SECS_PER_DAY
result += SECS_PER_DAY; /*%< Add leapday for prev year */
result += (tim.tm_mday - 1) * SECS_PER_DAY; /*%< Days */
result += mdays * SECS_PER_DAY; /*%< Months */
result += SECS_PER_DAY; /*%< Add leapday for this year */
result += (tim.tm_year - 70) * (SECS_PER_DAY*365); /*%< Years */
#define G2RTC_OFFSET (20 * SECS_PER_COMMON_YEAR + 5 * SECS_PER_DAY)
sc->sc_epoch += days_per_year(year) * SECS_PER_DAY;
sc->sc_epoch -= days_per_year(year) * SECS_PER_DAY;
return days * SECS_PER_DAY + hour * SECS_PER_HOUR
return days * SECS_PER_DAY + hour * SECS_PER_HOUR
return days * SECS_PER_DAY + hour * SECS_PER_HOUR
n += days_per_year(y) * SECS_PER_DAY;
while(num >= (j = days_per_year(y) * SECS_PER_DAY)) {
return (days * SECS_PER_DAY) + (hour * SECS_PER_HOUR)
ticks = hz * SECS_PER_DAY;
days = secs / SECS_PER_DAY;
rsec = secs % SECS_PER_DAY;
if (tvp->tv_sec > tch->todr_base_time - 2 * SECS_PER_DAY)
if (!badbase && deltat >= 2 * SECS_PER_DAY) {
deltat / SECS_PER_DAY);
" days\n", deltat / SECS_PER_DAY);
#define SECS_PER_COMMON_YEAR (SECS_PER_DAY * DAYS_PER_COMMON_YEAR)
#define SECS_PER_LEAP_YEAR (SECS_PER_DAY * DAYS_PER_LEAP_YEAR)