(_POSIX_C_SOURCE): Use this only on hpux, it
[bpt/guile.git] / libguile / stime.c
1 /* Copyright (C) 1995,1996,1997,1998,1999,2000,2001, 2003, 2004 Free Software Foundation, Inc.
2 *
3 * This library is free software; you can redistribute it and/or
4 * modify it under the terms of the GNU Lesser General Public
5 * License as published by the Free Software Foundation; either
6 * version 2.1 of the License, or (at your option) any later version.
7 *
8 * This library is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * Lesser General Public License for more details.
12 *
13 * You should have received a copy of the GNU Lesser General Public
14 * License along with this library; if not, write to the Free Software
15 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
16 */
17
18
19 \f
20
21 /* _POSIX_C_SOURCE is not defined always, because it causes problems on some
22 systems, notably
23
24 - FreeBSD loses all BSD and XOPEN defines.
25 - glibc loses some things like CLK_TCK.
26 - On MINGW it conflicts with the pthread headers.
27
28 But on HP-UX _POSIX_C_SOURCE is needed, as noted, for gmtime_r.
29
30 Perhaps a configure test could figure out what _POSIX_C_SOURCE gives and
31 what it takes away, and decide from that whether to use it, instead of
32 hard coding __hpux. */
33
34 #define _GNU_SOURCE /* ask glibc for everything, in particular strptime */
35 #ifdef __hpux
36 #define _POSIX_C_SOURCE 199506L /* for gmtime_r prototype */
37 #endif
38
39 #if HAVE_CONFIG_H
40 # include <config.h>
41 #endif
42
43 #include <stdio.h>
44 #include <errno.h>
45
46 #include "libguile/_scm.h"
47 #include "libguile/feature.h"
48 #include "libguile/strings.h"
49 #include "libguile/vectors.h"
50 #include "libguile/dynwind.h"
51
52 #include "libguile/validate.h"
53 #include "libguile/stime.h"
54
55 #ifdef HAVE_UNISTD_H
56 #include <unistd.h>
57 #endif
58
59 \f
60 # ifdef HAVE_SYS_TYPES_H
61 # include <sys/types.h>
62 # endif
63
64 #ifdef HAVE_STRING_H
65 #include <string.h>
66 #endif
67
68 #ifdef HAVE_SYS_TIMES_H
69 # include <sys/times.h>
70 #endif
71
72 #ifdef HAVE_SYS_TIMEB_H
73 # include <sys/timeb.h>
74 #endif
75
76 #if HAVE_CRT_EXTERNS_H
77 #include <crt_externs.h> /* for Darwin _NSGetEnviron */
78 #endif
79
80 #ifndef tzname /* For SGI. */
81 extern char *tzname[]; /* RS6000 and others reject char **tzname. */
82 #endif
83 #if defined (__MINGW32__)
84 # define tzname _tzname
85 #endif
86
87 #if ! HAVE_DECL_STRPTIME
88 extern char *strptime ();
89 #endif
90
91 #ifdef __STDC__
92 # define timet time_t
93 #else
94 # define timet long
95 #endif
96
97 extern char ** environ;
98
99 /* On Apple Darwin in a shared library there's no "environ" to access
100 directly, instead the address of that variable must be obtained with
101 _NSGetEnviron(). */
102 #if HAVE__NSGETENVIRON && defined (PIC)
103 #define environ (*_NSGetEnviron())
104 #endif
105
106
107 #ifdef HAVE_TIMES
108 static
109 timet mytime()
110 {
111 struct tms time_buffer;
112 times(&time_buffer);
113 return time_buffer.tms_utime + time_buffer.tms_stime;
114 }
115 #else
116 # ifdef LACK_CLOCK
117 # define mytime() ((time((timet*)0) - scm_your_base) * SCM_TIME_UNITS_PER_SECOND)
118 # else
119 # define mytime clock
120 # endif
121 #endif
122
123 #ifdef HAVE_FTIME
124 struct timeb scm_your_base = {0};
125 #else
126 timet scm_your_base = 0;
127 #endif
128
129 SCM_DEFINE (scm_get_internal_real_time, "get-internal-real-time", 0, 0, 0,
130 (),
131 "Return the number of time units since the interpreter was\n"
132 "started.")
133 #define FUNC_NAME s_scm_get_internal_real_time
134 {
135 #ifdef HAVE_FTIME
136 struct timeb time_buffer;
137
138 SCM tmp;
139 ftime (&time_buffer);
140 time_buffer.time -= scm_your_base.time;
141 tmp = scm_from_long (time_buffer.millitm - scm_your_base.millitm);
142 tmp = scm_sum (tmp,
143 scm_product (scm_from_int (1000),
144 scm_from_int (time_buffer.time)));
145 return scm_quotient (scm_product (tmp,
146 scm_from_int (SCM_TIME_UNITS_PER_SECOND)),
147 scm_from_int (1000));
148 #else
149 return scm_from_long ((time((timet*)0) - scm_your_base)
150 * (int)SCM_TIME_UNITS_PER_SECOND);
151 #endif /* HAVE_FTIME */
152 }
153 #undef FUNC_NAME
154
155
156 #ifdef HAVE_TIMES
157 SCM_DEFINE (scm_times, "times", 0, 0, 0,
158 (void),
159 "Return an object with information about real and processor\n"
160 "time. The following procedures accept such an object as an\n"
161 "argument and return a selected component:\n"
162 "\n"
163 "@table @code\n"
164 "@item tms:clock\n"
165 "The current real time, expressed as time units relative to an\n"
166 "arbitrary base.\n"
167 "@item tms:utime\n"
168 "The CPU time units used by the calling process.\n"
169 "@item tms:stime\n"
170 "The CPU time units used by the system on behalf of the calling\n"
171 "process.\n"
172 "@item tms:cutime\n"
173 "The CPU time units used by terminated child processes of the\n"
174 "calling process, whose status has been collected (e.g., using\n"
175 "@code{waitpid}).\n"
176 "@item tms:cstime\n"
177 "Similarly, the CPU times units used by the system on behalf of\n"
178 "terminated child processes.\n"
179 "@end table")
180 #define FUNC_NAME s_scm_times
181 {
182 struct tms t;
183 clock_t rv;
184
185 SCM result = scm_c_make_vector (5, SCM_UNDEFINED);
186 rv = times (&t);
187 if (rv == -1)
188 SCM_SYSERROR;
189 SCM_VECTOR_SET (result, 0, scm_from_long (rv));
190 SCM_VECTOR_SET (result, 1, scm_from_long (t.tms_utime));
191 SCM_VECTOR_SET (result, 2, scm_from_long (t.tms_stime));
192 SCM_VECTOR_SET (result ,3, scm_from_long (t.tms_cutime));
193 SCM_VECTOR_SET (result, 4, scm_from_long (t.tms_cstime));
194 return result;
195 }
196 #undef FUNC_NAME
197 #endif /* HAVE_TIMES */
198
199 static long scm_my_base = 0;
200
201 long
202 scm_c_get_internal_run_time ()
203 {
204 return mytime () - scm_my_base;
205 }
206
207 SCM_DEFINE (scm_get_internal_run_time, "get-internal-run-time", 0, 0, 0,
208 (void),
209 "Return the number of time units of processor time used by the\n"
210 "interpreter. Both @emph{system} and @emph{user} time are\n"
211 "included but subprocesses are not.")
212 #define FUNC_NAME s_scm_get_internal_run_time
213 {
214 return scm_from_long (scm_c_get_internal_run_time ());
215 }
216 #undef FUNC_NAME
217
218 /* For reference, note that current-time and gettimeofday both should be
219 protected against setzone/restorezone changes in another thread, since on
220 DOS the system time is normally kept as local time, which means TZ
221 affects the return from current-time and gettimeofday. Not sure if DJGPP
222 etc actually has concurrent multi-threading, but it seems prudent not to
223 make assumptions about this. */
224
225 SCM_DEFINE (scm_current_time, "current-time", 0, 0, 0,
226 (void),
227 "Return the number of seconds since 1970-01-01 00:00:00 UTC,\n"
228 "excluding leap seconds.")
229 #define FUNC_NAME s_scm_current_time
230 {
231 timet timv;
232
233 SCM_DEFER_INTS;
234 timv = time (NULL);
235 SCM_ALLOW_INTS;
236 if (timv == -1)
237 SCM_MISC_ERROR ("current time not available", SCM_EOL);
238 return scm_from_long (timv);
239 }
240 #undef FUNC_NAME
241
242 SCM_DEFINE (scm_gettimeofday, "gettimeofday", 0, 0, 0,
243 (void),
244 "Return a pair containing the number of seconds and microseconds\n"
245 "since 1970-01-01 00:00:00 UTC, excluding leap seconds. Note:\n"
246 "whether true microsecond resolution is available depends on the\n"
247 "operating system.")
248 #define FUNC_NAME s_scm_gettimeofday
249 {
250 #ifdef HAVE_GETTIMEOFDAY
251 struct timeval time;
252 int ret, err;
253
254 SCM_DEFER_INTS;
255 ret = gettimeofday (&time, NULL);
256 err = errno;
257 SCM_ALLOW_INTS;
258 if (ret == -1)
259 {
260 errno = err;
261 SCM_SYSERROR;
262 }
263 return scm_cons (scm_from_long (time.tv_sec),
264 scm_from_long (time.tv_usec));
265 #else
266 # ifdef HAVE_FTIME
267 struct timeb time;
268
269 ftime(&time);
270 return scm_cons (scm_from_long (time.time),
271 scm_from_int (time.millitm * 1000));
272 # else
273 timet timv;
274 int err;
275
276 SCM_DEFER_INTS;
277 timv = time (NULL);
278 err = errno;
279 SCM_ALLOW_INTS;
280 if (timv == -1)
281 {
282 errno = err;
283 SCM_SYSERROR;
284 }
285 return scm_cons (scm_from_long (timv), scm_from_int (0));
286 # endif
287 #endif
288 }
289 #undef FUNC_NAME
290
291 static SCM
292 filltime (struct tm *bd_time, int zoff, const char *zname)
293 {
294 SCM result = scm_c_make_vector (11, SCM_UNDEFINED);
295
296 SCM_VECTOR_SET (result,0, scm_from_int (bd_time->tm_sec));
297 SCM_VECTOR_SET (result,1, scm_from_int (bd_time->tm_min));
298 SCM_VECTOR_SET (result,2, scm_from_int (bd_time->tm_hour));
299 SCM_VECTOR_SET (result,3, scm_from_int (bd_time->tm_mday));
300 SCM_VECTOR_SET (result,4, scm_from_int (bd_time->tm_mon));
301 SCM_VECTOR_SET (result,5, scm_from_int (bd_time->tm_year));
302 SCM_VECTOR_SET (result,6, scm_from_int (bd_time->tm_wday));
303 SCM_VECTOR_SET (result,7, scm_from_int (bd_time->tm_yday));
304 SCM_VECTOR_SET (result,8, scm_from_int (bd_time->tm_isdst));
305 SCM_VECTOR_SET (result,9, scm_from_int (zoff));
306 SCM_VECTOR_SET (result,10, (zname
307 ? scm_from_locale_string (zname)
308 : SCM_BOOL_F));
309 return result;
310 }
311
312 static char tzvar[3] = "TZ";
313
314 /* if zone is set, create a temporary environment with only a TZ
315 string. other threads or interrupt handlers shouldn't be allowed
316 to run until the corresponding restorezone is called. hence the use
317 of a static variable for tmpenv is no big deal. */
318 static char **
319 setzone (SCM zone, int pos, const char *subr)
320 {
321 char **oldenv = 0;
322
323 if (!SCM_UNBNDP (zone))
324 {
325 static char *tmpenv[2];
326 char *buf;
327 size_t zone_len;
328
329 zone_len = scm_to_locale_stringbuf (zone, NULL, 0);
330 buf = scm_malloc (zone_len + sizeof (tzvar) + 1);
331 strcpy (buf, tzvar);
332 buf[sizeof(tzvar)-1] = '=';
333 scm_to_locale_stringbuf (zone, buf+sizeof(tzvar), zone_len);
334 buf[sizeof(tzvar)+zone_len] = '\0';
335 oldenv = environ;
336 tmpenv[0] = buf;
337 tmpenv[1] = 0;
338 environ = tmpenv;
339 }
340 return oldenv;
341 }
342
343 static void
344 restorezone (SCM zone, char **oldenv, const char *subr SCM_UNUSED)
345 {
346 if (!SCM_UNBNDP (zone))
347 {
348 free (environ[0]);
349 environ = oldenv;
350 #ifdef HAVE_TZSET
351 /* for the possible benefit of user code linked with libguile. */
352 tzset();
353 #endif
354 }
355 }
356
357 SCM_DEFINE (scm_localtime, "localtime", 1, 1, 0,
358 (SCM time, SCM zone),
359 "Return an object representing the broken down components of\n"
360 "@var{time}, an integer like the one returned by\n"
361 "@code{current-time}. The time zone for the calculation is\n"
362 "optionally specified by @var{zone} (a string), otherwise the\n"
363 "@code{TZ} environment variable or the system default is used.")
364 #define FUNC_NAME s_scm_localtime
365 {
366 timet itime;
367 struct tm *ltptr, lt, *utc;
368 SCM result;
369 int zoff;
370 char *zname = 0;
371 char **oldenv;
372 int err;
373
374 itime = SCM_NUM2LONG (1, time);
375
376 /* deferring interupts is essential since a) setzone may install a temporary
377 environment b) localtime uses a static buffer. */
378 SCM_DEFER_INTS;
379 oldenv = setzone (zone, SCM_ARG2, FUNC_NAME);
380 #ifdef LOCALTIME_CACHE
381 tzset ();
382 #endif
383 /* POSIX says localtime sets errno, but C99 doesn't say that.
384 Give a sensible default value in case localtime doesn't set it. */
385 errno = EINVAL;
386 ltptr = localtime (&itime);
387 err = errno;
388 if (ltptr)
389 {
390 const char *ptr;
391
392 /* copy zone name before calling gmtime or restoring zone. */
393 #if defined (HAVE_TM_ZONE)
394 ptr = ltptr->tm_zone;
395 #elif defined (HAVE_TZNAME)
396 ptr = tzname[ (ltptr->tm_isdst == 1) ? 1 : 0 ];
397 #else
398 ptr = "";
399 #endif
400 zname = scm_malloc (strlen (ptr) + 1);
401 strcpy (zname, ptr);
402 }
403 /* the struct is copied in case localtime and gmtime share a buffer. */
404 if (ltptr)
405 lt = *ltptr;
406 /* POSIX says gmtime sets errno, but C99 doesn't say that.
407 Give a sensible default value in case gmtime doesn't set it. */
408 errno = EINVAL;
409 utc = gmtime (&itime);
410 if (utc == NULL)
411 err = errno;
412 restorezone (zone, oldenv, FUNC_NAME);
413 /* delayed until zone has been restored. */
414 errno = err;
415 if (utc == NULL || ltptr == NULL)
416 SCM_SYSERROR;
417
418 /* calculate timezone offset in seconds west of UTC. */
419 zoff = (utc->tm_hour - lt.tm_hour) * 3600 + (utc->tm_min - lt.tm_min) * 60
420 + utc->tm_sec - lt.tm_sec;
421 if (utc->tm_year < lt.tm_year)
422 zoff -= 24 * 60 * 60;
423 else if (utc->tm_year > lt.tm_year)
424 zoff += 24 * 60 * 60;
425 else if (utc->tm_yday < lt.tm_yday)
426 zoff -= 24 * 60 * 60;
427 else if (utc->tm_yday > lt.tm_yday)
428 zoff += 24 * 60 * 60;
429
430 result = filltime (&lt, zoff, zname);
431 SCM_ALLOW_INTS;
432 if (zname)
433 free (zname);
434 return result;
435 }
436 #undef FUNC_NAME
437
438 /* tm_zone is normally a pointer, not an array within struct tm, so we might
439 have to worry about the lifespan of what it points to. The posix specs
440 don't seem to say anything about this, let's assume here that tm_zone
441 will be a constant and therefore no protection or anything is needed
442 until we copy it in filltime(). */
443
444 SCM_DEFINE (scm_gmtime, "gmtime", 1, 0, 0,
445 (SCM time),
446 "Return an object representing the broken down components of\n"
447 "@var{time}, an integer like the one returned by\n"
448 "@code{current-time}. The values are calculated for UTC.")
449 #define FUNC_NAME s_scm_gmtime
450 {
451 timet itime;
452 struct tm bd_buf, *bd_time;
453 const char *zname;
454
455 itime = SCM_NUM2LONG (1, time);
456
457 /* POSIX says gmtime sets errno, but C99 doesn't say that.
458 Give a sensible default value in case gmtime doesn't set it. */
459 errno = EINVAL;
460
461 #if HAVE_GMTIME_R
462 bd_time = gmtime_r (&itime, &bd_buf);
463 #else
464 SCM_DEFER_INTS;
465 bd_time = gmtime (&itime);
466 if (bd_time != NULL)
467 bd_buf = *bd_time;
468 SCM_ALLOW_INTS;
469 #endif
470 if (bd_time == NULL)
471 SCM_SYSERROR;
472
473 #if HAVE_STRUCT_TM_TM_ZONE
474 zname = bd_buf.tm_zone;
475 #else
476 zname = "GMT";
477 #endif
478 return filltime (&bd_buf, 0, zname);
479 }
480 #undef FUNC_NAME
481
482 /* copy time components from a Scheme object to a struct tm. */
483 static void
484 bdtime2c (SCM sbd_time, struct tm *lt, int pos, const char *subr)
485 {
486 SCM const *velts;
487 int i;
488
489 SCM_ASSERT (SCM_VECTORP (sbd_time)
490 && SCM_VECTOR_LENGTH (sbd_time) == 11,
491 sbd_time, pos, subr);
492 velts = SCM_VELTS (sbd_time);
493 for (i = 0; i < 10; i++)
494 {
495 SCM_ASSERT (scm_is_integer (velts[i]), sbd_time, pos, subr);
496 }
497 SCM_ASSERT (scm_is_false (velts[10]) || scm_is_string (velts[10]),
498 sbd_time, pos, subr);
499
500 lt->tm_sec = scm_to_int (velts[0]);
501 lt->tm_min = scm_to_int (velts[1]);
502 lt->tm_hour = scm_to_int (velts[2]);
503 lt->tm_mday = scm_to_int (velts[3]);
504 lt->tm_mon = scm_to_int (velts[4]);
505 lt->tm_year = scm_to_int (velts[5]);
506 lt->tm_wday = scm_to_int (velts[6]);
507 lt->tm_yday = scm_to_int (velts[7]);
508 lt->tm_isdst = scm_to_int (velts[8]);
509 #ifdef HAVE_TM_ZONE
510 lt->tm_gmtoff = scm_to_int (velts[9]);
511 if (scm_is_false (velts[10]))
512 lt->tm_zone = NULL;
513 else
514 lt->tm_zone = scm_to_locale_string (velts[10]);
515 #endif
516 }
517
518 SCM_DEFINE (scm_mktime, "mktime", 1, 1, 0,
519 (SCM sbd_time, SCM zone),
520 "@var{bd-time} is an object representing broken down time and @code{zone}\n"
521 "is an optional time zone specifier (otherwise the TZ environment variable\n"
522 "or the system default is used).\n\n"
523 "Returns a pair: the car is a corresponding\n"
524 "integer time value like that returned\n"
525 "by @code{current-time}; the cdr is a broken down time object, similar to\n"
526 "as @var{bd-time} but with normalized values.")
527 #define FUNC_NAME s_scm_mktime
528 {
529 timet itime;
530 struct tm lt, *utc;
531 SCM result;
532 int zoff;
533 char *zname = 0;
534 char **oldenv;
535 int err;
536
537 scm_frame_begin (0);
538
539 bdtime2c (sbd_time, &lt, SCM_ARG1, FUNC_NAME);
540 #if HAVE_STRUCT_TM_TM_ZONE
541 scm_frame_free ((char *)lt.tm_zone);
542 #endif
543
544 SCM_DEFER_INTS;
545 oldenv = setzone (zone, SCM_ARG2, FUNC_NAME);
546 #ifdef LOCALTIME_CACHE
547 tzset ();
548 #endif
549 itime = mktime (&lt);
550 /* POSIX doesn't say mktime sets errno, and on glibc 2.3.2 for instance it
551 doesn't. Force a sensible value for our error message. */
552 err = EINVAL;
553
554 if (itime != -1)
555 {
556 const char *ptr;
557
558 /* copy zone name before calling gmtime or restoring the zone. */
559 #if defined (HAVE_TM_ZONE)
560 ptr = lt.tm_zone;
561 #elif defined (HAVE_TZNAME)
562 ptr = tzname[ (lt.tm_isdst == 1) ? 1 : 0 ];
563 #else
564 ptr = "";
565 #endif
566 zname = scm_malloc (strlen (ptr) + 1);
567 strcpy (zname, ptr);
568 }
569
570 /* get timezone offset in seconds west of UTC. */
571 /* POSIX says gmtime sets errno, but C99 doesn't say that.
572 Give a sensible default value in case gmtime doesn't set it. */
573 utc = gmtime (&itime);
574 if (utc == NULL)
575 err = errno;
576
577 restorezone (zone, oldenv, FUNC_NAME);
578 /* delayed until zone has been restored. */
579 errno = err;
580 if (utc == NULL || itime == -1)
581 SCM_SYSERROR;
582
583 zoff = (utc->tm_hour - lt.tm_hour) * 3600 + (utc->tm_min - lt.tm_min) * 60
584 + utc->tm_sec - lt.tm_sec;
585 if (utc->tm_year < lt.tm_year)
586 zoff -= 24 * 60 * 60;
587 else if (utc->tm_year > lt.tm_year)
588 zoff += 24 * 60 * 60;
589 else if (utc->tm_yday < lt.tm_yday)
590 zoff -= 24 * 60 * 60;
591 else if (utc->tm_yday > lt.tm_yday)
592 zoff += 24 * 60 * 60;
593
594 result = scm_cons (scm_from_long (itime),
595 filltime (&lt, zoff, zname));
596 SCM_ALLOW_INTS;
597 if (zname)
598 free (zname);
599
600 scm_frame_end ();
601 return result;
602 }
603 #undef FUNC_NAME
604
605 #ifdef HAVE_TZSET
606 SCM_DEFINE (scm_tzset, "tzset", 0, 0, 0,
607 (void),
608 "Initialize the timezone from the TZ environment variable\n"
609 "or the system default. It's not usually necessary to call this procedure\n"
610 "since it's done automatically by other procedures that depend on the\n"
611 "timezone.")
612 #define FUNC_NAME s_scm_tzset
613 {
614 tzset();
615 return SCM_UNSPECIFIED;
616 }
617 #undef FUNC_NAME
618 #endif /* HAVE_TZSET */
619
620 SCM_DEFINE (scm_strftime, "strftime", 2, 0, 0,
621 (SCM format, SCM stime),
622 "Formats a time specification @var{time} using @var{template}. @var{time}\n"
623 "is an object with time components in the form returned by @code{localtime}\n"
624 "or @code{gmtime}. @var{template} is a string which can include formatting\n"
625 "specifications introduced by a @code{%} character. The formatting of\n"
626 "month and day names is dependent on the current locale. The value returned\n"
627 "is the formatted string.\n"
628 "@xref{Formatting Date and Time, , , libc, The GNU C Library Reference Manual}.)")
629 #define FUNC_NAME s_scm_strftime
630 {
631 struct tm t;
632
633 char *tbuf;
634 int size = 50;
635 const char *fmt;
636 char *myfmt;
637 int len;
638 SCM result;
639
640 SCM_VALIDATE_STRING (1, format);
641 bdtime2c (stime, &t, SCM_ARG2, FUNC_NAME);
642
643 fmt = scm_i_string_chars (format);
644 len = scm_i_string_length (format);
645
646 /* Ugly hack: strftime can return 0 if its buffer is too small,
647 but some valid time strings (e.g. "%p") can sometimes produce
648 a zero-byte output string! Workaround is to prepend a junk
649 character to the format string, so that valid returns are always
650 nonzero. */
651 myfmt = scm_malloc (len+2);
652 *myfmt = 'x';
653 strncpy(myfmt+1, fmt, len);
654 myfmt[len+1] = 0;
655
656 tbuf = scm_malloc (size);
657 {
658 #if !defined (HAVE_TM_ZONE)
659 /* it seems the only way to tell non-GNU versions of strftime what
660 zone to use (for the %Z format) is to set TZ in the
661 environment. interrupts and thread switching must be deferred
662 until TZ is restored. */
663 char **oldenv = NULL;
664 SCM *velts = (SCM *) SCM_VELTS (stime);
665 int have_zone = 0;
666
667 if (scm_is_true (velts[10]) && *SCM_STRING_CHARS (velts[10]) != 0)
668 {
669 /* it's not required that the TZ setting be correct, just that
670 it has the right name. so try something like TZ=EST0.
671 using only TZ=EST would be simpler but it doesn't work on
672 some OSs, e.g., Solaris. */
673 SCM zone =
674 scm_string_append (scm_cons (velts[10],
675 scm_cons (scm_from_locale_string ("0"),
676 SCM_EOL)));
677
678 have_zone = 1;
679 SCM_DEFER_INTS;
680 oldenv = setzone (zone, SCM_ARG2, FUNC_NAME);
681 }
682 #endif
683
684 #ifdef LOCALTIME_CACHE
685 tzset ();
686 #endif
687
688 /* POSIX says strftime returns 0 on buffer overrun, but old
689 systems (i.e. libc 4 on GNU/Linux) might return `size' in that
690 case. */
691 while ((len = strftime (tbuf, size, myfmt, &t)) == 0 || len == size)
692 {
693 free (tbuf);
694 size *= 2;
695 tbuf = scm_malloc (size);
696 }
697
698 #if !defined (HAVE_TM_ZONE)
699 if (have_zone)
700 {
701 restorezone (velts[10], oldenv, FUNC_NAME);
702 SCM_ALLOW_INTS;
703 }
704 #endif
705 }
706
707 result = scm_from_locale_stringn (tbuf + 1, len - 1);
708 free (tbuf);
709 free (myfmt);
710 return result;
711 }
712 #undef FUNC_NAME
713
714 #ifdef HAVE_STRPTIME
715 SCM_DEFINE (scm_strptime, "strptime", 2, 0, 0,
716 (SCM format, SCM string),
717 "Performs the reverse action to @code{strftime}, parsing\n"
718 "@var{string} according to the specification supplied in\n"
719 "@var{template}. The interpretation of month and day names is\n"
720 "dependent on the current locale. The value returned is a pair.\n"
721 "The car has an object with time components\n"
722 "in the form returned by @code{localtime} or @code{gmtime},\n"
723 "but the time zone components\n"
724 "are not usefully set.\n"
725 "The cdr reports the number of characters from @var{string}\n"
726 "which were used for the conversion.")
727 #define FUNC_NAME s_scm_strptime
728 {
729 struct tm t;
730 const char *fmt, *str, *rest;
731
732 SCM_VALIDATE_STRING (1, format);
733 SCM_VALIDATE_STRING (2, string);
734
735 fmt = scm_i_string_chars (format);
736 str = scm_i_string_chars (string);
737
738 /* initialize the struct tm */
739 #define tm_init(field) t.field = 0
740 tm_init (tm_sec);
741 tm_init (tm_min);
742 tm_init (tm_hour);
743 tm_init (tm_mday);
744 tm_init (tm_mon);
745 tm_init (tm_year);
746 tm_init (tm_wday);
747 tm_init (tm_yday);
748 #undef tm_init
749
750 /* GNU glibc strptime() "%s" is affected by the current timezone, since it
751 reads a UTC time_t value and converts with localtime_r() to set the tm
752 fields, hence the use of SCM_DEFER_INTS. */
753 t.tm_isdst = -1;
754 SCM_DEFER_INTS;
755 rest = strptime (str, fmt, &t);
756 SCM_ALLOW_INTS;
757 if (rest == NULL)
758 {
759 /* POSIX doesn't say strptime sets errno, and on glibc 2.3.2 for
760 instance it doesn't. Force a sensible value for our error
761 message. */
762 errno = EINVAL;
763 SCM_SYSERROR;
764 }
765
766 return scm_cons (filltime (&t, 0, NULL),
767 scm_from_signed_integer (rest - str));
768 }
769 #undef FUNC_NAME
770 #endif /* HAVE_STRPTIME */
771
772 void
773 scm_init_stime()
774 {
775 scm_c_define ("internal-time-units-per-second",
776 scm_from_long (SCM_TIME_UNITS_PER_SECOND));
777
778 #ifdef HAVE_FTIME
779 if (!scm_your_base.time) ftime(&scm_your_base);
780 #else
781 if (!scm_your_base) time(&scm_your_base);
782 #endif
783
784 if (!scm_my_base) scm_my_base = mytime();
785
786 scm_add_feature ("current-time");
787 #include "libguile/stime.x"
788 }
789
790
791 /*
792 Local Variables:
793 c-file-style: "gnu"
794 End:
795 */