resolver.go 14 KB

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  1. package libnetwork
  2. import (
  3. "fmt"
  4. "math/rand"
  5. "net"
  6. "strings"
  7. "sync"
  8. "time"
  9. "github.com/docker/libnetwork/types"
  10. "github.com/miekg/dns"
  11. "github.com/sirupsen/logrus"
  12. )
  13. // Resolver represents the embedded DNS server in Docker. It operates
  14. // by listening on container's loopback interface for DNS queries.
  15. type Resolver interface {
  16. // Start starts the name server for the container
  17. Start() error
  18. // Stop stops the name server for the container. Stopped resolver
  19. // can be reused after running the SetupFunc again.
  20. Stop()
  21. // SetupFunc() provides the setup function that should be run
  22. // in the container's network namespace.
  23. SetupFunc(int) func()
  24. // NameServer() returns the IP of the DNS resolver for the
  25. // containers.
  26. NameServer() string
  27. // SetExtServers configures the external nameservers the resolver
  28. // should use to forward queries
  29. SetExtServers([]extDNSEntry)
  30. // ResolverOptions returns resolv.conf options that should be set
  31. ResolverOptions() []string
  32. }
  33. // DNSBackend represents a backend DNS resolver used for DNS name
  34. // resolution. All the queries to the resolver are forwared to the
  35. // backend resolver.
  36. type DNSBackend interface {
  37. // ResolveName resolves a service name to an IPv4 or IPv6 address by searching
  38. // the networks the sandbox is connected to. For IPv6 queries, second return
  39. // value will be true if the name exists in docker domain but doesn't have an
  40. // IPv6 address. Such queries shouldn't be forwarded to external nameservers.
  41. ResolveName(name string, iplen int) ([]net.IP, bool)
  42. // ResolveIP returns the service name for the passed in IP. IP is in reverse dotted
  43. // notation; the format used for DNS PTR records
  44. ResolveIP(name string) string
  45. // ResolveService returns all the backend details about the containers or hosts
  46. // backing a service. Its purpose is to satisfy an SRV query
  47. ResolveService(name string) ([]*net.SRV, []net.IP)
  48. // ExecFunc allows a function to be executed in the context of the backend
  49. // on behalf of the resolver.
  50. ExecFunc(f func()) error
  51. //NdotsSet queries the backends ndots dns option settings
  52. NdotsSet() bool
  53. // HandleQueryResp passes the name & IP from a response to the backend. backend
  54. // can use it to maintain any required state about the resolution
  55. HandleQueryResp(name string, ip net.IP)
  56. }
  57. const (
  58. dnsPort = "53"
  59. ptrIPv4domain = ".in-addr.arpa."
  60. ptrIPv6domain = ".ip6.arpa."
  61. respTTL = 600
  62. maxExtDNS = 3 //max number of external servers to try
  63. extIOTimeout = 4 * time.Second
  64. defaultRespSize = 512
  65. maxConcurrent = 100
  66. logInterval = 2 * time.Second
  67. )
  68. type extDNSEntry struct {
  69. IPStr string
  70. HostLoopback bool
  71. }
  72. // resolver implements the Resolver interface
  73. type resolver struct {
  74. backend DNSBackend
  75. extDNSList [maxExtDNS]extDNSEntry
  76. server *dns.Server
  77. conn *net.UDPConn
  78. tcpServer *dns.Server
  79. tcpListen *net.TCPListener
  80. err error
  81. count int32
  82. tStamp time.Time
  83. queryLock sync.Mutex
  84. listenAddress string
  85. proxyDNS bool
  86. resolverKey string
  87. startCh chan struct{}
  88. }
  89. func init() {
  90. rand.Seed(time.Now().Unix())
  91. }
  92. // NewResolver creates a new instance of the Resolver
  93. func NewResolver(address string, proxyDNS bool, resolverKey string, backend DNSBackend) Resolver {
  94. return &resolver{
  95. backend: backend,
  96. proxyDNS: proxyDNS,
  97. listenAddress: address,
  98. resolverKey: resolverKey,
  99. err: fmt.Errorf("setup not done yet"),
  100. startCh: make(chan struct{}, 1),
  101. }
  102. }
  103. func (r *resolver) SetupFunc(port int) func() {
  104. return (func() {
  105. var err error
  106. // DNS operates primarily on UDP
  107. addr := &net.UDPAddr{
  108. IP: net.ParseIP(r.listenAddress),
  109. Port: port,
  110. }
  111. r.conn, err = net.ListenUDP("udp", addr)
  112. if err != nil {
  113. r.err = fmt.Errorf("error in opening name server socket %v", err)
  114. return
  115. }
  116. // Listen on a TCP as well
  117. tcpaddr := &net.TCPAddr{
  118. IP: net.ParseIP(r.listenAddress),
  119. Port: port,
  120. }
  121. r.tcpListen, err = net.ListenTCP("tcp", tcpaddr)
  122. if err != nil {
  123. r.err = fmt.Errorf("error in opening name TCP server socket %v", err)
  124. return
  125. }
  126. r.err = nil
  127. })
  128. }
  129. func (r *resolver) Start() error {
  130. r.startCh <- struct{}{}
  131. defer func() { <-r.startCh }()
  132. // make sure the resolver has been setup before starting
  133. if r.err != nil {
  134. return r.err
  135. }
  136. if err := r.setupIPTable(); err != nil {
  137. return fmt.Errorf("setting up IP table rules failed: %v", err)
  138. }
  139. s := &dns.Server{Handler: r, PacketConn: r.conn}
  140. r.server = s
  141. go func() {
  142. s.ActivateAndServe()
  143. }()
  144. tcpServer := &dns.Server{Handler: r, Listener: r.tcpListen}
  145. r.tcpServer = tcpServer
  146. go func() {
  147. tcpServer.ActivateAndServe()
  148. }()
  149. return nil
  150. }
  151. func (r *resolver) Stop() {
  152. r.startCh <- struct{}{}
  153. defer func() { <-r.startCh }()
  154. if r.server != nil {
  155. r.server.Shutdown()
  156. }
  157. if r.tcpServer != nil {
  158. r.tcpServer.Shutdown()
  159. }
  160. r.conn = nil
  161. r.tcpServer = nil
  162. r.err = fmt.Errorf("setup not done yet")
  163. r.tStamp = time.Time{}
  164. r.count = 0
  165. r.queryLock = sync.Mutex{}
  166. }
  167. func (r *resolver) SetExtServers(extDNS []extDNSEntry) {
  168. l := len(extDNS)
  169. if l > maxExtDNS {
  170. l = maxExtDNS
  171. }
  172. for i := 0; i < l; i++ {
  173. r.extDNSList[i] = extDNS[i]
  174. }
  175. }
  176. func (r *resolver) NameServer() string {
  177. return r.listenAddress
  178. }
  179. func (r *resolver) ResolverOptions() []string {
  180. return []string{"ndots:0"}
  181. }
  182. func setCommonFlags(msg *dns.Msg) {
  183. msg.RecursionAvailable = true
  184. }
  185. func shuffleAddr(addr []net.IP) []net.IP {
  186. for i := len(addr) - 1; i > 0; i-- {
  187. r := rand.Intn(i + 1)
  188. addr[i], addr[r] = addr[r], addr[i]
  189. }
  190. return addr
  191. }
  192. func createRespMsg(query *dns.Msg) *dns.Msg {
  193. resp := new(dns.Msg)
  194. resp.SetReply(query)
  195. setCommonFlags(resp)
  196. return resp
  197. }
  198. func (r *resolver) handleMXQuery(name string, query *dns.Msg) (*dns.Msg, error) {
  199. addrv4, _ := r.backend.ResolveName(name, types.IPv4)
  200. addrv6, _ := r.backend.ResolveName(name, types.IPv6)
  201. if addrv4 == nil && addrv6 == nil {
  202. return nil, nil
  203. }
  204. // We were able to resolve the name. Respond with an empty list with
  205. // RcodeSuccess/NOERROR so that email clients can treat it as "implicit MX"
  206. // [RFC 5321 Section-5.1] and issue a Type A/AAAA query for the name.
  207. resp := createRespMsg(query)
  208. return resp, nil
  209. }
  210. func (r *resolver) handleIPQuery(name string, query *dns.Msg, ipType int) (*dns.Msg, error) {
  211. var addr []net.IP
  212. var ipv6Miss bool
  213. addr, ipv6Miss = r.backend.ResolveName(name, ipType)
  214. if addr == nil && ipv6Miss {
  215. // Send a reply without any Answer sections
  216. logrus.Debugf("[resolver] lookup name %s present without IPv6 address", name)
  217. resp := createRespMsg(query)
  218. return resp, nil
  219. }
  220. if addr == nil {
  221. return nil, nil
  222. }
  223. logrus.Debugf("[resolver] lookup for %s: IP %v", name, addr)
  224. resp := createRespMsg(query)
  225. if len(addr) > 1 {
  226. addr = shuffleAddr(addr)
  227. }
  228. if ipType == types.IPv4 {
  229. for _, ip := range addr {
  230. rr := new(dns.A)
  231. rr.Hdr = dns.RR_Header{Name: name, Rrtype: dns.TypeA, Class: dns.ClassINET, Ttl: respTTL}
  232. rr.A = ip
  233. resp.Answer = append(resp.Answer, rr)
  234. }
  235. } else {
  236. for _, ip := range addr {
  237. rr := new(dns.AAAA)
  238. rr.Hdr = dns.RR_Header{Name: name, Rrtype: dns.TypeAAAA, Class: dns.ClassINET, Ttl: respTTL}
  239. rr.AAAA = ip
  240. resp.Answer = append(resp.Answer, rr)
  241. }
  242. }
  243. return resp, nil
  244. }
  245. func (r *resolver) handlePTRQuery(ptr string, query *dns.Msg) (*dns.Msg, error) {
  246. var parts []string
  247. if strings.HasSuffix(ptr, ptrIPv4domain) {
  248. parts = strings.Split(ptr, ptrIPv4domain)
  249. } else if strings.HasSuffix(ptr, ptrIPv6domain) {
  250. parts = strings.Split(ptr, ptrIPv6domain)
  251. } else {
  252. return nil, fmt.Errorf("invalid PTR query, %v", ptr)
  253. }
  254. host := r.backend.ResolveIP(parts[0])
  255. if len(host) == 0 {
  256. return nil, nil
  257. }
  258. logrus.Debugf("[resolver] lookup for IP %s: name %s", parts[0], host)
  259. fqdn := dns.Fqdn(host)
  260. resp := new(dns.Msg)
  261. resp.SetReply(query)
  262. setCommonFlags(resp)
  263. rr := new(dns.PTR)
  264. rr.Hdr = dns.RR_Header{Name: ptr, Rrtype: dns.TypePTR, Class: dns.ClassINET, Ttl: respTTL}
  265. rr.Ptr = fqdn
  266. resp.Answer = append(resp.Answer, rr)
  267. return resp, nil
  268. }
  269. func (r *resolver) handleSRVQuery(svc string, query *dns.Msg) (*dns.Msg, error) {
  270. srv, ip := r.backend.ResolveService(svc)
  271. if len(srv) == 0 {
  272. return nil, nil
  273. }
  274. if len(srv) != len(ip) {
  275. return nil, fmt.Errorf("invalid reply for SRV query %s", svc)
  276. }
  277. resp := createRespMsg(query)
  278. for i, r := range srv {
  279. rr := new(dns.SRV)
  280. rr.Hdr = dns.RR_Header{Name: svc, Rrtype: dns.TypePTR, Class: dns.ClassINET, Ttl: respTTL}
  281. rr.Port = r.Port
  282. rr.Target = r.Target
  283. resp.Answer = append(resp.Answer, rr)
  284. rr1 := new(dns.A)
  285. rr1.Hdr = dns.RR_Header{Name: r.Target, Rrtype: dns.TypeA, Class: dns.ClassINET, Ttl: respTTL}
  286. rr1.A = ip[i]
  287. resp.Extra = append(resp.Extra, rr1)
  288. }
  289. return resp, nil
  290. }
  291. func truncateResp(resp *dns.Msg, maxSize int, isTCP bool) {
  292. if !isTCP {
  293. resp.Truncated = true
  294. }
  295. srv := resp.Question[0].Qtype == dns.TypeSRV
  296. // trim the Answer RRs one by one till the whole message fits
  297. // within the reply size
  298. for resp.Len() > maxSize {
  299. resp.Answer = resp.Answer[:len(resp.Answer)-1]
  300. if srv && len(resp.Extra) > 0 {
  301. resp.Extra = resp.Extra[:len(resp.Extra)-1]
  302. }
  303. }
  304. }
  305. func (r *resolver) ServeDNS(w dns.ResponseWriter, query *dns.Msg) {
  306. var (
  307. extConn net.Conn
  308. resp *dns.Msg
  309. err error
  310. )
  311. if query == nil || len(query.Question) == 0 {
  312. return
  313. }
  314. name := query.Question[0].Name
  315. switch query.Question[0].Qtype {
  316. case dns.TypeA:
  317. resp, err = r.handleIPQuery(name, query, types.IPv4)
  318. case dns.TypeAAAA:
  319. resp, err = r.handleIPQuery(name, query, types.IPv6)
  320. case dns.TypeMX:
  321. resp, err = r.handleMXQuery(name, query)
  322. case dns.TypePTR:
  323. resp, err = r.handlePTRQuery(name, query)
  324. case dns.TypeSRV:
  325. resp, err = r.handleSRVQuery(name, query)
  326. }
  327. if err != nil {
  328. logrus.Error(err)
  329. return
  330. }
  331. if resp == nil {
  332. // If the backend doesn't support proxying dns request
  333. // fail the response
  334. if !r.proxyDNS {
  335. resp = new(dns.Msg)
  336. resp.SetRcode(query, dns.RcodeServerFailure)
  337. w.WriteMsg(resp)
  338. return
  339. }
  340. // If the user sets ndots > 0 explicitly and the query is
  341. // in the root domain don't forward it out. We will return
  342. // failure and let the client retry with the search domain
  343. // attached
  344. switch query.Question[0].Qtype {
  345. case dns.TypeA:
  346. fallthrough
  347. case dns.TypeAAAA:
  348. if r.backend.NdotsSet() && !strings.Contains(strings.TrimSuffix(name, "."), ".") {
  349. resp = createRespMsg(query)
  350. }
  351. }
  352. }
  353. proto := w.LocalAddr().Network()
  354. maxSize := 0
  355. if proto == "tcp" {
  356. maxSize = dns.MaxMsgSize - 1
  357. } else if proto == "udp" {
  358. optRR := query.IsEdns0()
  359. if optRR != nil {
  360. maxSize = int(optRR.UDPSize())
  361. }
  362. if maxSize < defaultRespSize {
  363. maxSize = defaultRespSize
  364. }
  365. }
  366. if resp != nil {
  367. if resp.Len() > maxSize {
  368. truncateResp(resp, maxSize, proto == "tcp")
  369. }
  370. } else {
  371. for i := 0; i < maxExtDNS; i++ {
  372. extDNS := &r.extDNSList[i]
  373. if extDNS.IPStr == "" {
  374. break
  375. }
  376. extConnect := func() {
  377. addr := fmt.Sprintf("%s:%d", extDNS.IPStr, 53)
  378. extConn, err = net.DialTimeout(proto, addr, extIOTimeout)
  379. }
  380. if extDNS.HostLoopback {
  381. extConnect()
  382. } else {
  383. execErr := r.backend.ExecFunc(extConnect)
  384. if execErr != nil {
  385. logrus.Warn(execErr)
  386. continue
  387. }
  388. }
  389. if err != nil {
  390. logrus.Warnf("[resolver] connect failed: %s", err)
  391. continue
  392. }
  393. queryType := dns.TypeToString[query.Question[0].Qtype]
  394. logrus.Debugf("[resolver] query %s (%s) from %s, forwarding to %s:%s", name, queryType,
  395. extConn.LocalAddr().String(), proto, extDNS.IPStr)
  396. // Timeout has to be set for every IO operation.
  397. extConn.SetDeadline(time.Now().Add(extIOTimeout))
  398. co := &dns.Conn{
  399. Conn: extConn,
  400. UDPSize: uint16(maxSize),
  401. }
  402. defer co.Close()
  403. // limits the number of outstanding concurrent queries.
  404. if !r.forwardQueryStart() {
  405. old := r.tStamp
  406. r.tStamp = time.Now()
  407. if r.tStamp.Sub(old) > logInterval {
  408. logrus.Errorf("[resolver] more than %v concurrent queries from %s", maxConcurrent, extConn.LocalAddr().String())
  409. }
  410. continue
  411. }
  412. err = co.WriteMsg(query)
  413. if err != nil {
  414. r.forwardQueryEnd()
  415. logrus.Debugf("[resolver] send to DNS server failed, %s", err)
  416. continue
  417. }
  418. resp, err = co.ReadMsg()
  419. // Truncated DNS replies should be sent to the client so that the
  420. // client can retry over TCP
  421. if err != nil && err != dns.ErrTruncated {
  422. r.forwardQueryEnd()
  423. logrus.Debugf("[resolver] read from DNS server failed, %s", err)
  424. continue
  425. }
  426. r.forwardQueryEnd()
  427. if resp != nil {
  428. if resp.Rcode == dns.RcodeServerFailure {
  429. // for Server Failure response, continue to the next external DNS server
  430. logrus.Debugf("[resolver] external DNS %s:%s responded with ServFail for %q", proto, extDNS.IPStr, name)
  431. continue
  432. }
  433. answers := 0
  434. for _, rr := range resp.Answer {
  435. h := rr.Header()
  436. switch h.Rrtype {
  437. case dns.TypeA:
  438. answers++
  439. ip := rr.(*dns.A).A
  440. logrus.Debugf("[resolver] received A record %q for %q from %s:%s", ip, h.Name, proto, extDNS.IPStr)
  441. r.backend.HandleQueryResp(h.Name, ip)
  442. case dns.TypeAAAA:
  443. answers++
  444. ip := rr.(*dns.AAAA).AAAA
  445. logrus.Debugf("[resolver] received AAAA record %q for %q from %s:%s", ip, h.Name, proto, extDNS.IPStr)
  446. r.backend.HandleQueryResp(h.Name, ip)
  447. }
  448. }
  449. if resp.Answer == nil || answers == 0 {
  450. logrus.Debugf("[resolver] external DNS %s:%s did not return any %s records for %q", proto, extDNS.IPStr, queryType, name)
  451. }
  452. resp.Compress = true
  453. } else {
  454. logrus.Debugf("[resolver] external DNS %s:%s returned empty response for %q", proto, extDNS.IPStr, name)
  455. }
  456. break
  457. }
  458. if resp == nil {
  459. return
  460. }
  461. }
  462. if err = w.WriteMsg(resp); err != nil {
  463. logrus.Errorf("[resolver] error writing resolver resp, %s", err)
  464. }
  465. }
  466. func (r *resolver) forwardQueryStart() bool {
  467. r.queryLock.Lock()
  468. defer r.queryLock.Unlock()
  469. if r.count == maxConcurrent {
  470. return false
  471. }
  472. r.count++
  473. return true
  474. }
  475. func (r *resolver) forwardQueryEnd() {
  476. r.queryLock.Lock()
  477. defer r.queryLock.Unlock()
  478. if r.count == 0 {
  479. logrus.Error("[resolver] invalid concurrent query count")
  480. } else {
  481. r.count--
  482. }
  483. }