_fibonacci2281;
|
Chris@16
|
527 using random::lagged_fibonacci3217;
|
Chris@16
|
528 using random::lagged_fibonacci4423;
|
Chris@16
|
529 using random::lagged_fibonacci9689;
|
Chris@16
|
530 using random::lagged_fibonacci19937;
|
Chris@16
|
531 using random::lagged_fibonacci23209;
|
Chris@16
|
532 using random::lagged_fibonacci44497;
|
Chris@16
|
533
|
Chris@16
|
534 } // namespace boost
|
Chris@16
|
535
|
Chris@16
|
536 #endif // BOOST_RANDOM_LAGGED_FIBONACCI_HPP
|