encryption.go 14 KB

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  1. package overlay
  2. import (
  3. "bytes"
  4. "encoding/binary"
  5. "encoding/hex"
  6. "fmt"
  7. "hash/fnv"
  8. "net"
  9. "sync"
  10. "syscall"
  11. "strconv"
  12. "github.com/Sirupsen/logrus"
  13. "github.com/docker/libnetwork/iptables"
  14. "github.com/docker/libnetwork/ns"
  15. "github.com/docker/libnetwork/types"
  16. "github.com/vishvananda/netlink"
  17. )
  18. const (
  19. r = 0xD0C4E3
  20. timeout = 30
  21. pktExpansion = 26 // SPI(4) + SeqN(4) + IV(8) + PadLength(1) + NextHeader(1) + ICV(8)
  22. )
  23. const (
  24. forward = iota + 1
  25. reverse
  26. bidir
  27. )
  28. var spMark = netlink.XfrmMark{Value: uint32(r), Mask: 0xffffffff}
  29. type key struct {
  30. value []byte
  31. tag uint32
  32. }
  33. func (k *key) String() string {
  34. if k != nil {
  35. return fmt.Sprintf("(key: %s, tag: 0x%x)", hex.EncodeToString(k.value)[0:5], k.tag)
  36. }
  37. return ""
  38. }
  39. type spi struct {
  40. forward int
  41. reverse int
  42. }
  43. func (s *spi) String() string {
  44. return fmt.Sprintf("SPI(FWD: 0x%x, REV: 0x%x)", uint32(s.forward), uint32(s.reverse))
  45. }
  46. type encrMap struct {
  47. nodes map[string][]*spi
  48. sync.Mutex
  49. }
  50. func (e *encrMap) String() string {
  51. e.Lock()
  52. defer e.Unlock()
  53. b := new(bytes.Buffer)
  54. for k, v := range e.nodes {
  55. b.WriteString("\n")
  56. b.WriteString(k)
  57. b.WriteString(":")
  58. b.WriteString("[")
  59. for _, s := range v {
  60. b.WriteString(s.String())
  61. b.WriteString(",")
  62. }
  63. b.WriteString("]")
  64. }
  65. return b.String()
  66. }
  67. func (d *driver) checkEncryption(nid string, rIP net.IP, vxlanID uint32, isLocal, add bool) error {
  68. logrus.Debugf("checkEncryption(%s, %v, %d, %t)", nid[0:7], rIP, vxlanID, isLocal)
  69. n := d.network(nid)
  70. if n == nil || !n.secure {
  71. return nil
  72. }
  73. if len(d.keys) == 0 {
  74. return types.ForbiddenErrorf("encryption key is not present")
  75. }
  76. lIP := net.ParseIP(d.bindAddress)
  77. aIP := net.ParseIP(d.advertiseAddress)
  78. nodes := map[string]net.IP{}
  79. switch {
  80. case isLocal:
  81. if err := d.peerDbNetworkWalk(nid, func(pKey *peerKey, pEntry *peerEntry) bool {
  82. if !aIP.Equal(pEntry.vtep) {
  83. nodes[pEntry.vtep.String()] = pEntry.vtep
  84. }
  85. return false
  86. }); err != nil {
  87. logrus.Warnf("Failed to retrieve list of participating nodes in overlay network %s: %v", nid[0:5], err)
  88. }
  89. default:
  90. if len(d.network(nid).endpoints) > 0 {
  91. nodes[rIP.String()] = rIP
  92. }
  93. }
  94. logrus.Debugf("List of nodes: %s", nodes)
  95. if add {
  96. for _, rIP := range nodes {
  97. if err := setupEncryption(lIP, aIP, rIP, vxlanID, d.secMap, d.keys); err != nil {
  98. logrus.Warnf("Failed to program network encryption between %s and %s: %v", lIP, rIP, err)
  99. }
  100. }
  101. } else {
  102. if len(nodes) == 0 {
  103. if err := removeEncryption(lIP, rIP, d.secMap); err != nil {
  104. logrus.Warnf("Failed to remove network encryption between %s and %s: %v", lIP, rIP, err)
  105. }
  106. }
  107. }
  108. return nil
  109. }
  110. func setupEncryption(localIP, advIP, remoteIP net.IP, vni uint32, em *encrMap, keys []*key) error {
  111. logrus.Debugf("Programming encryption for vxlan %d between %s and %s", vni, localIP, remoteIP)
  112. rIPs := remoteIP.String()
  113. indices := make([]*spi, 0, len(keys))
  114. err := programMangle(vni, true)
  115. if err != nil {
  116. logrus.Warn(err)
  117. }
  118. err = programInput(vni, true)
  119. if err != nil {
  120. logrus.Warn(err)
  121. }
  122. for i, k := range keys {
  123. spis := &spi{buildSPI(advIP, remoteIP, k.tag), buildSPI(remoteIP, advIP, k.tag)}
  124. dir := reverse
  125. if i == 0 {
  126. dir = bidir
  127. }
  128. fSA, rSA, err := programSA(localIP, remoteIP, spis, k, dir, true)
  129. if err != nil {
  130. logrus.Warn(err)
  131. }
  132. indices = append(indices, spis)
  133. if i != 0 {
  134. continue
  135. }
  136. err = programSP(fSA, rSA, true)
  137. if err != nil {
  138. logrus.Warn(err)
  139. }
  140. }
  141. em.Lock()
  142. em.nodes[rIPs] = indices
  143. em.Unlock()
  144. return nil
  145. }
  146. func removeEncryption(localIP, remoteIP net.IP, em *encrMap) error {
  147. em.Lock()
  148. indices, ok := em.nodes[remoteIP.String()]
  149. em.Unlock()
  150. if !ok {
  151. return nil
  152. }
  153. for i, idxs := range indices {
  154. dir := reverse
  155. if i == 0 {
  156. dir = bidir
  157. }
  158. fSA, rSA, err := programSA(localIP, remoteIP, idxs, nil, dir, false)
  159. if err != nil {
  160. logrus.Warn(err)
  161. }
  162. if i != 0 {
  163. continue
  164. }
  165. err = programSP(fSA, rSA, false)
  166. if err != nil {
  167. logrus.Warn(err)
  168. }
  169. }
  170. return nil
  171. }
  172. func programMangle(vni uint32, add bool) (err error) {
  173. var (
  174. p = strconv.FormatUint(uint64(vxlanPort), 10)
  175. c = fmt.Sprintf("0>>22&0x3C@12&0xFFFFFF00=%d", int(vni)<<8)
  176. m = strconv.FormatUint(uint64(r), 10)
  177. chain = "OUTPUT"
  178. rule = []string{"-p", "udp", "--dport", p, "-m", "u32", "--u32", c, "-j", "MARK", "--set-mark", m}
  179. a = "-A"
  180. action = "install"
  181. )
  182. if add == iptables.Exists(iptables.Mangle, chain, rule...) {
  183. return
  184. }
  185. if !add {
  186. a = "-D"
  187. action = "remove"
  188. }
  189. if err = iptables.RawCombinedOutput(append([]string{"-t", string(iptables.Mangle), a, chain}, rule...)...); err != nil {
  190. logrus.Warnf("could not %s mangle rule: %v", action, err)
  191. }
  192. return
  193. }
  194. func programInput(vni uint32, add bool) (err error) {
  195. var (
  196. port = strconv.FormatUint(uint64(vxlanPort), 10)
  197. vniMatch = fmt.Sprintf("0>>22&0x3C@12&0xFFFFFF00=%d", int(vni)<<8)
  198. plainVxlan = []string{"-p", "udp", "--dport", port, "-m", "u32", "--u32", vniMatch, "-j"}
  199. ipsecVxlan = append([]string{"-m", "policy", "--dir", "in", "--pol", "ipsec"}, plainVxlan...)
  200. block = append(plainVxlan, "DROP")
  201. accept = append(ipsecVxlan, "ACCEPT")
  202. chain = "INPUT"
  203. action = iptables.Append
  204. msg = "add"
  205. )
  206. if !add {
  207. action = iptables.Delete
  208. msg = "remove"
  209. }
  210. if err := iptables.ProgramRule(iptables.Filter, chain, action, accept); err != nil {
  211. logrus.Errorf("could not %s input rule: %v. Please do it manually.", msg, err)
  212. }
  213. if err := iptables.ProgramRule(iptables.Filter, chain, action, block); err != nil {
  214. logrus.Errorf("could not %s input rule: %v. Please do it manually.", msg, err)
  215. }
  216. return
  217. }
  218. func programSA(localIP, remoteIP net.IP, spi *spi, k *key, dir int, add bool) (fSA *netlink.XfrmState, rSA *netlink.XfrmState, err error) {
  219. var (
  220. action = "Removing"
  221. xfrmProgram = ns.NlHandle().XfrmStateDel
  222. )
  223. if add {
  224. action = "Adding"
  225. xfrmProgram = ns.NlHandle().XfrmStateAdd
  226. }
  227. if dir&reverse > 0 {
  228. rSA = &netlink.XfrmState{
  229. Src: remoteIP,
  230. Dst: localIP,
  231. Proto: netlink.XFRM_PROTO_ESP,
  232. Spi: spi.reverse,
  233. Mode: netlink.XFRM_MODE_TRANSPORT,
  234. Reqid: r,
  235. }
  236. if add {
  237. rSA.Aead = buildAeadAlgo(k, spi.reverse)
  238. }
  239. exists, err := saExists(rSA)
  240. if err != nil {
  241. exists = !add
  242. }
  243. if add != exists {
  244. logrus.Debugf("%s: rSA{%s}", action, rSA)
  245. if err := xfrmProgram(rSA); err != nil {
  246. logrus.Warnf("Failed %s rSA{%s}: %v", action, rSA, err)
  247. }
  248. }
  249. }
  250. if dir&forward > 0 {
  251. fSA = &netlink.XfrmState{
  252. Src: localIP,
  253. Dst: remoteIP,
  254. Proto: netlink.XFRM_PROTO_ESP,
  255. Spi: spi.forward,
  256. Mode: netlink.XFRM_MODE_TRANSPORT,
  257. Reqid: r,
  258. }
  259. if add {
  260. fSA.Aead = buildAeadAlgo(k, spi.forward)
  261. }
  262. exists, err := saExists(fSA)
  263. if err != nil {
  264. exists = !add
  265. }
  266. if add != exists {
  267. logrus.Debugf("%s fSA{%s}", action, fSA)
  268. if err := xfrmProgram(fSA); err != nil {
  269. logrus.Warnf("Failed %s fSA{%s}: %v.", action, fSA, err)
  270. }
  271. }
  272. }
  273. return
  274. }
  275. func programSP(fSA *netlink.XfrmState, rSA *netlink.XfrmState, add bool) error {
  276. action := "Removing"
  277. xfrmProgram := ns.NlHandle().XfrmPolicyDel
  278. if add {
  279. action = "Adding"
  280. xfrmProgram = ns.NlHandle().XfrmPolicyAdd
  281. }
  282. // Create a congruent cidr
  283. s := types.GetMinimalIP(fSA.Src)
  284. d := types.GetMinimalIP(fSA.Dst)
  285. fullMask := net.CIDRMask(8*len(s), 8*len(s))
  286. fPol := &netlink.XfrmPolicy{
  287. Src: &net.IPNet{IP: s, Mask: fullMask},
  288. Dst: &net.IPNet{IP: d, Mask: fullMask},
  289. Dir: netlink.XFRM_DIR_OUT,
  290. Proto: 17,
  291. DstPort: 4789,
  292. Mark: &spMark,
  293. Tmpls: []netlink.XfrmPolicyTmpl{
  294. {
  295. Src: fSA.Src,
  296. Dst: fSA.Dst,
  297. Proto: netlink.XFRM_PROTO_ESP,
  298. Mode: netlink.XFRM_MODE_TRANSPORT,
  299. Spi: fSA.Spi,
  300. Reqid: r,
  301. },
  302. },
  303. }
  304. exists, err := spExists(fPol)
  305. if err != nil {
  306. exists = !add
  307. }
  308. if add != exists {
  309. logrus.Debugf("%s fSP{%s}", action, fPol)
  310. if err := xfrmProgram(fPol); err != nil {
  311. logrus.Warnf("%s fSP{%s}: %v", action, fPol, err)
  312. }
  313. }
  314. return nil
  315. }
  316. func saExists(sa *netlink.XfrmState) (bool, error) {
  317. _, err := ns.NlHandle().XfrmStateGet(sa)
  318. switch err {
  319. case nil:
  320. return true, nil
  321. case syscall.ESRCH:
  322. return false, nil
  323. default:
  324. err = fmt.Errorf("Error while checking for SA existence: %v", err)
  325. logrus.Warn(err)
  326. return false, err
  327. }
  328. }
  329. func spExists(sp *netlink.XfrmPolicy) (bool, error) {
  330. _, err := ns.NlHandle().XfrmPolicyGet(sp)
  331. switch err {
  332. case nil:
  333. return true, nil
  334. case syscall.ENOENT:
  335. return false, nil
  336. default:
  337. err = fmt.Errorf("Error while checking for SP existence: %v", err)
  338. logrus.Warn(err)
  339. return false, err
  340. }
  341. }
  342. func buildSPI(src, dst net.IP, st uint32) int {
  343. b := make([]byte, 4)
  344. binary.BigEndian.PutUint32(b, st)
  345. h := fnv.New32a()
  346. h.Write(src)
  347. h.Write(b)
  348. h.Write(dst)
  349. return int(binary.BigEndian.Uint32(h.Sum(nil)))
  350. }
  351. func buildAeadAlgo(k *key, s int) *netlink.XfrmStateAlgo {
  352. salt := make([]byte, 4)
  353. binary.BigEndian.PutUint32(salt, uint32(s))
  354. return &netlink.XfrmStateAlgo{
  355. Name: "rfc4106(gcm(aes))",
  356. Key: append(k.value, salt...),
  357. ICVLen: 64,
  358. }
  359. }
  360. func (d *driver) secMapWalk(f func(string, []*spi) ([]*spi, bool)) error {
  361. d.secMap.Lock()
  362. for node, indices := range d.secMap.nodes {
  363. idxs, stop := f(node, indices)
  364. if idxs != nil {
  365. d.secMap.nodes[node] = idxs
  366. }
  367. if stop {
  368. break
  369. }
  370. }
  371. d.secMap.Unlock()
  372. return nil
  373. }
  374. func (d *driver) setKeys(keys []*key) error {
  375. // Remove any stale policy, state
  376. clearEncryptionStates()
  377. // Accept the encryption keys and clear any stale encryption map
  378. d.Lock()
  379. d.keys = keys
  380. d.secMap = &encrMap{nodes: map[string][]*spi{}}
  381. d.Unlock()
  382. logrus.Debugf("Initial encryption keys: %v", d.keys)
  383. return nil
  384. }
  385. // updateKeys allows to add a new key and/or change the primary key and/or prune an existing key
  386. // The primary key is the key used in transmission and will go in first position in the list.
  387. func (d *driver) updateKeys(newKey, primary, pruneKey *key) error {
  388. logrus.Debugf("Updating Keys. New: %v, Primary: %v, Pruned: %v", newKey, primary, pruneKey)
  389. logrus.Debugf("Current: %v", d.keys)
  390. var (
  391. newIdx = -1
  392. priIdx = -1
  393. delIdx = -1
  394. lIP = net.ParseIP(d.bindAddress)
  395. aIP = net.ParseIP(d.advertiseAddress)
  396. )
  397. d.Lock()
  398. // add new
  399. if newKey != nil {
  400. d.keys = append(d.keys, newKey)
  401. newIdx += len(d.keys)
  402. }
  403. for i, k := range d.keys {
  404. if primary != nil && k.tag == primary.tag {
  405. priIdx = i
  406. }
  407. if pruneKey != nil && k.tag == pruneKey.tag {
  408. delIdx = i
  409. }
  410. }
  411. d.Unlock()
  412. if (newKey != nil && newIdx == -1) ||
  413. (primary != nil && priIdx == -1) ||
  414. (pruneKey != nil && delIdx == -1) {
  415. return types.BadRequestErrorf("cannot find proper key indices while processing key update:"+
  416. "(newIdx,priIdx,delIdx):(%d, %d, %d)", newIdx, priIdx, delIdx)
  417. }
  418. d.secMapWalk(func(rIPs string, spis []*spi) ([]*spi, bool) {
  419. rIP := net.ParseIP(rIPs)
  420. return updateNodeKey(lIP, aIP, rIP, spis, d.keys, newIdx, priIdx, delIdx), false
  421. })
  422. d.Lock()
  423. // swap primary
  424. if priIdx != -1 {
  425. swp := d.keys[0]
  426. d.keys[0] = d.keys[priIdx]
  427. d.keys[priIdx] = swp
  428. }
  429. // prune
  430. if delIdx != -1 {
  431. if delIdx == 0 {
  432. delIdx = priIdx
  433. }
  434. d.keys = append(d.keys[:delIdx], d.keys[delIdx+1:]...)
  435. }
  436. d.Unlock()
  437. logrus.Debugf("Updated: %v", d.keys)
  438. return nil
  439. }
  440. /********************************************************
  441. * Steady state: rSA0, rSA1, rSA2, fSA1, fSP1
  442. * Rotation --> -rSA0, +rSA3, +fSA2, +fSP2/-fSP1, -fSA1
  443. * Steady state: rSA1, rSA2, rSA3, fSA2, fSP2
  444. *********************************************************/
  445. // Spis and keys are sorted in such away the one in position 0 is the primary
  446. func updateNodeKey(lIP, aIP, rIP net.IP, idxs []*spi, curKeys []*key, newIdx, priIdx, delIdx int) []*spi {
  447. logrus.Debugf("Updating keys for node: %s (%d,%d,%d)", rIP, newIdx, priIdx, delIdx)
  448. spis := idxs
  449. logrus.Debugf("Current: %v", spis)
  450. // add new
  451. if newIdx != -1 {
  452. spis = append(spis, &spi{
  453. forward: buildSPI(aIP, rIP, curKeys[newIdx].tag),
  454. reverse: buildSPI(rIP, aIP, curKeys[newIdx].tag),
  455. })
  456. }
  457. if delIdx != -1 {
  458. // -rSA0
  459. programSA(lIP, rIP, spis[delIdx], nil, reverse, false)
  460. }
  461. if newIdx > -1 {
  462. // +rSA2
  463. programSA(lIP, rIP, spis[newIdx], curKeys[newIdx], reverse, true)
  464. }
  465. if priIdx > 0 {
  466. // +fSA2
  467. fSA2, _, _ := programSA(lIP, rIP, spis[priIdx], curKeys[priIdx], forward, true)
  468. // +fSP2, -fSP1
  469. s := types.GetMinimalIP(fSA2.Src)
  470. d := types.GetMinimalIP(fSA2.Dst)
  471. fullMask := net.CIDRMask(8*len(s), 8*len(s))
  472. fSP1 := &netlink.XfrmPolicy{
  473. Src: &net.IPNet{IP: s, Mask: fullMask},
  474. Dst: &net.IPNet{IP: d, Mask: fullMask},
  475. Dir: netlink.XFRM_DIR_OUT,
  476. Proto: 17,
  477. DstPort: 4789,
  478. Mark: &spMark,
  479. Tmpls: []netlink.XfrmPolicyTmpl{
  480. {
  481. Src: fSA2.Src,
  482. Dst: fSA2.Dst,
  483. Proto: netlink.XFRM_PROTO_ESP,
  484. Mode: netlink.XFRM_MODE_TRANSPORT,
  485. Spi: fSA2.Spi,
  486. Reqid: r,
  487. },
  488. },
  489. }
  490. logrus.Debugf("Updating fSP{%s}", fSP1)
  491. if err := ns.NlHandle().XfrmPolicyUpdate(fSP1); err != nil {
  492. logrus.Warnf("Failed to update fSP{%s}: %v", fSP1, err)
  493. }
  494. // -fSA1
  495. programSA(lIP, rIP, spis[0], nil, forward, false)
  496. }
  497. // swap
  498. if priIdx > 0 {
  499. swp := spis[0]
  500. spis[0] = spis[priIdx]
  501. spis[priIdx] = swp
  502. }
  503. // prune
  504. if delIdx != -1 {
  505. if delIdx == 0 {
  506. delIdx = priIdx
  507. }
  508. spis = append(spis[:delIdx], spis[delIdx+1:]...)
  509. }
  510. logrus.Debugf("Updated: %v", spis)
  511. return spis
  512. }
  513. func (n *network) maxMTU() int {
  514. mtu := 1500
  515. if n.mtu != 0 {
  516. mtu = n.mtu
  517. }
  518. mtu -= vxlanEncap
  519. if n.secure {
  520. // In case of encryption account for the
  521. // esp packet espansion and padding
  522. mtu -= pktExpansion
  523. mtu -= (mtu % 4)
  524. }
  525. return mtu
  526. }
  527. func clearEncryptionStates() {
  528. nlh := ns.NlHandle()
  529. spList, err := nlh.XfrmPolicyList(netlink.FAMILY_ALL)
  530. if err != nil {
  531. logrus.Warnf("Failed to retrieve SP list for cleanup: %v", err)
  532. }
  533. saList, err := nlh.XfrmStateList(netlink.FAMILY_ALL)
  534. if err != nil {
  535. logrus.Warnf("Failed to retrieve SA list for cleanup: %v", err)
  536. }
  537. for _, sp := range spList {
  538. if sp.Mark != nil && sp.Mark.Value == spMark.Value {
  539. if err := nlh.XfrmPolicyDel(&sp); err != nil {
  540. logrus.Warnf("Failed to delete stale SP %s: %v", sp, err)
  541. continue
  542. }
  543. logrus.Debugf("Removed stale SP: %s", sp)
  544. }
  545. }
  546. for _, sa := range saList {
  547. if sa.Reqid == r {
  548. if err := nlh.XfrmStateDel(&sa); err != nil {
  549. logrus.Warnf("Failed to delete stale SA %s: %v", sa, err)
  550. continue
  551. }
  552. logrus.Debugf("Removed stale SA: %s", sa)
  553. }
  554. }
  555. }