strptime.c revision 1.43 1 1.43 ginsbach /* $NetBSD: strptime.c,v 1.43 2015/07/13 17:45:16 ginsbach Exp $ */
2 1.1 mrg
3 1.3 kleink /*-
4 1.27 ginsbach * Copyright (c) 1997, 1998, 2005, 2008 The NetBSD Foundation, Inc.
5 1.3 kleink * All rights reserved.
6 1.3 kleink *
7 1.3 kleink * This code was contributed to The NetBSD Foundation by Klaus Klein.
8 1.24 dsl * Heavily optimised by David Laight
9 1.1 mrg *
10 1.3 kleink * Redistribution and use in source and binary forms, with or without
11 1.1 mrg * modification, are permitted provided that the following conditions
12 1.1 mrg * are met:
13 1.1 mrg * 1. Redistributions of source code must retain the above copyright
14 1.1 mrg * notice, this list of conditions and the following disclaimer.
15 1.1 mrg * 2. Redistributions in binary form must reproduce the above copyright
16 1.3 kleink * notice, this list of conditions and the following disclaimer in the
17 1.3 kleink * documentation and/or other materials provided with the distribution.
18 1.1 mrg *
19 1.3 kleink * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.3 kleink * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.3 kleink * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.3 kleink * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.3 kleink * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 mrg * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.3 kleink * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.3 kleink * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.3 kleink * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.3 kleink * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.3 kleink * POSSIBILITY OF SUCH DAMAGE.
30 1.1 mrg */
31 1.1 mrg
32 1.6 christos #include <sys/cdefs.h>
33 1.3 kleink #if defined(LIBC_SCCS) && !defined(lint)
34 1.43 ginsbach __RCSID("$NetBSD: strptime.c,v 1.43 2015/07/13 17:45:16 ginsbach Exp $");
35 1.1 mrg #endif
36 1.1 mrg
37 1.7 jtc #include "namespace.h"
38 1.3 kleink #include <sys/localedef.h>
39 1.40 christos #include <sys/types.h>
40 1.3 kleink #include <ctype.h>
41 1.1 mrg #include <locale.h>
42 1.3 kleink #include <string.h>
43 1.1 mrg #include <time.h>
44 1.12 mycroft #include <tzfile.h>
45 1.29 christos #include "private.h"
46 1.37 joerg #include "setlocale_local.h"
47 1.7 jtc
48 1.7 jtc #ifdef __weak_alias
49 1.19 mycroft __weak_alias(strptime,_strptime)
50 1.37 joerg __weak_alias(strptime_l, _strptime_l)
51 1.7 jtc #endif
52 1.3 kleink
53 1.37 joerg #define _TIME_LOCALE(loc) \
54 1.37 joerg ((_TimeLocale *)((loc)->part_impl[(size_t)LC_TIME]))
55 1.3 kleink
56 1.3 kleink /*
57 1.3 kleink * We do not implement alternate representations. However, we always
58 1.3 kleink * check whether a given modifier is allowed for a certain conversion.
59 1.3 kleink */
60 1.16 kleink #define ALT_E 0x01
61 1.16 kleink #define ALT_O 0x02
62 1.24 dsl #define LEGAL_ALT(x) { if (alt_format & ~(x)) return NULL; }
63 1.3 kleink
64 1.41 ginsbach #define S_YEAR (1 << 0)
65 1.41 ginsbach #define S_MON (1 << 1)
66 1.41 ginsbach #define S_YDAY (1 << 2)
67 1.41 ginsbach #define S_MDAY (1 << 3)
68 1.41 ginsbach #define S_WDAY (1 << 4)
69 1.40 christos
70 1.42 ginsbach #define HAVE_MDAY(s) (s & S_MDAY)
71 1.42 ginsbach #define HAVE_MON(s) (s & S_MON)
72 1.42 ginsbach #define HAVE_WDAY(s) (s & S_WDAY)
73 1.42 ginsbach #define HAVE_YDAY(s) (s & S_YDAY)
74 1.42 ginsbach #define HAVE_YEAR(s) (s & S_YEAR)
75 1.42 ginsbach
76 1.29 christos static char gmt[] = { "GMT" };
77 1.29 christos static char utc[] = { "UTC" };
78 1.32 ginsbach /* RFC-822/RFC-2822 */
79 1.32 ginsbach static const char * const nast[5] = {
80 1.32 ginsbach "EST", "CST", "MST", "PST", "\0\0\0"
81 1.32 ginsbach };
82 1.32 ginsbach static const char * const nadt[5] = {
83 1.32 ginsbach "EDT", "CDT", "MDT", "PDT", "\0\0\0"
84 1.32 ginsbach };
85 1.3 kleink
86 1.24 dsl static const u_char *conv_num(const unsigned char *, int *, uint, uint);
87 1.23 dsl static const u_char *find_string(const u_char *, int *, const char * const *,
88 1.23 dsl const char * const *, int);
89 1.3 kleink
90 1.40 christos static const int start_of_month[2][13] = {
91 1.40 christos { 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334, 365 },
92 1.40 christos { 0, 31, 60, 91, 121, 152, 182, 213, 244, 274, 305, 335, 366 }
93 1.40 christos };
94 1.40 christos
95 1.40 christos /*
96 1.40 christos * Calculate the week day of the first day of a year. Valid for
97 1.40 christos * the Gregorian calendar, which began Sept 14, 1752 in the UK
98 1.40 christos * and its colonies. Ref:
99 1.40 christos * http://en.wikipedia.org/wiki/Determination_of_the_day_of_the_week
100 1.40 christos */
101 1.40 christos
102 1.40 christos static int
103 1.40 christos first_wday_of(int yr)
104 1.40 christos {
105 1.40 christos return ((2 * (3 - (yr / 100) % 4)) + (yr % 100) + ((yr % 100) / 4) +
106 1.43 ginsbach (isleap(yr) ? 6 : 0) + 1) % 7;
107 1.40 christos }
108 1.40 christos
109 1.37 joerg char *
110 1.37 joerg strptime(const char *buf, const char *fmt, struct tm *tm)
111 1.37 joerg {
112 1.38 joerg return strptime_l(buf, fmt, tm, _current_locale());
113 1.37 joerg }
114 1.1 mrg
115 1.2 kleink char *
116 1.37 joerg strptime_l(const char *buf, const char *fmt, struct tm *tm, locale_t loc)
117 1.1 mrg {
118 1.20 itohy unsigned char c;
119 1.32 ginsbach const unsigned char *bp, *ep;
120 1.41 ginsbach int alt_format, i, split_year = 0, neg = 0, state = 0,
121 1.40 christos day_offset = -1, week_offset = 0, offs;
122 1.23 dsl const char *new_fmt;
123 1.3 kleink
124 1.22 christos bp = (const u_char *)buf;
125 1.3 kleink
126 1.24 dsl while (bp != NULL && (c = *fmt++) != '\0') {
127 1.3 kleink /* Clear `alternate' modifier prior to new conversion. */
128 1.3 kleink alt_format = 0;
129 1.23 dsl i = 0;
130 1.3 kleink
131 1.3 kleink /* Eat up white-space. */
132 1.3 kleink if (isspace(c)) {
133 1.3 kleink while (isspace(*bp))
134 1.3 kleink bp++;
135 1.2 kleink continue;
136 1.2 kleink }
137 1.23 dsl
138 1.24 dsl if (c != '%')
139 1.3 kleink goto literal;
140 1.3 kleink
141 1.3 kleink
142 1.3 kleink again: switch (c = *fmt++) {
143 1.3 kleink case '%': /* "%%" is converted to "%". */
144 1.3 kleink literal:
145 1.14 tv if (c != *bp++)
146 1.24 dsl return NULL;
147 1.23 dsl LEGAL_ALT(0);
148 1.23 dsl continue;
149 1.3 kleink
150 1.3 kleink /*
151 1.3 kleink * "Alternative" modifiers. Just set the appropriate flag
152 1.3 kleink * and start over again.
153 1.3 kleink */
154 1.3 kleink case 'E': /* "%E?" alternative conversion modifier. */
155 1.16 kleink LEGAL_ALT(0);
156 1.16 kleink alt_format |= ALT_E;
157 1.3 kleink goto again;
158 1.3 kleink
159 1.3 kleink case 'O': /* "%O?" alternative conversion modifier. */
160 1.16 kleink LEGAL_ALT(0);
161 1.16 kleink alt_format |= ALT_O;
162 1.3 kleink goto again;
163 1.23 dsl
164 1.3 kleink /*
165 1.3 kleink * "Complex" conversion rules, implemented through recursion.
166 1.3 kleink */
167 1.3 kleink case 'c': /* Date and time, using the locale's format. */
168 1.37 joerg new_fmt = _TIME_LOCALE(loc)->d_t_fmt;
169 1.42 ginsbach state |= S_WDAY | S_MON | S_MDAY | S_YEAR;
170 1.23 dsl goto recurse;
171 1.3 kleink
172 1.3 kleink case 'D': /* The date as "%m/%d/%y". */
173 1.23 dsl new_fmt = "%m/%d/%y";
174 1.16 kleink LEGAL_ALT(0);
175 1.41 ginsbach state |= S_MON | S_MDAY | S_YEAR;
176 1.23 dsl goto recurse;
177 1.18 tv
178 1.27 ginsbach case 'F': /* The date as "%Y-%m-%d". */
179 1.27 ginsbach new_fmt = "%Y-%m-%d";
180 1.27 ginsbach LEGAL_ALT(0);
181 1.41 ginsbach state |= S_MON | S_MDAY | S_YEAR;
182 1.27 ginsbach goto recurse;
183 1.27 ginsbach
184 1.3 kleink case 'R': /* The time as "%H:%M". */
185 1.23 dsl new_fmt = "%H:%M";
186 1.16 kleink LEGAL_ALT(0);
187 1.23 dsl goto recurse;
188 1.3 kleink
189 1.3 kleink case 'r': /* The time in 12-hour clock representation. */
190 1.37 joerg new_fmt = _TIME_LOCALE(loc)->t_fmt_ampm;
191 1.16 kleink LEGAL_ALT(0);
192 1.23 dsl goto recurse;
193 1.3 kleink
194 1.3 kleink case 'T': /* The time as "%H:%M:%S". */
195 1.23 dsl new_fmt = "%H:%M:%S";
196 1.16 kleink LEGAL_ALT(0);
197 1.23 dsl goto recurse;
198 1.3 kleink
199 1.3 kleink case 'X': /* The time, using the locale's format. */
200 1.37 joerg new_fmt = _TIME_LOCALE(loc)->t_fmt;
201 1.23 dsl goto recurse;
202 1.3 kleink
203 1.3 kleink case 'x': /* The date, using the locale's format. */
204 1.37 joerg new_fmt = _TIME_LOCALE(loc)->d_fmt;
205 1.41 ginsbach state |= S_MON | S_MDAY | S_YEAR;
206 1.23 dsl recurse:
207 1.23 dsl bp = (const u_char *)strptime((const char *)bp,
208 1.23 dsl new_fmt, tm);
209 1.16 kleink LEGAL_ALT(ALT_E);
210 1.23 dsl continue;
211 1.3 kleink
212 1.3 kleink /*
213 1.3 kleink * "Elementary" conversion rules.
214 1.3 kleink */
215 1.3 kleink case 'A': /* The day of week, using the locale's form. */
216 1.3 kleink case 'a':
217 1.37 joerg bp = find_string(bp, &tm->tm_wday,
218 1.37 joerg _TIME_LOCALE(loc)->day, _TIME_LOCALE(loc)->abday, 7);
219 1.16 kleink LEGAL_ALT(0);
220 1.41 ginsbach state |= S_WDAY;
221 1.23 dsl continue;
222 1.2 kleink
223 1.3 kleink case 'B': /* The month, using the locale's form. */
224 1.3 kleink case 'b':
225 1.3 kleink case 'h':
226 1.37 joerg bp = find_string(bp, &tm->tm_mon,
227 1.37 joerg _TIME_LOCALE(loc)->mon, _TIME_LOCALE(loc)->abmon,
228 1.37 joerg 12);
229 1.16 kleink LEGAL_ALT(0);
230 1.41 ginsbach state |= S_MON;
231 1.23 dsl continue;
232 1.2 kleink
233 1.3 kleink case 'C': /* The century number. */
234 1.24 dsl i = 20;
235 1.23 dsl bp = conv_num(bp, &i, 0, 99);
236 1.2 kleink
237 1.24 dsl i = i * 100 - TM_YEAR_BASE;
238 1.24 dsl if (split_year)
239 1.24 dsl i += tm->tm_year % 100;
240 1.24 dsl split_year = 1;
241 1.24 dsl tm->tm_year = i;
242 1.23 dsl LEGAL_ALT(ALT_E);
243 1.41 ginsbach state |= S_YEAR;
244 1.23 dsl continue;
245 1.2 kleink
246 1.3 kleink case 'd': /* The day of month. */
247 1.3 kleink case 'e':
248 1.23 dsl bp = conv_num(bp, &tm->tm_mday, 1, 31);
249 1.16 kleink LEGAL_ALT(ALT_O);
250 1.41 ginsbach state |= S_MDAY;
251 1.23 dsl continue;
252 1.2 kleink
253 1.3 kleink case 'k': /* The hour (24-hour clock representation). */
254 1.16 kleink LEGAL_ALT(0);
255 1.3 kleink /* FALLTHROUGH */
256 1.3 kleink case 'H':
257 1.23 dsl bp = conv_num(bp, &tm->tm_hour, 0, 23);
258 1.16 kleink LEGAL_ALT(ALT_O);
259 1.23 dsl continue;
260 1.2 kleink
261 1.3 kleink case 'l': /* The hour (12-hour clock representation). */
262 1.16 kleink LEGAL_ALT(0);
263 1.3 kleink /* FALLTHROUGH */
264 1.3 kleink case 'I':
265 1.23 dsl bp = conv_num(bp, &tm->tm_hour, 1, 12);
266 1.13 tv if (tm->tm_hour == 12)
267 1.13 tv tm->tm_hour = 0;
268 1.23 dsl LEGAL_ALT(ALT_O);
269 1.23 dsl continue;
270 1.2 kleink
271 1.3 kleink case 'j': /* The day of year. */
272 1.23 dsl i = 1;
273 1.23 dsl bp = conv_num(bp, &i, 1, 366);
274 1.23 dsl tm->tm_yday = i - 1;
275 1.16 kleink LEGAL_ALT(0);
276 1.41 ginsbach state |= S_YDAY;
277 1.23 dsl continue;
278 1.2 kleink
279 1.3 kleink case 'M': /* The minute. */
280 1.23 dsl bp = conv_num(bp, &tm->tm_min, 0, 59);
281 1.16 kleink LEGAL_ALT(ALT_O);
282 1.23 dsl continue;
283 1.2 kleink
284 1.3 kleink case 'm': /* The month. */
285 1.23 dsl i = 1;
286 1.23 dsl bp = conv_num(bp, &i, 1, 12);
287 1.23 dsl tm->tm_mon = i - 1;
288 1.16 kleink LEGAL_ALT(ALT_O);
289 1.41 ginsbach state |= S_MON;
290 1.23 dsl continue;
291 1.2 kleink
292 1.3 kleink case 'p': /* The locale's equivalent of AM/PM. */
293 1.37 joerg bp = find_string(bp, &i, _TIME_LOCALE(loc)->am_pm,
294 1.37 joerg NULL, 2);
295 1.23 dsl if (tm->tm_hour > 11)
296 1.24 dsl return NULL;
297 1.23 dsl tm->tm_hour += i * 12;
298 1.16 kleink LEGAL_ALT(0);
299 1.23 dsl continue;
300 1.2 kleink
301 1.3 kleink case 'S': /* The seconds. */
302 1.23 dsl bp = conv_num(bp, &tm->tm_sec, 0, 61);
303 1.16 kleink LEGAL_ALT(ALT_O);
304 1.23 dsl continue;
305 1.1 mrg
306 1.33 ginsbach #ifndef TIME_MAX
307 1.33 ginsbach #define TIME_MAX INT64_MAX
308 1.33 ginsbach #endif
309 1.33 ginsbach case 's': /* seconds since the epoch */
310 1.33 ginsbach {
311 1.33 ginsbach time_t sse = 0;
312 1.33 ginsbach uint64_t rulim = TIME_MAX;
313 1.33 ginsbach
314 1.33 ginsbach if (*bp < '0' || *bp > '9') {
315 1.33 ginsbach bp = NULL;
316 1.33 ginsbach continue;
317 1.33 ginsbach }
318 1.33 ginsbach
319 1.33 ginsbach do {
320 1.33 ginsbach sse *= 10;
321 1.33 ginsbach sse += *bp++ - '0';
322 1.33 ginsbach rulim /= 10;
323 1.35 matt } while ((sse * 10 <= TIME_MAX) &&
324 1.33 ginsbach rulim && *bp >= '0' && *bp <= '9');
325 1.33 ginsbach
326 1.33 ginsbach if (sse < 0 || (uint64_t)sse > TIME_MAX) {
327 1.33 ginsbach bp = NULL;
328 1.33 ginsbach continue;
329 1.33 ginsbach }
330 1.33 ginsbach
331 1.33 ginsbach if (localtime_r(&sse, tm) == NULL)
332 1.33 ginsbach bp = NULL;
333 1.40 christos else
334 1.41 ginsbach state |= S_YDAY | S_WDAY |
335 1.41 ginsbach S_MON | S_MDAY | S_YEAR;
336 1.33 ginsbach }
337 1.33 ginsbach continue;
338 1.33 ginsbach
339 1.3 kleink case 'U': /* The week of year, beginning on sunday. */
340 1.3 kleink case 'W': /* The week of year, beginning on monday. */
341 1.3 kleink /*
342 1.3 kleink * XXX This is bogus, as we can not assume any valid
343 1.3 kleink * information present in the tm structure at this
344 1.3 kleink * point to calculate a real value, so just check the
345 1.3 kleink * range for now.
346 1.3 kleink */
347 1.40 christos bp = conv_num(bp, &i, 0, 53);
348 1.40 christos LEGAL_ALT(ALT_O);
349 1.40 christos if (c == 'U')
350 1.40 christos day_offset = TM_SUNDAY;
351 1.40 christos else
352 1.40 christos day_offset = TM_MONDAY;
353 1.40 christos week_offset = i;
354 1.40 christos continue;
355 1.2 kleink
356 1.3 kleink case 'w': /* The day of week, beginning on sunday. */
357 1.23 dsl bp = conv_num(bp, &tm->tm_wday, 0, 6);
358 1.16 kleink LEGAL_ALT(ALT_O);
359 1.41 ginsbach state |= S_WDAY;
360 1.23 dsl continue;
361 1.2 kleink
362 1.29 christos case 'u': /* The day of week, monday = 1. */
363 1.29 christos bp = conv_num(bp, &i, 1, 7);
364 1.29 christos tm->tm_wday = i % 7;
365 1.29 christos LEGAL_ALT(ALT_O);
366 1.29 christos continue;
367 1.29 christos
368 1.29 christos case 'g': /* The year corresponding to the ISO week
369 1.29 christos * number but without the century.
370 1.29 christos */
371 1.29 christos bp = conv_num(bp, &i, 0, 99);
372 1.29 christos continue;
373 1.29 christos
374 1.29 christos case 'G': /* The year corresponding to the ISO week
375 1.29 christos * number with century.
376 1.29 christos */
377 1.29 christos do
378 1.30 christos bp++;
379 1.29 christos while (isdigit(*bp));
380 1.29 christos continue;
381 1.29 christos
382 1.29 christos case 'V': /* The ISO 8601:1988 week number as decimal */
383 1.29 christos bp = conv_num(bp, &i, 0, 53);
384 1.29 christos continue;
385 1.29 christos
386 1.3 kleink case 'Y': /* The year. */
387 1.24 dsl i = TM_YEAR_BASE; /* just for data sanity... */
388 1.23 dsl bp = conv_num(bp, &i, 0, 9999);
389 1.8 mycroft tm->tm_year = i - TM_YEAR_BASE;
390 1.23 dsl LEGAL_ALT(ALT_E);
391 1.41 ginsbach state |= S_YEAR;
392 1.23 dsl continue;
393 1.2 kleink
394 1.9 mycroft case 'y': /* The year within 100 years of the epoch. */
395 1.24 dsl /* LEGAL_ALT(ALT_E | ALT_O); */
396 1.23 dsl bp = conv_num(bp, &i, 0, 99);
397 1.8 mycroft
398 1.24 dsl if (split_year)
399 1.24 dsl /* preserve century */
400 1.24 dsl i += (tm->tm_year / 100) * 100;
401 1.24 dsl else {
402 1.24 dsl split_year = 1;
403 1.24 dsl if (i <= 68)
404 1.24 dsl i = i + 2000 - TM_YEAR_BASE;
405 1.24 dsl else
406 1.24 dsl i = i + 1900 - TM_YEAR_BASE;
407 1.13 tv }
408 1.24 dsl tm->tm_year = i;
409 1.41 ginsbach state |= S_YEAR;
410 1.23 dsl continue;
411 1.2 kleink
412 1.26 ginsbach case 'Z':
413 1.26 ginsbach tzset();
414 1.39 ginsbach if (strncmp((const char *)bp, gmt, 3) == 0 ||
415 1.39 ginsbach strncmp((const char *)bp, utc, 3) == 0) {
416 1.26 ginsbach tm->tm_isdst = 0;
417 1.26 ginsbach #ifdef TM_GMTOFF
418 1.26 ginsbach tm->TM_GMTOFF = 0;
419 1.26 ginsbach #endif
420 1.26 ginsbach #ifdef TM_ZONE
421 1.26 ginsbach tm->TM_ZONE = gmt;
422 1.26 ginsbach #endif
423 1.26 ginsbach bp += 3;
424 1.26 ginsbach } else {
425 1.26 ginsbach ep = find_string(bp, &i,
426 1.26 ginsbach (const char * const *)tzname,
427 1.26 ginsbach NULL, 2);
428 1.26 ginsbach if (ep != NULL) {
429 1.26 ginsbach tm->tm_isdst = i;
430 1.26 ginsbach #ifdef TM_GMTOFF
431 1.26 ginsbach tm->TM_GMTOFF = -(timezone);
432 1.26 ginsbach #endif
433 1.26 ginsbach #ifdef TM_ZONE
434 1.26 ginsbach tm->TM_ZONE = tzname[i];
435 1.26 ginsbach #endif
436 1.26 ginsbach }
437 1.26 ginsbach bp = ep;
438 1.26 ginsbach }
439 1.26 ginsbach continue;
440 1.26 ginsbach
441 1.29 christos case 'z':
442 1.29 christos /*
443 1.29 christos * We recognize all ISO 8601 formats:
444 1.29 christos * Z = Zulu time/UTC
445 1.29 christos * [+-]hhmm
446 1.29 christos * [+-]hh:mm
447 1.29 christos * [+-]hh
448 1.32 ginsbach * We recognize all RFC-822/RFC-2822 formats:
449 1.32 ginsbach * UT|GMT
450 1.32 ginsbach * North American : UTC offsets
451 1.32 ginsbach * E[DS]T = Eastern : -4 | -5
452 1.32 ginsbach * C[DS]T = Central : -5 | -6
453 1.32 ginsbach * M[DS]T = Mountain: -6 | -7
454 1.32 ginsbach * P[DS]T = Pacific : -7 | -8
455 1.32 ginsbach * Military
456 1.32 ginsbach * [A-IL-M] = -1 ... -9 (J not used)
457 1.32 ginsbach * [N-Y] = +1 ... +12
458 1.29 christos */
459 1.29 christos while (isspace(*bp))
460 1.29 christos bp++;
461 1.29 christos
462 1.29 christos switch (*bp++) {
463 1.32 ginsbach case 'G':
464 1.32 ginsbach if (*bp++ != 'M')
465 1.32 ginsbach return NULL;
466 1.32 ginsbach /*FALLTHROUGH*/
467 1.32 ginsbach case 'U':
468 1.32 ginsbach if (*bp++ != 'T')
469 1.32 ginsbach return NULL;
470 1.32 ginsbach /*FALLTHROUGH*/
471 1.29 christos case 'Z':
472 1.29 christos tm->tm_isdst = 0;
473 1.29 christos #ifdef TM_GMTOFF
474 1.29 christos tm->TM_GMTOFF = 0;
475 1.29 christos #endif
476 1.29 christos #ifdef TM_ZONE
477 1.29 christos tm->TM_ZONE = utc;
478 1.29 christos #endif
479 1.29 christos continue;
480 1.29 christos case '+':
481 1.29 christos neg = 0;
482 1.42 ginsbach state |= S_WDAY | S_MON | S_MDAY | S_YEAR;
483 1.29 christos break;
484 1.29 christos case '-':
485 1.29 christos neg = 1;
486 1.29 christos break;
487 1.29 christos default:
488 1.32 ginsbach --bp;
489 1.32 ginsbach ep = find_string(bp, &i, nast, NULL, 4);
490 1.32 ginsbach if (ep != NULL) {
491 1.32 ginsbach #ifdef TM_GMTOFF
492 1.32 ginsbach tm->TM_GMTOFF = -5 - i;
493 1.32 ginsbach #endif
494 1.32 ginsbach #ifdef TM_ZONE
495 1.32 ginsbach tm->TM_ZONE = __UNCONST(nast[i]);
496 1.32 ginsbach #endif
497 1.32 ginsbach bp = ep;
498 1.32 ginsbach continue;
499 1.32 ginsbach }
500 1.32 ginsbach ep = find_string(bp, &i, nadt, NULL, 4);
501 1.32 ginsbach if (ep != NULL) {
502 1.32 ginsbach tm->tm_isdst = 1;
503 1.32 ginsbach #ifdef TM_GMTOFF
504 1.32 ginsbach tm->TM_GMTOFF = -4 - i;
505 1.32 ginsbach #endif
506 1.32 ginsbach #ifdef TM_ZONE
507 1.32 ginsbach tm->TM_ZONE = __UNCONST(nadt[i]);
508 1.32 ginsbach #endif
509 1.32 ginsbach bp = ep;
510 1.32 ginsbach continue;
511 1.32 ginsbach }
512 1.32 ginsbach
513 1.32 ginsbach if ((*bp >= 'A' && *bp <= 'I') ||
514 1.32 ginsbach (*bp >= 'L' && *bp <= 'Y')) {
515 1.32 ginsbach #ifdef TM_GMTOFF
516 1.32 ginsbach /* Argh! No 'J'! */
517 1.32 ginsbach if (*bp >= 'A' && *bp <= 'I')
518 1.32 ginsbach tm->TM_GMTOFF =
519 1.32 ginsbach ('A' - 1) - (int)*bp;
520 1.32 ginsbach else if (*bp >= 'L' && *bp <= 'M')
521 1.32 ginsbach tm->TM_GMTOFF = 'A' - (int)*bp;
522 1.32 ginsbach else if (*bp >= 'N' && *bp <= 'Y')
523 1.32 ginsbach tm->TM_GMTOFF = (int)*bp - 'M';
524 1.32 ginsbach #endif
525 1.32 ginsbach #ifdef TM_ZONE
526 1.32 ginsbach tm->TM_ZONE = NULL; /* XXX */
527 1.32 ginsbach #endif
528 1.32 ginsbach bp++;
529 1.32 ginsbach continue;
530 1.32 ginsbach }
531 1.29 christos return NULL;
532 1.29 christos }
533 1.29 christos offs = 0;
534 1.29 christos for (i = 0; i < 4; ) {
535 1.29 christos if (isdigit(*bp)) {
536 1.29 christos offs = offs * 10 + (*bp++ - '0');
537 1.29 christos i++;
538 1.29 christos continue;
539 1.29 christos }
540 1.29 christos if (i == 2 && *bp == ':') {
541 1.29 christos bp++;
542 1.29 christos continue;
543 1.29 christos }
544 1.29 christos break;
545 1.29 christos }
546 1.29 christos switch (i) {
547 1.29 christos case 2:
548 1.29 christos offs *= 100;
549 1.29 christos break;
550 1.29 christos case 4:
551 1.29 christos i = offs % 100;
552 1.29 christos if (i >= 60)
553 1.29 christos return NULL;
554 1.29 christos /* Convert minutes into decimal */
555 1.29 christos offs = (offs / 100) * 100 + (i * 50) / 30;
556 1.29 christos break;
557 1.29 christos default:
558 1.29 christos return NULL;
559 1.29 christos }
560 1.31 christos if (neg)
561 1.31 christos offs = -offs;
562 1.29 christos tm->tm_isdst = 0; /* XXX */
563 1.29 christos #ifdef TM_GMTOFF
564 1.29 christos tm->TM_GMTOFF = offs;
565 1.29 christos #endif
566 1.29 christos #ifdef TM_ZONE
567 1.29 christos tm->TM_ZONE = NULL; /* XXX */
568 1.29 christos #endif
569 1.29 christos continue;
570 1.29 christos
571 1.3 kleink /*
572 1.3 kleink * Miscellaneous conversions.
573 1.3 kleink */
574 1.3 kleink case 'n': /* Any kind of white-space. */
575 1.3 kleink case 't':
576 1.3 kleink while (isspace(*bp))
577 1.3 kleink bp++;
578 1.23 dsl LEGAL_ALT(0);
579 1.23 dsl continue;
580 1.2 kleink
581 1.1 mrg
582 1.3 kleink default: /* Unknown/unsupported conversion. */
583 1.24 dsl return NULL;
584 1.3 kleink }
585 1.3 kleink }
586 1.2 kleink
587 1.42 ginsbach if (!HAVE_YDAY(state) && HAVE_YEAR(state)) {
588 1.42 ginsbach if (HAVE_MON(state) && HAVE_MDAY(state)) {
589 1.43 ginsbach tm->tm_yday = start_of_month[isleap_sum(tm->tm_year,
590 1.40 christos TM_YEAR_BASE)][tm->tm_mon] + (tm->tm_mday - 1);
591 1.41 ginsbach state |= S_YDAY;
592 1.40 christos } else if (day_offset != -1) {
593 1.40 christos /* Set the date to the first Sunday (or Monday)
594 1.40 christos * of the specified week of the year.
595 1.40 christos */
596 1.42 ginsbach if (!HAVE_WDAY(state)) {
597 1.40 christos tm->tm_wday = day_offset;
598 1.41 ginsbach state |= S_WDAY;
599 1.40 christos }
600 1.40 christos tm->tm_yday = (7 -
601 1.40 christos first_wday_of(tm->tm_year + TM_YEAR_BASE) +
602 1.40 christos day_offset) % 7 + (week_offset - 1) * 7 +
603 1.40 christos tm->tm_wday - day_offset;
604 1.41 ginsbach state |= S_YDAY;
605 1.40 christos }
606 1.40 christos }
607 1.40 christos
608 1.42 ginsbach if (HAVE_YDAY(state) && HAVE_YEAR(state)) {
609 1.40 christos int isleap;
610 1.42 ginsbach if (!HAVE_MON(state)) {
611 1.40 christos i = 0;
612 1.43 ginsbach isleap = isleap_sum(tm->tm_year, TM_YEAR_BASE);
613 1.40 christos while (tm->tm_yday >= start_of_month[isleap][i])
614 1.40 christos i++;
615 1.40 christos if (i > 12) {
616 1.40 christos i = 1;
617 1.40 christos tm->tm_yday -= start_of_month[isleap][12];
618 1.40 christos tm->tm_year++;
619 1.40 christos }
620 1.40 christos tm->tm_mon = i - 1;
621 1.41 ginsbach state |= S_MON;
622 1.40 christos }
623 1.42 ginsbach if (!HAVE_MDAY(state)) {
624 1.43 ginsbach isleap = isleap_sum(tm->tm_year, TM_YEAR_BASE);
625 1.40 christos tm->tm_mday = tm->tm_yday -
626 1.40 christos start_of_month[isleap][tm->tm_mon] + 1;
627 1.41 ginsbach state |= S_MDAY;
628 1.40 christos }
629 1.42 ginsbach if (!HAVE_WDAY(state)) {
630 1.40 christos i = 0;
631 1.40 christos week_offset = first_wday_of(tm->tm_year);
632 1.40 christos while (i++ <= tm->tm_yday) {
633 1.40 christos if (week_offset++ >= 6)
634 1.40 christos week_offset = 0;
635 1.40 christos }
636 1.40 christos tm->tm_wday = week_offset;
637 1.41 ginsbach state |= S_WDAY;
638 1.40 christos }
639 1.40 christos }
640 1.40 christos
641 1.25 christos return __UNCONST(bp);
642 1.3 kleink }
643 1.2 kleink
644 1.2 kleink
645 1.23 dsl static const u_char *
646 1.24 dsl conv_num(const unsigned char *buf, int *dest, uint llim, uint ulim)
647 1.3 kleink {
648 1.24 dsl uint result = 0;
649 1.23 dsl unsigned char ch;
650 1.18 tv
651 1.18 tv /* The limit also determines the number of valid digits. */
652 1.24 dsl uint rulim = ulim;
653 1.2 kleink
654 1.23 dsl ch = *buf;
655 1.23 dsl if (ch < '0' || ch > '9')
656 1.24 dsl return NULL;
657 1.2 kleink
658 1.3 kleink do {
659 1.18 tv result *= 10;
660 1.23 dsl result += ch - '0';
661 1.18 tv rulim /= 10;
662 1.23 dsl ch = *++buf;
663 1.23 dsl } while ((result * 10 <= ulim) && rulim && ch >= '0' && ch <= '9');
664 1.2 kleink
665 1.18 tv if (result < llim || result > ulim)
666 1.24 dsl return NULL;
667 1.1 mrg
668 1.18 tv *dest = result;
669 1.23 dsl return buf;
670 1.23 dsl }
671 1.23 dsl
672 1.23 dsl static const u_char *
673 1.23 dsl find_string(const u_char *bp, int *tgt, const char * const *n1,
674 1.23 dsl const char * const *n2, int c)
675 1.23 dsl {
676 1.23 dsl int i;
677 1.36 christos size_t len;
678 1.23 dsl
679 1.24 dsl /* check full name - then abbreviated ones */
680 1.24 dsl for (; n1 != NULL; n1 = n2, n2 = NULL) {
681 1.24 dsl for (i = 0; i < c; i++, n1++) {
682 1.24 dsl len = strlen(*n1);
683 1.24 dsl if (strncasecmp(*n1, (const char *)bp, len) == 0) {
684 1.24 dsl *tgt = i;
685 1.24 dsl return bp + len;
686 1.24 dsl }
687 1.24 dsl }
688 1.23 dsl }
689 1.24 dsl
690 1.24 dsl /* Nothing matched */
691 1.24 dsl return NULL;
692 1.1 mrg }
693