modulus
u8 modulus[SGX_MODULUS_SIZE];
sha256(sigstruct->modulus, SGX_MODULUS_SIZE, (u8 *)mrsigner);
u8 modulus[256];
str += sprintf(str, "%16ph\n", &out->modulus[i]);
u8 *modulus; /* pointer to the modulus */
fdet->modulus = ff->modulus;
fdet->modulus = aff->modulus;
u8 modulus[KEY_SIZE];
write_rsa_data(dd, MISC_CFG_RSA_MODULUS, fdet->modulus, KEY_SIZE);
u8 modulus[KEY_SIZE];
static bool in_cyclic_range(u16 lower, u16 value, u16 upper, u16 modulus)
value += modulus;
upper += modulus;
unsigned int modulus;
modulus = format->width % div_size;
if (modulus) {
if (modulus < div_size / 2) {
window.width = (div_size / 2) + modulus;
window.width = modulus;
static void cdc_ncm_align_tail(struct sk_buff *skb, size_t modulus, size_t remainder, size_t max)
size_t align = ALIGN(skb->len, modulus) - skb->len + remainder;
mod = meb1->modulus + sizeof(meb1->modulus) - mod_len;
mod = meb2->modulus + sizeof(meb2->modulus) - mod_len;
mod = meb3->modulus + sizeof(meb3->modulus) - mod_len;
unsigned char modulus[128];
unsigned char modulus[256];
unsigned char modulus[512];
int modulus = (lapb->mode & LAPB_EXTENDED) ? LAPB_EMODULUS :
lapb->vr = (lapb->vr + 1) % modulus;
unsigned short modulus, start, end;
modulus = (lapb->mode & LAPB_EXTENDED) ? LAPB_EMODULUS : LAPB_SMODULUS;
end = (lapb->va + lapb->window) % modulus;
lapb->vs = (lapb->vs + 1) % modulus;
int modulus;
modulus = (lapb->mode & LAPB_EXTENDED) ? LAPB_EMODULUS : LAPB_SMODULUS;
lapb->va = (lapb->va + 1) % modulus;
int modulus;
modulus = (lapb->mode & LAPB_EXTENDED) ? LAPB_EMODULUS : LAPB_SMODULUS;
vc = (vc + 1) % modulus;
if (priv->modulus < 1)
if (priv->offset + priv->modulus - 1 < priv->offset)
priv->modulus = ntohl(nla_get_be32(tb[NFTA_HASH_MODULUS]));
if (priv->modulus < 1)
if (priv->offset + priv->modulus - 1 < priv->offset)
if (nla_put_be32(skb, NFTA_HASH_MODULUS, htonl(priv->modulus)))
if (nla_put_be32(skb, NFTA_HASH_MODULUS, htonl(priv->modulus)))
u32 modulus;
priv->modulus);
u32 modulus;
priv->modulus);
priv->modulus = ntohl(nla_get_be32(tb[NFTA_HASH_MODULUS]));
return nft_ng_dump(skb, priv->dreg, priv->modulus, NFT_NG_INCREMENTAL,
u32 modulus;
return reciprocal_scale(get_random_u32(), priv->modulus) + priv->offset;
priv->modulus = ntohl(nla_get_be32(tb[NFTA_NG_MODULUS]));
if (priv->modulus == 0)
if (priv->offset + priv->modulus - 1 < priv->offset)
return nft_ng_dump(skb, priv->dreg, priv->modulus, NFT_NG_RANDOM,
u32 modulus;
nval = (oval + 1 < priv->modulus) ? oval + 1 : 0;
priv->modulus = ntohl(nla_get_be32(tb[NFTA_NG_MODULUS]));
if (priv->modulus == 0)
if (priv->offset + priv->modulus - 1 < priv->offset)
atomic_set(priv->counter, priv->modulus - 1);
u32 modulus, enum nft_ng_types type, u32 offset)
if (nla_put_be32(skb, NFTA_NG_MODULUS, htonl(modulus)))
int modulus;
modulus = (x25->neighbour->extended) ? X25_EMODULUS : X25_SMODULUS;
x25->vr = (x25->vr + 1) % modulus;
if (((x25->vl + x25->facilities.winsize_in) % modulus) == x25->vr) {
int modulus;
modulus = x25->neighbour->extended ? X25_EMODULUS : X25_SMODULUS;
end = (x25->va + x25->facilities.winsize_out) % modulus;
x25->vs = (x25->vs + 1) % modulus;
vc = (vc + 1) % modulus;
int modulus = x25->neighbour->extended ? X25_EMODULUS : X25_SMODULUS;
x25->va = (x25->va + 1) % modulus;
int modulus = x25->neighbour->extended ? X25_EMODULUS : X25_SMODULUS;
unsigned long int modulus)
if (((a-b) % modulus) < (modulus/2))
BN_bn2bin(get_modulus(key), sigstruct->modulus);
if (!calc_q1q2(sigstruct->signature, sigstruct->modulus, sigstruct->q1,
reverse_bytes(sigstruct->modulus, SGX_MODULUS_SIZE);