firewall.go 25 KB

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  1. package nebula
  2. import (
  3. "crypto/sha256"
  4. "encoding/hex"
  5. "errors"
  6. "fmt"
  7. "hash/fnv"
  8. "net/netip"
  9. "reflect"
  10. "strconv"
  11. "strings"
  12. "sync"
  13. "time"
  14. "github.com/gaissmai/bart"
  15. "github.com/rcrowley/go-metrics"
  16. "github.com/sirupsen/logrus"
  17. "github.com/slackhq/nebula/cert"
  18. "github.com/slackhq/nebula/config"
  19. "github.com/slackhq/nebula/firewall"
  20. )
  21. type FirewallInterface interface {
  22. AddRule(incoming bool, proto uint8, startPort int32, endPort int32, groups []string, host string, addr, localAddr netip.Prefix, caName string, caSha string) error
  23. }
  24. type conn struct {
  25. Expires time.Time // Time when this conntrack entry will expire
  26. // record why the original connection passed the firewall, so we can re-validate
  27. // after ruleset changes. Note, rulesVersion is a uint16 so that these two
  28. // fields pack for free after the uint32 above
  29. incoming bool
  30. rulesVersion uint16
  31. }
  32. // TODO: need conntrack max tracked connections handling
  33. type Firewall struct {
  34. Conntrack *FirewallConntrack
  35. InRules *FirewallTable
  36. OutRules *FirewallTable
  37. InSendReject bool
  38. OutSendReject bool
  39. //TODO: we should have many more options for TCP, an option for ICMP, and mimic the kernel a bit better
  40. // https://www.kernel.org/doc/Documentation/networking/nf_conntrack-sysctl.txt
  41. TCPTimeout time.Duration //linux: 5 days max
  42. UDPTimeout time.Duration //linux: 180s max
  43. DefaultTimeout time.Duration //linux: 600s
  44. // routableNetworks describes the vpn addresses as well as any unsafe networks issued to us in the certificate.
  45. // The vpn addresses are a full bit match while the unsafe networks only match the prefix
  46. routableNetworks *bart.Lite
  47. // assignedNetworks is a list of vpn networks assigned to us in the certificate.
  48. assignedNetworks []netip.Prefix
  49. hasUnsafeNetworks bool
  50. rules string
  51. rulesVersion uint16
  52. defaultLocalCIDRAny bool
  53. incomingMetrics firewallMetrics
  54. outgoingMetrics firewallMetrics
  55. l *logrus.Logger
  56. }
  57. type firewallMetrics struct {
  58. droppedLocalAddr metrics.Counter
  59. droppedRemoteAddr metrics.Counter
  60. droppedNoRule metrics.Counter
  61. }
  62. type FirewallConntrack struct {
  63. sync.Mutex
  64. Conns map[firewall.Packet]*conn
  65. TimerWheel *TimerWheel[firewall.Packet]
  66. }
  67. // FirewallTable is the entry point for a rule, the evaluation order is:
  68. // Proto AND port AND (CA SHA or CA name) AND local CIDR AND (group OR groups OR name OR remote CIDR)
  69. type FirewallTable struct {
  70. TCP firewallPort
  71. UDP firewallPort
  72. ICMP firewallPort
  73. AnyProto firewallPort
  74. }
  75. func newFirewallTable() *FirewallTable {
  76. return &FirewallTable{
  77. TCP: firewallPort{},
  78. UDP: firewallPort{},
  79. ICMP: firewallPort{},
  80. AnyProto: firewallPort{},
  81. }
  82. }
  83. type FirewallCA struct {
  84. Any *FirewallRule
  85. CANames map[string]*FirewallRule
  86. CAShas map[string]*FirewallRule
  87. }
  88. type FirewallRule struct {
  89. // Any makes Hosts, Groups, and CIDR irrelevant
  90. Any *firewallLocalCIDR
  91. Hosts map[string]*firewallLocalCIDR
  92. Groups []*firewallGroups
  93. CIDR *bart.Table[*firewallLocalCIDR]
  94. }
  95. type firewallGroups struct {
  96. Groups []string
  97. LocalCIDR *firewallLocalCIDR
  98. }
  99. // Even though ports are uint16, int32 maps are faster for lookup
  100. // Plus we can use `-1` for fragment rules
  101. type firewallPort map[int32]*FirewallCA
  102. type firewallLocalCIDR struct {
  103. Any bool
  104. LocalCIDR *bart.Lite
  105. }
  106. // NewFirewall creates a new Firewall object. A TimerWheel is created for you from the provided timeouts.
  107. // The certificate provided should be the highest version loaded in memory.
  108. func NewFirewall(l *logrus.Logger, tcpTimeout, UDPTimeout, defaultTimeout time.Duration, c cert.Certificate) *Firewall {
  109. //TODO: error on 0 duration
  110. var tmin, tmax time.Duration
  111. if tcpTimeout < UDPTimeout {
  112. tmin = tcpTimeout
  113. tmax = UDPTimeout
  114. } else {
  115. tmin = UDPTimeout
  116. tmax = tcpTimeout
  117. }
  118. if defaultTimeout < tmin {
  119. tmin = defaultTimeout
  120. } else if defaultTimeout > tmax {
  121. tmax = defaultTimeout
  122. }
  123. routableNetworks := new(bart.Lite)
  124. var assignedNetworks []netip.Prefix
  125. for _, network := range c.Networks() {
  126. nprefix := netip.PrefixFrom(network.Addr(), network.Addr().BitLen())
  127. routableNetworks.Insert(nprefix)
  128. assignedNetworks = append(assignedNetworks, network)
  129. }
  130. hasUnsafeNetworks := false
  131. for _, n := range c.UnsafeNetworks() {
  132. routableNetworks.Insert(n)
  133. hasUnsafeNetworks = true
  134. }
  135. return &Firewall{
  136. Conntrack: &FirewallConntrack{
  137. Conns: make(map[firewall.Packet]*conn),
  138. TimerWheel: NewTimerWheel[firewall.Packet](tmin, tmax),
  139. },
  140. InRules: newFirewallTable(),
  141. OutRules: newFirewallTable(),
  142. TCPTimeout: tcpTimeout,
  143. UDPTimeout: UDPTimeout,
  144. DefaultTimeout: defaultTimeout,
  145. routableNetworks: routableNetworks,
  146. assignedNetworks: assignedNetworks,
  147. hasUnsafeNetworks: hasUnsafeNetworks,
  148. l: l,
  149. incomingMetrics: firewallMetrics{
  150. droppedLocalAddr: metrics.GetOrRegisterCounter("firewall.incoming.dropped.local_addr", nil),
  151. droppedRemoteAddr: metrics.GetOrRegisterCounter("firewall.incoming.dropped.remote_addr", nil),
  152. droppedNoRule: metrics.GetOrRegisterCounter("firewall.incoming.dropped.no_rule", nil),
  153. },
  154. outgoingMetrics: firewallMetrics{
  155. droppedLocalAddr: metrics.GetOrRegisterCounter("firewall.outgoing.dropped.local_addr", nil),
  156. droppedRemoteAddr: metrics.GetOrRegisterCounter("firewall.outgoing.dropped.remote_addr", nil),
  157. droppedNoRule: metrics.GetOrRegisterCounter("firewall.outgoing.dropped.no_rule", nil),
  158. },
  159. }
  160. }
  161. func NewFirewallFromConfig(l *logrus.Logger, cs *CertState, c *config.C) (*Firewall, error) {
  162. certificate := cs.getCertificate(cert.Version2)
  163. if certificate == nil {
  164. certificate = cs.getCertificate(cert.Version1)
  165. }
  166. if certificate == nil {
  167. panic("No certificate available to reconfigure the firewall")
  168. }
  169. fw := NewFirewall(
  170. l,
  171. c.GetDuration("firewall.conntrack.tcp_timeout", time.Minute*12),
  172. c.GetDuration("firewall.conntrack.udp_timeout", time.Minute*3),
  173. c.GetDuration("firewall.conntrack.default_timeout", time.Minute*10),
  174. certificate,
  175. //TODO: max_connections
  176. )
  177. fw.defaultLocalCIDRAny = c.GetBool("firewall.default_local_cidr_any", false)
  178. inboundAction := c.GetString("firewall.inbound_action", "drop")
  179. switch inboundAction {
  180. case "reject":
  181. fw.InSendReject = true
  182. case "drop":
  183. fw.InSendReject = false
  184. default:
  185. l.WithField("action", inboundAction).Warn("invalid firewall.inbound_action, defaulting to `drop`")
  186. fw.InSendReject = false
  187. }
  188. outboundAction := c.GetString("firewall.outbound_action", "drop")
  189. switch outboundAction {
  190. case "reject":
  191. fw.OutSendReject = true
  192. case "drop":
  193. fw.OutSendReject = false
  194. default:
  195. l.WithField("action", inboundAction).Warn("invalid firewall.outbound_action, defaulting to `drop`")
  196. fw.OutSendReject = false
  197. }
  198. err := AddFirewallRulesFromConfig(l, false, c, fw)
  199. if err != nil {
  200. return nil, err
  201. }
  202. err = AddFirewallRulesFromConfig(l, true, c, fw)
  203. if err != nil {
  204. return nil, err
  205. }
  206. return fw, nil
  207. }
  208. // AddRule properly creates the in memory rule structure for a firewall table.
  209. func (f *Firewall) AddRule(incoming bool, proto uint8, startPort int32, endPort int32, groups []string, host string, ip, localIp netip.Prefix, caName string, caSha string) error {
  210. // Under gomobile, stringing a nil pointer with fmt causes an abort in debug mode for iOS
  211. // https://github.com/golang/go/issues/14131
  212. sIp := ""
  213. if ip.IsValid() {
  214. sIp = ip.String()
  215. }
  216. lIp := ""
  217. if localIp.IsValid() {
  218. lIp = localIp.String()
  219. }
  220. // We need this rule string because we generate a hash. Removing this will break firewall reload.
  221. ruleString := fmt.Sprintf(
  222. "incoming: %v, proto: %v, startPort: %v, endPort: %v, groups: %v, host: %v, ip: %v, localIp: %v, caName: %v, caSha: %s",
  223. incoming, proto, startPort, endPort, groups, host, sIp, lIp, caName, caSha,
  224. )
  225. f.rules += ruleString + "\n"
  226. direction := "incoming"
  227. if !incoming {
  228. direction = "outgoing"
  229. }
  230. f.l.WithField("firewallRule", m{"direction": direction, "proto": proto, "startPort": startPort, "endPort": endPort, "groups": groups, "host": host, "ip": sIp, "localIp": lIp, "caName": caName, "caSha": caSha}).
  231. Info("Firewall rule added")
  232. var (
  233. ft *FirewallTable
  234. fp firewallPort
  235. )
  236. if incoming {
  237. ft = f.InRules
  238. } else {
  239. ft = f.OutRules
  240. }
  241. switch proto {
  242. case firewall.ProtoTCP:
  243. fp = ft.TCP
  244. case firewall.ProtoUDP:
  245. fp = ft.UDP
  246. case firewall.ProtoICMP, firewall.ProtoICMPv6:
  247. fp = ft.ICMP
  248. case firewall.ProtoAny:
  249. fp = ft.AnyProto
  250. default:
  251. return fmt.Errorf("unknown protocol %v", proto)
  252. }
  253. return fp.addRule(f, startPort, endPort, groups, host, ip, localIp, caName, caSha)
  254. }
  255. // GetRuleHash returns a hash representation of all inbound and outbound rules
  256. func (f *Firewall) GetRuleHash() string {
  257. sum := sha256.Sum256([]byte(f.rules))
  258. return hex.EncodeToString(sum[:])
  259. }
  260. // GetRuleHashFNV returns a uint32 FNV-1 hash representation the rules, for use as a metric value
  261. func (f *Firewall) GetRuleHashFNV() uint32 {
  262. h := fnv.New32a()
  263. h.Write([]byte(f.rules))
  264. return h.Sum32()
  265. }
  266. // GetRuleHashes returns both the sha256 and FNV-1 hashes, suitable for logging
  267. func (f *Firewall) GetRuleHashes() string {
  268. return "SHA:" + f.GetRuleHash() + ",FNV:" + strconv.FormatUint(uint64(f.GetRuleHashFNV()), 10)
  269. }
  270. func AddFirewallRulesFromConfig(l *logrus.Logger, inbound bool, c *config.C, fw FirewallInterface) error {
  271. var table string
  272. if inbound {
  273. table = "firewall.inbound"
  274. } else {
  275. table = "firewall.outbound"
  276. }
  277. r := c.Get(table)
  278. if r == nil {
  279. return nil
  280. }
  281. rs, ok := r.([]any)
  282. if !ok {
  283. return fmt.Errorf("%s failed to parse, should be an array of rules", table)
  284. }
  285. for i, t := range rs {
  286. var groups []string
  287. r, err := convertRule(l, t, table, i)
  288. if err != nil {
  289. return fmt.Errorf("%s rule #%v; %s", table, i, err)
  290. }
  291. if r.Code != "" && r.Port != "" {
  292. return fmt.Errorf("%s rule #%v; only one of port or code should be provided", table, i)
  293. }
  294. if r.Host == "" && len(r.Groups) == 0 && r.Group == "" && r.Cidr == "" && r.LocalCidr == "" && r.CAName == "" && r.CASha == "" {
  295. return fmt.Errorf("%s rule #%v; at least one of host, group, cidr, local_cidr, ca_name, or ca_sha must be provided", table, i)
  296. }
  297. if len(r.Groups) > 0 {
  298. groups = r.Groups
  299. }
  300. if r.Group != "" {
  301. // Check if we have both groups and group provided in the rule config
  302. if len(groups) > 0 {
  303. return fmt.Errorf("%s rule #%v; only one of group or groups should be defined, both provided", table, i)
  304. }
  305. groups = []string{r.Group}
  306. }
  307. var sPort, errPort string
  308. if r.Code != "" {
  309. errPort = "code"
  310. sPort = r.Code
  311. } else {
  312. errPort = "port"
  313. sPort = r.Port
  314. }
  315. startPort, endPort, err := parsePort(sPort)
  316. if err != nil {
  317. return fmt.Errorf("%s rule #%v; %s %s", table, i, errPort, err)
  318. }
  319. var proto uint8
  320. switch r.Proto {
  321. case "any":
  322. proto = firewall.ProtoAny
  323. case "tcp":
  324. proto = firewall.ProtoTCP
  325. case "udp":
  326. proto = firewall.ProtoUDP
  327. case "icmp":
  328. proto = firewall.ProtoICMP
  329. default:
  330. return fmt.Errorf("%s rule #%v; proto was not understood; `%s`", table, i, r.Proto)
  331. }
  332. var cidr netip.Prefix
  333. if r.Cidr != "" {
  334. cidr, err = netip.ParsePrefix(r.Cidr)
  335. if err != nil {
  336. return fmt.Errorf("%s rule #%v; cidr did not parse; %s", table, i, err)
  337. }
  338. }
  339. var localCidr netip.Prefix
  340. if r.LocalCidr != "" {
  341. localCidr, err = netip.ParsePrefix(r.LocalCidr)
  342. if err != nil {
  343. return fmt.Errorf("%s rule #%v; local_cidr did not parse; %s", table, i, err)
  344. }
  345. }
  346. err = fw.AddRule(inbound, proto, startPort, endPort, groups, r.Host, cidr, localCidr, r.CAName, r.CASha)
  347. if err != nil {
  348. return fmt.Errorf("%s rule #%v; `%s`", table, i, err)
  349. }
  350. }
  351. return nil
  352. }
  353. var ErrUnknownNetworkType = errors.New("unknown network type")
  354. var ErrPeerRejected = errors.New("remote IP is not within a subnet that we handle")
  355. var ErrInvalidRemoteIP = errors.New("remote IP is not in remote certificate subnets")
  356. var ErrInvalidLocalIP = errors.New("local IP is not in list of handled local IPs")
  357. var ErrNoMatchingRule = errors.New("no matching rule in firewall table")
  358. // Drop returns an error if the packet should be dropped, explaining why. It
  359. // returns nil if the packet should not be dropped.
  360. func (f *Firewall) Drop(fp firewall.Packet, incoming bool, h *HostInfo, caPool *cert.CAPool, localCache firewall.ConntrackCache) error {
  361. // Check if we spoke to this tuple, if we did then allow this packet
  362. if f.inConns(fp, h, caPool, localCache) {
  363. return nil
  364. }
  365. // Make sure remote address matches nebula certificate, and determine how to treat it
  366. if h.networks == nil {
  367. // Simple case: Certificate has one address and no unsafe networks
  368. if h.vpnAddrs[0] != fp.RemoteAddr {
  369. f.metrics(incoming).droppedRemoteAddr.Inc(1)
  370. return ErrInvalidRemoteIP
  371. }
  372. } else {
  373. nwType, ok := h.networks.Lookup(fp.RemoteAddr)
  374. if !ok {
  375. f.metrics(incoming).droppedRemoteAddr.Inc(1)
  376. return ErrInvalidRemoteIP
  377. }
  378. switch nwType {
  379. case NetworkTypeVPN:
  380. break // nothing special
  381. case NetworkTypeVPNPeer:
  382. f.metrics(incoming).droppedRemoteAddr.Inc(1)
  383. return ErrPeerRejected // reject for now, one day this may have different FW rules
  384. case NetworkTypeUnsafe:
  385. break // nothing special, one day this may have different FW rules
  386. default:
  387. f.metrics(incoming).droppedRemoteAddr.Inc(1)
  388. return ErrUnknownNetworkType //should never happen
  389. }
  390. }
  391. // Make sure we are supposed to be handling this local ip address
  392. if !f.routableNetworks.Contains(fp.LocalAddr) {
  393. f.metrics(incoming).droppedLocalAddr.Inc(1)
  394. return ErrInvalidLocalIP
  395. }
  396. table := f.OutRules
  397. if incoming {
  398. table = f.InRules
  399. }
  400. // We now know which firewall table to check against
  401. if !table.match(fp, incoming, h.ConnectionState.peerCert, caPool) {
  402. f.metrics(incoming).droppedNoRule.Inc(1)
  403. return ErrNoMatchingRule
  404. }
  405. // We always want to conntrack since it is a faster operation
  406. f.addConn(fp, incoming)
  407. return nil
  408. }
  409. func (f *Firewall) metrics(incoming bool) firewallMetrics {
  410. if incoming {
  411. return f.incomingMetrics
  412. } else {
  413. return f.outgoingMetrics
  414. }
  415. }
  416. // Destroy cleans up any known cyclical references so the object can be free'd my GC. This should be called if a new
  417. // firewall object is created
  418. func (f *Firewall) Destroy() {
  419. //TODO: clean references if/when needed
  420. }
  421. func (f *Firewall) EmitStats() {
  422. conntrack := f.Conntrack
  423. conntrack.Lock()
  424. conntrackCount := len(conntrack.Conns)
  425. conntrack.Unlock()
  426. metrics.GetOrRegisterGauge("firewall.conntrack.count", nil).Update(int64(conntrackCount))
  427. metrics.GetOrRegisterGauge("firewall.rules.version", nil).Update(int64(f.rulesVersion))
  428. metrics.GetOrRegisterGauge("firewall.rules.hash", nil).Update(int64(f.GetRuleHashFNV()))
  429. }
  430. func (f *Firewall) inConns(fp firewall.Packet, h *HostInfo, caPool *cert.CAPool, localCache firewall.ConntrackCache) bool {
  431. if localCache != nil {
  432. if _, ok := localCache[fp]; ok {
  433. return true
  434. }
  435. }
  436. conntrack := f.Conntrack
  437. conntrack.Lock()
  438. // Purge every time we test
  439. ep, has := conntrack.TimerWheel.Purge()
  440. if has {
  441. f.evict(ep)
  442. }
  443. c, ok := conntrack.Conns[fp]
  444. if !ok {
  445. conntrack.Unlock()
  446. return false
  447. }
  448. if c.rulesVersion != f.rulesVersion {
  449. // This conntrack entry was for an older rule set, validate
  450. // it still passes with the current rule set
  451. table := f.OutRules
  452. if c.incoming {
  453. table = f.InRules
  454. }
  455. // We now know which firewall table to check against
  456. if !table.match(fp, c.incoming, h.ConnectionState.peerCert, caPool) {
  457. if f.l.Level >= logrus.DebugLevel {
  458. h.logger(f.l).
  459. WithField("fwPacket", fp).
  460. WithField("incoming", c.incoming).
  461. WithField("rulesVersion", f.rulesVersion).
  462. WithField("oldRulesVersion", c.rulesVersion).
  463. Debugln("dropping old conntrack entry, does not match new ruleset")
  464. }
  465. delete(conntrack.Conns, fp)
  466. conntrack.Unlock()
  467. return false
  468. }
  469. if f.l.Level >= logrus.DebugLevel {
  470. h.logger(f.l).
  471. WithField("fwPacket", fp).
  472. WithField("incoming", c.incoming).
  473. WithField("rulesVersion", f.rulesVersion).
  474. WithField("oldRulesVersion", c.rulesVersion).
  475. Debugln("keeping old conntrack entry, does match new ruleset")
  476. }
  477. c.rulesVersion = f.rulesVersion
  478. }
  479. switch fp.Protocol {
  480. case firewall.ProtoTCP:
  481. c.Expires = time.Now().Add(f.TCPTimeout)
  482. case firewall.ProtoUDP:
  483. c.Expires = time.Now().Add(f.UDPTimeout)
  484. default:
  485. c.Expires = time.Now().Add(f.DefaultTimeout)
  486. }
  487. conntrack.Unlock()
  488. if localCache != nil {
  489. localCache[fp] = struct{}{}
  490. }
  491. return true
  492. }
  493. func (f *Firewall) addConn(fp firewall.Packet, incoming bool) {
  494. var timeout time.Duration
  495. c := &conn{}
  496. switch fp.Protocol {
  497. case firewall.ProtoTCP:
  498. timeout = f.TCPTimeout
  499. case firewall.ProtoUDP:
  500. timeout = f.UDPTimeout
  501. default:
  502. timeout = f.DefaultTimeout
  503. }
  504. conntrack := f.Conntrack
  505. conntrack.Lock()
  506. if _, ok := conntrack.Conns[fp]; !ok {
  507. conntrack.TimerWheel.Advance(time.Now())
  508. conntrack.TimerWheel.Add(fp, timeout)
  509. }
  510. // Record which rulesVersion allowed this connection, so we can retest after
  511. // firewall reload
  512. c.incoming = incoming
  513. c.rulesVersion = f.rulesVersion
  514. c.Expires = time.Now().Add(timeout)
  515. conntrack.Conns[fp] = c
  516. conntrack.Unlock()
  517. }
  518. // Evict checks if a conntrack entry has expired, if so it is removed, if not it is re-added to the wheel
  519. // Caller must own the connMutex lock!
  520. func (f *Firewall) evict(p firewall.Packet) {
  521. // Are we still tracking this conn?
  522. conntrack := f.Conntrack
  523. t, ok := conntrack.Conns[p]
  524. if !ok {
  525. return
  526. }
  527. newT := t.Expires.Sub(time.Now())
  528. // Timeout is in the future, re-add the timer
  529. if newT > 0 {
  530. conntrack.TimerWheel.Advance(time.Now())
  531. conntrack.TimerWheel.Add(p, newT)
  532. return
  533. }
  534. // This conn is done
  535. delete(conntrack.Conns, p)
  536. }
  537. func (ft *FirewallTable) match(p firewall.Packet, incoming bool, c *cert.CachedCertificate, caPool *cert.CAPool) bool {
  538. if ft.AnyProto.match(p, incoming, c, caPool) {
  539. return true
  540. }
  541. switch p.Protocol {
  542. case firewall.ProtoTCP:
  543. if ft.TCP.match(p, incoming, c, caPool) {
  544. return true
  545. }
  546. case firewall.ProtoUDP:
  547. if ft.UDP.match(p, incoming, c, caPool) {
  548. return true
  549. }
  550. case firewall.ProtoICMP, firewall.ProtoICMPv6:
  551. if ft.ICMP.match(p, incoming, c, caPool) {
  552. return true
  553. }
  554. }
  555. return false
  556. }
  557. func (fp firewallPort) addRule(f *Firewall, startPort int32, endPort int32, groups []string, host string, ip, localIp netip.Prefix, caName string, caSha string) error {
  558. if startPort > endPort {
  559. return fmt.Errorf("start port was lower than end port")
  560. }
  561. for i := startPort; i <= endPort; i++ {
  562. if _, ok := fp[i]; !ok {
  563. fp[i] = &FirewallCA{
  564. CANames: make(map[string]*FirewallRule),
  565. CAShas: make(map[string]*FirewallRule),
  566. }
  567. }
  568. if err := fp[i].addRule(f, groups, host, ip, localIp, caName, caSha); err != nil {
  569. return err
  570. }
  571. }
  572. return nil
  573. }
  574. func (fp firewallPort) match(p firewall.Packet, incoming bool, c *cert.CachedCertificate, caPool *cert.CAPool) bool {
  575. // We don't have any allowed ports, bail
  576. if fp == nil {
  577. return false
  578. }
  579. var port int32
  580. if p.Fragment {
  581. port = firewall.PortFragment
  582. } else if incoming {
  583. port = int32(p.LocalPort)
  584. } else {
  585. port = int32(p.RemotePort)
  586. }
  587. if fp[port].match(p, c, caPool) {
  588. return true
  589. }
  590. return fp[firewall.PortAny].match(p, c, caPool)
  591. }
  592. func (fc *FirewallCA) addRule(f *Firewall, groups []string, host string, ip, localIp netip.Prefix, caName, caSha string) error {
  593. fr := func() *FirewallRule {
  594. return &FirewallRule{
  595. Hosts: make(map[string]*firewallLocalCIDR),
  596. Groups: make([]*firewallGroups, 0),
  597. CIDR: new(bart.Table[*firewallLocalCIDR]),
  598. }
  599. }
  600. if caSha == "" && caName == "" {
  601. if fc.Any == nil {
  602. fc.Any = fr()
  603. }
  604. return fc.Any.addRule(f, groups, host, ip, localIp)
  605. }
  606. if caSha != "" {
  607. if _, ok := fc.CAShas[caSha]; !ok {
  608. fc.CAShas[caSha] = fr()
  609. }
  610. err := fc.CAShas[caSha].addRule(f, groups, host, ip, localIp)
  611. if err != nil {
  612. return err
  613. }
  614. }
  615. if caName != "" {
  616. if _, ok := fc.CANames[caName]; !ok {
  617. fc.CANames[caName] = fr()
  618. }
  619. err := fc.CANames[caName].addRule(f, groups, host, ip, localIp)
  620. if err != nil {
  621. return err
  622. }
  623. }
  624. return nil
  625. }
  626. func (fc *FirewallCA) match(p firewall.Packet, c *cert.CachedCertificate, caPool *cert.CAPool) bool {
  627. if fc == nil {
  628. return false
  629. }
  630. if fc.Any.match(p, c) {
  631. return true
  632. }
  633. if t, ok := fc.CAShas[c.Certificate.Issuer()]; ok {
  634. if t.match(p, c) {
  635. return true
  636. }
  637. }
  638. s, err := caPool.GetCAForCert(c.Certificate)
  639. if err != nil {
  640. return false
  641. }
  642. return fc.CANames[s.Certificate.Name()].match(p, c)
  643. }
  644. func (fr *FirewallRule) addRule(f *Firewall, groups []string, host string, ip, localCIDR netip.Prefix) error {
  645. flc := func() *firewallLocalCIDR {
  646. return &firewallLocalCIDR{
  647. LocalCIDR: new(bart.Lite),
  648. }
  649. }
  650. if fr.isAny(groups, host, ip) {
  651. if fr.Any == nil {
  652. fr.Any = flc()
  653. }
  654. return fr.Any.addRule(f, localCIDR)
  655. }
  656. if len(groups) > 0 {
  657. nlc := flc()
  658. err := nlc.addRule(f, localCIDR)
  659. if err != nil {
  660. return err
  661. }
  662. fr.Groups = append(fr.Groups, &firewallGroups{
  663. Groups: groups,
  664. LocalCIDR: nlc,
  665. })
  666. }
  667. if host != "" {
  668. nlc := fr.Hosts[host]
  669. if nlc == nil {
  670. nlc = flc()
  671. }
  672. err := nlc.addRule(f, localCIDR)
  673. if err != nil {
  674. return err
  675. }
  676. fr.Hosts[host] = nlc
  677. }
  678. if ip.IsValid() {
  679. nlc, _ := fr.CIDR.Get(ip)
  680. if nlc == nil {
  681. nlc = flc()
  682. }
  683. err := nlc.addRule(f, localCIDR)
  684. if err != nil {
  685. return err
  686. }
  687. fr.CIDR.Insert(ip, nlc)
  688. }
  689. return nil
  690. }
  691. func (fr *FirewallRule) isAny(groups []string, host string, ip netip.Prefix) bool {
  692. if len(groups) == 0 && host == "" && !ip.IsValid() {
  693. return true
  694. }
  695. for _, group := range groups {
  696. if group == "any" {
  697. return true
  698. }
  699. }
  700. if host == "any" {
  701. return true
  702. }
  703. if ip.IsValid() && ip.Bits() == 0 {
  704. return true
  705. }
  706. return false
  707. }
  708. func (fr *FirewallRule) match(p firewall.Packet, c *cert.CachedCertificate) bool {
  709. if fr == nil {
  710. return false
  711. }
  712. // Shortcut path for if groups, hosts, or cidr contained an `any`
  713. if fr.Any.match(p, c) {
  714. return true
  715. }
  716. // Need any of group, host, or cidr to match
  717. for _, sg := range fr.Groups {
  718. found := false
  719. for _, g := range sg.Groups {
  720. if _, ok := c.InvertedGroups[g]; !ok {
  721. found = false
  722. break
  723. }
  724. found = true
  725. }
  726. if found && sg.LocalCIDR.match(p, c) {
  727. return true
  728. }
  729. }
  730. if fr.Hosts != nil {
  731. if flc, ok := fr.Hosts[c.Certificate.Name()]; ok {
  732. if flc.match(p, c) {
  733. return true
  734. }
  735. }
  736. }
  737. for _, v := range fr.CIDR.Supernets(netip.PrefixFrom(p.RemoteAddr, p.RemoteAddr.BitLen())) {
  738. if v.match(p, c) {
  739. return true
  740. }
  741. }
  742. return false
  743. }
  744. func (flc *firewallLocalCIDR) addRule(f *Firewall, localIp netip.Prefix) error {
  745. if !localIp.IsValid() {
  746. if !f.hasUnsafeNetworks || f.defaultLocalCIDRAny {
  747. flc.Any = true
  748. return nil
  749. }
  750. for _, network := range f.assignedNetworks {
  751. flc.LocalCIDR.Insert(network)
  752. }
  753. return nil
  754. } else if localIp.Bits() == 0 {
  755. flc.Any = true
  756. return nil
  757. }
  758. flc.LocalCIDR.Insert(localIp)
  759. return nil
  760. }
  761. func (flc *firewallLocalCIDR) match(p firewall.Packet, c *cert.CachedCertificate) bool {
  762. if flc == nil {
  763. return false
  764. }
  765. if flc.Any {
  766. return true
  767. }
  768. return flc.LocalCIDR.Contains(p.LocalAddr)
  769. }
  770. type rule struct {
  771. Port string
  772. Code string
  773. Proto string
  774. Host string
  775. Group string
  776. Groups []string
  777. Cidr string
  778. LocalCidr string
  779. CAName string
  780. CASha string
  781. }
  782. func convertRule(l *logrus.Logger, p any, table string, i int) (rule, error) {
  783. r := rule{}
  784. m, ok := p.(map[string]any)
  785. if !ok {
  786. return r, errors.New("could not parse rule")
  787. }
  788. toString := func(k string, m map[string]any) string {
  789. v, ok := m[k]
  790. if !ok {
  791. return ""
  792. }
  793. return fmt.Sprintf("%v", v)
  794. }
  795. r.Port = toString("port", m)
  796. r.Code = toString("code", m)
  797. r.Proto = toString("proto", m)
  798. r.Host = toString("host", m)
  799. r.Cidr = toString("cidr", m)
  800. r.LocalCidr = toString("local_cidr", m)
  801. r.CAName = toString("ca_name", m)
  802. r.CASha = toString("ca_sha", m)
  803. // Make sure group isn't an array
  804. if v, ok := m["group"].([]any); ok {
  805. if len(v) > 1 {
  806. return r, errors.New("group should contain a single value, an array with more than one entry was provided")
  807. }
  808. l.Warnf("%s rule #%v; group was an array with a single value, converting to simple value", table, i)
  809. m["group"] = v[0]
  810. }
  811. r.Group = toString("group", m)
  812. if rg, ok := m["groups"]; ok {
  813. switch reflect.TypeOf(rg).Kind() {
  814. case reflect.Slice:
  815. v := reflect.ValueOf(rg)
  816. r.Groups = make([]string, v.Len())
  817. for i := 0; i < v.Len(); i++ {
  818. r.Groups[i] = v.Index(i).Interface().(string)
  819. }
  820. case reflect.String:
  821. r.Groups = []string{rg.(string)}
  822. default:
  823. r.Groups = []string{fmt.Sprintf("%v", rg)}
  824. }
  825. }
  826. return r, nil
  827. }
  828. func parsePort(s string) (startPort, endPort int32, err error) {
  829. if s == "any" {
  830. startPort = firewall.PortAny
  831. endPort = firewall.PortAny
  832. } else if s == "fragment" {
  833. startPort = firewall.PortFragment
  834. endPort = firewall.PortFragment
  835. } else if strings.Contains(s, `-`) {
  836. sPorts := strings.SplitN(s, `-`, 2)
  837. sPorts[0] = strings.Trim(sPorts[0], " ")
  838. sPorts[1] = strings.Trim(sPorts[1], " ")
  839. if len(sPorts) != 2 || sPorts[0] == "" || sPorts[1] == "" {
  840. return 0, 0, fmt.Errorf("appears to be a range but could not be parsed; `%s`", s)
  841. }
  842. rStartPort, err := strconv.Atoi(sPorts[0])
  843. if err != nil {
  844. return 0, 0, fmt.Errorf("beginning range was not a number; `%s`", sPorts[0])
  845. }
  846. rEndPort, err := strconv.Atoi(sPorts[1])
  847. if err != nil {
  848. return 0, 0, fmt.Errorf("ending range was not a number; `%s`", sPorts[1])
  849. }
  850. startPort = int32(rStartPort)
  851. endPort = int32(rEndPort)
  852. if startPort == firewall.PortAny {
  853. endPort = firewall.PortAny
  854. }
  855. } else {
  856. rPort, err := strconv.Atoi(s)
  857. if err != nil {
  858. return 0, 0, fmt.Errorf("was not a number; `%s`", s)
  859. }
  860. startPort = int32(rPort)
  861. endPort = startPort
  862. }
  863. return
  864. }