ACL_MAX_ENTRIES
*prev_acl = acl_init(ACL_MAX_ENTRIES);
if (acl_int_new->acl_cnt == ACL_MAX_ENTRIES) {
if ((acl_int->acl_cnt < 3) || (acl_int->acl_cnt > ACL_MAX_ENTRIES)) {
(acl->ats_acl.acl_cnt > ACL_MAX_ENTRIES)) {
(acl->ats_acl.acl_cnt > ACL_MAX_ENTRIES)) {
if (acl_int->acl_cnt + 1 >= ACL_MAX_ENTRIES) {
if (acl_int->acl_cnt + 1 >= ACL_MAX_ENTRIES) {
aclp->ats_acl.acl_maxcnt = ACL_MAX_ENTRIES;
aclp = acl_init(ACL_MAX_ENTRIES);
aclp->ats_acl.acl_maxcnt = ACL_MAX_ENTRIES;
aclp = acl_init(ACL_MAX_ENTRIES);
aclp->ats_acl.acl_maxcnt = ACL_MAX_ENTRIES;
aclp = acl_init(ACL_MAX_ENTRIES);
if (count > ACL_MAX_ENTRIES) {
acl->ats_acl.acl_maxcnt = ACL_MAX_ENTRIES;
acl_new = acl_init(ACL_MAX_ENTRIES);
newacl = acl_init(ACL_MAX_ENTRIES);
acl_new = acl_init(ACL_MAX_ENTRIES);
if (acl_int->acl_cnt >= ACL_MAX_ENTRIES) {
*ap->a_retval = ACL_MAX_ENTRIES;
if (aclp->acl_cnt > (ACL_MAX_ENTRIES - 6) / 2) {
if (acecnt > ACL_MAX_ENTRIES)
KASSERT(aclp->acl_cnt + 1 <= ACL_MAX_ENTRIES);
KASSERT(aclp->acl_cnt + 1 <= ACL_MAX_ENTRIES);
KASSERT(aclp->acl_cnt <= ACL_MAX_ENTRIES);
KASSERT(parent_aclp->acl_cnt <= ACL_MAX_ENTRIES);
KASSERT(child_aclp->acl_cnt + 1 <= ACL_MAX_ENTRIES);
if (aclp->acl_cnt > ACL_MAX_ENTRIES || aclp->acl_cnt <= 0)
if (acl->acl_cnt > ACL_MAX_ENTRIES)
if (kernel_acl->acl_maxcnt != ACL_MAX_ENTRIES)
if (am != ACL_MAX_ENTRIES)
aclp->acl_maxcnt = ACL_MAX_ENTRIES;
__CTASSERT(ACL_MAX_ENTRIES >= OLDACL_MAX_ENTRIES);
dest->acl_maxcnt = ACL_MAX_ENTRIES;
KASSERT(aclp->acl_cnt <= ACL_MAX_ENTRIES);
struct acl_entry acl_entry[ACL_MAX_ENTRIES];
aclp->acl_maxcnt = ACL_MAX_ENTRIES;
if (ap->a_aclp->acl_cnt > (ACL_MAX_ENTRIES - 6) / 2)
if (ap->a_aclp->acl_cnt > (ACL_MAX_ENTRIES - 6) / 2)
*ap->a_retval = ACL_MAX_ENTRIES;