source: branches/samba-3.0/source/lib/time.c@ 134

Last change on this file since 134 was 44, checked in by Paul Smedley, 18 years ago

Update source to 3.0.25b

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1/*
2 Unix SMB/CIFS implementation.
3 time handling functions
4
5 Copyright (C) Andrew Tridgell 1992-2004
6 Copyright (C) Stefan (metze) Metzmacher 2002
7 Copyright (C) Jeremy Allison 2007
8
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 2 of the License, or
12 (at your option) any later version.
13
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with this program; if not, write to the Free Software
21 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
22*/
23
24#include "includes.h"
25
26/**
27 * @file
28 * @brief time handling functions
29 */
30
31
32#ifndef TIME_T_MIN
33#define TIME_T_MIN ((time_t)0 < (time_t) -1 ? (time_t) 0 \
34 : ~ (time_t) 0 << (sizeof (time_t) * CHAR_BIT - 1))
35#endif
36#ifndef TIME_T_MAX
37#define TIME_T_MAX (~ (time_t) 0 - TIME_T_MIN)
38#endif
39
40#define NTTIME_INFINITY (NTTIME)0x8000000000000000LL
41
42/***************************************************************************
43 External access to time_t_min and time_t_max.
44****************************************************************************/
45
46time_t get_time_t_max(void)
47{
48 return TIME_T_MAX;
49}
50
51/***************************************************************************
52 A gettimeofday wrapper.
53****************************************************************************/
54
55void GetTimeOfDay(struct timeval *tval)
56{
57#ifdef HAVE_GETTIMEOFDAY_TZ
58 gettimeofday(tval,NULL);
59#else
60 gettimeofday(tval);
61#endif
62}
63
64#if (SIZEOF_LONG == 8)
65#define TIME_FIXUP_CONSTANT_INT 11644473600L
66#elif (SIZEOF_LONG_LONG == 8)
67#define TIME_FIXUP_CONSTANT_INT 11644473600LL
68#endif
69
70/****************************************************************************
71 Interpret an 8 byte "filetime" structure to a time_t
72 It's originally in "100ns units since jan 1st 1601"
73
74 An 8 byte value of 0xffffffffffffffff will be returned as a timespec of
75
76 tv_sec = 0
77 tv_nsec = 0;
78
79 Returns GMT.
80****************************************************************************/
81
82time_t nt_time_to_unix(NTTIME nt)
83{
84 return convert_timespec_to_time_t(nt_time_to_unix_timespec(&nt));
85}
86
87/****************************************************************************
88 Put a 8 byte filetime from a time_t. Uses GMT.
89****************************************************************************/
90
91void unix_to_nt_time(NTTIME *nt, time_t t)
92{
93 uint64_t t2;
94
95 if (t == (time_t)-1) {
96 *nt = (NTTIME)-1LL;
97 return;
98 }
99
100 if (t == TIME_T_MAX) {
101 *nt = 0x7fffffffffffffffLL;
102 return;
103 }
104
105 if (t == 0) {
106 *nt = 0;
107 return;
108 }
109
110 t2 = t;
111 t2 += TIME_FIXUP_CONSTANT_INT;
112 t2 *= 1000*1000*10;
113
114 *nt = t2;
115}
116
117/****************************************************************************
118 Check if it's a null unix time.
119****************************************************************************/
120
121BOOL null_time(time_t t)
122{
123 return t == 0 ||
124 t == (time_t)0xFFFFFFFF ||
125 t == (time_t)-1;
126}
127
128/****************************************************************************
129 Check if it's a null NTTIME.
130****************************************************************************/
131
132BOOL null_nttime(NTTIME t)
133{
134 return t == 0 || t == (NTTIME)-1;
135}
136
137/****************************************************************************
138 Check if it's a null timespec.
139****************************************************************************/
140
141BOOL null_timespec(struct timespec ts)
142{
143 return ts.tv_sec == 0 ||
144 ts.tv_sec == (time_t)0xFFFFFFFF ||
145 ts.tv_sec == (time_t)-1;
146}
147
148/*******************************************************************
149 create a 16 bit dos packed date
150********************************************************************/
151static uint16_t make_dos_date1(struct tm *t)
152{
153 uint16_t ret=0;
154 ret = (((unsigned int)(t->tm_mon+1)) >> 3) | ((t->tm_year-80) << 1);
155 ret = ((ret&0xFF)<<8) | (t->tm_mday | (((t->tm_mon+1) & 0x7) << 5));
156 return ret;
157}
158
159/*******************************************************************
160 create a 16 bit dos packed time
161********************************************************************/
162static uint16_t make_dos_time1(struct tm *t)
163{
164 uint16_t ret=0;
165 ret = ((((unsigned int)t->tm_min >> 3)&0x7) | (((unsigned int)t->tm_hour) << 3));
166 ret = ((ret&0xFF)<<8) | ((t->tm_sec/2) | ((t->tm_min & 0x7) << 5));
167 return ret;
168}
169
170/*******************************************************************
171 create a 32 bit dos packed date/time from some parameters
172 This takes a GMT time and returns a packed localtime structure
173********************************************************************/
174static uint32_t make_dos_date(time_t unixdate, int zone_offset)
175{
176 struct tm *t;
177 uint32_t ret=0;
178
179 if (unixdate == 0) {
180 return 0;
181 }
182
183 unixdate -= zone_offset;
184
185 t = gmtime(&unixdate);
186 if (!t) {
187 return 0xFFFFFFFF;
188 }
189
190 ret = make_dos_date1(t);
191 ret = ((ret&0xFFFF)<<16) | make_dos_time1(t);
192
193 return ret;
194}
195
196/**
197put a dos date into a buffer (time/date format)
198This takes GMT time and puts local time in the buffer
199**/
200void push_dos_date(uint8_t *buf, int offset, time_t unixdate, int zone_offset)
201{
202 uint32_t x = make_dos_date(unixdate, zone_offset);
203 SIVAL(buf,offset,x);
204}
205
206/**
207put a dos date into a buffer (date/time format)
208This takes GMT time and puts local time in the buffer
209**/
210void push_dos_date2(uint8_t *buf,int offset,time_t unixdate, int zone_offset)
211{
212 uint32_t x;
213 x = make_dos_date(unixdate, zone_offset);
214 x = ((x&0xFFFF)<<16) | ((x&0xFFFF0000)>>16);
215 SIVAL(buf,offset,x);
216}
217
218/**
219put a dos 32 bit "unix like" date into a buffer. This routine takes
220GMT and converts it to LOCAL time before putting it (most SMBs assume
221localtime for this sort of date)
222**/
223void push_dos_date3(uint8_t *buf,int offset,time_t unixdate, int zone_offset)
224{
225 if (!null_time(unixdate)) {
226 unixdate -= zone_offset;
227 }
228 SIVAL(buf,offset,unixdate);
229}
230
231/*******************************************************************
232 interpret a 32 bit dos packed date/time to some parameters
233********************************************************************/
234static void interpret_dos_date(uint32_t date,int *year,int *month,int *day,int *hour,int *minute,int *second)
235{
236 uint32_t p0,p1,p2,p3;
237
238 p0=date&0xFF; p1=((date&0xFF00)>>8)&0xFF;
239 p2=((date&0xFF0000)>>16)&0xFF; p3=((date&0xFF000000)>>24)&0xFF;
240
241 *second = 2*(p0 & 0x1F);
242 *minute = ((p0>>5)&0xFF) + ((p1&0x7)<<3);
243 *hour = (p1>>3)&0xFF;
244 *day = (p2&0x1F);
245 *month = ((p2>>5)&0xFF) + ((p3&0x1)<<3) - 1;
246 *year = ((p3>>1)&0xFF) + 80;
247}
248
249/**
250 create a unix date (int GMT) from a dos date (which is actually in
251 localtime)
252**/
253time_t pull_dos_date(const uint8_t *date_ptr, int zone_offset)
254{
255 uint32_t dos_date=0;
256 struct tm t;
257 time_t ret;
258
259 dos_date = IVAL(date_ptr,0);
260
261 if (dos_date == 0) return (time_t)0;
262
263 interpret_dos_date(dos_date,&t.tm_year,&t.tm_mon,
264 &t.tm_mday,&t.tm_hour,&t.tm_min,&t.tm_sec);
265 t.tm_isdst = -1;
266
267 ret = timegm(&t);
268
269 ret += zone_offset;
270
271 return ret;
272}
273
274/**
275like make_unix_date() but the words are reversed
276**/
277time_t pull_dos_date2(const uint8_t *date_ptr, int zone_offset)
278{
279 uint32_t x,x2;
280
281 x = IVAL(date_ptr,0);
282 x2 = ((x&0xFFFF)<<16) | ((x&0xFFFF0000)>>16);
283 SIVAL(&x,0,x2);
284
285 return pull_dos_date((const uint8_t *)&x, zone_offset);
286}
287
288/**
289 create a unix GMT date from a dos date in 32 bit "unix like" format
290 these generally arrive as localtimes, with corresponding DST
291**/
292time_t pull_dos_date3(const uint8_t *date_ptr, int zone_offset)
293{
294 time_t t = (time_t)IVAL(date_ptr,0);
295 if (!null_time(t)) {
296 t += zone_offset;
297 }
298 return t;
299}
300
301/***************************************************************************
302 Return a HTTP/1.0 time string.
303***************************************************************************/
304
305char *http_timestring(time_t t)
306{
307 static fstring buf;
308 struct tm *tm = localtime(&t);
309
310 if (t == TIME_T_MAX) {
311 slprintf(buf,sizeof(buf)-1,"never");
312 } else if (!tm) {
313 slprintf(buf,sizeof(buf)-1,"%ld seconds since the Epoch",(long)t);
314 } else {
315#ifndef HAVE_STRFTIME
316 const char *asct = asctime(tm);
317 fstrcpy(buf, asct ? asct : "unknown");
318 }
319 if(buf[strlen(buf)-1] == '\n') {
320 buf[strlen(buf)-1] = 0;
321#else /* !HAVE_STRFTIME */
322 strftime(buf, sizeof(buf)-1, "%a, %d %b %Y %H:%M:%S %Z", tm);
323#endif /* !HAVE_STRFTIME */
324 }
325 return buf;
326}
327
328
329/**
330 Return the date and time as a string
331**/
332char *timestring(TALLOC_CTX *mem_ctx, time_t t)
333{
334 char *TimeBuf;
335 char tempTime[80];
336 struct tm *tm;
337
338 tm = localtime(&t);
339 if (!tm) {
340 return talloc_asprintf(mem_ctx,
341 "%ld seconds since the Epoch",
342 (long)t);
343 }
344
345#ifdef HAVE_STRFTIME
346 /* some versions of gcc complain about using %c. This is a bug
347 in the gcc warning, not a bug in this code. See a recent
348 strftime() manual page for details.
349 */
350 strftime(tempTime,sizeof(tempTime)-1,"%c %Z",tm);
351 TimeBuf = talloc_strdup(mem_ctx, tempTime);
352#else
353 TimeBuf = talloc_strdup(mem_ctx, asctime(tm));
354#endif
355
356 return TimeBuf;
357}
358
359/**
360 return a talloced string representing a NTTIME for human consumption
361*/
362const char *nt_time_string(TALLOC_CTX *mem_ctx, NTTIME nt)
363{
364 time_t t;
365 if (nt == 0) {
366 return "NTTIME(0)";
367 }
368 t = nt_time_to_unix(nt);
369 return timestring(mem_ctx, t);
370}
371
372
373/**
374 parse a nttime as a large integer in a string and return a NTTIME
375*/
376NTTIME nttime_from_string(const char *s)
377{
378 return strtoull(s, NULL, 0);
379}
380
381/**
382 return (tv1 - tv2) in microseconds
383*/
384int64_t usec_time_diff(struct timeval *tv1, struct timeval *tv2)
385{
386 int64_t sec_diff = tv1->tv_sec - tv2->tv_sec;
387 return (sec_diff * 1000000) + (int64_t)(tv1->tv_usec - tv2->tv_usec);
388}
389
390
391/**
392 return a zero timeval
393*/
394struct timeval timeval_zero(void)
395{
396 struct timeval tv;
397 tv.tv_sec = 0;
398 tv.tv_usec = 0;
399 return tv;
400}
401
402/**
403 return True if a timeval is zero
404*/
405BOOL timeval_is_zero(const struct timeval *tv)
406{
407 return tv->tv_sec == 0 && tv->tv_usec == 0;
408}
409
410/**
411 return a timeval for the current time
412*/
413struct timeval timeval_current(void)
414{
415 struct timeval tv;
416 GetTimeOfDay(&tv);
417 return tv;
418}
419
420/**
421 return a timeval struct with the given elements
422*/
423struct timeval timeval_set(uint32_t secs, uint32_t usecs)
424{
425 struct timeval tv;
426 tv.tv_sec = secs;
427 tv.tv_usec = usecs;
428 return tv;
429}
430
431
432/**
433 return a timeval ofs microseconds after tv
434*/
435struct timeval timeval_add(const struct timeval *tv,
436 uint32_t secs, uint32_t usecs)
437{
438 struct timeval tv2 = *tv;
439 const unsigned int million = 1000000;
440 tv2.tv_sec += secs;
441 tv2.tv_usec += usecs;
442 tv2.tv_sec += tv2.tv_usec / million;
443 tv2.tv_usec = tv2.tv_usec % million;
444 return tv2;
445}
446
447/**
448 return the sum of two timeval structures
449*/
450struct timeval timeval_sum(const struct timeval *tv1,
451 const struct timeval *tv2)
452{
453 return timeval_add(tv1, tv2->tv_sec, tv2->tv_usec);
454}
455
456/**
457 return a timeval secs/usecs into the future
458*/
459struct timeval timeval_current_ofs(uint32_t secs, uint32_t usecs)
460{
461 struct timeval tv = timeval_current();
462 return timeval_add(&tv, secs, usecs);
463}
464
465/**
466 compare two timeval structures.
467 Return -1 if tv1 < tv2
468 Return 0 if tv1 == tv2
469 Return 1 if tv1 > tv2
470*/
471int timeval_compare(const struct timeval *tv1, const struct timeval *tv2)
472{
473 if (tv1->tv_sec > tv2->tv_sec) return 1;
474 if (tv1->tv_sec < tv2->tv_sec) return -1;
475 if (tv1->tv_usec > tv2->tv_usec) return 1;
476 if (tv1->tv_usec < tv2->tv_usec) return -1;
477 return 0;
478}
479
480/**
481 return True if a timer is in the past
482*/
483BOOL timeval_expired(const struct timeval *tv)
484{
485 struct timeval tv2 = timeval_current();
486 if (tv2.tv_sec > tv->tv_sec) return True;
487 if (tv2.tv_sec < tv->tv_sec) return False;
488 return (tv2.tv_usec >= tv->tv_usec);
489}
490
491/**
492 return the number of seconds elapsed between two times
493*/
494double timeval_elapsed2(const struct timeval *tv1, const struct timeval *tv2)
495{
496 return (tv2->tv_sec - tv1->tv_sec) +
497 (tv2->tv_usec - tv1->tv_usec)*1.0e-6;
498}
499
500/**
501 return the number of seconds elapsed since a given time
502*/
503double timeval_elapsed(const struct timeval *tv)
504{
505 struct timeval tv2 = timeval_current();
506 return timeval_elapsed2(tv, &tv2);
507}
508
509/**
510 return the lesser of two timevals
511*/
512struct timeval timeval_min(const struct timeval *tv1,
513 const struct timeval *tv2)
514{
515 if (tv1->tv_sec < tv2->tv_sec) return *tv1;
516 if (tv1->tv_sec > tv2->tv_sec) return *tv2;
517 if (tv1->tv_usec < tv2->tv_usec) return *tv1;
518 return *tv2;
519}
520
521/**
522 return the greater of two timevals
523*/
524struct timeval timeval_max(const struct timeval *tv1,
525 const struct timeval *tv2)
526{
527 if (tv1->tv_sec > tv2->tv_sec) return *tv1;
528 if (tv1->tv_sec < tv2->tv_sec) return *tv2;
529 if (tv1->tv_usec > tv2->tv_usec) return *tv1;
530 return *tv2;
531}
532
533/**
534 return the difference between two timevals as a timeval
535 if tv1 comes after tv2, then return a zero timeval
536 (this is *tv2 - *tv1)
537*/
538struct timeval timeval_until(const struct timeval *tv1,
539 const struct timeval *tv2)
540{
541 struct timeval t;
542 if (timeval_compare(tv1, tv2) >= 0) {
543 return timeval_zero();
544 }
545 t.tv_sec = tv2->tv_sec - tv1->tv_sec;
546 if (tv1->tv_usec > tv2->tv_usec) {
547 t.tv_sec--;
548 t.tv_usec = 1000000 - (tv1->tv_usec - tv2->tv_usec);
549 } else {
550 t.tv_usec = tv2->tv_usec - tv1->tv_usec;
551 }
552 return t;
553}
554
555
556/**
557 convert a timeval to a NTTIME
558*/
559NTTIME timeval_to_nttime(const struct timeval *tv)
560{
561 return 10*(tv->tv_usec +
562 ((TIME_FIXUP_CONSTANT_INT + (uint64_t)tv->tv_sec) * 1000000));
563}
564
565/**************************************************************
566 Handle conversions between time_t and uint32, taking care to
567 preserve the "special" values.
568**************************************************************/
569
570uint32 convert_time_t_to_uint32(time_t t)
571{
572#if (defined(SIZEOF_TIME_T) && (SIZEOF_TIME_T == 8))
573 /* time_t is 64-bit. */
574 if (t == 0x8000000000000000LL) {
575 return 0x80000000;
576 } else if (t == 0x7FFFFFFFFFFFFFFFLL) {
577 return 0x7FFFFFFF;
578 }
579#endif
580 return (uint32)t;
581}
582
583time_t convert_uint32_to_time_t(uint32 u)
584{
585#if (defined(SIZEOF_TIME_T) && (SIZEOF_TIME_T == 8))
586 /* time_t is 64-bit. */
587 if (u == 0x80000000) {
588 return (time_t)0x8000000000000000LL;
589 } else if (u == 0x7FFFFFFF) {
590 return (time_t)0x7FFFFFFFFFFFFFFFLL;
591 }
592#endif
593 return (time_t)u;
594}
595
596/*******************************************************************
597 Yield the difference between *A and *B, in seconds, ignoring leap seconds.
598********************************************************************/
599
600static int tm_diff(struct tm *a, struct tm *b)
601{
602 int ay = a->tm_year + (1900 - 1);
603 int by = b->tm_year + (1900 - 1);
604 int intervening_leap_days =
605 (ay/4 - by/4) - (ay/100 - by/100) + (ay/400 - by/400);
606 int years = ay - by;
607 int days = 365*years + intervening_leap_days + (a->tm_yday - b->tm_yday);
608 int hours = 24*days + (a->tm_hour - b->tm_hour);
609 int minutes = 60*hours + (a->tm_min - b->tm_min);
610 int seconds = 60*minutes + (a->tm_sec - b->tm_sec);
611
612 return seconds;
613}
614
615int extra_time_offset=0;
616
617/*******************************************************************
618 Return the UTC offset in seconds west of UTC, or 0 if it cannot be determined.
619********************************************************************/
620
621int get_time_zone(time_t t)
622{
623 struct tm *tm = gmtime(&t);
624 struct tm tm_utc;
625 if (!tm)
626 return 0;
627 tm_utc = *tm;
628 tm = localtime(&t);
629 if (!tm)
630 return 0;
631 return tm_diff(&tm_utc,tm)+60*extra_time_offset;
632}
633
634/****************************************************************************
635 Check if NTTIME is 0.
636****************************************************************************/
637
638BOOL nt_time_is_zero(const NTTIME *nt)
639{
640 return (*nt == 0);
641}
642
643/****************************************************************************
644 Convert ASN.1 GeneralizedTime string to unix-time.
645 Returns 0 on failure; Currently ignores timezone.
646****************************************************************************/
647
648time_t generalized_to_unix_time(const char *str)
649{
650 struct tm tm;
651
652 ZERO_STRUCT(tm);
653
654 if (sscanf(str, "%4d%2d%2d%2d%2d%2d",
655 &tm.tm_year, &tm.tm_mon, &tm.tm_mday,
656 &tm.tm_hour, &tm.tm_min, &tm.tm_sec) != 6) {
657 return 0;
658 }
659 tm.tm_year -= 1900;
660 tm.tm_mon -= 1;
661
662 return timegm(&tm);
663}
664
665/*******************************************************************
666 Accessor function for the server time zone offset.
667 set_server_zone_offset() must have been called first.
668******************************************************************/
669
670static int server_zone_offset;
671
672int get_server_zone_offset(void)
673{
674 return server_zone_offset;
675}
676
677/*******************************************************************
678 Initialize the server time zone offset. Called when a client connects.
679******************************************************************/
680
681int set_server_zone_offset(time_t t)
682{
683 server_zone_offset = get_time_zone(t);
684 return server_zone_offset;
685}
686
687/****************************************************************************
688 Return the date and time as a string
689****************************************************************************/
690
691char *current_timestring(BOOL hires)
692{
693 static fstring TimeBuf;
694 struct timeval tp;
695 time_t t;
696 struct tm *tm;
697
698 if (hires) {
699 GetTimeOfDay(&tp);
700 t = (time_t)tp.tv_sec;
701 } else {
702 t = time(NULL);
703 }
704 tm = localtime(&t);
705 if (!tm) {
706 if (hires) {
707 slprintf(TimeBuf,
708 sizeof(TimeBuf)-1,
709 "%ld.%06ld seconds since the Epoch",
710 (long)tp.tv_sec,
711 (long)tp.tv_usec);
712 } else {
713 slprintf(TimeBuf,
714 sizeof(TimeBuf)-1,
715 "%ld seconds since the Epoch",
716 (long)t);
717 }
718 } else {
719#ifdef HAVE_STRFTIME
720 if (hires) {
721 strftime(TimeBuf,sizeof(TimeBuf)-1,"%Y/%m/%d %H:%M:%S",tm);
722 slprintf(TimeBuf+strlen(TimeBuf),
723 sizeof(TimeBuf)-1 - strlen(TimeBuf),
724 ".%06ld",
725 (long)tp.tv_usec);
726 } else {
727 strftime(TimeBuf,sizeof(TimeBuf)-1,"%Y/%m/%d %H:%M:%S",tm);
728 }
729#else
730 if (hires) {
731 const char *asct = asctime(tm);
732 slprintf(TimeBuf,
733 sizeof(TimeBuf)-1,
734 "%s.%06ld",
735 asct ? asct : "unknown",
736 (long)tp.tv_usec);
737 } else {
738 const char *asct = asctime(tm);
739 fstrcpy(TimeBuf, asct ? asct : "unknown");
740 }
741#endif
742 }
743 return(TimeBuf);
744}
745
746
747/*******************************************************************
748 Put a dos date into a buffer (time/date format).
749 This takes GMT time and puts local time in the buffer.
750********************************************************************/
751
752static void put_dos_date(char *buf,int offset,time_t unixdate, int zone_offset)
753{
754 uint32 x = make_dos_date(unixdate, zone_offset);
755 SIVAL(buf,offset,x);
756}
757
758/*******************************************************************
759 Put a dos date into a buffer (date/time format).
760 This takes GMT time and puts local time in the buffer.
761********************************************************************/
762
763static void put_dos_date2(char *buf,int offset,time_t unixdate, int zone_offset)
764{
765 uint32 x = make_dos_date(unixdate, zone_offset);
766 x = ((x&0xFFFF)<<16) | ((x&0xFFFF0000)>>16);
767 SIVAL(buf,offset,x);
768}
769
770/*******************************************************************
771 Put a dos 32 bit "unix like" date into a buffer. This routine takes
772 GMT and converts it to LOCAL time before putting it (most SMBs assume
773 localtime for this sort of date)
774********************************************************************/
775
776static void put_dos_date3(char *buf,int offset,time_t unixdate, int zone_offset)
777{
778 if (!null_mtime(unixdate)) {
779 unixdate -= zone_offset;
780 }
781 SIVAL(buf,offset,unixdate);
782}
783
784
785/***************************************************************************
786 Server versions of the above functions.
787***************************************************************************/
788
789void srv_put_dos_date(char *buf,int offset,time_t unixdate)
790{
791 put_dos_date(buf, offset, unixdate, server_zone_offset);
792}
793
794void srv_put_dos_date2(char *buf,int offset, time_t unixdate)
795{
796 put_dos_date2(buf, offset, unixdate, server_zone_offset);
797}
798
799void srv_put_dos_date3(char *buf,int offset,time_t unixdate)
800{
801 put_dos_date3(buf, offset, unixdate, server_zone_offset);
802}
803
804/****************************************************************************
805 Take a Unix time and convert to an NTTIME structure and place in buffer
806 pointed to by p.
807****************************************************************************/
808
809void put_long_date_timespec(char *p, struct timespec ts)
810{
811 NTTIME nt;
812 unix_timespec_to_nt_time(&nt, ts);
813 SIVAL(p, 0, nt & 0xFFFFFFFF);
814 SIVAL(p, 4, nt >> 32);
815}
816
817void put_long_date(char *p, time_t t)
818{
819 struct timespec ts;
820 ts.tv_sec = t;
821 ts.tv_nsec = 0;
822 put_long_date_timespec(p, ts);
823}
824
825/****************************************************************************
826 Return the best approximation to a 'create time' under UNIX from a stat
827 structure.
828****************************************************************************/
829
830time_t get_create_time(const SMB_STRUCT_STAT *st,BOOL fake_dirs)
831{
832 time_t ret, ret1;
833
834 if(S_ISDIR(st->st_mode) && fake_dirs) {
835 return (time_t)315493200L; /* 1/1/1980 */
836 }
837
838 ret = MIN(st->st_ctime, st->st_mtime);
839 ret1 = MIN(ret, st->st_atime);
840
841 if(ret1 != (time_t)0) {
842 return ret1;
843 }
844
845 /*
846 * One of ctime, mtime or atime was zero (probably atime).
847 * Just return MIN(ctime, mtime).
848 */
849 return ret;
850}
851
852struct timespec get_create_timespec(const SMB_STRUCT_STAT *st,BOOL fake_dirs)
853{
854 struct timespec ts;
855 ts.tv_sec = get_create_time(st, fake_dirs);
856 ts.tv_nsec = 0;
857 return ts;
858}
859
860/****************************************************************************
861 Get/Set all the possible time fields from a stat struct as a timespec.
862****************************************************************************/
863
864struct timespec get_atimespec(const SMB_STRUCT_STAT *pst)
865{
866#if !defined(HAVE_STAT_HIRES_TIMESTAMPS)
867 struct timespec ret;
868
869 /* Old system - no ns timestamp. */
870 ret.tv_sec = pst->st_atime;
871 ret.tv_nsec = 0;
872 return ret;
873#else
874#if defined(HAVE_STAT_ST_ATIM)
875 return pst->st_atim;
876#elif defined(HAVE_STAT_ST_ATIMENSEC)
877 struct timespec ret;
878 ret.tv_sec = pst->st_atime;
879 ret.tv_nsec = pst->st_atimensec;
880 return ret;
881#else
882#error CONFIGURE_ERROR_IN_DETECTING_TIMESPEC_IN_STAT
883#endif
884#endif
885}
886
887void set_atimespec(SMB_STRUCT_STAT *pst, struct timespec ts)
888{
889#if !defined(HAVE_STAT_HIRES_TIMESTAMPS)
890 /* Old system - no ns timestamp. */
891 pst->st_atime = ts.tv_sec;
892#else
893#if defined(HAVE_STAT_ST_ATIM)
894 pst->st_atim = ts;
895#elif defined(HAVE_STAT_ST_ATIMENSEC)
896 pst->st_atime = ts.tv_sec;
897 pst->st_atimensec = ts.tv_nsec
898#else
899#error CONFIGURE_ERROR_IN_DETECTING_TIMESPEC_IN_STAT
900#endif
901#endif
902}
903
904struct timespec get_mtimespec(const SMB_STRUCT_STAT *pst)
905{
906#if !defined(HAVE_STAT_HIRES_TIMESTAMPS)
907 struct timespec ret;
908
909 /* Old system - no ns timestamp. */
910 ret.tv_sec = pst->st_mtime;
911 ret.tv_nsec = 0;
912 return ret;
913#else
914#if defined(HAVE_STAT_ST_MTIM)
915 return pst->st_mtim;
916#elif defined(HAVE_STAT_ST_MTIMENSEC)
917 struct timespec ret;
918 ret.tv_sec = pst->st_mtime;
919 ret.tv_nsec = pst->st_mtimensec;
920 return ret;
921#else
922#error CONFIGURE_ERROR_IN_DETECTING_TIMESPEC_IN_STAT
923#endif
924#endif
925}
926
927void set_mtimespec(SMB_STRUCT_STAT *pst, struct timespec ts)
928{
929#if !defined(HAVE_STAT_HIRES_TIMESTAMPS)
930 /* Old system - no ns timestamp. */
931 pst->st_mtime = ts.tv_sec;
932#else
933#if defined(HAVE_STAT_ST_MTIM)
934 pst->st_mtim = ts;
935#elif defined(HAVE_STAT_ST_MTIMENSEC)
936 pst->st_mtime = ts.tv_sec;
937 pst->st_mtimensec = ts.tv_nsec
938#else
939#error CONFIGURE_ERROR_IN_DETECTING_TIMESPEC_IN_STAT
940#endif
941#endif
942}
943
944struct timespec get_ctimespec(const SMB_STRUCT_STAT *pst)
945{
946#if !defined(HAVE_STAT_HIRES_TIMESTAMPS)
947 struct timespec ret;
948
949 /* Old system - no ns timestamp. */
950 ret.tv_sec = pst->st_ctime;
951 ret.tv_nsec = 0;
952 return ret;
953#else
954#if defined(HAVE_STAT_ST_CTIM)
955 return pst->st_ctim;
956#elif defined(HAVE_STAT_ST_CTIMENSEC)
957 struct timespec ret;
958 ret.tv_sec = pst->st_ctime;
959 ret.tv_nsec = pst->st_ctimensec;
960 return ret;
961#else
962#error CONFIGURE_ERROR_IN_DETECTING_TIMESPEC_IN_STAT
963#endif
964#endif
965}
966
967void set_ctimespec(SMB_STRUCT_STAT *pst, struct timespec ts)
968{
969#if !defined(HAVE_STAT_HIRES_TIMESTAMPS)
970 /* Old system - no ns timestamp. */
971 pst->st_ctime = ts.tv_sec;
972#else
973#if defined(HAVE_STAT_ST_CTIM)
974 pst->st_ctim = ts;
975#elif defined(HAVE_STAT_ST_CTIMENSEC)
976 pst->st_ctime = ts.tv_sec;
977 pst->st_ctimensec = ts.tv_nsec
978#else
979#error CONFIGURE_ERROR_IN_DETECTING_TIMESPEC_IN_STAT
980#endif
981#endif
982}
983
984void dos_filetime_timespec(struct timespec *tsp)
985{
986 tsp->tv_sec &= ~1;
987 tsp->tv_nsec = 0;
988}
989
990/*******************************************************************
991 Create a unix date (int GMT) from a dos date (which is actually in
992 localtime).
993********************************************************************/
994
995static time_t make_unix_date(const void *date_ptr, int zone_offset)
996{
997 uint32 dos_date=0;
998 struct tm t;
999 time_t ret;
1000
1001 dos_date = IVAL(date_ptr,0);
1002
1003 if (dos_date == 0) {
1004 return 0;
1005 }
1006
1007 interpret_dos_date(dos_date,&t.tm_year,&t.tm_mon,
1008 &t.tm_mday,&t.tm_hour,&t.tm_min,&t.tm_sec);
1009 t.tm_isdst = -1;
1010
1011 ret = timegm(&t);
1012
1013 ret += zone_offset;
1014
1015 return(ret);
1016}
1017
1018/*******************************************************************
1019 Like make_unix_date() but the words are reversed.
1020********************************************************************/
1021
1022static time_t make_unix_date2(const void *date_ptr, int zone_offset)
1023{
1024 uint32 x,x2;
1025
1026 x = IVAL(date_ptr,0);
1027 x2 = ((x&0xFFFF)<<16) | ((x&0xFFFF0000)>>16);
1028 SIVAL(&x,0,x2);
1029
1030 return(make_unix_date((const void *)&x, zone_offset));
1031}
1032
1033/*******************************************************************
1034 Create a unix GMT date from a dos date in 32 bit "unix like" format
1035 these generally arrive as localtimes, with corresponding DST.
1036******************************************************************/
1037
1038static time_t make_unix_date3(const void *date_ptr, int zone_offset)
1039{
1040 time_t t = (time_t)IVAL(date_ptr,0);
1041 if (!null_mtime(t)) {
1042 t += zone_offset;
1043 }
1044 return(t);
1045}
1046
1047time_t srv_make_unix_date(const void *date_ptr)
1048{
1049 return make_unix_date(date_ptr, server_zone_offset);
1050}
1051
1052time_t srv_make_unix_date2(const void *date_ptr)
1053{
1054 return make_unix_date2(date_ptr, server_zone_offset);
1055}
1056
1057time_t srv_make_unix_date3(const void *date_ptr)
1058{
1059 return make_unix_date3(date_ptr, server_zone_offset);
1060}
1061
1062time_t convert_timespec_to_time_t(struct timespec ts)
1063{
1064 /* 1 ns == 1,000,000,000 - one thousand millionths of a second.
1065 increment if it's greater than 500 millionth of a second. */
1066 if (ts.tv_nsec > 500000000) {
1067 return ts.tv_sec + 1;
1068 }
1069 return ts.tv_sec;
1070}
1071
1072struct timespec convert_time_t_to_timespec(time_t t)
1073{
1074 struct timespec ts;
1075 ts.tv_sec = t;
1076 ts.tv_nsec = 0;
1077 return ts;
1078}
1079
1080/****************************************************************************
1081 Convert a normalized timeval to a timespec.
1082****************************************************************************/
1083
1084struct timespec convert_timeval_to_timespec(const struct timeval tv)
1085{
1086 struct timespec ts;
1087 ts.tv_sec = tv.tv_sec;
1088 ts.tv_nsec = tv.tv_usec * 1000;
1089 return ts;
1090}
1091
1092/****************************************************************************
1093 Convert a normalized timespec to a timeval.
1094****************************************************************************/
1095
1096struct timeval convert_timespec_to_timeval(const struct timespec ts)
1097{
1098 struct timeval tv;
1099 tv.tv_sec = ts.tv_sec;
1100 tv.tv_usec = ts.tv_nsec / 1000;
1101 return tv;
1102}
1103
1104/****************************************************************************
1105 Return a timespec for the current time
1106****************************************************************************/
1107
1108struct timespec timespec_current(void)
1109{
1110 struct timeval tv;
1111 struct timespec ts;
1112 GetTimeOfDay(&tv);
1113 ts.tv_sec = tv.tv_sec;
1114 ts.tv_nsec = tv.tv_usec * 1000;
1115 return ts;
1116}
1117
1118/****************************************************************************
1119 Return the lesser of two timespecs.
1120****************************************************************************/
1121
1122struct timespec timespec_min(const struct timespec *ts1,
1123 const struct timespec *ts2)
1124{
1125 if (ts1->tv_sec < ts2->tv_sec) return *ts1;
1126 if (ts1->tv_sec > ts2->tv_sec) return *ts2;
1127 if (ts1->tv_nsec < ts2->tv_nsec) return *ts1;
1128 return *ts2;
1129}
1130
1131/****************************************************************************
1132 compare two timespec structures.
1133 Return -1 if ts1 < ts2
1134 Return 0 if ts1 == ts2
1135 Return 1 if ts1 > ts2
1136****************************************************************************/
1137
1138int timespec_compare(const struct timespec *ts1, const struct timespec *ts2)
1139{
1140 if (ts1->tv_sec > ts2->tv_sec) return 1;
1141 if (ts1->tv_sec < ts2->tv_sec) return -1;
1142 if (ts1->tv_nsec > ts2->tv_nsec) return 1;
1143 if (ts1->tv_nsec < ts2->tv_nsec) return -1;
1144 return 0;
1145}
1146
1147/****************************************************************************
1148 Interprets an nt time into a unix struct timespec.
1149 Differs from nt_time_to_unix in that an 8 byte value of 0xffffffffffffffff
1150 will be returned as (time_t)-1, whereas nt_time_to_unix returns 0 in this case.
1151****************************************************************************/
1152
1153struct timespec interpret_long_date(const char *p)
1154{
1155 NTTIME nt;
1156 nt = IVAL(p,0) + ((uint64_t)IVAL(p,4) << 32);
1157 if (nt == (uint64_t)-1) {
1158 struct timespec ret;
1159 ret.tv_sec = (time_t)-1;
1160 ret.tv_nsec = 0;
1161 return ret;
1162 }
1163 return nt_time_to_unix_timespec(&nt);
1164}
1165
1166/***************************************************************************
1167 Client versions of the above functions.
1168***************************************************************************/
1169
1170void cli_put_dos_date(struct cli_state *cli, char *buf, int offset, time_t unixdate)
1171{
1172 put_dos_date(buf, offset, unixdate, cli->serverzone);
1173}
1174
1175void cli_put_dos_date2(struct cli_state *cli, char *buf, int offset, time_t unixdate)
1176{
1177 put_dos_date2(buf, offset, unixdate, cli->serverzone);
1178}
1179
1180void cli_put_dos_date3(struct cli_state *cli, char *buf, int offset, time_t unixdate)
1181{
1182 put_dos_date3(buf, offset, unixdate, cli->serverzone);
1183}
1184
1185time_t cli_make_unix_date(struct cli_state *cli, void *date_ptr)
1186{
1187 return make_unix_date(date_ptr, cli->serverzone);
1188}
1189
1190time_t cli_make_unix_date2(struct cli_state *cli, void *date_ptr)
1191{
1192 return make_unix_date2(date_ptr, cli->serverzone);
1193}
1194
1195time_t cli_make_unix_date3(struct cli_state *cli, void *date_ptr)
1196{
1197 return make_unix_date3(date_ptr, cli->serverzone);
1198}
1199
1200/* Large integer version. */
1201struct timespec nt_time_to_unix_timespec(NTTIME *nt)
1202{
1203 int64 d;
1204 struct timespec ret;
1205
1206 if (*nt == 0 || *nt == (int64)-1) {
1207 ret.tv_sec = 0;
1208 ret.tv_nsec = 0;
1209 return ret;
1210 }
1211
1212 d = (int64)*nt;
1213 /* d is now in 100ns units, since jan 1st 1601".
1214 Save off the ns fraction. */
1215
1216 ret.tv_nsec = (long) ((d % 100) * 100);
1217
1218 /* Convert to seconds */
1219 d /= 1000*1000*10;
1220
1221 /* Now adjust by 369 years to make the secs since 1970 */
1222 d -= TIME_FIXUP_CONSTANT_INT;
1223
1224 if (d <= (int64)TIME_T_MIN) {
1225 ret.tv_sec = TIME_T_MIN;
1226 ret.tv_nsec = 0;
1227 return ret;
1228 }
1229
1230 if (d >= (int64)TIME_T_MAX) {
1231 ret.tv_sec = TIME_T_MAX;
1232 ret.tv_nsec = 0;
1233 return ret;
1234 }
1235
1236 ret.tv_sec = (time_t)d;
1237 return ret;
1238}
1239/****************************************************************************
1240 Check if two NTTIMEs are the same.
1241****************************************************************************/
1242
1243BOOL nt_time_equals(const NTTIME *nt1, const NTTIME *nt2)
1244{
1245 return (*nt1 == *nt2);
1246}
1247
1248/*******************************************************************
1249 Re-read the smb serverzone value.
1250******************************************************************/
1251
1252static struct timeval start_time_hires;
1253
1254void TimeInit(void)
1255{
1256 set_server_zone_offset(time(NULL));
1257
1258 DEBUG(4,("TimeInit: Serverzone is %d\n", server_zone_offset));
1259
1260 /* Save the start time of this process. */
1261 if (start_time_hires.tv_sec == 0 && start_time_hires.tv_usec == 0) {
1262 GetTimeOfDay(&start_time_hires);
1263 }
1264}
1265
1266/**********************************************************************
1267 Return a timeval struct of the uptime of this process. As TimeInit is
1268 done before a daemon fork then this is the start time from the parent
1269 daemon start. JRA.
1270***********************************************************************/
1271
1272void get_process_uptime(struct timeval *ret_time)
1273{
1274 struct timeval time_now_hires;
1275
1276 GetTimeOfDay(&time_now_hires);
1277 ret_time->tv_sec = time_now_hires.tv_sec - start_time_hires.tv_sec;
1278 if (time_now_hires.tv_usec < start_time_hires.tv_usec) {
1279 ret_time->tv_sec -= 1;
1280 ret_time->tv_usec = 1000000 + (time_now_hires.tv_usec - start_time_hires.tv_usec);
1281 } else {
1282 ret_time->tv_usec = time_now_hires.tv_usec - start_time_hires.tv_usec;
1283 }
1284}
1285
1286/****************************************************************************
1287 Convert a NTTIME structure to a time_t.
1288 It's originally in "100ns units".
1289
1290 This is an absolute version of the one above.
1291 By absolute I mean, it doesn't adjust from 1/1/1601 to 1/1/1970
1292 if the NTTIME was 5 seconds, the time_t is 5 seconds. JFM
1293****************************************************************************/
1294
1295time_t nt_time_to_unix_abs(const NTTIME *nt)
1296{
1297 uint64 d;
1298
1299 if (*nt == 0) {
1300 return (time_t)0;
1301 }
1302
1303 if (*nt == (uint64)-1) {
1304 return (time_t)-1;
1305 }
1306
1307 if (*nt == NTTIME_INFINITY) {
1308 return (time_t)-1;
1309 }
1310
1311 /* reverse the time */
1312 /* it's a negative value, turn it to positive */
1313 d=~*nt;
1314
1315 d += 1000*1000*10/2;
1316 d /= 1000*1000*10;
1317
1318 if (!(TIME_T_MIN <= ((time_t)d) && ((time_t)d) <= TIME_T_MAX)) {
1319 return (time_t)0;
1320 }
1321
1322 return (time_t)d;
1323}
1324
1325/****************************************************************************
1326 Put a 8 byte filetime from a struct timespec. Uses GMT.
1327****************************************************************************/
1328
1329void unix_timespec_to_nt_time(NTTIME *nt, struct timespec ts)
1330{
1331 uint64 d;
1332
1333 if (ts.tv_sec ==0 && ts.tv_nsec == 0) {
1334 *nt = 0;
1335 return;
1336 }
1337 if (ts.tv_sec == TIME_T_MAX) {
1338 *nt = 0x7fffffffffffffffLL;
1339 return;
1340 }
1341 if (ts.tv_sec == (time_t)-1) {
1342 *nt = (uint64)-1;
1343 return;
1344 }
1345
1346 d = ts.tv_sec;
1347 d += TIME_FIXUP_CONSTANT_INT;
1348 d *= 1000*1000*10;
1349 /* d is now in 100ns units. */
1350 d += (ts.tv_nsec / 100);
1351
1352 *nt = d;
1353}
1354
1355/****************************************************************************
1356 Convert a time_t to a NTTIME structure
1357
1358 This is an absolute version of the one above.
1359 By absolute I mean, it doesn't adjust from 1/1/1970 to 1/1/1601
1360 If the time_t was 5 seconds, the NTTIME is 5 seconds. JFM
1361****************************************************************************/
1362
1363void unix_to_nt_time_abs(NTTIME *nt, time_t t)
1364{
1365 double d;
1366
1367 if (t==0) {
1368 *nt = 0;
1369 return;
1370 }
1371
1372 if (t == TIME_T_MAX) {
1373 *nt = 0x7fffffffffffffffLL;
1374 return;
1375 }
1376
1377 if (t == (time_t)-1) {
1378 /* that's what NT uses for infinite */
1379 *nt = NTTIME_INFINITY;
1380 return;
1381 }
1382
1383 d = (double)(t);
1384 d *= 1.0e7;
1385
1386 *nt = d;
1387
1388 /* convert to a negative value */
1389 *nt=~*nt;
1390}
1391
1392
1393/****************************************************************************
1394 Check if it's a null mtime.
1395****************************************************************************/
1396
1397BOOL null_mtime(time_t mtime)
1398{
1399 if (mtime == 0 || mtime == (time_t)0xFFFFFFFF || mtime == (time_t)-1)
1400 return(True);
1401 return(False);
1402}
1403
1404/****************************************************************************
1405 Utility function that always returns a const string even if localtime
1406 and asctime fail.
1407****************************************************************************/
1408
1409const char *time_to_asc(const time_t t)
1410{
1411 const char *asct;
1412 struct tm *lt = localtime(&t);
1413
1414 if (!lt) {
1415 return "unknown time";
1416 }
1417
1418 asct = asctime(lt);
1419 if (!asct) {
1420 return "unknown time";
1421 }
1422 return asct;
1423}
1424
1425const char *display_time(NTTIME nttime)
1426{
1427 static fstring string;
1428
1429 float high;
1430 float low;
1431 int sec;
1432 int days, hours, mins, secs;
1433
1434 if (nttime==0)
1435 return "Now";
1436
1437 if (nttime==NTTIME_INFINITY)
1438 return "Never";
1439
1440 high = 65536;
1441 high = high/10000;
1442 high = high*65536;
1443 high = high/1000;
1444 high = high * (~(nttime >> 32));
1445
1446 low = ~(nttime & 0xFFFFFFFF);
1447 low = low/(1000*1000*10);
1448
1449 sec=high+low;
1450
1451 days=sec/(60*60*24);
1452 hours=(sec - (days*60*60*24)) / (60*60);
1453 mins=(sec - (days*60*60*24) - (hours*60*60) ) / 60;
1454 secs=sec - (days*60*60*24) - (hours*60*60) - (mins*60);
1455
1456 fstr_sprintf(string, "%u days, %u hours, %u minutes, %u seconds", days, hours, mins, secs);
1457 return (string);
1458}
1459
1460BOOL nt_time_is_set(const NTTIME *nt)
1461{
1462 if (*nt == 0x7FFFFFFFFFFFFFFFLL) {
1463 return False;
1464 }
1465
1466 if (*nt == NTTIME_INFINITY) {
1467 return False;
1468 }
1469
1470 return True;
1471}
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