limits
struct limits *limitval;
struct limits *limitval;
struct limits *limitval;
struct limits limitval;
struct limits limitval;
struct limits limitval;
struct limits *
struct limits *lp, *res;
for (lp = limits; lp->limconst >= 0; lp++) {
struct limits *lp;
for (lp = limits; lp->limconst >= 0; lp++) {
getval(struct limits *lp, tchar **v, rlim_t *retval)
plim(struct limits *lp, tchar hard)
struct limits *lp;
for (lp = limits; lp->limconst >= 0; lp++) {
setlim(struct limits *lp, tchar hard, rlim_t limit)
} limits[] = {
static int getval(struct limits *lp, tchar **v, rlim_t *);
void plim(struct limits *lp, tchar hard);
#include <sm/limits.h>
#include <limits.h>
#include <sm/limits.h>
#include <sm/limits.h>
#include <sm/limits.h>
#include <limits.h>
#include <sm/limits.h>
#include <sm/limits.h>
daddr_t limits[NIADDR];
for (limits[0] = NDADDR, j = 1; j < NIADDR; j++)
limits[j] = limits[j-1] + (1ULL << (nindirshift * j));
lbn = limits[NIADDR - j];
lbn = limits[NIADDR - j + 1];
sc->limits = &iwn4965_sensitivity_limits;
sc->limits = &iwn5000_sensitivity_limits;
sc->limits = &iwn5150_sensitivity_limits;
sc->limits = &iwn5000_sensitivity_limits;
sc->limits = &iwn1000_sensitivity_limits;
sc->limits = &iwn6000_sensitivity_limits;
sc->limits = &iwn6000_sensitivity_limits;
sc->limits = &iwn6000_sensitivity_limits;
sc->limits = &iwn2000_sensitivity_limits;
sc->limits = &iwn2000_sensitivity_limits;
sc->limits = &iwn2000_sensitivity_limits;
sc->limits = &iwn2000_sensitivity_limits;
calib->ofdm_x1 = sc->limits->min_ofdm_x1;
calib->ofdm_mrc_x1 = sc->limits->min_ofdm_mrc_x1;
calib->ofdm_x4 = sc->limits->min_ofdm_x4;
calib->ofdm_mrc_x4 = sc->limits->min_ofdm_mrc_x4;
calib->cck_mrc_x4 = sc->limits->min_cck_mrc_x4;
calib->energy_cck = sc->limits->energy_cck;
const struct iwn_sensitivity_limits *limits = sc->limits;
inc(calib->ofdm_x1, 1, limits->max_ofdm_x1);
inc(calib->ofdm_mrc_x1, 1, limits->max_ofdm_mrc_x1);
inc(calib->ofdm_x4, 1, limits->max_ofdm_x4);
inc(calib->ofdm_mrc_x4, 1, limits->max_ofdm_mrc_x4);
dec(calib->ofdm_x1, 1, limits->min_ofdm_x1);
dec(calib->ofdm_mrc_x1, 1, limits->min_ofdm_mrc_x1);
dec(calib->ofdm_x4, 1, limits->min_ofdm_x4);
dec(calib->ofdm_mrc_x4, 1, limits->min_ofdm_mrc_x4);
inc(calib->cck_x4, 3, limits->max_cck_x4);
inc(calib->cck_mrc_x4, 3, limits->max_cck_mrc_x4);
inc(calib->energy_cck, 2, limits->min_energy_cck);
dec(calib->cck_x4, 3, limits->min_cck_x4);
dec(calib->cck_mrc_x4, 3, limits->min_cck_mrc_x4);
cmd.energy_ofdm = htole16(sc->limits->energy_ofdm);
*limits;
const struct xsave_limits *limits;
limits = vmm_get_xsave_limits();
if (!limits->xsave_enabled ||
if ((xcrval & ~limits->xcr0_allowed) != 0) {
regs[0] &= limits->xcr0_allowed;
regs[2] = limits->xsave_max_size;
regs[3] &= (limits->xcr0_allowed >> 32);
if (!(limits->xcr0_allowed & (1ul << param))) {
const struct xsave_limits *limits;
limits = vmm_get_xsave_limits();
if (!limits->xsave_enabled) {