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firewall: move conntrack check after cert+IP verification (#1779)
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@@ -916,6 +916,159 @@ func TestFirewall_DropIPSpoofing(t *testing.T) {
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assert.Equal(t, fw.Drop(p, true, &h1, cp, nil), ErrInvalidRemoteIP)
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}
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func TestFirewall_ConntrackSourceSpoofingAcrossPeers(t *testing.T) {
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l := test.NewLoggerWithOutput(&bytes.Buffer{})
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myVpnNetworksTable := new(bart.Lite)
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myVpnNetworksTable.Insert(netip.MustParsePrefix("192.0.2.1/24"))
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owner := &dummyCert{
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name: "owner",
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networks: []netip.Prefix{netip.MustParsePrefix("192.0.2.1/24")},
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}
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victim := &cert.CachedCertificate{
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Certificate: &dummyCert{
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name: "victim",
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networks: []netip.Prefix{netip.MustParsePrefix("192.0.2.2/24")},
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},
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}
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victimHI := HostInfo{
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ConnectionState: &ConnectionState{peerCert: victim},
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vpnAddrs: []netip.Addr{netip.MustParseAddr("192.0.2.2")},
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}
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victimHI.buildNetworks(myVpnNetworksTable, victim.Certificate)
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attacker := &cert.CachedCertificate{
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Certificate: &dummyCert{
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name: "attacker",
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networks: []netip.Prefix{netip.MustParsePrefix("192.0.2.3/24")},
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},
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}
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attackerHI := HostInfo{
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ConnectionState: &ConnectionState{peerCert: attacker},
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vpnAddrs: []netip.Addr{netip.MustParseAddr("192.0.2.3")},
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}
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attackerHI.buildNetworks(myVpnNetworksTable, attacker.Certificate)
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fw := NewFirewall(l, time.Second, time.Minute, time.Hour, owner)
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// Allow any inbound traffic that passes the cert / source-IP checks.
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require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"any"}, "", "", "", "", ""))
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cp := cert.NewCAPool()
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flow := firewall.Packet{
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LocalAddr: netip.MustParseAddr("192.0.2.1"),
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RemoteAddr: netip.MustParseAddr("192.0.2.2"),
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LocalPort: 443,
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RemotePort: 55000,
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Protocol: firewall.ProtoUDP,
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}
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require.NoError(t, fw.Drop(flow, true, &victimHI, cp, nil),
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"victim's own traffic from its own overlay IP must be allowed")
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unseen := flow
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unseen.RemotePort = 55001
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assert.Equal(t, ErrInvalidRemoteIP, fw.Drop(unseen, true, &attackerHI, cp, nil),
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"sanity: attacker forging victim's source IP must be rejected when no conntrack entry exists")
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got := fw.Drop(flow, true, &attackerHI, cp, nil)
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t.Logf("attacker replaying victim's 4-tuple: Drop returned %v (nil == packet ALLOWED == spoof succeeded)", got)
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assert.Equal(t, ErrInvalidRemoteIP, got,
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"SECURITY: attacker spoofed victim's overlay source IP (192.0.2.2) by reusing an existing conntrack 4-tuple; Drop returned %v instead of rejecting", got)
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}
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// BenchmarkFirewallDropConntrackHit measures Drop on an already-established flow
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// (a conntrack hit). This is the fast path that the source-IP<->cert binding
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// reordering adds work to, so it quantifies the cost of moving the address checks
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// ahead of the conntrack lookup. Cases:
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// - simple: peer cert has one address, no unsafe networks (h.networks == nil),
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// so the remote-address check is a single netip.Addr compare.
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// - complex: peer cert has unsafe networks (h.networks populated), so the
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// remote-address check is a BART lookup.
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// - noCache/localCache: whether a per-batch ConntrackCache is supplied, which in
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// the original code let the fast path skip straight past the address checks.
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func BenchmarkFirewallDropConntrackHit(b *testing.B) {
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l := test.NewLoggerWithOutput(&bytes.Buffer{})
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myVpnNetworksTable := new(bart.Lite)
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myVpnNetworksTable.Insert(netip.MustParsePrefix("192.0.2.1/24"))
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owner := &dummyCert{
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name: "owner",
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networks: []netip.Prefix{netip.MustParsePrefix("192.0.2.1/24")},
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}
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simpleCert := &cert.CachedCertificate{
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Certificate: &dummyCert{
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name: "simple",
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networks: []netip.Prefix{netip.MustParsePrefix("192.0.2.2/24")},
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},
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}
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simpleHost := &HostInfo{
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ConnectionState: &ConnectionState{peerCert: simpleCert},
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vpnAddrs: []netip.Addr{netip.MustParseAddr("192.0.2.2")},
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}
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simpleHost.buildNetworks(myVpnNetworksTable, simpleCert.Certificate)
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complexCert := &cert.CachedCertificate{
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Certificate: &dummyCert{
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name: "complex",
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networks: []netip.Prefix{netip.MustParsePrefix("192.0.2.2/24")},
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unsafeNetworks: []netip.Prefix{netip.MustParsePrefix("198.51.100.0/24")},
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},
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}
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complexHost := &HostInfo{
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ConnectionState: &ConnectionState{peerCert: complexCert},
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vpnAddrs: []netip.Addr{netip.MustParseAddr("192.0.2.2")},
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}
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complexHost.buildNetworks(myVpnNetworksTable, complexCert.Certificate)
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cp := cert.NewCAPool()
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flow := firewall.Packet{
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LocalAddr: netip.MustParseAddr("192.0.2.1"),
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RemoteAddr: netip.MustParseAddr("192.0.2.2"),
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LocalPort: 443,
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RemotePort: 55000,
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Protocol: firewall.ProtoUDP,
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}
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cases := []struct {
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name string
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host *HostInfo
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useCache bool
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}{
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{"simple/noCache", simpleHost, false},
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{"simple/localCache", simpleHost, true},
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{"complex/noCache", complexHost, false},
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{"complex/localCache", complexHost, true},
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}
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for _, tc := range cases {
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b.Run(tc.name, func(b *testing.B) {
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fw := NewFirewall(l, time.Second, time.Minute, time.Hour, owner)
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require.NoError(b, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"any"}, "", "", "", "", ""))
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// Establish the conntrack entry so every benchmarked Drop is a hit.
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require.NoError(b, fw.Drop(flow, true, tc.host, cp, nil))
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var cache firewall.ConntrackCache
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if tc.useCache {
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cache = firewall.ConntrackCache{}
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}
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b.ReportAllocs()
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b.ResetTimer()
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for i := 0; i < b.N; i++ {
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if err := fw.Drop(flow, true, tc.host, cp, cache); err != nil {
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b.Fatal(err)
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}
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}
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})
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}
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}
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func BenchmarkLookup(b *testing.B) {
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ml := func(m map[string]struct{}, a [][]string) {
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for n := 0; n < b.N; n++ {
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