zic.c revision 1.43 1 1.43 christos /* $NetBSD: zic.c,v 1.43 2013/09/20 19:06:54 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 1.43 christos __RCSID("$NetBSD: zic.c,v 1.43 2013/09/20 19:06:54 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 1.25 mlelstv static void addtt(zic_t starttime, int type);
122 1.38 christos static int addtype(zic_t gmtoff, const char * abbr, int isdst,
123 1.25 mlelstv int ttisstd, int ttisgmt);
124 1.25 mlelstv static void leapadd(zic_t t, int positive, int rolling, int count);
125 1.25 mlelstv static void adjleap(void);
126 1.25 mlelstv static void associate(void);
127 1.25 mlelstv static void dolink(const char * fromfield, const char * tofield);
128 1.25 mlelstv static char ** getfields(char * buf);
129 1.38 christos static zic_t gethms(const char * string, const char * errstrng,
130 1.25 mlelstv int signable);
131 1.25 mlelstv static void infile(const char * filename);
132 1.25 mlelstv static void inleap(char ** fields, int nfields);
133 1.25 mlelstv static void inlink(char ** fields, int nfields);
134 1.25 mlelstv static void inrule(char ** fields, int nfields);
135 1.25 mlelstv static int inzcont(char ** fields, int nfields);
136 1.25 mlelstv static int inzone(char ** fields, int nfields);
137 1.25 mlelstv static int inzsub(char ** fields, int nfields, int iscont);
138 1.25 mlelstv static int itsdir(const char * name);
139 1.25 mlelstv static int lowerit(int c);
140 1.25 mlelstv static int mkdirs(char * filename);
141 1.25 mlelstv static void newabbr(const char * abbr);
142 1.38 christos static zic_t oadd(zic_t t1, zic_t t2);
143 1.25 mlelstv static void outzone(const struct zone * zp, int ntzones);
144 1.25 mlelstv static int rcomp(const void * leftp, const void * rightp);
145 1.41 christos static zic_t rpytime(const struct rule * rp, zic_t wantedy);
146 1.25 mlelstv static void rulesub(struct rule * rp,
147 1.1 jtc const char * loyearp, const char * hiyearp,
148 1.1 jtc const char * typep, const char * monthp,
149 1.25 mlelstv const char * dayp, const char * timep);
150 1.38 christos static zic_t tadd(zic_t t1, zic_t t2);
151 1.25 mlelstv static int yearistype(int year, const char * type);
152 1.25 mlelstv static int atcomp(const void *avp, const void *bvp);
153 1.41 christos static void updateminmax(zic_t x);
154 1.5 jtc
155 1.1 jtc static int charcnt;
156 1.1 jtc static int errors;
157 1.1 jtc static const char * filename;
158 1.1 jtc static int leapcnt;
159 1.25 mlelstv static int leapseen;
160 1.41 christos static zic_t leapminyear;
161 1.41 christos static zic_t leapmaxyear;
162 1.1 jtc static int linenum;
163 1.36 christos static size_t max_abbrvar_len;
164 1.36 christos static size_t max_format_len;
165 1.41 christos static zic_t max_year;
166 1.41 christos static zic_t min_year;
167 1.1 jtc static int noise;
168 1.1 jtc static const char * rfilename;
169 1.1 jtc static int rlinenum;
170 1.1 jtc static const char * progname;
171 1.1 jtc static int timecnt;
172 1.1 jtc static int typecnt;
173 1.1 jtc
174 1.1 jtc /*
175 1.1 jtc ** Line codes.
176 1.1 jtc */
177 1.1 jtc
178 1.1 jtc #define LC_RULE 0
179 1.1 jtc #define LC_ZONE 1
180 1.1 jtc #define LC_LINK 2
181 1.1 jtc #define LC_LEAP 3
182 1.1 jtc
183 1.1 jtc /*
184 1.1 jtc ** Which fields are which on a Zone line.
185 1.1 jtc */
186 1.1 jtc
187 1.1 jtc #define ZF_NAME 1
188 1.1 jtc #define ZF_GMTOFF 2
189 1.1 jtc #define ZF_RULE 3
190 1.1 jtc #define ZF_FORMAT 4
191 1.1 jtc #define ZF_TILYEAR 5
192 1.1 jtc #define ZF_TILMONTH 6
193 1.1 jtc #define ZF_TILDAY 7
194 1.1 jtc #define ZF_TILTIME 8
195 1.1 jtc #define ZONE_MINFIELDS 5
196 1.1 jtc #define ZONE_MAXFIELDS 9
197 1.1 jtc
198 1.1 jtc /*
199 1.1 jtc ** Which fields are which on a Zone continuation line.
200 1.1 jtc */
201 1.1 jtc
202 1.1 jtc #define ZFC_GMTOFF 0
203 1.1 jtc #define ZFC_RULE 1
204 1.1 jtc #define ZFC_FORMAT 2
205 1.1 jtc #define ZFC_TILYEAR 3
206 1.1 jtc #define ZFC_TILMONTH 4
207 1.1 jtc #define ZFC_TILDAY 5
208 1.1 jtc #define ZFC_TILTIME 6
209 1.1 jtc #define ZONEC_MINFIELDS 3
210 1.1 jtc #define ZONEC_MAXFIELDS 7
211 1.1 jtc
212 1.1 jtc /*
213 1.1 jtc ** Which files are which on a Rule line.
214 1.1 jtc */
215 1.1 jtc
216 1.1 jtc #define RF_NAME 1
217 1.1 jtc #define RF_LOYEAR 2
218 1.1 jtc #define RF_HIYEAR 3
219 1.1 jtc #define RF_COMMAND 4
220 1.1 jtc #define RF_MONTH 5
221 1.1 jtc #define RF_DAY 6
222 1.1 jtc #define RF_TOD 7
223 1.1 jtc #define RF_STDOFF 8
224 1.1 jtc #define RF_ABBRVAR 9
225 1.1 jtc #define RULE_FIELDS 10
226 1.1 jtc
227 1.1 jtc /*
228 1.1 jtc ** Which fields are which on a Link line.
229 1.1 jtc */
230 1.1 jtc
231 1.1 jtc #define LF_FROM 1
232 1.1 jtc #define LF_TO 2
233 1.1 jtc #define LINK_FIELDS 3
234 1.1 jtc
235 1.1 jtc /*
236 1.1 jtc ** Which fields are which on a Leap line.
237 1.1 jtc */
238 1.1 jtc
239 1.1 jtc #define LP_YEAR 1
240 1.1 jtc #define LP_MONTH 2
241 1.1 jtc #define LP_DAY 3
242 1.1 jtc #define LP_TIME 4
243 1.1 jtc #define LP_CORR 5
244 1.1 jtc #define LP_ROLL 6
245 1.1 jtc #define LEAP_FIELDS 7
246 1.1 jtc
247 1.1 jtc /*
248 1.1 jtc ** Year synonyms.
249 1.1 jtc */
250 1.1 jtc
251 1.1 jtc #define YR_MINIMUM 0
252 1.1 jtc #define YR_MAXIMUM 1
253 1.1 jtc #define YR_ONLY 2
254 1.1 jtc
255 1.1 jtc static struct rule * rules;
256 1.1 jtc static int nrules; /* number of rules */
257 1.1 jtc
258 1.1 jtc static struct zone * zones;
259 1.1 jtc static int nzones; /* number of zones */
260 1.1 jtc
261 1.1 jtc struct link {
262 1.1 jtc const char * l_filename;
263 1.1 jtc int l_linenum;
264 1.1 jtc const char * l_from;
265 1.1 jtc const char * l_to;
266 1.1 jtc };
267 1.1 jtc
268 1.1 jtc static struct link * links;
269 1.1 jtc static int nlinks;
270 1.1 jtc
271 1.1 jtc struct lookup {
272 1.1 jtc const char * l_word;
273 1.1 jtc const int l_value;
274 1.1 jtc };
275 1.1 jtc
276 1.25 mlelstv static struct lookup const * byword(const char * string,
277 1.25 mlelstv const struct lookup * lp);
278 1.1 jtc
279 1.1 jtc static struct lookup const line_codes[] = {
280 1.1 jtc { "Rule", LC_RULE },
281 1.1 jtc { "Zone", LC_ZONE },
282 1.1 jtc { "Link", LC_LINK },
283 1.1 jtc { "Leap", LC_LEAP },
284 1.1 jtc { NULL, 0}
285 1.1 jtc };
286 1.1 jtc
287 1.1 jtc static struct lookup const mon_names[] = {
288 1.1 jtc { "January", TM_JANUARY },
289 1.1 jtc { "February", TM_FEBRUARY },
290 1.1 jtc { "March", TM_MARCH },
291 1.1 jtc { "April", TM_APRIL },
292 1.1 jtc { "May", TM_MAY },
293 1.1 jtc { "June", TM_JUNE },
294 1.1 jtc { "July", TM_JULY },
295 1.1 jtc { "August", TM_AUGUST },
296 1.1 jtc { "September", TM_SEPTEMBER },
297 1.1 jtc { "October", TM_OCTOBER },
298 1.1 jtc { "November", TM_NOVEMBER },
299 1.1 jtc { "December", TM_DECEMBER },
300 1.1 jtc { NULL, 0 }
301 1.1 jtc };
302 1.1 jtc
303 1.1 jtc static struct lookup const wday_names[] = {
304 1.1 jtc { "Sunday", TM_SUNDAY },
305 1.1 jtc { "Monday", TM_MONDAY },
306 1.1 jtc { "Tuesday", TM_TUESDAY },
307 1.1 jtc { "Wednesday", TM_WEDNESDAY },
308 1.1 jtc { "Thursday", TM_THURSDAY },
309 1.1 jtc { "Friday", TM_FRIDAY },
310 1.1 jtc { "Saturday", TM_SATURDAY },
311 1.1 jtc { NULL, 0 }
312 1.1 jtc };
313 1.1 jtc
314 1.1 jtc static struct lookup const lasts[] = {
315 1.1 jtc { "last-Sunday", TM_SUNDAY },
316 1.1 jtc { "last-Monday", TM_MONDAY },
317 1.1 jtc { "last-Tuesday", TM_TUESDAY },
318 1.1 jtc { "last-Wednesday", TM_WEDNESDAY },
319 1.1 jtc { "last-Thursday", TM_THURSDAY },
320 1.1 jtc { "last-Friday", TM_FRIDAY },
321 1.1 jtc { "last-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 begin_years[] = {
326 1.1 jtc { "minimum", YR_MINIMUM },
327 1.1 jtc { "maximum", YR_MAXIMUM },
328 1.1 jtc { NULL, 0 }
329 1.1 jtc };
330 1.1 jtc
331 1.1 jtc static struct lookup const end_years[] = {
332 1.1 jtc { "minimum", YR_MINIMUM },
333 1.1 jtc { "maximum", YR_MAXIMUM },
334 1.1 jtc { "only", YR_ONLY },
335 1.1 jtc { NULL, 0 }
336 1.1 jtc };
337 1.1 jtc
338 1.1 jtc static struct lookup const leap_types[] = {
339 1.1 jtc { "Rolling", TRUE },
340 1.1 jtc { "Stationary", FALSE },
341 1.1 jtc { NULL, 0 }
342 1.1 jtc };
343 1.1 jtc
344 1.1 jtc static const int len_months[2][MONSPERYEAR] = {
345 1.1 jtc { 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 },
346 1.1 jtc { 31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 }
347 1.1 jtc };
348 1.1 jtc
349 1.1 jtc static const int len_years[2] = {
350 1.1 jtc DAYSPERNYEAR, DAYSPERLYEAR
351 1.1 jtc };
352 1.1 jtc
353 1.5 jtc static struct attype {
354 1.25 mlelstv zic_t at;
355 1.5 jtc unsigned char type;
356 1.5 jtc } attypes[TZ_MAX_TIMES];
357 1.38 christos static zic_t gmtoffs[TZ_MAX_TYPES];
358 1.1 jtc static char isdsts[TZ_MAX_TYPES];
359 1.1 jtc static unsigned char abbrinds[TZ_MAX_TYPES];
360 1.1 jtc static char ttisstds[TZ_MAX_TYPES];
361 1.1 jtc static char ttisgmts[TZ_MAX_TYPES];
362 1.1 jtc static char chars[TZ_MAX_CHARS];
363 1.25 mlelstv static zic_t trans[TZ_MAX_LEAPS];
364 1.38 christos static zic_t corr[TZ_MAX_LEAPS];
365 1.1 jtc static char roll[TZ_MAX_LEAPS];
366 1.1 jtc
367 1.1 jtc /*
368 1.1 jtc ** Memory allocation.
369 1.1 jtc */
370 1.1 jtc
371 1.41 christos static ATTRIBUTE_PURE void *
372 1.31 christos memcheck(void *const ptr)
373 1.1 jtc {
374 1.1 jtc if (ptr == NULL) {
375 1.5 jtc const char *e = strerror(errno);
376 1.7 jtc
377 1.5 jtc (void) fprintf(stderr, _("%s: Memory exhausted: %s\n"),
378 1.5 jtc progname, e);
379 1.25 mlelstv exit(EXIT_FAILURE);
380 1.1 jtc }
381 1.1 jtc return ptr;
382 1.1 jtc }
383 1.1 jtc
384 1.31 christos #define emalloc(size) memcheck(malloc(size))
385 1.31 christos #define erealloc(ptr, size) memcheck(realloc((ptr), (size)))
386 1.1 jtc #define ecpyalloc(ptr) memcheck(icpyalloc(ptr))
387 1.1 jtc #define ecatalloc(oldp, newp) memcheck(icatalloc((oldp), (newp)))
388 1.1 jtc
389 1.1 jtc /*
390 1.1 jtc ** Error handling.
391 1.1 jtc */
392 1.1 jtc
393 1.1 jtc static void
394 1.31 christos eats(const char *const name, const int num, const char *const rname,
395 1.31 christos const int rnum)
396 1.1 jtc {
397 1.1 jtc filename = name;
398 1.1 jtc linenum = num;
399 1.1 jtc rfilename = rname;
400 1.1 jtc rlinenum = rnum;
401 1.1 jtc }
402 1.1 jtc
403 1.1 jtc static void
404 1.31 christos eat(const char *const name, const int num)
405 1.1 jtc {
406 1.31 christos eats(name, num, NULL, -1);
407 1.1 jtc }
408 1.1 jtc
409 1.43 christos static void ATTRIBUTE_FORMAT((printf, 1, 0))
410 1.43 christos verror(const char *const string, va_list args)
411 1.1 jtc {
412 1.1 jtc /*
413 1.1 jtc ** Match the format of "cc" to allow sh users to
414 1.1 jtc ** zic ... 2>&1 | error -t "*" -v
415 1.1 jtc ** on BSD systems.
416 1.1 jtc */
417 1.43 christos fprintf(stderr, _("\"%s\", line %d: "), filename, linenum);
418 1.43 christos vfprintf(stderr, string, args);
419 1.1 jtc if (rfilename != NULL)
420 1.5 jtc (void) fprintf(stderr, _(" (rule from \"%s\", line %d)"),
421 1.1 jtc rfilename, rlinenum);
422 1.1 jtc (void) fprintf(stderr, "\n");
423 1.1 jtc ++errors;
424 1.1 jtc }
425 1.1 jtc
426 1.43 christos static void ATTRIBUTE_FORMAT((printf, 1, 2))
427 1.43 christos error(const char *const string, ...)
428 1.5 jtc {
429 1.43 christos va_list args;
430 1.43 christos va_start(args, string);
431 1.43 christos verror(string, args);
432 1.43 christos va_end(args);
433 1.43 christos }
434 1.43 christos
435 1.43 christos static void ATTRIBUTE_FORMAT((printf, 1, 2))
436 1.43 christos warning(const char *const string, ...)
437 1.43 christos {
438 1.43 christos va_list args;
439 1.43 christos fprintf(stderr, _("warning: "));
440 1.43 christos va_start(args, string);
441 1.43 christos verror(string, args);
442 1.43 christos va_end(args);
443 1.5 jtc --errors;
444 1.5 jtc }
445 1.5 jtc
446 1.41 christos static _Noreturn void
447 1.25 mlelstv usage(FILE *stream, int status)
448 1.1 jtc {
449 1.25 mlelstv (void) fprintf(stream, _("%s: usage is %s \
450 1.25 mlelstv [ --version ] [ --help ] [ -v ] [ -l localtime ] [ -p posixrules ] \\\n\
451 1.25 mlelstv \t[ -d directory ] [ -L leapseconds ] [ -y yearistype ] [ filename ... ]\n\
452 1.25 mlelstv \n\
453 1.35 christos Report bugs to %s.\n"),
454 1.35 christos progname, progname, REPORT_BUGS_TO);
455 1.25 mlelstv exit(status);
456 1.1 jtc }
457 1.1 jtc
458 1.1 jtc static const char * psxrules;
459 1.1 jtc static const char * lcltime;
460 1.1 jtc static const char * directory;
461 1.1 jtc static const char * leapsec;
462 1.1 jtc static const char * yitcommand;
463 1.1 jtc
464 1.1 jtc int
465 1.31 christos main(int argc, char *argv[])
466 1.31 christos {
467 1.31 christos int i;
468 1.31 christos int j;
469 1.31 christos int c;
470 1.1 jtc
471 1.41 christos #ifdef S_IWGRP
472 1.1 jtc (void) umask(umask(S_IWGRP | S_IWOTH) | (S_IWGRP | S_IWOTH));
473 1.41 christos #endif
474 1.5 jtc #if HAVE_GETTEXT - 0
475 1.5 jtc (void) setlocale(LC_MESSAGES, "");
476 1.5 jtc #ifdef TZ_DOMAINDIR
477 1.5 jtc (void) bindtextdomain(TZ_DOMAIN, TZ_DOMAINDIR);
478 1.5 jtc #endif /* defined TEXTDOMAINDIR */
479 1.5 jtc (void) textdomain(TZ_DOMAIN);
480 1.25 mlelstv #endif /* HAVE_GETTEXT */
481 1.1 jtc progname = argv[0];
482 1.25 mlelstv if (TYPE_BIT(zic_t) < 64) {
483 1.25 mlelstv (void) fprintf(stderr, "%s: %s\n", progname,
484 1.25 mlelstv _("wild compilation-time specification of zic_t"));
485 1.25 mlelstv exit(EXIT_FAILURE);
486 1.25 mlelstv }
487 1.20 kleink for (i = 1; i < argc; ++i)
488 1.20 kleink if (strcmp(argv[i], "--version") == 0) {
489 1.35 christos (void) printf("zic %s%s\n", PKGVERSION, TZVERSION);
490 1.25 mlelstv exit(EXIT_SUCCESS);
491 1.25 mlelstv } else if (strcmp(argv[i], "--help") == 0) {
492 1.25 mlelstv usage(stdout, EXIT_SUCCESS);
493 1.20 kleink }
494 1.7 jtc while ((c = getopt(argc, argv, "d:l:p:L:vsy:")) != EOF && c != -1)
495 1.1 jtc switch (c) {
496 1.1 jtc default:
497 1.25 mlelstv usage(stderr, EXIT_FAILURE);
498 1.1 jtc case 'd':
499 1.1 jtc if (directory == NULL)
500 1.1 jtc directory = optarg;
501 1.1 jtc else {
502 1.1 jtc (void) fprintf(stderr,
503 1.5 jtc _("%s: More than one -d option specified\n"),
504 1.1 jtc progname);
505 1.25 mlelstv exit(EXIT_FAILURE);
506 1.1 jtc }
507 1.1 jtc break;
508 1.1 jtc case 'l':
509 1.1 jtc if (lcltime == NULL)
510 1.1 jtc lcltime = optarg;
511 1.1 jtc else {
512 1.1 jtc (void) fprintf(stderr,
513 1.5 jtc _("%s: More than one -l option specified\n"),
514 1.1 jtc progname);
515 1.25 mlelstv exit(EXIT_FAILURE);
516 1.1 jtc }
517 1.1 jtc break;
518 1.1 jtc case 'p':
519 1.1 jtc if (psxrules == NULL)
520 1.1 jtc psxrules = optarg;
521 1.1 jtc else {
522 1.1 jtc (void) fprintf(stderr,
523 1.5 jtc _("%s: More than one -p option specified\n"),
524 1.1 jtc progname);
525 1.25 mlelstv exit(EXIT_FAILURE);
526 1.1 jtc }
527 1.1 jtc break;
528 1.1 jtc case 'y':
529 1.1 jtc if (yitcommand == NULL)
530 1.1 jtc yitcommand = optarg;
531 1.1 jtc else {
532 1.1 jtc (void) fprintf(stderr,
533 1.5 jtc _("%s: More than one -y option specified\n"),
534 1.1 jtc progname);
535 1.25 mlelstv exit(EXIT_FAILURE);
536 1.1 jtc }
537 1.1 jtc break;
538 1.1 jtc case 'L':
539 1.1 jtc if (leapsec == NULL)
540 1.1 jtc leapsec = optarg;
541 1.1 jtc else {
542 1.1 jtc (void) fprintf(stderr,
543 1.5 jtc _("%s: More than one -L option specified\n"),
544 1.1 jtc progname);
545 1.25 mlelstv exit(EXIT_FAILURE);
546 1.1 jtc }
547 1.1 jtc break;
548 1.1 jtc case 'v':
549 1.1 jtc noise = TRUE;
550 1.1 jtc break;
551 1.1 jtc case 's':
552 1.25 mlelstv (void) printf("%s: -s ignored\n", progname);
553 1.1 jtc break;
554 1.1 jtc }
555 1.1 jtc if (optind == argc - 1 && strcmp(argv[optind], "=") == 0)
556 1.25 mlelstv usage(stderr, EXIT_FAILURE); /* usage message by request */
557 1.1 jtc if (directory == NULL)
558 1.1 jtc directory = TZDIR;
559 1.1 jtc if (yitcommand == NULL)
560 1.1 jtc yitcommand = "yearistype";
561 1.1 jtc
562 1.1 jtc if (optind < argc && leapsec != NULL) {
563 1.1 jtc infile(leapsec);
564 1.1 jtc adjleap();
565 1.1 jtc }
566 1.1 jtc
567 1.1 jtc for (i = optind; i < argc; ++i)
568 1.1 jtc infile(argv[i]);
569 1.1 jtc if (errors)
570 1.25 mlelstv exit(EXIT_FAILURE);
571 1.1 jtc associate();
572 1.1 jtc for (i = 0; i < nzones; i = j) {
573 1.1 jtc /*
574 1.1 jtc ** Find the next non-continuation zone entry.
575 1.1 jtc */
576 1.1 jtc for (j = i + 1; j < nzones && zones[j].z_name == NULL; ++j)
577 1.1 jtc continue;
578 1.1 jtc outzone(&zones[i], j - i);
579 1.1 jtc }
580 1.1 jtc /*
581 1.1 jtc ** Make links.
582 1.1 jtc */
583 1.15 kleink for (i = 0; i < nlinks; ++i) {
584 1.15 kleink eat(links[i].l_filename, links[i].l_linenum);
585 1.1 jtc dolink(links[i].l_from, links[i].l_to);
586 1.25 mlelstv if (noise)
587 1.25 mlelstv for (j = 0; j < nlinks; ++j)
588 1.25 mlelstv if (strcmp(links[i].l_to,
589 1.25 mlelstv links[j].l_from) == 0)
590 1.25 mlelstv warning(_("link to link"));
591 1.15 kleink }
592 1.15 kleink if (lcltime != NULL) {
593 1.15 kleink eat("command line", 1);
594 1.1 jtc dolink(lcltime, TZDEFAULT);
595 1.15 kleink }
596 1.15 kleink if (psxrules != NULL) {
597 1.15 kleink eat("command line", 1);
598 1.1 jtc dolink(psxrules, TZDEFRULES);
599 1.15 kleink }
600 1.1 jtc return (errors == 0) ? EXIT_SUCCESS : EXIT_FAILURE;
601 1.1 jtc }
602 1.1 jtc
603 1.1 jtc static void
604 1.31 christos dolink(const char *const fromfield, const char *const tofield)
605 1.1 jtc {
606 1.31 christos char * fromname;
607 1.31 christos char * toname;
608 1.1 jtc
609 1.25 mlelstv if (fromfield[0] == '/')
610 1.25 mlelstv fromname = ecpyalloc(fromfield);
611 1.1 jtc else {
612 1.1 jtc fromname = ecpyalloc(directory);
613 1.1 jtc fromname = ecatalloc(fromname, "/");
614 1.25 mlelstv fromname = ecatalloc(fromname, fromfield);
615 1.1 jtc }
616 1.25 mlelstv if (tofield[0] == '/')
617 1.25 mlelstv toname = ecpyalloc(tofield);
618 1.1 jtc else {
619 1.1 jtc toname = ecpyalloc(directory);
620 1.1 jtc toname = ecatalloc(toname, "/");
621 1.25 mlelstv toname = ecatalloc(toname, tofield);
622 1.1 jtc }
623 1.1 jtc /*
624 1.1 jtc ** We get to be careful here since
625 1.1 jtc ** there's a fair chance of root running us.
626 1.1 jtc */
627 1.1 jtc if (!itsdir(toname))
628 1.1 jtc (void) remove(toname);
629 1.1 jtc if (link(fromname, toname) != 0) {
630 1.12 kleink int result;
631 1.12 kleink
632 1.1 jtc if (mkdirs(toname) != 0)
633 1.25 mlelstv exit(EXIT_FAILURE);
634 1.15 kleink
635 1.12 kleink result = link(fromname, toname);
636 1.25 mlelstv #if HAVE_SYMLINK
637 1.20 kleink if (result != 0 &&
638 1.25 mlelstv access(fromname, F_OK) == 0 &&
639 1.25 mlelstv !itsdir(fromname)) {
640 1.25 mlelstv const char *s = tofield;
641 1.31 christos char * symlinkcontents = NULL;
642 1.25 mlelstv
643 1.25 mlelstv while ((s = strchr(s+1, '/')) != NULL)
644 1.25 mlelstv symlinkcontents =
645 1.25 mlelstv ecatalloc(symlinkcontents,
646 1.25 mlelstv "../");
647 1.25 mlelstv symlinkcontents =
648 1.25 mlelstv ecatalloc(symlinkcontents,
649 1.25 mlelstv fromname);
650 1.25 mlelstv result = symlink(symlinkcontents,
651 1.25 mlelstv toname);
652 1.25 mlelstv if (result == 0)
653 1.12 kleink warning(_("hard link failed, symbolic link used"));
654 1.31 christos free(symlinkcontents);
655 1.12 kleink }
656 1.25 mlelstv #endif /* HAVE_SYMLINK */
657 1.12 kleink if (result != 0) {
658 1.5 jtc const char *e = strerror(errno);
659 1.7 jtc
660 1.5 jtc (void) fprintf(stderr,
661 1.5 jtc _("%s: Can't link from %s to %s: %s\n"),
662 1.5 jtc progname, fromname, toname, e);
663 1.25 mlelstv exit(EXIT_FAILURE);
664 1.1 jtc }
665 1.1 jtc }
666 1.31 christos free(fromname);
667 1.31 christos free(toname);
668 1.1 jtc }
669 1.1 jtc
670 1.41 christos #define TIME_T_BITS_IN_FILE 64
671 1.41 christos
672 1.41 christos static const zic_t min_time = (zic_t) -1 << (TIME_T_BITS_IN_FILE - 1);
673 1.41 christos static const zic_t max_time = -1 - ((zic_t) -1 << (TIME_T_BITS_IN_FILE - 1));
674 1.41 christos
675 1.1 jtc static int
676 1.31 christos itsdir(const char *const name)
677 1.1 jtc {
678 1.31 christos char * myname;
679 1.31 christos int accres;
680 1.1 jtc
681 1.1 jtc myname = ecpyalloc(name);
682 1.1 jtc myname = ecatalloc(myname, "/.");
683 1.1 jtc accres = access(myname, F_OK);
684 1.31 christos free(myname);
685 1.1 jtc return accres == 0;
686 1.1 jtc }
687 1.1 jtc
688 1.1 jtc /*
689 1.1 jtc ** Associate sets of rules with zones.
690 1.1 jtc */
691 1.1 jtc
692 1.1 jtc /*
693 1.1 jtc ** Sort by rule name.
694 1.1 jtc */
695 1.1 jtc
696 1.1 jtc static int
697 1.31 christos rcomp(const void *cp1, const void *cp2)
698 1.1 jtc {
699 1.1 jtc return strcmp(((const struct rule *) cp1)->r_name,
700 1.1 jtc ((const struct rule *) cp2)->r_name);
701 1.1 jtc }
702 1.1 jtc
703 1.1 jtc static void
704 1.25 mlelstv associate(void)
705 1.1 jtc {
706 1.31 christos struct zone * zp;
707 1.31 christos struct rule * rp;
708 1.31 christos int base, out;
709 1.31 christos int i, j;
710 1.1 jtc
711 1.5 jtc if (nrules != 0) {
712 1.31 christos (void) qsort(rules, (size_t)nrules, sizeof *rules, rcomp);
713 1.5 jtc for (i = 0; i < nrules - 1; ++i) {
714 1.5 jtc if (strcmp(rules[i].r_name,
715 1.5 jtc rules[i + 1].r_name) != 0)
716 1.5 jtc continue;
717 1.5 jtc if (strcmp(rules[i].r_filename,
718 1.5 jtc rules[i + 1].r_filename) == 0)
719 1.5 jtc continue;
720 1.5 jtc eat(rules[i].r_filename, rules[i].r_linenum);
721 1.5 jtc warning(_("same rule name in multiple files"));
722 1.5 jtc eat(rules[i + 1].r_filename, rules[i + 1].r_linenum);
723 1.5 jtc warning(_("same rule name in multiple files"));
724 1.5 jtc for (j = i + 2; j < nrules; ++j) {
725 1.5 jtc if (strcmp(rules[i].r_name,
726 1.5 jtc rules[j].r_name) != 0)
727 1.5 jtc break;
728 1.5 jtc if (strcmp(rules[i].r_filename,
729 1.5 jtc rules[j].r_filename) == 0)
730 1.5 jtc continue;
731 1.5 jtc if (strcmp(rules[i + 1].r_filename,
732 1.5 jtc rules[j].r_filename) == 0)
733 1.5 jtc continue;
734 1.5 jtc break;
735 1.5 jtc }
736 1.5 jtc i = j - 1;
737 1.5 jtc }
738 1.5 jtc }
739 1.1 jtc for (i = 0; i < nzones; ++i) {
740 1.1 jtc zp = &zones[i];
741 1.1 jtc zp->z_rules = NULL;
742 1.1 jtc zp->z_nrules = 0;
743 1.1 jtc }
744 1.1 jtc for (base = 0; base < nrules; base = out) {
745 1.1 jtc rp = &rules[base];
746 1.1 jtc for (out = base + 1; out < nrules; ++out)
747 1.1 jtc if (strcmp(rp->r_name, rules[out].r_name) != 0)
748 1.1 jtc break;
749 1.1 jtc for (i = 0; i < nzones; ++i) {
750 1.1 jtc zp = &zones[i];
751 1.1 jtc if (strcmp(zp->z_rule, rp->r_name) != 0)
752 1.1 jtc continue;
753 1.1 jtc zp->z_rules = rp;
754 1.1 jtc zp->z_nrules = out - base;
755 1.1 jtc }
756 1.1 jtc }
757 1.1 jtc for (i = 0; i < nzones; ++i) {
758 1.1 jtc zp = &zones[i];
759 1.1 jtc if (zp->z_nrules == 0) {
760 1.1 jtc /*
761 1.1 jtc ** Maybe we have a local standard time offset.
762 1.1 jtc */
763 1.1 jtc eat(zp->z_filename, zp->z_linenum);
764 1.5 jtc zp->z_stdoff = gethms(zp->z_rule, _("unruly zone"),
765 1.25 mlelstv TRUE);
766 1.1 jtc /*
767 1.1 jtc ** Note, though, that if there's no rule,
768 1.1 jtc ** a '%s' in the format is a bad thing.
769 1.1 jtc */
770 1.1 jtc if (strchr(zp->z_format, '%') != 0)
771 1.43 christos error("%s", _("%s in ruleless zone"));
772 1.1 jtc }
773 1.1 jtc }
774 1.1 jtc if (errors)
775 1.25 mlelstv exit(EXIT_FAILURE);
776 1.1 jtc }
777 1.1 jtc
778 1.1 jtc static void
779 1.31 christos infile(const char *name)
780 1.1 jtc {
781 1.31 christos FILE * fp;
782 1.31 christos char ** fields;
783 1.31 christos char * cp;
784 1.31 christos const struct lookup * lp;
785 1.31 christos int nfields;
786 1.31 christos int wantcont;
787 1.31 christos int num;
788 1.1 jtc char buf[BUFSIZ];
789 1.1 jtc
790 1.1 jtc if (strcmp(name, "-") == 0) {
791 1.5 jtc name = _("standard input");
792 1.1 jtc fp = stdin;
793 1.1 jtc } else if ((fp = fopen(name, "r")) == NULL) {
794 1.5 jtc const char *e = strerror(errno);
795 1.7 jtc
796 1.5 jtc (void) fprintf(stderr, _("%s: Can't open %s: %s\n"),
797 1.5 jtc progname, name, e);
798 1.25 mlelstv exit(EXIT_FAILURE);
799 1.1 jtc }
800 1.1 jtc wantcont = FALSE;
801 1.1 jtc for (num = 1; ; ++num) {
802 1.1 jtc eat(name, num);
803 1.1 jtc if (fgets(buf, (int) sizeof buf, fp) != buf)
804 1.1 jtc break;
805 1.1 jtc cp = strchr(buf, '\n');
806 1.1 jtc if (cp == NULL) {
807 1.40 christos error(_("line too long"));
808 1.25 mlelstv exit(EXIT_FAILURE);
809 1.1 jtc }
810 1.1 jtc *cp = '\0';
811 1.1 jtc fields = getfields(buf);
812 1.1 jtc nfields = 0;
813 1.1 jtc while (fields[nfields] != NULL) {
814 1.1 jtc static char nada;
815 1.1 jtc
816 1.3 jtc if (strcmp(fields[nfields], "-") == 0)
817 1.1 jtc fields[nfields] = &nada;
818 1.1 jtc ++nfields;
819 1.1 jtc }
820 1.1 jtc if (nfields == 0) {
821 1.1 jtc /* nothing to do */
822 1.1 jtc } else if (wantcont) {
823 1.1 jtc wantcont = inzcont(fields, nfields);
824 1.1 jtc } else {
825 1.1 jtc lp = byword(fields[0], line_codes);
826 1.1 jtc if (lp == NULL)
827 1.5 jtc error(_("input line of unknown type"));
828 1.1 jtc else switch ((int) (lp->l_value)) {
829 1.1 jtc case LC_RULE:
830 1.1 jtc inrule(fields, nfields);
831 1.1 jtc wantcont = FALSE;
832 1.1 jtc break;
833 1.1 jtc case LC_ZONE:
834 1.1 jtc wantcont = inzone(fields, nfields);
835 1.1 jtc break;
836 1.1 jtc case LC_LINK:
837 1.1 jtc inlink(fields, nfields);
838 1.1 jtc wantcont = FALSE;
839 1.1 jtc break;
840 1.1 jtc case LC_LEAP:
841 1.1 jtc if (name != leapsec)
842 1.1 jtc (void) fprintf(stderr,
843 1.5 jtc _("%s: Leap line in non leap seconds file %s\n"),
844 1.1 jtc progname, name);
845 1.1 jtc else inleap(fields, nfields);
846 1.1 jtc wantcont = FALSE;
847 1.1 jtc break;
848 1.1 jtc default: /* "cannot happen" */
849 1.1 jtc (void) fprintf(stderr,
850 1.5 jtc _("%s: panic: Invalid l_value %d\n"),
851 1.1 jtc progname, lp->l_value);
852 1.25 mlelstv exit(EXIT_FAILURE);
853 1.1 jtc }
854 1.1 jtc }
855 1.31 christos free(fields);
856 1.1 jtc }
857 1.1 jtc if (ferror(fp)) {
858 1.5 jtc (void) fprintf(stderr, _("%s: Error reading %s\n"),
859 1.5 jtc progname, filename);
860 1.25 mlelstv exit(EXIT_FAILURE);
861 1.1 jtc }
862 1.1 jtc if (fp != stdin && fclose(fp)) {
863 1.5 jtc const char *e = strerror(errno);
864 1.7 jtc
865 1.5 jtc (void) fprintf(stderr, _("%s: Error closing %s: %s\n"),
866 1.5 jtc progname, filename, e);
867 1.25 mlelstv exit(EXIT_FAILURE);
868 1.1 jtc }
869 1.1 jtc if (wantcont)
870 1.5 jtc error(_("expected continuation line not found"));
871 1.1 jtc }
872 1.1 jtc
873 1.1 jtc /*
874 1.1 jtc ** Convert a string of one of the forms
875 1.1 jtc ** h -h hh:mm -hh:mm hh:mm:ss -hh:mm:ss
876 1.1 jtc ** into a number of seconds.
877 1.1 jtc ** A null string maps to zero.
878 1.1 jtc ** Call error with errstring and return zero on errors.
879 1.1 jtc */
880 1.1 jtc
881 1.38 christos static zic_t
882 1.31 christos gethms(const char *string, const char *const errstring, const int signable)
883 1.1 jtc {
884 1.38 christos zic_t hh;
885 1.25 mlelstv int mm, ss, sign;
886 1.1 jtc
887 1.1 jtc if (string == NULL || *string == '\0')
888 1.1 jtc return 0;
889 1.1 jtc if (!signable)
890 1.1 jtc sign = 1;
891 1.1 jtc else if (*string == '-') {
892 1.1 jtc sign = -1;
893 1.1 jtc ++string;
894 1.1 jtc } else sign = 1;
895 1.41 christos if (sscanf(string, scheck(string, "%"SCNdZIC), &hh) == 1)
896 1.1 jtc mm = ss = 0;
897 1.41 christos else if (sscanf(string, scheck(string, "%"SCNdZIC":%d"), &hh, &mm) == 2)
898 1.1 jtc ss = 0;
899 1.41 christos else if (sscanf(string, scheck(string, "%"SCNdZIC":%d:%d"),
900 1.39 christos &hh, &mm, &ss) != 3) {
901 1.43 christos error("%s", errstring);
902 1.1 jtc return 0;
903 1.1 jtc }
904 1.25 mlelstv if (hh < 0 ||
905 1.1 jtc mm < 0 || mm >= MINSPERHOUR ||
906 1.25 mlelstv ss < 0 || ss > SECSPERMIN) {
907 1.43 christos error("%s", errstring);
908 1.1 jtc return 0;
909 1.1 jtc }
910 1.41 christos if (ZIC_MAX / SECSPERHOUR < hh) {
911 1.25 mlelstv error(_("time overflow"));
912 1.25 mlelstv return 0;
913 1.25 mlelstv }
914 1.25 mlelstv if (noise && hh == HOURSPERDAY && mm == 0 && ss == 0)
915 1.21 kleink warning(_("24:00 not handled by pre-1998 versions of zic"));
916 1.25 mlelstv if (noise && (hh > HOURSPERDAY ||
917 1.25 mlelstv (hh == HOURSPERDAY && (mm != 0 || ss != 0))))
918 1.25 mlelstv warning(_("values over 24 hours not handled by pre-2007 versions of zic"));
919 1.41 christos return oadd(sign * hh * SECSPERHOUR,
920 1.41 christos sign * (mm * SECSPERMIN + ss));
921 1.1 jtc }
922 1.1 jtc
923 1.1 jtc static void
924 1.31 christos inrule(char **const fields, const int nfields)
925 1.1 jtc {
926 1.1 jtc static struct rule r;
927 1.1 jtc
928 1.1 jtc if (nfields != RULE_FIELDS) {
929 1.5 jtc error(_("wrong number of fields on Rule line"));
930 1.1 jtc return;
931 1.1 jtc }
932 1.1 jtc if (*fields[RF_NAME] == '\0') {
933 1.5 jtc error(_("nameless rule"));
934 1.1 jtc return;
935 1.1 jtc }
936 1.1 jtc r.r_filename = filename;
937 1.1 jtc r.r_linenum = linenum;
938 1.5 jtc r.r_stdoff = gethms(fields[RF_STDOFF], _("invalid saved time"), TRUE);
939 1.1 jtc rulesub(&r, fields[RF_LOYEAR], fields[RF_HIYEAR], fields[RF_COMMAND],
940 1.1 jtc fields[RF_MONTH], fields[RF_DAY], fields[RF_TOD]);
941 1.1 jtc r.r_name = ecpyalloc(fields[RF_NAME]);
942 1.1 jtc r.r_abbrvar = ecpyalloc(fields[RF_ABBRVAR]);
943 1.25 mlelstv if (max_abbrvar_len < strlen(r.r_abbrvar))
944 1.25 mlelstv max_abbrvar_len = strlen(r.r_abbrvar);
945 1.31 christos rules = erealloc(rules, (nrules + 1) * sizeof *rules);
946 1.1 jtc rules[nrules++] = r;
947 1.1 jtc }
948 1.1 jtc
949 1.1 jtc static int
950 1.31 christos inzone(char **const fields, const int nfields)
951 1.1 jtc {
952 1.31 christos int i;
953 1.1 jtc
954 1.1 jtc if (nfields < ZONE_MINFIELDS || nfields > ZONE_MAXFIELDS) {
955 1.5 jtc error(_("wrong number of fields on Zone line"));
956 1.1 jtc return FALSE;
957 1.1 jtc }
958 1.1 jtc if (strcmp(fields[ZF_NAME], TZDEFAULT) == 0 && lcltime != NULL) {
959 1.43 christos error(
960 1.5 jtc _("\"Zone %s\" line and -l option are mutually exclusive"),
961 1.1 jtc TZDEFAULT);
962 1.1 jtc return FALSE;
963 1.1 jtc }
964 1.1 jtc if (strcmp(fields[ZF_NAME], TZDEFRULES) == 0 && psxrules != NULL) {
965 1.43 christos error(
966 1.5 jtc _("\"Zone %s\" line and -p option are mutually exclusive"),
967 1.1 jtc TZDEFRULES);
968 1.1 jtc return FALSE;
969 1.1 jtc }
970 1.1 jtc for (i = 0; i < nzones; ++i)
971 1.1 jtc if (zones[i].z_name != NULL &&
972 1.1 jtc strcmp(zones[i].z_name, fields[ZF_NAME]) == 0) {
973 1.43 christos error(
974 1.5 jtc _("duplicate zone name %s (file \"%s\", line %d)"),
975 1.1 jtc fields[ZF_NAME],
976 1.1 jtc zones[i].z_filename,
977 1.1 jtc zones[i].z_linenum);
978 1.1 jtc return FALSE;
979 1.1 jtc }
980 1.1 jtc return inzsub(fields, nfields, FALSE);
981 1.1 jtc }
982 1.1 jtc
983 1.1 jtc static int
984 1.31 christos inzcont(char **const fields, const int nfields)
985 1.1 jtc {
986 1.1 jtc if (nfields < ZONEC_MINFIELDS || nfields > ZONEC_MAXFIELDS) {
987 1.5 jtc error(_("wrong number of fields on Zone continuation line"));
988 1.1 jtc return FALSE;
989 1.1 jtc }
990 1.1 jtc return inzsub(fields, nfields, TRUE);
991 1.1 jtc }
992 1.1 jtc
993 1.1 jtc static int
994 1.31 christos inzsub(char **const fields, const int nfields, const int iscont)
995 1.1 jtc {
996 1.31 christos char * cp;
997 1.1 jtc static struct zone z;
998 1.31 christos int i_gmtoff, i_rule, i_format;
999 1.31 christos int i_untilyear, i_untilmonth;
1000 1.31 christos int i_untilday, i_untiltime;
1001 1.31 christos int hasuntil;
1002 1.1 jtc
1003 1.1 jtc if (iscont) {
1004 1.1 jtc i_gmtoff = ZFC_GMTOFF;
1005 1.1 jtc i_rule = ZFC_RULE;
1006 1.1 jtc i_format = ZFC_FORMAT;
1007 1.1 jtc i_untilyear = ZFC_TILYEAR;
1008 1.1 jtc i_untilmonth = ZFC_TILMONTH;
1009 1.1 jtc i_untilday = ZFC_TILDAY;
1010 1.1 jtc i_untiltime = ZFC_TILTIME;
1011 1.1 jtc z.z_name = NULL;
1012 1.1 jtc } else {
1013 1.1 jtc i_gmtoff = ZF_GMTOFF;
1014 1.1 jtc i_rule = ZF_RULE;
1015 1.1 jtc i_format = ZF_FORMAT;
1016 1.1 jtc i_untilyear = ZF_TILYEAR;
1017 1.1 jtc i_untilmonth = ZF_TILMONTH;
1018 1.1 jtc i_untilday = ZF_TILDAY;
1019 1.1 jtc i_untiltime = ZF_TILTIME;
1020 1.1 jtc z.z_name = ecpyalloc(fields[ZF_NAME]);
1021 1.1 jtc }
1022 1.1 jtc z.z_filename = filename;
1023 1.1 jtc z.z_linenum = linenum;
1024 1.43 christos z.z_gmtoff = gethms(fields[i_gmtoff], _("invalid UT offset"), TRUE);
1025 1.1 jtc if ((cp = strchr(fields[i_format], '%')) != 0) {
1026 1.1 jtc if (*++cp != 's' || strchr(cp, '%') != 0) {
1027 1.5 jtc error(_("invalid abbreviation format"));
1028 1.1 jtc return FALSE;
1029 1.1 jtc }
1030 1.1 jtc }
1031 1.1 jtc z.z_rule = ecpyalloc(fields[i_rule]);
1032 1.1 jtc z.z_format = ecpyalloc(fields[i_format]);
1033 1.25 mlelstv if (max_format_len < strlen(z.z_format))
1034 1.25 mlelstv max_format_len = strlen(z.z_format);
1035 1.1 jtc hasuntil = nfields > i_untilyear;
1036 1.1 jtc if (hasuntil) {
1037 1.1 jtc z.z_untilrule.r_filename = filename;
1038 1.1 jtc z.z_untilrule.r_linenum = linenum;
1039 1.1 jtc rulesub(&z.z_untilrule,
1040 1.1 jtc fields[i_untilyear],
1041 1.1 jtc "only",
1042 1.1 jtc "",
1043 1.1 jtc (nfields > i_untilmonth) ?
1044 1.1 jtc fields[i_untilmonth] : "Jan",
1045 1.1 jtc (nfields > i_untilday) ? fields[i_untilday] : "1",
1046 1.1 jtc (nfields > i_untiltime) ? fields[i_untiltime] : "0");
1047 1.1 jtc z.z_untiltime = rpytime(&z.z_untilrule,
1048 1.1 jtc z.z_untilrule.r_loyear);
1049 1.1 jtc if (iscont && nzones > 0 &&
1050 1.1 jtc z.z_untiltime > min_time &&
1051 1.1 jtc z.z_untiltime < max_time &&
1052 1.1 jtc zones[nzones - 1].z_untiltime > min_time &&
1053 1.1 jtc zones[nzones - 1].z_untiltime < max_time &&
1054 1.1 jtc zones[nzones - 1].z_untiltime >= z.z_untiltime) {
1055 1.25 mlelstv error(_(
1056 1.25 mlelstv "Zone continuation line end time is not after end time of previous line"
1057 1.25 mlelstv ));
1058 1.1 jtc return FALSE;
1059 1.1 jtc }
1060 1.1 jtc }
1061 1.31 christos zones = erealloc(zones, (nzones + 1) * sizeof *zones);
1062 1.1 jtc zones[nzones++] = z;
1063 1.1 jtc /*
1064 1.1 jtc ** If there was an UNTIL field on this line,
1065 1.1 jtc ** there's more information about the zone on the next line.
1066 1.1 jtc */
1067 1.1 jtc return hasuntil;
1068 1.1 jtc }
1069 1.1 jtc
1070 1.1 jtc static void
1071 1.31 christos inleap(char **const fields, const int nfields)
1072 1.31 christos {
1073 1.31 christos const char * cp;
1074 1.31 christos const struct lookup * lp;
1075 1.31 christos int i, j;
1076 1.41 christos zic_t year;
1077 1.41 christos int month, day;
1078 1.41 christos zic_t dayoff, tod;
1079 1.41 christos zic_t t;
1080 1.1 jtc
1081 1.1 jtc if (nfields != LEAP_FIELDS) {
1082 1.5 jtc error(_("wrong number of fields on Leap line"));
1083 1.1 jtc return;
1084 1.1 jtc }
1085 1.1 jtc dayoff = 0;
1086 1.1 jtc cp = fields[LP_YEAR];
1087 1.41 christos if (sscanf(cp, scheck(cp, "%"SCNdZIC), &year) != 1) {
1088 1.25 mlelstv /*
1089 1.25 mlelstv ** Leapin' Lizards!
1090 1.25 mlelstv */
1091 1.25 mlelstv error(_("invalid leaping year"));
1092 1.25 mlelstv return;
1093 1.1 jtc }
1094 1.25 mlelstv if (!leapseen || leapmaxyear < year)
1095 1.25 mlelstv leapmaxyear = year;
1096 1.25 mlelstv if (!leapseen || leapminyear > year)
1097 1.25 mlelstv leapminyear = year;
1098 1.25 mlelstv leapseen = TRUE;
1099 1.1 jtc j = EPOCH_YEAR;
1100 1.1 jtc while (j != year) {
1101 1.1 jtc if (year > j) {
1102 1.1 jtc i = len_years[isleap(j)];
1103 1.1 jtc ++j;
1104 1.1 jtc } else {
1105 1.1 jtc --j;
1106 1.1 jtc i = -len_years[isleap(j)];
1107 1.1 jtc }
1108 1.41 christos dayoff = oadd(dayoff, i);
1109 1.1 jtc }
1110 1.1 jtc if ((lp = byword(fields[LP_MONTH], mon_names)) == NULL) {
1111 1.5 jtc error(_("invalid month name"));
1112 1.1 jtc return;
1113 1.1 jtc }
1114 1.1 jtc month = lp->l_value;
1115 1.1 jtc j = TM_JANUARY;
1116 1.1 jtc while (j != month) {
1117 1.1 jtc i = len_months[isleap(year)][j];
1118 1.41 christos dayoff = oadd(dayoff, i);
1119 1.1 jtc ++j;
1120 1.1 jtc }
1121 1.1 jtc cp = fields[LP_DAY];
1122 1.1 jtc if (sscanf(cp, scheck(cp, "%d"), &day) != 1 ||
1123 1.1 jtc day <= 0 || day > len_months[isleap(year)][month]) {
1124 1.5 jtc error(_("invalid day of month"));
1125 1.1 jtc return;
1126 1.1 jtc }
1127 1.41 christos dayoff = oadd(dayoff, day - 1);
1128 1.25 mlelstv if (dayoff < 0 && !TYPE_SIGNED(zic_t)) {
1129 1.5 jtc error(_("time before zero"));
1130 1.1 jtc return;
1131 1.1 jtc }
1132 1.34 martin if (dayoff < min_time / SECSPERDAY) {
1133 1.20 kleink error(_("time too small"));
1134 1.20 kleink return;
1135 1.20 kleink }
1136 1.34 martin if (dayoff > max_time / SECSPERDAY) {
1137 1.20 kleink error(_("time too large"));
1138 1.1 jtc return;
1139 1.1 jtc }
1140 1.25 mlelstv t = (zic_t) dayoff * SECSPERDAY;
1141 1.5 jtc tod = gethms(fields[LP_TIME], _("invalid time of day"), FALSE);
1142 1.1 jtc cp = fields[LP_CORR];
1143 1.1 jtc {
1144 1.31 christos int positive;
1145 1.1 jtc int count;
1146 1.1 jtc
1147 1.1 jtc if (strcmp(cp, "") == 0) { /* infile() turns "-" into "" */
1148 1.1 jtc positive = FALSE;
1149 1.1 jtc count = 1;
1150 1.1 jtc } else if (strcmp(cp, "--") == 0) {
1151 1.1 jtc positive = FALSE;
1152 1.1 jtc count = 2;
1153 1.1 jtc } else if (strcmp(cp, "+") == 0) {
1154 1.1 jtc positive = TRUE;
1155 1.1 jtc count = 1;
1156 1.1 jtc } else if (strcmp(cp, "++") == 0) {
1157 1.1 jtc positive = TRUE;
1158 1.1 jtc count = 2;
1159 1.1 jtc } else {
1160 1.5 jtc error(_("illegal CORRECTION field on Leap line"));
1161 1.1 jtc return;
1162 1.1 jtc }
1163 1.1 jtc if ((lp = byword(fields[LP_ROLL], leap_types)) == NULL) {
1164 1.25 mlelstv error(_(
1165 1.25 mlelstv "illegal Rolling/Stationary field on Leap line"
1166 1.25 mlelstv ));
1167 1.1 jtc return;
1168 1.1 jtc }
1169 1.1 jtc leapadd(tadd(t, tod), positive, lp->l_value, count);
1170 1.1 jtc }
1171 1.1 jtc }
1172 1.1 jtc
1173 1.1 jtc static void
1174 1.31 christos inlink(char **const fields, const int nfields)
1175 1.1 jtc {
1176 1.1 jtc struct link l;
1177 1.1 jtc
1178 1.1 jtc if (nfields != LINK_FIELDS) {
1179 1.5 jtc error(_("wrong number of fields on Link line"));
1180 1.1 jtc return;
1181 1.1 jtc }
1182 1.1 jtc if (*fields[LF_FROM] == '\0') {
1183 1.5 jtc error(_("blank FROM field on Link line"));
1184 1.1 jtc return;
1185 1.1 jtc }
1186 1.1 jtc if (*fields[LF_TO] == '\0') {
1187 1.5 jtc error(_("blank TO field on Link line"));
1188 1.1 jtc return;
1189 1.1 jtc }
1190 1.1 jtc l.l_filename = filename;
1191 1.1 jtc l.l_linenum = linenum;
1192 1.1 jtc l.l_from = ecpyalloc(fields[LF_FROM]);
1193 1.1 jtc l.l_to = ecpyalloc(fields[LF_TO]);
1194 1.31 christos links = erealloc(links, (nlinks + 1) * sizeof *links);
1195 1.1 jtc links[nlinks++] = l;
1196 1.1 jtc }
1197 1.1 jtc
1198 1.1 jtc static void
1199 1.31 christos rulesub(struct rule *const rp, const char *const loyearp,
1200 1.31 christos const char *const hiyearp, const char *const typep,
1201 1.31 christos const char *const monthp, const char *const dayp, const char *const timep)
1202 1.31 christos {
1203 1.31 christos const struct lookup * lp;
1204 1.31 christos const char * cp;
1205 1.31 christos char * dp;
1206 1.31 christos char * ep;
1207 1.1 jtc
1208 1.1 jtc if ((lp = byword(monthp, mon_names)) == NULL) {
1209 1.5 jtc error(_("invalid month name"));
1210 1.1 jtc return;
1211 1.1 jtc }
1212 1.1 jtc rp->r_month = lp->l_value;
1213 1.1 jtc rp->r_todisstd = FALSE;
1214 1.1 jtc rp->r_todisgmt = FALSE;
1215 1.1 jtc dp = ecpyalloc(timep);
1216 1.1 jtc if (*dp != '\0') {
1217 1.1 jtc ep = dp + strlen(dp) - 1;
1218 1.1 jtc switch (lowerit(*ep)) {
1219 1.1 jtc case 's': /* Standard */
1220 1.1 jtc rp->r_todisstd = TRUE;
1221 1.1 jtc rp->r_todisgmt = FALSE;
1222 1.1 jtc *ep = '\0';
1223 1.1 jtc break;
1224 1.1 jtc case 'w': /* Wall */
1225 1.1 jtc rp->r_todisstd = FALSE;
1226 1.1 jtc rp->r_todisgmt = FALSE;
1227 1.1 jtc *ep = '\0';
1228 1.7 jtc break;
1229 1.1 jtc case 'g': /* Greenwich */
1230 1.1 jtc case 'u': /* Universal */
1231 1.1 jtc case 'z': /* Zulu */
1232 1.1 jtc rp->r_todisstd = TRUE;
1233 1.1 jtc rp->r_todisgmt = TRUE;
1234 1.1 jtc *ep = '\0';
1235 1.1 jtc break;
1236 1.1 jtc }
1237 1.1 jtc }
1238 1.5 jtc rp->r_tod = gethms(dp, _("invalid time of day"), FALSE);
1239 1.31 christos free(dp);
1240 1.1 jtc /*
1241 1.1 jtc ** Year work.
1242 1.1 jtc */
1243 1.1 jtc cp = loyearp;
1244 1.1 jtc lp = byword(cp, begin_years);
1245 1.25 mlelstv rp->r_lowasnum = lp == NULL;
1246 1.25 mlelstv if (!rp->r_lowasnum) switch ((int) lp->l_value) {
1247 1.1 jtc case YR_MINIMUM:
1248 1.41 christos rp->r_loyear = ZIC_MIN;
1249 1.1 jtc break;
1250 1.1 jtc case YR_MAXIMUM:
1251 1.41 christos rp->r_loyear = ZIC_MAX;
1252 1.1 jtc break;
1253 1.1 jtc default: /* "cannot happen" */
1254 1.1 jtc (void) fprintf(stderr,
1255 1.5 jtc _("%s: panic: Invalid l_value %d\n"),
1256 1.1 jtc progname, lp->l_value);
1257 1.25 mlelstv exit(EXIT_FAILURE);
1258 1.41 christos } else if (sscanf(cp, scheck(cp, "%"SCNdZIC), &rp->r_loyear) != 1) {
1259 1.5 jtc error(_("invalid starting year"));
1260 1.1 jtc return;
1261 1.11 jtc }
1262 1.1 jtc cp = hiyearp;
1263 1.25 mlelstv lp = byword(cp, end_years);
1264 1.25 mlelstv rp->r_hiwasnum = lp == NULL;
1265 1.25 mlelstv if (!rp->r_hiwasnum) switch ((int) lp->l_value) {
1266 1.1 jtc case YR_MINIMUM:
1267 1.41 christos rp->r_hiyear = ZIC_MIN;
1268 1.1 jtc break;
1269 1.1 jtc case YR_MAXIMUM:
1270 1.41 christos rp->r_hiyear = ZIC_MAX;
1271 1.1 jtc break;
1272 1.1 jtc case YR_ONLY:
1273 1.1 jtc rp->r_hiyear = rp->r_loyear;
1274 1.1 jtc break;
1275 1.1 jtc default: /* "cannot happen" */
1276 1.1 jtc (void) fprintf(stderr,
1277 1.5 jtc _("%s: panic: Invalid l_value %d\n"),
1278 1.1 jtc progname, lp->l_value);
1279 1.25 mlelstv exit(EXIT_FAILURE);
1280 1.41 christos } else if (sscanf(cp, scheck(cp, "%"SCNdZIC), &rp->r_hiyear) != 1) {
1281 1.5 jtc error(_("invalid ending year"));
1282 1.1 jtc return;
1283 1.11 jtc }
1284 1.1 jtc if (rp->r_loyear > rp->r_hiyear) {
1285 1.5 jtc error(_("starting year greater than ending year"));
1286 1.1 jtc return;
1287 1.1 jtc }
1288 1.1 jtc if (*typep == '\0')
1289 1.1 jtc rp->r_yrtype = NULL;
1290 1.1 jtc else {
1291 1.1 jtc if (rp->r_loyear == rp->r_hiyear) {
1292 1.5 jtc error(_("typed single year"));
1293 1.1 jtc return;
1294 1.1 jtc }
1295 1.1 jtc rp->r_yrtype = ecpyalloc(typep);
1296 1.1 jtc }
1297 1.1 jtc /*
1298 1.1 jtc ** Day work.
1299 1.1 jtc ** Accept things such as:
1300 1.1 jtc ** 1
1301 1.1 jtc ** last-Sunday
1302 1.1 jtc ** Sun<=20
1303 1.1 jtc ** Sun>=7
1304 1.1 jtc */
1305 1.1 jtc dp = ecpyalloc(dayp);
1306 1.1 jtc if ((lp = byword(dp, lasts)) != NULL) {
1307 1.1 jtc rp->r_dycode = DC_DOWLEQ;
1308 1.1 jtc rp->r_wday = lp->l_value;
1309 1.1 jtc rp->r_dayofmonth = len_months[1][rp->r_month];
1310 1.1 jtc } else {
1311 1.1 jtc if ((ep = strchr(dp, '<')) != 0)
1312 1.1 jtc rp->r_dycode = DC_DOWLEQ;
1313 1.1 jtc else if ((ep = strchr(dp, '>')) != 0)
1314 1.1 jtc rp->r_dycode = DC_DOWGEQ;
1315 1.1 jtc else {
1316 1.1 jtc ep = dp;
1317 1.1 jtc rp->r_dycode = DC_DOM;
1318 1.1 jtc }
1319 1.1 jtc if (rp->r_dycode != DC_DOM) {
1320 1.1 jtc *ep++ = 0;
1321 1.1 jtc if (*ep++ != '=') {
1322 1.5 jtc error(_("invalid day of month"));
1323 1.31 christos free(dp);
1324 1.1 jtc return;
1325 1.1 jtc }
1326 1.1 jtc if ((lp = byword(dp, wday_names)) == NULL) {
1327 1.5 jtc error(_("invalid weekday name"));
1328 1.31 christos free(dp);
1329 1.1 jtc return;
1330 1.1 jtc }
1331 1.1 jtc rp->r_wday = lp->l_value;
1332 1.1 jtc }
1333 1.1 jtc if (sscanf(ep, scheck(ep, "%d"), &rp->r_dayofmonth) != 1 ||
1334 1.1 jtc rp->r_dayofmonth <= 0 ||
1335 1.1 jtc (rp->r_dayofmonth > len_months[1][rp->r_month])) {
1336 1.5 jtc error(_("invalid day of month"));
1337 1.31 christos free(dp);
1338 1.1 jtc return;
1339 1.1 jtc }
1340 1.1 jtc }
1341 1.31 christos free(dp);
1342 1.1 jtc }
1343 1.1 jtc
1344 1.1 jtc static void
1345 1.38 christos convert(const zic_t val, char *const buf)
1346 1.1 jtc {
1347 1.31 christos int i;
1348 1.31 christos int shift;
1349 1.31 christos unsigned char *const b = (unsigned char *) buf;
1350 1.1 jtc
1351 1.1 jtc for (i = 0, shift = 24; i < 4; ++i, shift -= 8)
1352 1.31 christos b[i] = val >> shift;
1353 1.1 jtc }
1354 1.1 jtc
1355 1.1 jtc static void
1356 1.31 christos convert64(const zic_t val, char *const buf)
1357 1.25 mlelstv {
1358 1.31 christos int i;
1359 1.31 christos int shift;
1360 1.31 christos unsigned char *const b = (unsigned char *) buf;
1361 1.25 mlelstv
1362 1.25 mlelstv for (i = 0, shift = 56; i < 8; ++i, shift -= 8)
1363 1.31 christos b[i] = val >> shift;
1364 1.25 mlelstv }
1365 1.25 mlelstv
1366 1.25 mlelstv static void
1367 1.38 christos puttzcode(const zic_t val, FILE *const fp)
1368 1.1 jtc {
1369 1.1 jtc char buf[4];
1370 1.1 jtc
1371 1.1 jtc convert(val, buf);
1372 1.31 christos (void) fwrite(buf, sizeof buf, (size_t) 1, fp);
1373 1.1 jtc }
1374 1.1 jtc
1375 1.25 mlelstv static void
1376 1.31 christos puttzcode64(const zic_t val, FILE *const fp)
1377 1.25 mlelstv {
1378 1.25 mlelstv char buf[8];
1379 1.25 mlelstv
1380 1.25 mlelstv convert64(val, buf);
1381 1.31 christos (void) fwrite(buf, sizeof buf, (size_t) 1, fp);
1382 1.25 mlelstv }
1383 1.25 mlelstv
1384 1.5 jtc static int
1385 1.31 christos atcomp(const void *avp, const void *bvp)
1386 1.5 jtc {
1387 1.25 mlelstv const zic_t a = ((const struct attype *) avp)->at;
1388 1.25 mlelstv const zic_t b = ((const struct attype *) bvp)->at;
1389 1.25 mlelstv
1390 1.25 mlelstv return (a < b) ? -1 : (a > b);
1391 1.25 mlelstv }
1392 1.25 mlelstv
1393 1.25 mlelstv static int
1394 1.31 christos is32(const zic_t x)
1395 1.25 mlelstv {
1396 1.25 mlelstv return INT32_MIN <= x && x <= INT32_MAX;
1397 1.5 jtc }
1398 1.5 jtc
1399 1.1 jtc static void
1400 1.43 christos writezone(const char *const name, const char *const string, char version)
1401 1.31 christos {
1402 1.31 christos FILE * fp;
1403 1.31 christos int i, j;
1404 1.31 christos int leapcnt32, leapi32;
1405 1.31 christos int timecnt32, timei32;
1406 1.31 christos int pass;
1407 1.25 mlelstv static char * fullname;
1408 1.25 mlelstv static const struct tzhead tzh0;
1409 1.25 mlelstv static struct tzhead tzh;
1410 1.25 mlelstv zic_t ats[TZ_MAX_TIMES];
1411 1.25 mlelstv unsigned char types[TZ_MAX_TIMES];
1412 1.5 jtc
1413 1.5 jtc /*
1414 1.5 jtc ** Sort.
1415 1.5 jtc */
1416 1.5 jtc if (timecnt > 1)
1417 1.31 christos (void) qsort(attypes, (size_t) timecnt, sizeof *attypes,
1418 1.31 christos atcomp);
1419 1.5 jtc /*
1420 1.5 jtc ** Optimize.
1421 1.5 jtc */
1422 1.5 jtc {
1423 1.5 jtc int fromi;
1424 1.5 jtc int toi;
1425 1.1 jtc
1426 1.5 jtc toi = 0;
1427 1.5 jtc fromi = 0;
1428 1.7 jtc while (fromi < timecnt && attypes[fromi].at < min_time)
1429 1.7 jtc ++fromi;
1430 1.41 christos /*
1431 1.41 christos ** Remember that type 0 is reserved.
1432 1.41 christos */
1433 1.41 christos if (isdsts[1] == 0)
1434 1.41 christos while (fromi < timecnt && attypes[fromi].type == 1)
1435 1.5 jtc ++fromi; /* handled by default rule */
1436 1.5 jtc for ( ; fromi < timecnt; ++fromi) {
1437 1.25 mlelstv if (toi != 0 && ((attypes[fromi].at +
1438 1.25 mlelstv gmtoffs[attypes[toi - 1].type]) <=
1439 1.25 mlelstv (attypes[toi - 1].at + gmtoffs[toi == 1 ? 0
1440 1.25 mlelstv : attypes[toi - 2].type]))) {
1441 1.25 mlelstv attypes[toi - 1].type =
1442 1.25 mlelstv attypes[fromi].type;
1443 1.25 mlelstv continue;
1444 1.5 jtc }
1445 1.5 jtc if (toi == 0 ||
1446 1.5 jtc attypes[toi - 1].type != attypes[fromi].type)
1447 1.5 jtc attypes[toi++] = attypes[fromi];
1448 1.5 jtc }
1449 1.5 jtc timecnt = toi;
1450 1.5 jtc }
1451 1.5 jtc /*
1452 1.5 jtc ** Transfer.
1453 1.5 jtc */
1454 1.5 jtc for (i = 0; i < timecnt; ++i) {
1455 1.5 jtc ats[i] = attypes[i].at;
1456 1.5 jtc types[i] = attypes[i].type;
1457 1.5 jtc }
1458 1.25 mlelstv /*
1459 1.25 mlelstv ** Correct for leap seconds.
1460 1.25 mlelstv */
1461 1.25 mlelstv for (i = 0; i < timecnt; ++i) {
1462 1.25 mlelstv j = leapcnt;
1463 1.25 mlelstv while (--j >= 0)
1464 1.25 mlelstv if (ats[i] > trans[j] - corr[j]) {
1465 1.25 mlelstv ats[i] = tadd(ats[i], corr[j]);
1466 1.25 mlelstv break;
1467 1.25 mlelstv }
1468 1.25 mlelstv }
1469 1.25 mlelstv /*
1470 1.25 mlelstv ** Figure out 32-bit-limited starts and counts.
1471 1.25 mlelstv */
1472 1.25 mlelstv timecnt32 = timecnt;
1473 1.25 mlelstv timei32 = 0;
1474 1.25 mlelstv leapcnt32 = leapcnt;
1475 1.25 mlelstv leapi32 = 0;
1476 1.25 mlelstv while (timecnt32 > 0 && !is32(ats[timecnt32 - 1]))
1477 1.25 mlelstv --timecnt32;
1478 1.25 mlelstv while (timecnt32 > 0 && !is32(ats[timei32])) {
1479 1.25 mlelstv --timecnt32;
1480 1.25 mlelstv ++timei32;
1481 1.25 mlelstv }
1482 1.25 mlelstv while (leapcnt32 > 0 && !is32(trans[leapcnt32 - 1]))
1483 1.25 mlelstv --leapcnt32;
1484 1.25 mlelstv while (leapcnt32 > 0 && !is32(trans[leapi32])) {
1485 1.25 mlelstv --leapcnt32;
1486 1.25 mlelstv ++leapi32;
1487 1.25 mlelstv }
1488 1.1 jtc fullname = erealloc(fullname,
1489 1.31 christos strlen(directory) + 1 + strlen(name) + 1);
1490 1.7 jtc (void) sprintf(fullname, "%s/%s", directory, name); /* XXX: sprintf is safe */
1491 1.7 jtc /*
1492 1.7 jtc ** Remove old file, if any, to snap links.
1493 1.7 jtc */
1494 1.7 jtc if (!itsdir(fullname) && remove(fullname) != 0 && errno != ENOENT) {
1495 1.7 jtc const char *e = strerror(errno);
1496 1.7 jtc
1497 1.7 jtc (void) fprintf(stderr, _("%s: Can't remove %s: %s\n"),
1498 1.7 jtc progname, fullname, e);
1499 1.25 mlelstv exit(EXIT_FAILURE);
1500 1.7 jtc }
1501 1.1 jtc if ((fp = fopen(fullname, "wb")) == NULL) {
1502 1.1 jtc if (mkdirs(fullname) != 0)
1503 1.25 mlelstv exit(EXIT_FAILURE);
1504 1.1 jtc if ((fp = fopen(fullname, "wb")) == NULL) {
1505 1.5 jtc const char *e = strerror(errno);
1506 1.7 jtc
1507 1.5 jtc (void) fprintf(stderr, _("%s: Can't create %s: %s\n"),
1508 1.5 jtc progname, fullname, e);
1509 1.25 mlelstv exit(EXIT_FAILURE);
1510 1.1 jtc }
1511 1.1 jtc }
1512 1.25 mlelstv for (pass = 1; pass <= 2; ++pass) {
1513 1.31 christos int thistimei, thistimecnt;
1514 1.31 christos int thisleapi, thisleapcnt;
1515 1.31 christos int thistimelim, thisleaplim;
1516 1.25 mlelstv int writetype[TZ_MAX_TIMES];
1517 1.25 mlelstv int typemap[TZ_MAX_TYPES];
1518 1.31 christos int thistypecnt;
1519 1.25 mlelstv char thischars[TZ_MAX_CHARS];
1520 1.25 mlelstv char thischarcnt;
1521 1.25 mlelstv int indmap[TZ_MAX_CHARS];
1522 1.25 mlelstv
1523 1.25 mlelstv if (pass == 1) {
1524 1.25 mlelstv thistimei = timei32;
1525 1.25 mlelstv thistimecnt = timecnt32;
1526 1.25 mlelstv thisleapi = leapi32;
1527 1.25 mlelstv thisleapcnt = leapcnt32;
1528 1.25 mlelstv } else {
1529 1.25 mlelstv thistimei = 0;
1530 1.25 mlelstv thistimecnt = timecnt;
1531 1.25 mlelstv thisleapi = 0;
1532 1.25 mlelstv thisleapcnt = leapcnt;
1533 1.25 mlelstv }
1534 1.25 mlelstv thistimelim = thistimei + thistimecnt;
1535 1.25 mlelstv thisleaplim = thisleapi + thisleapcnt;
1536 1.41 christos /*
1537 1.41 christos ** Remember that type 0 is reserved.
1538 1.41 christos */
1539 1.41 christos writetype[0] = FALSE;
1540 1.41 christos for (i = 1; i < typecnt; ++i)
1541 1.25 mlelstv writetype[i] = thistimecnt == timecnt;
1542 1.25 mlelstv if (thistimecnt == 0) {
1543 1.25 mlelstv /*
1544 1.25 mlelstv ** No transition times fall in the current
1545 1.25 mlelstv ** (32- or 64-bit) window.
1546 1.25 mlelstv */
1547 1.25 mlelstv if (typecnt != 0)
1548 1.25 mlelstv writetype[typecnt - 1] = TRUE;
1549 1.25 mlelstv } else {
1550 1.25 mlelstv for (i = thistimei - 1; i < thistimelim; ++i)
1551 1.25 mlelstv if (i >= 0)
1552 1.25 mlelstv writetype[types[i]] = TRUE;
1553 1.25 mlelstv /*
1554 1.25 mlelstv ** For America/Godthab and Antarctica/Palmer
1555 1.25 mlelstv */
1556 1.41 christos /*
1557 1.41 christos ** Remember that type 0 is reserved.
1558 1.41 christos */
1559 1.25 mlelstv if (thistimei == 0)
1560 1.41 christos writetype[1] = TRUE;
1561 1.25 mlelstv }
1562 1.29 christos #ifndef LEAVE_SOME_PRE_2011_SYSTEMS_IN_THE_LURCH
1563 1.29 christos /*
1564 1.29 christos ** For some pre-2011 systems: if the last-to-be-written
1565 1.29 christos ** standard (or daylight) type has an offset different from the
1566 1.29 christos ** most recently used offset,
1567 1.29 christos ** append an (unused) copy of the most recently used type
1568 1.29 christos ** (to help get global "altzone" and "timezone" variables
1569 1.29 christos ** set correctly).
1570 1.29 christos */
1571 1.29 christos {
1572 1.31 christos int mrudst, mrustd, hidst, histd, type;
1573 1.29 christos
1574 1.29 christos hidst = histd = mrudst = mrustd = -1;
1575 1.42 christos for (i = thistimei; i < thistimelim; ++i) {
1576 1.42 christos if (i < 0)
1577 1.42 christos continue;
1578 1.29 christos if (isdsts[types[i]])
1579 1.29 christos mrudst = types[i];
1580 1.29 christos else mrustd = types[i];
1581 1.42 christos }
1582 1.29 christos for (i = 0; i < typecnt; ++i)
1583 1.29 christos if (writetype[i]) {
1584 1.29 christos if (isdsts[i])
1585 1.29 christos hidst = i;
1586 1.29 christos else histd = i;
1587 1.29 christos }
1588 1.29 christos if (hidst >= 0 && mrudst >= 0 && hidst != mrudst &&
1589 1.29 christos gmtoffs[hidst] != gmtoffs[mrudst]) {
1590 1.29 christos isdsts[mrudst] = -1;
1591 1.29 christos type = addtype(gmtoffs[mrudst],
1592 1.29 christos &chars[abbrinds[mrudst]],
1593 1.29 christos TRUE,
1594 1.29 christos ttisstds[mrudst],
1595 1.29 christos ttisgmts[mrudst]);
1596 1.29 christos isdsts[mrudst] = TRUE;
1597 1.29 christos writetype[type] = TRUE;
1598 1.29 christos }
1599 1.29 christos if (histd >= 0 && mrustd >= 0 && histd != mrustd &&
1600 1.29 christos gmtoffs[histd] != gmtoffs[mrustd]) {
1601 1.29 christos isdsts[mrustd] = -1;
1602 1.29 christos type = addtype(gmtoffs[mrustd],
1603 1.29 christos &chars[abbrinds[mrustd]],
1604 1.29 christos FALSE,
1605 1.29 christos ttisstds[mrustd],
1606 1.29 christos ttisgmts[mrustd]);
1607 1.29 christos isdsts[mrustd] = FALSE;
1608 1.29 christos writetype[type] = TRUE;
1609 1.29 christos }
1610 1.29 christos }
1611 1.29 christos #endif /* !defined LEAVE_SOME_PRE_2011_SYSTEMS_IN_THE_LURCH */
1612 1.25 mlelstv thistypecnt = 0;
1613 1.41 christos /*
1614 1.41 christos ** Potentially, set type 0 to that of lowest-valued time.
1615 1.41 christos */
1616 1.41 christos if (thistimei > 0) {
1617 1.41 christos for (i = 1; i < typecnt; ++i)
1618 1.41 christos if (writetype[i] && !isdsts[i])
1619 1.41 christos break;
1620 1.41 christos if (i != types[thistimei - 1]) {
1621 1.41 christos i = types[thistimei - 1];
1622 1.41 christos gmtoffs[0] = gmtoffs[i];
1623 1.41 christos isdsts[0] = isdsts[i];
1624 1.41 christos ttisstds[0] = ttisstds[i];
1625 1.41 christos ttisgmts[0] = ttisgmts[i];
1626 1.41 christos abbrinds[0] = abbrinds[i];
1627 1.41 christos writetype[0] = TRUE;
1628 1.41 christos writetype[i] = FALSE;
1629 1.41 christos }
1630 1.41 christos }
1631 1.25 mlelstv for (i = 0; i < typecnt; ++i)
1632 1.41 christos typemap[i] = writetype[i] ? thistypecnt++ : 0;
1633 1.36 christos for (i = 0; i < (int)(sizeof indmap / sizeof indmap[0]); ++i)
1634 1.25 mlelstv indmap[i] = -1;
1635 1.25 mlelstv thischarcnt = 0;
1636 1.25 mlelstv for (i = 0; i < typecnt; ++i) {
1637 1.31 christos char * thisabbr;
1638 1.25 mlelstv
1639 1.25 mlelstv if (!writetype[i])
1640 1.25 mlelstv continue;
1641 1.25 mlelstv if (indmap[abbrinds[i]] >= 0)
1642 1.25 mlelstv continue;
1643 1.25 mlelstv thisabbr = &chars[abbrinds[i]];
1644 1.25 mlelstv for (j = 0; j < thischarcnt; ++j)
1645 1.25 mlelstv if (strcmp(&thischars[j], thisabbr) == 0)
1646 1.25 mlelstv break;
1647 1.25 mlelstv if (j == thischarcnt) {
1648 1.25 mlelstv (void) strcpy(&thischars[(int) thischarcnt],
1649 1.25 mlelstv thisabbr);
1650 1.25 mlelstv thischarcnt += strlen(thisabbr) + 1;
1651 1.25 mlelstv }
1652 1.25 mlelstv indmap[abbrinds[i]] = j;
1653 1.25 mlelstv }
1654 1.31 christos #define DO(field) (void) fwrite(tzh.field, \
1655 1.31 christos sizeof tzh.field, (size_t) 1, fp)
1656 1.25 mlelstv tzh = tzh0;
1657 1.25 mlelstv (void) strncpy(tzh.tzh_magic, TZ_MAGIC, sizeof tzh.tzh_magic);
1658 1.43 christos tzh.tzh_version[0] = version;
1659 1.41 christos convert(thistypecnt, tzh.tzh_ttisgmtcnt);
1660 1.41 christos convert(thistypecnt, tzh.tzh_ttisstdcnt);
1661 1.41 christos convert(thisleapcnt, tzh.tzh_leapcnt);
1662 1.41 christos convert(thistimecnt, tzh.tzh_timecnt);
1663 1.41 christos convert(thistypecnt, tzh.tzh_typecnt);
1664 1.41 christos convert(thischarcnt, tzh.tzh_charcnt);
1665 1.25 mlelstv DO(tzh_magic);
1666 1.25 mlelstv DO(tzh_version);
1667 1.25 mlelstv DO(tzh_reserved);
1668 1.25 mlelstv DO(tzh_ttisgmtcnt);
1669 1.25 mlelstv DO(tzh_ttisstdcnt);
1670 1.25 mlelstv DO(tzh_leapcnt);
1671 1.25 mlelstv DO(tzh_timecnt);
1672 1.25 mlelstv DO(tzh_typecnt);
1673 1.25 mlelstv DO(tzh_charcnt);
1674 1.1 jtc #undef DO
1675 1.25 mlelstv for (i = thistimei; i < thistimelim; ++i)
1676 1.25 mlelstv if (pass == 1)
1677 1.31 christos puttzcode(ats[i], fp);
1678 1.25 mlelstv else puttzcode64(ats[i], fp);
1679 1.25 mlelstv for (i = thistimei; i < thistimelim; ++i) {
1680 1.25 mlelstv unsigned char uc;
1681 1.25 mlelstv
1682 1.25 mlelstv uc = typemap[types[i]];
1683 1.31 christos (void) fwrite(&uc, sizeof uc, (size_t) 1, fp);
1684 1.25 mlelstv }
1685 1.25 mlelstv for (i = 0; i < typecnt; ++i)
1686 1.25 mlelstv if (writetype[i]) {
1687 1.25 mlelstv puttzcode(gmtoffs[i], fp);
1688 1.25 mlelstv (void) putc(isdsts[i], fp);
1689 1.25 mlelstv (void) putc((unsigned char) indmap[abbrinds[i]], fp);
1690 1.1 jtc }
1691 1.25 mlelstv if (thischarcnt != 0)
1692 1.31 christos (void) fwrite(thischars, sizeof thischars[0],
1693 1.25 mlelstv (size_t) thischarcnt, fp);
1694 1.25 mlelstv for (i = thisleapi; i < thisleaplim; ++i) {
1695 1.31 christos zic_t todo;
1696 1.25 mlelstv
1697 1.25 mlelstv if (roll[i]) {
1698 1.25 mlelstv if (timecnt == 0 || trans[i] < ats[0]) {
1699 1.25 mlelstv j = 0;
1700 1.25 mlelstv while (isdsts[j])
1701 1.25 mlelstv if (++j >= typecnt) {
1702 1.25 mlelstv j = 0;
1703 1.25 mlelstv break;
1704 1.25 mlelstv }
1705 1.25 mlelstv } else {
1706 1.25 mlelstv j = 1;
1707 1.25 mlelstv while (j < timecnt &&
1708 1.25 mlelstv trans[i] >= ats[j])
1709 1.25 mlelstv ++j;
1710 1.25 mlelstv j = types[j - 1];
1711 1.25 mlelstv }
1712 1.25 mlelstv todo = tadd(trans[i], -gmtoffs[j]);
1713 1.25 mlelstv } else todo = trans[i];
1714 1.25 mlelstv if (pass == 1)
1715 1.41 christos puttzcode(todo, fp);
1716 1.25 mlelstv else puttzcode64(todo, fp);
1717 1.25 mlelstv puttzcode(corr[i], fp);
1718 1.25 mlelstv }
1719 1.25 mlelstv for (i = 0; i < typecnt; ++i)
1720 1.25 mlelstv if (writetype[i])
1721 1.25 mlelstv (void) putc(ttisstds[i], fp);
1722 1.25 mlelstv for (i = 0; i < typecnt; ++i)
1723 1.25 mlelstv if (writetype[i])
1724 1.25 mlelstv (void) putc(ttisgmts[i], fp);
1725 1.1 jtc }
1726 1.25 mlelstv (void) fprintf(fp, "\n%s\n", string);
1727 1.1 jtc if (ferror(fp) || fclose(fp)) {
1728 1.5 jtc (void) fprintf(stderr, _("%s: Error writing %s\n"),
1729 1.5 jtc progname, fullname);
1730 1.25 mlelstv exit(EXIT_FAILURE);
1731 1.1 jtc }
1732 1.1 jtc }
1733 1.1 jtc
1734 1.1 jtc static void
1735 1.31 christos doabbr(char *const abbr, const int abbrlen, const char *const format,
1736 1.31 christos const char *const letters, const int isdst, const int doquotes)
1737 1.31 christos {
1738 1.31 christos char * cp;
1739 1.31 christos char * slashp;
1740 1.31 christos int len;
1741 1.25 mlelstv
1742 1.25 mlelstv slashp = strchr(format, '/');
1743 1.25 mlelstv if (slashp == NULL) {
1744 1.1 jtc if (letters == NULL)
1745 1.25 mlelstv (void) strlcpy(abbr, format, abbrlen);
1746 1.25 mlelstv else (void) snprintf(abbr, abbrlen, format, letters);
1747 1.25 mlelstv } else if (isdst) {
1748 1.25 mlelstv (void) strlcpy(abbr, slashp + 1, abbrlen);
1749 1.25 mlelstv } else {
1750 1.25 mlelstv if (slashp > format)
1751 1.31 christos (void) strncpy(abbr, format, (size_t)(slashp - format));
1752 1.25 mlelstv abbr[slashp - format] = '\0';
1753 1.25 mlelstv }
1754 1.25 mlelstv if (!doquotes)
1755 1.25 mlelstv return;
1756 1.25 mlelstv for (cp = abbr; *cp != '\0'; ++cp)
1757 1.25 mlelstv if (strchr("ABCDEFGHIJKLMNOPQRSTUVWXYZ", *cp) == NULL &&
1758 1.25 mlelstv strchr("abcdefghijklmnopqrstuvwxyz", *cp) == NULL)
1759 1.25 mlelstv break;
1760 1.25 mlelstv len = strlen(abbr);
1761 1.25 mlelstv if (len > 0 && *cp == '\0')
1762 1.25 mlelstv return;
1763 1.25 mlelstv abbr[len + 2] = '\0';
1764 1.25 mlelstv abbr[len + 1] = '>';
1765 1.25 mlelstv for ( ; len > 0; --len)
1766 1.25 mlelstv abbr[len] = abbr[len - 1];
1767 1.25 mlelstv abbr[0] = '<';
1768 1.25 mlelstv }
1769 1.25 mlelstv
1770 1.25 mlelstv static void
1771 1.41 christos updateminmax(const zic_t x)
1772 1.25 mlelstv {
1773 1.25 mlelstv if (min_year > x)
1774 1.25 mlelstv min_year = x;
1775 1.25 mlelstv if (max_year < x)
1776 1.25 mlelstv max_year = x;
1777 1.25 mlelstv }
1778 1.25 mlelstv
1779 1.25 mlelstv static int
1780 1.38 christos stringoffset(char *result, zic_t offset)
1781 1.31 christos {
1782 1.31 christos int hours;
1783 1.31 christos int minutes;
1784 1.31 christos int seconds;
1785 1.25 mlelstv
1786 1.25 mlelstv result[0] = '\0';
1787 1.25 mlelstv if (offset < 0) {
1788 1.25 mlelstv (void) strcpy(result, "-");
1789 1.25 mlelstv offset = -offset;
1790 1.25 mlelstv }
1791 1.25 mlelstv seconds = offset % SECSPERMIN;
1792 1.25 mlelstv offset /= SECSPERMIN;
1793 1.25 mlelstv minutes = offset % MINSPERHOUR;
1794 1.25 mlelstv offset /= MINSPERHOUR;
1795 1.25 mlelstv hours = offset;
1796 1.43 christos if (hours >= HOURSPERDAY * DAYSPERWEEK) {
1797 1.25 mlelstv result[0] = '\0';
1798 1.25 mlelstv return -1;
1799 1.25 mlelstv }
1800 1.25 mlelstv (void) sprintf(end(result), "%d", hours);
1801 1.25 mlelstv if (minutes != 0 || seconds != 0) {
1802 1.25 mlelstv (void) sprintf(end(result), ":%02d", minutes);
1803 1.25 mlelstv if (seconds != 0)
1804 1.25 mlelstv (void) sprintf(end(result), ":%02d", seconds);
1805 1.25 mlelstv }
1806 1.25 mlelstv return 0;
1807 1.25 mlelstv }
1808 1.25 mlelstv
1809 1.25 mlelstv static int
1810 1.38 christos stringrule(char *result, const struct rule *const rp, const zic_t dstoff,
1811 1.38 christos const zic_t gmtoff)
1812 1.25 mlelstv {
1813 1.43 christos zic_t tod = rp->r_tod;
1814 1.43 christos int compat = 0;
1815 1.25 mlelstv
1816 1.25 mlelstv result = end(result);
1817 1.25 mlelstv if (rp->r_dycode == DC_DOM) {
1818 1.31 christos int month, total;
1819 1.25 mlelstv
1820 1.25 mlelstv if (rp->r_dayofmonth == 29 && rp->r_month == TM_FEBRUARY)
1821 1.25 mlelstv return -1;
1822 1.25 mlelstv total = 0;
1823 1.25 mlelstv for (month = 0; month < rp->r_month; ++month)
1824 1.25 mlelstv total += len_months[0][month];
1825 1.43 christos /* Omit the "J" in Jan and Feb, as that's shorter. */
1826 1.43 christos if (rp->r_month <= 1)
1827 1.43 christos (void) sprintf(result, "%d", total + rp->r_dayofmonth - 1);
1828 1.43 christos else
1829 1.43 christos (void) sprintf(result, "J%d", total + rp->r_dayofmonth);
1830 1.25 mlelstv } else {
1831 1.31 christos int week;
1832 1.43 christos int wday = rp->r_wday;
1833 1.43 christos int wdayoff;
1834 1.25 mlelstv
1835 1.25 mlelstv if (rp->r_dycode == DC_DOWGEQ) {
1836 1.43 christos wdayoff = (rp->r_dayofmonth - 1) % DAYSPERWEEK;
1837 1.43 christos if (wdayoff)
1838 1.43 christos compat = 2013;
1839 1.43 christos wday -= wdayoff;
1840 1.43 christos tod += wdayoff * SECSPERDAY;
1841 1.43 christos week = 1 + (rp->r_dayofmonth - 1) / DAYSPERWEEK;
1842 1.25 mlelstv } else if (rp->r_dycode == DC_DOWLEQ) {
1843 1.25 mlelstv if (rp->r_dayofmonth == len_months[1][rp->r_month])
1844 1.25 mlelstv week = 5;
1845 1.25 mlelstv else {
1846 1.43 christos wdayoff = rp->r_dayofmonth % DAYSPERWEEK;
1847 1.43 christos if (wdayoff)
1848 1.43 christos compat = 2013;
1849 1.43 christos wday -= wdayoff;
1850 1.43 christos tod += wdayoff * SECSPERDAY;
1851 1.29 christos week = rp->r_dayofmonth / DAYSPERWEEK;
1852 1.25 mlelstv }
1853 1.25 mlelstv } else return -1; /* "cannot happen" */
1854 1.43 christos if (wday < 0)
1855 1.43 christos wday += DAYSPERWEEK;
1856 1.25 mlelstv (void) sprintf(result, "M%d.%d.%d",
1857 1.43 christos rp->r_month + 1, week, wday);
1858 1.25 mlelstv }
1859 1.25 mlelstv if (rp->r_todisgmt)
1860 1.25 mlelstv tod += gmtoff;
1861 1.25 mlelstv if (rp->r_todisstd && rp->r_stdoff == 0)
1862 1.25 mlelstv tod += dstoff;
1863 1.25 mlelstv if (tod != 2 * SECSPERMIN * MINSPERHOUR) {
1864 1.25 mlelstv (void) strcat(result, "/");
1865 1.25 mlelstv if (stringoffset(end(result), tod) != 0)
1866 1.25 mlelstv return -1;
1867 1.43 christos if (tod < 0) {
1868 1.43 christos if (compat < 2013)
1869 1.43 christos compat = 2013;
1870 1.43 christos } else if (SECSPERDAY <= tod) {
1871 1.43 christos if (compat < 1994)
1872 1.43 christos compat = 1994;
1873 1.43 christos }
1874 1.25 mlelstv }
1875 1.43 christos return compat;
1876 1.43 christos }
1877 1.43 christos
1878 1.43 christos static int
1879 1.43 christos rule_cmp(struct rule const *a, struct rule const *b)
1880 1.43 christos {
1881 1.43 christos if (!a)
1882 1.43 christos return -!!b;
1883 1.43 christos if (!b)
1884 1.43 christos return 1;
1885 1.43 christos if (a->r_hiyear != b->r_hiyear)
1886 1.43 christos return a->r_hiyear < b->r_hiyear ? -1 : 1;
1887 1.43 christos if (a->r_month - b->r_month != 0)
1888 1.43 christos return a->r_month - b->r_month;
1889 1.43 christos return a->r_dayofmonth - b->r_dayofmonth;
1890 1.25 mlelstv }
1891 1.25 mlelstv
1892 1.43 christos enum { YEAR_BY_YEAR_ZONE = 1 };
1893 1.43 christos
1894 1.43 christos static int
1895 1.31 christos stringzone(char *result, const int resultlen, const struct zone *const zpfirst,
1896 1.31 christos const int zonecount)
1897 1.31 christos {
1898 1.31 christos const struct zone * zp;
1899 1.31 christos struct rule * rp;
1900 1.31 christos struct rule * stdrp;
1901 1.31 christos struct rule * dstrp;
1902 1.31 christos int i;
1903 1.31 christos const char * abbrvar;
1904 1.43 christos int compat = 0;
1905 1.43 christos int c;
1906 1.43 christos struct rule stdr, dstr;
1907 1.25 mlelstv
1908 1.25 mlelstv result[0] = '\0';
1909 1.25 mlelstv zp = zpfirst + zonecount - 1;
1910 1.25 mlelstv stdrp = dstrp = NULL;
1911 1.25 mlelstv for (i = 0; i < zp->z_nrules; ++i) {
1912 1.25 mlelstv rp = &zp->z_rules[i];
1913 1.41 christos if (rp->r_hiwasnum || rp->r_hiyear != ZIC_MAX)
1914 1.25 mlelstv continue;
1915 1.25 mlelstv if (rp->r_yrtype != NULL)
1916 1.25 mlelstv continue;
1917 1.25 mlelstv if (rp->r_stdoff == 0) {
1918 1.25 mlelstv if (stdrp == NULL)
1919 1.25 mlelstv stdrp = rp;
1920 1.43 christos else return -1;
1921 1.25 mlelstv } else {
1922 1.25 mlelstv if (dstrp == NULL)
1923 1.25 mlelstv dstrp = rp;
1924 1.43 christos else return -1;
1925 1.25 mlelstv }
1926 1.25 mlelstv }
1927 1.25 mlelstv if (stdrp == NULL && dstrp == NULL) {
1928 1.25 mlelstv /*
1929 1.25 mlelstv ** There are no rules running through "max".
1930 1.43 christos ** Find the latest std rule in stdabbrrp
1931 1.43 christos ** and latest rule of any type in stdrp.
1932 1.25 mlelstv */
1933 1.43 christos struct rule *stdabbrrp = NULL;
1934 1.25 mlelstv for (i = 0; i < zp->z_nrules; ++i) {
1935 1.25 mlelstv rp = &zp->z_rules[i];
1936 1.43 christos if (rp->r_stdoff == 0 && rule_cmp(stdabbrrp, rp) < 0)
1937 1.43 christos stdabbrrp = rp;
1938 1.43 christos if (rule_cmp(stdrp, rp) < 0)
1939 1.43 christos stdrp = rp;
1940 1.25 mlelstv }
1941 1.25 mlelstv /*
1942 1.25 mlelstv ** Horrid special case: if year is 2037,
1943 1.25 mlelstv ** presume this is a zone handled on a year-by-year basis;
1944 1.25 mlelstv ** do not try to apply a rule to the zone.
1945 1.25 mlelstv */
1946 1.25 mlelstv if (stdrp != NULL && stdrp->r_hiyear == 2037)
1947 1.43 christos return YEAR_BY_YEAR_ZONE;
1948 1.43 christos
1949 1.43 christos if (stdrp != NULL && stdrp->r_stdoff != 0) {
1950 1.43 christos /* Perpetual DST. */
1951 1.43 christos dstr.r_month = TM_JANUARY;
1952 1.43 christos dstr.r_dycode = DC_DOM;
1953 1.43 christos dstr.r_dayofmonth = 1;
1954 1.43 christos dstr.r_tod = 0;
1955 1.43 christos dstr.r_todisstd = dstr.r_todisgmt = FALSE;
1956 1.43 christos dstr.r_stdoff = stdrp->r_stdoff;
1957 1.43 christos dstr.r_abbrvar = stdrp->r_abbrvar;
1958 1.43 christos stdr.r_month = TM_DECEMBER;
1959 1.43 christos stdr.r_dycode = DC_DOM;
1960 1.43 christos stdr.r_dayofmonth = 31;
1961 1.43 christos stdr.r_tod = SECSPERDAY + stdrp->r_stdoff;
1962 1.43 christos stdr.r_todisstd = stdr.r_todisgmt = FALSE;
1963 1.43 christos stdr.r_stdoff = 0;
1964 1.43 christos stdr.r_abbrvar
1965 1.43 christos = (stdabbrrp ? stdabbrrp->r_abbrvar : "");
1966 1.43 christos dstrp = &dstr;
1967 1.43 christos stdrp = &stdr;
1968 1.43 christos }
1969 1.25 mlelstv }
1970 1.25 mlelstv if (stdrp == NULL && (zp->z_nrules != 0 || zp->z_stdoff != 0))
1971 1.43 christos return -1;
1972 1.25 mlelstv abbrvar = (stdrp == NULL) ? "" : stdrp->r_abbrvar;
1973 1.25 mlelstv doabbr(result, resultlen, zp->z_format, abbrvar, FALSE, TRUE);
1974 1.25 mlelstv if (stringoffset(end(result), -zp->z_gmtoff) != 0) {
1975 1.25 mlelstv result[0] = '\0';
1976 1.43 christos return -1;
1977 1.25 mlelstv }
1978 1.25 mlelstv if (dstrp == NULL)
1979 1.43 christos return compat;
1980 1.25 mlelstv doabbr(end(result), resultlen - strlen(result),
1981 1.25 mlelstv zp->z_format, dstrp->r_abbrvar, TRUE, TRUE);
1982 1.25 mlelstv if (dstrp->r_stdoff != SECSPERMIN * MINSPERHOUR)
1983 1.25 mlelstv if (stringoffset(end(result),
1984 1.25 mlelstv -(zp->z_gmtoff + dstrp->r_stdoff)) != 0) {
1985 1.25 mlelstv result[0] = '\0';
1986 1.43 christos return -1;
1987 1.25 mlelstv }
1988 1.25 mlelstv (void) strcat(result, ",");
1989 1.43 christos c = stringrule(result, dstrp, dstrp->r_stdoff, zp->z_gmtoff);
1990 1.43 christos if (c < 0) {
1991 1.25 mlelstv result[0] = '\0';
1992 1.43 christos return -1;
1993 1.25 mlelstv }
1994 1.43 christos if (compat < c)
1995 1.43 christos compat = c;
1996 1.25 mlelstv (void) strcat(result, ",");
1997 1.43 christos c = stringrule(result, stdrp, dstrp->r_stdoff, zp->z_gmtoff);
1998 1.43 christos if (c < 0) {
1999 1.25 mlelstv result[0] = '\0';
2000 1.43 christos return -1;
2001 1.1 jtc }
2002 1.43 christos if (compat < c)
2003 1.43 christos compat = c;
2004 1.43 christos return compat;
2005 1.1 jtc }
2006 1.1 jtc
2007 1.1 jtc static void
2008 1.31 christos outzone(const struct zone *const zpfirst, const int zonecount)
2009 1.31 christos {
2010 1.31 christos const struct zone * zp;
2011 1.31 christos struct rule * rp;
2012 1.31 christos int i, j;
2013 1.31 christos int usestart, useuntil;
2014 1.31 christos zic_t starttime, untiltime;
2015 1.38 christos zic_t gmtoff;
2016 1.38 christos zic_t stdoff;
2017 1.41 christos zic_t year;
2018 1.38 christos zic_t startoff;
2019 1.31 christos int startttisstd;
2020 1.31 christos int startttisgmt;
2021 1.31 christos int type;
2022 1.31 christos char * startbuf;
2023 1.31 christos char * ab;
2024 1.31 christos char * envvar;
2025 1.36 christos size_t max_abbr_len;
2026 1.36 christos size_t max_envvar_len;
2027 1.31 christos int prodstic; /* all rules are min to max */
2028 1.43 christos int compat;
2029 1.43 christos int do_extend;
2030 1.43 christos int version;
2031 1.25 mlelstv
2032 1.25 mlelstv max_abbr_len = 2 + max_format_len + max_abbrvar_len;
2033 1.25 mlelstv max_envvar_len = 2 * max_abbr_len + 5 * 9;
2034 1.25 mlelstv startbuf = emalloc(max_abbr_len + 1);
2035 1.25 mlelstv ab = emalloc(max_abbr_len + 1);
2036 1.25 mlelstv envvar = emalloc(max_envvar_len + 1);
2037 1.1 jtc INITIALIZE(untiltime);
2038 1.1 jtc INITIALIZE(starttime);
2039 1.1 jtc /*
2040 1.1 jtc ** Now. . .finally. . .generate some useful data!
2041 1.1 jtc */
2042 1.1 jtc timecnt = 0;
2043 1.1 jtc typecnt = 0;
2044 1.1 jtc charcnt = 0;
2045 1.29 christos prodstic = zonecount == 1;
2046 1.1 jtc /*
2047 1.25 mlelstv ** Thanks to Earl Chew
2048 1.1 jtc ** for noting the need to unconditionally initialize startttisstd.
2049 1.1 jtc */
2050 1.1 jtc startttisstd = FALSE;
2051 1.1 jtc startttisgmt = FALSE;
2052 1.25 mlelstv min_year = max_year = EPOCH_YEAR;
2053 1.25 mlelstv if (leapseen) {
2054 1.25 mlelstv updateminmax(leapminyear);
2055 1.41 christos updateminmax(leapmaxyear + (leapmaxyear < ZIC_MAX));
2056 1.25 mlelstv }
2057 1.41 christos /*
2058 1.41 christos ** Reserve type 0.
2059 1.41 christos */
2060 1.41 christos gmtoffs[0] = isdsts[0] = ttisstds[0] = ttisgmts[0] = abbrinds[0] = -1;
2061 1.41 christos typecnt = 1;
2062 1.25 mlelstv for (i = 0; i < zonecount; ++i) {
2063 1.25 mlelstv zp = &zpfirst[i];
2064 1.25 mlelstv if (i < zonecount - 1)
2065 1.25 mlelstv updateminmax(zp->z_untilrule.r_loyear);
2066 1.25 mlelstv for (j = 0; j < zp->z_nrules; ++j) {
2067 1.25 mlelstv rp = &zp->z_rules[j];
2068 1.25 mlelstv if (rp->r_lowasnum)
2069 1.25 mlelstv updateminmax(rp->r_loyear);
2070 1.25 mlelstv if (rp->r_hiwasnum)
2071 1.25 mlelstv updateminmax(rp->r_hiyear);
2072 1.41 christos if (rp->r_lowasnum || rp->r_hiwasnum)
2073 1.41 christos prodstic = FALSE;
2074 1.25 mlelstv }
2075 1.25 mlelstv }
2076 1.25 mlelstv /*
2077 1.25 mlelstv ** Generate lots of data if a rule can't cover all future times.
2078 1.25 mlelstv */
2079 1.43 christos compat = stringzone(envvar, max_envvar_len + 1, zpfirst, zonecount);
2080 1.43 christos version = compat < 2013 ? ZIC_VERSION_PRE_2013 : ZIC_VERSION;
2081 1.43 christos do_extend = compat < 0 || compat == YEAR_BY_YEAR_ZONE;
2082 1.43 christos if (noise && compat != 0 && compat != YEAR_BY_YEAR_ZONE) {
2083 1.43 christos if (compat < 0)
2084 1.43 christos warning("%s %s",
2085 1.43 christos _("no POSIX environment variable for zone"),
2086 1.43 christos zpfirst->z_name);
2087 1.43 christos else {
2088 1.43 christos /* Circa-COMPAT clients, and earlier clients, might
2089 1.43 christos not work for this zone when given dates before
2090 1.43 christos 1970 or after 2038. */
2091 1.43 christos warning(_("%s: pre-%d clients may mishandle"
2092 1.43 christos " distant timestamps"),
2093 1.43 christos zpfirst->z_name, compat);
2094 1.43 christos }
2095 1.43 christos }
2096 1.43 christos if (do_extend) {
2097 1.43 christos /*
2098 1.43 christos ** Search through a couple of extra years past the obvious
2099 1.43 christos ** 400, to avoid edge cases. For example, suppose a non-POSIX
2100 1.43 christos ** rule applies from 2012 onwards and has transitions in March
2101 1.43 christos ** and September, plus some one-off transitions in November
2102 1.43 christos ** 2013. If zic looked only at the last 400 years, it would
2103 1.43 christos ** set max_year=2413, with the intent that the 400 years 2014
2104 1.43 christos ** through 2413 will be repeated. The last transition listed
2105 1.43 christos ** in the tzfile would be in 2413-09, less than 400 years
2106 1.43 christos ** after the last one-off transition in 2013-11. Two years
2107 1.43 christos ** might be overkill, but with the kind of edge cases
2108 1.43 christos ** available we're not sure that one year would suffice.
2109 1.43 christos */
2110 1.43 christos enum { years_of_observations = YEARSPERREPEAT + 2 };
2111 1.43 christos
2112 1.43 christos if (min_year >= ZIC_MIN + years_of_observations)
2113 1.43 christos min_year -= years_of_observations;
2114 1.41 christos else min_year = ZIC_MIN;
2115 1.43 christos if (max_year <= ZIC_MAX - years_of_observations)
2116 1.43 christos max_year += years_of_observations;
2117 1.41 christos else max_year = ZIC_MAX;
2118 1.29 christos /*
2119 1.29 christos ** Regardless of any of the above,
2120 1.29 christos ** for a "proDSTic" zone which specifies that its rules
2121 1.29 christos ** always have and always will be in effect,
2122 1.29 christos ** we only need one cycle to define the zone.
2123 1.29 christos */
2124 1.29 christos if (prodstic) {
2125 1.29 christos min_year = 1900;
2126 1.43 christos max_year = min_year + years_of_observations;
2127 1.29 christos }
2128 1.25 mlelstv }
2129 1.25 mlelstv /*
2130 1.25 mlelstv ** For the benefit of older systems,
2131 1.25 mlelstv ** generate data from 1900 through 2037.
2132 1.25 mlelstv */
2133 1.25 mlelstv if (min_year > 1900)
2134 1.25 mlelstv min_year = 1900;
2135 1.25 mlelstv if (max_year < 2037)
2136 1.25 mlelstv max_year = 2037;
2137 1.1 jtc for (i = 0; i < zonecount; ++i) {
2138 1.19 kleink /*
2139 1.19 kleink ** A guess that may well be corrected later.
2140 1.19 kleink */
2141 1.19 kleink stdoff = 0;
2142 1.1 jtc zp = &zpfirst[i];
2143 1.1 jtc usestart = i > 0 && (zp - 1)->z_untiltime > min_time;
2144 1.1 jtc useuntil = i < (zonecount - 1);
2145 1.1 jtc if (useuntil && zp->z_untiltime <= min_time)
2146 1.1 jtc continue;
2147 1.1 jtc gmtoff = zp->z_gmtoff;
2148 1.1 jtc eat(zp->z_filename, zp->z_linenum);
2149 1.5 jtc *startbuf = '\0';
2150 1.5 jtc startoff = zp->z_gmtoff;
2151 1.1 jtc if (zp->z_nrules == 0) {
2152 1.1 jtc stdoff = zp->z_stdoff;
2153 1.25 mlelstv doabbr(startbuf, max_abbr_len + 1, zp->z_format,
2154 1.31 christos NULL, stdoff != 0, FALSE);
2155 1.1 jtc type = addtype(oadd(zp->z_gmtoff, stdoff),
2156 1.1 jtc startbuf, stdoff != 0, startttisstd,
2157 1.1 jtc startttisgmt);
2158 1.5 jtc if (usestart) {
2159 1.1 jtc addtt(starttime, type);
2160 1.5 jtc usestart = FALSE;
2161 1.19 kleink } else if (stdoff != 0)
2162 1.1 jtc addtt(min_time, type);
2163 1.1 jtc } else for (year = min_year; year <= max_year; ++year) {
2164 1.1 jtc if (useuntil && year > zp->z_untilrule.r_hiyear)
2165 1.1 jtc break;
2166 1.1 jtc /*
2167 1.1 jtc ** Mark which rules to do in the current year.
2168 1.1 jtc ** For those to do, calculate rpytime(rp, year);
2169 1.1 jtc */
2170 1.1 jtc for (j = 0; j < zp->z_nrules; ++j) {
2171 1.1 jtc rp = &zp->z_rules[j];
2172 1.1 jtc eats(zp->z_filename, zp->z_linenum,
2173 1.1 jtc rp->r_filename, rp->r_linenum);
2174 1.1 jtc rp->r_todo = year >= rp->r_loyear &&
2175 1.1 jtc year <= rp->r_hiyear &&
2176 1.1 jtc yearistype(year, rp->r_yrtype);
2177 1.1 jtc if (rp->r_todo)
2178 1.1 jtc rp->r_temp = rpytime(rp, year);
2179 1.1 jtc }
2180 1.1 jtc for ( ; ; ) {
2181 1.31 christos int k;
2182 1.31 christos zic_t jtime, ktime;
2183 1.38 christos zic_t offset;
2184 1.1 jtc
2185 1.1 jtc INITIALIZE(ktime);
2186 1.1 jtc if (useuntil) {
2187 1.1 jtc /*
2188 1.43 christos ** Turn untiltime into UT
2189 1.1 jtc ** assuming the current gmtoff and
2190 1.1 jtc ** stdoff values.
2191 1.1 jtc */
2192 1.1 jtc untiltime = zp->z_untiltime;
2193 1.1 jtc if (!zp->z_untilrule.r_todisgmt)
2194 1.1 jtc untiltime = tadd(untiltime,
2195 1.1 jtc -gmtoff);
2196 1.1 jtc if (!zp->z_untilrule.r_todisstd)
2197 1.1 jtc untiltime = tadd(untiltime,
2198 1.1 jtc -stdoff);
2199 1.1 jtc }
2200 1.1 jtc /*
2201 1.1 jtc ** Find the rule (of those to do, if any)
2202 1.1 jtc ** that takes effect earliest in the year.
2203 1.1 jtc */
2204 1.1 jtc k = -1;
2205 1.1 jtc for (j = 0; j < zp->z_nrules; ++j) {
2206 1.1 jtc rp = &zp->z_rules[j];
2207 1.1 jtc if (!rp->r_todo)
2208 1.1 jtc continue;
2209 1.1 jtc eats(zp->z_filename, zp->z_linenum,
2210 1.1 jtc rp->r_filename, rp->r_linenum);
2211 1.1 jtc offset = rp->r_todisgmt ? 0 : gmtoff;
2212 1.1 jtc if (!rp->r_todisstd)
2213 1.1 jtc offset = oadd(offset, stdoff);
2214 1.1 jtc jtime = rp->r_temp;
2215 1.1 jtc if (jtime == min_time ||
2216 1.1 jtc jtime == max_time)
2217 1.1 jtc continue;
2218 1.1 jtc jtime = tadd(jtime, -offset);
2219 1.1 jtc if (k < 0 || jtime < ktime) {
2220 1.1 jtc k = j;
2221 1.1 jtc ktime = jtime;
2222 1.1 jtc }
2223 1.1 jtc }
2224 1.1 jtc if (k < 0)
2225 1.1 jtc break; /* go on to next year */
2226 1.1 jtc rp = &zp->z_rules[k];
2227 1.1 jtc rp->r_todo = FALSE;
2228 1.1 jtc if (useuntil && ktime >= untiltime)
2229 1.1 jtc break;
2230 1.5 jtc stdoff = rp->r_stdoff;
2231 1.5 jtc if (usestart && ktime == starttime)
2232 1.5 jtc usestart = FALSE;
2233 1.1 jtc if (usestart) {
2234 1.5 jtc if (ktime < starttime) {
2235 1.5 jtc startoff = oadd(zp->z_gmtoff,
2236 1.5 jtc stdoff);
2237 1.25 mlelstv doabbr(startbuf,
2238 1.25 mlelstv max_abbr_len + 1,
2239 1.6 mrg zp->z_format,
2240 1.5 jtc rp->r_abbrvar,
2241 1.25 mlelstv rp->r_stdoff != 0,
2242 1.25 mlelstv FALSE);
2243 1.5 jtc continue;
2244 1.5 jtc }
2245 1.5 jtc if (*startbuf == '\0' &&
2246 1.25 mlelstv startoff == oadd(zp->z_gmtoff,
2247 1.25 mlelstv stdoff)) {
2248 1.25 mlelstv doabbr(startbuf,
2249 1.25 mlelstv max_abbr_len + 1,
2250 1.25 mlelstv zp->z_format,
2251 1.25 mlelstv rp->r_abbrvar,
2252 1.25 mlelstv rp->r_stdoff !=
2253 1.25 mlelstv 0,
2254 1.25 mlelstv FALSE);
2255 1.1 jtc }
2256 1.1 jtc }
2257 1.1 jtc eats(zp->z_filename, zp->z_linenum,
2258 1.1 jtc rp->r_filename, rp->r_linenum);
2259 1.25 mlelstv doabbr(ab, max_abbr_len+1, zp->z_format, rp->r_abbrvar,
2260 1.25 mlelstv rp->r_stdoff != 0, FALSE);
2261 1.1 jtc offset = oadd(zp->z_gmtoff, rp->r_stdoff);
2262 1.25 mlelstv type = addtype(offset, ab, rp->r_stdoff != 0,
2263 1.1 jtc rp->r_todisstd, rp->r_todisgmt);
2264 1.1 jtc addtt(ktime, type);
2265 1.1 jtc }
2266 1.1 jtc }
2267 1.5 jtc if (usestart) {
2268 1.5 jtc if (*startbuf == '\0' &&
2269 1.5 jtc zp->z_format != NULL &&
2270 1.5 jtc strchr(zp->z_format, '%') == NULL &&
2271 1.5 jtc strchr(zp->z_format, '/') == NULL)
2272 1.6 mrg (void)strncpy(startbuf, zp->z_format,
2273 1.25 mlelstv max_abbr_len + 1 - 1);
2274 1.5 jtc eat(zp->z_filename, zp->z_linenum);
2275 1.5 jtc if (*startbuf == '\0')
2276 1.7 jtc error(_("can't determine time zone abbreviation to use just after until time"));
2277 1.5 jtc else addtt(starttime,
2278 1.5 jtc addtype(startoff, startbuf,
2279 1.5 jtc startoff != zp->z_gmtoff,
2280 1.5 jtc startttisstd,
2281 1.5 jtc startttisgmt));
2282 1.5 jtc }
2283 1.1 jtc /*
2284 1.1 jtc ** Now we may get to set starttime for the next zone line.
2285 1.1 jtc */
2286 1.1 jtc if (useuntil) {
2287 1.1 jtc startttisstd = zp->z_untilrule.r_todisstd;
2288 1.1 jtc startttisgmt = zp->z_untilrule.r_todisgmt;
2289 1.5 jtc starttime = zp->z_untiltime;
2290 1.1 jtc if (!startttisstd)
2291 1.1 jtc starttime = tadd(starttime, -stdoff);
2292 1.5 jtc if (!startttisgmt)
2293 1.5 jtc starttime = tadd(starttime, -gmtoff);
2294 1.1 jtc }
2295 1.1 jtc }
2296 1.43 christos if (do_extend) {
2297 1.43 christos /*
2298 1.43 christos ** If we're extending the explicitly listed observations
2299 1.43 christos ** for 400 years because we can't fill the POSIX-TZ field,
2300 1.43 christos ** check whether we actually ended up explicitly listing
2301 1.43 christos ** observations through that period. If there aren't any
2302 1.43 christos ** near the end of the 400-year period, add a redundant
2303 1.43 christos ** one at the end of the final year, to make it clear
2304 1.43 christos ** that we are claiming to have definite knowledge of
2305 1.43 christos ** the lack of transitions up to that point.
2306 1.43 christos */
2307 1.43 christos struct rule xr;
2308 1.43 christos struct attype *lastat;
2309 1.43 christos xr.r_month = TM_JANUARY;
2310 1.43 christos xr.r_dycode = DC_DOM;
2311 1.43 christos xr.r_dayofmonth = 1;
2312 1.43 christos xr.r_tod = 0;
2313 1.43 christos for (lastat = &attypes[0], i = 1; i < timecnt; i++)
2314 1.43 christos if (attypes[i].at > lastat->at)
2315 1.43 christos lastat = &attypes[i];
2316 1.43 christos if (lastat->at < rpytime(&xr, max_year - 1)) {
2317 1.43 christos /*
2318 1.43 christos ** Create new type code for the redundant entry,
2319 1.43 christos ** to prevent it being optimised away.
2320 1.43 christos */
2321 1.43 christos if (typecnt >= TZ_MAX_TYPES) {
2322 1.43 christos error(_("too many local time types"));
2323 1.43 christos exit(EXIT_FAILURE);
2324 1.43 christos }
2325 1.43 christos gmtoffs[typecnt] = gmtoffs[lastat->type];
2326 1.43 christos isdsts[typecnt] = isdsts[lastat->type];
2327 1.43 christos ttisstds[typecnt] = ttisstds[lastat->type];
2328 1.43 christos ttisgmts[typecnt] = ttisgmts[lastat->type];
2329 1.43 christos abbrinds[typecnt] = abbrinds[lastat->type];
2330 1.43 christos ++typecnt;
2331 1.43 christos addtt(rpytime(&xr, max_year + 1), typecnt-1);
2332 1.43 christos }
2333 1.43 christos }
2334 1.43 christos writezone(zpfirst->z_name, envvar, version);
2335 1.31 christos free(startbuf);
2336 1.31 christos free(ab);
2337 1.31 christos free(envvar);
2338 1.1 jtc }
2339 1.1 jtc
2340 1.1 jtc static void
2341 1.31 christos addtt(const zic_t starttime, int type)
2342 1.1 jtc {
2343 1.7 jtc if (starttime <= min_time ||
2344 1.7 jtc (timecnt == 1 && attypes[0].at < min_time)) {
2345 1.7 jtc gmtoffs[0] = gmtoffs[type];
2346 1.7 jtc isdsts[0] = isdsts[type];
2347 1.7 jtc ttisstds[0] = ttisstds[type];
2348 1.7 jtc ttisgmts[0] = ttisgmts[type];
2349 1.7 jtc if (abbrinds[type] != 0)
2350 1.7 jtc (void) strcpy(chars, &chars[abbrinds[type]]);
2351 1.7 jtc abbrinds[0] = 0;
2352 1.7 jtc charcnt = strlen(chars) + 1;
2353 1.7 jtc typecnt = 1;
2354 1.7 jtc timecnt = 0;
2355 1.7 jtc type = 0;
2356 1.7 jtc }
2357 1.1 jtc if (timecnt >= TZ_MAX_TIMES) {
2358 1.5 jtc error(_("too many transitions?!"));
2359 1.25 mlelstv exit(EXIT_FAILURE);
2360 1.1 jtc }
2361 1.5 jtc attypes[timecnt].at = starttime;
2362 1.5 jtc attypes[timecnt].type = type;
2363 1.1 jtc ++timecnt;
2364 1.1 jtc }
2365 1.1 jtc
2366 1.1 jtc static int
2367 1.38 christos addtype(const zic_t gmtoff, const char *const abbr, const int isdst,
2368 1.31 christos const int ttisstd, const int ttisgmt)
2369 1.1 jtc {
2370 1.31 christos int i, j;
2371 1.1 jtc
2372 1.5 jtc if (isdst != TRUE && isdst != FALSE) {
2373 1.5 jtc error(_("internal error - addtype called with bad isdst"));
2374 1.25 mlelstv exit(EXIT_FAILURE);
2375 1.5 jtc }
2376 1.5 jtc if (ttisstd != TRUE && ttisstd != FALSE) {
2377 1.5 jtc error(_("internal error - addtype called with bad ttisstd"));
2378 1.25 mlelstv exit(EXIT_FAILURE);
2379 1.5 jtc }
2380 1.5 jtc if (ttisgmt != TRUE && ttisgmt != FALSE) {
2381 1.5 jtc error(_("internal error - addtype called with bad ttisgmt"));
2382 1.25 mlelstv exit(EXIT_FAILURE);
2383 1.5 jtc }
2384 1.1 jtc /*
2385 1.1 jtc ** See if there's already an entry for this zone type.
2386 1.1 jtc ** If so, just return its index.
2387 1.1 jtc */
2388 1.1 jtc for (i = 0; i < typecnt; ++i) {
2389 1.1 jtc if (gmtoff == gmtoffs[i] && isdst == isdsts[i] &&
2390 1.1 jtc strcmp(abbr, &chars[abbrinds[i]]) == 0 &&
2391 1.1 jtc ttisstd == ttisstds[i] &&
2392 1.1 jtc ttisgmt == ttisgmts[i])
2393 1.1 jtc return i;
2394 1.1 jtc }
2395 1.1 jtc /*
2396 1.1 jtc ** There isn't one; add a new one, unless there are already too
2397 1.1 jtc ** many.
2398 1.1 jtc */
2399 1.1 jtc if (typecnt >= TZ_MAX_TYPES) {
2400 1.5 jtc error(_("too many local time types"));
2401 1.25 mlelstv exit(EXIT_FAILURE);
2402 1.25 mlelstv }
2403 1.25 mlelstv if (! (-1L - 2147483647L <= gmtoff && gmtoff <= 2147483647L)) {
2404 1.43 christos error(_("UT offset out of range"));
2405 1.25 mlelstv exit(EXIT_FAILURE);
2406 1.1 jtc }
2407 1.1 jtc gmtoffs[i] = gmtoff;
2408 1.1 jtc isdsts[i] = isdst;
2409 1.1 jtc ttisstds[i] = ttisstd;
2410 1.1 jtc ttisgmts[i] = ttisgmt;
2411 1.1 jtc
2412 1.1 jtc for (j = 0; j < charcnt; ++j)
2413 1.1 jtc if (strcmp(&chars[j], abbr) == 0)
2414 1.1 jtc break;
2415 1.1 jtc if (j == charcnt)
2416 1.1 jtc newabbr(abbr);
2417 1.1 jtc abbrinds[i] = j;
2418 1.1 jtc ++typecnt;
2419 1.1 jtc return i;
2420 1.1 jtc }
2421 1.1 jtc
2422 1.1 jtc static void
2423 1.31 christos leapadd(const zic_t t, const int positive, const int rolling, int count)
2424 1.1 jtc {
2425 1.31 christos int i, j;
2426 1.1 jtc
2427 1.1 jtc if (leapcnt + (positive ? count : 1) > TZ_MAX_LEAPS) {
2428 1.5 jtc error(_("too many leap seconds"));
2429 1.25 mlelstv exit(EXIT_FAILURE);
2430 1.1 jtc }
2431 1.1 jtc for (i = 0; i < leapcnt; ++i)
2432 1.1 jtc if (t <= trans[i]) {
2433 1.1 jtc if (t == trans[i]) {
2434 1.5 jtc error(_("repeated leap second moment"));
2435 1.25 mlelstv exit(EXIT_FAILURE);
2436 1.1 jtc }
2437 1.1 jtc break;
2438 1.1 jtc }
2439 1.1 jtc do {
2440 1.1 jtc for (j = leapcnt; j > i; --j) {
2441 1.1 jtc trans[j] = trans[j - 1];
2442 1.1 jtc corr[j] = corr[j - 1];
2443 1.1 jtc roll[j] = roll[j - 1];
2444 1.1 jtc }
2445 1.1 jtc trans[i] = t;
2446 1.41 christos corr[i] = positive ? 1 : -count;
2447 1.1 jtc roll[i] = rolling;
2448 1.1 jtc ++leapcnt;
2449 1.1 jtc } while (positive && --count != 0);
2450 1.1 jtc }
2451 1.1 jtc
2452 1.1 jtc static void
2453 1.25 mlelstv adjleap(void)
2454 1.1 jtc {
2455 1.31 christos int i;
2456 1.38 christos zic_t last = 0;
2457 1.1 jtc
2458 1.1 jtc /*
2459 1.1 jtc ** propagate leap seconds forward
2460 1.1 jtc */
2461 1.1 jtc for (i = 0; i < leapcnt; ++i) {
2462 1.1 jtc trans[i] = tadd(trans[i], last);
2463 1.1 jtc last = corr[i] += last;
2464 1.1 jtc }
2465 1.1 jtc }
2466 1.1 jtc
2467 1.1 jtc static int
2468 1.31 christos yearistype(const int year, const char *const type)
2469 1.1 jtc {
2470 1.1 jtc static char * buf;
2471 1.1 jtc int result;
2472 1.1 jtc
2473 1.1 jtc if (type == NULL || *type == '\0')
2474 1.1 jtc return TRUE;
2475 1.31 christos buf = erealloc(buf, 132 + strlen(yitcommand) + strlen(type));
2476 1.6 mrg (void)sprintf(buf, "%s %d %s", yitcommand, year, type); /* XXX: sprintf is safe */
2477 1.1 jtc result = system(buf);
2478 1.16 kleink if (WIFEXITED(result)) switch (WEXITSTATUS(result)) {
2479 1.16 kleink case 0:
2480 1.16 kleink return TRUE;
2481 1.16 kleink case 1:
2482 1.16 kleink return FALSE;
2483 1.16 kleink }
2484 1.5 jtc error(_("Wild result from command execution"));
2485 1.5 jtc (void) fprintf(stderr, _("%s: command was '%s', result was %d\n"),
2486 1.1 jtc progname, buf, result);
2487 1.1 jtc for ( ; ; )
2488 1.25 mlelstv exit(EXIT_FAILURE);
2489 1.1 jtc }
2490 1.1 jtc
2491 1.1 jtc static int
2492 1.31 christos lowerit(int a)
2493 1.1 jtc {
2494 1.3 jtc a = (unsigned char) a;
2495 1.1 jtc return (isascii(a) && isupper(a)) ? tolower(a) : a;
2496 1.1 jtc }
2497 1.1 jtc
2498 1.31 christos /* case-insensitive equality */
2499 1.41 christos static ATTRIBUTE_PURE int
2500 1.31 christos ciequal(const char *ap, const char *bp)
2501 1.1 jtc {
2502 1.1 jtc while (lowerit(*ap) == lowerit(*bp++))
2503 1.1 jtc if (*ap++ == '\0')
2504 1.1 jtc return TRUE;
2505 1.1 jtc return FALSE;
2506 1.1 jtc }
2507 1.1 jtc
2508 1.41 christos static ATTRIBUTE_PURE int
2509 1.31 christos itsabbr(const char *abbr, const char *word)
2510 1.1 jtc {
2511 1.1 jtc if (lowerit(*abbr) != lowerit(*word))
2512 1.1 jtc return FALSE;
2513 1.1 jtc ++word;
2514 1.1 jtc while (*++abbr != '\0')
2515 1.3 jtc do {
2516 1.3 jtc if (*word == '\0')
2517 1.3 jtc return FALSE;
2518 1.3 jtc } while (lowerit(*word++) != lowerit(*abbr));
2519 1.1 jtc return TRUE;
2520 1.1 jtc }
2521 1.1 jtc
2522 1.41 christos static ATTRIBUTE_PURE const struct lookup *
2523 1.31 christos byword(const char *const word, const struct lookup *const table)
2524 1.1 jtc {
2525 1.31 christos const struct lookup * foundlp;
2526 1.31 christos const struct lookup * lp;
2527 1.1 jtc
2528 1.1 jtc if (word == NULL || table == NULL)
2529 1.1 jtc return NULL;
2530 1.1 jtc /*
2531 1.1 jtc ** Look for exact match.
2532 1.1 jtc */
2533 1.1 jtc for (lp = table; lp->l_word != NULL; ++lp)
2534 1.1 jtc if (ciequal(word, lp->l_word))
2535 1.1 jtc return lp;
2536 1.1 jtc /*
2537 1.1 jtc ** Look for inexact match.
2538 1.1 jtc */
2539 1.1 jtc foundlp = NULL;
2540 1.1 jtc for (lp = table; lp->l_word != NULL; ++lp)
2541 1.11 jtc if (itsabbr(word, lp->l_word)) {
2542 1.1 jtc if (foundlp == NULL)
2543 1.1 jtc foundlp = lp;
2544 1.1 jtc else return NULL; /* multiple inexact matches */
2545 1.11 jtc }
2546 1.1 jtc return foundlp;
2547 1.1 jtc }
2548 1.1 jtc
2549 1.1 jtc static char **
2550 1.31 christos getfields(char *cp)
2551 1.1 jtc {
2552 1.31 christos char * dp;
2553 1.31 christos char ** array;
2554 1.31 christos int nsubs;
2555 1.1 jtc
2556 1.1 jtc if (cp == NULL)
2557 1.1 jtc return NULL;
2558 1.31 christos array = emalloc((strlen(cp) + 1) * sizeof *array);
2559 1.1 jtc nsubs = 0;
2560 1.1 jtc for ( ; ; ) {
2561 1.25 mlelstv while (isascii((unsigned char) *cp) &&
2562 1.25 mlelstv isspace((unsigned char) *cp))
2563 1.25 mlelstv ++cp;
2564 1.1 jtc if (*cp == '\0' || *cp == '#')
2565 1.1 jtc break;
2566 1.1 jtc array[nsubs++] = dp = cp;
2567 1.1 jtc do {
2568 1.1 jtc if ((*dp = *cp++) != '"')
2569 1.1 jtc ++dp;
2570 1.1 jtc else while ((*dp = *cp++) != '"')
2571 1.1 jtc if (*dp != '\0')
2572 1.1 jtc ++dp;
2573 1.25 mlelstv else {
2574 1.25 mlelstv error(_(
2575 1.25 mlelstv "Odd number of quotation marks"
2576 1.25 mlelstv ));
2577 1.25 mlelstv exit(1);
2578 1.25 mlelstv }
2579 1.1 jtc } while (*cp != '\0' && *cp != '#' &&
2580 1.3 jtc (!isascii(*cp) || !isspace((unsigned char) *cp)));
2581 1.3 jtc if (isascii(*cp) && isspace((unsigned char) *cp))
2582 1.1 jtc ++cp;
2583 1.1 jtc *dp = '\0';
2584 1.1 jtc }
2585 1.1 jtc array[nsubs] = NULL;
2586 1.1 jtc return array;
2587 1.1 jtc }
2588 1.1 jtc
2589 1.41 christos static ATTRIBUTE_PURE zic_t
2590 1.38 christos oadd(const zic_t t1, const zic_t t2)
2591 1.1 jtc {
2592 1.41 christos if (t1 < 0 ? t2 < ZIC_MIN - t1 : ZIC_MAX - t1 < t2) {
2593 1.5 jtc error(_("time overflow"));
2594 1.25 mlelstv exit(EXIT_FAILURE);
2595 1.1 jtc }
2596 1.31 christos return t1 + t2;
2597 1.1 jtc }
2598 1.1 jtc
2599 1.43 christos static ATTRIBUTE_PURE zic_t
2600 1.38 christos tadd(const zic_t t1, const zic_t t2)
2601 1.1 jtc {
2602 1.1 jtc if (t1 == max_time && t2 > 0)
2603 1.1 jtc return max_time;
2604 1.1 jtc if (t1 == min_time && t2 < 0)
2605 1.1 jtc return min_time;
2606 1.31 christos if (t1 < 0 ? t2 < min_time - t1 : max_time - t1 < t2) {
2607 1.5 jtc error(_("time overflow"));
2608 1.25 mlelstv exit(EXIT_FAILURE);
2609 1.1 jtc }
2610 1.31 christos return t1 + t2;
2611 1.1 jtc }
2612 1.1 jtc
2613 1.1 jtc /*
2614 1.1 jtc ** Given a rule, and a year, compute the date - in seconds since January 1,
2615 1.1 jtc ** 1970, 00:00 LOCAL time - in that year that the rule refers to.
2616 1.1 jtc */
2617 1.1 jtc
2618 1.25 mlelstv static zic_t
2619 1.41 christos rpytime(const struct rule *const rp, const zic_t wantedy)
2620 1.31 christos {
2621 1.41 christos int m, i;
2622 1.38 christos zic_t dayoff; /* with a nod to Margaret O. */
2623 1.41 christos zic_t t, y;
2624 1.1 jtc
2625 1.41 christos if (wantedy == ZIC_MIN)
2626 1.1 jtc return min_time;
2627 1.41 christos if (wantedy == ZIC_MAX)
2628 1.1 jtc return max_time;
2629 1.1 jtc dayoff = 0;
2630 1.1 jtc m = TM_JANUARY;
2631 1.1 jtc y = EPOCH_YEAR;
2632 1.1 jtc while (wantedy != y) {
2633 1.1 jtc if (wantedy > y) {
2634 1.1 jtc i = len_years[isleap(y)];
2635 1.1 jtc ++y;
2636 1.1 jtc } else {
2637 1.1 jtc --y;
2638 1.1 jtc i = -len_years[isleap(y)];
2639 1.1 jtc }
2640 1.41 christos dayoff = oadd(dayoff, i);
2641 1.1 jtc }
2642 1.1 jtc while (m != rp->r_month) {
2643 1.1 jtc i = len_months[isleap(y)][m];
2644 1.41 christos dayoff = oadd(dayoff, i);
2645 1.1 jtc ++m;
2646 1.1 jtc }
2647 1.1 jtc i = rp->r_dayofmonth;
2648 1.1 jtc if (m == TM_FEBRUARY && i == 29 && !isleap(y)) {
2649 1.1 jtc if (rp->r_dycode == DC_DOWLEQ)
2650 1.1 jtc --i;
2651 1.1 jtc else {
2652 1.5 jtc error(_("use of 2/29 in non leap-year"));
2653 1.25 mlelstv exit(EXIT_FAILURE);
2654 1.1 jtc }
2655 1.1 jtc }
2656 1.1 jtc --i;
2657 1.41 christos dayoff = oadd(dayoff, i);
2658 1.1 jtc if (rp->r_dycode == DC_DOWGEQ || rp->r_dycode == DC_DOWLEQ) {
2659 1.38 christos zic_t wday;
2660 1.1 jtc
2661 1.38 christos #define LDAYSPERWEEK ((zic_t) DAYSPERWEEK)
2662 1.41 christos wday = EPOCH_WDAY;
2663 1.1 jtc /*
2664 1.1 jtc ** Don't trust mod of negative numbers.
2665 1.1 jtc */
2666 1.1 jtc if (dayoff >= 0)
2667 1.1 jtc wday = (wday + dayoff) % LDAYSPERWEEK;
2668 1.1 jtc else {
2669 1.1 jtc wday -= ((-dayoff) % LDAYSPERWEEK);
2670 1.1 jtc if (wday < 0)
2671 1.1 jtc wday += LDAYSPERWEEK;
2672 1.1 jtc }
2673 1.41 christos while (wday != rp->r_wday)
2674 1.1 jtc if (rp->r_dycode == DC_DOWGEQ) {
2675 1.38 christos dayoff = oadd(dayoff, (zic_t) 1);
2676 1.1 jtc if (++wday >= LDAYSPERWEEK)
2677 1.1 jtc wday = 0;
2678 1.1 jtc ++i;
2679 1.1 jtc } else {
2680 1.38 christos dayoff = oadd(dayoff, (zic_t) -1);
2681 1.1 jtc if (--wday < 0)
2682 1.1 jtc wday = LDAYSPERWEEK - 1;
2683 1.1 jtc --i;
2684 1.1 jtc }
2685 1.1 jtc if (i < 0 || i >= len_months[isleap(y)][m]) {
2686 1.23 kleink if (noise)
2687 1.25 mlelstv warning(_("rule goes past start/end of month--\
2688 1.25 mlelstv will not work with pre-2004 versions of zic"));
2689 1.1 jtc }
2690 1.1 jtc }
2691 1.34 martin if (dayoff < min_time / SECSPERDAY)
2692 1.20 kleink return min_time;
2693 1.34 martin if (dayoff > max_time / SECSPERDAY)
2694 1.20 kleink return max_time;
2695 1.25 mlelstv t = (zic_t) dayoff * SECSPERDAY;
2696 1.1 jtc return tadd(t, rp->r_tod);
2697 1.1 jtc }
2698 1.1 jtc
2699 1.1 jtc static void
2700 1.31 christos newabbr(const char *const string)
2701 1.1 jtc {
2702 1.31 christos int i;
2703 1.1 jtc
2704 1.25 mlelstv if (strcmp(string, GRANDPARENTED) != 0) {
2705 1.31 christos const char * cp;
2706 1.31 christos const char * mp;
2707 1.25 mlelstv
2708 1.25 mlelstv /*
2709 1.25 mlelstv ** Want one to ZIC_MAX_ABBR_LEN_WO_WARN alphabetics
2710 1.25 mlelstv ** optionally followed by a + or - and a number from 1 to 14.
2711 1.25 mlelstv */
2712 1.25 mlelstv cp = string;
2713 1.31 christos mp = NULL;
2714 1.25 mlelstv while (isascii((unsigned char) *cp) &&
2715 1.25 mlelstv isalpha((unsigned char) *cp))
2716 1.25 mlelstv ++cp;
2717 1.25 mlelstv if (cp - string == 0)
2718 1.31 christos mp = _("time zone abbreviation lacks alphabetic at start");
2719 1.35 christos if (noise && cp - string < 3)
2720 1.35 christos mp = _("time zone abbreviation has fewer than 3 alphabetics");
2721 1.25 mlelstv if (cp - string > ZIC_MAX_ABBR_LEN_WO_WARN)
2722 1.31 christos mp = _("time zone abbreviation has too many alphabetics");
2723 1.31 christos if (mp == NULL && (*cp == '+' || *cp == '-')) {
2724 1.25 mlelstv ++cp;
2725 1.25 mlelstv if (isascii((unsigned char) *cp) &&
2726 1.25 mlelstv isdigit((unsigned char) *cp))
2727 1.25 mlelstv if (*cp++ == '1' &&
2728 1.25 mlelstv *cp >= '0' && *cp <= '4')
2729 1.25 mlelstv ++cp;
2730 1.25 mlelstv }
2731 1.25 mlelstv if (*cp != '\0')
2732 1.31 christos mp = _("time zone abbreviation differs from POSIX standard");
2733 1.43 christos if (mp != NULL)
2734 1.43 christos warning("%s (%s)", mp, string);
2735 1.25 mlelstv }
2736 1.1 jtc i = strlen(string) + 1;
2737 1.1 jtc if (charcnt + i > TZ_MAX_CHARS) {
2738 1.40 christos error(_("too many, or too long, time zone abbreviations"));
2739 1.25 mlelstv exit(EXIT_FAILURE);
2740 1.1 jtc }
2741 1.6 mrg (void)strncpy(&chars[charcnt], string, sizeof(chars) - charcnt - 1);
2742 1.41 christos charcnt += i;
2743 1.1 jtc }
2744 1.1 jtc
2745 1.1 jtc static int
2746 1.31 christos mkdirs(char *argname)
2747 1.1 jtc {
2748 1.31 christos char * name;
2749 1.31 christos char * cp;
2750 1.1 jtc
2751 1.1 jtc if (argname == NULL || *argname == '\0')
2752 1.1 jtc return 0;
2753 1.1 jtc cp = name = ecpyalloc(argname);
2754 1.1 jtc while ((cp = strchr(cp + 1, '/')) != 0) {
2755 1.1 jtc *cp = '\0';
2756 1.41 christos #ifdef HAVE_DOS_FILE_NAMES
2757 1.1 jtc /*
2758 1.1 jtc ** DOS drive specifier?
2759 1.1 jtc */
2760 1.3 jtc if (isalpha((unsigned char) name[0]) &&
2761 1.4 jtc name[1] == ':' && name[2] == '\0') {
2762 1.1 jtc *cp = '/';
2763 1.1 jtc continue;
2764 1.1 jtc }
2765 1.41 christos #endif
2766 1.1 jtc if (!itsdir(name)) {
2767 1.1 jtc /*
2768 1.1 jtc ** It doesn't seem to exist, so we try to create it.
2769 1.7 jtc ** Creation may fail because of the directory being
2770 1.7 jtc ** created by some other multiprocessor, so we get
2771 1.7 jtc ** to do extra checking.
2772 1.1 jtc */
2773 1.19 kleink if (mkdir(name, MKDIR_UMASK) != 0) {
2774 1.5 jtc const char *e = strerror(errno);
2775 1.7 jtc
2776 1.7 jtc if (errno != EEXIST || !itsdir(name)) {
2777 1.7 jtc (void) fprintf(stderr,
2778 1.7 jtc _("%s: Can't create directory %s: %s\n"),
2779 1.7 jtc progname, name, e);
2780 1.31 christos free(name);
2781 1.7 jtc return -1;
2782 1.7 jtc }
2783 1.1 jtc }
2784 1.1 jtc }
2785 1.1 jtc *cp = '/';
2786 1.1 jtc }
2787 1.31 christos free(name);
2788 1.1 jtc return 0;
2789 1.1 jtc }
2790 1.1 jtc
2791 1.1 jtc /*
2792 1.21 kleink ** UNIX was a registered trademark of The Open Group in 2003.
2793 1.1 jtc */
2794