subnet.go 10 KB

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  1. package subnet
  2. import (
  3. "encoding/json"
  4. "errors"
  5. "fmt"
  6. "net"
  7. "regexp"
  8. "strconv"
  9. "time"
  10. "github.com/coreos/flannel/Godeps/_workspace/src/github.com/coreos/go-etcd/etcd"
  11. log "github.com/coreos/flannel/Godeps/_workspace/src/github.com/golang/glog"
  12. "github.com/coreos/flannel/pkg/ip"
  13. "github.com/coreos/flannel/pkg/task"
  14. )
  15. const (
  16. registerRetries = 10
  17. subnetTTL = 24 * 3600
  18. renewMargin = time.Hour
  19. )
  20. // etcd error codes
  21. const (
  22. etcdKeyNotFound = 100
  23. etcdKeyAlreadyExists = 105
  24. etcdEventIndexCleared = 401
  25. )
  26. const (
  27. SubnetAdded = iota
  28. SubnetRemoved
  29. )
  30. var (
  31. subnetRegex *regexp.Regexp = regexp.MustCompile(`(\d+\.\d+.\d+.\d+)-(\d+)`)
  32. )
  33. type LeaseAttrs struct {
  34. PublicIP ip.IP4
  35. BackendType string `json:",omitempty"`
  36. BackendData json.RawMessage `json:",omitempty"`
  37. }
  38. type SubnetLease struct {
  39. Network ip.IP4Net
  40. Attrs LeaseAttrs
  41. }
  42. type SubnetManager struct {
  43. registry subnetRegistry
  44. config *Config
  45. myLease SubnetLease
  46. leaseExp time.Time
  47. lastIndex uint64
  48. leases []SubnetLease
  49. }
  50. type EventType int
  51. type Event struct {
  52. Type EventType
  53. Lease SubnetLease
  54. }
  55. type EventBatch []Event
  56. func NewSubnetManager(etcdEndpoint []string, prefix string) (*SubnetManager, error) {
  57. esr := newEtcdSubnetRegistry(etcdEndpoint, prefix)
  58. return newSubnetManager(esr)
  59. }
  60. func (sm *SubnetManager) AcquireLease(attrs *LeaseAttrs, cancel chan bool) (ip.IP4Net, error) {
  61. for {
  62. sn, err := sm.acquireLeaseOnce(attrs, cancel)
  63. switch {
  64. case err == nil:
  65. log.Info("Subnet lease acquired: ", sn)
  66. return sn, nil
  67. case err == task.ErrCanceled:
  68. return ip.IP4Net{}, err
  69. default:
  70. log.Error("Failed to acquire subnet: ", err)
  71. }
  72. select {
  73. case <-time.After(time.Second):
  74. case <-cancel:
  75. return ip.IP4Net{}, task.ErrCanceled
  76. }
  77. }
  78. }
  79. func findLeaseByIP(leases []SubnetLease, pubIP ip.IP4) *SubnetLease {
  80. for _, l := range leases {
  81. if pubIP == l.Attrs.PublicIP {
  82. return &l
  83. }
  84. }
  85. return nil
  86. }
  87. func (sm *SubnetManager) tryAcquireLease(extIP ip.IP4, attrs []byte) (ip.IP4Net, error) {
  88. var err error
  89. sm.leases, err = sm.getLeases()
  90. if err != nil {
  91. return ip.IP4Net{}, err
  92. }
  93. // try to reuse a subnet if there's one that matches our IP
  94. if l := findLeaseByIP(sm.leases, extIP); l != nil {
  95. resp, err := sm.registry.updateSubnet(l.Network.StringSep(".", "-"), string(attrs), subnetTTL)
  96. if err != nil {
  97. return ip.IP4Net{}, err
  98. }
  99. sm.myLease.Network = l.Network
  100. sm.leaseExp = *resp.Node.Expiration
  101. return l.Network, nil
  102. }
  103. // no existing match, grab a new one
  104. sn, err := sm.allocateSubnet()
  105. if err != nil {
  106. return ip.IP4Net{}, err
  107. }
  108. resp, err := sm.registry.createSubnet(sn.StringSep(".", "-"), string(attrs), subnetTTL)
  109. switch {
  110. case err == nil:
  111. sm.myLease.Network = sn
  112. sm.leaseExp = *resp.Node.Expiration
  113. return sn, nil
  114. // if etcd returned Key Already Exists, try again.
  115. case err.(*etcd.EtcdError).ErrorCode == etcdKeyAlreadyExists:
  116. return ip.IP4Net{}, nil
  117. default:
  118. return ip.IP4Net{}, err
  119. }
  120. }
  121. func (sm *SubnetManager) acquireLeaseOnce(attrs *LeaseAttrs, cancel chan bool) (ip.IP4Net, error) {
  122. attrBytes, err := json.Marshal(attrs)
  123. if err != nil {
  124. log.Errorf("marshal failed: %#v, %v", attrs, err)
  125. return ip.IP4Net{}, err
  126. }
  127. for i := 0; i < registerRetries; i++ {
  128. sn, err := sm.tryAcquireLease(attrs.PublicIP, attrBytes)
  129. switch {
  130. case err != nil:
  131. return ip.IP4Net{}, err
  132. case sn.IP != 0:
  133. return sn, nil
  134. }
  135. // before moving on, check for cancel
  136. if interrupted(cancel) {
  137. return ip.IP4Net{}, task.ErrCanceled
  138. }
  139. }
  140. return ip.IP4Net{}, errors.New("Max retries reached trying to acquire a subnet")
  141. }
  142. func (sm *SubnetManager) GetConfig() *Config {
  143. return sm.config
  144. }
  145. /// Implementation
  146. func parseSubnetKey(s string) (ip.IP4Net, error) {
  147. if parts := subnetRegex.FindStringSubmatch(s); len(parts) == 3 {
  148. snIp := net.ParseIP(parts[1]).To4()
  149. prefixLen, err := strconv.ParseUint(parts[2], 10, 5)
  150. if snIp != nil && err == nil {
  151. return ip.IP4Net{IP: ip.FromIP(snIp), PrefixLen: uint(prefixLen)}, nil
  152. }
  153. }
  154. return ip.IP4Net{}, errors.New("Error parsing IP Subnet")
  155. }
  156. func newSubnetManager(r subnetRegistry) (*SubnetManager, error) {
  157. cfgResp, err := r.getConfig()
  158. if err != nil {
  159. return nil, err
  160. }
  161. cfg, err := ParseConfig(cfgResp.Node.Value)
  162. if err != nil {
  163. return nil, err
  164. }
  165. sm := SubnetManager{
  166. registry: r,
  167. config: cfg,
  168. }
  169. return &sm, nil
  170. }
  171. func (sm *SubnetManager) getLeases() ([]SubnetLease, error) {
  172. resp, err := sm.registry.getSubnets()
  173. var leases []SubnetLease
  174. switch {
  175. case err == nil:
  176. for _, node := range resp.Node.Nodes {
  177. sn, err := parseSubnetKey(node.Key)
  178. if err == nil {
  179. var attrs LeaseAttrs
  180. if err = json.Unmarshal([]byte(node.Value), &attrs); err == nil {
  181. lease := SubnetLease{sn, attrs}
  182. leases = append(leases, lease)
  183. }
  184. }
  185. }
  186. sm.lastIndex = resp.EtcdIndex
  187. case err.(*etcd.EtcdError).ErrorCode == etcdKeyNotFound:
  188. // key not found: treat it as empty set
  189. sm.lastIndex = err.(*etcd.EtcdError).Index
  190. default:
  191. return nil, err
  192. }
  193. return leases, nil
  194. }
  195. func deleteLease(l []SubnetLease, i int) []SubnetLease {
  196. l[i], l = l[len(l)-1], l[:len(l)-1]
  197. return l
  198. }
  199. func (sm *SubnetManager) applyLeases(newLeases []SubnetLease) EventBatch {
  200. var batch EventBatch
  201. for _, l := range newLeases {
  202. // skip self
  203. if l.Network.Equal(sm.myLease.Network) {
  204. continue
  205. }
  206. found := false
  207. for i, c := range sm.leases {
  208. if c.Network.Equal(l.Network) {
  209. sm.leases = deleteLease(sm.leases, i)
  210. found = true
  211. break
  212. }
  213. }
  214. if !found {
  215. // new subnet
  216. batch = append(batch, Event{SubnetAdded, l})
  217. }
  218. }
  219. // everything left in sm.leases has been deleted
  220. for _, c := range sm.leases {
  221. batch = append(batch, Event{SubnetRemoved, c})
  222. }
  223. sm.leases = newLeases
  224. return batch
  225. }
  226. func (sm *SubnetManager) applySubnetChange(action string, ipn ip.IP4Net, data string) (Event, error) {
  227. switch action {
  228. case "delete", "expire":
  229. for i, l := range sm.leases {
  230. if l.Network.Equal(ipn) {
  231. deleteLease(sm.leases, i)
  232. return Event{SubnetRemoved, l}, nil
  233. }
  234. }
  235. log.Errorf("Removed subnet (%s) was not found", ipn)
  236. return Event{
  237. SubnetRemoved,
  238. SubnetLease{ipn, LeaseAttrs{}},
  239. }, nil
  240. default:
  241. var attrs LeaseAttrs
  242. err := json.Unmarshal([]byte(data), &attrs)
  243. if err != nil {
  244. return Event{}, err
  245. }
  246. for i, l := range sm.leases {
  247. if l.Network.Equal(ipn) {
  248. sm.leases[i] = SubnetLease{ipn, attrs}
  249. return Event{SubnetAdded, sm.leases[i]}, nil
  250. }
  251. }
  252. sm.leases = append(sm.leases, SubnetLease{ipn, attrs})
  253. return Event{SubnetAdded, sm.leases[len(sm.leases)-1]}, nil
  254. }
  255. }
  256. func (sm *SubnetManager) allocateSubnet() (ip.IP4Net, error) {
  257. log.Infof("Picking subnet in range %s ... %s", sm.config.SubnetMin, sm.config.SubnetMax)
  258. var bag []ip.IP4
  259. sn := ip.IP4Net{IP: sm.config.SubnetMin, PrefixLen: sm.config.SubnetLen}
  260. OuterLoop:
  261. for ; sn.IP <= sm.config.SubnetMax && len(bag) < 100; sn = sn.Next() {
  262. for _, l := range sm.leases {
  263. if sn.Overlaps(l.Network) {
  264. continue OuterLoop
  265. }
  266. }
  267. bag = append(bag, sn.IP)
  268. }
  269. if len(bag) == 0 {
  270. return ip.IP4Net{}, errors.New("out of subnets")
  271. } else {
  272. i := randInt(0, len(bag))
  273. return ip.IP4Net{IP: bag[i], PrefixLen: sm.config.SubnetLen}, nil
  274. }
  275. }
  276. func (sm *SubnetManager) WatchLeases(receiver chan EventBatch, cancel chan bool) {
  277. // "catch up" by replaying all the leases we discovered during
  278. // AcquireLease
  279. var batch EventBatch
  280. for _, l := range sm.leases {
  281. if !sm.myLease.Network.Equal(l.Network) {
  282. batch = append(batch, Event{SubnetAdded, l})
  283. }
  284. }
  285. if len(batch) > 0 {
  286. receiver <- batch
  287. }
  288. for {
  289. resp, err := sm.registry.watchSubnets(sm.lastIndex+1, cancel)
  290. // watchSubnets exited by cancel chan being signaled
  291. if err == nil && resp == nil {
  292. return
  293. }
  294. var batch *EventBatch
  295. if err == nil {
  296. batch, err = sm.parseSubnetWatchResponse(resp)
  297. } else {
  298. batch, err = sm.parseSubnetWatchError(err)
  299. }
  300. if err != nil {
  301. log.Errorf("%v", err)
  302. time.Sleep(time.Second)
  303. continue
  304. }
  305. if batch != nil {
  306. receiver <- *batch
  307. }
  308. }
  309. }
  310. func (sm *SubnetManager) parseSubnetWatchResponse(resp *etcd.Response) (batch *EventBatch, err error) {
  311. sm.lastIndex = resp.Node.ModifiedIndex
  312. sn, err := parseSubnetKey(resp.Node.Key)
  313. if err != nil {
  314. err = fmt.Errorf("Error parsing subnet IP: %s", resp.Node.Key)
  315. return
  316. }
  317. // Don't process our own changes
  318. if !sm.myLease.Network.Equal(sn) {
  319. evt, err := sm.applySubnetChange(resp.Action, sn, resp.Node.Value)
  320. if err != nil {
  321. return nil, err
  322. }
  323. batch = &EventBatch{evt}
  324. }
  325. return
  326. }
  327. func (sm *SubnetManager) parseSubnetWatchError(err error) (batch *EventBatch, out error) {
  328. etcdErr, ok := err.(*etcd.EtcdError)
  329. if ok && etcdErr.ErrorCode == etcdEventIndexCleared {
  330. // etcd maintains a history window for events and it's possible to fall behind.
  331. // to recover, get the current state and then "diff" against our cache to generate
  332. // events for the caller
  333. log.Warning("Watch of subnet leases failed because etcd index outside history window")
  334. leases, err := sm.getLeases()
  335. if err == nil {
  336. lb := sm.applyLeases(leases)
  337. batch = &lb
  338. } else {
  339. out = fmt.Errorf("Failed to retrieve subnet leases: %v", err)
  340. }
  341. } else {
  342. out = fmt.Errorf("Watch of subnet leases failed: %v", err)
  343. }
  344. return
  345. }
  346. func (sm *SubnetManager) LeaseRenewer(cancel chan bool) {
  347. dur := sm.leaseExp.Sub(time.Now()) - renewMargin
  348. for {
  349. select {
  350. case <-time.After(dur):
  351. attrBytes, err := json.Marshal(sm.myLease.Attrs)
  352. if err != nil {
  353. log.Error("Error renewing lease (trying again in 1 min): ", err)
  354. dur = time.Minute
  355. continue
  356. }
  357. resp, err := sm.registry.updateSubnet(sm.myLease.Network.StringSep(".", "-"), string(attrBytes), subnetTTL)
  358. if err != nil {
  359. log.Error("Error renewing lease (trying again in 1 min): ", err)
  360. dur = time.Minute
  361. continue
  362. }
  363. sm.leaseExp = *resp.Node.Expiration
  364. log.Info("Lease renewed, new expiration: ", sm.leaseExp)
  365. dur = sm.leaseExp.Sub(time.Now()) - renewMargin
  366. case <-cancel:
  367. return
  368. }
  369. }
  370. }
  371. func interrupted(cancel chan bool) bool {
  372. select {
  373. case <-cancel:
  374. return true
  375. default:
  376. return false
  377. }
  378. }