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1 // boost sinhc.hpp header file
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2
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3 // (C) Copyright Hubert Holin 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 updates, documentation, and revision history.
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9
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10 #ifndef BOOST_SINHC_HPP
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11 #define BOOST_SINHC_HPP
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12
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13
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14 #ifdef _MSC_VER
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15 #pragma once
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16 #endif
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17
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18 #include <boost/math/tools/config.hpp>
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19 #include <boost/math/tools/precision.hpp>
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20 #include <boost/math/special_functions/math_fwd.hpp>
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21 #include <boost/config/no_tr1/cmath.hpp>
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22 #include <boost/limits.hpp>
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23 #include <string>
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24 #include <stdexcept>
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25
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26 #include <boost/config.hpp>
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27
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28
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29 // These are the the "Hyperbolic Sinus Cardinal" functions.
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30
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31 namespace boost
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32 {
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33 namespace math
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34 {
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35 namespace detail
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36 {
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37 // This is the "Hyperbolic Sinus Cardinal" of index Pi.
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38
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39 template<typename T>
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40 inline T sinhc_pi_imp(const T x)
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41 {
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42 #if defined(BOOST_NO_STDC_NAMESPACE) && !defined(__SUNPRO_CC)
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43 using ::abs;
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44 using ::sinh;
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45 using ::sqrt;
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46 #else /* BOOST_NO_STDC_NAMESPACE */
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47 using ::std::abs;
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48 using ::std::sinh;
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49 using ::std::sqrt;
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50 #endif /* BOOST_NO_STDC_NAMESPACE */
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51
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52 static T const taylor_0_bound = tools::epsilon<T>();
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53 static T const taylor_2_bound = sqrt(taylor_0_bound);
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54 static T const taylor_n_bound = sqrt(taylor_2_bound);
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55
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56 if (abs(x) >= taylor_n_bound)
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57 {
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58 return(sinh(x)/x);
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59 }
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60 else
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61 {
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62 // approximation by taylor series in x at 0 up to order 0
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63 T result = static_cast<T>(1);
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64
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65 if (abs(x) >= taylor_0_bound)
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66 {
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67 T x2 = x*x;
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68
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69 // approximation by taylor series in x at 0 up to order 2
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70 result += x2/static_cast<T>(6);
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71
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72 if (abs(x) >= taylor_2_bound)
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73 {
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74 // approximation by taylor series in x at 0 up to order 4
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75 result += (x2*x2)/static_cast<T>(120);
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76 }
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77 }
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78
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79 return(result);
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80 }
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81 }
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82
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83 } // namespace detail
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84
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85 template <class T>
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86 inline typename tools::promote_args<T>::type sinhc_pi(T x)
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87 {
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88 typedef typename tools::promote_args<T>::type result_type;
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89 return detail::sinhc_pi_imp(static_cast<result_type>(x));
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90 }
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91
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92 template <class T, class Policy>
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93 inline typename tools::promote_args<T>::type sinhc_pi(T x, const Policy&)
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94 {
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95 return boost::math::sinhc_pi(x);
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96 }
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97
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98 #ifdef BOOST_NO_TEMPLATE_TEMPLATES
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99 #else /* BOOST_NO_TEMPLATE_TEMPLATES */
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100 template<typename T, template<typename> class U>
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101 inline U<T> sinhc_pi(const U<T> x)
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102 {
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103 #if defined(BOOST_FUNCTION_SCOPE_USING_DECLARATION_BREAKS_ADL) || defined(__GNUC__)
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104 using namespace std;
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105 #elif defined(BOOST_NO_STDC_NAMESPACE) && !defined(__SUNPRO_CC)
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106 using ::abs;
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107 using ::sinh;
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108 using ::sqrt;
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109 #else /* BOOST_NO_STDC_NAMESPACE */
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110 using ::std::abs;
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111 using ::std::sinh;
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112 using ::std::sqrt;
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113 #endif /* BOOST_NO_STDC_NAMESPACE */
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114
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115 using ::std::numeric_limits;
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116
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117 static T const taylor_0_bound = tools::epsilon<T>();
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118 static T const taylor_2_bound = sqrt(taylor_0_bound);
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119 static T const taylor_n_bound = sqrt(taylor_2_bound);
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120
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121 if (abs(x) >= taylor_n_bound)
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122 {
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123 return(sinh(x)/x);
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124 }
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125 else
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126 {
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127 // approximation by taylor series in x at 0 up to order 0
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128 #ifdef __MWERKS__
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129 U<T> result = static_cast<U<T> >(1);
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130 #else
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131 U<T> result = U<T>(1);
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132 #endif
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133
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134 if (abs(x) >= taylor_0_bound)
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135 {
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136 U<T> x2 = x*x;
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137
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138 // approximation by taylor series in x at 0 up to order 2
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139 result += x2/static_cast<T>(6);
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140
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141 if (abs(x) >= taylor_2_bound)
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142 {
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143 // approximation by taylor series in x at 0 up to order 4
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144 result += (x2*x2)/static_cast<T>(120);
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145 }
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146 }
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147
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148 return(result);
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149 }
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150 }
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151 #endif /* BOOST_NO_TEMPLATE_TEMPLATES */
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152 }
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153 }
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154
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155 #endif /* BOOST_SINHC_HPP */
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156
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