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strptime.c revision 1.62.6.1
      1  1.62.6.1    martin /*	$NetBSD: strptime.c,v 1.62.6.1 2024/08/24 16:15:40 martin Exp $	*/
      2       1.1       mrg 
      3       1.3    kleink /*-
      4      1.27  ginsbach  * Copyright (c) 1997, 1998, 2005, 2008 The NetBSD Foundation, Inc.
      5       1.3    kleink  * All rights reserved.
      6       1.3    kleink  *
      7       1.3    kleink  * This code was contributed to The NetBSD Foundation by Klaus Klein.
      8      1.24       dsl  * Heavily optimised by David Laight
      9       1.1       mrg  *
     10       1.3    kleink  * Redistribution and use in source and binary forms, with or without
     11       1.1       mrg  * modification, are permitted provided that the following conditions
     12       1.1       mrg  * are met:
     13       1.1       mrg  * 1. Redistributions of source code must retain the above copyright
     14       1.1       mrg  *    notice, this list of conditions and the following disclaimer.
     15       1.1       mrg  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.3    kleink  *    notice, this list of conditions and the following disclaimer in the
     17       1.3    kleink  *    documentation and/or other materials provided with the distribution.
     18       1.1       mrg  *
     19       1.3    kleink  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.3    kleink  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.3    kleink  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.3    kleink  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.3    kleink  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.1       mrg  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.3    kleink  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.3    kleink  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.3    kleink  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.3    kleink  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.3    kleink  * POSSIBILITY OF SUCH DAMAGE.
     30       1.1       mrg  */
     31       1.1       mrg 
     32       1.6  christos #include <sys/cdefs.h>
     33       1.3    kleink #if defined(LIBC_SCCS) && !defined(lint)
     34  1.62.6.1    martin __RCSID("$NetBSD: strptime.c,v 1.62.6.1 2024/08/24 16:15:40 martin Exp $");
     35       1.1       mrg #endif
     36       1.1       mrg 
     37       1.7       jtc #include "namespace.h"
     38       1.3    kleink #include <sys/localedef.h>
     39      1.40  christos #include <sys/types.h>
     40       1.3    kleink #include <ctype.h>
     41       1.1       mrg #include <locale.h>
     42       1.3    kleink #include <string.h>
     43       1.1       mrg #include <time.h>
     44      1.12   mycroft #include <tzfile.h>
     45      1.29  christos #include "private.h"
     46      1.37     joerg #include "setlocale_local.h"
     47       1.7       jtc 
     48       1.7       jtc #ifdef __weak_alias
     49      1.19   mycroft __weak_alias(strptime,_strptime)
     50      1.37     joerg __weak_alias(strptime_l, _strptime_l)
     51       1.7       jtc #endif
     52       1.3    kleink 
     53      1.46  ginsbach static const u_char *conv_num(const unsigned char *, int *, uint, uint);
     54      1.46  ginsbach static const u_char *find_string(const u_char *, int *, const char * const *,
     55      1.46  ginsbach 	const char * const *, int);
     56      1.46  ginsbach 
     57      1.37     joerg #define _TIME_LOCALE(loc) \
     58      1.37     joerg     ((_TimeLocale *)((loc)->part_impl[(size_t)LC_TIME]))
     59       1.3    kleink 
     60       1.3    kleink /*
     61       1.3    kleink  * We do not implement alternate representations. However, we always
     62       1.3    kleink  * check whether a given modifier is allowed for a certain conversion.
     63       1.3    kleink  */
     64      1.16    kleink #define ALT_E			0x01
     65      1.16    kleink #define ALT_O			0x02
     66      1.47  ginsbach #define LEGAL_ALT(x)		{ if (alt_format & ~(x)) return NULL; }
     67       1.3    kleink 
     68      1.47  ginsbach #define S_YEAR			(1 << 0)
     69      1.47  ginsbach #define S_MON			(1 << 1)
     70      1.47  ginsbach #define S_YDAY			(1 << 2)
     71      1.47  ginsbach #define S_MDAY			(1 << 3)
     72      1.47  ginsbach #define S_WDAY			(1 << 4)
     73      1.48  ginsbach #define S_HOUR			(1 << 5)
     74      1.47  ginsbach 
     75      1.47  ginsbach #define HAVE_MDAY(s)		(s & S_MDAY)
     76      1.47  ginsbach #define HAVE_MON(s)		(s & S_MON)
     77      1.47  ginsbach #define HAVE_WDAY(s)		(s & S_WDAY)
     78      1.47  ginsbach #define HAVE_YDAY(s)		(s & S_YDAY)
     79      1.47  ginsbach #define HAVE_YEAR(s)		(s & S_YEAR)
     80      1.48  ginsbach #define HAVE_HOUR(s)		(s & S_HOUR)
     81      1.42  ginsbach 
     82      1.29  christos static char utc[] = { "UTC" };
     83      1.32  ginsbach /* RFC-822/RFC-2822 */
     84      1.32  ginsbach static const char * const nast[5] = {
     85      1.32  ginsbach        "EST",    "CST",    "MST",    "PST",    "\0\0\0"
     86      1.32  ginsbach };
     87      1.32  ginsbach static const char * const nadt[5] = {
     88      1.32  ginsbach        "EDT",    "CDT",    "MDT",    "PDT",    "\0\0\0"
     89      1.32  ginsbach };
     90       1.3    kleink 
     91      1.46  ginsbach /*
     92      1.46  ginsbach  * Table to determine the ordinal date for the start of a month.
     93      1.46  ginsbach  * Ref: http://en.wikipedia.org/wiki/ISO_week_date
     94      1.46  ginsbach  */
     95      1.40  christos static const int start_of_month[2][13] = {
     96      1.46  ginsbach 	/* non-leap year */
     97      1.40  christos 	{ 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334, 365 },
     98      1.46  ginsbach 	/* leap year */
     99      1.40  christos 	{ 0, 31, 60, 91, 121, 152, 182, 213, 244, 274, 305, 335, 366 }
    100      1.40  christos };
    101      1.40  christos 
    102      1.40  christos /*
    103      1.40  christos  * Calculate the week day of the first day of a year. Valid for
    104      1.40  christos  * the Gregorian calendar, which began Sept 14, 1752 in the UK
    105      1.40  christos  * and its colonies. Ref:
    106      1.40  christos  * http://en.wikipedia.org/wiki/Determination_of_the_day_of_the_week
    107      1.40  christos  */
    108      1.40  christos 
    109      1.40  christos static int
    110      1.40  christos first_wday_of(int yr)
    111      1.40  christos {
    112      1.40  christos 	return ((2 * (3 - (yr / 100) % 4)) + (yr % 100) + ((yr % 100) /  4) +
    113      1.43  ginsbach 	    (isleap(yr) ? 6 : 0) + 1) % 7;
    114      1.40  christos }
    115      1.40  christos 
    116      1.50  christos #define delim(p)	((p) == '\0' || isspace((unsigned char)(p)))
    117      1.50  christos 
    118      1.50  christos static int
    119      1.57  christos fromzone(const unsigned char **bp, struct tm *tm, int mandatory)
    120      1.50  christos {
    121      1.50  christos 	timezone_t tz;
    122      1.50  christos 	char buf[512], *p;
    123      1.57  christos 	const unsigned char *rp;
    124      1.50  christos 
    125      1.57  christos 	for (p = buf, rp = *bp; !delim(*rp) && p < &buf[sizeof(buf) - 1]; rp++)
    126      1.57  christos 		*p++ = *rp;
    127      1.50  christos 	*p = '\0';
    128      1.50  christos 
    129      1.57  christos 	if (mandatory)
    130      1.57  christos 		*bp = rp;
    131      1.59  christos 	if (!isalnum((unsigned char)*buf))
    132      1.59  christos 		return 0;
    133      1.50  christos 	tz = tzalloc(buf);
    134      1.50  christos 	if (tz == NULL)
    135      1.50  christos 		return 0;
    136      1.50  christos 
    137      1.57  christos 	*bp = rp;
    138      1.50  christos 	tm->tm_isdst = 0;	/* XXX */
    139      1.50  christos #ifdef TM_GMTOFF
    140      1.50  christos 	tm->TM_GMTOFF = tzgetgmtoff(tz, tm->tm_isdst);
    141      1.50  christos #endif
    142      1.50  christos #ifdef TM_ZONE
    143      1.50  christos 	// Can't use tzgetname() here because we are going to free()
    144      1.51  christos 	tm->TM_ZONE = NULL; /* XXX */
    145      1.50  christos #endif
    146      1.50  christos 	tzfree(tz);
    147      1.50  christos 	return 1;
    148      1.50  christos }
    149      1.50  christos 
    150      1.37     joerg char *
    151      1.37     joerg strptime(const char *buf, const char *fmt, struct tm *tm)
    152      1.37     joerg {
    153      1.38     joerg 	return strptime_l(buf, fmt, tm, _current_locale());
    154      1.37     joerg }
    155       1.1       mrg 
    156       1.2    kleink char *
    157      1.37     joerg strptime_l(const char *buf, const char *fmt, struct tm *tm, locale_t loc)
    158       1.1       mrg {
    159      1.20     itohy 	unsigned char c;
    160      1.50  christos 	const unsigned char *bp, *ep, *zname;
    161      1.41  ginsbach 	int alt_format, i, split_year = 0, neg = 0, state = 0,
    162      1.57  christos 	    day_offset = -1, week_offset = 0, offs, mandatory;
    163      1.23       dsl 	const char *new_fmt;
    164       1.3    kleink 
    165      1.22  christos 	bp = (const u_char *)buf;
    166       1.3    kleink 
    167      1.24       dsl 	while (bp != NULL && (c = *fmt++) != '\0') {
    168       1.3    kleink 		/* Clear `alternate' modifier prior to new conversion. */
    169       1.3    kleink 		alt_format = 0;
    170      1.23       dsl 		i = 0;
    171       1.3    kleink 
    172       1.3    kleink 		/* Eat up white-space. */
    173       1.3    kleink 		if (isspace(c)) {
    174       1.3    kleink 			while (isspace(*bp))
    175       1.3    kleink 				bp++;
    176       1.2    kleink 			continue;
    177       1.2    kleink 		}
    178      1.23       dsl 
    179      1.24       dsl 		if (c != '%')
    180       1.3    kleink 			goto literal;
    181       1.3    kleink 
    182       1.3    kleink 
    183       1.3    kleink again:		switch (c = *fmt++) {
    184       1.3    kleink 		case '%':	/* "%%" is converted to "%". */
    185       1.3    kleink literal:
    186      1.14        tv 			if (c != *bp++)
    187      1.24       dsl 				return NULL;
    188      1.23       dsl 			LEGAL_ALT(0);
    189      1.23       dsl 			continue;
    190       1.3    kleink 
    191       1.3    kleink 		/*
    192       1.3    kleink 		 * "Alternative" modifiers. Just set the appropriate flag
    193       1.3    kleink 		 * and start over again.
    194       1.3    kleink 		 */
    195       1.3    kleink 		case 'E':	/* "%E?" alternative conversion modifier. */
    196      1.16    kleink 			LEGAL_ALT(0);
    197      1.16    kleink 			alt_format |= ALT_E;
    198       1.3    kleink 			goto again;
    199       1.3    kleink 
    200       1.3    kleink 		case 'O':	/* "%O?" alternative conversion modifier. */
    201      1.16    kleink 			LEGAL_ALT(0);
    202      1.16    kleink 			alt_format |= ALT_O;
    203       1.3    kleink 			goto again;
    204      1.23       dsl 
    205       1.3    kleink 		/*
    206       1.3    kleink 		 * "Complex" conversion rules, implemented through recursion.
    207       1.3    kleink 		 */
    208       1.3    kleink 		case 'c':	/* Date and time, using the locale's format. */
    209      1.37     joerg 			new_fmt = _TIME_LOCALE(loc)->d_t_fmt;
    210      1.42  ginsbach 			state |= S_WDAY | S_MON | S_MDAY | S_YEAR;
    211      1.23       dsl 			goto recurse;
    212       1.3    kleink 
    213       1.3    kleink 		case 'D':	/* The date as "%m/%d/%y". */
    214      1.23       dsl 			new_fmt = "%m/%d/%y";
    215      1.16    kleink 			LEGAL_ALT(0);
    216      1.41  ginsbach 			state |= S_MON | S_MDAY | S_YEAR;
    217      1.23       dsl 			goto recurse;
    218      1.18        tv 
    219      1.27  ginsbach 		case 'F':	/* The date as "%Y-%m-%d". */
    220      1.27  ginsbach 			new_fmt = "%Y-%m-%d";
    221      1.27  ginsbach 			LEGAL_ALT(0);
    222      1.41  ginsbach 			state |= S_MON | S_MDAY | S_YEAR;
    223      1.27  ginsbach 			goto recurse;
    224      1.27  ginsbach 
    225       1.3    kleink 		case 'R':	/* The time as "%H:%M". */
    226      1.23       dsl 			new_fmt = "%H:%M";
    227      1.16    kleink 			LEGAL_ALT(0);
    228      1.23       dsl 			goto recurse;
    229       1.3    kleink 
    230       1.3    kleink 		case 'r':	/* The time in 12-hour clock representation. */
    231      1.37     joerg 			new_fmt = _TIME_LOCALE(loc)->t_fmt_ampm;
    232      1.16    kleink 			LEGAL_ALT(0);
    233      1.23       dsl 			goto recurse;
    234       1.3    kleink 
    235       1.3    kleink 		case 'T':	/* The time as "%H:%M:%S". */
    236      1.23       dsl 			new_fmt = "%H:%M:%S";
    237      1.16    kleink 			LEGAL_ALT(0);
    238      1.23       dsl 			goto recurse;
    239       1.3    kleink 
    240       1.3    kleink 		case 'X':	/* The time, using the locale's format. */
    241      1.37     joerg 			new_fmt = _TIME_LOCALE(loc)->t_fmt;
    242      1.23       dsl 			goto recurse;
    243       1.3    kleink 
    244       1.3    kleink 		case 'x':	/* The date, using the locale's format. */
    245      1.37     joerg 			new_fmt = _TIME_LOCALE(loc)->d_fmt;
    246      1.41  ginsbach 			state |= S_MON | S_MDAY | S_YEAR;
    247      1.23       dsl 		    recurse:
    248      1.23       dsl 			bp = (const u_char *)strptime((const char *)bp,
    249      1.23       dsl 							    new_fmt, tm);
    250      1.16    kleink 			LEGAL_ALT(ALT_E);
    251      1.23       dsl 			continue;
    252       1.3    kleink 
    253       1.3    kleink 		/*
    254       1.3    kleink 		 * "Elementary" conversion rules.
    255       1.3    kleink 		 */
    256       1.3    kleink 		case 'A':	/* The day of week, using the locale's form. */
    257       1.3    kleink 		case 'a':
    258      1.37     joerg 			bp = find_string(bp, &tm->tm_wday,
    259      1.37     joerg 			    _TIME_LOCALE(loc)->day, _TIME_LOCALE(loc)->abday, 7);
    260      1.16    kleink 			LEGAL_ALT(0);
    261      1.41  ginsbach 			state |= S_WDAY;
    262      1.23       dsl 			continue;
    263       1.2    kleink 
    264       1.3    kleink 		case 'B':	/* The month, using the locale's form. */
    265       1.3    kleink 		case 'b':
    266       1.3    kleink 		case 'h':
    267      1.37     joerg 			bp = find_string(bp, &tm->tm_mon,
    268      1.37     joerg 			    _TIME_LOCALE(loc)->mon, _TIME_LOCALE(loc)->abmon,
    269      1.37     joerg 			    12);
    270      1.16    kleink 			LEGAL_ALT(0);
    271      1.41  ginsbach 			state |= S_MON;
    272      1.23       dsl 			continue;
    273       1.2    kleink 
    274       1.3    kleink 		case 'C':	/* The century number. */
    275      1.24       dsl 			i = 20;
    276      1.23       dsl 			bp = conv_num(bp, &i, 0, 99);
    277       1.2    kleink 
    278      1.24       dsl 			i = i * 100 - TM_YEAR_BASE;
    279      1.24       dsl 			if (split_year)
    280      1.24       dsl 				i += tm->tm_year % 100;
    281      1.24       dsl 			split_year = 1;
    282      1.24       dsl 			tm->tm_year = i;
    283      1.23       dsl 			LEGAL_ALT(ALT_E);
    284      1.41  ginsbach 			state |= S_YEAR;
    285      1.23       dsl 			continue;
    286       1.2    kleink 
    287       1.3    kleink 		case 'd':	/* The day of month. */
    288       1.3    kleink 		case 'e':
    289      1.23       dsl 			bp = conv_num(bp, &tm->tm_mday, 1, 31);
    290      1.16    kleink 			LEGAL_ALT(ALT_O);
    291      1.41  ginsbach 			state |= S_MDAY;
    292      1.23       dsl 			continue;
    293       1.2    kleink 
    294       1.3    kleink 		case 'k':	/* The hour (24-hour clock representation). */
    295      1.16    kleink 			LEGAL_ALT(0);
    296       1.3    kleink 			/* FALLTHROUGH */
    297       1.3    kleink 		case 'H':
    298      1.23       dsl 			bp = conv_num(bp, &tm->tm_hour, 0, 23);
    299      1.16    kleink 			LEGAL_ALT(ALT_O);
    300      1.48  ginsbach 			state |= S_HOUR;
    301      1.23       dsl 			continue;
    302       1.2    kleink 
    303       1.3    kleink 		case 'l':	/* The hour (12-hour clock representation). */
    304      1.16    kleink 			LEGAL_ALT(0);
    305       1.3    kleink 			/* FALLTHROUGH */
    306       1.3    kleink 		case 'I':
    307      1.23       dsl 			bp = conv_num(bp, &tm->tm_hour, 1, 12);
    308      1.13        tv 			if (tm->tm_hour == 12)
    309      1.13        tv 				tm->tm_hour = 0;
    310      1.23       dsl 			LEGAL_ALT(ALT_O);
    311      1.48  ginsbach 			state |= S_HOUR;
    312      1.23       dsl 			continue;
    313       1.2    kleink 
    314       1.3    kleink 		case 'j':	/* The day of year. */
    315      1.23       dsl 			i = 1;
    316      1.23       dsl 			bp = conv_num(bp, &i, 1, 366);
    317      1.23       dsl 			tm->tm_yday = i - 1;
    318      1.16    kleink 			LEGAL_ALT(0);
    319      1.41  ginsbach 			state |= S_YDAY;
    320      1.23       dsl 			continue;
    321       1.2    kleink 
    322       1.3    kleink 		case 'M':	/* The minute. */
    323      1.23       dsl 			bp = conv_num(bp, &tm->tm_min, 0, 59);
    324      1.16    kleink 			LEGAL_ALT(ALT_O);
    325      1.23       dsl 			continue;
    326       1.2    kleink 
    327       1.3    kleink 		case 'm':	/* The month. */
    328      1.23       dsl 			i = 1;
    329      1.23       dsl 			bp = conv_num(bp, &i, 1, 12);
    330      1.23       dsl 			tm->tm_mon = i - 1;
    331      1.16    kleink 			LEGAL_ALT(ALT_O);
    332      1.41  ginsbach 			state |= S_MON;
    333      1.23       dsl 			continue;
    334       1.2    kleink 
    335       1.3    kleink 		case 'p':	/* The locale's equivalent of AM/PM. */
    336      1.37     joerg 			bp = find_string(bp, &i, _TIME_LOCALE(loc)->am_pm,
    337      1.37     joerg 			    NULL, 2);
    338      1.48  ginsbach 			if (HAVE_HOUR(state) && tm->tm_hour > 11)
    339      1.24       dsl 				return NULL;
    340      1.23       dsl 			tm->tm_hour += i * 12;
    341      1.16    kleink 			LEGAL_ALT(0);
    342      1.23       dsl 			continue;
    343       1.2    kleink 
    344       1.3    kleink 		case 'S':	/* The seconds. */
    345      1.23       dsl 			bp = conv_num(bp, &tm->tm_sec, 0, 61);
    346      1.16    kleink 			LEGAL_ALT(ALT_O);
    347      1.23       dsl 			continue;
    348       1.1       mrg 
    349  1.62.6.1    martin 		case 's': {	/* seconds since the epoch */
    350  1.62.6.1    martin 			const time_t TIME_MAX = __type_max(time_t);
    351  1.62.6.1    martin 			time_t sse, d;
    352      1.33  ginsbach 
    353  1.62.6.1    martin 			if (*bp < '0' || *bp > '9') {
    354  1.62.6.1    martin 				bp = NULL;
    355  1.62.6.1    martin 				continue;
    356  1.62.6.1    martin 			}
    357      1.33  ginsbach 
    358  1.62.6.1    martin 			sse = *bp++ - '0';
    359  1.62.6.1    martin 			while (*bp >= '0' && *bp <= '9') {
    360  1.62.6.1    martin 				d = *bp++ - '0';
    361  1.62.6.1    martin 				if (sse > TIME_MAX/10) {
    362      1.33  ginsbach 					bp = NULL;
    363  1.62.6.1    martin 					break;
    364      1.33  ginsbach 				}
    365  1.62.6.1    martin 				sse *= 10;
    366  1.62.6.1    martin 				if (sse > TIME_MAX - d) {
    367      1.33  ginsbach 					bp = NULL;
    368  1.62.6.1    martin 					break;
    369  1.62.6.1    martin 				}
    370  1.62.6.1    martin 				sse += d;
    371      1.33  ginsbach 			}
    372  1.62.6.1    martin 			if (bp == NULL)
    373  1.62.6.1    martin 				continue;
    374  1.62.6.1    martin 
    375  1.62.6.1    martin 			if (localtime_r(&sse, tm) == NULL)
    376  1.62.6.1    martin 				bp = NULL;
    377  1.62.6.1    martin 			else
    378  1.62.6.1    martin 				state |= S_YDAY | S_WDAY |
    379  1.62.6.1    martin 				    S_MON | S_MDAY | S_YEAR;
    380      1.33  ginsbach 			continue;
    381  1.62.6.1    martin 		}
    382      1.33  ginsbach 
    383       1.3    kleink 		case 'U':	/* The week of year, beginning on sunday. */
    384       1.3    kleink 		case 'W':	/* The week of year, beginning on monday. */
    385       1.3    kleink 			/*
    386      1.61  ginsbach 			 * This is bogus, as we can not assume any valid
    387       1.3    kleink 			 * information present in the tm structure at this
    388      1.61  ginsbach 			 * point to calculate a real value, so save the
    389      1.61  ginsbach 			 * week for now in case it can be used later.
    390       1.3    kleink 			 */
    391      1.40  christos 			bp = conv_num(bp, &i, 0, 53);
    392      1.40  christos 			LEGAL_ALT(ALT_O);
    393      1.40  christos 			if (c == 'U')
    394      1.40  christos 				day_offset = TM_SUNDAY;
    395      1.40  christos 			else
    396      1.40  christos 				day_offset = TM_MONDAY;
    397      1.40  christos 			week_offset = i;
    398      1.40  christos 			continue;
    399       1.2    kleink 
    400       1.3    kleink 		case 'w':	/* The day of week, beginning on sunday. */
    401      1.23       dsl 			bp = conv_num(bp, &tm->tm_wday, 0, 6);
    402      1.16    kleink 			LEGAL_ALT(ALT_O);
    403      1.41  ginsbach 			state |= S_WDAY;
    404      1.23       dsl 			continue;
    405       1.2    kleink 
    406      1.29  christos 		case 'u':	/* The day of week, monday = 1. */
    407      1.29  christos 			bp = conv_num(bp, &i, 1, 7);
    408      1.29  christos 			tm->tm_wday = i % 7;
    409      1.29  christos 			LEGAL_ALT(ALT_O);
    410      1.44  ginsbach 			state |= S_WDAY;
    411      1.29  christos 			continue;
    412      1.29  christos 
    413      1.29  christos 		case 'g':	/* The year corresponding to the ISO week
    414      1.29  christos 				 * number but without the century.
    415      1.29  christos 				 */
    416      1.29  christos 			bp = conv_num(bp, &i, 0, 99);
    417      1.29  christos 			continue;
    418      1.29  christos 
    419      1.29  christos 		case 'G':	/* The year corresponding to the ISO week
    420      1.29  christos 				 * number with century.
    421      1.29  christos 				 */
    422      1.29  christos 			do
    423      1.30  christos 				bp++;
    424      1.29  christos 			while (isdigit(*bp));
    425      1.29  christos 			continue;
    426      1.29  christos 
    427      1.29  christos 		case 'V':	/* The ISO 8601:1988 week number as decimal */
    428      1.29  christos 			bp = conv_num(bp, &i, 0, 53);
    429      1.29  christos 			continue;
    430      1.29  christos 
    431       1.3    kleink 		case 'Y':	/* The year. */
    432      1.24       dsl 			i = TM_YEAR_BASE;	/* just for data sanity... */
    433      1.23       dsl 			bp = conv_num(bp, &i, 0, 9999);
    434       1.8   mycroft 			tm->tm_year = i - TM_YEAR_BASE;
    435      1.23       dsl 			LEGAL_ALT(ALT_E);
    436      1.41  ginsbach 			state |= S_YEAR;
    437      1.23       dsl 			continue;
    438       1.2    kleink 
    439       1.9   mycroft 		case 'y':	/* The year within 100 years of the epoch. */
    440      1.24       dsl 			/* LEGAL_ALT(ALT_E | ALT_O); */
    441      1.23       dsl 			bp = conv_num(bp, &i, 0, 99);
    442       1.8   mycroft 
    443      1.24       dsl 			if (split_year)
    444      1.24       dsl 				/* preserve century */
    445      1.24       dsl 				i += (tm->tm_year / 100) * 100;
    446      1.24       dsl 			else {
    447      1.24       dsl 				split_year = 1;
    448      1.24       dsl 				if (i <= 68)
    449      1.24       dsl 					i = i + 2000 - TM_YEAR_BASE;
    450      1.24       dsl 				else
    451      1.24       dsl 					i = i + 1900 - TM_YEAR_BASE;
    452      1.13        tv 			}
    453      1.24       dsl 			tm->tm_year = i;
    454      1.41  ginsbach 			state |= S_YEAR;
    455      1.23       dsl 			continue;
    456       1.2    kleink 
    457      1.26  ginsbach 		case 'Z':
    458      1.57  christos 		case 'z':
    459      1.26  ginsbach 			tzset();
    460      1.57  christos 			mandatory = c == 'z';
    461      1.29  christos 			/*
    462      1.29  christos 			 * We recognize all ISO 8601 formats:
    463      1.29  christos 			 * Z	= Zulu time/UTC
    464      1.29  christos 			 * [+-]hhmm
    465      1.29  christos 			 * [+-]hh:mm
    466      1.29  christos 			 * [+-]hh
    467      1.32  ginsbach 			 * We recognize all RFC-822/RFC-2822 formats:
    468      1.32  ginsbach 			 * UT|GMT
    469      1.32  ginsbach 			 *          North American : UTC offsets
    470      1.32  ginsbach 			 * E[DS]T = Eastern : -4 | -5
    471      1.32  ginsbach 			 * C[DS]T = Central : -5 | -6
    472      1.32  ginsbach 			 * M[DS]T = Mountain: -6 | -7
    473      1.32  ginsbach 			 * P[DS]T = Pacific : -7 | -8
    474      1.56  ginsbach 			 *          Nautical/Military
    475      1.32  ginsbach 			 * [A-IL-M] = -1 ... -9 (J not used)
    476      1.32  ginsbach 			 * [N-Y]  = +1 ... +12
    477      1.56  ginsbach 			 * Note: J maybe used to denote non-nautical
    478      1.56  ginsbach 			 *       local time
    479      1.29  christos 			 */
    480      1.57  christos 			if (mandatory)
    481      1.57  christos 				while (isspace(*bp))
    482      1.57  christos 					bp++;
    483      1.29  christos 
    484      1.50  christos 			zname = bp;
    485      1.29  christos 			switch (*bp++) {
    486      1.32  ginsbach 			case 'G':
    487      1.32  ginsbach 				if (*bp++ != 'M')
    488      1.50  christos 					goto namedzone;
    489      1.32  ginsbach 				/*FALLTHROUGH*/
    490      1.32  ginsbach 			case 'U':
    491      1.32  ginsbach 				if (*bp++ != 'T')
    492      1.50  christos 					goto namedzone;
    493      1.50  christos 				else if (!delim(*bp) && *bp++ != 'C')
    494      1.50  christos 					goto namedzone;
    495      1.32  ginsbach 				/*FALLTHROUGH*/
    496      1.29  christos 			case 'Z':
    497      1.50  christos 				if (!delim(*bp))
    498      1.50  christos 					goto namedzone;
    499      1.29  christos 				tm->tm_isdst = 0;
    500      1.29  christos #ifdef TM_GMTOFF
    501      1.29  christos 				tm->TM_GMTOFF = 0;
    502      1.29  christos #endif
    503      1.29  christos #ifdef TM_ZONE
    504      1.29  christos 				tm->TM_ZONE = utc;
    505      1.29  christos #endif
    506      1.29  christos 				continue;
    507      1.29  christos 			case '+':
    508      1.29  christos 				neg = 0;
    509      1.29  christos 				break;
    510      1.29  christos 			case '-':
    511      1.29  christos 				neg = 1;
    512      1.29  christos 				break;
    513      1.29  christos 			default:
    514      1.50  christos namedzone:
    515      1.50  christos 				bp = zname;
    516      1.50  christos 
    517      1.56  ginsbach 				/* Nautical / Military style */
    518      1.50  christos 				if (delim(bp[1]) &&
    519      1.50  christos 				    ((*bp >= 'A' && *bp <= 'I') ||
    520      1.61  ginsbach 				     (*bp >= 'L' && *bp <= 'Y'))) {
    521      1.50  christos #ifdef TM_GMTOFF
    522      1.50  christos 					/* Argh! No 'J'! */
    523      1.50  christos 					if (*bp >= 'A' && *bp <= 'I')
    524      1.50  christos 						tm->TM_GMTOFF =
    525      1.62  ginsbach 						    (int)*bp - ('A' - 1);
    526      1.50  christos 					else if (*bp >= 'L' && *bp <= 'M')
    527      1.62  ginsbach 						tm->TM_GMTOFF = (int)*bp - 'A';
    528      1.50  christos 					else if (*bp >= 'N' && *bp <= 'Y')
    529      1.62  ginsbach 						tm->TM_GMTOFF = 'M' - (int)*bp;
    530      1.51  christos 					tm->TM_GMTOFF *= SECSPERHOUR;
    531      1.50  christos #endif
    532      1.50  christos #ifdef TM_ZONE
    533      1.51  christos 					tm->TM_ZONE = NULL; /* XXX */
    534      1.50  christos #endif
    535      1.50  christos 					bp++;
    536      1.50  christos 					continue;
    537      1.50  christos 				}
    538      1.56  ginsbach 				/* 'J' is local time */
    539      1.56  ginsbach 				if (delim(bp[1]) && *bp == 'J') {
    540      1.56  ginsbach #ifdef TM_GMTOFF
    541      1.56  ginsbach 					tm->TM_GMTOFF = -timezone;
    542      1.56  ginsbach #endif
    543      1.56  ginsbach #ifdef TM_ZONE
    544      1.58  ginsbach 					tm->TM_ZONE = NULL; /* XXX */
    545      1.56  ginsbach #endif
    546      1.56  ginsbach 					bp++;
    547      1.56  ginsbach 					continue;
    548      1.56  ginsbach 				}
    549      1.50  christos 
    550      1.50  christos 				/*
    551      1.50  christos 				 * From our 3 letter hard-coded table
    552      1.50  christos 				 * XXX: Can be removed, handled by tzload()
    553      1.50  christos 				 */
    554      1.50  christos 				if (delim(bp[0]) || delim(bp[1]) ||
    555      1.50  christos 				    delim(bp[2]) || !delim(bp[3]))
    556      1.50  christos 					goto loadzone;
    557      1.32  ginsbach 				ep = find_string(bp, &i, nast, NULL, 4);
    558      1.32  ginsbach 				if (ep != NULL) {
    559      1.32  ginsbach #ifdef TM_GMTOFF
    560      1.51  christos 					tm->TM_GMTOFF = (-5 - i) * SECSPERHOUR;
    561      1.32  ginsbach #endif
    562      1.32  ginsbach #ifdef TM_ZONE
    563      1.32  ginsbach 					tm->TM_ZONE = __UNCONST(nast[i]);
    564      1.32  ginsbach #endif
    565      1.32  ginsbach 					bp = ep;
    566      1.32  ginsbach 					continue;
    567      1.32  ginsbach 				}
    568      1.32  ginsbach 				ep = find_string(bp, &i, nadt, NULL, 4);
    569      1.32  ginsbach 				if (ep != NULL) {
    570      1.32  ginsbach 					tm->tm_isdst = 1;
    571      1.32  ginsbach #ifdef TM_GMTOFF
    572      1.51  christos 					tm->TM_GMTOFF = (-4 - i) * SECSPERHOUR;
    573      1.32  ginsbach #endif
    574      1.32  ginsbach #ifdef TM_ZONE
    575      1.32  ginsbach 					tm->TM_ZONE = __UNCONST(nadt[i]);
    576      1.32  ginsbach #endif
    577      1.32  ginsbach 					bp = ep;
    578      1.32  ginsbach 					continue;
    579      1.32  ginsbach 				}
    580      1.57  christos 				/*
    581      1.57  christos 				 * Our current timezone
    582      1.57  christos 				 */
    583      1.57  christos 				ep = find_string(bp, &i,
    584      1.57  christos 					       	 (const char * const *)tzname,
    585      1.57  christos 					       	  NULL, 2);
    586      1.57  christos 				if (ep != NULL) {
    587      1.57  christos 					tm->tm_isdst = i;
    588      1.57  christos #ifdef TM_GMTOFF
    589      1.57  christos 					tm->TM_GMTOFF = -timezone;
    590      1.57  christos #endif
    591      1.57  christos #ifdef TM_ZONE
    592      1.57  christos 					tm->TM_ZONE = tzname[i];
    593      1.57  christos #endif
    594      1.57  christos 					bp = ep;
    595      1.57  christos 					continue;
    596      1.57  christos 				}
    597      1.50  christos loadzone:
    598      1.50  christos 				/*
    599      1.50  christos 				 * The hard way, load the zone!
    600      1.50  christos 				 */
    601      1.57  christos 				if (fromzone(&bp, tm, mandatory))
    602      1.32  ginsbach 					continue;
    603      1.57  christos 				goto out;
    604      1.29  christos 			}
    605      1.29  christos 			offs = 0;
    606      1.29  christos 			for (i = 0; i < 4; ) {
    607      1.29  christos 				if (isdigit(*bp)) {
    608      1.29  christos 					offs = offs * 10 + (*bp++ - '0');
    609      1.29  christos 					i++;
    610      1.29  christos 					continue;
    611      1.29  christos 				}
    612      1.29  christos 				if (i == 2 && *bp == ':') {
    613      1.29  christos 					bp++;
    614      1.29  christos 					continue;
    615      1.29  christos 				}
    616      1.29  christos 				break;
    617      1.29  christos 			}
    618      1.50  christos 			if (isdigit(*bp))
    619      1.57  christos 				goto out;
    620      1.29  christos 			switch (i) {
    621      1.29  christos 			case 2:
    622      1.51  christos 				offs *= SECSPERHOUR;
    623      1.29  christos 				break;
    624      1.29  christos 			case 4:
    625      1.29  christos 				i = offs % 100;
    626      1.57  christos 				offs /= 100;
    627      1.51  christos 				if (i >= SECSPERMIN)
    628      1.57  christos 					goto out;
    629      1.29  christos 				/* Convert minutes into decimal */
    630      1.57  christos 				offs = offs * SECSPERHOUR + i * SECSPERMIN;
    631      1.29  christos 				break;
    632      1.29  christos 			default:
    633      1.57  christos 			out:
    634      1.57  christos 				if (mandatory)
    635      1.57  christos 					return NULL;
    636      1.57  christos 				bp = zname;
    637      1.57  christos 				continue;
    638      1.29  christos 			}
    639      1.61  ginsbach 			/* ISO 8601 & RFC 3339 limit to 23:59 max */
    640      1.53  ginsbach 			if (offs >= (HOURSPERDAY * SECSPERHOUR))
    641      1.57  christos 				goto out;
    642      1.31  christos 			if (neg)
    643      1.31  christos 				offs = -offs;
    644      1.29  christos 			tm->tm_isdst = 0;	/* XXX */
    645      1.29  christos #ifdef TM_GMTOFF
    646      1.29  christos 			tm->TM_GMTOFF = offs;
    647      1.29  christos #endif
    648      1.29  christos #ifdef TM_ZONE
    649      1.51  christos 			tm->TM_ZONE = NULL;	/* XXX */
    650      1.29  christos #endif
    651      1.29  christos 			continue;
    652      1.29  christos 
    653       1.3    kleink 		/*
    654       1.3    kleink 		 * Miscellaneous conversions.
    655       1.3    kleink 		 */
    656       1.3    kleink 		case 'n':	/* Any kind of white-space. */
    657       1.3    kleink 		case 't':
    658       1.3    kleink 			while (isspace(*bp))
    659       1.3    kleink 				bp++;
    660      1.23       dsl 			LEGAL_ALT(0);
    661      1.23       dsl 			continue;
    662       1.2    kleink 
    663       1.1       mrg 
    664       1.3    kleink 		default:	/* Unknown/unsupported conversion. */
    665      1.24       dsl 			return NULL;
    666       1.3    kleink 		}
    667       1.3    kleink 	}
    668       1.2    kleink 
    669      1.42  ginsbach 	if (!HAVE_YDAY(state) && HAVE_YEAR(state)) {
    670      1.42  ginsbach 		if (HAVE_MON(state) && HAVE_MDAY(state)) {
    671      1.46  ginsbach 			/* calculate day of year (ordinal date) */
    672      1.43  ginsbach 			tm->tm_yday =  start_of_month[isleap_sum(tm->tm_year,
    673      1.40  christos 			    TM_YEAR_BASE)][tm->tm_mon] + (tm->tm_mday - 1);
    674      1.41  ginsbach 			state |= S_YDAY;
    675      1.40  christos 		} else if (day_offset != -1) {
    676      1.46  ginsbach 			/*
    677      1.46  ginsbach 			 * Set the date to the first Sunday (or Monday)
    678      1.40  christos 			 * of the specified week of the year.
    679      1.40  christos 			 */
    680      1.42  ginsbach 			if (!HAVE_WDAY(state)) {
    681      1.40  christos 				tm->tm_wday = day_offset;
    682      1.41  ginsbach 				state |= S_WDAY;
    683      1.40  christos 			}
    684      1.40  christos 			tm->tm_yday = (7 -
    685      1.40  christos 			    first_wday_of(tm->tm_year + TM_YEAR_BASE) +
    686      1.40  christos 			    day_offset) % 7 + (week_offset - 1) * 7 +
    687      1.40  christos 			    tm->tm_wday  - day_offset;
    688      1.41  ginsbach 			state |= S_YDAY;
    689      1.40  christos 		}
    690      1.40  christos 	}
    691      1.40  christos 
    692      1.42  ginsbach 	if (HAVE_YDAY(state) && HAVE_YEAR(state)) {
    693      1.40  christos 		int isleap;
    694      1.46  ginsbach 
    695      1.42  ginsbach 		if (!HAVE_MON(state)) {
    696      1.46  ginsbach 			/* calculate month of day of year */
    697      1.40  christos 			i = 0;
    698      1.43  ginsbach 			isleap = isleap_sum(tm->tm_year, TM_YEAR_BASE);
    699      1.40  christos 			while (tm->tm_yday >= start_of_month[isleap][i])
    700      1.40  christos 				i++;
    701      1.40  christos 			if (i > 12) {
    702      1.40  christos 				i = 1;
    703      1.40  christos 				tm->tm_yday -= start_of_month[isleap][12];
    704      1.40  christos 				tm->tm_year++;
    705      1.40  christos 			}
    706      1.40  christos 			tm->tm_mon = i - 1;
    707      1.41  ginsbach 			state |= S_MON;
    708      1.40  christos 		}
    709      1.46  ginsbach 
    710      1.42  ginsbach 		if (!HAVE_MDAY(state)) {
    711      1.46  ginsbach 			/* calculate day of month */
    712      1.43  ginsbach 			isleap = isleap_sum(tm->tm_year, TM_YEAR_BASE);
    713      1.40  christos 			tm->tm_mday = tm->tm_yday -
    714      1.40  christos 			    start_of_month[isleap][tm->tm_mon] + 1;
    715      1.41  ginsbach 			state |= S_MDAY;
    716      1.40  christos 		}
    717      1.46  ginsbach 
    718      1.42  ginsbach 		if (!HAVE_WDAY(state)) {
    719      1.46  ginsbach 			/* calculate day of week */
    720      1.40  christos 			i = 0;
    721      1.40  christos 			week_offset = first_wday_of(tm->tm_year);
    722      1.40  christos 			while (i++ <= tm->tm_yday) {
    723      1.40  christos 				if (week_offset++ >= 6)
    724      1.40  christos 					week_offset = 0;
    725      1.40  christos 			}
    726      1.40  christos 			tm->tm_wday = week_offset;
    727      1.41  ginsbach 			state |= S_WDAY;
    728      1.40  christos 		}
    729      1.40  christos 	}
    730      1.40  christos 
    731      1.25  christos 	return __UNCONST(bp);
    732       1.3    kleink }
    733       1.2    kleink 
    734       1.2    kleink 
    735      1.23       dsl static const u_char *
    736      1.24       dsl conv_num(const unsigned char *buf, int *dest, uint llim, uint ulim)
    737       1.3    kleink {
    738      1.24       dsl 	uint result = 0;
    739      1.23       dsl 	unsigned char ch;
    740      1.18        tv 
    741      1.18        tv 	/* The limit also determines the number of valid digits. */
    742      1.24       dsl 	uint rulim = ulim;
    743       1.2    kleink 
    744      1.23       dsl 	ch = *buf;
    745      1.23       dsl 	if (ch < '0' || ch > '9')
    746      1.24       dsl 		return NULL;
    747       1.2    kleink 
    748       1.3    kleink 	do {
    749      1.18        tv 		result *= 10;
    750      1.23       dsl 		result += ch - '0';
    751      1.18        tv 		rulim /= 10;
    752      1.23       dsl 		ch = *++buf;
    753      1.23       dsl 	} while ((result * 10 <= ulim) && rulim && ch >= '0' && ch <= '9');
    754       1.2    kleink 
    755      1.18        tv 	if (result < llim || result > ulim)
    756      1.24       dsl 		return NULL;
    757       1.1       mrg 
    758      1.18        tv 	*dest = result;
    759      1.23       dsl 	return buf;
    760      1.23       dsl }
    761      1.23       dsl 
    762      1.23       dsl static const u_char *
    763      1.23       dsl find_string(const u_char *bp, int *tgt, const char * const *n1,
    764      1.23       dsl 		const char * const *n2, int c)
    765      1.23       dsl {
    766      1.23       dsl 	int i;
    767      1.36  christos 	size_t len;
    768      1.23       dsl 
    769      1.24       dsl 	/* check full name - then abbreviated ones */
    770      1.24       dsl 	for (; n1 != NULL; n1 = n2, n2 = NULL) {
    771      1.24       dsl 		for (i = 0; i < c; i++, n1++) {
    772      1.24       dsl 			len = strlen(*n1);
    773      1.24       dsl 			if (strncasecmp(*n1, (const char *)bp, len) == 0) {
    774      1.24       dsl 				*tgt = i;
    775      1.24       dsl 				return bp + len;
    776      1.24       dsl 			}
    777      1.24       dsl 		}
    778      1.23       dsl 	}
    779      1.24       dsl 
    780      1.24       dsl 	/* Nothing matched */
    781      1.24       dsl 	return NULL;
    782       1.1       mrg }
    783