YT921X_ACL_ENT_PER_BLK
if (size >= YT921X_ACL_ENT_PER_BLK)
if (size >= YT921X_ACL_ENT_PER_BLK)
if (size >= YT921X_ACL_ENT_PER_BLK)
if (size >= YT921X_ACL_ENT_PER_BLK)
if (size >= YT921X_ACL_ENT_PER_BLK)
for (unsigned int i = 0; i < YT921X_ACL_ENT_PER_BLK; i++)
return YT921X_ACL_ENT_PER_BLK * blkid + i;
int candidates[YT921X_ACL_ENT_PER_BLK + 1];
if (WARN_ON(entscnt > YT921X_ACL_ENT_PER_BLK))
for (unsigned int i = YT921X_ACL_ENT_PER_BLK - entscnt + 1;
return YT921X_ACL_ENT_PER_BLK * candidates[i] +
blkid = entid / YT921X_ACL_ENT_PER_BLK;
binid = entid % YT921X_ACL_ENT_PER_BLK;
for (unsigned int i = 0; i < YT921X_ACL_ENT_PER_BLK; i++)
for_each_set_bit(o, &mask, YT921X_ACL_ENT_PER_BLK) {
for (unsigned int i = 0; i < YT921X_ACL_ENT_PER_BLK; i++) {
for_each_set_bit(o, &mask, YT921X_ACL_ENT_PER_BLK)
blkid = entid / YT921X_ACL_ENT_PER_BLK;
binid = entid % YT921X_ACL_ENT_PER_BLK;
blkid = entid / YT921X_ACL_ENT_PER_BLK;
binid = entid % YT921X_ACL_ENT_PER_BLK;
for_each_clear_bit(o, &mask, YT921X_ACL_ENT_PER_BLK) {
#define YT921X_ACL_NUM (YT921X_ACL_BLK_NUM * YT921X_ACL_ENT_PER_BLK)
struct yt921x_acl_entry entries[YT921X_ACL_ENT_PER_BLK];
struct yt921x_acl_rule *rules[YT921X_ACL_ENT_PER_BLK];