elapsed
void elapsed(struct pinfo *, VARENT *, enum mode);
VAR6("etime", "ELAPSED", 0, elapsed, POFF(p_ustart_sec), TIMEVAL),
const struct timeval *elapsed, const char *error)
if (elapsed != NULL)
(LLT)elapsed->tv_sec,
(long)(elapsed->tv_usec / 1000));
(elapsed == NULL ? 0 : elapsed->tv_sec + (elapsed->tv_usec > 0)),
double elapsed;
elapsed = (double) elapsed_sec +
if (elapsed == 0)
rate = amount / elapsed;
uint32_t elapsed;
elapsed = now - start;
elapsed = (UINT32_MAX - start) + 1 + now;
total += elapsed - last;
last = elapsed;
int64_t elapsed;
elapsed = val - oval;
elapsed = (UINT32_MAX - oval) + val + 1;
ticks -= elapsed;
int elapsed;
elapsed = t1.t_lo - t0.t_lo;
*cpuclock = (100000000 / elapsed) * TX39_RTCLOCK;
int elapsed;
elapsed = (tick - tfc->offset_time) / hz;
if (elapsed % (tfc->up_int + tfc->down_int) >= tfc->up_int) {
u_int32_t elapsed; /* only for sense */
u_int32_t elapsed; /* only for sense */
uint64_t elapsed;
elapsed = GET_NANOSEC(&x);
if (elapsed == 0)
elapsed++;
return (elapsed);
struct timeval finish, elapsed;
timersub(&finish, &start, &elapsed);
isp->isp_lastmbxcmd, (intmax_t)(elapsed.tv_sec * 1000000) +
elapsed.tv_usec);
int pcnt, ccnt, elapsed, times;
elapsed = ccnt - pcnt;
if (elapsed == 0) {
if (elapsed < 0)
elapsed += 0x10000;
if (elapsed >= CYCLES_FROM_READY2EXE && check) {
} while (cycles > elapsed);
int elapsed;
elapsed = (int64_t)tsnow - atomic_load_relaxed(&con->c_atime);
return elapsed > etime;
u_int32_t echo, elapsed;
bcopy(av + 4, &elapsed, 4);
diff = (u_int16_t) c_stamp - cb->timestamp - elapsed;
echo, elapsed, diff));
uint32_t elapsed = now - (l)->l_syscall_time; \
SYSCALL_TIME_UPDATE_PROC(l, u, elapsed); \
*(l)->l_syscall_counter += elapsed; \
SYSCALL_TIME_UPDATE_PROC(l, s, elapsed); \
SYSCALL_TIME_UPDATE_PROC(l, u, elapsed = now - (l)->l_syscall_time); \
uint32_t elapsed = now - (l)->l_syscall_time; \
*(l)->l_syscall_counter += elapsed; \
SYSCALL_TIME_UPDATE_PROC(l, s, elapsed); \
uint32_t elapsed = now - (l)->l_syscall_time; \
*(l)->l_syscall_counter += elapsed; \
SYSCALL_TIME_UPDATE_PROC(l, s, elapsed); \
long long elapsed;
elapsed = 1000000000LL * (tsb.tv_sec - tsl.tv_sec)
(void)printf("%lld nsec\n", elapsed);
double elapsed;
elapsed = td.tv_sec + (td.tv_usec / 1000000.0);
if (elapsed > 0.0)
bytespersec /= elapsed;
if (bytes <= 0 || elapsed <= 0.0 || cursize > (uint64_t)filesize) {
((filesize - restart_point) / (bytes / elapsed) -
elapsed);
double elapsed;
elapsed = td.tv_sec + (td.tv_usec / 1000000.0);
if (elapsed > 0.0)
bytespersec /= elapsed;
remaining = (int)elapsed;
if (siginfo && bytes > 0 && elapsed > 0.0 && filesize >= 0
(bytes / elapsed) - elapsed);
double elapsed = 0.0;
elapsed = tv.tv_sec + (tv.tv_usec * 1e-6);
ifp->if_in_curtraffic /= elapsed;
ifp->if_out_curtraffic /= elapsed;
ifp->if_in_curpps /= elapsed;
ifp->if_out_curpps /= elapsed;
drive_statsy_io(double elapsed, double count, double volume)
(void)printf(" %6.0f", count / elapsed);
(void)printf(" %8.2f", volume / (1024.0 * 1024) / elapsed);
drive_statsy_q(double elapsed, double busy, double wait, double busysum, double waitsum, double count)
(void)printf(" %6.1f", waitsum / elapsed);
(void)printf(" %6.1f", busysum / elapsed);
(void)printf(" %6.2f", wait / elapsed);
(void)printf(" %6.2f", busy / elapsed);