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1 #ifndef DATE_TIME_TIME_SYSTEM_COUNTED_HPP
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2 #define DATE_TIME_TIME_SYSTEM_COUNTED_HPP
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3
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4 /* Copyright (c) 2002,2003 CrystalClear Software, Inc.
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5 * Use, modification and distribution is subject to the
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6 * Boost Software License, Version 1.0. (See accompanying
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7 * file LICENSE_1_0.txt or http://www.boost.org/LICENSE_1_0.txt)
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8 * Author: Jeff Garland, Bart Garst
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9 * $Date$
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10 */
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11
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12
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13
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14 #include "boost/date_time/time_defs.hpp"
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15 #include <string>
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16
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17
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18 namespace boost {
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19 namespace date_time {
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20
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21 //! Time representation that uses a single integer count
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22 template<class config>
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23 struct counted_time_rep
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24 {
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25 typedef typename config::int_type int_type;
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26 typedef typename config::date_type date_type;
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27 typedef typename config::impl_type impl_type;
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28 typedef typename date_type::duration_type date_duration_type;
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29 typedef typename date_type::calendar_type calendar_type;
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30 typedef typename date_type::ymd_type ymd_type;
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31 typedef typename config::time_duration_type time_duration_type;
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32 typedef typename config::resolution_traits resolution_traits;
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33
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34 counted_time_rep(const date_type& d, const time_duration_type& time_of_day)
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35 : time_count_(1)
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36 {
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37 if(d.is_infinity() || d.is_not_a_date() || time_of_day.is_special()) {
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38 time_count_ = time_of_day.get_rep() + d.day_count();
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39 //std::cout << time_count_ << std::endl;
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40 }
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41 else {
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42 time_count_ = (d.day_number() * frac_sec_per_day()) + time_of_day.ticks();
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43 }
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44 }
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45 explicit counted_time_rep(int_type count) :
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46 time_count_(count)
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47 {}
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48 explicit counted_time_rep(impl_type count) :
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49 time_count_(count)
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50 {}
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51 date_type date() const
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52 {
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53 if(time_count_.is_special()) {
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54 return date_type(time_count_.as_special());
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55 }
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56 else {
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57 typename calendar_type::date_int_type dc = day_count();
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58 //std::cout << "time_rep here:" << dc << std::endl;
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59 ymd_type ymd = calendar_type::from_day_number(dc);
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60 return date_type(ymd);
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61 }
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62 }
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63 //int_type day_count() const
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64 unsigned long day_count() const
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65 {
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66 /* resolution_traits::as_number returns a boost::int64_t &
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67 * frac_sec_per_day is also a boost::int64_t so, naturally,
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68 * the division operation returns a boost::int64_t.
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69 * The static_cast to an unsigned long is ok (results in no data loss)
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70 * because frac_sec_per_day is either the number of
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71 * microseconds per day, or the number of nanoseconds per day.
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72 * Worst case scenario: resolution_traits::as_number returns the
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73 * maximum value an int64_t can hold and frac_sec_per_day
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74 * is microseconds per day (lowest possible value).
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75 * The division operation will then return a value of 106751991 -
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76 * easily fitting in an unsigned long.
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77 */
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78 return static_cast<unsigned long>(resolution_traits::as_number(time_count_) / frac_sec_per_day());
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79 }
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80 int_type time_count() const
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81 {
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82 return resolution_traits::as_number(time_count_);
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83 }
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84 int_type tod() const
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85 {
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86 return resolution_traits::as_number(time_count_) % frac_sec_per_day();
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87 }
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88 static int_type frac_sec_per_day()
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89 {
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90 int_type seconds_per_day = 60*60*24;
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91 int_type fractional_sec_per_sec(resolution_traits::res_adjust());
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92 return seconds_per_day*fractional_sec_per_sec;
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93 }
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94 bool is_pos_infinity()const
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95 {
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96 return impl_type::is_pos_inf(time_count_.as_number());
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97 }
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98 bool is_neg_infinity()const
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99 {
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100 return impl_type::is_neg_inf(time_count_.as_number());
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101 }
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102 bool is_not_a_date_time()const
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103 {
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104 return impl_type::is_not_a_number(time_count_.as_number());
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105 }
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106 bool is_special()const
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107 {
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108 return time_count_.is_special();
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109 }
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110 impl_type get_rep()const
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111 {
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112 return time_count_;
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113 }
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114 private:
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115 impl_type time_count_;
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116 };
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117
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118 //! An unadjusted time system implementation.
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119 template<class time_rep>
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120 class counted_time_system
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121 {
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122 public:
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123 typedef time_rep time_rep_type;
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124 typedef typename time_rep_type::impl_type impl_type;
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125 typedef typename time_rep_type::time_duration_type time_duration_type;
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126 typedef typename time_duration_type::fractional_seconds_type fractional_seconds_type;
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127 typedef typename time_rep_type::date_type date_type;
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128 typedef typename time_rep_type::date_duration_type date_duration_type;
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129
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130
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131 template<class T> static void unused_var(const T&) {}
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132
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133 static time_rep_type get_time_rep(const date_type& day,
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134 const time_duration_type& tod,
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135 date_time::dst_flags dst=not_dst)
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136 {
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137 unused_var(dst);
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138 return time_rep_type(day, tod);
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139 }
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140
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141 static time_rep_type get_time_rep(special_values sv)
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142 {
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143 switch (sv) {
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144 case not_a_date_time:
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145 return time_rep_type(date_type(not_a_date_time),
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146 time_duration_type(not_a_date_time));
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147 case pos_infin:
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148 return time_rep_type(date_type(pos_infin),
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149 time_duration_type(pos_infin));
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150 case neg_infin:
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151 return time_rep_type(date_type(neg_infin),
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152 time_duration_type(neg_infin));
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153 case max_date_time: {
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154 time_duration_type td = time_duration_type(24,0,0,0) - time_duration_type(0,0,0,1);
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155 return time_rep_type(date_type(max_date_time), td);
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156 }
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157 case min_date_time:
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158 return time_rep_type(date_type(min_date_time), time_duration_type(0,0,0,0));
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159
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160 default:
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161 return time_rep_type(date_type(not_a_date_time),
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162 time_duration_type(not_a_date_time));
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163
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164 }
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165
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166 }
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167
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168 static date_type get_date(const time_rep_type& val)
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169 {
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170 return val.date();
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171 }
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172 static time_duration_type get_time_of_day(const time_rep_type& val)
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173 {
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174 if(val.is_special()) {
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175 return time_duration_type(val.get_rep().as_special());
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176 }
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177 else{
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178 return time_duration_type(0,0,0,val.tod());
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179 }
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180 }
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181 static std::string zone_name(const time_rep_type&)
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182 {
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183 return "";
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184 }
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185 static bool is_equal(const time_rep_type& lhs, const time_rep_type& rhs)
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186 {
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187 return (lhs.time_count() == rhs.time_count());
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188 }
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189 static bool is_less(const time_rep_type& lhs, const time_rep_type& rhs)
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190 {
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191 return (lhs.time_count() < rhs.time_count());
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192 }
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193 static time_rep_type add_days(const time_rep_type& base,
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194 const date_duration_type& dd)
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195 {
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196 if(base.is_special() || dd.is_special()) {
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197 return(time_rep_type(base.get_rep() + dd.get_rep()));
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198 }
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199 else {
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200 return time_rep_type(base.time_count() + (dd.days() * time_rep_type::frac_sec_per_day()));
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201 }
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202 }
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203 static time_rep_type subtract_days(const time_rep_type& base,
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204 const date_duration_type& dd)
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205 {
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206 if(base.is_special() || dd.is_special()) {
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207 return(time_rep_type(base.get_rep() - dd.get_rep()));
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208 }
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209 else{
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210 return time_rep_type(base.time_count() - (dd.days() * time_rep_type::frac_sec_per_day()));
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211 }
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212 }
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213 static time_rep_type subtract_time_duration(const time_rep_type& base,
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214 const time_duration_type& td)
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215 {
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216 if(base.is_special() || td.is_special()) {
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217 return(time_rep_type(base.get_rep() - td.get_rep()));
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218 }
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219 else {
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220 return time_rep_type(base.time_count() - td.ticks());
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221 }
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222 }
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223 static time_rep_type add_time_duration(const time_rep_type& base,
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224 time_duration_type td)
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225 {
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226 if(base.is_special() || td.is_special()) {
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227 return(time_rep_type(base.get_rep() + td.get_rep()));
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228 }
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229 else {
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230 return time_rep_type(base.time_count() + td.ticks());
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231 }
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232 }
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233 static time_duration_type subtract_times(const time_rep_type& lhs,
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234 const time_rep_type& rhs)
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235 {
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236 if(lhs.is_special() || rhs.is_special()) {
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237 return(time_duration_type(
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238 impl_type::to_special((lhs.get_rep() - rhs.get_rep()).as_number())));
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239 }
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240 else {
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241 fractional_seconds_type fs = lhs.time_count() - rhs.time_count();
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242 return time_duration_type(0,0,0,fs);
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243 }
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244 }
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245
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246 };
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247
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248
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249 } } //namespace date_time
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250
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251
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252
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253 #endif
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254
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