CLASSD
CLASSD(v4_addr1) || v4_addr1 == INADDR_BROADCAST ||
CLASSD(v4_addr1) || CLASSD(v4_addr2) ||
if (!CLASSD(group)) {
if (group != 0 && (!CLASSD(group))) {
CLASSD(ipha->ipha_dst) ||
CLASSD(ipha->ipha_src) ||
} else if (CLASSD(src_addr)) {
if (CLASSD(addr)) {
(IN6_IS_ADDR_V4COMPAT(addr) && CLASSD(V4_PART_OF_V6((*addr)))) ||
(IN6_IS_ADDR_V4COMPAT(addr) && CLASSD(V4_PART_OF_V6((*addr)))))
CLASSD(src_paddr) || CLASSD(dst_paddr)) {
if (isv6 ? IN6_IS_ADDR_MULTICAST(v6dst) : CLASSD(v4dst)) {
if (CLASSD(dst) && multicast_ifaddr != INADDR_ANY) {
if (CLASSD(addr))
!CLASSD(ire->ire_addr)) {
if (!CLASSD(v4_addr)) {
if (!CLASSD(v4addr)) {
if (CLASSD(src)) {
if (CLASSD(nexthop)) {
if (CLASSD(nexthop)) {
if (CLASSD(dst) && (ipha->ipha_ttl <= 1 ||
if (!CLASSD(eip->ipha_dst)) {
if (!CLASSD(ipha->ipha_dst)) {
if (!CLASSD(ipha_encap->ipha_dst)) {
if (!CLASSD(v4group) || CLASSD(v4src))
if (!CLASSD(v4group)) {
ASSERT(CLASSD(v4group));
if (CLASSD(sin->sin_addr.s_addr))
(ire->ire_ipversion == IPV4_VERSION && CLASSD(ire->ire_addr)) ||
CLASSD(*(ipaddr_t *)dst)) {
if (CLASSD(dst))
if ((in4 == INADDR_ANY) || CLASSD(in4)) {
(CLASSD((addr)->_S6_un._S6_u32[3])) && \
(CLASSD((addr)->_S6_un._S6_u32[3])) && \
if (CLASSD(*(addr->iap_addr4)) ||
if (relay_addr == INADDR_BROADCAST || CLASSD(relay_addr))
CLASSD(sin->sin_addr.s_addr)) {
CLASSD(addr4->s_addr))) {
*addr4 == htonl(INADDR_LOOPBACK) || CLASSD(*addr4)) {
CLASSD(ta) || connp->conn_ipv6_v6only) {
if (CLASSD(sin->sin_addr.s_addr) ||
CLASSD(ipha->ipha_src)) {
return ((CLASSD(*ipaddr) || (*ipaddr == INADDR_BROADCAST)) ?