bird: add source address + next hop self (v6 anycast fix)
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Cisco IOS rejects IPv6 BGP advertisements whose next-hop is link-local- only. BIRD2 was synthesising a link-local next-hop for kernel-learned routes whose dev had no via gateway (our anycast /128s). Symptom: v4 anycast worked (Cisco doesn't have the same constraint for /32s), v6 anycast didn't make it past crt001. - pkg/routing/bird/config.go: NodeBGP.LocalV6/LocalV4. Template now emits `local <addr> as <asn>` and `next hop self;` in the BGP channel for both families, mirroring Calico's `source address` + `next hop self` pattern. - pkg/agent/bird.go: localAddrSameSubnet picks an interface address on the peer's /64 or /24 to use as source. Co-Authored-By: Claude Sonnet 4.6 (1M context) <noreply@anthropic.com>
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@@ -44,12 +44,24 @@ func (b *BirdManager) Render(nc *flockv1alpha1.NodeConfig, anycast6, anycast4 []
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Anycast6: anycast6,
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Anycast4: anycast4,
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}
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// Pick a local source address per family that's on the same subnet as
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// the BGP peer. crt001 rejects IPv6 advertisements whose next-hop is
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// link-local-only; an explicit `source address` makes BIRD use a
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// global next-hop self, which Cisco accepts.
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for _, p := range nc.Spec.BGP.Peers {
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fam := bird.FamilyOf(p.Address)
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if fam == "" {
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continue
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}
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in.Peers = append(in.Peers, bird.Peer{Family: fam, Address: p.Address, ASN: p.ASN})
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if local := localAddrSameSubnet(p.Address); local != "" {
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if fam == "v6" && in.LocalV6 == "" {
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in.LocalV6 = local
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}
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if fam == "v4" && in.LocalV4 == "" {
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in.LocalV4 = local
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}
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}
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}
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cfg, err := bird.Render(in)
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@@ -126,6 +138,49 @@ func (b *BirdManager) SummaryRoutes(nc *flockv1alpha1.NodeConfig) error {
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return nil
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}
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// localAddrSameSubnet finds an IP on a local interface that's in the same
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// /64 (v6) or /24 (v4) as `peer`. Returns "" if none. Used to derive the
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// `source address` for a BGP session.
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func localAddrSameSubnet(peer string) string {
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pip := net.ParseIP(peer)
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if pip == nil {
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return ""
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}
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addrs, err := net.InterfaceAddrs()
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if err != nil {
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return ""
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}
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v4 := pip.To4() != nil
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for _, a := range addrs {
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ipn, ok := a.(*net.IPNet)
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if !ok {
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continue
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}
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ip := ipn.IP
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if ip.IsLoopback() || ip.IsLinkLocalUnicast() {
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continue
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}
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if (ip.To4() != nil) != v4 {
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continue
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}
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// Use the peer's mask (assume same subnet) for membership test.
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var mask net.IPMask
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if v4 {
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mask = net.CIDRMask(24, 32)
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} else {
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mask = net.CIDRMask(64, 128)
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}
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peerSubnet := &net.IPNet{IP: pip, Mask: mask}
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if peerSubnet.Contains(ip) {
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if v4 {
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return ip.To4().String()
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}
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return ip.To16().String()
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}
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}
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return ""
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}
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func installBlackhole(cidr string) error {
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// Use `ip` rather than netlink so this file stays portable for non-Linux
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// builds (the agent on macOS just no-ops). The agent only runs in
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@@ -18,6 +18,13 @@ type NodeBGP struct {
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RouterID string // IPv4 (any usable v4 on the node, typically the host's)
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LocalASN uint32
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Peers []Peer
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// LocalV6 / LocalV4 are this node's local source addresses on the
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// same subnet as the v6 / v4 BGP peers. Used as `source address` in
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// each BGP protocol stanza (Cisco rejects v6 advertisements whose
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// next-hop is link-local-only — explicit source forces a global next-
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// hop self that crt001 accepts).
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LocalV6 string
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LocalV4 string
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// CIDR6 / CIDR4 are the per-node summary aggregates the agent wants
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// advertised. The agent installs blackhole kernel routes for each so
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// BIRD's protocol kernel imports them.
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@@ -69,11 +76,12 @@ protocol static static4 {
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}
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{{range $i, $p := .Peers}}{{if eq $p.Family "v6"}}
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protocol bgp upstream6_{{$i}} {
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local as {{$.LocalASN}};
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local{{if $.LocalV6}} {{$.LocalV6}}{{end}} as {{$.LocalASN}};
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neighbor {{$p.Address}} as {{$p.ASN}};
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graceful restart;
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ipv6 {
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import all;
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next hop self;
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export filter {
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{{range $cidr := $.CIDR6}}if net = {{$cidr}} then accept;
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{{end}}{{range $a := $.Anycast6}}if net = {{$a}}/128 then accept;
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@@ -83,11 +91,12 @@ protocol bgp upstream6_{{$i}} {
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}
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{{else if eq $p.Family "v4"}}
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protocol bgp upstream4_{{$i}} {
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local as {{$.LocalASN}};
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local{{if $.LocalV4}} {{$.LocalV4}}{{end}} as {{$.LocalASN}};
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neighbor {{$p.Address}} as {{$p.ASN}};
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graceful restart;
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ipv4 {
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import all;
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next hop self;
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export filter {
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{{range $cidr := $.CIDR4}}if net = {{$cidr}} then accept;
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{{end}}{{range $a := $.Anycast4}}if net = {{$a}}/32 then accept;
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