zic.c revision 1.46 1 1.46 christos /* $NetBSD: zic.c,v 1.46 2014/05/28 19:13:27 christos 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 1.46 christos __RCSID("$NetBSD: zic.c,v 1.46 2014/05/28 19:13:27 christos Exp $");
14 1.1 jtc #endif /* !defined lint */
15 1.1 jtc
16 1.30 christos #include "version.h"
17 1.1 jtc #include "private.h"
18 1.5 jtc #include "locale.h"
19 1.1 jtc #include "tzfile.h"
20 1.19 kleink
21 1.43 christos #include <stdarg.h>
22 1.43 christos #include <unistd.h>
23 1.43 christos
24 1.43 christos #define ZIC_VERSION_PRE_2013 '2'
25 1.43 christos #define ZIC_VERSION '3'
26 1.25 mlelstv
27 1.41 christos typedef int_fast64_t zic_t;
28 1.41 christos #define ZIC_MIN INT_FAST64_MIN
29 1.41 christos #define ZIC_MAX INT_FAST64_MAX
30 1.41 christos #define SCNdZIC SCNdFAST64
31 1.25 mlelstv
32 1.25 mlelstv #ifndef ZIC_MAX_ABBR_LEN_WO_WARN
33 1.25 mlelstv #define ZIC_MAX_ABBR_LEN_WO_WARN 6
34 1.25 mlelstv #endif /* !defined ZIC_MAX_ABBR_LEN_WO_WARN */
35 1.25 mlelstv
36 1.19 kleink #if HAVE_SYS_STAT_H
37 1.19 kleink #include "sys/stat.h"
38 1.19 kleink #endif
39 1.19 kleink #ifdef S_IRUSR
40 1.19 kleink #define MKDIR_UMASK (S_IRUSR|S_IWUSR|S_IXUSR|S_IRGRP|S_IXGRP|S_IROTH|S_IXOTH)
41 1.19 kleink #else
42 1.19 kleink #define MKDIR_UMASK 0755
43 1.19 kleink #endif
44 1.19 kleink
45 1.3 jtc /*
46 1.3 jtc ** On some ancient hosts, predicates like `isspace(C)' are defined
47 1.25 mlelstv ** only if isascii(C) || C == EOF. Modern hosts obey the C Standard,
48 1.3 jtc ** which says they are defined only if C == ((unsigned char) C) || C == EOF.
49 1.3 jtc ** Neither the C Standard nor Posix require that `isascii' exist.
50 1.3 jtc ** For portability, we check both ancient and modern requirements.
51 1.3 jtc ** If isascii is not defined, the isascii check succeeds trivially.
52 1.3 jtc */
53 1.3 jtc #include "ctype.h"
54 1.3 jtc #ifndef isascii
55 1.3 jtc #define isascii(x) 1
56 1.3 jtc #endif
57 1.3 jtc
58 1.25 mlelstv #define end(cp) (strchr((cp), '\0'))
59 1.25 mlelstv
60 1.1 jtc struct rule {
61 1.1 jtc const char * r_filename;
62 1.1 jtc int r_linenum;
63 1.1 jtc const char * r_name;
64 1.1 jtc
65 1.41 christos zic_t r_loyear; /* for example, 1986 */
66 1.41 christos zic_t r_hiyear; /* for example, 1986 */
67 1.1 jtc const char * r_yrtype;
68 1.25 mlelstv int r_lowasnum;
69 1.25 mlelstv int r_hiwasnum;
70 1.1 jtc
71 1.1 jtc int r_month; /* 0..11 */
72 1.1 jtc
73 1.1 jtc int r_dycode; /* see below */
74 1.1 jtc int r_dayofmonth;
75 1.1 jtc int r_wday;
76 1.1 jtc
77 1.38 christos zic_t r_tod; /* time from midnight */
78 1.1 jtc int r_todisstd; /* above is standard time if TRUE */
79 1.1 jtc /* or wall clock time if FALSE */
80 1.1 jtc int r_todisgmt; /* above is GMT if TRUE */
81 1.1 jtc /* or local time if FALSE */
82 1.38 christos zic_t r_stdoff; /* offset from standard time */
83 1.1 jtc const char * r_abbrvar; /* variable part of abbreviation */
84 1.1 jtc
85 1.1 jtc int r_todo; /* a rule to do (used in outzone) */
86 1.25 mlelstv zic_t r_temp; /* used in outzone */
87 1.1 jtc };
88 1.1 jtc
89 1.1 jtc /*
90 1.1 jtc ** r_dycode r_dayofmonth r_wday
91 1.1 jtc */
92 1.1 jtc
93 1.1 jtc #define DC_DOM 0 /* 1..31 */ /* unused */
94 1.1 jtc #define DC_DOWGEQ 1 /* 1..31 */ /* 0..6 (Sun..Sat) */
95 1.1 jtc #define DC_DOWLEQ 2 /* 1..31 */ /* 0..6 (Sun..Sat) */
96 1.1 jtc
97 1.1 jtc struct zone {
98 1.1 jtc const char * z_filename;
99 1.1 jtc int z_linenum;
100 1.1 jtc
101 1.1 jtc const char * z_name;
102 1.38 christos zic_t z_gmtoff;
103 1.1 jtc const char * z_rule;
104 1.1 jtc const char * z_format;
105 1.1 jtc
106 1.38 christos zic_t z_stdoff;
107 1.1 jtc
108 1.1 jtc struct rule * z_rules;
109 1.1 jtc int z_nrules;
110 1.1 jtc
111 1.1 jtc struct rule z_untilrule;
112 1.25 mlelstv zic_t z_untiltime;
113 1.1 jtc };
114 1.1 jtc
115 1.25 mlelstv extern int getopt(int argc, char * const argv[],
116 1.25 mlelstv const char * options);
117 1.25 mlelstv extern int link(const char * fromname, const char * toname);
118 1.1 jtc extern char * optarg;
119 1.1 jtc extern int optind;
120 1.1 jtc
121 1.44 christos #if ! HAVE_LINK
122 1.44 christos # define link(from, to) (-1)
123 1.44 christos #endif
124 1.44 christos #if ! HAVE_SYMLINK
125 1.44 christos # define symlink(from, to) (-1)
126 1.44 christos #endif
127 1.44 christos
128 1.25 mlelstv static void addtt(zic_t starttime, int type);
129 1.38 christos static int addtype(zic_t gmtoff, const char * abbr, int isdst,
130 1.25 mlelstv int ttisstd, int ttisgmt);
131 1.25 mlelstv static void leapadd(zic_t t, int positive, int rolling, int count);
132 1.25 mlelstv static void adjleap(void);
133 1.25 mlelstv static void associate(void);
134 1.25 mlelstv static void dolink(const char * fromfield, const char * tofield);
135 1.25 mlelstv static char ** getfields(char * buf);
136 1.38 christos static zic_t gethms(const char * string, const char * errstrng,
137 1.25 mlelstv int signable);
138 1.25 mlelstv static void infile(const char * filename);
139 1.25 mlelstv static void inleap(char ** fields, int nfields);
140 1.25 mlelstv static void inlink(char ** fields, int nfields);
141 1.25 mlelstv static void inrule(char ** fields, int nfields);
142 1.25 mlelstv static int inzcont(char ** fields, int nfields);
143 1.25 mlelstv static int inzone(char ** fields, int nfields);
144 1.25 mlelstv static int inzsub(char ** fields, int nfields, int iscont);
145 1.25 mlelstv static int itsdir(const char * name);
146 1.25 mlelstv static int lowerit(int c);
147 1.25 mlelstv static int mkdirs(char * filename);
148 1.25 mlelstv static void newabbr(const char * abbr);
149 1.38 christos static zic_t oadd(zic_t t1, zic_t t2);
150 1.25 mlelstv static void outzone(const struct zone * zp, int ntzones);
151 1.25 mlelstv static int rcomp(const void * leftp, const void * rightp);
152 1.41 christos static zic_t rpytime(const struct rule * rp, zic_t wantedy);
153 1.25 mlelstv static void rulesub(struct rule * rp,
154 1.1 jtc const char * loyearp, const char * hiyearp,
155 1.1 jtc const char * typep, const char * monthp,
156 1.25 mlelstv const char * dayp, const char * timep);
157 1.38 christos static zic_t tadd(zic_t t1, zic_t t2);
158 1.25 mlelstv static int yearistype(int year, const char * type);
159 1.25 mlelstv static int atcomp(const void *avp, const void *bvp);
160 1.41 christos static void updateminmax(zic_t x);
161 1.5 jtc
162 1.1 jtc static int charcnt;
163 1.1 jtc static int errors;
164 1.1 jtc static const char * filename;
165 1.1 jtc static int leapcnt;
166 1.25 mlelstv static int leapseen;
167 1.41 christos static zic_t leapminyear;
168 1.41 christos static zic_t leapmaxyear;
169 1.1 jtc static int linenum;
170 1.36 christos static size_t max_abbrvar_len;
171 1.36 christos static size_t max_format_len;
172 1.41 christos static zic_t max_year;
173 1.41 christos static zic_t min_year;
174 1.1 jtc static int noise;
175 1.1 jtc static const char * rfilename;
176 1.1 jtc static int rlinenum;
177 1.1 jtc static const char * progname;
178 1.1 jtc static int timecnt;
179 1.45 christos static int timecnt_alloc;
180 1.1 jtc static int typecnt;
181 1.1 jtc
182 1.1 jtc /*
183 1.1 jtc ** Line codes.
184 1.1 jtc */
185 1.1 jtc
186 1.1 jtc #define LC_RULE 0
187 1.1 jtc #define LC_ZONE 1
188 1.1 jtc #define LC_LINK 2
189 1.1 jtc #define LC_LEAP 3
190 1.1 jtc
191 1.1 jtc /*
192 1.1 jtc ** Which fields are which on a Zone line.
193 1.1 jtc */
194 1.1 jtc
195 1.1 jtc #define ZF_NAME 1
196 1.1 jtc #define ZF_GMTOFF 2
197 1.1 jtc #define ZF_RULE 3
198 1.1 jtc #define ZF_FORMAT 4
199 1.1 jtc #define ZF_TILYEAR 5
200 1.1 jtc #define ZF_TILMONTH 6
201 1.1 jtc #define ZF_TILDAY 7
202 1.1 jtc #define ZF_TILTIME 8
203 1.1 jtc #define ZONE_MINFIELDS 5
204 1.1 jtc #define ZONE_MAXFIELDS 9
205 1.1 jtc
206 1.1 jtc /*
207 1.1 jtc ** Which fields are which on a Zone continuation line.
208 1.1 jtc */
209 1.1 jtc
210 1.1 jtc #define ZFC_GMTOFF 0
211 1.1 jtc #define ZFC_RULE 1
212 1.1 jtc #define ZFC_FORMAT 2
213 1.1 jtc #define ZFC_TILYEAR 3
214 1.1 jtc #define ZFC_TILMONTH 4
215 1.1 jtc #define ZFC_TILDAY 5
216 1.1 jtc #define ZFC_TILTIME 6
217 1.1 jtc #define ZONEC_MINFIELDS 3
218 1.1 jtc #define ZONEC_MAXFIELDS 7
219 1.1 jtc
220 1.1 jtc /*
221 1.1 jtc ** Which files are which on a Rule line.
222 1.1 jtc */
223 1.1 jtc
224 1.1 jtc #define RF_NAME 1
225 1.1 jtc #define RF_LOYEAR 2
226 1.1 jtc #define RF_HIYEAR 3
227 1.1 jtc #define RF_COMMAND 4
228 1.1 jtc #define RF_MONTH 5
229 1.1 jtc #define RF_DAY 6
230 1.1 jtc #define RF_TOD 7
231 1.1 jtc #define RF_STDOFF 8
232 1.1 jtc #define RF_ABBRVAR 9
233 1.1 jtc #define RULE_FIELDS 10
234 1.1 jtc
235 1.1 jtc /*
236 1.1 jtc ** Which fields are which on a Link line.
237 1.1 jtc */
238 1.1 jtc
239 1.1 jtc #define LF_FROM 1
240 1.1 jtc #define LF_TO 2
241 1.1 jtc #define LINK_FIELDS 3
242 1.1 jtc
243 1.1 jtc /*
244 1.1 jtc ** Which fields are which on a Leap line.
245 1.1 jtc */
246 1.1 jtc
247 1.1 jtc #define LP_YEAR 1
248 1.1 jtc #define LP_MONTH 2
249 1.1 jtc #define LP_DAY 3
250 1.1 jtc #define LP_TIME 4
251 1.1 jtc #define LP_CORR 5
252 1.1 jtc #define LP_ROLL 6
253 1.1 jtc #define LEAP_FIELDS 7
254 1.1 jtc
255 1.1 jtc /*
256 1.1 jtc ** Year synonyms.
257 1.1 jtc */
258 1.1 jtc
259 1.1 jtc #define YR_MINIMUM 0
260 1.1 jtc #define YR_MAXIMUM 1
261 1.1 jtc #define YR_ONLY 2
262 1.1 jtc
263 1.1 jtc static struct rule * rules;
264 1.1 jtc static int nrules; /* number of rules */
265 1.45 christos static int nrules_alloc;
266 1.1 jtc
267 1.1 jtc static struct zone * zones;
268 1.1 jtc static int nzones; /* number of zones */
269 1.45 christos static int nzones_alloc;
270 1.1 jtc
271 1.1 jtc struct link {
272 1.1 jtc const char * l_filename;
273 1.1 jtc int l_linenum;
274 1.1 jtc const char * l_from;
275 1.1 jtc const char * l_to;
276 1.1 jtc };
277 1.1 jtc
278 1.1 jtc static struct link * links;
279 1.1 jtc static int nlinks;
280 1.45 christos static int nlinks_alloc;
281 1.1 jtc
282 1.1 jtc struct lookup {
283 1.1 jtc const char * l_word;
284 1.1 jtc const int l_value;
285 1.1 jtc };
286 1.1 jtc
287 1.25 mlelstv static struct lookup const * byword(const char * string,
288 1.25 mlelstv const struct lookup * lp);
289 1.1 jtc
290 1.1 jtc static struct lookup const line_codes[] = {
291 1.1 jtc { "Rule", LC_RULE },
292 1.1 jtc { "Zone", LC_ZONE },
293 1.1 jtc { "Link", LC_LINK },
294 1.1 jtc { "Leap", LC_LEAP },
295 1.1 jtc { NULL, 0}
296 1.1 jtc };
297 1.1 jtc
298 1.1 jtc static struct lookup const mon_names[] = {
299 1.1 jtc { "January", TM_JANUARY },
300 1.1 jtc { "February", TM_FEBRUARY },
301 1.1 jtc { "March", TM_MARCH },
302 1.1 jtc { "April", TM_APRIL },
303 1.1 jtc { "May", TM_MAY },
304 1.1 jtc { "June", TM_JUNE },
305 1.1 jtc { "July", TM_JULY },
306 1.1 jtc { "August", TM_AUGUST },
307 1.1 jtc { "September", TM_SEPTEMBER },
308 1.1 jtc { "October", TM_OCTOBER },
309 1.1 jtc { "November", TM_NOVEMBER },
310 1.1 jtc { "December", TM_DECEMBER },
311 1.1 jtc { NULL, 0 }
312 1.1 jtc };
313 1.1 jtc
314 1.1 jtc static struct lookup const wday_names[] = {
315 1.1 jtc { "Sunday", TM_SUNDAY },
316 1.1 jtc { "Monday", TM_MONDAY },
317 1.1 jtc { "Tuesday", TM_TUESDAY },
318 1.1 jtc { "Wednesday", TM_WEDNESDAY },
319 1.1 jtc { "Thursday", TM_THURSDAY },
320 1.1 jtc { "Friday", TM_FRIDAY },
321 1.1 jtc { "Saturday", TM_SATURDAY },
322 1.1 jtc { NULL, 0 }
323 1.1 jtc };
324 1.1 jtc
325 1.1 jtc static struct lookup const lasts[] = {
326 1.1 jtc { "last-Sunday", TM_SUNDAY },
327 1.1 jtc { "last-Monday", TM_MONDAY },
328 1.1 jtc { "last-Tuesday", TM_TUESDAY },
329 1.1 jtc { "last-Wednesday", TM_WEDNESDAY },
330 1.1 jtc { "last-Thursday", TM_THURSDAY },
331 1.1 jtc { "last-Friday", TM_FRIDAY },
332 1.1 jtc { "last-Saturday", TM_SATURDAY },
333 1.1 jtc { NULL, 0 }
334 1.1 jtc };
335 1.1 jtc
336 1.1 jtc static struct lookup const begin_years[] = {
337 1.1 jtc { "minimum", YR_MINIMUM },
338 1.1 jtc { "maximum", YR_MAXIMUM },
339 1.1 jtc { NULL, 0 }
340 1.1 jtc };
341 1.1 jtc
342 1.1 jtc static struct lookup const end_years[] = {
343 1.1 jtc { "minimum", YR_MINIMUM },
344 1.1 jtc { "maximum", YR_MAXIMUM },
345 1.1 jtc { "only", YR_ONLY },
346 1.1 jtc { NULL, 0 }
347 1.1 jtc };
348 1.1 jtc
349 1.1 jtc static struct lookup const leap_types[] = {
350 1.1 jtc { "Rolling", TRUE },
351 1.1 jtc { "Stationary", FALSE },
352 1.1 jtc { NULL, 0 }
353 1.1 jtc };
354 1.1 jtc
355 1.1 jtc static const int len_months[2][MONSPERYEAR] = {
356 1.1 jtc { 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 },
357 1.1 jtc { 31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 }
358 1.1 jtc };
359 1.1 jtc
360 1.1 jtc static const int len_years[2] = {
361 1.1 jtc DAYSPERNYEAR, DAYSPERLYEAR
362 1.1 jtc };
363 1.1 jtc
364 1.5 jtc static struct attype {
365 1.25 mlelstv zic_t at;
366 1.5 jtc unsigned char type;
367 1.45 christos } * attypes;
368 1.38 christos static zic_t gmtoffs[TZ_MAX_TYPES];
369 1.1 jtc static char isdsts[TZ_MAX_TYPES];
370 1.1 jtc static unsigned char abbrinds[TZ_MAX_TYPES];
371 1.1 jtc static char ttisstds[TZ_MAX_TYPES];
372 1.1 jtc static char ttisgmts[TZ_MAX_TYPES];
373 1.1 jtc static char chars[TZ_MAX_CHARS];
374 1.25 mlelstv static zic_t trans[TZ_MAX_LEAPS];
375 1.38 christos static zic_t corr[TZ_MAX_LEAPS];
376 1.1 jtc static char roll[TZ_MAX_LEAPS];
377 1.1 jtc
378 1.1 jtc /*
379 1.1 jtc ** Memory allocation.
380 1.1 jtc */
381 1.1 jtc
382 1.45 christos static _Noreturn void
383 1.45 christos memory_exhausted(const char *msg)
384 1.45 christos {
385 1.45 christos fprintf(stderr, _("%s: Memory exhausted: %s\n"), progname, msg);
386 1.45 christos exit(EXIT_FAILURE);
387 1.45 christos }
388 1.45 christos
389 1.45 christos static ATTRIBUTE_PURE size_t
390 1.45 christos size_product(size_t nitems, size_t itemsize)
391 1.45 christos {
392 1.45 christos if (SIZE_MAX / itemsize < nitems)
393 1.45 christos memory_exhausted("size overflow");
394 1.45 christos return nitems * itemsize;
395 1.45 christos }
396 1.45 christos
397 1.41 christos static ATTRIBUTE_PURE void *
398 1.31 christos memcheck(void *const ptr)
399 1.1 jtc {
400 1.45 christos if (ptr == NULL)
401 1.45 christos memory_exhausted(strerror(errno));
402 1.1 jtc return ptr;
403 1.1 jtc }
404 1.1 jtc
405 1.31 christos #define emalloc(size) memcheck(malloc(size))
406 1.31 christos #define erealloc(ptr, size) memcheck(realloc((ptr), (size)))
407 1.1 jtc #define ecpyalloc(ptr) memcheck(icpyalloc(ptr))
408 1.1 jtc #define ecatalloc(oldp, newp) memcheck(icatalloc((oldp), (newp)))
409 1.1 jtc
410 1.45 christos static void *
411 1.45 christos growalloc(void *ptr, size_t itemsize, int nitems, int *nitems_alloc)
412 1.45 christos {
413 1.45 christos if (nitems < *nitems_alloc)
414 1.45 christos return ptr;
415 1.45 christos else {
416 1.45 christos int amax = INT_MAX < SIZE_MAX ? INT_MAX : SIZE_MAX;
417 1.45 christos if ((amax - 1) / 3 * 2 < *nitems_alloc)
418 1.45 christos memory_exhausted("int overflow");
419 1.45 christos *nitems_alloc = *nitems_alloc + (*nitems_alloc >> 1) + 1;
420 1.45 christos return erealloc(ptr, size_product(*nitems_alloc, itemsize));
421 1.45 christos }
422 1.45 christos }
423 1.45 christos
424 1.1 jtc /*
425 1.1 jtc ** Error handling.
426 1.1 jtc */
427 1.1 jtc
428 1.1 jtc static void
429 1.31 christos eats(const char *const name, const int num, const char *const rname,
430 1.31 christos const int rnum)
431 1.1 jtc {
432 1.1 jtc filename = name;
433 1.1 jtc linenum = num;
434 1.1 jtc rfilename = rname;
435 1.1 jtc rlinenum = rnum;
436 1.1 jtc }
437 1.1 jtc
438 1.1 jtc static void
439 1.31 christos eat(const char *const name, const int num)
440 1.1 jtc {
441 1.31 christos eats(name, num, NULL, -1);
442 1.1 jtc }
443 1.1 jtc
444 1.43 christos static void ATTRIBUTE_FORMAT((printf, 1, 0))
445 1.43 christos verror(const char *const string, va_list args)
446 1.1 jtc {
447 1.1 jtc /*
448 1.1 jtc ** Match the format of "cc" to allow sh users to
449 1.1 jtc ** zic ... 2>&1 | error -t "*" -v
450 1.1 jtc ** on BSD systems.
451 1.1 jtc */
452 1.43 christos fprintf(stderr, _("\"%s\", line %d: "), filename, linenum);
453 1.43 christos vfprintf(stderr, string, args);
454 1.1 jtc if (rfilename != NULL)
455 1.5 jtc (void) fprintf(stderr, _(" (rule from \"%s\", line %d)"),
456 1.1 jtc rfilename, rlinenum);
457 1.1 jtc (void) fprintf(stderr, "\n");
458 1.1 jtc ++errors;
459 1.1 jtc }
460 1.1 jtc
461 1.43 christos static void ATTRIBUTE_FORMAT((printf, 1, 2))
462 1.43 christos error(const char *const string, ...)
463 1.5 jtc {
464 1.43 christos va_list args;
465 1.43 christos va_start(args, string);
466 1.43 christos verror(string, args);
467 1.43 christos va_end(args);
468 1.43 christos }
469 1.43 christos
470 1.43 christos static void ATTRIBUTE_FORMAT((printf, 1, 2))
471 1.43 christos warning(const char *const string, ...)
472 1.43 christos {
473 1.43 christos va_list args;
474 1.43 christos fprintf(stderr, _("warning: "));
475 1.43 christos va_start(args, string);
476 1.43 christos verror(string, args);
477 1.43 christos va_end(args);
478 1.5 jtc --errors;
479 1.5 jtc }
480 1.5 jtc
481 1.41 christos static _Noreturn void
482 1.25 mlelstv usage(FILE *stream, int status)
483 1.1 jtc {
484 1.25 mlelstv (void) fprintf(stream, _("%s: usage is %s \
485 1.25 mlelstv [ --version ] [ --help ] [ -v ] [ -l localtime ] [ -p posixrules ] \\\n\
486 1.25 mlelstv \t[ -d directory ] [ -L leapseconds ] [ -y yearistype ] [ filename ... ]\n\
487 1.25 mlelstv \n\
488 1.35 christos Report bugs to %s.\n"),
489 1.35 christos progname, progname, REPORT_BUGS_TO);
490 1.25 mlelstv exit(status);
491 1.1 jtc }
492 1.1 jtc
493 1.1 jtc static const char * psxrules;
494 1.1 jtc static const char * lcltime;
495 1.1 jtc static const char * directory;
496 1.1 jtc static const char * leapsec;
497 1.1 jtc static const char * yitcommand;
498 1.1 jtc
499 1.1 jtc int
500 1.31 christos main(int argc, char *argv[])
501 1.31 christos {
502 1.31 christos int i;
503 1.31 christos int j;
504 1.31 christos int c;
505 1.1 jtc
506 1.41 christos #ifdef S_IWGRP
507 1.1 jtc (void) umask(umask(S_IWGRP | S_IWOTH) | (S_IWGRP | S_IWOTH));
508 1.41 christos #endif
509 1.5 jtc #if HAVE_GETTEXT - 0
510 1.5 jtc (void) setlocale(LC_MESSAGES, "");
511 1.5 jtc #ifdef TZ_DOMAINDIR
512 1.5 jtc (void) bindtextdomain(TZ_DOMAIN, TZ_DOMAINDIR);
513 1.5 jtc #endif /* defined TEXTDOMAINDIR */
514 1.5 jtc (void) textdomain(TZ_DOMAIN);
515 1.25 mlelstv #endif /* HAVE_GETTEXT */
516 1.1 jtc progname = argv[0];
517 1.25 mlelstv if (TYPE_BIT(zic_t) < 64) {
518 1.25 mlelstv (void) fprintf(stderr, "%s: %s\n", progname,
519 1.25 mlelstv _("wild compilation-time specification of zic_t"));
520 1.25 mlelstv exit(EXIT_FAILURE);
521 1.25 mlelstv }
522 1.20 kleink for (i = 1; i < argc; ++i)
523 1.20 kleink if (strcmp(argv[i], "--version") == 0) {
524 1.35 christos (void) printf("zic %s%s\n", PKGVERSION, TZVERSION);
525 1.25 mlelstv exit(EXIT_SUCCESS);
526 1.25 mlelstv } else if (strcmp(argv[i], "--help") == 0) {
527 1.25 mlelstv usage(stdout, EXIT_SUCCESS);
528 1.20 kleink }
529 1.7 jtc while ((c = getopt(argc, argv, "d:l:p:L:vsy:")) != EOF && c != -1)
530 1.1 jtc switch (c) {
531 1.1 jtc default:
532 1.25 mlelstv usage(stderr, EXIT_FAILURE);
533 1.1 jtc case 'd':
534 1.1 jtc if (directory == NULL)
535 1.1 jtc directory = optarg;
536 1.1 jtc else {
537 1.1 jtc (void) fprintf(stderr,
538 1.5 jtc _("%s: More than one -d option specified\n"),
539 1.1 jtc progname);
540 1.25 mlelstv exit(EXIT_FAILURE);
541 1.1 jtc }
542 1.1 jtc break;
543 1.1 jtc case 'l':
544 1.1 jtc if (lcltime == NULL)
545 1.1 jtc lcltime = optarg;
546 1.1 jtc else {
547 1.1 jtc (void) fprintf(stderr,
548 1.5 jtc _("%s: More than one -l option specified\n"),
549 1.1 jtc progname);
550 1.25 mlelstv exit(EXIT_FAILURE);
551 1.1 jtc }
552 1.1 jtc break;
553 1.1 jtc case 'p':
554 1.1 jtc if (psxrules == NULL)
555 1.1 jtc psxrules = optarg;
556 1.1 jtc else {
557 1.1 jtc (void) fprintf(stderr,
558 1.5 jtc _("%s: More than one -p option specified\n"),
559 1.1 jtc progname);
560 1.25 mlelstv exit(EXIT_FAILURE);
561 1.1 jtc }
562 1.1 jtc break;
563 1.1 jtc case 'y':
564 1.1 jtc if (yitcommand == NULL)
565 1.1 jtc yitcommand = optarg;
566 1.1 jtc else {
567 1.1 jtc (void) fprintf(stderr,
568 1.5 jtc _("%s: More than one -y option specified\n"),
569 1.1 jtc progname);
570 1.25 mlelstv exit(EXIT_FAILURE);
571 1.1 jtc }
572 1.1 jtc break;
573 1.1 jtc case 'L':
574 1.1 jtc if (leapsec == NULL)
575 1.1 jtc leapsec = optarg;
576 1.1 jtc else {
577 1.1 jtc (void) fprintf(stderr,
578 1.5 jtc _("%s: More than one -L option specified\n"),
579 1.1 jtc progname);
580 1.25 mlelstv exit(EXIT_FAILURE);
581 1.1 jtc }
582 1.1 jtc break;
583 1.1 jtc case 'v':
584 1.1 jtc noise = TRUE;
585 1.1 jtc break;
586 1.1 jtc case 's':
587 1.25 mlelstv (void) printf("%s: -s ignored\n", progname);
588 1.1 jtc break;
589 1.1 jtc }
590 1.1 jtc if (optind == argc - 1 && strcmp(argv[optind], "=") == 0)
591 1.25 mlelstv usage(stderr, EXIT_FAILURE); /* usage message by request */
592 1.1 jtc if (directory == NULL)
593 1.1 jtc directory = TZDIR;
594 1.1 jtc if (yitcommand == NULL)
595 1.1 jtc yitcommand = "yearistype";
596 1.1 jtc
597 1.1 jtc if (optind < argc && leapsec != NULL) {
598 1.1 jtc infile(leapsec);
599 1.1 jtc adjleap();
600 1.1 jtc }
601 1.1 jtc
602 1.1 jtc for (i = optind; i < argc; ++i)
603 1.1 jtc infile(argv[i]);
604 1.1 jtc if (errors)
605 1.25 mlelstv exit(EXIT_FAILURE);
606 1.1 jtc associate();
607 1.1 jtc for (i = 0; i < nzones; i = j) {
608 1.1 jtc /*
609 1.1 jtc ** Find the next non-continuation zone entry.
610 1.1 jtc */
611 1.1 jtc for (j = i + 1; j < nzones && zones[j].z_name == NULL; ++j)
612 1.1 jtc continue;
613 1.1 jtc outzone(&zones[i], j - i);
614 1.1 jtc }
615 1.1 jtc /*
616 1.1 jtc ** Make links.
617 1.1 jtc */
618 1.15 kleink for (i = 0; i < nlinks; ++i) {
619 1.15 kleink eat(links[i].l_filename, links[i].l_linenum);
620 1.1 jtc dolink(links[i].l_from, links[i].l_to);
621 1.25 mlelstv if (noise)
622 1.25 mlelstv for (j = 0; j < nlinks; ++j)
623 1.25 mlelstv if (strcmp(links[i].l_to,
624 1.25 mlelstv links[j].l_from) == 0)
625 1.25 mlelstv warning(_("link to link"));
626 1.15 kleink }
627 1.15 kleink if (lcltime != NULL) {
628 1.15 kleink eat("command line", 1);
629 1.1 jtc dolink(lcltime, TZDEFAULT);
630 1.15 kleink }
631 1.15 kleink if (psxrules != NULL) {
632 1.15 kleink eat("command line", 1);
633 1.1 jtc dolink(psxrules, TZDEFRULES);
634 1.15 kleink }
635 1.1 jtc return (errors == 0) ? EXIT_SUCCESS : EXIT_FAILURE;
636 1.1 jtc }
637 1.1 jtc
638 1.1 jtc static void
639 1.31 christos dolink(const char *const fromfield, const char *const tofield)
640 1.1 jtc {
641 1.31 christos char * fromname;
642 1.31 christos char * toname;
643 1.1 jtc
644 1.25 mlelstv if (fromfield[0] == '/')
645 1.25 mlelstv fromname = ecpyalloc(fromfield);
646 1.1 jtc else {
647 1.1 jtc fromname = ecpyalloc(directory);
648 1.1 jtc fromname = ecatalloc(fromname, "/");
649 1.25 mlelstv fromname = ecatalloc(fromname, fromfield);
650 1.1 jtc }
651 1.25 mlelstv if (tofield[0] == '/')
652 1.25 mlelstv toname = ecpyalloc(tofield);
653 1.1 jtc else {
654 1.1 jtc toname = ecpyalloc(directory);
655 1.1 jtc toname = ecatalloc(toname, "/");
656 1.25 mlelstv toname = ecatalloc(toname, tofield);
657 1.1 jtc }
658 1.1 jtc /*
659 1.1 jtc ** We get to be careful here since
660 1.1 jtc ** there's a fair chance of root running us.
661 1.1 jtc */
662 1.1 jtc if (!itsdir(toname))
663 1.1 jtc (void) remove(toname);
664 1.44 christos if (link(fromname, toname) != 0
665 1.44 christos && access(fromname, F_OK) == 0 && !itsdir(fromname)) {
666 1.12 kleink int result;
667 1.12 kleink
668 1.1 jtc if (mkdirs(toname) != 0)
669 1.25 mlelstv exit(EXIT_FAILURE);
670 1.15 kleink
671 1.12 kleink result = link(fromname, toname);
672 1.44 christos if (result != 0) {
673 1.44 christos const char *s = fromfield;
674 1.44 christos const char *t;
675 1.31 christos char * symlinkcontents = NULL;
676 1.25 mlelstv
677 1.44 christos do
678 1.44 christos t = s;
679 1.44 christos while ((s = strchr(s, '/'))
680 1.44 christos && ! strncmp (fromfield, tofield,
681 1.44 christos ++s - fromfield));
682 1.44 christos
683 1.44 christos for (s = tofield + (t - fromfield);
684 1.44 christos (s = strchr(s, '/'));
685 1.44 christos s++)
686 1.25 mlelstv symlinkcontents =
687 1.25 mlelstv ecatalloc(symlinkcontents,
688 1.25 mlelstv "../");
689 1.44 christos symlinkcontents = ecatalloc(symlinkcontents, t);
690 1.44 christos result = symlink(symlinkcontents, toname);
691 1.25 mlelstv if (result == 0)
692 1.12 kleink warning(_("hard link failed, symbolic link used"));
693 1.31 christos free(symlinkcontents);
694 1.12 kleink }
695 1.12 kleink if (result != 0) {
696 1.44 christos FILE *fp, *tp;
697 1.44 christos int c;
698 1.44 christos fp = fopen(fromname, "rb");
699 1.44 christos if (!fp) {
700 1.44 christos const char *e = strerror(errno);
701 1.44 christos (void) fprintf(stderr,
702 1.44 christos _("%s: Can't read %s: %s\n"),
703 1.44 christos progname, fromname, e);
704 1.44 christos exit(EXIT_FAILURE);
705 1.44 christos }
706 1.44 christos tp = fopen(toname, "wb");
707 1.44 christos if (!tp) {
708 1.44 christos const char *e = strerror(errno);
709 1.44 christos (void) fprintf(stderr,
710 1.44 christos _("%s: Can't create %s: %s\n"),
711 1.44 christos progname, toname, e);
712 1.44 christos exit(EXIT_FAILURE);
713 1.44 christos }
714 1.44 christos while ((c = getc(fp)) != EOF)
715 1.44 christos putc(c, tp);
716 1.44 christos if (ferror(fp) || fclose(fp)) {
717 1.44 christos (void) fprintf(stderr,
718 1.44 christos _("%s: Error reading %s\n"),
719 1.44 christos progname, fromname);
720 1.44 christos exit(EXIT_FAILURE);
721 1.44 christos }
722 1.44 christos if (ferror(tp) || fclose(tp)) {
723 1.44 christos (void) fprintf(stderr,
724 1.44 christos _("%s: Error writing %s\n"),
725 1.44 christos progname, toname);
726 1.44 christos exit(EXIT_FAILURE);
727 1.44 christos }
728 1.44 christos warning(_("link failed, copy used"));
729 1.1 jtc }
730 1.1 jtc }
731 1.31 christos free(fromname);
732 1.31 christos free(toname);
733 1.1 jtc }
734 1.1 jtc
735 1.41 christos #define TIME_T_BITS_IN_FILE 64
736 1.41 christos
737 1.41 christos static const zic_t min_time = (zic_t) -1 << (TIME_T_BITS_IN_FILE - 1);
738 1.41 christos static const zic_t max_time = -1 - ((zic_t) -1 << (TIME_T_BITS_IN_FILE - 1));
739 1.41 christos
740 1.46 christos /* Estimated time of the Big Bang, in seconds since the POSIX epoch.
741 1.46 christos rounded downward to the negation of a power of two that is
742 1.46 christos comfortably outside the error bounds.
743 1.46 christos
744 1.46 christos zic does not output time stamps before this, partly because they
745 1.46 christos are physically suspect, and partly because GNOME mishandles them; see
746 1.46 christos GNOME bug 730332 <https://bugzilla.gnome.org/show_bug.cgi?id=730332>.
747 1.46 christos
748 1.46 christos For the time of the Big Bang, see:
749 1.46 christos
750 1.46 christos Ade PAR, Aghanim N, Armitage-Caplan C et al. Planck 2013 results.
751 1.46 christos I. Overview of products and scientific results.
752 1.46 christos arXiv:1303.5062 2013-03-20 20:10:01 UTC
753 1.46 christos <http://arxiv.org/pdf/1303.5062v1> [PDF]
754 1.46 christos
755 1.46 christos Page 36, Table 9, row Age/Gyr, column Planck+WP+highL+BAO 68% limits
756 1.46 christos gives the value 13.798 plus-or-minus 0.037 billion years.
757 1.46 christos Multiplying this by 1000000000 and then by 31557600 (the number of
758 1.46 christos seconds in an astronomical year) gives a value that is comfortably
759 1.46 christos less than 2**59, so BIG_BANG is - 2**59.
760 1.46 christos
761 1.46 christos BIG_BANG is approximate, and may change in future versions.
762 1.46 christos Please do not rely on its exact value. */
763 1.46 christos
764 1.46 christos #ifndef BIG_BANG
765 1.46 christos #define BIG_BANG (- (1LL << 59))
766 1.46 christos #endif
767 1.46 christos
768 1.46 christos static const zic_t big_bang_time = BIG_BANG;
769 1.46 christos
770 1.1 jtc static int
771 1.31 christos itsdir(const char *const name)
772 1.1 jtc {
773 1.31 christos char * myname;
774 1.31 christos int accres;
775 1.1 jtc
776 1.1 jtc myname = ecpyalloc(name);
777 1.1 jtc myname = ecatalloc(myname, "/.");
778 1.1 jtc accres = access(myname, F_OK);
779 1.31 christos free(myname);
780 1.1 jtc return accres == 0;
781 1.1 jtc }
782 1.1 jtc
783 1.1 jtc /*
784 1.1 jtc ** Associate sets of rules with zones.
785 1.1 jtc */
786 1.1 jtc
787 1.1 jtc /*
788 1.1 jtc ** Sort by rule name.
789 1.1 jtc */
790 1.1 jtc
791 1.1 jtc static int
792 1.31 christos rcomp(const void *cp1, const void *cp2)
793 1.1 jtc {
794 1.1 jtc return strcmp(((const struct rule *) cp1)->r_name,
795 1.1 jtc ((const struct rule *) cp2)->r_name);
796 1.1 jtc }
797 1.1 jtc
798 1.1 jtc static void
799 1.25 mlelstv associate(void)
800 1.1 jtc {
801 1.31 christos struct zone * zp;
802 1.31 christos struct rule * rp;
803 1.31 christos int base, out;
804 1.31 christos int i, j;
805 1.1 jtc
806 1.5 jtc if (nrules != 0) {
807 1.31 christos (void) qsort(rules, (size_t)nrules, sizeof *rules, rcomp);
808 1.5 jtc for (i = 0; i < nrules - 1; ++i) {
809 1.5 jtc if (strcmp(rules[i].r_name,
810 1.5 jtc rules[i + 1].r_name) != 0)
811 1.5 jtc continue;
812 1.5 jtc if (strcmp(rules[i].r_filename,
813 1.5 jtc rules[i + 1].r_filename) == 0)
814 1.5 jtc continue;
815 1.5 jtc eat(rules[i].r_filename, rules[i].r_linenum);
816 1.5 jtc warning(_("same rule name in multiple files"));
817 1.5 jtc eat(rules[i + 1].r_filename, rules[i + 1].r_linenum);
818 1.5 jtc warning(_("same rule name in multiple files"));
819 1.5 jtc for (j = i + 2; j < nrules; ++j) {
820 1.5 jtc if (strcmp(rules[i].r_name,
821 1.5 jtc rules[j].r_name) != 0)
822 1.5 jtc break;
823 1.5 jtc if (strcmp(rules[i].r_filename,
824 1.5 jtc rules[j].r_filename) == 0)
825 1.5 jtc continue;
826 1.5 jtc if (strcmp(rules[i + 1].r_filename,
827 1.5 jtc rules[j].r_filename) == 0)
828 1.5 jtc continue;
829 1.5 jtc break;
830 1.5 jtc }
831 1.5 jtc i = j - 1;
832 1.5 jtc }
833 1.5 jtc }
834 1.1 jtc for (i = 0; i < nzones; ++i) {
835 1.1 jtc zp = &zones[i];
836 1.1 jtc zp->z_rules = NULL;
837 1.1 jtc zp->z_nrules = 0;
838 1.1 jtc }
839 1.1 jtc for (base = 0; base < nrules; base = out) {
840 1.1 jtc rp = &rules[base];
841 1.1 jtc for (out = base + 1; out < nrules; ++out)
842 1.1 jtc if (strcmp(rp->r_name, rules[out].r_name) != 0)
843 1.1 jtc break;
844 1.1 jtc for (i = 0; i < nzones; ++i) {
845 1.1 jtc zp = &zones[i];
846 1.1 jtc if (strcmp(zp->z_rule, rp->r_name) != 0)
847 1.1 jtc continue;
848 1.1 jtc zp->z_rules = rp;
849 1.1 jtc zp->z_nrules = out - base;
850 1.1 jtc }
851 1.1 jtc }
852 1.1 jtc for (i = 0; i < nzones; ++i) {
853 1.1 jtc zp = &zones[i];
854 1.1 jtc if (zp->z_nrules == 0) {
855 1.1 jtc /*
856 1.1 jtc ** Maybe we have a local standard time offset.
857 1.1 jtc */
858 1.1 jtc eat(zp->z_filename, zp->z_linenum);
859 1.5 jtc zp->z_stdoff = gethms(zp->z_rule, _("unruly zone"),
860 1.25 mlelstv TRUE);
861 1.1 jtc /*
862 1.1 jtc ** Note, though, that if there's no rule,
863 1.1 jtc ** a '%s' in the format is a bad thing.
864 1.1 jtc */
865 1.1 jtc if (strchr(zp->z_format, '%') != 0)
866 1.43 christos error("%s", _("%s in ruleless zone"));
867 1.1 jtc }
868 1.1 jtc }
869 1.1 jtc if (errors)
870 1.25 mlelstv exit(EXIT_FAILURE);
871 1.1 jtc }
872 1.1 jtc
873 1.1 jtc static void
874 1.31 christos infile(const char *name)
875 1.1 jtc {
876 1.31 christos FILE * fp;
877 1.31 christos char ** fields;
878 1.31 christos char * cp;
879 1.31 christos const struct lookup * lp;
880 1.31 christos int nfields;
881 1.31 christos int wantcont;
882 1.31 christos int num;
883 1.1 jtc char buf[BUFSIZ];
884 1.1 jtc
885 1.1 jtc if (strcmp(name, "-") == 0) {
886 1.5 jtc name = _("standard input");
887 1.1 jtc fp = stdin;
888 1.1 jtc } else if ((fp = fopen(name, "r")) == NULL) {
889 1.5 jtc const char *e = strerror(errno);
890 1.7 jtc
891 1.5 jtc (void) fprintf(stderr, _("%s: Can't open %s: %s\n"),
892 1.5 jtc progname, name, e);
893 1.25 mlelstv exit(EXIT_FAILURE);
894 1.1 jtc }
895 1.1 jtc wantcont = FALSE;
896 1.1 jtc for (num = 1; ; ++num) {
897 1.1 jtc eat(name, num);
898 1.1 jtc if (fgets(buf, (int) sizeof buf, fp) != buf)
899 1.1 jtc break;
900 1.1 jtc cp = strchr(buf, '\n');
901 1.1 jtc if (cp == NULL) {
902 1.40 christos error(_("line too long"));
903 1.25 mlelstv exit(EXIT_FAILURE);
904 1.1 jtc }
905 1.1 jtc *cp = '\0';
906 1.1 jtc fields = getfields(buf);
907 1.1 jtc nfields = 0;
908 1.1 jtc while (fields[nfields] != NULL) {
909 1.1 jtc static char nada;
910 1.1 jtc
911 1.3 jtc if (strcmp(fields[nfields], "-") == 0)
912 1.1 jtc fields[nfields] = &nada;
913 1.1 jtc ++nfields;
914 1.1 jtc }
915 1.1 jtc if (nfields == 0) {
916 1.1 jtc /* nothing to do */
917 1.1 jtc } else if (wantcont) {
918 1.1 jtc wantcont = inzcont(fields, nfields);
919 1.1 jtc } else {
920 1.1 jtc lp = byword(fields[0], line_codes);
921 1.1 jtc if (lp == NULL)
922 1.5 jtc error(_("input line of unknown type"));
923 1.1 jtc else switch ((int) (lp->l_value)) {
924 1.1 jtc case LC_RULE:
925 1.1 jtc inrule(fields, nfields);
926 1.1 jtc wantcont = FALSE;
927 1.1 jtc break;
928 1.1 jtc case LC_ZONE:
929 1.1 jtc wantcont = inzone(fields, nfields);
930 1.1 jtc break;
931 1.1 jtc case LC_LINK:
932 1.1 jtc inlink(fields, nfields);
933 1.1 jtc wantcont = FALSE;
934 1.1 jtc break;
935 1.1 jtc case LC_LEAP:
936 1.1 jtc if (name != leapsec)
937 1.1 jtc (void) fprintf(stderr,
938 1.5 jtc _("%s: Leap line in non leap seconds file %s\n"),
939 1.1 jtc progname, name);
940 1.1 jtc else inleap(fields, nfields);
941 1.1 jtc wantcont = FALSE;
942 1.1 jtc break;
943 1.1 jtc default: /* "cannot happen" */
944 1.1 jtc (void) fprintf(stderr,
945 1.5 jtc _("%s: panic: Invalid l_value %d\n"),
946 1.1 jtc progname, lp->l_value);
947 1.25 mlelstv exit(EXIT_FAILURE);
948 1.1 jtc }
949 1.1 jtc }
950 1.31 christos free(fields);
951 1.1 jtc }
952 1.1 jtc if (ferror(fp)) {
953 1.5 jtc (void) fprintf(stderr, _("%s: Error reading %s\n"),
954 1.5 jtc progname, filename);
955 1.25 mlelstv exit(EXIT_FAILURE);
956 1.1 jtc }
957 1.1 jtc if (fp != stdin && fclose(fp)) {
958 1.5 jtc const char *e = strerror(errno);
959 1.7 jtc
960 1.5 jtc (void) fprintf(stderr, _("%s: Error closing %s: %s\n"),
961 1.5 jtc progname, filename, e);
962 1.25 mlelstv exit(EXIT_FAILURE);
963 1.1 jtc }
964 1.1 jtc if (wantcont)
965 1.5 jtc error(_("expected continuation line not found"));
966 1.1 jtc }
967 1.1 jtc
968 1.1 jtc /*
969 1.1 jtc ** Convert a string of one of the forms
970 1.1 jtc ** h -h hh:mm -hh:mm hh:mm:ss -hh:mm:ss
971 1.1 jtc ** into a number of seconds.
972 1.1 jtc ** A null string maps to zero.
973 1.1 jtc ** Call error with errstring and return zero on errors.
974 1.1 jtc */
975 1.1 jtc
976 1.38 christos static zic_t
977 1.31 christos gethms(const char *string, const char *const errstring, const int signable)
978 1.1 jtc {
979 1.38 christos zic_t hh;
980 1.25 mlelstv int mm, ss, sign;
981 1.1 jtc
982 1.1 jtc if (string == NULL || *string == '\0')
983 1.1 jtc return 0;
984 1.1 jtc if (!signable)
985 1.1 jtc sign = 1;
986 1.1 jtc else if (*string == '-') {
987 1.1 jtc sign = -1;
988 1.1 jtc ++string;
989 1.1 jtc } else sign = 1;
990 1.41 christos if (sscanf(string, scheck(string, "%"SCNdZIC), &hh) == 1)
991 1.1 jtc mm = ss = 0;
992 1.41 christos else if (sscanf(string, scheck(string, "%"SCNdZIC":%d"), &hh, &mm) == 2)
993 1.1 jtc ss = 0;
994 1.41 christos else if (sscanf(string, scheck(string, "%"SCNdZIC":%d:%d"),
995 1.39 christos &hh, &mm, &ss) != 3) {
996 1.43 christos error("%s", errstring);
997 1.1 jtc return 0;
998 1.1 jtc }
999 1.25 mlelstv if (hh < 0 ||
1000 1.1 jtc mm < 0 || mm >= MINSPERHOUR ||
1001 1.25 mlelstv ss < 0 || ss > SECSPERMIN) {
1002 1.43 christos error("%s", errstring);
1003 1.1 jtc return 0;
1004 1.1 jtc }
1005 1.41 christos if (ZIC_MAX / SECSPERHOUR < hh) {
1006 1.25 mlelstv error(_("time overflow"));
1007 1.25 mlelstv return 0;
1008 1.25 mlelstv }
1009 1.25 mlelstv if (noise && (hh > HOURSPERDAY ||
1010 1.25 mlelstv (hh == HOURSPERDAY && (mm != 0 || ss != 0))))
1011 1.25 mlelstv warning(_("values over 24 hours not handled by pre-2007 versions of zic"));
1012 1.41 christos return oadd(sign * hh * SECSPERHOUR,
1013 1.41 christos sign * (mm * SECSPERMIN + ss));
1014 1.1 jtc }
1015 1.1 jtc
1016 1.1 jtc static void
1017 1.31 christos inrule(char **const fields, const int nfields)
1018 1.1 jtc {
1019 1.1 jtc static struct rule r;
1020 1.1 jtc
1021 1.1 jtc if (nfields != RULE_FIELDS) {
1022 1.5 jtc error(_("wrong number of fields on Rule line"));
1023 1.1 jtc return;
1024 1.1 jtc }
1025 1.1 jtc if (*fields[RF_NAME] == '\0') {
1026 1.5 jtc error(_("nameless rule"));
1027 1.1 jtc return;
1028 1.1 jtc }
1029 1.1 jtc r.r_filename = filename;
1030 1.1 jtc r.r_linenum = linenum;
1031 1.5 jtc r.r_stdoff = gethms(fields[RF_STDOFF], _("invalid saved time"), TRUE);
1032 1.1 jtc rulesub(&r, fields[RF_LOYEAR], fields[RF_HIYEAR], fields[RF_COMMAND],
1033 1.1 jtc fields[RF_MONTH], fields[RF_DAY], fields[RF_TOD]);
1034 1.1 jtc r.r_name = ecpyalloc(fields[RF_NAME]);
1035 1.1 jtc r.r_abbrvar = ecpyalloc(fields[RF_ABBRVAR]);
1036 1.25 mlelstv if (max_abbrvar_len < strlen(r.r_abbrvar))
1037 1.25 mlelstv max_abbrvar_len = strlen(r.r_abbrvar);
1038 1.45 christos rules = growalloc(rules, sizeof *rules, nrules, &nrules_alloc);
1039 1.1 jtc rules[nrules++] = r;
1040 1.1 jtc }
1041 1.1 jtc
1042 1.1 jtc static int
1043 1.31 christos inzone(char **const fields, const int nfields)
1044 1.1 jtc {
1045 1.31 christos int i;
1046 1.1 jtc
1047 1.1 jtc if (nfields < ZONE_MINFIELDS || nfields > ZONE_MAXFIELDS) {
1048 1.5 jtc error(_("wrong number of fields on Zone line"));
1049 1.1 jtc return FALSE;
1050 1.1 jtc }
1051 1.1 jtc if (strcmp(fields[ZF_NAME], TZDEFAULT) == 0 && lcltime != NULL) {
1052 1.43 christos error(
1053 1.5 jtc _("\"Zone %s\" line and -l option are mutually exclusive"),
1054 1.1 jtc TZDEFAULT);
1055 1.1 jtc return FALSE;
1056 1.1 jtc }
1057 1.1 jtc if (strcmp(fields[ZF_NAME], TZDEFRULES) == 0 && psxrules != NULL) {
1058 1.43 christos error(
1059 1.5 jtc _("\"Zone %s\" line and -p option are mutually exclusive"),
1060 1.1 jtc TZDEFRULES);
1061 1.1 jtc return FALSE;
1062 1.1 jtc }
1063 1.1 jtc for (i = 0; i < nzones; ++i)
1064 1.1 jtc if (zones[i].z_name != NULL &&
1065 1.1 jtc strcmp(zones[i].z_name, fields[ZF_NAME]) == 0) {
1066 1.43 christos error(
1067 1.5 jtc _("duplicate zone name %s (file \"%s\", line %d)"),
1068 1.1 jtc fields[ZF_NAME],
1069 1.1 jtc zones[i].z_filename,
1070 1.1 jtc zones[i].z_linenum);
1071 1.1 jtc return FALSE;
1072 1.1 jtc }
1073 1.1 jtc return inzsub(fields, nfields, FALSE);
1074 1.1 jtc }
1075 1.1 jtc
1076 1.1 jtc static int
1077 1.31 christos inzcont(char **const fields, const int nfields)
1078 1.1 jtc {
1079 1.1 jtc if (nfields < ZONEC_MINFIELDS || nfields > ZONEC_MAXFIELDS) {
1080 1.5 jtc error(_("wrong number of fields on Zone continuation line"));
1081 1.1 jtc return FALSE;
1082 1.1 jtc }
1083 1.1 jtc return inzsub(fields, nfields, TRUE);
1084 1.1 jtc }
1085 1.1 jtc
1086 1.1 jtc static int
1087 1.31 christos inzsub(char **const fields, const int nfields, const int iscont)
1088 1.1 jtc {
1089 1.31 christos char * cp;
1090 1.1 jtc static struct zone z;
1091 1.31 christos int i_gmtoff, i_rule, i_format;
1092 1.31 christos int i_untilyear, i_untilmonth;
1093 1.31 christos int i_untilday, i_untiltime;
1094 1.31 christos int hasuntil;
1095 1.1 jtc
1096 1.1 jtc if (iscont) {
1097 1.1 jtc i_gmtoff = ZFC_GMTOFF;
1098 1.1 jtc i_rule = ZFC_RULE;
1099 1.1 jtc i_format = ZFC_FORMAT;
1100 1.1 jtc i_untilyear = ZFC_TILYEAR;
1101 1.1 jtc i_untilmonth = ZFC_TILMONTH;
1102 1.1 jtc i_untilday = ZFC_TILDAY;
1103 1.1 jtc i_untiltime = ZFC_TILTIME;
1104 1.1 jtc z.z_name = NULL;
1105 1.1 jtc } else {
1106 1.1 jtc i_gmtoff = ZF_GMTOFF;
1107 1.1 jtc i_rule = ZF_RULE;
1108 1.1 jtc i_format = ZF_FORMAT;
1109 1.1 jtc i_untilyear = ZF_TILYEAR;
1110 1.1 jtc i_untilmonth = ZF_TILMONTH;
1111 1.1 jtc i_untilday = ZF_TILDAY;
1112 1.1 jtc i_untiltime = ZF_TILTIME;
1113 1.1 jtc z.z_name = ecpyalloc(fields[ZF_NAME]);
1114 1.1 jtc }
1115 1.1 jtc z.z_filename = filename;
1116 1.1 jtc z.z_linenum = linenum;
1117 1.43 christos z.z_gmtoff = gethms(fields[i_gmtoff], _("invalid UT offset"), TRUE);
1118 1.1 jtc if ((cp = strchr(fields[i_format], '%')) != 0) {
1119 1.1 jtc if (*++cp != 's' || strchr(cp, '%') != 0) {
1120 1.5 jtc error(_("invalid abbreviation format"));
1121 1.1 jtc return FALSE;
1122 1.1 jtc }
1123 1.1 jtc }
1124 1.1 jtc z.z_rule = ecpyalloc(fields[i_rule]);
1125 1.1 jtc z.z_format = ecpyalloc(fields[i_format]);
1126 1.25 mlelstv if (max_format_len < strlen(z.z_format))
1127 1.25 mlelstv max_format_len = strlen(z.z_format);
1128 1.1 jtc hasuntil = nfields > i_untilyear;
1129 1.1 jtc if (hasuntil) {
1130 1.1 jtc z.z_untilrule.r_filename = filename;
1131 1.1 jtc z.z_untilrule.r_linenum = linenum;
1132 1.1 jtc rulesub(&z.z_untilrule,
1133 1.1 jtc fields[i_untilyear],
1134 1.1 jtc "only",
1135 1.1 jtc "",
1136 1.1 jtc (nfields > i_untilmonth) ?
1137 1.1 jtc fields[i_untilmonth] : "Jan",
1138 1.1 jtc (nfields > i_untilday) ? fields[i_untilday] : "1",
1139 1.1 jtc (nfields > i_untiltime) ? fields[i_untiltime] : "0");
1140 1.1 jtc z.z_untiltime = rpytime(&z.z_untilrule,
1141 1.1 jtc z.z_untilrule.r_loyear);
1142 1.1 jtc if (iscont && nzones > 0 &&
1143 1.1 jtc z.z_untiltime > min_time &&
1144 1.1 jtc z.z_untiltime < max_time &&
1145 1.1 jtc zones[nzones - 1].z_untiltime > min_time &&
1146 1.1 jtc zones[nzones - 1].z_untiltime < max_time &&
1147 1.1 jtc zones[nzones - 1].z_untiltime >= z.z_untiltime) {
1148 1.25 mlelstv error(_(
1149 1.25 mlelstv "Zone continuation line end time is not after end time of previous line"
1150 1.25 mlelstv ));
1151 1.1 jtc return FALSE;
1152 1.1 jtc }
1153 1.1 jtc }
1154 1.45 christos zones = growalloc(zones, sizeof *zones, nzones, &nzones_alloc);
1155 1.1 jtc zones[nzones++] = z;
1156 1.1 jtc /*
1157 1.1 jtc ** If there was an UNTIL field on this line,
1158 1.1 jtc ** there's more information about the zone on the next line.
1159 1.1 jtc */
1160 1.1 jtc return hasuntil;
1161 1.1 jtc }
1162 1.1 jtc
1163 1.1 jtc static void
1164 1.31 christos inleap(char **const fields, const int nfields)
1165 1.31 christos {
1166 1.31 christos const char * cp;
1167 1.31 christos const struct lookup * lp;
1168 1.31 christos int i, j;
1169 1.41 christos zic_t year;
1170 1.41 christos int month, day;
1171 1.41 christos zic_t dayoff, tod;
1172 1.41 christos zic_t t;
1173 1.1 jtc
1174 1.1 jtc if (nfields != LEAP_FIELDS) {
1175 1.5 jtc error(_("wrong number of fields on Leap line"));
1176 1.1 jtc return;
1177 1.1 jtc }
1178 1.1 jtc dayoff = 0;
1179 1.1 jtc cp = fields[LP_YEAR];
1180 1.41 christos if (sscanf(cp, scheck(cp, "%"SCNdZIC), &year) != 1) {
1181 1.25 mlelstv /*
1182 1.25 mlelstv ** Leapin' Lizards!
1183 1.25 mlelstv */
1184 1.25 mlelstv error(_("invalid leaping year"));
1185 1.25 mlelstv return;
1186 1.1 jtc }
1187 1.25 mlelstv if (!leapseen || leapmaxyear < year)
1188 1.25 mlelstv leapmaxyear = year;
1189 1.25 mlelstv if (!leapseen || leapminyear > year)
1190 1.25 mlelstv leapminyear = year;
1191 1.25 mlelstv leapseen = TRUE;
1192 1.1 jtc j = EPOCH_YEAR;
1193 1.1 jtc while (j != year) {
1194 1.1 jtc if (year > j) {
1195 1.1 jtc i = len_years[isleap(j)];
1196 1.1 jtc ++j;
1197 1.1 jtc } else {
1198 1.1 jtc --j;
1199 1.1 jtc i = -len_years[isleap(j)];
1200 1.1 jtc }
1201 1.41 christos dayoff = oadd(dayoff, i);
1202 1.1 jtc }
1203 1.1 jtc if ((lp = byword(fields[LP_MONTH], mon_names)) == NULL) {
1204 1.5 jtc error(_("invalid month name"));
1205 1.1 jtc return;
1206 1.1 jtc }
1207 1.1 jtc month = lp->l_value;
1208 1.1 jtc j = TM_JANUARY;
1209 1.1 jtc while (j != month) {
1210 1.1 jtc i = len_months[isleap(year)][j];
1211 1.41 christos dayoff = oadd(dayoff, i);
1212 1.1 jtc ++j;
1213 1.1 jtc }
1214 1.1 jtc cp = fields[LP_DAY];
1215 1.1 jtc if (sscanf(cp, scheck(cp, "%d"), &day) != 1 ||
1216 1.1 jtc day <= 0 || day > len_months[isleap(year)][month]) {
1217 1.5 jtc error(_("invalid day of month"));
1218 1.1 jtc return;
1219 1.1 jtc }
1220 1.41 christos dayoff = oadd(dayoff, day - 1);
1221 1.34 martin if (dayoff < min_time / SECSPERDAY) {
1222 1.20 kleink error(_("time too small"));
1223 1.20 kleink return;
1224 1.20 kleink }
1225 1.34 martin if (dayoff > max_time / SECSPERDAY) {
1226 1.20 kleink error(_("time too large"));
1227 1.1 jtc return;
1228 1.1 jtc }
1229 1.46 christos t = dayoff * SECSPERDAY;
1230 1.5 jtc tod = gethms(fields[LP_TIME], _("invalid time of day"), FALSE);
1231 1.1 jtc cp = fields[LP_CORR];
1232 1.1 jtc {
1233 1.31 christos int positive;
1234 1.1 jtc int count;
1235 1.1 jtc
1236 1.1 jtc if (strcmp(cp, "") == 0) { /* infile() turns "-" into "" */
1237 1.1 jtc positive = FALSE;
1238 1.1 jtc count = 1;
1239 1.1 jtc } else if (strcmp(cp, "--") == 0) {
1240 1.1 jtc positive = FALSE;
1241 1.1 jtc count = 2;
1242 1.1 jtc } else if (strcmp(cp, "+") == 0) {
1243 1.1 jtc positive = TRUE;
1244 1.1 jtc count = 1;
1245 1.1 jtc } else if (strcmp(cp, "++") == 0) {
1246 1.1 jtc positive = TRUE;
1247 1.1 jtc count = 2;
1248 1.1 jtc } else {
1249 1.5 jtc error(_("illegal CORRECTION field on Leap line"));
1250 1.1 jtc return;
1251 1.1 jtc }
1252 1.1 jtc if ((lp = byword(fields[LP_ROLL], leap_types)) == NULL) {
1253 1.25 mlelstv error(_(
1254 1.25 mlelstv "illegal Rolling/Stationary field on Leap line"
1255 1.25 mlelstv ));
1256 1.1 jtc return;
1257 1.1 jtc }
1258 1.46 christos t = tadd(t, tod);
1259 1.46 christos if (t < big_bang_time) {
1260 1.46 christos error(_("leap second precedes Big Bang"));
1261 1.46 christos return;
1262 1.46 christos }
1263 1.46 christos leapadd(t, positive, lp->l_value, count);
1264 1.1 jtc }
1265 1.1 jtc }
1266 1.1 jtc
1267 1.1 jtc static void
1268 1.31 christos inlink(char **const fields, const int nfields)
1269 1.1 jtc {
1270 1.1 jtc struct link l;
1271 1.1 jtc
1272 1.1 jtc if (nfields != LINK_FIELDS) {
1273 1.5 jtc error(_("wrong number of fields on Link line"));
1274 1.1 jtc return;
1275 1.1 jtc }
1276 1.1 jtc if (*fields[LF_FROM] == '\0') {
1277 1.5 jtc error(_("blank FROM field on Link line"));
1278 1.1 jtc return;
1279 1.1 jtc }
1280 1.1 jtc if (*fields[LF_TO] == '\0') {
1281 1.5 jtc error(_("blank TO field on Link line"));
1282 1.1 jtc return;
1283 1.1 jtc }
1284 1.1 jtc l.l_filename = filename;
1285 1.1 jtc l.l_linenum = linenum;
1286 1.1 jtc l.l_from = ecpyalloc(fields[LF_FROM]);
1287 1.1 jtc l.l_to = ecpyalloc(fields[LF_TO]);
1288 1.45 christos links = growalloc(links, sizeof *links, nlinks, &nlinks_alloc);
1289 1.1 jtc links[nlinks++] = l;
1290 1.1 jtc }
1291 1.1 jtc
1292 1.1 jtc static void
1293 1.31 christos rulesub(struct rule *const rp, const char *const loyearp,
1294 1.31 christos const char *const hiyearp, const char *const typep,
1295 1.31 christos const char *const monthp, const char *const dayp, const char *const timep)
1296 1.31 christos {
1297 1.31 christos const struct lookup * lp;
1298 1.31 christos const char * cp;
1299 1.31 christos char * dp;
1300 1.31 christos char * ep;
1301 1.1 jtc
1302 1.1 jtc if ((lp = byword(monthp, mon_names)) == NULL) {
1303 1.5 jtc error(_("invalid month name"));
1304 1.1 jtc return;
1305 1.1 jtc }
1306 1.1 jtc rp->r_month = lp->l_value;
1307 1.1 jtc rp->r_todisstd = FALSE;
1308 1.1 jtc rp->r_todisgmt = FALSE;
1309 1.1 jtc dp = ecpyalloc(timep);
1310 1.1 jtc if (*dp != '\0') {
1311 1.1 jtc ep = dp + strlen(dp) - 1;
1312 1.1 jtc switch (lowerit(*ep)) {
1313 1.1 jtc case 's': /* Standard */
1314 1.1 jtc rp->r_todisstd = TRUE;
1315 1.1 jtc rp->r_todisgmt = FALSE;
1316 1.1 jtc *ep = '\0';
1317 1.1 jtc break;
1318 1.1 jtc case 'w': /* Wall */
1319 1.1 jtc rp->r_todisstd = FALSE;
1320 1.1 jtc rp->r_todisgmt = FALSE;
1321 1.1 jtc *ep = '\0';
1322 1.7 jtc break;
1323 1.1 jtc case 'g': /* Greenwich */
1324 1.1 jtc case 'u': /* Universal */
1325 1.1 jtc case 'z': /* Zulu */
1326 1.1 jtc rp->r_todisstd = TRUE;
1327 1.1 jtc rp->r_todisgmt = TRUE;
1328 1.1 jtc *ep = '\0';
1329 1.1 jtc break;
1330 1.1 jtc }
1331 1.1 jtc }
1332 1.5 jtc rp->r_tod = gethms(dp, _("invalid time of day"), FALSE);
1333 1.31 christos free(dp);
1334 1.1 jtc /*
1335 1.1 jtc ** Year work.
1336 1.1 jtc */
1337 1.1 jtc cp = loyearp;
1338 1.1 jtc lp = byword(cp, begin_years);
1339 1.25 mlelstv rp->r_lowasnum = lp == NULL;
1340 1.25 mlelstv if (!rp->r_lowasnum) switch ((int) lp->l_value) {
1341 1.1 jtc case YR_MINIMUM:
1342 1.41 christos rp->r_loyear = ZIC_MIN;
1343 1.1 jtc break;
1344 1.1 jtc case YR_MAXIMUM:
1345 1.41 christos rp->r_loyear = ZIC_MAX;
1346 1.1 jtc break;
1347 1.1 jtc default: /* "cannot happen" */
1348 1.1 jtc (void) fprintf(stderr,
1349 1.5 jtc _("%s: panic: Invalid l_value %d\n"),
1350 1.1 jtc progname, lp->l_value);
1351 1.25 mlelstv exit(EXIT_FAILURE);
1352 1.41 christos } else if (sscanf(cp, scheck(cp, "%"SCNdZIC), &rp->r_loyear) != 1) {
1353 1.5 jtc error(_("invalid starting year"));
1354 1.1 jtc return;
1355 1.11 jtc }
1356 1.1 jtc cp = hiyearp;
1357 1.25 mlelstv lp = byword(cp, end_years);
1358 1.25 mlelstv rp->r_hiwasnum = lp == NULL;
1359 1.25 mlelstv if (!rp->r_hiwasnum) switch ((int) lp->l_value) {
1360 1.1 jtc case YR_MINIMUM:
1361 1.41 christos rp->r_hiyear = ZIC_MIN;
1362 1.1 jtc break;
1363 1.1 jtc case YR_MAXIMUM:
1364 1.41 christos rp->r_hiyear = ZIC_MAX;
1365 1.1 jtc break;
1366 1.1 jtc case YR_ONLY:
1367 1.1 jtc rp->r_hiyear = rp->r_loyear;
1368 1.1 jtc break;
1369 1.1 jtc default: /* "cannot happen" */
1370 1.1 jtc (void) fprintf(stderr,
1371 1.5 jtc _("%s: panic: Invalid l_value %d\n"),
1372 1.1 jtc progname, lp->l_value);
1373 1.25 mlelstv exit(EXIT_FAILURE);
1374 1.41 christos } else if (sscanf(cp, scheck(cp, "%"SCNdZIC), &rp->r_hiyear) != 1) {
1375 1.5 jtc error(_("invalid ending year"));
1376 1.1 jtc return;
1377 1.11 jtc }
1378 1.1 jtc if (rp->r_loyear > rp->r_hiyear) {
1379 1.5 jtc error(_("starting year greater than ending year"));
1380 1.1 jtc return;
1381 1.1 jtc }
1382 1.1 jtc if (*typep == '\0')
1383 1.1 jtc rp->r_yrtype = NULL;
1384 1.1 jtc else {
1385 1.1 jtc if (rp->r_loyear == rp->r_hiyear) {
1386 1.5 jtc error(_("typed single year"));
1387 1.1 jtc return;
1388 1.1 jtc }
1389 1.1 jtc rp->r_yrtype = ecpyalloc(typep);
1390 1.1 jtc }
1391 1.1 jtc /*
1392 1.1 jtc ** Day work.
1393 1.1 jtc ** Accept things such as:
1394 1.1 jtc ** 1
1395 1.1 jtc ** last-Sunday
1396 1.1 jtc ** Sun<=20
1397 1.1 jtc ** Sun>=7
1398 1.1 jtc */
1399 1.1 jtc dp = ecpyalloc(dayp);
1400 1.1 jtc if ((lp = byword(dp, lasts)) != NULL) {
1401 1.1 jtc rp->r_dycode = DC_DOWLEQ;
1402 1.1 jtc rp->r_wday = lp->l_value;
1403 1.1 jtc rp->r_dayofmonth = len_months[1][rp->r_month];
1404 1.1 jtc } else {
1405 1.1 jtc if ((ep = strchr(dp, '<')) != 0)
1406 1.1 jtc rp->r_dycode = DC_DOWLEQ;
1407 1.1 jtc else if ((ep = strchr(dp, '>')) != 0)
1408 1.1 jtc rp->r_dycode = DC_DOWGEQ;
1409 1.1 jtc else {
1410 1.1 jtc ep = dp;
1411 1.1 jtc rp->r_dycode = DC_DOM;
1412 1.1 jtc }
1413 1.1 jtc if (rp->r_dycode != DC_DOM) {
1414 1.1 jtc *ep++ = 0;
1415 1.1 jtc if (*ep++ != '=') {
1416 1.5 jtc error(_("invalid day of month"));
1417 1.31 christos free(dp);
1418 1.1 jtc return;
1419 1.1 jtc }
1420 1.1 jtc if ((lp = byword(dp, wday_names)) == NULL) {
1421 1.5 jtc error(_("invalid weekday name"));
1422 1.31 christos free(dp);
1423 1.1 jtc return;
1424 1.1 jtc }
1425 1.1 jtc rp->r_wday = lp->l_value;
1426 1.1 jtc }
1427 1.1 jtc if (sscanf(ep, scheck(ep, "%d"), &rp->r_dayofmonth) != 1 ||
1428 1.1 jtc rp->r_dayofmonth <= 0 ||
1429 1.1 jtc (rp->r_dayofmonth > len_months[1][rp->r_month])) {
1430 1.5 jtc error(_("invalid day of month"));
1431 1.31 christos free(dp);
1432 1.1 jtc return;
1433 1.1 jtc }
1434 1.1 jtc }
1435 1.31 christos free(dp);
1436 1.1 jtc }
1437 1.1 jtc
1438 1.1 jtc static void
1439 1.38 christos convert(const zic_t val, char *const buf)
1440 1.1 jtc {
1441 1.31 christos int i;
1442 1.31 christos int shift;
1443 1.31 christos unsigned char *const b = (unsigned char *) buf;
1444 1.1 jtc
1445 1.1 jtc for (i = 0, shift = 24; i < 4; ++i, shift -= 8)
1446 1.31 christos b[i] = val >> shift;
1447 1.1 jtc }
1448 1.1 jtc
1449 1.1 jtc static void
1450 1.31 christos convert64(const zic_t val, char *const buf)
1451 1.25 mlelstv {
1452 1.31 christos int i;
1453 1.31 christos int shift;
1454 1.31 christos unsigned char *const b = (unsigned char *) buf;
1455 1.25 mlelstv
1456 1.25 mlelstv for (i = 0, shift = 56; i < 8; ++i, shift -= 8)
1457 1.31 christos b[i] = val >> shift;
1458 1.25 mlelstv }
1459 1.25 mlelstv
1460 1.25 mlelstv static void
1461 1.38 christos puttzcode(const zic_t val, FILE *const fp)
1462 1.1 jtc {
1463 1.1 jtc char buf[4];
1464 1.1 jtc
1465 1.1 jtc convert(val, buf);
1466 1.31 christos (void) fwrite(buf, sizeof buf, (size_t) 1, fp);
1467 1.1 jtc }
1468 1.1 jtc
1469 1.25 mlelstv static void
1470 1.31 christos puttzcode64(const zic_t val, FILE *const fp)
1471 1.25 mlelstv {
1472 1.25 mlelstv char buf[8];
1473 1.25 mlelstv
1474 1.25 mlelstv convert64(val, buf);
1475 1.31 christos (void) fwrite(buf, sizeof buf, (size_t) 1, fp);
1476 1.25 mlelstv }
1477 1.25 mlelstv
1478 1.5 jtc static int
1479 1.31 christos atcomp(const void *avp, const void *bvp)
1480 1.5 jtc {
1481 1.25 mlelstv const zic_t a = ((const struct attype *) avp)->at;
1482 1.25 mlelstv const zic_t b = ((const struct attype *) bvp)->at;
1483 1.25 mlelstv
1484 1.25 mlelstv return (a < b) ? -1 : (a > b);
1485 1.25 mlelstv }
1486 1.25 mlelstv
1487 1.25 mlelstv static int
1488 1.31 christos is32(const zic_t x)
1489 1.25 mlelstv {
1490 1.25 mlelstv return INT32_MIN <= x && x <= INT32_MAX;
1491 1.5 jtc }
1492 1.5 jtc
1493 1.1 jtc static void
1494 1.43 christos writezone(const char *const name, const char *const string, char version)
1495 1.31 christos {
1496 1.31 christos FILE * fp;
1497 1.31 christos int i, j;
1498 1.31 christos int leapcnt32, leapi32;
1499 1.31 christos int timecnt32, timei32;
1500 1.31 christos int pass;
1501 1.25 mlelstv static char * fullname;
1502 1.25 mlelstv static const struct tzhead tzh0;
1503 1.25 mlelstv static struct tzhead tzh;
1504 1.45 christos zic_t *ats = emalloc(size_product(timecnt, sizeof *ats + 1));
1505 1.45 christos void *typesptr = ats + timecnt;
1506 1.45 christos unsigned char *types = typesptr;
1507 1.5 jtc
1508 1.5 jtc /*
1509 1.5 jtc ** Sort.
1510 1.5 jtc */
1511 1.5 jtc if (timecnt > 1)
1512 1.31 christos (void) qsort(attypes, (size_t) timecnt, sizeof *attypes,
1513 1.31 christos atcomp);
1514 1.5 jtc /*
1515 1.5 jtc ** Optimize.
1516 1.5 jtc */
1517 1.5 jtc {
1518 1.5 jtc int fromi;
1519 1.5 jtc int toi;
1520 1.1 jtc
1521 1.5 jtc toi = 0;
1522 1.5 jtc fromi = 0;
1523 1.46 christos while (fromi < timecnt && attypes[fromi].at < big_bang_time)
1524 1.7 jtc ++fromi;
1525 1.5 jtc for ( ; fromi < timecnt; ++fromi) {
1526 1.45 christos if (toi > 1 && ((attypes[fromi].at +
1527 1.25 mlelstv gmtoffs[attypes[toi - 1].type]) <=
1528 1.45 christos (attypes[toi - 1].at +
1529 1.45 christos gmtoffs[attypes[toi - 2].type]))) {
1530 1.25 mlelstv attypes[toi - 1].type =
1531 1.25 mlelstv attypes[fromi].type;
1532 1.25 mlelstv continue;
1533 1.5 jtc }
1534 1.5 jtc if (toi == 0 ||
1535 1.5 jtc attypes[toi - 1].type != attypes[fromi].type)
1536 1.5 jtc attypes[toi++] = attypes[fromi];
1537 1.5 jtc }
1538 1.5 jtc timecnt = toi;
1539 1.5 jtc }
1540 1.45 christos if (noise && timecnt > 1200)
1541 1.45 christos warning(_("pre-2014 clients may mishandle"
1542 1.45 christos " more than 1200 transition times"));
1543 1.5 jtc /*
1544 1.5 jtc ** Transfer.
1545 1.5 jtc */
1546 1.5 jtc for (i = 0; i < timecnt; ++i) {
1547 1.5 jtc ats[i] = attypes[i].at;
1548 1.5 jtc types[i] = attypes[i].type;
1549 1.5 jtc }
1550 1.25 mlelstv /*
1551 1.25 mlelstv ** Correct for leap seconds.
1552 1.25 mlelstv */
1553 1.25 mlelstv for (i = 0; i < timecnt; ++i) {
1554 1.25 mlelstv j = leapcnt;
1555 1.25 mlelstv while (--j >= 0)
1556 1.25 mlelstv if (ats[i] > trans[j] - corr[j]) {
1557 1.25 mlelstv ats[i] = tadd(ats[i], corr[j]);
1558 1.25 mlelstv break;
1559 1.25 mlelstv }
1560 1.25 mlelstv }
1561 1.25 mlelstv /*
1562 1.25 mlelstv ** Figure out 32-bit-limited starts and counts.
1563 1.25 mlelstv */
1564 1.25 mlelstv timecnt32 = timecnt;
1565 1.25 mlelstv timei32 = 0;
1566 1.25 mlelstv leapcnt32 = leapcnt;
1567 1.25 mlelstv leapi32 = 0;
1568 1.25 mlelstv while (timecnt32 > 0 && !is32(ats[timecnt32 - 1]))
1569 1.25 mlelstv --timecnt32;
1570 1.25 mlelstv while (timecnt32 > 0 && !is32(ats[timei32])) {
1571 1.25 mlelstv --timecnt32;
1572 1.25 mlelstv ++timei32;
1573 1.25 mlelstv }
1574 1.45 christos /*
1575 1.45 christos ** Output an INT32_MIN "transition" if appropriate--see below.
1576 1.45 christos */
1577 1.45 christos if (timei32 > 0 && ats[timei32] > INT32_MIN) {
1578 1.45 christos --timei32;
1579 1.45 christos ++timecnt32;
1580 1.45 christos }
1581 1.25 mlelstv while (leapcnt32 > 0 && !is32(trans[leapcnt32 - 1]))
1582 1.25 mlelstv --leapcnt32;
1583 1.25 mlelstv while (leapcnt32 > 0 && !is32(trans[leapi32])) {
1584 1.25 mlelstv --leapcnt32;
1585 1.25 mlelstv ++leapi32;
1586 1.25 mlelstv }
1587 1.1 jtc fullname = erealloc(fullname,
1588 1.31 christos strlen(directory) + 1 + strlen(name) + 1);
1589 1.7 jtc (void) sprintf(fullname, "%s/%s", directory, name); /* XXX: sprintf is safe */
1590 1.7 jtc /*
1591 1.7 jtc ** Remove old file, if any, to snap links.
1592 1.7 jtc */
1593 1.7 jtc if (!itsdir(fullname) && remove(fullname) != 0 && errno != ENOENT) {
1594 1.7 jtc const char *e = strerror(errno);
1595 1.7 jtc
1596 1.7 jtc (void) fprintf(stderr, _("%s: Can't remove %s: %s\n"),
1597 1.7 jtc progname, fullname, e);
1598 1.25 mlelstv exit(EXIT_FAILURE);
1599 1.7 jtc }
1600 1.1 jtc if ((fp = fopen(fullname, "wb")) == NULL) {
1601 1.1 jtc if (mkdirs(fullname) != 0)
1602 1.25 mlelstv exit(EXIT_FAILURE);
1603 1.1 jtc if ((fp = fopen(fullname, "wb")) == NULL) {
1604 1.5 jtc const char *e = strerror(errno);
1605 1.7 jtc
1606 1.5 jtc (void) fprintf(stderr, _("%s: Can't create %s: %s\n"),
1607 1.5 jtc progname, fullname, e);
1608 1.25 mlelstv exit(EXIT_FAILURE);
1609 1.1 jtc }
1610 1.1 jtc }
1611 1.25 mlelstv for (pass = 1; pass <= 2; ++pass) {
1612 1.31 christos int thistimei, thistimecnt;
1613 1.31 christos int thisleapi, thisleapcnt;
1614 1.31 christos int thistimelim, thisleaplim;
1615 1.45 christos int writetype[TZ_MAX_TYPES];
1616 1.25 mlelstv int typemap[TZ_MAX_TYPES];
1617 1.31 christos int thistypecnt;
1618 1.25 mlelstv char thischars[TZ_MAX_CHARS];
1619 1.25 mlelstv char thischarcnt;
1620 1.25 mlelstv int indmap[TZ_MAX_CHARS];
1621 1.25 mlelstv
1622 1.25 mlelstv if (pass == 1) {
1623 1.25 mlelstv thistimei = timei32;
1624 1.25 mlelstv thistimecnt = timecnt32;
1625 1.25 mlelstv thisleapi = leapi32;
1626 1.25 mlelstv thisleapcnt = leapcnt32;
1627 1.25 mlelstv } else {
1628 1.25 mlelstv thistimei = 0;
1629 1.25 mlelstv thistimecnt = timecnt;
1630 1.25 mlelstv thisleapi = 0;
1631 1.25 mlelstv thisleapcnt = leapcnt;
1632 1.25 mlelstv }
1633 1.25 mlelstv thistimelim = thistimei + thistimecnt;
1634 1.25 mlelstv thisleaplim = thisleapi + thisleapcnt;
1635 1.45 christos for (i = 0; i < typecnt; ++i)
1636 1.25 mlelstv writetype[i] = thistimecnt == timecnt;
1637 1.25 mlelstv if (thistimecnt == 0) {
1638 1.25 mlelstv /*
1639 1.25 mlelstv ** No transition times fall in the current
1640 1.25 mlelstv ** (32- or 64-bit) window.
1641 1.25 mlelstv */
1642 1.25 mlelstv if (typecnt != 0)
1643 1.25 mlelstv writetype[typecnt - 1] = TRUE;
1644 1.25 mlelstv } else {
1645 1.25 mlelstv for (i = thistimei - 1; i < thistimelim; ++i)
1646 1.25 mlelstv if (i >= 0)
1647 1.25 mlelstv writetype[types[i]] = TRUE;
1648 1.25 mlelstv /*
1649 1.25 mlelstv ** For America/Godthab and Antarctica/Palmer
1650 1.25 mlelstv */
1651 1.25 mlelstv if (thistimei == 0)
1652 1.45 christos writetype[0] = TRUE;
1653 1.25 mlelstv }
1654 1.29 christos #ifndef LEAVE_SOME_PRE_2011_SYSTEMS_IN_THE_LURCH
1655 1.29 christos /*
1656 1.29 christos ** For some pre-2011 systems: if the last-to-be-written
1657 1.29 christos ** standard (or daylight) type has an offset different from the
1658 1.29 christos ** most recently used offset,
1659 1.29 christos ** append an (unused) copy of the most recently used type
1660 1.29 christos ** (to help get global "altzone" and "timezone" variables
1661 1.29 christos ** set correctly).
1662 1.29 christos */
1663 1.29 christos {
1664 1.31 christos int mrudst, mrustd, hidst, histd, type;
1665 1.29 christos
1666 1.29 christos hidst = histd = mrudst = mrustd = -1;
1667 1.42 christos for (i = thistimei; i < thistimelim; ++i) {
1668 1.42 christos if (i < 0)
1669 1.42 christos continue;
1670 1.29 christos if (isdsts[types[i]])
1671 1.29 christos mrudst = types[i];
1672 1.29 christos else mrustd = types[i];
1673 1.42 christos }
1674 1.29 christos for (i = 0; i < typecnt; ++i)
1675 1.29 christos if (writetype[i]) {
1676 1.29 christos if (isdsts[i])
1677 1.29 christos hidst = i;
1678 1.29 christos else histd = i;
1679 1.29 christos }
1680 1.29 christos if (hidst >= 0 && mrudst >= 0 && hidst != mrudst &&
1681 1.29 christos gmtoffs[hidst] != gmtoffs[mrudst]) {
1682 1.29 christos isdsts[mrudst] = -1;
1683 1.29 christos type = addtype(gmtoffs[mrudst],
1684 1.29 christos &chars[abbrinds[mrudst]],
1685 1.29 christos TRUE,
1686 1.29 christos ttisstds[mrudst],
1687 1.29 christos ttisgmts[mrudst]);
1688 1.29 christos isdsts[mrudst] = TRUE;
1689 1.29 christos writetype[type] = TRUE;
1690 1.29 christos }
1691 1.29 christos if (histd >= 0 && mrustd >= 0 && histd != mrustd &&
1692 1.29 christos gmtoffs[histd] != gmtoffs[mrustd]) {
1693 1.29 christos isdsts[mrustd] = -1;
1694 1.29 christos type = addtype(gmtoffs[mrustd],
1695 1.29 christos &chars[abbrinds[mrustd]],
1696 1.29 christos FALSE,
1697 1.29 christos ttisstds[mrustd],
1698 1.29 christos ttisgmts[mrustd]);
1699 1.29 christos isdsts[mrustd] = FALSE;
1700 1.29 christos writetype[type] = TRUE;
1701 1.29 christos }
1702 1.29 christos }
1703 1.29 christos #endif /* !defined LEAVE_SOME_PRE_2011_SYSTEMS_IN_THE_LURCH */
1704 1.25 mlelstv thistypecnt = 0;
1705 1.25 mlelstv for (i = 0; i < typecnt; ++i)
1706 1.45 christos typemap[i] = writetype[i] ? thistypecnt++ : -1;
1707 1.36 christos for (i = 0; i < (int)(sizeof indmap / sizeof indmap[0]); ++i)
1708 1.25 mlelstv indmap[i] = -1;
1709 1.25 mlelstv thischarcnt = 0;
1710 1.25 mlelstv for (i = 0; i < typecnt; ++i) {
1711 1.31 christos char * thisabbr;
1712 1.25 mlelstv
1713 1.25 mlelstv if (!writetype[i])
1714 1.25 mlelstv continue;
1715 1.25 mlelstv if (indmap[abbrinds[i]] >= 0)
1716 1.25 mlelstv continue;
1717 1.25 mlelstv thisabbr = &chars[abbrinds[i]];
1718 1.25 mlelstv for (j = 0; j < thischarcnt; ++j)
1719 1.25 mlelstv if (strcmp(&thischars[j], thisabbr) == 0)
1720 1.25 mlelstv break;
1721 1.25 mlelstv if (j == thischarcnt) {
1722 1.25 mlelstv (void) strcpy(&thischars[(int) thischarcnt],
1723 1.25 mlelstv thisabbr);
1724 1.25 mlelstv thischarcnt += strlen(thisabbr) + 1;
1725 1.25 mlelstv }
1726 1.25 mlelstv indmap[abbrinds[i]] = j;
1727 1.25 mlelstv }
1728 1.31 christos #define DO(field) (void) fwrite(tzh.field, \
1729 1.31 christos sizeof tzh.field, (size_t) 1, fp)
1730 1.25 mlelstv tzh = tzh0;
1731 1.25 mlelstv (void) strncpy(tzh.tzh_magic, TZ_MAGIC, sizeof tzh.tzh_magic);
1732 1.43 christos tzh.tzh_version[0] = version;
1733 1.41 christos convert(thistypecnt, tzh.tzh_ttisgmtcnt);
1734 1.41 christos convert(thistypecnt, tzh.tzh_ttisstdcnt);
1735 1.41 christos convert(thisleapcnt, tzh.tzh_leapcnt);
1736 1.41 christos convert(thistimecnt, tzh.tzh_timecnt);
1737 1.41 christos convert(thistypecnt, tzh.tzh_typecnt);
1738 1.41 christos convert(thischarcnt, tzh.tzh_charcnt);
1739 1.25 mlelstv DO(tzh_magic);
1740 1.25 mlelstv DO(tzh_version);
1741 1.25 mlelstv DO(tzh_reserved);
1742 1.25 mlelstv DO(tzh_ttisgmtcnt);
1743 1.25 mlelstv DO(tzh_ttisstdcnt);
1744 1.25 mlelstv DO(tzh_leapcnt);
1745 1.25 mlelstv DO(tzh_timecnt);
1746 1.25 mlelstv DO(tzh_typecnt);
1747 1.25 mlelstv DO(tzh_charcnt);
1748 1.1 jtc #undef DO
1749 1.25 mlelstv for (i = thistimei; i < thistimelim; ++i)
1750 1.25 mlelstv if (pass == 1)
1751 1.45 christos /*
1752 1.45 christos ** Output an INT32_MIN "transition"
1753 1.45 christos ** if appropriate--see above.
1754 1.45 christos */
1755 1.45 christos puttzcode(((ats[i] < INT32_MIN) ?
1756 1.45 christos INT32_MIN : ats[i]), fp);
1757 1.25 mlelstv else puttzcode64(ats[i], fp);
1758 1.25 mlelstv for (i = thistimei; i < thistimelim; ++i) {
1759 1.25 mlelstv unsigned char uc;
1760 1.25 mlelstv
1761 1.25 mlelstv uc = typemap[types[i]];
1762 1.31 christos (void) fwrite(&uc, sizeof uc, (size_t) 1, fp);
1763 1.25 mlelstv }
1764 1.25 mlelstv for (i = 0; i < typecnt; ++i)
1765 1.25 mlelstv if (writetype[i]) {
1766 1.25 mlelstv puttzcode(gmtoffs[i], fp);
1767 1.25 mlelstv (void) putc(isdsts[i], fp);
1768 1.25 mlelstv (void) putc((unsigned char) indmap[abbrinds[i]], fp);
1769 1.1 jtc }
1770 1.25 mlelstv if (thischarcnt != 0)
1771 1.31 christos (void) fwrite(thischars, sizeof thischars[0],
1772 1.25 mlelstv (size_t) thischarcnt, fp);
1773 1.25 mlelstv for (i = thisleapi; i < thisleaplim; ++i) {
1774 1.31 christos zic_t todo;
1775 1.25 mlelstv
1776 1.25 mlelstv if (roll[i]) {
1777 1.25 mlelstv if (timecnt == 0 || trans[i] < ats[0]) {
1778 1.25 mlelstv j = 0;
1779 1.25 mlelstv while (isdsts[j])
1780 1.25 mlelstv if (++j >= typecnt) {
1781 1.25 mlelstv j = 0;
1782 1.25 mlelstv break;
1783 1.25 mlelstv }
1784 1.25 mlelstv } else {
1785 1.25 mlelstv j = 1;
1786 1.25 mlelstv while (j < timecnt &&
1787 1.25 mlelstv trans[i] >= ats[j])
1788 1.25 mlelstv ++j;
1789 1.25 mlelstv j = types[j - 1];
1790 1.25 mlelstv }
1791 1.25 mlelstv todo = tadd(trans[i], -gmtoffs[j]);
1792 1.25 mlelstv } else todo = trans[i];
1793 1.25 mlelstv if (pass == 1)
1794 1.41 christos puttzcode(todo, fp);
1795 1.25 mlelstv else puttzcode64(todo, fp);
1796 1.25 mlelstv puttzcode(corr[i], fp);
1797 1.25 mlelstv }
1798 1.25 mlelstv for (i = 0; i < typecnt; ++i)
1799 1.25 mlelstv if (writetype[i])
1800 1.25 mlelstv (void) putc(ttisstds[i], fp);
1801 1.25 mlelstv for (i = 0; i < typecnt; ++i)
1802 1.25 mlelstv if (writetype[i])
1803 1.25 mlelstv (void) putc(ttisgmts[i], fp);
1804 1.1 jtc }
1805 1.25 mlelstv (void) fprintf(fp, "\n%s\n", string);
1806 1.1 jtc if (ferror(fp) || fclose(fp)) {
1807 1.5 jtc (void) fprintf(stderr, _("%s: Error writing %s\n"),
1808 1.5 jtc progname, fullname);
1809 1.25 mlelstv exit(EXIT_FAILURE);
1810 1.1 jtc }
1811 1.45 christos free(ats);
1812 1.1 jtc }
1813 1.1 jtc
1814 1.1 jtc static void
1815 1.31 christos doabbr(char *const abbr, const int abbrlen, const char *const format,
1816 1.31 christos const char *const letters, const int isdst, const int doquotes)
1817 1.31 christos {
1818 1.31 christos char * cp;
1819 1.31 christos char * slashp;
1820 1.31 christos int len;
1821 1.25 mlelstv
1822 1.25 mlelstv slashp = strchr(format, '/');
1823 1.25 mlelstv if (slashp == NULL) {
1824 1.1 jtc if (letters == NULL)
1825 1.25 mlelstv (void) strlcpy(abbr, format, abbrlen);
1826 1.25 mlelstv else (void) snprintf(abbr, abbrlen, format, letters);
1827 1.25 mlelstv } else if (isdst) {
1828 1.25 mlelstv (void) strlcpy(abbr, slashp + 1, abbrlen);
1829 1.25 mlelstv } else {
1830 1.25 mlelstv if (slashp > format)
1831 1.31 christos (void) strncpy(abbr, format, (size_t)(slashp - format));
1832 1.25 mlelstv abbr[slashp - format] = '\0';
1833 1.25 mlelstv }
1834 1.25 mlelstv if (!doquotes)
1835 1.25 mlelstv return;
1836 1.25 mlelstv for (cp = abbr; *cp != '\0'; ++cp)
1837 1.25 mlelstv if (strchr("ABCDEFGHIJKLMNOPQRSTUVWXYZ", *cp) == NULL &&
1838 1.25 mlelstv strchr("abcdefghijklmnopqrstuvwxyz", *cp) == NULL)
1839 1.25 mlelstv break;
1840 1.25 mlelstv len = strlen(abbr);
1841 1.25 mlelstv if (len > 0 && *cp == '\0')
1842 1.25 mlelstv return;
1843 1.25 mlelstv abbr[len + 2] = '\0';
1844 1.25 mlelstv abbr[len + 1] = '>';
1845 1.25 mlelstv for ( ; len > 0; --len)
1846 1.25 mlelstv abbr[len] = abbr[len - 1];
1847 1.25 mlelstv abbr[0] = '<';
1848 1.25 mlelstv }
1849 1.25 mlelstv
1850 1.25 mlelstv static void
1851 1.41 christos updateminmax(const zic_t x)
1852 1.25 mlelstv {
1853 1.25 mlelstv if (min_year > x)
1854 1.25 mlelstv min_year = x;
1855 1.25 mlelstv if (max_year < x)
1856 1.25 mlelstv max_year = x;
1857 1.25 mlelstv }
1858 1.25 mlelstv
1859 1.25 mlelstv static int
1860 1.38 christos stringoffset(char *result, zic_t offset)
1861 1.31 christos {
1862 1.31 christos int hours;
1863 1.31 christos int minutes;
1864 1.31 christos int seconds;
1865 1.25 mlelstv
1866 1.25 mlelstv result[0] = '\0';
1867 1.25 mlelstv if (offset < 0) {
1868 1.25 mlelstv (void) strcpy(result, "-");
1869 1.25 mlelstv offset = -offset;
1870 1.25 mlelstv }
1871 1.25 mlelstv seconds = offset % SECSPERMIN;
1872 1.25 mlelstv offset /= SECSPERMIN;
1873 1.25 mlelstv minutes = offset % MINSPERHOUR;
1874 1.25 mlelstv offset /= MINSPERHOUR;
1875 1.25 mlelstv hours = offset;
1876 1.43 christos if (hours >= HOURSPERDAY * DAYSPERWEEK) {
1877 1.25 mlelstv result[0] = '\0';
1878 1.25 mlelstv return -1;
1879 1.25 mlelstv }
1880 1.25 mlelstv (void) sprintf(end(result), "%d", hours);
1881 1.25 mlelstv if (minutes != 0 || seconds != 0) {
1882 1.25 mlelstv (void) sprintf(end(result), ":%02d", minutes);
1883 1.25 mlelstv if (seconds != 0)
1884 1.25 mlelstv (void) sprintf(end(result), ":%02d", seconds);
1885 1.25 mlelstv }
1886 1.25 mlelstv return 0;
1887 1.25 mlelstv }
1888 1.25 mlelstv
1889 1.25 mlelstv static int
1890 1.38 christos stringrule(char *result, const struct rule *const rp, const zic_t dstoff,
1891 1.38 christos const zic_t gmtoff)
1892 1.25 mlelstv {
1893 1.43 christos zic_t tod = rp->r_tod;
1894 1.43 christos int compat = 0;
1895 1.25 mlelstv
1896 1.25 mlelstv result = end(result);
1897 1.25 mlelstv if (rp->r_dycode == DC_DOM) {
1898 1.31 christos int month, total;
1899 1.25 mlelstv
1900 1.25 mlelstv if (rp->r_dayofmonth == 29 && rp->r_month == TM_FEBRUARY)
1901 1.25 mlelstv return -1;
1902 1.25 mlelstv total = 0;
1903 1.25 mlelstv for (month = 0; month < rp->r_month; ++month)
1904 1.25 mlelstv total += len_months[0][month];
1905 1.43 christos /* Omit the "J" in Jan and Feb, as that's shorter. */
1906 1.43 christos if (rp->r_month <= 1)
1907 1.43 christos (void) sprintf(result, "%d", total + rp->r_dayofmonth - 1);
1908 1.43 christos else
1909 1.43 christos (void) sprintf(result, "J%d", total + rp->r_dayofmonth);
1910 1.25 mlelstv } else {
1911 1.31 christos int week;
1912 1.43 christos int wday = rp->r_wday;
1913 1.43 christos int wdayoff;
1914 1.25 mlelstv
1915 1.25 mlelstv if (rp->r_dycode == DC_DOWGEQ) {
1916 1.43 christos wdayoff = (rp->r_dayofmonth - 1) % DAYSPERWEEK;
1917 1.43 christos if (wdayoff)
1918 1.43 christos compat = 2013;
1919 1.43 christos wday -= wdayoff;
1920 1.43 christos tod += wdayoff * SECSPERDAY;
1921 1.43 christos week = 1 + (rp->r_dayofmonth - 1) / DAYSPERWEEK;
1922 1.25 mlelstv } else if (rp->r_dycode == DC_DOWLEQ) {
1923 1.25 mlelstv if (rp->r_dayofmonth == len_months[1][rp->r_month])
1924 1.25 mlelstv week = 5;
1925 1.25 mlelstv else {
1926 1.43 christos wdayoff = rp->r_dayofmonth % DAYSPERWEEK;
1927 1.43 christos if (wdayoff)
1928 1.43 christos compat = 2013;
1929 1.43 christos wday -= wdayoff;
1930 1.43 christos tod += wdayoff * SECSPERDAY;
1931 1.29 christos week = rp->r_dayofmonth / DAYSPERWEEK;
1932 1.25 mlelstv }
1933 1.25 mlelstv } else return -1; /* "cannot happen" */
1934 1.43 christos if (wday < 0)
1935 1.43 christos wday += DAYSPERWEEK;
1936 1.25 mlelstv (void) sprintf(result, "M%d.%d.%d",
1937 1.43 christos rp->r_month + 1, week, wday);
1938 1.25 mlelstv }
1939 1.25 mlelstv if (rp->r_todisgmt)
1940 1.25 mlelstv tod += gmtoff;
1941 1.25 mlelstv if (rp->r_todisstd && rp->r_stdoff == 0)
1942 1.25 mlelstv tod += dstoff;
1943 1.25 mlelstv if (tod != 2 * SECSPERMIN * MINSPERHOUR) {
1944 1.25 mlelstv (void) strcat(result, "/");
1945 1.25 mlelstv if (stringoffset(end(result), tod) != 0)
1946 1.25 mlelstv return -1;
1947 1.43 christos if (tod < 0) {
1948 1.43 christos if (compat < 2013)
1949 1.43 christos compat = 2013;
1950 1.43 christos } else if (SECSPERDAY <= tod) {
1951 1.43 christos if (compat < 1994)
1952 1.43 christos compat = 1994;
1953 1.43 christos }
1954 1.25 mlelstv }
1955 1.43 christos return compat;
1956 1.43 christos }
1957 1.43 christos
1958 1.43 christos static int
1959 1.43 christos rule_cmp(struct rule const *a, struct rule const *b)
1960 1.43 christos {
1961 1.43 christos if (!a)
1962 1.43 christos return -!!b;
1963 1.43 christos if (!b)
1964 1.43 christos return 1;
1965 1.43 christos if (a->r_hiyear != b->r_hiyear)
1966 1.43 christos return a->r_hiyear < b->r_hiyear ? -1 : 1;
1967 1.43 christos if (a->r_month - b->r_month != 0)
1968 1.43 christos return a->r_month - b->r_month;
1969 1.43 christos return a->r_dayofmonth - b->r_dayofmonth;
1970 1.25 mlelstv }
1971 1.25 mlelstv
1972 1.43 christos enum { YEAR_BY_YEAR_ZONE = 1 };
1973 1.43 christos
1974 1.43 christos static int
1975 1.31 christos stringzone(char *result, const int resultlen, const struct zone *const zpfirst,
1976 1.31 christos const int zonecount)
1977 1.31 christos {
1978 1.31 christos const struct zone * zp;
1979 1.31 christos struct rule * rp;
1980 1.31 christos struct rule * stdrp;
1981 1.31 christos struct rule * dstrp;
1982 1.31 christos int i;
1983 1.31 christos const char * abbrvar;
1984 1.43 christos int compat = 0;
1985 1.43 christos int c;
1986 1.43 christos struct rule stdr, dstr;
1987 1.25 mlelstv
1988 1.25 mlelstv result[0] = '\0';
1989 1.25 mlelstv zp = zpfirst + zonecount - 1;
1990 1.25 mlelstv stdrp = dstrp = NULL;
1991 1.25 mlelstv for (i = 0; i < zp->z_nrules; ++i) {
1992 1.25 mlelstv rp = &zp->z_rules[i];
1993 1.41 christos if (rp->r_hiwasnum || rp->r_hiyear != ZIC_MAX)
1994 1.25 mlelstv continue;
1995 1.25 mlelstv if (rp->r_yrtype != NULL)
1996 1.25 mlelstv continue;
1997 1.25 mlelstv if (rp->r_stdoff == 0) {
1998 1.25 mlelstv if (stdrp == NULL)
1999 1.25 mlelstv stdrp = rp;
2000 1.43 christos else return -1;
2001 1.25 mlelstv } else {
2002 1.25 mlelstv if (dstrp == NULL)
2003 1.25 mlelstv dstrp = rp;
2004 1.43 christos else return -1;
2005 1.25 mlelstv }
2006 1.25 mlelstv }
2007 1.25 mlelstv if (stdrp == NULL && dstrp == NULL) {
2008 1.25 mlelstv /*
2009 1.25 mlelstv ** There are no rules running through "max".
2010 1.43 christos ** Find the latest std rule in stdabbrrp
2011 1.43 christos ** and latest rule of any type in stdrp.
2012 1.25 mlelstv */
2013 1.43 christos struct rule *stdabbrrp = NULL;
2014 1.25 mlelstv for (i = 0; i < zp->z_nrules; ++i) {
2015 1.25 mlelstv rp = &zp->z_rules[i];
2016 1.43 christos if (rp->r_stdoff == 0 && rule_cmp(stdabbrrp, rp) < 0)
2017 1.43 christos stdabbrrp = rp;
2018 1.43 christos if (rule_cmp(stdrp, rp) < 0)
2019 1.43 christos stdrp = rp;
2020 1.25 mlelstv }
2021 1.25 mlelstv /*
2022 1.25 mlelstv ** Horrid special case: if year is 2037,
2023 1.25 mlelstv ** presume this is a zone handled on a year-by-year basis;
2024 1.25 mlelstv ** do not try to apply a rule to the zone.
2025 1.25 mlelstv */
2026 1.25 mlelstv if (stdrp != NULL && stdrp->r_hiyear == 2037)
2027 1.43 christos return YEAR_BY_YEAR_ZONE;
2028 1.43 christos
2029 1.43 christos if (stdrp != NULL && stdrp->r_stdoff != 0) {
2030 1.43 christos /* Perpetual DST. */
2031 1.43 christos dstr.r_month = TM_JANUARY;
2032 1.43 christos dstr.r_dycode = DC_DOM;
2033 1.43 christos dstr.r_dayofmonth = 1;
2034 1.43 christos dstr.r_tod = 0;
2035 1.43 christos dstr.r_todisstd = dstr.r_todisgmt = FALSE;
2036 1.43 christos dstr.r_stdoff = stdrp->r_stdoff;
2037 1.43 christos dstr.r_abbrvar = stdrp->r_abbrvar;
2038 1.43 christos stdr.r_month = TM_DECEMBER;
2039 1.43 christos stdr.r_dycode = DC_DOM;
2040 1.43 christos stdr.r_dayofmonth = 31;
2041 1.43 christos stdr.r_tod = SECSPERDAY + stdrp->r_stdoff;
2042 1.43 christos stdr.r_todisstd = stdr.r_todisgmt = FALSE;
2043 1.43 christos stdr.r_stdoff = 0;
2044 1.43 christos stdr.r_abbrvar
2045 1.43 christos = (stdabbrrp ? stdabbrrp->r_abbrvar : "");
2046 1.43 christos dstrp = &dstr;
2047 1.43 christos stdrp = &stdr;
2048 1.43 christos }
2049 1.25 mlelstv }
2050 1.25 mlelstv if (stdrp == NULL && (zp->z_nrules != 0 || zp->z_stdoff != 0))
2051 1.43 christos return -1;
2052 1.25 mlelstv abbrvar = (stdrp == NULL) ? "" : stdrp->r_abbrvar;
2053 1.25 mlelstv doabbr(result, resultlen, zp->z_format, abbrvar, FALSE, TRUE);
2054 1.25 mlelstv if (stringoffset(end(result), -zp->z_gmtoff) != 0) {
2055 1.25 mlelstv result[0] = '\0';
2056 1.43 christos return -1;
2057 1.25 mlelstv }
2058 1.25 mlelstv if (dstrp == NULL)
2059 1.43 christos return compat;
2060 1.25 mlelstv doabbr(end(result), resultlen - strlen(result),
2061 1.25 mlelstv zp->z_format, dstrp->r_abbrvar, TRUE, TRUE);
2062 1.25 mlelstv if (dstrp->r_stdoff != SECSPERMIN * MINSPERHOUR)
2063 1.25 mlelstv if (stringoffset(end(result),
2064 1.25 mlelstv -(zp->z_gmtoff + dstrp->r_stdoff)) != 0) {
2065 1.25 mlelstv result[0] = '\0';
2066 1.43 christos return -1;
2067 1.25 mlelstv }
2068 1.25 mlelstv (void) strcat(result, ",");
2069 1.43 christos c = stringrule(result, dstrp, dstrp->r_stdoff, zp->z_gmtoff);
2070 1.43 christos if (c < 0) {
2071 1.25 mlelstv result[0] = '\0';
2072 1.43 christos return -1;
2073 1.25 mlelstv }
2074 1.43 christos if (compat < c)
2075 1.43 christos compat = c;
2076 1.25 mlelstv (void) strcat(result, ",");
2077 1.43 christos c = stringrule(result, stdrp, dstrp->r_stdoff, zp->z_gmtoff);
2078 1.43 christos if (c < 0) {
2079 1.25 mlelstv result[0] = '\0';
2080 1.43 christos return -1;
2081 1.1 jtc }
2082 1.43 christos if (compat < c)
2083 1.43 christos compat = c;
2084 1.43 christos return compat;
2085 1.1 jtc }
2086 1.1 jtc
2087 1.1 jtc static void
2088 1.31 christos outzone(const struct zone *const zpfirst, const int zonecount)
2089 1.31 christos {
2090 1.31 christos const struct zone * zp;
2091 1.31 christos struct rule * rp;
2092 1.31 christos int i, j;
2093 1.31 christos int usestart, useuntil;
2094 1.31 christos zic_t starttime, untiltime;
2095 1.38 christos zic_t gmtoff;
2096 1.38 christos zic_t stdoff;
2097 1.41 christos zic_t year;
2098 1.38 christos zic_t startoff;
2099 1.31 christos int startttisstd;
2100 1.31 christos int startttisgmt;
2101 1.31 christos int type;
2102 1.31 christos char * startbuf;
2103 1.31 christos char * ab;
2104 1.31 christos char * envvar;
2105 1.36 christos size_t max_abbr_len;
2106 1.36 christos size_t max_envvar_len;
2107 1.31 christos int prodstic; /* all rules are min to max */
2108 1.43 christos int compat;
2109 1.43 christos int do_extend;
2110 1.43 christos int version;
2111 1.25 mlelstv
2112 1.25 mlelstv max_abbr_len = 2 + max_format_len + max_abbrvar_len;
2113 1.25 mlelstv max_envvar_len = 2 * max_abbr_len + 5 * 9;
2114 1.25 mlelstv startbuf = emalloc(max_abbr_len + 1);
2115 1.25 mlelstv ab = emalloc(max_abbr_len + 1);
2116 1.25 mlelstv envvar = emalloc(max_envvar_len + 1);
2117 1.1 jtc INITIALIZE(untiltime);
2118 1.1 jtc INITIALIZE(starttime);
2119 1.1 jtc /*
2120 1.1 jtc ** Now. . .finally. . .generate some useful data!
2121 1.1 jtc */
2122 1.1 jtc timecnt = 0;
2123 1.1 jtc typecnt = 0;
2124 1.1 jtc charcnt = 0;
2125 1.29 christos prodstic = zonecount == 1;
2126 1.1 jtc /*
2127 1.25 mlelstv ** Thanks to Earl Chew
2128 1.1 jtc ** for noting the need to unconditionally initialize startttisstd.
2129 1.1 jtc */
2130 1.1 jtc startttisstd = FALSE;
2131 1.1 jtc startttisgmt = FALSE;
2132 1.25 mlelstv min_year = max_year = EPOCH_YEAR;
2133 1.25 mlelstv if (leapseen) {
2134 1.25 mlelstv updateminmax(leapminyear);
2135 1.41 christos updateminmax(leapmaxyear + (leapmaxyear < ZIC_MAX));
2136 1.25 mlelstv }
2137 1.25 mlelstv for (i = 0; i < zonecount; ++i) {
2138 1.25 mlelstv zp = &zpfirst[i];
2139 1.25 mlelstv if (i < zonecount - 1)
2140 1.25 mlelstv updateminmax(zp->z_untilrule.r_loyear);
2141 1.25 mlelstv for (j = 0; j < zp->z_nrules; ++j) {
2142 1.25 mlelstv rp = &zp->z_rules[j];
2143 1.25 mlelstv if (rp->r_lowasnum)
2144 1.25 mlelstv updateminmax(rp->r_loyear);
2145 1.25 mlelstv if (rp->r_hiwasnum)
2146 1.25 mlelstv updateminmax(rp->r_hiyear);
2147 1.41 christos if (rp->r_lowasnum || rp->r_hiwasnum)
2148 1.41 christos prodstic = FALSE;
2149 1.25 mlelstv }
2150 1.25 mlelstv }
2151 1.25 mlelstv /*
2152 1.25 mlelstv ** Generate lots of data if a rule can't cover all future times.
2153 1.25 mlelstv */
2154 1.43 christos compat = stringzone(envvar, max_envvar_len + 1, zpfirst, zonecount);
2155 1.43 christos version = compat < 2013 ? ZIC_VERSION_PRE_2013 : ZIC_VERSION;
2156 1.43 christos do_extend = compat < 0 || compat == YEAR_BY_YEAR_ZONE;
2157 1.44 christos if (noise) {
2158 1.44 christos if (!*envvar)
2159 1.43 christos warning("%s %s",
2160 1.43 christos _("no POSIX environment variable for zone"),
2161 1.43 christos zpfirst->z_name);
2162 1.44 christos else if (compat != 0 && compat != YEAR_BY_YEAR_ZONE) {
2163 1.43 christos /* Circa-COMPAT clients, and earlier clients, might
2164 1.43 christos not work for this zone when given dates before
2165 1.43 christos 1970 or after 2038. */
2166 1.43 christos warning(_("%s: pre-%d clients may mishandle"
2167 1.43 christos " distant timestamps"),
2168 1.43 christos zpfirst->z_name, compat);
2169 1.43 christos }
2170 1.43 christos }
2171 1.43 christos if (do_extend) {
2172 1.43 christos /*
2173 1.43 christos ** Search through a couple of extra years past the obvious
2174 1.43 christos ** 400, to avoid edge cases. For example, suppose a non-POSIX
2175 1.43 christos ** rule applies from 2012 onwards and has transitions in March
2176 1.43 christos ** and September, plus some one-off transitions in November
2177 1.43 christos ** 2013. If zic looked only at the last 400 years, it would
2178 1.43 christos ** set max_year=2413, with the intent that the 400 years 2014
2179 1.43 christos ** through 2413 will be repeated. The last transition listed
2180 1.43 christos ** in the tzfile would be in 2413-09, less than 400 years
2181 1.43 christos ** after the last one-off transition in 2013-11. Two years
2182 1.43 christos ** might be overkill, but with the kind of edge cases
2183 1.43 christos ** available we're not sure that one year would suffice.
2184 1.43 christos */
2185 1.43 christos enum { years_of_observations = YEARSPERREPEAT + 2 };
2186 1.43 christos
2187 1.43 christos if (min_year >= ZIC_MIN + years_of_observations)
2188 1.43 christos min_year -= years_of_observations;
2189 1.41 christos else min_year = ZIC_MIN;
2190 1.43 christos if (max_year <= ZIC_MAX - years_of_observations)
2191 1.43 christos max_year += years_of_observations;
2192 1.41 christos else max_year = ZIC_MAX;
2193 1.29 christos /*
2194 1.29 christos ** Regardless of any of the above,
2195 1.29 christos ** for a "proDSTic" zone which specifies that its rules
2196 1.29 christos ** always have and always will be in effect,
2197 1.29 christos ** we only need one cycle to define the zone.
2198 1.29 christos */
2199 1.29 christos if (prodstic) {
2200 1.29 christos min_year = 1900;
2201 1.43 christos max_year = min_year + years_of_observations;
2202 1.29 christos }
2203 1.25 mlelstv }
2204 1.25 mlelstv /*
2205 1.25 mlelstv ** For the benefit of older systems,
2206 1.25 mlelstv ** generate data from 1900 through 2037.
2207 1.25 mlelstv */
2208 1.25 mlelstv if (min_year > 1900)
2209 1.25 mlelstv min_year = 1900;
2210 1.25 mlelstv if (max_year < 2037)
2211 1.25 mlelstv max_year = 2037;
2212 1.1 jtc for (i = 0; i < zonecount; ++i) {
2213 1.19 kleink /*
2214 1.19 kleink ** A guess that may well be corrected later.
2215 1.19 kleink */
2216 1.19 kleink stdoff = 0;
2217 1.1 jtc zp = &zpfirst[i];
2218 1.46 christos usestart = i > 0 && (zp - 1)->z_untiltime > big_bang_time;
2219 1.1 jtc useuntil = i < (zonecount - 1);
2220 1.46 christos if (useuntil && zp->z_untiltime <= big_bang_time)
2221 1.1 jtc continue;
2222 1.1 jtc gmtoff = zp->z_gmtoff;
2223 1.1 jtc eat(zp->z_filename, zp->z_linenum);
2224 1.5 jtc *startbuf = '\0';
2225 1.5 jtc startoff = zp->z_gmtoff;
2226 1.1 jtc if (zp->z_nrules == 0) {
2227 1.1 jtc stdoff = zp->z_stdoff;
2228 1.25 mlelstv doabbr(startbuf, max_abbr_len + 1, zp->z_format,
2229 1.31 christos NULL, stdoff != 0, FALSE);
2230 1.1 jtc type = addtype(oadd(zp->z_gmtoff, stdoff),
2231 1.1 jtc startbuf, stdoff != 0, startttisstd,
2232 1.1 jtc startttisgmt);
2233 1.5 jtc if (usestart) {
2234 1.1 jtc addtt(starttime, type);
2235 1.5 jtc usestart = FALSE;
2236 1.46 christos } else addtt(big_bang_time, type);
2237 1.1 jtc } else for (year = min_year; year <= max_year; ++year) {
2238 1.1 jtc if (useuntil && year > zp->z_untilrule.r_hiyear)
2239 1.1 jtc break;
2240 1.1 jtc /*
2241 1.1 jtc ** Mark which rules to do in the current year.
2242 1.1 jtc ** For those to do, calculate rpytime(rp, year);
2243 1.1 jtc */
2244 1.1 jtc for (j = 0; j < zp->z_nrules; ++j) {
2245 1.1 jtc rp = &zp->z_rules[j];
2246 1.1 jtc eats(zp->z_filename, zp->z_linenum,
2247 1.1 jtc rp->r_filename, rp->r_linenum);
2248 1.1 jtc rp->r_todo = year >= rp->r_loyear &&
2249 1.1 jtc year <= rp->r_hiyear &&
2250 1.1 jtc yearistype(year, rp->r_yrtype);
2251 1.1 jtc if (rp->r_todo)
2252 1.1 jtc rp->r_temp = rpytime(rp, year);
2253 1.1 jtc }
2254 1.1 jtc for ( ; ; ) {
2255 1.31 christos int k;
2256 1.31 christos zic_t jtime, ktime;
2257 1.38 christos zic_t offset;
2258 1.1 jtc
2259 1.1 jtc INITIALIZE(ktime);
2260 1.1 jtc if (useuntil) {
2261 1.1 jtc /*
2262 1.43 christos ** Turn untiltime into UT
2263 1.1 jtc ** assuming the current gmtoff and
2264 1.1 jtc ** stdoff values.
2265 1.1 jtc */
2266 1.1 jtc untiltime = zp->z_untiltime;
2267 1.1 jtc if (!zp->z_untilrule.r_todisgmt)
2268 1.1 jtc untiltime = tadd(untiltime,
2269 1.1 jtc -gmtoff);
2270 1.1 jtc if (!zp->z_untilrule.r_todisstd)
2271 1.1 jtc untiltime = tadd(untiltime,
2272 1.1 jtc -stdoff);
2273 1.1 jtc }
2274 1.1 jtc /*
2275 1.1 jtc ** Find the rule (of those to do, if any)
2276 1.1 jtc ** that takes effect earliest in the year.
2277 1.1 jtc */
2278 1.1 jtc k = -1;
2279 1.1 jtc for (j = 0; j < zp->z_nrules; ++j) {
2280 1.1 jtc rp = &zp->z_rules[j];
2281 1.1 jtc if (!rp->r_todo)
2282 1.1 jtc continue;
2283 1.1 jtc eats(zp->z_filename, zp->z_linenum,
2284 1.1 jtc rp->r_filename, rp->r_linenum);
2285 1.1 jtc offset = rp->r_todisgmt ? 0 : gmtoff;
2286 1.1 jtc if (!rp->r_todisstd)
2287 1.1 jtc offset = oadd(offset, stdoff);
2288 1.1 jtc jtime = rp->r_temp;
2289 1.1 jtc if (jtime == min_time ||
2290 1.1 jtc jtime == max_time)
2291 1.1 jtc continue;
2292 1.1 jtc jtime = tadd(jtime, -offset);
2293 1.1 jtc if (k < 0 || jtime < ktime) {
2294 1.1 jtc k = j;
2295 1.1 jtc ktime = jtime;
2296 1.1 jtc }
2297 1.1 jtc }
2298 1.1 jtc if (k < 0)
2299 1.1 jtc break; /* go on to next year */
2300 1.1 jtc rp = &zp->z_rules[k];
2301 1.1 jtc rp->r_todo = FALSE;
2302 1.1 jtc if (useuntil && ktime >= untiltime)
2303 1.1 jtc break;
2304 1.5 jtc stdoff = rp->r_stdoff;
2305 1.5 jtc if (usestart && ktime == starttime)
2306 1.5 jtc usestart = FALSE;
2307 1.1 jtc if (usestart) {
2308 1.5 jtc if (ktime < starttime) {
2309 1.5 jtc startoff = oadd(zp->z_gmtoff,
2310 1.5 jtc stdoff);
2311 1.25 mlelstv doabbr(startbuf,
2312 1.25 mlelstv max_abbr_len + 1,
2313 1.6 mrg zp->z_format,
2314 1.5 jtc rp->r_abbrvar,
2315 1.25 mlelstv rp->r_stdoff != 0,
2316 1.25 mlelstv FALSE);
2317 1.5 jtc continue;
2318 1.5 jtc }
2319 1.5 jtc if (*startbuf == '\0' &&
2320 1.25 mlelstv startoff == oadd(zp->z_gmtoff,
2321 1.25 mlelstv stdoff)) {
2322 1.25 mlelstv doabbr(startbuf,
2323 1.25 mlelstv max_abbr_len + 1,
2324 1.25 mlelstv zp->z_format,
2325 1.25 mlelstv rp->r_abbrvar,
2326 1.25 mlelstv rp->r_stdoff !=
2327 1.25 mlelstv 0,
2328 1.25 mlelstv FALSE);
2329 1.1 jtc }
2330 1.1 jtc }
2331 1.1 jtc eats(zp->z_filename, zp->z_linenum,
2332 1.1 jtc rp->r_filename, rp->r_linenum);
2333 1.25 mlelstv doabbr(ab, max_abbr_len+1, zp->z_format, rp->r_abbrvar,
2334 1.25 mlelstv rp->r_stdoff != 0, FALSE);
2335 1.1 jtc offset = oadd(zp->z_gmtoff, rp->r_stdoff);
2336 1.25 mlelstv type = addtype(offset, ab, rp->r_stdoff != 0,
2337 1.1 jtc rp->r_todisstd, rp->r_todisgmt);
2338 1.1 jtc addtt(ktime, type);
2339 1.1 jtc }
2340 1.1 jtc }
2341 1.5 jtc if (usestart) {
2342 1.5 jtc if (*startbuf == '\0' &&
2343 1.5 jtc zp->z_format != NULL &&
2344 1.5 jtc strchr(zp->z_format, '%') == NULL &&
2345 1.5 jtc strchr(zp->z_format, '/') == NULL)
2346 1.6 mrg (void)strncpy(startbuf, zp->z_format,
2347 1.25 mlelstv max_abbr_len + 1 - 1);
2348 1.5 jtc eat(zp->z_filename, zp->z_linenum);
2349 1.5 jtc if (*startbuf == '\0')
2350 1.7 jtc error(_("can't determine time zone abbreviation to use just after until time"));
2351 1.5 jtc else addtt(starttime,
2352 1.5 jtc addtype(startoff, startbuf,
2353 1.5 jtc startoff != zp->z_gmtoff,
2354 1.5 jtc startttisstd,
2355 1.5 jtc startttisgmt));
2356 1.5 jtc }
2357 1.1 jtc /*
2358 1.1 jtc ** Now we may get to set starttime for the next zone line.
2359 1.1 jtc */
2360 1.1 jtc if (useuntil) {
2361 1.1 jtc startttisstd = zp->z_untilrule.r_todisstd;
2362 1.1 jtc startttisgmt = zp->z_untilrule.r_todisgmt;
2363 1.5 jtc starttime = zp->z_untiltime;
2364 1.1 jtc if (!startttisstd)
2365 1.1 jtc starttime = tadd(starttime, -stdoff);
2366 1.5 jtc if (!startttisgmt)
2367 1.5 jtc starttime = tadd(starttime, -gmtoff);
2368 1.1 jtc }
2369 1.1 jtc }
2370 1.43 christos if (do_extend) {
2371 1.43 christos /*
2372 1.43 christos ** If we're extending the explicitly listed observations
2373 1.43 christos ** for 400 years because we can't fill the POSIX-TZ field,
2374 1.43 christos ** check whether we actually ended up explicitly listing
2375 1.43 christos ** observations through that period. If there aren't any
2376 1.43 christos ** near the end of the 400-year period, add a redundant
2377 1.43 christos ** one at the end of the final year, to make it clear
2378 1.43 christos ** that we are claiming to have definite knowledge of
2379 1.43 christos ** the lack of transitions up to that point.
2380 1.43 christos */
2381 1.43 christos struct rule xr;
2382 1.43 christos struct attype *lastat;
2383 1.43 christos xr.r_month = TM_JANUARY;
2384 1.43 christos xr.r_dycode = DC_DOM;
2385 1.43 christos xr.r_dayofmonth = 1;
2386 1.43 christos xr.r_tod = 0;
2387 1.43 christos for (lastat = &attypes[0], i = 1; i < timecnt; i++)
2388 1.43 christos if (attypes[i].at > lastat->at)
2389 1.43 christos lastat = &attypes[i];
2390 1.43 christos if (lastat->at < rpytime(&xr, max_year - 1)) {
2391 1.43 christos /*
2392 1.43 christos ** Create new type code for the redundant entry,
2393 1.43 christos ** to prevent it being optimised away.
2394 1.43 christos */
2395 1.43 christos if (typecnt >= TZ_MAX_TYPES) {
2396 1.43 christos error(_("too many local time types"));
2397 1.43 christos exit(EXIT_FAILURE);
2398 1.43 christos }
2399 1.43 christos gmtoffs[typecnt] = gmtoffs[lastat->type];
2400 1.43 christos isdsts[typecnt] = isdsts[lastat->type];
2401 1.43 christos ttisstds[typecnt] = ttisstds[lastat->type];
2402 1.43 christos ttisgmts[typecnt] = ttisgmts[lastat->type];
2403 1.43 christos abbrinds[typecnt] = abbrinds[lastat->type];
2404 1.43 christos ++typecnt;
2405 1.43 christos addtt(rpytime(&xr, max_year + 1), typecnt-1);
2406 1.43 christos }
2407 1.43 christos }
2408 1.43 christos writezone(zpfirst->z_name, envvar, version);
2409 1.31 christos free(startbuf);
2410 1.31 christos free(ab);
2411 1.31 christos free(envvar);
2412 1.1 jtc }
2413 1.1 jtc
2414 1.1 jtc static void
2415 1.31 christos addtt(const zic_t starttime, int type)
2416 1.1 jtc {
2417 1.46 christos if (starttime <= big_bang_time ||
2418 1.46 christos (timecnt == 1 && attypes[0].at < big_bang_time)) {
2419 1.7 jtc gmtoffs[0] = gmtoffs[type];
2420 1.7 jtc isdsts[0] = isdsts[type];
2421 1.7 jtc ttisstds[0] = ttisstds[type];
2422 1.7 jtc ttisgmts[0] = ttisgmts[type];
2423 1.7 jtc if (abbrinds[type] != 0)
2424 1.7 jtc (void) strcpy(chars, &chars[abbrinds[type]]);
2425 1.7 jtc abbrinds[0] = 0;
2426 1.7 jtc charcnt = strlen(chars) + 1;
2427 1.7 jtc typecnt = 1;
2428 1.7 jtc timecnt = 0;
2429 1.7 jtc type = 0;
2430 1.7 jtc }
2431 1.45 christos attypes = growalloc(attypes, sizeof *attypes, timecnt, &timecnt_alloc);
2432 1.5 jtc attypes[timecnt].at = starttime;
2433 1.5 jtc attypes[timecnt].type = type;
2434 1.1 jtc ++timecnt;
2435 1.1 jtc }
2436 1.1 jtc
2437 1.1 jtc static int
2438 1.38 christos addtype(const zic_t gmtoff, const char *const abbr, const int isdst,
2439 1.31 christos const int ttisstd, const int ttisgmt)
2440 1.1 jtc {
2441 1.31 christos int i, j;
2442 1.1 jtc
2443 1.5 jtc if (isdst != TRUE && isdst != FALSE) {
2444 1.5 jtc error(_("internal error - addtype called with bad isdst"));
2445 1.25 mlelstv exit(EXIT_FAILURE);
2446 1.5 jtc }
2447 1.5 jtc if (ttisstd != TRUE && ttisstd != FALSE) {
2448 1.5 jtc error(_("internal error - addtype called with bad ttisstd"));
2449 1.25 mlelstv exit(EXIT_FAILURE);
2450 1.5 jtc }
2451 1.5 jtc if (ttisgmt != TRUE && ttisgmt != FALSE) {
2452 1.5 jtc error(_("internal error - addtype called with bad ttisgmt"));
2453 1.25 mlelstv exit(EXIT_FAILURE);
2454 1.5 jtc }
2455 1.1 jtc /*
2456 1.1 jtc ** See if there's already an entry for this zone type.
2457 1.1 jtc ** If so, just return its index.
2458 1.1 jtc */
2459 1.1 jtc for (i = 0; i < typecnt; ++i) {
2460 1.1 jtc if (gmtoff == gmtoffs[i] && isdst == isdsts[i] &&
2461 1.1 jtc strcmp(abbr, &chars[abbrinds[i]]) == 0 &&
2462 1.1 jtc ttisstd == ttisstds[i] &&
2463 1.1 jtc ttisgmt == ttisgmts[i])
2464 1.1 jtc return i;
2465 1.1 jtc }
2466 1.1 jtc /*
2467 1.1 jtc ** There isn't one; add a new one, unless there are already too
2468 1.1 jtc ** many.
2469 1.1 jtc */
2470 1.1 jtc if (typecnt >= TZ_MAX_TYPES) {
2471 1.5 jtc error(_("too many local time types"));
2472 1.25 mlelstv exit(EXIT_FAILURE);
2473 1.25 mlelstv }
2474 1.25 mlelstv if (! (-1L - 2147483647L <= gmtoff && gmtoff <= 2147483647L)) {
2475 1.43 christos error(_("UT offset out of range"));
2476 1.25 mlelstv exit(EXIT_FAILURE);
2477 1.1 jtc }
2478 1.1 jtc gmtoffs[i] = gmtoff;
2479 1.1 jtc isdsts[i] = isdst;
2480 1.1 jtc ttisstds[i] = ttisstd;
2481 1.1 jtc ttisgmts[i] = ttisgmt;
2482 1.1 jtc
2483 1.1 jtc for (j = 0; j < charcnt; ++j)
2484 1.1 jtc if (strcmp(&chars[j], abbr) == 0)
2485 1.1 jtc break;
2486 1.1 jtc if (j == charcnt)
2487 1.1 jtc newabbr(abbr);
2488 1.1 jtc abbrinds[i] = j;
2489 1.1 jtc ++typecnt;
2490 1.1 jtc return i;
2491 1.1 jtc }
2492 1.1 jtc
2493 1.1 jtc static void
2494 1.31 christos leapadd(const zic_t t, const int positive, const int rolling, int count)
2495 1.1 jtc {
2496 1.31 christos int i, j;
2497 1.1 jtc
2498 1.1 jtc if (leapcnt + (positive ? count : 1) > TZ_MAX_LEAPS) {
2499 1.5 jtc error(_("too many leap seconds"));
2500 1.25 mlelstv exit(EXIT_FAILURE);
2501 1.1 jtc }
2502 1.1 jtc for (i = 0; i < leapcnt; ++i)
2503 1.1 jtc if (t <= trans[i]) {
2504 1.1 jtc if (t == trans[i]) {
2505 1.5 jtc error(_("repeated leap second moment"));
2506 1.25 mlelstv exit(EXIT_FAILURE);
2507 1.1 jtc }
2508 1.1 jtc break;
2509 1.1 jtc }
2510 1.1 jtc do {
2511 1.1 jtc for (j = leapcnt; j > i; --j) {
2512 1.1 jtc trans[j] = trans[j - 1];
2513 1.1 jtc corr[j] = corr[j - 1];
2514 1.1 jtc roll[j] = roll[j - 1];
2515 1.1 jtc }
2516 1.1 jtc trans[i] = t;
2517 1.41 christos corr[i] = positive ? 1 : -count;
2518 1.1 jtc roll[i] = rolling;
2519 1.1 jtc ++leapcnt;
2520 1.1 jtc } while (positive && --count != 0);
2521 1.1 jtc }
2522 1.1 jtc
2523 1.1 jtc static void
2524 1.25 mlelstv adjleap(void)
2525 1.1 jtc {
2526 1.31 christos int i;
2527 1.38 christos zic_t last = 0;
2528 1.1 jtc
2529 1.1 jtc /*
2530 1.1 jtc ** propagate leap seconds forward
2531 1.1 jtc */
2532 1.1 jtc for (i = 0; i < leapcnt; ++i) {
2533 1.1 jtc trans[i] = tadd(trans[i], last);
2534 1.1 jtc last = corr[i] += last;
2535 1.1 jtc }
2536 1.1 jtc }
2537 1.1 jtc
2538 1.1 jtc static int
2539 1.31 christos yearistype(const int year, const char *const type)
2540 1.1 jtc {
2541 1.1 jtc static char * buf;
2542 1.1 jtc int result;
2543 1.1 jtc
2544 1.1 jtc if (type == NULL || *type == '\0')
2545 1.1 jtc return TRUE;
2546 1.31 christos buf = erealloc(buf, 132 + strlen(yitcommand) + strlen(type));
2547 1.6 mrg (void)sprintf(buf, "%s %d %s", yitcommand, year, type); /* XXX: sprintf is safe */
2548 1.1 jtc result = system(buf);
2549 1.16 kleink if (WIFEXITED(result)) switch (WEXITSTATUS(result)) {
2550 1.16 kleink case 0:
2551 1.16 kleink return TRUE;
2552 1.16 kleink case 1:
2553 1.16 kleink return FALSE;
2554 1.16 kleink }
2555 1.5 jtc error(_("Wild result from command execution"));
2556 1.5 jtc (void) fprintf(stderr, _("%s: command was '%s', result was %d\n"),
2557 1.1 jtc progname, buf, result);
2558 1.1 jtc for ( ; ; )
2559 1.25 mlelstv exit(EXIT_FAILURE);
2560 1.1 jtc }
2561 1.1 jtc
2562 1.1 jtc static int
2563 1.31 christos lowerit(int a)
2564 1.1 jtc {
2565 1.3 jtc a = (unsigned char) a;
2566 1.1 jtc return (isascii(a) && isupper(a)) ? tolower(a) : a;
2567 1.1 jtc }
2568 1.1 jtc
2569 1.31 christos /* case-insensitive equality */
2570 1.41 christos static ATTRIBUTE_PURE int
2571 1.31 christos ciequal(const char *ap, const char *bp)
2572 1.1 jtc {
2573 1.1 jtc while (lowerit(*ap) == lowerit(*bp++))
2574 1.1 jtc if (*ap++ == '\0')
2575 1.1 jtc return TRUE;
2576 1.1 jtc return FALSE;
2577 1.1 jtc }
2578 1.1 jtc
2579 1.41 christos static ATTRIBUTE_PURE int
2580 1.31 christos itsabbr(const char *abbr, const char *word)
2581 1.1 jtc {
2582 1.1 jtc if (lowerit(*abbr) != lowerit(*word))
2583 1.1 jtc return FALSE;
2584 1.1 jtc ++word;
2585 1.1 jtc while (*++abbr != '\0')
2586 1.3 jtc do {
2587 1.3 jtc if (*word == '\0')
2588 1.3 jtc return FALSE;
2589 1.3 jtc } while (lowerit(*word++) != lowerit(*abbr));
2590 1.1 jtc return TRUE;
2591 1.1 jtc }
2592 1.1 jtc
2593 1.41 christos static ATTRIBUTE_PURE const struct lookup *
2594 1.31 christos byword(const char *const word, const struct lookup *const table)
2595 1.1 jtc {
2596 1.31 christos const struct lookup * foundlp;
2597 1.31 christos const struct lookup * lp;
2598 1.1 jtc
2599 1.1 jtc if (word == NULL || table == NULL)
2600 1.1 jtc return NULL;
2601 1.1 jtc /*
2602 1.1 jtc ** Look for exact match.
2603 1.1 jtc */
2604 1.1 jtc for (lp = table; lp->l_word != NULL; ++lp)
2605 1.1 jtc if (ciequal(word, lp->l_word))
2606 1.1 jtc return lp;
2607 1.1 jtc /*
2608 1.1 jtc ** Look for inexact match.
2609 1.1 jtc */
2610 1.1 jtc foundlp = NULL;
2611 1.1 jtc for (lp = table; lp->l_word != NULL; ++lp)
2612 1.11 jtc if (itsabbr(word, lp->l_word)) {
2613 1.1 jtc if (foundlp == NULL)
2614 1.1 jtc foundlp = lp;
2615 1.1 jtc else return NULL; /* multiple inexact matches */
2616 1.11 jtc }
2617 1.1 jtc return foundlp;
2618 1.1 jtc }
2619 1.1 jtc
2620 1.1 jtc static char **
2621 1.31 christos getfields(char *cp)
2622 1.1 jtc {
2623 1.31 christos char * dp;
2624 1.31 christos char ** array;
2625 1.31 christos int nsubs;
2626 1.1 jtc
2627 1.1 jtc if (cp == NULL)
2628 1.1 jtc return NULL;
2629 1.45 christos array = emalloc(size_product(strlen(cp) + 1, sizeof *array));
2630 1.1 jtc nsubs = 0;
2631 1.1 jtc for ( ; ; ) {
2632 1.25 mlelstv while (isascii((unsigned char) *cp) &&
2633 1.25 mlelstv isspace((unsigned char) *cp))
2634 1.25 mlelstv ++cp;
2635 1.1 jtc if (*cp == '\0' || *cp == '#')
2636 1.1 jtc break;
2637 1.1 jtc array[nsubs++] = dp = cp;
2638 1.1 jtc do {
2639 1.1 jtc if ((*dp = *cp++) != '"')
2640 1.1 jtc ++dp;
2641 1.1 jtc else while ((*dp = *cp++) != '"')
2642 1.1 jtc if (*dp != '\0')
2643 1.1 jtc ++dp;
2644 1.25 mlelstv else {
2645 1.25 mlelstv error(_(
2646 1.25 mlelstv "Odd number of quotation marks"
2647 1.25 mlelstv ));
2648 1.25 mlelstv exit(1);
2649 1.25 mlelstv }
2650 1.1 jtc } while (*cp != '\0' && *cp != '#' &&
2651 1.3 jtc (!isascii(*cp) || !isspace((unsigned char) *cp)));
2652 1.3 jtc if (isascii(*cp) && isspace((unsigned char) *cp))
2653 1.1 jtc ++cp;
2654 1.1 jtc *dp = '\0';
2655 1.1 jtc }
2656 1.1 jtc array[nsubs] = NULL;
2657 1.1 jtc return array;
2658 1.1 jtc }
2659 1.1 jtc
2660 1.41 christos static ATTRIBUTE_PURE zic_t
2661 1.38 christos oadd(const zic_t t1, const zic_t t2)
2662 1.1 jtc {
2663 1.41 christos if (t1 < 0 ? t2 < ZIC_MIN - t1 : ZIC_MAX - t1 < t2) {
2664 1.5 jtc error(_("time overflow"));
2665 1.25 mlelstv exit(EXIT_FAILURE);
2666 1.1 jtc }
2667 1.31 christos return t1 + t2;
2668 1.1 jtc }
2669 1.1 jtc
2670 1.43 christos static ATTRIBUTE_PURE zic_t
2671 1.38 christos tadd(const zic_t t1, const zic_t t2)
2672 1.1 jtc {
2673 1.1 jtc if (t1 == max_time && t2 > 0)
2674 1.1 jtc return max_time;
2675 1.1 jtc if (t1 == min_time && t2 < 0)
2676 1.1 jtc return min_time;
2677 1.31 christos if (t1 < 0 ? t2 < min_time - t1 : max_time - t1 < t2) {
2678 1.5 jtc error(_("time overflow"));
2679 1.25 mlelstv exit(EXIT_FAILURE);
2680 1.1 jtc }
2681 1.31 christos return t1 + t2;
2682 1.1 jtc }
2683 1.1 jtc
2684 1.1 jtc /*
2685 1.1 jtc ** Given a rule, and a year, compute the date - in seconds since January 1,
2686 1.1 jtc ** 1970, 00:00 LOCAL time - in that year that the rule refers to.
2687 1.1 jtc */
2688 1.1 jtc
2689 1.25 mlelstv static zic_t
2690 1.41 christos rpytime(const struct rule *const rp, const zic_t wantedy)
2691 1.31 christos {
2692 1.41 christos int m, i;
2693 1.38 christos zic_t dayoff; /* with a nod to Margaret O. */
2694 1.41 christos zic_t t, y;
2695 1.1 jtc
2696 1.41 christos if (wantedy == ZIC_MIN)
2697 1.1 jtc return min_time;
2698 1.41 christos if (wantedy == ZIC_MAX)
2699 1.1 jtc return max_time;
2700 1.1 jtc dayoff = 0;
2701 1.1 jtc m = TM_JANUARY;
2702 1.1 jtc y = EPOCH_YEAR;
2703 1.1 jtc while (wantedy != y) {
2704 1.1 jtc if (wantedy > y) {
2705 1.1 jtc i = len_years[isleap(y)];
2706 1.1 jtc ++y;
2707 1.1 jtc } else {
2708 1.1 jtc --y;
2709 1.1 jtc i = -len_years[isleap(y)];
2710 1.1 jtc }
2711 1.41 christos dayoff = oadd(dayoff, i);
2712 1.1 jtc }
2713 1.1 jtc while (m != rp->r_month) {
2714 1.1 jtc i = len_months[isleap(y)][m];
2715 1.41 christos dayoff = oadd(dayoff, i);
2716 1.1 jtc ++m;
2717 1.1 jtc }
2718 1.1 jtc i = rp->r_dayofmonth;
2719 1.1 jtc if (m == TM_FEBRUARY && i == 29 && !isleap(y)) {
2720 1.1 jtc if (rp->r_dycode == DC_DOWLEQ)
2721 1.1 jtc --i;
2722 1.1 jtc else {
2723 1.5 jtc error(_("use of 2/29 in non leap-year"));
2724 1.25 mlelstv exit(EXIT_FAILURE);
2725 1.1 jtc }
2726 1.1 jtc }
2727 1.1 jtc --i;
2728 1.41 christos dayoff = oadd(dayoff, i);
2729 1.1 jtc if (rp->r_dycode == DC_DOWGEQ || rp->r_dycode == DC_DOWLEQ) {
2730 1.38 christos zic_t wday;
2731 1.1 jtc
2732 1.38 christos #define LDAYSPERWEEK ((zic_t) DAYSPERWEEK)
2733 1.41 christos wday = EPOCH_WDAY;
2734 1.1 jtc /*
2735 1.1 jtc ** Don't trust mod of negative numbers.
2736 1.1 jtc */
2737 1.1 jtc if (dayoff >= 0)
2738 1.1 jtc wday = (wday + dayoff) % LDAYSPERWEEK;
2739 1.1 jtc else {
2740 1.1 jtc wday -= ((-dayoff) % LDAYSPERWEEK);
2741 1.1 jtc if (wday < 0)
2742 1.1 jtc wday += LDAYSPERWEEK;
2743 1.1 jtc }
2744 1.41 christos while (wday != rp->r_wday)
2745 1.1 jtc if (rp->r_dycode == DC_DOWGEQ) {
2746 1.38 christos dayoff = oadd(dayoff, (zic_t) 1);
2747 1.1 jtc if (++wday >= LDAYSPERWEEK)
2748 1.1 jtc wday = 0;
2749 1.1 jtc ++i;
2750 1.1 jtc } else {
2751 1.38 christos dayoff = oadd(dayoff, (zic_t) -1);
2752 1.1 jtc if (--wday < 0)
2753 1.1 jtc wday = LDAYSPERWEEK - 1;
2754 1.1 jtc --i;
2755 1.1 jtc }
2756 1.1 jtc if (i < 0 || i >= len_months[isleap(y)][m]) {
2757 1.23 kleink if (noise)
2758 1.25 mlelstv warning(_("rule goes past start/end of month--\
2759 1.25 mlelstv will not work with pre-2004 versions of zic"));
2760 1.1 jtc }
2761 1.1 jtc }
2762 1.34 martin if (dayoff < min_time / SECSPERDAY)
2763 1.20 kleink return min_time;
2764 1.34 martin if (dayoff > max_time / SECSPERDAY)
2765 1.20 kleink return max_time;
2766 1.25 mlelstv t = (zic_t) dayoff * SECSPERDAY;
2767 1.1 jtc return tadd(t, rp->r_tod);
2768 1.1 jtc }
2769 1.1 jtc
2770 1.1 jtc static void
2771 1.31 christos newabbr(const char *const string)
2772 1.1 jtc {
2773 1.31 christos int i;
2774 1.1 jtc
2775 1.25 mlelstv if (strcmp(string, GRANDPARENTED) != 0) {
2776 1.31 christos const char * cp;
2777 1.31 christos const char * mp;
2778 1.25 mlelstv
2779 1.25 mlelstv /*
2780 1.25 mlelstv ** Want one to ZIC_MAX_ABBR_LEN_WO_WARN alphabetics
2781 1.25 mlelstv ** optionally followed by a + or - and a number from 1 to 14.
2782 1.25 mlelstv */
2783 1.25 mlelstv cp = string;
2784 1.31 christos mp = NULL;
2785 1.25 mlelstv while (isascii((unsigned char) *cp) &&
2786 1.25 mlelstv isalpha((unsigned char) *cp))
2787 1.25 mlelstv ++cp;
2788 1.25 mlelstv if (cp - string == 0)
2789 1.31 christos mp = _("time zone abbreviation lacks alphabetic at start");
2790 1.35 christos if (noise && cp - string < 3)
2791 1.35 christos mp = _("time zone abbreviation has fewer than 3 alphabetics");
2792 1.25 mlelstv if (cp - string > ZIC_MAX_ABBR_LEN_WO_WARN)
2793 1.31 christos mp = _("time zone abbreviation has too many alphabetics");
2794 1.31 christos if (mp == NULL && (*cp == '+' || *cp == '-')) {
2795 1.25 mlelstv ++cp;
2796 1.25 mlelstv if (isascii((unsigned char) *cp) &&
2797 1.25 mlelstv isdigit((unsigned char) *cp))
2798 1.25 mlelstv if (*cp++ == '1' &&
2799 1.25 mlelstv *cp >= '0' && *cp <= '4')
2800 1.25 mlelstv ++cp;
2801 1.25 mlelstv }
2802 1.25 mlelstv if (*cp != '\0')
2803 1.31 christos mp = _("time zone abbreviation differs from POSIX standard");
2804 1.43 christos if (mp != NULL)
2805 1.43 christos warning("%s (%s)", mp, string);
2806 1.25 mlelstv }
2807 1.1 jtc i = strlen(string) + 1;
2808 1.1 jtc if (charcnt + i > TZ_MAX_CHARS) {
2809 1.40 christos error(_("too many, or too long, time zone abbreviations"));
2810 1.25 mlelstv exit(EXIT_FAILURE);
2811 1.1 jtc }
2812 1.6 mrg (void)strncpy(&chars[charcnt], string, sizeof(chars) - charcnt - 1);
2813 1.41 christos charcnt += i;
2814 1.1 jtc }
2815 1.1 jtc
2816 1.1 jtc static int
2817 1.31 christos mkdirs(char *argname)
2818 1.1 jtc {
2819 1.31 christos char * name;
2820 1.31 christos char * cp;
2821 1.1 jtc
2822 1.1 jtc if (argname == NULL || *argname == '\0')
2823 1.1 jtc return 0;
2824 1.1 jtc cp = name = ecpyalloc(argname);
2825 1.1 jtc while ((cp = strchr(cp + 1, '/')) != 0) {
2826 1.1 jtc *cp = '\0';
2827 1.41 christos #ifdef HAVE_DOS_FILE_NAMES
2828 1.1 jtc /*
2829 1.1 jtc ** DOS drive specifier?
2830 1.1 jtc */
2831 1.3 jtc if (isalpha((unsigned char) name[0]) &&
2832 1.4 jtc name[1] == ':' && name[2] == '\0') {
2833 1.1 jtc *cp = '/';
2834 1.1 jtc continue;
2835 1.1 jtc }
2836 1.41 christos #endif
2837 1.1 jtc if (!itsdir(name)) {
2838 1.1 jtc /*
2839 1.1 jtc ** It doesn't seem to exist, so we try to create it.
2840 1.7 jtc ** Creation may fail because of the directory being
2841 1.7 jtc ** created by some other multiprocessor, so we get
2842 1.7 jtc ** to do extra checking.
2843 1.1 jtc */
2844 1.19 kleink if (mkdir(name, MKDIR_UMASK) != 0) {
2845 1.5 jtc const char *e = strerror(errno);
2846 1.7 jtc
2847 1.7 jtc if (errno != EEXIST || !itsdir(name)) {
2848 1.7 jtc (void) fprintf(stderr,
2849 1.7 jtc _("%s: Can't create directory %s: %s\n"),
2850 1.7 jtc progname, name, e);
2851 1.31 christos free(name);
2852 1.7 jtc return -1;
2853 1.7 jtc }
2854 1.1 jtc }
2855 1.1 jtc }
2856 1.1 jtc *cp = '/';
2857 1.1 jtc }
2858 1.31 christos free(name);
2859 1.1 jtc return 0;
2860 1.1 jtc }
2861 1.1 jtc
2862 1.1 jtc /*
2863 1.21 kleink ** UNIX was a registered trademark of The Open Group in 2003.
2864 1.1 jtc */
2865