tdelta
uint64_t tdelta = ksi->ksi_snaptime[gen ^ 1] - ksi->ksi_snaptime[gen];
return (((delta * (uint64_t)NANOSEC) + (tdelta / 2)) / tdelta);
"tdelta", "?[-h][-t ts]", "compute ns time delta", tdelta,
uint64_t tdelta;
tdelta = newvs->vs_timestamp - oldvs->vs_timestamp;
if (tdelta == 0)
scale = (double)NANOSEC / tdelta;
extern void tsc_adjust_delta(hrtime_t tdelta);
hrtime_t tdelta;
tdelta = tsc->slave_tsc - mtsc_after;
if (tdelta < 0)
tdelta = -tdelta;
if (tdelta > (write_time/4)) {
tdelta = tsc->slave_tsc -
tdelta = tsc->slave_tsc - mtsc_after;
last_delta = tsc_sync_tick_delta[source] - tdelta;
tsc_adjust_delta(hrtime_t tdelta)
tsc_sync_tick_delta[i] += tdelta;
uint64_t tdelta;
hverr = hv_rng_data_read(randvalphys, &tdelta);
cyclesleep(n2rng, tdelta);
uint64_t tdelta;
n2rng->n_ctl_data->n_watchdog_cycles, &tdelta);
cyclesleep(n2rng, tdelta);
thisnumbytes, &tdelta);
cyclesleep(n2rng, tdelta);
&tdelta);
cyclesleep(n2rng, tdelta);
uint64_t tdelta;
hverr = hv_rng_data_read(randvalphys, &tdelta);
cyclesleep(n2rng, tdelta);
uint64_t *tdelta, uint64_t *wdelta)
tdelta, wdelta, &wstatus);
rv = hv_rng_ctl_read(ctlregs_pa, state, tdelta);
uint64_t tdelta;
&tdelta, &wdelta, &wstatus);
cyclesleep(n2rng, tdelta);
uint64_t newstate, uint64_t wtimeout, uint64_t *tdelta)
*tdelta = RNG_DEFAULT_ACCUMULATE_CYCLES;
rv = hv_rng_ctl_write(ctlregs_pa, newstate, wtimeout, tdelta);
size_t datalen, uint64_t *tdelta)
(uint64_t)rngid, tdelta);
if (*tdelta == 0) {
*tdelta = RNG_DEFAULT_ACCUMULATE_CYCLES;
rv = hv_rng_data_read_diag(data_pa, datalen, tdelta);
uint64_t *state, uint64_t *tdelta, uint64_t *wdelta);
uint64_t newstate, uint64_t wtimeout, uint64_t *tdelta);
size_t datalen, uint64_t *tdelta);
uint64_t *tdelta);
uint64_t *state, uint64_t *tdelta, uint64_t *wdelta, uint64_t *wstate);
uint64_t newstate, uint64_t wtimeout, uint64_t *tdelta);
size_t datalen, uint64_t *tdelta);
size_t datalen, uint64_t rngid, uint64_t *tdelta);
uint64_t hv_rng_data_read(uint64_t data_pa, uint64_t *tdelta);