#include <sys/types.h>
#include <sys/salib.h>
#include <tzfile.h>
#include <errno.h>
static int mon_lengths[2][MONSPERYEAR] = {
31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31,
31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31
};
static int year_lengths[2] = {
DAYSPERNYEAR, DAYSPERLYEAR
};
struct tm *
localtime(const time_t *clock)
{
struct tm *tmp;
long days;
long rem;
int y;
int yleap;
int *ip;
static struct tm tm;
tmp = &tm;
days = *clock / SECSPERDAY;
rem = *clock % SECSPERDAY;
while (rem < 0) {
rem += SECSPERDAY;
--days;
}
while (rem >= SECSPERDAY) {
rem -= SECSPERDAY;
++days;
}
tmp->tm_hour = (int)(rem / SECSPERHOUR);
rem = rem % SECSPERHOUR;
tmp->tm_min = (int)(rem / SECSPERMIN);
tmp->tm_sec = (int)(rem % SECSPERMIN);
tmp->tm_wday = (int)((EPOCH_WDAY + days) % DAYSPERWEEK);
if (tmp->tm_wday < 0)
tmp->tm_wday += DAYSPERWEEK;
y = EPOCH_YEAR;
if (days >= 0) {
for (;;) {
yleap = isleap(y);
if (days < (long)year_lengths[yleap])
break;
if (++y > 9999) {
errno = EOVERFLOW;
return (NULL);
}
days = days - (long)year_lengths[yleap];
}
} else {
do {
if (--y < 0) {
errno = EOVERFLOW;
return (NULL);
}
yleap = isleap(y);
days = days + (long)year_lengths[yleap];
} while (days < 0);
}
tmp->tm_year = y - TM_YEAR_BASE;
tmp->tm_yday = (int)days;
ip = mon_lengths[yleap];
for (tmp->tm_mon = 0; days >= (long)ip[tmp->tm_mon]; ++(tmp->tm_mon))
days = days - (long)ip[tmp->tm_mon];
tmp->tm_mday = (int)(days + 1);
tmp->tm_isdst = 0;
return (tmp);
}
#define dysize(A) (((A)%4)? 365: 366)
#define CBUFSIZ 26
static char *ct_numb();
char *
__posix_asctime_r(const struct tm *t, char *cbuf)
{
const char *Date = "Day Mon 00 00:00:00 1900\n";
const char *Day = "SunMonTueWedThuFriSat";
const char *Month = "JanFebMarAprMayJunJulAugSepOctNovDec";
const char *ncp;
const int *tp;
char *cp;
if (t == NULL)
return (NULL);
cp = cbuf;
for (ncp = Date; *cp++ = *ncp++; )
;
ncp = Day + (3*t->tm_wday);
cp = cbuf;
*cp++ = *ncp++;
*cp++ = *ncp++;
*cp++ = *ncp++;
cp++;
tp = &t->tm_mon;
ncp = Month + ((*tp) * 3);
*cp++ = *ncp++;
*cp++ = *ncp++;
*cp++ = *ncp++;
cp = ct_numb(cp, *--tp);
cp = ct_numb(cp, *--tp+100);
cp = ct_numb(cp, *--tp+100);
cp = ct_numb(cp, *--tp+100);
if (t->tm_year > 9999) {
errno = EOVERFLOW;
return (NULL);
} else {
uint_t hun = 19 + (t->tm_year / 100);
cp[1] = (hun / 10) + '0';
cp[2] = (hun % 10) + '0';
}
cp += 2;
cp = ct_numb(cp, t->tm_year+100);
return (cbuf);
}
char *
asctime_r(const struct tm *t, char *cbuf, int buflen)
{
if (buflen < CBUFSIZ) {
errno = ERANGE;
return (NULL);
}
return (__posix_asctime_r(t, cbuf));
}
char *
ctime(const time_t *t)
{
return (asctime(localtime(t)));
}
char *
asctime(const struct tm *t)
{
static char cbuf[CBUFSIZ];
return (asctime_r(t, cbuf, CBUFSIZ));
}
static char *
ct_numb(char *cp, int n)
{
cp++;
if (n >= 10)
*cp++ = (n/10)%10 + '0';
else
*cp++ = ' ';
*cp++ = n%10 + '0';
return (cp);
}