[0b99e40] | 1 | /*
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[df4ed85] | 2 | * Copyright (c) 2006 Ondrej Palkovsky
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[c2b0e10] | 3 | * Copyright (c) 2011 Petr Koupy
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| 4 | * Copyright (c) 2011 Jiri Zarevucky
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[0b99e40] | 5 | * All rights reserved.
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| 6 | *
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| 7 | * Redistribution and use in source and binary forms, with or without
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| 8 | * modification, are permitted provided that the following conditions
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| 9 | * are met:
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| 10 | *
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| 11 | * - Redistributions of source code must retain the above copyright
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| 12 | * notice, this list of conditions and the following disclaimer.
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| 13 | * - Redistributions in binary form must reproduce the above copyright
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| 14 | * notice, this list of conditions and the following disclaimer in the
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| 15 | * documentation and/or other materials provided with the distribution.
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| 16 | * - The name of the author may not be used to endorse or promote products
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| 17 | * derived from this software without specific prior written permission.
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| 18 | *
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| 19 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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| 20 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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| 21 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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| 22 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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| 23 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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| 24 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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| 25 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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| 26 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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| 27 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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| 28 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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[b2951e2] | 29 | */
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| 30 |
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[a46da63] | 31 | /** @addtogroup libc
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[b2951e2] | 32 | * @{
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| 33 | */
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| 34 | /** @file
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[22e6802] | 35 | */
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[0b99e40] | 36 |
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[6119f24] | 37 | #include <time.h>
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[3e6a98c5] | 38 | #include <stdbool.h>
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[05882233] | 39 | #include <barrier.h>
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[2c577e0b] | 40 | #include <macros.h>
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[6119f24] | 41 | #include <errno.h>
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| 42 | #include <sysinfo.h>
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| 43 | #include <as.h>
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| 44 | #include <ddi.h>
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[d9ece1cb] | 45 | #include <libc.h>
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[3f7fe9e] | 46 | #include <limits.h>
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[c2b0e10] | 47 | #include <stdint.h>
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| 48 | #include <stdio.h>
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| 49 | #include <ctype.h>
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[f7e69f5] | 50 | #include <assert.h>
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[3a58347] | 51 | #include <loc.h>
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| 52 | #include <device/clock_dev.h>
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[bd41ac52] | 53 | #include <stats.h>
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[c61d34b] | 54 |
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[58e7b26] | 55 | #define ASCTIME_BUF_LEN 27
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[1ab8539] | 56 |
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| 57 | #define HOURS_PER_DAY 24
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| 58 | #define MINS_PER_HOUR 60
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| 59 | #define SECS_PER_MIN 60
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[bd41ac52] | 60 | #define NSECS_PER_SEC 1000000000ll
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[1ab8539] | 61 | #define MINS_PER_DAY (MINS_PER_HOUR * HOURS_PER_DAY)
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| 62 | #define SECS_PER_HOUR (SECS_PER_MIN * MINS_PER_HOUR)
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| 63 | #define SECS_PER_DAY (SECS_PER_HOUR * HOURS_PER_DAY)
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[8219eb9] | 64 |
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[2c577e0b] | 65 | /** Pointer to kernel shared variables with time */
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[0b99e40] | 66 | struct {
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[2d1fde3b] | 67 | volatile sysarg_t seconds1;
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[0b99e40] | 68 | volatile sysarg_t useconds;
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[2d1fde3b] | 69 | volatile sysarg_t seconds2;
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[0b99e40] | 70 | } *ktime = NULL;
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| 71 |
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[1ab8539] | 72 | static async_sess_t *clock_conn = NULL;
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[c2b0e10] | 73 |
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[bd41ac52] | 74 | /**
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| 75 | * Get CPU time used since the process invocation.
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| 76 | *
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| 77 | * @return Consumed microseconds by this process or -1 if not available.
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| 78 | */
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| 79 | clock_t clock(void)
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| 80 | {
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[0a520db] | 81 | static_assert(CLOCKS_PER_SEC == 1000000, "");
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[bd41ac52] | 82 |
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| 83 | size_t count;
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| 84 | stats_cpu_t *cpu_stats = stats_get_cpus(&count);
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| 85 | if (!cpu_stats)
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| 86 | return (clock_t) -1;
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| 87 | if (!cpu_stats->frequency_mhz) {
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| 88 | free(cpu_stats);
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| 89 | return (clock_t) -1;
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| 90 | }
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| 91 |
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| 92 | clock_t total_usecs = -1;
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| 93 | if (cpu_stats) {
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| 94 | stats_task_t *task_stats = stats_get_task(task_get_id());
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| 95 | if (task_stats) {
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| 96 | total_usecs = (clock_t) (task_stats->kcycles +
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| 97 | task_stats->ucycles) / cpu_stats->frequency_mhz;
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| 98 | free(task_stats);
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| 99 | }
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| 100 | free(cpu_stats);
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| 101 | }
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| 102 |
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| 103 | return total_usecs;
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| 104 | }
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| 105 |
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[1ab8539] | 106 | /** Check whether the year is a leap year.
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[c2b0e10] | 107 | *
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| 108 | * @param year Year since 1900 (e.g. for 1970, the value is 70).
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[1ab8539] | 109 | *
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[c2b0e10] | 110 | * @return true if year is a leap year, false otherwise
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[1ab8539] | 111 | *
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[c2b0e10] | 112 | */
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[1ab8539] | 113 | static bool is_leap_year(time_t year)
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[c2b0e10] | 114 | {
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| 115 | year += 1900;
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[a35b458] | 116 |
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[c2b0e10] | 117 | if (year % 400 == 0)
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| 118 | return true;
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[a35b458] | 119 |
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[c2b0e10] | 120 | if (year % 100 == 0)
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| 121 | return false;
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[a35b458] | 122 |
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[c2b0e10] | 123 | if (year % 4 == 0)
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| 124 | return true;
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[a35b458] | 125 |
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[c2b0e10] | 126 | return false;
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| 127 | }
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| 128 |
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[1ab8539] | 129 | /** How many days there are in the given month
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| 130 | *
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| 131 | * Return how many days there are in the given month of the given year.
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[c2b0e10] | 132 | * Note that year is only taken into account if month is February.
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| 133 | *
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| 134 | * @param year Year since 1900 (can be negative).
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[1ab8539] | 135 | * @param mon Month of the year. 0 for January, 11 for December.
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| 136 | *
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[c2b0e10] | 137 | * @return Number of days in the specified month.
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[1ab8539] | 138 | *
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[c2b0e10] | 139 | */
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[1ab8539] | 140 | static int days_in_month(time_t year, time_t mon)
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[c2b0e10] | 141 | {
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[1ab8539] | 142 | assert(mon >= 0);
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| 143 | assert(mon <= 11);
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[a35b458] | 144 |
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[1ab8539] | 145 | static int month_days[] = {
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| 146 | 31, 0, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31
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| 147 | };
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[a35b458] | 148 |
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[c2b0e10] | 149 | if (mon == 1) {
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[1ab8539] | 150 | /* February */
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[c2b0e10] | 151 | year += 1900;
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[1ab8539] | 152 | return is_leap_year(year) ? 29 : 28;
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[c2b0e10] | 153 | }
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[a35b458] | 154 |
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[1ab8539] | 155 | return month_days[mon];
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[c2b0e10] | 156 | }
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| 157 |
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[1ab8539] | 158 | /** Which day of that year it is.
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| 159 | *
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| 160 | * For specified year, month and day of month, return which day of that year
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[c2b0e10] | 161 | * it is.
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| 162 | *
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| 163 | * For example, given date 2011-01-03, the corresponding expression is:
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[1ab8539] | 164 | * day_of_year(111, 0, 3) == 2
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[c2b0e10] | 165 | *
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| 166 | * @param year Year (year 1900 = 0, can be negative).
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[1ab8539] | 167 | * @param mon Month (January = 0).
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[c2b0e10] | 168 | * @param mday Day of month (First day is 1).
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[1ab8539] | 169 | *
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[c2b0e10] | 170 | * @return Day of year (First day is 0).
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[1ab8539] | 171 | *
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[c2b0e10] | 172 | */
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[1ab8539] | 173 | static int day_of_year(time_t year, time_t mon, time_t mday)
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[c2b0e10] | 174 | {
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[1ab8539] | 175 | static int mdays[] = {
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| 176 | 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334
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| 177 | };
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[a35b458] | 178 |
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[1ab8539] | 179 | static int leap_mdays[] = {
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| 180 | 0, 31, 60, 91, 121, 152, 182, 213, 244, 274, 305, 335
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| 181 | };
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[a35b458] | 182 |
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[1ab8539] | 183 | return (is_leap_year(year) ? leap_mdays[mon] : mdays[mon]) + mday - 1;
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[c2b0e10] | 184 | }
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| 185 |
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[1ab8539] | 186 | /** Integer division that rounds to negative infinity.
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| 187 | *
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| 188 | * Used by some functions in this module.
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[c2b0e10] | 189 | *
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| 190 | * @param op1 Dividend.
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| 191 | * @param op2 Divisor.
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[1ab8539] | 192 | *
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[c2b0e10] | 193 | * @return Rounded quotient.
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[1ab8539] | 194 | *
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[c2b0e10] | 195 | */
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[1ab8539] | 196 | static time_t floor_div(time_t op1, time_t op2)
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[c2b0e10] | 197 | {
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[1ab8539] | 198 | if ((op1 >= 0) || (op1 % op2 == 0))
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[c2b0e10] | 199 | return op1 / op2;
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[a35b458] | 200 |
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[1ab8539] | 201 | return op1 / op2 - 1;
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[c2b0e10] | 202 | }
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| 203 |
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[1ab8539] | 204 | /** Modulo that rounds to negative infinity.
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| 205 | *
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| 206 | * Used by some functions in this module.
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[c2b0e10] | 207 | *
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| 208 | * @param op1 Dividend.
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| 209 | * @param op2 Divisor.
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[1ab8539] | 210 | *
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[c2b0e10] | 211 | * @return Remainder.
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[1ab8539] | 212 | *
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[c2b0e10] | 213 | */
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[1ab8539] | 214 | static time_t floor_mod(time_t op1, time_t op2)
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[c2b0e10] | 215 | {
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[1ab8539] | 216 | time_t div = floor_div(op1, op2);
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[a35b458] | 217 |
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[1ab8539] | 218 | /*
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| 219 | * (a / b) * b + a % b == a
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| 220 | * Thus: a % b == a - (a / b) * b
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| 221 | */
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[a35b458] | 222 |
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[1ab8539] | 223 | time_t result = op1 - div * op2;
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[a35b458] | 224 |
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[1ab8539] | 225 | /* Some paranoid checking to ensure there is mistake here. */
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[c2b0e10] | 226 | assert(result >= 0);
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| 227 | assert(result < op2);
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| 228 | assert(div * op2 + result == op1);
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[a35b458] | 229 |
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[c2b0e10] | 230 | return result;
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| 231 | }
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| 232 |
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[1ab8539] | 233 | /** Number of days since the Epoch.
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| 234 | *
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[c2b0e10] | 235 | * Epoch is 1970-01-01, which is also equal to day 0.
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| 236 | *
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| 237 | * @param year Year (year 1900 = 0, may be negative).
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[1ab8539] | 238 | * @param mon Month (January = 0).
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[c2b0e10] | 239 | * @param mday Day of month (first day = 1).
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[1ab8539] | 240 | *
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[c2b0e10] | 241 | * @return Number of days since the Epoch.
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[1ab8539] | 242 | *
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[c2b0e10] | 243 | */
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[1ab8539] | 244 | static time_t days_since_epoch(time_t year, time_t mon, time_t mday)
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[c2b0e10] | 245 | {
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[1ab8539] | 246 | return (year - 70) * 365 + floor_div(year - 69, 4) -
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| 247 | floor_div(year - 1, 100) + floor_div(year + 299, 400) +
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| 248 | day_of_year(year, mon, mday);
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[c2b0e10] | 249 | }
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| 250 |
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[1ab8539] | 251 | /** Seconds since the Epoch.
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| 252 | *
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| 253 | * See also days_since_epoch().
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| 254 | *
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[c2b0e10] | 255 | * @param tm Normalized broken-down time.
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[1ab8539] | 256 | *
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[c2b0e10] | 257 | * @return Number of seconds since the epoch, not counting leap seconds.
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[1ab8539] | 258 | *
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[c2b0e10] | 259 | */
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[1ab8539] | 260 | static time_t secs_since_epoch(const struct tm *tm)
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[c2b0e10] | 261 | {
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[1ab8539] | 262 | return days_since_epoch(tm->tm_year, tm->tm_mon, tm->tm_mday) *
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[c2b0e10] | 263 | SECS_PER_DAY + tm->tm_hour * SECS_PER_HOUR +
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| 264 | tm->tm_min * SECS_PER_MIN + tm->tm_sec;
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| 265 | }
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| 266 |
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[1ab8539] | 267 | /** Which day of week the specified date is.
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| 268 | *
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[c2b0e10] | 269 | * @param year Year (year 1900 = 0).
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[1ab8539] | 270 | * @param mon Month (January = 0).
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[c2b0e10] | 271 | * @param mday Day of month (first = 1).
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[1ab8539] | 272 | *
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[c2b0e10] | 273 | * @return Day of week (Sunday = 0).
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[1ab8539] | 274 | *
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[c2b0e10] | 275 | */
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[1ab8539] | 276 | static time_t day_of_week(time_t year, time_t mon, time_t mday)
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[c2b0e10] | 277 | {
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| 278 | /* 1970-01-01 is Thursday */
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[1ab8539] | 279 | return floor_mod(days_since_epoch(year, mon, mday) + 4, 7);
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[c2b0e10] | 280 | }
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| 281 |
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[1ab8539] | 282 | /** Normalize the broken-down time.
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| 283 | *
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| 284 | * Optionally add specified amount of seconds.
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| 285 | *
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[7f9d97f3] | 286 | * @param tm Broken-down time to normalize.
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[bd41ac52] | 287 | * @param ts Timespec to add.
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[1ab8539] | 288 | *
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[c2b0e10] | 289 | * @return 0 on success, -1 on overflow
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[1ab8539] | 290 | *
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[c2b0e10] | 291 | */
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[bd41ac52] | 292 | static int normalize_tm_ts(struct tm *tm, const struct timespec *ts)
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[c2b0e10] | 293 | {
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| 294 | // TODO: DST correction
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[a35b458] | 295 |
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[c2b0e10] | 296 | /* Set initial values. */
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[bd41ac52] | 297 | time_t nsec = tm->tm_nsec + ts->tv_nsec;
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| 298 | time_t sec = tm->tm_sec + ts->tv_sec;
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[c2b0e10] | 299 | time_t min = tm->tm_min;
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| 300 | time_t hour = tm->tm_hour;
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| 301 | time_t day = tm->tm_mday - 1;
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| 302 | time_t mon = tm->tm_mon;
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| 303 | time_t year = tm->tm_year;
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[a35b458] | 304 |
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[c2b0e10] | 305 | /* Adjust time. */
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[bd41ac52] | 306 | sec += floor_div(nsec, NSECS_PER_SEC);
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| 307 | nsec = floor_mod(nsec, NSECS_PER_SEC);
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[1ab8539] | 308 | min += floor_div(sec, SECS_PER_MIN);
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| 309 | sec = floor_mod(sec, SECS_PER_MIN);
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| 310 | hour += floor_div(min, MINS_PER_HOUR);
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| 311 | min = floor_mod(min, MINS_PER_HOUR);
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| 312 | day += floor_div(hour, HOURS_PER_DAY);
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| 313 | hour = floor_mod(hour, HOURS_PER_DAY);
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[a35b458] | 314 |
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[c2b0e10] | 315 | /* Adjust month. */
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[1ab8539] | 316 | year += floor_div(mon, 12);
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| 317 | mon = floor_mod(mon, 12);
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[a35b458] | 318 |
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[c2b0e10] | 319 | /* Now the difficult part - days of month. */
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[a35b458] | 320 |
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[c2b0e10] | 321 | /* First, deal with whole cycles of 400 years = 146097 days. */
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[1ab8539] | 322 | year += floor_div(day, 146097) * 400;
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| 323 | day = floor_mod(day, 146097);
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[a35b458] | 324 |
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[c2b0e10] | 325 | /* Then, go in one year steps. */
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| 326 | if (mon <= 1) {
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| 327 | /* January and February. */
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| 328 | while (day > 365) {
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[1ab8539] | 329 | day -= is_leap_year(year) ? 366 : 365;
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[c2b0e10] | 330 | year++;
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| 331 | }
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| 332 | } else {
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| 333 | /* Rest of the year. */
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| 334 | while (day > 365) {
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[1ab8539] | 335 | day -= is_leap_year(year + 1) ? 366 : 365;
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[c2b0e10] | 336 | year++;
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| 337 | }
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| 338 | }
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[a35b458] | 339 |
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[c2b0e10] | 340 | /* Finally, finish it off month per month. */
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[1ab8539] | 341 | while (day >= days_in_month(year, mon)) {
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| 342 | day -= days_in_month(year, mon);
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[c2b0e10] | 343 | mon++;
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[a35b458] | 344 |
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[c2b0e10] | 345 | if (mon >= 12) {
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| 346 | mon -= 12;
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| 347 | year++;
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| 348 | }
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| 349 | }
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[a35b458] | 350 |
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[c2b0e10] | 351 | /* Calculate the remaining two fields. */
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[1ab8539] | 352 | tm->tm_yday = day_of_year(year, mon, day + 1);
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| 353 | tm->tm_wday = day_of_week(year, mon, day + 1);
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[a35b458] | 354 |
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[c2b0e10] | 355 | /* And put the values back to the struct. */
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[bd41ac52] | 356 | tm->tm_nsec = (int) nsec;
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[c2b0e10] | 357 | tm->tm_sec = (int) sec;
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| 358 | tm->tm_min = (int) min;
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| 359 | tm->tm_hour = (int) hour;
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| 360 | tm->tm_mday = (int) day + 1;
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| 361 | tm->tm_mon = (int) mon;
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[a35b458] | 362 |
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[1ab8539] | 363 | /* Casts to work around POSIX brain-damage. */
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| 364 | if (year > ((int) INT_MAX) || year < ((int) INT_MIN)) {
|
---|
| 365 | tm->tm_year = (year < 0) ? ((int) INT_MIN) : ((int) INT_MAX);
|
---|
[c2b0e10] | 366 | return -1;
|
---|
| 367 | }
|
---|
[a35b458] | 368 |
|
---|
[c2b0e10] | 369 | tm->tm_year = (int) year;
|
---|
| 370 | return 0;
|
---|
| 371 | }
|
---|
| 372 |
|
---|
[7f9d97f3] | 373 | static int normalize_tm_time(struct tm *tm, time_t time)
|
---|
| 374 | {
|
---|
[bd41ac52] | 375 | struct timespec ts = {
|
---|
[7f9d97f3] | 376 | .tv_sec = time,
|
---|
[bd41ac52] | 377 | .tv_nsec = 0
|
---|
[7f9d97f3] | 378 | };
|
---|
| 379 |
|
---|
[bd41ac52] | 380 | return normalize_tm_ts(tm, &ts);
|
---|
[7f9d97f3] | 381 | }
|
---|
| 382 |
|
---|
[1ab8539] | 383 | /** Which day the week-based year starts on.
|
---|
| 384 | *
|
---|
| 385 | * Relative to the first calendar day. E.g. if the year starts
|
---|
| 386 | * on December 31st, the return value is -1.
|
---|
[c2b0e10] | 387 | *
|
---|
| 388 | * @param Year since 1900.
|
---|
[1ab8539] | 389 | *
|
---|
[c2b0e10] | 390 | * @return Offset of week-based year relative to calendar year.
|
---|
[1ab8539] | 391 | *
|
---|
[c2b0e10] | 392 | */
|
---|
[1ab8539] | 393 | static int wbyear_offset(int year)
|
---|
[c2b0e10] | 394 | {
|
---|
[1ab8539] | 395 | int start_wday = day_of_week(year, 0, 1);
|
---|
[a35b458] | 396 |
|
---|
[1ab8539] | 397 | return floor_mod(4 - start_wday, 7) - 3;
|
---|
[c2b0e10] | 398 | }
|
---|
| 399 |
|
---|
[1ab8539] | 400 | /** Week-based year of the specified time.
|
---|
[c2b0e10] | 401 | *
|
---|
| 402 | * @param tm Normalized broken-down time.
|
---|
[1ab8539] | 403 | *
|
---|
[c2b0e10] | 404 | * @return Week-based year.
|
---|
[1ab8539] | 405 | *
|
---|
[c2b0e10] | 406 | */
|
---|
[1ab8539] | 407 | static int wbyear(const struct tm *tm)
|
---|
[c2b0e10] | 408 | {
|
---|
[1ab8539] | 409 | int day = tm->tm_yday - wbyear_offset(tm->tm_year);
|
---|
[a35b458] | 410 |
|
---|
[c2b0e10] | 411 | if (day < 0) {
|
---|
| 412 | /* Last week of previous year. */
|
---|
| 413 | return tm->tm_year - 1;
|
---|
| 414 | }
|
---|
[a35b458] | 415 |
|
---|
[1ab8539] | 416 | if (day > 364 + is_leap_year(tm->tm_year)) {
|
---|
[c2b0e10] | 417 | /* First week of next year. */
|
---|
| 418 | return tm->tm_year + 1;
|
---|
| 419 | }
|
---|
[a35b458] | 420 |
|
---|
[c2b0e10] | 421 | /* All the other days are in the calendar year. */
|
---|
| 422 | return tm->tm_year;
|
---|
| 423 | }
|
---|
| 424 |
|
---|
[1ab8539] | 425 | /** Week number of the year (assuming weeks start on Sunday).
|
---|
| 426 | *
|
---|
[c2b0e10] | 427 | * The first Sunday of January is the first day of week 1;
|
---|
| 428 | * days in the new year before this are in week 0.
|
---|
| 429 | *
|
---|
| 430 | * @param tm Normalized broken-down time.
|
---|
[1ab8539] | 431 | *
|
---|
[c2b0e10] | 432 | * @return The week number (0 - 53).
|
---|
[1ab8539] | 433 | *
|
---|
[c2b0e10] | 434 | */
|
---|
[1ab8539] | 435 | static int sun_week_number(const struct tm *tm)
|
---|
[c2b0e10] | 436 | {
|
---|
[1ab8539] | 437 | int first_day = (7 - day_of_week(tm->tm_year, 0, 1)) % 7;
|
---|
[a35b458] | 438 |
|
---|
[c2b0e10] | 439 | return (tm->tm_yday - first_day + 7) / 7;
|
---|
| 440 | }
|
---|
| 441 |
|
---|
[1ab8539] | 442 | /** Week number of the year (assuming weeks start on Monday).
|
---|
| 443 | *
|
---|
| 444 | * If the week containing January 1st has four or more days
|
---|
| 445 | * in the new year, then it is considered week 1. Otherwise,
|
---|
| 446 | * it is the last week of the previous year, and the next week
|
---|
| 447 | * is week 1. Both January 4th and the first Thursday
|
---|
[c2b0e10] | 448 | * of January are always in week 1.
|
---|
| 449 | *
|
---|
| 450 | * @param tm Normalized broken-down time.
|
---|
[1ab8539] | 451 | *
|
---|
[c2b0e10] | 452 | * @return The week number (1 - 53).
|
---|
[1ab8539] | 453 | *
|
---|
[c2b0e10] | 454 | */
|
---|
[1ab8539] | 455 | static int iso_week_number(const struct tm *tm)
|
---|
[c2b0e10] | 456 | {
|
---|
[1ab8539] | 457 | int day = tm->tm_yday - wbyear_offset(tm->tm_year);
|
---|
[a35b458] | 458 |
|
---|
[c2b0e10] | 459 | if (day < 0) {
|
---|
| 460 | /* Last week of previous year. */
|
---|
| 461 | return 53;
|
---|
| 462 | }
|
---|
[a35b458] | 463 |
|
---|
[1ab8539] | 464 | if (day > 364 + is_leap_year(tm->tm_year)) {
|
---|
[c2b0e10] | 465 | /* First week of next year. */
|
---|
| 466 | return 1;
|
---|
| 467 | }
|
---|
[a35b458] | 468 |
|
---|
[c2b0e10] | 469 | /* All the other days give correct answer. */
|
---|
| 470 | return (day / 7 + 1);
|
---|
| 471 | }
|
---|
| 472 |
|
---|
[1ab8539] | 473 | /** Week number of the year (assuming weeks start on Monday).
|
---|
| 474 | *
|
---|
[c2b0e10] | 475 | * The first Monday of January is the first day of week 1;
|
---|
[1ab8539] | 476 | * days in the new year before this are in week 0.
|
---|
[c2b0e10] | 477 | *
|
---|
| 478 | * @param tm Normalized broken-down time.
|
---|
[1ab8539] | 479 | *
|
---|
[c2b0e10] | 480 | * @return The week number (0 - 53).
|
---|
[1ab8539] | 481 | *
|
---|
[c2b0e10] | 482 | */
|
---|
[1ab8539] | 483 | static int mon_week_number(const struct tm *tm)
|
---|
[c2b0e10] | 484 | {
|
---|
[1ab8539] | 485 | int first_day = (1 - day_of_week(tm->tm_year, 0, 1)) % 7;
|
---|
[a35b458] | 486 |
|
---|
[c2b0e10] | 487 | return (tm->tm_yday - first_day + 7) / 7;
|
---|
| 488 | }
|
---|
| 489 |
|
---|
[bd41ac52] | 490 | static void ts_normalize(struct timespec *ts)
|
---|
[7f9d97f3] | 491 | {
|
---|
[bd41ac52] | 492 | while (ts->tv_nsec >= NSECS_PER_SEC) {
|
---|
| 493 | ts->tv_sec++;
|
---|
| 494 | ts->tv_nsec -= NSECS_PER_SEC;
|
---|
[7f9d97f3] | 495 | }
|
---|
[bd41ac52] | 496 | while (ts->tv_nsec < 0) {
|
---|
| 497 | ts->tv_sec--;
|
---|
| 498 | ts->tv_nsec += NSECS_PER_SEC;
|
---|
[7f9d97f3] | 499 | }
|
---|
| 500 | }
|
---|
| 501 |
|
---|
[bd41ac52] | 502 | /** Add nanoseconds to given timespec.
|
---|
[daa90e8] | 503 | *
|
---|
[bd41ac52] | 504 | * @param ts Destination timespec.
|
---|
| 505 | * @param nsecs Number of nanoseconds to add.
|
---|
[2c577e0b] | 506 | *
|
---|
[daa90e8] | 507 | */
|
---|
[bd41ac52] | 508 | void ts_add_diff(struct timespec *ts, nsec_t nsecs)
|
---|
[daa90e8] | 509 | {
|
---|
[bd41ac52] | 510 | ts->tv_sec += nsecs / NSECS_PER_SEC;
|
---|
| 511 | ts->tv_nsec += nsecs % NSECS_PER_SEC;
|
---|
| 512 | ts_normalize(ts);
|
---|
[7f9d97f3] | 513 | }
|
---|
| 514 |
|
---|
[bd41ac52] | 515 | /** Add two timespecs.
|
---|
[7f9d97f3] | 516 | *
|
---|
[bd41ac52] | 517 | * @param ts1 First timespec.
|
---|
| 518 | * @param ts2 Second timespec.
|
---|
[7f9d97f3] | 519 | */
|
---|
[bd41ac52] | 520 | void ts_add(struct timespec *ts1, const struct timespec *ts2)
|
---|
[7f9d97f3] | 521 | {
|
---|
[bd41ac52] | 522 | ts1->tv_sec += ts2->tv_sec;
|
---|
| 523 | ts1->tv_nsec += ts2->tv_nsec;
|
---|
| 524 | ts_normalize(ts1);
|
---|
[daa90e8] | 525 | }
|
---|
| 526 |
|
---|
[bd41ac52] | 527 | /** Subtract two timespecs.
|
---|
[daa90e8] | 528 | *
|
---|
[bd41ac52] | 529 | * @param ts1 First timespec.
|
---|
| 530 | * @param ts2 Second timespec.
|
---|
[2c577e0b] | 531 | *
|
---|
[bd41ac52] | 532 | * @return Difference between ts1 and ts2 (ts1 - ts2) in nanoseconds.
|
---|
[daa90e8] | 533 | *
|
---|
| 534 | */
|
---|
[bd41ac52] | 535 | nsec_t ts_sub_diff(const struct timespec *ts1, const struct timespec *ts2)
|
---|
[daa90e8] | 536 | {
|
---|
[bd41ac52] | 537 | return (nsec_t) (ts1->tv_nsec - ts2->tv_nsec) +
|
---|
| 538 | SEC2NSEC((ts1->tv_sec - ts2->tv_sec));
|
---|
[7f9d97f3] | 539 | }
|
---|
| 540 |
|
---|
[bd41ac52] | 541 | /** Subtract two timespecs.
|
---|
[7f9d97f3] | 542 | *
|
---|
[bd41ac52] | 543 | * @param ts1 First timespec.
|
---|
| 544 | * @param ts2 Second timespec.
|
---|
[7f9d97f3] | 545 | *
|
---|
| 546 | */
|
---|
[bd41ac52] | 547 | void ts_sub(struct timespec *ts1, const struct timespec *ts2)
|
---|
[7f9d97f3] | 548 | {
|
---|
[bd41ac52] | 549 | ts1->tv_sec -= ts2->tv_sec;
|
---|
| 550 | ts1->tv_nsec -= ts2->tv_nsec;
|
---|
| 551 | ts_normalize(ts1);
|
---|
[daa90e8] | 552 | }
|
---|
| 553 |
|
---|
[bd41ac52] | 554 | /** Decide if one timespec is greater than the other.
|
---|
[daa90e8] | 555 | *
|
---|
[bd41ac52] | 556 | * @param ts1 First timespec.
|
---|
| 557 | * @param ts2 Second timespec.
|
---|
[2c577e0b] | 558 | *
|
---|
[bd41ac52] | 559 | * @return True if ts1 is greater than ts2.
|
---|
| 560 | * @return False otherwise.
|
---|
[daa90e8] | 561 | *
|
---|
| 562 | */
|
---|
[bd41ac52] | 563 | bool ts_gt(const struct timespec *ts1, const struct timespec *ts2)
|
---|
[daa90e8] | 564 | {
|
---|
[bd41ac52] | 565 | if (ts1->tv_sec > ts2->tv_sec)
|
---|
[2c577e0b] | 566 | return true;
|
---|
[a35b458] | 567 |
|
---|
[bd41ac52] | 568 | if ((ts1->tv_sec == ts2->tv_sec) && (ts1->tv_nsec > ts2->tv_nsec))
|
---|
[2c577e0b] | 569 | return true;
|
---|
[a35b458] | 570 |
|
---|
[2c577e0b] | 571 | return false;
|
---|
[daa90e8] | 572 | }
|
---|
| 573 |
|
---|
[bd41ac52] | 574 | /** Decide if one timespec is greater than or equal to the other.
|
---|
[daa90e8] | 575 | *
|
---|
[bd41ac52] | 576 | * @param ts1 First timespec.
|
---|
| 577 | * @param ts2 Second timespec.
|
---|
[2c577e0b] | 578 | *
|
---|
[bd41ac52] | 579 | * @return True if ts1 is greater than or equal to ts2.
|
---|
| 580 | * @return False otherwise.
|
---|
[daa90e8] | 581 | *
|
---|
| 582 | */
|
---|
[bd41ac52] | 583 | bool ts_gteq(const struct timespec *ts1, const struct timespec *ts2)
|
---|
[daa90e8] | 584 | {
|
---|
[bd41ac52] | 585 | if (ts1->tv_sec > ts2->tv_sec)
|
---|
[2c577e0b] | 586 | return true;
|
---|
[a35b458] | 587 |
|
---|
[bd41ac52] | 588 | if ((ts1->tv_sec == ts2->tv_sec) && (ts1->tv_nsec >= ts2->tv_nsec))
|
---|
[2c577e0b] | 589 | return true;
|
---|
[a35b458] | 590 |
|
---|
[2c577e0b] | 591 | return false;
|
---|
[daa90e8] | 592 | }
|
---|
| 593 |
|
---|
[bd41ac52] | 594 | /** Get real time from a RTC service.
|
---|
[2c577e0b] | 595 | *
|
---|
[bd41ac52] | 596 | * @param[out] ts Timespec to hold time read from the RTC service (if
|
---|
| 597 | * available). If no such service exists, the returned time
|
---|
| 598 | * corresponds to system uptime.
|
---|
[0b99e40] | 599 | */
|
---|
[bd41ac52] | 600 | void getrealtime(struct timespec *ts)
|
---|
[3a58347] | 601 | {
|
---|
| 602 | if (clock_conn == NULL) {
|
---|
[1ab8539] | 603 | category_id_t cat_id;
|
---|
[b7fd2a0] | 604 | errno_t rc = loc_category_get_id("clock", &cat_id, IPC_FLAG_BLOCKING);
|
---|
[3a58347] | 605 | if (rc != EOK)
|
---|
[1ab8539] | 606 | goto fallback;
|
---|
[a35b458] | 607 |
|
---|
[1ab8539] | 608 | service_id_t *svc_ids;
|
---|
| 609 | size_t svc_cnt;
|
---|
[3a58347] | 610 | rc = loc_category_get_svcs(cat_id, &svc_ids, &svc_cnt);
|
---|
| 611 | if (rc != EOK)
|
---|
[1ab8539] | 612 | goto fallback;
|
---|
[a35b458] | 613 |
|
---|
[3a58347] | 614 | if (svc_cnt == 0)
|
---|
[1ab8539] | 615 | goto fallback;
|
---|
[a35b458] | 616 |
|
---|
[1ab8539] | 617 | char *svc_name;
|
---|
[3a58347] | 618 | rc = loc_service_get_name(svc_ids[0], &svc_name);
|
---|
[1ab8539] | 619 | free(svc_ids);
|
---|
[3a58347] | 620 | if (rc != EOK)
|
---|
[1ab8539] | 621 | goto fallback;
|
---|
[a35b458] | 622 |
|
---|
[1ab8539] | 623 | service_id_t svc_id;
|
---|
[3a58347] | 624 | rc = loc_service_get_id(svc_name, &svc_id, 0);
|
---|
[1ab8539] | 625 | free(svc_name);
|
---|
[3a58347] | 626 | if (rc != EOK)
|
---|
[1ab8539] | 627 | goto fallback;
|
---|
[a35b458] | 628 |
|
---|
[f9b2cb4c] | 629 | clock_conn = loc_service_connect(svc_id, INTERFACE_DDF,
|
---|
| 630 | IPC_FLAG_BLOCKING);
|
---|
[3a58347] | 631 | if (!clock_conn)
|
---|
[1ab8539] | 632 | goto fallback;
|
---|
[3a58347] | 633 | }
|
---|
[a35b458] | 634 |
|
---|
[1ab8539] | 635 | struct tm time;
|
---|
[b7fd2a0] | 636 | errno_t rc = clock_dev_time_get(clock_conn, &time);
|
---|
[3a58347] | 637 | if (rc != EOK)
|
---|
[1ab8539] | 638 | goto fallback;
|
---|
[a35b458] | 639 |
|
---|
[bd41ac52] | 640 | ts->tv_nsec = time.tm_nsec;
|
---|
| 641 | ts->tv_sec = mktime(&time);
|
---|
[a35b458] | 642 |
|
---|
[1ab8539] | 643 | return;
|
---|
[a35b458] | 644 |
|
---|
[1ab8539] | 645 | fallback:
|
---|
[bd41ac52] | 646 | getuptime(ts);
|
---|
[3a58347] | 647 | }
|
---|
| 648 |
|
---|
[bd41ac52] | 649 | /** Get system uptime.
|
---|
| 650 | *
|
---|
| 651 | * @param[out] ts Timespec to hold time current uptime.
|
---|
| 652 | *
|
---|
| 653 | * The time variables are memory mapped (read-only) from kernel which
|
---|
| 654 | * updates them periodically.
|
---|
| 655 | *
|
---|
| 656 | * As it is impossible to read 2 values atomically, we use a trick:
|
---|
| 657 | * First we read the seconds, then we read the microseconds, then we
|
---|
| 658 | * read the seconds again. If a second elapsed in the meantime, set
|
---|
| 659 | * the microseconds to zero.
|
---|
| 660 | *
|
---|
| 661 | * This assures that the values returned by two subsequent calls
|
---|
| 662 | * to getuptime() are monotonous.
|
---|
| 663 | *
|
---|
| 664 | */
|
---|
| 665 | void getuptime(struct timespec *ts)
|
---|
[0b99e40] | 666 | {
|
---|
[6119f24] | 667 | if (ktime == NULL) {
|
---|
| 668 | uintptr_t faddr;
|
---|
[b7fd2a0] | 669 | errno_t rc = sysinfo_get_value("clock.faddr", &faddr);
|
---|
[6119f24] | 670 | if (rc != EOK) {
|
---|
| 671 | errno = rc;
|
---|
[1ab8539] | 672 | goto fallback;
|
---|
[6119f24] | 673 | }
|
---|
[a35b458] | 674 |
|
---|
[bf9cb2f] | 675 | void *addr = AS_AREA_ANY;
|
---|
[8442d10] | 676 | rc = physmem_map(faddr, 1, AS_AREA_READ | AS_AREA_CACHEABLE,
|
---|
| 677 | &addr);
|
---|
[6119f24] | 678 | if (rc != EOK) {
|
---|
| 679 | as_area_destroy(addr);
|
---|
| 680 | errno = rc;
|
---|
[1ab8539] | 681 | goto fallback;
|
---|
[6119f24] | 682 | }
|
---|
[a35b458] | 683 |
|
---|
[6119f24] | 684 | ktime = addr;
|
---|
[0b99e40] | 685 | }
|
---|
[a35b458] | 686 |
|
---|
[2c577e0b] | 687 | sysarg_t s2 = ktime->seconds2;
|
---|
[a35b458] | 688 |
|
---|
[5bd03eb] | 689 | read_barrier();
|
---|
[bd41ac52] | 690 | ts->tv_nsec = USEC2NSEC(ktime->useconds);
|
---|
[a35b458] | 691 |
|
---|
[0b99e40] | 692 | read_barrier();
|
---|
[2c577e0b] | 693 | sysarg_t s1 = ktime->seconds1;
|
---|
[a35b458] | 694 |
|
---|
[2d1fde3b] | 695 | if (s1 != s2) {
|
---|
[bd41ac52] | 696 | ts->tv_sec = max(s1, s2);
|
---|
| 697 | ts->tv_nsec = 0;
|
---|
[2d1fde3b] | 698 | } else
|
---|
[bd41ac52] | 699 | ts->tv_sec = s1;
|
---|
[a35b458] | 700 |
|
---|
[1ab8539] | 701 | return;
|
---|
[a35b458] | 702 |
|
---|
[1ab8539] | 703 | fallback:
|
---|
[bd41ac52] | 704 | ts->tv_sec = 0;
|
---|
| 705 | ts->tv_nsec = 0;
|
---|
[0b99e40] | 706 | }
|
---|
[44c6d88d] | 707 |
|
---|
[813a703] | 708 | time_t time(time_t *tloc)
|
---|
| 709 | {
|
---|
[bd41ac52] | 710 | struct timespec ts;
|
---|
| 711 | getrealtime(&ts);
|
---|
[a35b458] | 712 |
|
---|
[813a703] | 713 | if (tloc)
|
---|
[bd41ac52] | 714 | *tloc = ts.tv_sec;
|
---|
[a35b458] | 715 |
|
---|
[bd41ac52] | 716 | return ts.tv_sec;
|
---|
[813a703] | 717 | }
|
---|
| 718 |
|
---|
[bd41ac52] | 719 | void udelay(sysarg_t time)
|
---|
[5fd3f2d] | 720 | {
|
---|
| 721 | (void) __SYSCALL1(SYS_THREAD_UDELAY, (sysarg_t) time);
|
---|
| 722 | }
|
---|
| 723 |
|
---|
[1ab8539] | 724 | /** Get time from broken-down time.
|
---|
| 725 | *
|
---|
| 726 | * First normalize the provided broken-down time
|
---|
| 727 | * (moves all values to their proper bounds) and
|
---|
| 728 | * then try to calculate the appropriate time_t
|
---|
| 729 | * representation.
|
---|
[c2b0e10] | 730 | *
|
---|
| 731 | * @param tm Broken-down time.
|
---|
[1ab8539] | 732 | *
|
---|
| 733 | * @return time_t representation of the time.
|
---|
| 734 | * @return Undefined value on overflow.
|
---|
| 735 | *
|
---|
[c2b0e10] | 736 | */
|
---|
| 737 | time_t mktime(struct tm *tm)
|
---|
| 738 | {
|
---|
| 739 | // TODO: take DST flag into account
|
---|
| 740 | // TODO: detect overflow
|
---|
[a35b458] | 741 |
|
---|
[7f9d97f3] | 742 | normalize_tm_time(tm, 0);
|
---|
[1ab8539] | 743 | return secs_since_epoch(tm);
|
---|
[c2b0e10] | 744 | }
|
---|
| 745 |
|
---|
[1ab8539] | 746 | /*
|
---|
| 747 | * FIXME: This requires POSIX-correct snprintf.
|
---|
| 748 | * Otherwise it won't work with non-ASCII chars.
|
---|
| 749 | */
|
---|
| 750 | #define APPEND(...) \
|
---|
| 751 | { \
|
---|
| 752 | consumed = snprintf(ptr, remaining, __VA_ARGS__); \
|
---|
| 753 | if (consumed >= remaining) \
|
---|
| 754 | return 0; \
|
---|
| 755 | \
|
---|
| 756 | ptr += consumed; \
|
---|
| 757 | remaining -= consumed; \
|
---|
| 758 | }
|
---|
| 759 |
|
---|
| 760 | #define RECURSE(fmt) \
|
---|
| 761 | { \
|
---|
| 762 | consumed = strftime(ptr, remaining, fmt, tm); \
|
---|
| 763 | if (consumed == 0) \
|
---|
| 764 | return 0; \
|
---|
| 765 | \
|
---|
| 766 | ptr += consumed; \
|
---|
| 767 | remaining -= consumed; \
|
---|
| 768 | }
|
---|
| 769 |
|
---|
| 770 | #define TO_12H(hour) \
|
---|
| 771 | (((hour) > 12) ? ((hour) - 12) : \
|
---|
| 772 | (((hour) == 0) ? 12 : (hour)))
|
---|
| 773 |
|
---|
| 774 | /** Convert time and date to a string.
|
---|
| 775 | *
|
---|
| 776 | * @param s Buffer to write string to.
|
---|
[c2b0e10] | 777 | * @param maxsize Size of the buffer.
|
---|
[1ab8539] | 778 | * @param format Format of the output.
|
---|
| 779 | * @param tm Broken-down time to format.
|
---|
| 780 | *
|
---|
[c2b0e10] | 781 | * @return Number of bytes written.
|
---|
[1ab8539] | 782 | *
|
---|
[c2b0e10] | 783 | */
|
---|
| 784 | size_t strftime(char *restrict s, size_t maxsize,
|
---|
| 785 | const char *restrict format, const struct tm *restrict tm)
|
---|
| 786 | {
|
---|
| 787 | assert(s != NULL);
|
---|
| 788 | assert(format != NULL);
|
---|
| 789 | assert(tm != NULL);
|
---|
[a35b458] | 790 |
|
---|
[c2b0e10] | 791 | // TODO: use locale
|
---|
[a35b458] | 792 |
|
---|
[c2b0e10] | 793 | static const char *wday_abbr[] = {
|
---|
| 794 | "Sun", "Mon", "Tue", "Wed", "Thu", "Fri", "Sat"
|
---|
| 795 | };
|
---|
[a35b458] | 796 |
|
---|
[c2b0e10] | 797 | static const char *wday[] = {
|
---|
| 798 | "Sunday", "Monday", "Tuesday", "Wednesday",
|
---|
| 799 | "Thursday", "Friday", "Saturday"
|
---|
| 800 | };
|
---|
[a35b458] | 801 |
|
---|
[c2b0e10] | 802 | static const char *mon_abbr[] = {
|
---|
| 803 | "Jan", "Feb", "Mar", "Apr", "May", "Jun",
|
---|
| 804 | "Jul", "Aug", "Sep", "Oct", "Nov", "Dec"
|
---|
| 805 | };
|
---|
[a35b458] | 806 |
|
---|
[c2b0e10] | 807 | static const char *mon[] = {
|
---|
| 808 | "January", "February", "March", "April", "May", "June", "July",
|
---|
| 809 | "August", "September", "October", "November", "December"
|
---|
| 810 | };
|
---|
[a35b458] | 811 |
|
---|
[1ab8539] | 812 | if (maxsize < 1)
|
---|
[c2b0e10] | 813 | return 0;
|
---|
[a35b458] | 814 |
|
---|
[c2b0e10] | 815 | char *ptr = s;
|
---|
| 816 | size_t consumed;
|
---|
| 817 | size_t remaining = maxsize;
|
---|
[a35b458] | 818 |
|
---|
[c2b0e10] | 819 | while (*format != '\0') {
|
---|
| 820 | if (*format != '%') {
|
---|
[1ab8539] | 821 | APPEND("%c", *format);
|
---|
[c2b0e10] | 822 | format++;
|
---|
| 823 | continue;
|
---|
| 824 | }
|
---|
[a35b458] | 825 |
|
---|
[c2b0e10] | 826 | format++;
|
---|
[1ab8539] | 827 | if ((*format == '0') || (*format == '+')) {
|
---|
[c2b0e10] | 828 | // TODO: padding
|
---|
| 829 | format++;
|
---|
| 830 | }
|
---|
[a35b458] | 831 |
|
---|
[c2b0e10] | 832 | while (isdigit(*format)) {
|
---|
| 833 | // TODO: padding
|
---|
| 834 | format++;
|
---|
| 835 | }
|
---|
[a35b458] | 836 |
|
---|
[1ab8539] | 837 | if ((*format == 'O') || (*format == 'E')) {
|
---|
[c2b0e10] | 838 | // TODO: locale's alternative format
|
---|
| 839 | format++;
|
---|
| 840 | }
|
---|
[a35b458] | 841 |
|
---|
[c2b0e10] | 842 | switch (*format) {
|
---|
| 843 | case 'a':
|
---|
[1ab8539] | 844 | APPEND("%s", wday_abbr[tm->tm_wday]);
|
---|
| 845 | break;
|
---|
[c2b0e10] | 846 | case 'A':
|
---|
[1ab8539] | 847 | APPEND("%s", wday[tm->tm_wday]);
|
---|
| 848 | break;
|
---|
[c2b0e10] | 849 | case 'b':
|
---|
[1ab8539] | 850 | APPEND("%s", mon_abbr[tm->tm_mon]);
|
---|
| 851 | break;
|
---|
[c2b0e10] | 852 | case 'B':
|
---|
[1ab8539] | 853 | APPEND("%s", mon[tm->tm_mon]);
|
---|
| 854 | break;
|
---|
[c2b0e10] | 855 | case 'c':
|
---|
| 856 | // TODO: locale-specific datetime format
|
---|
[1ab8539] | 857 | RECURSE("%Y-%m-%d %H:%M:%S");
|
---|
| 858 | break;
|
---|
[c2b0e10] | 859 | case 'C':
|
---|
[1ab8539] | 860 | APPEND("%02d", (1900 + tm->tm_year) / 100);
|
---|
| 861 | break;
|
---|
[c2b0e10] | 862 | case 'd':
|
---|
[1ab8539] | 863 | APPEND("%02d", tm->tm_mday);
|
---|
| 864 | break;
|
---|
[c2b0e10] | 865 | case 'D':
|
---|
[1ab8539] | 866 | RECURSE("%m/%d/%y");
|
---|
| 867 | break;
|
---|
[c2b0e10] | 868 | case 'e':
|
---|
[1ab8539] | 869 | APPEND("%2d", tm->tm_mday);
|
---|
| 870 | break;
|
---|
[c2b0e10] | 871 | case 'F':
|
---|
[1ab8539] | 872 | RECURSE("%+4Y-%m-%d");
|
---|
| 873 | break;
|
---|
[c2b0e10] | 874 | case 'g':
|
---|
[1ab8539] | 875 | APPEND("%02d", wbyear(tm) % 100);
|
---|
| 876 | break;
|
---|
[c2b0e10] | 877 | case 'G':
|
---|
[1ab8539] | 878 | APPEND("%d", wbyear(tm));
|
---|
| 879 | break;
|
---|
[c2b0e10] | 880 | case 'h':
|
---|
[1ab8539] | 881 | RECURSE("%b");
|
---|
| 882 | break;
|
---|
[c2b0e10] | 883 | case 'H':
|
---|
[1ab8539] | 884 | APPEND("%02d", tm->tm_hour);
|
---|
| 885 | break;
|
---|
[c2b0e10] | 886 | case 'I':
|
---|
[1ab8539] | 887 | APPEND("%02d", TO_12H(tm->tm_hour));
|
---|
| 888 | break;
|
---|
[c2b0e10] | 889 | case 'j':
|
---|
[1ab8539] | 890 | APPEND("%03d", tm->tm_yday);
|
---|
| 891 | break;
|
---|
[c2b0e10] | 892 | case 'k':
|
---|
[1ab8539] | 893 | APPEND("%2d", tm->tm_hour);
|
---|
| 894 | break;
|
---|
[c2b0e10] | 895 | case 'l':
|
---|
[1ab8539] | 896 | APPEND("%2d", TO_12H(tm->tm_hour));
|
---|
| 897 | break;
|
---|
[c2b0e10] | 898 | case 'm':
|
---|
[1ab8539] | 899 | APPEND("%02d", tm->tm_mon);
|
---|
| 900 | break;
|
---|
[c2b0e10] | 901 | case 'M':
|
---|
[1ab8539] | 902 | APPEND("%02d", tm->tm_min);
|
---|
| 903 | break;
|
---|
[c2b0e10] | 904 | case 'n':
|
---|
[1ab8539] | 905 | APPEND("\n");
|
---|
| 906 | break;
|
---|
[c2b0e10] | 907 | case 'p':
|
---|
[1ab8539] | 908 | APPEND("%s", tm->tm_hour < 12 ? "AM" : "PM");
|
---|
| 909 | break;
|
---|
[c2b0e10] | 910 | case 'P':
|
---|
[1ab8539] | 911 | APPEND("%s", tm->tm_hour < 12 ? "am" : "PM");
|
---|
| 912 | break;
|
---|
[c2b0e10] | 913 | case 'r':
|
---|
[1ab8539] | 914 | RECURSE("%I:%M:%S %p");
|
---|
| 915 | break;
|
---|
[c2b0e10] | 916 | case 'R':
|
---|
[1ab8539] | 917 | RECURSE("%H:%M");
|
---|
| 918 | break;
|
---|
[c2b0e10] | 919 | case 's':
|
---|
[bd41ac52] | 920 | APPEND("%lld", secs_since_epoch(tm));
|
---|
[1ab8539] | 921 | break;
|
---|
[c2b0e10] | 922 | case 'S':
|
---|
[1ab8539] | 923 | APPEND("%02d", tm->tm_sec);
|
---|
| 924 | break;
|
---|
[c2b0e10] | 925 | case 't':
|
---|
[1ab8539] | 926 | APPEND("\t");
|
---|
| 927 | break;
|
---|
[c2b0e10] | 928 | case 'T':
|
---|
[1ab8539] | 929 | RECURSE("%H:%M:%S");
|
---|
| 930 | break;
|
---|
[c2b0e10] | 931 | case 'u':
|
---|
[1ab8539] | 932 | APPEND("%d", (tm->tm_wday == 0) ? 7 : tm->tm_wday);
|
---|
[c2b0e10] | 933 | break;
|
---|
| 934 | case 'U':
|
---|
[1ab8539] | 935 | APPEND("%02d", sun_week_number(tm));
|
---|
| 936 | break;
|
---|
[c2b0e10] | 937 | case 'V':
|
---|
[1ab8539] | 938 | APPEND("%02d", iso_week_number(tm));
|
---|
| 939 | break;
|
---|
[c2b0e10] | 940 | case 'w':
|
---|
[1ab8539] | 941 | APPEND("%d", tm->tm_wday);
|
---|
| 942 | break;
|
---|
[c2b0e10] | 943 | case 'W':
|
---|
[1ab8539] | 944 | APPEND("%02d", mon_week_number(tm));
|
---|
| 945 | break;
|
---|
[c2b0e10] | 946 | case 'x':
|
---|
| 947 | // TODO: locale-specific date format
|
---|
[1ab8539] | 948 | RECURSE("%Y-%m-%d");
|
---|
| 949 | break;
|
---|
[c2b0e10] | 950 | case 'X':
|
---|
| 951 | // TODO: locale-specific time format
|
---|
[1ab8539] | 952 | RECURSE("%H:%M:%S");
|
---|
| 953 | break;
|
---|
[c2b0e10] | 954 | case 'y':
|
---|
[1ab8539] | 955 | APPEND("%02d", tm->tm_year % 100);
|
---|
| 956 | break;
|
---|
[c2b0e10] | 957 | case 'Y':
|
---|
[1ab8539] | 958 | APPEND("%d", 1900 + tm->tm_year);
|
---|
| 959 | break;
|
---|
[c2b0e10] | 960 | case 'z':
|
---|
| 961 | // TODO: timezone
|
---|
| 962 | break;
|
---|
| 963 | case 'Z':
|
---|
| 964 | // TODO: timezone
|
---|
| 965 | break;
|
---|
| 966 | case '%':
|
---|
[1ab8539] | 967 | APPEND("%%");
|
---|
[c2b0e10] | 968 | break;
|
---|
| 969 | default:
|
---|
| 970 | /* Invalid specifier, print verbatim. */
|
---|
[1ab8539] | 971 | while (*format != '%')
|
---|
[c2b0e10] | 972 | format--;
|
---|
[a35b458] | 973 |
|
---|
[1ab8539] | 974 | APPEND("%%");
|
---|
[c2b0e10] | 975 | break;
|
---|
| 976 | }
|
---|
[a35b458] | 977 |
|
---|
[c2b0e10] | 978 | format++;
|
---|
| 979 | }
|
---|
[a35b458] | 980 |
|
---|
[c2b0e10] | 981 | return maxsize - remaining;
|
---|
| 982 | }
|
---|
| 983 |
|
---|
[1ab8539] | 984 | /** Convert a time value to a broken-down UTC time/
|
---|
[f7ea5400] | 985 | *
|
---|
[1ab8539] | 986 | * @param time Time to convert
|
---|
| 987 | * @param result Structure to store the result to
|
---|
| 988 | *
|
---|
[cde999a] | 989 | * @return EOK or an error code
|
---|
[f7ea5400] | 990 | *
|
---|
| 991 | */
|
---|
[b7fd2a0] | 992 | errno_t time_utc2tm(const time_t time, struct tm *restrict result)
|
---|
[f7ea5400] | 993 | {
|
---|
| 994 | assert(result != NULL);
|
---|
[a35b458] | 995 |
|
---|
[5b3394c] | 996 | /* Set result to epoch. */
|
---|
[bd41ac52] | 997 | result->tm_nsec = 0;
|
---|
[f7ea5400] | 998 | result->tm_sec = 0;
|
---|
| 999 | result->tm_min = 0;
|
---|
| 1000 | result->tm_hour = 0;
|
---|
| 1001 | result->tm_mday = 1;
|
---|
| 1002 | result->tm_mon = 0;
|
---|
| 1003 | result->tm_year = 70; /* 1970 */
|
---|
[a35b458] | 1004 |
|
---|
[7f9d97f3] | 1005 | if (normalize_tm_time(result, time) == -1)
|
---|
[f7ea5400] | 1006 | return EOVERFLOW;
|
---|
[a35b458] | 1007 |
|
---|
[f7ea5400] | 1008 | return EOK;
|
---|
[5b3394c] | 1009 | }
|
---|
| 1010 |
|
---|
[1ab8539] | 1011 | /** Convert a time value to a NULL-terminated string.
|
---|
| 1012 | *
|
---|
| 1013 | * The format is "Wed Jun 30 21:49:08 1993\n" expressed in UTC.
|
---|
| 1014 | *
|
---|
| 1015 | * @param time Time to convert.
|
---|
| 1016 | * @param buf Buffer to store the string to, must be at least
|
---|
| 1017 | * ASCTIME_BUF_LEN bytes long.
|
---|
[f7ea5400] | 1018 | *
|
---|
[cde999a] | 1019 | * @return EOK or an error code.
|
---|
[f7ea5400] | 1020 | *
|
---|
| 1021 | */
|
---|
[b7fd2a0] | 1022 | errno_t time_utc2str(const time_t time, char *restrict buf)
|
---|
[f7ea5400] | 1023 | {
|
---|
[1ab8539] | 1024 | struct tm tm;
|
---|
[b7fd2a0] | 1025 | errno_t ret = time_utc2tm(time, &tm);
|
---|
[1ab8539] | 1026 | if (ret != EOK)
|
---|
| 1027 | return ret;
|
---|
[a35b458] | 1028 |
|
---|
[1ab8539] | 1029 | time_tm2str(&tm, buf);
|
---|
[f7ea5400] | 1030 | return EOK;
|
---|
| 1031 | }
|
---|
| 1032 |
|
---|
[1ab8539] | 1033 | /** Convert broken-down time to a NULL-terminated string.
|
---|
| 1034 | *
|
---|
| 1035 | * The format is "Sun Jan 1 00:00:00 1970\n". (Obsolete)
|
---|
[8219eb9] | 1036 | *
|
---|
| 1037 | * @param timeptr Broken-down time structure.
|
---|
[1ab8539] | 1038 | * @param buf Buffer to store string to, must be at least
|
---|
| 1039 | * ASCTIME_BUF_LEN bytes long.
|
---|
| 1040 | *
|
---|
[8219eb9] | 1041 | */
|
---|
[664fc031] | 1042 | void time_tm2str(const struct tm *restrict timeptr, char *restrict buf)
|
---|
[8219eb9] | 1043 | {
|
---|
| 1044 | assert(timeptr != NULL);
|
---|
[f7ea5400] | 1045 | assert(buf != NULL);
|
---|
[a35b458] | 1046 |
|
---|
[8219eb9] | 1047 | static const char *wday[] = {
|
---|
| 1048 | "Sun", "Mon", "Tue", "Wed", "Thu", "Fri", "Sat"
|
---|
| 1049 | };
|
---|
[a35b458] | 1050 |
|
---|
[8219eb9] | 1051 | static const char *mon[] = {
|
---|
| 1052 | "Jan", "Feb", "Mar", "Apr", "May", "Jun",
|
---|
| 1053 | "Jul", "Aug", "Sep", "Oct", "Nov", "Dec"
|
---|
| 1054 | };
|
---|
[a35b458] | 1055 |
|
---|
[8219eb9] | 1056 | snprintf(buf, ASCTIME_BUF_LEN, "%s %s %2d %02d:%02d:%02d %d\n",
|
---|
| 1057 | wday[timeptr->tm_wday],
|
---|
| 1058 | mon[timeptr->tm_mon],
|
---|
| 1059 | timeptr->tm_mday, timeptr->tm_hour,
|
---|
| 1060 | timeptr->tm_min, timeptr->tm_sec,
|
---|
| 1061 | 1900 + timeptr->tm_year);
|
---|
| 1062 | }
|
---|
| 1063 |
|
---|
[1ab8539] | 1064 | /** Converts a time value to a broken-down local time.
|
---|
| 1065 | *
|
---|
| 1066 | * Time is expressed relative to the user's specified timezone.
|
---|
[f7ea5400] | 1067 | *
|
---|
[7f9d97f3] | 1068 | * @param tv Timeval to convert.
|
---|
[1ab8539] | 1069 | * @param result Structure to store the result to.
|
---|
| 1070 | *
|
---|
[cde999a] | 1071 | * @return EOK on success or an error code.
|
---|
[f6cb995] | 1072 | *
|
---|
| 1073 | */
|
---|
[bd41ac52] | 1074 | errno_t time_ts2tm(const struct timespec *ts, struct tm *restrict result)
|
---|
[f6cb995] | 1075 | {
|
---|
[1ab8539] | 1076 | // TODO: Deal with timezones.
|
---|
| 1077 | // Currently assumes system and all times are in UTC
|
---|
[a35b458] | 1078 |
|
---|
[f6cb995] | 1079 | /* Set result to epoch. */
|
---|
[bd41ac52] | 1080 | result->tm_nsec = 0;
|
---|
[f7ea5400] | 1081 | result->tm_sec = 0;
|
---|
| 1082 | result->tm_min = 0;
|
---|
| 1083 | result->tm_hour = 0;
|
---|
| 1084 | result->tm_mday = 1;
|
---|
| 1085 | result->tm_mon = 0;
|
---|
| 1086 | result->tm_year = 70; /* 1970 */
|
---|
[a35b458] | 1087 |
|
---|
[bd41ac52] | 1088 | if (normalize_tm_ts(result, ts) == -1)
|
---|
[f7ea5400] | 1089 | return EOVERFLOW;
|
---|
[a35b458] | 1090 |
|
---|
[f7ea5400] | 1091 | return EOK;
|
---|
[f6cb995] | 1092 | }
|
---|
[c2b0e10] | 1093 |
|
---|
[7f9d97f3] | 1094 | /** Converts a time value to a broken-down local time.
|
---|
| 1095 | *
|
---|
| 1096 | * Time is expressed relative to the user's specified timezone.
|
---|
| 1097 | *
|
---|
| 1098 | * @param timer Time to convert.
|
---|
| 1099 | * @param result Structure to store the result to.
|
---|
| 1100 | *
|
---|
[cde999a] | 1101 | * @return EOK on success or an error code.
|
---|
[7f9d97f3] | 1102 | *
|
---|
| 1103 | */
|
---|
[b7fd2a0] | 1104 | errno_t time_local2tm(const time_t time, struct tm *restrict result)
|
---|
[7f9d97f3] | 1105 | {
|
---|
[bd41ac52] | 1106 | struct timespec ts = {
|
---|
[7f9d97f3] | 1107 | .tv_sec = time,
|
---|
[bd41ac52] | 1108 | .tv_nsec = 0
|
---|
[7f9d97f3] | 1109 | };
|
---|
| 1110 |
|
---|
[bd41ac52] | 1111 | return time_ts2tm(&ts, result);
|
---|
[7f9d97f3] | 1112 | }
|
---|
| 1113 |
|
---|
[1ab8539] | 1114 | /** Convert the calendar time to a NULL-terminated string.
|
---|
| 1115 | *
|
---|
| 1116 | * The format is "Wed Jun 30 21:49:08 1993\n" expressed relative to the
|
---|
[f7ea5400] | 1117 | * user's specified timezone.
|
---|
| 1118 | *
|
---|
[1ab8539] | 1119 | * @param timer Time to convert.
|
---|
| 1120 | * @param buf Buffer to store the string to. Must be at least
|
---|
| 1121 | * ASCTIME_BUF_LEN bytes long.
|
---|
| 1122 | *
|
---|
[cde999a] | 1123 | * @return EOK on success or an error code.
|
---|
[1ab8539] | 1124 | *
|
---|
[56b308e] | 1125 | */
|
---|
[b7fd2a0] | 1126 | errno_t time_local2str(const time_t time, char *buf)
|
---|
[56b308e] | 1127 | {
|
---|
[f7ea5400] | 1128 | struct tm loctime;
|
---|
[b7fd2a0] | 1129 | errno_t ret = time_local2tm(time, &loctime);
|
---|
[1ab8539] | 1130 | if (ret != EOK)
|
---|
| 1131 | return ret;
|
---|
[a35b458] | 1132 |
|
---|
[664fc031] | 1133 | time_tm2str(&loctime, buf);
|
---|
[f7ea5400] | 1134 | return EOK;
|
---|
[56b308e] | 1135 | }
|
---|
| 1136 |
|
---|
[1ab8539] | 1137 | /** Calculate the difference between two times, in seconds.
|
---|
| 1138 | *
|
---|
[d3e3a71] | 1139 | * @param time1 First time.
|
---|
| 1140 | * @param time0 Second time.
|
---|
[1ab8539] | 1141 | *
|
---|
| 1142 | * @return Time difference in seconds.
|
---|
| 1143 | *
|
---|
[d3e3a71] | 1144 | */
|
---|
| 1145 | double difftime(time_t time1, time_t time0)
|
---|
| 1146 | {
|
---|
| 1147 | return (double) (time1 - time0);
|
---|
| 1148 | }
|
---|
| 1149 |
|
---|
[a46da63] | 1150 | /** @}
|
---|
[b2951e2] | 1151 | */
|
---|