1 | /*
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2 | Unix SMB/CIFS implementation.
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3 | time handling functions
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4 |
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5 | Copyright (C) Andrew Tridgell 1992-2004
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6 | Copyright (C) Stefan (metze) Metzmacher 2002
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7 | Copyright (C) Jeremy Allison 2007
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8 |
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9 | This program is free software; you can redistribute it and/or modify
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10 | it under the terms of the GNU General Public License as published by
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11 | the Free Software Foundation; either version 3 of the License, or
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12 | (at your option) any later version.
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13 |
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14 | This program is distributed in the hope that it will be useful,
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15 | but WITHOUT ANY WARRANTY; without even the implied warranty of
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16 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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17 | GNU General Public License for more details.
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18 |
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19 | You should have received a copy of the GNU General Public License
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20 | along with this program. If not, see <http://www.gnu.org/licenses/>.
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21 | */
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22 |
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23 | #include "includes.h"
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24 |
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25 | /**
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26 | * @file
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27 | * @brief time handling functions
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28 | */
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29 |
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30 |
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31 | #define NTTIME_INFINITY (NTTIME)0x8000000000000000LL
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32 |
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33 | #if (SIZEOF_LONG == 8)
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34 | #define TIME_FIXUP_CONSTANT_INT 11644473600L
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35 | #elif (SIZEOF_LONG_LONG == 8)
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36 | #define TIME_FIXUP_CONSTANT_INT 11644473600LL
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37 | #endif
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38 |
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39 | /*******************************************************************
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40 | create a 16 bit dos packed date
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41 | ********************************************************************/
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42 | static uint16_t make_dos_date1(struct tm *t)
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43 | {
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44 | uint16_t ret=0;
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45 | ret = (((unsigned int)(t->tm_mon+1)) >> 3) | ((t->tm_year-80) << 1);
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46 | ret = ((ret&0xFF)<<8) | (t->tm_mday | (((t->tm_mon+1) & 0x7) << 5));
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47 | return ret;
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48 | }
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49 |
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50 | /*******************************************************************
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51 | create a 16 bit dos packed time
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52 | ********************************************************************/
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53 | static uint16_t make_dos_time1(struct tm *t)
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54 | {
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55 | uint16_t ret=0;
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56 | ret = ((((unsigned int)t->tm_min >> 3)&0x7) | (((unsigned int)t->tm_hour) << 3));
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57 | ret = ((ret&0xFF)<<8) | ((t->tm_sec/2) | ((t->tm_min & 0x7) << 5));
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58 | return ret;
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59 | }
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60 |
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61 | /*******************************************************************
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62 | create a 32 bit dos packed date/time from some parameters
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63 | This takes a GMT time and returns a packed localtime structure
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64 | ********************************************************************/
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65 | static uint32_t make_dos_date(time_t unixdate, int zone_offset)
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66 | {
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67 | struct tm *t;
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68 | uint32_t ret=0;
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69 |
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70 | if (unixdate == 0) {
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71 | return 0;
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72 | }
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73 |
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74 | unixdate -= zone_offset;
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75 |
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76 | t = gmtime(&unixdate);
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77 | if (!t) {
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78 | return 0xFFFFFFFF;
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79 | }
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80 |
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81 | ret = make_dos_date1(t);
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82 | ret = ((ret&0xFFFF)<<16) | make_dos_time1(t);
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83 |
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84 | return ret;
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85 | }
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86 |
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87 | /**
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88 | parse a nttime as a large integer in a string and return a NTTIME
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89 | */
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90 | NTTIME nttime_from_string(const char *s)
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91 | {
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92 | return strtoull(s, NULL, 0);
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93 | }
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94 |
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95 | /**************************************************************
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96 | Handle conversions between time_t and uint32, taking care to
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97 | preserve the "special" values.
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98 | **************************************************************/
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99 |
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100 | uint32_t convert_time_t_to_uint32(time_t t)
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101 | {
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102 | #if (defined(SIZEOF_TIME_T) && (SIZEOF_TIME_T == 8))
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103 | /* time_t is 64-bit. */
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104 | if (t == 0x8000000000000000LL) {
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105 | return 0x80000000;
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106 | } else if (t == 0x7FFFFFFFFFFFFFFFLL) {
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107 | return 0x7FFFFFFF;
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108 | }
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109 | #endif
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110 | return (uint32_t)t;
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111 | }
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112 |
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113 | time_t convert_uint32_to_time_t(uint32_t u)
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114 | {
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115 | #if (defined(SIZEOF_TIME_T) && (SIZEOF_TIME_T == 8))
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116 | /* time_t is 64-bit. */
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117 | if (u == 0x80000000) {
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118 | return (time_t)0x8000000000000000LL;
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119 | } else if (u == 0x7FFFFFFF) {
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120 | return (time_t)0x7FFFFFFFFFFFFFFFLL;
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121 | }
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122 | #endif
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123 | return (time_t)u;
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124 | }
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125 |
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126 | /****************************************************************************
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127 | Check if NTTIME is 0.
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128 | ****************************************************************************/
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129 |
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130 | bool nt_time_is_zero(const NTTIME *nt)
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131 | {
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132 | return (*nt == 0);
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133 | }
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134 |
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135 | /****************************************************************************
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136 | Convert ASN.1 GeneralizedTime string to unix-time.
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137 | Returns 0 on failure; Currently ignores timezone.
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138 | ****************************************************************************/
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139 |
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140 | time_t generalized_to_unix_time(const char *str)
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141 | {
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142 | struct tm tm;
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143 |
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144 | ZERO_STRUCT(tm);
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145 |
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146 | if (sscanf(str, "%4d%2d%2d%2d%2d%2d",
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147 | &tm.tm_year, &tm.tm_mon, &tm.tm_mday,
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148 | &tm.tm_hour, &tm.tm_min, &tm.tm_sec) != 6) {
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149 | return 0;
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150 | }
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151 | tm.tm_year -= 1900;
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152 | tm.tm_mon -= 1;
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153 |
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154 | return timegm(&tm);
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155 | }
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156 |
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157 | /*******************************************************************
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158 | Accessor function for the server time zone offset.
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159 | set_server_zone_offset() must have been called first.
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160 | ******************************************************************/
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161 |
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162 | static int server_zone_offset;
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163 |
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164 | int get_server_zone_offset(void)
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165 | {
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166 | return server_zone_offset;
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167 | }
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168 |
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169 | /*******************************************************************
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170 | Initialize the server time zone offset. Called when a client connects.
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171 | ******************************************************************/
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172 |
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173 | int set_server_zone_offset(time_t t)
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174 | {
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175 | server_zone_offset = get_time_zone(t);
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176 | return server_zone_offset;
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177 | }
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178 |
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179 | /****************************************************************************
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180 | Return the date and time as a string
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181 | ****************************************************************************/
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182 |
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183 | char *timeval_string(TALLOC_CTX *ctx, const struct timeval *tp, bool hires)
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184 | {
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185 | fstring TimeBuf;
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186 | time_t t;
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187 | struct tm *tm;
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188 |
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189 | t = (time_t)tp->tv_sec;
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190 | tm = localtime(&t);
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191 | if (!tm) {
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192 | if (hires) {
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193 | slprintf(TimeBuf,
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194 | sizeof(TimeBuf)-1,
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195 | "%ld.%06ld seconds since the Epoch",
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196 | (long)tp->tv_sec,
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197 | (long)tp->tv_usec);
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198 | } else {
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199 | slprintf(TimeBuf,
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200 | sizeof(TimeBuf)-1,
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201 | "%ld seconds since the Epoch",
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202 | (long)t);
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203 | }
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204 | } else {
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205 | #ifdef HAVE_STRFTIME
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206 | if (hires) {
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207 | strftime(TimeBuf,sizeof(TimeBuf)-1,"%Y/%m/%d %H:%M:%S",tm);
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208 | slprintf(TimeBuf+strlen(TimeBuf),
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209 | sizeof(TimeBuf)-1 - strlen(TimeBuf),
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210 | ".%06ld",
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211 | (long)tp->tv_usec);
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212 | } else {
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213 | strftime(TimeBuf,sizeof(TimeBuf)-1,"%Y/%m/%d %H:%M:%S",tm);
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214 | }
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215 | #else
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216 | if (hires) {
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217 | const char *asct = asctime(tm);
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218 | slprintf(TimeBuf,
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219 | sizeof(TimeBuf)-1,
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220 | "%s.%06ld",
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221 | asct ? asct : "unknown",
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222 | (long)tp->tv_usec);
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223 | } else {
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224 | const char *asct = asctime(tm);
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225 | fstrcpy(TimeBuf, asct ? asct : "unknown");
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226 | }
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227 | #endif
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228 | }
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229 | return talloc_strdup(ctx, TimeBuf);
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230 | }
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231 |
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232 | char *current_timestring(TALLOC_CTX *ctx, bool hires)
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233 | {
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234 | struct timeval tv;
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235 |
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236 | GetTimeOfDay(&tv);
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237 | return timeval_string(ctx, &tv, hires);
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238 | }
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239 |
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240 | /*******************************************************************
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241 | Put a dos date into a buffer (time/date format).
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242 | This takes GMT time and puts local time in the buffer.
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243 | ********************************************************************/
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244 |
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245 | static void put_dos_date(char *buf,int offset,time_t unixdate, int zone_offset)
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246 | {
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247 | uint32_t x = make_dos_date(unixdate, zone_offset);
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248 | SIVAL(buf,offset,x);
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249 | }
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250 |
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251 | /*******************************************************************
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252 | Put a dos date into a buffer (date/time format).
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253 | This takes GMT time and puts local time in the buffer.
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254 | ********************************************************************/
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255 |
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256 | static void put_dos_date2(char *buf,int offset,time_t unixdate, int zone_offset)
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257 | {
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258 | uint32_t x = make_dos_date(unixdate, zone_offset);
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259 | x = ((x&0xFFFF)<<16) | ((x&0xFFFF0000)>>16);
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260 | SIVAL(buf,offset,x);
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261 | }
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262 |
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263 | /*******************************************************************
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264 | Put a dos 32 bit "unix like" date into a buffer. This routine takes
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265 | GMT and converts it to LOCAL time before putting it (most SMBs assume
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266 | localtime for this sort of date)
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267 | ********************************************************************/
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268 |
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269 | static void put_dos_date3(char *buf,int offset,time_t unixdate, int zone_offset)
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270 | {
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271 | if (!null_mtime(unixdate)) {
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272 | unixdate -= zone_offset;
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273 | }
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274 | SIVAL(buf,offset,unixdate);
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275 | }
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276 |
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277 |
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278 | /***************************************************************************
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279 | Server versions of the above functions.
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280 | ***************************************************************************/
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281 |
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282 | void srv_put_dos_date(char *buf,int offset,time_t unixdate)
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283 | {
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284 | put_dos_date(buf, offset, unixdate, server_zone_offset);
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285 | }
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286 |
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287 | void srv_put_dos_date2(char *buf,int offset, time_t unixdate)
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288 | {
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289 | put_dos_date2(buf, offset, unixdate, server_zone_offset);
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290 | }
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291 |
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292 | void srv_put_dos_date3(char *buf,int offset,time_t unixdate)
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293 | {
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294 | put_dos_date3(buf, offset, unixdate, server_zone_offset);
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295 | }
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296 |
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297 | void round_timespec(enum timestamp_set_resolution res, struct timespec *ts)
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298 | {
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299 | switch (res) {
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300 | case TIMESTAMP_SET_SECONDS:
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301 | round_timespec_to_sec(ts);
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302 | break;
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303 | case TIMESTAMP_SET_MSEC:
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304 | round_timespec_to_usec(ts);
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305 | break;
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306 | case TIMESTAMP_SET_NT_OR_BETTER:
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307 | /* No rounding needed. */
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308 | break;
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309 | }
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310 | }
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311 |
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312 | /****************************************************************************
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313 | Take a Unix time and convert to an NTTIME structure and place in buffer
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314 | pointed to by p, rounded to the correct resolution.
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315 | ****************************************************************************/
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316 |
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317 | void put_long_date_timespec(enum timestamp_set_resolution res, char *p, struct timespec ts)
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318 | {
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319 | NTTIME nt;
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320 | round_timespec(res, &ts);
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321 | unix_timespec_to_nt_time(&nt, ts);
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322 | SIVAL(p, 0, nt & 0xFFFFFFFF);
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323 | SIVAL(p, 4, nt >> 32);
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324 | }
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325 |
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326 | void put_long_date(char *p, time_t t)
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327 | {
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328 | struct timespec ts;
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329 | ts.tv_sec = t;
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330 | ts.tv_nsec = 0;
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331 | put_long_date_timespec(TIMESTAMP_SET_SECONDS, p, ts);
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332 | }
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333 |
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334 | void dos_filetime_timespec(struct timespec *tsp)
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335 | {
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336 | tsp->tv_sec &= ~1;
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337 | tsp->tv_nsec = 0;
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338 | }
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339 |
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340 | /*******************************************************************
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341 | Create a unix date (int GMT) from a dos date (which is actually in
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342 | localtime).
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343 | ********************************************************************/
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344 |
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345 | static time_t make_unix_date(const void *date_ptr, int zone_offset)
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346 | {
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347 | uint32_t dos_date=0;
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348 | struct tm t;
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349 | time_t ret;
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350 |
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351 | dos_date = IVAL(date_ptr,0);
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352 |
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353 | if (dos_date == 0) {
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354 | return 0;
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355 | }
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356 |
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357 | interpret_dos_date(dos_date,&t.tm_year,&t.tm_mon,
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358 | &t.tm_mday,&t.tm_hour,&t.tm_min,&t.tm_sec);
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359 | t.tm_isdst = -1;
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360 |
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361 | ret = timegm(&t);
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362 |
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363 | ret += zone_offset;
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364 |
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365 | return(ret);
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366 | }
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367 |
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368 | /*******************************************************************
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369 | Like make_unix_date() but the words are reversed.
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370 | ********************************************************************/
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371 |
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372 | time_t make_unix_date2(const void *date_ptr, int zone_offset)
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373 | {
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374 | uint32_t x,x2;
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375 |
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376 | x = IVAL(date_ptr,0);
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377 | x2 = ((x&0xFFFF)<<16) | ((x&0xFFFF0000)>>16);
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378 | SIVAL(&x,0,x2);
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379 |
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380 | return(make_unix_date((const void *)&x, zone_offset));
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381 | }
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382 |
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383 | /*******************************************************************
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384 | Create a unix GMT date from a dos date in 32 bit "unix like" format
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385 | these generally arrive as localtimes, with corresponding DST.
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386 | ******************************************************************/
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387 |
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388 | time_t make_unix_date3(const void *date_ptr, int zone_offset)
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389 | {
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390 | time_t t = (time_t)IVAL(date_ptr,0);
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391 | if (!null_mtime(t)) {
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392 | t += zone_offset;
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393 | }
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394 | return(t);
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395 | }
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396 |
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397 | time_t srv_make_unix_date(const void *date_ptr)
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398 | {
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399 | return make_unix_date(date_ptr, server_zone_offset);
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400 | }
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401 |
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402 | time_t srv_make_unix_date2(const void *date_ptr)
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403 | {
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404 | return make_unix_date2(date_ptr, server_zone_offset);
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405 | }
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406 |
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407 | time_t srv_make_unix_date3(const void *date_ptr)
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408 | {
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409 | return make_unix_date3(date_ptr, server_zone_offset);
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410 | }
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411 |
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412 | /****************************************************************************
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413 | Convert a normalized timeval to a timespec.
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414 | ****************************************************************************/
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415 |
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416 | struct timespec convert_timeval_to_timespec(const struct timeval tv)
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417 | {
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418 | struct timespec ts;
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419 | ts.tv_sec = tv.tv_sec;
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420 | ts.tv_nsec = tv.tv_usec * 1000;
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421 | return ts;
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422 | }
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423 |
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424 | /****************************************************************************
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425 | Convert a normalized timespec to a timeval.
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426 | ****************************************************************************/
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427 |
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428 | struct timeval convert_timespec_to_timeval(const struct timespec ts)
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429 | {
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430 | struct timeval tv;
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431 | tv.tv_sec = ts.tv_sec;
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432 | tv.tv_usec = ts.tv_nsec / 1000;
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433 | return tv;
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434 | }
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435 |
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436 | /****************************************************************************
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437 | Return a timespec for the current time
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438 | ****************************************************************************/
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439 |
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440 | struct timespec timespec_current(void)
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441 | {
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442 | struct timeval tv;
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443 | struct timespec ts;
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444 | GetTimeOfDay(&tv);
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445 | ts.tv_sec = tv.tv_sec;
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446 | ts.tv_nsec = tv.tv_usec * 1000;
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447 | return ts;
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448 | }
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449 |
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450 | /****************************************************************************
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451 | Return the lesser of two timespecs.
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452 | ****************************************************************************/
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453 |
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454 | struct timespec timespec_min(const struct timespec *ts1,
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455 | const struct timespec *ts2)
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456 | {
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457 | if (ts1->tv_sec < ts2->tv_sec) return *ts1;
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458 | if (ts1->tv_sec > ts2->tv_sec) return *ts2;
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459 | if (ts1->tv_nsec < ts2->tv_nsec) return *ts1;
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460 | return *ts2;
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461 | }
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462 |
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463 | /****************************************************************************
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464 | compare two timespec structures.
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465 | Return -1 if ts1 < ts2
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466 | Return 0 if ts1 == ts2
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467 | Return 1 if ts1 > ts2
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468 | ****************************************************************************/
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469 |
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470 | int timespec_compare(const struct timespec *ts1, const struct timespec *ts2)
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471 | {
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472 | if (ts1->tv_sec > ts2->tv_sec) return 1;
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473 | if (ts1->tv_sec < ts2->tv_sec) return -1;
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474 | if (ts1->tv_nsec > ts2->tv_nsec) return 1;
|
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475 | if (ts1->tv_nsec < ts2->tv_nsec) return -1;
|
---|
476 | return 0;
|
---|
477 | }
|
---|
478 |
|
---|
479 | /****************************************************************************
|
---|
480 | Round up a timespec if nsec > 500000000, round down if lower,
|
---|
481 | then zero nsec.
|
---|
482 | ****************************************************************************/
|
---|
483 |
|
---|
484 | void round_timespec_to_sec(struct timespec *ts)
|
---|
485 | {
|
---|
486 | ts->tv_sec = convert_timespec_to_time_t(*ts);
|
---|
487 | ts->tv_nsec = 0;
|
---|
488 | }
|
---|
489 |
|
---|
490 | /****************************************************************************
|
---|
491 | Round a timespec to usec value.
|
---|
492 | ****************************************************************************/
|
---|
493 |
|
---|
494 | void round_timespec_to_usec(struct timespec *ts)
|
---|
495 | {
|
---|
496 | struct timeval tv = convert_timespec_to_timeval(*ts);
|
---|
497 | *ts = convert_timeval_to_timespec(tv);
|
---|
498 | }
|
---|
499 |
|
---|
500 | /****************************************************************************
|
---|
501 | Interprets an nt time into a unix struct timespec.
|
---|
502 | Differs from nt_time_to_unix in that an 8 byte value of 0xffffffffffffffff
|
---|
503 | will be returned as (time_t)-1, whereas nt_time_to_unix returns 0 in this case.
|
---|
504 | ****************************************************************************/
|
---|
505 |
|
---|
506 | struct timespec interpret_long_date(const char *p)
|
---|
507 | {
|
---|
508 | NTTIME nt;
|
---|
509 | nt = IVAL(p,0) + ((uint64_t)IVAL(p,4) << 32);
|
---|
510 | if (nt == (uint64_t)-1) {
|
---|
511 | struct timespec ret;
|
---|
512 | ret.tv_sec = (time_t)-1;
|
---|
513 | ret.tv_nsec = 0;
|
---|
514 | return ret;
|
---|
515 | }
|
---|
516 | return nt_time_to_unix_timespec(&nt);
|
---|
517 | }
|
---|
518 |
|
---|
519 | /***************************************************************************
|
---|
520 | Client versions of the above functions.
|
---|
521 | ***************************************************************************/
|
---|
522 |
|
---|
523 | void cli_put_dos_date(struct cli_state *cli, char *buf, int offset, time_t unixdate)
|
---|
524 | {
|
---|
525 | put_dos_date(buf, offset, unixdate, cli->serverzone);
|
---|
526 | }
|
---|
527 |
|
---|
528 | void cli_put_dos_date2(struct cli_state *cli, char *buf, int offset, time_t unixdate)
|
---|
529 | {
|
---|
530 | put_dos_date2(buf, offset, unixdate, cli->serverzone);
|
---|
531 | }
|
---|
532 |
|
---|
533 | void cli_put_dos_date3(struct cli_state *cli, char *buf, int offset, time_t unixdate)
|
---|
534 | {
|
---|
535 | put_dos_date3(buf, offset, unixdate, cli->serverzone);
|
---|
536 | }
|
---|
537 |
|
---|
538 | time_t cli_make_unix_date(struct cli_state *cli, const void *date_ptr)
|
---|
539 | {
|
---|
540 | return make_unix_date(date_ptr, cli->serverzone);
|
---|
541 | }
|
---|
542 |
|
---|
543 | time_t cli_make_unix_date2(struct cli_state *cli, const void *date_ptr)
|
---|
544 | {
|
---|
545 | return make_unix_date2(date_ptr, cli->serverzone);
|
---|
546 | }
|
---|
547 |
|
---|
548 | time_t cli_make_unix_date3(struct cli_state *cli, const void *date_ptr)
|
---|
549 | {
|
---|
550 | return make_unix_date3(date_ptr, cli->serverzone);
|
---|
551 | }
|
---|
552 |
|
---|
553 | /****************************************************************************
|
---|
554 | Check if two NTTIMEs are the same.
|
---|
555 | ****************************************************************************/
|
---|
556 |
|
---|
557 | bool nt_time_equals(const NTTIME *nt1, const NTTIME *nt2)
|
---|
558 | {
|
---|
559 | return (*nt1 == *nt2);
|
---|
560 | }
|
---|
561 |
|
---|
562 | /*******************************************************************
|
---|
563 | Re-read the smb serverzone value.
|
---|
564 | ******************************************************************/
|
---|
565 |
|
---|
566 | static struct timeval start_time_hires;
|
---|
567 |
|
---|
568 | void TimeInit(void)
|
---|
569 | {
|
---|
570 | set_server_zone_offset(time(NULL));
|
---|
571 |
|
---|
572 | DEBUG(4,("TimeInit: Serverzone is %d\n", server_zone_offset));
|
---|
573 |
|
---|
574 | /* Save the start time of this process. */
|
---|
575 | if (start_time_hires.tv_sec == 0 && start_time_hires.tv_usec == 0) {
|
---|
576 | GetTimeOfDay(&start_time_hires);
|
---|
577 | }
|
---|
578 | }
|
---|
579 |
|
---|
580 | /**********************************************************************
|
---|
581 | Return a timeval struct of the uptime of this process. As TimeInit is
|
---|
582 | done before a daemon fork then this is the start time from the parent
|
---|
583 | daemon start. JRA.
|
---|
584 | ***********************************************************************/
|
---|
585 |
|
---|
586 | void get_process_uptime(struct timeval *ret_time)
|
---|
587 | {
|
---|
588 | struct timeval time_now_hires;
|
---|
589 |
|
---|
590 | GetTimeOfDay(&time_now_hires);
|
---|
591 | ret_time->tv_sec = time_now_hires.tv_sec - start_time_hires.tv_sec;
|
---|
592 | if (time_now_hires.tv_usec < start_time_hires.tv_usec) {
|
---|
593 | ret_time->tv_sec -= 1;
|
---|
594 | ret_time->tv_usec = 1000000 + (time_now_hires.tv_usec - start_time_hires.tv_usec);
|
---|
595 | } else {
|
---|
596 | ret_time->tv_usec = time_now_hires.tv_usec - start_time_hires.tv_usec;
|
---|
597 | }
|
---|
598 | }
|
---|
599 |
|
---|
600 | /****************************************************************************
|
---|
601 | Convert a NTTIME structure to a time_t.
|
---|
602 | It's originally in "100ns units".
|
---|
603 |
|
---|
604 | This is an absolute version of the one above.
|
---|
605 | By absolute I mean, it doesn't adjust from 1/1/1601 to 1/1/1970
|
---|
606 | if the NTTIME was 5 seconds, the time_t is 5 seconds. JFM
|
---|
607 | ****************************************************************************/
|
---|
608 |
|
---|
609 | time_t nt_time_to_unix_abs(const NTTIME *nt)
|
---|
610 | {
|
---|
611 | uint64_t d;
|
---|
612 |
|
---|
613 | if (*nt == 0) {
|
---|
614 | return (time_t)0;
|
---|
615 | }
|
---|
616 |
|
---|
617 | if (*nt == (uint64_t)-1) {
|
---|
618 | return (time_t)-1;
|
---|
619 | }
|
---|
620 |
|
---|
621 | if (*nt == NTTIME_INFINITY) {
|
---|
622 | return (time_t)-1;
|
---|
623 | }
|
---|
624 |
|
---|
625 | /* reverse the time */
|
---|
626 | /* it's a negative value, turn it to positive */
|
---|
627 | d=~*nt;
|
---|
628 |
|
---|
629 | d += 1000*1000*10/2;
|
---|
630 | d /= 1000*1000*10;
|
---|
631 |
|
---|
632 | if (!(TIME_T_MIN <= ((time_t)d) && ((time_t)d) <= TIME_T_MAX)) {
|
---|
633 | return (time_t)0;
|
---|
634 | }
|
---|
635 |
|
---|
636 | return (time_t)d;
|
---|
637 | }
|
---|
638 |
|
---|
639 | time_t uint64s_nt_time_to_unix_abs(const uint64_t *src)
|
---|
640 | {
|
---|
641 | NTTIME nttime;
|
---|
642 | nttime = *src;
|
---|
643 | return nt_time_to_unix_abs(&nttime);
|
---|
644 | }
|
---|
645 |
|
---|
646 | /****************************************************************************
|
---|
647 | Put a 8 byte filetime from a struct timespec. Uses GMT.
|
---|
648 | ****************************************************************************/
|
---|
649 |
|
---|
650 | void unix_timespec_to_nt_time(NTTIME *nt, struct timespec ts)
|
---|
651 | {
|
---|
652 | uint64_t d;
|
---|
653 |
|
---|
654 | if (ts.tv_sec ==0 && ts.tv_nsec == 0) {
|
---|
655 | *nt = 0;
|
---|
656 | return;
|
---|
657 | }
|
---|
658 | if (ts.tv_sec == TIME_T_MAX) {
|
---|
659 | *nt = 0x7fffffffffffffffLL;
|
---|
660 | return;
|
---|
661 | }
|
---|
662 | if (ts.tv_sec == (time_t)-1) {
|
---|
663 | *nt = (uint64_t)-1;
|
---|
664 | return;
|
---|
665 | }
|
---|
666 |
|
---|
667 | d = ts.tv_sec;
|
---|
668 | d += TIME_FIXUP_CONSTANT_INT;
|
---|
669 | d *= 1000*1000*10;
|
---|
670 | /* d is now in 100ns units. */
|
---|
671 | d += (ts.tv_nsec / 100);
|
---|
672 |
|
---|
673 | *nt = d;
|
---|
674 | }
|
---|
675 |
|
---|
676 | #if 0
|
---|
677 | void nt_time_to_unix_timespec(struct timespec *ts, NTTIME t)
|
---|
678 | {
|
---|
679 | if (ts == NULL) {
|
---|
680 | return;
|
---|
681 | }
|
---|
682 |
|
---|
683 | /* t starts in 100 nsec units since 1601-01-01. */
|
---|
684 |
|
---|
685 | t *= 100;
|
---|
686 | /* t is now in nsec units since 1601-01-01. */
|
---|
687 |
|
---|
688 | t -= TIME_FIXUP_CONSTANT*1000*1000*100;
|
---|
689 | /* t is now in nsec units since the UNIX epoch 1970-01-01. */
|
---|
690 |
|
---|
691 | ts->tv_sec = t / 1000000000LL;
|
---|
692 |
|
---|
693 | if (TIME_T_MIN > ts->tv_sec || ts->tv_sec > TIME_T_MAX) {
|
---|
694 | ts->tv_sec = 0;
|
---|
695 | ts->tv_nsec = 0;
|
---|
696 | return;
|
---|
697 | }
|
---|
698 |
|
---|
699 | ts->tv_nsec = t - ts->tv_sec*1000000000LL;
|
---|
700 | }
|
---|
701 | #endif
|
---|
702 |
|
---|
703 | /****************************************************************************
|
---|
704 | Convert a time_t to a NTTIME structure
|
---|
705 |
|
---|
706 | This is an absolute version of the one above.
|
---|
707 | By absolute I mean, it doesn't adjust from 1/1/1970 to 1/1/1601
|
---|
708 | If the time_t was 5 seconds, the NTTIME is 5 seconds. JFM
|
---|
709 | ****************************************************************************/
|
---|
710 |
|
---|
711 | void unix_to_nt_time_abs(NTTIME *nt, time_t t)
|
---|
712 | {
|
---|
713 | double d;
|
---|
714 |
|
---|
715 | if (t==0) {
|
---|
716 | *nt = 0;
|
---|
717 | return;
|
---|
718 | }
|
---|
719 |
|
---|
720 | if (t == TIME_T_MAX) {
|
---|
721 | *nt = 0x7fffffffffffffffLL;
|
---|
722 | return;
|
---|
723 | }
|
---|
724 |
|
---|
725 | if (t == (time_t)-1) {
|
---|
726 | /* that's what NT uses for infinite */
|
---|
727 | *nt = NTTIME_INFINITY;
|
---|
728 | return;
|
---|
729 | }
|
---|
730 |
|
---|
731 | d = (double)(t);
|
---|
732 | d *= 1.0e7;
|
---|
733 |
|
---|
734 | *nt = (NTTIME)d;
|
---|
735 |
|
---|
736 | /* convert to a negative value */
|
---|
737 | *nt=~*nt;
|
---|
738 | }
|
---|
739 |
|
---|
740 |
|
---|
741 | /****************************************************************************
|
---|
742 | Check if it's a null mtime.
|
---|
743 | ****************************************************************************/
|
---|
744 |
|
---|
745 | bool null_mtime(time_t mtime)
|
---|
746 | {
|
---|
747 | if (mtime == 0 || mtime == (time_t)0xFFFFFFFF || mtime == (time_t)-1)
|
---|
748 | return true;
|
---|
749 | return false;
|
---|
750 | }
|
---|
751 |
|
---|
752 | /****************************************************************************
|
---|
753 | Utility function that always returns a const string even if localtime
|
---|
754 | and asctime fail.
|
---|
755 | ****************************************************************************/
|
---|
756 |
|
---|
757 | const char *time_to_asc(const time_t t)
|
---|
758 | {
|
---|
759 | const char *asct;
|
---|
760 | struct tm *lt = localtime(&t);
|
---|
761 |
|
---|
762 | if (!lt) {
|
---|
763 | return "unknown time";
|
---|
764 | }
|
---|
765 |
|
---|
766 | asct = asctime(lt);
|
---|
767 | if (!asct) {
|
---|
768 | return "unknown time";
|
---|
769 | }
|
---|
770 | return asct;
|
---|
771 | }
|
---|
772 |
|
---|
773 | const char *display_time(NTTIME nttime)
|
---|
774 | {
|
---|
775 | float high;
|
---|
776 | float low;
|
---|
777 | int sec;
|
---|
778 | int days, hours, mins, secs;
|
---|
779 |
|
---|
780 | if (nttime==0)
|
---|
781 | return "Now";
|
---|
782 |
|
---|
783 | if (nttime==NTTIME_INFINITY)
|
---|
784 | return "Never";
|
---|
785 |
|
---|
786 | high = 65536;
|
---|
787 | high = high/10000;
|
---|
788 | high = high*65536;
|
---|
789 | high = high/1000;
|
---|
790 | high = high * (~(nttime >> 32));
|
---|
791 |
|
---|
792 | low = ~(nttime & 0xFFFFFFFF);
|
---|
793 | low = low/(1000*1000*10);
|
---|
794 |
|
---|
795 | sec=(int)(high+low);
|
---|
796 |
|
---|
797 | days=sec/(60*60*24);
|
---|
798 | hours=(sec - (days*60*60*24)) / (60*60);
|
---|
799 | mins=(sec - (days*60*60*24) - (hours*60*60) ) / 60;
|
---|
800 | secs=sec - (days*60*60*24) - (hours*60*60) - (mins*60);
|
---|
801 |
|
---|
802 | return talloc_asprintf(talloc_tos(), "%u days, %u hours, %u minutes, "
|
---|
803 | "%u seconds", days, hours, mins, secs);
|
---|
804 | }
|
---|
805 |
|
---|
806 | bool nt_time_is_set(const NTTIME *nt)
|
---|
807 | {
|
---|
808 | if (*nt == 0x7FFFFFFFFFFFFFFFLL) {
|
---|
809 | return false;
|
---|
810 | }
|
---|
811 |
|
---|
812 | if (*nt == NTTIME_INFINITY) {
|
---|
813 | return false;
|
---|
814 | }
|
---|
815 |
|
---|
816 | return true;
|
---|
817 | }
|
---|