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Taught Netlink how to behave in IPv6 world.
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@ -15,6 +15,12 @@
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* to krt-set.h, krt-iface.h and this file.
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* to krt-set.h, krt-iface.h and this file.
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*/
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*/
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#ifdef IPV6
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#define NL_NUM_TABLES 1
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#else
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#define NL_NUM_TABLES 256
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#endif
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struct krt_scan_params {
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struct krt_scan_params {
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int async; /* Allow asynchronous events */
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int async; /* Allow asynchronous events */
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int table_id; /* Kernel table ID we sync with */
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int table_id; /* Kernel table ID we sync with */
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@ -19,7 +19,7 @@ CF_ADDTO(kern_proto, kern_proto nl_item ';')
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nl_item:
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nl_item:
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ASYNC bool { THIS_KRT->scan.async = $2; }
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ASYNC bool { THIS_KRT->scan.async = $2; }
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| KERNEL TABLE expr {
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| KERNEL TABLE expr {
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if ($3 <= 0 || $3 >= 255)
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if ($3 <= 0 || $3 >= NL_NUM_TABLES)
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cf_error("Kernel routing table number out of range");
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cf_error("Kernel routing table number out of range");
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THIS_KRT->scan.table_id = $3;
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THIS_KRT->scan.table_id = $3;
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}
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}
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@ -84,7 +84,7 @@ nl_request_dump(int cmd)
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req.nh.nlmsg_type = cmd;
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req.nh.nlmsg_type = cmd;
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req.nh.nlmsg_len = sizeof(req);
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req.nh.nlmsg_len = sizeof(req);
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req.nh.nlmsg_flags = NLM_F_REQUEST | NLM_F_DUMP;
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req.nh.nlmsg_flags = NLM_F_REQUEST | NLM_F_DUMP;
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req.g.rtgen_family = PF_INET;
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req.g.rtgen_family = BIRD_PF;
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nl_send(&req.nh);
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nl_send(&req.nh);
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}
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}
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@ -322,16 +322,26 @@ nl_parse_addr(struct nlmsghdr *h)
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if (!(i = nl_checkin(h, sizeof(*i))) || !nl_parse_attrs(IFA_RTA(i), a, sizeof(a)))
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if (!(i = nl_checkin(h, sizeof(*i))) || !nl_parse_attrs(IFA_RTA(i), a, sizeof(a)))
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return;
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return;
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if (i->ifa_family != AF_INET)
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if (i->ifa_family != BIRD_AF)
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return;
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return;
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if (!a[IFA_ADDRESS] || RTA_PAYLOAD(a[IFA_ADDRESS]) != sizeof(ip_addr) ||
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if (!a[IFA_ADDRESS] || RTA_PAYLOAD(a[IFA_ADDRESS]) != sizeof(ip_addr)
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!a[IFA_LOCAL] || RTA_PAYLOAD(a[IFA_LOCAL]) != sizeof(ip_addr) ||
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#ifdef IPV6
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(a[IFA_BROADCAST] && RTA_PAYLOAD(a[IFA_BROADCAST]) != sizeof(ip_addr)))
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|| a[IFA_LOCAL] && RTA_PAYLOAD(a[IFA_LOCAL]) != sizeof(ip_addr)
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#else
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|| !a[IFA_LOCAL] || RTA_PAYLOAD(a[IFA_LOCAL]) != sizeof(ip_addr)
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|| (a[IFA_BROADCAST] && RTA_PAYLOAD(a[IFA_BROADCAST]) != sizeof(ip_addr))
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#endif
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)
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{
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{
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log(L_ERR "nl_parse_addr: Malformed message received");
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log(L_ERR "nl_parse_addr: Malformed message received");
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return;
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return;
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}
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}
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#ifdef IPV6
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if (i->ifa_scope == RT_SCOPE_LINK)
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return;
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#endif
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ifi = if_find_by_index(i->ifa_index);
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ifi = if_find_by_index(i->ifa_index);
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if (!ifi)
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if (!ifi)
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{
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{
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@ -339,18 +349,21 @@ nl_parse_addr(struct nlmsghdr *h)
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return;
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return;
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}
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}
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#ifndef IPV6
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if (i->ifa_prefixlen > 32 || i->ifa_prefixlen == 31 ||
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if (i->ifa_prefixlen > 32 || i->ifa_prefixlen == 31 ||
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(ifi->flags & IF_UNNUMBERED) && i->ifa_prefixlen != 32)
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(ifi->flags & IF_UNNUMBERED) && i->ifa_prefixlen != 32)
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{
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{
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log(L_ERR "KIF: Invalid prefix length for interface %s: %d\n", ifi->name, i->ifa_prefixlen);
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log(L_ERR "KIF: Invalid prefix length for interface %s: %d", ifi->name, i->ifa_prefixlen);
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new = 0;
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new = 0;
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}
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}
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#endif
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bzero(&ifa, sizeof(ifa));
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bzero(&ifa, sizeof(ifa));
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ifa.iface = ifi;
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ifa.iface = ifi;
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if (i->ifa_flags & IFA_F_SECONDARY)
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if (i->ifa_flags & IFA_F_SECONDARY)
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ifa.flags |= IA_SECONDARY;
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ifa.flags |= IA_SECONDARY;
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memcpy(&ifa.ip, RTA_DATA(a[IFA_LOCAL]), sizeof(ifa.ip));
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/* IFA_LOCAL can be unset for IPv6 interfaces */
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memcpy(&ifa.ip, RTA_DATA(a[IFA_LOCAL] ? : a[IFA_ADDRESS]), sizeof(ifa.ip));
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ipa_ntoh(ifa.ip);
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ipa_ntoh(ifa.ip);
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ifa.pxlen = i->ifa_prefixlen;
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ifa.pxlen = i->ifa_prefixlen;
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if (ifi->flags & IF_UNNUMBERED)
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if (ifi->flags & IF_UNNUMBERED)
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@ -359,11 +372,13 @@ nl_parse_addr(struct nlmsghdr *h)
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ipa_ntoh(ifa.opposite);
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ipa_ntoh(ifa.opposite);
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ifa.brd = ifa.opposite;
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ifa.brd = ifa.opposite;
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}
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}
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#ifndef IPV6
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else if ((ifi->flags & IF_BROADCAST) && a[IFA_BROADCAST])
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else if ((ifi->flags & IF_BROADCAST) && a[IFA_BROADCAST])
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{
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{
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memcpy(&ifa.brd, RTA_DATA(a[IFA_BROADCAST]), sizeof(ifa.brd));
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memcpy(&ifa.brd, RTA_DATA(a[IFA_BROADCAST]), sizeof(ifa.brd));
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ipa_ntoh(ifa.brd);
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ipa_ntoh(ifa.brd);
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}
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}
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#endif
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/* else a NBMA link */
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/* else a NBMA link */
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ifa.prefix = ipa_and(ifa.ip, ipa_mkmask(ifa.pxlen));
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ifa.prefix = ipa_and(ifa.ip, ipa_mkmask(ifa.pxlen));
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@ -405,7 +420,7 @@ krt_if_scan(struct kif_proto *p)
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* Routes
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* Routes
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*/
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*/
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static struct krt_proto *nl_table_map[256];
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static struct krt_proto *nl_table_map[NL_NUM_TABLES];
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int
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int
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krt_capable(rte *e)
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krt_capable(rte *e)
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@ -413,7 +428,7 @@ krt_capable(rte *e)
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rta *a = e->attrs;
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rta *a = e->attrs;
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if (a->cast != RTC_UNICAST
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if (a->cast != RTC_UNICAST
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#ifdef IPV6
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#if 0
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&& a->cast != RTC_ANYCAST
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&& a->cast != RTC_ANYCAST
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#endif
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#endif
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)
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)
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@ -455,7 +470,7 @@ nl_send_route(struct krt_proto *p, rte *e, int new)
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r.h.nlmsg_flags = NLM_F_REQUEST | NLM_F_ACK | (new ? NLM_F_CREATE|NLM_F_REPLACE : 0);
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r.h.nlmsg_flags = NLM_F_REQUEST | NLM_F_ACK | (new ? NLM_F_CREATE|NLM_F_REPLACE : 0);
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/* FIXME: Do we really need to process ACKs? */
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/* FIXME: Do we really need to process ACKs? */
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r.r.rtm_family = AF_INET;
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r.r.rtm_family = BIRD_AF;
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r.r.rtm_dst_len = net->n.pxlen;
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r.r.rtm_dst_len = net->n.pxlen;
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r.r.rtm_tos = 0;
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r.r.rtm_tos = 0;
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r.r.rtm_table = KRT_CF->scan.table_id;
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r.r.rtm_table = KRT_CF->scan.table_id;
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@ -546,11 +561,14 @@ nl_parse_route(struct nlmsghdr *h, int scan)
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if (!(i = nl_checkin(h, sizeof(*i))) || !nl_parse_attrs(RTM_RTA(i), a, sizeof(a)))
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if (!(i = nl_checkin(h, sizeof(*i))) || !nl_parse_attrs(RTM_RTA(i), a, sizeof(a)))
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return;
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return;
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if (i->rtm_family != AF_INET)
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if (i->rtm_family != BIRD_AF)
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return;
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return;
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if ((a[RTA_DST] && RTA_PAYLOAD(a[RTA_DST]) != sizeof(ip_addr)) ||
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if ((a[RTA_DST] && RTA_PAYLOAD(a[RTA_DST]) != sizeof(ip_addr)) ||
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(a[RTA_OIF] && RTA_PAYLOAD(a[RTA_OIF]) != 4) ||
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(a[RTA_OIF] && RTA_PAYLOAD(a[RTA_OIF]) != 4) ||
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(a[RTA_PRIORITY] && RTA_PAYLOAD(a[RTA_PRIORITY]) != 4) ||
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(a[RTA_PRIORITY] && RTA_PAYLOAD(a[RTA_PRIORITY]) != 4) ||
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#ifdef IPV6
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(a[RTA_IIF] && RTA_PAYLOAD(a[RTA_IIF]) != 4) ||
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#endif
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(a[RTA_GATEWAY] && RTA_PAYLOAD(a[RTA_GATEWAY]) != sizeof(ip_addr)))
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(a[RTA_GATEWAY] && RTA_PAYLOAD(a[RTA_GATEWAY]) != sizeof(ip_addr)))
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{
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{
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log(L_ERR "nl_parse_route: Malformed message received");
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log(L_ERR "nl_parse_route: Malformed message received");
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@ -561,11 +579,19 @@ nl_parse_route(struct nlmsghdr *h, int scan)
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if (!p)
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if (!p)
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return;
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return;
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#ifdef IPV6
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if (a[RTA_IIF])
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{
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DBG("KRT: Ignoring route with IIF set\n");
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return;
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}
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#else
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if (i->rtm_tos != 0) /* We don't support TOS */
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if (i->rtm_tos != 0) /* We don't support TOS */
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{
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{
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DBG("KRT: Ignoring route with TOS %02x\n", i->rtm_tos);
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DBG("KRT: Ignoring route with TOS %02x\n", i->rtm_tos);
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return;
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return;
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}
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}
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#endif
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if (scan && !new)
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if (scan && !new)
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{
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{
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@ -784,7 +810,11 @@ nl_open_async(void)
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bzero(&sa, sizeof(sa));
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bzero(&sa, sizeof(sa));
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sa.nl_family = AF_NETLINK;
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sa.nl_family = AF_NETLINK;
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#ifdef IPV6
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sa.nl_groups = RTMGRP_LINK | RTMGRP_IPV6_IFADDR | RTMGRP_IPV6_ROUTE;
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#else
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sa.nl_groups = RTMGRP_LINK | RTMGRP_IPV4_IFADDR | RTMGRP_IPV4_ROUTE;
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sa.nl_groups = RTMGRP_LINK | RTMGRP_IPV4_IFADDR | RTMGRP_IPV4_ROUTE;
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#endif
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if (bind(fd, (struct sockaddr *) &sa, sizeof(sa)) < 0)
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if (bind(fd, (struct sockaddr *) &sa, sizeof(sa)) < 0)
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{
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{
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log(L_ERR "Unable to bind asynchronous rtnetlink socket: %m");
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log(L_ERR "Unable to bind asynchronous rtnetlink socket: %m");
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@ -806,7 +836,7 @@ nl_open_async(void)
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* Interface to the UNIX krt module
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* Interface to the UNIX krt module
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*/
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*/
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static u8 nl_cf_table[256 / 8];
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static u8 nl_cf_table[(NL_NUM_TABLES+7) / 8];
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void
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void
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krt_scan_preconfig(struct config *c)
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krt_scan_preconfig(struct config *c)
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@ -828,7 +858,9 @@ void
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krt_scan_construct(struct krt_config *x)
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krt_scan_construct(struct krt_config *x)
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{
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{
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x->scan.async = 1;
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x->scan.async = 1;
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#ifndef IPV6
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x->scan.table_id = RT_TABLE_MAIN;
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x->scan.table_id = RT_TABLE_MAIN;
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#endif
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/* FIXME: Use larger defaults for scanning times? */
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/* FIXME: Use larger defaults for scanning times? */
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}
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}
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@ -23,9 +23,11 @@ volatile int async_shutdown_flag;
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#ifdef IPV6
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#ifdef IPV6
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#define BIRD_PF PF_INET6
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#define BIRD_PF PF_INET6
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#define BIRD_AF AF_INET6
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typedef struct sockaddr_in6 sockaddr;
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typedef struct sockaddr_in6 sockaddr;
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#else
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#else
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#define BIRD_PF PF_INET
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#define BIRD_PF PF_INET
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#define BIRD_AF AF_INET
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typedef struct sockaddr_in sockaddr;
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typedef struct sockaddr_in sockaddr;
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#endif
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#endif
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