firewall_test.go 46 KB

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  1. package nebula
  2. import (
  3. "bytes"
  4. "errors"
  5. "math"
  6. "net/netip"
  7. "testing"
  8. "time"
  9. "github.com/gaissmai/bart"
  10. "github.com/sirupsen/logrus"
  11. "github.com/slackhq/nebula/cert"
  12. "github.com/slackhq/nebula/config"
  13. "github.com/slackhq/nebula/firewall"
  14. "github.com/slackhq/nebula/test"
  15. "github.com/stretchr/testify/assert"
  16. "github.com/stretchr/testify/require"
  17. )
  18. func TestNewFirewall(t *testing.T) {
  19. l := test.NewLogger()
  20. c := &dummyCert{}
  21. fw := NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  22. conntrack := fw.Conntrack
  23. assert.NotNil(t, conntrack)
  24. assert.NotNil(t, conntrack.Conns)
  25. assert.NotNil(t, conntrack.TimerWheel)
  26. assert.NotNil(t, fw.InRules)
  27. assert.NotNil(t, fw.OutRules)
  28. assert.Equal(t, time.Second, fw.TCPTimeout)
  29. assert.Equal(t, time.Minute, fw.UDPTimeout)
  30. assert.Equal(t, time.Hour, fw.DefaultTimeout)
  31. assert.Equal(t, time.Hour, conntrack.TimerWheel.wheelDuration)
  32. assert.Equal(t, time.Hour, conntrack.TimerWheel.wheelDuration)
  33. assert.Equal(t, 3602, conntrack.TimerWheel.wheelLen)
  34. fw = NewFirewall(l, time.Second, time.Hour, time.Minute, c)
  35. assert.Equal(t, time.Hour, conntrack.TimerWheel.wheelDuration)
  36. assert.Equal(t, 3602, conntrack.TimerWheel.wheelLen)
  37. fw = NewFirewall(l, time.Hour, time.Second, time.Minute, c)
  38. assert.Equal(t, time.Hour, conntrack.TimerWheel.wheelDuration)
  39. assert.Equal(t, 3602, conntrack.TimerWheel.wheelLen)
  40. fw = NewFirewall(l, time.Hour, time.Minute, time.Second, c)
  41. assert.Equal(t, time.Hour, conntrack.TimerWheel.wheelDuration)
  42. assert.Equal(t, 3602, conntrack.TimerWheel.wheelLen)
  43. fw = NewFirewall(l, time.Minute, time.Hour, time.Second, c)
  44. assert.Equal(t, time.Hour, conntrack.TimerWheel.wheelDuration)
  45. assert.Equal(t, 3602, conntrack.TimerWheel.wheelLen)
  46. fw = NewFirewall(l, time.Minute, time.Second, time.Hour, c)
  47. assert.Equal(t, time.Hour, conntrack.TimerWheel.wheelDuration)
  48. assert.Equal(t, 3602, conntrack.TimerWheel.wheelLen)
  49. }
  50. func TestFirewall_AddRule(t *testing.T) {
  51. l := test.NewLogger()
  52. ob := &bytes.Buffer{}
  53. l.SetOutput(ob)
  54. c := &dummyCert{}
  55. fw := NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  56. assert.NotNil(t, fw.InRules)
  57. assert.NotNil(t, fw.OutRules)
  58. ti, err := netip.ParsePrefix("1.2.3.4/32")
  59. require.NoError(t, err)
  60. ti6, err := netip.ParsePrefix("fd12::34/128")
  61. require.NoError(t, err)
  62. require.NoError(t, fw.AddRule(true, firewall.ProtoTCP, 1, 1, []string{}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  63. // An empty rule is any
  64. assert.True(t, fw.InRules.TCP[1].Any.Any.Any)
  65. assert.Empty(t, fw.InRules.TCP[1].Any.Groups)
  66. assert.Empty(t, fw.InRules.TCP[1].Any.Hosts)
  67. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  68. require.NoError(t, fw.AddRule(true, firewall.ProtoUDP, 1, 1, []string{"g1"}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  69. assert.Nil(t, fw.InRules.UDP[1].Any.Any)
  70. assert.Contains(t, fw.InRules.UDP[1].Any.Groups[0].Groups, "g1")
  71. assert.Empty(t, fw.InRules.UDP[1].Any.Hosts)
  72. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  73. require.NoError(t, fw.AddRule(true, firewall.ProtoICMP, 1, 1, []string{}, "h1", netip.Prefix{}, netip.Prefix{}, "", ""))
  74. assert.Nil(t, fw.InRules.ICMP[1].Any.Any)
  75. assert.Empty(t, fw.InRules.ICMP[1].Any.Groups)
  76. assert.Contains(t, fw.InRules.ICMP[1].Any.Hosts, "h1")
  77. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  78. require.NoError(t, fw.AddRule(false, firewall.ProtoAny, 1, 1, []string{}, "", ti, netip.Prefix{}, "", ""))
  79. assert.Nil(t, fw.OutRules.AnyProto[1].Any.Any)
  80. _, ok := fw.OutRules.AnyProto[1].Any.CIDR.Get(ti)
  81. assert.True(t, ok)
  82. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  83. require.NoError(t, fw.AddRule(false, firewall.ProtoAny, 1, 1, []string{}, "", ti6, netip.Prefix{}, "", ""))
  84. assert.Nil(t, fw.OutRules.AnyProto[1].Any.Any)
  85. _, ok = fw.OutRules.AnyProto[1].Any.CIDR.Get(ti6)
  86. assert.True(t, ok)
  87. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  88. require.NoError(t, fw.AddRule(false, firewall.ProtoAny, 1, 1, []string{}, "", netip.Prefix{}, ti, "", ""))
  89. assert.NotNil(t, fw.OutRules.AnyProto[1].Any.Any)
  90. _, ok = fw.OutRules.AnyProto[1].Any.Any.LocalCIDR.Get(ti)
  91. assert.True(t, ok)
  92. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  93. require.NoError(t, fw.AddRule(false, firewall.ProtoAny, 1, 1, []string{}, "", netip.Prefix{}, ti6, "", ""))
  94. assert.NotNil(t, fw.OutRules.AnyProto[1].Any.Any)
  95. _, ok = fw.OutRules.AnyProto[1].Any.Any.LocalCIDR.Get(ti6)
  96. assert.True(t, ok)
  97. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  98. require.NoError(t, fw.AddRule(true, firewall.ProtoUDP, 1, 1, []string{"g1"}, "", netip.Prefix{}, netip.Prefix{}, "ca-name", ""))
  99. assert.Contains(t, fw.InRules.UDP[1].CANames, "ca-name")
  100. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  101. require.NoError(t, fw.AddRule(true, firewall.ProtoUDP, 1, 1, []string{"g1"}, "", netip.Prefix{}, netip.Prefix{}, "", "ca-sha"))
  102. assert.Contains(t, fw.InRules.UDP[1].CAShas, "ca-sha")
  103. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  104. require.NoError(t, fw.AddRule(false, firewall.ProtoAny, 0, 0, []string{}, "any", netip.Prefix{}, netip.Prefix{}, "", ""))
  105. assert.True(t, fw.OutRules.AnyProto[0].Any.Any.Any)
  106. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  107. anyIp, err := netip.ParsePrefix("0.0.0.0/0")
  108. require.NoError(t, err)
  109. require.NoError(t, fw.AddRule(false, firewall.ProtoAny, 0, 0, []string{}, "", anyIp, netip.Prefix{}, "", ""))
  110. assert.True(t, fw.OutRules.AnyProto[0].Any.Any.Any)
  111. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  112. anyIp6, err := netip.ParsePrefix("::/0")
  113. require.NoError(t, err)
  114. require.NoError(t, fw.AddRule(false, firewall.ProtoAny, 0, 0, []string{}, "", anyIp6, netip.Prefix{}, "", ""))
  115. assert.True(t, fw.OutRules.AnyProto[0].Any.Any.Any)
  116. // Test error conditions
  117. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c)
  118. require.Error(t, fw.AddRule(true, math.MaxUint8, 0, 0, []string{}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  119. require.Error(t, fw.AddRule(true, firewall.ProtoAny, 10, 0, []string{}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  120. }
  121. func TestFirewall_Drop(t *testing.T) {
  122. l := test.NewLogger()
  123. ob := &bytes.Buffer{}
  124. l.SetOutput(ob)
  125. myVpnNetworksTable := new(bart.Lite)
  126. myVpnNetworksTable.Insert(netip.MustParsePrefix("1.1.1.1/8"))
  127. p := firewall.Packet{
  128. LocalAddr: netip.MustParseAddr("1.2.3.4"),
  129. RemoteAddr: netip.MustParseAddr("1.2.3.4"),
  130. LocalPort: 10,
  131. RemotePort: 90,
  132. Protocol: firewall.ProtoUDP,
  133. Fragment: false,
  134. }
  135. c := dummyCert{
  136. name: "host1",
  137. networks: []netip.Prefix{netip.MustParsePrefix("1.2.3.4/24")},
  138. groups: []string{"default-group"},
  139. issuer: "signer-shasum",
  140. }
  141. h := HostInfo{
  142. ConnectionState: &ConnectionState{
  143. peerCert: &cert.CachedCertificate{
  144. Certificate: &c,
  145. InvertedGroups: map[string]struct{}{"default-group": {}},
  146. },
  147. },
  148. vpnAddrs: []netip.Addr{netip.MustParseAddr("1.2.3.4")},
  149. }
  150. h.buildNetworks(myVpnNetworksTable, c.networks, c.unsafeNetworks)
  151. fw := NewFirewall(l, time.Second, time.Minute, time.Hour, &c)
  152. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"any"}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  153. cp := cert.NewCAPool()
  154. // Drop outbound
  155. assert.Equal(t, ErrNoMatchingRule, fw.Drop(p, false, &h, cp, nil))
  156. // Allow inbound
  157. resetConntrack(fw)
  158. require.NoError(t, fw.Drop(p, true, &h, cp, nil))
  159. // Allow outbound because conntrack
  160. require.NoError(t, fw.Drop(p, false, &h, cp, nil))
  161. // test remote mismatch
  162. oldRemote := p.RemoteAddr
  163. p.RemoteAddr = netip.MustParseAddr("1.2.3.10")
  164. assert.Equal(t, fw.Drop(p, false, &h, cp, nil), ErrInvalidRemoteIP)
  165. p.RemoteAddr = oldRemote
  166. // ensure signer doesn't get in the way of group checks
  167. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, &c)
  168. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"nope"}, "", netip.Prefix{}, netip.Prefix{}, "", "signer-shasum"))
  169. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"default-group"}, "", netip.Prefix{}, netip.Prefix{}, "", "signer-shasum-bad"))
  170. assert.Equal(t, fw.Drop(p, true, &h, cp, nil), ErrNoMatchingRule)
  171. // test caSha doesn't drop on match
  172. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, &c)
  173. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"nope"}, "", netip.Prefix{}, netip.Prefix{}, "", "signer-shasum-bad"))
  174. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"default-group"}, "", netip.Prefix{}, netip.Prefix{}, "", "signer-shasum"))
  175. require.NoError(t, fw.Drop(p, true, &h, cp, nil))
  176. // ensure ca name doesn't get in the way of group checks
  177. cp.CAs["signer-shasum"] = &cert.CachedCertificate{Certificate: &dummyCert{name: "ca-good"}}
  178. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, &c)
  179. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"nope"}, "", netip.Prefix{}, netip.Prefix{}, "ca-good", ""))
  180. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"default-group"}, "", netip.Prefix{}, netip.Prefix{}, "ca-good-bad", ""))
  181. assert.Equal(t, fw.Drop(p, true, &h, cp, nil), ErrNoMatchingRule)
  182. // test caName doesn't drop on match
  183. cp.CAs["signer-shasum"] = &cert.CachedCertificate{Certificate: &dummyCert{name: "ca-good"}}
  184. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, &c)
  185. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"nope"}, "", netip.Prefix{}, netip.Prefix{}, "ca-good-bad", ""))
  186. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"default-group"}, "", netip.Prefix{}, netip.Prefix{}, "ca-good", ""))
  187. require.NoError(t, fw.Drop(p, true, &h, cp, nil))
  188. }
  189. func TestFirewall_DropV6(t *testing.T) {
  190. l := test.NewLogger()
  191. ob := &bytes.Buffer{}
  192. l.SetOutput(ob)
  193. myVpnNetworksTable := new(bart.Lite)
  194. myVpnNetworksTable.Insert(netip.MustParsePrefix("fd00::/7"))
  195. p := firewall.Packet{
  196. LocalAddr: netip.MustParseAddr("fd12::34"),
  197. RemoteAddr: netip.MustParseAddr("fd12::34"),
  198. LocalPort: 10,
  199. RemotePort: 90,
  200. Protocol: firewall.ProtoUDP,
  201. Fragment: false,
  202. }
  203. c := dummyCert{
  204. name: "host1",
  205. networks: []netip.Prefix{netip.MustParsePrefix("fd12::34/120")},
  206. groups: []string{"default-group"},
  207. issuer: "signer-shasum",
  208. }
  209. h := HostInfo{
  210. ConnectionState: &ConnectionState{
  211. peerCert: &cert.CachedCertificate{
  212. Certificate: &c,
  213. InvertedGroups: map[string]struct{}{"default-group": {}},
  214. },
  215. },
  216. vpnAddrs: []netip.Addr{netip.MustParseAddr("fd12::34")},
  217. }
  218. h.buildNetworks(myVpnNetworksTable, c.networks, c.unsafeNetworks)
  219. fw := NewFirewall(l, time.Second, time.Minute, time.Hour, &c)
  220. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"any"}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  221. cp := cert.NewCAPool()
  222. // Drop outbound
  223. assert.Equal(t, ErrNoMatchingRule, fw.Drop(p, false, &h, cp, nil))
  224. // Allow inbound
  225. resetConntrack(fw)
  226. require.NoError(t, fw.Drop(p, true, &h, cp, nil))
  227. // Allow outbound because conntrack
  228. require.NoError(t, fw.Drop(p, false, &h, cp, nil))
  229. // test remote mismatch
  230. oldRemote := p.RemoteAddr
  231. p.RemoteAddr = netip.MustParseAddr("fd12::56")
  232. assert.Equal(t, fw.Drop(p, false, &h, cp, nil), ErrInvalidRemoteIP)
  233. p.RemoteAddr = oldRemote
  234. // ensure signer doesn't get in the way of group checks
  235. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, &c)
  236. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"nope"}, "", netip.Prefix{}, netip.Prefix{}, "", "signer-shasum"))
  237. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"default-group"}, "", netip.Prefix{}, netip.Prefix{}, "", "signer-shasum-bad"))
  238. assert.Equal(t, fw.Drop(p, true, &h, cp, nil), ErrNoMatchingRule)
  239. // test caSha doesn't drop on match
  240. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, &c)
  241. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"nope"}, "", netip.Prefix{}, netip.Prefix{}, "", "signer-shasum-bad"))
  242. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"default-group"}, "", netip.Prefix{}, netip.Prefix{}, "", "signer-shasum"))
  243. require.NoError(t, fw.Drop(p, true, &h, cp, nil))
  244. // ensure ca name doesn't get in the way of group checks
  245. cp.CAs["signer-shasum"] = &cert.CachedCertificate{Certificate: &dummyCert{name: "ca-good"}}
  246. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, &c)
  247. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"nope"}, "", netip.Prefix{}, netip.Prefix{}, "ca-good", ""))
  248. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"default-group"}, "", netip.Prefix{}, netip.Prefix{}, "ca-good-bad", ""))
  249. assert.Equal(t, fw.Drop(p, true, &h, cp, nil), ErrNoMatchingRule)
  250. // test caName doesn't drop on match
  251. cp.CAs["signer-shasum"] = &cert.CachedCertificate{Certificate: &dummyCert{name: "ca-good"}}
  252. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, &c)
  253. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"nope"}, "", netip.Prefix{}, netip.Prefix{}, "ca-good-bad", ""))
  254. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"default-group"}, "", netip.Prefix{}, netip.Prefix{}, "ca-good", ""))
  255. require.NoError(t, fw.Drop(p, true, &h, cp, nil))
  256. }
  257. func BenchmarkFirewallTable_match(b *testing.B) {
  258. f := &Firewall{}
  259. ft := FirewallTable{
  260. TCP: firewallPort{},
  261. }
  262. pfix := netip.MustParsePrefix("172.1.1.1/32")
  263. _ = ft.TCP.addRule(f, 10, 10, []string{"good-group"}, "good-host", pfix, netip.Prefix{}, "", "")
  264. _ = ft.TCP.addRule(f, 100, 100, []string{"good-group"}, "good-host", netip.Prefix{}, pfix, "", "")
  265. pfix6 := netip.MustParsePrefix("fd11::11/128")
  266. _ = ft.TCP.addRule(f, 10, 10, []string{"good-group"}, "good-host", pfix6, netip.Prefix{}, "", "")
  267. _ = ft.TCP.addRule(f, 100, 100, []string{"good-group"}, "good-host", netip.Prefix{}, pfix6, "", "")
  268. cp := cert.NewCAPool()
  269. b.Run("fail on proto", func(b *testing.B) {
  270. // This benchmark is showing us the cost of failing to match the protocol
  271. c := &cert.CachedCertificate{
  272. Certificate: &dummyCert{},
  273. }
  274. for n := 0; n < b.N; n++ {
  275. assert.False(b, ft.match(firewall.Packet{Protocol: firewall.ProtoUDP}, true, c, cp))
  276. }
  277. })
  278. b.Run("pass proto, fail on port", func(b *testing.B) {
  279. // This benchmark is showing us the cost of matching a specific protocol but failing to match the port
  280. c := &cert.CachedCertificate{
  281. Certificate: &dummyCert{},
  282. }
  283. for n := 0; n < b.N; n++ {
  284. assert.False(b, ft.match(firewall.Packet{Protocol: firewall.ProtoTCP, LocalPort: 1}, true, c, cp))
  285. }
  286. })
  287. b.Run("pass proto, port, fail on local CIDR", func(b *testing.B) {
  288. c := &cert.CachedCertificate{
  289. Certificate: &dummyCert{},
  290. }
  291. ip := netip.MustParsePrefix("9.254.254.254/32")
  292. for n := 0; n < b.N; n++ {
  293. assert.False(b, ft.match(firewall.Packet{Protocol: firewall.ProtoTCP, LocalPort: 100, LocalAddr: ip.Addr()}, true, c, cp))
  294. }
  295. })
  296. b.Run("pass proto, port, fail on local CIDRv6", func(b *testing.B) {
  297. c := &cert.CachedCertificate{
  298. Certificate: &dummyCert{},
  299. }
  300. ip := netip.MustParsePrefix("fd99::99/128")
  301. for n := 0; n < b.N; n++ {
  302. assert.False(b, ft.match(firewall.Packet{Protocol: firewall.ProtoTCP, LocalPort: 100, LocalAddr: ip.Addr()}, true, c, cp))
  303. }
  304. })
  305. b.Run("pass proto, port, any local CIDR, fail all group, name, and cidr", func(b *testing.B) {
  306. c := &cert.CachedCertificate{
  307. Certificate: &dummyCert{
  308. name: "nope",
  309. networks: []netip.Prefix{netip.MustParsePrefix("9.254.254.245/32")},
  310. },
  311. InvertedGroups: map[string]struct{}{"nope": {}},
  312. }
  313. for n := 0; n < b.N; n++ {
  314. assert.False(b, ft.match(firewall.Packet{Protocol: firewall.ProtoTCP, LocalPort: 10}, true, c, cp))
  315. }
  316. })
  317. b.Run("pass proto, port, any local CIDRv6, fail all group, name, and cidr", func(b *testing.B) {
  318. c := &cert.CachedCertificate{
  319. Certificate: &dummyCert{
  320. name: "nope",
  321. networks: []netip.Prefix{netip.MustParsePrefix("fd99::99/128")},
  322. },
  323. InvertedGroups: map[string]struct{}{"nope": {}},
  324. }
  325. for n := 0; n < b.N; n++ {
  326. assert.False(b, ft.match(firewall.Packet{Protocol: firewall.ProtoTCP, LocalPort: 10}, true, c, cp))
  327. }
  328. })
  329. b.Run("pass proto, port, specific local CIDR, fail all group, name, and cidr", func(b *testing.B) {
  330. c := &cert.CachedCertificate{
  331. Certificate: &dummyCert{
  332. name: "nope",
  333. networks: []netip.Prefix{netip.MustParsePrefix("9.254.254.245/32")},
  334. },
  335. InvertedGroups: map[string]struct{}{"nope": {}},
  336. }
  337. for n := 0; n < b.N; n++ {
  338. assert.False(b, ft.match(firewall.Packet{Protocol: firewall.ProtoTCP, LocalPort: 100, LocalAddr: pfix.Addr()}, true, c, cp))
  339. }
  340. })
  341. b.Run("pass proto, port, specific local CIDRv6, fail all group, name, and cidr", func(b *testing.B) {
  342. c := &cert.CachedCertificate{
  343. Certificate: &dummyCert{
  344. name: "nope",
  345. networks: []netip.Prefix{netip.MustParsePrefix("fd99::99/128")},
  346. },
  347. InvertedGroups: map[string]struct{}{"nope": {}},
  348. }
  349. for n := 0; n < b.N; n++ {
  350. assert.False(b, ft.match(firewall.Packet{Protocol: firewall.ProtoTCP, LocalPort: 100, LocalAddr: pfix6.Addr()}, true, c, cp))
  351. }
  352. })
  353. b.Run("pass on group on any local cidr", func(b *testing.B) {
  354. c := &cert.CachedCertificate{
  355. Certificate: &dummyCert{
  356. name: "nope",
  357. },
  358. InvertedGroups: map[string]struct{}{"good-group": {}},
  359. }
  360. for n := 0; n < b.N; n++ {
  361. assert.True(b, ft.match(firewall.Packet{Protocol: firewall.ProtoTCP, LocalPort: 10}, true, c, cp))
  362. }
  363. })
  364. b.Run("pass on group on specific local cidr", func(b *testing.B) {
  365. c := &cert.CachedCertificate{
  366. Certificate: &dummyCert{
  367. name: "nope",
  368. },
  369. InvertedGroups: map[string]struct{}{"good-group": {}},
  370. }
  371. for n := 0; n < b.N; n++ {
  372. assert.True(b, ft.match(firewall.Packet{Protocol: firewall.ProtoTCP, LocalPort: 100, LocalAddr: pfix.Addr()}, true, c, cp))
  373. }
  374. })
  375. b.Run("pass on group on specific local cidr6", func(b *testing.B) {
  376. c := &cert.CachedCertificate{
  377. Certificate: &dummyCert{
  378. name: "nope",
  379. },
  380. InvertedGroups: map[string]struct{}{"good-group": {}},
  381. }
  382. for n := 0; n < b.N; n++ {
  383. assert.True(b, ft.match(firewall.Packet{Protocol: firewall.ProtoTCP, LocalPort: 100, LocalAddr: pfix6.Addr()}, true, c, cp))
  384. }
  385. })
  386. b.Run("pass on name", func(b *testing.B) {
  387. c := &cert.CachedCertificate{
  388. Certificate: &dummyCert{
  389. name: "good-host",
  390. },
  391. InvertedGroups: map[string]struct{}{"nope": {}},
  392. }
  393. for n := 0; n < b.N; n++ {
  394. ft.match(firewall.Packet{Protocol: firewall.ProtoTCP, LocalPort: 10}, true, c, cp)
  395. }
  396. })
  397. }
  398. func TestFirewall_Drop2(t *testing.T) {
  399. l := test.NewLogger()
  400. ob := &bytes.Buffer{}
  401. l.SetOutput(ob)
  402. myVpnNetworksTable := new(bart.Lite)
  403. myVpnNetworksTable.Insert(netip.MustParsePrefix("1.1.1.1/8"))
  404. p := firewall.Packet{
  405. LocalAddr: netip.MustParseAddr("1.2.3.4"),
  406. RemoteAddr: netip.MustParseAddr("1.2.3.4"),
  407. LocalPort: 10,
  408. RemotePort: 90,
  409. Protocol: firewall.ProtoUDP,
  410. Fragment: false,
  411. }
  412. network := netip.MustParsePrefix("1.2.3.4/24")
  413. c := cert.CachedCertificate{
  414. Certificate: &dummyCert{
  415. name: "host1",
  416. networks: []netip.Prefix{network},
  417. },
  418. InvertedGroups: map[string]struct{}{"default-group": {}, "test-group": {}},
  419. }
  420. h := HostInfo{
  421. ConnectionState: &ConnectionState{
  422. peerCert: &c,
  423. },
  424. vpnAddrs: []netip.Addr{network.Addr()},
  425. }
  426. h.buildNetworks(myVpnNetworksTable, c.Certificate.Networks(), c.Certificate.UnsafeNetworks())
  427. c1 := cert.CachedCertificate{
  428. Certificate: &dummyCert{
  429. name: "host1",
  430. networks: []netip.Prefix{network},
  431. },
  432. InvertedGroups: map[string]struct{}{"default-group": {}, "test-group-not": {}},
  433. }
  434. h1 := HostInfo{
  435. vpnAddrs: []netip.Addr{network.Addr()},
  436. ConnectionState: &ConnectionState{
  437. peerCert: &c1,
  438. },
  439. }
  440. h1.buildNetworks(myVpnNetworksTable, c1.Certificate.Networks(), c1.Certificate.UnsafeNetworks())
  441. fw := NewFirewall(l, time.Second, time.Minute, time.Hour, c.Certificate)
  442. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"default-group", "test-group"}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  443. cp := cert.NewCAPool()
  444. // h1/c1 lacks the proper groups
  445. require.ErrorIs(t, fw.Drop(p, true, &h1, cp, nil), ErrNoMatchingRule)
  446. // c has the proper groups
  447. resetConntrack(fw)
  448. require.NoError(t, fw.Drop(p, true, &h, cp, nil))
  449. }
  450. func TestFirewall_Drop3(t *testing.T) {
  451. l := test.NewLogger()
  452. ob := &bytes.Buffer{}
  453. l.SetOutput(ob)
  454. myVpnNetworksTable := new(bart.Lite)
  455. myVpnNetworksTable.Insert(netip.MustParsePrefix("1.1.1.1/8"))
  456. p := firewall.Packet{
  457. LocalAddr: netip.MustParseAddr("1.2.3.4"),
  458. RemoteAddr: netip.MustParseAddr("1.2.3.4"),
  459. LocalPort: 1,
  460. RemotePort: 1,
  461. Protocol: firewall.ProtoUDP,
  462. Fragment: false,
  463. }
  464. network := netip.MustParsePrefix("1.2.3.4/24")
  465. c := cert.CachedCertificate{
  466. Certificate: &dummyCert{
  467. name: "host-owner",
  468. networks: []netip.Prefix{network},
  469. },
  470. }
  471. c1 := cert.CachedCertificate{
  472. Certificate: &dummyCert{
  473. name: "host1",
  474. networks: []netip.Prefix{network},
  475. issuer: "signer-sha-bad",
  476. },
  477. }
  478. h1 := HostInfo{
  479. ConnectionState: &ConnectionState{
  480. peerCert: &c1,
  481. },
  482. vpnAddrs: []netip.Addr{network.Addr()},
  483. }
  484. h1.buildNetworks(myVpnNetworksTable, c1.Certificate.Networks(), c1.Certificate.UnsafeNetworks())
  485. c2 := cert.CachedCertificate{
  486. Certificate: &dummyCert{
  487. name: "host2",
  488. networks: []netip.Prefix{network},
  489. issuer: "signer-sha",
  490. },
  491. }
  492. h2 := HostInfo{
  493. ConnectionState: &ConnectionState{
  494. peerCert: &c2,
  495. },
  496. vpnAddrs: []netip.Addr{network.Addr()},
  497. }
  498. h2.buildNetworks(myVpnNetworksTable, c2.Certificate.Networks(), c2.Certificate.UnsafeNetworks())
  499. c3 := cert.CachedCertificate{
  500. Certificate: &dummyCert{
  501. name: "host3",
  502. networks: []netip.Prefix{network},
  503. issuer: "signer-sha-bad",
  504. },
  505. }
  506. h3 := HostInfo{
  507. ConnectionState: &ConnectionState{
  508. peerCert: &c3,
  509. },
  510. vpnAddrs: []netip.Addr{network.Addr()},
  511. }
  512. h3.buildNetworks(myVpnNetworksTable, c3.Certificate.Networks(), c3.Certificate.UnsafeNetworks())
  513. fw := NewFirewall(l, time.Second, time.Minute, time.Hour, c.Certificate)
  514. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 1, 1, []string{}, "host1", netip.Prefix{}, netip.Prefix{}, "", ""))
  515. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 1, 1, []string{}, "", netip.Prefix{}, netip.Prefix{}, "", "signer-sha"))
  516. cp := cert.NewCAPool()
  517. // c1 should pass because host match
  518. require.NoError(t, fw.Drop(p, true, &h1, cp, nil))
  519. // c2 should pass because ca sha match
  520. resetConntrack(fw)
  521. require.NoError(t, fw.Drop(p, true, &h2, cp, nil))
  522. // c3 should fail because no match
  523. resetConntrack(fw)
  524. assert.Equal(t, fw.Drop(p, true, &h3, cp, nil), ErrNoMatchingRule)
  525. // Test a remote address match
  526. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c.Certificate)
  527. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 1, 1, []string{}, "", netip.MustParsePrefix("1.2.3.4/24"), netip.Prefix{}, "", ""))
  528. require.NoError(t, fw.Drop(p, true, &h1, cp, nil))
  529. }
  530. func TestFirewall_Drop3V6(t *testing.T) {
  531. l := test.NewLogger()
  532. ob := &bytes.Buffer{}
  533. l.SetOutput(ob)
  534. myVpnNetworksTable := new(bart.Lite)
  535. myVpnNetworksTable.Insert(netip.MustParsePrefix("fd00::/7"))
  536. p := firewall.Packet{
  537. LocalAddr: netip.MustParseAddr("fd12::34"),
  538. RemoteAddr: netip.MustParseAddr("fd12::34"),
  539. LocalPort: 1,
  540. RemotePort: 1,
  541. Protocol: firewall.ProtoUDP,
  542. Fragment: false,
  543. }
  544. network := netip.MustParsePrefix("fd12::34/120")
  545. c := cert.CachedCertificate{
  546. Certificate: &dummyCert{
  547. name: "host-owner",
  548. networks: []netip.Prefix{network},
  549. },
  550. }
  551. h := HostInfo{
  552. ConnectionState: &ConnectionState{
  553. peerCert: &c,
  554. },
  555. vpnAddrs: []netip.Addr{network.Addr()},
  556. }
  557. h.buildNetworks(myVpnNetworksTable, c.Certificate.Networks(), c.Certificate.UnsafeNetworks())
  558. // Test a remote address match
  559. fw := NewFirewall(l, time.Second, time.Minute, time.Hour, c.Certificate)
  560. cp := cert.NewCAPool()
  561. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 1, 1, []string{}, "", netip.MustParsePrefix("fd12::34/120"), netip.Prefix{}, "", ""))
  562. require.NoError(t, fw.Drop(p, true, &h, cp, nil))
  563. }
  564. func TestFirewall_DropConntrackReload(t *testing.T) {
  565. l := test.NewLogger()
  566. ob := &bytes.Buffer{}
  567. l.SetOutput(ob)
  568. myVpnNetworksTable := new(bart.Lite)
  569. myVpnNetworksTable.Insert(netip.MustParsePrefix("1.1.1.1/8"))
  570. p := firewall.Packet{
  571. LocalAddr: netip.MustParseAddr("1.2.3.4"),
  572. RemoteAddr: netip.MustParseAddr("1.2.3.4"),
  573. LocalPort: 10,
  574. RemotePort: 90,
  575. Protocol: firewall.ProtoUDP,
  576. Fragment: false,
  577. }
  578. network := netip.MustParsePrefix("1.2.3.4/24")
  579. c := cert.CachedCertificate{
  580. Certificate: &dummyCert{
  581. name: "host1",
  582. networks: []netip.Prefix{network},
  583. groups: []string{"default-group"},
  584. issuer: "signer-shasum",
  585. },
  586. InvertedGroups: map[string]struct{}{"default-group": {}},
  587. }
  588. h := HostInfo{
  589. ConnectionState: &ConnectionState{
  590. peerCert: &c,
  591. },
  592. vpnAddrs: []netip.Addr{network.Addr()},
  593. }
  594. h.buildNetworks(myVpnNetworksTable, c.Certificate.Networks(), c.Certificate.UnsafeNetworks())
  595. fw := NewFirewall(l, time.Second, time.Minute, time.Hour, c.Certificate)
  596. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"any"}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  597. cp := cert.NewCAPool()
  598. // Drop outbound
  599. assert.Equal(t, fw.Drop(p, false, &h, cp, nil), ErrNoMatchingRule)
  600. // Allow inbound
  601. resetConntrack(fw)
  602. require.NoError(t, fw.Drop(p, true, &h, cp, nil))
  603. // Allow outbound because conntrack
  604. require.NoError(t, fw.Drop(p, false, &h, cp, nil))
  605. oldFw := fw
  606. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c.Certificate)
  607. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 10, 10, []string{"any"}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  608. fw.Conntrack = oldFw.Conntrack
  609. fw.rulesVersion = oldFw.rulesVersion + 1
  610. // Allow outbound because conntrack and new rules allow port 10
  611. require.NoError(t, fw.Drop(p, false, &h, cp, nil))
  612. oldFw = fw
  613. fw = NewFirewall(l, time.Second, time.Minute, time.Hour, c.Certificate)
  614. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 11, 11, []string{"any"}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  615. fw.Conntrack = oldFw.Conntrack
  616. fw.rulesVersion = oldFw.rulesVersion + 1
  617. // Drop outbound because conntrack doesn't match new ruleset
  618. assert.Equal(t, fw.Drop(p, false, &h, cp, nil), ErrNoMatchingRule)
  619. }
  620. func TestFirewall_DropIPSpoofing(t *testing.T) {
  621. l := test.NewLogger()
  622. ob := &bytes.Buffer{}
  623. l.SetOutput(ob)
  624. myVpnNetworksTable := new(bart.Lite)
  625. myVpnNetworksTable.Insert(netip.MustParsePrefix("192.0.2.1/24"))
  626. c := cert.CachedCertificate{
  627. Certificate: &dummyCert{
  628. name: "host-owner",
  629. networks: []netip.Prefix{netip.MustParsePrefix("192.0.2.1/24")},
  630. },
  631. }
  632. c1 := cert.CachedCertificate{
  633. Certificate: &dummyCert{
  634. name: "host",
  635. networks: []netip.Prefix{netip.MustParsePrefix("192.0.2.2/24")},
  636. unsafeNetworks: []netip.Prefix{netip.MustParsePrefix("198.51.100.0/24")},
  637. },
  638. }
  639. h1 := HostInfo{
  640. ConnectionState: &ConnectionState{
  641. peerCert: &c1,
  642. },
  643. vpnAddrs: []netip.Addr{c1.Certificate.Networks()[0].Addr()},
  644. }
  645. h1.buildNetworks(myVpnNetworksTable, c1.Certificate.Networks(), c1.Certificate.UnsafeNetworks())
  646. fw := NewFirewall(l, time.Second, time.Minute, time.Hour, c.Certificate)
  647. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 1, 1, []string{}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  648. cp := cert.NewCAPool()
  649. // Packet spoofed by `c1`. Note that the remote addr is not a valid one.
  650. p := firewall.Packet{
  651. LocalAddr: netip.MustParseAddr("192.0.2.1"),
  652. RemoteAddr: netip.MustParseAddr("192.0.2.3"),
  653. LocalPort: 1,
  654. RemotePort: 1,
  655. Protocol: firewall.ProtoUDP,
  656. Fragment: false,
  657. }
  658. assert.Equal(t, fw.Drop(p, true, &h1, cp, nil), ErrInvalidRemoteIP)
  659. }
  660. func BenchmarkLookup(b *testing.B) {
  661. ml := func(m map[string]struct{}, a [][]string) {
  662. for n := 0; n < b.N; n++ {
  663. for _, sg := range a {
  664. found := false
  665. for _, g := range sg {
  666. if _, ok := m[g]; !ok {
  667. found = false
  668. break
  669. }
  670. found = true
  671. }
  672. if found {
  673. return
  674. }
  675. }
  676. }
  677. }
  678. b.Run("array to map best", func(b *testing.B) {
  679. m := map[string]struct{}{
  680. "1ne": {},
  681. "2wo": {},
  682. "3hr": {},
  683. "4ou": {},
  684. "5iv": {},
  685. "6ix": {},
  686. }
  687. a := [][]string{
  688. {"1ne", "2wo", "3hr", "4ou", "5iv", "6ix"},
  689. {"one", "2wo", "3hr", "4ou", "5iv", "6ix"},
  690. {"one", "two", "3hr", "4ou", "5iv", "6ix"},
  691. {"one", "two", "thr", "4ou", "5iv", "6ix"},
  692. {"one", "two", "thr", "fou", "5iv", "6ix"},
  693. {"one", "two", "thr", "fou", "fiv", "6ix"},
  694. {"one", "two", "thr", "fou", "fiv", "six"},
  695. }
  696. for n := 0; n < b.N; n++ {
  697. ml(m, a)
  698. }
  699. })
  700. b.Run("array to map worst", func(b *testing.B) {
  701. m := map[string]struct{}{
  702. "one": {},
  703. "two": {},
  704. "thr": {},
  705. "fou": {},
  706. "fiv": {},
  707. "six": {},
  708. }
  709. a := [][]string{
  710. {"1ne", "2wo", "3hr", "4ou", "5iv", "6ix"},
  711. {"one", "2wo", "3hr", "4ou", "5iv", "6ix"},
  712. {"one", "two", "3hr", "4ou", "5iv", "6ix"},
  713. {"one", "two", "thr", "4ou", "5iv", "6ix"},
  714. {"one", "two", "thr", "fou", "5iv", "6ix"},
  715. {"one", "two", "thr", "fou", "fiv", "6ix"},
  716. {"one", "two", "thr", "fou", "fiv", "six"},
  717. }
  718. for n := 0; n < b.N; n++ {
  719. ml(m, a)
  720. }
  721. })
  722. }
  723. func Test_parsePort(t *testing.T) {
  724. _, _, err := parsePort("")
  725. require.EqualError(t, err, "was not a number; ``")
  726. _, _, err = parsePort(" ")
  727. require.EqualError(t, err, "was not a number; ` `")
  728. _, _, err = parsePort("-")
  729. require.EqualError(t, err, "appears to be a range but could not be parsed; `-`")
  730. _, _, err = parsePort(" - ")
  731. require.EqualError(t, err, "appears to be a range but could not be parsed; ` - `")
  732. _, _, err = parsePort("a-b")
  733. require.EqualError(t, err, "beginning range was not a number; `a`")
  734. _, _, err = parsePort("1-b")
  735. require.EqualError(t, err, "ending range was not a number; `b`")
  736. s, e, err := parsePort(" 1 - 2 ")
  737. assert.Equal(t, int32(1), s)
  738. assert.Equal(t, int32(2), e)
  739. require.NoError(t, err)
  740. s, e, err = parsePort("0-1")
  741. assert.Equal(t, int32(0), s)
  742. assert.Equal(t, int32(0), e)
  743. require.NoError(t, err)
  744. s, e, err = parsePort("9919")
  745. assert.Equal(t, int32(9919), s)
  746. assert.Equal(t, int32(9919), e)
  747. require.NoError(t, err)
  748. s, e, err = parsePort("any")
  749. assert.Equal(t, int32(0), s)
  750. assert.Equal(t, int32(0), e)
  751. require.NoError(t, err)
  752. }
  753. func TestNewFirewallFromConfig(t *testing.T) {
  754. l := test.NewLogger()
  755. // Test a bad rule definition
  756. c := &dummyCert{}
  757. cs, err := newCertState(cert.Version2, nil, c, false, cert.Curve_CURVE25519, nil)
  758. require.NoError(t, err)
  759. conf := config.NewC(l)
  760. conf.Settings["firewall"] = map[string]any{"outbound": "asdf"}
  761. _, err = NewFirewallFromConfig(l, cs, conf)
  762. require.EqualError(t, err, "firewall.outbound failed to parse, should be an array of rules")
  763. // Test both port and code
  764. conf = config.NewC(l)
  765. conf.Settings["firewall"] = map[string]any{"outbound": []any{map[string]any{"port": "1", "code": "2"}}}
  766. _, err = NewFirewallFromConfig(l, cs, conf)
  767. require.EqualError(t, err, "firewall.outbound rule #0; only one of port or code should be provided")
  768. // Test missing host, group, cidr, ca_name and ca_sha
  769. conf = config.NewC(l)
  770. conf.Settings["firewall"] = map[string]any{"outbound": []any{map[string]any{}}}
  771. _, err = NewFirewallFromConfig(l, cs, conf)
  772. require.EqualError(t, err, "firewall.outbound rule #0; at least one of host, group, cidr, local_cidr, ca_name, or ca_sha must be provided")
  773. // Test code/port error
  774. conf = config.NewC(l)
  775. conf.Settings["firewall"] = map[string]any{"outbound": []any{map[string]any{"code": "a", "host": "testh"}}}
  776. _, err = NewFirewallFromConfig(l, cs, conf)
  777. require.EqualError(t, err, "firewall.outbound rule #0; code was not a number; `a`")
  778. conf.Settings["firewall"] = map[string]any{"outbound": []any{map[string]any{"port": "a", "host": "testh"}}}
  779. _, err = NewFirewallFromConfig(l, cs, conf)
  780. require.EqualError(t, err, "firewall.outbound rule #0; port was not a number; `a`")
  781. // Test proto error
  782. conf = config.NewC(l)
  783. conf.Settings["firewall"] = map[string]any{"outbound": []any{map[string]any{"code": "1", "host": "testh"}}}
  784. _, err = NewFirewallFromConfig(l, cs, conf)
  785. require.EqualError(t, err, "firewall.outbound rule #0; proto was not understood; ``")
  786. // Test cidr parse error
  787. conf = config.NewC(l)
  788. conf.Settings["firewall"] = map[string]any{"outbound": []any{map[string]any{"code": "1", "cidr": "testh", "proto": "any"}}}
  789. _, err = NewFirewallFromConfig(l, cs, conf)
  790. require.EqualError(t, err, "firewall.outbound rule #0; cidr did not parse; netip.ParsePrefix(\"testh\"): no '/'")
  791. // Test local_cidr parse error
  792. conf = config.NewC(l)
  793. conf.Settings["firewall"] = map[string]any{"outbound": []any{map[string]any{"code": "1", "local_cidr": "testh", "proto": "any"}}}
  794. _, err = NewFirewallFromConfig(l, cs, conf)
  795. require.EqualError(t, err, "firewall.outbound rule #0; local_cidr did not parse; netip.ParsePrefix(\"testh\"): no '/'")
  796. // Test both group and groups
  797. conf = config.NewC(l)
  798. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "group": "a", "groups": []string{"b", "c"}}}}
  799. _, err = NewFirewallFromConfig(l, cs, conf)
  800. require.EqualError(t, err, "firewall.inbound rule #0; only one of group or groups should be defined, both provided")
  801. }
  802. func TestAddFirewallRulesFromConfig(t *testing.T) {
  803. l := test.NewLogger()
  804. // Test adding tcp rule
  805. conf := config.NewC(l)
  806. mf := &mockFirewall{}
  807. conf.Settings["firewall"] = map[string]any{"outbound": []any{map[string]any{"port": "1", "proto": "tcp", "host": "a"}}}
  808. require.NoError(t, AddFirewallRulesFromConfig(l, false, conf, mf))
  809. assert.Equal(t, addRuleCall{incoming: false, proto: firewall.ProtoTCP, startPort: 1, endPort: 1, groups: nil, host: "a", ip: netip.Prefix{}, localIp: netip.Prefix{}}, mf.lastCall)
  810. // Test adding udp rule
  811. conf = config.NewC(l)
  812. mf = &mockFirewall{}
  813. conf.Settings["firewall"] = map[string]any{"outbound": []any{map[string]any{"port": "1", "proto": "udp", "host": "a"}}}
  814. require.NoError(t, AddFirewallRulesFromConfig(l, false, conf, mf))
  815. assert.Equal(t, addRuleCall{incoming: false, proto: firewall.ProtoUDP, startPort: 1, endPort: 1, groups: nil, host: "a", ip: netip.Prefix{}, localIp: netip.Prefix{}}, mf.lastCall)
  816. // Test adding icmp rule
  817. conf = config.NewC(l)
  818. mf = &mockFirewall{}
  819. conf.Settings["firewall"] = map[string]any{"outbound": []any{map[string]any{"port": "1", "proto": "icmp", "host": "a"}}}
  820. require.NoError(t, AddFirewallRulesFromConfig(l, false, conf, mf))
  821. assert.Equal(t, addRuleCall{incoming: false, proto: firewall.ProtoICMP, startPort: 1, endPort: 1, groups: nil, host: "a", ip: netip.Prefix{}, localIp: netip.Prefix{}}, mf.lastCall)
  822. // Test adding any rule
  823. conf = config.NewC(l)
  824. mf = &mockFirewall{}
  825. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "host": "a"}}}
  826. require.NoError(t, AddFirewallRulesFromConfig(l, true, conf, mf))
  827. assert.Equal(t, addRuleCall{incoming: true, proto: firewall.ProtoAny, startPort: 1, endPort: 1, groups: nil, host: "a", ip: netip.Prefix{}, localIp: netip.Prefix{}}, mf.lastCall)
  828. // Test adding rule with cidr
  829. cidr := netip.MustParsePrefix("10.0.0.0/8")
  830. conf = config.NewC(l)
  831. mf = &mockFirewall{}
  832. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "cidr": cidr.String()}}}
  833. require.NoError(t, AddFirewallRulesFromConfig(l, true, conf, mf))
  834. assert.Equal(t, addRuleCall{incoming: true, proto: firewall.ProtoAny, startPort: 1, endPort: 1, groups: nil, ip: cidr, localIp: netip.Prefix{}}, mf.lastCall)
  835. // Test adding rule with local_cidr
  836. conf = config.NewC(l)
  837. mf = &mockFirewall{}
  838. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "local_cidr": cidr.String()}}}
  839. require.NoError(t, AddFirewallRulesFromConfig(l, true, conf, mf))
  840. assert.Equal(t, addRuleCall{incoming: true, proto: firewall.ProtoAny, startPort: 1, endPort: 1, groups: nil, ip: netip.Prefix{}, localIp: cidr}, mf.lastCall)
  841. // Test adding rule with cidr ipv6
  842. cidr6 := netip.MustParsePrefix("fd00::/8")
  843. conf = config.NewC(l)
  844. mf = &mockFirewall{}
  845. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "cidr": cidr6.String()}}}
  846. require.NoError(t, AddFirewallRulesFromConfig(l, true, conf, mf))
  847. assert.Equal(t, addRuleCall{incoming: true, proto: firewall.ProtoAny, startPort: 1, endPort: 1, groups: nil, ip: cidr6, localIp: netip.Prefix{}}, mf.lastCall)
  848. // Test adding rule with local_cidr ipv6
  849. conf = config.NewC(l)
  850. mf = &mockFirewall{}
  851. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "local_cidr": cidr6.String()}}}
  852. require.NoError(t, AddFirewallRulesFromConfig(l, true, conf, mf))
  853. assert.Equal(t, addRuleCall{incoming: true, proto: firewall.ProtoAny, startPort: 1, endPort: 1, groups: nil, ip: netip.Prefix{}, localIp: cidr6}, mf.lastCall)
  854. // Test adding rule with ca_sha
  855. conf = config.NewC(l)
  856. mf = &mockFirewall{}
  857. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "ca_sha": "12312313123"}}}
  858. require.NoError(t, AddFirewallRulesFromConfig(l, true, conf, mf))
  859. assert.Equal(t, addRuleCall{incoming: true, proto: firewall.ProtoAny, startPort: 1, endPort: 1, groups: nil, ip: netip.Prefix{}, localIp: netip.Prefix{}, caSha: "12312313123"}, mf.lastCall)
  860. // Test adding rule with ca_name
  861. conf = config.NewC(l)
  862. mf = &mockFirewall{}
  863. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "ca_name": "root01"}}}
  864. require.NoError(t, AddFirewallRulesFromConfig(l, true, conf, mf))
  865. assert.Equal(t, addRuleCall{incoming: true, proto: firewall.ProtoAny, startPort: 1, endPort: 1, groups: nil, ip: netip.Prefix{}, localIp: netip.Prefix{}, caName: "root01"}, mf.lastCall)
  866. // Test single group
  867. conf = config.NewC(l)
  868. mf = &mockFirewall{}
  869. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "group": "a"}}}
  870. require.NoError(t, AddFirewallRulesFromConfig(l, true, conf, mf))
  871. assert.Equal(t, addRuleCall{incoming: true, proto: firewall.ProtoAny, startPort: 1, endPort: 1, groups: []string{"a"}, ip: netip.Prefix{}, localIp: netip.Prefix{}}, mf.lastCall)
  872. // Test single groups
  873. conf = config.NewC(l)
  874. mf = &mockFirewall{}
  875. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "groups": "a"}}}
  876. require.NoError(t, AddFirewallRulesFromConfig(l, true, conf, mf))
  877. assert.Equal(t, addRuleCall{incoming: true, proto: firewall.ProtoAny, startPort: 1, endPort: 1, groups: []string{"a"}, ip: netip.Prefix{}, localIp: netip.Prefix{}}, mf.lastCall)
  878. // Test multiple AND groups
  879. conf = config.NewC(l)
  880. mf = &mockFirewall{}
  881. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "groups": []string{"a", "b"}}}}
  882. require.NoError(t, AddFirewallRulesFromConfig(l, true, conf, mf))
  883. assert.Equal(t, addRuleCall{incoming: true, proto: firewall.ProtoAny, startPort: 1, endPort: 1, groups: []string{"a", "b"}, ip: netip.Prefix{}, localIp: netip.Prefix{}}, mf.lastCall)
  884. // Test Add error
  885. conf = config.NewC(l)
  886. mf = &mockFirewall{}
  887. mf.nextCallReturn = errors.New("test error")
  888. conf.Settings["firewall"] = map[string]any{"inbound": []any{map[string]any{"port": "1", "proto": "any", "host": "a"}}}
  889. require.EqualError(t, AddFirewallRulesFromConfig(l, true, conf, mf), "firewall.inbound rule #0; `test error`")
  890. }
  891. func TestFirewall_convertRule(t *testing.T) {
  892. l := test.NewLogger()
  893. ob := &bytes.Buffer{}
  894. l.SetOutput(ob)
  895. // Ensure group array of 1 is converted and a warning is printed
  896. c := map[string]any{
  897. "group": []any{"group1"},
  898. }
  899. r, err := convertRule(l, c, "test", 1)
  900. assert.Contains(t, ob.String(), "test rule #1; group was an array with a single value, converting to simple value")
  901. require.NoError(t, err)
  902. assert.Equal(t, "group1", r.Group)
  903. // Ensure group array of > 1 is errord
  904. ob.Reset()
  905. c = map[string]any{
  906. "group": []any{"group1", "group2"},
  907. }
  908. r, err = convertRule(l, c, "test", 1)
  909. assert.Empty(t, ob.String())
  910. require.Error(t, err, "group should contain a single value, an array with more than one entry was provided")
  911. // Make sure a well formed group is alright
  912. ob.Reset()
  913. c = map[string]any{
  914. "group": "group1",
  915. }
  916. r, err = convertRule(l, c, "test", 1)
  917. require.NoError(t, err)
  918. assert.Equal(t, "group1", r.Group)
  919. }
  920. type testcase struct {
  921. h *HostInfo
  922. p firewall.Packet
  923. c cert.Certificate
  924. err error
  925. }
  926. func (c *testcase) Test(t *testing.T, fw *Firewall) {
  927. t.Helper()
  928. cp := cert.NewCAPool()
  929. resetConntrack(fw)
  930. err := fw.Drop(c.p, true, c.h, cp, nil)
  931. if c.err == nil {
  932. require.NoError(t, err, "failed to not drop remote address %s", c.p.RemoteAddr)
  933. } else {
  934. require.ErrorIs(t, c.err, err, "failed to drop remote address %s", c.p.RemoteAddr)
  935. }
  936. }
  937. func buildTestCase(setup testsetup, err error, theirPrefixes ...netip.Prefix) testcase {
  938. c1 := dummyCert{
  939. name: "host1",
  940. networks: theirPrefixes,
  941. groups: []string{"default-group"},
  942. issuer: "signer-shasum",
  943. }
  944. h := HostInfo{
  945. ConnectionState: &ConnectionState{
  946. peerCert: &cert.CachedCertificate{
  947. Certificate: &c1,
  948. InvertedGroups: map[string]struct{}{"default-group": {}},
  949. },
  950. },
  951. vpnAddrs: make([]netip.Addr, len(theirPrefixes)),
  952. }
  953. for i := range theirPrefixes {
  954. h.vpnAddrs[i] = theirPrefixes[i].Addr()
  955. }
  956. h.buildNetworks(setup.myVpnNetworksTable, c1.networks, c1.unsafeNetworks)
  957. p := firewall.Packet{
  958. LocalAddr: setup.c.Networks()[0].Addr(), //todo?
  959. RemoteAddr: theirPrefixes[0].Addr(),
  960. LocalPort: 10,
  961. RemotePort: 90,
  962. Protocol: firewall.ProtoUDP,
  963. Fragment: false,
  964. }
  965. return testcase{
  966. h: &h,
  967. p: p,
  968. c: &c1,
  969. err: err,
  970. }
  971. }
  972. type testsetup struct {
  973. c dummyCert
  974. myVpnNetworksTable *bart.Lite
  975. fw *Firewall
  976. }
  977. func newSetup(t *testing.T, l *logrus.Logger, myPrefixes ...netip.Prefix) testsetup {
  978. c := dummyCert{
  979. name: "me",
  980. networks: myPrefixes,
  981. groups: []string{"default-group"},
  982. issuer: "signer-shasum",
  983. }
  984. return newSetupFromCert(t, l, c)
  985. }
  986. func newSetupFromCert(t *testing.T, l *logrus.Logger, c dummyCert) testsetup {
  987. myVpnNetworksTable := new(bart.Lite)
  988. for _, prefix := range c.Networks() {
  989. myVpnNetworksTable.Insert(prefix)
  990. }
  991. fw := NewFirewall(l, time.Second, time.Minute, time.Hour, &c)
  992. require.NoError(t, fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"any"}, "", netip.Prefix{}, netip.Prefix{}, "", ""))
  993. return testsetup{
  994. c: c,
  995. fw: fw,
  996. myVpnNetworksTable: myVpnNetworksTable,
  997. }
  998. }
  999. func TestFirewall_Drop_EnforceIPMatch(t *testing.T) {
  1000. t.Parallel()
  1001. l := test.NewLogger()
  1002. ob := &bytes.Buffer{}
  1003. l.SetOutput(ob)
  1004. myPrefix := netip.MustParsePrefix("1.1.1.1/8")
  1005. // for now, it's okay that these are all "incoming", the logic this test tries to check doesn't care about in/out
  1006. t.Run("allow inbound all matching", func(t *testing.T) {
  1007. t.Parallel()
  1008. setup := newSetup(t, l, myPrefix)
  1009. tc := buildTestCase(setup, nil, netip.MustParsePrefix("1.2.3.4/24"))
  1010. tc.Test(t, setup.fw)
  1011. })
  1012. t.Run("allow inbound local matching", func(t *testing.T) {
  1013. t.Parallel()
  1014. setup := newSetup(t, l, myPrefix)
  1015. tc := buildTestCase(setup, ErrInvalidLocalIP, netip.MustParsePrefix("1.2.3.4/24"))
  1016. tc.p.LocalAddr = netip.MustParseAddr("1.2.3.8")
  1017. tc.Test(t, setup.fw)
  1018. })
  1019. t.Run("block inbound remote mismatched", func(t *testing.T) {
  1020. t.Parallel()
  1021. setup := newSetup(t, l, myPrefix)
  1022. tc := buildTestCase(setup, ErrInvalidRemoteIP, netip.MustParsePrefix("1.2.3.4/24"))
  1023. tc.p.RemoteAddr = netip.MustParseAddr("9.9.9.9")
  1024. tc.Test(t, setup.fw)
  1025. })
  1026. t.Run("Block a vpn peer packet", func(t *testing.T) {
  1027. t.Parallel()
  1028. setup := newSetup(t, l, myPrefix)
  1029. tc := buildTestCase(setup, ErrPeerRejected, netip.MustParsePrefix("2.2.2.2/24"))
  1030. tc.Test(t, setup.fw)
  1031. })
  1032. twoPrefixes := []netip.Prefix{
  1033. netip.MustParsePrefix("1.2.3.4/24"), netip.MustParsePrefix("2.2.2.2/24"),
  1034. }
  1035. t.Run("allow inbound one matching", func(t *testing.T) {
  1036. t.Parallel()
  1037. setup := newSetup(t, l, myPrefix)
  1038. tc := buildTestCase(setup, nil, twoPrefixes...)
  1039. tc.Test(t, setup.fw)
  1040. })
  1041. t.Run("block inbound multimismatch", func(t *testing.T) {
  1042. t.Parallel()
  1043. setup := newSetup(t, l, myPrefix)
  1044. tc := buildTestCase(setup, ErrInvalidRemoteIP, twoPrefixes...)
  1045. tc.p.RemoteAddr = netip.MustParseAddr("9.9.9.9")
  1046. tc.Test(t, setup.fw)
  1047. })
  1048. t.Run("allow inbound 2nd one matching", func(t *testing.T) {
  1049. t.Parallel()
  1050. setup2 := newSetup(t, l, netip.MustParsePrefix("2.2.2.1/24"))
  1051. tc := buildTestCase(setup2, nil, twoPrefixes...)
  1052. tc.p.RemoteAddr = twoPrefixes[1].Addr()
  1053. tc.Test(t, setup2.fw)
  1054. })
  1055. t.Run("allow inbound unsafe route", func(t *testing.T) {
  1056. t.Parallel()
  1057. unsafePrefix := netip.MustParsePrefix("192.168.0.0/24")
  1058. c := dummyCert{
  1059. name: "me",
  1060. networks: []netip.Prefix{myPrefix},
  1061. unsafeNetworks: []netip.Prefix{unsafePrefix},
  1062. groups: []string{"default-group"},
  1063. issuer: "signer-shasum",
  1064. }
  1065. unsafeSetup := newSetupFromCert(t, l, c)
  1066. tc := buildTestCase(unsafeSetup, nil, twoPrefixes...)
  1067. tc.p.LocalAddr = netip.MustParseAddr("192.168.0.3")
  1068. tc.err = ErrNoMatchingRule
  1069. tc.Test(t, unsafeSetup.fw) //should hit firewall and bounce off
  1070. require.NoError(t, unsafeSetup.fw.AddRule(true, firewall.ProtoAny, 0, 0, []string{"any"}, "", netip.Prefix{}, unsafePrefix, "", ""))
  1071. tc.err = nil
  1072. tc.Test(t, unsafeSetup.fw) //should pass
  1073. })
  1074. }
  1075. type addRuleCall struct {
  1076. incoming bool
  1077. proto uint8
  1078. startPort int32
  1079. endPort int32
  1080. groups []string
  1081. host string
  1082. ip netip.Prefix
  1083. localIp netip.Prefix
  1084. caName string
  1085. caSha string
  1086. }
  1087. type mockFirewall struct {
  1088. lastCall addRuleCall
  1089. nextCallReturn error
  1090. }
  1091. func (mf *mockFirewall) AddRule(incoming bool, proto uint8, startPort int32, endPort int32, groups []string, host string, ip netip.Prefix, localIp netip.Prefix, caName string, caSha string) error {
  1092. mf.lastCall = addRuleCall{
  1093. incoming: incoming,
  1094. proto: proto,
  1095. startPort: startPort,
  1096. endPort: endPort,
  1097. groups: groups,
  1098. host: host,
  1099. ip: ip,
  1100. localIp: localIp,
  1101. caName: caName,
  1102. caSha: caSha,
  1103. }
  1104. err := mf.nextCallReturn
  1105. mf.nextCallReturn = nil
  1106. return err
  1107. }
  1108. func resetConntrack(fw *Firewall) {
  1109. fw.Conntrack.Lock()
  1110. fw.Conntrack.Conns = map[firewall.Packet]*conn{}
  1111. fw.Conntrack.Unlock()
  1112. }