zdump.c revision 1.54 1 1.54 christos /* $NetBSD: zdump.c,v 1.54 2021/10/22 14:26:04 christos Exp $ */
2 1.50 christos /* Dump time zone data in a textual format. */
3 1.50 christos
4 1.17 mlelstv /*
5 1.17 mlelstv ** This file is in the public domain, so clarified as of
6 1.17 mlelstv ** 2009-05-17 by Arthur David Olson.
7 1.17 mlelstv */
8 1.2 jtc
9 1.6 christos #include <sys/cdefs.h>
10 1.1 jtc #ifndef lint
11 1.54 christos __RCSID("$NetBSD: zdump.c,v 1.54 2021/10/22 14:26:04 christos Exp $");
12 1.1 jtc #endif /* !defined lint */
13 1.1 jtc
14 1.36 christos #ifndef NETBSD_INSPIRED
15 1.36 christos # define NETBSD_INSPIRED 1
16 1.36 christos #endif
17 1.36 christos
18 1.46 christos #include <err.h>
19 1.29 christos #include "private.h"
20 1.47 christos #include <stdio.h>
21 1.47 christos
22 1.47 christos #ifndef HAVE_SNPRINTF
23 1.47 christos # define HAVE_SNPRINTF (199901 <= __STDC_VERSION__)
24 1.47 christos #endif
25 1.36 christos
26 1.36 christos #ifndef HAVE_LOCALTIME_R
27 1.36 christos # define HAVE_LOCALTIME_R 1
28 1.36 christos #endif
29 1.36 christos
30 1.36 christos #ifndef HAVE_LOCALTIME_RZ
31 1.36 christos # ifdef TM_ZONE
32 1.36 christos # define HAVE_LOCALTIME_RZ (NETBSD_INSPIRED && USE_LTZ)
33 1.36 christos # else
34 1.36 christos # define HAVE_LOCALTIME_RZ 0
35 1.36 christos # endif
36 1.36 christos #endif
37 1.36 christos
38 1.36 christos #ifndef HAVE_TZSET
39 1.36 christos # define HAVE_TZSET 1
40 1.36 christos #endif
41 1.27 christos
42 1.17 mlelstv #ifndef ZDUMP_LO_YEAR
43 1.17 mlelstv #define ZDUMP_LO_YEAR (-500)
44 1.17 mlelstv #endif /* !defined ZDUMP_LO_YEAR */
45 1.17 mlelstv
46 1.17 mlelstv #ifndef ZDUMP_HI_YEAR
47 1.17 mlelstv #define ZDUMP_HI_YEAR 2500
48 1.17 mlelstv #endif /* !defined ZDUMP_HI_YEAR */
49 1.1 jtc
50 1.17 mlelstv #define SECSPERNYEAR (SECSPERDAY * DAYSPERNYEAR)
51 1.17 mlelstv #define SECSPERLYEAR (SECSPERNYEAR + SECSPERDAY)
52 1.31 christos #define SECSPER400YEARS (SECSPERNYEAR * (intmax_t) (300 + 3) \
53 1.31 christos + SECSPERLYEAR * (intmax_t) (100 - 3))
54 1.31 christos
55 1.31 christos /*
56 1.31 christos ** True if SECSPER400YEARS is known to be representable as an
57 1.31 christos ** intmax_t. It's OK that SECSPER400YEARS_FITS can in theory be false
58 1.31 christos ** even if SECSPER400YEARS is representable, because when that happens
59 1.31 christos ** the code merely runs a bit more slowly, and this slowness doesn't
60 1.31 christos ** occur on any practical platform.
61 1.31 christos */
62 1.31 christos enum { SECSPER400YEARS_FITS = SECSPERLYEAR <= INTMAX_MAX / 400 };
63 1.17 mlelstv
64 1.17 mlelstv #if HAVE_GETTEXT
65 1.46 christos #include <locale.h> /* for setlocale */
66 1.17 mlelstv #endif /* HAVE_GETTEXT */
67 1.3 jtc
68 1.36 christos #if ! HAVE_LOCALTIME_RZ
69 1.36 christos # undef timezone_t
70 1.36 christos # define timezone_t char **
71 1.36 christos #endif
72 1.36 christos
73 1.43 christos #if !HAVE_POSIX_DECLS
74 1.17 mlelstv extern int getopt(int argc, char * const argv[],
75 1.17 mlelstv const char * options);
76 1.1 jtc extern char * optarg;
77 1.1 jtc extern int optind;
78 1.43 christos #endif
79 1.1 jtc
80 1.29 christos /* The minimum and maximum finite time values. */
81 1.54 christos enum { atime_shift = CHAR_BIT * sizeof(time_t) - 2 };
82 1.29 christos static time_t absolute_min_time =
83 1.31 christos ((time_t) -1 < 0
84 1.41 christos ? (- ((time_t) ~ (time_t) 0 < 0)
85 1.41 christos - (((time_t) 1 << atime_shift) - 1 + ((time_t) 1 << atime_shift)))
86 1.29 christos : 0);
87 1.29 christos static time_t absolute_max_time =
88 1.31 christos ((time_t) -1 < 0
89 1.41 christos ? (((time_t) 1 << atime_shift) - 1 + ((time_t) 1 << atime_shift))
90 1.29 christos : -1);
91 1.5 jtc static size_t longest;
92 1.1 jtc static char * progname;
93 1.36 christos static bool warned;
94 1.36 christos static bool errout;
95 1.17 mlelstv
96 1.36 christos static char const *abbr(struct tm const *);
97 1.36 christos static intmax_t delta(struct tm *, struct tm *) ATTRIBUTE_PURE;
98 1.36 christos static void dumptime(struct tm const *);
99 1.54 christos static time_t hunt(timezone_t, char *, time_t, time_t, bool);
100 1.36 christos static void show(timezone_t, char *, time_t, bool);
101 1.54 christos static void showextrema(timezone_t, char *, time_t, struct tm *, time_t);
102 1.44 christos static void showtrans(char const *, struct tm const *, time_t, char const *,
103 1.44 christos char const *);
104 1.36 christos static const char *tformat(void);
105 1.36 christos static time_t yeartot(intmax_t) ATTRIBUTE_PURE;
106 1.17 mlelstv
107 1.54 christos /* Is C an ASCII digit? */
108 1.54 christos static bool
109 1.54 christos is_digit(char c)
110 1.54 christos {
111 1.54 christos return '0' <= c && c <= '9';
112 1.54 christos }
113 1.42 christos
114 1.34 christos /* Is A an alphabetic character in the C locale? */
115 1.36 christos static bool
116 1.34 christos is_alpha(char a)
117 1.34 christos {
118 1.34 christos switch (a) {
119 1.34 christos default:
120 1.36 christos return false;
121 1.34 christos case 'A': case 'B': case 'C': case 'D': case 'E': case 'F': case 'G':
122 1.34 christos case 'H': case 'I': case 'J': case 'K': case 'L': case 'M': case 'N':
123 1.34 christos case 'O': case 'P': case 'Q': case 'R': case 'S': case 'T': case 'U':
124 1.34 christos case 'V': case 'W': case 'X': case 'Y': case 'Z':
125 1.34 christos case 'a': case 'b': case 'c': case 'd': case 'e': case 'f': case 'g':
126 1.34 christos case 'h': case 'i': case 'j': case 'k': case 'l': case 'm': case 'n':
127 1.34 christos case 'o': case 'p': case 'q': case 'r': case 's': case 't': case 'u':
128 1.34 christos case 'v': case 'w': case 'x': case 'y': case 'z':
129 1.36 christos return true;
130 1.34 christos }
131 1.34 christos }
132 1.34 christos
133 1.36 christos /* Return A + B, exiting if the result would overflow. */
134 1.36 christos static size_t
135 1.36 christos sumsize(size_t a, size_t b)
136 1.36 christos {
137 1.36 christos size_t sum = a + b;
138 1.36 christos if (sum < a)
139 1.36 christos errx(EXIT_FAILURE, "size overflow");
140 1.36 christos return sum;
141 1.36 christos }
142 1.36 christos
143 1.44 christos /* Return a pointer to a newly allocated buffer of size SIZE, exiting
144 1.44 christos on failure. SIZE should be nonzero. */
145 1.49 christos static void * ATTRIBUTE_MALLOC
146 1.44 christos xmalloc(size_t size)
147 1.44 christos {
148 1.44 christos void *p = malloc(size);
149 1.44 christos if (!p) {
150 1.54 christos fprintf(stderr, _("%s: Memory exhausted\n"), progname);
151 1.44 christos exit(EXIT_FAILURE);
152 1.44 christos }
153 1.44 christos return p;
154 1.44 christos }
155 1.44 christos
156 1.36 christos #if ! HAVE_TZSET
157 1.36 christos # undef tzset
158 1.36 christos # define tzset zdump_tzset
159 1.36 christos static void tzset(void) { }
160 1.36 christos #endif
161 1.36 christos
162 1.36 christos /* Assume gmtime_r works if localtime_r does.
163 1.36 christos A replacement localtime_r is defined below if needed. */
164 1.36 christos #if ! HAVE_LOCALTIME_R
165 1.36 christos
166 1.36 christos # undef gmtime_r
167 1.36 christos # define gmtime_r zdump_gmtime_r
168 1.36 christos
169 1.36 christos static struct tm *
170 1.36 christos gmtime_r(time_t *tp, struct tm *tmp)
171 1.36 christos {
172 1.36 christos struct tm *r = gmtime(tp);
173 1.36 christos if (r) {
174 1.36 christos *tmp = *r;
175 1.36 christos r = tmp;
176 1.36 christos }
177 1.36 christos return r;
178 1.36 christos }
179 1.36 christos
180 1.36 christos #endif
181 1.36 christos
182 1.36 christos /* Platforms with TM_ZONE don't need tzname, so they can use the
183 1.36 christos faster localtime_rz or localtime_r if available. */
184 1.36 christos
185 1.36 christos #if defined TM_ZONE && HAVE_LOCALTIME_RZ
186 1.36 christos # define USE_LOCALTIME_RZ true
187 1.36 christos #else
188 1.36 christos # define USE_LOCALTIME_RZ false
189 1.36 christos #endif
190 1.36 christos
191 1.36 christos #if ! USE_LOCALTIME_RZ
192 1.36 christos
193 1.36 christos # if !defined TM_ZONE || ! HAVE_LOCALTIME_R || ! HAVE_TZSET
194 1.36 christos # undef localtime_r
195 1.36 christos # define localtime_r zdump_localtime_r
196 1.36 christos static struct tm *
197 1.36 christos localtime_r(time_t *tp, struct tm *tmp)
198 1.36 christos {
199 1.36 christos struct tm *r = localtime(tp);
200 1.36 christos if (r) {
201 1.36 christos *tmp = *r;
202 1.36 christos r = tmp;
203 1.36 christos }
204 1.36 christos return r;
205 1.36 christos }
206 1.36 christos # endif
207 1.36 christos
208 1.36 christos # undef localtime_rz
209 1.36 christos # define localtime_rz zdump_localtime_rz
210 1.36 christos static struct tm *
211 1.36 christos localtime_rz(timezone_t rz, time_t *tp, struct tm *tmp)
212 1.36 christos {
213 1.36 christos return localtime_r(tp, tmp);
214 1.36 christos }
215 1.36 christos
216 1.36 christos # ifdef TYPECHECK
217 1.36 christos # undef mktime_z
218 1.36 christos # define mktime_z zdump_mktime_z
219 1.36 christos static time_t
220 1.36 christos mktime_z(timezone_t tz, struct tm *tmp)
221 1.36 christos {
222 1.36 christos return mktime(tmp);
223 1.36 christos }
224 1.36 christos # endif
225 1.36 christos
226 1.36 christos # undef tzalloc
227 1.36 christos # undef tzfree
228 1.36 christos # define tzalloc zdump_tzalloc
229 1.36 christos # define tzfree zdump_tzfree
230 1.36 christos
231 1.36 christos static timezone_t
232 1.36 christos tzalloc(char const *val)
233 1.36 christos {
234 1.36 christos static char **fakeenv;
235 1.36 christos char **env = fakeenv;
236 1.36 christos char *env0;
237 1.36 christos if (! env) {
238 1.36 christos char **e = environ;
239 1.36 christos int to;
240 1.36 christos
241 1.36 christos while (*e++)
242 1.36 christos continue;
243 1.44 christos env = xmalloc(sumsize(sizeof *environ,
244 1.36 christos (e - environ) * sizeof *environ));
245 1.36 christos to = 1;
246 1.36 christos for (e = environ; (env[to] = *e); e++)
247 1.36 christos to += strncmp(*e, "TZ=", 3) != 0;
248 1.36 christos }
249 1.44 christos env0 = xmalloc(sumsize(sizeof "TZ=", strlen(val)));
250 1.36 christos env[0] = strcat(strcpy(env0, "TZ="), val);
251 1.36 christos environ = fakeenv = env;
252 1.36 christos tzset();
253 1.36 christos return env;
254 1.36 christos }
255 1.36 christos
256 1.36 christos static void
257 1.36 christos tzfree(timezone_t env)
258 1.36 christos {
259 1.36 christos environ = env + 1;
260 1.36 christos free(env[0]);
261 1.36 christos }
262 1.36 christos #endif /* ! USE_LOCALTIME_RZ */
263 1.36 christos
264 1.48 christos /* A UT time zone, and its initializer. */
265 1.36 christos static timezone_t gmtz;
266 1.36 christos static void
267 1.36 christos gmtzinit(void)
268 1.36 christos {
269 1.54 christos if (USE_LOCALTIME_RZ) {
270 1.54 christos /* Try "GMT" first to find out whether this is one of the rare
271 1.54 christos platforms where time_t counts leap seconds; this works due to
272 1.54 christos the "Link Etc/GMT GMT" line in the "etcetera" file. If "GMT"
273 1.54 christos fails, fall back on "GMT0" which might be similar due to the
274 1.54 christos "Link Etc/GMT GMT0" line in the "backward" file, and which
275 1.54 christos should work on all POSIX platforms. The rest of zdump does not
276 1.54 christos use the "GMT" abbreviation that comes from this setting, so it
277 1.54 christos is OK to use "GMT" here rather than the more-modern "UTC" which
278 1.54 christos would not work on platforms that omit the "backward" file. */
279 1.54 christos gmtz = tzalloc("GMT");
280 1.54 christos if (!gmtz) {
281 1.54 christos static char const gmt0[] = "GMT0";
282 1.54 christos gmtz = tzalloc(gmt0);
283 1.54 christos if (!gmtz) {
284 1.54 christos err(EXIT_FAILURE, "Cannot create %s", gmt0);
285 1.54 christos }
286 1.54 christos }
287 1.54 christos }
288 1.36 christos }
289 1.36 christos
290 1.48 christos /* Convert *TP to UT, storing the broken-down time into *TMP.
291 1.36 christos Return TMP if successful, NULL otherwise. This is like gmtime_r(TP, TMP),
292 1.36 christos except typically faster if USE_LOCALTIME_RZ. */
293 1.36 christos static struct tm *
294 1.36 christos my_gmtime_r(time_t *tp, struct tm *tmp)
295 1.36 christos {
296 1.36 christos return USE_LOCALTIME_RZ ?
297 1.36 christos localtime_rz(gmtz, tp, tmp) : gmtime_r(tp, tmp);
298 1.36 christos }
299 1.36 christos
300 1.17 mlelstv #ifndef TYPECHECK
301 1.36 christos #define my_localtime_rz localtime_rz
302 1.17 mlelstv #else /* !defined TYPECHECK */
303 1.17 mlelstv static struct tm *
304 1.36 christos my_localtime_rz(timezone_t tz, const time_t *tp, struct tm *tmp)
305 1.17 mlelstv {
306 1.36 christos tmp = localtime_rz(tz, tp, tmp);
307 1.36 christos if (tmp) {
308 1.17 mlelstv struct tm tm;
309 1.26 christos time_t t;
310 1.17 mlelstv
311 1.17 mlelstv tm = *tmp;
312 1.36 christos t = mktime_z(tz, &tm);
313 1.31 christos if (t != *tp) {
314 1.17 mlelstv (void) fflush(stdout);
315 1.17 mlelstv (void) fprintf(stderr, "\n%s: ", progname);
316 1.17 mlelstv (void) fprintf(stderr, tformat(), *tp);
317 1.17 mlelstv (void) fprintf(stderr, " ->");
318 1.17 mlelstv (void) fprintf(stderr, " year=%d", tmp->tm_year);
319 1.17 mlelstv (void) fprintf(stderr, " mon=%d", tmp->tm_mon);
320 1.17 mlelstv (void) fprintf(stderr, " mday=%d", tmp->tm_mday);
321 1.17 mlelstv (void) fprintf(stderr, " hour=%d", tmp->tm_hour);
322 1.17 mlelstv (void) fprintf(stderr, " min=%d", tmp->tm_min);
323 1.17 mlelstv (void) fprintf(stderr, " sec=%d", tmp->tm_sec);
324 1.17 mlelstv (void) fprintf(stderr, " isdst=%d", tmp->tm_isdst);
325 1.17 mlelstv (void) fprintf(stderr, " -> ");
326 1.17 mlelstv (void) fprintf(stderr, tformat(), t);
327 1.17 mlelstv (void) fprintf(stderr, "\n");
328 1.36 christos errout = true;
329 1.17 mlelstv }
330 1.17 mlelstv }
331 1.17 mlelstv return tmp;
332 1.17 mlelstv }
333 1.17 mlelstv #endif /* !defined TYPECHECK */
334 1.17 mlelstv
335 1.17 mlelstv static void
336 1.26 christos abbrok(const char *const abbrp, const char *const zone)
337 1.17 mlelstv {
338 1.26 christos const char *cp;
339 1.26 christos const char *wp;
340 1.17 mlelstv
341 1.17 mlelstv if (warned)
342 1.17 mlelstv return;
343 1.17 mlelstv cp = abbrp;
344 1.42 christos while (is_alpha(*cp) || is_digit(*cp) || *cp == '-' || *cp == '+')
345 1.17 mlelstv ++cp;
346 1.53 christos if (*cp)
347 1.53 christos wp = _("has characters other than ASCII alphanumerics, '-' or '+'");
348 1.53 christos else if (cp - abbrp < 3)
349 1.42 christos wp = _("has fewer than 3 characters");
350 1.17 mlelstv else if (cp - abbrp > 6)
351 1.42 christos wp = _("has more than 6 characters");
352 1.42 christos else
353 1.17 mlelstv return;
354 1.17 mlelstv (void) fflush(stdout);
355 1.17 mlelstv (void) fprintf(stderr,
356 1.17 mlelstv _("%s: warning: zone \"%s\" abbreviation \"%s\" %s\n"),
357 1.17 mlelstv progname, zone, abbrp, wp);
358 1.36 christos warned = errout = true;
359 1.36 christos }
360 1.36 christos
361 1.36 christos /* Return a time zone abbreviation. If the abbreviation needs to be
362 1.36 christos saved, use *BUF (of size *BUFALLOC) to save it, and return the
363 1.36 christos abbreviation in the possibly-reallocated *BUF. Otherwise, just
364 1.36 christos return the abbreviation. Get the abbreviation from TMP.
365 1.36 christos Exit on memory allocation failure. */
366 1.36 christos static char const *
367 1.36 christos saveabbr(char **buf, size_t *bufalloc, struct tm const *tmp)
368 1.36 christos {
369 1.36 christos char const *ab = abbr(tmp);
370 1.36 christos if (HAVE_LOCALTIME_RZ)
371 1.36 christos return ab;
372 1.36 christos else {
373 1.36 christos size_t ablen = strlen(ab);
374 1.36 christos if (*bufalloc <= ablen) {
375 1.36 christos free(*buf);
376 1.36 christos
377 1.36 christos /* Make the new buffer at least twice as long as the
378 1.36 christos old, to avoid O(N**2) behavior on repeated calls. */
379 1.36 christos *bufalloc = sumsize(*bufalloc, ablen + 1);
380 1.44 christos *buf = xmalloc(*bufalloc);
381 1.36 christos }
382 1.36 christos return strcpy(*buf, ab);
383 1.36 christos }
384 1.36 christos }
385 1.36 christos
386 1.36 christos static void
387 1.36 christos close_file(FILE *stream)
388 1.36 christos {
389 1.36 christos char const *e = (ferror(stream) ? _("I/O error")
390 1.36 christos : fclose(stream) != 0 ? strerror(errno) : NULL);
391 1.36 christos if (e) {
392 1.36 christos errx(EXIT_FAILURE, "%s", e);
393 1.36 christos }
394 1.17 mlelstv }
395 1.17 mlelstv
396 1.24 joerg __dead static void
397 1.26 christos usage(FILE *const stream, const int status)
398 1.17 mlelstv {
399 1.17 mlelstv (void) fprintf(stream,
400 1.50 christos _("%s: usage: %s OPTIONS TIMEZONE ...\n"
401 1.44 christos "Options include:\n"
402 1.44 christos " -c [L,]U Start at year L (default -500), end before year U (default 2500)\n"
403 1.44 christos " -t [L,]U Start at time L, end before time U (in seconds since 1970)\n"
404 1.44 christos " -i List transitions briefly (format is experimental)\n" \
405 1.44 christos " -v List transitions verbosely\n"
406 1.44 christos " -V List transitions a bit less verbosely\n"
407 1.44 christos " --help Output this help\n"
408 1.44 christos " --version Output version info\n"
409 1.29 christos "\n"
410 1.29 christos "Report bugs to %s.\n"),
411 1.44 christos progname, progname, REPORT_BUGS_TO);
412 1.36 christos if (status == EXIT_SUCCESS)
413 1.36 christos close_file(stream);
414 1.17 mlelstv exit(status);
415 1.17 mlelstv }
416 1.1 jtc
417 1.1 jtc int
418 1.26 christos main(int argc, char *argv[])
419 1.26 christos {
420 1.36 christos /* These are static so that they're initially zero. */
421 1.36 christos static char * abbrev;
422 1.36 christos static size_t abbrevsize;
423 1.36 christos
424 1.26 christos int i;
425 1.36 christos bool vflag;
426 1.36 christos bool Vflag;
427 1.26 christos char * cutarg;
428 1.29 christos char * cuttimes;
429 1.26 christos time_t cutlotime;
430 1.26 christos time_t cuthitime;
431 1.26 christos time_t now;
432 1.44 christos bool iflag = false;
433 1.1 jtc
434 1.29 christos cutlotime = absolute_min_time;
435 1.29 christos cuthitime = absolute_max_time;
436 1.17 mlelstv #if HAVE_GETTEXT
437 1.17 mlelstv (void) setlocale(LC_ALL, "");
438 1.3 jtc #ifdef TZ_DOMAINDIR
439 1.3 jtc (void) bindtextdomain(TZ_DOMAIN, TZ_DOMAINDIR);
440 1.17 mlelstv #endif /* defined TEXTDOMAINDIR */
441 1.3 jtc (void) textdomain(TZ_DOMAIN);
442 1.17 mlelstv #endif /* HAVE_GETTEXT */
443 1.1 jtc progname = argv[0];
444 1.14 kleink for (i = 1; i < argc; ++i)
445 1.14 kleink if (strcmp(argv[i], "--version") == 0) {
446 1.28 christos (void) printf("zdump %s%s\n", PKGVERSION, TZVERSION);
447 1.36 christos return EXIT_SUCCESS;
448 1.17 mlelstv } else if (strcmp(argv[i], "--help") == 0) {
449 1.22 christos usage(stdout, EXIT_SUCCESS);
450 1.14 kleink }
451 1.36 christos vflag = Vflag = false;
452 1.29 christos cutarg = cuttimes = NULL;
453 1.29 christos for (;;)
454 1.44 christos switch (getopt(argc, argv, "c:it:vV")) {
455 1.29 christos case 'c': cutarg = optarg; break;
456 1.29 christos case 't': cuttimes = optarg; break;
457 1.44 christos case 'i': iflag = true; break;
458 1.36 christos case 'v': vflag = true; break;
459 1.36 christos case 'V': Vflag = true; break;
460 1.29 christos case -1:
461 1.29 christos if (! (optind == argc - 1 && strcmp(argv[optind], "=") == 0))
462 1.29 christos goto arg_processing_done;
463 1.29 christos /* Fall through. */
464 1.29 christos default:
465 1.29 christos usage(stderr, EXIT_FAILURE);
466 1.29 christos }
467 1.29 christos arg_processing_done:;
468 1.29 christos
469 1.44 christos if (iflag | vflag | Vflag) {
470 1.29 christos intmax_t lo;
471 1.29 christos intmax_t hi;
472 1.32 christos char *loend, *hiend;
473 1.30 christos intmax_t cutloyear = ZDUMP_LO_YEAR;
474 1.30 christos intmax_t cuthiyear = ZDUMP_HI_YEAR;
475 1.17 mlelstv if (cutarg != NULL) {
476 1.32 christos lo = strtoimax(cutarg, &loend, 10);
477 1.32 christos if (cutarg != loend && !*loend) {
478 1.32 christos hi = lo;
479 1.32 christos cuthiyear = hi;
480 1.32 christos } else if (cutarg != loend && *loend == ','
481 1.32 christos && (hi = strtoimax(loend + 1, &hiend, 10),
482 1.32 christos loend + 1 != hiend && !*hiend)) {
483 1.32 christos cutloyear = lo;
484 1.17 mlelstv cuthiyear = hi;
485 1.17 mlelstv } else {
486 1.36 christos fprintf(stderr, _("%s: wild -c argument %s\n"),
487 1.17 mlelstv progname, cutarg);
488 1.36 christos return EXIT_FAILURE;
489 1.17 mlelstv }
490 1.17 mlelstv }
491 1.29 christos if (cutarg != NULL || cuttimes == NULL) {
492 1.29 christos cutlotime = yeartot(cutloyear);
493 1.29 christos cuthitime = yeartot(cuthiyear);
494 1.29 christos }
495 1.29 christos if (cuttimes != NULL) {
496 1.32 christos lo = strtoimax(cuttimes, &loend, 10);
497 1.32 christos if (cuttimes != loend && !*loend) {
498 1.32 christos hi = lo;
499 1.29 christos if (hi < cuthitime) {
500 1.54 christos if (hi < absolute_min_time + 1)
501 1.54 christos hi = absolute_min_time + 1;
502 1.29 christos cuthitime = hi;
503 1.29 christos }
504 1.32 christos } else if (cuttimes != loend && *loend == ','
505 1.32 christos && (hi = strtoimax(loend + 1, &hiend, 10),
506 1.32 christos loend + 1 != hiend && !*hiend)) {
507 1.29 christos if (cutlotime < lo) {
508 1.29 christos if (absolute_max_time < lo)
509 1.29 christos lo = absolute_max_time;
510 1.29 christos cutlotime = lo;
511 1.29 christos }
512 1.29 christos if (hi < cuthitime) {
513 1.54 christos if (hi < absolute_min_time + 1)
514 1.54 christos hi = absolute_min_time + 1;
515 1.29 christos cuthitime = hi;
516 1.29 christos }
517 1.29 christos } else {
518 1.29 christos (void) fprintf(stderr,
519 1.29 christos _("%s: wild -t argument %s\n"),
520 1.29 christos progname, cuttimes);
521 1.36 christos return EXIT_FAILURE;
522 1.29 christos }
523 1.29 christos }
524 1.1 jtc }
525 1.36 christos gmtzinit();
526 1.54 christos if (iflag | vflag | Vflag)
527 1.54 christos now = 0;
528 1.54 christos else {
529 1.44 christos now = time(NULL);
530 1.54 christos now |= !now;
531 1.54 christos }
532 1.1 jtc longest = 0;
533 1.36 christos for (i = optind; i < argc; i++) {
534 1.36 christos size_t arglen = strlen(argv[i]);
535 1.36 christos if (longest < arglen)
536 1.36 christos longest = arglen < INT_MAX ? arglen : INT_MAX;
537 1.36 christos }
538 1.1 jtc
539 1.1 jtc for (i = optind; i < argc; ++i) {
540 1.36 christos timezone_t tz = tzalloc(argv[i]);
541 1.36 christos char const *ab;
542 1.44 christos time_t t;
543 1.44 christos struct tm tm, newtm;
544 1.44 christos bool tm_ok;
545 1.44 christos
546 1.36 christos if (!tz) {
547 1.36 christos errx(EXIT_FAILURE, "%s", argv[i]);
548 1.36 christos }
549 1.54 christos if (now) {
550 1.36 christos show(tz, argv[i], now, false);
551 1.36 christos tzfree(tz);
552 1.1 jtc continue;
553 1.3 jtc }
554 1.36 christos warned = false;
555 1.17 mlelstv t = absolute_min_time;
556 1.44 christos if (! (iflag | Vflag)) {
557 1.36 christos show(tz, argv[i], t, true);
558 1.54 christos if (my_localtime_rz(tz, &t, &tm) == NULL
559 1.54 christos && t < cutlotime) {
560 1.54 christos time_t newt = cutlotime;
561 1.54 christos if (my_localtime_rz(tz, &newt, &newtm) != NULL)
562 1.54 christos showextrema(tz, argv[i], t, NULL, newt);
563 1.54 christos }
564 1.29 christos }
565 1.54 christos if (t + 1 < cutlotime)
566 1.54 christos t = cutlotime - 1;
567 1.44 christos tm_ok = my_localtime_rz(tz, &t, &tm) != NULL;
568 1.44 christos if (tm_ok) {
569 1.36 christos ab = saveabbr(&abbrev, &abbrevsize, &tm);
570 1.44 christos if (iflag) {
571 1.44 christos showtrans("\nTZ=%f", &tm, t, ab, argv[i]);
572 1.44 christos showtrans("-\t-\t%Q", &tm, t, ab, argv[i]);
573 1.44 christos }
574 1.44 christos } else
575 1.36 christos ab = NULL;
576 1.54 christos while (t < cuthitime - 1) {
577 1.44 christos time_t newt = ((t < absolute_max_time - SECSPERDAY / 2
578 1.54 christos && t + SECSPERDAY / 2 < cuthitime - 1)
579 1.54 christos ? t + SECSPERDAY / 2
580 1.54 christos : cuthitime - 1);
581 1.44 christos struct tm *newtmp = localtime_rz(tz, &newt, &newtm);
582 1.44 christos bool newtm_ok = newtmp != NULL;
583 1.48 christos if (tm_ok != newtm_ok
584 1.54 christos || (ab && (delta(&newtm, &tm) != newt - t
585 1.54 christos || newtm.tm_isdst != tm.tm_isdst
586 1.54 christos || strcmp(abbr(&newtm), ab) != 0))) {
587 1.54 christos newt = hunt(tz, argv[i], t, newt, false);
588 1.36 christos newtmp = localtime_rz(tz, &newt, &newtm);
589 1.44 christos newtm_ok = newtmp != NULL;
590 1.44 christos if (iflag)
591 1.44 christos showtrans("%Y-%m-%d\t%L\t%Q",
592 1.44 christos newtmp, newt, newtm_ok ?
593 1.44 christos abbr(&newtm) : NULL, argv[i]);
594 1.44 christos else {
595 1.44 christos show(tz, argv[i], newt - 1, true);
596 1.44 christos show(tz, argv[i], newt, true);
597 1.44 christos }
598 1.1 jtc }
599 1.1 jtc t = newt;
600 1.44 christos tm_ok = newtm_ok;
601 1.44 christos if (newtm_ok) {
602 1.44 christos ab = saveabbr(&abbrev, &abbrevsize, &newtm);
603 1.44 christos tm = newtm;
604 1.44 christos }
605 1.1 jtc }
606 1.44 christos if (! (iflag | Vflag)) {
607 1.54 christos time_t newt = absolute_max_time;
608 1.54 christos t = cuthitime;
609 1.54 christos if (t < newt) {
610 1.54 christos struct tm *tmp = my_localtime_rz(tz, &t, &tm);
611 1.54 christos if (tmp != NULL
612 1.54 christos && my_localtime_rz(tz, &newt, &newtm) == NULL)
613 1.54 christos showextrema(tz, argv[i], t, tmp, newt);
614 1.54 christos }
615 1.54 christos show(tz, argv[i], absolute_max_time, true);
616 1.29 christos }
617 1.36 christos tzfree(tz);
618 1.1 jtc }
619 1.36 christos close_file(stdout);
620 1.36 christos if (errout && (ferror(stderr) || fclose(stderr) != 0))
621 1.36 christos return EXIT_FAILURE;
622 1.36 christos return EXIT_SUCCESS;
623 1.17 mlelstv }
624 1.1 jtc
625 1.1 jtc static time_t
626 1.42 christos yeartot(intmax_t y)
627 1.17 mlelstv {
628 1.31 christos intmax_t myy, seconds, years;
629 1.29 christos time_t t;
630 1.17 mlelstv
631 1.17 mlelstv myy = EPOCH_YEAR;
632 1.17 mlelstv t = 0;
633 1.31 christos while (myy < y) {
634 1.31 christos if (SECSPER400YEARS_FITS && 400 <= y - myy) {
635 1.31 christos intmax_t diff400 = (y - myy) / 400;
636 1.31 christos if (INTMAX_MAX / SECSPER400YEARS < diff400)
637 1.31 christos return absolute_max_time;
638 1.31 christos seconds = diff400 * SECSPER400YEARS;
639 1.31 christos years = diff400 * 400;
640 1.31 christos } else {
641 1.17 mlelstv seconds = isleap(myy) ? SECSPERLYEAR : SECSPERNYEAR;
642 1.31 christos years = 1;
643 1.31 christos }
644 1.31 christos myy += years;
645 1.31 christos if (t > absolute_max_time - seconds)
646 1.31 christos return absolute_max_time;
647 1.31 christos t += seconds;
648 1.31 christos }
649 1.31 christos while (y < myy) {
650 1.31 christos if (SECSPER400YEARS_FITS && y + 400 <= myy && myy < 0) {
651 1.31 christos intmax_t diff400 = (myy - y) / 400;
652 1.31 christos if (INTMAX_MAX / SECSPER400YEARS < diff400)
653 1.31 christos return absolute_min_time;
654 1.31 christos seconds = diff400 * SECSPER400YEARS;
655 1.31 christos years = diff400 * 400;
656 1.17 mlelstv } else {
657 1.31 christos seconds = isleap(myy - 1) ? SECSPERLYEAR : SECSPERNYEAR;
658 1.31 christos years = 1;
659 1.17 mlelstv }
660 1.31 christos myy -= years;
661 1.31 christos if (t < absolute_min_time + seconds)
662 1.31 christos return absolute_min_time;
663 1.31 christos t -= seconds;
664 1.17 mlelstv }
665 1.17 mlelstv return t;
666 1.17 mlelstv }
667 1.17 mlelstv
668 1.54 christos /* Search for a discontinuity in timezone TZ with name NAME, in the
669 1.54 christos timestamps ranging from LOT through HIT. LOT and HIT disagree
670 1.54 christos about some aspect of timezone. If ONLY_OK, search only for
671 1.54 christos definedness changes, i.e., localtime succeeds on one side of the
672 1.54 christos transition but fails on the other side. Return the timestamp just
673 1.54 christos before the transition from LOT's settings. */
674 1.54 christos
675 1.17 mlelstv static time_t
676 1.54 christos hunt(timezone_t tz, char *name, time_t lot, time_t hit, bool only_ok)
677 1.17 mlelstv {
678 1.36 christos static char * loab;
679 1.36 christos static size_t loabsize;
680 1.17 mlelstv struct tm lotm;
681 1.17 mlelstv struct tm tm;
682 1.54 christos
683 1.54 christos /* Convert LOT into a broken-down time here, even though our
684 1.54 christos caller already did that. On platforms without TM_ZONE,
685 1.54 christos tzname may have been altered since our caller broke down
686 1.54 christos LOT, and tzname needs to be changed back. */
687 1.44 christos bool lotm_ok = my_localtime_rz(tz, &lot, &lotm) != NULL;
688 1.44 christos bool tm_ok;
689 1.54 christos char const *ab = lotm_ok ? saveabbr(&loab, &loabsize, &lotm) : NULL;
690 1.17 mlelstv
691 1.17 mlelstv for ( ; ; ) {
692 1.54 christos /* T = average of LOT and HIT, rounding down.
693 1.54 christos Avoid overflow, even on oddball C89 platforms
694 1.54 christos where / rounds down and TIME_T_MIN == -TIME_T_MAX
695 1.54 christos so lot / 2 + hit / 2 might overflow. */
696 1.54 christos time_t t = (lot / 2
697 1.54 christos - ((lot % 2 + hit % 2) < 0)
698 1.54 christos + ((lot % 2 + hit % 2) == 2)
699 1.54 christos + hit / 2);
700 1.54 christos if (t == lot)
701 1.17 mlelstv break;
702 1.17 mlelstv t = lot;
703 1.17 mlelstv t += diff / 2;
704 1.1 jtc if (t <= lot)
705 1.1 jtc ++t;
706 1.1 jtc else if (t >= hit)
707 1.1 jtc --t;
708 1.44 christos tm_ok = my_localtime_rz(tz, &t, &tm) != NULL;
709 1.54 christos if (lotm_ok == tm_ok
710 1.54 christos && (only_ok
711 1.54 christos || (ab && tm.tm_isdst == lotm.tm_isdst
712 1.54 christos && delta(&tm, &lotm) == t - lot
713 1.54 christos && strcmp(abbr(&tm), ab) == 0))) {
714 1.44 christos lot = t;
715 1.44 christos if (tm_ok)
716 1.44 christos lotm = tm;
717 1.1 jtc } else hit = t;
718 1.1 jtc }
719 1.1 jtc return hit;
720 1.1 jtc }
721 1.1 jtc
722 1.1 jtc /*
723 1.47 christos ** Thanks to Paul Eggert for logic used in delta_nonneg.
724 1.1 jtc */
725 1.1 jtc
726 1.29 christos static intmax_t
727 1.47 christos delta_nonneg(struct tm *newp, struct tm *oldp)
728 1.1 jtc {
729 1.54 christos intmax_t oldy = oldp->tm_year;
730 1.54 christos int cycles = (newp->tm_year - oldy) / YEARSPERREPEAT;
731 1.54 christos intmax_t sec = SECSPERREPEAT, result = cycles * sec;
732 1.54 christos int tmy = oldp->tm_year + cycles * YEARSPERREPEAT;
733 1.54 christos for ( ; tmy < newp->tm_year; ++tmy)
734 1.17 mlelstv result += DAYSPERNYEAR + isleap_sum(tmy, TM_YEAR_BASE);
735 1.1 jtc result += newp->tm_yday - oldp->tm_yday;
736 1.1 jtc result *= HOURSPERDAY;
737 1.1 jtc result += newp->tm_hour - oldp->tm_hour;
738 1.1 jtc result *= MINSPERHOUR;
739 1.1 jtc result += newp->tm_min - oldp->tm_min;
740 1.1 jtc result *= SECSPERMIN;
741 1.1 jtc result += newp->tm_sec - oldp->tm_sec;
742 1.1 jtc return result;
743 1.1 jtc }
744 1.1 jtc
745 1.47 christos static intmax_t
746 1.47 christos delta(struct tm *newp, struct tm *oldp)
747 1.47 christos {
748 1.47 christos return (newp->tm_year < oldp->tm_year
749 1.47 christos ? -delta_nonneg(oldp, newp)
750 1.47 christos : delta_nonneg(newp, oldp));
751 1.47 christos }
752 1.47 christos
753 1.36 christos #ifndef TM_GMTOFF
754 1.36 christos /* Return A->tm_yday, adjusted to compare it fairly to B->tm_yday.
755 1.39 christos Assume A and B differ by at most one year. */
756 1.36 christos static int
757 1.36 christos adjusted_yday(struct tm const *a, struct tm const *b)
758 1.36 christos {
759 1.36 christos int yday = a->tm_yday;
760 1.36 christos if (b->tm_year < a->tm_year)
761 1.36 christos yday += 365 + isleap_sum(b->tm_year, TM_YEAR_BASE);
762 1.36 christos return yday;
763 1.36 christos }
764 1.36 christos #endif
765 1.36 christos
766 1.48 christos /* If A is the broken-down local time and B the broken-down UT for
767 1.48 christos the same instant, return A's UT offset in seconds, where positive
768 1.44 christos offsets are east of Greenwich. On failure, return LONG_MIN.
769 1.44 christos
770 1.46 christos If T is nonnull, *T is the timestamp that corresponds to A; call
771 1.44 christos my_gmtime_r and use its result instead of B. Otherwise, B is the
772 1.44 christos possibly nonnull result of an earlier call to my_gmtime_r. */
773 1.36 christos static long
774 1.44 christos gmtoff(struct tm const *a, time_t *t, struct tm const *b)
775 1.36 christos {
776 1.36 christos #ifdef TM_GMTOFF
777 1.36 christos return a->TM_GMTOFF;
778 1.36 christos #else
779 1.44 christos struct tm tm;
780 1.44 christos if (t)
781 1.44 christos b = my_gmtime_r(t, &tm);
782 1.36 christos if (! b)
783 1.36 christos return LONG_MIN;
784 1.36 christos else {
785 1.36 christos int ayday = adjusted_yday(a, b);
786 1.36 christos int byday = adjusted_yday(b, a);
787 1.36 christos int days = ayday - byday;
788 1.36 christos long hours = a->tm_hour - b->tm_hour + 24 * days;
789 1.36 christos long minutes = a->tm_min - b->tm_min + 60 * hours;
790 1.36 christos long seconds = a->tm_sec - b->tm_sec + 60 * minutes;
791 1.36 christos return seconds;
792 1.36 christos }
793 1.36 christos #endif
794 1.36 christos }
795 1.36 christos
796 1.1 jtc static void
797 1.36 christos show(timezone_t tz, char *zone, time_t t, bool v)
798 1.1 jtc {
799 1.26 christos struct tm * tmp;
800 1.36 christos struct tm * gmtmp;
801 1.36 christos struct tm tm, gmtm;
802 1.1 jtc
803 1.5 jtc (void) printf("%-*s ", (int) longest, zone);
804 1.1 jtc if (v) {
805 1.36 christos gmtmp = my_gmtime_r(&t, &gmtm);
806 1.36 christos if (gmtmp == NULL) {
807 1.36 christos printf(tformat(), t);
808 1.17 mlelstv } else {
809 1.36 christos dumptime(gmtmp);
810 1.31 christos (void) printf(" UT");
811 1.17 mlelstv }
812 1.17 mlelstv (void) printf(" = ");
813 1.17 mlelstv }
814 1.36 christos tmp = my_localtime_rz(tz, &t, &tm);
815 1.17 mlelstv dumptime(tmp);
816 1.17 mlelstv if (tmp != NULL) {
817 1.17 mlelstv if (*abbr(tmp) != '\0')
818 1.17 mlelstv (void) printf(" %s", abbr(tmp));
819 1.17 mlelstv if (v) {
820 1.44 christos long off = gmtoff(tmp, NULL, gmtmp);
821 1.17 mlelstv (void) printf(" isdst=%d", tmp->tm_isdst);
822 1.36 christos if (off != LONG_MIN)
823 1.36 christos (void) printf(" gmtoff=%ld", off);
824 1.17 mlelstv }
825 1.1 jtc }
826 1.1 jtc (void) printf("\n");
827 1.17 mlelstv if (tmp != NULL && *abbr(tmp) != '\0')
828 1.17 mlelstv abbrok(abbr(tmp), zone);
829 1.1 jtc }
830 1.1 jtc
831 1.54 christos /* Show timestamps just before and just after a transition between
832 1.54 christos defined and undefined (or vice versa) in either localtime or
833 1.54 christos gmtime. These transitions are for timezone TZ with name ZONE, in
834 1.54 christos the range from LO (with broken-down time LOTMP if that is nonnull)
835 1.54 christos through HI. LO and HI disagree on definedness. */
836 1.54 christos
837 1.54 christos static void
838 1.54 christos showextrema(timezone_t tz, char *zone, time_t lo, struct tm *lotmp, time_t hi)
839 1.54 christos {
840 1.54 christos struct tm localtm[2], gmtm[2];
841 1.54 christos time_t t, boundary = hunt(tz, zone, lo, hi, true);
842 1.54 christos bool old = false;
843 1.54 christos hi = (SECSPERDAY < hi - boundary
844 1.54 christos ? boundary + SECSPERDAY
845 1.54 christos : hi + (hi < TIME_T_MAX));
846 1.54 christos if (SECSPERDAY < boundary - lo) {
847 1.54 christos lo = boundary - SECSPERDAY;
848 1.54 christos lotmp = my_localtime_rz(tz, &lo, &localtm[old]);
849 1.54 christos }
850 1.54 christos if (lotmp)
851 1.54 christos localtm[old] = *lotmp;
852 1.54 christos else
853 1.54 christos localtm[old].tm_sec = -1;
854 1.54 christos if (! my_gmtime_r(&lo, &gmtm[old]))
855 1.54 christos gmtm[old].tm_sec = -1;
856 1.54 christos
857 1.54 christos /* Search sequentially for definedness transitions. Although this
858 1.54 christos could be sped up by refining 'hunt' to search for either
859 1.54 christos localtime or gmtime definedness transitions, it hardly seems
860 1.54 christos worth the trouble. */
861 1.54 christos for (t = lo + 1; t < hi; t++) {
862 1.54 christos bool new = !old;
863 1.54 christos if (! my_localtime_rz(tz, &t, &localtm[new]))
864 1.54 christos localtm[new].tm_sec = -1;
865 1.54 christos if (! my_gmtime_r(&t, &gmtm[new]))
866 1.54 christos gmtm[new].tm_sec = -1;
867 1.54 christos if (((localtm[old].tm_sec < 0) != (localtm[new].tm_sec < 0))
868 1.54 christos | ((gmtm[old].tm_sec < 0) != (gmtm[new].tm_sec < 0))) {
869 1.54 christos show(tz, zone, t - 1, true);
870 1.54 christos show(tz, zone, t, true);
871 1.54 christos }
872 1.54 christos old = new;
873 1.54 christos }
874 1.54 christos }
875 1.54 christos
876 1.48 christos #if HAVE_SNPRINTF
877 1.48 christos # define my_snprintf snprintf
878 1.48 christos #else
879 1.47 christos # include <stdarg.h>
880 1.47 christos
881 1.47 christos /* A substitute for snprintf that is good enough for zdump. */
882 1.48 christos static int ATTRIBUTE_FORMAT((printf, 3, 4))
883 1.48 christos my_snprintf(char *s, size_t size, char const *format, ...)
884 1.47 christos {
885 1.47 christos int n;
886 1.47 christos va_list args;
887 1.47 christos char const *arg;
888 1.47 christos size_t arglen, slen;
889 1.47 christos char buf[1024];
890 1.47 christos va_start(args, format);
891 1.47 christos if (strcmp(format, "%s") == 0) {
892 1.47 christos arg = va_arg(args, char const *);
893 1.47 christos arglen = strlen(arg);
894 1.47 christos } else {
895 1.47 christos n = vsprintf(buf, format, args);
896 1.51 christos if (n < 0) {
897 1.51 christos va_end(args);
898 1.47 christos return n;
899 1.51 christos }
900 1.47 christos arg = buf;
901 1.47 christos arglen = n;
902 1.47 christos }
903 1.47 christos slen = arglen < size ? arglen : size - 1;
904 1.47 christos memcpy(s, arg, slen);
905 1.47 christos s[slen] = '\0';
906 1.47 christos n = arglen <= INT_MAX ? arglen : -1;
907 1.47 christos va_end(args);
908 1.47 christos return n;
909 1.47 christos }
910 1.47 christos #endif
911 1.47 christos
912 1.44 christos /* Store into BUF, of size SIZE, a formatted local time taken from *TM.
913 1.44 christos Use ISO 8601 format +HH:MM:SS. Omit :SS if SS is zero, and omit
914 1.44 christos :MM too if MM is also zero.
915 1.44 christos
916 1.44 christos Return the length of the resulting string. If the string does not
917 1.44 christos fit, return the length that the string would have been if it had
918 1.44 christos fit; do not overrun the output buffer. */
919 1.44 christos static int
920 1.44 christos format_local_time(char *buf, size_t size, struct tm const *tm)
921 1.44 christos {
922 1.44 christos int ss = tm->tm_sec, mm = tm->tm_min, hh = tm->tm_hour;
923 1.44 christos return (ss
924 1.48 christos ? my_snprintf(buf, size, "%02d:%02d:%02d", hh, mm, ss)
925 1.44 christos : mm
926 1.48 christos ? my_snprintf(buf, size, "%02d:%02d", hh, mm)
927 1.48 christos : my_snprintf(buf, size, "%02d", hh));
928 1.44 christos }
929 1.44 christos
930 1.48 christos /* Store into BUF, of size SIZE, a formatted UT offset for the
931 1.44 christos localtime *TM corresponding to time T. Use ISO 8601 format
932 1.46 christos +HHMMSS, or -HHMMSS for timestamps west of Greenwich; use the
933 1.48 christos format -00 for unknown UT offsets. If the hour needs more than
934 1.46 christos two digits to represent, extend the length of HH as needed.
935 1.46 christos Otherwise, omit SS if SS is zero, and omit MM too if MM is also
936 1.46 christos zero.
937 1.44 christos
938 1.44 christos Return the length of the resulting string, or -1 if the result is
939 1.44 christos not representable as a string. If the string does not fit, return
940 1.44 christos the length that the string would have been if it had fit; do not
941 1.44 christos overrun the output buffer. */
942 1.44 christos static int
943 1.44 christos format_utc_offset(char *buf, size_t size, struct tm const *tm, time_t t)
944 1.44 christos {
945 1.44 christos long off = gmtoff(tm, &t, NULL);
946 1.44 christos char sign = ((off < 0
947 1.44 christos || (off == 0
948 1.44 christos && (*abbr(tm) == '-' || strcmp(abbr(tm), "zzz") == 0)))
949 1.44 christos ? '-' : '+');
950 1.44 christos long hh;
951 1.44 christos int mm, ss;
952 1.44 christos if (off < 0)
953 1.44 christos {
954 1.44 christos if (off == LONG_MIN)
955 1.44 christos return -1;
956 1.44 christos off = -off;
957 1.44 christos }
958 1.44 christos ss = off % 60;
959 1.44 christos mm = off / 60 % 60;
960 1.44 christos hh = off / 60 / 60;
961 1.46 christos return (ss || 100 <= hh
962 1.48 christos ? my_snprintf(buf, size, "%c%02ld%02d%02d", sign, hh, mm, ss)
963 1.44 christos : mm
964 1.48 christos ? my_snprintf(buf, size, "%c%02ld%02d", sign, hh, mm)
965 1.48 christos : my_snprintf(buf, size, "%c%02ld", sign, hh));
966 1.44 christos }
967 1.44 christos
968 1.44 christos /* Store into BUF (of size SIZE) a quoted string representation of P.
969 1.44 christos If the representation's length is less than SIZE, return the
970 1.44 christos length; the representation is not null terminated. Otherwise
971 1.44 christos return SIZE, to indicate that BUF is too small. */
972 1.44 christos static size_t
973 1.44 christos format_quoted_string(char *buf, size_t size, char const *p)
974 1.44 christos {
975 1.44 christos char *b = buf;
976 1.44 christos size_t s = size;
977 1.44 christos if (!s)
978 1.44 christos return size;
979 1.44 christos *b++ = '"', s--;
980 1.44 christos for (;;) {
981 1.44 christos char c = *p++;
982 1.44 christos if (s <= 1)
983 1.44 christos return size;
984 1.44 christos switch (c) {
985 1.44 christos default: *b++ = c, s--; continue;
986 1.44 christos case '\0': *b++ = '"', s--; return size - s;
987 1.44 christos case '"': case '\\': break;
988 1.44 christos case ' ': c = 's'; break;
989 1.44 christos case '\f': c = 'f'; break;
990 1.44 christos case '\n': c = 'n'; break;
991 1.44 christos case '\r': c = 'r'; break;
992 1.44 christos case '\t': c = 't'; break;
993 1.44 christos case '\v': c = 'v'; break;
994 1.44 christos }
995 1.44 christos *b++ = '\\', *b++ = c, s -= 2;
996 1.44 christos }
997 1.44 christos }
998 1.44 christos
999 1.46 christos /* Store into BUF (of size SIZE) a timestamp formatted by TIME_FMT.
1000 1.44 christos TM is the broken-down time, T the seconds count, AB the time zone
1001 1.44 christos abbreviation, and ZONE_NAME the zone name. Return true if
1002 1.44 christos successful, false if the output would require more than SIZE bytes.
1003 1.44 christos TIME_FMT uses the same format that strftime uses, with these
1004 1.44 christos additions:
1005 1.44 christos
1006 1.44 christos %f zone name
1007 1.44 christos %L local time as per format_local_time
1008 1.48 christos %Q like "U\t%Z\tD" where U is the UT offset as for format_utc_offset
1009 1.44 christos and D is the isdst flag; except omit D if it is zero, omit %Z if
1010 1.44 christos it equals U, quote and escape %Z if it contains nonalphabetics,
1011 1.44 christos and omit any trailing tabs. */
1012 1.44 christos
1013 1.44 christos static bool
1014 1.44 christos istrftime(char *buf, size_t size, char const *time_fmt,
1015 1.44 christos struct tm const *tm, time_t t, char const *ab, char const *zone_name)
1016 1.44 christos {
1017 1.44 christos char *b = buf;
1018 1.44 christos size_t s = size;
1019 1.44 christos char const *f = time_fmt, *p;
1020 1.44 christos
1021 1.44 christos for (p = f; ; p++)
1022 1.44 christos if (*p == '%' && p[1] == '%')
1023 1.44 christos p++;
1024 1.44 christos else if (!*p
1025 1.44 christos || (*p == '%'
1026 1.44 christos && (p[1] == 'f' || p[1] == 'L' || p[1] == 'Q'))) {
1027 1.44 christos size_t formatted_len;
1028 1.44 christos size_t f_prefix_len = p - f;
1029 1.44 christos size_t f_prefix_copy_size = p - f + 2;
1030 1.44 christos char fbuf[100];
1031 1.44 christos bool oversized = sizeof fbuf <= f_prefix_copy_size;
1032 1.44 christos char *f_prefix_copy = oversized ? xmalloc(f_prefix_copy_size) : fbuf;
1033 1.44 christos memcpy(f_prefix_copy, f, f_prefix_len);
1034 1.44 christos strcpy(f_prefix_copy + f_prefix_len, "X");
1035 1.44 christos formatted_len = strftime(b, s, f_prefix_copy, tm);
1036 1.44 christos if (oversized)
1037 1.44 christos free(f_prefix_copy);
1038 1.44 christos if (formatted_len == 0)
1039 1.44 christos return false;
1040 1.44 christos formatted_len--;
1041 1.44 christos b += formatted_len, s -= formatted_len;
1042 1.44 christos if (!*p++)
1043 1.44 christos break;
1044 1.44 christos switch (*p) {
1045 1.44 christos case 'f':
1046 1.44 christos formatted_len = format_quoted_string(b, s, zone_name);
1047 1.44 christos break;
1048 1.44 christos case 'L':
1049 1.44 christos formatted_len = format_local_time(b, s, tm);
1050 1.44 christos break;
1051 1.44 christos case 'Q':
1052 1.44 christos {
1053 1.44 christos bool show_abbr;
1054 1.44 christos int offlen = format_utc_offset(b, s, tm, t);
1055 1.44 christos if (! (0 <= offlen && (size_t)offlen < s))
1056 1.44 christos return false;
1057 1.44 christos show_abbr = strcmp(b, ab) != 0;
1058 1.44 christos b += offlen, s -= offlen;
1059 1.44 christos if (show_abbr) {
1060 1.44 christos char const *abp;
1061 1.44 christos size_t len;
1062 1.44 christos if (s <= 1)
1063 1.44 christos return false;
1064 1.44 christos *b++ = '\t', s--;
1065 1.44 christos for (abp = ab; is_alpha(*abp); abp++)
1066 1.44 christos continue;
1067 1.44 christos len = (!*abp && *ab
1068 1.48 christos ? (size_t)my_snprintf(b, s, "%s", ab)
1069 1.44 christos : format_quoted_string(b, s, ab));
1070 1.44 christos if (s <= len)
1071 1.44 christos return false;
1072 1.44 christos b += len, s -= len;
1073 1.44 christos }
1074 1.48 christos formatted_len
1075 1.48 christos = (tm->tm_isdst
1076 1.48 christos ? my_snprintf(b, s, &"\t\t%d"[show_abbr], tm->tm_isdst)
1077 1.48 christos : 0);
1078 1.44 christos }
1079 1.44 christos break;
1080 1.44 christos }
1081 1.46 christos if (s <= formatted_len)
1082 1.44 christos return false;
1083 1.44 christos b += formatted_len, s -= formatted_len;
1084 1.44 christos f = p + 1;
1085 1.44 christos }
1086 1.44 christos *b = '\0';
1087 1.44 christos return true;
1088 1.44 christos }
1089 1.44 christos
1090 1.44 christos /* Show a time transition. */
1091 1.44 christos static void
1092 1.44 christos showtrans(char const *time_fmt, struct tm const *tm, time_t t, char const *ab,
1093 1.44 christos char const *zone_name)
1094 1.44 christos {
1095 1.44 christos if (!tm) {
1096 1.44 christos printf(tformat(), t);
1097 1.44 christos putchar('\n');
1098 1.44 christos } else {
1099 1.44 christos char stackbuf[1000];
1100 1.44 christos size_t size = sizeof stackbuf;
1101 1.44 christos char *buf = stackbuf;
1102 1.44 christos char *bufalloc = NULL;
1103 1.44 christos while (! istrftime(buf, size, time_fmt, tm, t, ab, zone_name)) {
1104 1.44 christos size = sumsize(size, size);
1105 1.44 christos free(bufalloc);
1106 1.44 christos buf = bufalloc = xmalloc(size);
1107 1.44 christos }
1108 1.44 christos puts(buf);
1109 1.44 christos free(bufalloc);
1110 1.44 christos }
1111 1.44 christos }
1112 1.44 christos
1113 1.9 mycroft static const char *
1114 1.36 christos abbr(struct tm const *tmp)
1115 1.1 jtc {
1116 1.36 christos #ifdef TM_ZONE
1117 1.36 christos return tmp->TM_ZONE;
1118 1.36 christos #else
1119 1.47 christos # if HAVE_TZNAME
1120 1.47 christos if (0 <= tmp->tm_isdst && tzname[0 < tmp->tm_isdst])
1121 1.47 christos return tzname[0 < tmp->tm_isdst];
1122 1.47 christos # endif
1123 1.47 christos return "";
1124 1.36 christos #endif
1125 1.1 jtc }
1126 1.17 mlelstv
1127 1.17 mlelstv /*
1128 1.17 mlelstv ** The code below can fail on certain theoretical systems;
1129 1.17 mlelstv ** it works on all known real-world systems as of 2004-12-30.
1130 1.17 mlelstv */
1131 1.17 mlelstv
1132 1.17 mlelstv static const char *
1133 1.17 mlelstv tformat(void)
1134 1.17 mlelstv {
1135 1.17 mlelstv if (0 > (time_t) -1) { /* signed */
1136 1.54 christos if (sizeof(time_t) == sizeof(intmax_t))
1137 1.29 christos return "%"PRIdMAX;
1138 1.54 christos if (sizeof(time_t) > sizeof(long))
1139 1.17 mlelstv return "%lld";
1140 1.54 christos if (sizeof(time_t) > sizeof(int))
1141 1.17 mlelstv return "%ld";
1142 1.17 mlelstv return "%d";
1143 1.17 mlelstv }
1144 1.29 christos #ifdef PRIuMAX
1145 1.54 christos if (sizeof(time_t) == sizeof(uintmax_t))
1146 1.29 christos return "%"PRIuMAX;
1147 1.29 christos #endif
1148 1.54 christos if (sizeof(time_t) > sizeof(unsigned long))
1149 1.17 mlelstv return "%llu";
1150 1.54 christos if (sizeof(time_t) > sizeof(unsigned int))
1151 1.17 mlelstv return "%lu";
1152 1.17 mlelstv return "%u";
1153 1.17 mlelstv }
1154 1.17 mlelstv
1155 1.17 mlelstv static void
1156 1.26 christos dumptime(const struct tm *timeptr)
1157 1.17 mlelstv {
1158 1.47 christos static const char wday_name[][4] = {
1159 1.17 mlelstv "Sun", "Mon", "Tue", "Wed", "Thu", "Fri", "Sat"
1160 1.17 mlelstv };
1161 1.47 christos static const char mon_name[][4] = {
1162 1.17 mlelstv "Jan", "Feb", "Mar", "Apr", "May", "Jun",
1163 1.17 mlelstv "Jul", "Aug", "Sep", "Oct", "Nov", "Dec"
1164 1.17 mlelstv };
1165 1.26 christos int lead;
1166 1.26 christos int trail;
1167 1.17 mlelstv
1168 1.17 mlelstv if (timeptr == NULL) {
1169 1.36 christos printf("NULL");
1170 1.17 mlelstv return;
1171 1.17 mlelstv }
1172 1.17 mlelstv /*
1173 1.36 christos ** The packaged localtime_rz and gmtime_r never put out-of-range
1174 1.17 mlelstv ** values in tm_wday or tm_mon, but since this code might be compiled
1175 1.17 mlelstv ** with other (perhaps experimental) versions, paranoia is in order.
1176 1.17 mlelstv */
1177 1.47 christos printf("%s %s%3d %.2d:%.2d:%.2d ",
1178 1.54 christos ((0 <= timeptr->tm_wday
1179 1.54 christos && timeptr->tm_wday < sizeof wday_name / sizeof wday_name[0])
1180 1.54 christos ? wday_name[timeptr->tm_wday] : "???"),
1181 1.54 christos ((0 <= timeptr->tm_mon
1182 1.54 christos && timeptr->tm_mon < sizeof mon_name / sizeof mon_name[0])
1183 1.54 christos ? mon_name[timeptr->tm_mon] : "???"),
1184 1.17 mlelstv timeptr->tm_mday, timeptr->tm_hour,
1185 1.17 mlelstv timeptr->tm_min, timeptr->tm_sec);
1186 1.17 mlelstv #define DIVISOR 10
1187 1.17 mlelstv trail = timeptr->tm_year % DIVISOR + TM_YEAR_BASE % DIVISOR;
1188 1.17 mlelstv lead = timeptr->tm_year / DIVISOR + TM_YEAR_BASE / DIVISOR +
1189 1.17 mlelstv trail / DIVISOR;
1190 1.17 mlelstv trail %= DIVISOR;
1191 1.17 mlelstv if (trail < 0 && lead > 0) {
1192 1.17 mlelstv trail += DIVISOR;
1193 1.17 mlelstv --lead;
1194 1.17 mlelstv } else if (lead < 0 && trail > 0) {
1195 1.17 mlelstv trail -= DIVISOR;
1196 1.17 mlelstv ++lead;
1197 1.17 mlelstv }
1198 1.17 mlelstv if (lead == 0)
1199 1.36 christos printf("%d", trail);
1200 1.36 christos else printf("%d%d", lead, ((trail < 0) ? -trail : trail));
1201 1.17 mlelstv }
1202