localtime.c revision 1.41.6.5 1 1.41.6.5 christos /* $NetBSD: localtime.c,v 1.41.6.5 2008/11/23 21:41:08 christos Exp $ */
2 1.41.6.2 christos
3 1.41.6.2 christos /*
4 1.41.6.2 christos ** This file is in the public domain, so clarified as of
5 1.41.6.2 christos ** 1996-06-05 by Arthur David Olson (arthur_david_olson (at) nih.gov).
6 1.41.6.2 christos */
7 1.41.6.2 christos
8 1.41.6.2 christos #include <sys/cdefs.h>
9 1.41.6.2 christos #if defined(LIBC_SCCS) && !defined(lint)
10 1.41.6.2 christos #if 0
11 1.41.6.2 christos static char elsieid[] = "@(#)localtime.c 7.78";
12 1.41.6.2 christos #else
13 1.41.6.5 christos __RCSID("$NetBSD: localtime.c,v 1.41.6.5 2008/11/23 21:41:08 christos Exp $");
14 1.41.6.2 christos #endif
15 1.41.6.2 christos #endif /* LIBC_SCCS and not lint */
16 1.41.6.2 christos
17 1.41.6.2 christos /*
18 1.41.6.2 christos ** Leap second handling from Bradley White (bww (at) k.gp.cs.cmu.edu).
19 1.41.6.2 christos ** POSIX-style TZ environment variable handling from Guy Harris
20 1.41.6.2 christos ** (guy (at) auspex.com).
21 1.41.6.2 christos */
22 1.41.6.2 christos
23 1.41.6.2 christos /*LINTLIBRARY*/
24 1.41.6.2 christos
25 1.41.6.2 christos #include "namespace.h"
26 1.41.6.2 christos #include "private.h"
27 1.41.6.2 christos #include "tzfile.h"
28 1.41.6.2 christos #include "fcntl.h"
29 1.41.6.2 christos #include "reentrant.h"
30 1.41.6.2 christos
31 1.41.6.3 christos #if defined(__weak_alias)
32 1.41.6.2 christos __weak_alias(daylight,_daylight)
33 1.41.6.2 christos __weak_alias(tzname,_tzname)
34 1.41.6.2 christos __weak_alias(tzset,_tzset)
35 1.41.6.2 christos __weak_alias(tzsetwall,_tzsetwall)
36 1.41.6.2 christos #endif
37 1.41.6.2 christos
38 1.41.6.2 christos /*
39 1.41.6.2 christos ** SunOS 4.1.1 headers lack O_BINARY.
40 1.41.6.2 christos */
41 1.41.6.2 christos
42 1.41.6.2 christos #ifdef O_BINARY
43 1.41.6.2 christos #define OPEN_MODE (O_RDONLY | O_BINARY)
44 1.41.6.2 christos #endif /* defined O_BINARY */
45 1.41.6.2 christos #ifndef O_BINARY
46 1.41.6.2 christos #define OPEN_MODE O_RDONLY
47 1.41.6.2 christos #endif /* !defined O_BINARY */
48 1.41.6.2 christos
49 1.41.6.2 christos #ifndef WILDABBR
50 1.41.6.2 christos /*
51 1.41.6.2 christos ** Someone might make incorrect use of a time zone abbreviation:
52 1.41.6.2 christos ** 1. They might reference tzname[0] before calling tzset (explicitly
53 1.41.6.2 christos ** or implicitly).
54 1.41.6.2 christos ** 2. They might reference tzname[1] before calling tzset (explicitly
55 1.41.6.2 christos ** or implicitly).
56 1.41.6.2 christos ** 3. They might reference tzname[1] after setting to a time zone
57 1.41.6.2 christos ** in which Daylight Saving Time is never observed.
58 1.41.6.2 christos ** 4. They might reference tzname[0] after setting to a time zone
59 1.41.6.2 christos ** in which Standard Time is never observed.
60 1.41.6.2 christos ** 5. They might reference tm.TM_ZONE after calling offtime.
61 1.41.6.2 christos ** What's best to do in the above cases is open to debate;
62 1.41.6.2 christos ** for now, we just set things up so that in any of the five cases
63 1.41.6.2 christos ** WILDABBR is used. Another possibility: initialize tzname[0] to the
64 1.41.6.2 christos ** string "tzname[0] used before set", and similarly for the other cases.
65 1.41.6.2 christos ** And another: initialize tzname[0] to "ERA", with an explanation in the
66 1.41.6.2 christos ** manual page of what this "time zone abbreviation" means (doing this so
67 1.41.6.2 christos ** that tzname[0] has the "normal" length of three characters).
68 1.41.6.2 christos */
69 1.41.6.2 christos #define WILDABBR " "
70 1.41.6.2 christos #endif /* !defined WILDABBR */
71 1.41.6.2 christos
72 1.41.6.2 christos static const char wildabbr[] = "WILDABBR";
73 1.41.6.2 christos
74 1.41.6.2 christos static const char gmt[] = "GMT";
75 1.41.6.2 christos
76 1.41.6.2 christos /*
77 1.41.6.2 christos ** The DST rules to use if TZ has no rules and we can't load TZDEFRULES.
78 1.41.6.2 christos ** We default to US rules as of 1999-08-17.
79 1.41.6.2 christos ** POSIX 1003.1 section 8.1.1 says that the default DST rules are
80 1.41.6.2 christos ** implementation dependent; for historical reasons, US rules are a
81 1.41.6.2 christos ** common default.
82 1.41.6.2 christos */
83 1.41.6.2 christos #ifndef TZDEFRULESTRING
84 1.41.6.2 christos #define TZDEFRULESTRING ",M4.1.0,M10.5.0"
85 1.41.6.2 christos #endif /* !defined TZDEFDST */
86 1.41.6.2 christos
87 1.41.6.2 christos struct ttinfo { /* time type information */
88 1.41.6.2 christos long tt_gmtoff; /* UTC offset in seconds */
89 1.41.6.2 christos int tt_isdst; /* used to set tm_isdst */
90 1.41.6.2 christos int tt_abbrind; /* abbreviation list index */
91 1.41.6.2 christos int tt_ttisstd; /* TRUE if transition is std time */
92 1.41.6.2 christos int tt_ttisgmt; /* TRUE if transition is UTC */
93 1.41.6.2 christos };
94 1.41.6.2 christos
95 1.41.6.2 christos struct lsinfo { /* leap second information */
96 1.41.6.2 christos time_t ls_trans; /* transition time */
97 1.41.6.2 christos long ls_corr; /* correction to apply */
98 1.41.6.2 christos };
99 1.41.6.2 christos
100 1.41.6.2 christos #define BIGGEST(a, b) (((a) > (b)) ? (a) : (b))
101 1.41.6.2 christos
102 1.41.6.2 christos #ifdef TZNAME_MAX
103 1.41.6.2 christos #define MY_TZNAME_MAX TZNAME_MAX
104 1.41.6.2 christos #endif /* defined TZNAME_MAX */
105 1.41.6.2 christos #ifndef TZNAME_MAX
106 1.41.6.2 christos #define MY_TZNAME_MAX 255
107 1.41.6.2 christos #endif /* !defined TZNAME_MAX */
108 1.41.6.2 christos
109 1.41.6.2 christos struct state {
110 1.41.6.2 christos int leapcnt;
111 1.41.6.2 christos int timecnt;
112 1.41.6.2 christos int typecnt;
113 1.41.6.2 christos int charcnt;
114 1.41.6.2 christos time_t ats[TZ_MAX_TIMES]; /* time_t */
115 1.41.6.2 christos unsigned char types[TZ_MAX_TIMES];
116 1.41.6.2 christos struct ttinfo ttis[TZ_MAX_TYPES];
117 1.41.6.2 christos char chars[/*CONSTCOND*/BIGGEST(BIGGEST(TZ_MAX_CHARS + 1, sizeof gmt),
118 1.41.6.2 christos (2 * (MY_TZNAME_MAX + 1)))];
119 1.41.6.2 christos struct lsinfo lsis[TZ_MAX_LEAPS];
120 1.41.6.2 christos };
121 1.41.6.2 christos
122 1.41.6.2 christos struct rule {
123 1.41.6.2 christos int r_type; /* type of rule--see below */
124 1.41.6.2 christos int r_day; /* day number of rule */
125 1.41.6.2 christos int r_week; /* week number of rule */
126 1.41.6.2 christos int r_mon; /* month number of rule */
127 1.41.6.2 christos long r_time; /* transition time of rule */
128 1.41.6.2 christos };
129 1.41.6.2 christos
130 1.41.6.2 christos #define JULIAN_DAY 0 /* Jn - Julian day */
131 1.41.6.2 christos #define DAY_OF_YEAR 1 /* n - day of year */
132 1.41.6.2 christos #define MONTH_NTH_DAY_OF_WEEK 2 /* Mm.n.d - month, week, day of week */
133 1.41.6.2 christos
134 1.41.6.2 christos /*
135 1.41.6.2 christos ** Prototypes for static functions.
136 1.41.6.2 christos */
137 1.41.6.2 christos
138 1.41.6.2 christos static long detzcode P((const char * codep));
139 1.41.6.2 christos static const char * __getzname P((const char * strp));
140 1.41.6.2 christos static const char * getnum P((const char * strp, int * nump, int min,
141 1.41.6.2 christos int max));
142 1.41.6.2 christos static const char * getsecs P((const char * strp, long * secsp));
143 1.41.6.2 christos static const char * __getoffset P((const char * strp, long * offsetp));
144 1.41.6.2 christos static const char * __getrule P((const char * strp, struct rule * rulep));
145 1.41.6.2 christos static void __gmtload P((struct state * sp));
146 1.41.6.2 christos static void gmtsub P((const time_t * timep, long offset,
147 1.41.6.2 christos struct tm * tmp));
148 1.41.6.2 christos static void localsub P((const time_t * timep, long offset,
149 1.41.6.2 christos struct tm * tmp));
150 1.41.6.2 christos static int increment_overflow P((int * number, int delta));
151 1.41.6.2 christos static int normalize_overflow P((int * tensptr, int * unitsptr,
152 1.41.6.2 christos int base));
153 1.41.6.2 christos static void __settzname P((void));
154 1.41.6.2 christos static time_t time1 P((struct tm * tmp,
155 1.41.6.2 christos void(*funcp) P((const time_t *,
156 1.41.6.2 christos long, struct tm *)),
157 1.41.6.2 christos long offset));
158 1.41.6.2 christos static time_t time2 P((struct tm *tmp,
159 1.41.6.2 christos void(*funcp) P((const time_t *,
160 1.41.6.2 christos long, struct tm*)),
161 1.41.6.2 christos long offset, int * okayp));
162 1.41.6.2 christos static time_t time2sub P((struct tm *tmp,
163 1.41.6.2 christos void(*funcp) P((const time_t *,
164 1.41.6.2 christos long, struct tm*)),
165 1.41.6.2 christos long offset, int * okayp, int do_norm_secs));
166 1.41.6.2 christos static void timesub P((const time_t * timep, long offset,
167 1.41.6.2 christos const struct state * sp, struct tm * tmp));
168 1.41.6.2 christos static int tmcomp P((const struct tm * atmp,
169 1.41.6.2 christos const struct tm * btmp));
170 1.41.6.2 christos static time_t __transtime P((time_t janfirst, int year,
171 1.41.6.2 christos const struct rule * rulep, long offset));
172 1.41.6.2 christos static int __tzload P((const char * name, struct state * sp));
173 1.41.6.2 christos static int __tzparse P((const char * name, struct state * sp,
174 1.41.6.2 christos int lastditch));
175 1.41.6.2 christos static void __tzset_unlocked P((void));
176 1.41.6.2 christos static void __tzsetwall_unlocked P((void));
177 1.41.6.2 christos #ifdef STD_INSPIRED
178 1.41.6.2 christos static long leapcorr P((time_t * timep));
179 1.41.6.2 christos #endif
180 1.41.6.2 christos
181 1.41.6.2 christos #ifdef ALL_STATE
182 1.41.6.2 christos static struct state * lclptr;
183 1.41.6.2 christos static struct state * gmtptr;
184 1.41.6.2 christos #endif /* defined ALL_STATE */
185 1.41.6.2 christos
186 1.41.6.2 christos #ifndef ALL_STATE
187 1.41.6.2 christos static struct state lclmem;
188 1.41.6.2 christos static struct state gmtmem;
189 1.41.6.2 christos #define lclptr (&lclmem)
190 1.41.6.2 christos #define gmtptr (&gmtmem)
191 1.41.6.2 christos #endif /* State Farm */
192 1.41.6.2 christos
193 1.41.6.2 christos #ifndef TZ_STRLEN_MAX
194 1.41.6.2 christos #define TZ_STRLEN_MAX 255
195 1.41.6.2 christos #endif /* !defined TZ_STRLEN_MAX */
196 1.41.6.2 christos
197 1.41.6.2 christos
198 1.41.6.4 christos static char __lcl_TZname[TZ_STRLEN_MAX + 1];
199 1.41.6.4 christos static int __lcl_is_set;
200 1.41.6.4 christos static int __gmt_is_set;
201 1.41.6.4 christos
202 1.41.6.4 christos #if !defined(__LIBC12_SOURCE__)
203 1.41.6.2 christos
204 1.41.6.2 christos __aconst char * tzname[2] = {
205 1.41.6.2 christos (__aconst char *)__UNCONST(wildabbr),
206 1.41.6.2 christos (__aconst char *)__UNCONST(wildabbr)
207 1.41.6.2 christos };
208 1.41.6.2 christos
209 1.41.6.2 christos #else
210 1.41.6.2 christos
211 1.41.6.2 christos extern __aconst char * tzname[2];
212 1.41.6.2 christos
213 1.41.6.2 christos #endif
214 1.41.6.2 christos
215 1.41.6.2 christos #ifdef _REENTRANT
216 1.41.6.2 christos static rwlock_t __lcl_lock = RWLOCK_INITIALIZER;
217 1.41.6.2 christos #endif
218 1.41.6.2 christos
219 1.41.6.2 christos /*
220 1.41.6.2 christos ** Section 4.12.3 of X3.159-1989 requires that
221 1.41.6.2 christos ** Except for the strftime function, these functions [asctime,
222 1.41.6.2 christos ** ctime, gmtime, localtime] return values in one of two static
223 1.41.6.2 christos ** objects: a broken-down time structure and an array of char.
224 1.41.6.2 christos ** Thanks to Paul Eggert (eggert (at) twinsun.com) for noting this.
225 1.41.6.2 christos */
226 1.41.6.2 christos
227 1.41.6.2 christos static struct tm tm;
228 1.41.6.2 christos
229 1.41.6.2 christos #ifdef USG_COMPAT
230 1.41.6.2 christos #if !defined(__LIBC12_SOURCE__)
231 1.41.6.2 christos long timezone = 0;
232 1.41.6.2 christos int daylight = 0;
233 1.41.6.2 christos #else
234 1.41.6.2 christos extern int daylight;
235 1.41.6.5 christos extern long timezone __RENAME(__timezone13);
236 1.41.6.2 christos #endif
237 1.41.6.2 christos #endif /* defined USG_COMPAT */
238 1.41.6.2 christos
239 1.41.6.2 christos #ifdef ALTZONE
240 1.41.6.2 christos time_t altzone = 0;
241 1.41.6.2 christos #endif /* defined ALTZONE */
242 1.41.6.2 christos
243 1.41.6.2 christos static long
244 1.41.6.2 christos detzcode(codep)
245 1.41.6.2 christos const char * const codep;
246 1.41.6.2 christos {
247 1.41.6.2 christos register long result;
248 1.41.6.2 christos
249 1.41.6.2 christos /*
250 1.41.6.2 christos ** The first character must be sign extended on systems with >32bit
251 1.41.6.2 christos ** longs. This was solved differently in the master tzcode sources
252 1.41.6.2 christos ** (the fix first appeared in tzcode95c.tar.gz). But I believe
253 1.41.6.2 christos ** that this implementation is superior.
254 1.41.6.2 christos */
255 1.41.6.2 christos
256 1.41.6.2 christos #define SIGN_EXTEND_CHAR(x) ((signed char) x)
257 1.41.6.2 christos
258 1.41.6.2 christos result = (SIGN_EXTEND_CHAR(codep[0]) << 24) \
259 1.41.6.2 christos | (codep[1] & 0xff) << 16 \
260 1.41.6.2 christos | (codep[2] & 0xff) << 8
261 1.41.6.2 christos | (codep[3] & 0xff);
262 1.41.6.2 christos return result;
263 1.41.6.2 christos }
264 1.41.6.2 christos
265 1.41.6.2 christos void
266 1.41.6.2 christos __settzname P((void))
267 1.41.6.2 christos {
268 1.41.6.2 christos register struct state * const sp = lclptr;
269 1.41.6.2 christos register int i;
270 1.41.6.2 christos
271 1.41.6.2 christos tzname[0] = (__aconst char *)__UNCONST(wildabbr);
272 1.41.6.2 christos tzname[1] = (__aconst char *)__UNCONST(wildabbr);
273 1.41.6.2 christos #ifdef USG_COMPAT
274 1.41.6.2 christos daylight = 0;
275 1.41.6.2 christos timezone = 0;
276 1.41.6.2 christos #endif /* defined USG_COMPAT */
277 1.41.6.2 christos #ifdef ALTZONE
278 1.41.6.2 christos altzone = 0;
279 1.41.6.2 christos #endif /* defined ALTZONE */
280 1.41.6.2 christos #ifdef ALL_STATE
281 1.41.6.2 christos if (sp == NULL) {
282 1.41.6.2 christos tzname[0] = tzname[1] = (__aconst char *)__UNCONST(gmt);
283 1.41.6.2 christos return;
284 1.41.6.2 christos }
285 1.41.6.2 christos #endif /* defined ALL_STATE */
286 1.41.6.2 christos for (i = 0; i < sp->typecnt; ++i) {
287 1.41.6.2 christos register const struct ttinfo * const ttisp = &sp->ttis[i];
288 1.41.6.2 christos
289 1.41.6.2 christos tzname[ttisp->tt_isdst] =
290 1.41.6.2 christos &sp->chars[ttisp->tt_abbrind];
291 1.41.6.2 christos }
292 1.41.6.2 christos /*
293 1.41.6.2 christos ** And to get the latest zone names into tzname. . .
294 1.41.6.2 christos */
295 1.41.6.2 christos for (i = 0; i < sp->timecnt; ++i) {
296 1.41.6.2 christos register const struct ttinfo * const ttisp =
297 1.41.6.2 christos &sp->ttis[
298 1.41.6.2 christos sp->types[i]];
299 1.41.6.2 christos
300 1.41.6.2 christos tzname[ttisp->tt_isdst] =
301 1.41.6.2 christos &sp->chars[ttisp->tt_abbrind];
302 1.41.6.2 christos #ifdef USG_COMPAT
303 1.41.6.2 christos if (ttisp->tt_isdst)
304 1.41.6.2 christos daylight = 1;
305 1.41.6.2 christos if (i == 0 || !ttisp->tt_isdst)
306 1.41.6.2 christos timezone = -(ttisp->tt_gmtoff);
307 1.41.6.2 christos #endif /* defined USG_COMPAT */
308 1.41.6.2 christos #ifdef ALTZONE
309 1.41.6.2 christos if (i == 0 || ttisp->tt_isdst)
310 1.41.6.2 christos altzone = -(ttisp->tt_gmtoff);
311 1.41.6.2 christos #endif /* defined ALTZONE */
312 1.41.6.2 christos }
313 1.41.6.2 christos }
314 1.41.6.2 christos
315 1.41.6.2 christos int
316 1.41.6.2 christos __tzload(name, sp)
317 1.41.6.2 christos register const char * name;
318 1.41.6.2 christos register struct state * const sp;
319 1.41.6.2 christos {
320 1.41.6.2 christos register const char * p;
321 1.41.6.2 christos register int i;
322 1.41.6.2 christos register int fid;
323 1.41.6.2 christos
324 1.41.6.2 christos if (name == NULL && (name = TZDEFAULT) == NULL)
325 1.41.6.2 christos return -1;
326 1.41.6.2 christos
327 1.41.6.2 christos {
328 1.41.6.2 christos register int doaccess;
329 1.41.6.2 christos /*
330 1.41.6.2 christos ** Section 4.9.1 of the C standard says that
331 1.41.6.2 christos ** "FILENAME_MAX expands to an integral constant expression
332 1.41.6.2 christos ** that is the size needed for an array of char large enough
333 1.41.6.2 christos ** to hold the longest file name string that the implementation
334 1.41.6.2 christos ** guarantees can be opened."
335 1.41.6.2 christos */
336 1.41.6.2 christos char fullname[FILENAME_MAX + 1];
337 1.41.6.2 christos
338 1.41.6.2 christos if (name[0] == ':')
339 1.41.6.2 christos ++name;
340 1.41.6.2 christos doaccess = name[0] == '/';
341 1.41.6.2 christos if (!doaccess) {
342 1.41.6.2 christos if ((p = TZDIR) == NULL)
343 1.41.6.2 christos return -1;
344 1.41.6.2 christos if ((strlen(p) + strlen(name) + 1) >= sizeof fullname)
345 1.41.6.2 christos return -1;
346 1.41.6.2 christos (void) strcpy(fullname, p); /* XXX strcpy is safe */
347 1.41.6.2 christos (void) strcat(fullname, "/"); /* XXX strcat is safe */
348 1.41.6.2 christos (void) strcat(fullname, name); /* XXX strcat is safe */
349 1.41.6.2 christos /*
350 1.41.6.2 christos ** Set doaccess if '.' (as in "../") shows up in name.
351 1.41.6.2 christos */
352 1.41.6.2 christos if (strchr(name, '.') != NULL)
353 1.41.6.2 christos doaccess = TRUE;
354 1.41.6.2 christos name = fullname;
355 1.41.6.2 christos }
356 1.41.6.2 christos if (doaccess && access(name, R_OK) != 0)
357 1.41.6.2 christos return -1;
358 1.41.6.2 christos /*
359 1.41.6.2 christos * XXX potential security problem here if user of a set-id
360 1.41.6.2 christos * program has set TZ (which is passed in as name) here,
361 1.41.6.2 christos * and uses a race condition trick to defeat the access(2)
362 1.41.6.2 christos * above.
363 1.41.6.2 christos */
364 1.41.6.2 christos if ((fid = open(name, OPEN_MODE)) == -1)
365 1.41.6.2 christos return -1;
366 1.41.6.2 christos }
367 1.41.6.2 christos {
368 1.41.6.2 christos struct tzhead * tzhp;
369 1.41.6.2 christos union {
370 1.41.6.2 christos struct tzhead tzhead;
371 1.41.6.2 christos char buf[sizeof *sp + sizeof *tzhp];
372 1.41.6.2 christos } u;
373 1.41.6.2 christos int ttisstdcnt;
374 1.41.6.2 christos int ttisgmtcnt;
375 1.41.6.2 christos
376 1.41.6.2 christos i = read(fid, u.buf, sizeof u.buf);
377 1.41.6.2 christos if (close(fid) != 0)
378 1.41.6.2 christos return -1;
379 1.41.6.2 christos ttisstdcnt = (int) detzcode(u.tzhead.tzh_ttisstdcnt);
380 1.41.6.2 christos ttisgmtcnt = (int) detzcode(u.tzhead.tzh_ttisgmtcnt);
381 1.41.6.2 christos sp->leapcnt = (int) detzcode(u.tzhead.tzh_leapcnt);
382 1.41.6.2 christos sp->timecnt = (int) detzcode(u.tzhead.tzh_timecnt);
383 1.41.6.2 christos sp->typecnt = (int) detzcode(u.tzhead.tzh_typecnt);
384 1.41.6.2 christos sp->charcnt = (int) detzcode(u.tzhead.tzh_charcnt);
385 1.41.6.2 christos p = u.tzhead.tzh_charcnt + sizeof u.tzhead.tzh_charcnt;
386 1.41.6.2 christos if (sp->leapcnt < 0 || sp->leapcnt > TZ_MAX_LEAPS ||
387 1.41.6.2 christos sp->typecnt <= 0 || sp->typecnt > TZ_MAX_TYPES ||
388 1.41.6.2 christos sp->timecnt < 0 || sp->timecnt > TZ_MAX_TIMES ||
389 1.41.6.2 christos sp->charcnt < 0 || sp->charcnt > TZ_MAX_CHARS ||
390 1.41.6.2 christos (ttisstdcnt != sp->typecnt && ttisstdcnt != 0) ||
391 1.41.6.2 christos (ttisgmtcnt != sp->typecnt && ttisgmtcnt != 0))
392 1.41.6.2 christos return -1;
393 1.41.6.2 christos if (i - (p - u.buf) < sp->timecnt * 4 + /* ats */
394 1.41.6.2 christos sp->timecnt + /* types */
395 1.41.6.2 christos sp->typecnt * (4 + 2) + /* ttinfos */
396 1.41.6.2 christos sp->charcnt + /* chars */
397 1.41.6.2 christos sp->leapcnt * (4 + 4) + /* lsinfos */
398 1.41.6.2 christos ttisstdcnt + /* ttisstds */
399 1.41.6.2 christos ttisgmtcnt) /* ttisgmts */
400 1.41.6.2 christos return -1;
401 1.41.6.2 christos for (i = 0; i < sp->timecnt; ++i) {
402 1.41.6.2 christos sp->ats[i] = detzcode(p);
403 1.41.6.2 christos p += 4;
404 1.41.6.2 christos }
405 1.41.6.2 christos for (i = 0; i < sp->timecnt; ++i) {
406 1.41.6.2 christos sp->types[i] = (unsigned char) *p++;
407 1.41.6.2 christos if (sp->types[i] >= sp->typecnt)
408 1.41.6.2 christos return -1;
409 1.41.6.2 christos }
410 1.41.6.2 christos for (i = 0; i < sp->typecnt; ++i) {
411 1.41.6.2 christos register struct ttinfo * ttisp;
412 1.41.6.2 christos
413 1.41.6.2 christos ttisp = &sp->ttis[i];
414 1.41.6.2 christos ttisp->tt_gmtoff = detzcode(p);
415 1.41.6.2 christos p += 4;
416 1.41.6.2 christos ttisp->tt_isdst = (unsigned char) *p++;
417 1.41.6.2 christos if (ttisp->tt_isdst != 0 && ttisp->tt_isdst != 1)
418 1.41.6.2 christos return -1;
419 1.41.6.2 christos ttisp->tt_abbrind = (unsigned char) *p++;
420 1.41.6.2 christos if (ttisp->tt_abbrind < 0 ||
421 1.41.6.2 christos ttisp->tt_abbrind > sp->charcnt)
422 1.41.6.2 christos return -1;
423 1.41.6.2 christos }
424 1.41.6.2 christos for (i = 0; i < sp->charcnt; ++i)
425 1.41.6.2 christos sp->chars[i] = *p++;
426 1.41.6.2 christos sp->chars[i] = '\0'; /* ensure '\0' at end */
427 1.41.6.2 christos for (i = 0; i < sp->leapcnt; ++i) {
428 1.41.6.2 christos register struct lsinfo * lsisp;
429 1.41.6.2 christos
430 1.41.6.2 christos lsisp = &sp->lsis[i];
431 1.41.6.2 christos lsisp->ls_trans = detzcode(p);
432 1.41.6.2 christos p += 4;
433 1.41.6.2 christos lsisp->ls_corr = detzcode(p);
434 1.41.6.2 christos p += 4;
435 1.41.6.2 christos }
436 1.41.6.2 christos for (i = 0; i < sp->typecnt; ++i) {
437 1.41.6.2 christos register struct ttinfo * ttisp;
438 1.41.6.2 christos
439 1.41.6.2 christos ttisp = &sp->ttis[i];
440 1.41.6.2 christos if (ttisstdcnt == 0)
441 1.41.6.2 christos ttisp->tt_ttisstd = FALSE;
442 1.41.6.2 christos else {
443 1.41.6.2 christos ttisp->tt_ttisstd = *p++;
444 1.41.6.2 christos if (ttisp->tt_ttisstd != TRUE &&
445 1.41.6.2 christos ttisp->tt_ttisstd != FALSE)
446 1.41.6.2 christos return -1;
447 1.41.6.2 christos }
448 1.41.6.2 christos }
449 1.41.6.2 christos for (i = 0; i < sp->typecnt; ++i) {
450 1.41.6.2 christos register struct ttinfo * ttisp;
451 1.41.6.2 christos
452 1.41.6.2 christos ttisp = &sp->ttis[i];
453 1.41.6.2 christos if (ttisgmtcnt == 0)
454 1.41.6.2 christos ttisp->tt_ttisgmt = FALSE;
455 1.41.6.2 christos else {
456 1.41.6.2 christos ttisp->tt_ttisgmt = *p++;
457 1.41.6.2 christos if (ttisp->tt_ttisgmt != TRUE &&
458 1.41.6.2 christos ttisp->tt_ttisgmt != FALSE)
459 1.41.6.2 christos return -1;
460 1.41.6.2 christos }
461 1.41.6.2 christos }
462 1.41.6.2 christos }
463 1.41.6.2 christos return 0;
464 1.41.6.2 christos }
465 1.41.6.2 christos
466 1.41.6.2 christos static const int mon_lengths[2][MONSPERYEAR] = {
467 1.41.6.2 christos { 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 },
468 1.41.6.2 christos { 31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 }
469 1.41.6.2 christos };
470 1.41.6.2 christos
471 1.41.6.2 christos static const int year_lengths[2] = {
472 1.41.6.2 christos DAYSPERNYEAR, DAYSPERLYEAR
473 1.41.6.2 christos };
474 1.41.6.2 christos
475 1.41.6.2 christos /*
476 1.41.6.2 christos ** Given a pointer into a time zone string, scan until a character that is not
477 1.41.6.2 christos ** a valid character in a zone name is found. Return a pointer to that
478 1.41.6.2 christos ** character.
479 1.41.6.2 christos */
480 1.41.6.2 christos
481 1.41.6.2 christos static const char *
482 1.41.6.2 christos __getzname(strp)
483 1.41.6.2 christos register const char * strp;
484 1.41.6.2 christos {
485 1.41.6.2 christos register char c;
486 1.41.6.2 christos
487 1.41.6.2 christos while ((c = *strp) != '\0' && !is_digit(c) && c != ',' && c != '-' &&
488 1.41.6.2 christos c != '+')
489 1.41.6.2 christos ++strp;
490 1.41.6.2 christos return strp;
491 1.41.6.2 christos }
492 1.41.6.2 christos
493 1.41.6.2 christos /*
494 1.41.6.2 christos ** Given a pointer into a time zone string, extract a number from that string.
495 1.41.6.2 christos ** Check that the number is within a specified range; if it is not, return
496 1.41.6.2 christos ** NULL.
497 1.41.6.2 christos ** Otherwise, return a pointer to the first character not part of the number.
498 1.41.6.2 christos */
499 1.41.6.2 christos
500 1.41.6.2 christos static const char *
501 1.41.6.2 christos getnum(strp, nump, min, max)
502 1.41.6.2 christos register const char * strp;
503 1.41.6.2 christos int * const nump;
504 1.41.6.2 christos const int min;
505 1.41.6.2 christos const int max;
506 1.41.6.2 christos {
507 1.41.6.2 christos register char c;
508 1.41.6.2 christos register int num;
509 1.41.6.2 christos
510 1.41.6.2 christos if (strp == NULL || !is_digit(c = *strp))
511 1.41.6.2 christos return NULL;
512 1.41.6.2 christos num = 0;
513 1.41.6.2 christos do {
514 1.41.6.2 christos num = num * 10 + (c - '0');
515 1.41.6.2 christos if (num > max)
516 1.41.6.2 christos return NULL; /* illegal value */
517 1.41.6.2 christos c = *++strp;
518 1.41.6.2 christos } while (is_digit(c));
519 1.41.6.2 christos if (num < min)
520 1.41.6.2 christos return NULL; /* illegal value */
521 1.41.6.2 christos *nump = num;
522 1.41.6.2 christos return strp;
523 1.41.6.2 christos }
524 1.41.6.2 christos
525 1.41.6.2 christos /*
526 1.41.6.2 christos ** Given a pointer into a time zone string, extract a number of seconds,
527 1.41.6.2 christos ** in hh[:mm[:ss]] form, from the string.
528 1.41.6.2 christos ** If any error occurs, return NULL.
529 1.41.6.2 christos ** Otherwise, return a pointer to the first character not part of the number
530 1.41.6.2 christos ** of seconds.
531 1.41.6.2 christos */
532 1.41.6.2 christos
533 1.41.6.2 christos static const char *
534 1.41.6.2 christos getsecs(strp, secsp)
535 1.41.6.2 christos register const char * strp;
536 1.41.6.2 christos long * const secsp;
537 1.41.6.2 christos {
538 1.41.6.2 christos int num;
539 1.41.6.2 christos
540 1.41.6.2 christos /*
541 1.41.6.2 christos ** `HOURSPERDAY * DAYSPERWEEK - 1' allows quasi-Posix rules like
542 1.41.6.2 christos ** "M10.4.6/26", which does not conform to Posix,
543 1.41.6.2 christos ** but which specifies the equivalent of
544 1.41.6.2 christos ** ``02:00 on the first Sunday on or after 23 Oct''.
545 1.41.6.2 christos */
546 1.41.6.2 christos strp = getnum(strp, &num, 0, HOURSPERDAY * DAYSPERWEEK - 1);
547 1.41.6.2 christos if (strp == NULL)
548 1.41.6.2 christos return NULL;
549 1.41.6.2 christos *secsp = num * (long) SECSPERHOUR;
550 1.41.6.2 christos if (*strp == ':') {
551 1.41.6.2 christos ++strp;
552 1.41.6.2 christos strp = getnum(strp, &num, 0, MINSPERHOUR - 1);
553 1.41.6.2 christos if (strp == NULL)
554 1.41.6.2 christos return NULL;
555 1.41.6.2 christos *secsp += num * SECSPERMIN;
556 1.41.6.2 christos if (*strp == ':') {
557 1.41.6.2 christos ++strp;
558 1.41.6.2 christos /* `SECSPERMIN' allows for leap seconds. */
559 1.41.6.2 christos strp = getnum(strp, &num, 0, SECSPERMIN);
560 1.41.6.2 christos if (strp == NULL)
561 1.41.6.2 christos return NULL;
562 1.41.6.2 christos *secsp += num;
563 1.41.6.2 christos }
564 1.41.6.2 christos }
565 1.41.6.2 christos return strp;
566 1.41.6.2 christos }
567 1.41.6.2 christos
568 1.41.6.2 christos /*
569 1.41.6.2 christos ** Given a pointer into a time zone string, extract an offset, in
570 1.41.6.2 christos ** [+-]hh[:mm[:ss]] form, from the string.
571 1.41.6.2 christos ** If any error occurs, return NULL.
572 1.41.6.2 christos ** Otherwise, return a pointer to the first character not part of the time.
573 1.41.6.2 christos */
574 1.41.6.2 christos
575 1.41.6.2 christos static const char *
576 1.41.6.2 christos __getoffset(strp, offsetp)
577 1.41.6.2 christos register const char * strp;
578 1.41.6.2 christos long * const offsetp;
579 1.41.6.2 christos {
580 1.41.6.2 christos register int neg = 0;
581 1.41.6.2 christos
582 1.41.6.2 christos if (*strp == '-') {
583 1.41.6.2 christos neg = 1;
584 1.41.6.2 christos ++strp;
585 1.41.6.2 christos } else if (*strp == '+')
586 1.41.6.2 christos ++strp;
587 1.41.6.2 christos strp = getsecs(strp, offsetp);
588 1.41.6.2 christos if (strp == NULL)
589 1.41.6.2 christos return NULL; /* illegal time */
590 1.41.6.2 christos if (neg)
591 1.41.6.2 christos *offsetp = -*offsetp;
592 1.41.6.2 christos return strp;
593 1.41.6.2 christos }
594 1.41.6.2 christos
595 1.41.6.2 christos /*
596 1.41.6.2 christos ** Given a pointer into a time zone string, extract a rule in the form
597 1.41.6.2 christos ** date[/time]. See POSIX section 8 for the format of "date" and "time".
598 1.41.6.2 christos ** If a valid rule is not found, return NULL.
599 1.41.6.2 christos ** Otherwise, return a pointer to the first character not part of the rule.
600 1.41.6.2 christos */
601 1.41.6.2 christos
602 1.41.6.2 christos static const char *
603 1.41.6.2 christos __getrule(strp, rulep)
604 1.41.6.2 christos const char * strp;
605 1.41.6.2 christos register struct rule * const rulep;
606 1.41.6.2 christos {
607 1.41.6.2 christos if (*strp == 'J') {
608 1.41.6.2 christos /*
609 1.41.6.2 christos ** Julian day.
610 1.41.6.2 christos */
611 1.41.6.2 christos rulep->r_type = JULIAN_DAY;
612 1.41.6.2 christos ++strp;
613 1.41.6.2 christos strp = getnum(strp, &rulep->r_day, 1, DAYSPERNYEAR);
614 1.41.6.2 christos } else if (*strp == 'M') {
615 1.41.6.2 christos /*
616 1.41.6.2 christos ** Month, week, day.
617 1.41.6.2 christos */
618 1.41.6.2 christos rulep->r_type = MONTH_NTH_DAY_OF_WEEK;
619 1.41.6.2 christos ++strp;
620 1.41.6.2 christos strp = getnum(strp, &rulep->r_mon, 1, MONSPERYEAR);
621 1.41.6.2 christos if (strp == NULL)
622 1.41.6.2 christos return NULL;
623 1.41.6.2 christos if (*strp++ != '.')
624 1.41.6.2 christos return NULL;
625 1.41.6.2 christos strp = getnum(strp, &rulep->r_week, 1, 5);
626 1.41.6.2 christos if (strp == NULL)
627 1.41.6.2 christos return NULL;
628 1.41.6.2 christos if (*strp++ != '.')
629 1.41.6.2 christos return NULL;
630 1.41.6.2 christos strp = getnum(strp, &rulep->r_day, 0, DAYSPERWEEK - 1);
631 1.41.6.2 christos } else if (is_digit(*strp)) {
632 1.41.6.2 christos /*
633 1.41.6.2 christos ** Day of year.
634 1.41.6.2 christos */
635 1.41.6.2 christos rulep->r_type = DAY_OF_YEAR;
636 1.41.6.2 christos strp = getnum(strp, &rulep->r_day, 0, DAYSPERLYEAR - 1);
637 1.41.6.2 christos } else return NULL; /* invalid format */
638 1.41.6.2 christos if (strp == NULL)
639 1.41.6.2 christos return NULL;
640 1.41.6.2 christos if (*strp == '/') {
641 1.41.6.2 christos /*
642 1.41.6.2 christos ** Time specified.
643 1.41.6.2 christos */
644 1.41.6.2 christos ++strp;
645 1.41.6.2 christos strp = getsecs(strp, &rulep->r_time);
646 1.41.6.2 christos } else rulep->r_time = 2 * SECSPERHOUR; /* default = 2:00:00 */
647 1.41.6.2 christos return strp;
648 1.41.6.2 christos }
649 1.41.6.2 christos
650 1.41.6.2 christos /*
651 1.41.6.2 christos ** Given the Epoch-relative time of January 1, 00:00:00 UTC, in a year, the
652 1.41.6.2 christos ** year, a rule, and the offset from UTC at the time that rule takes effect,
653 1.41.6.2 christos ** calculate the Epoch-relative time that rule takes effect.
654 1.41.6.2 christos */
655 1.41.6.2 christos
656 1.41.6.2 christos static time_t
657 1.41.6.2 christos __transtime(janfirst, year, rulep, offset)
658 1.41.6.2 christos const time_t janfirst;
659 1.41.6.2 christos const int year;
660 1.41.6.2 christos register const struct rule * const rulep;
661 1.41.6.2 christos const long offset;
662 1.41.6.2 christos {
663 1.41.6.2 christos register int leapyear;
664 1.41.6.2 christos register time_t value;
665 1.41.6.2 christos register int i;
666 1.41.6.2 christos int d, m1, yy0, yy1, yy2, dow;
667 1.41.6.2 christos
668 1.41.6.2 christos INITIALIZE(value);
669 1.41.6.2 christos leapyear = isleap(year);
670 1.41.6.2 christos switch (rulep->r_type) {
671 1.41.6.2 christos
672 1.41.6.2 christos case JULIAN_DAY:
673 1.41.6.2 christos /*
674 1.41.6.2 christos ** Jn - Julian day, 1 == January 1, 60 == March 1 even in leap
675 1.41.6.2 christos ** years.
676 1.41.6.2 christos ** In non-leap years, or if the day number is 59 or less, just
677 1.41.6.2 christos ** add SECSPERDAY times the day number-1 to the time of
678 1.41.6.2 christos ** January 1, midnight, to get the day.
679 1.41.6.2 christos */
680 1.41.6.2 christos value = janfirst + (rulep->r_day - 1) * SECSPERDAY;
681 1.41.6.2 christos if (leapyear && rulep->r_day >= 60)
682 1.41.6.2 christos value += SECSPERDAY;
683 1.41.6.2 christos break;
684 1.41.6.2 christos
685 1.41.6.2 christos case DAY_OF_YEAR:
686 1.41.6.2 christos /*
687 1.41.6.2 christos ** n - day of year.
688 1.41.6.2 christos ** Just add SECSPERDAY times the day number to the time of
689 1.41.6.2 christos ** January 1, midnight, to get the day.
690 1.41.6.2 christos */
691 1.41.6.2 christos value = janfirst + rulep->r_day * SECSPERDAY;
692 1.41.6.2 christos break;
693 1.41.6.2 christos
694 1.41.6.2 christos case MONTH_NTH_DAY_OF_WEEK:
695 1.41.6.2 christos /*
696 1.41.6.2 christos ** Mm.n.d - nth "dth day" of month m.
697 1.41.6.2 christos */
698 1.41.6.2 christos value = janfirst;
699 1.41.6.2 christos for (i = 0; i < rulep->r_mon - 1; ++i)
700 1.41.6.2 christos value += mon_lengths[leapyear][i] * SECSPERDAY;
701 1.41.6.2 christos
702 1.41.6.2 christos /*
703 1.41.6.2 christos ** Use Zeller's Congruence to get day-of-week of first day of
704 1.41.6.2 christos ** month.
705 1.41.6.2 christos */
706 1.41.6.2 christos m1 = (rulep->r_mon + 9) % 12 + 1;
707 1.41.6.2 christos yy0 = (rulep->r_mon <= 2) ? (year - 1) : year;
708 1.41.6.2 christos yy1 = yy0 / 100;
709 1.41.6.2 christos yy2 = yy0 % 100;
710 1.41.6.2 christos dow = ((26 * m1 - 2) / 10 +
711 1.41.6.2 christos 1 + yy2 + yy2 / 4 + yy1 / 4 - 2 * yy1) % 7;
712 1.41.6.2 christos if (dow < 0)
713 1.41.6.2 christos dow += DAYSPERWEEK;
714 1.41.6.2 christos
715 1.41.6.2 christos /*
716 1.41.6.2 christos ** "dow" is the day-of-week of the first day of the month. Get
717 1.41.6.2 christos ** the day-of-month (zero-origin) of the first "dow" day of the
718 1.41.6.2 christos ** month.
719 1.41.6.2 christos */
720 1.41.6.2 christos d = rulep->r_day - dow;
721 1.41.6.2 christos if (d < 0)
722 1.41.6.2 christos d += DAYSPERWEEK;
723 1.41.6.2 christos for (i = 1; i < rulep->r_week; ++i) {
724 1.41.6.2 christos if (d + DAYSPERWEEK >=
725 1.41.6.2 christos mon_lengths[leapyear][rulep->r_mon - 1])
726 1.41.6.2 christos break;
727 1.41.6.2 christos d += DAYSPERWEEK;
728 1.41.6.2 christos }
729 1.41.6.2 christos
730 1.41.6.2 christos /*
731 1.41.6.2 christos ** "d" is the day-of-month (zero-origin) of the day we want.
732 1.41.6.2 christos */
733 1.41.6.2 christos value += d * SECSPERDAY;
734 1.41.6.2 christos break;
735 1.41.6.2 christos }
736 1.41.6.2 christos
737 1.41.6.2 christos /*
738 1.41.6.2 christos ** "value" is the Epoch-relative time of 00:00:00 UTC on the day in
739 1.41.6.2 christos ** question. To get the Epoch-relative time of the specified local
740 1.41.6.2 christos ** time on that day, add the transition time and the current offset
741 1.41.6.2 christos ** from UTC.
742 1.41.6.2 christos */
743 1.41.6.2 christos return value + rulep->r_time + offset;
744 1.41.6.2 christos }
745 1.41.6.2 christos
746 1.41.6.2 christos /*
747 1.41.6.2 christos ** Given a POSIX section 8-style TZ string, fill in the rule tables as
748 1.41.6.2 christos ** appropriate.
749 1.41.6.2 christos */
750 1.41.6.2 christos
751 1.41.6.2 christos static int
752 1.41.6.2 christos __tzparse(name, sp, lastditch)
753 1.41.6.2 christos const char * name;
754 1.41.6.2 christos register struct state * const sp;
755 1.41.6.2 christos const int lastditch;
756 1.41.6.2 christos {
757 1.41.6.2 christos const char * stdname;
758 1.41.6.2 christos const char * dstname;
759 1.41.6.2 christos size_t stdlen;
760 1.41.6.2 christos size_t dstlen;
761 1.41.6.2 christos long stdoffset;
762 1.41.6.2 christos long dstoffset;
763 1.41.6.2 christos register time_t * atp;
764 1.41.6.2 christos register unsigned char * typep;
765 1.41.6.2 christos register char * cp;
766 1.41.6.2 christos register int load_result;
767 1.41.6.2 christos
768 1.41.6.2 christos INITIALIZE(dstname);
769 1.41.6.2 christos stdname = name;
770 1.41.6.2 christos if (lastditch) {
771 1.41.6.2 christos stdlen = strlen(name); /* length of standard zone name */
772 1.41.6.2 christos name += stdlen;
773 1.41.6.2 christos if (stdlen >= sizeof sp->chars)
774 1.41.6.2 christos stdlen = (sizeof sp->chars) - 1;
775 1.41.6.2 christos stdoffset = 0;
776 1.41.6.2 christos } else {
777 1.41.6.2 christos name = __getzname(name);
778 1.41.6.2 christos stdlen = name - stdname;
779 1.41.6.2 christos if (stdlen < 3)
780 1.41.6.2 christos return -1;
781 1.41.6.2 christos if (*name == '\0')
782 1.41.6.2 christos return -1;
783 1.41.6.2 christos name = __getoffset(name, &stdoffset);
784 1.41.6.2 christos if (name == NULL)
785 1.41.6.2 christos return -1;
786 1.41.6.2 christos }
787 1.41.6.2 christos load_result = __tzload(TZDEFRULES, sp);
788 1.41.6.2 christos if (load_result != 0)
789 1.41.6.2 christos sp->leapcnt = 0; /* so, we're off a little */
790 1.41.6.2 christos if (*name != '\0') {
791 1.41.6.2 christos dstname = name;
792 1.41.6.2 christos name = __getzname(name);
793 1.41.6.2 christos dstlen = name - dstname; /* length of DST zone name */
794 1.41.6.2 christos if (dstlen < 3)
795 1.41.6.2 christos return -1;
796 1.41.6.2 christos if (*name != '\0' && *name != ',' && *name != ';') {
797 1.41.6.2 christos name = __getoffset(name, &dstoffset);
798 1.41.6.2 christos if (name == NULL)
799 1.41.6.2 christos return -1;
800 1.41.6.2 christos } else dstoffset = stdoffset - SECSPERHOUR;
801 1.41.6.2 christos if (*name == '\0' && load_result != 0)
802 1.41.6.2 christos name = TZDEFRULESTRING;
803 1.41.6.2 christos if (*name == ',' || *name == ';') {
804 1.41.6.2 christos struct rule start;
805 1.41.6.2 christos struct rule end;
806 1.41.6.2 christos register int year;
807 1.41.6.2 christos register time_t janfirst;
808 1.41.6.2 christos time_t starttime;
809 1.41.6.2 christos time_t endtime;
810 1.41.6.2 christos
811 1.41.6.2 christos ++name;
812 1.41.6.2 christos if ((name = __getrule(name, &start)) == NULL)
813 1.41.6.2 christos return -1;
814 1.41.6.2 christos if (*name++ != ',')
815 1.41.6.2 christos return -1;
816 1.41.6.2 christos if ((name = __getrule(name, &end)) == NULL)
817 1.41.6.2 christos return -1;
818 1.41.6.2 christos if (*name != '\0')
819 1.41.6.2 christos return -1;
820 1.41.6.2 christos sp->typecnt = 2; /* standard time and DST */
821 1.41.6.2 christos /*
822 1.41.6.2 christos ** Two transitions per year, from EPOCH_YEAR to 2037.
823 1.41.6.2 christos */
824 1.41.6.2 christos sp->timecnt = 2 * (2037 - EPOCH_YEAR + 1);
825 1.41.6.2 christos if (sp->timecnt > TZ_MAX_TIMES)
826 1.41.6.2 christos return -1;
827 1.41.6.2 christos sp->ttis[0].tt_gmtoff = -dstoffset;
828 1.41.6.2 christos sp->ttis[0].tt_isdst = 1;
829 1.41.6.2 christos sp->ttis[0].tt_abbrind = stdlen + 1;
830 1.41.6.2 christos sp->ttis[1].tt_gmtoff = -stdoffset;
831 1.41.6.2 christos sp->ttis[1].tt_isdst = 0;
832 1.41.6.2 christos sp->ttis[1].tt_abbrind = 0;
833 1.41.6.2 christos atp = sp->ats;
834 1.41.6.2 christos typep = sp->types;
835 1.41.6.2 christos janfirst = 0;
836 1.41.6.2 christos for (year = EPOCH_YEAR; year <= 2037; ++year) {
837 1.41.6.2 christos starttime = __transtime(janfirst, year, &start,
838 1.41.6.2 christos stdoffset);
839 1.41.6.2 christos endtime = __transtime(janfirst, year, &end,
840 1.41.6.2 christos dstoffset);
841 1.41.6.2 christos if (starttime > endtime) {
842 1.41.6.2 christos *atp++ = endtime;
843 1.41.6.2 christos *typep++ = 1; /* DST ends */
844 1.41.6.2 christos *atp++ = starttime;
845 1.41.6.2 christos *typep++ = 0; /* DST begins */
846 1.41.6.2 christos } else {
847 1.41.6.2 christos *atp++ = starttime;
848 1.41.6.2 christos *typep++ = 0; /* DST begins */
849 1.41.6.2 christos *atp++ = endtime;
850 1.41.6.2 christos *typep++ = 1; /* DST ends */
851 1.41.6.2 christos }
852 1.41.6.2 christos janfirst += year_lengths[isleap(year)] *
853 1.41.6.2 christos SECSPERDAY;
854 1.41.6.2 christos }
855 1.41.6.2 christos } else {
856 1.41.6.2 christos register long theirstdoffset;
857 1.41.6.2 christos register long theiroffset;
858 1.41.6.2 christos register int i;
859 1.41.6.2 christos register int j;
860 1.41.6.2 christos
861 1.41.6.2 christos if (*name != '\0')
862 1.41.6.2 christos return -1;
863 1.41.6.2 christos /*
864 1.41.6.2 christos ** Initial values of theirstdoffset
865 1.41.6.2 christos */
866 1.41.6.2 christos theirstdoffset = 0;
867 1.41.6.2 christos for (i = 0; i < sp->timecnt; ++i) {
868 1.41.6.2 christos j = sp->types[i];
869 1.41.6.2 christos if (!sp->ttis[j].tt_isdst) {
870 1.41.6.2 christos theirstdoffset =
871 1.41.6.2 christos -sp->ttis[j].tt_gmtoff;
872 1.41.6.2 christos break;
873 1.41.6.2 christos }
874 1.41.6.2 christos }
875 1.41.6.2 christos /*
876 1.41.6.2 christos ** Initially we're assumed to be in standard time.
877 1.41.6.2 christos */
878 1.41.6.2 christos theiroffset = theirstdoffset;
879 1.41.6.2 christos /*
880 1.41.6.2 christos ** Now juggle transition times and types
881 1.41.6.2 christos ** tracking offsets as you do.
882 1.41.6.2 christos */
883 1.41.6.2 christos for (i = 0; i < sp->timecnt; ++i) {
884 1.41.6.2 christos j = sp->types[i];
885 1.41.6.2 christos sp->types[i] = sp->ttis[j].tt_isdst;
886 1.41.6.2 christos if (sp->ttis[j].tt_ttisgmt) {
887 1.41.6.2 christos /* No adjustment to transition time */
888 1.41.6.2 christos } else {
889 1.41.6.2 christos /*
890 1.41.6.2 christos ** If summer time is in effect, and the
891 1.41.6.2 christos ** transition time was not specified as
892 1.41.6.2 christos ** standard time, add the summer time
893 1.41.6.2 christos ** offset to the transition time;
894 1.41.6.2 christos ** otherwise, add the standard time
895 1.41.6.2 christos ** offset to the transition time.
896 1.41.6.2 christos */
897 1.41.6.2 christos /*
898 1.41.6.2 christos ** Transitions from DST to DDST
899 1.41.6.2 christos ** will effectively disappear since
900 1.41.6.2 christos ** POSIX provides for only one DST
901 1.41.6.2 christos ** offset.
902 1.41.6.2 christos */
903 1.41.6.2 christos sp->ats[i] += stdoffset -
904 1.41.6.2 christos theirstdoffset;
905 1.41.6.2 christos }
906 1.41.6.2 christos theiroffset = -sp->ttis[j].tt_gmtoff;
907 1.41.6.2 christos if (!sp->ttis[j].tt_isdst)
908 1.41.6.2 christos theirstdoffset = theiroffset;
909 1.41.6.2 christos }
910 1.41.6.2 christos /*
911 1.41.6.2 christos ** Finally, fill in ttis.
912 1.41.6.2 christos ** ttisstd and ttisgmt need not be handled.
913 1.41.6.2 christos */
914 1.41.6.2 christos sp->ttis[0].tt_gmtoff = -stdoffset;
915 1.41.6.2 christos sp->ttis[0].tt_isdst = FALSE;
916 1.41.6.2 christos sp->ttis[0].tt_abbrind = 0;
917 1.41.6.2 christos sp->ttis[1].tt_gmtoff = -dstoffset;
918 1.41.6.2 christos sp->ttis[1].tt_isdst = TRUE;
919 1.41.6.2 christos sp->ttis[1].tt_abbrind = stdlen + 1;
920 1.41.6.2 christos sp->typecnt = 2;
921 1.41.6.2 christos }
922 1.41.6.2 christos } else {
923 1.41.6.2 christos dstlen = 0;
924 1.41.6.2 christos sp->typecnt = 1; /* only standard time */
925 1.41.6.2 christos sp->timecnt = 0;
926 1.41.6.2 christos sp->ttis[0].tt_gmtoff = -stdoffset;
927 1.41.6.2 christos sp->ttis[0].tt_isdst = 0;
928 1.41.6.2 christos sp->ttis[0].tt_abbrind = 0;
929 1.41.6.2 christos }
930 1.41.6.2 christos sp->charcnt = stdlen + 1;
931 1.41.6.2 christos if (dstlen != 0)
932 1.41.6.2 christos sp->charcnt += dstlen + 1;
933 1.41.6.2 christos if ((size_t) sp->charcnt > sizeof sp->chars)
934 1.41.6.2 christos return -1;
935 1.41.6.2 christos cp = sp->chars;
936 1.41.6.2 christos (void) strncpy(cp, stdname, stdlen);
937 1.41.6.2 christos cp += stdlen;
938 1.41.6.2 christos *cp++ = '\0';
939 1.41.6.2 christos if (dstlen != 0) {
940 1.41.6.2 christos (void) strncpy(cp, dstname, dstlen);
941 1.41.6.2 christos *(cp + dstlen) = '\0';
942 1.41.6.2 christos }
943 1.41.6.2 christos return 0;
944 1.41.6.2 christos }
945 1.41.6.2 christos
946 1.41.6.2 christos static void
947 1.41.6.2 christos __gmtload(sp)
948 1.41.6.2 christos struct state * const sp;
949 1.41.6.2 christos {
950 1.41.6.2 christos if (__tzload(gmt, sp) != 0)
951 1.41.6.2 christos (void) __tzparse(gmt, sp, TRUE);
952 1.41.6.2 christos }
953 1.41.6.2 christos
954 1.41.6.2 christos static void
955 1.41.6.2 christos __tzsetwall_unlocked P((void))
956 1.41.6.2 christos {
957 1.41.6.2 christos if (__lcl_is_set < 0)
958 1.41.6.2 christos return;
959 1.41.6.2 christos __lcl_is_set = -1;
960 1.41.6.2 christos
961 1.41.6.2 christos #ifdef ALL_STATE
962 1.41.6.2 christos if (lclptr == NULL) {
963 1.41.6.2 christos int saveerrno = errno;
964 1.41.6.2 christos lclptr = (struct state *) malloc(sizeof *lclptr);
965 1.41.6.2 christos errno = saveerrno;
966 1.41.6.2 christos if (lclptr == NULL) {
967 1.41.6.2 christos __settzname(); /* all we can do */
968 1.41.6.2 christos return;
969 1.41.6.2 christos }
970 1.41.6.2 christos }
971 1.41.6.2 christos #endif /* defined ALL_STATE */
972 1.41.6.2 christos if (__tzload((char *) NULL, lclptr) != 0)
973 1.41.6.2 christos __gmtload(lclptr);
974 1.41.6.2 christos __settzname();
975 1.41.6.2 christos }
976 1.41.6.2 christos
977 1.41.6.2 christos #ifndef STD_INSPIRED
978 1.41.6.2 christos /*
979 1.41.6.2 christos ** A non-static declaration of tzsetwall in a system header file
980 1.41.6.2 christos ** may cause a warning about this upcoming static declaration...
981 1.41.6.2 christos */
982 1.41.6.2 christos static
983 1.41.6.2 christos #endif /* !defined STD_INSPIRED */
984 1.41.6.2 christos void
985 1.41.6.2 christos tzsetwall P((void))
986 1.41.6.2 christos {
987 1.41.6.2 christos rwlock_wrlock(&__lcl_lock);
988 1.41.6.2 christos __tzsetwall_unlocked();
989 1.41.6.2 christos rwlock_unlock(&__lcl_lock);
990 1.41.6.2 christos }
991 1.41.6.2 christos
992 1.41.6.2 christos static void
993 1.41.6.2 christos __tzset_unlocked P((void))
994 1.41.6.2 christos {
995 1.41.6.2 christos register const char * name;
996 1.41.6.2 christos int saveerrno;
997 1.41.6.2 christos
998 1.41.6.2 christos saveerrno = errno;
999 1.41.6.2 christos name = getenv("TZ");
1000 1.41.6.2 christos errno = saveerrno;
1001 1.41.6.2 christos if (name == NULL) {
1002 1.41.6.2 christos __tzsetwall_unlocked();
1003 1.41.6.2 christos return;
1004 1.41.6.2 christos }
1005 1.41.6.2 christos
1006 1.41.6.2 christos if (__lcl_is_set > 0 && strcmp(__lcl_TZname, name) == 0)
1007 1.41.6.2 christos return;
1008 1.41.6.2 christos __lcl_is_set = strlen(name) < sizeof __lcl_TZname;
1009 1.41.6.2 christos if (__lcl_is_set)
1010 1.41.6.2 christos (void)strlcpy(__lcl_TZname, name, sizeof(__lcl_TZname));
1011 1.41.6.2 christos
1012 1.41.6.2 christos #ifdef ALL_STATE
1013 1.41.6.2 christos if (lclptr == NULL) {
1014 1.41.6.2 christos saveerrno = errno;
1015 1.41.6.2 christos lclptr = (struct state *) malloc(sizeof *lclptr);
1016 1.41.6.2 christos errno = saveerrno;
1017 1.41.6.2 christos if (lclptr == NULL) {
1018 1.41.6.2 christos __settzname(); /* all we can do */
1019 1.41.6.2 christos return;
1020 1.41.6.2 christos }
1021 1.41.6.2 christos }
1022 1.41.6.2 christos #endif /* defined ALL_STATE */
1023 1.41.6.2 christos if (*name == '\0') {
1024 1.41.6.2 christos /*
1025 1.41.6.2 christos ** User wants it fast rather than right.
1026 1.41.6.2 christos */
1027 1.41.6.2 christos lclptr->leapcnt = 0; /* so, we're off a little */
1028 1.41.6.2 christos lclptr->timecnt = 0;
1029 1.41.6.2 christos lclptr->typecnt = 0;
1030 1.41.6.2 christos lclptr->ttis[0].tt_isdst = 0;
1031 1.41.6.2 christos lclptr->ttis[0].tt_gmtoff = 0;
1032 1.41.6.2 christos lclptr->ttis[0].tt_abbrind = 0;
1033 1.41.6.2 christos (void)strlcpy(lclptr->chars, gmt, sizeof(lclptr->chars));
1034 1.41.6.2 christos } else if (__tzload(name, lclptr) != 0)
1035 1.41.6.2 christos if (name[0] == ':' || __tzparse(name, lclptr, FALSE) != 0)
1036 1.41.6.2 christos (void) __gmtload(lclptr);
1037 1.41.6.2 christos __settzname();
1038 1.41.6.2 christos }
1039 1.41.6.2 christos
1040 1.41.6.2 christos void
1041 1.41.6.2 christos tzset P((void))
1042 1.41.6.2 christos {
1043 1.41.6.2 christos rwlock_wrlock(&__lcl_lock);
1044 1.41.6.2 christos __tzset_unlocked();
1045 1.41.6.2 christos rwlock_unlock(&__lcl_lock);
1046 1.41.6.2 christos }
1047 1.41.6.2 christos
1048 1.41.6.2 christos /*
1049 1.41.6.2 christos ** The easy way to behave "as if no library function calls" localtime
1050 1.41.6.2 christos ** is to not call it--so we drop its guts into "localsub", which can be
1051 1.41.6.2 christos ** freely called. (And no, the PANS doesn't require the above behavior--
1052 1.41.6.2 christos ** but it *is* desirable.)
1053 1.41.6.2 christos **
1054 1.41.6.2 christos ** The unused offset argument is for the benefit of mktime variants.
1055 1.41.6.2 christos */
1056 1.41.6.2 christos
1057 1.41.6.2 christos /*ARGSUSED*/
1058 1.41.6.2 christos static void
1059 1.41.6.2 christos localsub(timep, offset, tmp)
1060 1.41.6.2 christos const time_t * const timep;
1061 1.41.6.2 christos const long offset;
1062 1.41.6.2 christos struct tm * const tmp;
1063 1.41.6.2 christos {
1064 1.41.6.2 christos register struct state * sp;
1065 1.41.6.2 christos register const struct ttinfo * ttisp;
1066 1.41.6.2 christos register int i;
1067 1.41.6.2 christos const time_t t = *timep;
1068 1.41.6.2 christos
1069 1.41.6.2 christos sp = lclptr;
1070 1.41.6.2 christos #ifdef ALL_STATE
1071 1.41.6.2 christos if (sp == NULL) {
1072 1.41.6.2 christos gmtsub(timep, offset, tmp);
1073 1.41.6.2 christos return;
1074 1.41.6.2 christos }
1075 1.41.6.2 christos #endif /* defined ALL_STATE */
1076 1.41.6.2 christos if (sp->timecnt == 0 || t < sp->ats[0]) {
1077 1.41.6.2 christos i = 0;
1078 1.41.6.2 christos while (sp->ttis[i].tt_isdst)
1079 1.41.6.2 christos if (++i >= sp->typecnt) {
1080 1.41.6.2 christos i = 0;
1081 1.41.6.2 christos break;
1082 1.41.6.2 christos }
1083 1.41.6.2 christos } else {
1084 1.41.6.2 christos for (i = 1; i < sp->timecnt; ++i)
1085 1.41.6.2 christos if (t < sp->ats[i])
1086 1.41.6.2 christos break;
1087 1.41.6.2 christos i = sp->types[i - 1];
1088 1.41.6.2 christos }
1089 1.41.6.2 christos ttisp = &sp->ttis[i];
1090 1.41.6.2 christos /*
1091 1.41.6.2 christos ** To get (wrong) behavior that's compatible with System V Release 2.0
1092 1.41.6.2 christos ** you'd replace the statement below with
1093 1.41.6.2 christos ** t += ttisp->tt_gmtoff;
1094 1.41.6.2 christos ** timesub(&t, 0L, sp, tmp);
1095 1.41.6.2 christos */
1096 1.41.6.2 christos timesub(&t, ttisp->tt_gmtoff, sp, tmp);
1097 1.41.6.2 christos tmp->tm_isdst = ttisp->tt_isdst;
1098 1.41.6.2 christos tzname[tmp->tm_isdst] = &sp->chars[ttisp->tt_abbrind];
1099 1.41.6.2 christos #ifdef TM_ZONE
1100 1.41.6.2 christos tmp->TM_ZONE = &sp->chars[ttisp->tt_abbrind];
1101 1.41.6.2 christos #endif /* defined TM_ZONE */
1102 1.41.6.2 christos }
1103 1.41.6.2 christos
1104 1.41.6.2 christos struct tm *
1105 1.41.6.2 christos localtime(timep)
1106 1.41.6.2 christos const time_t * const timep;
1107 1.41.6.2 christos {
1108 1.41.6.2 christos rwlock_wrlock(&__lcl_lock);
1109 1.41.6.2 christos __tzset_unlocked();
1110 1.41.6.2 christos localsub(timep, 0L, &tm);
1111 1.41.6.2 christos rwlock_unlock(&__lcl_lock);
1112 1.41.6.2 christos return &tm;
1113 1.41.6.2 christos }
1114 1.41.6.2 christos
1115 1.41.6.2 christos /*
1116 1.41.6.2 christos ** Re-entrant version of localtime.
1117 1.41.6.2 christos */
1118 1.41.6.2 christos
1119 1.41.6.2 christos struct tm *
1120 1.41.6.2 christos localtime_r(timep, tmp)
1121 1.41.6.2 christos const time_t * const timep;
1122 1.41.6.2 christos struct tm * tmp;
1123 1.41.6.2 christos {
1124 1.41.6.2 christos rwlock_rdlock(&__lcl_lock);
1125 1.41.6.2 christos __tzset_unlocked();
1126 1.41.6.2 christos localsub(timep, 0L, tmp);
1127 1.41.6.2 christos rwlock_unlock(&__lcl_lock);
1128 1.41.6.2 christos return tmp;
1129 1.41.6.2 christos }
1130 1.41.6.2 christos
1131 1.41.6.2 christos /*
1132 1.41.6.2 christos ** gmtsub is to gmtime as localsub is to localtime.
1133 1.41.6.2 christos */
1134 1.41.6.2 christos
1135 1.41.6.2 christos static void
1136 1.41.6.2 christos gmtsub(timep, offset, tmp)
1137 1.41.6.2 christos const time_t * const timep;
1138 1.41.6.2 christos const long offset;
1139 1.41.6.2 christos struct tm * const tmp;
1140 1.41.6.2 christos {
1141 1.41.6.2 christos #ifdef _REENTRANT
1142 1.41.6.2 christos static mutex_t gmt_mutex = MUTEX_INITIALIZER;
1143 1.41.6.2 christos #endif
1144 1.41.6.2 christos
1145 1.41.6.2 christos mutex_lock(&gmt_mutex);
1146 1.41.6.2 christos if (!__gmt_is_set) {
1147 1.41.6.2 christos #ifdef ALL_STATE
1148 1.41.6.2 christos int saveerrno;
1149 1.41.6.2 christos #endif
1150 1.41.6.2 christos __gmt_is_set = TRUE;
1151 1.41.6.2 christos #ifdef ALL_STATE
1152 1.41.6.2 christos saveerrno = errno;
1153 1.41.6.2 christos gmtptr = (struct state *) malloc(sizeof *gmtptr);
1154 1.41.6.2 christos errno = saveerrno;
1155 1.41.6.2 christos if (gmtptr != NULL)
1156 1.41.6.2 christos #endif /* defined ALL_STATE */
1157 1.41.6.2 christos __gmtload(gmtptr);
1158 1.41.6.2 christos }
1159 1.41.6.2 christos mutex_unlock(&gmt_mutex);
1160 1.41.6.2 christos timesub(timep, offset, gmtptr, tmp);
1161 1.41.6.2 christos #ifdef TM_ZONE
1162 1.41.6.2 christos /*
1163 1.41.6.2 christos ** Could get fancy here and deliver something such as
1164 1.41.6.2 christos ** "UTC+xxxx" or "UTC-xxxx" if offset is non-zero,
1165 1.41.6.2 christos ** but this is no time for a treasure hunt.
1166 1.41.6.2 christos */
1167 1.41.6.2 christos if (offset != 0)
1168 1.41.6.2 christos tmp->TM_ZONE = (__aconst char *)__UNCONST(wildabbr);
1169 1.41.6.2 christos else {
1170 1.41.6.2 christos #ifdef ALL_STATE
1171 1.41.6.2 christos if (gmtptr == NULL)
1172 1.41.6.2 christos tmp->TM_ZONE = (__aconst char *)__UNCONST(gmt);
1173 1.41.6.2 christos else tmp->TM_ZONE = gmtptr->chars;
1174 1.41.6.2 christos #endif /* defined ALL_STATE */
1175 1.41.6.2 christos #ifndef ALL_STATE
1176 1.41.6.2 christos tmp->TM_ZONE = gmtptr->chars;
1177 1.41.6.2 christos #endif /* State Farm */
1178 1.41.6.2 christos }
1179 1.41.6.2 christos #endif /* defined TM_ZONE */
1180 1.41.6.2 christos }
1181 1.41.6.2 christos
1182 1.41.6.2 christos struct tm *
1183 1.41.6.2 christos gmtime(timep)
1184 1.41.6.2 christos const time_t * const timep;
1185 1.41.6.2 christos {
1186 1.41.6.2 christos gmtsub(timep, 0L, &tm);
1187 1.41.6.2 christos return &tm;
1188 1.41.6.2 christos }
1189 1.41.6.2 christos
1190 1.41.6.2 christos /*
1191 1.41.6.2 christos ** Re-entrant version of gmtime.
1192 1.41.6.2 christos */
1193 1.41.6.2 christos
1194 1.41.6.2 christos struct tm *
1195 1.41.6.2 christos gmtime_r(timep, tmp)
1196 1.41.6.2 christos const time_t * const timep;
1197 1.41.6.2 christos struct tm * tmp;
1198 1.41.6.2 christos {
1199 1.41.6.2 christos gmtsub(timep, 0L, tmp);
1200 1.41.6.2 christos return tmp;
1201 1.41.6.2 christos }
1202 1.41.6.2 christos
1203 1.41.6.2 christos #ifdef STD_INSPIRED
1204 1.41.6.2 christos
1205 1.41.6.2 christos struct tm *
1206 1.41.6.2 christos offtime(timep, offset)
1207 1.41.6.2 christos const time_t * const timep;
1208 1.41.6.2 christos const long offset;
1209 1.41.6.2 christos {
1210 1.41.6.2 christos gmtsub(timep, offset, &tm);
1211 1.41.6.2 christos return &tm;
1212 1.41.6.2 christos }
1213 1.41.6.2 christos
1214 1.41.6.2 christos #endif /* defined STD_INSPIRED */
1215 1.41.6.2 christos
1216 1.41.6.2 christos static void
1217 1.41.6.2 christos timesub(timep, offset, sp, tmp)
1218 1.41.6.2 christos const time_t * const timep;
1219 1.41.6.2 christos const long offset;
1220 1.41.6.2 christos register const struct state * const sp;
1221 1.41.6.2 christos register struct tm * const tmp;
1222 1.41.6.2 christos {
1223 1.41.6.2 christos register const struct lsinfo * lp;
1224 1.41.6.2 christos register time_t days;
1225 1.41.6.2 christos register time_t rem;
1226 1.41.6.5 christos register time_t y;
1227 1.41.6.2 christos register int yleap;
1228 1.41.6.2 christos register const int * ip;
1229 1.41.6.2 christos register long corr;
1230 1.41.6.2 christos register int hit;
1231 1.41.6.2 christos register int i;
1232 1.41.6.2 christos
1233 1.41.6.2 christos corr = 0;
1234 1.41.6.2 christos hit = 0;
1235 1.41.6.2 christos #ifdef ALL_STATE
1236 1.41.6.2 christos i = (sp == NULL) ? 0 : sp->leapcnt;
1237 1.41.6.2 christos #endif /* defined ALL_STATE */
1238 1.41.6.2 christos #ifndef ALL_STATE
1239 1.41.6.2 christos i = sp->leapcnt;
1240 1.41.6.2 christos #endif /* State Farm */
1241 1.41.6.2 christos while (--i >= 0) {
1242 1.41.6.2 christos lp = &sp->lsis[i];
1243 1.41.6.2 christos if (*timep >= lp->ls_trans) {
1244 1.41.6.2 christos if (*timep == lp->ls_trans) {
1245 1.41.6.2 christos hit = ((i == 0 && lp->ls_corr > 0) ||
1246 1.41.6.2 christos lp->ls_corr > sp->lsis[i - 1].ls_corr);
1247 1.41.6.2 christos if (hit)
1248 1.41.6.2 christos while (i > 0 &&
1249 1.41.6.2 christos sp->lsis[i].ls_trans ==
1250 1.41.6.2 christos sp->lsis[i - 1].ls_trans + 1 &&
1251 1.41.6.2 christos sp->lsis[i].ls_corr ==
1252 1.41.6.2 christos sp->lsis[i - 1].ls_corr + 1) {
1253 1.41.6.2 christos ++hit;
1254 1.41.6.2 christos --i;
1255 1.41.6.2 christos }
1256 1.41.6.2 christos }
1257 1.41.6.2 christos corr = lp->ls_corr;
1258 1.41.6.2 christos break;
1259 1.41.6.2 christos }
1260 1.41.6.2 christos }
1261 1.41.6.2 christos days = *timep / SECSPERDAY;
1262 1.41.6.2 christos rem = *timep % SECSPERDAY;
1263 1.41.6.2 christos #ifdef mc68k
1264 1.41.6.5 christos if (*timep == (((time_t)1) << (TYPE_BITS(time_t) - 1))) {
1265 1.41.6.2 christos /*
1266 1.41.6.2 christos ** A 3B1 muffs the division on the most negative number.
1267 1.41.6.2 christos */
1268 1.41.6.2 christos days = -24855;
1269 1.41.6.2 christos rem = -11648;
1270 1.41.6.2 christos }
1271 1.41.6.2 christos #endif /* defined mc68k */
1272 1.41.6.2 christos rem += (offset - corr);
1273 1.41.6.2 christos while (rem < 0) {
1274 1.41.6.2 christos rem += SECSPERDAY;
1275 1.41.6.2 christos --days;
1276 1.41.6.2 christos }
1277 1.41.6.2 christos while (rem >= SECSPERDAY) {
1278 1.41.6.2 christos rem -= SECSPERDAY;
1279 1.41.6.2 christos ++days;
1280 1.41.6.2 christos }
1281 1.41.6.2 christos tmp->tm_hour = (int) (rem / SECSPERHOUR);
1282 1.41.6.2 christos rem = rem % SECSPERHOUR;
1283 1.41.6.2 christos tmp->tm_min = (int) (rem / SECSPERMIN);
1284 1.41.6.2 christos /*
1285 1.41.6.2 christos ** A positive leap second requires a special
1286 1.41.6.2 christos ** representation. This uses "... ??:59:60" et seq.
1287 1.41.6.2 christos */
1288 1.41.6.2 christos tmp->tm_sec = (int) (rem % SECSPERMIN) + hit;
1289 1.41.6.2 christos tmp->tm_wday = (int) ((EPOCH_WDAY + days) % DAYSPERWEEK);
1290 1.41.6.2 christos if (tmp->tm_wday < 0)
1291 1.41.6.2 christos tmp->tm_wday += DAYSPERWEEK;
1292 1.41.6.2 christos y = EPOCH_YEAR;
1293 1.41.6.2 christos #define LEAPS_THRU_END_OF(y) ((y) / 4 - (y) / 100 + (y) / 400)
1294 1.41.6.2 christos while (days < 0 || days >= (long) year_lengths[yleap = isleap(y)]) {
1295 1.41.6.5 christos register time_t newy;
1296 1.41.6.5 christos newy = (y + days / DAYSPERNYEAR);
1297 1.41.6.2 christos if (days < 0)
1298 1.41.6.2 christos --newy;
1299 1.41.6.2 christos days -= (newy - y) * DAYSPERNYEAR +
1300 1.41.6.2 christos LEAPS_THRU_END_OF(newy - 1) -
1301 1.41.6.2 christos LEAPS_THRU_END_OF(y - 1);
1302 1.41.6.2 christos y = newy;
1303 1.41.6.2 christos }
1304 1.41.6.5 christos tmp->tm_year = (int) y - TM_YEAR_BASE;
1305 1.41.6.2 christos tmp->tm_yday = (int) days;
1306 1.41.6.2 christos ip = mon_lengths[yleap];
1307 1.41.6.2 christos for (tmp->tm_mon = 0; days >= (long) ip[tmp->tm_mon]; ++(tmp->tm_mon))
1308 1.41.6.2 christos days = days - (long) ip[tmp->tm_mon];
1309 1.41.6.2 christos tmp->tm_mday = (int) (days + 1);
1310 1.41.6.2 christos tmp->tm_isdst = 0;
1311 1.41.6.2 christos #ifdef TM_GMTOFF
1312 1.41.6.2 christos tmp->TM_GMTOFF = offset;
1313 1.41.6.2 christos #endif /* defined TM_GMTOFF */
1314 1.41.6.2 christos }
1315 1.41.6.2 christos
1316 1.41.6.2 christos char *
1317 1.41.6.2 christos ctime(timep)
1318 1.41.6.2 christos const time_t * const timep;
1319 1.41.6.2 christos {
1320 1.41.6.2 christos /*
1321 1.41.6.2 christos ** Section 4.12.3.2 of X3.159-1989 requires that
1322 1.41.6.2 christos ** The ctime function converts the calendar time pointed to by timer
1323 1.41.6.2 christos ** to local time in the form of a string. It is equivalent to
1324 1.41.6.2 christos ** asctime(localtime(timer))
1325 1.41.6.2 christos */
1326 1.41.6.2 christos return asctime(localtime(timep));
1327 1.41.6.2 christos }
1328 1.41.6.2 christos
1329 1.41.6.2 christos char *
1330 1.41.6.2 christos ctime_r(timep, buf)
1331 1.41.6.2 christos const time_t * const timep;
1332 1.41.6.2 christos char * buf;
1333 1.41.6.2 christos {
1334 1.41.6.2 christos struct tm tmp;
1335 1.41.6.2 christos
1336 1.41.6.2 christos return asctime_r(localtime_r(timep, &tmp), buf);
1337 1.41.6.2 christos }
1338 1.41.6.2 christos
1339 1.41.6.2 christos /*
1340 1.41.6.2 christos ** Adapted from code provided by Robert Elz, who writes:
1341 1.41.6.2 christos ** The "best" way to do mktime I think is based on an idea of Bob
1342 1.41.6.2 christos ** Kridle's (so its said...) from a long time ago.
1343 1.41.6.2 christos ** [kridle (at) xinet.com as of 1996-01-16.]
1344 1.41.6.2 christos ** It does a binary search of the time_t space. Since time_t's are
1345 1.41.6.2 christos ** just 32 bits, its a max of 32 iterations (even at 64 bits it
1346 1.41.6.2 christos ** would still be very reasonable).
1347 1.41.6.2 christos */
1348 1.41.6.2 christos
1349 1.41.6.2 christos #ifndef WRONG
1350 1.41.6.2 christos #define WRONG (-1)
1351 1.41.6.2 christos #endif /* !defined WRONG */
1352 1.41.6.2 christos
1353 1.41.6.2 christos /*
1354 1.41.6.2 christos ** Simplified normalize logic courtesy Paul Eggert (eggert (at) twinsun.com).
1355 1.41.6.2 christos */
1356 1.41.6.2 christos
1357 1.41.6.2 christos static int
1358 1.41.6.2 christos increment_overflow(number, delta)
1359 1.41.6.2 christos int * number;
1360 1.41.6.2 christos int delta;
1361 1.41.6.2 christos {
1362 1.41.6.2 christos int number0;
1363 1.41.6.2 christos
1364 1.41.6.2 christos number0 = *number;
1365 1.41.6.2 christos *number += delta;
1366 1.41.6.2 christos return (*number < number0) != (delta < 0);
1367 1.41.6.2 christos }
1368 1.41.6.2 christos
1369 1.41.6.2 christos static int
1370 1.41.6.2 christos normalize_overflow(tensptr, unitsptr, base)
1371 1.41.6.2 christos int * const tensptr;
1372 1.41.6.2 christos int * const unitsptr;
1373 1.41.6.2 christos const int base;
1374 1.41.6.2 christos {
1375 1.41.6.2 christos register int tensdelta;
1376 1.41.6.2 christos
1377 1.41.6.2 christos tensdelta = (*unitsptr >= 0) ?
1378 1.41.6.2 christos (*unitsptr / base) :
1379 1.41.6.2 christos (-1 - (-1 - *unitsptr) / base);
1380 1.41.6.2 christos *unitsptr -= tensdelta * base;
1381 1.41.6.2 christos return increment_overflow(tensptr, tensdelta);
1382 1.41.6.2 christos }
1383 1.41.6.2 christos
1384 1.41.6.2 christos static int
1385 1.41.6.2 christos tmcomp(atmp, btmp)
1386 1.41.6.2 christos register const struct tm * const atmp;
1387 1.41.6.2 christos register const struct tm * const btmp;
1388 1.41.6.2 christos {
1389 1.41.6.2 christos register int result;
1390 1.41.6.2 christos
1391 1.41.6.2 christos if ((result = (atmp->tm_year - btmp->tm_year)) == 0 &&
1392 1.41.6.2 christos (result = (atmp->tm_mon - btmp->tm_mon)) == 0 &&
1393 1.41.6.2 christos (result = (atmp->tm_mday - btmp->tm_mday)) == 0 &&
1394 1.41.6.2 christos (result = (atmp->tm_hour - btmp->tm_hour)) == 0 &&
1395 1.41.6.2 christos (result = (atmp->tm_min - btmp->tm_min)) == 0)
1396 1.41.6.2 christos result = atmp->tm_sec - btmp->tm_sec;
1397 1.41.6.2 christos return result;
1398 1.41.6.2 christos }
1399 1.41.6.2 christos
1400 1.41.6.2 christos static time_t
1401 1.41.6.2 christos time2sub(tmp, funcp, offset, okayp, do_norm_secs)
1402 1.41.6.2 christos struct tm * const tmp;
1403 1.41.6.2 christos void (* const funcp) P((const time_t*, long, struct tm*));
1404 1.41.6.2 christos const long offset;
1405 1.41.6.2 christos int * const okayp;
1406 1.41.6.2 christos const int do_norm_secs;
1407 1.41.6.2 christos {
1408 1.41.6.2 christos register const struct state * sp;
1409 1.41.6.2 christos register int dir;
1410 1.41.6.2 christos register int bits;
1411 1.41.6.2 christos register int i, j ;
1412 1.41.6.2 christos register int saved_seconds;
1413 1.41.6.2 christos time_t newt;
1414 1.41.6.2 christos time_t t;
1415 1.41.6.2 christos struct tm yourtm, mytm;
1416 1.41.6.2 christos
1417 1.41.6.2 christos *okayp = FALSE;
1418 1.41.6.2 christos yourtm = *tmp;
1419 1.41.6.2 christos if (do_norm_secs) {
1420 1.41.6.2 christos if (normalize_overflow(&yourtm.tm_min, &yourtm.tm_sec,
1421 1.41.6.2 christos SECSPERMIN))
1422 1.41.6.2 christos return WRONG;
1423 1.41.6.2 christos }
1424 1.41.6.2 christos if (normalize_overflow(&yourtm.tm_hour, &yourtm.tm_min, MINSPERHOUR))
1425 1.41.6.2 christos return WRONG;
1426 1.41.6.2 christos if (normalize_overflow(&yourtm.tm_mday, &yourtm.tm_hour, HOURSPERDAY))
1427 1.41.6.2 christos return WRONG;
1428 1.41.6.2 christos if (normalize_overflow(&yourtm.tm_year, &yourtm.tm_mon, MONSPERYEAR))
1429 1.41.6.2 christos return WRONG;
1430 1.41.6.2 christos /*
1431 1.41.6.2 christos ** Turn yourtm.tm_year into an actual year number for now.
1432 1.41.6.2 christos ** It is converted back to an offset from TM_YEAR_BASE later.
1433 1.41.6.2 christos */
1434 1.41.6.2 christos if (increment_overflow(&yourtm.tm_year, TM_YEAR_BASE))
1435 1.41.6.2 christos return WRONG;
1436 1.41.6.2 christos while (yourtm.tm_mday <= 0) {
1437 1.41.6.2 christos if (increment_overflow(&yourtm.tm_year, -1))
1438 1.41.6.2 christos return WRONG;
1439 1.41.6.2 christos i = yourtm.tm_year + (1 < yourtm.tm_mon);
1440 1.41.6.2 christos yourtm.tm_mday += year_lengths[isleap(i)];
1441 1.41.6.2 christos }
1442 1.41.6.2 christos while (yourtm.tm_mday > DAYSPERLYEAR) {
1443 1.41.6.2 christos i = yourtm.tm_year + (1 < yourtm.tm_mon);
1444 1.41.6.2 christos yourtm.tm_mday -= year_lengths[isleap(i)];
1445 1.41.6.2 christos if (increment_overflow(&yourtm.tm_year, 1))
1446 1.41.6.2 christos return WRONG;
1447 1.41.6.2 christos }
1448 1.41.6.2 christos for ( ; ; ) {
1449 1.41.6.2 christos i = mon_lengths[isleap(yourtm.tm_year)][yourtm.tm_mon];
1450 1.41.6.2 christos if (yourtm.tm_mday <= i)
1451 1.41.6.2 christos break;
1452 1.41.6.2 christos yourtm.tm_mday -= i;
1453 1.41.6.2 christos if (++yourtm.tm_mon >= MONSPERYEAR) {
1454 1.41.6.2 christos yourtm.tm_mon = 0;
1455 1.41.6.2 christos if (increment_overflow(&yourtm.tm_year, 1))
1456 1.41.6.2 christos return WRONG;
1457 1.41.6.2 christos }
1458 1.41.6.2 christos }
1459 1.41.6.2 christos if (increment_overflow(&yourtm.tm_year, -TM_YEAR_BASE))
1460 1.41.6.2 christos return WRONG;
1461 1.41.6.2 christos if (yourtm.tm_sec >= 0 && yourtm.tm_sec < SECSPERMIN)
1462 1.41.6.2 christos saved_seconds = 0;
1463 1.41.6.2 christos else if (yourtm.tm_year + TM_YEAR_BASE < EPOCH_YEAR) {
1464 1.41.6.2 christos /*
1465 1.41.6.2 christos ** We can't set tm_sec to 0, because that might push the
1466 1.41.6.2 christos ** time below the minimum representable time.
1467 1.41.6.2 christos ** Set tm_sec to 59 instead.
1468 1.41.6.2 christos ** This assumes that the minimum representable time is
1469 1.41.6.2 christos ** not in the same minute that a leap second was deleted from,
1470 1.41.6.2 christos ** which is a safer assumption than using 58 would be.
1471 1.41.6.2 christos */
1472 1.41.6.2 christos if (increment_overflow(&yourtm.tm_sec, 1 - SECSPERMIN))
1473 1.41.6.2 christos return WRONG;
1474 1.41.6.2 christos saved_seconds = yourtm.tm_sec;
1475 1.41.6.2 christos yourtm.tm_sec = SECSPERMIN - 1;
1476 1.41.6.2 christos } else {
1477 1.41.6.2 christos saved_seconds = yourtm.tm_sec;
1478 1.41.6.2 christos yourtm.tm_sec = 0;
1479 1.41.6.2 christos }
1480 1.41.6.2 christos /*
1481 1.41.6.2 christos ** Divide the search space in half
1482 1.41.6.2 christos ** (this works whether time_t is signed or unsigned).
1483 1.41.6.2 christos */
1484 1.41.6.2 christos bits = TYPE_BIT(time_t) - 1;
1485 1.41.6.2 christos /*
1486 1.41.6.2 christos ** If time_t is signed, then 0 is just above the median,
1487 1.41.6.2 christos ** assuming two's complement arithmetic.
1488 1.41.6.2 christos ** If time_t is unsigned, then (1 << bits) is just above the median.
1489 1.41.6.2 christos */
1490 1.41.6.2 christos /*CONSTCOND*/
1491 1.41.6.2 christos t = TYPE_SIGNED(time_t) ? 0 : (((time_t) 1) << bits);
1492 1.41.6.2 christos for ( ; ; ) {
1493 1.41.6.2 christos (*funcp)(&t, offset, &mytm);
1494 1.41.6.2 christos dir = tmcomp(&mytm, &yourtm);
1495 1.41.6.2 christos if (dir != 0) {
1496 1.41.6.2 christos if (bits-- < 0)
1497 1.41.6.2 christos return WRONG;
1498 1.41.6.2 christos if (bits < 0)
1499 1.41.6.2 christos --t; /* may be needed if new t is minimal */
1500 1.41.6.2 christos else if (dir > 0)
1501 1.41.6.2 christos t -= ((time_t) 1) << bits;
1502 1.41.6.2 christos else t += ((time_t) 1) << bits;
1503 1.41.6.2 christos continue;
1504 1.41.6.2 christos }
1505 1.41.6.2 christos if (yourtm.tm_isdst < 0 || mytm.tm_isdst == yourtm.tm_isdst)
1506 1.41.6.2 christos break;
1507 1.41.6.2 christos /*
1508 1.41.6.2 christos ** Right time, wrong type.
1509 1.41.6.2 christos ** Hunt for right time, right type.
1510 1.41.6.2 christos ** It's okay to guess wrong since the guess
1511 1.41.6.2 christos ** gets checked.
1512 1.41.6.2 christos */
1513 1.41.6.2 christos /*
1514 1.41.6.2 christos ** The (void *) casts are the benefit of SunOS 3.3 on Sun 2's.
1515 1.41.6.2 christos */
1516 1.41.6.2 christos sp = (const struct state *)
1517 1.41.6.2 christos (((void *) funcp == (void *) localsub) ?
1518 1.41.6.2 christos lclptr : gmtptr);
1519 1.41.6.2 christos #ifdef ALL_STATE
1520 1.41.6.2 christos if (sp == NULL)
1521 1.41.6.2 christos return WRONG;
1522 1.41.6.2 christos #endif /* defined ALL_STATE */
1523 1.41.6.2 christos for (i = sp->typecnt - 1; i >= 0; --i) {
1524 1.41.6.2 christos if (sp->ttis[i].tt_isdst != yourtm.tm_isdst)
1525 1.41.6.2 christos continue;
1526 1.41.6.2 christos for (j = sp->typecnt - 1; j >= 0; --j) {
1527 1.41.6.2 christos if (sp->ttis[j].tt_isdst == yourtm.tm_isdst)
1528 1.41.6.2 christos continue;
1529 1.41.6.2 christos newt = t + sp->ttis[j].tt_gmtoff -
1530 1.41.6.2 christos sp->ttis[i].tt_gmtoff;
1531 1.41.6.2 christos (*funcp)(&newt, offset, &mytm);
1532 1.41.6.2 christos if (tmcomp(&mytm, &yourtm) != 0)
1533 1.41.6.2 christos continue;
1534 1.41.6.2 christos if (mytm.tm_isdst != yourtm.tm_isdst)
1535 1.41.6.2 christos continue;
1536 1.41.6.2 christos /*
1537 1.41.6.2 christos ** We have a match.
1538 1.41.6.2 christos */
1539 1.41.6.2 christos t = newt;
1540 1.41.6.2 christos goto label;
1541 1.41.6.2 christos }
1542 1.41.6.2 christos }
1543 1.41.6.2 christos return WRONG;
1544 1.41.6.2 christos }
1545 1.41.6.2 christos label:
1546 1.41.6.2 christos newt = t + saved_seconds;
1547 1.41.6.2 christos if ((newt < t) != (saved_seconds < 0))
1548 1.41.6.2 christos return WRONG;
1549 1.41.6.2 christos t = newt;
1550 1.41.6.2 christos (*funcp)(&t, offset, tmp);
1551 1.41.6.2 christos *okayp = TRUE;
1552 1.41.6.2 christos return t;
1553 1.41.6.2 christos }
1554 1.41.6.2 christos
1555 1.41.6.2 christos static time_t
1556 1.41.6.2 christos time2(tmp, funcp, offset, okayp)
1557 1.41.6.2 christos struct tm * const tmp;
1558 1.41.6.2 christos void (* const funcp) P((const time_t*, long, struct tm*));
1559 1.41.6.2 christos const long offset;
1560 1.41.6.2 christos int * const okayp;
1561 1.41.6.2 christos {
1562 1.41.6.2 christos time_t t;
1563 1.41.6.2 christos
1564 1.41.6.2 christos /*
1565 1.41.6.2 christos ** First try without normalization of seconds
1566 1.41.6.2 christos ** (in case tm_sec contains a value associated with a leap second).
1567 1.41.6.2 christos ** If that fails, try with normalization of seconds.
1568 1.41.6.2 christos */
1569 1.41.6.2 christos t = time2sub(tmp, funcp, offset, okayp, FALSE);
1570 1.41.6.2 christos return *okayp ? t : time2sub(tmp, funcp, offset, okayp, TRUE);
1571 1.41.6.2 christos }
1572 1.41.6.2 christos
1573 1.41.6.2 christos static time_t
1574 1.41.6.2 christos time1(tmp, funcp, offset)
1575 1.41.6.2 christos struct tm * const tmp;
1576 1.41.6.2 christos void (* const funcp) P((const time_t *, long, struct tm *));
1577 1.41.6.2 christos const long offset;
1578 1.41.6.2 christos {
1579 1.41.6.2 christos register time_t t;
1580 1.41.6.2 christos register const struct state * sp;
1581 1.41.6.2 christos register int samei, otheri;
1582 1.41.6.2 christos register int sameind, otherind;
1583 1.41.6.2 christos register int i;
1584 1.41.6.2 christos register int nseen;
1585 1.41.6.2 christos int seen[TZ_MAX_TYPES];
1586 1.41.6.2 christos int types[TZ_MAX_TYPES];
1587 1.41.6.2 christos int okay;
1588 1.41.6.2 christos
1589 1.41.6.2 christos if (tmp->tm_isdst > 1)
1590 1.41.6.2 christos tmp->tm_isdst = 1;
1591 1.41.6.2 christos t = time2(tmp, funcp, offset, &okay);
1592 1.41.6.2 christos #ifdef PCTS
1593 1.41.6.2 christos /*
1594 1.41.6.2 christos ** PCTS code courtesy Grant Sullivan (grant (at) osf.org).
1595 1.41.6.2 christos */
1596 1.41.6.2 christos if (okay)
1597 1.41.6.2 christos return t;
1598 1.41.6.2 christos if (tmp->tm_isdst < 0)
1599 1.41.6.2 christos tmp->tm_isdst = 0; /* reset to std and try again */
1600 1.41.6.2 christos #endif /* defined PCTS */
1601 1.41.6.2 christos #ifndef PCTS
1602 1.41.6.2 christos if (okay || tmp->tm_isdst < 0)
1603 1.41.6.2 christos return t;
1604 1.41.6.2 christos #endif /* !defined PCTS */
1605 1.41.6.2 christos /*
1606 1.41.6.2 christos ** We're supposed to assume that somebody took a time of one type
1607 1.41.6.2 christos ** and did some math on it that yielded a "struct tm" that's bad.
1608 1.41.6.2 christos ** We try to divine the type they started from and adjust to the
1609 1.41.6.2 christos ** type they need.
1610 1.41.6.2 christos */
1611 1.41.6.2 christos /*
1612 1.41.6.2 christos ** The (void *) casts are the benefit of SunOS 3.3 on Sun 2's.
1613 1.41.6.2 christos */
1614 1.41.6.2 christos sp = (const struct state *) (((void *) funcp == (void *) localsub) ?
1615 1.41.6.2 christos lclptr : gmtptr);
1616 1.41.6.2 christos #ifdef ALL_STATE
1617 1.41.6.2 christos if (sp == NULL)
1618 1.41.6.2 christos return WRONG;
1619 1.41.6.2 christos #endif /* defined ALL_STATE */
1620 1.41.6.2 christos for (i = 0; i < sp->typecnt; ++i)
1621 1.41.6.2 christos seen[i] = FALSE;
1622 1.41.6.2 christos nseen = 0;
1623 1.41.6.2 christos for (i = sp->timecnt - 1; i >= 0; --i)
1624 1.41.6.2 christos if (!seen[sp->types[i]]) {
1625 1.41.6.2 christos seen[sp->types[i]] = TRUE;
1626 1.41.6.2 christos types[nseen++] = sp->types[i];
1627 1.41.6.2 christos }
1628 1.41.6.2 christos for (sameind = 0; sameind < nseen; ++sameind) {
1629 1.41.6.2 christos samei = types[sameind];
1630 1.41.6.2 christos if (sp->ttis[samei].tt_isdst != tmp->tm_isdst)
1631 1.41.6.2 christos continue;
1632 1.41.6.2 christos for (otherind = 0; otherind < nseen; ++otherind) {
1633 1.41.6.2 christos otheri = types[otherind];
1634 1.41.6.2 christos if (sp->ttis[otheri].tt_isdst == tmp->tm_isdst)
1635 1.41.6.2 christos continue;
1636 1.41.6.2 christos tmp->tm_sec += (int)(sp->ttis[otheri].tt_gmtoff -
1637 1.41.6.2 christos sp->ttis[samei].tt_gmtoff);
1638 1.41.6.2 christos tmp->tm_isdst = !tmp->tm_isdst;
1639 1.41.6.2 christos t = time2(tmp, funcp, offset, &okay);
1640 1.41.6.2 christos if (okay)
1641 1.41.6.2 christos return t;
1642 1.41.6.2 christos tmp->tm_sec -= (int)(sp->ttis[otheri].tt_gmtoff -
1643 1.41.6.2 christos sp->ttis[samei].tt_gmtoff);
1644 1.41.6.2 christos tmp->tm_isdst = !tmp->tm_isdst;
1645 1.41.6.2 christos }
1646 1.41.6.2 christos }
1647 1.41.6.2 christos return WRONG;
1648 1.41.6.2 christos }
1649 1.41.6.2 christos
1650 1.41.6.2 christos time_t
1651 1.41.6.2 christos mktime(tmp)
1652 1.41.6.2 christos struct tm * const tmp;
1653 1.41.6.2 christos {
1654 1.41.6.2 christos time_t result;
1655 1.41.6.2 christos
1656 1.41.6.2 christos rwlock_wrlock(&__lcl_lock);
1657 1.41.6.2 christos __tzset_unlocked();
1658 1.41.6.2 christos result = time1(tmp, localsub, 0L);
1659 1.41.6.2 christos rwlock_unlock(&__lcl_lock);
1660 1.41.6.2 christos return (result);
1661 1.41.6.2 christos }
1662 1.41.6.2 christos
1663 1.41.6.2 christos #ifdef STD_INSPIRED
1664 1.41.6.2 christos
1665 1.41.6.2 christos time_t
1666 1.41.6.2 christos timelocal(tmp)
1667 1.41.6.2 christos struct tm * const tmp;
1668 1.41.6.2 christos {
1669 1.41.6.2 christos tmp->tm_isdst = -1; /* in case it wasn't initialized */
1670 1.41.6.2 christos return mktime(tmp);
1671 1.41.6.2 christos }
1672 1.41.6.2 christos
1673 1.41.6.2 christos time_t
1674 1.41.6.2 christos timegm(tmp)
1675 1.41.6.2 christos struct tm * const tmp;
1676 1.41.6.2 christos {
1677 1.41.6.2 christos tmp->tm_isdst = 0;
1678 1.41.6.2 christos return time1(tmp, gmtsub, 0L);
1679 1.41.6.2 christos }
1680 1.41.6.2 christos
1681 1.41.6.2 christos time_t
1682 1.41.6.2 christos timeoff(tmp, offset)
1683 1.41.6.2 christos struct tm * const tmp;
1684 1.41.6.2 christos const long offset;
1685 1.41.6.2 christos {
1686 1.41.6.2 christos tmp->tm_isdst = 0;
1687 1.41.6.2 christos return time1(tmp, gmtsub, offset);
1688 1.41.6.2 christos }
1689 1.41.6.2 christos
1690 1.41.6.2 christos #endif /* defined STD_INSPIRED */
1691 1.41.6.2 christos
1692 1.41.6.2 christos #ifdef CMUCS
1693 1.41.6.2 christos
1694 1.41.6.2 christos /*
1695 1.41.6.2 christos ** The following is supplied for compatibility with
1696 1.41.6.2 christos ** previous versions of the CMUCS runtime library.
1697 1.41.6.2 christos */
1698 1.41.6.2 christos
1699 1.41.6.2 christos long
1700 1.41.6.2 christos gtime(tmp)
1701 1.41.6.2 christos struct tm * const tmp;
1702 1.41.6.2 christos {
1703 1.41.6.2 christos const time_t t = mktime(tmp);
1704 1.41.6.2 christos
1705 1.41.6.2 christos if (t == WRONG)
1706 1.41.6.2 christos return -1;
1707 1.41.6.2 christos return t;
1708 1.41.6.2 christos }
1709 1.41.6.2 christos
1710 1.41.6.2 christos #endif /* defined CMUCS */
1711 1.41.6.2 christos
1712 1.41.6.2 christos /*
1713 1.41.6.2 christos ** XXX--is the below the right way to conditionalize??
1714 1.41.6.2 christos */
1715 1.41.6.2 christos
1716 1.41.6.2 christos #ifdef STD_INSPIRED
1717 1.41.6.2 christos
1718 1.41.6.2 christos /*
1719 1.41.6.2 christos ** IEEE Std 1003.1-1988 (POSIX) legislates that 536457599
1720 1.41.6.2 christos ** shall correspond to "Wed Dec 31 23:59:59 UTC 1986", which
1721 1.41.6.2 christos ** is not the case if we are accounting for leap seconds.
1722 1.41.6.2 christos ** So, we provide the following conversion routines for use
1723 1.41.6.2 christos ** when exchanging timestamps with POSIX conforming systems.
1724 1.41.6.2 christos */
1725 1.41.6.2 christos
1726 1.41.6.2 christos static long
1727 1.41.6.2 christos leapcorr(timep)
1728 1.41.6.2 christos time_t * timep;
1729 1.41.6.2 christos {
1730 1.41.6.2 christos register struct state * sp;
1731 1.41.6.2 christos register struct lsinfo * lp;
1732 1.41.6.2 christos register int i;
1733 1.41.6.2 christos
1734 1.41.6.2 christos sp = lclptr;
1735 1.41.6.2 christos i = sp->leapcnt;
1736 1.41.6.2 christos while (--i >= 0) {
1737 1.41.6.2 christos lp = &sp->lsis[i];
1738 1.41.6.2 christos if (*timep >= lp->ls_trans)
1739 1.41.6.2 christos return lp->ls_corr;
1740 1.41.6.2 christos }
1741 1.41.6.2 christos return 0;
1742 1.41.6.2 christos }
1743 1.41.6.2 christos
1744 1.41.6.2 christos time_t
1745 1.41.6.2 christos time2posix(t)
1746 1.41.6.2 christos time_t t;
1747 1.41.6.2 christos {
1748 1.41.6.2 christos time_t result;
1749 1.41.6.2 christos
1750 1.41.6.2 christos rwlock_wrlock(&__lcl_lock);
1751 1.41.6.2 christos __tzset_unlocked();
1752 1.41.6.2 christos result = t - leapcorr(&t);
1753 1.41.6.2 christos rwlock_unlock(&__lcl_lock);
1754 1.41.6.2 christos return (result);
1755 1.41.6.2 christos }
1756 1.41.6.2 christos
1757 1.41.6.2 christos time_t
1758 1.41.6.2 christos posix2time(t)
1759 1.41.6.2 christos time_t t;
1760 1.41.6.2 christos {
1761 1.41.6.2 christos time_t x;
1762 1.41.6.2 christos time_t y;
1763 1.41.6.2 christos
1764 1.41.6.2 christos rwlock_wrlock(&__lcl_lock);
1765 1.41.6.2 christos __tzset_unlocked();
1766 1.41.6.2 christos /*
1767 1.41.6.2 christos ** For a positive leap second hit, the result
1768 1.41.6.2 christos ** is not unique. For a negative leap second
1769 1.41.6.2 christos ** hit, the corresponding time doesn't exist,
1770 1.41.6.2 christos ** so we return an adjacent second.
1771 1.41.6.2 christos */
1772 1.41.6.2 christos x = t + leapcorr(&t);
1773 1.41.6.2 christos y = x - leapcorr(&x);
1774 1.41.6.2 christos if (y < t) {
1775 1.41.6.2 christos do {
1776 1.41.6.2 christos x++;
1777 1.41.6.2 christos y = x - leapcorr(&x);
1778 1.41.6.2 christos } while (y < t);
1779 1.41.6.2 christos if (t != y) {
1780 1.41.6.2 christos rwlock_unlock(&__lcl_lock);
1781 1.41.6.2 christos return x - 1;
1782 1.41.6.2 christos }
1783 1.41.6.2 christos } else if (y > t) {
1784 1.41.6.2 christos do {
1785 1.41.6.2 christos --x;
1786 1.41.6.2 christos y = x - leapcorr(&x);
1787 1.41.6.2 christos } while (y > t);
1788 1.41.6.2 christos if (t != y) {
1789 1.41.6.2 christos rwlock_unlock(&__lcl_lock);
1790 1.41.6.2 christos return x + 1;
1791 1.41.6.2 christos }
1792 1.41.6.2 christos }
1793 1.41.6.2 christos rwlock_unlock(&__lcl_lock);
1794 1.41.6.2 christos return x;
1795 1.41.6.2 christos }
1796 1.41.6.2 christos
1797 1.41.6.2 christos #endif /* defined STD_INSPIRED */
1798