ipn,magicsock: deny peer capabilities to unsigned peers (#20561)

Unsigned peers aren't covered by tailnet lock, so they must never hold peer capabilities even if the packet filter grants them. This change extends the check for unsigned-peers to ensure full coverage in capabilities.

Fixes tailscale/corp#45116

Change-Id: I918af24f0b9855e55921cbdad109cc68e745e125

Signed-off-by: Mike Jensen <mikej@tailscale.com>
This commit is contained in:
Mike Jensen
2026-07-22 08:27:15 -06:00
committed by GitHub
parent 1d82c1b3d0
commit 0eb38dc2e5
6 changed files with 162 additions and 0 deletions
+6
View File
@@ -406,6 +406,12 @@ func upgradeNode(n *tailcfg.Node) {
if n.AllowedIPs == nil {
n.AllowedIPs = slices.Clone(n.Addresses)
}
// Unsigned peers aren't covered by tailnet lock, so a (possibly malicious)
// control server must not grant them network access via advertised routes.
// Strip any AllowedIPs beyond their own addresses.
if n.UnsignedPeerAPIOnly && !slices.Equal(n.AllowedIPs, n.Addresses) {
n.AllowedIPs = slices.Clone(n.Addresses)
}
}
func (ms *mapSession) tryHandleIncrementally(res *tailcfg.MapResponse) bool {
+18
View File
@@ -1547,6 +1547,24 @@ func TestUpgradeNode(t *testing.T) {
in: &tailcfg.Node{Addresses: []netip.Prefix{a1, a2}, AllowedIPs: []netip.Prefix{}},
want: &tailcfg.Node{Addresses: []netip.Prefix{a1, a2}, AllowedIPs: []netip.Prefix{}},
},
{
// An unsigned peer is not covered by tailnet lock and must not carry advertised routes
name: "unsigned-peer-strips-extra-allowed-ips",
in: &tailcfg.Node{Addresses: []netip.Prefix{a1, a2}, AllowedIPs: []netip.Prefix{a1, a2, a3, a4}, UnsignedPeerAPIOnly: true},
want: &tailcfg.Node{Addresses: []netip.Prefix{a1, a2}, AllowedIPs: []netip.Prefix{a1, a2}, UnsignedPeerAPIOnly: true},
},
{
// An unsigned peer whose AllowedIPs already equal its Addresses is left untouched
name: "unsigned-peer-allowed-ips-equal-addresses",
in: &tailcfg.Node{Addresses: []netip.Prefix{a1, a2}, AllowedIPs: []netip.Prefix{a1, a2}, UnsignedPeerAPIOnly: true},
want: &tailcfg.Node{Addresses: []netip.Prefix{a1, a2}, AllowedIPs: []netip.Prefix{a1, a2}, UnsignedPeerAPIOnly: true},
},
{
// A signed peer keeps its advertised routes: the strip only applies to unsigned peers
name: "signed-peer-keeps-extra-allowed-ips",
in: &tailcfg.Node{Addresses: []netip.Prefix{a1, a2}, AllowedIPs: []netip.Prefix{a1, a2, a3, a4}},
want: &tailcfg.Node{Addresses: []netip.Prefix{a1, a2}, AllowedIPs: []netip.Prefix{a1, a2, a3, a4}},
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
+89
View File
@@ -8107,6 +8107,95 @@ func TestSrcCapPacketFilterUnsignedPeer(t *testing.T) {
}
}
// TestCapsGrantPacketFilterUnsignedPeer verifies that a CapGrant-style packet filter match
// (Srcs + Caps, no Dsts) whose broad Srcs covers an unsigned peer's AllowedIPs does NOT cause
// the packet filter to be discarded: a grant alone permits no traffic, so legitimate rules for
// signed peers must keep working.
func TestCapsGrantPacketFilterUnsignedPeer(t *testing.T) {
lb := newLocalBackendWithTestControl(t, false, func(tb testing.TB, opts controlclient.Options) controlclient.Client {
return newClient(tb, opts)
})
if err := lb.Start(ipn.Options{}); err != nil {
t.Fatalf("(*LocalBackend).Start(): %v", err)
}
var signedKey, unsignedKey key.NodePublic
must.Do(signedKey.UnmarshalText([]byte("nodekey:5c8f86d5fc70d924e55f02446165a5dae8f822994ad26bcf4b08fd841f9bf261")))
must.Do(unsignedKey.UnmarshalText([]byte("nodekey:6c8f86d5fc70d924e55f02446165a5dae8f822994ad26bcf4b08fd841f9bf262")))
controlClient := lb.cc.(*mockControl)
// Send a netmap with:
// - a broad CapGrant-style match (Srcs 0.0.0.0/0) covering both peers
// - a legitimate traffic rule for the signed peer
controlClient.send(sendOpt{nm: &netmap.NetworkMap{
SelfNode: (&tailcfg.Node{
Addresses: []netip.Prefix{netip.MustParsePrefix("1.1.1.1/32")},
}).View(),
Peers: []tailcfg.NodeView{
(&tailcfg.Node{
Addresses: []netip.Prefix{netip.MustParsePrefix("2.2.2.2/32")},
AllowedIPs: []netip.Prefix{netip.MustParsePrefix("2.2.2.2/32")},
ID: 2,
Key: signedKey,
}).View(),
(&tailcfg.Node{
Addresses: []netip.Prefix{netip.MustParsePrefix("3.3.3.3/32")},
AllowedIPs: []netip.Prefix{netip.MustParsePrefix("3.3.3.3/32")},
ID: 3,
Key: unsignedKey,
UnsignedPeerAPIOnly: true,
}).View(),
},
PacketFilter: []filtertype.Match{
{
// Broad grant covering both peers: must NOT trigger vetting
Srcs: []netip.Prefix{netip.MustParsePrefix("0.0.0.0/0")},
Caps: []filtertype.CapMatch{{
Dst: netip.MustParsePrefix("1.1.1.1/32"),
Cap: "cap-X",
}},
},
{
// Legitimate traffic rule for the signed peer
IPProto: views.SliceOf([]ipproto.Proto{ipproto.TCP}),
Srcs: []netip.Prefix{netip.MustParsePrefix("2.2.2.2/32")},
Dsts: []filtertype.NetPortRange{{
Net: netip.MustParsePrefix("1.1.1.1/32"),
Ports: filtertype.PortRange{First: 22, Last: 22},
}},
},
},
}})
f := lb.ForTest().GetFilter()
// The filter must be installed, not discarded: the signed peer's legitimate traffic rule accepts traffic
if res := f.Check(netip.MustParseAddr("2.2.2.2"), netip.MustParseAddr("1.1.1.1"), 22, ipproto.TCP); res != filter.Accept {
t.Errorf("Check(signed 2.2.2.2, ...) = %s, want %s (filter must not be discarded for a caps-only grant)", res, filter.Accept)
}
// The unsigned peer has no traffic rule, so its packets are dropped
if res := f.Check(netip.MustParseAddr("3.3.3.3"), netip.MustParseAddr("1.1.1.1"), 22, ipproto.TCP); !res.IsDrop() {
t.Errorf("Check(unsigned 3.3.3.3, ...) = %s, want drop", res)
}
// The unsigned peer is denied the granted capability at resolution time
if caps := lb.PeerCapsForIP(netip.MustParseAddr("3.3.3.3"), netip.MustParseAddr("1.1.1.1")); len(caps) != 0 {
t.Errorf("PeerCapsForIP(unsigned src) = %v, want empty", caps)
}
if caps := lb.PeerCaps(netip.MustParseAddr("3.3.3.3")); len(caps) != 0 {
t.Errorf("PeerCaps(unsigned src) = %v, want empty", caps)
}
// The signed peer keeps its grant: legitimate functionality is unaffected
if caps := lb.PeerCapsForIP(netip.MustParseAddr("2.2.2.2"), netip.MustParseAddr("1.1.1.1")); !caps.HasCapability("cap-X") {
t.Errorf("PeerCapsForIP(signed src) missing cap-X: %v", caps)
}
if caps := lb.PeerCaps(netip.MustParseAddr("2.2.2.2")); !caps.HasCapability("cap-X") {
t.Errorf("PeerCaps(signed src) missing cap-X: %v", caps)
}
}
func TestDisplayMessages(t *testing.T) {
b := newTestLocalBackend(t)
+23
View File
@@ -418,7 +418,24 @@ func (nb *nodeBackend) PeerCaps(src netip.Addr) tailcfg.PeerCapMap {
return nb.peerCapsLocked(src)
}
// srcIsUnsignedPeerLocked reports whether src is an address of a peer with
// UnsignedPeerAPIOnly set. Such peers are not covered by tailnet lock and must
// never be granted peer capabilities.
//
// nb.mu must be held before calling.
func (nb *nodeBackend) srcIsUnsignedPeerLocked(src netip.Addr) bool {
id, ok := nb.nodeByAddr[src]
if !ok {
return false
}
n, ok := nb.nodeByIDLocked(id)
return ok && n.UnsignedPeerAPIOnly()
}
func (nb *nodeBackend) peerCapsLocked(src netip.Addr) tailcfg.PeerCapMap {
if nb.srcIsUnsignedPeerLocked(src) {
return nil
}
if nb.netMap == nil {
return nil
}
@@ -447,6 +464,9 @@ func (nb *nodeBackend) peerCapsLocked(src netip.Addr) tailcfg.PeerCapMap {
func (nb *nodeBackend) PeerCapsForIP(src, dst netip.Addr) tailcfg.PeerCapMap {
nb.mu.Lock()
defer nb.mu.Unlock()
if nb.srcIsUnsignedPeerLocked(src) {
return nil
}
if nb.netMap == nil {
return nil
}
@@ -464,6 +484,9 @@ func (nb *nodeBackend) PeerCapsForIP(src, dst netip.Addr) tailcfg.PeerCapMap {
func (nb *nodeBackend) PeerCapsForService(src netip.Addr, svcName tailcfg.ServiceName) tailcfg.PeerCapMap {
nb.mu.Lock()
defer nb.mu.Unlock()
if nb.srcIsUnsignedPeerLocked(src) {
return nil
}
if nb.netMap == nil {
return nil
}
+5
View File
@@ -2965,6 +2965,11 @@ func nodeHasCap(filt *filter.Filter, src, dst tailcfg.NodeView, cap tailcfg.Peer
!dst.Valid() {
return false
}
if src.UnsignedPeerAPIOnly() {
// Unsigned peers aren't covered by tailnet lock and must never hold
// peer capabilities such as relay allocation/target.
return false
}
for _, srcPrefix := range src.Addresses().All() {
if !srcPrefix.IsSingleIP() {
continue
+21
View File
@@ -3821,6 +3821,9 @@ func Test_nodeHasCap(t *testing.T) {
nodeDOnlyIPv6 := nodeCOnlyIPv4.Clone()
nodeDOnlyIPv6.Addresses[0] = netip.MustParsePrefix("::2/128")
nodeCUnsigned := nodeCOnlyIPv4.Clone()
nodeCUnsigned.UnsignedPeerAPIOnly = true
tests := []struct {
name string
filt *filter.Filter
@@ -3937,6 +3940,24 @@ func Test_nodeHasCap(t *testing.T) {
cap: tailcfg.PeerCapabilityRelayTarget,
want: false,
},
{
name: "unsigned-src",
filt: filter.New([]filtertype.Match{
{
Srcs: []netip.Prefix{netip.MustParsePrefix("2.2.2.2/32")},
Caps: []filtertype.CapMatch{
{
Dst: netip.MustParsePrefix("1.1.1.1/32"),
Cap: tailcfg.PeerCapabilityRelayTarget,
},
},
},
}, nil, nil, nil, nil, nil),
src: nodeCUnsigned.View(),
dst: nodeAOnlyIPv4.View(),
cap: tailcfg.PeerCapabilityRelayTarget,
want: false,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {