current_time
time_t current_time;
current_time = tp.tv_sec;
if ((current_time - ptr->time) > MAX_LIFE) {
ptr->time = current_time;
time_t current_time;
current_time = tp.tv_sec;
ptr->time = current_time;
time_t current_time;
current_time = tp.tv_sec;
if ((current_time - ptr->time) > MAX_LIFE) {
clock_gettime(CLOCK_MONOTONIC, ¤t_time);
timespecsub(¤t_time, &sp->se_started, &elapsed);
struct timespec current_time, elapsed;
gd->linedata[gd->hsize].time = current_time;
gl_history->time = current_time;
current_time = time(NULL);
time_t current_time;
uint64_t current_time;
current_time = (uint64_t) time(NULL);
if ((current_time < signed_time - tsig->signed_time_fudge)
|| (current_time > signed_time + tsig->signed_time_fudge))
clock = (time_t) current_time;
current_time_high = (uint16_t) (current_time >> 32);
current_time_low = (uint32_t) current_time;
uint64_t current_time = (uint64_t) time(NULL);
tsig->signed_time_high = (uint16_t) (current_time >> 32);
tsig->signed_time_low = (uint32_t) current_time;
xfrd->current_time = time(0);
return xfrd->current_time;
time_t current_time;
double current_time(double);
deadline = current_time(JAN_1970) + delay;
if (current_time(JAN_1970) > deadline) {
data->originate = current_time(JAN_1970);
data->current = current_time(JAN_1970);
current_time(msg.m_timestamp);
current_time(msg.m_timestamp);
current_time(msg.m_timestamp);
current_time(msg.m_timestamp);
void current_time(char *);