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Fix computation of tzspec_len.
[thirdparty/glibc.git] / time / tzfile.c
1 /* Copyright (C) 1991-1993,1995-2001,2003,2004,2006,2007,2009
2 Free Software Foundation, Inc.
3 This file is part of the GNU C Library.
4
5 The GNU C Library is free software; you can redistribute it and/or
6 modify it under the terms of the GNU Lesser General Public
7 License as published by the Free Software Foundation; either
8 version 2.1 of the License, or (at your option) any later version.
9
10 The GNU C Library is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 Lesser General Public License for more details.
14
15 You should have received a copy of the GNU Lesser General Public
16 License along with the GNU C Library; if not, write to the Free
17 Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
18 02111-1307 USA. */
19
20 #include <assert.h>
21 #include <limits.h>
22 #include <stdio.h>
23 #include <stdio_ext.h>
24 #include <stdlib.h>
25 #include <string.h>
26 #include <time.h>
27 #include <unistd.h>
28 #include <sys/stat.h>
29
30 #define NOID
31 #include <timezone/tzfile.h>
32
33 int __use_tzfile;
34 static dev_t tzfile_dev;
35 static ino64_t tzfile_ino;
36 static time_t tzfile_mtime;
37
38 struct ttinfo
39 {
40 long int offset; /* Seconds east of GMT. */
41 unsigned char isdst; /* Used to set tm_isdst. */
42 unsigned char idx; /* Index into `zone_names'. */
43 unsigned char isstd; /* Transition times are in standard time. */
44 unsigned char isgmt; /* Transition times are in GMT. */
45 };
46
47 struct leap
48 {
49 time_t transition; /* Time the transition takes effect. */
50 long int change; /* Seconds of correction to apply. */
51 };
52
53 static void compute_tzname_max (size_t) internal_function;
54
55 static size_t num_transitions;
56 libc_freeres_ptr (static time_t *transitions);
57 static unsigned char *type_idxs;
58 static size_t num_types;
59 static struct ttinfo *types;
60 static char *zone_names;
61 static long int rule_stdoff;
62 static long int rule_dstoff;
63 static size_t num_leaps;
64 static struct leap *leaps;
65 static char *tzspec;
66
67 #include <endian.h>
68 #include <byteswap.h>
69
70 /* Decode the four bytes at PTR as a signed integer in network byte order. */
71 static inline int
72 __attribute ((always_inline))
73 decode (const void *ptr)
74 {
75 if (BYTE_ORDER == BIG_ENDIAN && sizeof (int) == 4)
76 return *(const int *) ptr;
77 if (sizeof (int) == 4)
78 return bswap_32 (*(const int *) ptr);
79
80 const unsigned char *p = ptr;
81 int result = *p & (1 << (CHAR_BIT - 1)) ? ~0 : 0;
82
83 result = (result << 8) | *p++;
84 result = (result << 8) | *p++;
85 result = (result << 8) | *p++;
86 result = (result << 8) | *p++;
87
88 return result;
89 }
90
91
92 static inline int64_t
93 __attribute ((always_inline))
94 decode64 (const void *ptr)
95 {
96 if ((BYTE_ORDER == BIG_ENDIAN))
97 return *(const int64_t *) ptr;
98
99 return bswap_64 (*(const int64_t *) ptr);
100 }
101
102
103 void
104 __tzfile_read (const char *file, size_t extra, char **extrap)
105 {
106 static const char default_tzdir[] = TZDIR;
107 size_t num_isstd, num_isgmt;
108 register FILE *f;
109 struct tzhead tzhead;
110 size_t chars;
111 register size_t i;
112 size_t total_size;
113 size_t types_idx;
114 size_t leaps_idx;
115 int was_using_tzfile = __use_tzfile;
116 int trans_width = 4;
117 size_t tzspec_len;
118
119 if (sizeof (time_t) != 4 && sizeof (time_t) != 8)
120 abort ();
121
122 __use_tzfile = 0;
123
124 if (file == NULL)
125 /* No user specification; use the site-wide default. */
126 file = TZDEFAULT;
127 else if (*file == '\0')
128 /* User specified the empty string; use UTC with no leap seconds. */
129 goto ret_free_transitions;
130 else
131 {
132 /* We must not allow to read an arbitrary file in a setuid
133 program. So we fail for any file which is not in the
134 directory hierachy starting at TZDIR
135 and which is not the system wide default TZDEFAULT. */
136 if (__libc_enable_secure
137 && ((*file == '/'
138 && memcmp (file, TZDEFAULT, sizeof TZDEFAULT)
139 && memcmp (file, default_tzdir, sizeof (default_tzdir) - 1))
140 || strstr (file, "../") != NULL))
141 /* This test is certainly a bit too restrictive but it should
142 catch all critical cases. */
143 goto ret_free_transitions;
144 }
145
146 if (*file != '/')
147 {
148 const char *tzdir;
149 unsigned int len, tzdir_len;
150 char *new, *tmp;
151
152 tzdir = getenv ("TZDIR");
153 if (tzdir == NULL || *tzdir == '\0')
154 {
155 tzdir = default_tzdir;
156 tzdir_len = sizeof (default_tzdir) - 1;
157 }
158 else
159 tzdir_len = strlen (tzdir);
160 len = strlen (file) + 1;
161 new = (char *) __alloca (tzdir_len + 1 + len);
162 tmp = __mempcpy (new, tzdir, tzdir_len);
163 *tmp++ = '/';
164 memcpy (tmp, file, len);
165 file = new;
166 }
167
168 /* If we were already using tzfile, check whether the file changed. */
169 struct stat64 st;
170 if (was_using_tzfile
171 && stat64 (file, &st) == 0
172 && tzfile_ino == st.st_ino && tzfile_dev == st.st_dev
173 && tzfile_mtime == st.st_mtime)
174 {
175 /* Nothing to do. */
176 __use_tzfile = 1;
177 return;
178 }
179
180 /* Note the file is opened with cancellation in the I/O functions
181 disabled. */
182 f = fopen (file, "rc");
183 if (f == NULL)
184 goto ret_free_transitions;
185
186 /* Get information about the file we are actually using. */
187 if (fstat64 (fileno (f), &st) != 0)
188 {
189 fclose (f);
190 goto ret_free_transitions;
191 }
192
193 free ((void *) transitions);
194 transitions = NULL;
195
196 /* Remember the inode and device number and modification time. */
197 tzfile_dev = st.st_dev;
198 tzfile_ino = st.st_ino;
199 tzfile_mtime = st.st_mtime;
200
201 /* No threads reading this stream. */
202 __fsetlocking (f, FSETLOCKING_BYCALLER);
203
204 read_again:
205 if (__builtin_expect (fread_unlocked ((void *) &tzhead, sizeof (tzhead),
206 1, f) != 1, 0)
207 || memcmp (tzhead.tzh_magic, TZ_MAGIC, sizeof (tzhead.tzh_magic)) != 0)
208 goto lose;
209
210 num_transitions = (size_t) decode (tzhead.tzh_timecnt);
211 num_types = (size_t) decode (tzhead.tzh_typecnt);
212 chars = (size_t) decode (tzhead.tzh_charcnt);
213 num_leaps = (size_t) decode (tzhead.tzh_leapcnt);
214 num_isstd = (size_t) decode (tzhead.tzh_ttisstdcnt);
215 num_isgmt = (size_t) decode (tzhead.tzh_ttisgmtcnt);
216
217 /* For platforms with 64-bit time_t we use the new format if available. */
218 if (sizeof (time_t) == 8 && trans_width == 4
219 && tzhead.tzh_version[0] != '\0')
220 {
221 /* We use the 8-byte format. */
222 trans_width = 8;
223
224 /* Position the stream before the second header. */
225 size_t to_skip = (num_transitions * (4 + 1)
226 + num_types * 6
227 + chars
228 + num_leaps * 8
229 + num_isstd
230 + num_isgmt);
231 if (fseek (f, to_skip, SEEK_CUR) != 0)
232 goto lose;
233
234 goto read_again;
235 }
236
237 total_size = num_transitions * (sizeof (time_t) + 1);
238 total_size = ((total_size + __alignof__ (struct ttinfo) - 1)
239 & ~(__alignof__ (struct ttinfo) - 1));
240 types_idx = total_size;
241 total_size += num_types * sizeof (struct ttinfo) + chars;
242 total_size = ((total_size + __alignof__ (struct leap) - 1)
243 & ~(__alignof__ (struct leap) - 1));
244 leaps_idx = total_size;
245 total_size += num_leaps * sizeof (struct leap);
246 tzspec_len = (sizeof (time_t) == 8 && trans_width == 8
247 ? st.st_size - (ftello (f)
248 + num_transitions * (8 + 1)
249 + num_types * 6
250 + chars
251 + num_leaps * 12
252 + num_isstd
253 + num_isgmt) - 1 : 0);
254
255 /* Allocate enough memory including the extra block requested by the
256 caller. */
257 transitions = (time_t *) malloc (total_size + tzspec_len + extra);
258 if (transitions == NULL)
259 goto lose;
260
261 type_idxs = (unsigned char *) transitions + (num_transitions
262 * sizeof (time_t));
263 types = (struct ttinfo *) ((char *) transitions + types_idx);
264 zone_names = (char *) types + num_types * sizeof (struct ttinfo);
265 leaps = (struct leap *) ((char *) transitions + leaps_idx);
266 if (sizeof (time_t) == 8 && trans_width == 8)
267 tzspec = (char *) leaps + num_leaps * sizeof (struct leap) + extra;
268 else
269 tzspec = NULL;
270 if (extra > 0)
271 *extrap = (char *) &leaps[num_leaps];
272
273 if (sizeof (time_t) == 4 || __builtin_expect (trans_width == 8, 1))
274 {
275 if (__builtin_expect (fread_unlocked (transitions, trans_width + 1,
276 num_transitions, f)
277 != num_transitions, 0))
278 goto lose;
279 }
280 else
281 {
282 if (__builtin_expect (fread_unlocked (transitions, 4, num_transitions, f)
283 != num_transitions, 0)
284 || __builtin_expect (fread_unlocked (type_idxs, 1, num_transitions,
285 f) != num_transitions, 0))
286 goto lose;
287 }
288
289 /* Check for bogus indices in the data file, so we can hereafter
290 safely use type_idxs[T] as indices into `types' and never crash. */
291 for (i = 0; i < num_transitions; ++i)
292 if (__builtin_expect (type_idxs[i] >= num_types, 0))
293 goto lose;
294
295 if ((BYTE_ORDER != BIG_ENDIAN && (sizeof (time_t) == 4 || trans_width == 4))
296 || (BYTE_ORDER == BIG_ENDIAN && sizeof (time_t) == 8
297 && trans_width == 4))
298 {
299 /* Decode the transition times, stored as 4-byte integers in
300 network (big-endian) byte order. We work from the end of
301 the array so as not to clobber the next element to be
302 processed when sizeof (time_t) > 4. */
303 i = num_transitions;
304 while (i-- > 0)
305 transitions[i] = decode ((char *) transitions + i * 4);
306 }
307 else if (BYTE_ORDER != BIG_ENDIAN && sizeof (time_t) == 8)
308 {
309 /* Decode the transition times, stored as 8-byte integers in
310 network (big-endian) byte order. */
311 for (i = 0; i < num_transitions; ++i)
312 transitions[i] = decode64 ((char *) transitions + i * 8);
313 }
314
315 for (i = 0; i < num_types; ++i)
316 {
317 unsigned char x[4];
318 int c;
319 if (__builtin_expect (fread_unlocked (x, 1, sizeof (x), f) != sizeof (x),
320 0))
321 goto lose;
322 c = getc_unlocked (f);
323 if (__builtin_expect ((unsigned int) c > 1u, 0))
324 goto lose;
325 types[i].isdst = c;
326 c = getc_unlocked (f);
327 if (__builtin_expect ((size_t) c > chars, 0))
328 /* Bogus index in data file. */
329 goto lose;
330 types[i].idx = c;
331 types[i].offset = (long int) decode (x);
332 }
333
334 if (__builtin_expect (fread_unlocked (zone_names, 1, chars, f) != chars, 0))
335 goto lose;
336
337 for (i = 0; i < num_leaps; ++i)
338 {
339 unsigned char x[8];
340 if (__builtin_expect (fread_unlocked (x, 1, trans_width, f)
341 != trans_width, 0))
342 goto lose;
343 if (sizeof (time_t) == 4 || trans_width == 4)
344 leaps[i].transition = (time_t) decode (x);
345 else
346 leaps[i].transition = (time_t) decode64 (x);
347
348 if (__builtin_expect (fread_unlocked (x, 1, 4, f) != 4, 0))
349 goto lose;
350 leaps[i].change = (long int) decode (x);
351 }
352
353 for (i = 0; i < num_isstd; ++i)
354 {
355 int c = getc_unlocked (f);
356 if (__builtin_expect (c == EOF, 0))
357 goto lose;
358 types[i].isstd = c != 0;
359 }
360 while (i < num_types)
361 types[i++].isstd = 0;
362
363 for (i = 0; i < num_isgmt; ++i)
364 {
365 int c = getc_unlocked (f);
366 if (__builtin_expect (c == EOF, 0))
367 goto lose;
368 types[i].isgmt = c != 0;
369 }
370 while (i < num_types)
371 types[i++].isgmt = 0;
372
373 /* Read the POSIX TZ-style information if possible. */
374 if (sizeof (time_t) == 8 && tzspec != NULL)
375 {
376 /* Skip over the newline first. */
377 if (getc_unlocked (f) != '\n'
378 || (fread_unlocked (tzspec, 1, tzspec_len - 1, f)
379 != tzspec_len - 1))
380 tzspec = NULL;
381 else
382 tzspec[tzspec_len - 1] = '\0';
383 }
384 else if (sizeof (time_t) == 4 && tzhead.tzh_version[0] != '\0')
385 {
386 /* Get the TZ string. */
387 if (__builtin_expect (fread_unlocked ((void *) &tzhead, sizeof (tzhead),
388 1, f) != 1, 0)
389 || (memcmp (tzhead.tzh_magic, TZ_MAGIC, sizeof (tzhead.tzh_magic))
390 != 0))
391 goto lose;
392
393 size_t num_transitions2 = (size_t) decode (tzhead.tzh_timecnt);
394 size_t num_types2 = (size_t) decode (tzhead.tzh_typecnt);
395 size_t chars2 = (size_t) decode (tzhead.tzh_charcnt);
396 size_t num_leaps2 = (size_t) decode (tzhead.tzh_leapcnt);
397 size_t num_isstd2 = (size_t) decode (tzhead.tzh_ttisstdcnt);
398 size_t num_isgmt2 = (size_t) decode (tzhead.tzh_ttisgmtcnt);
399
400 /* Position the stream before the second header. */
401 size_t to_skip = (num_transitions2 * (8 + 1)
402 + num_types2 * 6
403 + chars2
404 + num_leaps2 * 12
405 + num_isstd2
406 + num_isgmt2);
407 off_t off;
408 if (fseek (f, to_skip, SEEK_CUR) != 0
409 || (off = ftello (f)) < 0
410 || st.st_size < off + 2)
411 goto lose;
412
413 tzspec_len = st.st_size - off - 1;
414 char *tzstr = alloca (tzspec_len);
415 if (getc_unlocked (f) != '\n'
416 || (fread_unlocked (tzstr, 1, tzspec_len - 1, f) != tzspec_len - 1))
417 goto lose;
418 tzstr[tzspec_len - 1] = '\0';
419 tzspec = __tzstring (tzstr);
420 }
421
422 fclose (f);
423
424 /* First "register" all timezone names. */
425 for (i = 0; i < num_types; ++i)
426 (void) __tzstring (&zone_names[types[i].idx]);
427
428 /* Find the standard and daylight time offsets used by the rule file.
429 We choose the offsets in the types of each flavor that are
430 transitioned to earliest in time. */
431 __tzname[0] = NULL;
432 __tzname[1] = NULL;
433 for (i = num_transitions; i > 0; )
434 {
435 int type = type_idxs[--i];
436 int dst = types[type].isdst;
437
438 if (__tzname[dst] == NULL)
439 {
440 int idx = types[type].idx;
441
442 __tzname[dst] = __tzstring (&zone_names[idx]);
443
444 if (__tzname[1 - dst] != NULL)
445 break;
446 }
447 }
448 if (__tzname[0] == NULL)
449 {
450 /* This should only happen if there are no transition rules.
451 In this case there should be only one single type. */
452 assert (num_types == 1);
453 __tzname[0] = __tzstring (zone_names);
454 }
455 if (__tzname[1] == NULL)
456 __tzname[1] = __tzname[0];
457
458 compute_tzname_max (chars);
459
460 if (num_transitions == 0)
461 /* Use the first rule (which should also be the only one). */
462 rule_stdoff = rule_dstoff = types[0].offset;
463 else
464 {
465 int stdoff_set = 0, dstoff_set = 0;
466 rule_stdoff = rule_dstoff = 0;
467 i = num_transitions - 1;
468 do
469 {
470 if (!stdoff_set && !types[type_idxs[i]].isdst)
471 {
472 stdoff_set = 1;
473 rule_stdoff = types[type_idxs[i]].offset;
474 }
475 else if (!dstoff_set && types[type_idxs[i]].isdst)
476 {
477 dstoff_set = 1;
478 rule_dstoff = types[type_idxs[i]].offset;
479 }
480 if (stdoff_set && dstoff_set)
481 break;
482 }
483 while (i-- > 0);
484
485 if (!dstoff_set)
486 rule_dstoff = rule_stdoff;
487 }
488
489 __daylight = rule_stdoff != rule_dstoff;
490 __timezone = -rule_stdoff;
491
492 __use_tzfile = 1;
493 return;
494
495 lose:
496 fclose (f);
497 ret_free_transitions:
498 free ((void *) transitions);
499 transitions = NULL;
500 }
501 \f
502 /* The user specified a hand-made timezone, but not its DST rules.
503 We will use the names and offsets from the user, and the rules
504 from the TZDEFRULES file. */
505
506 void
507 __tzfile_default (const char *std, const char *dst,
508 long int stdoff, long int dstoff)
509 {
510 size_t stdlen = strlen (std) + 1;
511 size_t dstlen = strlen (dst) + 1;
512 size_t i;
513 int isdst;
514 char *cp;
515
516 __tzfile_read (TZDEFRULES, stdlen + dstlen, &cp);
517 if (!__use_tzfile)
518 return;
519
520 if (num_types < 2)
521 {
522 __use_tzfile = 0;
523 return;
524 }
525
526 /* Ignore the zone names read from the file and use the given ones
527 instead. */
528 __mempcpy (__mempcpy (cp, std, stdlen), dst, dstlen);
529 zone_names = cp;
530
531 /* Now there are only two zones, regardless of what the file contained. */
532 num_types = 2;
533
534 /* Now correct the transition times for the user-specified standard and
535 daylight offsets from GMT. */
536 isdst = 0;
537 for (i = 0; i < num_transitions; ++i)
538 {
539 struct ttinfo *trans_type = &types[type_idxs[i]];
540
541 /* We will use only types 0 (standard) and 1 (daylight).
542 Fix up this transition to point to whichever matches
543 the flavor of its original type. */
544 type_idxs[i] = trans_type->isdst;
545
546 if (trans_type->isgmt)
547 /* The transition time is in GMT. No correction to apply. */ ;
548 else if (isdst && !trans_type->isstd)
549 /* The type says this transition is in "local wall clock time", and
550 wall clock time as of the previous transition was DST. Correct
551 for the difference between the rule's DST offset and the user's
552 DST offset. */
553 transitions[i] += dstoff - rule_dstoff;
554 else
555 /* This transition is in "local wall clock time", and wall clock
556 time as of this iteration is non-DST. Correct for the
557 difference between the rule's standard offset and the user's
558 standard offset. */
559 transitions[i] += stdoff - rule_stdoff;
560
561 /* The DST state of "local wall clock time" for the next iteration is
562 as specified by this transition. */
563 isdst = trans_type->isdst;
564 }
565
566 /* Now that we adjusted the transitions to the requested offsets,
567 reset the rule_stdoff and rule_dstoff values appropriately. They
568 are used elsewhere. */
569 rule_stdoff = stdoff;
570 rule_dstoff = dstoff;
571
572 /* Reset types 0 and 1 to describe the user's settings. */
573 types[0].idx = 0;
574 types[0].offset = stdoff;
575 types[0].isdst = 0;
576 types[1].idx = stdlen;
577 types[1].offset = dstoff;
578 types[1].isdst = 1;
579
580 /* Reset the zone names to point to the user's names. */
581 __tzname[0] = (char *) std;
582 __tzname[1] = (char *) dst;
583
584 /* Set the timezone. */
585 __timezone = -types[0].offset;
586
587 compute_tzname_max (stdlen + dstlen);
588 }
589 \f
590 void
591 __tzfile_compute (time_t timer, int use_localtime,
592 long int *leap_correct, int *leap_hit,
593 struct tm *tp)
594 {
595 register size_t i;
596
597 if (use_localtime)
598 {
599 __tzname[0] = NULL;
600 __tzname[1] = NULL;
601
602 if (__builtin_expect (num_transitions == 0 || timer < transitions[0], 0))
603 {
604 /* TIMER is before any transition (or there are no transitions).
605 Choose the first non-DST type
606 (or the first if they're all DST types). */
607 i = 0;
608 while (i < num_types && types[i].isdst)
609 {
610 if (__tzname[1] == NULL)
611 __tzname[1] = __tzstring (&zone_names[types[i].idx]);
612
613 ++i;
614 }
615
616 if (i == num_types)
617 i = 0;
618 __tzname[0] = __tzstring (&zone_names[types[i].idx]);
619 if (__tzname[1] == NULL)
620 {
621 size_t j = i;
622 while (j < num_types)
623 if (types[j].isdst)
624 {
625 __tzname[1] = __tzstring (&zone_names[types[j].idx]);
626 break;
627 }
628 else
629 ++j;
630 }
631 }
632 else if (__builtin_expect (timer >= transitions[num_transitions - 1], 0))
633 {
634 if (__builtin_expect (tzspec == NULL, 0))
635 {
636 use_last:
637 i = num_transitions;
638 goto found;
639 }
640
641 /* Parse the POSIX TZ-style string. */
642 __tzset_parse_tz (tzspec);
643
644 /* Convert to broken down structure. If this fails do not
645 use the string. */
646 if (__builtin_expect (! __offtime (&timer, 0, tp), 0))
647 goto use_last;
648
649 /* Use the rules from the TZ string to compute the change. */
650 __tz_compute (timer, tp, 1);
651
652 /* If tzspec comes from posixrules loaded by __tzfile_default,
653 override the STD and DST zone names with the ones user
654 requested in TZ envvar. */
655 if (__builtin_expect (zone_names == (char *) &leaps[num_leaps], 0))
656 {
657 assert (num_types == 2);
658 __tzname[0] = __tzstring (zone_names);
659 __tzname[1] = __tzstring (&zone_names[strlen (zone_names) + 1]);
660 }
661
662 goto leap;
663 }
664 else
665 {
666 /* Find the first transition after TIMER, and
667 then pick the type of the transition before it. */
668 size_t lo = 0;
669 size_t hi = num_transitions - 1;
670 /* Assume that DST is changing twice a year and guess initial
671 search spot from it.
672 Half of a gregorian year has on average 365.2425 * 86400 / 2
673 = 15778476 seconds. */
674 i = (transitions[num_transitions - 1] - timer) / 15778476;
675 if (i < num_transitions)
676 {
677 i = num_transitions - 1 - i;
678 if (timer < transitions[i])
679 {
680 if (i < 10 || timer >= transitions[i - 10])
681 {
682 /* Linear search. */
683 while (timer < transitions[i - 1])
684 --i;
685 goto found;
686 }
687 hi = i - 10;
688 }
689 else
690 {
691 if (i + 10 >= num_transitions || timer < transitions[i + 10])
692 {
693 /* Linear search. */
694 while (timer >= transitions[i])
695 ++i;
696 goto found;
697 }
698 lo = i + 10;
699 }
700 }
701
702 /* Binary search. */
703 /* assert (timer >= transitions[lo] && timer < transitions[hi]); */
704 while (lo + 1 < hi)
705 {
706 i = (lo + hi) / 2;
707 if (timer < transitions[i])
708 hi = i;
709 else
710 lo = i;
711 }
712 i = hi;
713
714 found:
715 /* assert (timer >= transitions[i - 1]
716 && (i == num_transitions || timer < transitions[i])); */
717 __tzname[types[type_idxs[i - 1]].isdst]
718 = __tzstring (&zone_names[types[type_idxs[i - 1]].idx]);
719 size_t j = i;
720 while (j < num_transitions)
721 {
722 int type = type_idxs[j];
723 int dst = types[type].isdst;
724 int idx = types[type].idx;
725
726 if (__tzname[dst] == NULL)
727 {
728 __tzname[dst] = __tzstring (&zone_names[idx]);
729
730 if (__tzname[1 - dst] != NULL)
731 break;
732 }
733
734 ++j;
735 }
736
737 if (__builtin_expect (__tzname[0] == NULL, 0))
738 __tzname[0] = __tzname[1];
739
740 i = type_idxs[i - 1];
741 }
742
743 struct ttinfo *info = &types[i];
744 __daylight = rule_stdoff != rule_dstoff;
745 __timezone = -rule_stdoff;
746
747 if (__tzname[0] == NULL)
748 {
749 /* This should only happen if there are no transition rules.
750 In this case there should be only one single type. */
751 assert (num_types == 1);
752 __tzname[0] = __tzstring (zone_names);
753 }
754 if (__tzname[1] == NULL)
755 /* There is no daylight saving time. */
756 __tzname[1] = __tzname[0];
757 tp->tm_isdst = info->isdst;
758 assert (strcmp (&zone_names[info->idx], __tzname[tp->tm_isdst]) == 0);
759 tp->tm_zone = __tzname[tp->tm_isdst];
760 tp->tm_gmtoff = info->offset;
761 }
762
763 leap:
764 *leap_correct = 0L;
765 *leap_hit = 0;
766
767 /* Find the last leap second correction transition time before TIMER. */
768 i = num_leaps;
769 do
770 if (i-- == 0)
771 return;
772 while (timer < leaps[i].transition);
773
774 /* Apply its correction. */
775 *leap_correct = leaps[i].change;
776
777 if (timer == leaps[i].transition && /* Exactly at the transition time. */
778 ((i == 0 && leaps[i].change > 0) ||
779 leaps[i].change > leaps[i - 1].change))
780 {
781 *leap_hit = 1;
782 while (i > 0
783 && leaps[i].transition == leaps[i - 1].transition + 1
784 && leaps[i].change == leaps[i - 1].change + 1)
785 {
786 ++*leap_hit;
787 --i;
788 }
789 }
790 }
791 \f
792 static void
793 internal_function
794 compute_tzname_max (size_t chars)
795 {
796 const char *p;
797
798 p = zone_names;
799 do
800 {
801 const char *start = p;
802 while (*p != '\0')
803 ++p;
804 if ((size_t) (p - start) > __tzname_cur_max)
805 __tzname_cur_max = p - start;
806 }
807 while (++p < &zone_names[chars]);
808 }