offtime
double offtime, nsPerByte, ifnsPerByte, ptime, cptime;
offtime = cptime * (1.0 + 1.0/(1.0 - g) * (1.0 - gtom) / gtom);
offtime = (offtime * 8.0) / nsPerByte *
offtime = offtime / 1000.0;
opts->offtime = (u_int)fabs(offtime);
struct tm *offtime(const time_t *, long) __RENAME(__offtime50);
struct tm *offtime(const int32_t *, long);
__weak_alias(offtime,_offtime)
__warn_references(offtime,
# if TZ_TIME_T || !defined offtime
struct tm *offtime(time_t const *, long);
statsp->offtime = cl->offtime_;
opts->maxidle, opts->minidle, opts->offtime,
opts->maxidle, opts->minidle, opts->offtime,
acp->cbq_class.minidle, acp->cbq_class.offtime,
RM_MAXQUEUED, spec->maxidle, spec->minidle, spec->offtime,
spec->maxidle, spec->minidle, spec->offtime,
u_int offtime;
int64_t offtime;
int minidle, u_int offtime, int pktsize, int flags)
cl->offtime_ = (((int64_t)offtime * (int64_t)psecPerByte) / 8) >> RM_FILTER_GAIN;
cl->offtime_ = (offtime * nsecPerByte) / 8;
int minidle, u_int offtime, int pktsize)
cl->offtime_ = (((int64_t)offtime * (int64_t)psecPerByte) / 8) >> RM_FILTER_GAIN;
cl->offtime_ = (offtime * nsecPerByte) / 8;
int minidle, u_int offtime, int flags)
maxidle, minidle, offtime,
u_int offtime;
sp->offtime, sp->wrr_allot);
cl_spec->offtime = (u_int) fabs(lofftime);