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zic.c revision 1.28
      1  1.27  christos /*	$NetBSD: zic.c,v 1.28 2011/01/15 12:31:57 martin Exp $	*/
      2  1.25   mlelstv /*
      3  1.25   mlelstv ** This file is in the public domain, so clarified as of
      4  1.25   mlelstv ** 2006-07-17 by Arthur David Olson.
      5  1.25   mlelstv */
      6   1.2       jtc 
      7  1.26   tsutsui #if HAVE_NBTOOL_CONFIG_H
      8  1.26   tsutsui #include "nbtool_config.h"
      9  1.26   tsutsui #endif
     10  1.26   tsutsui 
     11   1.9  christos #include <sys/cdefs.h>
     12   1.1       jtc #ifndef lint
     13  1.27  christos __RCSID("$NetBSD: zic.c,v 1.28 2011/01/15 12:31:57 martin Exp $");
     14   1.1       jtc #endif /* !defined lint */
     15   1.1       jtc 
     16  1.25   mlelstv static char	elsieid[] = "@(#)zic.c	8.20";
     17  1.20    kleink 
     18   1.1       jtc #include "private.h"
     19   1.5       jtc #include "locale.h"
     20   1.1       jtc #include "tzfile.h"
     21  1.19    kleink 
     22  1.25   mlelstv #define	ZIC_VERSION	'2'
     23  1.25   mlelstv 
     24  1.25   mlelstv typedef int_fast64_t	zic_t;
     25  1.25   mlelstv 
     26  1.25   mlelstv #ifndef ZIC_MAX_ABBR_LEN_WO_WARN
     27  1.25   mlelstv #define ZIC_MAX_ABBR_LEN_WO_WARN	6
     28  1.25   mlelstv #endif /* !defined ZIC_MAX_ABBR_LEN_WO_WARN */
     29  1.25   mlelstv 
     30  1.19    kleink #if HAVE_SYS_STAT_H
     31  1.19    kleink #include "sys/stat.h"
     32  1.19    kleink #endif
     33  1.19    kleink #ifdef S_IRUSR
     34  1.19    kleink #define MKDIR_UMASK (S_IRUSR|S_IWUSR|S_IXUSR|S_IRGRP|S_IXGRP|S_IROTH|S_IXOTH)
     35  1.19    kleink #else
     36  1.19    kleink #define MKDIR_UMASK 0755
     37  1.19    kleink #endif
     38  1.19    kleink 
     39  1.13    kleink #include "unistd.h"
     40   1.1       jtc 
     41   1.3       jtc /*
     42   1.3       jtc ** On some ancient hosts, predicates like `isspace(C)' are defined
     43  1.25   mlelstv ** only if isascii(C) || C == EOF. Modern hosts obey the C Standard,
     44   1.3       jtc ** which says they are defined only if C == ((unsigned char) C) || C == EOF.
     45   1.3       jtc ** Neither the C Standard nor Posix require that `isascii' exist.
     46   1.3       jtc ** For portability, we check both ancient and modern requirements.
     47   1.3       jtc ** If isascii is not defined, the isascii check succeeds trivially.
     48   1.3       jtc */
     49   1.3       jtc #include "ctype.h"
     50   1.3       jtc #ifndef isascii
     51   1.3       jtc #define isascii(x) 1
     52   1.3       jtc #endif
     53   1.3       jtc 
     54  1.25   mlelstv #define OFFSET_STRLEN_MAXIMUM	(7 + INT_STRLEN_MAXIMUM(long))
     55  1.25   mlelstv #define RULE_STRLEN_MAXIMUM	8	/* "Mdd.dd.d" */
     56  1.25   mlelstv 
     57  1.25   mlelstv #define end(cp)	(strchr((cp), '\0'))
     58  1.25   mlelstv 
     59   1.1       jtc struct rule {
     60   1.1       jtc 	const char *	r_filename;
     61   1.1       jtc 	int		r_linenum;
     62   1.1       jtc 	const char *	r_name;
     63   1.1       jtc 
     64   1.1       jtc 	int		r_loyear;	/* for example, 1986 */
     65   1.1       jtc 	int		r_hiyear;	/* for example, 1986 */
     66   1.1       jtc 	const char *	r_yrtype;
     67  1.25   mlelstv 	int		r_lowasnum;
     68  1.25   mlelstv 	int		r_hiwasnum;
     69   1.1       jtc 
     70   1.1       jtc 	int		r_month;	/* 0..11 */
     71   1.1       jtc 
     72   1.1       jtc 	int		r_dycode;	/* see below */
     73   1.1       jtc 	int		r_dayofmonth;
     74   1.1       jtc 	int		r_wday;
     75   1.1       jtc 
     76   1.1       jtc 	long		r_tod;		/* time from midnight */
     77   1.1       jtc 	int		r_todisstd;	/* above is standard time if TRUE */
     78   1.1       jtc 					/* or wall clock time if FALSE */
     79   1.1       jtc 	int		r_todisgmt;	/* above is GMT if TRUE */
     80   1.1       jtc 					/* or local time if FALSE */
     81   1.1       jtc 	long		r_stdoff;	/* offset from standard time */
     82   1.1       jtc 	const char *	r_abbrvar;	/* variable part of abbreviation */
     83   1.1       jtc 
     84   1.1       jtc 	int		r_todo;		/* a rule to do (used in outzone) */
     85  1.25   mlelstv 	zic_t		r_temp;		/* used in outzone */
     86   1.1       jtc };
     87   1.1       jtc 
     88   1.1       jtc /*
     89   1.1       jtc **	r_dycode		r_dayofmonth	r_wday
     90   1.1       jtc */
     91   1.1       jtc 
     92   1.1       jtc #define DC_DOM		0	/* 1..31 */	/* unused */
     93   1.1       jtc #define DC_DOWGEQ	1	/* 1..31 */	/* 0..6 (Sun..Sat) */
     94   1.1       jtc #define DC_DOWLEQ	2	/* 1..31 */	/* 0..6 (Sun..Sat) */
     95   1.1       jtc 
     96   1.1       jtc struct zone {
     97   1.1       jtc 	const char *	z_filename;
     98   1.1       jtc 	int		z_linenum;
     99   1.1       jtc 
    100   1.1       jtc 	const char *	z_name;
    101   1.1       jtc 	long		z_gmtoff;
    102   1.1       jtc 	const char *	z_rule;
    103   1.1       jtc 	const char *	z_format;
    104   1.1       jtc 
    105   1.1       jtc 	long		z_stdoff;
    106   1.1       jtc 
    107   1.1       jtc 	struct rule *	z_rules;
    108   1.1       jtc 	int		z_nrules;
    109   1.1       jtc 
    110   1.1       jtc 	struct rule	z_untilrule;
    111  1.25   mlelstv 	zic_t		z_untiltime;
    112   1.1       jtc };
    113   1.1       jtc 
    114  1.25   mlelstv extern int	getopt(int argc, char * const argv[],
    115  1.25   mlelstv 			const char * options);
    116  1.25   mlelstv extern int	link(const char * fromname, const char * toname);
    117   1.1       jtc extern char *	optarg;
    118   1.1       jtc extern int	optind;
    119   1.1       jtc 
    120  1.25   mlelstv static void	addtt(zic_t starttime, int type);
    121  1.25   mlelstv static int	addtype(long gmtoff, const char * abbr, int isdst,
    122  1.25   mlelstv 				int ttisstd, int ttisgmt);
    123  1.25   mlelstv static void	leapadd(zic_t t, int positive, int rolling, int count);
    124  1.25   mlelstv static void	adjleap(void);
    125  1.25   mlelstv static void	associate(void);
    126  1.25   mlelstv static int	ciequal(const char * ap, const char * bp);
    127  1.25   mlelstv static void	convert(long val, char * buf);
    128  1.25   mlelstv static void	convert64(zic_t val, char * buf);
    129  1.25   mlelstv static void	dolink(const char * fromfield, const char * tofield);
    130  1.25   mlelstv static void	doabbr(char * abbr, const int, const char * format,
    131  1.25   mlelstv 			const char * letters, int isdst, int doquotes);
    132  1.25   mlelstv static void	eat(const char * name, int num);
    133  1.25   mlelstv static void	eats(const char * name, int num,
    134  1.25   mlelstv 			const char * rname, int rnum);
    135  1.25   mlelstv static long	eitol(int i);
    136  1.25   mlelstv static void	error(const char * message);
    137  1.25   mlelstv static char **	getfields(char * buf);
    138  1.25   mlelstv static long	gethms(const char * string, const char * errstrng,
    139  1.25   mlelstv 			int signable);
    140  1.25   mlelstv static void	infile(const char * filename);
    141  1.25   mlelstv static void	inleap(char ** fields, int nfields);
    142  1.25   mlelstv static void	inlink(char ** fields, int nfields);
    143  1.25   mlelstv static void	inrule(char ** fields, int nfields);
    144  1.25   mlelstv static int	inzcont(char ** fields, int nfields);
    145  1.25   mlelstv static int	inzone(char ** fields, int nfields);
    146  1.25   mlelstv static int	inzsub(char ** fields, int nfields, int iscont);
    147  1.25   mlelstv static int	is32(zic_t x);
    148  1.25   mlelstv static int	itsabbr(const char * abbr, const char * word);
    149  1.25   mlelstv static int	itsdir(const char * name);
    150  1.25   mlelstv static int	lowerit(int c);
    151  1.25   mlelstv int		main(int, char **);
    152  1.25   mlelstv static char *	memcheck(char * tocheck);
    153  1.25   mlelstv static int	mkdirs(char * filename);
    154  1.25   mlelstv static void	newabbr(const char * abbr);
    155  1.25   mlelstv static long	oadd(long t1, long t2);
    156  1.25   mlelstv static void	outzone(const struct zone * zp, int ntzones);
    157  1.25   mlelstv static void	puttzcode(long code, FILE * fp);
    158  1.25   mlelstv static void	puttzcode64(zic_t code, FILE * fp);
    159  1.25   mlelstv static int	rcomp(const void * leftp, const void * rightp);
    160  1.25   mlelstv static zic_t	rpytime(const struct rule * rp, int wantedy);
    161  1.25   mlelstv static void	rulesub(struct rule * rp,
    162   1.1       jtc 			const char * loyearp, const char * hiyearp,
    163   1.1       jtc 			const char * typep, const char * monthp,
    164  1.25   mlelstv 			const char * dayp, const char * timep);
    165  1.25   mlelstv static int 	stringoffset(char * result, long offset);
    166  1.25   mlelstv static int	stringrule(char * result, const struct rule * rp,
    167  1.25   mlelstv 			long dstoff, long gmtoff);
    168  1.25   mlelstv static void 	stringzone(char * result, const int,
    169  1.25   mlelstv 			const struct zone * zp, int ntzones);
    170  1.25   mlelstv static void	setboundaries(void);
    171  1.25   mlelstv static zic_t	tadd(zic_t t1, long t2);
    172  1.25   mlelstv static void	usage(FILE *stream, int status);
    173  1.25   mlelstv static void	warning(const char * const);
    174  1.25   mlelstv static void	writezone(const char * name, const char * string);
    175  1.25   mlelstv static int	yearistype(int year, const char * type);
    176  1.25   mlelstv static int	atcomp(const void *avp, const void *bvp);
    177  1.25   mlelstv static void	updateminmax(int x);
    178   1.5       jtc 
    179   1.1       jtc static int		charcnt;
    180   1.1       jtc static int		errors;
    181   1.1       jtc static const char *	filename;
    182   1.1       jtc static int		leapcnt;
    183  1.25   mlelstv static int		leapseen;
    184  1.25   mlelstv static int		leapminyear;
    185  1.25   mlelstv static int		leapmaxyear;
    186   1.1       jtc static int		linenum;
    187  1.25   mlelstv static int		max_abbrvar_len;
    188  1.25   mlelstv static int		max_format_len;
    189  1.25   mlelstv static zic_t		max_time;
    190   1.1       jtc static int		max_year;
    191  1.25   mlelstv static zic_t		min_time;
    192   1.1       jtc static int		min_year;
    193   1.1       jtc static int		noise;
    194   1.1       jtc static const char *	rfilename;
    195   1.1       jtc static int		rlinenum;
    196   1.1       jtc static const char *	progname;
    197   1.1       jtc static int		timecnt;
    198   1.1       jtc static int		typecnt;
    199   1.1       jtc 
    200   1.1       jtc /*
    201   1.1       jtc ** Line codes.
    202   1.1       jtc */
    203   1.1       jtc 
    204   1.1       jtc #define LC_RULE		0
    205   1.1       jtc #define LC_ZONE		1
    206   1.1       jtc #define LC_LINK		2
    207   1.1       jtc #define LC_LEAP		3
    208   1.1       jtc 
    209   1.1       jtc /*
    210   1.1       jtc ** Which fields are which on a Zone line.
    211   1.1       jtc */
    212   1.1       jtc 
    213   1.1       jtc #define ZF_NAME		1
    214   1.1       jtc #define ZF_GMTOFF	2
    215   1.1       jtc #define ZF_RULE		3
    216   1.1       jtc #define ZF_FORMAT	4
    217   1.1       jtc #define ZF_TILYEAR	5
    218   1.1       jtc #define ZF_TILMONTH	6
    219   1.1       jtc #define ZF_TILDAY	7
    220   1.1       jtc #define ZF_TILTIME	8
    221   1.1       jtc #define ZONE_MINFIELDS	5
    222   1.1       jtc #define ZONE_MAXFIELDS	9
    223   1.1       jtc 
    224   1.1       jtc /*
    225   1.1       jtc ** Which fields are which on a Zone continuation line.
    226   1.1       jtc */
    227   1.1       jtc 
    228   1.1       jtc #define ZFC_GMTOFF	0
    229   1.1       jtc #define ZFC_RULE	1
    230   1.1       jtc #define ZFC_FORMAT	2
    231   1.1       jtc #define ZFC_TILYEAR	3
    232   1.1       jtc #define ZFC_TILMONTH	4
    233   1.1       jtc #define ZFC_TILDAY	5
    234   1.1       jtc #define ZFC_TILTIME	6
    235   1.1       jtc #define ZONEC_MINFIELDS	3
    236   1.1       jtc #define ZONEC_MAXFIELDS	7
    237   1.1       jtc 
    238   1.1       jtc /*
    239   1.1       jtc ** Which files are which on a Rule line.
    240   1.1       jtc */
    241   1.1       jtc 
    242   1.1       jtc #define RF_NAME		1
    243   1.1       jtc #define RF_LOYEAR	2
    244   1.1       jtc #define RF_HIYEAR	3
    245   1.1       jtc #define RF_COMMAND	4
    246   1.1       jtc #define RF_MONTH	5
    247   1.1       jtc #define RF_DAY		6
    248   1.1       jtc #define RF_TOD		7
    249   1.1       jtc #define RF_STDOFF	8
    250   1.1       jtc #define RF_ABBRVAR	9
    251   1.1       jtc #define RULE_FIELDS	10
    252   1.1       jtc 
    253   1.1       jtc /*
    254   1.1       jtc ** Which fields are which on a Link line.
    255   1.1       jtc */
    256   1.1       jtc 
    257   1.1       jtc #define LF_FROM		1
    258   1.1       jtc #define LF_TO		2
    259   1.1       jtc #define LINK_FIELDS	3
    260   1.1       jtc 
    261   1.1       jtc /*
    262   1.1       jtc ** Which fields are which on a Leap line.
    263   1.1       jtc */
    264   1.1       jtc 
    265   1.1       jtc #define LP_YEAR		1
    266   1.1       jtc #define LP_MONTH	2
    267   1.1       jtc #define LP_DAY		3
    268   1.1       jtc #define LP_TIME		4
    269   1.1       jtc #define LP_CORR		5
    270   1.1       jtc #define LP_ROLL		6
    271   1.1       jtc #define LEAP_FIELDS	7
    272   1.1       jtc 
    273   1.1       jtc /*
    274   1.1       jtc ** Year synonyms.
    275   1.1       jtc */
    276   1.1       jtc 
    277   1.1       jtc #define YR_MINIMUM	0
    278   1.1       jtc #define YR_MAXIMUM	1
    279   1.1       jtc #define YR_ONLY		2
    280   1.1       jtc 
    281   1.1       jtc static struct rule *	rules;
    282   1.1       jtc static int		nrules;	/* number of rules */
    283   1.1       jtc 
    284   1.1       jtc static struct zone *	zones;
    285   1.1       jtc static int		nzones;	/* number of zones */
    286   1.1       jtc 
    287   1.1       jtc struct link {
    288   1.1       jtc 	const char *	l_filename;
    289   1.1       jtc 	int		l_linenum;
    290   1.1       jtc 	const char *	l_from;
    291   1.1       jtc 	const char *	l_to;
    292   1.1       jtc };
    293   1.1       jtc 
    294   1.1       jtc static struct link *	links;
    295   1.1       jtc static int		nlinks;
    296   1.1       jtc 
    297   1.1       jtc struct lookup {
    298   1.1       jtc 	const char *	l_word;
    299   1.1       jtc 	const int	l_value;
    300   1.1       jtc };
    301   1.1       jtc 
    302  1.25   mlelstv static struct lookup const *	byword(const char * string,
    303  1.25   mlelstv 					const struct lookup * lp);
    304   1.1       jtc 
    305   1.1       jtc static struct lookup const	line_codes[] = {
    306   1.1       jtc 	{ "Rule",	LC_RULE },
    307   1.1       jtc 	{ "Zone",	LC_ZONE },
    308   1.1       jtc 	{ "Link",	LC_LINK },
    309   1.1       jtc 	{ "Leap",	LC_LEAP },
    310   1.1       jtc 	{ NULL,		0}
    311   1.1       jtc };
    312   1.1       jtc 
    313   1.1       jtc static struct lookup const	mon_names[] = {
    314   1.1       jtc 	{ "January",	TM_JANUARY },
    315   1.1       jtc 	{ "February",	TM_FEBRUARY },
    316   1.1       jtc 	{ "March",	TM_MARCH },
    317   1.1       jtc 	{ "April",	TM_APRIL },
    318   1.1       jtc 	{ "May",	TM_MAY },
    319   1.1       jtc 	{ "June",	TM_JUNE },
    320   1.1       jtc 	{ "July",	TM_JULY },
    321   1.1       jtc 	{ "August",	TM_AUGUST },
    322   1.1       jtc 	{ "September",	TM_SEPTEMBER },
    323   1.1       jtc 	{ "October",	TM_OCTOBER },
    324   1.1       jtc 	{ "November",	TM_NOVEMBER },
    325   1.1       jtc 	{ "December",	TM_DECEMBER },
    326   1.1       jtc 	{ NULL,		0 }
    327   1.1       jtc };
    328   1.1       jtc 
    329   1.1       jtc static struct lookup const	wday_names[] = {
    330   1.1       jtc 	{ "Sunday",	TM_SUNDAY },
    331   1.1       jtc 	{ "Monday",	TM_MONDAY },
    332   1.1       jtc 	{ "Tuesday",	TM_TUESDAY },
    333   1.1       jtc 	{ "Wednesday",	TM_WEDNESDAY },
    334   1.1       jtc 	{ "Thursday",	TM_THURSDAY },
    335   1.1       jtc 	{ "Friday",	TM_FRIDAY },
    336   1.1       jtc 	{ "Saturday",	TM_SATURDAY },
    337   1.1       jtc 	{ NULL,		0 }
    338   1.1       jtc };
    339   1.1       jtc 
    340   1.1       jtc static struct lookup const	lasts[] = {
    341   1.1       jtc 	{ "last-Sunday",	TM_SUNDAY },
    342   1.1       jtc 	{ "last-Monday",	TM_MONDAY },
    343   1.1       jtc 	{ "last-Tuesday",	TM_TUESDAY },
    344   1.1       jtc 	{ "last-Wednesday",	TM_WEDNESDAY },
    345   1.1       jtc 	{ "last-Thursday",	TM_THURSDAY },
    346   1.1       jtc 	{ "last-Friday",	TM_FRIDAY },
    347   1.1       jtc 	{ "last-Saturday",	TM_SATURDAY },
    348   1.1       jtc 	{ NULL,			0 }
    349   1.1       jtc };
    350   1.1       jtc 
    351   1.1       jtc static struct lookup const	begin_years[] = {
    352   1.1       jtc 	{ "minimum",	YR_MINIMUM },
    353   1.1       jtc 	{ "maximum",	YR_MAXIMUM },
    354   1.1       jtc 	{ NULL,		0 }
    355   1.1       jtc };
    356   1.1       jtc 
    357   1.1       jtc static struct lookup const	end_years[] = {
    358   1.1       jtc 	{ "minimum",	YR_MINIMUM },
    359   1.1       jtc 	{ "maximum",	YR_MAXIMUM },
    360   1.1       jtc 	{ "only",	YR_ONLY },
    361   1.1       jtc 	{ NULL,		0 }
    362   1.1       jtc };
    363   1.1       jtc 
    364   1.1       jtc static struct lookup const	leap_types[] = {
    365   1.1       jtc 	{ "Rolling",	TRUE },
    366   1.1       jtc 	{ "Stationary",	FALSE },
    367   1.1       jtc 	{ NULL,		0 }
    368   1.1       jtc };
    369   1.1       jtc 
    370   1.1       jtc static const int	len_months[2][MONSPERYEAR] = {
    371   1.1       jtc 	{ 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 },
    372   1.1       jtc 	{ 31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 }
    373   1.1       jtc };
    374   1.1       jtc 
    375   1.1       jtc static const int	len_years[2] = {
    376   1.1       jtc 	DAYSPERNYEAR, DAYSPERLYEAR
    377   1.1       jtc };
    378   1.1       jtc 
    379   1.5       jtc static struct attype {
    380  1.25   mlelstv 	zic_t		at;
    381   1.5       jtc 	unsigned char	type;
    382   1.5       jtc }			attypes[TZ_MAX_TIMES];
    383   1.1       jtc static long		gmtoffs[TZ_MAX_TYPES];
    384   1.1       jtc static char		isdsts[TZ_MAX_TYPES];
    385   1.1       jtc static unsigned char	abbrinds[TZ_MAX_TYPES];
    386   1.1       jtc static char		ttisstds[TZ_MAX_TYPES];
    387   1.1       jtc static char		ttisgmts[TZ_MAX_TYPES];
    388   1.1       jtc static char		chars[TZ_MAX_CHARS];
    389  1.25   mlelstv static zic_t		trans[TZ_MAX_LEAPS];
    390   1.1       jtc static long		corr[TZ_MAX_LEAPS];
    391   1.1       jtc static char		roll[TZ_MAX_LEAPS];
    392   1.1       jtc 
    393   1.1       jtc /*
    394   1.1       jtc ** Memory allocation.
    395   1.1       jtc */
    396   1.1       jtc 
    397   1.1       jtc static char *
    398   1.1       jtc memcheck(ptr)
    399   1.1       jtc char * const	ptr;
    400   1.1       jtc {
    401   1.1       jtc 	if (ptr == NULL) {
    402   1.5       jtc 		const char *e = strerror(errno);
    403   1.7       jtc 
    404   1.5       jtc 		(void) fprintf(stderr, _("%s: Memory exhausted: %s\n"),
    405   1.5       jtc 			progname, e);
    406  1.25   mlelstv 		exit(EXIT_FAILURE);
    407   1.1       jtc 	}
    408   1.1       jtc 	return ptr;
    409   1.1       jtc }
    410   1.1       jtc 
    411   1.1       jtc #define emalloc(size)		memcheck(imalloc(size))
    412   1.1       jtc #define erealloc(ptr, size)	memcheck(irealloc((ptr), (size)))
    413   1.1       jtc #define ecpyalloc(ptr)		memcheck(icpyalloc(ptr))
    414   1.1       jtc #define ecatalloc(oldp, newp)	memcheck(icatalloc((oldp), (newp)))
    415   1.1       jtc 
    416   1.1       jtc /*
    417   1.1       jtc ** Error handling.
    418   1.1       jtc */
    419   1.1       jtc 
    420   1.1       jtc static void
    421   1.1       jtc eats(name, num, rname, rnum)
    422   1.1       jtc const char * const	name;
    423   1.1       jtc const int		num;
    424   1.1       jtc const char * const	rname;
    425   1.1       jtc const int		rnum;
    426   1.1       jtc {
    427   1.1       jtc 	filename = name;
    428   1.1       jtc 	linenum = num;
    429   1.1       jtc 	rfilename = rname;
    430   1.1       jtc 	rlinenum = rnum;
    431   1.1       jtc }
    432   1.1       jtc 
    433   1.1       jtc static void
    434   1.1       jtc eat(name, num)
    435   1.1       jtc const char * const	name;
    436   1.1       jtc const int		num;
    437   1.1       jtc {
    438   1.1       jtc 	eats(name, num, (char *) NULL, -1);
    439   1.1       jtc }
    440   1.1       jtc 
    441   1.1       jtc static void
    442   1.1       jtc error(string)
    443   1.1       jtc const char * const	string;
    444   1.1       jtc {
    445   1.1       jtc 	/*
    446   1.1       jtc 	** Match the format of "cc" to allow sh users to
    447   1.1       jtc 	**	zic ... 2>&1 | error -t "*" -v
    448   1.1       jtc 	** on BSD systems.
    449   1.1       jtc 	*/
    450   1.5       jtc 	(void) fprintf(stderr, _("\"%s\", line %d: %s"),
    451   1.1       jtc 		filename, linenum, string);
    452   1.1       jtc 	if (rfilename != NULL)
    453   1.5       jtc 		(void) fprintf(stderr, _(" (rule from \"%s\", line %d)"),
    454   1.1       jtc 			rfilename, rlinenum);
    455   1.1       jtc 	(void) fprintf(stderr, "\n");
    456   1.1       jtc 	++errors;
    457   1.1       jtc }
    458   1.1       jtc 
    459   1.1       jtc static void
    460   1.5       jtc warning(string)
    461   1.5       jtc const char * const	string;
    462   1.5       jtc {
    463   1.5       jtc 	char *	cp;
    464   1.5       jtc 
    465  1.15    kleink 	cp = ecpyalloc(_("warning: "));
    466   1.5       jtc 	cp = ecatalloc(cp, string);
    467   1.7       jtc 	error(cp);
    468   1.5       jtc 	ifree(cp);
    469   1.5       jtc 	--errors;
    470   1.5       jtc }
    471   1.5       jtc 
    472   1.5       jtc static void
    473  1.25   mlelstv usage(FILE *stream, int status)
    474   1.1       jtc {
    475  1.25   mlelstv 	(void) fprintf(stream, _("%s: usage is %s \
    476  1.25   mlelstv [ --version ] [ --help ] [ -v ] [ -l localtime ] [ -p posixrules ] \\\n\
    477  1.25   mlelstv \t[ -d directory ] [ -L leapseconds ] [ -y yearistype ] [ filename ... ]\n\
    478  1.25   mlelstv \n\
    479  1.25   mlelstv Report bugs to tz (at) elsie.nci.nih.gov.\n"),
    480  1.25   mlelstv 		       progname, progname);
    481  1.25   mlelstv 	exit(status);
    482   1.1       jtc }
    483   1.1       jtc 
    484   1.1       jtc static const char *	psxrules;
    485   1.1       jtc static const char *	lcltime;
    486   1.1       jtc static const char *	directory;
    487   1.1       jtc static const char *	leapsec;
    488   1.1       jtc static const char *	yitcommand;
    489   1.1       jtc 
    490   1.1       jtc int
    491   1.1       jtc main(argc, argv)
    492   1.1       jtc int	argc;
    493   1.1       jtc char *	argv[];
    494   1.1       jtc {
    495   1.1       jtc 	register int	i;
    496   1.1       jtc 	register int	j;
    497   1.1       jtc 	register int	c;
    498   1.1       jtc 
    499  1.13    kleink #ifdef _POSIX_VERSION
    500   1.1       jtc 	(void) umask(umask(S_IWGRP | S_IWOTH) | (S_IWGRP | S_IWOTH));
    501  1.13    kleink #endif /* defined _POSIX_VERSION */
    502   1.5       jtc #if HAVE_GETTEXT - 0
    503   1.5       jtc 	(void) setlocale(LC_MESSAGES, "");
    504   1.5       jtc #ifdef TZ_DOMAINDIR
    505   1.5       jtc 	(void) bindtextdomain(TZ_DOMAIN, TZ_DOMAINDIR);
    506   1.5       jtc #endif /* defined TEXTDOMAINDIR */
    507   1.5       jtc 	(void) textdomain(TZ_DOMAIN);
    508  1.25   mlelstv #endif /* HAVE_GETTEXT */
    509   1.1       jtc 	progname = argv[0];
    510  1.25   mlelstv 	if (TYPE_BIT(zic_t) < 64) {
    511  1.25   mlelstv 		(void) fprintf(stderr, "%s: %s\n", progname,
    512  1.25   mlelstv 			_("wild compilation-time specification of zic_t"));
    513  1.25   mlelstv 		exit(EXIT_FAILURE);
    514  1.25   mlelstv 	}
    515  1.20    kleink 	for (i = 1; i < argc; ++i)
    516  1.20    kleink 		if (strcmp(argv[i], "--version") == 0) {
    517  1.20    kleink 			(void) printf("%s\n", elsieid);
    518  1.25   mlelstv 			exit(EXIT_SUCCESS);
    519  1.25   mlelstv 		} else if (strcmp(argv[i], "--help") == 0) {
    520  1.25   mlelstv 			usage(stdout, EXIT_SUCCESS);
    521  1.20    kleink 		}
    522   1.7       jtc 	while ((c = getopt(argc, argv, "d:l:p:L:vsy:")) != EOF && c != -1)
    523   1.1       jtc 		switch (c) {
    524   1.1       jtc 			default:
    525  1.25   mlelstv 				usage(stderr, EXIT_FAILURE);
    526   1.1       jtc 			case 'd':
    527   1.1       jtc 				if (directory == NULL)
    528   1.1       jtc 					directory = optarg;
    529   1.1       jtc 				else {
    530   1.1       jtc 					(void) fprintf(stderr,
    531   1.5       jtc _("%s: More than one -d option specified\n"),
    532   1.1       jtc 						progname);
    533  1.25   mlelstv 					exit(EXIT_FAILURE);
    534   1.1       jtc 				}
    535   1.1       jtc 				break;
    536   1.1       jtc 			case 'l':
    537   1.1       jtc 				if (lcltime == NULL)
    538   1.1       jtc 					lcltime = optarg;
    539   1.1       jtc 				else {
    540   1.1       jtc 					(void) fprintf(stderr,
    541   1.5       jtc _("%s: More than one -l option specified\n"),
    542   1.1       jtc 						progname);
    543  1.25   mlelstv 					exit(EXIT_FAILURE);
    544   1.1       jtc 				}
    545   1.1       jtc 				break;
    546   1.1       jtc 			case 'p':
    547   1.1       jtc 				if (psxrules == NULL)
    548   1.1       jtc 					psxrules = optarg;
    549   1.1       jtc 				else {
    550   1.1       jtc 					(void) fprintf(stderr,
    551   1.5       jtc _("%s: More than one -p option specified\n"),
    552   1.1       jtc 						progname);
    553  1.25   mlelstv 					exit(EXIT_FAILURE);
    554   1.1       jtc 				}
    555   1.1       jtc 				break;
    556   1.1       jtc 			case 'y':
    557   1.1       jtc 				if (yitcommand == NULL)
    558   1.1       jtc 					yitcommand = optarg;
    559   1.1       jtc 				else {
    560   1.1       jtc 					(void) fprintf(stderr,
    561   1.5       jtc _("%s: More than one -y option specified\n"),
    562   1.1       jtc 						progname);
    563  1.25   mlelstv 					exit(EXIT_FAILURE);
    564   1.1       jtc 				}
    565   1.1       jtc 				break;
    566   1.1       jtc 			case 'L':
    567   1.1       jtc 				if (leapsec == NULL)
    568   1.1       jtc 					leapsec = optarg;
    569   1.1       jtc 				else {
    570   1.1       jtc 					(void) fprintf(stderr,
    571   1.5       jtc _("%s: More than one -L option specified\n"),
    572   1.1       jtc 						progname);
    573  1.25   mlelstv 					exit(EXIT_FAILURE);
    574   1.1       jtc 				}
    575   1.1       jtc 				break;
    576   1.1       jtc 			case 'v':
    577   1.1       jtc 				noise = TRUE;
    578   1.1       jtc 				break;
    579   1.1       jtc 			case 's':
    580  1.25   mlelstv 				(void) printf("%s: -s ignored\n", progname);
    581   1.1       jtc 				break;
    582   1.1       jtc 		}
    583   1.1       jtc 	if (optind == argc - 1 && strcmp(argv[optind], "=") == 0)
    584  1.25   mlelstv 		usage(stderr, EXIT_FAILURE);	/* usage message by request */
    585   1.1       jtc 	if (directory == NULL)
    586   1.1       jtc 		directory = TZDIR;
    587   1.1       jtc 	if (yitcommand == NULL)
    588   1.1       jtc 		yitcommand = "yearistype";
    589   1.1       jtc 
    590   1.1       jtc 	setboundaries();
    591   1.1       jtc 
    592   1.1       jtc 	if (optind < argc && leapsec != NULL) {
    593   1.1       jtc 		infile(leapsec);
    594   1.1       jtc 		adjleap();
    595   1.1       jtc 	}
    596   1.1       jtc 
    597   1.1       jtc 	for (i = optind; i < argc; ++i)
    598   1.1       jtc 		infile(argv[i]);
    599   1.1       jtc 	if (errors)
    600  1.25   mlelstv 		exit(EXIT_FAILURE);
    601   1.1       jtc 	associate();
    602   1.1       jtc 	for (i = 0; i < nzones; i = j) {
    603   1.1       jtc 		/*
    604   1.1       jtc 		** Find the next non-continuation zone entry.
    605   1.1       jtc 		*/
    606   1.1       jtc 		for (j = i + 1; j < nzones && zones[j].z_name == NULL; ++j)
    607   1.1       jtc 			continue;
    608   1.1       jtc 		outzone(&zones[i], j - i);
    609   1.1       jtc 	}
    610   1.1       jtc 	/*
    611   1.1       jtc 	** Make links.
    612   1.1       jtc 	*/
    613  1.15    kleink 	for (i = 0; i < nlinks; ++i) {
    614  1.15    kleink 		eat(links[i].l_filename, links[i].l_linenum);
    615   1.1       jtc 		dolink(links[i].l_from, links[i].l_to);
    616  1.25   mlelstv 		if (noise)
    617  1.25   mlelstv 			for (j = 0; j < nlinks; ++j)
    618  1.25   mlelstv 				if (strcmp(links[i].l_to,
    619  1.25   mlelstv 					links[j].l_from) == 0)
    620  1.25   mlelstv 						warning(_("link to link"));
    621  1.15    kleink 	}
    622  1.15    kleink 	if (lcltime != NULL) {
    623  1.15    kleink 		eat("command line", 1);
    624   1.1       jtc 		dolink(lcltime, TZDEFAULT);
    625  1.15    kleink 	}
    626  1.15    kleink 	if (psxrules != NULL) {
    627  1.15    kleink 		eat("command line", 1);
    628   1.1       jtc 		dolink(psxrules, TZDEFRULES);
    629  1.15    kleink 	}
    630   1.1       jtc 	return (errors == 0) ? EXIT_SUCCESS : EXIT_FAILURE;
    631   1.1       jtc }
    632   1.1       jtc 
    633   1.1       jtc static void
    634  1.25   mlelstv dolink(fromfield, tofield)
    635  1.25   mlelstv const char * const	fromfield;
    636  1.25   mlelstv const char * const	tofield;
    637   1.1       jtc {
    638   1.1       jtc 	register char *	fromname;
    639   1.1       jtc 	register char *	toname;
    640   1.1       jtc 
    641  1.25   mlelstv 	if (fromfield[0] == '/')
    642  1.25   mlelstv 		fromname = ecpyalloc(fromfield);
    643   1.1       jtc 	else {
    644   1.1       jtc 		fromname = ecpyalloc(directory);
    645   1.1       jtc 		fromname = ecatalloc(fromname, "/");
    646  1.25   mlelstv 		fromname = ecatalloc(fromname, fromfield);
    647   1.1       jtc 	}
    648  1.25   mlelstv 	if (tofield[0] == '/')
    649  1.25   mlelstv 		toname = ecpyalloc(tofield);
    650   1.1       jtc 	else {
    651   1.1       jtc 		toname = ecpyalloc(directory);
    652   1.1       jtc 		toname = ecatalloc(toname, "/");
    653  1.25   mlelstv 		toname = ecatalloc(toname, tofield);
    654   1.1       jtc 	}
    655   1.1       jtc 	/*
    656   1.1       jtc 	** We get to be careful here since
    657   1.1       jtc 	** there's a fair chance of root running us.
    658   1.1       jtc 	*/
    659   1.1       jtc 	if (!itsdir(toname))
    660   1.1       jtc 		(void) remove(toname);
    661   1.1       jtc 	if (link(fromname, toname) != 0) {
    662  1.12    kleink 		int	result;
    663  1.12    kleink 
    664   1.1       jtc 		if (mkdirs(toname) != 0)
    665  1.25   mlelstv 			exit(EXIT_FAILURE);
    666  1.15    kleink 
    667  1.12    kleink 		result = link(fromname, toname);
    668  1.25   mlelstv #if HAVE_SYMLINK
    669  1.20    kleink 		if (result != 0 &&
    670  1.25   mlelstv 			access(fromname, F_OK) == 0 &&
    671  1.25   mlelstv 			!itsdir(fromname)) {
    672  1.25   mlelstv 				const char *s = tofield;
    673  1.25   mlelstv 				register char * symlinkcontents = NULL;
    674  1.25   mlelstv 
    675  1.25   mlelstv 				while ((s = strchr(s+1, '/')) != NULL)
    676  1.25   mlelstv 					symlinkcontents =
    677  1.25   mlelstv 						ecatalloc(symlinkcontents,
    678  1.25   mlelstv 						"../");
    679  1.25   mlelstv 				symlinkcontents =
    680  1.25   mlelstv 					ecatalloc(symlinkcontents,
    681  1.25   mlelstv 					fromname);
    682  1.25   mlelstv 				result = symlink(symlinkcontents,
    683  1.25   mlelstv 					toname);
    684  1.25   mlelstv 				if (result == 0)
    685  1.12    kleink warning(_("hard link failed, symbolic link used"));
    686  1.25   mlelstv 				ifree(symlinkcontents);
    687  1.12    kleink 		}
    688  1.25   mlelstv #endif /* HAVE_SYMLINK */
    689  1.12    kleink 		if (result != 0) {
    690   1.5       jtc 			const char *e = strerror(errno);
    691   1.7       jtc 
    692   1.5       jtc 			(void) fprintf(stderr,
    693   1.5       jtc 				_("%s: Can't link from %s to %s: %s\n"),
    694   1.5       jtc 				progname, fromname, toname, e);
    695  1.25   mlelstv 			exit(EXIT_FAILURE);
    696   1.1       jtc 		}
    697   1.1       jtc 	}
    698   1.1       jtc 	ifree(fromname);
    699   1.1       jtc 	ifree(toname);
    700   1.1       jtc }
    701   1.1       jtc 
    702  1.25   mlelstv #define TIME_T_BITS_IN_FILE	64
    703   1.3       jtc 
    704   1.1       jtc static void
    705  1.25   mlelstv setboundaries(void)
    706   1.1       jtc {
    707  1.25   mlelstv 	register int	i;
    708  1.25   mlelstv 
    709  1.25   mlelstv 	min_time = -1;
    710  1.25   mlelstv 	for (i = 0; i < TIME_T_BITS_IN_FILE - 1; ++i)
    711  1.25   mlelstv 		min_time *= 2;
    712  1.25   mlelstv 	max_time = -(min_time + 1);
    713   1.1       jtc }
    714   1.1       jtc 
    715   1.1       jtc static int
    716   1.1       jtc itsdir(name)
    717   1.1       jtc const char * const	name;
    718   1.1       jtc {
    719   1.1       jtc 	register char *	myname;
    720   1.1       jtc 	register int	accres;
    721   1.1       jtc 
    722   1.1       jtc 	myname = ecpyalloc(name);
    723   1.1       jtc 	myname = ecatalloc(myname, "/.");
    724   1.1       jtc 	accres = access(myname, F_OK);
    725   1.1       jtc 	ifree(myname);
    726   1.1       jtc 	return accres == 0;
    727   1.1       jtc }
    728   1.1       jtc 
    729   1.1       jtc /*
    730   1.1       jtc ** Associate sets of rules with zones.
    731   1.1       jtc */
    732   1.1       jtc 
    733   1.1       jtc /*
    734   1.1       jtc ** Sort by rule name.
    735   1.1       jtc */
    736   1.1       jtc 
    737   1.1       jtc static int
    738   1.1       jtc rcomp(cp1, cp2)
    739   1.1       jtc const void *	cp1;
    740   1.1       jtc const void *	cp2;
    741   1.1       jtc {
    742   1.1       jtc 	return strcmp(((const struct rule *) cp1)->r_name,
    743   1.1       jtc 		((const struct rule *) cp2)->r_name);
    744   1.1       jtc }
    745   1.1       jtc 
    746   1.1       jtc static void
    747  1.25   mlelstv associate(void)
    748   1.1       jtc {
    749   1.1       jtc 	register struct zone *	zp;
    750   1.1       jtc 	register struct rule *	rp;
    751   1.1       jtc 	register int		base, out;
    752   1.5       jtc 	register int		i, j;
    753   1.1       jtc 
    754   1.5       jtc 	if (nrules != 0) {
    755   1.1       jtc 		(void) qsort((void *) rules, (size_t) nrules,
    756   1.1       jtc 			(size_t) sizeof *rules, rcomp);
    757   1.5       jtc 		for (i = 0; i < nrules - 1; ++i) {
    758   1.5       jtc 			if (strcmp(rules[i].r_name,
    759   1.5       jtc 				rules[i + 1].r_name) != 0)
    760   1.5       jtc 					continue;
    761   1.5       jtc 			if (strcmp(rules[i].r_filename,
    762   1.5       jtc 				rules[i + 1].r_filename) == 0)
    763   1.5       jtc 					continue;
    764   1.5       jtc 			eat(rules[i].r_filename, rules[i].r_linenum);
    765   1.5       jtc 			warning(_("same rule name in multiple files"));
    766   1.5       jtc 			eat(rules[i + 1].r_filename, rules[i + 1].r_linenum);
    767   1.5       jtc 			warning(_("same rule name in multiple files"));
    768   1.5       jtc 			for (j = i + 2; j < nrules; ++j) {
    769   1.5       jtc 				if (strcmp(rules[i].r_name,
    770   1.5       jtc 					rules[j].r_name) != 0)
    771   1.5       jtc 						break;
    772   1.5       jtc 				if (strcmp(rules[i].r_filename,
    773   1.5       jtc 					rules[j].r_filename) == 0)
    774   1.5       jtc 						continue;
    775   1.5       jtc 				if (strcmp(rules[i + 1].r_filename,
    776   1.5       jtc 					rules[j].r_filename) == 0)
    777   1.5       jtc 						continue;
    778   1.5       jtc 				break;
    779   1.5       jtc 			}
    780   1.5       jtc 			i = j - 1;
    781   1.5       jtc 		}
    782   1.5       jtc 	}
    783   1.1       jtc 	for (i = 0; i < nzones; ++i) {
    784   1.1       jtc 		zp = &zones[i];
    785   1.1       jtc 		zp->z_rules = NULL;
    786   1.1       jtc 		zp->z_nrules = 0;
    787   1.1       jtc 	}
    788   1.1       jtc 	for (base = 0; base < nrules; base = out) {
    789   1.1       jtc 		rp = &rules[base];
    790   1.1       jtc 		for (out = base + 1; out < nrules; ++out)
    791   1.1       jtc 			if (strcmp(rp->r_name, rules[out].r_name) != 0)
    792   1.1       jtc 				break;
    793   1.1       jtc 		for (i = 0; i < nzones; ++i) {
    794   1.1       jtc 			zp = &zones[i];
    795   1.1       jtc 			if (strcmp(zp->z_rule, rp->r_name) != 0)
    796   1.1       jtc 				continue;
    797   1.1       jtc 			zp->z_rules = rp;
    798   1.1       jtc 			zp->z_nrules = out - base;
    799   1.1       jtc 		}
    800   1.1       jtc 	}
    801   1.1       jtc 	for (i = 0; i < nzones; ++i) {
    802   1.1       jtc 		zp = &zones[i];
    803   1.1       jtc 		if (zp->z_nrules == 0) {
    804   1.1       jtc 			/*
    805   1.1       jtc 			** Maybe we have a local standard time offset.
    806   1.1       jtc 			*/
    807   1.1       jtc 			eat(zp->z_filename, zp->z_linenum);
    808   1.5       jtc 			zp->z_stdoff = gethms(zp->z_rule, _("unruly zone"),
    809  1.25   mlelstv 				TRUE);
    810   1.1       jtc 			/*
    811   1.1       jtc 			** Note, though, that if there's no rule,
    812   1.1       jtc 			** a '%s' in the format is a bad thing.
    813   1.1       jtc 			*/
    814   1.1       jtc 			if (strchr(zp->z_format, '%') != 0)
    815   1.5       jtc 				error(_("%s in ruleless zone"));
    816   1.1       jtc 		}
    817   1.1       jtc 	}
    818   1.1       jtc 	if (errors)
    819  1.25   mlelstv 		exit(EXIT_FAILURE);
    820   1.1       jtc }
    821   1.1       jtc 
    822   1.1       jtc static void
    823   1.1       jtc infile(name)
    824   1.1       jtc const char *	name;
    825   1.1       jtc {
    826   1.1       jtc 	register FILE *			fp;
    827   1.1       jtc 	register char **		fields;
    828   1.1       jtc 	register char *			cp;
    829   1.1       jtc 	register const struct lookup *	lp;
    830   1.1       jtc 	register int			nfields;
    831   1.1       jtc 	register int			wantcont;
    832   1.1       jtc 	register int			num;
    833   1.1       jtc 	char				buf[BUFSIZ];
    834   1.1       jtc 
    835   1.1       jtc 	if (strcmp(name, "-") == 0) {
    836   1.5       jtc 		name = _("standard input");
    837   1.1       jtc 		fp = stdin;
    838   1.1       jtc 	} else if ((fp = fopen(name, "r")) == NULL) {
    839   1.5       jtc 		const char *e = strerror(errno);
    840   1.7       jtc 
    841   1.5       jtc 		(void) fprintf(stderr, _("%s: Can't open %s: %s\n"),
    842   1.5       jtc 			progname, name, e);
    843  1.25   mlelstv 		exit(EXIT_FAILURE);
    844   1.1       jtc 	}
    845   1.1       jtc 	wantcont = FALSE;
    846   1.1       jtc 	for (num = 1; ; ++num) {
    847   1.1       jtc 		eat(name, num);
    848   1.1       jtc 		if (fgets(buf, (int) sizeof buf, fp) != buf)
    849   1.1       jtc 			break;
    850   1.1       jtc 		cp = strchr(buf, '\n');
    851   1.1       jtc 		if (cp == NULL) {
    852   1.5       jtc 			error(_("line too long"));
    853  1.25   mlelstv 			exit(EXIT_FAILURE);
    854   1.1       jtc 		}
    855   1.1       jtc 		*cp = '\0';
    856   1.1       jtc 		fields = getfields(buf);
    857   1.1       jtc 		nfields = 0;
    858   1.1       jtc 		while (fields[nfields] != NULL) {
    859   1.1       jtc 			static char	nada;
    860   1.1       jtc 
    861   1.3       jtc 			if (strcmp(fields[nfields], "-") == 0)
    862   1.1       jtc 				fields[nfields] = &nada;
    863   1.1       jtc 			++nfields;
    864   1.1       jtc 		}
    865   1.1       jtc 		if (nfields == 0) {
    866   1.1       jtc 			/* nothing to do */
    867   1.1       jtc 		} else if (wantcont) {
    868   1.1       jtc 			wantcont = inzcont(fields, nfields);
    869   1.1       jtc 		} else {
    870   1.1       jtc 			lp = byword(fields[0], line_codes);
    871   1.1       jtc 			if (lp == NULL)
    872   1.5       jtc 				error(_("input line of unknown type"));
    873   1.1       jtc 			else switch ((int) (lp->l_value)) {
    874   1.1       jtc 				case LC_RULE:
    875   1.1       jtc 					inrule(fields, nfields);
    876   1.1       jtc 					wantcont = FALSE;
    877   1.1       jtc 					break;
    878   1.1       jtc 				case LC_ZONE:
    879   1.1       jtc 					wantcont = inzone(fields, nfields);
    880   1.1       jtc 					break;
    881   1.1       jtc 				case LC_LINK:
    882   1.1       jtc 					inlink(fields, nfields);
    883   1.1       jtc 					wantcont = FALSE;
    884   1.1       jtc 					break;
    885   1.1       jtc 				case LC_LEAP:
    886   1.1       jtc 					if (name != leapsec)
    887   1.1       jtc 						(void) fprintf(stderr,
    888   1.5       jtc _("%s: Leap line in non leap seconds file %s\n"),
    889   1.1       jtc 							progname, name);
    890   1.1       jtc 					else	inleap(fields, nfields);
    891   1.1       jtc 					wantcont = FALSE;
    892   1.1       jtc 					break;
    893   1.1       jtc 				default:	/* "cannot happen" */
    894   1.1       jtc 					(void) fprintf(stderr,
    895   1.5       jtc _("%s: panic: Invalid l_value %d\n"),
    896   1.1       jtc 						progname, lp->l_value);
    897  1.25   mlelstv 					exit(EXIT_FAILURE);
    898   1.1       jtc 			}
    899   1.1       jtc 		}
    900   1.1       jtc 		ifree((char *) fields);
    901   1.1       jtc 	}
    902   1.1       jtc 	if (ferror(fp)) {
    903   1.5       jtc 		(void) fprintf(stderr, _("%s: Error reading %s\n"),
    904   1.5       jtc 			progname, filename);
    905  1.25   mlelstv 		exit(EXIT_FAILURE);
    906   1.1       jtc 	}
    907   1.1       jtc 	if (fp != stdin && fclose(fp)) {
    908   1.5       jtc 		const char *e = strerror(errno);
    909   1.7       jtc 
    910   1.5       jtc 		(void) fprintf(stderr, _("%s: Error closing %s: %s\n"),
    911   1.5       jtc 			progname, filename, e);
    912  1.25   mlelstv 		exit(EXIT_FAILURE);
    913   1.1       jtc 	}
    914   1.1       jtc 	if (wantcont)
    915   1.5       jtc 		error(_("expected continuation line not found"));
    916   1.1       jtc }
    917   1.1       jtc 
    918   1.1       jtc /*
    919   1.1       jtc ** Convert a string of one of the forms
    920   1.1       jtc **	h	-h	hh:mm	-hh:mm	hh:mm:ss	-hh:mm:ss
    921   1.1       jtc ** into a number of seconds.
    922   1.1       jtc ** A null string maps to zero.
    923   1.1       jtc ** Call error with errstring and return zero on errors.
    924   1.1       jtc */
    925   1.1       jtc 
    926   1.1       jtc static long
    927   1.1       jtc gethms(string, errstring, signable)
    928   1.1       jtc const char *		string;
    929   1.1       jtc const char * const	errstring;
    930   1.1       jtc const int		signable;
    931   1.1       jtc {
    932  1.25   mlelstv 	long	hh;
    933  1.25   mlelstv 	int	mm, ss, sign;
    934   1.1       jtc 
    935   1.1       jtc 	if (string == NULL || *string == '\0')
    936   1.1       jtc 		return 0;
    937   1.1       jtc 	if (!signable)
    938   1.1       jtc 		sign = 1;
    939   1.1       jtc 	else if (*string == '-') {
    940   1.1       jtc 		sign = -1;
    941   1.1       jtc 		++string;
    942   1.1       jtc 	} else	sign = 1;
    943  1.25   mlelstv 	if (sscanf(string, scheck(string, "%ld"), &hh) == 1)
    944   1.1       jtc 		mm = ss = 0;
    945  1.25   mlelstv 	else if (sscanf(string, scheck(string, "%ld:%d"), &hh, &mm) == 2)
    946   1.1       jtc 		ss = 0;
    947  1.25   mlelstv 	else if (sscanf(string, scheck(string, "%ld:%d:%d"),
    948   1.1       jtc 		&hh, &mm, &ss) != 3) {
    949   1.1       jtc 			error(errstring);
    950   1.1       jtc 			return 0;
    951   1.1       jtc 	}
    952  1.25   mlelstv 	if (hh < 0 ||
    953   1.1       jtc 		mm < 0 || mm >= MINSPERHOUR ||
    954  1.25   mlelstv 		ss < 0 || ss > SECSPERMIN) {
    955   1.1       jtc 			error(errstring);
    956   1.1       jtc 			return 0;
    957   1.1       jtc 	}
    958  1.25   mlelstv 	if (LONG_MAX / SECSPERHOUR < hh) {
    959  1.25   mlelstv 		error(_("time overflow"));
    960  1.25   mlelstv 		return 0;
    961  1.25   mlelstv 	}
    962  1.25   mlelstv 	if (noise && hh == HOURSPERDAY && mm == 0 && ss == 0)
    963  1.21    kleink 		warning(_("24:00 not handled by pre-1998 versions of zic"));
    964  1.25   mlelstv 	if (noise && (hh > HOURSPERDAY ||
    965  1.25   mlelstv 		(hh == HOURSPERDAY && (mm != 0 || ss != 0))))
    966  1.25   mlelstv warning(_("values over 24 hours not handled by pre-2007 versions of zic"));
    967  1.25   mlelstv 	return oadd(eitol(sign) * hh * eitol(SECSPERHOUR),
    968  1.25   mlelstv 		    eitol(sign) * (eitol(mm) * eitol(SECSPERMIN) + eitol(ss)));
    969   1.1       jtc }
    970   1.1       jtc 
    971   1.1       jtc static void
    972   1.1       jtc inrule(fields, nfields)
    973   1.1       jtc register char ** const	fields;
    974   1.1       jtc const int		nfields;
    975   1.1       jtc {
    976   1.1       jtc 	static struct rule	r;
    977   1.1       jtc 
    978   1.1       jtc 	if (nfields != RULE_FIELDS) {
    979   1.5       jtc 		error(_("wrong number of fields on Rule line"));
    980   1.1       jtc 		return;
    981   1.1       jtc 	}
    982   1.1       jtc 	if (*fields[RF_NAME] == '\0') {
    983   1.5       jtc 		error(_("nameless rule"));
    984   1.1       jtc 		return;
    985   1.1       jtc 	}
    986   1.1       jtc 	r.r_filename = filename;
    987   1.1       jtc 	r.r_linenum = linenum;
    988   1.5       jtc 	r.r_stdoff = gethms(fields[RF_STDOFF], _("invalid saved time"), TRUE);
    989   1.1       jtc 	rulesub(&r, fields[RF_LOYEAR], fields[RF_HIYEAR], fields[RF_COMMAND],
    990   1.1       jtc 		fields[RF_MONTH], fields[RF_DAY], fields[RF_TOD]);
    991   1.1       jtc 	r.r_name = ecpyalloc(fields[RF_NAME]);
    992   1.1       jtc 	r.r_abbrvar = ecpyalloc(fields[RF_ABBRVAR]);
    993  1.25   mlelstv 	if (max_abbrvar_len < strlen(r.r_abbrvar))
    994  1.25   mlelstv 		max_abbrvar_len = strlen(r.r_abbrvar);
    995   1.1       jtc 	rules = (struct rule *) (void *) erealloc((char *) rules,
    996   1.1       jtc 		(int) ((nrules + 1) * sizeof *rules));
    997   1.1       jtc 	rules[nrules++] = r;
    998   1.1       jtc }
    999   1.1       jtc 
   1000   1.1       jtc static int
   1001   1.1       jtc inzone(fields, nfields)
   1002   1.1       jtc register char ** const	fields;
   1003   1.1       jtc const int		nfields;
   1004   1.1       jtc {
   1005   1.1       jtc 	register int	i;
   1006   1.1       jtc 	static char *	buf;
   1007   1.1       jtc 
   1008   1.1       jtc 	if (nfields < ZONE_MINFIELDS || nfields > ZONE_MAXFIELDS) {
   1009   1.5       jtc 		error(_("wrong number of fields on Zone line"));
   1010   1.1       jtc 		return FALSE;
   1011   1.1       jtc 	}
   1012   1.1       jtc 	if (strcmp(fields[ZF_NAME], TZDEFAULT) == 0 && lcltime != NULL) {
   1013   1.1       jtc 		buf = erealloc(buf, (int) (132 + strlen(TZDEFAULT)));
   1014   1.6       mrg 		(void)sprintf(buf,	/* XXX: sprintf is safe */
   1015   1.5       jtc _("\"Zone %s\" line and -l option are mutually exclusive"),
   1016   1.1       jtc 			TZDEFAULT);
   1017   1.1       jtc 		error(buf);
   1018   1.1       jtc 		return FALSE;
   1019   1.1       jtc 	}
   1020   1.1       jtc 	if (strcmp(fields[ZF_NAME], TZDEFRULES) == 0 && psxrules != NULL) {
   1021   1.1       jtc 		buf = erealloc(buf, (int) (132 + strlen(TZDEFRULES)));
   1022   1.6       mrg 		(void)sprintf(buf,	/* XXX: sprintf is safe */
   1023   1.5       jtc _("\"Zone %s\" line and -p option are mutually exclusive"),
   1024   1.1       jtc 			TZDEFRULES);
   1025   1.1       jtc 		error(buf);
   1026   1.1       jtc 		return FALSE;
   1027   1.1       jtc 	}
   1028   1.1       jtc 	for (i = 0; i < nzones; ++i)
   1029   1.1       jtc 		if (zones[i].z_name != NULL &&
   1030   1.1       jtc 			strcmp(zones[i].z_name, fields[ZF_NAME]) == 0) {
   1031   1.1       jtc 				buf = erealloc(buf, (int) (132 +
   1032   1.1       jtc 					strlen(fields[ZF_NAME]) +
   1033   1.1       jtc 					strlen(zones[i].z_filename)));
   1034   1.6       mrg 				(void)sprintf(buf,	/* XXX: sprintf is safe */
   1035   1.5       jtc _("duplicate zone name %s (file \"%s\", line %d)"),
   1036   1.1       jtc 					fields[ZF_NAME],
   1037   1.1       jtc 					zones[i].z_filename,
   1038   1.1       jtc 					zones[i].z_linenum);
   1039   1.1       jtc 				error(buf);
   1040   1.1       jtc 				return FALSE;
   1041   1.1       jtc 		}
   1042   1.1       jtc 	return inzsub(fields, nfields, FALSE);
   1043   1.1       jtc }
   1044   1.1       jtc 
   1045   1.1       jtc static int
   1046   1.1       jtc inzcont(fields, nfields)
   1047   1.1       jtc register char ** const	fields;
   1048   1.1       jtc const int		nfields;
   1049   1.1       jtc {
   1050   1.1       jtc 	if (nfields < ZONEC_MINFIELDS || nfields > ZONEC_MAXFIELDS) {
   1051   1.5       jtc 		error(_("wrong number of fields on Zone continuation line"));
   1052   1.1       jtc 		return FALSE;
   1053   1.1       jtc 	}
   1054   1.1       jtc 	return inzsub(fields, nfields, TRUE);
   1055   1.1       jtc }
   1056   1.1       jtc 
   1057   1.1       jtc static int
   1058   1.1       jtc inzsub(fields, nfields, iscont)
   1059   1.1       jtc register char ** const	fields;
   1060   1.1       jtc const int		nfields;
   1061   1.1       jtc const int		iscont;
   1062   1.1       jtc {
   1063   1.1       jtc 	register char *		cp;
   1064   1.1       jtc 	static struct zone	z;
   1065   1.1       jtc 	register int		i_gmtoff, i_rule, i_format;
   1066   1.1       jtc 	register int		i_untilyear, i_untilmonth;
   1067   1.1       jtc 	register int		i_untilday, i_untiltime;
   1068   1.1       jtc 	register int		hasuntil;
   1069   1.1       jtc 
   1070   1.1       jtc 	if (iscont) {
   1071   1.1       jtc 		i_gmtoff = ZFC_GMTOFF;
   1072   1.1       jtc 		i_rule = ZFC_RULE;
   1073   1.1       jtc 		i_format = ZFC_FORMAT;
   1074   1.1       jtc 		i_untilyear = ZFC_TILYEAR;
   1075   1.1       jtc 		i_untilmonth = ZFC_TILMONTH;
   1076   1.1       jtc 		i_untilday = ZFC_TILDAY;
   1077   1.1       jtc 		i_untiltime = ZFC_TILTIME;
   1078   1.1       jtc 		z.z_name = NULL;
   1079   1.1       jtc 	} else {
   1080   1.1       jtc 		i_gmtoff = ZF_GMTOFF;
   1081   1.1       jtc 		i_rule = ZF_RULE;
   1082   1.1       jtc 		i_format = ZF_FORMAT;
   1083   1.1       jtc 		i_untilyear = ZF_TILYEAR;
   1084   1.1       jtc 		i_untilmonth = ZF_TILMONTH;
   1085   1.1       jtc 		i_untilday = ZF_TILDAY;
   1086   1.1       jtc 		i_untiltime = ZF_TILTIME;
   1087   1.1       jtc 		z.z_name = ecpyalloc(fields[ZF_NAME]);
   1088   1.1       jtc 	}
   1089   1.1       jtc 	z.z_filename = filename;
   1090   1.1       jtc 	z.z_linenum = linenum;
   1091  1.11       jtc 	z.z_gmtoff = gethms(fields[i_gmtoff], _("invalid UTC offset"), TRUE);
   1092   1.1       jtc 	if ((cp = strchr(fields[i_format], '%')) != 0) {
   1093   1.1       jtc 		if (*++cp != 's' || strchr(cp, '%') != 0) {
   1094   1.5       jtc 			error(_("invalid abbreviation format"));
   1095   1.1       jtc 			return FALSE;
   1096   1.1       jtc 		}
   1097   1.1       jtc 	}
   1098   1.1       jtc 	z.z_rule = ecpyalloc(fields[i_rule]);
   1099   1.1       jtc 	z.z_format = ecpyalloc(fields[i_format]);
   1100  1.25   mlelstv 	if (max_format_len < strlen(z.z_format))
   1101  1.25   mlelstv 		max_format_len = strlen(z.z_format);
   1102   1.1       jtc 	hasuntil = nfields > i_untilyear;
   1103   1.1       jtc 	if (hasuntil) {
   1104   1.1       jtc 		z.z_untilrule.r_filename = filename;
   1105   1.1       jtc 		z.z_untilrule.r_linenum = linenum;
   1106   1.1       jtc 		rulesub(&z.z_untilrule,
   1107   1.1       jtc 			fields[i_untilyear],
   1108   1.1       jtc 			"only",
   1109   1.1       jtc 			"",
   1110   1.1       jtc 			(nfields > i_untilmonth) ?
   1111   1.1       jtc 			fields[i_untilmonth] : "Jan",
   1112   1.1       jtc 			(nfields > i_untilday) ? fields[i_untilday] : "1",
   1113   1.1       jtc 			(nfields > i_untiltime) ? fields[i_untiltime] : "0");
   1114   1.1       jtc 		z.z_untiltime = rpytime(&z.z_untilrule,
   1115   1.1       jtc 			z.z_untilrule.r_loyear);
   1116   1.1       jtc 		if (iscont && nzones > 0 &&
   1117   1.1       jtc 			z.z_untiltime > min_time &&
   1118   1.1       jtc 			z.z_untiltime < max_time &&
   1119   1.1       jtc 			zones[nzones - 1].z_untiltime > min_time &&
   1120   1.1       jtc 			zones[nzones - 1].z_untiltime < max_time &&
   1121   1.1       jtc 			zones[nzones - 1].z_untiltime >= z.z_untiltime) {
   1122  1.25   mlelstv 				error(_(
   1123  1.25   mlelstv "Zone continuation line end time is not after end time of previous line"
   1124  1.25   mlelstv 					));
   1125   1.1       jtc 				return FALSE;
   1126   1.1       jtc 		}
   1127   1.1       jtc 	}
   1128   1.1       jtc 	zones = (struct zone *) (void *) erealloc((char *) zones,
   1129   1.1       jtc 		(int) ((nzones + 1) * sizeof *zones));
   1130   1.1       jtc 	zones[nzones++] = z;
   1131   1.1       jtc 	/*
   1132   1.1       jtc 	** If there was an UNTIL field on this line,
   1133   1.1       jtc 	** there's more information about the zone on the next line.
   1134   1.1       jtc 	*/
   1135   1.1       jtc 	return hasuntil;
   1136   1.1       jtc }
   1137   1.1       jtc 
   1138   1.1       jtc static void
   1139   1.1       jtc inleap(fields, nfields)
   1140   1.1       jtc register char ** const	fields;
   1141   1.1       jtc const int		nfields;
   1142   1.1       jtc {
   1143   1.1       jtc 	register const char *		cp;
   1144   1.1       jtc 	register const struct lookup *	lp;
   1145   1.1       jtc 	register int			i, j;
   1146   1.1       jtc 	int				year, month, day;
   1147   1.1       jtc 	long				dayoff, tod;
   1148  1.25   mlelstv 	zic_t				t;
   1149   1.1       jtc 
   1150   1.1       jtc 	if (nfields != LEAP_FIELDS) {
   1151   1.5       jtc 		error(_("wrong number of fields on Leap line"));
   1152   1.1       jtc 		return;
   1153   1.1       jtc 	}
   1154   1.1       jtc 	dayoff = 0;
   1155   1.1       jtc 	cp = fields[LP_YEAR];
   1156   1.1       jtc 	if (sscanf(cp, scheck(cp, "%d"), &year) != 1) {
   1157  1.25   mlelstv 		/*
   1158  1.25   mlelstv 		** Leapin' Lizards!
   1159  1.25   mlelstv 		*/
   1160  1.25   mlelstv 		error(_("invalid leaping year"));
   1161  1.25   mlelstv 		return;
   1162   1.1       jtc 	}
   1163  1.25   mlelstv 	if (!leapseen || leapmaxyear < year)
   1164  1.25   mlelstv 		leapmaxyear = year;
   1165  1.25   mlelstv 	if (!leapseen || leapminyear > year)
   1166  1.25   mlelstv 		leapminyear = year;
   1167  1.25   mlelstv 	leapseen = TRUE;
   1168   1.1       jtc 	j = EPOCH_YEAR;
   1169   1.1       jtc 	while (j != year) {
   1170   1.1       jtc 		if (year > j) {
   1171   1.1       jtc 			i = len_years[isleap(j)];
   1172   1.1       jtc 			++j;
   1173   1.1       jtc 		} else {
   1174   1.1       jtc 			--j;
   1175   1.1       jtc 			i = -len_years[isleap(j)];
   1176   1.1       jtc 		}
   1177   1.1       jtc 		dayoff = oadd(dayoff, eitol(i));
   1178   1.1       jtc 	}
   1179   1.1       jtc 	if ((lp = byword(fields[LP_MONTH], mon_names)) == NULL) {
   1180   1.5       jtc 		error(_("invalid month name"));
   1181   1.1       jtc 		return;
   1182   1.1       jtc 	}
   1183   1.1       jtc 	month = lp->l_value;
   1184   1.1       jtc 	j = TM_JANUARY;
   1185   1.1       jtc 	while (j != month) {
   1186   1.1       jtc 		i = len_months[isleap(year)][j];
   1187   1.1       jtc 		dayoff = oadd(dayoff, eitol(i));
   1188   1.1       jtc 		++j;
   1189   1.1       jtc 	}
   1190   1.1       jtc 	cp = fields[LP_DAY];
   1191   1.1       jtc 	if (sscanf(cp, scheck(cp, "%d"), &day) != 1 ||
   1192   1.1       jtc 		day <= 0 || day > len_months[isleap(year)][month]) {
   1193   1.5       jtc 			error(_("invalid day of month"));
   1194   1.1       jtc 			return;
   1195   1.1       jtc 	}
   1196   1.1       jtc 	dayoff = oadd(dayoff, eitol(day - 1));
   1197  1.25   mlelstv 	if (dayoff < 0 && !TYPE_SIGNED(zic_t)) {
   1198   1.5       jtc 		error(_("time before zero"));
   1199   1.1       jtc 		return;
   1200   1.1       jtc 	}
   1201  1.20    kleink 	if (dayoff < min_time / SECSPERDAY) {
   1202  1.20    kleink 		error(_("time too small"));
   1203  1.20    kleink 		return;
   1204  1.20    kleink 	}
   1205  1.20    kleink 	if (dayoff > max_time / SECSPERDAY) {
   1206  1.20    kleink 		error(_("time too large"));
   1207   1.1       jtc 		return;
   1208   1.1       jtc 	}
   1209  1.25   mlelstv 	t = (zic_t) dayoff * SECSPERDAY;
   1210   1.5       jtc 	tod = gethms(fields[LP_TIME], _("invalid time of day"), FALSE);
   1211   1.1       jtc 	cp = fields[LP_CORR];
   1212   1.1       jtc 	{
   1213   1.1       jtc 		register int	positive;
   1214   1.1       jtc 		int		count;
   1215   1.1       jtc 
   1216   1.1       jtc 		if (strcmp(cp, "") == 0) { /* infile() turns "-" into "" */
   1217   1.1       jtc 			positive = FALSE;
   1218   1.1       jtc 			count = 1;
   1219   1.1       jtc 		} else if (strcmp(cp, "--") == 0) {
   1220   1.1       jtc 			positive = FALSE;
   1221   1.1       jtc 			count = 2;
   1222   1.1       jtc 		} else if (strcmp(cp, "+") == 0) {
   1223   1.1       jtc 			positive = TRUE;
   1224   1.1       jtc 			count = 1;
   1225   1.1       jtc 		} else if (strcmp(cp, "++") == 0) {
   1226   1.1       jtc 			positive = TRUE;
   1227   1.1       jtc 			count = 2;
   1228   1.1       jtc 		} else {
   1229   1.5       jtc 			error(_("illegal CORRECTION field on Leap line"));
   1230   1.1       jtc 			return;
   1231   1.1       jtc 		}
   1232   1.1       jtc 		if ((lp = byword(fields[LP_ROLL], leap_types)) == NULL) {
   1233  1.25   mlelstv 			error(_(
   1234  1.25   mlelstv 				"illegal Rolling/Stationary field on Leap line"
   1235  1.25   mlelstv 				));
   1236   1.1       jtc 			return;
   1237   1.1       jtc 		}
   1238   1.1       jtc 		leapadd(tadd(t, tod), positive, lp->l_value, count);
   1239   1.1       jtc 	}
   1240   1.1       jtc }
   1241   1.1       jtc 
   1242   1.1       jtc static void
   1243   1.1       jtc inlink(fields, nfields)
   1244   1.1       jtc register char ** const	fields;
   1245   1.1       jtc const int		nfields;
   1246   1.1       jtc {
   1247   1.1       jtc 	struct link	l;
   1248   1.1       jtc 
   1249   1.1       jtc 	if (nfields != LINK_FIELDS) {
   1250   1.5       jtc 		error(_("wrong number of fields on Link line"));
   1251   1.1       jtc 		return;
   1252   1.1       jtc 	}
   1253   1.1       jtc 	if (*fields[LF_FROM] == '\0') {
   1254   1.5       jtc 		error(_("blank FROM field on Link line"));
   1255   1.1       jtc 		return;
   1256   1.1       jtc 	}
   1257   1.1       jtc 	if (*fields[LF_TO] == '\0') {
   1258   1.5       jtc 		error(_("blank TO field on Link line"));
   1259   1.1       jtc 		return;
   1260   1.1       jtc 	}
   1261   1.1       jtc 	l.l_filename = filename;
   1262   1.1       jtc 	l.l_linenum = linenum;
   1263   1.1       jtc 	l.l_from = ecpyalloc(fields[LF_FROM]);
   1264   1.1       jtc 	l.l_to = ecpyalloc(fields[LF_TO]);
   1265   1.1       jtc 	links = (struct link *) (void *) erealloc((char *) links,
   1266   1.1       jtc 		(int) ((nlinks + 1) * sizeof *links));
   1267   1.1       jtc 	links[nlinks++] = l;
   1268   1.1       jtc }
   1269   1.1       jtc 
   1270   1.1       jtc static void
   1271   1.1       jtc rulesub(rp, loyearp, hiyearp, typep, monthp, dayp, timep)
   1272   1.1       jtc register struct rule * const	rp;
   1273   1.1       jtc const char * const		loyearp;
   1274   1.1       jtc const char * const		hiyearp;
   1275   1.1       jtc const char * const		typep;
   1276   1.1       jtc const char * const		monthp;
   1277   1.1       jtc const char * const		dayp;
   1278   1.1       jtc const char * const		timep;
   1279   1.1       jtc {
   1280   1.1       jtc 	register const struct lookup *	lp;
   1281   1.1       jtc 	register const char *		cp;
   1282   1.1       jtc 	register char *			dp;
   1283   1.1       jtc 	register char *			ep;
   1284   1.1       jtc 
   1285   1.1       jtc 	if ((lp = byword(monthp, mon_names)) == NULL) {
   1286   1.5       jtc 		error(_("invalid month name"));
   1287   1.1       jtc 		return;
   1288   1.1       jtc 	}
   1289   1.1       jtc 	rp->r_month = lp->l_value;
   1290   1.1       jtc 	rp->r_todisstd = FALSE;
   1291   1.1       jtc 	rp->r_todisgmt = FALSE;
   1292   1.1       jtc 	dp = ecpyalloc(timep);
   1293   1.1       jtc 	if (*dp != '\0') {
   1294   1.1       jtc 		ep = dp + strlen(dp) - 1;
   1295   1.1       jtc 		switch (lowerit(*ep)) {
   1296   1.1       jtc 			case 's':	/* Standard */
   1297   1.1       jtc 				rp->r_todisstd = TRUE;
   1298   1.1       jtc 				rp->r_todisgmt = FALSE;
   1299   1.1       jtc 				*ep = '\0';
   1300   1.1       jtc 				break;
   1301   1.1       jtc 			case 'w':	/* Wall */
   1302   1.1       jtc 				rp->r_todisstd = FALSE;
   1303   1.1       jtc 				rp->r_todisgmt = FALSE;
   1304   1.1       jtc 				*ep = '\0';
   1305   1.7       jtc 				break;
   1306   1.1       jtc 			case 'g':	/* Greenwich */
   1307   1.1       jtc 			case 'u':	/* Universal */
   1308   1.1       jtc 			case 'z':	/* Zulu */
   1309   1.1       jtc 				rp->r_todisstd = TRUE;
   1310   1.1       jtc 				rp->r_todisgmt = TRUE;
   1311   1.1       jtc 				*ep = '\0';
   1312   1.1       jtc 				break;
   1313   1.1       jtc 		}
   1314   1.1       jtc 	}
   1315   1.5       jtc 	rp->r_tod = gethms(dp, _("invalid time of day"), FALSE);
   1316   1.1       jtc 	ifree(dp);
   1317   1.1       jtc 	/*
   1318   1.1       jtc 	** Year work.
   1319   1.1       jtc 	*/
   1320   1.1       jtc 	cp = loyearp;
   1321   1.1       jtc 	lp = byword(cp, begin_years);
   1322  1.25   mlelstv 	rp->r_lowasnum = lp == NULL;
   1323  1.25   mlelstv 	if (!rp->r_lowasnum) switch ((int) lp->l_value) {
   1324   1.1       jtc 		case YR_MINIMUM:
   1325   1.3       jtc 			rp->r_loyear = INT_MIN;
   1326   1.1       jtc 			break;
   1327   1.1       jtc 		case YR_MAXIMUM:
   1328   1.3       jtc 			rp->r_loyear = INT_MAX;
   1329   1.1       jtc 			break;
   1330   1.1       jtc 		default:	/* "cannot happen" */
   1331   1.1       jtc 			(void) fprintf(stderr,
   1332   1.5       jtc 				_("%s: panic: Invalid l_value %d\n"),
   1333   1.1       jtc 				progname, lp->l_value);
   1334  1.25   mlelstv 			exit(EXIT_FAILURE);
   1335   1.1       jtc 	} else if (sscanf(cp, scheck(cp, "%d"), &rp->r_loyear) != 1) {
   1336   1.5       jtc 		error(_("invalid starting year"));
   1337   1.1       jtc 		return;
   1338  1.11       jtc 	}
   1339   1.1       jtc 	cp = hiyearp;
   1340  1.25   mlelstv 	lp = byword(cp, end_years);
   1341  1.25   mlelstv 	rp->r_hiwasnum = lp == NULL;
   1342  1.25   mlelstv 	if (!rp->r_hiwasnum) switch ((int) lp->l_value) {
   1343   1.1       jtc 		case YR_MINIMUM:
   1344   1.3       jtc 			rp->r_hiyear = INT_MIN;
   1345   1.1       jtc 			break;
   1346   1.1       jtc 		case YR_MAXIMUM:
   1347   1.3       jtc 			rp->r_hiyear = INT_MAX;
   1348   1.1       jtc 			break;
   1349   1.1       jtc 		case YR_ONLY:
   1350   1.1       jtc 			rp->r_hiyear = rp->r_loyear;
   1351   1.1       jtc 			break;
   1352   1.1       jtc 		default:	/* "cannot happen" */
   1353   1.1       jtc 			(void) fprintf(stderr,
   1354   1.5       jtc 				_("%s: panic: Invalid l_value %d\n"),
   1355   1.1       jtc 				progname, lp->l_value);
   1356  1.25   mlelstv 			exit(EXIT_FAILURE);
   1357   1.1       jtc 	} else if (sscanf(cp, scheck(cp, "%d"), &rp->r_hiyear) != 1) {
   1358   1.5       jtc 		error(_("invalid ending year"));
   1359   1.1       jtc 		return;
   1360  1.11       jtc 	}
   1361   1.1       jtc 	if (rp->r_loyear > rp->r_hiyear) {
   1362   1.5       jtc 		error(_("starting year greater than ending year"));
   1363   1.1       jtc 		return;
   1364   1.1       jtc 	}
   1365   1.1       jtc 	if (*typep == '\0')
   1366   1.1       jtc 		rp->r_yrtype = NULL;
   1367   1.1       jtc 	else {
   1368   1.1       jtc 		if (rp->r_loyear == rp->r_hiyear) {
   1369   1.5       jtc 			error(_("typed single year"));
   1370   1.1       jtc 			return;
   1371   1.1       jtc 		}
   1372   1.1       jtc 		rp->r_yrtype = ecpyalloc(typep);
   1373   1.1       jtc 	}
   1374   1.1       jtc 	/*
   1375   1.1       jtc 	** Day work.
   1376   1.1       jtc 	** Accept things such as:
   1377   1.1       jtc 	**	1
   1378   1.1       jtc 	**	last-Sunday
   1379   1.1       jtc 	**	Sun<=20
   1380   1.1       jtc 	**	Sun>=7
   1381   1.1       jtc 	*/
   1382   1.1       jtc 	dp = ecpyalloc(dayp);
   1383   1.1       jtc 	if ((lp = byword(dp, lasts)) != NULL) {
   1384   1.1       jtc 		rp->r_dycode = DC_DOWLEQ;
   1385   1.1       jtc 		rp->r_wday = lp->l_value;
   1386   1.1       jtc 		rp->r_dayofmonth = len_months[1][rp->r_month];
   1387   1.1       jtc 	} else {
   1388   1.1       jtc 		if ((ep = strchr(dp, '<')) != 0)
   1389   1.1       jtc 			rp->r_dycode = DC_DOWLEQ;
   1390   1.1       jtc 		else if ((ep = strchr(dp, '>')) != 0)
   1391   1.1       jtc 			rp->r_dycode = DC_DOWGEQ;
   1392   1.1       jtc 		else {
   1393   1.1       jtc 			ep = dp;
   1394   1.1       jtc 			rp->r_dycode = DC_DOM;
   1395   1.1       jtc 		}
   1396   1.1       jtc 		if (rp->r_dycode != DC_DOM) {
   1397   1.1       jtc 			*ep++ = 0;
   1398   1.1       jtc 			if (*ep++ != '=') {
   1399   1.5       jtc 				error(_("invalid day of month"));
   1400   1.1       jtc 				ifree(dp);
   1401   1.1       jtc 				return;
   1402   1.1       jtc 			}
   1403   1.1       jtc 			if ((lp = byword(dp, wday_names)) == NULL) {
   1404   1.5       jtc 				error(_("invalid weekday name"));
   1405   1.1       jtc 				ifree(dp);
   1406   1.1       jtc 				return;
   1407   1.1       jtc 			}
   1408   1.1       jtc 			rp->r_wday = lp->l_value;
   1409   1.1       jtc 		}
   1410   1.1       jtc 		if (sscanf(ep, scheck(ep, "%d"), &rp->r_dayofmonth) != 1 ||
   1411   1.1       jtc 			rp->r_dayofmonth <= 0 ||
   1412   1.1       jtc 			(rp->r_dayofmonth > len_months[1][rp->r_month])) {
   1413   1.5       jtc 				error(_("invalid day of month"));
   1414   1.1       jtc 				ifree(dp);
   1415   1.1       jtc 				return;
   1416   1.1       jtc 		}
   1417   1.1       jtc 	}
   1418   1.1       jtc 	ifree(dp);
   1419   1.1       jtc }
   1420   1.1       jtc 
   1421   1.1       jtc static void
   1422   1.1       jtc convert(val, buf)
   1423   1.1       jtc const long	val;
   1424   1.1       jtc char * const	buf;
   1425   1.1       jtc {
   1426   1.1       jtc 	register int	i;
   1427  1.25   mlelstv 	register int	shift;
   1428   1.1       jtc 
   1429   1.1       jtc 	for (i = 0, shift = 24; i < 4; ++i, shift -= 8)
   1430   1.1       jtc 		buf[i] = val >> shift;
   1431   1.1       jtc }
   1432   1.1       jtc 
   1433   1.1       jtc static void
   1434  1.25   mlelstv convert64(val, buf)
   1435  1.25   mlelstv const zic_t	val;
   1436  1.25   mlelstv char * const	buf;
   1437  1.25   mlelstv {
   1438  1.25   mlelstv 	register int	i;
   1439  1.25   mlelstv 	register int	shift;
   1440  1.25   mlelstv 
   1441  1.25   mlelstv 	for (i = 0, shift = 56; i < 8; ++i, shift -= 8)
   1442  1.25   mlelstv 		buf[i] = val >> shift;
   1443  1.25   mlelstv }
   1444  1.25   mlelstv 
   1445  1.25   mlelstv static void
   1446   1.1       jtc puttzcode(val, fp)
   1447   1.1       jtc const long	val;
   1448   1.1       jtc FILE * const	fp;
   1449   1.1       jtc {
   1450   1.1       jtc 	char	buf[4];
   1451   1.1       jtc 
   1452   1.1       jtc 	convert(val, buf);
   1453   1.1       jtc 	(void) fwrite((void *) buf, (size_t) sizeof buf, (size_t) 1, fp);
   1454   1.1       jtc }
   1455   1.1       jtc 
   1456  1.25   mlelstv static void
   1457  1.25   mlelstv puttzcode64(val, fp)
   1458  1.25   mlelstv const zic_t	val;
   1459  1.25   mlelstv FILE * const	fp;
   1460  1.25   mlelstv {
   1461  1.25   mlelstv 	char	buf[8];
   1462  1.25   mlelstv 
   1463  1.25   mlelstv 	convert64(val, buf);
   1464  1.25   mlelstv 	(void) fwrite((void *) buf, (size_t) sizeof buf, (size_t) 1, fp);
   1465  1.25   mlelstv }
   1466  1.25   mlelstv 
   1467   1.5       jtc static int
   1468   1.5       jtc atcomp(avp, bvp)
   1469  1.10     lukem const void *	avp;
   1470  1.10     lukem const void *	bvp;
   1471   1.5       jtc {
   1472  1.25   mlelstv 	const zic_t	a = ((const struct attype *) avp)->at;
   1473  1.25   mlelstv 	const zic_t	b = ((const struct attype *) bvp)->at;
   1474  1.25   mlelstv 
   1475  1.25   mlelstv 	return (a < b) ? -1 : (a > b);
   1476  1.25   mlelstv }
   1477  1.25   mlelstv 
   1478  1.25   mlelstv static int
   1479  1.25   mlelstv is32(x)
   1480  1.25   mlelstv const zic_t	x;
   1481  1.25   mlelstv {
   1482  1.25   mlelstv 	return INT32_MIN <= x && x <= INT32_MAX;
   1483   1.5       jtc }
   1484   1.5       jtc 
   1485   1.1       jtc static void
   1486  1.25   mlelstv writezone(name, string)
   1487   1.1       jtc const char * const	name;
   1488  1.25   mlelstv const char * const	string;
   1489   1.1       jtc {
   1490  1.25   mlelstv 	register FILE *			fp;
   1491  1.25   mlelstv 	register int			i, j;
   1492  1.25   mlelstv 	register int			leapcnt32, leapi32;
   1493  1.25   mlelstv 	register int			timecnt32, timei32;
   1494  1.25   mlelstv 	register int			pass;
   1495  1.25   mlelstv 	static char *			fullname;
   1496  1.25   mlelstv 	static const struct tzhead	tzh0;
   1497  1.25   mlelstv 	static struct tzhead		tzh;
   1498  1.25   mlelstv 	zic_t				ats[TZ_MAX_TIMES];
   1499  1.25   mlelstv 	unsigned char			types[TZ_MAX_TIMES];
   1500   1.5       jtc 
   1501   1.5       jtc 	/*
   1502   1.5       jtc 	** Sort.
   1503   1.5       jtc 	*/
   1504   1.5       jtc 	if (timecnt > 1)
   1505   1.5       jtc 		(void) qsort((void *) attypes, (size_t) timecnt,
   1506   1.5       jtc 			(size_t) sizeof *attypes, atcomp);
   1507   1.5       jtc 	/*
   1508   1.5       jtc 	** Optimize.
   1509   1.5       jtc 	*/
   1510   1.5       jtc 	{
   1511   1.5       jtc 		int	fromi;
   1512   1.5       jtc 		int	toi;
   1513   1.1       jtc 
   1514   1.5       jtc 		toi = 0;
   1515   1.5       jtc 		fromi = 0;
   1516   1.7       jtc 		while (fromi < timecnt && attypes[fromi].at < min_time)
   1517   1.7       jtc 			++fromi;
   1518   1.5       jtc 		if (isdsts[0] == 0)
   1519   1.7       jtc 			while (fromi < timecnt && attypes[fromi].type == 0)
   1520   1.5       jtc 				++fromi;	/* handled by default rule */
   1521   1.5       jtc 		for ( ; fromi < timecnt; ++fromi) {
   1522  1.25   mlelstv 			if (toi != 0 && ((attypes[fromi].at +
   1523  1.25   mlelstv 				gmtoffs[attypes[toi - 1].type]) <=
   1524  1.25   mlelstv 				(attypes[toi - 1].at + gmtoffs[toi == 1 ? 0
   1525  1.25   mlelstv 				: attypes[toi - 2].type]))) {
   1526  1.25   mlelstv 					attypes[toi - 1].type =
   1527  1.25   mlelstv 						attypes[fromi].type;
   1528  1.25   mlelstv 					continue;
   1529   1.5       jtc 			}
   1530   1.5       jtc 			if (toi == 0 ||
   1531   1.5       jtc 				attypes[toi - 1].type != attypes[fromi].type)
   1532   1.5       jtc 					attypes[toi++] = attypes[fromi];
   1533   1.5       jtc 		}
   1534   1.5       jtc 		timecnt = toi;
   1535   1.5       jtc 	}
   1536   1.5       jtc 	/*
   1537   1.5       jtc 	** Transfer.
   1538   1.5       jtc 	*/
   1539   1.5       jtc 	for (i = 0; i < timecnt; ++i) {
   1540   1.5       jtc 		ats[i] = attypes[i].at;
   1541   1.5       jtc 		types[i] = attypes[i].type;
   1542   1.5       jtc 	}
   1543  1.25   mlelstv 	/*
   1544  1.25   mlelstv 	** Correct for leap seconds.
   1545  1.25   mlelstv 	*/
   1546  1.25   mlelstv 	for (i = 0; i < timecnt; ++i) {
   1547  1.25   mlelstv 		j = leapcnt;
   1548  1.25   mlelstv 		while (--j >= 0)
   1549  1.25   mlelstv 			if (ats[i] > trans[j] - corr[j]) {
   1550  1.25   mlelstv 				ats[i] = tadd(ats[i], corr[j]);
   1551  1.25   mlelstv 				break;
   1552  1.25   mlelstv 			}
   1553  1.25   mlelstv 	}
   1554  1.25   mlelstv 	/*
   1555  1.25   mlelstv 	** Figure out 32-bit-limited starts and counts.
   1556  1.25   mlelstv 	*/
   1557  1.25   mlelstv 	timecnt32 = timecnt;
   1558  1.25   mlelstv 	timei32 = 0;
   1559  1.25   mlelstv 	leapcnt32 = leapcnt;
   1560  1.25   mlelstv 	leapi32 = 0;
   1561  1.25   mlelstv 	while (timecnt32 > 0 && !is32(ats[timecnt32 - 1]))
   1562  1.25   mlelstv 		--timecnt32;
   1563  1.25   mlelstv 	while (timecnt32 > 0 && !is32(ats[timei32])) {
   1564  1.25   mlelstv 		--timecnt32;
   1565  1.25   mlelstv 		++timei32;
   1566  1.25   mlelstv 	}
   1567  1.25   mlelstv 	while (leapcnt32 > 0 && !is32(trans[leapcnt32 - 1]))
   1568  1.25   mlelstv 		--leapcnt32;
   1569  1.25   mlelstv 	while (leapcnt32 > 0 && !is32(trans[leapi32])) {
   1570  1.25   mlelstv 		--leapcnt32;
   1571  1.25   mlelstv 		++leapi32;
   1572  1.25   mlelstv 	}
   1573   1.1       jtc 	fullname = erealloc(fullname,
   1574   1.1       jtc 		(int) (strlen(directory) + 1 + strlen(name) + 1));
   1575   1.7       jtc 	(void) sprintf(fullname, "%s/%s", directory, name);	/* XXX: sprintf is safe */
   1576   1.7       jtc 	/*
   1577   1.7       jtc 	** Remove old file, if any, to snap links.
   1578   1.7       jtc 	*/
   1579   1.7       jtc 	if (!itsdir(fullname) && remove(fullname) != 0 && errno != ENOENT) {
   1580   1.7       jtc 		const char *e = strerror(errno);
   1581   1.7       jtc 
   1582   1.7       jtc 		(void) fprintf(stderr, _("%s: Can't remove %s: %s\n"),
   1583   1.7       jtc 			progname, fullname, e);
   1584  1.25   mlelstv 		exit(EXIT_FAILURE);
   1585   1.7       jtc 	}
   1586   1.1       jtc 	if ((fp = fopen(fullname, "wb")) == NULL) {
   1587   1.1       jtc 		if (mkdirs(fullname) != 0)
   1588  1.25   mlelstv 			exit(EXIT_FAILURE);
   1589   1.1       jtc 		if ((fp = fopen(fullname, "wb")) == NULL) {
   1590   1.5       jtc 			const char *e = strerror(errno);
   1591   1.7       jtc 
   1592   1.5       jtc 			(void) fprintf(stderr, _("%s: Can't create %s: %s\n"),
   1593   1.5       jtc 				progname, fullname, e);
   1594  1.25   mlelstv 			exit(EXIT_FAILURE);
   1595   1.1       jtc 		}
   1596   1.1       jtc 	}
   1597  1.25   mlelstv 	for (pass = 1; pass <= 2; ++pass) {
   1598  1.25   mlelstv 		register int	thistimei, thistimecnt;
   1599  1.25   mlelstv 		register int	thisleapi, thisleapcnt;
   1600  1.25   mlelstv 		register int	thistimelim, thisleaplim;
   1601  1.25   mlelstv 		int		writetype[TZ_MAX_TIMES];
   1602  1.25   mlelstv 		int		typemap[TZ_MAX_TYPES];
   1603  1.25   mlelstv 		register int	thistypecnt;
   1604  1.25   mlelstv 		char		thischars[TZ_MAX_CHARS];
   1605  1.25   mlelstv 		char		thischarcnt;
   1606  1.25   mlelstv 		int 		indmap[TZ_MAX_CHARS];
   1607  1.25   mlelstv 
   1608  1.25   mlelstv 		if (pass == 1) {
   1609  1.25   mlelstv 			thistimei = timei32;
   1610  1.25   mlelstv 			thistimecnt = timecnt32;
   1611  1.25   mlelstv 			thisleapi = leapi32;
   1612  1.25   mlelstv 			thisleapcnt = leapcnt32;
   1613  1.25   mlelstv 		} else {
   1614  1.25   mlelstv 			thistimei = 0;
   1615  1.25   mlelstv 			thistimecnt = timecnt;
   1616  1.25   mlelstv 			thisleapi = 0;
   1617  1.25   mlelstv 			thisleapcnt = leapcnt;
   1618  1.25   mlelstv 		}
   1619  1.25   mlelstv 		thistimelim = thistimei + thistimecnt;
   1620  1.25   mlelstv 		thisleaplim = thisleapi + thisleapcnt;
   1621  1.25   mlelstv 		for (i = 0; i < typecnt; ++i)
   1622  1.25   mlelstv 			writetype[i] = thistimecnt == timecnt;
   1623  1.25   mlelstv 		if (thistimecnt == 0) {
   1624  1.25   mlelstv 			/*
   1625  1.25   mlelstv 			** No transition times fall in the current
   1626  1.25   mlelstv 			** (32- or 64-bit) window.
   1627  1.25   mlelstv 			*/
   1628  1.25   mlelstv 			if (typecnt != 0)
   1629  1.25   mlelstv 				writetype[typecnt - 1] = TRUE;
   1630  1.25   mlelstv 		} else {
   1631  1.25   mlelstv 			for (i = thistimei - 1; i < thistimelim; ++i)
   1632  1.25   mlelstv 				if (i >= 0)
   1633  1.25   mlelstv 					writetype[types[i]] = TRUE;
   1634  1.25   mlelstv 			/*
   1635  1.25   mlelstv 			** For America/Godthab and Antarctica/Palmer
   1636  1.25   mlelstv 			*/
   1637  1.25   mlelstv 			if (thistimei == 0)
   1638  1.25   mlelstv 				writetype[0] = TRUE;
   1639  1.25   mlelstv 		}
   1640  1.25   mlelstv 		thistypecnt = 0;
   1641  1.25   mlelstv 		for (i = 0; i < typecnt; ++i)
   1642  1.25   mlelstv 			typemap[i] = writetype[i] ?  thistypecnt++ : -1;
   1643  1.25   mlelstv 		for (i = 0; i < sizeof indmap / sizeof indmap[0]; ++i)
   1644  1.25   mlelstv 			indmap[i] = -1;
   1645  1.25   mlelstv 		thischarcnt = 0;
   1646  1.25   mlelstv 		for (i = 0; i < typecnt; ++i) {
   1647  1.25   mlelstv 			register char *	thisabbr;
   1648  1.25   mlelstv 
   1649  1.25   mlelstv 			if (!writetype[i])
   1650  1.25   mlelstv 				continue;
   1651  1.25   mlelstv 			if (indmap[abbrinds[i]] >= 0)
   1652  1.25   mlelstv 				continue;
   1653  1.25   mlelstv 			thisabbr = &chars[abbrinds[i]];
   1654  1.25   mlelstv 			for (j = 0; j < thischarcnt; ++j)
   1655  1.25   mlelstv 				if (strcmp(&thischars[j], thisabbr) == 0)
   1656  1.25   mlelstv 					break;
   1657  1.25   mlelstv 			if (j == thischarcnt) {
   1658  1.25   mlelstv 				(void) strcpy(&thischars[(int) thischarcnt],
   1659  1.25   mlelstv 					thisabbr);
   1660  1.25   mlelstv 				thischarcnt += strlen(thisabbr) + 1;
   1661  1.25   mlelstv 			}
   1662  1.25   mlelstv 			indmap[abbrinds[i]] = j;
   1663  1.25   mlelstv 		}
   1664  1.25   mlelstv #define DO(field)	(void) fwrite((void *) tzh.field, \
   1665  1.25   mlelstv 				(size_t) sizeof tzh.field, (size_t) 1, fp)
   1666  1.25   mlelstv 		tzh = tzh0;
   1667  1.25   mlelstv 		(void) strncpy(tzh.tzh_magic, TZ_MAGIC, sizeof tzh.tzh_magic);
   1668  1.25   mlelstv 		tzh.tzh_version[0] = ZIC_VERSION;
   1669  1.25   mlelstv 		convert(eitol(thistypecnt), tzh.tzh_ttisgmtcnt);
   1670  1.25   mlelstv 		convert(eitol(thistypecnt), tzh.tzh_ttisstdcnt);
   1671  1.25   mlelstv 		convert(eitol(thisleapcnt), tzh.tzh_leapcnt);
   1672  1.25   mlelstv 		convert(eitol(thistimecnt), tzh.tzh_timecnt);
   1673  1.25   mlelstv 		convert(eitol(thistypecnt), tzh.tzh_typecnt);
   1674  1.25   mlelstv 		convert(eitol(thischarcnt), tzh.tzh_charcnt);
   1675  1.25   mlelstv 		DO(tzh_magic);
   1676  1.25   mlelstv 		DO(tzh_version);
   1677  1.25   mlelstv 		DO(tzh_reserved);
   1678  1.25   mlelstv 		DO(tzh_ttisgmtcnt);
   1679  1.25   mlelstv 		DO(tzh_ttisstdcnt);
   1680  1.25   mlelstv 		DO(tzh_leapcnt);
   1681  1.25   mlelstv 		DO(tzh_timecnt);
   1682  1.25   mlelstv 		DO(tzh_typecnt);
   1683  1.25   mlelstv 		DO(tzh_charcnt);
   1684   1.1       jtc #undef DO
   1685  1.25   mlelstv 		for (i = thistimei; i < thistimelim; ++i)
   1686  1.25   mlelstv 			if (pass == 1)
   1687  1.25   mlelstv 				puttzcode((long) ats[i], fp);
   1688  1.25   mlelstv 			else	puttzcode64(ats[i], fp);
   1689  1.25   mlelstv 		for (i = thistimei; i < thistimelim; ++i) {
   1690  1.25   mlelstv 			unsigned char	uc;
   1691  1.25   mlelstv 
   1692  1.25   mlelstv 			uc = typemap[types[i]];
   1693  1.25   mlelstv 			(void) fwrite((void *) &uc,
   1694  1.25   mlelstv 				(size_t) sizeof uc,
   1695  1.25   mlelstv 				(size_t) 1,
   1696  1.25   mlelstv 				fp);
   1697  1.25   mlelstv 		}
   1698  1.25   mlelstv 		for (i = 0; i < typecnt; ++i)
   1699  1.25   mlelstv 			if (writetype[i]) {
   1700  1.25   mlelstv 				puttzcode(gmtoffs[i], fp);
   1701  1.25   mlelstv 				(void) putc(isdsts[i], fp);
   1702  1.25   mlelstv 				(void) putc((unsigned char) indmap[abbrinds[i]], fp);
   1703   1.1       jtc 			}
   1704  1.25   mlelstv 		if (thischarcnt != 0)
   1705  1.25   mlelstv 			(void) fwrite((void *) thischars,
   1706  1.25   mlelstv 				(size_t) sizeof thischars[0],
   1707  1.25   mlelstv 				(size_t) thischarcnt, fp);
   1708  1.25   mlelstv 		for (i = thisleapi; i < thisleaplim; ++i) {
   1709  1.25   mlelstv 			register zic_t	todo;
   1710  1.25   mlelstv 
   1711  1.25   mlelstv 			if (roll[i]) {
   1712  1.25   mlelstv 				if (timecnt == 0 || trans[i] < ats[0]) {
   1713  1.25   mlelstv 					j = 0;
   1714  1.25   mlelstv 					while (isdsts[j])
   1715  1.25   mlelstv 						if (++j >= typecnt) {
   1716  1.25   mlelstv 							j = 0;
   1717  1.25   mlelstv 							break;
   1718  1.25   mlelstv 						}
   1719  1.25   mlelstv 				} else {
   1720  1.25   mlelstv 					j = 1;
   1721  1.25   mlelstv 					while (j < timecnt &&
   1722  1.25   mlelstv 						trans[i] >= ats[j])
   1723  1.25   mlelstv 							++j;
   1724  1.25   mlelstv 					j = types[j - 1];
   1725  1.25   mlelstv 				}
   1726  1.25   mlelstv 				todo = tadd(trans[i], -gmtoffs[j]);
   1727  1.25   mlelstv 			} else	todo = trans[i];
   1728  1.25   mlelstv 			if (pass == 1)
   1729  1.25   mlelstv 				puttzcode((long) todo, fp);
   1730  1.25   mlelstv 			else	puttzcode64(todo, fp);
   1731  1.25   mlelstv 			puttzcode(corr[i], fp);
   1732  1.25   mlelstv 		}
   1733  1.25   mlelstv 		for (i = 0; i < typecnt; ++i)
   1734  1.25   mlelstv 			if (writetype[i])
   1735  1.25   mlelstv 				(void) putc(ttisstds[i], fp);
   1736  1.25   mlelstv 		for (i = 0; i < typecnt; ++i)
   1737  1.25   mlelstv 			if (writetype[i])
   1738  1.25   mlelstv 				(void) putc(ttisgmts[i], fp);
   1739   1.1       jtc 	}
   1740  1.25   mlelstv 	(void) fprintf(fp, "\n%s\n", string);
   1741   1.1       jtc 	if (ferror(fp) || fclose(fp)) {
   1742   1.5       jtc 		(void) fprintf(stderr, _("%s: Error writing %s\n"),
   1743   1.5       jtc 			progname, fullname);
   1744  1.25   mlelstv 		exit(EXIT_FAILURE);
   1745   1.1       jtc 	}
   1746   1.1       jtc }
   1747   1.1       jtc 
   1748   1.1       jtc static void
   1749  1.25   mlelstv doabbr(abbr, abbrlen, format, letters, isdst, doquotes)
   1750   1.1       jtc char * const		abbr;
   1751   1.6       mrg const int		abbrlen;
   1752   1.1       jtc const char * const	format;
   1753   1.1       jtc const char * const	letters;
   1754   1.1       jtc const int		isdst;
   1755  1.25   mlelstv const int		doquotes;
   1756   1.1       jtc {
   1757  1.25   mlelstv 	register char *	cp;
   1758  1.25   mlelstv 	register char *	slashp;
   1759  1.25   mlelstv 	register int	len;
   1760  1.25   mlelstv 
   1761  1.25   mlelstv 	slashp = strchr(format, '/');
   1762  1.25   mlelstv 	if (slashp == NULL) {
   1763   1.1       jtc 		if (letters == NULL)
   1764  1.25   mlelstv 			(void) strlcpy(abbr, format, abbrlen);
   1765  1.25   mlelstv 		else	(void) snprintf(abbr, abbrlen, format, letters);
   1766  1.25   mlelstv 	} else if (isdst) {
   1767  1.25   mlelstv 		(void) strlcpy(abbr, slashp + 1, abbrlen);
   1768  1.25   mlelstv 	} else {
   1769  1.25   mlelstv 		if (slashp > format)
   1770  1.25   mlelstv 			(void) strncpy(abbr, format,
   1771  1.25   mlelstv 				(unsigned) (slashp - format));
   1772  1.25   mlelstv 		abbr[slashp - format] = '\0';
   1773  1.25   mlelstv 	}
   1774  1.25   mlelstv 	if (!doquotes)
   1775  1.25   mlelstv 		return;
   1776  1.25   mlelstv 	for (cp = abbr; *cp != '\0'; ++cp)
   1777  1.25   mlelstv 		if (strchr("ABCDEFGHIJKLMNOPQRSTUVWXYZ", *cp) == NULL &&
   1778  1.25   mlelstv 			strchr("abcdefghijklmnopqrstuvwxyz", *cp) == NULL)
   1779  1.25   mlelstv 				break;
   1780  1.25   mlelstv 	len = strlen(abbr);
   1781  1.25   mlelstv 	if (len > 0 && *cp == '\0')
   1782  1.25   mlelstv 		return;
   1783  1.25   mlelstv 	abbr[len + 2] = '\0';
   1784  1.25   mlelstv 	abbr[len + 1] = '>';
   1785  1.25   mlelstv 	for ( ; len > 0; --len)
   1786  1.25   mlelstv 		abbr[len] = abbr[len - 1];
   1787  1.25   mlelstv 	abbr[0] = '<';
   1788  1.25   mlelstv }
   1789  1.25   mlelstv 
   1790  1.25   mlelstv static void
   1791  1.25   mlelstv updateminmax(x)
   1792  1.25   mlelstv const int	x;
   1793  1.25   mlelstv {
   1794  1.25   mlelstv 	if (min_year > x)
   1795  1.25   mlelstv 		min_year = x;
   1796  1.25   mlelstv 	if (max_year < x)
   1797  1.25   mlelstv 		max_year = x;
   1798  1.25   mlelstv }
   1799  1.25   mlelstv 
   1800  1.25   mlelstv static int
   1801  1.25   mlelstv stringoffset(result, offset)
   1802  1.25   mlelstv char *	result;
   1803  1.25   mlelstv long	offset;
   1804  1.25   mlelstv {
   1805  1.25   mlelstv 	register int	hours;
   1806  1.25   mlelstv 	register int	minutes;
   1807  1.25   mlelstv 	register int	seconds;
   1808  1.25   mlelstv 
   1809  1.25   mlelstv 	result[0] = '\0';
   1810  1.25   mlelstv 	if (offset < 0) {
   1811  1.25   mlelstv 		(void) strcpy(result, "-");
   1812  1.25   mlelstv 		offset = -offset;
   1813  1.25   mlelstv 	}
   1814  1.25   mlelstv 	seconds = offset % SECSPERMIN;
   1815  1.25   mlelstv 	offset /= SECSPERMIN;
   1816  1.25   mlelstv 	minutes = offset % MINSPERHOUR;
   1817  1.25   mlelstv 	offset /= MINSPERHOUR;
   1818  1.25   mlelstv 	hours = offset;
   1819  1.25   mlelstv 	if (hours >= HOURSPERDAY) {
   1820  1.25   mlelstv 		result[0] = '\0';
   1821  1.25   mlelstv 		return -1;
   1822  1.25   mlelstv 	}
   1823  1.25   mlelstv 	(void) sprintf(end(result), "%d", hours);
   1824  1.25   mlelstv 	if (minutes != 0 || seconds != 0) {
   1825  1.25   mlelstv 		(void) sprintf(end(result), ":%02d", minutes);
   1826  1.25   mlelstv 		if (seconds != 0)
   1827  1.25   mlelstv 			(void) sprintf(end(result), ":%02d", seconds);
   1828  1.25   mlelstv 	}
   1829  1.25   mlelstv 	return 0;
   1830  1.25   mlelstv }
   1831  1.25   mlelstv 
   1832  1.25   mlelstv static int
   1833  1.25   mlelstv stringrule(result, rp, dstoff, gmtoff)
   1834  1.25   mlelstv char *				result;
   1835  1.25   mlelstv const struct rule * const	rp;
   1836  1.25   mlelstv const long			dstoff;
   1837  1.25   mlelstv const long			gmtoff;
   1838  1.25   mlelstv {
   1839  1.25   mlelstv 	register long	tod;
   1840  1.25   mlelstv 
   1841  1.25   mlelstv 	result = end(result);
   1842  1.25   mlelstv 	if (rp->r_dycode == DC_DOM) {
   1843  1.25   mlelstv 		register int	month, total;
   1844  1.25   mlelstv 
   1845  1.25   mlelstv 		if (rp->r_dayofmonth == 29 && rp->r_month == TM_FEBRUARY)
   1846  1.25   mlelstv 			return -1;
   1847  1.25   mlelstv 		total = 0;
   1848  1.25   mlelstv 		for (month = 0; month < rp->r_month; ++month)
   1849  1.25   mlelstv 			total += len_months[0][month];
   1850  1.25   mlelstv 		(void) sprintf(result, "J%d", total + rp->r_dayofmonth);
   1851  1.25   mlelstv 	} else {
   1852  1.25   mlelstv 		register int	week;
   1853  1.25   mlelstv 
   1854  1.25   mlelstv 		if (rp->r_dycode == DC_DOWGEQ) {
   1855  1.25   mlelstv 			week = 1 + rp->r_dayofmonth / DAYSPERWEEK;
   1856  1.25   mlelstv 			if ((week - 1) * DAYSPERWEEK + 1 != rp->r_dayofmonth)
   1857  1.25   mlelstv 				return -1;
   1858  1.25   mlelstv 		} else if (rp->r_dycode == DC_DOWLEQ) {
   1859  1.25   mlelstv 			if (rp->r_dayofmonth == len_months[1][rp->r_month])
   1860  1.25   mlelstv 				week = 5;
   1861  1.25   mlelstv 			else {
   1862  1.25   mlelstv 				week = 1 + rp->r_dayofmonth / DAYSPERWEEK;
   1863  1.25   mlelstv 				if (week * DAYSPERWEEK - 1 != rp->r_dayofmonth)
   1864  1.25   mlelstv 					return -1;
   1865  1.25   mlelstv 			}
   1866  1.25   mlelstv 		} else	return -1;	/* "cannot happen" */
   1867  1.25   mlelstv 		(void) sprintf(result, "M%d.%d.%d",
   1868  1.25   mlelstv 			rp->r_month + 1, week, rp->r_wday);
   1869  1.25   mlelstv 	}
   1870  1.25   mlelstv 	tod = rp->r_tod;
   1871  1.25   mlelstv 	if (rp->r_todisgmt)
   1872  1.25   mlelstv 		tod += gmtoff;
   1873  1.25   mlelstv 	if (rp->r_todisstd && rp->r_stdoff == 0)
   1874  1.25   mlelstv 		tod += dstoff;
   1875  1.25   mlelstv 	if (tod < 0) {
   1876  1.25   mlelstv 		result[0] = '\0';
   1877  1.25   mlelstv 		return -1;
   1878  1.25   mlelstv 	}
   1879  1.25   mlelstv 	if (tod != 2 * SECSPERMIN * MINSPERHOUR) {
   1880  1.25   mlelstv 		(void) strcat(result, "/");
   1881  1.25   mlelstv 		if (stringoffset(end(result), tod) != 0)
   1882  1.25   mlelstv 			return -1;
   1883  1.25   mlelstv 	}
   1884  1.25   mlelstv 	return 0;
   1885  1.25   mlelstv }
   1886  1.25   mlelstv 
   1887  1.25   mlelstv static void
   1888  1.25   mlelstv stringzone(result, resultlen, zpfirst, zonecount)
   1889  1.25   mlelstv char *				result;
   1890  1.25   mlelstv const int			resultlen;
   1891  1.25   mlelstv const struct zone * const	zpfirst;
   1892  1.25   mlelstv const int			zonecount;
   1893  1.25   mlelstv {
   1894  1.25   mlelstv 	register const struct zone *	zp;
   1895  1.25   mlelstv 	register struct rule *		rp;
   1896  1.25   mlelstv 	register struct rule *		stdrp;
   1897  1.25   mlelstv 	register struct rule *		dstrp;
   1898  1.25   mlelstv 	register int			i;
   1899  1.25   mlelstv 	register const char *		abbrvar;
   1900  1.25   mlelstv 
   1901  1.25   mlelstv 	result[0] = '\0';
   1902  1.25   mlelstv 	zp = zpfirst + zonecount - 1;
   1903  1.25   mlelstv 	stdrp = dstrp = NULL;
   1904  1.25   mlelstv 	for (i = 0; i < zp->z_nrules; ++i) {
   1905  1.25   mlelstv 		rp = &zp->z_rules[i];
   1906  1.25   mlelstv 		if (rp->r_hiwasnum || rp->r_hiyear != INT_MAX)
   1907  1.25   mlelstv 			continue;
   1908  1.25   mlelstv 		if (rp->r_yrtype != NULL)
   1909  1.25   mlelstv 			continue;
   1910  1.25   mlelstv 		if (rp->r_stdoff == 0) {
   1911  1.25   mlelstv 			if (stdrp == NULL)
   1912  1.25   mlelstv 				stdrp = rp;
   1913  1.25   mlelstv 			else	return;
   1914  1.25   mlelstv 		} else {
   1915  1.25   mlelstv 			if (dstrp == NULL)
   1916  1.25   mlelstv 				dstrp = rp;
   1917  1.25   mlelstv 			else	return;
   1918  1.25   mlelstv 		}
   1919  1.25   mlelstv 	}
   1920  1.25   mlelstv 	if (stdrp == NULL && dstrp == NULL) {
   1921  1.25   mlelstv 		/*
   1922  1.25   mlelstv 		** There are no rules running through "max".
   1923  1.25   mlelstv 		** Let's find the latest rule.
   1924  1.25   mlelstv 		*/
   1925  1.25   mlelstv 		for (i = 0; i < zp->z_nrules; ++i) {
   1926  1.25   mlelstv 			rp = &zp->z_rules[i];
   1927  1.25   mlelstv 			if (stdrp == NULL || rp->r_hiyear > stdrp->r_hiyear ||
   1928  1.25   mlelstv 				(rp->r_hiyear == stdrp->r_hiyear &&
   1929  1.25   mlelstv 				rp->r_month > stdrp->r_month))
   1930  1.25   mlelstv 					stdrp = rp;
   1931  1.25   mlelstv 		}
   1932  1.25   mlelstv 		if (stdrp != NULL && stdrp->r_stdoff != 0)
   1933  1.25   mlelstv 			return;	/* We end up in DST (a POSIX no-no). */
   1934  1.25   mlelstv 		/*
   1935  1.25   mlelstv 		** Horrid special case: if year is 2037,
   1936  1.25   mlelstv 		** presume this is a zone handled on a year-by-year basis;
   1937  1.25   mlelstv 		** do not try to apply a rule to the zone.
   1938  1.25   mlelstv 		*/
   1939  1.25   mlelstv 		if (stdrp != NULL && stdrp->r_hiyear == 2037)
   1940  1.25   mlelstv 			return;
   1941  1.25   mlelstv 	}
   1942  1.25   mlelstv 	if (stdrp == NULL && (zp->z_nrules != 0 || zp->z_stdoff != 0))
   1943  1.25   mlelstv 		return;
   1944  1.25   mlelstv 	abbrvar = (stdrp == NULL) ? "" : stdrp->r_abbrvar;
   1945  1.25   mlelstv 	doabbr(result, resultlen, zp->z_format, abbrvar, FALSE, TRUE);
   1946  1.25   mlelstv 	if (stringoffset(end(result), -zp->z_gmtoff) != 0) {
   1947  1.25   mlelstv 		result[0] = '\0';
   1948  1.25   mlelstv 		return;
   1949  1.25   mlelstv 	}
   1950  1.25   mlelstv 	if (dstrp == NULL)
   1951  1.25   mlelstv 		return;
   1952  1.25   mlelstv 	doabbr(end(result), resultlen - strlen(result),
   1953  1.25   mlelstv 		zp->z_format, dstrp->r_abbrvar, TRUE, TRUE);
   1954  1.25   mlelstv 	if (dstrp->r_stdoff != SECSPERMIN * MINSPERHOUR)
   1955  1.25   mlelstv 		if (stringoffset(end(result),
   1956  1.25   mlelstv 			-(zp->z_gmtoff + dstrp->r_stdoff)) != 0) {
   1957  1.25   mlelstv 				result[0] = '\0';
   1958  1.25   mlelstv 				return;
   1959  1.25   mlelstv 		}
   1960  1.25   mlelstv 	(void) strcat(result, ",");
   1961  1.25   mlelstv 	if (stringrule(result, dstrp, dstrp->r_stdoff, zp->z_gmtoff) != 0) {
   1962  1.25   mlelstv 		result[0] = '\0';
   1963  1.25   mlelstv 		return;
   1964  1.25   mlelstv 	}
   1965  1.25   mlelstv 	(void) strcat(result, ",");
   1966  1.25   mlelstv 	if (stringrule(result, stdrp, dstrp->r_stdoff, zp->z_gmtoff) != 0) {
   1967  1.25   mlelstv 		result[0] = '\0';
   1968  1.25   mlelstv 		return;
   1969   1.1       jtc 	}
   1970   1.1       jtc }
   1971   1.1       jtc 
   1972   1.1       jtc static void
   1973   1.1       jtc outzone(zpfirst, zonecount)
   1974   1.1       jtc const struct zone * const	zpfirst;
   1975   1.1       jtc const int			zonecount;
   1976   1.1       jtc {
   1977   1.1       jtc 	register const struct zone *	zp;
   1978   1.1       jtc 	register struct rule *		rp;
   1979   1.1       jtc 	register int			i, j;
   1980   1.1       jtc 	register int			usestart, useuntil;
   1981  1.25   mlelstv 	register zic_t			starttime, untiltime;
   1982   1.1       jtc 	register long			gmtoff;
   1983   1.1       jtc 	register long			stdoff;
   1984   1.1       jtc 	register int			year;
   1985   1.1       jtc 	register long			startoff;
   1986   1.1       jtc 	register int			startttisstd;
   1987   1.1       jtc 	register int			startttisgmt;
   1988   1.1       jtc 	register int			type;
   1989  1.25   mlelstv 	register char *			startbuf;
   1990  1.25   mlelstv 	register char *			ab;
   1991  1.25   mlelstv 	register char *			envvar;
   1992  1.25   mlelstv 	register int			max_abbr_len;
   1993  1.25   mlelstv 	register int			max_envvar_len;
   1994  1.25   mlelstv 
   1995  1.25   mlelstv 	max_abbr_len = 2 + max_format_len + max_abbrvar_len;
   1996  1.25   mlelstv 	max_envvar_len = 2 * max_abbr_len + 5 * 9;
   1997  1.25   mlelstv 	startbuf = emalloc(max_abbr_len + 1);
   1998  1.25   mlelstv 	ab = emalloc(max_abbr_len + 1);
   1999  1.25   mlelstv 	envvar = emalloc(max_envvar_len + 1);
   2000   1.1       jtc 	INITIALIZE(untiltime);
   2001   1.1       jtc 	INITIALIZE(starttime);
   2002   1.1       jtc 	/*
   2003   1.1       jtc 	** Now. . .finally. . .generate some useful data!
   2004   1.1       jtc 	*/
   2005   1.1       jtc 	timecnt = 0;
   2006   1.1       jtc 	typecnt = 0;
   2007   1.1       jtc 	charcnt = 0;
   2008   1.1       jtc 	/*
   2009  1.25   mlelstv 	** Thanks to Earl Chew
   2010   1.1       jtc 	** for noting the need to unconditionally initialize startttisstd.
   2011   1.1       jtc 	*/
   2012   1.1       jtc 	startttisstd = FALSE;
   2013   1.1       jtc 	startttisgmt = FALSE;
   2014  1.25   mlelstv 	min_year = max_year = EPOCH_YEAR;
   2015  1.25   mlelstv 	if (leapseen) {
   2016  1.25   mlelstv 		updateminmax(leapminyear);
   2017  1.25   mlelstv 		updateminmax(leapmaxyear + (leapmaxyear < INT_MAX));
   2018  1.25   mlelstv 	}
   2019  1.25   mlelstv 	for (i = 0; i < zonecount; ++i) {
   2020  1.25   mlelstv 		zp = &zpfirst[i];
   2021  1.25   mlelstv 		if (i < zonecount - 1)
   2022  1.25   mlelstv 			updateminmax(zp->z_untilrule.r_loyear);
   2023  1.25   mlelstv 		for (j = 0; j < zp->z_nrules; ++j) {
   2024  1.25   mlelstv 			rp = &zp->z_rules[j];
   2025  1.25   mlelstv 			if (rp->r_lowasnum)
   2026  1.25   mlelstv 				updateminmax(rp->r_loyear);
   2027  1.25   mlelstv 			if (rp->r_hiwasnum)
   2028  1.25   mlelstv 				updateminmax(rp->r_hiyear);
   2029  1.25   mlelstv 		}
   2030  1.25   mlelstv 	}
   2031  1.25   mlelstv 	/*
   2032  1.25   mlelstv 	** Generate lots of data if a rule can't cover all future times.
   2033  1.25   mlelstv 	*/
   2034  1.25   mlelstv 	stringzone(envvar, max_envvar_len+1, zpfirst, zonecount);
   2035  1.25   mlelstv 	if (noise && envvar[0] == '\0') {
   2036  1.25   mlelstv 		register char *	wp;
   2037  1.25   mlelstv 
   2038  1.25   mlelstv wp = ecpyalloc(_("no POSIX environment variable for zone"));
   2039  1.25   mlelstv 		wp = ecatalloc(wp, " ");
   2040  1.25   mlelstv 		wp = ecatalloc(wp, zpfirst->z_name);
   2041  1.25   mlelstv 		warning(wp);
   2042  1.25   mlelstv 		ifree(wp);
   2043  1.25   mlelstv 	}
   2044  1.25   mlelstv 	if (envvar[0] == '\0') {
   2045  1.25   mlelstv 		if (min_year >= INT_MIN + YEARSPERREPEAT)
   2046  1.25   mlelstv 			min_year -= YEARSPERREPEAT;
   2047  1.25   mlelstv 		else	min_year = INT_MIN;
   2048  1.25   mlelstv 		if (max_year <= INT_MAX - YEARSPERREPEAT)
   2049  1.25   mlelstv 			max_year += YEARSPERREPEAT;
   2050  1.25   mlelstv 		else	max_year = INT_MAX;
   2051  1.25   mlelstv 	}
   2052  1.25   mlelstv 	/*
   2053  1.25   mlelstv 	** For the benefit of older systems,
   2054  1.25   mlelstv 	** generate data from 1900 through 2037.
   2055  1.25   mlelstv 	*/
   2056  1.25   mlelstv 	if (min_year > 1900)
   2057  1.25   mlelstv 		min_year = 1900;
   2058  1.25   mlelstv 	if (max_year < 2037)
   2059  1.25   mlelstv 		max_year = 2037;
   2060   1.1       jtc 	for (i = 0; i < zonecount; ++i) {
   2061  1.19    kleink 		/*
   2062  1.19    kleink 		** A guess that may well be corrected later.
   2063  1.19    kleink 		*/
   2064  1.19    kleink 		stdoff = 0;
   2065   1.1       jtc 		zp = &zpfirst[i];
   2066   1.1       jtc 		usestart = i > 0 && (zp - 1)->z_untiltime > min_time;
   2067   1.1       jtc 		useuntil = i < (zonecount - 1);
   2068   1.1       jtc 		if (useuntil && zp->z_untiltime <= min_time)
   2069   1.1       jtc 			continue;
   2070   1.1       jtc 		gmtoff = zp->z_gmtoff;
   2071   1.1       jtc 		eat(zp->z_filename, zp->z_linenum);
   2072   1.5       jtc 		*startbuf = '\0';
   2073   1.5       jtc 		startoff = zp->z_gmtoff;
   2074   1.1       jtc 		if (zp->z_nrules == 0) {
   2075   1.1       jtc 			stdoff = zp->z_stdoff;
   2076  1.25   mlelstv 			doabbr(startbuf, max_abbr_len + 1, zp->z_format,
   2077  1.25   mlelstv 				(char *) NULL, stdoff != 0, FALSE);
   2078   1.1       jtc 			type = addtype(oadd(zp->z_gmtoff, stdoff),
   2079   1.1       jtc 				startbuf, stdoff != 0, startttisstd,
   2080   1.1       jtc 				startttisgmt);
   2081   1.5       jtc 			if (usestart) {
   2082   1.1       jtc 				addtt(starttime, type);
   2083   1.5       jtc 				usestart = FALSE;
   2084  1.19    kleink 			} else if (stdoff != 0)
   2085   1.1       jtc 				addtt(min_time, type);
   2086   1.1       jtc 		} else for (year = min_year; year <= max_year; ++year) {
   2087   1.1       jtc 			if (useuntil && year > zp->z_untilrule.r_hiyear)
   2088   1.1       jtc 				break;
   2089   1.1       jtc 			/*
   2090   1.1       jtc 			** Mark which rules to do in the current year.
   2091   1.1       jtc 			** For those to do, calculate rpytime(rp, year);
   2092   1.1       jtc 			*/
   2093   1.1       jtc 			for (j = 0; j < zp->z_nrules; ++j) {
   2094   1.1       jtc 				rp = &zp->z_rules[j];
   2095   1.1       jtc 				eats(zp->z_filename, zp->z_linenum,
   2096   1.1       jtc 					rp->r_filename, rp->r_linenum);
   2097   1.1       jtc 				rp->r_todo = year >= rp->r_loyear &&
   2098   1.1       jtc 						year <= rp->r_hiyear &&
   2099   1.1       jtc 						yearistype(year, rp->r_yrtype);
   2100   1.1       jtc 				if (rp->r_todo)
   2101   1.1       jtc 					rp->r_temp = rpytime(rp, year);
   2102   1.1       jtc 			}
   2103   1.1       jtc 			for ( ; ; ) {
   2104   1.1       jtc 				register int	k;
   2105  1.25   mlelstv 				register zic_t	jtime, ktime;
   2106   1.1       jtc 				register long	offset;
   2107   1.1       jtc 
   2108   1.1       jtc 				INITIALIZE(ktime);
   2109   1.1       jtc 				if (useuntil) {
   2110   1.1       jtc 					/*
   2111  1.11       jtc 					** Turn untiltime into UTC
   2112   1.1       jtc 					** assuming the current gmtoff and
   2113   1.1       jtc 					** stdoff values.
   2114   1.1       jtc 					*/
   2115   1.1       jtc 					untiltime = zp->z_untiltime;
   2116   1.1       jtc 					if (!zp->z_untilrule.r_todisgmt)
   2117   1.1       jtc 						untiltime = tadd(untiltime,
   2118   1.1       jtc 							-gmtoff);
   2119   1.1       jtc 					if (!zp->z_untilrule.r_todisstd)
   2120   1.1       jtc 						untiltime = tadd(untiltime,
   2121   1.1       jtc 							-stdoff);
   2122   1.1       jtc 				}
   2123   1.1       jtc 				/*
   2124   1.1       jtc 				** Find the rule (of those to do, if any)
   2125   1.1       jtc 				** that takes effect earliest in the year.
   2126   1.1       jtc 				*/
   2127   1.1       jtc 				k = -1;
   2128   1.1       jtc 				for (j = 0; j < zp->z_nrules; ++j) {
   2129   1.1       jtc 					rp = &zp->z_rules[j];
   2130   1.1       jtc 					if (!rp->r_todo)
   2131   1.1       jtc 						continue;
   2132   1.1       jtc 					eats(zp->z_filename, zp->z_linenum,
   2133   1.1       jtc 						rp->r_filename, rp->r_linenum);
   2134   1.1       jtc 					offset = rp->r_todisgmt ? 0 : gmtoff;
   2135   1.1       jtc 					if (!rp->r_todisstd)
   2136   1.1       jtc 						offset = oadd(offset, stdoff);
   2137   1.1       jtc 					jtime = rp->r_temp;
   2138   1.1       jtc 					if (jtime == min_time ||
   2139   1.1       jtc 						jtime == max_time)
   2140   1.1       jtc 							continue;
   2141   1.1       jtc 					jtime = tadd(jtime, -offset);
   2142   1.1       jtc 					if (k < 0 || jtime < ktime) {
   2143   1.1       jtc 						k = j;
   2144   1.1       jtc 						ktime = jtime;
   2145   1.1       jtc 					}
   2146   1.1       jtc 				}
   2147   1.1       jtc 				if (k < 0)
   2148   1.1       jtc 					break;	/* go on to next year */
   2149   1.1       jtc 				rp = &zp->z_rules[k];
   2150   1.1       jtc 				rp->r_todo = FALSE;
   2151   1.1       jtc 				if (useuntil && ktime >= untiltime)
   2152   1.1       jtc 					break;
   2153   1.5       jtc 				stdoff = rp->r_stdoff;
   2154   1.5       jtc 				if (usestart && ktime == starttime)
   2155   1.5       jtc 					usestart = FALSE;
   2156   1.1       jtc 				if (usestart) {
   2157   1.5       jtc 					if (ktime < starttime) {
   2158   1.5       jtc 						startoff = oadd(zp->z_gmtoff,
   2159   1.5       jtc 							stdoff);
   2160  1.25   mlelstv 						doabbr(startbuf,
   2161  1.25   mlelstv 							max_abbr_len + 1,
   2162   1.6       mrg 							zp->z_format,
   2163   1.5       jtc 							rp->r_abbrvar,
   2164  1.25   mlelstv 							rp->r_stdoff != 0,
   2165  1.25   mlelstv 							FALSE);
   2166   1.5       jtc 						continue;
   2167   1.5       jtc 					}
   2168   1.5       jtc 					if (*startbuf == '\0' &&
   2169  1.25   mlelstv 						startoff == oadd(zp->z_gmtoff,
   2170  1.25   mlelstv 						stdoff)) {
   2171  1.25   mlelstv 							doabbr(startbuf,
   2172  1.25   mlelstv 								max_abbr_len + 1,
   2173  1.25   mlelstv 								zp->z_format,
   2174  1.25   mlelstv 								rp->r_abbrvar,
   2175  1.25   mlelstv 								rp->r_stdoff !=
   2176  1.25   mlelstv 								0,
   2177  1.25   mlelstv 								FALSE);
   2178   1.1       jtc 					}
   2179   1.1       jtc 				}
   2180   1.1       jtc 				eats(zp->z_filename, zp->z_linenum,
   2181   1.1       jtc 					rp->r_filename, rp->r_linenum);
   2182  1.25   mlelstv 				doabbr(ab, max_abbr_len+1, zp->z_format, rp->r_abbrvar,
   2183  1.25   mlelstv 					rp->r_stdoff != 0, FALSE);
   2184   1.1       jtc 				offset = oadd(zp->z_gmtoff, rp->r_stdoff);
   2185  1.25   mlelstv 				type = addtype(offset, ab, rp->r_stdoff != 0,
   2186   1.1       jtc 					rp->r_todisstd, rp->r_todisgmt);
   2187   1.1       jtc 				addtt(ktime, type);
   2188   1.1       jtc 			}
   2189   1.1       jtc 		}
   2190   1.5       jtc 		if (usestart) {
   2191   1.5       jtc 			if (*startbuf == '\0' &&
   2192   1.5       jtc 				zp->z_format != NULL &&
   2193   1.5       jtc 				strchr(zp->z_format, '%') == NULL &&
   2194   1.5       jtc 				strchr(zp->z_format, '/') == NULL)
   2195   1.6       mrg 					(void)strncpy(startbuf, zp->z_format,
   2196  1.25   mlelstv 					    max_abbr_len + 1 - 1);
   2197   1.5       jtc 			eat(zp->z_filename, zp->z_linenum);
   2198   1.5       jtc 			if (*startbuf == '\0')
   2199   1.7       jtc error(_("can't determine time zone abbreviation to use just after until time"));
   2200   1.5       jtc 			else	addtt(starttime,
   2201   1.5       jtc 					addtype(startoff, startbuf,
   2202   1.5       jtc 						startoff != zp->z_gmtoff,
   2203   1.5       jtc 						startttisstd,
   2204   1.5       jtc 						startttisgmt));
   2205   1.5       jtc 		}
   2206   1.1       jtc 		/*
   2207   1.1       jtc 		** Now we may get to set starttime for the next zone line.
   2208   1.1       jtc 		*/
   2209   1.1       jtc 		if (useuntil) {
   2210   1.1       jtc 			startttisstd = zp->z_untilrule.r_todisstd;
   2211   1.1       jtc 			startttisgmt = zp->z_untilrule.r_todisgmt;
   2212   1.5       jtc 			starttime = zp->z_untiltime;
   2213   1.1       jtc 			if (!startttisstd)
   2214   1.1       jtc 				starttime = tadd(starttime, -stdoff);
   2215   1.5       jtc 			if (!startttisgmt)
   2216   1.5       jtc 				starttime = tadd(starttime, -gmtoff);
   2217   1.1       jtc 		}
   2218   1.1       jtc 	}
   2219  1.25   mlelstv 	writezone(zpfirst->z_name, envvar);
   2220  1.25   mlelstv 	ifree(startbuf);
   2221  1.25   mlelstv 	ifree(ab);
   2222  1.25   mlelstv 	ifree(envvar);
   2223   1.1       jtc }
   2224   1.1       jtc 
   2225   1.1       jtc static void
   2226   1.1       jtc addtt(starttime, type)
   2227  1.25   mlelstv const zic_t	starttime;
   2228   1.7       jtc int		type;
   2229   1.1       jtc {
   2230   1.7       jtc 	if (starttime <= min_time ||
   2231   1.7       jtc 		(timecnt == 1 && attypes[0].at < min_time)) {
   2232   1.7       jtc 		gmtoffs[0] = gmtoffs[type];
   2233   1.7       jtc 		isdsts[0] = isdsts[type];
   2234   1.7       jtc 		ttisstds[0] = ttisstds[type];
   2235   1.7       jtc 		ttisgmts[0] = ttisgmts[type];
   2236   1.7       jtc 		if (abbrinds[type] != 0)
   2237   1.7       jtc 			(void) strcpy(chars, &chars[abbrinds[type]]);
   2238   1.7       jtc 		abbrinds[0] = 0;
   2239   1.7       jtc 		charcnt = strlen(chars) + 1;
   2240   1.7       jtc 		typecnt = 1;
   2241   1.7       jtc 		timecnt = 0;
   2242   1.7       jtc 		type = 0;
   2243   1.7       jtc 	}
   2244   1.1       jtc 	if (timecnt >= TZ_MAX_TIMES) {
   2245   1.5       jtc 		error(_("too many transitions?!"));
   2246  1.25   mlelstv 		exit(EXIT_FAILURE);
   2247   1.1       jtc 	}
   2248   1.5       jtc 	attypes[timecnt].at = starttime;
   2249   1.5       jtc 	attypes[timecnt].type = type;
   2250   1.1       jtc 	++timecnt;
   2251   1.1       jtc }
   2252   1.1       jtc 
   2253   1.1       jtc static int
   2254   1.1       jtc addtype(gmtoff, abbr, isdst, ttisstd, ttisgmt)
   2255   1.1       jtc const long		gmtoff;
   2256   1.1       jtc const char * const	abbr;
   2257   1.1       jtc const int		isdst;
   2258   1.1       jtc const int		ttisstd;
   2259   1.1       jtc const int		ttisgmt;
   2260   1.1       jtc {
   2261   1.1       jtc 	register int	i, j;
   2262   1.1       jtc 
   2263   1.5       jtc 	if (isdst != TRUE && isdst != FALSE) {
   2264   1.5       jtc 		error(_("internal error - addtype called with bad isdst"));
   2265  1.25   mlelstv 		exit(EXIT_FAILURE);
   2266   1.5       jtc 	}
   2267   1.5       jtc 	if (ttisstd != TRUE && ttisstd != FALSE) {
   2268   1.5       jtc 		error(_("internal error - addtype called with bad ttisstd"));
   2269  1.25   mlelstv 		exit(EXIT_FAILURE);
   2270   1.5       jtc 	}
   2271   1.5       jtc 	if (ttisgmt != TRUE && ttisgmt != FALSE) {
   2272   1.5       jtc 		error(_("internal error - addtype called with bad ttisgmt"));
   2273  1.25   mlelstv 		exit(EXIT_FAILURE);
   2274   1.5       jtc 	}
   2275   1.1       jtc 	/*
   2276   1.1       jtc 	** See if there's already an entry for this zone type.
   2277   1.1       jtc 	** If so, just return its index.
   2278   1.1       jtc 	*/
   2279   1.1       jtc 	for (i = 0; i < typecnt; ++i) {
   2280   1.1       jtc 		if (gmtoff == gmtoffs[i] && isdst == isdsts[i] &&
   2281   1.1       jtc 			strcmp(abbr, &chars[abbrinds[i]]) == 0 &&
   2282   1.1       jtc 			ttisstd == ttisstds[i] &&
   2283   1.1       jtc 			ttisgmt == ttisgmts[i])
   2284   1.1       jtc 				return i;
   2285   1.1       jtc 	}
   2286   1.1       jtc 	/*
   2287   1.1       jtc 	** There isn't one; add a new one, unless there are already too
   2288   1.1       jtc 	** many.
   2289   1.1       jtc 	*/
   2290   1.1       jtc 	if (typecnt >= TZ_MAX_TYPES) {
   2291   1.5       jtc 		error(_("too many local time types"));
   2292  1.25   mlelstv 		exit(EXIT_FAILURE);
   2293  1.25   mlelstv 	}
   2294  1.25   mlelstv 	if (! (-1L - 2147483647L <= gmtoff && gmtoff <= 2147483647L)) {
   2295  1.25   mlelstv 		error(_("UTC offset out of range"));
   2296  1.25   mlelstv 		exit(EXIT_FAILURE);
   2297   1.1       jtc 	}
   2298   1.1       jtc 	gmtoffs[i] = gmtoff;
   2299   1.1       jtc 	isdsts[i] = isdst;
   2300   1.1       jtc 	ttisstds[i] = ttisstd;
   2301   1.1       jtc 	ttisgmts[i] = ttisgmt;
   2302   1.1       jtc 
   2303   1.1       jtc 	for (j = 0; j < charcnt; ++j)
   2304   1.1       jtc 		if (strcmp(&chars[j], abbr) == 0)
   2305   1.1       jtc 			break;
   2306   1.1       jtc 	if (j == charcnt)
   2307   1.1       jtc 		newabbr(abbr);
   2308   1.1       jtc 	abbrinds[i] = j;
   2309   1.1       jtc 	++typecnt;
   2310   1.1       jtc 	return i;
   2311   1.1       jtc }
   2312   1.1       jtc 
   2313   1.1       jtc static void
   2314   1.1       jtc leapadd(t, positive, rolling, count)
   2315  1.25   mlelstv const zic_t	t;
   2316   1.1       jtc const int	positive;
   2317   1.1       jtc const int	rolling;
   2318   1.1       jtc int		count;
   2319   1.1       jtc {
   2320   1.1       jtc 	register int	i, j;
   2321   1.1       jtc 
   2322   1.1       jtc 	if (leapcnt + (positive ? count : 1) > TZ_MAX_LEAPS) {
   2323   1.5       jtc 		error(_("too many leap seconds"));
   2324  1.25   mlelstv 		exit(EXIT_FAILURE);
   2325   1.1       jtc 	}
   2326   1.1       jtc 	for (i = 0; i < leapcnt; ++i)
   2327   1.1       jtc 		if (t <= trans[i]) {
   2328   1.1       jtc 			if (t == trans[i]) {
   2329   1.5       jtc 				error(_("repeated leap second moment"));
   2330  1.25   mlelstv 				exit(EXIT_FAILURE);
   2331   1.1       jtc 			}
   2332   1.1       jtc 			break;
   2333   1.1       jtc 		}
   2334   1.1       jtc 	do {
   2335   1.1       jtc 		for (j = leapcnt; j > i; --j) {
   2336   1.1       jtc 			trans[j] = trans[j - 1];
   2337   1.1       jtc 			corr[j] = corr[j - 1];
   2338   1.1       jtc 			roll[j] = roll[j - 1];
   2339   1.1       jtc 		}
   2340   1.1       jtc 		trans[i] = t;
   2341   1.1       jtc 		corr[i] = positive ? 1L : eitol(-count);
   2342   1.1       jtc 		roll[i] = rolling;
   2343   1.1       jtc 		++leapcnt;
   2344   1.1       jtc 	} while (positive && --count != 0);
   2345   1.1       jtc }
   2346   1.1       jtc 
   2347   1.1       jtc static void
   2348  1.25   mlelstv adjleap(void)
   2349   1.1       jtc {
   2350   1.1       jtc 	register int	i;
   2351   1.1       jtc 	register long	last = 0;
   2352   1.1       jtc 
   2353   1.1       jtc 	/*
   2354   1.1       jtc 	** propagate leap seconds forward
   2355   1.1       jtc 	*/
   2356   1.1       jtc 	for (i = 0; i < leapcnt; ++i) {
   2357   1.1       jtc 		trans[i] = tadd(trans[i], last);
   2358   1.1       jtc 		last = corr[i] += last;
   2359   1.1       jtc 	}
   2360   1.1       jtc }
   2361   1.1       jtc 
   2362   1.1       jtc static int
   2363   1.1       jtc yearistype(year, type)
   2364   1.1       jtc const int		year;
   2365   1.1       jtc const char * const	type;
   2366   1.1       jtc {
   2367   1.1       jtc 	static char *	buf;
   2368   1.1       jtc 	int		result;
   2369   1.1       jtc 
   2370   1.1       jtc 	if (type == NULL || *type == '\0')
   2371   1.1       jtc 		return TRUE;
   2372   1.1       jtc 	buf = erealloc(buf, (int) (132 + strlen(yitcommand) + strlen(type)));
   2373   1.6       mrg 	(void)sprintf(buf, "%s %d %s", yitcommand, year, type); /* XXX: sprintf is safe */
   2374   1.1       jtc 	result = system(buf);
   2375  1.16    kleink 	if (WIFEXITED(result)) switch (WEXITSTATUS(result)) {
   2376  1.16    kleink 		case 0:
   2377  1.16    kleink 			return TRUE;
   2378  1.16    kleink 		case 1:
   2379  1.16    kleink 			return FALSE;
   2380  1.16    kleink 	}
   2381   1.5       jtc 	error(_("Wild result from command execution"));
   2382   1.5       jtc 	(void) fprintf(stderr, _("%s: command was '%s', result was %d\n"),
   2383   1.1       jtc 		progname, buf, result);
   2384   1.1       jtc 	for ( ; ; )
   2385  1.25   mlelstv 		exit(EXIT_FAILURE);
   2386   1.1       jtc }
   2387   1.1       jtc 
   2388   1.1       jtc static int
   2389   1.1       jtc lowerit(a)
   2390   1.3       jtc int	a;
   2391   1.1       jtc {
   2392   1.3       jtc 	a = (unsigned char) a;
   2393   1.1       jtc 	return (isascii(a) && isupper(a)) ? tolower(a) : a;
   2394   1.1       jtc }
   2395   1.1       jtc 
   2396   1.1       jtc static int
   2397   1.1       jtc ciequal(ap, bp)		/* case-insensitive equality */
   2398   1.1       jtc register const char *	ap;
   2399   1.1       jtc register const char *	bp;
   2400   1.1       jtc {
   2401   1.1       jtc 	while (lowerit(*ap) == lowerit(*bp++))
   2402   1.1       jtc 		if (*ap++ == '\0')
   2403   1.1       jtc 			return TRUE;
   2404   1.1       jtc 	return FALSE;
   2405   1.1       jtc }
   2406   1.1       jtc 
   2407   1.1       jtc static int
   2408   1.1       jtc itsabbr(abbr, word)
   2409   1.1       jtc register const char *	abbr;
   2410   1.1       jtc register const char *	word;
   2411   1.1       jtc {
   2412   1.1       jtc 	if (lowerit(*abbr) != lowerit(*word))
   2413   1.1       jtc 		return FALSE;
   2414   1.1       jtc 	++word;
   2415   1.1       jtc 	while (*++abbr != '\0')
   2416   1.3       jtc 		do {
   2417   1.3       jtc 			if (*word == '\0')
   2418   1.3       jtc 				return FALSE;
   2419   1.3       jtc 		} while (lowerit(*word++) != lowerit(*abbr));
   2420   1.1       jtc 	return TRUE;
   2421   1.1       jtc }
   2422   1.1       jtc 
   2423   1.1       jtc static const struct lookup *
   2424   1.1       jtc byword(word, table)
   2425   1.1       jtc register const char * const		word;
   2426   1.1       jtc register const struct lookup * const	table;
   2427   1.1       jtc {
   2428   1.1       jtc 	register const struct lookup *	foundlp;
   2429   1.1       jtc 	register const struct lookup *	lp;
   2430   1.1       jtc 
   2431   1.1       jtc 	if (word == NULL || table == NULL)
   2432   1.1       jtc 		return NULL;
   2433   1.1       jtc 	/*
   2434   1.1       jtc 	** Look for exact match.
   2435   1.1       jtc 	*/
   2436   1.1       jtc 	for (lp = table; lp->l_word != NULL; ++lp)
   2437   1.1       jtc 		if (ciequal(word, lp->l_word))
   2438   1.1       jtc 			return lp;
   2439   1.1       jtc 	/*
   2440   1.1       jtc 	** Look for inexact match.
   2441   1.1       jtc 	*/
   2442   1.1       jtc 	foundlp = NULL;
   2443   1.1       jtc 	for (lp = table; lp->l_word != NULL; ++lp)
   2444  1.11       jtc 		if (itsabbr(word, lp->l_word)) {
   2445   1.1       jtc 			if (foundlp == NULL)
   2446   1.1       jtc 				foundlp = lp;
   2447   1.1       jtc 			else	return NULL;	/* multiple inexact matches */
   2448  1.11       jtc 		}
   2449   1.1       jtc 	return foundlp;
   2450   1.1       jtc }
   2451   1.1       jtc 
   2452   1.1       jtc static char **
   2453   1.1       jtc getfields(cp)
   2454   1.1       jtc register char *	cp;
   2455   1.1       jtc {
   2456   1.1       jtc 	register char *		dp;
   2457   1.1       jtc 	register char **	array;
   2458   1.1       jtc 	register int		nsubs;
   2459   1.1       jtc 
   2460   1.1       jtc 	if (cp == NULL)
   2461   1.1       jtc 		return NULL;
   2462   1.1       jtc 	array = (char **) (void *)
   2463   1.1       jtc 		emalloc((int) ((strlen(cp) + 1) * sizeof *array));
   2464   1.1       jtc 	nsubs = 0;
   2465   1.1       jtc 	for ( ; ; ) {
   2466  1.25   mlelstv 		while (isascii((unsigned char) *cp) &&
   2467  1.25   mlelstv 			isspace((unsigned char) *cp))
   2468  1.25   mlelstv 				++cp;
   2469   1.1       jtc 		if (*cp == '\0' || *cp == '#')
   2470   1.1       jtc 			break;
   2471   1.1       jtc 		array[nsubs++] = dp = cp;
   2472   1.1       jtc 		do {
   2473   1.1       jtc 			if ((*dp = *cp++) != '"')
   2474   1.1       jtc 				++dp;
   2475   1.1       jtc 			else while ((*dp = *cp++) != '"')
   2476   1.1       jtc 				if (*dp != '\0')
   2477   1.1       jtc 					++dp;
   2478  1.25   mlelstv 				else {
   2479  1.25   mlelstv 					error(_(
   2480  1.25   mlelstv 						"Odd number of quotation marks"
   2481  1.25   mlelstv 						));
   2482  1.25   mlelstv 					exit(1);
   2483  1.25   mlelstv 				}
   2484   1.1       jtc 		} while (*cp != '\0' && *cp != '#' &&
   2485   1.3       jtc 			(!isascii(*cp) || !isspace((unsigned char) *cp)));
   2486   1.3       jtc 		if (isascii(*cp) && isspace((unsigned char) *cp))
   2487   1.1       jtc 			++cp;
   2488   1.1       jtc 		*dp = '\0';
   2489   1.1       jtc 	}
   2490   1.1       jtc 	array[nsubs] = NULL;
   2491   1.1       jtc 	return array;
   2492   1.1       jtc }
   2493   1.1       jtc 
   2494   1.1       jtc static long
   2495   1.1       jtc oadd(t1, t2)
   2496   1.1       jtc const long	t1;
   2497   1.1       jtc const long	t2;
   2498   1.1       jtc {
   2499  1.28    martin 	register long	t;
   2500  1.28    martin 
   2501  1.28    martin 	t = t1 + t2;
   2502  1.28    martin 	if ((t2 > 0 && t <= t1) || (t2 < 0 && t >= t1)) {
   2503   1.5       jtc 		error(_("time overflow"));
   2504  1.25   mlelstv 		exit(EXIT_FAILURE);
   2505   1.1       jtc 	}
   2506  1.28    martin 	return t;
   2507   1.1       jtc }
   2508   1.1       jtc 
   2509  1.25   mlelstv static zic_t
   2510   1.1       jtc tadd(t1, t2)
   2511  1.25   mlelstv const zic_t	t1;
   2512   1.1       jtc const long	t2;
   2513   1.1       jtc {
   2514  1.28    martin 	register zic_t	t;
   2515  1.28    martin 
   2516   1.1       jtc 	if (t1 == max_time && t2 > 0)
   2517   1.1       jtc 		return max_time;
   2518   1.1       jtc 	if (t1 == min_time && t2 < 0)
   2519   1.1       jtc 		return min_time;
   2520  1.28    martin 	t = t1 + t2;
   2521  1.28    martin 	if ((t2 > 0 && t <= t1) || (t2 < 0 && t >= t1)) {
   2522   1.5       jtc 		error(_("time overflow"));
   2523  1.25   mlelstv 		exit(EXIT_FAILURE);
   2524   1.1       jtc 	}
   2525  1.28    martin 	return t;
   2526   1.1       jtc }
   2527   1.1       jtc 
   2528   1.1       jtc /*
   2529   1.1       jtc ** Given a rule, and a year, compute the date - in seconds since January 1,
   2530   1.1       jtc ** 1970, 00:00 LOCAL time - in that year that the rule refers to.
   2531   1.1       jtc */
   2532   1.1       jtc 
   2533  1.25   mlelstv static zic_t
   2534   1.1       jtc rpytime(rp, wantedy)
   2535   1.1       jtc register const struct rule * const	rp;
   2536   1.1       jtc register const int			wantedy;
   2537   1.1       jtc {
   2538   1.1       jtc 	register int	y, m, i;
   2539   1.1       jtc 	register long	dayoff;			/* with a nod to Margaret O. */
   2540  1.25   mlelstv 	register zic_t	t;
   2541   1.1       jtc 
   2542   1.3       jtc 	if (wantedy == INT_MIN)
   2543   1.1       jtc 		return min_time;
   2544   1.3       jtc 	if (wantedy == INT_MAX)
   2545   1.1       jtc 		return max_time;
   2546   1.1       jtc 	dayoff = 0;
   2547   1.1       jtc 	m = TM_JANUARY;
   2548   1.1       jtc 	y = EPOCH_YEAR;
   2549   1.1       jtc 	while (wantedy != y) {
   2550   1.1       jtc 		if (wantedy > y) {
   2551   1.1       jtc 			i = len_years[isleap(y)];
   2552   1.1       jtc 			++y;
   2553   1.1       jtc 		} else {
   2554   1.1       jtc 			--y;
   2555   1.1       jtc 			i = -len_years[isleap(y)];
   2556   1.1       jtc 		}
   2557   1.1       jtc 		dayoff = oadd(dayoff, eitol(i));
   2558   1.1       jtc 	}
   2559   1.1       jtc 	while (m != rp->r_month) {
   2560   1.1       jtc 		i = len_months[isleap(y)][m];
   2561   1.1       jtc 		dayoff = oadd(dayoff, eitol(i));
   2562   1.1       jtc 		++m;
   2563   1.1       jtc 	}
   2564   1.1       jtc 	i = rp->r_dayofmonth;
   2565   1.1       jtc 	if (m == TM_FEBRUARY && i == 29 && !isleap(y)) {
   2566   1.1       jtc 		if (rp->r_dycode == DC_DOWLEQ)
   2567   1.1       jtc 			--i;
   2568   1.1       jtc 		else {
   2569   1.5       jtc 			error(_("use of 2/29 in non leap-year"));
   2570  1.25   mlelstv 			exit(EXIT_FAILURE);
   2571   1.1       jtc 		}
   2572   1.1       jtc 	}
   2573   1.1       jtc 	--i;
   2574   1.1       jtc 	dayoff = oadd(dayoff, eitol(i));
   2575   1.1       jtc 	if (rp->r_dycode == DC_DOWGEQ || rp->r_dycode == DC_DOWLEQ) {
   2576   1.1       jtc 		register long	wday;
   2577   1.1       jtc 
   2578   1.1       jtc #define LDAYSPERWEEK	((long) DAYSPERWEEK)
   2579   1.1       jtc 		wday = eitol(EPOCH_WDAY);
   2580   1.1       jtc 		/*
   2581   1.1       jtc 		** Don't trust mod of negative numbers.
   2582   1.1       jtc 		*/
   2583   1.1       jtc 		if (dayoff >= 0)
   2584   1.1       jtc 			wday = (wday + dayoff) % LDAYSPERWEEK;
   2585   1.1       jtc 		else {
   2586   1.1       jtc 			wday -= ((-dayoff) % LDAYSPERWEEK);
   2587   1.1       jtc 			if (wday < 0)
   2588   1.1       jtc 				wday += LDAYSPERWEEK;
   2589   1.1       jtc 		}
   2590   1.1       jtc 		while (wday != eitol(rp->r_wday))
   2591   1.1       jtc 			if (rp->r_dycode == DC_DOWGEQ) {
   2592   1.1       jtc 				dayoff = oadd(dayoff, (long) 1);
   2593   1.1       jtc 				if (++wday >= LDAYSPERWEEK)
   2594   1.1       jtc 					wday = 0;
   2595   1.1       jtc 				++i;
   2596   1.1       jtc 			} else {
   2597   1.1       jtc 				dayoff = oadd(dayoff, (long) -1);
   2598   1.1       jtc 				if (--wday < 0)
   2599   1.1       jtc 					wday = LDAYSPERWEEK - 1;
   2600   1.1       jtc 				--i;
   2601   1.1       jtc 			}
   2602   1.1       jtc 		if (i < 0 || i >= len_months[isleap(y)][m]) {
   2603  1.23    kleink 			if (noise)
   2604  1.25   mlelstv 				warning(_("rule goes past start/end of month--\
   2605  1.25   mlelstv will not work with pre-2004 versions of zic"));
   2606   1.1       jtc 		}
   2607   1.1       jtc 	}
   2608  1.20    kleink 	if (dayoff < min_time / SECSPERDAY)
   2609  1.20    kleink 		return min_time;
   2610  1.20    kleink 	if (dayoff > max_time / SECSPERDAY)
   2611  1.20    kleink 		return max_time;
   2612  1.25   mlelstv 	t = (zic_t) dayoff * SECSPERDAY;
   2613   1.1       jtc 	return tadd(t, rp->r_tod);
   2614   1.1       jtc }
   2615   1.1       jtc 
   2616   1.1       jtc static void
   2617   1.1       jtc newabbr(string)
   2618   1.1       jtc const char * const	string;
   2619   1.1       jtc {
   2620   1.1       jtc 	register int	i;
   2621   1.1       jtc 
   2622  1.25   mlelstv 	if (strcmp(string, GRANDPARENTED) != 0) {
   2623  1.25   mlelstv 		register const char *	cp;
   2624  1.25   mlelstv 		register char *		wp;
   2625  1.25   mlelstv 
   2626  1.25   mlelstv 		/*
   2627  1.25   mlelstv 		** Want one to ZIC_MAX_ABBR_LEN_WO_WARN alphabetics
   2628  1.25   mlelstv 		** optionally followed by a + or - and a number from 1 to 14.
   2629  1.25   mlelstv 		*/
   2630  1.25   mlelstv 		cp = string;
   2631  1.25   mlelstv 		wp = NULL;
   2632  1.25   mlelstv 		while (isascii((unsigned char) *cp) &&
   2633  1.25   mlelstv 			isalpha((unsigned char) *cp))
   2634  1.25   mlelstv 				++cp;
   2635  1.25   mlelstv 		if (cp - string == 0)
   2636  1.25   mlelstv wp = _("time zone abbreviation lacks alphabetic at start");
   2637  1.25   mlelstv 		if (noise && cp - string > 3)
   2638  1.25   mlelstv wp = _("time zone abbreviation has more than 3 alphabetics");
   2639  1.25   mlelstv 		if (cp - string > ZIC_MAX_ABBR_LEN_WO_WARN)
   2640  1.25   mlelstv wp = _("time zone abbreviation has too many alphabetics");
   2641  1.25   mlelstv 		if (wp == NULL && (*cp == '+' || *cp == '-')) {
   2642  1.25   mlelstv 			++cp;
   2643  1.25   mlelstv 			if (isascii((unsigned char) *cp) &&
   2644  1.25   mlelstv 				isdigit((unsigned char) *cp))
   2645  1.25   mlelstv 					if (*cp++ == '1' &&
   2646  1.25   mlelstv 						*cp >= '0' && *cp <= '4')
   2647  1.25   mlelstv 							++cp;
   2648  1.25   mlelstv 		}
   2649  1.25   mlelstv 		if (*cp != '\0')
   2650  1.25   mlelstv wp = _("time zone abbreviation differs from POSIX standard");
   2651  1.25   mlelstv 		if (wp != NULL) {
   2652  1.25   mlelstv 			wp = ecpyalloc(wp);
   2653  1.25   mlelstv 			wp = ecatalloc(wp, " (");
   2654  1.25   mlelstv 			wp = ecatalloc(wp, string);
   2655  1.25   mlelstv 			wp = ecatalloc(wp, ")");
   2656  1.25   mlelstv 			warning(wp);
   2657  1.25   mlelstv 			ifree(wp);
   2658  1.25   mlelstv 		}
   2659  1.25   mlelstv 	}
   2660   1.1       jtc 	i = strlen(string) + 1;
   2661   1.1       jtc 	if (charcnt + i > TZ_MAX_CHARS) {
   2662   1.5       jtc 		error(_("too many, or too long, time zone abbreviations"));
   2663  1.25   mlelstv 		exit(EXIT_FAILURE);
   2664   1.1       jtc 	}
   2665   1.6       mrg 	(void)strncpy(&chars[charcnt], string, sizeof(chars) - charcnt - 1);
   2666   1.1       jtc 	charcnt += eitol(i);
   2667   1.1       jtc }
   2668   1.1       jtc 
   2669   1.1       jtc static int
   2670   1.1       jtc mkdirs(argname)
   2671  1.25   mlelstv char *		argname;
   2672   1.1       jtc {
   2673   1.1       jtc 	register char *	name;
   2674   1.1       jtc 	register char *	cp;
   2675   1.1       jtc 
   2676   1.1       jtc 	if (argname == NULL || *argname == '\0')
   2677   1.1       jtc 		return 0;
   2678   1.1       jtc 	cp = name = ecpyalloc(argname);
   2679   1.1       jtc 	while ((cp = strchr(cp + 1, '/')) != 0) {
   2680   1.1       jtc 		*cp = '\0';
   2681  1.13    kleink #ifndef __NetBSD__
   2682   1.1       jtc 		/*
   2683   1.1       jtc 		** DOS drive specifier?
   2684   1.1       jtc 		*/
   2685   1.3       jtc 		if (isalpha((unsigned char) name[0]) &&
   2686   1.4       jtc 			name[1] == ':' && name[2] == '\0') {
   2687   1.1       jtc 				*cp = '/';
   2688   1.1       jtc 				continue;
   2689   1.1       jtc 		}
   2690  1.13    kleink #endif /* !defined __NetBSD__ */
   2691   1.1       jtc 		if (!itsdir(name)) {
   2692   1.1       jtc 			/*
   2693   1.1       jtc 			** It doesn't seem to exist, so we try to create it.
   2694   1.7       jtc 			** Creation may fail because of the directory being
   2695   1.7       jtc 			** created by some other multiprocessor, so we get
   2696   1.7       jtc 			** to do extra checking.
   2697   1.1       jtc 			*/
   2698  1.19    kleink 			if (mkdir(name, MKDIR_UMASK) != 0) {
   2699   1.5       jtc 				const char *e = strerror(errno);
   2700   1.7       jtc 
   2701   1.7       jtc 				if (errno != EEXIST || !itsdir(name)) {
   2702   1.7       jtc 					(void) fprintf(stderr,
   2703   1.7       jtc _("%s: Can't create directory %s: %s\n"),
   2704   1.7       jtc 						progname, name, e);
   2705   1.7       jtc 					ifree(name);
   2706   1.7       jtc 					return -1;
   2707   1.7       jtc 				}
   2708   1.1       jtc 			}
   2709   1.1       jtc 		}
   2710   1.1       jtc 		*cp = '/';
   2711   1.1       jtc 	}
   2712   1.1       jtc 	ifree(name);
   2713   1.1       jtc 	return 0;
   2714   1.1       jtc }
   2715   1.1       jtc 
   2716   1.1       jtc static long
   2717   1.1       jtc eitol(i)
   2718   1.1       jtc const int	i;
   2719   1.1       jtc {
   2720   1.1       jtc 	long	l;
   2721   1.1       jtc 
   2722   1.1       jtc 	l = i;
   2723   1.1       jtc 	if ((i < 0 && l >= 0) || (i == 0 && l != 0) || (i > 0 && l <= 0)) {
   2724   1.1       jtc 		(void) fprintf(stderr,
   2725   1.5       jtc 			_("%s: %d did not sign extend correctly\n"),
   2726   1.1       jtc 			progname, i);
   2727  1.25   mlelstv 		exit(EXIT_FAILURE);
   2728   1.1       jtc 	}
   2729   1.1       jtc 	return l;
   2730   1.1       jtc }
   2731   1.1       jtc 
   2732   1.1       jtc /*
   2733  1.21    kleink ** UNIX was a registered trademark of The Open Group in 2003.
   2734   1.1       jtc */
   2735