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coherent
/*
* date.c
* Print and set the date.
*/
#include <stdio.h>
#include <ctype.h>
#include <sys/types.h>
#include <time.h>
#include <sys/timeb.h>
#if COHERENT
#include <utmp.h>
#include <sys/stat.h>
#endif
void error();
void usage();
#define TFCFLAG 0 /* Truly French GMT is UTC */
int gmtflag; /* Do things in Greenwich Mean Time */
int sflag; /* Suppress DST conversion when setting */
struct tm *gtime();
struct timeb tb;
time_t timep[2];
#define MIN (60L)
#define HOUR (60L*60L)
#define DAY (60L*60L*24L)
#define APR 3
#define OCT 9
#if COHERENT
struct utmp utmps[2];
char utmpf[] = "/usr/adm/wtmp";
struct stat sbuf;
char btimf[] = "/etc/boottime";
#endif
/*
* Table of days per month.
* This will be adjusted for leap years.
*/
char dpm[] = {
31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31
};
main(argc, argv)
char *argv[];
{
register char *s;
register struct tm *tmp;
long ltime;
char *tzone;
if (argc>1 && *argv[1]=='-') {
if (argv[1][1]=='u' && argv[1][2]=='\0')
gmtflag = 1;
else if (argv[1][1]=='s' && argv[1][2]=='\0')
sflag = 1;
else
usage();
argc--;
argv++;
}
if (argc > 2)
usage();
if (argc > 1)
sdate(argv[1]);
ftime(&tb);
ltime = tb.time;
s = asctime(tmp = gtime(<ime));
s[24] = '\0';
if (!gmtflag)
tzone = tzname[tmp->tm_isdst];
else
tzone = TFCFLAG ? "UTC" : "GMT";
printf("%s %s\n", s, tzone);
exit(0);
}
/*
* Set the date/time based on
* string 's'.
*/
sdate(s)
char *s;
{
register char *sp;
register int year;
register int month;
int status;
#if COHERENT
int ufd;
#endif
long ltime;
struct tm *tmp;
ftime(&tb);
ltime = tb.time;
#if COHERENT
utmps[0].ut_time = ltime;
#endif
tmp = gtime(<ime);
for (sp = s; *sp != '\0'; sp++)
;
if ((sp -= 2) < s)
usage();
if (sp>s && sp[-1]=='.') {
tmp->tm_sec = convert(sp, 60, s);
sp--;
} else {
sp += 2;
tmp->tm_sec = 0;
}
tmp->tm_min = convert(sp-=2, 60, s);
tmp->tm_hour = convert(sp-=2, 24, s);
if ((sp-=2) >= s) {
tmp->tm_mday = convert(sp, 31+1, s);
if ((sp-=2) >= s) {
tmp->tm_mon = convert(sp, 12+1, s) - 1;
if ((sp-=2) >= s)
tmp->tm_year = convert(sp, 100, s);
}
}
if (tmp->tm_mday > dpm[tmp->tm_mon])
usage();
/*
* Convert using the year, month, day, hour, minute,
* and second values in the 'tm' structure.
* When all is completed, take care of timezone.
*/
ltime = tmp->tm_sec + MIN*tmp->tm_min + HOUR*tmp->tm_hour;
ltime += (tmp->tm_mday-1) * DAY;
year = 1900 + tmp->tm_year;
/*
* Adjust length of February in leap years.
*/
if (!isleap(year))
dpm[1] = 28;
month = tmp->tm_mon;
while (--month >= 0)
ltime += dpm[month] * DAY;
while (--year >= 1970)
ltime += (long)DAY * (isleap(year) ? 366 : 365);
if (!gmtflag) {
ltime += timezone;
tmp = localtime(<ime);
if (!sflag && tmp->tm_isdst)
ltime -= HOUR;
}
status = stime(<ime);
if (status < 0) {
#if COHERENT
error("no permission");
#else
error("bad date");
#endif
return;
}
#if COHERENT
/* Correct the modtime of /etc/boottime */
stat(btimf, &sbuf);
timep[0] = ltime - utmps[0].ut_time + sbuf.st_mtime;
timep[1] = timep[0];
utime(btimf, timep);
/* Note the change of time in /usr/adm/wtmp */
utmps[1].ut_time = ltime;
utmps[0].ut_line[0] = '|';
utmps[1].ut_line[0] = '}';
if ((ufd = open(utmpf, 1)) >= 0) {
lseek(ufd, 0L, 2);
write(ufd, utmps, sizeof (utmps));
close(ufd);
}
#endif
}
/*
* Return 1 on leap years.
*/
isleap(yr)
register yr;
{
if (yr%4000 == 0)
return (0);
if (yr%400==0 || (yr%100!=0 && yr%4==0))
return (1);
return (0);
}
/*
* Convert a piece of the time.
* The pointer cp should never fall before
* beg and the two digits parsed should be
* less than max.
*/
convert(cp, max, beg)
register char *cp;
char *beg;
{
register val;
if (cp<beg || !isdigit(cp[0]) || !isdigit(cp[1]))
usage();
val = (cp[0]-'0')*10 + cp[1]-'0';
if (val >= max)
usage();
return (val);
}
/*
* Return either local time or Greenwich
* Mean 'tm' in a 'tm' structure.
*/
struct tm *
gtime(tp)
register time_t *tp;
{
return (gmtflag ? gmtime(tp) : localtime(tp));
}
void
usage()
{
fprintf(stderr, "Usage: date [-u] [yymmddhhmm[.ss]]\n");
exit(1);
}
void
error(x)
{
fprintf(stderr, "date: %r\n", &x);
exit(1);
}
/* end of date.c */
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